Files
remnawave-api-go/api/oas_json_gen.go
T

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// Code generated by ogen, DO NOT EDIT.
package api
import (
"math/bits"
"net/url"
"strconv"
"time"
"github.com/go-faster/errors"
"github.com/go-faster/jx"
"github.com/google/uuid"
"github.com/ogen-go/ogen/json"
"github.com/ogen-go/ogen/validate"
)
// Encode implements json.Marshaler.
func (s *ActionReportItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ActionReportItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("blocked")
e.Bool(s.Blocked)
}
{
e.FieldStart("ip")
e.Str(s.IP)
}
{
e.FieldStart("blockDuration")
e.Float64(s.BlockDuration)
}
{
e.FieldStart("willUnblockAt")
json.EncodeDateTime(e, s.WillUnblockAt)
}
{
e.FieldStart("userId")
e.Str(s.UserId)
}
{
e.FieldStart("processedAt")
json.EncodeDateTime(e, s.ProcessedAt)
}
}
var jsonFieldsNameOfActionReportItem = [6]string{
0: "blocked",
1: "ip",
2: "blockDuration",
3: "willUnblockAt",
4: "userId",
5: "processedAt",
}
// Decode decodes ActionReportItem from json.
func (s *ActionReportItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ActionReportItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "blocked":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Bool()
s.Blocked = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"blocked\"")
}
case "ip":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.IP = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"ip\"")
}
case "blockDuration":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Float64()
s.BlockDuration = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"blockDuration\"")
}
case "willUnblockAt":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := json.DecodeDateTime(d)
s.WillUnblockAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"willUnblockAt\"")
}
case "userId":
requiredBitSet[0] |= 1 << 4
if err := func() error {
v, err := d.Str()
s.UserId = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"userId\"")
}
case "processedAt":
requiredBitSet[0] |= 1 << 5
if err := func() error {
v, err := json.DecodeDateTime(d)
s.ProcessedAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"processedAt\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ActionReportItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00111111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfActionReportItem) {
name = jsonFieldsNameOfActionReportItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ActionReportItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ActionReportItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ActiveInternalSquad) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ActiveInternalSquad) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("name")
e.Str(s.Name)
}
}
var jsonFieldsNameOfActiveInternalSquad = [2]string{
0: "uuid",
1: "name",
}
// Decode decodes ActiveInternalSquad from json.
func (s *ActiveInternalSquad) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ActiveInternalSquad to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "name":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ActiveInternalSquad")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfActiveInternalSquad) {
name = jsonFieldsNameOfActiveInternalSquad[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ActiveInternalSquad) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ActiveInternalSquad) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *AllHwidDevices) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *AllHwidDevices) encodeFields(e *jx.Encoder) {
{
e.FieldStart("devices")
e.ArrStart()
for _, elem := range s.Devices {
elem.Encode(e)
}
e.ArrEnd()
}
{
e.FieldStart("total")
e.Float64(s.Total)
}
}
var jsonFieldsNameOfAllHwidDevices = [2]string{
0: "devices",
1: "total",
}
// Decode decodes AllHwidDevices from json.
func (s *AllHwidDevices) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode AllHwidDevices to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "devices":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Devices = make([]Device, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem Device
if err := elem.Decode(d); err != nil {
return err
}
s.Devices = append(s.Devices, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"devices\"")
}
case "total":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.Total = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"total\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode AllHwidDevices")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfAllHwidDevices) {
name = jsonFieldsNameOfAllHwidDevices[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *AllHwidDevices) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *AllHwidDevices) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *BadRequestError) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *BadRequestError) encodeFields(e *jx.Encoder) {
{
e.FieldStart("message")
e.Str(s.Message)
}
{
e.FieldStart("statusCode")
e.Float64(s.StatusCode)
}
{
e.FieldStart("errors")
e.ArrStart()
for _, elem := range s.Errors {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfBadRequestError = [3]string{
0: "message",
1: "statusCode",
2: "errors",
}
// Decode decodes BadRequestError from json.
func (s *BadRequestError) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BadRequestError to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "message":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Message = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"message\"")
}
case "statusCode":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.StatusCode = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"statusCode\"")
}
case "errors":
requiredBitSet[0] |= 1 << 2
if err := func() error {
s.Errors = make([]ValidationError, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem ValidationError
if err := elem.Decode(d); err != nil {
return err
}
s.Errors = append(s.Errors, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"errors\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode BadRequestError")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfBadRequestError) {
name = jsonFieldsNameOfBadRequestError[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *BadRequestError) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BadRequestError) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *BandwidthLastTwoDays) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *BandwidthLastTwoDays) encodeFields(e *jx.Encoder) {
{
e.FieldStart("current")
e.Str(s.Current)
}
{
e.FieldStart("previous")
e.Str(s.Previous)
}
{
e.FieldStart("difference")
e.Str(s.Difference)
}
}
var jsonFieldsNameOfBandwidthLastTwoDays = [3]string{
0: "current",
1: "previous",
2: "difference",
}
// Decode decodes BandwidthLastTwoDays from json.
func (s *BandwidthLastTwoDays) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BandwidthLastTwoDays to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "current":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Current = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"current\"")
}
case "previous":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Previous = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"previous\"")
}
case "difference":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.Difference = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"difference\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode BandwidthLastTwoDays")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfBandwidthLastTwoDays) {
name = jsonFieldsNameOfBandwidthLastTwoDays[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *BandwidthLastTwoDays) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BandwidthLastTwoDays) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *BillingHistoryItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *BillingHistoryItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("totalAmount")
e.Float64(s.TotalAmount)
}
{
e.FieldStart("totalBills")
e.Float64(s.TotalBills)
}
}
var jsonFieldsNameOfBillingHistoryItem = [2]string{
0: "totalAmount",
1: "totalBills",
}
// Decode decodes BillingHistoryItem from json.
func (s *BillingHistoryItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BillingHistoryItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "totalAmount":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.TotalAmount = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"totalAmount\"")
}
case "totalBills":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.TotalBills = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"totalBills\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode BillingHistoryItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfBillingHistoryItem) {
name = jsonFieldsNameOfBillingHistoryItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *BillingHistoryItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BillingHistoryItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *BillingHistoryResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *BillingHistoryResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfBillingHistoryResponse = [1]string{
0: "response",
}
// Decode decodes BillingHistoryResponse from json.
func (s *BillingHistoryResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BillingHistoryResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode BillingHistoryResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfBillingHistoryResponse) {
name = jsonFieldsNameOfBillingHistoryResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *BillingHistoryResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BillingHistoryResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *BillingHistoryResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *BillingHistoryResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("records")
e.ArrStart()
for _, elem := range s.Records {
elem.Encode(e)
}
e.ArrEnd()
}
{
e.FieldStart("total")
e.Float64(s.Total)
}
}
var jsonFieldsNameOfBillingHistoryResponseResponse = [2]string{
0: "records",
1: "total",
}
// Decode decodes BillingHistoryResponseResponse from json.
func (s *BillingHistoryResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BillingHistoryResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "records":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Records = make([]BillingHistoryResponseResponseRecordsItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem BillingHistoryResponseResponseRecordsItem
if err := elem.Decode(d); err != nil {
return err
}
s.Records = append(s.Records, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"records\"")
}
case "total":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.Total = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"total\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode BillingHistoryResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfBillingHistoryResponseResponse) {
name = jsonFieldsNameOfBillingHistoryResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *BillingHistoryResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BillingHistoryResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *BillingHistoryResponseResponseRecordsItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *BillingHistoryResponseResponseRecordsItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("providerUuid")
json.EncodeUUID(e, s.ProviderUuid)
}
{
e.FieldStart("amount")
e.Float64(s.Amount)
}
{
e.FieldStart("billedAt")
json.EncodeDateTime(e, s.BilledAt)
}
{
e.FieldStart("provider")
s.Provider.Encode(e)
}
}
var jsonFieldsNameOfBillingHistoryResponseResponseRecordsItem = [5]string{
0: "uuid",
1: "providerUuid",
2: "amount",
3: "billedAt",
4: "provider",
}
// Decode decodes BillingHistoryResponseResponseRecordsItem from json.
func (s *BillingHistoryResponseResponseRecordsItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BillingHistoryResponseResponseRecordsItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "providerUuid":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := json.DecodeUUID(d)
s.ProviderUuid = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"providerUuid\"")
}
case "amount":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Float64()
s.Amount = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"amount\"")
}
case "billedAt":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := json.DecodeDateTime(d)
s.BilledAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"billedAt\"")
}
case "provider":
requiredBitSet[0] |= 1 << 4
if err := func() error {
if err := s.Provider.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"provider\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode BillingHistoryResponseResponseRecordsItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00011111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfBillingHistoryResponseResponseRecordsItem) {
name = jsonFieldsNameOfBillingHistoryResponseResponseRecordsItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *BillingHistoryResponseResponseRecordsItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BillingHistoryResponseResponseRecordsItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *BillingHistoryResponseResponseRecordsItemProvider) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *BillingHistoryResponseResponseRecordsItemProvider) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("name")
e.Str(s.Name)
}
{
e.FieldStart("faviconLink")
s.FaviconLink.Encode(e)
}
}
var jsonFieldsNameOfBillingHistoryResponseResponseRecordsItemProvider = [3]string{
0: "uuid",
1: "name",
2: "faviconLink",
}
// Decode decodes BillingHistoryResponseResponseRecordsItemProvider from json.
func (s *BillingHistoryResponseResponseRecordsItemProvider) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BillingHistoryResponseResponseRecordsItemProvider to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "name":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "faviconLink":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.FaviconLink.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"faviconLink\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode BillingHistoryResponseResponseRecordsItemProvider")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfBillingHistoryResponseResponseRecordsItemProvider) {
name = jsonFieldsNameOfBillingHistoryResponseResponseRecordsItemProvider[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *BillingHistoryResponseResponseRecordsItemProvider) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BillingHistoryResponseResponseRecordsItemProvider) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *BillingNode) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *BillingNode) encodeFields(e *jx.Encoder) {
{
e.FieldStart("name")
e.Str(s.Name)
}
{
e.FieldStart("details")
s.Details.Encode(e)
}
}
var jsonFieldsNameOfBillingNode = [2]string{
0: "name",
1: "details",
}
// Decode decodes BillingNode from json.
func (s *BillingNode) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BillingNode to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "name":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "details":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.Details.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"details\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode BillingNode")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfBillingNode) {
name = jsonFieldsNameOfBillingNode[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *BillingNode) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BillingNode) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *BillingNodesResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *BillingNodesResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfBillingNodesResponse = [1]string{
0: "response",
}
// Decode decodes BillingNodesResponse from json.
func (s *BillingNodesResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BillingNodesResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode BillingNodesResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfBillingNodesResponse) {
name = jsonFieldsNameOfBillingNodesResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *BillingNodesResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BillingNodesResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *BillingNodesResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *BillingNodesResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("totalBillingNodes")
e.Float64(s.TotalBillingNodes)
}
{
e.FieldStart("billingNodes")
e.ArrStart()
for _, elem := range s.BillingNodes {
elem.Encode(e)
}
e.ArrEnd()
}
{
e.FieldStart("availableBillingNodes")
e.ArrStart()
for _, elem := range s.AvailableBillingNodes {
elem.Encode(e)
}
e.ArrEnd()
}
{
e.FieldStart("totalAvailableBillingNodes")
e.Float64(s.TotalAvailableBillingNodes)
}
{
e.FieldStart("stats")
s.Stats.Encode(e)
}
}
var jsonFieldsNameOfBillingNodesResponseResponse = [5]string{
0: "totalBillingNodes",
1: "billingNodes",
2: "availableBillingNodes",
3: "totalAvailableBillingNodes",
4: "stats",
}
// Decode decodes BillingNodesResponseResponse from json.
func (s *BillingNodesResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BillingNodesResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "totalBillingNodes":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.TotalBillingNodes = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"totalBillingNodes\"")
}
case "billingNodes":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.BillingNodes = make([]BillingNodesResponseResponseBillingNodesItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem BillingNodesResponseResponseBillingNodesItem
if err := elem.Decode(d); err != nil {
return err
}
s.BillingNodes = append(s.BillingNodes, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"billingNodes\"")
}
case "availableBillingNodes":
requiredBitSet[0] |= 1 << 2
if err := func() error {
s.AvailableBillingNodes = make([]Node, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem Node
if err := elem.Decode(d); err != nil {
return err
}
s.AvailableBillingNodes = append(s.AvailableBillingNodes, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"availableBillingNodes\"")
}
case "totalAvailableBillingNodes":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Float64()
s.TotalAvailableBillingNodes = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"totalAvailableBillingNodes\"")
}
case "stats":
requiredBitSet[0] |= 1 << 4
if err := func() error {
if err := s.Stats.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"stats\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode BillingNodesResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00011111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfBillingNodesResponseResponse) {
name = jsonFieldsNameOfBillingNodesResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *BillingNodesResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BillingNodesResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *BillingNodesResponseResponseBillingNodesItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *BillingNodesResponseResponseBillingNodesItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("nodeUuid")
s.NodeUuid.Encode(e)
}
{
e.FieldStart("name")
s.Name.Encode(e)
}
{
e.FieldStart("providerUuid")
json.EncodeUUID(e, s.ProviderUuid)
}
{
e.FieldStart("provider")
s.Provider.Encode(e)
}
{
e.FieldStart("node")
s.Node.Encode(e)
}
{
e.FieldStart("nextBillingAt")
json.EncodeDateTime(e, s.NextBillingAt)
}
{
e.FieldStart("createdAt")
json.EncodeDateTime(e, s.CreatedAt)
}
{
e.FieldStart("updatedAt")
json.EncodeDateTime(e, s.UpdatedAt)
}
}
var jsonFieldsNameOfBillingNodesResponseResponseBillingNodesItem = [9]string{
0: "uuid",
1: "nodeUuid",
2: "name",
3: "providerUuid",
4: "provider",
5: "node",
6: "nextBillingAt",
7: "createdAt",
8: "updatedAt",
}
// Decode decodes BillingNodesResponseResponseBillingNodesItem from json.
func (s *BillingNodesResponseResponseBillingNodesItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BillingNodesResponseResponseBillingNodesItem to nil")
}
var requiredBitSet [2]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "nodeUuid":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.NodeUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodeUuid\"")
}
case "name":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.Name.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "providerUuid":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := json.DecodeUUID(d)
s.ProviderUuid = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"providerUuid\"")
}
case "provider":
requiredBitSet[0] |= 1 << 4
if err := func() error {
if err := s.Provider.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"provider\"")
}
case "node":
requiredBitSet[0] |= 1 << 5
if err := func() error {
if err := s.Node.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"node\"")
}
case "nextBillingAt":
requiredBitSet[0] |= 1 << 6
if err := func() error {
v, err := json.DecodeDateTime(d)
s.NextBillingAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nextBillingAt\"")
}
case "createdAt":
requiredBitSet[0] |= 1 << 7
if err := func() error {
v, err := json.DecodeDateTime(d)
s.CreatedAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"createdAt\"")
}
case "updatedAt":
requiredBitSet[1] |= 1 << 0
if err := func() error {
v, err := json.DecodeDateTime(d)
s.UpdatedAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"updatedAt\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode BillingNodesResponseResponseBillingNodesItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [2]uint8{
0b11111111,
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfBillingNodesResponseResponseBillingNodesItem) {
name = jsonFieldsNameOfBillingNodesResponseResponseBillingNodesItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *BillingNodesResponseResponseBillingNodesItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BillingNodesResponseResponseBillingNodesItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *BillingNodesResponseResponseBillingNodesItemProvider) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *BillingNodesResponseResponseBillingNodesItemProvider) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("name")
e.Str(s.Name)
}
{
e.FieldStart("loginUrl")
s.LoginUrl.Encode(e)
}
{
e.FieldStart("faviconLink")
s.FaviconLink.Encode(e)
}
}
var jsonFieldsNameOfBillingNodesResponseResponseBillingNodesItemProvider = [4]string{
0: "uuid",
1: "name",
2: "loginUrl",
3: "faviconLink",
}
// Decode decodes BillingNodesResponseResponseBillingNodesItemProvider from json.
func (s *BillingNodesResponseResponseBillingNodesItemProvider) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BillingNodesResponseResponseBillingNodesItemProvider to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "name":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "loginUrl":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.LoginUrl.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"loginUrl\"")
}
case "faviconLink":
requiredBitSet[0] |= 1 << 3
if err := func() error {
if err := s.FaviconLink.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"faviconLink\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode BillingNodesResponseResponseBillingNodesItemProvider")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00001111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfBillingNodesResponseResponseBillingNodesItemProvider) {
name = jsonFieldsNameOfBillingNodesResponseResponseBillingNodesItemProvider[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *BillingNodesResponseResponseBillingNodesItemProvider) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BillingNodesResponseResponseBillingNodesItemProvider) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *BillingNodesResponseResponseStats) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *BillingNodesResponseResponseStats) encodeFields(e *jx.Encoder) {
{
e.FieldStart("upcomingNodesCount")
e.Float64(s.UpcomingNodesCount)
}
{
e.FieldStart("currentMonthPayments")
e.Float64(s.CurrentMonthPayments)
}
{
e.FieldStart("totalSpent")
e.Float64(s.TotalSpent)
}
}
var jsonFieldsNameOfBillingNodesResponseResponseStats = [3]string{
0: "upcomingNodesCount",
1: "currentMonthPayments",
2: "totalSpent",
}
// Decode decodes BillingNodesResponseResponseStats from json.
func (s *BillingNodesResponseResponseStats) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BillingNodesResponseResponseStats to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "upcomingNodesCount":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.UpcomingNodesCount = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"upcomingNodesCount\"")
}
case "currentMonthPayments":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.CurrentMonthPayments = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"currentMonthPayments\"")
}
case "totalSpent":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Float64()
s.TotalSpent = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"totalSpent\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode BillingNodesResponseResponseStats")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfBillingNodesResponseResponseStats) {
name = jsonFieldsNameOfBillingNodesResponseResponseStats[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *BillingNodesResponseResponseStats) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BillingNodesResponseResponseStats) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *BrandingSettings) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *BrandingSettings) encodeFields(e *jx.Encoder) {
{
e.FieldStart("title")
s.Title.Encode(e)
}
{
e.FieldStart("logoUrl")
s.LogoUrl.Encode(e)
}
}
var jsonFieldsNameOfBrandingSettings = [2]string{
0: "title",
1: "logoUrl",
}
// Decode decodes BrandingSettings from json.
func (s *BrandingSettings) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BrandingSettings to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "title":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Title.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"title\"")
}
case "logoUrl":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.LogoUrl.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"logoUrl\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode BrandingSettings")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfBrandingSettings) {
name = jsonFieldsNameOfBrandingSettings[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *BrandingSettings) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BrandingSettings) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *BulkActionResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *BulkActionResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfBulkActionResponse = [1]string{
0: "response",
}
// Decode decodes BulkActionResponse from json.
func (s *BulkActionResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BulkActionResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode BulkActionResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfBulkActionResponse) {
name = jsonFieldsNameOfBulkActionResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *BulkActionResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BulkActionResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *BulkActionResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *BulkActionResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("affectedRows")
e.Float64(s.AffectedRows)
}
}
var jsonFieldsNameOfBulkActionResponseResponse = [1]string{
0: "affectedRows",
}
// Decode decodes BulkActionResponseResponse from json.
func (s *BulkActionResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BulkActionResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "affectedRows":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.AffectedRows = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"affectedRows\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode BulkActionResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfBulkActionResponseResponse) {
name = jsonFieldsNameOfBulkActionResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *BulkActionResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BulkActionResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *BulkAllExtendExpirationDateRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *BulkAllExtendExpirationDateRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("extendDays")
e.Int(s.ExtendDays)
}
}
var jsonFieldsNameOfBulkAllExtendExpirationDateRequest = [1]string{
0: "extendDays",
}
// Decode decodes BulkAllExtendExpirationDateRequest from json.
func (s *BulkAllExtendExpirationDateRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BulkAllExtendExpirationDateRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "extendDays":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Int()
s.ExtendDays = int(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"extendDays\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode BulkAllExtendExpirationDateRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfBulkAllExtendExpirationDateRequest) {
name = jsonFieldsNameOfBulkAllExtendExpirationDateRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *BulkAllExtendExpirationDateRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BulkAllExtendExpirationDateRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *BulkAllUpdateUsersRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *BulkAllUpdateUsersRequest) encodeFields(e *jx.Encoder) {
{
if s.Status.Set {
e.FieldStart("status")
s.Status.Encode(e)
}
}
{
if s.TrafficLimitBytes.Set {
e.FieldStart("trafficLimitBytes")
s.TrafficLimitBytes.Encode(e)
}
}
{
if s.TrafficLimitStrategy.Set {
e.FieldStart("trafficLimitStrategy")
s.TrafficLimitStrategy.Encode(e)
}
}
{
if s.ExpireAt.Set {
e.FieldStart("expireAt")
s.ExpireAt.Encode(e, json.EncodeDateTime)
}
}
{
if s.Description.Set {
e.FieldStart("description")
s.Description.Encode(e)
}
}
{
if s.TelegramId.Set {
e.FieldStart("telegramId")
s.TelegramId.Encode(e)
}
}
{
if s.Email.Set {
e.FieldStart("email")
s.Email.Encode(e)
}
}
{
if s.Tag.Set {
e.FieldStart("tag")
s.Tag.Encode(e)
}
}
{
if s.HwidDeviceLimit.Set {
e.FieldStart("hwidDeviceLimit")
s.HwidDeviceLimit.Encode(e)
}
}
}
var jsonFieldsNameOfBulkAllUpdateUsersRequest = [9]string{
0: "status",
1: "trafficLimitBytes",
2: "trafficLimitStrategy",
3: "expireAt",
4: "description",
5: "telegramId",
6: "email",
7: "tag",
8: "hwidDeviceLimit",
}
// Decode decodes BulkAllUpdateUsersRequest from json.
func (s *BulkAllUpdateUsersRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BulkAllUpdateUsersRequest to nil")
}
s.setDefaults()
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "status":
if err := func() error {
s.Status.Reset()
if err := s.Status.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"status\"")
}
case "trafficLimitBytes":
if err := func() error {
s.TrafficLimitBytes.Reset()
if err := s.TrafficLimitBytes.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"trafficLimitBytes\"")
}
case "trafficLimitStrategy":
if err := func() error {
s.TrafficLimitStrategy.Reset()
if err := s.TrafficLimitStrategy.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"trafficLimitStrategy\"")
}
case "expireAt":
if err := func() error {
s.ExpireAt.Reset()
if err := s.ExpireAt.Decode(d, json.DecodeDateTime); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"expireAt\"")
}
case "description":
if err := func() error {
s.Description.Reset()
if err := s.Description.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"description\"")
}
case "telegramId":
if err := func() error {
s.TelegramId.Reset()
if err := s.TelegramId.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"telegramId\"")
}
case "email":
if err := func() error {
s.Email.Reset()
if err := s.Email.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"email\"")
}
case "tag":
if err := func() error {
s.Tag.Reset()
if err := s.Tag.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"tag\"")
}
case "hwidDeviceLimit":
if err := func() error {
s.HwidDeviceLimit.Reset()
if err := s.HwidDeviceLimit.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"hwidDeviceLimit\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode BulkAllUpdateUsersRequest")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *BulkAllUpdateUsersRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BulkAllUpdateUsersRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes BulkAllUpdateUsersRequestStatus as json.
func (s BulkAllUpdateUsersRequestStatus) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes BulkAllUpdateUsersRequestStatus from json.
func (s *BulkAllUpdateUsersRequestStatus) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BulkAllUpdateUsersRequestStatus to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch BulkAllUpdateUsersRequestStatus(v) {
case BulkAllUpdateUsersRequestStatusACTIVE:
*s = BulkAllUpdateUsersRequestStatusACTIVE
case BulkAllUpdateUsersRequestStatusDISABLED:
*s = BulkAllUpdateUsersRequestStatusDISABLED
case BulkAllUpdateUsersRequestStatusLIMITED:
*s = BulkAllUpdateUsersRequestStatusLIMITED
case BulkAllUpdateUsersRequestStatusEXPIRED:
*s = BulkAllUpdateUsersRequestStatusEXPIRED
default:
*s = BulkAllUpdateUsersRequestStatus(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s BulkAllUpdateUsersRequestStatus) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BulkAllUpdateUsersRequestStatus) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes BulkAllUpdateUsersRequestTrafficLimitStrategy as json.
func (s BulkAllUpdateUsersRequestTrafficLimitStrategy) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes BulkAllUpdateUsersRequestTrafficLimitStrategy from json.
func (s *BulkAllUpdateUsersRequestTrafficLimitStrategy) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BulkAllUpdateUsersRequestTrafficLimitStrategy to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch BulkAllUpdateUsersRequestTrafficLimitStrategy(v) {
case BulkAllUpdateUsersRequestTrafficLimitStrategyNORESET:
*s = BulkAllUpdateUsersRequestTrafficLimitStrategyNORESET
case BulkAllUpdateUsersRequestTrafficLimitStrategyDAY:
*s = BulkAllUpdateUsersRequestTrafficLimitStrategyDAY
case BulkAllUpdateUsersRequestTrafficLimitStrategyWEEK:
*s = BulkAllUpdateUsersRequestTrafficLimitStrategyWEEK
case BulkAllUpdateUsersRequestTrafficLimitStrategyMONTH:
*s = BulkAllUpdateUsersRequestTrafficLimitStrategyMONTH
case BulkAllUpdateUsersRequestTrafficLimitStrategyMONTHROLLING:
*s = BulkAllUpdateUsersRequestTrafficLimitStrategyMONTHROLLING
default:
*s = BulkAllUpdateUsersRequestTrafficLimitStrategy(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s BulkAllUpdateUsersRequestTrafficLimitStrategy) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BulkAllUpdateUsersRequestTrafficLimitStrategy) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *BulkDeleteUsersByStatusRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *BulkDeleteUsersByStatusRequest) encodeFields(e *jx.Encoder) {
{
if s.Status.Set {
e.FieldStart("status")
s.Status.Encode(e)
}
}
}
var jsonFieldsNameOfBulkDeleteUsersByStatusRequest = [1]string{
0: "status",
}
// Decode decodes BulkDeleteUsersByStatusRequest from json.
func (s *BulkDeleteUsersByStatusRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BulkDeleteUsersByStatusRequest to nil")
}
s.setDefaults()
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "status":
if err := func() error {
s.Status.Reset()
if err := s.Status.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"status\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode BulkDeleteUsersByStatusRequest")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *BulkDeleteUsersByStatusRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BulkDeleteUsersByStatusRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes BulkDeleteUsersByStatusRequestStatus as json.
func (s BulkDeleteUsersByStatusRequestStatus) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes BulkDeleteUsersByStatusRequestStatus from json.
func (s *BulkDeleteUsersByStatusRequestStatus) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BulkDeleteUsersByStatusRequestStatus to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch BulkDeleteUsersByStatusRequestStatus(v) {
case BulkDeleteUsersByStatusRequestStatusACTIVE:
*s = BulkDeleteUsersByStatusRequestStatusACTIVE
case BulkDeleteUsersByStatusRequestStatusDISABLED:
*s = BulkDeleteUsersByStatusRequestStatusDISABLED
case BulkDeleteUsersByStatusRequestStatusLIMITED:
*s = BulkDeleteUsersByStatusRequestStatusLIMITED
case BulkDeleteUsersByStatusRequestStatusEXPIRED:
*s = BulkDeleteUsersByStatusRequestStatusEXPIRED
default:
*s = BulkDeleteUsersByStatusRequestStatus(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s BulkDeleteUsersByStatusRequestStatus) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BulkDeleteUsersByStatusRequestStatus) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *BulkExtendExpirationDateRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *BulkExtendExpirationDateRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuids")
e.ArrStart()
for _, elem := range s.Uuids {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
{
e.FieldStart("extendDays")
e.Int(s.ExtendDays)
}
}
var jsonFieldsNameOfBulkExtendExpirationDateRequest = [2]string{
0: "uuids",
1: "extendDays",
}
// Decode decodes BulkExtendExpirationDateRequest from json.
func (s *BulkExtendExpirationDateRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BulkExtendExpirationDateRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuids":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Uuids = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.Uuids = append(s.Uuids, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuids\"")
}
case "extendDays":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Int()
s.ExtendDays = int(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"extendDays\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode BulkExtendExpirationDateRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfBulkExtendExpirationDateRequest) {
name = jsonFieldsNameOfBulkExtendExpirationDateRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *BulkExtendExpirationDateRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BulkExtendExpirationDateRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *BulkNodesActionsRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *BulkNodesActionsRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuids")
e.ArrStart()
for _, elem := range s.Uuids {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
{
e.FieldStart("action")
s.Action.Encode(e)
}
}
var jsonFieldsNameOfBulkNodesActionsRequest = [2]string{
0: "uuids",
1: "action",
}
// Decode decodes BulkNodesActionsRequest from json.
func (s *BulkNodesActionsRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BulkNodesActionsRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuids":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Uuids = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.Uuids = append(s.Uuids, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuids\"")
}
case "action":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.Action.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"action\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode BulkNodesActionsRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfBulkNodesActionsRequest) {
name = jsonFieldsNameOfBulkNodesActionsRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *BulkNodesActionsRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BulkNodesActionsRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes BulkNodesActionsRequestAction as json.
func (s BulkNodesActionsRequestAction) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes BulkNodesActionsRequestAction from json.
func (s *BulkNodesActionsRequestAction) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BulkNodesActionsRequestAction to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch BulkNodesActionsRequestAction(v) {
case BulkNodesActionsRequestActionENABLE:
*s = BulkNodesActionsRequestActionENABLE
case BulkNodesActionsRequestActionDISABLE:
*s = BulkNodesActionsRequestActionDISABLE
case BulkNodesActionsRequestActionRESTART:
*s = BulkNodesActionsRequestActionRESTART
case BulkNodesActionsRequestActionRESETTRAFFIC:
*s = BulkNodesActionsRequestActionRESETTRAFFIC
default:
*s = BulkNodesActionsRequestAction(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s BulkNodesActionsRequestAction) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BulkNodesActionsRequestAction) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *BulkNodesUpdateRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *BulkNodesUpdateRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuids")
e.ArrStart()
for _, elem := range s.Uuids {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
{
e.FieldStart("fields")
s.Fields.Encode(e)
}
}
var jsonFieldsNameOfBulkNodesUpdateRequest = [2]string{
0: "uuids",
1: "fields",
}
// Decode decodes BulkNodesUpdateRequest from json.
func (s *BulkNodesUpdateRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BulkNodesUpdateRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuids":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Uuids = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.Uuids = append(s.Uuids, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuids\"")
}
case "fields":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.Fields.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"fields\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode BulkNodesUpdateRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfBulkNodesUpdateRequest) {
name = jsonFieldsNameOfBulkNodesUpdateRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *BulkNodesUpdateRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BulkNodesUpdateRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *BulkNodesUpdateRequestFields) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *BulkNodesUpdateRequestFields) encodeFields(e *jx.Encoder) {
{
if s.CountryCode.Set {
e.FieldStart("countryCode")
s.CountryCode.Encode(e)
}
}
{
if s.ConsumptionMultiplier.Set {
e.FieldStart("consumptionMultiplier")
s.ConsumptionMultiplier.Encode(e)
}
}
{
if s.NodeConsumptionMultiplier.Set {
e.FieldStart("nodeConsumptionMultiplier")
s.NodeConsumptionMultiplier.Encode(e)
}
}
{
if s.ProviderUuid.Set {
e.FieldStart("providerUuid")
s.ProviderUuid.Encode(e)
}
}
{
if s.Tags != nil {
e.FieldStart("tags")
e.ArrStart()
for _, elem := range s.Tags {
e.Str(elem)
}
e.ArrEnd()
}
}
{
if s.ActivePluginUuid.Set {
e.FieldStart("activePluginUuid")
s.ActivePluginUuid.Encode(e)
}
}
{
if s.Note.Set {
e.FieldStart("note")
s.Note.Encode(e)
}
}
}
var jsonFieldsNameOfBulkNodesUpdateRequestFields = [7]string{
0: "countryCode",
1: "consumptionMultiplier",
2: "nodeConsumptionMultiplier",
3: "providerUuid",
4: "tags",
5: "activePluginUuid",
6: "note",
}
// Decode decodes BulkNodesUpdateRequestFields from json.
func (s *BulkNodesUpdateRequestFields) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BulkNodesUpdateRequestFields to nil")
}
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "countryCode":
if err := func() error {
s.CountryCode.Reset()
if err := s.CountryCode.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"countryCode\"")
}
case "consumptionMultiplier":
if err := func() error {
s.ConsumptionMultiplier.Reset()
if err := s.ConsumptionMultiplier.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"consumptionMultiplier\"")
}
case "nodeConsumptionMultiplier":
if err := func() error {
s.NodeConsumptionMultiplier.Reset()
if err := s.NodeConsumptionMultiplier.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodeConsumptionMultiplier\"")
}
case "providerUuid":
if err := func() error {
s.ProviderUuid.Reset()
if err := s.ProviderUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"providerUuid\"")
}
case "tags":
if err := func() error {
s.Tags = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.Tags = append(s.Tags, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"tags\"")
}
case "activePluginUuid":
if err := func() error {
s.ActivePluginUuid.Reset()
if err := s.ActivePluginUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"activePluginUuid\"")
}
case "note":
if err := func() error {
s.Note.Reset()
if err := s.Note.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"note\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode BulkNodesUpdateRequestFields")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *BulkNodesUpdateRequestFields) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BulkNodesUpdateRequestFields) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *BulkUpdateUsersRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *BulkUpdateUsersRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuids")
e.ArrStart()
for _, elem := range s.Uuids {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
{
e.FieldStart("fields")
s.Fields.Encode(e)
}
}
var jsonFieldsNameOfBulkUpdateUsersRequest = [2]string{
0: "uuids",
1: "fields",
}
// Decode decodes BulkUpdateUsersRequest from json.
func (s *BulkUpdateUsersRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BulkUpdateUsersRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuids":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Uuids = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.Uuids = append(s.Uuids, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuids\"")
}
case "fields":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.Fields.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"fields\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode BulkUpdateUsersRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfBulkUpdateUsersRequest) {
name = jsonFieldsNameOfBulkUpdateUsersRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *BulkUpdateUsersRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BulkUpdateUsersRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *BulkUpdateUsersRequestFields) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *BulkUpdateUsersRequestFields) encodeFields(e *jx.Encoder) {
{
if s.Status.Set {
e.FieldStart("status")
s.Status.Encode(e)
}
}
{
if s.TrafficLimitBytes.Set {
e.FieldStart("trafficLimitBytes")
s.TrafficLimitBytes.Encode(e)
}
}
{
if s.TrafficLimitStrategy.Set {
e.FieldStart("trafficLimitStrategy")
s.TrafficLimitStrategy.Encode(e)
}
}
{
if s.ExpireAt.Set {
e.FieldStart("expireAt")
s.ExpireAt.Encode(e, json.EncodeDateTime)
}
}
{
if s.Description.Set {
e.FieldStart("description")
s.Description.Encode(e)
}
}
{
if s.TelegramId.Set {
e.FieldStart("telegramId")
s.TelegramId.Encode(e)
}
}
{
if s.Email.Set {
e.FieldStart("email")
s.Email.Encode(e)
}
}
{
if s.Tag.Set {
e.FieldStart("tag")
s.Tag.Encode(e)
}
}
{
if s.HwidDeviceLimit.Set {
e.FieldStart("hwidDeviceLimit")
s.HwidDeviceLimit.Encode(e)
}
}
{
if s.ExternalSquadUuid.Set {
e.FieldStart("externalSquadUuid")
s.ExternalSquadUuid.Encode(e)
}
}
}
var jsonFieldsNameOfBulkUpdateUsersRequestFields = [10]string{
0: "status",
1: "trafficLimitBytes",
2: "trafficLimitStrategy",
3: "expireAt",
4: "description",
5: "telegramId",
6: "email",
7: "tag",
8: "hwidDeviceLimit",
9: "externalSquadUuid",
}
// Decode decodes BulkUpdateUsersRequestFields from json.
func (s *BulkUpdateUsersRequestFields) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BulkUpdateUsersRequestFields to nil")
}
s.setDefaults()
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "status":
if err := func() error {
s.Status.Reset()
if err := s.Status.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"status\"")
}
case "trafficLimitBytes":
if err := func() error {
s.TrafficLimitBytes.Reset()
if err := s.TrafficLimitBytes.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"trafficLimitBytes\"")
}
case "trafficLimitStrategy":
if err := func() error {
s.TrafficLimitStrategy.Reset()
if err := s.TrafficLimitStrategy.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"trafficLimitStrategy\"")
}
case "expireAt":
if err := func() error {
s.ExpireAt.Reset()
if err := s.ExpireAt.Decode(d, json.DecodeDateTime); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"expireAt\"")
}
case "description":
if err := func() error {
s.Description.Reset()
if err := s.Description.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"description\"")
}
case "telegramId":
if err := func() error {
s.TelegramId.Reset()
if err := s.TelegramId.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"telegramId\"")
}
case "email":
if err := func() error {
s.Email.Reset()
if err := s.Email.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"email\"")
}
case "tag":
if err := func() error {
s.Tag.Reset()
if err := s.Tag.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"tag\"")
}
case "hwidDeviceLimit":
if err := func() error {
s.HwidDeviceLimit.Reset()
if err := s.HwidDeviceLimit.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"hwidDeviceLimit\"")
}
case "externalSquadUuid":
if err := func() error {
s.ExternalSquadUuid.Reset()
if err := s.ExternalSquadUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"externalSquadUuid\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode BulkUpdateUsersRequestFields")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *BulkUpdateUsersRequestFields) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BulkUpdateUsersRequestFields) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes BulkUpdateUsersRequestFieldsStatus as json.
func (s BulkUpdateUsersRequestFieldsStatus) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes BulkUpdateUsersRequestFieldsStatus from json.
func (s *BulkUpdateUsersRequestFieldsStatus) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BulkUpdateUsersRequestFieldsStatus to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch BulkUpdateUsersRequestFieldsStatus(v) {
case BulkUpdateUsersRequestFieldsStatusACTIVE:
*s = BulkUpdateUsersRequestFieldsStatusACTIVE
case BulkUpdateUsersRequestFieldsStatusDISABLED:
*s = BulkUpdateUsersRequestFieldsStatusDISABLED
case BulkUpdateUsersRequestFieldsStatusLIMITED:
*s = BulkUpdateUsersRequestFieldsStatusLIMITED
case BulkUpdateUsersRequestFieldsStatusEXPIRED:
*s = BulkUpdateUsersRequestFieldsStatusEXPIRED
default:
*s = BulkUpdateUsersRequestFieldsStatus(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s BulkUpdateUsersRequestFieldsStatus) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BulkUpdateUsersRequestFieldsStatus) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes BulkUpdateUsersRequestFieldsTrafficLimitStrategy as json.
func (s BulkUpdateUsersRequestFieldsTrafficLimitStrategy) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes BulkUpdateUsersRequestFieldsTrafficLimitStrategy from json.
func (s *BulkUpdateUsersRequestFieldsTrafficLimitStrategy) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BulkUpdateUsersRequestFieldsTrafficLimitStrategy to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch BulkUpdateUsersRequestFieldsTrafficLimitStrategy(v) {
case BulkUpdateUsersRequestFieldsTrafficLimitStrategyNORESET:
*s = BulkUpdateUsersRequestFieldsTrafficLimitStrategyNORESET
case BulkUpdateUsersRequestFieldsTrafficLimitStrategyDAY:
*s = BulkUpdateUsersRequestFieldsTrafficLimitStrategyDAY
case BulkUpdateUsersRequestFieldsTrafficLimitStrategyWEEK:
*s = BulkUpdateUsersRequestFieldsTrafficLimitStrategyWEEK
case BulkUpdateUsersRequestFieldsTrafficLimitStrategyMONTH:
*s = BulkUpdateUsersRequestFieldsTrafficLimitStrategyMONTH
case BulkUpdateUsersRequestFieldsTrafficLimitStrategyMONTHROLLING:
*s = BulkUpdateUsersRequestFieldsTrafficLimitStrategyMONTHROLLING
default:
*s = BulkUpdateUsersRequestFieldsTrafficLimitStrategy(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s BulkUpdateUsersRequestFieldsTrafficLimitStrategy) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BulkUpdateUsersRequestFieldsTrafficLimitStrategy) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *BulkUpdateUsersSquadsRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *BulkUpdateUsersSquadsRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuids")
e.ArrStart()
for _, elem := range s.Uuids {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
{
e.FieldStart("activeInternalSquads")
e.ArrStart()
for _, elem := range s.ActiveInternalSquads {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfBulkUpdateUsersSquadsRequest = [2]string{
0: "uuids",
1: "activeInternalSquads",
}
// Decode decodes BulkUpdateUsersSquadsRequest from json.
func (s *BulkUpdateUsersSquadsRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BulkUpdateUsersSquadsRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuids":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Uuids = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.Uuids = append(s.Uuids, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuids\"")
}
case "activeInternalSquads":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.ActiveInternalSquads = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.ActiveInternalSquads = append(s.ActiveInternalSquads, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"activeInternalSquads\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode BulkUpdateUsersSquadsRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfBulkUpdateUsersSquadsRequest) {
name = jsonFieldsNameOfBulkUpdateUsersSquadsRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *BulkUpdateUsersSquadsRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BulkUpdateUsersSquadsRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *BulkUuidsRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *BulkUuidsRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuids")
e.ArrStart()
for _, elem := range s.Uuids {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfBulkUuidsRequest = [1]string{
0: "uuids",
}
// Decode decodes BulkUuidsRequest from json.
func (s *BulkUuidsRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BulkUuidsRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuids":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Uuids = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.Uuids = append(s.Uuids, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuids\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode BulkUuidsRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfBulkUuidsRequest) {
name = jsonFieldsNameOfBulkUuidsRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *BulkUuidsRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BulkUuidsRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *BulkUuidsRequest2) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *BulkUuidsRequest2) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuids")
e.ArrStart()
for _, elem := range s.Uuids {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfBulkUuidsRequest2 = [1]string{
0: "uuids",
}
// Decode decodes BulkUuidsRequest2 from json.
func (s *BulkUuidsRequest2) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode BulkUuidsRequest2 to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuids":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Uuids = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.Uuids = append(s.Uuids, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuids\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode BulkUuidsRequest2")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfBulkUuidsRequest2) {
name = jsonFieldsNameOfBulkUuidsRequest2[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *BulkUuidsRequest2) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *BulkUuidsRequest2) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ByAppItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ByAppItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("app")
e.Str(s.App)
}
{
e.FieldStart("count")
e.Float64(s.Count)
}
}
var jsonFieldsNameOfByAppItem = [2]string{
0: "app",
1: "count",
}
// Decode decodes ByAppItem from json.
func (s *ByAppItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ByAppItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "app":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.App = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"app\"")
}
case "count":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.Count = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"count\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ByAppItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfByAppItem) {
name = jsonFieldsNameOfByAppItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ByAppItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ByAppItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *CloneNodePluginRequestRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *CloneNodePluginRequestRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("cloneFromUuid")
json.EncodeUUID(e, s.CloneFromUuid)
}
}
var jsonFieldsNameOfCloneNodePluginRequestRequest = [1]string{
0: "cloneFromUuid",
}
// Decode decodes CloneNodePluginRequestRequest from json.
func (s *CloneNodePluginRequestRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode CloneNodePluginRequestRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "cloneFromUuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.CloneFromUuid = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"cloneFromUuid\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode CloneNodePluginRequestRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfCloneNodePluginRequestRequest) {
name = jsonFieldsNameOfCloneNodePluginRequestRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *CloneNodePluginRequestRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *CloneNodePluginRequestRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *Condition) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *Condition) encodeFields(e *jx.Encoder) {
{
e.FieldStart("headerName")
e.Str(s.HeaderName)
}
{
e.FieldStart("operator")
s.Operator.Encode(e)
}
{
e.FieldStart("value")
e.Str(s.Value)
}
{
e.FieldStart("caseSensitive")
e.Bool(s.CaseSensitive)
}
}
var jsonFieldsNameOfCondition = [4]string{
0: "headerName",
1: "operator",
2: "value",
3: "caseSensitive",
}
// Decode decodes Condition from json.
func (s *Condition) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode Condition to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "headerName":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.HeaderName = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"headerName\"")
}
case "operator":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.Operator.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"operator\"")
}
case "value":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.Value = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"value\"")
}
case "caseSensitive":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Bool()
s.CaseSensitive = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"caseSensitive\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode Condition")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00001111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfCondition) {
name = jsonFieldsNameOfCondition[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *Condition) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *Condition) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes ConditionOperator as json.
func (s ConditionOperator) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes ConditionOperator from json.
func (s *ConditionOperator) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ConditionOperator to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch ConditionOperator(v) {
case ConditionOperatorEQUALS:
*s = ConditionOperatorEQUALS
case ConditionOperatorNOTEQUALS:
*s = ConditionOperatorNOTEQUALS
case ConditionOperatorCONTAINS:
*s = ConditionOperatorCONTAINS
case ConditionOperatorNOTCONTAINS:
*s = ConditionOperatorNOTCONTAINS
case ConditionOperatorSTARTSWITH:
*s = ConditionOperatorSTARTSWITH
case ConditionOperatorNOTSTARTSWITH:
*s = ConditionOperatorNOTSTARTSWITH
case ConditionOperatorENDSWITH:
*s = ConditionOperatorENDSWITH
case ConditionOperatorNOTENDSWITH:
*s = ConditionOperatorNOTENDSWITH
case ConditionOperatorREGEX:
*s = ConditionOperatorREGEX
case ConditionOperatorNOTREGEX:
*s = ConditionOperatorNOTREGEX
default:
*s = ConditionOperator(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s ConditionOperator) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ConditionOperator) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *Config) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *Config) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("viewPosition")
e.Int(s.ViewPosition)
}
{
e.FieldStart("name")
e.Str(s.Name)
}
{
if len(s.Config) != 0 {
e.FieldStart("config")
e.Raw(s.Config)
}
}
}
var jsonFieldsNameOfConfig = [4]string{
0: "uuid",
1: "viewPosition",
2: "name",
3: "config",
}
// Decode decodes Config from json.
func (s *Config) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode Config to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "viewPosition":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Int()
s.ViewPosition = int(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"viewPosition\"")
}
case "name":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "config":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.RawAppend(nil)
s.Config = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"config\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode Config")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00001111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfConfig) {
name = jsonFieldsNameOfConfig[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *Config) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *Config) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ConfigProfile) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ConfigProfile) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("viewPosition")
e.Int(s.ViewPosition)
}
{
e.FieldStart("name")
e.Str(s.Name)
}
{
if len(s.Config) != 0 {
e.FieldStart("config")
e.Raw(s.Config)
}
}
{
e.FieldStart("inbounds")
e.ArrStart()
for _, elem := range s.Inbounds {
elem.Encode(e)
}
e.ArrEnd()
}
{
e.FieldStart("nodes")
e.ArrStart()
for _, elem := range s.Nodes {
elem.Encode(e)
}
e.ArrEnd()
}
{
e.FieldStart("createdAt")
json.EncodeDateTime(e, s.CreatedAt)
}
{
e.FieldStart("updatedAt")
json.EncodeDateTime(e, s.UpdatedAt)
}
}
var jsonFieldsNameOfConfigProfile = [8]string{
0: "uuid",
1: "viewPosition",
2: "name",
3: "config",
4: "inbounds",
5: "nodes",
6: "createdAt",
7: "updatedAt",
}
// Decode decodes ConfigProfile from json.
func (s *ConfigProfile) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ConfigProfile to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "viewPosition":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Int()
s.ViewPosition = int(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"viewPosition\"")
}
case "name":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "config":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.RawAppend(nil)
s.Config = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"config\"")
}
case "inbounds":
requiredBitSet[0] |= 1 << 4
if err := func() error {
s.Inbounds = make([]Inbound, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem Inbound
if err := elem.Decode(d); err != nil {
return err
}
s.Inbounds = append(s.Inbounds, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"inbounds\"")
}
case "nodes":
requiredBitSet[0] |= 1 << 5
if err := func() error {
s.Nodes = make([]Node, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem Node
if err := elem.Decode(d); err != nil {
return err
}
s.Nodes = append(s.Nodes, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodes\"")
}
case "createdAt":
requiredBitSet[0] |= 1 << 6
if err := func() error {
v, err := json.DecodeDateTime(d)
s.CreatedAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"createdAt\"")
}
case "updatedAt":
requiredBitSet[0] |= 1 << 7
if err := func() error {
v, err := json.DecodeDateTime(d)
s.UpdatedAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"updatedAt\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ConfigProfile")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b11111111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfConfigProfile) {
name = jsonFieldsNameOfConfigProfile[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ConfigProfile) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ConfigProfile) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ConfigProfileItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ConfigProfileItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("activeConfigProfileUuid")
s.ActiveConfigProfileUuid.Encode(e)
}
{
e.FieldStart("activeInbounds")
e.ArrStart()
for _, elem := range s.ActiveInbounds {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfConfigProfileItem = [2]string{
0: "activeConfigProfileUuid",
1: "activeInbounds",
}
// Decode decodes ConfigProfileItem from json.
func (s *ConfigProfileItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ConfigProfileItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "activeConfigProfileUuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.ActiveConfigProfileUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"activeConfigProfileUuid\"")
}
case "activeInbounds":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.ActiveInbounds = make([]Inbound, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem Inbound
if err := elem.Decode(d); err != nil {
return err
}
s.ActiveInbounds = append(s.ActiveInbounds, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"activeInbounds\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ConfigProfileItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfConfigProfileItem) {
name = jsonFieldsNameOfConfigProfileItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ConfigProfileItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ConfigProfileItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ConfigProfileRef) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ConfigProfileRef) encodeFields(e *jx.Encoder) {
{
e.FieldStart("activeConfigProfileUuid")
json.EncodeUUID(e, s.ActiveConfigProfileUuid)
}
{
e.FieldStart("activeInbounds")
e.ArrStart()
for _, elem := range s.ActiveInbounds {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfConfigProfileRef = [2]string{
0: "activeConfigProfileUuid",
1: "activeInbounds",
}
// Decode decodes ConfigProfileRef from json.
func (s *ConfigProfileRef) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ConfigProfileRef to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "activeConfigProfileUuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.ActiveConfigProfileUuid = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"activeConfigProfileUuid\"")
}
case "activeInbounds":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.ActiveInbounds = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.ActiveInbounds = append(s.ActiveInbounds, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"activeInbounds\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ConfigProfileRef")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfConfigProfileRef) {
name = jsonFieldsNameOfConfigProfileRef[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ConfigProfileRef) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ConfigProfileRef) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ConfigProfileResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ConfigProfileResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfConfigProfileResponse = [1]string{
0: "response",
}
// Decode decodes ConfigProfileResponse from json.
func (s *ConfigProfileResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ConfigProfileResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ConfigProfileResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfConfigProfileResponse) {
name = jsonFieldsNameOfConfigProfileResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ConfigProfileResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ConfigProfileResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ConfigProfilesResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ConfigProfilesResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfConfigProfilesResponse = [1]string{
0: "response",
}
// Decode decodes ConfigProfilesResponse from json.
func (s *ConfigProfilesResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ConfigProfilesResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ConfigProfilesResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfConfigProfilesResponse) {
name = jsonFieldsNameOfConfigProfilesResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ConfigProfilesResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ConfigProfilesResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ConfigProfilesResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ConfigProfilesResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("total")
e.Float64(s.Total)
}
{
e.FieldStart("configProfiles")
e.ArrStart()
for _, elem := range s.ConfigProfiles {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfConfigProfilesResponseResponse = [2]string{
0: "total",
1: "configProfiles",
}
// Decode decodes ConfigProfilesResponseResponse from json.
func (s *ConfigProfilesResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ConfigProfilesResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "total":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.Total = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"total\"")
}
case "configProfiles":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.ConfigProfiles = make([]ConfigProfile, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem ConfigProfile
if err := elem.Decode(d); err != nil {
return err
}
s.ConfigProfiles = append(s.ConfigProfiles, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"configProfiles\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ConfigProfilesResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfConfigProfilesResponseResponse) {
name = jsonFieldsNameOfConfigProfilesResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ConfigProfilesResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ConfigProfilesResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *CreateApiTokenRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *CreateApiTokenRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("name")
e.Str(s.Name)
}
{
e.FieldStart("expiresInDays")
e.Float64(s.ExpiresInDays)
}
{
if s.Scopes != nil {
e.FieldStart("scopes")
e.ArrStart()
for _, elem := range s.Scopes {
e.Str(elem)
}
e.ArrEnd()
}
}
}
var jsonFieldsNameOfCreateApiTokenRequest = [3]string{
0: "name",
1: "expiresInDays",
2: "scopes",
}
// Decode decodes CreateApiTokenRequest from json.
func (s *CreateApiTokenRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode CreateApiTokenRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "name":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "expiresInDays":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.ExpiresInDays = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"expiresInDays\"")
}
case "scopes":
if err := func() error {
s.Scopes = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.Scopes = append(s.Scopes, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"scopes\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode CreateApiTokenRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfCreateApiTokenRequest) {
name = jsonFieldsNameOfCreateApiTokenRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *CreateApiTokenRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *CreateApiTokenRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *CreateApiTokenResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *CreateApiTokenResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfCreateApiTokenResponse = [1]string{
0: "response",
}
// Decode decodes CreateApiTokenResponse from json.
func (s *CreateApiTokenResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode CreateApiTokenResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode CreateApiTokenResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfCreateApiTokenResponse) {
name = jsonFieldsNameOfCreateApiTokenResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *CreateApiTokenResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *CreateApiTokenResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *CreateApiTokenResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *CreateApiTokenResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("name")
e.Str(s.Name)
}
{
e.FieldStart("expireAt")
json.EncodeDateTime(e, s.ExpireAt)
}
{
e.FieldStart("scopes")
e.ArrStart()
for _, elem := range s.Scopes {
e.Str(elem)
}
e.ArrEnd()
}
{
e.FieldStart("createdAt")
json.EncodeDateTime(e, s.CreatedAt)
}
{
e.FieldStart("updatedAt")
json.EncodeDateTime(e, s.UpdatedAt)
}
{
e.FieldStart("token")
e.Str(s.Token)
}
}
var jsonFieldsNameOfCreateApiTokenResponseResponse = [7]string{
0: "uuid",
1: "name",
2: "expireAt",
3: "scopes",
4: "createdAt",
5: "updatedAt",
6: "token",
}
// Decode decodes CreateApiTokenResponseResponse from json.
func (s *CreateApiTokenResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode CreateApiTokenResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "name":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "expireAt":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := json.DecodeDateTime(d)
s.ExpireAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"expireAt\"")
}
case "scopes":
requiredBitSet[0] |= 1 << 3
if err := func() error {
s.Scopes = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.Scopes = append(s.Scopes, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"scopes\"")
}
case "createdAt":
requiredBitSet[0] |= 1 << 4
if err := func() error {
v, err := json.DecodeDateTime(d)
s.CreatedAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"createdAt\"")
}
case "updatedAt":
requiredBitSet[0] |= 1 << 5
if err := func() error {
v, err := json.DecodeDateTime(d)
s.UpdatedAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"updatedAt\"")
}
case "token":
requiredBitSet[0] |= 1 << 6
if err := func() error {
v, err := d.Str()
s.Token = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"token\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode CreateApiTokenResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b01111111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfCreateApiTokenResponseResponse) {
name = jsonFieldsNameOfCreateApiTokenResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *CreateApiTokenResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *CreateApiTokenResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *CreateConfigProfileRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *CreateConfigProfileRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("name")
e.Str(s.Name)
}
{
e.FieldStart("config")
s.Config.Encode(e)
}
}
var jsonFieldsNameOfCreateConfigProfileRequest = [2]string{
0: "name",
1: "config",
}
// Decode decodes CreateConfigProfileRequest from json.
func (s *CreateConfigProfileRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode CreateConfigProfileRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "name":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "config":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.Config.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"config\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode CreateConfigProfileRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfCreateConfigProfileRequest) {
name = jsonFieldsNameOfCreateConfigProfileRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *CreateConfigProfileRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *CreateConfigProfileRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *CreateConfigProfileRequestConfig) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *CreateConfigProfileRequestConfig) encodeFields(e *jx.Encoder) {
}
var jsonFieldsNameOfCreateConfigProfileRequestConfig = [0]string{}
// Decode decodes CreateConfigProfileRequestConfig from json.
func (s *CreateConfigProfileRequestConfig) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode CreateConfigProfileRequestConfig to nil")
}
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
default:
return d.Skip()
}
}); err != nil {
return errors.Wrap(err, "decode CreateConfigProfileRequestConfig")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *CreateConfigProfileRequestConfig) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *CreateConfigProfileRequestConfig) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *CreateExternalSquadRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *CreateExternalSquadRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("name")
e.Str(s.Name)
}
}
var jsonFieldsNameOfCreateExternalSquadRequest = [1]string{
0: "name",
}
// Decode decodes CreateExternalSquadRequest from json.
func (s *CreateExternalSquadRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode CreateExternalSquadRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "name":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode CreateExternalSquadRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfCreateExternalSquadRequest) {
name = jsonFieldsNameOfCreateExternalSquadRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *CreateExternalSquadRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *CreateExternalSquadRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *CreateHostRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *CreateHostRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("inbound")
s.Inbound.Encode(e)
}
{
e.FieldStart("remark")
e.Str(s.Remark)
}
{
e.FieldStart("address")
e.Str(s.Address)
}
{
e.FieldStart("port")
e.Int(s.Port)
}
{
if s.Path.Set {
e.FieldStart("path")
s.Path.Encode(e)
}
}
{
if s.Sni.Set {
e.FieldStart("sni")
s.Sni.Encode(e)
}
}
{
if s.Host.Set {
e.FieldStart("host")
s.Host.Encode(e)
}
}
{
if s.Alpn.Set {
e.FieldStart("alpn")
s.Alpn.Encode(e)
}
}
{
if s.Fingerprint.Set {
e.FieldStart("fingerprint")
s.Fingerprint.Encode(e)
}
}
{
if s.IsDisabled.Set {
e.FieldStart("isDisabled")
s.IsDisabled.Encode(e)
}
}
{
if s.SecurityLayer.Set {
e.FieldStart("securityLayer")
s.SecurityLayer.Encode(e)
}
}
{
if len(s.XhttpExtraParams) != 0 {
e.FieldStart("xhttpExtraParams")
e.Raw(s.XhttpExtraParams)
}
}
{
if len(s.MuxParams) != 0 {
e.FieldStart("muxParams")
e.Raw(s.MuxParams)
}
}
{
if len(s.SockoptParams) != 0 {
e.FieldStart("sockoptParams")
e.Raw(s.SockoptParams)
}
}
{
if len(s.FinalMask) != 0 {
e.FieldStart("finalMask")
e.Raw(s.FinalMask)
}
}
{
if s.ServerDescription.Set {
e.FieldStart("serverDescription")
s.ServerDescription.Encode(e)
}
}
{
if s.Tags != nil {
e.FieldStart("tags")
e.ArrStart()
for _, elem := range s.Tags {
e.Str(elem)
}
e.ArrEnd()
}
}
{
if s.IsHidden.Set {
e.FieldStart("isHidden")
s.IsHidden.Encode(e)
}
}
{
if s.OverrideSniFromAddress.Set {
e.FieldStart("overrideSniFromAddress")
s.OverrideSniFromAddress.Encode(e)
}
}
{
if s.KeepSniBlank.Set {
e.FieldStart("keepSniBlank")
s.KeepSniBlank.Encode(e)
}
}
{
if s.PinnedPeerCertSha256.Set {
e.FieldStart("pinnedPeerCertSha256")
s.PinnedPeerCertSha256.Encode(e)
}
}
{
if s.VerifyPeerCertByName.Set {
e.FieldStart("verifyPeerCertByName")
s.VerifyPeerCertByName.Encode(e)
}
}
{
if s.VlessRouteId.Set {
e.FieldStart("vlessRouteId")
s.VlessRouteId.Encode(e)
}
}
{
if s.ShuffleHost.Set {
e.FieldStart("shuffleHost")
s.ShuffleHost.Encode(e)
}
}
{
if s.MihomoX25519.Set {
e.FieldStart("mihomoX25519")
s.MihomoX25519.Encode(e)
}
}
{
if s.MihomoIpVersion.Set {
e.FieldStart("mihomoIpVersion")
s.MihomoIpVersion.Encode(e)
}
}
{
if s.Nodes != nil {
e.FieldStart("nodes")
e.ArrStart()
for _, elem := range s.Nodes {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
}
{
if s.XrayJsonTemplateUuid.Set {
e.FieldStart("xrayJsonTemplateUuid")
s.XrayJsonTemplateUuid.Encode(e)
}
}
{
if s.ExcludedInternalSquads != nil {
e.FieldStart("excludedInternalSquads")
e.ArrStart()
for _, elem := range s.ExcludedInternalSquads {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
}
{
if s.ExcludeFromSubscriptionTypes != nil {
e.FieldStart("excludeFromSubscriptionTypes")
e.ArrStart()
for _, elem := range s.ExcludeFromSubscriptionTypes {
elem.Encode(e)
}
e.ArrEnd()
}
}
}
var jsonFieldsNameOfCreateHostRequest = [30]string{
0: "inbound",
1: "remark",
2: "address",
3: "port",
4: "path",
5: "sni",
6: "host",
7: "alpn",
8: "fingerprint",
9: "isDisabled",
10: "securityLayer",
11: "xhttpExtraParams",
12: "muxParams",
13: "sockoptParams",
14: "finalMask",
15: "serverDescription",
16: "tags",
17: "isHidden",
18: "overrideSniFromAddress",
19: "keepSniBlank",
20: "pinnedPeerCertSha256",
21: "verifyPeerCertByName",
22: "vlessRouteId",
23: "shuffleHost",
24: "mihomoX25519",
25: "mihomoIpVersion",
26: "nodes",
27: "xrayJsonTemplateUuid",
28: "excludedInternalSquads",
29: "excludeFromSubscriptionTypes",
}
// Decode decodes CreateHostRequest from json.
func (s *CreateHostRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode CreateHostRequest to nil")
}
var requiredBitSet [4]uint8
s.setDefaults()
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "inbound":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Inbound.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"inbound\"")
}
case "remark":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Remark = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"remark\"")
}
case "address":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.Address = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"address\"")
}
case "port":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Int()
s.Port = int(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"port\"")
}
case "path":
if err := func() error {
s.Path.Reset()
if err := s.Path.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"path\"")
}
case "sni":
if err := func() error {
s.Sni.Reset()
if err := s.Sni.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"sni\"")
}
case "host":
if err := func() error {
s.Host.Reset()
if err := s.Host.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"host\"")
}
case "alpn":
if err := func() error {
s.Alpn.Reset()
if err := s.Alpn.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"alpn\"")
}
case "fingerprint":
if err := func() error {
s.Fingerprint.Reset()
if err := s.Fingerprint.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"fingerprint\"")
}
case "isDisabled":
if err := func() error {
s.IsDisabled.Reset()
if err := s.IsDisabled.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isDisabled\"")
}
case "securityLayer":
if err := func() error {
s.SecurityLayer.Reset()
if err := s.SecurityLayer.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"securityLayer\"")
}
case "xhttpExtraParams":
if err := func() error {
v, err := d.RawAppend(nil)
s.XhttpExtraParams = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"xhttpExtraParams\"")
}
case "muxParams":
if err := func() error {
v, err := d.RawAppend(nil)
s.MuxParams = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"muxParams\"")
}
case "sockoptParams":
if err := func() error {
v, err := d.RawAppend(nil)
s.SockoptParams = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"sockoptParams\"")
}
case "finalMask":
if err := func() error {
v, err := d.RawAppend(nil)
s.FinalMask = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"finalMask\"")
}
case "serverDescription":
if err := func() error {
s.ServerDescription.Reset()
if err := s.ServerDescription.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"serverDescription\"")
}
case "tags":
if err := func() error {
s.Tags = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.Tags = append(s.Tags, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"tags\"")
}
case "isHidden":
if err := func() error {
s.IsHidden.Reset()
if err := s.IsHidden.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isHidden\"")
}
case "overrideSniFromAddress":
if err := func() error {
s.OverrideSniFromAddress.Reset()
if err := s.OverrideSniFromAddress.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"overrideSniFromAddress\"")
}
case "keepSniBlank":
if err := func() error {
s.KeepSniBlank.Reset()
if err := s.KeepSniBlank.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"keepSniBlank\"")
}
case "pinnedPeerCertSha256":
if err := func() error {
s.PinnedPeerCertSha256.Reset()
if err := s.PinnedPeerCertSha256.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"pinnedPeerCertSha256\"")
}
case "verifyPeerCertByName":
if err := func() error {
s.VerifyPeerCertByName.Reset()
if err := s.VerifyPeerCertByName.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"verifyPeerCertByName\"")
}
case "vlessRouteId":
if err := func() error {
s.VlessRouteId.Reset()
if err := s.VlessRouteId.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"vlessRouteId\"")
}
case "shuffleHost":
if err := func() error {
s.ShuffleHost.Reset()
if err := s.ShuffleHost.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"shuffleHost\"")
}
case "mihomoX25519":
if err := func() error {
s.MihomoX25519.Reset()
if err := s.MihomoX25519.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"mihomoX25519\"")
}
case "mihomoIpVersion":
if err := func() error {
s.MihomoIpVersion.Reset()
if err := s.MihomoIpVersion.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"mihomoIpVersion\"")
}
case "nodes":
if err := func() error {
s.Nodes = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.Nodes = append(s.Nodes, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodes\"")
}
case "xrayJsonTemplateUuid":
if err := func() error {
s.XrayJsonTemplateUuid.Reset()
if err := s.XrayJsonTemplateUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"xrayJsonTemplateUuid\"")
}
case "excludedInternalSquads":
if err := func() error {
s.ExcludedInternalSquads = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.ExcludedInternalSquads = append(s.ExcludedInternalSquads, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"excludedInternalSquads\"")
}
case "excludeFromSubscriptionTypes":
if err := func() error {
s.ExcludeFromSubscriptionTypes = make([]CreateHostRequestExcludeFromSubscriptionTypesItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem CreateHostRequestExcludeFromSubscriptionTypesItem
if err := elem.Decode(d); err != nil {
return err
}
s.ExcludeFromSubscriptionTypes = append(s.ExcludeFromSubscriptionTypes, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"excludeFromSubscriptionTypes\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode CreateHostRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [4]uint8{
0b00001111,
0b00000000,
0b00000000,
0b00000000,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfCreateHostRequest) {
name = jsonFieldsNameOfCreateHostRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *CreateHostRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *CreateHostRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes CreateHostRequestAlpn as json.
func (s CreateHostRequestAlpn) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes CreateHostRequestAlpn from json.
func (s *CreateHostRequestAlpn) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode CreateHostRequestAlpn to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch CreateHostRequestAlpn(v) {
case CreateHostRequestAlpnH3:
*s = CreateHostRequestAlpnH3
case CreateHostRequestAlpnH2:
*s = CreateHostRequestAlpnH2
case CreateHostRequestAlpnHTTP11:
*s = CreateHostRequestAlpnHTTP11
case CreateHostRequestAlpnH2HTTP11:
*s = CreateHostRequestAlpnH2HTTP11
case CreateHostRequestAlpnH3H2HTTP11:
*s = CreateHostRequestAlpnH3H2HTTP11
case CreateHostRequestAlpnH3H2:
*s = CreateHostRequestAlpnH3H2
default:
*s = CreateHostRequestAlpn(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s CreateHostRequestAlpn) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *CreateHostRequestAlpn) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes CreateHostRequestExcludeFromSubscriptionTypesItem as json.
func (s CreateHostRequestExcludeFromSubscriptionTypesItem) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes CreateHostRequestExcludeFromSubscriptionTypesItem from json.
func (s *CreateHostRequestExcludeFromSubscriptionTypesItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode CreateHostRequestExcludeFromSubscriptionTypesItem to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch CreateHostRequestExcludeFromSubscriptionTypesItem(v) {
case CreateHostRequestExcludeFromSubscriptionTypesItemXRAYJSON:
*s = CreateHostRequestExcludeFromSubscriptionTypesItemXRAYJSON
case CreateHostRequestExcludeFromSubscriptionTypesItemXRAYBASE64:
*s = CreateHostRequestExcludeFromSubscriptionTypesItemXRAYBASE64
case CreateHostRequestExcludeFromSubscriptionTypesItemMIHOMO:
*s = CreateHostRequestExcludeFromSubscriptionTypesItemMIHOMO
case CreateHostRequestExcludeFromSubscriptionTypesItemSTASH:
*s = CreateHostRequestExcludeFromSubscriptionTypesItemSTASH
case CreateHostRequestExcludeFromSubscriptionTypesItemCLASH:
*s = CreateHostRequestExcludeFromSubscriptionTypesItemCLASH
case CreateHostRequestExcludeFromSubscriptionTypesItemSINGBOX:
*s = CreateHostRequestExcludeFromSubscriptionTypesItemSINGBOX
default:
*s = CreateHostRequestExcludeFromSubscriptionTypesItem(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s CreateHostRequestExcludeFromSubscriptionTypesItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *CreateHostRequestExcludeFromSubscriptionTypesItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes CreateHostRequestMihomoIpVersion as json.
func (s CreateHostRequestMihomoIpVersion) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes CreateHostRequestMihomoIpVersion from json.
func (s *CreateHostRequestMihomoIpVersion) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode CreateHostRequestMihomoIpVersion to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch CreateHostRequestMihomoIpVersion(v) {
case CreateHostRequestMihomoIpVersionDual:
*s = CreateHostRequestMihomoIpVersionDual
case CreateHostRequestMihomoIpVersionIpv4:
*s = CreateHostRequestMihomoIpVersionIpv4
case CreateHostRequestMihomoIpVersionIpv6:
*s = CreateHostRequestMihomoIpVersionIpv6
case CreateHostRequestMihomoIpVersionIpv4Prefer:
*s = CreateHostRequestMihomoIpVersionIpv4Prefer
case CreateHostRequestMihomoIpVersionIpv6Prefer:
*s = CreateHostRequestMihomoIpVersionIpv6Prefer
default:
*s = CreateHostRequestMihomoIpVersion(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s CreateHostRequestMihomoIpVersion) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *CreateHostRequestMihomoIpVersion) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes CreateHostRequestSecurityLayer as json.
func (s CreateHostRequestSecurityLayer) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes CreateHostRequestSecurityLayer from json.
func (s *CreateHostRequestSecurityLayer) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode CreateHostRequestSecurityLayer to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch CreateHostRequestSecurityLayer(v) {
case CreateHostRequestSecurityLayerDEFAULT:
*s = CreateHostRequestSecurityLayerDEFAULT
case CreateHostRequestSecurityLayerTLS:
*s = CreateHostRequestSecurityLayerTLS
case CreateHostRequestSecurityLayerNONE:
*s = CreateHostRequestSecurityLayerNONE
default:
*s = CreateHostRequestSecurityLayer(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s CreateHostRequestSecurityLayer) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *CreateHostRequestSecurityLayer) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *CreateInfraBillingHistoryRecordRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *CreateInfraBillingHistoryRecordRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("providerUuid")
json.EncodeUUID(e, s.ProviderUuid)
}
{
e.FieldStart("amount")
e.Float64(s.Amount)
}
{
e.FieldStart("billedAt")
json.EncodeDateTime(e, s.BilledAt)
}
}
var jsonFieldsNameOfCreateInfraBillingHistoryRecordRequest = [3]string{
0: "providerUuid",
1: "amount",
2: "billedAt",
}
// Decode decodes CreateInfraBillingHistoryRecordRequest from json.
func (s *CreateInfraBillingHistoryRecordRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode CreateInfraBillingHistoryRecordRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "providerUuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.ProviderUuid = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"providerUuid\"")
}
case "amount":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.Amount = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"amount\"")
}
case "billedAt":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := json.DecodeDateTime(d)
s.BilledAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"billedAt\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode CreateInfraBillingHistoryRecordRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfCreateInfraBillingHistoryRecordRequest) {
name = jsonFieldsNameOfCreateInfraBillingHistoryRecordRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *CreateInfraBillingHistoryRecordRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *CreateInfraBillingHistoryRecordRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *CreateInfraBillingNodeRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *CreateInfraBillingNodeRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("providerUuid")
json.EncodeUUID(e, s.ProviderUuid)
}
{
e.FieldStart("nodeUuid")
s.NodeUuid.Encode(e)
}
{
e.FieldStart("name")
s.Name.Encode(e)
}
{
e.FieldStart("nextBillingAt")
json.EncodeDateTime(e, s.NextBillingAt)
}
}
var jsonFieldsNameOfCreateInfraBillingNodeRequest = [4]string{
0: "providerUuid",
1: "nodeUuid",
2: "name",
3: "nextBillingAt",
}
// Decode decodes CreateInfraBillingNodeRequest from json.
func (s *CreateInfraBillingNodeRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode CreateInfraBillingNodeRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "providerUuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.ProviderUuid = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"providerUuid\"")
}
case "nodeUuid":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.NodeUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodeUuid\"")
}
case "name":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.Name.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "nextBillingAt":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := json.DecodeDateTime(d)
s.NextBillingAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nextBillingAt\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode CreateInfraBillingNodeRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00001111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfCreateInfraBillingNodeRequest) {
name = jsonFieldsNameOfCreateInfraBillingNodeRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *CreateInfraBillingNodeRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *CreateInfraBillingNodeRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *CreateInfraProviderRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *CreateInfraProviderRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("name")
e.Str(s.Name)
}
{
if s.FaviconLink.Set {
e.FieldStart("faviconLink")
s.FaviconLink.Encode(e)
}
}
{
if s.LoginUrl.Set {
e.FieldStart("loginUrl")
s.LoginUrl.Encode(e)
}
}
}
var jsonFieldsNameOfCreateInfraProviderRequest = [3]string{
0: "name",
1: "faviconLink",
2: "loginUrl",
}
// Decode decodes CreateInfraProviderRequest from json.
func (s *CreateInfraProviderRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode CreateInfraProviderRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "name":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "faviconLink":
if err := func() error {
s.FaviconLink.Reset()
if err := s.FaviconLink.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"faviconLink\"")
}
case "loginUrl":
if err := func() error {
s.LoginUrl.Reset()
if err := s.LoginUrl.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"loginUrl\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode CreateInfraProviderRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfCreateInfraProviderRequest) {
name = jsonFieldsNameOfCreateInfraProviderRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *CreateInfraProviderRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *CreateInfraProviderRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *CreateInternalSquadRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *CreateInternalSquadRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("name")
e.Str(s.Name)
}
{
e.FieldStart("inbounds")
e.ArrStart()
for _, elem := range s.Inbounds {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfCreateInternalSquadRequest = [2]string{
0: "name",
1: "inbounds",
}
// Decode decodes CreateInternalSquadRequest from json.
func (s *CreateInternalSquadRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode CreateInternalSquadRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "name":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "inbounds":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.Inbounds = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.Inbounds = append(s.Inbounds, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"inbounds\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode CreateInternalSquadRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfCreateInternalSquadRequest) {
name = jsonFieldsNameOfCreateInternalSquadRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *CreateInternalSquadRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *CreateInternalSquadRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *CreateNodePluginRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *CreateNodePluginRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("name")
e.Str(s.Name)
}
}
var jsonFieldsNameOfCreateNodePluginRequest = [1]string{
0: "name",
}
// Decode decodes CreateNodePluginRequest from json.
func (s *CreateNodePluginRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode CreateNodePluginRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "name":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode CreateNodePluginRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfCreateNodePluginRequest) {
name = jsonFieldsNameOfCreateNodePluginRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *CreateNodePluginRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *CreateNodePluginRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *CreateNodePluginResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *CreateNodePluginResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfCreateNodePluginResponse = [1]string{
0: "response",
}
// Decode decodes CreateNodePluginResponse from json.
func (s *CreateNodePluginResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode CreateNodePluginResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode CreateNodePluginResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfCreateNodePluginResponse) {
name = jsonFieldsNameOfCreateNodePluginResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *CreateNodePluginResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *CreateNodePluginResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *CreateNodeRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *CreateNodeRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("name")
e.Str(s.Name)
}
{
e.FieldStart("address")
e.Str(s.Address)
}
{
if s.Port.Set {
e.FieldStart("port")
s.Port.Encode(e)
}
}
{
if s.ProxyUrl.Set {
e.FieldStart("proxyUrl")
s.ProxyUrl.Encode(e)
}
}
{
if s.IsTrafficTrackingActive.Set {
e.FieldStart("isTrafficTrackingActive")
s.IsTrafficTrackingActive.Encode(e)
}
}
{
if s.TrafficLimitBytes.Set {
e.FieldStart("trafficLimitBytes")
s.TrafficLimitBytes.Encode(e)
}
}
{
if s.NotifyPercent.Set {
e.FieldStart("notifyPercent")
s.NotifyPercent.Encode(e)
}
}
{
if s.TrafficResetDay.Set {
e.FieldStart("trafficResetDay")
s.TrafficResetDay.Encode(e)
}
}
{
if s.CountryCode.Set {
e.FieldStart("countryCode")
s.CountryCode.Encode(e)
}
}
{
if s.ConsumptionMultiplier.Set {
e.FieldStart("consumptionMultiplier")
s.ConsumptionMultiplier.Encode(e)
}
}
{
if s.NodeConsumptionMultiplier.Set {
e.FieldStart("nodeConsumptionMultiplier")
s.NodeConsumptionMultiplier.Encode(e)
}
}
{
e.FieldStart("configProfile")
s.ConfigProfile.Encode(e)
}
{
if s.ProviderUuid.Set {
e.FieldStart("providerUuid")
s.ProviderUuid.Encode(e)
}
}
{
if s.Tags != nil {
e.FieldStart("tags")
e.ArrStart()
for _, elem := range s.Tags {
e.Str(elem)
}
e.ArrEnd()
}
}
{
if s.ActivePluginUuid.Set {
e.FieldStart("activePluginUuid")
s.ActivePluginUuid.Encode(e)
}
}
{
if s.Note.Set {
e.FieldStart("note")
s.Note.Encode(e)
}
}
}
var jsonFieldsNameOfCreateNodeRequest = [16]string{
0: "name",
1: "address",
2: "port",
3: "proxyUrl",
4: "isTrafficTrackingActive",
5: "trafficLimitBytes",
6: "notifyPercent",
7: "trafficResetDay",
8: "countryCode",
9: "consumptionMultiplier",
10: "nodeConsumptionMultiplier",
11: "configProfile",
12: "providerUuid",
13: "tags",
14: "activePluginUuid",
15: "note",
}
// Decode decodes CreateNodeRequest from json.
func (s *CreateNodeRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode CreateNodeRequest to nil")
}
var requiredBitSet [2]uint8
s.setDefaults()
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "name":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "address":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Address = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"address\"")
}
case "port":
if err := func() error {
s.Port.Reset()
if err := s.Port.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"port\"")
}
case "proxyUrl":
if err := func() error {
s.ProxyUrl.Reset()
if err := s.ProxyUrl.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"proxyUrl\"")
}
case "isTrafficTrackingActive":
if err := func() error {
s.IsTrafficTrackingActive.Reset()
if err := s.IsTrafficTrackingActive.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isTrafficTrackingActive\"")
}
case "trafficLimitBytes":
if err := func() error {
s.TrafficLimitBytes.Reset()
if err := s.TrafficLimitBytes.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"trafficLimitBytes\"")
}
case "notifyPercent":
if err := func() error {
s.NotifyPercent.Reset()
if err := s.NotifyPercent.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"notifyPercent\"")
}
case "trafficResetDay":
if err := func() error {
s.TrafficResetDay.Reset()
if err := s.TrafficResetDay.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"trafficResetDay\"")
}
case "countryCode":
if err := func() error {
s.CountryCode.Reset()
if err := s.CountryCode.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"countryCode\"")
}
case "consumptionMultiplier":
if err := func() error {
s.ConsumptionMultiplier.Reset()
if err := s.ConsumptionMultiplier.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"consumptionMultiplier\"")
}
case "nodeConsumptionMultiplier":
if err := func() error {
s.NodeConsumptionMultiplier.Reset()
if err := s.NodeConsumptionMultiplier.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodeConsumptionMultiplier\"")
}
case "configProfile":
requiredBitSet[1] |= 1 << 3
if err := func() error {
if err := s.ConfigProfile.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"configProfile\"")
}
case "providerUuid":
if err := func() error {
s.ProviderUuid.Reset()
if err := s.ProviderUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"providerUuid\"")
}
case "tags":
if err := func() error {
s.Tags = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.Tags = append(s.Tags, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"tags\"")
}
case "activePluginUuid":
if err := func() error {
s.ActivePluginUuid.Reset()
if err := s.ActivePluginUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"activePluginUuid\"")
}
case "note":
if err := func() error {
s.Note.Reset()
if err := s.Note.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"note\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode CreateNodeRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [2]uint8{
0b00000011,
0b00001000,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfCreateNodeRequest) {
name = jsonFieldsNameOfCreateNodeRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *CreateNodeRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *CreateNodeRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *CreateSubscriptionPageConfigRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *CreateSubscriptionPageConfigRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("name")
e.Str(s.Name)
}
}
var jsonFieldsNameOfCreateSubscriptionPageConfigRequest = [1]string{
0: "name",
}
// Decode decodes CreateSubscriptionPageConfigRequest from json.
func (s *CreateSubscriptionPageConfigRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode CreateSubscriptionPageConfigRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "name":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode CreateSubscriptionPageConfigRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfCreateSubscriptionPageConfigRequest) {
name = jsonFieldsNameOfCreateSubscriptionPageConfigRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *CreateSubscriptionPageConfigRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *CreateSubscriptionPageConfigRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *CreateSubscriptionPageConfigResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *CreateSubscriptionPageConfigResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfCreateSubscriptionPageConfigResponse = [1]string{
0: "response",
}
// Decode decodes CreateSubscriptionPageConfigResponse from json.
func (s *CreateSubscriptionPageConfigResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode CreateSubscriptionPageConfigResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode CreateSubscriptionPageConfigResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfCreateSubscriptionPageConfigResponse) {
name = jsonFieldsNameOfCreateSubscriptionPageConfigResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *CreateSubscriptionPageConfigResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *CreateSubscriptionPageConfigResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *CreateSubscriptionTemplateRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *CreateSubscriptionTemplateRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("name")
e.Str(s.Name)
}
{
e.FieldStart("templateType")
s.TemplateType.Encode(e)
}
}
var jsonFieldsNameOfCreateSubscriptionTemplateRequest = [2]string{
0: "name",
1: "templateType",
}
// Decode decodes CreateSubscriptionTemplateRequest from json.
func (s *CreateSubscriptionTemplateRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode CreateSubscriptionTemplateRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "name":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "templateType":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.TemplateType.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"templateType\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode CreateSubscriptionTemplateRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfCreateSubscriptionTemplateRequest) {
name = jsonFieldsNameOfCreateSubscriptionTemplateRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *CreateSubscriptionTemplateRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *CreateSubscriptionTemplateRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes CreateSubscriptionTemplateRequestTemplateType as json.
func (s CreateSubscriptionTemplateRequestTemplateType) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes CreateSubscriptionTemplateRequestTemplateType from json.
func (s *CreateSubscriptionTemplateRequestTemplateType) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode CreateSubscriptionTemplateRequestTemplateType to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch CreateSubscriptionTemplateRequestTemplateType(v) {
case CreateSubscriptionTemplateRequestTemplateTypeXRAYJSON:
*s = CreateSubscriptionTemplateRequestTemplateTypeXRAYJSON
case CreateSubscriptionTemplateRequestTemplateTypeXRAYBASE64:
*s = CreateSubscriptionTemplateRequestTemplateTypeXRAYBASE64
case CreateSubscriptionTemplateRequestTemplateTypeMIHOMO:
*s = CreateSubscriptionTemplateRequestTemplateTypeMIHOMO
case CreateSubscriptionTemplateRequestTemplateTypeSTASH:
*s = CreateSubscriptionTemplateRequestTemplateTypeSTASH
case CreateSubscriptionTemplateRequestTemplateTypeCLASH:
*s = CreateSubscriptionTemplateRequestTemplateTypeCLASH
case CreateSubscriptionTemplateRequestTemplateTypeSINGBOX:
*s = CreateSubscriptionTemplateRequestTemplateTypeSINGBOX
default:
*s = CreateSubscriptionTemplateRequestTemplateType(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s CreateSubscriptionTemplateRequestTemplateType) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *CreateSubscriptionTemplateRequestTemplateType) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *CreateUserHwidDeviceRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *CreateUserHwidDeviceRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("hwid")
e.Str(s.Hwid)
}
{
e.FieldStart("userUuid")
json.EncodeUUID(e, s.UserUuid)
}
{
if s.Platform.Set {
e.FieldStart("platform")
s.Platform.Encode(e)
}
}
{
if s.OsVersion.Set {
e.FieldStart("osVersion")
s.OsVersion.Encode(e)
}
}
{
if s.DeviceModel.Set {
e.FieldStart("deviceModel")
s.DeviceModel.Encode(e)
}
}
{
if s.UserAgent.Set {
e.FieldStart("userAgent")
s.UserAgent.Encode(e)
}
}
{
if s.RequestIp.Set {
e.FieldStart("requestIp")
s.RequestIp.Encode(e)
}
}
}
var jsonFieldsNameOfCreateUserHwidDeviceRequest = [7]string{
0: "hwid",
1: "userUuid",
2: "platform",
3: "osVersion",
4: "deviceModel",
5: "userAgent",
6: "requestIp",
}
// Decode decodes CreateUserHwidDeviceRequest from json.
func (s *CreateUserHwidDeviceRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode CreateUserHwidDeviceRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "hwid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Hwid = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"hwid\"")
}
case "userUuid":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := json.DecodeUUID(d)
s.UserUuid = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"userUuid\"")
}
case "platform":
if err := func() error {
s.Platform.Reset()
if err := s.Platform.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"platform\"")
}
case "osVersion":
if err := func() error {
s.OsVersion.Reset()
if err := s.OsVersion.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"osVersion\"")
}
case "deviceModel":
if err := func() error {
s.DeviceModel.Reset()
if err := s.DeviceModel.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"deviceModel\"")
}
case "userAgent":
if err := func() error {
s.UserAgent.Reset()
if err := s.UserAgent.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"userAgent\"")
}
case "requestIp":
if err := func() error {
s.RequestIp.Reset()
if err := s.RequestIp.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"requestIp\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode CreateUserHwidDeviceRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfCreateUserHwidDeviceRequest) {
name = jsonFieldsNameOfCreateUserHwidDeviceRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *CreateUserHwidDeviceRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *CreateUserHwidDeviceRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *CreateUserRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *CreateUserRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("username")
e.Str(s.Username)
}
{
if s.Status.Set {
e.FieldStart("status")
s.Status.Encode(e)
}
}
{
if s.ShortUuid.Set {
e.FieldStart("shortUuid")
s.ShortUuid.Encode(e)
}
}
{
if s.TrojanPassword.Set {
e.FieldStart("trojanPassword")
s.TrojanPassword.Encode(e)
}
}
{
if s.VlessUuid.Set {
e.FieldStart("vlessUuid")
s.VlessUuid.Encode(e)
}
}
{
if s.SsPassword.Set {
e.FieldStart("ssPassword")
s.SsPassword.Encode(e)
}
}
{
if s.TrafficLimitBytes.Set {
e.FieldStart("trafficLimitBytes")
s.TrafficLimitBytes.Encode(e)
}
}
{
if s.TrafficLimitStrategy.Set {
e.FieldStart("trafficLimitStrategy")
s.TrafficLimitStrategy.Encode(e)
}
}
{
e.FieldStart("expireAt")
json.EncodeDateTime(e, s.ExpireAt)
}
{
if s.CreatedAt.Set {
e.FieldStart("createdAt")
s.CreatedAt.Encode(e, json.EncodeDateTime)
}
}
{
if s.LastTrafficResetAt.Set {
e.FieldStart("lastTrafficResetAt")
s.LastTrafficResetAt.Encode(e, json.EncodeDateTime)
}
}
{
if s.Description.Set {
e.FieldStart("description")
s.Description.Encode(e)
}
}
{
if s.Tag.Set {
e.FieldStart("tag")
s.Tag.Encode(e)
}
}
{
if s.TelegramId.Set {
e.FieldStart("telegramId")
s.TelegramId.Encode(e)
}
}
{
if s.Email.Set {
e.FieldStart("email")
s.Email.Encode(e)
}
}
{
if s.HwidDeviceLimit.Set {
e.FieldStart("hwidDeviceLimit")
s.HwidDeviceLimit.Encode(e)
}
}
{
if s.ActiveInternalSquads != nil {
e.FieldStart("activeInternalSquads")
e.ArrStart()
for _, elem := range s.ActiveInternalSquads {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
}
{
if s.UUID.Set {
e.FieldStart("uuid")
s.UUID.Encode(e)
}
}
{
if s.ExternalSquadUuid.Set {
e.FieldStart("externalSquadUuid")
s.ExternalSquadUuid.Encode(e)
}
}
}
var jsonFieldsNameOfCreateUserRequest = [19]string{
0: "username",
1: "status",
2: "shortUuid",
3: "trojanPassword",
4: "vlessUuid",
5: "ssPassword",
6: "trafficLimitBytes",
7: "trafficLimitStrategy",
8: "expireAt",
9: "createdAt",
10: "lastTrafficResetAt",
11: "description",
12: "tag",
13: "telegramId",
14: "email",
15: "hwidDeviceLimit",
16: "activeInternalSquads",
17: "uuid",
18: "externalSquadUuid",
}
// Decode decodes CreateUserRequest from json.
func (s *CreateUserRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode CreateUserRequest to nil")
}
var requiredBitSet [3]uint8
s.setDefaults()
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "username":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Username = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"username\"")
}
case "status":
if err := func() error {
s.Status.Reset()
if err := s.Status.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"status\"")
}
case "shortUuid":
if err := func() error {
s.ShortUuid.Reset()
if err := s.ShortUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"shortUuid\"")
}
case "trojanPassword":
if err := func() error {
s.TrojanPassword.Reset()
if err := s.TrojanPassword.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"trojanPassword\"")
}
case "vlessUuid":
if err := func() error {
s.VlessUuid.Reset()
if err := s.VlessUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"vlessUuid\"")
}
case "ssPassword":
if err := func() error {
s.SsPassword.Reset()
if err := s.SsPassword.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"ssPassword\"")
}
case "trafficLimitBytes":
if err := func() error {
s.TrafficLimitBytes.Reset()
if err := s.TrafficLimitBytes.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"trafficLimitBytes\"")
}
case "trafficLimitStrategy":
if err := func() error {
s.TrafficLimitStrategy.Reset()
if err := s.TrafficLimitStrategy.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"trafficLimitStrategy\"")
}
case "expireAt":
requiredBitSet[1] |= 1 << 0
if err := func() error {
v, err := json.DecodeDateTime(d)
s.ExpireAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"expireAt\"")
}
case "createdAt":
if err := func() error {
s.CreatedAt.Reset()
if err := s.CreatedAt.Decode(d, json.DecodeDateTime); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"createdAt\"")
}
case "lastTrafficResetAt":
if err := func() error {
s.LastTrafficResetAt.Reset()
if err := s.LastTrafficResetAt.Decode(d, json.DecodeDateTime); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"lastTrafficResetAt\"")
}
case "description":
if err := func() error {
s.Description.Reset()
if err := s.Description.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"description\"")
}
case "tag":
if err := func() error {
s.Tag.Reset()
if err := s.Tag.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"tag\"")
}
case "telegramId":
if err := func() error {
s.TelegramId.Reset()
if err := s.TelegramId.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"telegramId\"")
}
case "email":
if err := func() error {
s.Email.Reset()
if err := s.Email.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"email\"")
}
case "hwidDeviceLimit":
if err := func() error {
s.HwidDeviceLimit.Reset()
if err := s.HwidDeviceLimit.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"hwidDeviceLimit\"")
}
case "activeInternalSquads":
if err := func() error {
s.ActiveInternalSquads = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.ActiveInternalSquads = append(s.ActiveInternalSquads, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"activeInternalSquads\"")
}
case "uuid":
if err := func() error {
s.UUID.Reset()
if err := s.UUID.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "externalSquadUuid":
if err := func() error {
s.ExternalSquadUuid.Reset()
if err := s.ExternalSquadUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"externalSquadUuid\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode CreateUserRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [3]uint8{
0b00000001,
0b00000001,
0b00000000,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfCreateUserRequest) {
name = jsonFieldsNameOfCreateUserRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *CreateUserRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *CreateUserRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes CreateUserRequestStatus as json.
func (s CreateUserRequestStatus) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes CreateUserRequestStatus from json.
func (s *CreateUserRequestStatus) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode CreateUserRequestStatus to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch CreateUserRequestStatus(v) {
case CreateUserRequestStatusACTIVE:
*s = CreateUserRequestStatusACTIVE
case CreateUserRequestStatusDISABLED:
*s = CreateUserRequestStatusDISABLED
case CreateUserRequestStatusLIMITED:
*s = CreateUserRequestStatusLIMITED
case CreateUserRequestStatusEXPIRED:
*s = CreateUserRequestStatusEXPIRED
default:
*s = CreateUserRequestStatus(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s CreateUserRequestStatus) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *CreateUserRequestStatus) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes CreateUserRequestTrafficLimitStrategy as json.
func (s CreateUserRequestTrafficLimitStrategy) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes CreateUserRequestTrafficLimitStrategy from json.
func (s *CreateUserRequestTrafficLimitStrategy) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode CreateUserRequestTrafficLimitStrategy to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch CreateUserRequestTrafficLimitStrategy(v) {
case CreateUserRequestTrafficLimitStrategyNORESET:
*s = CreateUserRequestTrafficLimitStrategyNORESET
case CreateUserRequestTrafficLimitStrategyDAY:
*s = CreateUserRequestTrafficLimitStrategyDAY
case CreateUserRequestTrafficLimitStrategyWEEK:
*s = CreateUserRequestTrafficLimitStrategyWEEK
case CreateUserRequestTrafficLimitStrategyMONTH:
*s = CreateUserRequestTrafficLimitStrategyMONTH
case CreateUserRequestTrafficLimitStrategyMONTHROLLING:
*s = CreateUserRequestTrafficLimitStrategyMONTHROLLING
default:
*s = CreateUserRequestTrafficLimitStrategy(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s CreateUserRequestTrafficLimitStrategy) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *CreateUserRequestTrafficLimitStrategy) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *CustomRemark) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *CustomRemark) encodeFields(e *jx.Encoder) {
{
e.FieldStart("expiredUsers")
e.ArrStart()
for _, elem := range s.ExpiredUsers {
e.Str(elem)
}
e.ArrEnd()
}
{
e.FieldStart("limitedUsers")
e.ArrStart()
for _, elem := range s.LimitedUsers {
e.Str(elem)
}
e.ArrEnd()
}
{
e.FieldStart("disabledUsers")
e.ArrStart()
for _, elem := range s.DisabledUsers {
e.Str(elem)
}
e.ArrEnd()
}
{
e.FieldStart("emptyHosts")
e.ArrStart()
for _, elem := range s.EmptyHosts {
e.Str(elem)
}
e.ArrEnd()
}
{
e.FieldStart("HWIDMaxDevicesExceeded")
e.ArrStart()
for _, elem := range s.HWIDMaxDevicesExceeded {
e.Str(elem)
}
e.ArrEnd()
}
{
e.FieldStart("HWIDNotSupported")
e.ArrStart()
for _, elem := range s.HWIDNotSupported {
e.Str(elem)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfCustomRemark = [6]string{
0: "expiredUsers",
1: "limitedUsers",
2: "disabledUsers",
3: "emptyHosts",
4: "HWIDMaxDevicesExceeded",
5: "HWIDNotSupported",
}
// Decode decodes CustomRemark from json.
func (s *CustomRemark) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode CustomRemark to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "expiredUsers":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.ExpiredUsers = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.ExpiredUsers = append(s.ExpiredUsers, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"expiredUsers\"")
}
case "limitedUsers":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.LimitedUsers = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.LimitedUsers = append(s.LimitedUsers, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"limitedUsers\"")
}
case "disabledUsers":
requiredBitSet[0] |= 1 << 2
if err := func() error {
s.DisabledUsers = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.DisabledUsers = append(s.DisabledUsers, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"disabledUsers\"")
}
case "emptyHosts":
requiredBitSet[0] |= 1 << 3
if err := func() error {
s.EmptyHosts = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.EmptyHosts = append(s.EmptyHosts, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"emptyHosts\"")
}
case "HWIDMaxDevicesExceeded":
requiredBitSet[0] |= 1 << 4
if err := func() error {
s.HWIDMaxDevicesExceeded = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.HWIDMaxDevicesExceeded = append(s.HWIDMaxDevicesExceeded, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"HWIDMaxDevicesExceeded\"")
}
case "HWIDNotSupported":
requiredBitSet[0] |= 1 << 5
if err := func() error {
s.HWIDNotSupported = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.HWIDNotSupported = append(s.HWIDNotSupported, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"HWIDNotSupported\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode CustomRemark")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00111111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfCustomRemark) {
name = jsonFieldsNameOfCustomRemark[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *CustomRemark) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *CustomRemark) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *DebugSrrMatcherRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *DebugSrrMatcherRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("responseRules")
s.ResponseRules.Encode(e)
}
}
var jsonFieldsNameOfDebugSrrMatcherRequest = [1]string{
0: "responseRules",
}
// Decode decodes DebugSrrMatcherRequest from json.
func (s *DebugSrrMatcherRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode DebugSrrMatcherRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "responseRules":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.ResponseRules.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"responseRules\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode DebugSrrMatcherRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfDebugSrrMatcherRequest) {
name = jsonFieldsNameOfDebugSrrMatcherRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *DebugSrrMatcherRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *DebugSrrMatcherRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *DebugSrrMatcherResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *DebugSrrMatcherResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfDebugSrrMatcherResponse = [1]string{
0: "response",
}
// Decode decodes DebugSrrMatcherResponse from json.
func (s *DebugSrrMatcherResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode DebugSrrMatcherResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode DebugSrrMatcherResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfDebugSrrMatcherResponse) {
name = jsonFieldsNameOfDebugSrrMatcherResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *DebugSrrMatcherResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *DebugSrrMatcherResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *DebugSrrMatcherResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *DebugSrrMatcherResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("matched")
e.Bool(s.Matched)
}
{
e.FieldStart("responseType")
s.ResponseType.Encode(e)
}
{
e.FieldStart("matchedRule")
s.MatchedRule.Encode(e)
}
{
e.FieldStart("inputHeaders")
s.InputHeaders.Encode(e)
}
{
e.FieldStart("outputHeaders")
s.OutputHeaders.Encode(e)
}
}
var jsonFieldsNameOfDebugSrrMatcherResponseResponse = [5]string{
0: "matched",
1: "responseType",
2: "matchedRule",
3: "inputHeaders",
4: "outputHeaders",
}
// Decode decodes DebugSrrMatcherResponseResponse from json.
func (s *DebugSrrMatcherResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode DebugSrrMatcherResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "matched":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Bool()
s.Matched = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"matched\"")
}
case "responseType":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.ResponseType.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"responseType\"")
}
case "matchedRule":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.MatchedRule.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"matchedRule\"")
}
case "inputHeaders":
requiredBitSet[0] |= 1 << 3
if err := func() error {
if err := s.InputHeaders.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"inputHeaders\"")
}
case "outputHeaders":
requiredBitSet[0] |= 1 << 4
if err := func() error {
if err := s.OutputHeaders.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"outputHeaders\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode DebugSrrMatcherResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00011111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfDebugSrrMatcherResponseResponse) {
name = jsonFieldsNameOfDebugSrrMatcherResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *DebugSrrMatcherResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *DebugSrrMatcherResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s DebugSrrMatcherResponseResponseInputHeaders) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields implements json.Marshaler.
func (s DebugSrrMatcherResponseResponseInputHeaders) encodeFields(e *jx.Encoder) {
for k, elem := range s {
e.FieldStart(k)
e.Str(elem)
}
}
// Decode decodes DebugSrrMatcherResponseResponseInputHeaders from json.
func (s *DebugSrrMatcherResponseResponseInputHeaders) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode DebugSrrMatcherResponseResponseInputHeaders to nil")
}
m := s.init()
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
var elem string
if err := func() error {
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrapf(err, "decode field %q", k)
}
m[string(k)] = elem
return nil
}); err != nil {
return errors.Wrap(err, "decode DebugSrrMatcherResponseResponseInputHeaders")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s DebugSrrMatcherResponseResponseInputHeaders) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *DebugSrrMatcherResponseResponseInputHeaders) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s DebugSrrMatcherResponseResponseOutputHeaders) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields implements json.Marshaler.
func (s DebugSrrMatcherResponseResponseOutputHeaders) encodeFields(e *jx.Encoder) {
for k, elem := range s {
e.FieldStart(k)
e.Str(elem)
}
}
// Decode decodes DebugSrrMatcherResponseResponseOutputHeaders from json.
func (s *DebugSrrMatcherResponseResponseOutputHeaders) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode DebugSrrMatcherResponseResponseOutputHeaders to nil")
}
m := s.init()
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
var elem string
if err := func() error {
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrapf(err, "decode field %q", k)
}
m[string(k)] = elem
return nil
}); err != nil {
return errors.Wrap(err, "decode DebugSrrMatcherResponseResponseOutputHeaders")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s DebugSrrMatcherResponseResponseOutputHeaders) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *DebugSrrMatcherResponseResponseOutputHeaders) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes DebugSrrMatcherResponseResponseResponseType as json.
func (s DebugSrrMatcherResponseResponseResponseType) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes DebugSrrMatcherResponseResponseResponseType from json.
func (s *DebugSrrMatcherResponseResponseResponseType) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode DebugSrrMatcherResponseResponseResponseType to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch DebugSrrMatcherResponseResponseResponseType(v) {
case DebugSrrMatcherResponseResponseResponseTypeXRAYJSON:
*s = DebugSrrMatcherResponseResponseResponseTypeXRAYJSON
case DebugSrrMatcherResponseResponseResponseTypeXRAYBASE64:
*s = DebugSrrMatcherResponseResponseResponseTypeXRAYBASE64
case DebugSrrMatcherResponseResponseResponseTypeMIHOMO:
*s = DebugSrrMatcherResponseResponseResponseTypeMIHOMO
case DebugSrrMatcherResponseResponseResponseTypeSTASH:
*s = DebugSrrMatcherResponseResponseResponseTypeSTASH
case DebugSrrMatcherResponseResponseResponseTypeCLASH:
*s = DebugSrrMatcherResponseResponseResponseTypeCLASH
case DebugSrrMatcherResponseResponseResponseTypeSINGBOX:
*s = DebugSrrMatcherResponseResponseResponseTypeSINGBOX
case DebugSrrMatcherResponseResponseResponseTypeBROWSER:
*s = DebugSrrMatcherResponseResponseResponseTypeBROWSER
case DebugSrrMatcherResponseResponseResponseTypeBLOCK:
*s = DebugSrrMatcherResponseResponseResponseTypeBLOCK
case DebugSrrMatcherResponseResponseResponseTypeSTATUSCODE404:
*s = DebugSrrMatcherResponseResponseResponseTypeSTATUSCODE404
case DebugSrrMatcherResponseResponseResponseTypeSTATUSCODE451:
*s = DebugSrrMatcherResponseResponseResponseTypeSTATUSCODE451
case DebugSrrMatcherResponseResponseResponseTypeSOCKETDROP:
*s = DebugSrrMatcherResponseResponseResponseTypeSOCKETDROP
default:
*s = DebugSrrMatcherResponseResponseResponseType(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s DebugSrrMatcherResponseResponseResponseType) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *DebugSrrMatcherResponseResponseResponseType) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *DebugSrrMatcherSettings) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *DebugSrrMatcherSettings) encodeFields(e *jx.Encoder) {
{
if s.DisableSubscriptionAccessByPath.Set {
e.FieldStart("disableSubscriptionAccessByPath")
s.DisableSubscriptionAccessByPath.Encode(e)
}
}
}
var jsonFieldsNameOfDebugSrrMatcherSettings = [1]string{
0: "disableSubscriptionAccessByPath",
}
// Decode decodes DebugSrrMatcherSettings from json.
func (s *DebugSrrMatcherSettings) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode DebugSrrMatcherSettings to nil")
}
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "disableSubscriptionAccessByPath":
if err := func() error {
s.DisableSubscriptionAccessByPath.Reset()
if err := s.DisableSubscriptionAccessByPath.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"disableSubscriptionAccessByPath\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode DebugSrrMatcherSettings")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *DebugSrrMatcherSettings) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *DebugSrrMatcherSettings) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *DeleteAllUserHwidDevicesRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *DeleteAllUserHwidDevicesRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("userUuid")
json.EncodeUUID(e, s.UserUuid)
}
}
var jsonFieldsNameOfDeleteAllUserHwidDevicesRequest = [1]string{
0: "userUuid",
}
// Decode decodes DeleteAllUserHwidDevicesRequest from json.
func (s *DeleteAllUserHwidDevicesRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode DeleteAllUserHwidDevicesRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "userUuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UserUuid = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"userUuid\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode DeleteAllUserHwidDevicesRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfDeleteAllUserHwidDevicesRequest) {
name = jsonFieldsNameOfDeleteAllUserHwidDevicesRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *DeleteAllUserHwidDevicesRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *DeleteAllUserHwidDevicesRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *DeleteApiTokenResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *DeleteApiTokenResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
e.Bool(s.Response)
}
}
var jsonFieldsNameOfDeleteApiTokenResponse = [1]string{
0: "response",
}
// Decode decodes DeleteApiTokenResponse from json.
func (s *DeleteApiTokenResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode DeleteApiTokenResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Bool()
s.Response = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode DeleteApiTokenResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfDeleteApiTokenResponse) {
name = jsonFieldsNameOfDeleteApiTokenResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *DeleteApiTokenResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *DeleteApiTokenResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *DeletePasskeyRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *DeletePasskeyRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("id")
e.Str(s.ID)
}
}
var jsonFieldsNameOfDeletePasskeyRequest = [1]string{
0: "id",
}
// Decode decodes DeletePasskeyRequest from json.
func (s *DeletePasskeyRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode DeletePasskeyRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "id":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.ID = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"id\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode DeletePasskeyRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfDeletePasskeyRequest) {
name = jsonFieldsNameOfDeletePasskeyRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *DeletePasskeyRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *DeletePasskeyRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *DeleteResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *DeleteResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfDeleteResponse = [1]string{
0: "response",
}
// Decode decodes DeleteResponse from json.
func (s *DeleteResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode DeleteResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode DeleteResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfDeleteResponse) {
name = jsonFieldsNameOfDeleteResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *DeleteResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *DeleteResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *DeleteResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *DeleteResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("isDeleted")
e.Bool(s.IsDeleted)
}
}
var jsonFieldsNameOfDeleteResponseResponse = [1]string{
0: "isDeleted",
}
// Decode decodes DeleteResponseResponse from json.
func (s *DeleteResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode DeleteResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "isDeleted":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Bool()
s.IsDeleted = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isDeleted\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode DeleteResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfDeleteResponseResponse) {
name = jsonFieldsNameOfDeleteResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *DeleteResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *DeleteResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *DeleteSnippetRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *DeleteSnippetRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("name")
e.Str(s.Name)
}
}
var jsonFieldsNameOfDeleteSnippetRequest = [1]string{
0: "name",
}
// Decode decodes DeleteSnippetRequest from json.
func (s *DeleteSnippetRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode DeleteSnippetRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "name":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode DeleteSnippetRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfDeleteSnippetRequest) {
name = jsonFieldsNameOfDeleteSnippetRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *DeleteSnippetRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *DeleteSnippetRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *DeleteUserHwidDeviceRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *DeleteUserHwidDeviceRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("userUuid")
json.EncodeUUID(e, s.UserUuid)
}
{
e.FieldStart("hwid")
e.Str(s.Hwid)
}
}
var jsonFieldsNameOfDeleteUserHwidDeviceRequest = [2]string{
0: "userUuid",
1: "hwid",
}
// Decode decodes DeleteUserHwidDeviceRequest from json.
func (s *DeleteUserHwidDeviceRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode DeleteUserHwidDeviceRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "userUuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UserUuid = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"userUuid\"")
}
case "hwid":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Hwid = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"hwid\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode DeleteUserHwidDeviceRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfDeleteUserHwidDeviceRequest) {
name = jsonFieldsNameOfDeleteUserHwidDeviceRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *DeleteUserHwidDeviceRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *DeleteUserHwidDeviceRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *Device) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *Device) encodeFields(e *jx.Encoder) {
{
e.FieldStart("hwid")
e.Str(s.Hwid)
}
{
e.FieldStart("userId")
e.Float64(s.UserId)
}
{
e.FieldStart("platform")
s.Platform.Encode(e)
}
{
e.FieldStart("osVersion")
s.OsVersion.Encode(e)
}
{
e.FieldStart("deviceModel")
s.DeviceModel.Encode(e)
}
{
e.FieldStart("userAgent")
s.UserAgent.Encode(e)
}
{
e.FieldStart("requestIp")
s.RequestIp.Encode(e)
}
{
e.FieldStart("createdAt")
json.EncodeDateTime(e, s.CreatedAt)
}
{
e.FieldStart("updatedAt")
json.EncodeDateTime(e, s.UpdatedAt)
}
}
var jsonFieldsNameOfDevice = [9]string{
0: "hwid",
1: "userId",
2: "platform",
3: "osVersion",
4: "deviceModel",
5: "userAgent",
6: "requestIp",
7: "createdAt",
8: "updatedAt",
}
// Decode decodes Device from json.
func (s *Device) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode Device to nil")
}
var requiredBitSet [2]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "hwid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Hwid = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"hwid\"")
}
case "userId":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.UserId = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"userId\"")
}
case "platform":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.Platform.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"platform\"")
}
case "osVersion":
requiredBitSet[0] |= 1 << 3
if err := func() error {
if err := s.OsVersion.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"osVersion\"")
}
case "deviceModel":
requiredBitSet[0] |= 1 << 4
if err := func() error {
if err := s.DeviceModel.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"deviceModel\"")
}
case "userAgent":
requiredBitSet[0] |= 1 << 5
if err := func() error {
if err := s.UserAgent.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"userAgent\"")
}
case "requestIp":
requiredBitSet[0] |= 1 << 6
if err := func() error {
if err := s.RequestIp.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"requestIp\"")
}
case "createdAt":
requiredBitSet[0] |= 1 << 7
if err := func() error {
v, err := json.DecodeDateTime(d)
s.CreatedAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"createdAt\"")
}
case "updatedAt":
requiredBitSet[1] |= 1 << 0
if err := func() error {
v, err := json.DecodeDateTime(d)
s.UpdatedAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"updatedAt\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode Device")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [2]uint8{
0b11111111,
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfDevice) {
name = jsonFieldsNameOfDevice[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *Device) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *Device) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *DropConnectionsRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *DropConnectionsRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("dropBy")
s.DropBy.Encode(e)
}
{
e.FieldStart("targetNodes")
s.TargetNodes.Encode(e)
}
}
var jsonFieldsNameOfDropConnectionsRequest = [2]string{
0: "dropBy",
1: "targetNodes",
}
// Decode decodes DropConnectionsRequest from json.
func (s *DropConnectionsRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode DropConnectionsRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "dropBy":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.DropBy.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"dropBy\"")
}
case "targetNodes":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.TargetNodes.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"targetNodes\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode DropConnectionsRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfDropConnectionsRequest) {
name = jsonFieldsNameOfDropConnectionsRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *DropConnectionsRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *DropConnectionsRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes DropConnectionsRequestDropBy as json.
func (s DropConnectionsRequestDropBy) Encode(e *jx.Encoder) {
switch s.Type {
case DropConnectionsRequestDropBy0DropConnectionsRequestDropBy:
s.DropConnectionsRequestDropBy0.Encode(e)
case DropConnectionsRequestDropBy1DropConnectionsRequestDropBy:
s.DropConnectionsRequestDropBy1.Encode(e)
}
}
func (s DropConnectionsRequestDropBy) encodeFields(e *jx.Encoder) {
switch s.Type {
case DropConnectionsRequestDropBy0DropConnectionsRequestDropBy:
s.DropConnectionsRequestDropBy0.encodeFields(e)
case DropConnectionsRequestDropBy1DropConnectionsRequestDropBy:
s.DropConnectionsRequestDropBy1.encodeFields(e)
}
}
// Decode decodes DropConnectionsRequestDropBy from json.
func (s *DropConnectionsRequestDropBy) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode DropConnectionsRequestDropBy to nil")
}
// Sum type fields.
if typ := d.Next(); typ != jx.Object {
return errors.Errorf("unexpected json type %q", typ)
}
var found bool
if err := d.Capture(func(d *jx.Decoder) error {
return d.ObjBytes(func(d *jx.Decoder, key []byte) error {
switch string(key) {
case "ipAddresses":
// Type-based discrimination: check if field has expected JSON type
if typ := d.Next(); typ != jx.Array {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := DropConnectionsRequestDropBy1DropConnectionsRequestDropBy
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "userUuids":
// Type-based discrimination: check if field has expected JSON type
if typ := d.Next(); typ != jx.Array {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := DropConnectionsRequestDropBy0DropConnectionsRequestDropBy
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "by":
// Value-based discrimination: check enum value
if typ := d.Next(); typ != jx.String {
return d.Skip()
}
value, err := d.StrBytes()
if err != nil {
return err
}
switch string(value) {
case "ipAddresses":
match := DropConnectionsRequestDropBy1DropConnectionsRequestDropBy
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "userUuids":
match := DropConnectionsRequestDropBy0DropConnectionsRequestDropBy
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
default:
// Unknown enum value, ignore and continue
}
return nil
}
return d.Skip()
})
}); err != nil {
return errors.Wrap(err, "capture")
}
if !found {
return errors.New("unable to detect sum type variant")
}
switch s.Type {
case DropConnectionsRequestDropBy0DropConnectionsRequestDropBy:
if err := s.DropConnectionsRequestDropBy0.Decode(d); err != nil {
return err
}
case DropConnectionsRequestDropBy1DropConnectionsRequestDropBy:
if err := s.DropConnectionsRequestDropBy1.Decode(d); err != nil {
return err
}
default:
return errors.Errorf("inferred invalid type: %s", s.Type)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s DropConnectionsRequestDropBy) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *DropConnectionsRequestDropBy) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *DropConnectionsRequestDropBy0) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *DropConnectionsRequestDropBy0) encodeFields(e *jx.Encoder) {
{
e.FieldStart("by")
s.By.Encode(e)
}
{
e.FieldStart("userUuids")
e.ArrStart()
for _, elem := range s.UserUuids {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfDropConnectionsRequestDropBy0 = [2]string{
0: "by",
1: "userUuids",
}
// Decode decodes DropConnectionsRequestDropBy0 from json.
func (s *DropConnectionsRequestDropBy0) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode DropConnectionsRequestDropBy0 to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "by":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.By.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"by\"")
}
case "userUuids":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.UserUuids = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.UserUuids = append(s.UserUuids, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"userUuids\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode DropConnectionsRequestDropBy0")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfDropConnectionsRequestDropBy0) {
name = jsonFieldsNameOfDropConnectionsRequestDropBy0[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *DropConnectionsRequestDropBy0) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *DropConnectionsRequestDropBy0) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes DropConnectionsRequestDropBy0By as json.
func (s DropConnectionsRequestDropBy0By) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes DropConnectionsRequestDropBy0By from json.
func (s *DropConnectionsRequestDropBy0By) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode DropConnectionsRequestDropBy0By to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch DropConnectionsRequestDropBy0By(v) {
case DropConnectionsRequestDropBy0ByUserUuids:
*s = DropConnectionsRequestDropBy0ByUserUuids
default:
*s = DropConnectionsRequestDropBy0By(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s DropConnectionsRequestDropBy0By) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *DropConnectionsRequestDropBy0By) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *DropConnectionsRequestDropBy1) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *DropConnectionsRequestDropBy1) encodeFields(e *jx.Encoder) {
{
e.FieldStart("by")
s.By.Encode(e)
}
{
e.FieldStart("ipAddresses")
e.ArrStart()
for _, elem := range s.IpAddresses {
e.Str(elem)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfDropConnectionsRequestDropBy1 = [2]string{
0: "by",
1: "ipAddresses",
}
// Decode decodes DropConnectionsRequestDropBy1 from json.
func (s *DropConnectionsRequestDropBy1) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode DropConnectionsRequestDropBy1 to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "by":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.By.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"by\"")
}
case "ipAddresses":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.IpAddresses = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.IpAddresses = append(s.IpAddresses, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"ipAddresses\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode DropConnectionsRequestDropBy1")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfDropConnectionsRequestDropBy1) {
name = jsonFieldsNameOfDropConnectionsRequestDropBy1[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *DropConnectionsRequestDropBy1) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *DropConnectionsRequestDropBy1) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes DropConnectionsRequestDropBy1By as json.
func (s DropConnectionsRequestDropBy1By) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes DropConnectionsRequestDropBy1By from json.
func (s *DropConnectionsRequestDropBy1By) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode DropConnectionsRequestDropBy1By to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch DropConnectionsRequestDropBy1By(v) {
case DropConnectionsRequestDropBy1ByIpAddresses:
*s = DropConnectionsRequestDropBy1ByIpAddresses
default:
*s = DropConnectionsRequestDropBy1By(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s DropConnectionsRequestDropBy1By) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *DropConnectionsRequestDropBy1By) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes DropConnectionsRequestTargetNodes as json.
func (s DropConnectionsRequestTargetNodes) Encode(e *jx.Encoder) {
switch s.Type {
case DropConnectionsRequestTargetNodes0DropConnectionsRequestTargetNodes:
s.DropConnectionsRequestTargetNodes0.Encode(e)
case DropConnectionsRequestTargetNodes1DropConnectionsRequestTargetNodes:
s.DropConnectionsRequestTargetNodes1.Encode(e)
}
}
func (s DropConnectionsRequestTargetNodes) encodeFields(e *jx.Encoder) {
switch s.Type {
case DropConnectionsRequestTargetNodes0DropConnectionsRequestTargetNodes:
s.DropConnectionsRequestTargetNodes0.encodeFields(e)
case DropConnectionsRequestTargetNodes1DropConnectionsRequestTargetNodes:
s.DropConnectionsRequestTargetNodes1.encodeFields(e)
}
}
// Decode decodes DropConnectionsRequestTargetNodes from json.
func (s *DropConnectionsRequestTargetNodes) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode DropConnectionsRequestTargetNodes to nil")
}
// Sum type fields.
if typ := d.Next(); typ != jx.Object {
return errors.Errorf("unexpected json type %q", typ)
}
var found bool
if err := d.Capture(func(d *jx.Decoder) error {
return d.ObjBytes(func(d *jx.Decoder, key []byte) error {
switch string(key) {
case "nodeUuids":
// Type-based discrimination: check if field has expected JSON type
if typ := d.Next(); typ != jx.Array {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := DropConnectionsRequestTargetNodes1DropConnectionsRequestTargetNodes
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "target":
// Value-based discrimination: check enum value
if typ := d.Next(); typ != jx.String {
return d.Skip()
}
value, err := d.StrBytes()
if err != nil {
return err
}
switch string(value) {
case "allNodes":
match := DropConnectionsRequestTargetNodes0DropConnectionsRequestTargetNodes
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "specificNodes":
match := DropConnectionsRequestTargetNodes1DropConnectionsRequestTargetNodes
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
default:
// Unknown enum value, ignore and continue
}
return nil
}
return d.Skip()
})
}); err != nil {
return errors.Wrap(err, "capture")
}
if !found {
return errors.New("unable to detect sum type variant")
}
switch s.Type {
case DropConnectionsRequestTargetNodes0DropConnectionsRequestTargetNodes:
if err := s.DropConnectionsRequestTargetNodes0.Decode(d); err != nil {
return err
}
case DropConnectionsRequestTargetNodes1DropConnectionsRequestTargetNodes:
if err := s.DropConnectionsRequestTargetNodes1.Decode(d); err != nil {
return err
}
default:
return errors.Errorf("inferred invalid type: %s", s.Type)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s DropConnectionsRequestTargetNodes) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *DropConnectionsRequestTargetNodes) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *DropConnectionsRequestTargetNodes0) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *DropConnectionsRequestTargetNodes0) encodeFields(e *jx.Encoder) {
{
e.FieldStart("target")
s.Target.Encode(e)
}
}
var jsonFieldsNameOfDropConnectionsRequestTargetNodes0 = [1]string{
0: "target",
}
// Decode decodes DropConnectionsRequestTargetNodes0 from json.
func (s *DropConnectionsRequestTargetNodes0) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode DropConnectionsRequestTargetNodes0 to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "target":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Target.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"target\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode DropConnectionsRequestTargetNodes0")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfDropConnectionsRequestTargetNodes0) {
name = jsonFieldsNameOfDropConnectionsRequestTargetNodes0[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *DropConnectionsRequestTargetNodes0) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *DropConnectionsRequestTargetNodes0) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes DropConnectionsRequestTargetNodes0Target as json.
func (s DropConnectionsRequestTargetNodes0Target) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes DropConnectionsRequestTargetNodes0Target from json.
func (s *DropConnectionsRequestTargetNodes0Target) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode DropConnectionsRequestTargetNodes0Target to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch DropConnectionsRequestTargetNodes0Target(v) {
case DropConnectionsRequestTargetNodes0TargetAllNodes:
*s = DropConnectionsRequestTargetNodes0TargetAllNodes
default:
*s = DropConnectionsRequestTargetNodes0Target(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s DropConnectionsRequestTargetNodes0Target) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *DropConnectionsRequestTargetNodes0Target) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *DropConnectionsRequestTargetNodes1) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *DropConnectionsRequestTargetNodes1) encodeFields(e *jx.Encoder) {
{
e.FieldStart("target")
s.Target.Encode(e)
}
{
e.FieldStart("nodeUuids")
e.ArrStart()
for _, elem := range s.NodeUuids {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfDropConnectionsRequestTargetNodes1 = [2]string{
0: "target",
1: "nodeUuids",
}
// Decode decodes DropConnectionsRequestTargetNodes1 from json.
func (s *DropConnectionsRequestTargetNodes1) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode DropConnectionsRequestTargetNodes1 to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "target":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Target.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"target\"")
}
case "nodeUuids":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.NodeUuids = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.NodeUuids = append(s.NodeUuids, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodeUuids\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode DropConnectionsRequestTargetNodes1")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfDropConnectionsRequestTargetNodes1) {
name = jsonFieldsNameOfDropConnectionsRequestTargetNodes1[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *DropConnectionsRequestTargetNodes1) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *DropConnectionsRequestTargetNodes1) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes DropConnectionsRequestTargetNodes1Target as json.
func (s DropConnectionsRequestTargetNodes1Target) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes DropConnectionsRequestTargetNodes1Target from json.
func (s *DropConnectionsRequestTargetNodes1Target) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode DropConnectionsRequestTargetNodes1Target to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch DropConnectionsRequestTargetNodes1Target(v) {
case DropConnectionsRequestTargetNodes1TargetSpecificNodes:
*s = DropConnectionsRequestTargetNodes1TargetSpecificNodes
default:
*s = DropConnectionsRequestTargetNodes1Target(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s DropConnectionsRequestTargetNodes1Target) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *DropConnectionsRequestTargetNodes1Target) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *EncryptionItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *EncryptionItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("method")
s.Method.Encode(e)
}
{
e.FieldStart("key")
e.Str(s.Key)
}
}
var jsonFieldsNameOfEncryptionItem = [2]string{
0: "method",
1: "key",
}
// Decode decodes EncryptionItem from json.
func (s *EncryptionItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode EncryptionItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "method":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Method.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"method\"")
}
case "key":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Key = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"key\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode EncryptionItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfEncryptionItem) {
name = jsonFieldsNameOfEncryptionItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *EncryptionItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *EncryptionItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes EncryptionItemMethod as json.
func (s EncryptionItemMethod) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes EncryptionItemMethod from json.
func (s *EncryptionItemMethod) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode EncryptionItemMethod to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch EncryptionItemMethod(v) {
case EncryptionItemMethodAge1:
*s = EncryptionItemMethodAge1
case EncryptionItemMethodAge1pq1:
*s = EncryptionItemMethodAge1pq1
default:
*s = EncryptionItemMethod(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s EncryptionItemMethod) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *EncryptionItemMethod) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *EventResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *EventResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfEventResponse = [1]string{
0: "response",
}
// Decode decodes EventResponse from json.
func (s *EventResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode EventResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode EventResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfEventResponse) {
name = jsonFieldsNameOfEventResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *EventResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *EventResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *EventResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *EventResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("eventSent")
e.Bool(s.EventSent)
}
}
var jsonFieldsNameOfEventResponseResponse = [1]string{
0: "eventSent",
}
// Decode decodes EventResponseResponse from json.
func (s *EventResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode EventResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "eventSent":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Bool()
s.EventSent = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"eventSent\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode EventResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfEventResponseResponse) {
name = jsonFieldsNameOfEventResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *EventResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *EventResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ExternalSquad) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ExternalSquad) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("viewPosition")
e.Int(s.ViewPosition)
}
{
e.FieldStart("name")
e.Str(s.Name)
}
{
e.FieldStart("info")
s.Info.Encode(e)
}
{
e.FieldStart("templates")
e.ArrStart()
for _, elem := range s.Templates {
elem.Encode(e)
}
e.ArrEnd()
}
{
e.FieldStart("subscriptionSettings")
s.SubscriptionSettings.Encode(e)
}
{
e.FieldStart("hostOverrides")
s.HostOverrides.Encode(e)
}
{
e.FieldStart("responseHeaders")
s.ResponseHeaders.Encode(e)
}
{
e.FieldStart("hwidSettings")
s.HwidSettings.Encode(e)
}
{
e.FieldStart("customRemarks")
s.CustomRemarks.Encode(e)
}
{
e.FieldStart("subpageConfigUuid")
s.SubpageConfigUuid.Encode(e)
}
{
e.FieldStart("createdAt")
json.EncodeDateTime(e, s.CreatedAt)
}
{
e.FieldStart("updatedAt")
json.EncodeDateTime(e, s.UpdatedAt)
}
}
var jsonFieldsNameOfExternalSquad = [13]string{
0: "uuid",
1: "viewPosition",
2: "name",
3: "info",
4: "templates",
5: "subscriptionSettings",
6: "hostOverrides",
7: "responseHeaders",
8: "hwidSettings",
9: "customRemarks",
10: "subpageConfigUuid",
11: "createdAt",
12: "updatedAt",
}
// Decode decodes ExternalSquad from json.
func (s *ExternalSquad) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ExternalSquad to nil")
}
var requiredBitSet [2]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "viewPosition":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Int()
s.ViewPosition = int(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"viewPosition\"")
}
case "name":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "info":
requiredBitSet[0] |= 1 << 3
if err := func() error {
if err := s.Info.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"info\"")
}
case "templates":
requiredBitSet[0] |= 1 << 4
if err := func() error {
s.Templates = make([]TemplateRef, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem TemplateRef
if err := elem.Decode(d); err != nil {
return err
}
s.Templates = append(s.Templates, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"templates\"")
}
case "subscriptionSettings":
requiredBitSet[0] |= 1 << 5
if err := func() error {
if err := s.SubscriptionSettings.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"subscriptionSettings\"")
}
case "hostOverrides":
requiredBitSet[0] |= 1 << 6
if err := func() error {
if err := s.HostOverrides.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"hostOverrides\"")
}
case "responseHeaders":
requiredBitSet[0] |= 1 << 7
if err := func() error {
if err := s.ResponseHeaders.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"responseHeaders\"")
}
case "hwidSettings":
requiredBitSet[1] |= 1 << 0
if err := func() error {
if err := s.HwidSettings.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"hwidSettings\"")
}
case "customRemarks":
requiredBitSet[1] |= 1 << 1
if err := func() error {
if err := s.CustomRemarks.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"customRemarks\"")
}
case "subpageConfigUuid":
requiredBitSet[1] |= 1 << 2
if err := func() error {
if err := s.SubpageConfigUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"subpageConfigUuid\"")
}
case "createdAt":
requiredBitSet[1] |= 1 << 3
if err := func() error {
v, err := json.DecodeDateTime(d)
s.CreatedAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"createdAt\"")
}
case "updatedAt":
requiredBitSet[1] |= 1 << 4
if err := func() error {
v, err := json.DecodeDateTime(d)
s.UpdatedAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"updatedAt\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ExternalSquad")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [2]uint8{
0b11111111,
0b00011111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfExternalSquad) {
name = jsonFieldsNameOfExternalSquad[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ExternalSquad) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ExternalSquad) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s ExternalSquadResponseHeaders) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields implements json.Marshaler.
func (s ExternalSquadResponseHeaders) encodeFields(e *jx.Encoder) {
for k, elem := range s {
e.FieldStart(k)
e.Str(elem)
}
}
// Decode decodes ExternalSquadResponseHeaders from json.
func (s *ExternalSquadResponseHeaders) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ExternalSquadResponseHeaders to nil")
}
m := s.init()
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
var elem string
if err := func() error {
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrapf(err, "decode field %q", k)
}
m[string(k)] = elem
return nil
}); err != nil {
return errors.Wrap(err, "decode ExternalSquadResponseHeaders")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s ExternalSquadResponseHeaders) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ExternalSquadResponseHeaders) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ExternalSquadResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ExternalSquadResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfExternalSquadResponseResponse = [1]string{
0: "response",
}
// Decode decodes ExternalSquadResponseResponse from json.
func (s *ExternalSquadResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ExternalSquadResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ExternalSquadResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfExternalSquadResponseResponse) {
name = jsonFieldsNameOfExternalSquadResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ExternalSquadResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ExternalSquadResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ExternalSquadsResponInfoItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ExternalSquadsResponInfoItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("membersCount")
e.Float64(s.MembersCount)
}
}
var jsonFieldsNameOfExternalSquadsResponInfoItem = [1]string{
0: "membersCount",
}
// Decode decodes ExternalSquadsResponInfoItem from json.
func (s *ExternalSquadsResponInfoItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ExternalSquadsResponInfoItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "membersCount":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.MembersCount = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"membersCount\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ExternalSquadsResponInfoItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfExternalSquadsResponInfoItem) {
name = jsonFieldsNameOfExternalSquadsResponInfoItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ExternalSquadsResponInfoItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ExternalSquadsResponInfoItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ExternalSquadsResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ExternalSquadsResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfExternalSquadsResponse = [1]string{
0: "response",
}
// Decode decodes ExternalSquadsResponse from json.
func (s *ExternalSquadsResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ExternalSquadsResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ExternalSquadsResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfExternalSquadsResponse) {
name = jsonFieldsNameOfExternalSquadsResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ExternalSquadsResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ExternalSquadsResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ExternalSquadsResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ExternalSquadsResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("total")
e.Float64(s.Total)
}
{
e.FieldStart("externalSquads")
e.ArrStart()
for _, elem := range s.ExternalSquads {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfExternalSquadsResponseResponse = [2]string{
0: "total",
1: "externalSquads",
}
// Decode decodes ExternalSquadsResponseResponse from json.
func (s *ExternalSquadsResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ExternalSquadsResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "total":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.Total = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"total\"")
}
case "externalSquads":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.ExternalSquads = make([]ExternalSquad, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem ExternalSquad
if err := elem.Decode(d); err != nil {
return err
}
s.ExternalSquads = append(s.ExternalSquads, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"externalSquads\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ExternalSquadsResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfExternalSquadsResponseResponse) {
name = jsonFieldsNameOfExternalSquadsResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ExternalSquadsResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ExternalSquadsResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *FetchIpsResultResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *FetchIpsResultResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfFetchIpsResultResponse = [1]string{
0: "response",
}
// Decode decodes FetchIpsResultResponse from json.
func (s *FetchIpsResultResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode FetchIpsResultResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode FetchIpsResultResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfFetchIpsResultResponse) {
name = jsonFieldsNameOfFetchIpsResultResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *FetchIpsResultResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *FetchIpsResultResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *FetchIpsResultResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *FetchIpsResultResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("isCompleted")
e.Bool(s.IsCompleted)
}
{
e.FieldStart("isFailed")
e.Bool(s.IsFailed)
}
{
e.FieldStart("progress")
s.Progress.Encode(e)
}
{
e.FieldStart("result")
s.Result.Encode(e)
}
}
var jsonFieldsNameOfFetchIpsResultResponseResponse = [4]string{
0: "isCompleted",
1: "isFailed",
2: "progress",
3: "result",
}
// Decode decodes FetchIpsResultResponseResponse from json.
func (s *FetchIpsResultResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode FetchIpsResultResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "isCompleted":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Bool()
s.IsCompleted = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isCompleted\"")
}
case "isFailed":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Bool()
s.IsFailed = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isFailed\"")
}
case "progress":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.Progress.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"progress\"")
}
case "result":
requiredBitSet[0] |= 1 << 3
if err := func() error {
if err := s.Result.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"result\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode FetchIpsResultResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00001111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfFetchIpsResultResponseResponse) {
name = jsonFieldsNameOfFetchIpsResultResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *FetchIpsResultResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *FetchIpsResultResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *FetchIpsResultResponseResponseProgress) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *FetchIpsResultResponseResponseProgress) encodeFields(e *jx.Encoder) {
{
e.FieldStart("total")
e.Float64(s.Total)
}
{
e.FieldStart("completed")
e.Float64(s.Completed)
}
{
e.FieldStart("percent")
e.Float64(s.Percent)
}
}
var jsonFieldsNameOfFetchIpsResultResponseResponseProgress = [3]string{
0: "total",
1: "completed",
2: "percent",
}
// Decode decodes FetchIpsResultResponseResponseProgress from json.
func (s *FetchIpsResultResponseResponseProgress) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode FetchIpsResultResponseResponseProgress to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "total":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.Total = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"total\"")
}
case "completed":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.Completed = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"completed\"")
}
case "percent":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Float64()
s.Percent = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"percent\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode FetchIpsResultResponseResponseProgress")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfFetchIpsResultResponseResponseProgress) {
name = jsonFieldsNameOfFetchIpsResultResponseResponseProgress[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *FetchIpsResultResponseResponseProgress) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *FetchIpsResultResponseResponseProgress) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *FetchIpsResultResponseResponseResult) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *FetchIpsResultResponseResponseResult) encodeFields(e *jx.Encoder) {
{
e.FieldStart("success")
e.Bool(s.Success)
}
{
e.FieldStart("userUuid")
json.EncodeUUID(e, s.UserUuid)
}
{
e.FieldStart("userId")
e.Str(s.UserId)
}
{
e.FieldStart("nodes")
e.ArrStart()
for _, elem := range s.Nodes {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfFetchIpsResultResponseResponseResult = [4]string{
0: "success",
1: "userUuid",
2: "userId",
3: "nodes",
}
// Decode decodes FetchIpsResultResponseResponseResult from json.
func (s *FetchIpsResultResponseResponseResult) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode FetchIpsResultResponseResponseResult to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "success":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Bool()
s.Success = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"success\"")
}
case "userUuid":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := json.DecodeUUID(d)
s.UserUuid = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"userUuid\"")
}
case "userId":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.UserId = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"userId\"")
}
case "nodes":
requiredBitSet[0] |= 1 << 3
if err := func() error {
s.Nodes = make([]FetchIpsResultResponseResponseResultNodesItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem FetchIpsResultResponseResponseResultNodesItem
if err := elem.Decode(d); err != nil {
return err
}
s.Nodes = append(s.Nodes, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodes\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode FetchIpsResultResponseResponseResult")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00001111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfFetchIpsResultResponseResponseResult) {
name = jsonFieldsNameOfFetchIpsResultResponseResponseResult[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *FetchIpsResultResponseResponseResult) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *FetchIpsResultResponseResponseResult) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *FetchIpsResultResponseResponseResultNodesItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *FetchIpsResultResponseResponseResultNodesItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("nodeUuid")
json.EncodeUUID(e, s.NodeUuid)
}
{
e.FieldStart("nodeName")
e.Str(s.NodeName)
}
{
e.FieldStart("countryCode")
e.Str(s.CountryCode)
}
{
e.FieldStart("ips")
e.ArrStart()
for _, elem := range s.Ips {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfFetchIpsResultResponseResponseResultNodesItem = [4]string{
0: "nodeUuid",
1: "nodeName",
2: "countryCode",
3: "ips",
}
// Decode decodes FetchIpsResultResponseResponseResultNodesItem from json.
func (s *FetchIpsResultResponseResponseResultNodesItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode FetchIpsResultResponseResponseResultNodesItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "nodeUuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.NodeUuid = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodeUuid\"")
}
case "nodeName":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.NodeName = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodeName\"")
}
case "countryCode":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.CountryCode = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"countryCode\"")
}
case "ips":
requiredBitSet[0] |= 1 << 3
if err := func() error {
s.Ips = make([]Ips, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem Ips
if err := elem.Decode(d); err != nil {
return err
}
s.Ips = append(s.Ips, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"ips\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode FetchIpsResultResponseResponseResultNodesItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00001111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfFetchIpsResultResponseResponseResultNodesItem) {
name = jsonFieldsNameOfFetchIpsResultResponseResponseResultNodesItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *FetchIpsResultResponseResponseResultNodesItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *FetchIpsResultResponseResponseResultNodesItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *FetchUsersIpsResultResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *FetchUsersIpsResultResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfFetchUsersIpsResultResponse = [1]string{
0: "response",
}
// Decode decodes FetchUsersIpsResultResponse from json.
func (s *FetchUsersIpsResultResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode FetchUsersIpsResultResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode FetchUsersIpsResultResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfFetchUsersIpsResultResponse) {
name = jsonFieldsNameOfFetchUsersIpsResultResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *FetchUsersIpsResultResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *FetchUsersIpsResultResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *FetchUsersIpsResultResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *FetchUsersIpsResultResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("isCompleted")
e.Bool(s.IsCompleted)
}
{
e.FieldStart("isFailed")
e.Bool(s.IsFailed)
}
{
e.FieldStart("result")
s.Result.Encode(e)
}
}
var jsonFieldsNameOfFetchUsersIpsResultResponseResponse = [3]string{
0: "isCompleted",
1: "isFailed",
2: "result",
}
// Decode decodes FetchUsersIpsResultResponseResponse from json.
func (s *FetchUsersIpsResultResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode FetchUsersIpsResultResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "isCompleted":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Bool()
s.IsCompleted = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isCompleted\"")
}
case "isFailed":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Bool()
s.IsFailed = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isFailed\"")
}
case "result":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.Result.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"result\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode FetchUsersIpsResultResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfFetchUsersIpsResultResponseResponse) {
name = jsonFieldsNameOfFetchUsersIpsResultResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *FetchUsersIpsResultResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *FetchUsersIpsResultResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *FetchUsersIpsResultResponseResponseResult) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *FetchUsersIpsResultResponseResponseResult) encodeFields(e *jx.Encoder) {
{
e.FieldStart("success")
e.Bool(s.Success)
}
{
e.FieldStart("nodeUuid")
json.EncodeUUID(e, s.NodeUuid)
}
{
e.FieldStart("users")
e.ArrStart()
for _, elem := range s.Users {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfFetchUsersIpsResultResponseResponseResult = [3]string{
0: "success",
1: "nodeUuid",
2: "users",
}
// Decode decodes FetchUsersIpsResultResponseResponseResult from json.
func (s *FetchUsersIpsResultResponseResponseResult) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode FetchUsersIpsResultResponseResponseResult to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "success":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Bool()
s.Success = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"success\"")
}
case "nodeUuid":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := json.DecodeUUID(d)
s.NodeUuid = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodeUuid\"")
}
case "users":
requiredBitSet[0] |= 1 << 2
if err := func() error {
s.Users = make([]FetchUsersIpsResultResponseResponseResultUsersItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem FetchUsersIpsResultResponseResponseResultUsersItem
if err := elem.Decode(d); err != nil {
return err
}
s.Users = append(s.Users, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"users\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode FetchUsersIpsResultResponseResponseResult")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfFetchUsersIpsResultResponseResponseResult) {
name = jsonFieldsNameOfFetchUsersIpsResultResponseResponseResult[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *FetchUsersIpsResultResponseResponseResult) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *FetchUsersIpsResultResponseResponseResult) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *FetchUsersIpsResultResponseResponseResultUsersItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *FetchUsersIpsResultResponseResponseResultUsersItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("userId")
e.Str(s.UserId)
}
{
e.FieldStart("ips")
e.ArrStart()
for _, elem := range s.Ips {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfFetchUsersIpsResultResponseResponseResultUsersItem = [2]string{
0: "userId",
1: "ips",
}
// Decode decodes FetchUsersIpsResultResponseResponseResultUsersItem from json.
func (s *FetchUsersIpsResultResponseResponseResultUsersItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode FetchUsersIpsResultResponseResponseResultUsersItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "userId":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.UserId = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"userId\"")
}
case "ips":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.Ips = make([]Ips, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem Ips
if err := elem.Decode(d); err != nil {
return err
}
s.Ips = append(s.Ips, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"ips\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode FetchUsersIpsResultResponseResponseResultUsersItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfFetchUsersIpsResultResponseResponseResultUsersItem) {
name = jsonFieldsNameOfFetchUsersIpsResultResponseResponseResultUsersItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *FetchUsersIpsResultResponseResponseResultUsersItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *FetchUsersIpsResultResponseResponseResultUsersItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *FindAllApiTokensResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *FindAllApiTokensResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfFindAllApiTokensResponse = [1]string{
0: "response",
}
// Decode decodes FindAllApiTokensResponse from json.
func (s *FindAllApiTokensResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode FindAllApiTokensResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode FindAllApiTokensResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfFindAllApiTokensResponse) {
name = jsonFieldsNameOfFindAllApiTokensResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *FindAllApiTokensResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *FindAllApiTokensResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *FindAllApiTokensResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *FindAllApiTokensResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("tokens")
e.ArrStart()
for _, elem := range s.Tokens {
elem.Encode(e)
}
e.ArrEnd()
}
{
e.FieldStart("docs")
s.Docs.Encode(e)
}
}
var jsonFieldsNameOfFindAllApiTokensResponseResponse = [2]string{
0: "tokens",
1: "docs",
}
// Decode decodes FindAllApiTokensResponseResponse from json.
func (s *FindAllApiTokensResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode FindAllApiTokensResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "tokens":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Tokens = make([]FindAllApiTokensResponseResponseTokensItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem FindAllApiTokensResponseResponseTokensItem
if err := elem.Decode(d); err != nil {
return err
}
s.Tokens = append(s.Tokens, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"tokens\"")
}
case "docs":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.Docs.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"docs\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode FindAllApiTokensResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfFindAllApiTokensResponseResponse) {
name = jsonFieldsNameOfFindAllApiTokensResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *FindAllApiTokensResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *FindAllApiTokensResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *FindAllApiTokensResponseResponseDocs) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *FindAllApiTokensResponseResponseDocs) encodeFields(e *jx.Encoder) {
{
e.FieldStart("enabled")
e.Bool(s.Enabled)
}
{
e.FieldStart("scalarPath")
s.ScalarPath.Encode(e)
}
{
e.FieldStart("swaggerPath")
s.SwaggerPath.Encode(e)
}
}
var jsonFieldsNameOfFindAllApiTokensResponseResponseDocs = [3]string{
0: "enabled",
1: "scalarPath",
2: "swaggerPath",
}
// Decode decodes FindAllApiTokensResponseResponseDocs from json.
func (s *FindAllApiTokensResponseResponseDocs) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode FindAllApiTokensResponseResponseDocs to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "enabled":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Bool()
s.Enabled = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"enabled\"")
}
case "scalarPath":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.ScalarPath.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"scalarPath\"")
}
case "swaggerPath":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.SwaggerPath.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"swaggerPath\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode FindAllApiTokensResponseResponseDocs")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfFindAllApiTokensResponseResponseDocs) {
name = jsonFieldsNameOfFindAllApiTokensResponseResponseDocs[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *FindAllApiTokensResponseResponseDocs) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *FindAllApiTokensResponseResponseDocs) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *FindAllApiTokensResponseResponseTokensItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *FindAllApiTokensResponseResponseTokensItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("name")
e.Str(s.Name)
}
{
e.FieldStart("expireAt")
json.EncodeDateTime(e, s.ExpireAt)
}
{
e.FieldStart("scopes")
e.ArrStart()
for _, elem := range s.Scopes {
e.Str(elem)
}
e.ArrEnd()
}
{
e.FieldStart("createdAt")
json.EncodeDateTime(e, s.CreatedAt)
}
{
e.FieldStart("updatedAt")
json.EncodeDateTime(e, s.UpdatedAt)
}
}
var jsonFieldsNameOfFindAllApiTokensResponseResponseTokensItem = [6]string{
0: "uuid",
1: "name",
2: "expireAt",
3: "scopes",
4: "createdAt",
5: "updatedAt",
}
// Decode decodes FindAllApiTokensResponseResponseTokensItem from json.
func (s *FindAllApiTokensResponseResponseTokensItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode FindAllApiTokensResponseResponseTokensItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "name":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "expireAt":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := json.DecodeDateTime(d)
s.ExpireAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"expireAt\"")
}
case "scopes":
requiredBitSet[0] |= 1 << 3
if err := func() error {
s.Scopes = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.Scopes = append(s.Scopes, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"scopes\"")
}
case "createdAt":
requiredBitSet[0] |= 1 << 4
if err := func() error {
v, err := json.DecodeDateTime(d)
s.CreatedAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"createdAt\"")
}
case "updatedAt":
requiredBitSet[0] |= 1 << 5
if err := func() error {
v, err := json.DecodeDateTime(d)
s.UpdatedAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"updatedAt\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode FindAllApiTokensResponseResponseTokensItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00111111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfFindAllApiTokensResponseResponseTokensItem) {
name = jsonFieldsNameOfFindAllApiTokensResponseResponseTokensItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *FindAllApiTokensResponseResponseTokensItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *FindAllApiTokensResponseResponseTokensItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ForbiddenError) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ForbiddenError) encodeFields(e *jx.Encoder) {
{
e.FieldStart("message")
e.Str(s.Message)
}
{
e.FieldStart("statusCode")
e.Float64(s.StatusCode)
}
}
var jsonFieldsNameOfForbiddenError = [2]string{
0: "message",
1: "statusCode",
}
// Decode decodes ForbiddenError from json.
func (s *ForbiddenError) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ForbiddenError to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "message":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Message = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"message\"")
}
case "statusCode":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.StatusCode = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"statusCode\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ForbiddenError")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfForbiddenError) {
name = jsonFieldsNameOfForbiddenError[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ForbiddenError) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ForbiddenError) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GenerateX25519Response) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GenerateX25519Response) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfGenerateX25519Response = [1]string{
0: "response",
}
// Decode decodes GenerateX25519Response from json.
func (s *GenerateX25519Response) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GenerateX25519Response to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GenerateX25519Response")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGenerateX25519Response) {
name = jsonFieldsNameOfGenerateX25519Response[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GenerateX25519Response) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GenerateX25519Response) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GenerateX25519ResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GenerateX25519ResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("keypairs")
e.ArrStart()
for _, elem := range s.Keypairs {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfGenerateX25519ResponseResponse = [1]string{
0: "keypairs",
}
// Decode decodes GenerateX25519ResponseResponse from json.
func (s *GenerateX25519ResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GenerateX25519ResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "keypairs":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Keypairs = make([]GenerateX25519ResponseResponseKeypairsItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem GenerateX25519ResponseResponseKeypairsItem
if err := elem.Decode(d); err != nil {
return err
}
s.Keypairs = append(s.Keypairs, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"keypairs\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GenerateX25519ResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGenerateX25519ResponseResponse) {
name = jsonFieldsNameOfGenerateX25519ResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GenerateX25519ResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GenerateX25519ResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GenerateX25519ResponseResponseKeypairsItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GenerateX25519ResponseResponseKeypairsItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("publicKey")
e.Str(s.PublicKey)
}
{
e.FieldStart("privateKey")
e.Str(s.PrivateKey)
}
}
var jsonFieldsNameOfGenerateX25519ResponseResponseKeypairsItem = [2]string{
0: "publicKey",
1: "privateKey",
}
// Decode decodes GenerateX25519ResponseResponseKeypairsItem from json.
func (s *GenerateX25519ResponseResponseKeypairsItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GenerateX25519ResponseResponseKeypairsItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "publicKey":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.PublicKey = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"publicKey\"")
}
case "privateKey":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.PrivateKey = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"privateKey\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GenerateX25519ResponseResponseKeypairsItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGenerateX25519ResponseResponseKeypairsItem) {
name = jsonFieldsNameOfGenerateX25519ResponseResponseKeypairsItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GenerateX25519ResponseResponseKeypairsItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GenerateX25519ResponseResponseKeypairsItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *Generic) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *Generic) encodeFields(e *jx.Encoder) {
{
e.FieldStart("enabled")
e.Bool(s.Enabled)
}
{
e.FieldStart("clientId")
s.ClientId.Encode(e)
}
{
e.FieldStart("clientSecret")
s.ClientSecret.Encode(e)
}
{
e.FieldStart("withPkce")
e.Bool(s.WithPkce)
}
{
e.FieldStart("authorizationUrl")
s.AuthorizationUrl.Encode(e)
}
{
e.FieldStart("tokenUrl")
s.TokenUrl.Encode(e)
}
{
e.FieldStart("frontendDomain")
s.FrontendDomain.Encode(e)
}
{
e.FieldStart("allowedEmails")
e.ArrStart()
for _, elem := range s.AllowedEmails {
e.Str(elem)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfGeneric = [8]string{
0: "enabled",
1: "clientId",
2: "clientSecret",
3: "withPkce",
4: "authorizationUrl",
5: "tokenUrl",
6: "frontendDomain",
7: "allowedEmails",
}
// Decode decodes Generic from json.
func (s *Generic) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode Generic to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "enabled":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Bool()
s.Enabled = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"enabled\"")
}
case "clientId":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.ClientId.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"clientId\"")
}
case "clientSecret":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.ClientSecret.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"clientSecret\"")
}
case "withPkce":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Bool()
s.WithPkce = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"withPkce\"")
}
case "authorizationUrl":
requiredBitSet[0] |= 1 << 4
if err := func() error {
if err := s.AuthorizationUrl.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"authorizationUrl\"")
}
case "tokenUrl":
requiredBitSet[0] |= 1 << 5
if err := func() error {
if err := s.TokenUrl.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"tokenUrl\"")
}
case "frontendDomain":
requiredBitSet[0] |= 1 << 6
if err := func() error {
if err := s.FrontendDomain.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"frontendDomain\"")
}
case "allowedEmails":
requiredBitSet[0] |= 1 << 7
if err := func() error {
s.AllowedEmails = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.AllowedEmails = append(s.AllowedEmails, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"allowedEmails\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode Generic")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b11111111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGeneric) {
name = jsonFieldsNameOfGeneric[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *Generic) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *Generic) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetAllHwidDevicesResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetAllHwidDevicesResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfGetAllHwidDevicesResponse = [1]string{
0: "response",
}
// Decode decodes GetAllHwidDevicesResponse from json.
func (s *GetAllHwidDevicesResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetAllHwidDevicesResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetAllHwidDevicesResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetAllHwidDevicesResponse) {
name = jsonFieldsNameOfGetAllHwidDevicesResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetAllHwidDevicesResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetAllHwidDevicesResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetAllSubscriptionsResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetAllSubscriptionsResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfGetAllSubscriptionsResponse = [1]string{
0: "response",
}
// Decode decodes GetAllSubscriptionsResponse from json.
func (s *GetAllSubscriptionsResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetAllSubscriptionsResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetAllSubscriptionsResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetAllSubscriptionsResponse) {
name = jsonFieldsNameOfGetAllSubscriptionsResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetAllSubscriptionsResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetAllSubscriptionsResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetAllSubscriptionsResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetAllSubscriptionsResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("subscriptions")
e.ArrStart()
for _, elem := range s.Subscriptions {
elem.Encode(e)
}
e.ArrEnd()
}
{
e.FieldStart("total")
e.Float64(s.Total)
}
}
var jsonFieldsNameOfGetAllSubscriptionsResponseResponse = [2]string{
0: "subscriptions",
1: "total",
}
// Decode decodes GetAllSubscriptionsResponseResponse from json.
func (s *GetAllSubscriptionsResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetAllSubscriptionsResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "subscriptions":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Subscriptions = make([]Subscription, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem Subscription
if err := elem.Decode(d); err != nil {
return err
}
s.Subscriptions = append(s.Subscriptions, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"subscriptions\"")
}
case "total":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.Total = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"total\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetAllSubscriptionsResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetAllSubscriptionsResponseResponse) {
name = jsonFieldsNameOfGetAllSubscriptionsResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetAllSubscriptionsResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetAllSubscriptionsResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetAllUsersResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetAllUsersResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfGetAllUsersResponse = [1]string{
0: "response",
}
// Decode decodes GetAllUsersResponse from json.
func (s *GetAllUsersResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetAllUsersResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetAllUsersResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetAllUsersResponse) {
name = jsonFieldsNameOfGetAllUsersResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetAllUsersResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetAllUsersResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetAllUsersResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetAllUsersResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("users")
e.ArrStart()
for _, elem := range s.Users {
elem.Encode(e)
}
e.ArrEnd()
}
{
e.FieldStart("total")
e.Float64(s.Total)
}
}
var jsonFieldsNameOfGetAllUsersResponseResponse = [2]string{
0: "users",
1: "total",
}
// Decode decodes GetAllUsersResponseResponse from json.
func (s *GetAllUsersResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetAllUsersResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "users":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Users = make([]UserItemInfo, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem UserItemInfo
if err := elem.Decode(d); err != nil {
return err
}
s.Users = append(s.Users, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"users\"")
}
case "total":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.Total = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"total\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetAllUsersResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetAllUsersResponseResponse) {
name = jsonFieldsNameOfGetAllUsersResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetAllUsersResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetAllUsersResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetApiTokenScopesResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetApiTokenScopesResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfGetApiTokenScopesResponse = [1]string{
0: "response",
}
// Decode decodes GetApiTokenScopesResponse from json.
func (s *GetApiTokenScopesResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetApiTokenScopesResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetApiTokenScopesResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetApiTokenScopesResponse) {
name = jsonFieldsNameOfGetApiTokenScopesResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetApiTokenScopesResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetApiTokenScopesResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetApiTokenScopesResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetApiTokenScopesResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("wildcard")
e.Str(s.Wildcard)
}
{
e.FieldStart("resources")
e.ArrStart()
for _, elem := range s.Resources {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfGetApiTokenScopesResponseResponse = [2]string{
0: "wildcard",
1: "resources",
}
// Decode decodes GetApiTokenScopesResponseResponse from json.
func (s *GetApiTokenScopesResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetApiTokenScopesResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "wildcard":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Wildcard = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"wildcard\"")
}
case "resources":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.Resources = make([]GetApiTokenScopesResponseResponseResourcesItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem GetApiTokenScopesResponseResponseResourcesItem
if err := elem.Decode(d); err != nil {
return err
}
s.Resources = append(s.Resources, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"resources\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetApiTokenScopesResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetApiTokenScopesResponseResponse) {
name = jsonFieldsNameOfGetApiTokenScopesResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetApiTokenScopesResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetApiTokenScopesResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetApiTokenScopesResponseResponseResourcesItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetApiTokenScopesResponseResponseResourcesItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("resource")
e.Str(s.Resource)
}
{
e.FieldStart("resourceScopes")
e.ArrStart()
for _, elem := range s.ResourceScopes {
e.Str(elem)
}
e.ArrEnd()
}
{
e.FieldStart("endpoints")
e.ArrStart()
for _, elem := range s.Endpoints {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfGetApiTokenScopesResponseResponseResourcesItem = [3]string{
0: "resource",
1: "resourceScopes",
2: "endpoints",
}
// Decode decodes GetApiTokenScopesResponseResponseResourcesItem from json.
func (s *GetApiTokenScopesResponseResponseResourcesItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetApiTokenScopesResponseResponseResourcesItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "resource":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Resource = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"resource\"")
}
case "resourceScopes":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.ResourceScopes = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.ResourceScopes = append(s.ResourceScopes, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"resourceScopes\"")
}
case "endpoints":
requiredBitSet[0] |= 1 << 2
if err := func() error {
s.Endpoints = make([]GetApiTokenScopesResponseResponseResourcesItemEndpointsItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem GetApiTokenScopesResponseResponseResourcesItemEndpointsItem
if err := elem.Decode(d); err != nil {
return err
}
s.Endpoints = append(s.Endpoints, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"endpoints\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetApiTokenScopesResponseResponseResourcesItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetApiTokenScopesResponseResponseResourcesItem) {
name = jsonFieldsNameOfGetApiTokenScopesResponseResponseResourcesItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetApiTokenScopesResponseResponseResourcesItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetApiTokenScopesResponseResponseResourcesItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetApiTokenScopesResponseResponseResourcesItemEndpointsItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetApiTokenScopesResponseResponseResourcesItemEndpointsItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("key")
e.Str(s.Key)
}
{
e.FieldStart("kind")
s.Kind.Encode(e)
}
{
e.FieldStart("method")
e.Str(s.Method)
}
{
e.FieldStart("path")
e.Str(s.Path)
}
{
e.FieldStart("description")
e.Str(s.Description)
}
}
var jsonFieldsNameOfGetApiTokenScopesResponseResponseResourcesItemEndpointsItem = [5]string{
0: "key",
1: "kind",
2: "method",
3: "path",
4: "description",
}
// Decode decodes GetApiTokenScopesResponseResponseResourcesItemEndpointsItem from json.
func (s *GetApiTokenScopesResponseResponseResourcesItemEndpointsItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetApiTokenScopesResponseResponseResourcesItemEndpointsItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "key":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Key = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"key\"")
}
case "kind":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.Kind.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"kind\"")
}
case "method":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.Method = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"method\"")
}
case "path":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Str()
s.Path = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"path\"")
}
case "description":
requiredBitSet[0] |= 1 << 4
if err := func() error {
v, err := d.Str()
s.Description = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"description\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetApiTokenScopesResponseResponseResourcesItemEndpointsItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00011111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetApiTokenScopesResponseResponseResourcesItemEndpointsItem) {
name = jsonFieldsNameOfGetApiTokenScopesResponseResponseResourcesItemEndpointsItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetApiTokenScopesResponseResponseResourcesItemEndpointsItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetApiTokenScopesResponseResponseResourcesItemEndpointsItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes GetApiTokenScopesResponseResponseResourcesItemEndpointsItemKind as json.
func (s GetApiTokenScopesResponseResponseResourcesItemEndpointsItemKind) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes GetApiTokenScopesResponseResponseResourcesItemEndpointsItemKind from json.
func (s *GetApiTokenScopesResponseResponseResourcesItemEndpointsItemKind) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetApiTokenScopesResponseResponseResourcesItemEndpointsItemKind to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch GetApiTokenScopesResponseResponseResourcesItemEndpointsItemKind(v) {
case GetApiTokenScopesResponseResponseResourcesItemEndpointsItemKindRead:
*s = GetApiTokenScopesResponseResponseResourcesItemEndpointsItemKindRead
case GetApiTokenScopesResponseResponseResourcesItemEndpointsItemKindWrite:
*s = GetApiTokenScopesResponseResponseResourcesItemEndpointsItemKindWrite
default:
*s = GetApiTokenScopesResponseResponseResourcesItemEndpointsItemKind(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s GetApiTokenScopesResponseResponseResourcesItemEndpointsItemKind) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetApiTokenScopesResponseResponseResourcesItemEndpointsItemKind) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetBandwidthStatsResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetBandwidthStatsResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfGetBandwidthStatsResponse = [1]string{
0: "response",
}
// Decode decodes GetBandwidthStatsResponse from json.
func (s *GetBandwidthStatsResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetBandwidthStatsResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetBandwidthStatsResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetBandwidthStatsResponse) {
name = jsonFieldsNameOfGetBandwidthStatsResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetBandwidthStatsResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetBandwidthStatsResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetBandwidthStatsResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetBandwidthStatsResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("bandwidthLastTwoDays")
s.BandwidthLastTwoDays.Encode(e)
}
{
e.FieldStart("bandwidthLastSevenDays")
s.BandwidthLastSevenDays.Encode(e)
}
{
e.FieldStart("bandwidthLast30Days")
s.BandwidthLast30Days.Encode(e)
}
{
e.FieldStart("bandwidthCalendarMonth")
s.BandwidthCalendarMonth.Encode(e)
}
{
e.FieldStart("bandwidthCurrentYear")
s.BandwidthCurrentYear.Encode(e)
}
}
var jsonFieldsNameOfGetBandwidthStatsResponseResponse = [5]string{
0: "bandwidthLastTwoDays",
1: "bandwidthLastSevenDays",
2: "bandwidthLast30Days",
3: "bandwidthCalendarMonth",
4: "bandwidthCurrentYear",
}
// Decode decodes GetBandwidthStatsResponseResponse from json.
func (s *GetBandwidthStatsResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetBandwidthStatsResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "bandwidthLastTwoDays":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.BandwidthLastTwoDays.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"bandwidthLastTwoDays\"")
}
case "bandwidthLastSevenDays":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.BandwidthLastSevenDays.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"bandwidthLastSevenDays\"")
}
case "bandwidthLast30Days":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.BandwidthLast30Days.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"bandwidthLast30Days\"")
}
case "bandwidthCalendarMonth":
requiredBitSet[0] |= 1 << 3
if err := func() error {
if err := s.BandwidthCalendarMonth.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"bandwidthCalendarMonth\"")
}
case "bandwidthCurrentYear":
requiredBitSet[0] |= 1 << 4
if err := func() error {
if err := s.BandwidthCurrentYear.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"bandwidthCurrentYear\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetBandwidthStatsResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00011111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetBandwidthStatsResponseResponse) {
name = jsonFieldsNameOfGetBandwidthStatsResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetBandwidthStatsResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetBandwidthStatsResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetConnectionKeysByUuidResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetConnectionKeysByUuidResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfGetConnectionKeysByUuidResponse = [1]string{
0: "response",
}
// Decode decodes GetConnectionKeysByUuidResponse from json.
func (s *GetConnectionKeysByUuidResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetConnectionKeysByUuidResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetConnectionKeysByUuidResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetConnectionKeysByUuidResponse) {
name = jsonFieldsNameOfGetConnectionKeysByUuidResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetConnectionKeysByUuidResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetConnectionKeysByUuidResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetConnectionKeysByUuidResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetConnectionKeysByUuidResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("enabledKeys")
e.ArrStart()
for _, elem := range s.EnabledKeys {
e.Str(elem)
}
e.ArrEnd()
}
{
e.FieldStart("hiddenKeys")
e.ArrStart()
for _, elem := range s.HiddenKeys {
e.Str(elem)
}
e.ArrEnd()
}
{
e.FieldStart("disabledKeys")
e.ArrStart()
for _, elem := range s.DisabledKeys {
e.Str(elem)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfGetConnectionKeysByUuidResponseResponse = [3]string{
0: "enabledKeys",
1: "hiddenKeys",
2: "disabledKeys",
}
// Decode decodes GetConnectionKeysByUuidResponseResponse from json.
func (s *GetConnectionKeysByUuidResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetConnectionKeysByUuidResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "enabledKeys":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.EnabledKeys = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.EnabledKeys = append(s.EnabledKeys, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"enabledKeys\"")
}
case "hiddenKeys":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.HiddenKeys = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.HiddenKeys = append(s.HiddenKeys, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"hiddenKeys\"")
}
case "disabledKeys":
requiredBitSet[0] |= 1 << 2
if err := func() error {
s.DisabledKeys = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.DisabledKeys = append(s.DisabledKeys, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"disabledKeys\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetConnectionKeysByUuidResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetConnectionKeysByUuidResponseResponse) {
name = jsonFieldsNameOfGetConnectionKeysByUuidResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetConnectionKeysByUuidResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetConnectionKeysByUuidResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetHwidDevicesStatsResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetHwidDevicesStatsResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfGetHwidDevicesStatsResponse = [1]string{
0: "response",
}
// Decode decodes GetHwidDevicesStatsResponse from json.
func (s *GetHwidDevicesStatsResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetHwidDevicesStatsResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetHwidDevicesStatsResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetHwidDevicesStatsResponse) {
name = jsonFieldsNameOfGetHwidDevicesStatsResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetHwidDevicesStatsResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetHwidDevicesStatsResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetHwidDevicesStatsResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetHwidDevicesStatsResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("byPlatform")
e.ArrStart()
for _, elem := range s.ByPlatform {
elem.Encode(e)
}
e.ArrEnd()
}
{
e.FieldStart("stats")
s.Stats.Encode(e)
}
}
var jsonFieldsNameOfGetHwidDevicesStatsResponseResponse = [2]string{
0: "byPlatform",
1: "stats",
}
// Decode decodes GetHwidDevicesStatsResponseResponse from json.
func (s *GetHwidDevicesStatsResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetHwidDevicesStatsResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "byPlatform":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.ByPlatform = make([]GetHwidDevicesStatsResponseResponseByPlatformItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem GetHwidDevicesStatsResponseResponseByPlatformItem
if err := elem.Decode(d); err != nil {
return err
}
s.ByPlatform = append(s.ByPlatform, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"byPlatform\"")
}
case "stats":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.Stats.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"stats\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetHwidDevicesStatsResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetHwidDevicesStatsResponseResponse) {
name = jsonFieldsNameOfGetHwidDevicesStatsResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetHwidDevicesStatsResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetHwidDevicesStatsResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetHwidDevicesStatsResponseResponseByPlatformItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetHwidDevicesStatsResponseResponseByPlatformItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("platform")
e.Str(s.Platform)
}
{
e.FieldStart("count")
e.Float64(s.Count)
}
{
e.FieldStart("byApp")
e.ArrStart()
for _, elem := range s.ByApp {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfGetHwidDevicesStatsResponseResponseByPlatformItem = [3]string{
0: "platform",
1: "count",
2: "byApp",
}
// Decode decodes GetHwidDevicesStatsResponseResponseByPlatformItem from json.
func (s *GetHwidDevicesStatsResponseResponseByPlatformItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetHwidDevicesStatsResponseResponseByPlatformItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "platform":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Platform = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"platform\"")
}
case "count":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.Count = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"count\"")
}
case "byApp":
requiredBitSet[0] |= 1 << 2
if err := func() error {
s.ByApp = make([]ByAppItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem ByAppItem
if err := elem.Decode(d); err != nil {
return err
}
s.ByApp = append(s.ByApp, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"byApp\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetHwidDevicesStatsResponseResponseByPlatformItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetHwidDevicesStatsResponseResponseByPlatformItem) {
name = jsonFieldsNameOfGetHwidDevicesStatsResponseResponseByPlatformItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetHwidDevicesStatsResponseResponseByPlatformItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetHwidDevicesStatsResponseResponseByPlatformItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetHwidDevicesStatsResponseResponseStats) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetHwidDevicesStatsResponseResponseStats) encodeFields(e *jx.Encoder) {
{
e.FieldStart("totalUniqueDevices")
e.Float64(s.TotalUniqueDevices)
}
{
e.FieldStart("totalHwidDevices")
e.Float64(s.TotalHwidDevices)
}
{
e.FieldStart("averageHwidDevicesPerUser")
e.Float64(s.AverageHwidDevicesPerUser)
}
}
var jsonFieldsNameOfGetHwidDevicesStatsResponseResponseStats = [3]string{
0: "totalUniqueDevices",
1: "totalHwidDevices",
2: "averageHwidDevicesPerUser",
}
// Decode decodes GetHwidDevicesStatsResponseResponseStats from json.
func (s *GetHwidDevicesStatsResponseResponseStats) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetHwidDevicesStatsResponseResponseStats to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "totalUniqueDevices":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.TotalUniqueDevices = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"totalUniqueDevices\"")
}
case "totalHwidDevices":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.TotalHwidDevices = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"totalHwidDevices\"")
}
case "averageHwidDevicesPerUser":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Float64()
s.AverageHwidDevicesPerUser = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"averageHwidDevicesPerUser\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetHwidDevicesStatsResponseResponseStats")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetHwidDevicesStatsResponseResponseStats) {
name = jsonFieldsNameOfGetHwidDevicesStatsResponseResponseStats[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetHwidDevicesStatsResponseResponseStats) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetHwidDevicesStatsResponseResponseStats) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetInfraProvidersResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetInfraProvidersResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfGetInfraProvidersResponse = [1]string{
0: "response",
}
// Decode decodes GetInfraProvidersResponse from json.
func (s *GetInfraProvidersResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetInfraProvidersResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetInfraProvidersResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetInfraProvidersResponse) {
name = jsonFieldsNameOfGetInfraProvidersResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetInfraProvidersResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetInfraProvidersResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetInfraProvidersResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetInfraProvidersResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("total")
e.Float64(s.Total)
}
{
e.FieldStart("providers")
e.ArrStart()
for _, elem := range s.Providers {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfGetInfraProvidersResponseResponse = [2]string{
0: "total",
1: "providers",
}
// Decode decodes GetInfraProvidersResponseResponse from json.
func (s *GetInfraProvidersResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetInfraProvidersResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "total":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.Total = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"total\"")
}
case "providers":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.Providers = make([]Provider, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem Provider
if err := elem.Decode(d); err != nil {
return err
}
s.Providers = append(s.Providers, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"providers\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetInfraProvidersResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetInfraProvidersResponseResponse) {
name = jsonFieldsNameOfGetInfraProvidersResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetInfraProvidersResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetInfraProvidersResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetInternalSquadAccessibleNodesResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetInternalSquadAccessibleNodesResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfGetInternalSquadAccessibleNodesResponse = [1]string{
0: "response",
}
// Decode decodes GetInternalSquadAccessibleNodesResponse from json.
func (s *GetInternalSquadAccessibleNodesResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetInternalSquadAccessibleNodesResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetInternalSquadAccessibleNodesResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetInternalSquadAccessibleNodesResponse) {
name = jsonFieldsNameOfGetInternalSquadAccessibleNodesResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetInternalSquadAccessibleNodesResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetInternalSquadAccessibleNodesResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetInternalSquadAccessibleNodesResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetInternalSquadAccessibleNodesResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("squadUuid")
json.EncodeUUID(e, s.SquadUuid)
}
{
e.FieldStart("accessibleNodes")
e.ArrStart()
for _, elem := range s.AccessibleNodes {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfGetInternalSquadAccessibleNodesResponseResponse = [2]string{
0: "squadUuid",
1: "accessibleNodes",
}
// Decode decodes GetInternalSquadAccessibleNodesResponseResponse from json.
func (s *GetInternalSquadAccessibleNodesResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetInternalSquadAccessibleNodesResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "squadUuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.SquadUuid = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"squadUuid\"")
}
case "accessibleNodes":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.AccessibleNodes = make([]GetInternalSquadAccessibleNodesResponseResponseAccessibleNodesItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem GetInternalSquadAccessibleNodesResponseResponseAccessibleNodesItem
if err := elem.Decode(d); err != nil {
return err
}
s.AccessibleNodes = append(s.AccessibleNodes, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"accessibleNodes\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetInternalSquadAccessibleNodesResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetInternalSquadAccessibleNodesResponseResponse) {
name = jsonFieldsNameOfGetInternalSquadAccessibleNodesResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetInternalSquadAccessibleNodesResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetInternalSquadAccessibleNodesResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetInternalSquadAccessibleNodesResponseResponseAccessibleNodesItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetInternalSquadAccessibleNodesResponseResponseAccessibleNodesItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("nodeName")
e.Str(s.NodeName)
}
{
e.FieldStart("countryCode")
e.Str(s.CountryCode)
}
{
e.FieldStart("configProfileUuid")
json.EncodeUUID(e, s.ConfigProfileUuid)
}
{
e.FieldStart("configProfileName")
e.Str(s.ConfigProfileName)
}
{
e.FieldStart("activeInbounds")
e.ArrStart()
for _, elem := range s.ActiveInbounds {
e.Str(elem)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfGetInternalSquadAccessibleNodesResponseResponseAccessibleNodesItem = [6]string{
0: "uuid",
1: "nodeName",
2: "countryCode",
3: "configProfileUuid",
4: "configProfileName",
5: "activeInbounds",
}
// Decode decodes GetInternalSquadAccessibleNodesResponseResponseAccessibleNodesItem from json.
func (s *GetInternalSquadAccessibleNodesResponseResponseAccessibleNodesItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetInternalSquadAccessibleNodesResponseResponseAccessibleNodesItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "nodeName":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.NodeName = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodeName\"")
}
case "countryCode":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.CountryCode = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"countryCode\"")
}
case "configProfileUuid":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := json.DecodeUUID(d)
s.ConfigProfileUuid = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"configProfileUuid\"")
}
case "configProfileName":
requiredBitSet[0] |= 1 << 4
if err := func() error {
v, err := d.Str()
s.ConfigProfileName = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"configProfileName\"")
}
case "activeInbounds":
requiredBitSet[0] |= 1 << 5
if err := func() error {
s.ActiveInbounds = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.ActiveInbounds = append(s.ActiveInbounds, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"activeInbounds\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetInternalSquadAccessibleNodesResponseResponseAccessibleNodesItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00111111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetInternalSquadAccessibleNodesResponseResponseAccessibleNodesItem) {
name = jsonFieldsNameOfGetInternalSquadAccessibleNodesResponseResponseAccessibleNodesItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetInternalSquadAccessibleNodesResponseResponseAccessibleNodesItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetInternalSquadAccessibleNodesResponseResponseAccessibleNodesItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetLegacyStatsNodesUsersUsageResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetLegacyStatsNodesUsersUsageResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
e.ArrStart()
for _, elem := range s.Response {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfGetLegacyStatsNodesUsersUsageResponse = [1]string{
0: "response",
}
// Decode decodes GetLegacyStatsNodesUsersUsageResponse from json.
func (s *GetLegacyStatsNodesUsersUsageResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetLegacyStatsNodesUsersUsageResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Response = make([]GetLegacyStatsNodesUsersUsageResponseResponseItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem GetLegacyStatsNodesUsersUsageResponseResponseItem
if err := elem.Decode(d); err != nil {
return err
}
s.Response = append(s.Response, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetLegacyStatsNodesUsersUsageResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetLegacyStatsNodesUsersUsageResponse) {
name = jsonFieldsNameOfGetLegacyStatsNodesUsersUsageResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetLegacyStatsNodesUsersUsageResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetLegacyStatsNodesUsersUsageResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetLegacyStatsNodesUsersUsageResponseResponseItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetLegacyStatsNodesUsersUsageResponseResponseItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("userUuid")
json.EncodeUUID(e, s.UserUuid)
}
{
e.FieldStart("username")
e.Str(s.Username)
}
{
e.FieldStart("nodeUuid")
json.EncodeUUID(e, s.NodeUuid)
}
{
e.FieldStart("total")
e.Float64(s.Total)
}
{
e.FieldStart("date")
e.Str(s.Date)
}
}
var jsonFieldsNameOfGetLegacyStatsNodesUsersUsageResponseResponseItem = [5]string{
0: "userUuid",
1: "username",
2: "nodeUuid",
3: "total",
4: "date",
}
// Decode decodes GetLegacyStatsNodesUsersUsageResponseResponseItem from json.
func (s *GetLegacyStatsNodesUsersUsageResponseResponseItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetLegacyStatsNodesUsersUsageResponseResponseItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "userUuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UserUuid = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"userUuid\"")
}
case "username":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Username = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"username\"")
}
case "nodeUuid":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := json.DecodeUUID(d)
s.NodeUuid = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodeUuid\"")
}
case "total":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Float64()
s.Total = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"total\"")
}
case "date":
requiredBitSet[0] |= 1 << 4
if err := func() error {
v, err := d.Str()
s.Date = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"date\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetLegacyStatsNodesUsersUsageResponseResponseItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00011111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetLegacyStatsNodesUsersUsageResponseResponseItem) {
name = jsonFieldsNameOfGetLegacyStatsNodesUsersUsageResponseResponseItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetLegacyStatsNodesUsersUsageResponseResponseItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetLegacyStatsNodesUsersUsageResponseResponseItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetLegacyStatsUserUsageResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetLegacyStatsUserUsageResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
e.ArrStart()
for _, elem := range s.Response {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfGetLegacyStatsUserUsageResponse = [1]string{
0: "response",
}
// Decode decodes GetLegacyStatsUserUsageResponse from json.
func (s *GetLegacyStatsUserUsageResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetLegacyStatsUserUsageResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Response = make([]GetLegacyStatsUserUsageResponseResponseItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem GetLegacyStatsUserUsageResponseResponseItem
if err := elem.Decode(d); err != nil {
return err
}
s.Response = append(s.Response, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetLegacyStatsUserUsageResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetLegacyStatsUserUsageResponse) {
name = jsonFieldsNameOfGetLegacyStatsUserUsageResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetLegacyStatsUserUsageResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetLegacyStatsUserUsageResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetLegacyStatsUserUsageResponseResponseItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetLegacyStatsUserUsageResponseResponseItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("userUuid")
json.EncodeUUID(e, s.UserUuid)
}
{
e.FieldStart("nodeUuid")
json.EncodeUUID(e, s.NodeUuid)
}
{
e.FieldStart("nodeName")
e.Str(s.NodeName)
}
{
e.FieldStart("countryCode")
e.Str(s.CountryCode)
}
{
e.FieldStart("total")
e.Float64(s.Total)
}
{
e.FieldStart("date")
e.Str(s.Date)
}
}
var jsonFieldsNameOfGetLegacyStatsUserUsageResponseResponseItem = [6]string{
0: "userUuid",
1: "nodeUuid",
2: "nodeName",
3: "countryCode",
4: "total",
5: "date",
}
// Decode decodes GetLegacyStatsUserUsageResponseResponseItem from json.
func (s *GetLegacyStatsUserUsageResponseResponseItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetLegacyStatsUserUsageResponseResponseItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "userUuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UserUuid = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"userUuid\"")
}
case "nodeUuid":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := json.DecodeUUID(d)
s.NodeUuid = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodeUuid\"")
}
case "nodeName":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.NodeName = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodeName\"")
}
case "countryCode":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Str()
s.CountryCode = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"countryCode\"")
}
case "total":
requiredBitSet[0] |= 1 << 4
if err := func() error {
v, err := d.Float64()
s.Total = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"total\"")
}
case "date":
requiredBitSet[0] |= 1 << 5
if err := func() error {
v, err := d.Str()
s.Date = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"date\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetLegacyStatsUserUsageResponseResponseItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00111111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetLegacyStatsUserUsageResponseResponseItem) {
name = jsonFieldsNameOfGetLegacyStatsUserUsageResponseResponseItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetLegacyStatsUserUsageResponseResponseItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetLegacyStatsUserUsageResponseResponseItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetMetadataResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetMetadataResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfGetMetadataResponse = [1]string{
0: "response",
}
// Decode decodes GetMetadataResponse from json.
func (s *GetMetadataResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetMetadataResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetMetadataResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetMetadataResponse) {
name = jsonFieldsNameOfGetMetadataResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetMetadataResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetMetadataResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetMetadataResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetMetadataResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("version")
e.Str(s.Version)
}
{
e.FieldStart("build")
s.Build.Encode(e)
}
{
e.FieldStart("git")
s.Git.Encode(e)
}
}
var jsonFieldsNameOfGetMetadataResponseResponse = [3]string{
0: "version",
1: "build",
2: "git",
}
// Decode decodes GetMetadataResponseResponse from json.
func (s *GetMetadataResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetMetadataResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "version":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Version = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"version\"")
}
case "build":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.Build.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"build\"")
}
case "git":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.Git.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"git\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetMetadataResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetMetadataResponseResponse) {
name = jsonFieldsNameOfGetMetadataResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetMetadataResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetMetadataResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetMetadataResponseResponseBuild) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetMetadataResponseResponseBuild) encodeFields(e *jx.Encoder) {
{
e.FieldStart("time")
e.Str(s.Time)
}
{
e.FieldStart("number")
e.Str(s.Number)
}
}
var jsonFieldsNameOfGetMetadataResponseResponseBuild = [2]string{
0: "time",
1: "number",
}
// Decode decodes GetMetadataResponseResponseBuild from json.
func (s *GetMetadataResponseResponseBuild) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetMetadataResponseResponseBuild to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "time":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Time = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"time\"")
}
case "number":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Number = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"number\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetMetadataResponseResponseBuild")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetMetadataResponseResponseBuild) {
name = jsonFieldsNameOfGetMetadataResponseResponseBuild[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetMetadataResponseResponseBuild) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetMetadataResponseResponseBuild) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetMetadataResponseResponseGit) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetMetadataResponseResponseGit) encodeFields(e *jx.Encoder) {
{
e.FieldStart("backend")
s.Backend.Encode(e)
}
{
e.FieldStart("frontend")
s.Frontend.Encode(e)
}
}
var jsonFieldsNameOfGetMetadataResponseResponseGit = [2]string{
0: "backend",
1: "frontend",
}
// Decode decodes GetMetadataResponseResponseGit from json.
func (s *GetMetadataResponseResponseGit) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetMetadataResponseResponseGit to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "backend":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Backend.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"backend\"")
}
case "frontend":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.Frontend.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"frontend\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetMetadataResponseResponseGit")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetMetadataResponseResponseGit) {
name = jsonFieldsNameOfGetMetadataResponseResponseGit[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetMetadataResponseResponseGit) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetMetadataResponseResponseGit) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetMetadataResponseResponseGitBackend) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetMetadataResponseResponseGitBackend) encodeFields(e *jx.Encoder) {
{
e.FieldStart("commitSha")
e.Str(s.CommitSha)
}
{
e.FieldStart("branch")
e.Str(s.Branch)
}
{
e.FieldStart("commitUrl")
e.Str(s.CommitUrl)
}
}
var jsonFieldsNameOfGetMetadataResponseResponseGitBackend = [3]string{
0: "commitSha",
1: "branch",
2: "commitUrl",
}
// Decode decodes GetMetadataResponseResponseGitBackend from json.
func (s *GetMetadataResponseResponseGitBackend) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetMetadataResponseResponseGitBackend to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "commitSha":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.CommitSha = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"commitSha\"")
}
case "branch":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Branch = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"branch\"")
}
case "commitUrl":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.CommitUrl = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"commitUrl\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetMetadataResponseResponseGitBackend")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetMetadataResponseResponseGitBackend) {
name = jsonFieldsNameOfGetMetadataResponseResponseGitBackend[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetMetadataResponseResponseGitBackend) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetMetadataResponseResponseGitBackend) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetMetadataResponseResponseGitFrontend) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetMetadataResponseResponseGitFrontend) encodeFields(e *jx.Encoder) {
{
e.FieldStart("commitSha")
e.Str(s.CommitSha)
}
{
e.FieldStart("commitUrl")
e.Str(s.CommitUrl)
}
}
var jsonFieldsNameOfGetMetadataResponseResponseGitFrontend = [2]string{
0: "commitSha",
1: "commitUrl",
}
// Decode decodes GetMetadataResponseResponseGitFrontend from json.
func (s *GetMetadataResponseResponseGitFrontend) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetMetadataResponseResponseGitFrontend to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "commitSha":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.CommitSha = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"commitSha\"")
}
case "commitUrl":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.CommitUrl = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"commitUrl\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetMetadataResponseResponseGitFrontend")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetMetadataResponseResponseGitFrontend) {
name = jsonFieldsNameOfGetMetadataResponseResponseGitFrontend[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetMetadataResponseResponseGitFrontend) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetMetadataResponseResponseGitFrontend) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetNodesMetricsResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetNodesMetricsResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfGetNodesMetricsResponse = [1]string{
0: "response",
}
// Decode decodes GetNodesMetricsResponse from json.
func (s *GetNodesMetricsResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetNodesMetricsResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetNodesMetricsResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetNodesMetricsResponse) {
name = jsonFieldsNameOfGetNodesMetricsResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetNodesMetricsResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetNodesMetricsResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetNodesMetricsResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetNodesMetricsResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("nodes")
e.ArrStart()
for _, elem := range s.Nodes {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfGetNodesMetricsResponseResponse = [1]string{
0: "nodes",
}
// Decode decodes GetNodesMetricsResponseResponse from json.
func (s *GetNodesMetricsResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetNodesMetricsResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "nodes":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Nodes = make([]GetNodesMetricsResponseResponseNodesItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem GetNodesMetricsResponseResponseNodesItem
if err := elem.Decode(d); err != nil {
return err
}
s.Nodes = append(s.Nodes, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodes\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetNodesMetricsResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetNodesMetricsResponseResponse) {
name = jsonFieldsNameOfGetNodesMetricsResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetNodesMetricsResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetNodesMetricsResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetNodesMetricsResponseResponseNodesItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetNodesMetricsResponseResponseNodesItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("nodeUuid")
e.Str(s.NodeUuid)
}
{
e.FieldStart("nodeName")
e.Str(s.NodeName)
}
{
e.FieldStart("countryEmoji")
e.Str(s.CountryEmoji)
}
{
e.FieldStart("providerName")
e.Str(s.ProviderName)
}
{
e.FieldStart("usersOnline")
e.Float64(s.UsersOnline)
}
{
e.FieldStart("inboundsStats")
e.ArrStart()
for _, elem := range s.InboundsStats {
elem.Encode(e)
}
e.ArrEnd()
}
{
e.FieldStart("outboundsStats")
e.ArrStart()
for _, elem := range s.OutboundsStats {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfGetNodesMetricsResponseResponseNodesItem = [7]string{
0: "nodeUuid",
1: "nodeName",
2: "countryEmoji",
3: "providerName",
4: "usersOnline",
5: "inboundsStats",
6: "outboundsStats",
}
// Decode decodes GetNodesMetricsResponseResponseNodesItem from json.
func (s *GetNodesMetricsResponseResponseNodesItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetNodesMetricsResponseResponseNodesItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "nodeUuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.NodeUuid = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodeUuid\"")
}
case "nodeName":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.NodeName = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodeName\"")
}
case "countryEmoji":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.CountryEmoji = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"countryEmoji\"")
}
case "providerName":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Str()
s.ProviderName = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"providerName\"")
}
case "usersOnline":
requiredBitSet[0] |= 1 << 4
if err := func() error {
v, err := d.Float64()
s.UsersOnline = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"usersOnline\"")
}
case "inboundsStats":
requiredBitSet[0] |= 1 << 5
if err := func() error {
s.InboundsStats = make([]InboundsStat, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem InboundsStat
if err := elem.Decode(d); err != nil {
return err
}
s.InboundsStats = append(s.InboundsStats, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"inboundsStats\"")
}
case "outboundsStats":
requiredBitSet[0] |= 1 << 6
if err := func() error {
s.OutboundsStats = make([]InboundsStat, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem InboundsStat
if err := elem.Decode(d); err != nil {
return err
}
s.OutboundsStats = append(s.OutboundsStats, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"outboundsStats\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetNodesMetricsResponseResponseNodesItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b01111111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetNodesMetricsResponseResponseNodesItem) {
name = jsonFieldsNameOfGetNodesMetricsResponseResponseNodesItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetNodesMetricsResponseResponseNodesItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetNodesMetricsResponseResponseNodesItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetNodesStatisticsResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetNodesStatisticsResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfGetNodesStatisticsResponse = [1]string{
0: "response",
}
// Decode decodes GetNodesStatisticsResponse from json.
func (s *GetNodesStatisticsResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetNodesStatisticsResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetNodesStatisticsResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetNodesStatisticsResponse) {
name = jsonFieldsNameOfGetNodesStatisticsResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetNodesStatisticsResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetNodesStatisticsResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetNodesStatisticsResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetNodesStatisticsResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("lastSevenDays")
e.ArrStart()
for _, elem := range s.LastSevenDays {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfGetNodesStatisticsResponseResponse = [1]string{
0: "lastSevenDays",
}
// Decode decodes GetNodesStatisticsResponseResponse from json.
func (s *GetNodesStatisticsResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetNodesStatisticsResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "lastSevenDays":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.LastSevenDays = make([]GetNodesStatisticsResponseResponseLastSevenDaysItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem GetNodesStatisticsResponseResponseLastSevenDaysItem
if err := elem.Decode(d); err != nil {
return err
}
s.LastSevenDays = append(s.LastSevenDays, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"lastSevenDays\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetNodesStatisticsResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetNodesStatisticsResponseResponse) {
name = jsonFieldsNameOfGetNodesStatisticsResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetNodesStatisticsResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetNodesStatisticsResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetNodesStatisticsResponseResponseLastSevenDaysItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetNodesStatisticsResponseResponseLastSevenDaysItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("nodeName")
e.Str(s.NodeName)
}
{
e.FieldStart("date")
e.Str(s.Date)
}
{
e.FieldStart("totalBytes")
e.Str(s.TotalBytes)
}
}
var jsonFieldsNameOfGetNodesStatisticsResponseResponseLastSevenDaysItem = [3]string{
0: "nodeName",
1: "date",
2: "totalBytes",
}
// Decode decodes GetNodesStatisticsResponseResponseLastSevenDaysItem from json.
func (s *GetNodesStatisticsResponseResponseLastSevenDaysItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetNodesStatisticsResponseResponseLastSevenDaysItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "nodeName":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.NodeName = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodeName\"")
}
case "date":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Date = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"date\"")
}
case "totalBytes":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.TotalBytes = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"totalBytes\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetNodesStatisticsResponseResponseLastSevenDaysItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetNodesStatisticsResponseResponseLastSevenDaysItem) {
name = jsonFieldsNameOfGetNodesStatisticsResponseResponseLastSevenDaysItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetNodesStatisticsResponseResponseLastSevenDaysItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetNodesStatisticsResponseResponseLastSevenDaysItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetPubKeyResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetPubKeyResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfGetPubKeyResponse = [1]string{
0: "response",
}
// Decode decodes GetPubKeyResponse from json.
func (s *GetPubKeyResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetPubKeyResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetPubKeyResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetPubKeyResponse) {
name = jsonFieldsNameOfGetPubKeyResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetPubKeyResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetPubKeyResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetPubKeyResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetPubKeyResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("pubKey")
e.Str(s.PubKey)
}
}
var jsonFieldsNameOfGetPubKeyResponseResponse = [1]string{
0: "pubKey",
}
// Decode decodes GetPubKeyResponseResponse from json.
func (s *GetPubKeyResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetPubKeyResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "pubKey":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.PubKey = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"pubKey\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetPubKeyResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetPubKeyResponseResponse) {
name = jsonFieldsNameOfGetPubKeyResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetPubKeyResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetPubKeyResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRawSubscriptionByShortUuidResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfGetRawSubscriptionByShortUuidResponse = [1]string{
0: "response",
}
// Decode decodes GetRawSubscriptionByShortUuidResponse from json.
func (s *GetRawSubscriptionByShortUuidResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRawSubscriptionByShortUuidResponse) {
name = jsonFieldsNameOfGetRawSubscriptionByShortUuidResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRawSubscriptionByShortUuidResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("user")
s.User.Encode(e)
}
{
e.FieldStart("convertedUserInfo")
s.ConvertedUserInfo.Encode(e)
}
{
e.FieldStart("headers")
s.Headers.Encode(e)
}
{
e.FieldStart("resolvedProxyConfigs")
e.ArrStart()
for _, elem := range s.ResolvedProxyConfigs {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponse = [4]string{
0: "user",
1: "convertedUserInfo",
2: "headers",
3: "resolvedProxyConfigs",
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponse from json.
func (s *GetRawSubscriptionByShortUuidResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "user":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.User.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"user\"")
}
case "convertedUserInfo":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.ConvertedUserInfo.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"convertedUserInfo\"")
}
case "headers":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.Headers.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"headers\"")
}
case "resolvedProxyConfigs":
requiredBitSet[0] |= 1 << 3
if err := func() error {
s.ResolvedProxyConfigs = make([]GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItem
if err := elem.Decode(d); err != nil {
return err
}
s.ResolvedProxyConfigs = append(s.ResolvedProxyConfigs, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"resolvedProxyConfigs\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00001111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponse) {
name = jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseConvertedUserInfo) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRawSubscriptionByShortUuidResponseResponseConvertedUserInfo) encodeFields(e *jx.Encoder) {
{
e.FieldStart("daysLeft")
e.Float64(s.DaysLeft)
}
{
e.FieldStart("trafficLimit")
e.Str(s.TrafficLimit)
}
{
e.FieldStart("trafficUsed")
e.Str(s.TrafficUsed)
}
{
e.FieldStart("lifetimeTrafficUsed")
e.Str(s.LifetimeTrafficUsed)
}
{
e.FieldStart("hwidCheckup")
s.HwidCheckup.Encode(e)
}
}
var jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseConvertedUserInfo = [5]string{
0: "daysLeft",
1: "trafficLimit",
2: "trafficUsed",
3: "lifetimeTrafficUsed",
4: "hwidCheckup",
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseConvertedUserInfo from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseConvertedUserInfo) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseConvertedUserInfo to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "daysLeft":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.DaysLeft = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"daysLeft\"")
}
case "trafficLimit":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.TrafficLimit = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"trafficLimit\"")
}
case "trafficUsed":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.TrafficUsed = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"trafficUsed\"")
}
case "lifetimeTrafficUsed":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Str()
s.LifetimeTrafficUsed = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"lifetimeTrafficUsed\"")
}
case "hwidCheckup":
requiredBitSet[0] |= 1 << 4
if err := func() error {
if err := s.HwidCheckup.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"hwidCheckup\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponseConvertedUserInfo")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00011111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseConvertedUserInfo) {
name = jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseConvertedUserInfo[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseConvertedUserInfo) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseConvertedUserInfo) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseConvertedUserInfoHwidCheckup) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRawSubscriptionByShortUuidResponseResponseConvertedUserInfoHwidCheckup) encodeFields(e *jx.Encoder) {
{
e.FieldStart("subscriptionAllowed")
e.Bool(s.SubscriptionAllowed)
}
{
e.FieldStart("maxDeviceReached")
e.Bool(s.MaxDeviceReached)
}
{
e.FieldStart("hwidNotSupported")
e.Bool(s.HwidNotSupported)
}
{
e.FieldStart("limitBypassed")
e.Bool(s.LimitBypassed)
}
}
var jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseConvertedUserInfoHwidCheckup = [4]string{
0: "subscriptionAllowed",
1: "maxDeviceReached",
2: "hwidNotSupported",
3: "limitBypassed",
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseConvertedUserInfoHwidCheckup from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseConvertedUserInfoHwidCheckup) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseConvertedUserInfoHwidCheckup to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "subscriptionAllowed":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Bool()
s.SubscriptionAllowed = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"subscriptionAllowed\"")
}
case "maxDeviceReached":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Bool()
s.MaxDeviceReached = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"maxDeviceReached\"")
}
case "hwidNotSupported":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Bool()
s.HwidNotSupported = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"hwidNotSupported\"")
}
case "limitBypassed":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Bool()
s.LimitBypassed = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"limitBypassed\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponseConvertedUserInfoHwidCheckup")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00001111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseConvertedUserInfoHwidCheckup) {
name = jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseConvertedUserInfoHwidCheckup[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseConvertedUserInfoHwidCheckup) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseConvertedUserInfoHwidCheckup) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseHeaders) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields implements json.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseHeaders) encodeFields(e *jx.Encoder) {
for k, elem := range s {
e.FieldStart(k)
e.Str(elem)
}
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseHeaders from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseHeaders) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseHeaders to nil")
}
m := s.init()
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
var elem string
if err := func() error {
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrapf(err, "decode field %q", k)
}
m[string(k)] = elem
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponseHeaders")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseHeaders) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseHeaders) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("finalRemark")
e.Str(s.FinalRemark)
}
{
e.FieldStart("address")
e.Str(s.Address)
}
{
e.FieldStart("port")
e.Int(s.Port)
}
{
e.FieldStart("protocol")
s.Protocol.Encode(e)
}
{
e.FieldStart("protocolOptions")
s.ProtocolOptions.Encode(e)
}
{
e.FieldStart("transport")
s.Transport.Encode(e)
}
{
e.FieldStart("transportOptions")
s.TransportOptions.Encode(e)
}
{
e.FieldStart("security")
s.Security.Encode(e)
}
{
if s.SecurityOptions.Set {
e.FieldStart("securityOptions")
s.SecurityOptions.Encode(e)
}
}
{
e.FieldStart("streamOverrides")
s.StreamOverrides.Encode(e)
}
{
if len(s.Mux) != 0 {
e.FieldStart("mux")
e.Raw(s.Mux)
}
}
{
e.FieldStart("clientOverrides")
s.ClientOverrides.Encode(e)
}
{
e.FieldStart("metadata")
s.Metadata.Encode(e)
}
}
var jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItem = [13]string{
0: "finalRemark",
1: "address",
2: "port",
3: "protocol",
4: "protocolOptions",
5: "transport",
6: "transportOptions",
7: "security",
8: "securityOptions",
9: "streamOverrides",
10: "mux",
11: "clientOverrides",
12: "metadata",
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItem from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItem to nil")
}
var requiredBitSet [2]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "finalRemark":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.FinalRemark = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"finalRemark\"")
}
case "address":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Address = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"address\"")
}
case "port":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Int()
s.Port = int(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"port\"")
}
case "protocol":
requiredBitSet[0] |= 1 << 3
if err := func() error {
if err := s.Protocol.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"protocol\"")
}
case "protocolOptions":
requiredBitSet[0] |= 1 << 4
if err := func() error {
if err := s.ProtocolOptions.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"protocolOptions\"")
}
case "transport":
requiredBitSet[0] |= 1 << 5
if err := func() error {
if err := s.Transport.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"transport\"")
}
case "transportOptions":
requiredBitSet[0] |= 1 << 6
if err := func() error {
if err := s.TransportOptions.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"transportOptions\"")
}
case "security":
requiredBitSet[0] |= 1 << 7
if err := func() error {
if err := s.Security.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"security\"")
}
case "securityOptions":
if err := func() error {
s.SecurityOptions.Reset()
if err := s.SecurityOptions.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"securityOptions\"")
}
case "streamOverrides":
requiredBitSet[1] |= 1 << 1
if err := func() error {
if err := s.StreamOverrides.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"streamOverrides\"")
}
case "mux":
requiredBitSet[1] |= 1 << 2
if err := func() error {
v, err := d.RawAppend(nil)
s.Mux = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"mux\"")
}
case "clientOverrides":
requiredBitSet[1] |= 1 << 3
if err := func() error {
if err := s.ClientOverrides.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"clientOverrides\"")
}
case "metadata":
requiredBitSet[1] |= 1 << 4
if err := func() error {
if err := s.Metadata.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"metadata\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [2]uint8{
0b11111111,
0b00011110,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItem) {
name = jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverrides) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverrides) encodeFields(e *jx.Encoder) {
{
e.FieldStart("shuffleHost")
e.Bool(s.ShuffleHost)
}
{
e.FieldStart("mihomoX25519")
e.Bool(s.MihomoX25519)
}
{
e.FieldStart("mihomoIpVersion")
s.MihomoIpVersion.Encode(e)
}
{
e.FieldStart("serverDescription")
s.ServerDescription.Encode(e)
}
{
if len(s.XrayJsonTemplate) != 0 {
e.FieldStart("xrayJsonTemplate")
e.Raw(s.XrayJsonTemplate)
}
}
}
var jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverrides = [5]string{
0: "shuffleHost",
1: "mihomoX25519",
2: "mihomoIpVersion",
3: "serverDescription",
4: "xrayJsonTemplate",
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverrides from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverrides) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverrides to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "shuffleHost":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Bool()
s.ShuffleHost = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"shuffleHost\"")
}
case "mihomoX25519":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Bool()
s.MihomoX25519 = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"mihomoX25519\"")
}
case "mihomoIpVersion":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.MihomoIpVersion.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"mihomoIpVersion\"")
}
case "serverDescription":
requiredBitSet[0] |= 1 << 3
if err := func() error {
if err := s.ServerDescription.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"serverDescription\"")
}
case "xrayJsonTemplate":
requiredBitSet[0] |= 1 << 4
if err := func() error {
v, err := d.RawAppend(nil)
s.XrayJsonTemplate = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"xrayJsonTemplate\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverrides")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00011111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverrides) {
name = jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverrides[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverrides) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverrides) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverridesMihomoIpVersion as json.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverridesMihomoIpVersion) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverridesMihomoIpVersion from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverridesMihomoIpVersion) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverridesMihomoIpVersion to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverridesMihomoIpVersion(v) {
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverridesMihomoIpVersionDual:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverridesMihomoIpVersionDual
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverridesMihomoIpVersionIpv4:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverridesMihomoIpVersionIpv4
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverridesMihomoIpVersionIpv6:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverridesMihomoIpVersionIpv6
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverridesMihomoIpVersionIpv4Prefer:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverridesMihomoIpVersionIpv4Prefer
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverridesMihomoIpVersionIpv6Prefer:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverridesMihomoIpVersionIpv6Prefer
default:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverridesMihomoIpVersion(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverridesMihomoIpVersion) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverridesMihomoIpVersion) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadata) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadata) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("tags")
e.ArrStart()
for _, elem := range s.Tags {
e.Str(elem)
}
e.ArrEnd()
}
{
e.FieldStart("excludeFromSubscriptionTypes")
e.ArrStart()
for _, elem := range s.ExcludeFromSubscriptionTypes {
elem.Encode(e)
}
e.ArrEnd()
}
{
e.FieldStart("inboundTag")
e.Str(s.InboundTag)
}
{
e.FieldStart("configProfileUuid")
s.ConfigProfileUuid.Encode(e)
}
{
e.FieldStart("configProfileInboundUuid")
s.ConfigProfileInboundUuid.Encode(e)
}
{
e.FieldStart("isDisabled")
e.Bool(s.IsDisabled)
}
{
e.FieldStart("isHidden")
e.Bool(s.IsHidden)
}
{
e.FieldStart("viewPosition")
e.Int(s.ViewPosition)
}
{
e.FieldStart("remark")
e.Str(s.Remark)
}
{
e.FieldStart("vlessRouteId")
s.VlessRouteId.Encode(e)
}
{
if len(s.RawInbound) != 0 {
e.FieldStart("rawInbound")
e.Raw(s.RawInbound)
}
}
}
var jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadata = [12]string{
0: "uuid",
1: "tags",
2: "excludeFromSubscriptionTypes",
3: "inboundTag",
4: "configProfileUuid",
5: "configProfileInboundUuid",
6: "isDisabled",
7: "isHidden",
8: "viewPosition",
9: "remark",
10: "vlessRouteId",
11: "rawInbound",
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadata from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadata) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadata to nil")
}
var requiredBitSet [2]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "tags":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.Tags = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.Tags = append(s.Tags, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"tags\"")
}
case "excludeFromSubscriptionTypes":
requiredBitSet[0] |= 1 << 2
if err := func() error {
s.ExcludeFromSubscriptionTypes = make([]GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadataExcludeFromSubscriptionTypesItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadataExcludeFromSubscriptionTypesItem
if err := elem.Decode(d); err != nil {
return err
}
s.ExcludeFromSubscriptionTypes = append(s.ExcludeFromSubscriptionTypes, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"excludeFromSubscriptionTypes\"")
}
case "inboundTag":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Str()
s.InboundTag = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"inboundTag\"")
}
case "configProfileUuid":
requiredBitSet[0] |= 1 << 4
if err := func() error {
if err := s.ConfigProfileUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"configProfileUuid\"")
}
case "configProfileInboundUuid":
requiredBitSet[0] |= 1 << 5
if err := func() error {
if err := s.ConfigProfileInboundUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"configProfileInboundUuid\"")
}
case "isDisabled":
requiredBitSet[0] |= 1 << 6
if err := func() error {
v, err := d.Bool()
s.IsDisabled = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isDisabled\"")
}
case "isHidden":
requiredBitSet[0] |= 1 << 7
if err := func() error {
v, err := d.Bool()
s.IsHidden = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isHidden\"")
}
case "viewPosition":
requiredBitSet[1] |= 1 << 0
if err := func() error {
v, err := d.Int()
s.ViewPosition = int(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"viewPosition\"")
}
case "remark":
requiredBitSet[1] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Remark = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"remark\"")
}
case "vlessRouteId":
requiredBitSet[1] |= 1 << 2
if err := func() error {
if err := s.VlessRouteId.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"vlessRouteId\"")
}
case "rawInbound":
requiredBitSet[1] |= 1 << 3
if err := func() error {
v, err := d.RawAppend(nil)
s.RawInbound = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"rawInbound\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadata")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [2]uint8{
0b11111111,
0b00001111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadata) {
name = jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadata[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadata) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadata) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadataExcludeFromSubscriptionTypesItem as json.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadataExcludeFromSubscriptionTypesItem) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadataExcludeFromSubscriptionTypesItem from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadataExcludeFromSubscriptionTypesItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadataExcludeFromSubscriptionTypesItem to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadataExcludeFromSubscriptionTypesItem(v) {
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadataExcludeFromSubscriptionTypesItemXRAYJSON:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadataExcludeFromSubscriptionTypesItemXRAYJSON
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadataExcludeFromSubscriptionTypesItemXRAYBASE64:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadataExcludeFromSubscriptionTypesItemXRAYBASE64
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadataExcludeFromSubscriptionTypesItemMIHOMO:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadataExcludeFromSubscriptionTypesItemMIHOMO
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadataExcludeFromSubscriptionTypesItemSTASH:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadataExcludeFromSubscriptionTypesItemSTASH
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadataExcludeFromSubscriptionTypesItemCLASH:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadataExcludeFromSubscriptionTypesItemCLASH
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadataExcludeFromSubscriptionTypesItemSINGBOX:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadataExcludeFromSubscriptionTypesItemSINGBOX
default:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadataExcludeFromSubscriptionTypesItem(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadataExcludeFromSubscriptionTypesItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemMetadataExcludeFromSubscriptionTypesItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocol as json.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocol) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocol from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocol) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocol to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocol(v) {
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolVless:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolVless
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolTrojan:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolTrojan
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolShadowsocks:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolShadowsocks
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolHysteria:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolHysteria
default:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocol(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocol) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocol) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions as json.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions) Encode(e *jx.Encoder) {
switch s.Type {
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0.Encode(e)
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions1GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions1.Encode(e)
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions2GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions2.Encode(e)
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions3GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions3.Encode(e)
}
}
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions) encodeFields(e *jx.Encoder) {
switch s.Type {
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0.encodeFields(e)
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions1GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions1.encodeFields(e)
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions2GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions2.encodeFields(e)
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions3GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions3.encodeFields(e)
}
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions to nil")
}
// Sum type fields.
if typ := d.Next(); typ != jx.Object {
return errors.Errorf("unexpected json type %q", typ)
}
var found bool
if err := d.Capture(func(d *jx.Decoder) error {
return d.ObjBytes(func(d *jx.Decoder, key []byte) error {
switch string(key) {
case "encryption":
// Type-based discrimination: check if field has expected JSON type
if typ := d.Next(); typ != jx.String {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "flow":
// Type-based discrimination: check if field has expected JSON type
if typ := d.Next(); typ != jx.String {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "id":
// Type-based discrimination: check if field has expected JSON type
if typ := d.Next(); typ != jx.String {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "method":
// Type-based discrimination: check if field has expected JSON type
if typ := d.Next(); typ != jx.String {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions2GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "uot":
// Type-based discrimination: check if field has expected JSON type
if typ := d.Next(); typ != jx.Bool {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions2GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "uotVersion":
// Type-based discrimination: check if field has expected JSON type
if typ := d.Next(); typ != jx.Number {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions2GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "version":
// Type-based discrimination: check if field has expected JSON type
if typ := d.Next(); typ != jx.Number {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions3GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
}
return d.Skip()
})
}); err != nil {
return errors.Wrap(err, "capture")
}
if !found {
s.Type = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions1GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions
}
switch s.Type {
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions:
if err := s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0.Decode(d); err != nil {
return err
}
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions1GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions:
if err := s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions1.Decode(d); err != nil {
return err
}
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions2GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions:
if err := s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions2.Decode(d); err != nil {
return err
}
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions3GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions:
if err := s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions3.Decode(d); err != nil {
return err
}
default:
return errors.Errorf("inferred invalid type: %s", s.Type)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0) encodeFields(e *jx.Encoder) {
{
e.FieldStart("encryption")
e.Str(s.Encryption)
}
{
e.FieldStart("id")
e.Str(s.ID)
}
{
e.FieldStart("flow")
s.Flow.Encode(e)
}
}
var jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0 = [3]string{
0: "encryption",
1: "id",
2: "flow",
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0 from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0 to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "encryption":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Encryption = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"encryption\"")
}
case "id":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.ID = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"id\"")
}
case "flow":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.Flow.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"flow\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0) {
name = jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0Flow as json.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0Flow) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0Flow from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0Flow) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0Flow to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0Flow(v) {
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0FlowEmpty:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0FlowEmpty
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0FlowXtlsRprxVision:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0FlowXtlsRprxVision
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0FlowXtlsRprxVisionUdp443:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0FlowXtlsRprxVisionUdp443
default:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0Flow(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0Flow) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions0Flow) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions1) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions1) encodeFields(e *jx.Encoder) {
{
e.FieldStart("password")
e.Str(s.Password)
}
}
var jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions1 = [1]string{
0: "password",
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions1 from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions1) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions1 to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "password":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Password = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"password\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions1")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions1) {
name = jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions1[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions1) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions1) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions2) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions2) encodeFields(e *jx.Encoder) {
{
e.FieldStart("method")
e.Str(s.Method)
}
{
e.FieldStart("password")
e.Str(s.Password)
}
{
e.FieldStart("uot")
e.Bool(s.Uot)
}
{
e.FieldStart("uotVersion")
e.Int(s.UotVersion)
}
}
var jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions2 = [4]string{
0: "method",
1: "password",
2: "uot",
3: "uotVersion",
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions2 from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions2) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions2 to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "method":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Method = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"method\"")
}
case "password":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Password = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"password\"")
}
case "uot":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Bool()
s.Uot = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uot\"")
}
case "uotVersion":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Int()
s.UotVersion = int(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uotVersion\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions2")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00001111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions2) {
name = jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions2[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions2) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions2) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions3) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions3) encodeFields(e *jx.Encoder) {
{
e.FieldStart("version")
e.Int(s.Version)
}
}
var jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions3 = [1]string{
0: "version",
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions3 from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions3) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions3 to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "version":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Int()
s.Version = int(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"version\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions3")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions3) {
name = jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions3[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions3) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemProtocolOptions3) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurity as json.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurity) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurity from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurity) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurity to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurity(v) {
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityTLS:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityTLS
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityReality:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityReality
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityNone:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityNone
default:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurity(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurity) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurity) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions as json.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions) Encode(e *jx.Encoder) {
switch s.Type {
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions0GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions0.Encode(e)
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions1GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions1.Encode(e)
}
}
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions) encodeFields(e *jx.Encoder) {
switch s.Type {
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions0GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions0.encodeFields(e)
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions1GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions1.encodeFields(e)
}
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions to nil")
}
// Sum type fields.
if typ := d.Next(); typ != jx.Object {
return errors.Errorf("unexpected json type %q", typ)
}
var found bool
if err := d.Capture(func(d *jx.Decoder) error {
return d.ObjBytes(func(d *jx.Decoder, key []byte) error {
switch string(key) {
case "alpn":
// Type-based discrimination: check if field has expected JSON type (nullable)
typ := d.Next()
if typ != jx.String && typ != jx.Null {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions0GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "echConfigList":
// Type-based discrimination: check if field has expected JSON type (nullable)
typ := d.Next()
if typ != jx.String && typ != jx.Null {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions0GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "echForceQuery":
// Type-based discrimination: check if field has expected JSON type (nullable)
typ := d.Next()
if typ != jx.String && typ != jx.Null {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions0GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "enableSessionResumption":
// Type-based discrimination: check if field has expected JSON type
if typ := d.Next(); typ != jx.Bool {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions0GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "mldsa65Verify":
// Type-based discrimination: check if field has expected JSON type (nullable)
typ := d.Next()
if typ != jx.String && typ != jx.Null {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions1GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "pinnedPeerCertSha256":
// Type-based discrimination: check if field has expected JSON type (nullable)
typ := d.Next()
if typ != jx.String && typ != jx.Null {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions0GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "publicKey":
// Type-based discrimination: check if field has expected JSON type
if typ := d.Next(); typ != jx.String {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions1GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "shortId":
// Type-based discrimination: check if field has expected JSON type (nullable)
typ := d.Next()
if typ != jx.String && typ != jx.Null {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions1GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "spiderX":
// Type-based discrimination: check if field has expected JSON type (nullable)
typ := d.Next()
if typ != jx.String && typ != jx.Null {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions1GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "verifyPeerCertByName":
// Type-based discrimination: check if field has expected JSON type (nullable)
typ := d.Next()
if typ != jx.String && typ != jx.Null {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions0GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
}
return d.Skip()
})
}); err != nil {
return errors.Wrap(err, "capture")
}
if !found {
return errors.New("unable to detect sum type variant")
}
switch s.Type {
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions0GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions:
if err := s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions0.Decode(d); err != nil {
return err
}
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions1GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions:
if err := s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions1.Decode(d); err != nil {
return err
}
default:
return errors.Errorf("inferred invalid type: %s", s.Type)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions0) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions0) encodeFields(e *jx.Encoder) {
{
e.FieldStart("pinnedPeerCertSha256")
s.PinnedPeerCertSha256.Encode(e)
}
{
e.FieldStart("verifyPeerCertByName")
s.VerifyPeerCertByName.Encode(e)
}
{
e.FieldStart("alpn")
s.Alpn.Encode(e)
}
{
e.FieldStart("enableSessionResumption")
e.Bool(s.EnableSessionResumption)
}
{
e.FieldStart("fingerprint")
s.Fingerprint.Encode(e)
}
{
e.FieldStart("serverName")
s.ServerName.Encode(e)
}
{
e.FieldStart("echConfigList")
s.EchConfigList.Encode(e)
}
{
e.FieldStart("echForceQuery")
s.EchForceQuery.Encode(e)
}
}
var jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions0 = [8]string{
0: "pinnedPeerCertSha256",
1: "verifyPeerCertByName",
2: "alpn",
3: "enableSessionResumption",
4: "fingerprint",
5: "serverName",
6: "echConfigList",
7: "echForceQuery",
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions0 from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions0) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions0 to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "pinnedPeerCertSha256":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.PinnedPeerCertSha256.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"pinnedPeerCertSha256\"")
}
case "verifyPeerCertByName":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.VerifyPeerCertByName.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"verifyPeerCertByName\"")
}
case "alpn":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.Alpn.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"alpn\"")
}
case "enableSessionResumption":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Bool()
s.EnableSessionResumption = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"enableSessionResumption\"")
}
case "fingerprint":
requiredBitSet[0] |= 1 << 4
if err := func() error {
if err := s.Fingerprint.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"fingerprint\"")
}
case "serverName":
requiredBitSet[0] |= 1 << 5
if err := func() error {
if err := s.ServerName.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"serverName\"")
}
case "echConfigList":
requiredBitSet[0] |= 1 << 6
if err := func() error {
if err := s.EchConfigList.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"echConfigList\"")
}
case "echForceQuery":
requiredBitSet[0] |= 1 << 7
if err := func() error {
if err := s.EchForceQuery.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"echForceQuery\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions0")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b11111111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions0) {
name = jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions0[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions0) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions0) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions1) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions1) encodeFields(e *jx.Encoder) {
{
e.FieldStart("fingerprint")
e.Str(s.Fingerprint)
}
{
e.FieldStart("publicKey")
e.Str(s.PublicKey)
}
{
e.FieldStart("shortId")
s.ShortId.Encode(e)
}
{
e.FieldStart("serverName")
e.Str(s.ServerName)
}
{
e.FieldStart("spiderX")
s.SpiderX.Encode(e)
}
{
e.FieldStart("mldsa65Verify")
s.Mldsa65Verify.Encode(e)
}
}
var jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions1 = [6]string{
0: "fingerprint",
1: "publicKey",
2: "shortId",
3: "serverName",
4: "spiderX",
5: "mldsa65Verify",
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions1 from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions1) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions1 to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "fingerprint":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Fingerprint = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"fingerprint\"")
}
case "publicKey":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.PublicKey = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"publicKey\"")
}
case "shortId":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.ShortId.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"shortId\"")
}
case "serverName":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Str()
s.ServerName = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"serverName\"")
}
case "spiderX":
requiredBitSet[0] |= 1 << 4
if err := func() error {
if err := s.SpiderX.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"spiderX\"")
}
case "mldsa65Verify":
requiredBitSet[0] |= 1 << 5
if err := func() error {
if err := s.Mldsa65Verify.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"mldsa65Verify\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions1")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00111111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions1) {
name = jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions1[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions1) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions1) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemStreamOverrides) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemStreamOverrides) encodeFields(e *jx.Encoder) {
{
if len(s.FinalMask) != 0 {
e.FieldStart("finalMask")
e.Raw(s.FinalMask)
}
}
{
if len(s.Sockopt) != 0 {
e.FieldStart("sockopt")
e.Raw(s.Sockopt)
}
}
}
var jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemStreamOverrides = [2]string{
0: "finalMask",
1: "sockopt",
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemStreamOverrides from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemStreamOverrides) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemStreamOverrides to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "finalMask":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.RawAppend(nil)
s.FinalMask = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"finalMask\"")
}
case "sockopt":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.RawAppend(nil)
s.Sockopt = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"sockopt\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemStreamOverrides")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemStreamOverrides) {
name = jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemStreamOverrides[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemStreamOverrides) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemStreamOverrides) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransport as json.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransport) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransport from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransport) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransport to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransport(v) {
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportTCP:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportTCP
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportXhttp:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportXhttp
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportWs:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportWs
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportHttpupgrade:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportHttpupgrade
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportGrpc:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportGrpc
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportKcp:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportKcp
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportHysteria:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportHysteria
default:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransport(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransport) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransport) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions as json.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions) Encode(e *jx.Encoder) {
switch s.Type {
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0.Encode(e)
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1.Encode(e)
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2.Encode(e)
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3.Encode(e)
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions4GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions4.Encode(e)
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions5GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions5.Encode(e)
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions6GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions6.Encode(e)
}
}
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions) encodeFields(e *jx.Encoder) {
switch s.Type {
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0.encodeFields(e)
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1.encodeFields(e)
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2.encodeFields(e)
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3.encodeFields(e)
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions4GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions4.encodeFields(e)
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions5GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions5.encodeFields(e)
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions6GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions6.encodeFields(e)
}
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions to nil")
}
// Sum type fields.
if typ := d.Next(); typ != jx.Object {
return errors.Errorf("unexpected json type %q", typ)
}
var found bool
if err := d.Capture(func(d *jx.Decoder) error {
return d.ObjBytes(func(d *jx.Decoder, key []byte) error {
switch string(key) {
case "auth":
// Type-based discrimination: check if field has expected JSON type
if typ := d.Next(); typ != jx.String {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions6GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "authority":
// Type-based discrimination: check if field has expected JSON type (nullable)
typ := d.Next()
if typ != jx.String && typ != jx.Null {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions4GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "clientMtu":
// Type-based discrimination: check if field has expected JSON type
if typ := d.Next(); typ != jx.Number {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions5GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "clientTti":
// Type-based discrimination: check if field has expected JSON type
if typ := d.Next(); typ != jx.Number {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions5GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "congestion":
// Type-based discrimination: check if field has expected JSON type
if typ := d.Next(); typ != jx.Bool {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions5GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "extra":
// Type-based discrimination: check if field has expected JSON type (nullable)
typ := d.Next()
if typ != jx.Object && typ != jx.Null {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "header":
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "heartbeatPeriod":
// Type-based discrimination: check if field has expected JSON type (nullable)
typ := d.Next()
if typ != jx.Number && typ != jx.Null {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "mode":
// Type-based discrimination: check if field has expected JSON type
if typ := d.Next(); typ != jx.String {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "multiMode":
// Type-based discrimination: check if field has expected JSON type
if typ := d.Next(); typ != jx.Bool {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions4GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "serviceName":
// Type-based discrimination: check if field has expected JSON type (nullable)
typ := d.Next()
if typ != jx.String && typ != jx.Null {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions4GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "version":
// Type-based discrimination: check if field has expected JSON type
if typ := d.Next(); typ != jx.Number {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions6GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
}
return d.Skip()
})
}); err != nil {
return errors.Wrap(err, "capture")
}
if !found {
s.Type = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions
}
switch s.Type {
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions:
if err := s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0.Decode(d); err != nil {
return err
}
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions:
if err := s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1.Decode(d); err != nil {
return err
}
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions:
if err := s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2.Decode(d); err != nil {
return err
}
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions:
if err := s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3.Decode(d); err != nil {
return err
}
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions4GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions:
if err := s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions4.Decode(d); err != nil {
return err
}
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions5GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions:
if err := s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions5.Decode(d); err != nil {
return err
}
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions6GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions:
if err := s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions6.Decode(d); err != nil {
return err
}
default:
return errors.Errorf("inferred invalid type: %s", s.Type)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0) encodeFields(e *jx.Encoder) {
{
e.FieldStart("header")
s.Header.Encode(e)
}
}
var jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0 = [1]string{
0: "header",
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0 from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0 to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "header":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Header.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"header\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0) {
name = jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header as json.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header) Encode(e *jx.Encoder) {
switch s.Type {
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header0GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header0.Encode(e)
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1.Encode(e)
}
}
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header) encodeFields(e *jx.Encoder) {
switch s.Type {
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header0GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header0.encodeFields(e)
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header:
s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1.encodeFields(e)
}
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header to nil")
}
// Sum type fields.
if typ := d.Next(); typ != jx.Object {
return errors.Errorf("unexpected json type %q", typ)
}
var found bool
if err := d.Capture(func(d *jx.Decoder) error {
return d.ObjBytes(func(d *jx.Decoder, key []byte) error {
switch string(key) {
case "request":
// Type-based discrimination: check if field has expected JSON type
if typ := d.Next(); typ != jx.Object {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "response":
// Type-based discrimination: check if field has expected JSON type
if typ := d.Next(); typ != jx.Object {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "type":
// Value-based discrimination: check enum value
if typ := d.Next(); typ != jx.String {
return d.Skip()
}
value, err := d.StrBytes()
if err != nil {
return err
}
switch string(value) {
case "http":
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "none":
match := GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header0GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
default:
// Unknown enum value, ignore and continue
}
return nil
}
return d.Skip()
})
}); err != nil {
return errors.Wrap(err, "capture")
}
if !found {
return errors.New("unable to detect sum type variant")
}
switch s.Type {
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header0GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header:
if err := s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header0.Decode(d); err != nil {
return err
}
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header:
if err := s.GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1.Decode(d); err != nil {
return err
}
default:
return errors.Errorf("inferred invalid type: %s", s.Type)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header0) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header0) encodeFields(e *jx.Encoder) {
{
e.FieldStart("type")
s.Type.Encode(e)
}
}
var jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header0 = [1]string{
0: "type",
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header0 from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header0) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header0 to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "type":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Type.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"type\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header0")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header0) {
name = jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header0[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header0) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header0) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header0Type as json.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header0Type) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header0Type from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header0Type) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header0Type to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header0Type(v) {
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header0TypeNone:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header0TypeNone
default:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header0Type(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header0Type) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header0Type) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1) encodeFields(e *jx.Encoder) {
{
e.FieldStart("type")
s.Type.Encode(e)
}
{
if s.Request.Set {
e.FieldStart("request")
s.Request.Encode(e)
}
}
{
if s.Response.Set {
e.FieldStart("response")
s.Response.Encode(e)
}
}
}
var jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1 = [3]string{
0: "type",
1: "request",
2: "response",
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1 from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1 to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "type":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Type.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"type\"")
}
case "request":
if err := func() error {
s.Request.Reset()
if err := s.Request.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"request\"")
}
case "response":
if err := func() error {
s.Response.Reset()
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1) {
name = jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Request) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Request) encodeFields(e *jx.Encoder) {
{
if s.Version.Set {
e.FieldStart("version")
s.Version.Encode(e)
}
}
{
if s.Method.Set {
e.FieldStart("method")
s.Method.Encode(e)
}
}
{
if s.Path != nil {
e.FieldStart("path")
e.ArrStart()
for _, elem := range s.Path {
e.Str(elem)
}
e.ArrEnd()
}
}
{
if s.Headers.Set {
e.FieldStart("headers")
s.Headers.Encode(e)
}
}
}
var jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Request = [4]string{
0: "version",
1: "method",
2: "path",
3: "headers",
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Request from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Request) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Request to nil")
}
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "version":
if err := func() error {
s.Version.Reset()
if err := s.Version.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"version\"")
}
case "method":
if err := func() error {
s.Method.Reset()
if err := s.Method.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"method\"")
}
case "path":
if err := func() error {
s.Path = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.Path = append(s.Path, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"path\"")
}
case "headers":
if err := func() error {
s.Headers.Reset()
if err := s.Headers.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"headers\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Request")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Request) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Request) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1RequestHeaders) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields implements json.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1RequestHeaders) encodeFields(e *jx.Encoder) {
for k, elem := range s {
e.FieldStart(k)
if len(elem) != 0 {
e.Raw(elem)
}
}
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1RequestHeaders from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1RequestHeaders) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1RequestHeaders to nil")
}
m := s.init()
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
var elem jx.Raw
if err := func() error {
v, err := d.RawAppend(nil)
elem = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrapf(err, "decode field %q", k)
}
m[string(k)] = elem
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1RequestHeaders")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1RequestHeaders) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1RequestHeaders) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Response) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Response) encodeFields(e *jx.Encoder) {
{
if s.Version.Set {
e.FieldStart("version")
s.Version.Encode(e)
}
}
{
if s.Status.Set {
e.FieldStart("status")
s.Status.Encode(e)
}
}
{
if s.Reason.Set {
e.FieldStart("reason")
s.Reason.Encode(e)
}
}
{
if s.Headers.Set {
e.FieldStart("headers")
s.Headers.Encode(e)
}
}
}
var jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Response = [4]string{
0: "version",
1: "status",
2: "reason",
3: "headers",
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Response from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Response) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Response to nil")
}
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "version":
if err := func() error {
s.Version.Reset()
if err := s.Version.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"version\"")
}
case "status":
if err := func() error {
s.Status.Reset()
if err := s.Status.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"status\"")
}
case "reason":
if err := func() error {
s.Reason.Reset()
if err := s.Reason.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"reason\"")
}
case "headers":
if err := func() error {
s.Headers.Reset()
if err := s.Headers.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"headers\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Response")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Response) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Response) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1ResponseHeaders) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields implements json.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1ResponseHeaders) encodeFields(e *jx.Encoder) {
for k, elem := range s {
e.FieldStart(k)
if len(elem) != 0 {
e.Raw(elem)
}
}
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1ResponseHeaders from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1ResponseHeaders) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1ResponseHeaders to nil")
}
m := s.init()
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
var elem jx.Raw
if err := func() error {
v, err := d.RawAppend(nil)
elem = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrapf(err, "decode field %q", k)
}
m[string(k)] = elem
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1ResponseHeaders")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1ResponseHeaders) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1ResponseHeaders) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Type as json.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Type) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Type from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Type) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Type to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Type(v) {
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1TypeHTTP:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1TypeHTTP
default:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Type(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Type) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Type) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1) encodeFields(e *jx.Encoder) {
{
e.FieldStart("path")
s.Path.Encode(e)
}
{
e.FieldStart("host")
s.Host.Encode(e)
}
{
e.FieldStart("mode")
s.Mode.Encode(e)
}
{
e.FieldStart("extra")
s.Extra.Encode(e)
}
}
var jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1 = [4]string{
0: "path",
1: "host",
2: "mode",
3: "extra",
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1 from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1 to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "path":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Path.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"path\"")
}
case "host":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.Host.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"host\"")
}
case "mode":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.Mode.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"mode\"")
}
case "extra":
requiredBitSet[0] |= 1 << 3
if err := func() error {
if err := s.Extra.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"extra\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00001111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1) {
name = jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1Extra) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields implements json.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1Extra) encodeFields(e *jx.Encoder) {
for k, elem := range s {
e.FieldStart(k)
if len(elem) != 0 {
e.Raw(elem)
}
}
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1Extra from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1Extra) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1Extra to nil")
}
m := s.init()
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
var elem jx.Raw
if err := func() error {
v, err := d.RawAppend(nil)
elem = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrapf(err, "decode field %q", k)
}
m[string(k)] = elem
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1Extra")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1Extra) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1Extra) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1Mode as json.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1Mode) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1Mode from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1Mode) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1Mode to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1Mode(v) {
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1ModeAuto:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1ModeAuto
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1ModePacketUp:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1ModePacketUp
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1ModeStreamUp:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1ModeStreamUp
case GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1ModeStreamOne:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1ModeStreamOne
default:
*s = GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1Mode(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1Mode) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1Mode) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2) encodeFields(e *jx.Encoder) {
{
e.FieldStart("path")
s.Path.Encode(e)
}
{
e.FieldStart("host")
s.Host.Encode(e)
}
{
e.FieldStart("headers")
s.Headers.Encode(e)
}
{
e.FieldStart("heartbeatPeriod")
s.HeartbeatPeriod.Encode(e)
}
}
var jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2 = [4]string{
0: "path",
1: "host",
2: "headers",
3: "heartbeatPeriod",
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2 from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2 to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "path":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Path.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"path\"")
}
case "host":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.Host.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"host\"")
}
case "headers":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.Headers.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"headers\"")
}
case "heartbeatPeriod":
requiredBitSet[0] |= 1 << 3
if err := func() error {
if err := s.HeartbeatPeriod.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"heartbeatPeriod\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00001111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2) {
name = jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2Headers) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields implements json.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2Headers) encodeFields(e *jx.Encoder) {
for k, elem := range s {
e.FieldStart(k)
e.Str(elem)
}
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2Headers from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2Headers) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2Headers to nil")
}
m := s.init()
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
var elem string
if err := func() error {
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrapf(err, "decode field %q", k)
}
m[string(k)] = elem
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2Headers")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2Headers) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2Headers) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3) encodeFields(e *jx.Encoder) {
{
e.FieldStart("path")
s.Path.Encode(e)
}
{
e.FieldStart("host")
s.Host.Encode(e)
}
{
e.FieldStart("headers")
s.Headers.Encode(e)
}
}
var jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3 = [3]string{
0: "path",
1: "host",
2: "headers",
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3 from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3 to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "path":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Path.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"path\"")
}
case "host":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.Host.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"host\"")
}
case "headers":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.Headers.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"headers\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3) {
name = jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3Headers) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields implements json.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3Headers) encodeFields(e *jx.Encoder) {
for k, elem := range s {
e.FieldStart(k)
e.Str(elem)
}
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3Headers from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3Headers) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3Headers to nil")
}
m := s.init()
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
var elem string
if err := func() error {
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrapf(err, "decode field %q", k)
}
m[string(k)] = elem
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3Headers")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3Headers) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3Headers) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions4) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions4) encodeFields(e *jx.Encoder) {
{
e.FieldStart("authority")
s.Authority.Encode(e)
}
{
e.FieldStart("serviceName")
s.ServiceName.Encode(e)
}
{
e.FieldStart("multiMode")
e.Bool(s.MultiMode)
}
}
var jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions4 = [3]string{
0: "authority",
1: "serviceName",
2: "multiMode",
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions4 from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions4) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions4 to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "authority":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Authority.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"authority\"")
}
case "serviceName":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.ServiceName.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"serviceName\"")
}
case "multiMode":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Bool()
s.MultiMode = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"multiMode\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions4")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions4) {
name = jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions4[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions4) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions4) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions5) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions5) encodeFields(e *jx.Encoder) {
{
e.FieldStart("clientMtu")
e.Int(s.ClientMtu)
}
{
e.FieldStart("clientTti")
e.Int(s.ClientTti)
}
{
e.FieldStart("congestion")
e.Bool(s.Congestion)
}
}
var jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions5 = [3]string{
0: "clientMtu",
1: "clientTti",
2: "congestion",
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions5 from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions5) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions5 to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "clientMtu":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Int()
s.ClientMtu = int(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"clientMtu\"")
}
case "clientTti":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Int()
s.ClientTti = int(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"clientTti\"")
}
case "congestion":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Bool()
s.Congestion = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"congestion\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions5")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions5) {
name = jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions5[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions5) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions5) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions6) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions6) encodeFields(e *jx.Encoder) {
{
e.FieldStart("version")
e.Int(s.Version)
}
{
e.FieldStart("auth")
e.Str(s.Auth)
}
}
var jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions6 = [2]string{
0: "version",
1: "auth",
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions6 from json.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions6) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions6 to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "version":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Int()
s.Version = int(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"version\"")
}
case "auth":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Auth = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"auth\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions6")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions6) {
name = jsonFieldsNameOfGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions6[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions6) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions6) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRecapResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRecapResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfGetRecapResponse = [1]string{
0: "response",
}
// Decode decodes GetRecapResponse from json.
func (s *GetRecapResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRecapResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRecapResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRecapResponse) {
name = jsonFieldsNameOfGetRecapResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRecapResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRecapResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRecapResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRecapResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("thisMonth")
s.ThisMonth.Encode(e)
}
{
e.FieldStart("total")
s.Total.Encode(e)
}
{
e.FieldStart("version")
e.Str(s.Version)
}
{
e.FieldStart("initDate")
json.EncodeDateTime(e, s.InitDate)
}
}
var jsonFieldsNameOfGetRecapResponseResponse = [4]string{
0: "thisMonth",
1: "total",
2: "version",
3: "initDate",
}
// Decode decodes GetRecapResponseResponse from json.
func (s *GetRecapResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRecapResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "thisMonth":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.ThisMonth.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"thisMonth\"")
}
case "total":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.Total.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"total\"")
}
case "version":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.Version = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"version\"")
}
case "initDate":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := json.DecodeDateTime(d)
s.InitDate = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"initDate\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRecapResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00001111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRecapResponseResponse) {
name = jsonFieldsNameOfGetRecapResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRecapResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRecapResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRecapResponseResponseThisMonth) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRecapResponseResponseThisMonth) encodeFields(e *jx.Encoder) {
{
e.FieldStart("users")
e.Float64(s.Users)
}
{
e.FieldStart("traffic")
e.Str(s.Traffic)
}
}
var jsonFieldsNameOfGetRecapResponseResponseThisMonth = [2]string{
0: "users",
1: "traffic",
}
// Decode decodes GetRecapResponseResponseThisMonth from json.
func (s *GetRecapResponseResponseThisMonth) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRecapResponseResponseThisMonth to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "users":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.Users = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"users\"")
}
case "traffic":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Traffic = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"traffic\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRecapResponseResponseThisMonth")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRecapResponseResponseThisMonth) {
name = jsonFieldsNameOfGetRecapResponseResponseThisMonth[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRecapResponseResponseThisMonth) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRecapResponseResponseThisMonth) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRecapResponseResponseTotal) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRecapResponseResponseTotal) encodeFields(e *jx.Encoder) {
{
e.FieldStart("users")
e.Float64(s.Users)
}
{
e.FieldStart("nodes")
e.Float64(s.Nodes)
}
{
e.FieldStart("traffic")
e.Str(s.Traffic)
}
{
e.FieldStart("nodesRam")
e.Str(s.NodesRam)
}
{
e.FieldStart("nodesCpuCores")
e.Float64(s.NodesCpuCores)
}
{
e.FieldStart("distinctCountries")
e.Float64(s.DistinctCountries)
}
}
var jsonFieldsNameOfGetRecapResponseResponseTotal = [6]string{
0: "users",
1: "nodes",
2: "traffic",
3: "nodesRam",
4: "nodesCpuCores",
5: "distinctCountries",
}
// Decode decodes GetRecapResponseResponseTotal from json.
func (s *GetRecapResponseResponseTotal) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRecapResponseResponseTotal to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "users":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.Users = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"users\"")
}
case "nodes":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.Nodes = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodes\"")
}
case "traffic":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.Traffic = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"traffic\"")
}
case "nodesRam":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Str()
s.NodesRam = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodesRam\"")
}
case "nodesCpuCores":
requiredBitSet[0] |= 1 << 4
if err := func() error {
v, err := d.Float64()
s.NodesCpuCores = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodesCpuCores\"")
}
case "distinctCountries":
requiredBitSet[0] |= 1 << 5
if err := func() error {
v, err := d.Float64()
s.DistinctCountries = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"distinctCountries\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRecapResponseResponseTotal")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00111111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRecapResponseResponseTotal) {
name = jsonFieldsNameOfGetRecapResponseResponseTotal[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRecapResponseResponseTotal) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRecapResponseResponseTotal) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRemnawaveHealthResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRemnawaveHealthResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfGetRemnawaveHealthResponse = [1]string{
0: "response",
}
// Decode decodes GetRemnawaveHealthResponse from json.
func (s *GetRemnawaveHealthResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRemnawaveHealthResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRemnawaveHealthResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRemnawaveHealthResponse) {
name = jsonFieldsNameOfGetRemnawaveHealthResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRemnawaveHealthResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRemnawaveHealthResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRemnawaveHealthResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRemnawaveHealthResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("runtimeMetrics")
e.ArrStart()
for _, elem := range s.RuntimeMetrics {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfGetRemnawaveHealthResponseResponse = [1]string{
0: "runtimeMetrics",
}
// Decode decodes GetRemnawaveHealthResponseResponse from json.
func (s *GetRemnawaveHealthResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRemnawaveHealthResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "runtimeMetrics":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.RuntimeMetrics = make([]GetRemnawaveHealthResponseResponseRuntimeMetricsItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem GetRemnawaveHealthResponseResponseRuntimeMetricsItem
if err := elem.Decode(d); err != nil {
return err
}
s.RuntimeMetrics = append(s.RuntimeMetrics, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"runtimeMetrics\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRemnawaveHealthResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRemnawaveHealthResponseResponse) {
name = jsonFieldsNameOfGetRemnawaveHealthResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRemnawaveHealthResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRemnawaveHealthResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetRemnawaveHealthResponseResponseRuntimeMetricsItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetRemnawaveHealthResponseResponseRuntimeMetricsItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("rss")
e.Float64(s.Rss)
}
{
e.FieldStart("heapUsed")
e.Float64(s.HeapUsed)
}
{
e.FieldStart("heapTotal")
e.Float64(s.HeapTotal)
}
{
e.FieldStart("external")
e.Float64(s.External)
}
{
e.FieldStart("arrayBuffers")
e.Float64(s.ArrayBuffers)
}
{
e.FieldStart("eventLoopDelayMs")
e.Float64(s.EventLoopDelayMs)
}
{
e.FieldStart("eventLoopP99Ms")
e.Float64(s.EventLoopP99Ms)
}
{
e.FieldStart("activeHandles")
e.Float64(s.ActiveHandles)
}
{
e.FieldStart("uptime")
e.Float64(s.Uptime)
}
{
e.FieldStart("pid")
e.Float64(s.Pid)
}
{
e.FieldStart("timestamp")
e.Float64(s.Timestamp)
}
{
e.FieldStart("instanceId")
e.Str(s.InstanceId)
}
{
e.FieldStart("instanceType")
e.Str(s.InstanceType)
}
}
var jsonFieldsNameOfGetRemnawaveHealthResponseResponseRuntimeMetricsItem = [13]string{
0: "rss",
1: "heapUsed",
2: "heapTotal",
3: "external",
4: "arrayBuffers",
5: "eventLoopDelayMs",
6: "eventLoopP99Ms",
7: "activeHandles",
8: "uptime",
9: "pid",
10: "timestamp",
11: "instanceId",
12: "instanceType",
}
// Decode decodes GetRemnawaveHealthResponseResponseRuntimeMetricsItem from json.
func (s *GetRemnawaveHealthResponseResponseRuntimeMetricsItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetRemnawaveHealthResponseResponseRuntimeMetricsItem to nil")
}
var requiredBitSet [2]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "rss":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.Rss = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"rss\"")
}
case "heapUsed":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.HeapUsed = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"heapUsed\"")
}
case "heapTotal":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Float64()
s.HeapTotal = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"heapTotal\"")
}
case "external":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Float64()
s.External = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"external\"")
}
case "arrayBuffers":
requiredBitSet[0] |= 1 << 4
if err := func() error {
v, err := d.Float64()
s.ArrayBuffers = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"arrayBuffers\"")
}
case "eventLoopDelayMs":
requiredBitSet[0] |= 1 << 5
if err := func() error {
v, err := d.Float64()
s.EventLoopDelayMs = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"eventLoopDelayMs\"")
}
case "eventLoopP99Ms":
requiredBitSet[0] |= 1 << 6
if err := func() error {
v, err := d.Float64()
s.EventLoopP99Ms = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"eventLoopP99Ms\"")
}
case "activeHandles":
requiredBitSet[0] |= 1 << 7
if err := func() error {
v, err := d.Float64()
s.ActiveHandles = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"activeHandles\"")
}
case "uptime":
requiredBitSet[1] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.Uptime = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uptime\"")
}
case "pid":
requiredBitSet[1] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.Pid = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"pid\"")
}
case "timestamp":
requiredBitSet[1] |= 1 << 2
if err := func() error {
v, err := d.Float64()
s.Timestamp = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"timestamp\"")
}
case "instanceId":
requiredBitSet[1] |= 1 << 3
if err := func() error {
v, err := d.Str()
s.InstanceId = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"instanceId\"")
}
case "instanceType":
requiredBitSet[1] |= 1 << 4
if err := func() error {
v, err := d.Str()
s.InstanceType = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"instanceType\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetRemnawaveHealthResponseResponseRuntimeMetricsItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [2]uint8{
0b11111111,
0b00011111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetRemnawaveHealthResponseResponseRuntimeMetricsItem) {
name = jsonFieldsNameOfGetRemnawaveHealthResponseResponseRuntimeMetricsItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetRemnawaveHealthResponseResponseRuntimeMetricsItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetRemnawaveHealthResponseResponseRuntimeMetricsItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetStatsNodesUsersUsageRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetStatsNodesUsersUsageRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("nodesUuids")
e.ArrStart()
for _, elem := range s.NodesUuids {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfGetStatsNodesUsersUsageRequest = [1]string{
0: "nodesUuids",
}
// Decode decodes GetStatsNodesUsersUsageRequest from json.
func (s *GetStatsNodesUsersUsageRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetStatsNodesUsersUsageRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "nodesUuids":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.NodesUuids = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.NodesUuids = append(s.NodesUuids, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodesUuids\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetStatsNodesUsersUsageRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetStatsNodesUsersUsageRequest) {
name = jsonFieldsNameOfGetStatsNodesUsersUsageRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetStatsNodesUsersUsageRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetStatsNodesUsersUsageRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetStatsResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetStatsResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfGetStatsResponse = [1]string{
0: "response",
}
// Decode decodes GetStatsResponse from json.
func (s *GetStatsResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetStatsResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetStatsResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetStatsResponse) {
name = jsonFieldsNameOfGetStatsResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetStatsResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetStatsResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetStatsResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetStatsResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("cpu")
s.CPU.Encode(e)
}
{
e.FieldStart("memory")
s.Memory.Encode(e)
}
{
e.FieldStart("uptime")
e.Float64(s.Uptime)
}
{
e.FieldStart("timestamp")
e.Float64(s.Timestamp)
}
{
e.FieldStart("users")
s.Users.Encode(e)
}
{
e.FieldStart("onlineStats")
s.OnlineStats.Encode(e)
}
{
e.FieldStart("nodes")
s.Nodes.Encode(e)
}
}
var jsonFieldsNameOfGetStatsResponseResponse = [7]string{
0: "cpu",
1: "memory",
2: "uptime",
3: "timestamp",
4: "users",
5: "onlineStats",
6: "nodes",
}
// Decode decodes GetStatsResponseResponse from json.
func (s *GetStatsResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetStatsResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "cpu":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.CPU.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"cpu\"")
}
case "memory":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.Memory.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"memory\"")
}
case "uptime":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Float64()
s.Uptime = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uptime\"")
}
case "timestamp":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Float64()
s.Timestamp = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"timestamp\"")
}
case "users":
requiredBitSet[0] |= 1 << 4
if err := func() error {
if err := s.Users.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"users\"")
}
case "onlineStats":
requiredBitSet[0] |= 1 << 5
if err := func() error {
if err := s.OnlineStats.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"onlineStats\"")
}
case "nodes":
requiredBitSet[0] |= 1 << 6
if err := func() error {
if err := s.Nodes.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodes\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetStatsResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b01111111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetStatsResponseResponse) {
name = jsonFieldsNameOfGetStatsResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetStatsResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetStatsResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetStatsResponseResponseCPU) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetStatsResponseResponseCPU) encodeFields(e *jx.Encoder) {
{
e.FieldStart("cores")
e.Float64(s.Cores)
}
}
var jsonFieldsNameOfGetStatsResponseResponseCPU = [1]string{
0: "cores",
}
// Decode decodes GetStatsResponseResponseCPU from json.
func (s *GetStatsResponseResponseCPU) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetStatsResponseResponseCPU to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "cores":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.Cores = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"cores\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetStatsResponseResponseCPU")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetStatsResponseResponseCPU) {
name = jsonFieldsNameOfGetStatsResponseResponseCPU[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetStatsResponseResponseCPU) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetStatsResponseResponseCPU) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetStatsResponseResponseMemory) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetStatsResponseResponseMemory) encodeFields(e *jx.Encoder) {
{
e.FieldStart("total")
e.Float64(s.Total)
}
{
e.FieldStart("free")
e.Float64(s.Free)
}
{
e.FieldStart("used")
e.Float64(s.Used)
}
}
var jsonFieldsNameOfGetStatsResponseResponseMemory = [3]string{
0: "total",
1: "free",
2: "used",
}
// Decode decodes GetStatsResponseResponseMemory from json.
func (s *GetStatsResponseResponseMemory) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetStatsResponseResponseMemory to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "total":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.Total = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"total\"")
}
case "free":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.Free = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"free\"")
}
case "used":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Float64()
s.Used = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"used\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetStatsResponseResponseMemory")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetStatsResponseResponseMemory) {
name = jsonFieldsNameOfGetStatsResponseResponseMemory[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetStatsResponseResponseMemory) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetStatsResponseResponseMemory) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetStatsResponseResponseNodes) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetStatsResponseResponseNodes) encodeFields(e *jx.Encoder) {
{
e.FieldStart("totalOnline")
e.Float64(s.TotalOnline)
}
{
e.FieldStart("totalBytesLifetime")
e.Str(s.TotalBytesLifetime)
}
}
var jsonFieldsNameOfGetStatsResponseResponseNodes = [2]string{
0: "totalOnline",
1: "totalBytesLifetime",
}
// Decode decodes GetStatsResponseResponseNodes from json.
func (s *GetStatsResponseResponseNodes) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetStatsResponseResponseNodes to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "totalOnline":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.TotalOnline = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"totalOnline\"")
}
case "totalBytesLifetime":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.TotalBytesLifetime = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"totalBytesLifetime\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetStatsResponseResponseNodes")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetStatsResponseResponseNodes) {
name = jsonFieldsNameOfGetStatsResponseResponseNodes[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetStatsResponseResponseNodes) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetStatsResponseResponseNodes) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetStatsResponseResponseOnlineStats) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetStatsResponseResponseOnlineStats) encodeFields(e *jx.Encoder) {
{
e.FieldStart("lastDay")
e.Float64(s.LastDay)
}
{
e.FieldStart("lastWeek")
e.Float64(s.LastWeek)
}
{
e.FieldStart("neverOnline")
e.Float64(s.NeverOnline)
}
{
e.FieldStart("onlineNow")
e.Float64(s.OnlineNow)
}
}
var jsonFieldsNameOfGetStatsResponseResponseOnlineStats = [4]string{
0: "lastDay",
1: "lastWeek",
2: "neverOnline",
3: "onlineNow",
}
// Decode decodes GetStatsResponseResponseOnlineStats from json.
func (s *GetStatsResponseResponseOnlineStats) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetStatsResponseResponseOnlineStats to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "lastDay":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.LastDay = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"lastDay\"")
}
case "lastWeek":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.LastWeek = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"lastWeek\"")
}
case "neverOnline":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Float64()
s.NeverOnline = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"neverOnline\"")
}
case "onlineNow":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Float64()
s.OnlineNow = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"onlineNow\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetStatsResponseResponseOnlineStats")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00001111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetStatsResponseResponseOnlineStats) {
name = jsonFieldsNameOfGetStatsResponseResponseOnlineStats[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetStatsResponseResponseOnlineStats) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetStatsResponseResponseOnlineStats) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetStatsResponseResponseUsers) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetStatsResponseResponseUsers) encodeFields(e *jx.Encoder) {
{
e.FieldStart("statusCounts")
s.StatusCounts.Encode(e)
}
{
e.FieldStart("totalUsers")
e.Float64(s.TotalUsers)
}
}
var jsonFieldsNameOfGetStatsResponseResponseUsers = [2]string{
0: "statusCounts",
1: "totalUsers",
}
// Decode decodes GetStatsResponseResponseUsers from json.
func (s *GetStatsResponseResponseUsers) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetStatsResponseResponseUsers to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "statusCounts":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.StatusCounts.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"statusCounts\"")
}
case "totalUsers":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.TotalUsers = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"totalUsers\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetStatsResponseResponseUsers")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetStatsResponseResponseUsers) {
name = jsonFieldsNameOfGetStatsResponseResponseUsers[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetStatsResponseResponseUsers) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetStatsResponseResponseUsers) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s GetStatsResponseResponseUsersStatusCounts) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields implements json.Marshaler.
func (s GetStatsResponseResponseUsersStatusCounts) encodeFields(e *jx.Encoder) {
for k, elem := range s {
e.FieldStart(k)
e.Float64(elem)
}
}
// Decode decodes GetStatsResponseResponseUsersStatusCounts from json.
func (s *GetStatsResponseResponseUsersStatusCounts) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetStatsResponseResponseUsersStatusCounts to nil")
}
m := s.init()
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
var elem float64
if err := func() error {
v, err := d.Float64()
elem = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrapf(err, "decode field %q", k)
}
m[string(k)] = elem
return nil
}); err != nil {
return errors.Wrap(err, "decode GetStatsResponseResponseUsersStatusCounts")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s GetStatsResponseResponseUsersStatusCounts) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetStatsResponseResponseUsersStatusCounts) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetStatusResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetStatusResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfGetStatusResponse = [1]string{
0: "response",
}
// Decode decodes GetStatusResponse from json.
func (s *GetStatusResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetStatusResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetStatusResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetStatusResponse) {
name = jsonFieldsNameOfGetStatusResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetStatusResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetStatusResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetStatusResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetStatusResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("isLoginAllowed")
e.Bool(s.IsLoginAllowed)
}
{
e.FieldStart("isRegisterAllowed")
e.Bool(s.IsRegisterAllowed)
}
{
e.FieldStart("authentication")
s.Authentication.Encode(e)
}
{
e.FieldStart("branding")
s.Branding.Encode(e)
}
}
var jsonFieldsNameOfGetStatusResponseResponse = [4]string{
0: "isLoginAllowed",
1: "isRegisterAllowed",
2: "authentication",
3: "branding",
}
// Decode decodes GetStatusResponseResponse from json.
func (s *GetStatusResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetStatusResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "isLoginAllowed":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Bool()
s.IsLoginAllowed = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isLoginAllowed\"")
}
case "isRegisterAllowed":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Bool()
s.IsRegisterAllowed = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isRegisterAllowed\"")
}
case "authentication":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.Authentication.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"authentication\"")
}
case "branding":
requiredBitSet[0] |= 1 << 3
if err := func() error {
if err := s.Branding.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"branding\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetStatusResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00001111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetStatusResponseResponse) {
name = jsonFieldsNameOfGetStatusResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetStatusResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetStatusResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetStatusResponseResponseAuthentication) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetStatusResponseResponseAuthentication) encodeFields(e *jx.Encoder) {
{
e.FieldStart("passkey")
s.Passkey.Encode(e)
}
{
e.FieldStart("oauth2")
s.OAuth2.Encode(e)
}
{
e.FieldStart("password")
s.Password.Encode(e)
}
}
var jsonFieldsNameOfGetStatusResponseResponseAuthentication = [3]string{
0: "passkey",
1: "oauth2",
2: "password",
}
// Decode decodes GetStatusResponseResponseAuthentication from json.
func (s *GetStatusResponseResponseAuthentication) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetStatusResponseResponseAuthentication to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "passkey":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Passkey.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"passkey\"")
}
case "oauth2":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.OAuth2.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"oauth2\"")
}
case "password":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.Password.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"password\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetStatusResponseResponseAuthentication")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetStatusResponseResponseAuthentication) {
name = jsonFieldsNameOfGetStatusResponseResponseAuthentication[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetStatusResponseResponseAuthentication) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetStatusResponseResponseAuthentication) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetStatusResponseResponseAuthenticationOAuth2) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetStatusResponseResponseAuthenticationOAuth2) encodeFields(e *jx.Encoder) {
{
e.FieldStart("providers")
s.Providers.Encode(e)
}
}
var jsonFieldsNameOfGetStatusResponseResponseAuthenticationOAuth2 = [1]string{
0: "providers",
}
// Decode decodes GetStatusResponseResponseAuthenticationOAuth2 from json.
func (s *GetStatusResponseResponseAuthenticationOAuth2) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetStatusResponseResponseAuthenticationOAuth2 to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "providers":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Providers.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"providers\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetStatusResponseResponseAuthenticationOAuth2")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetStatusResponseResponseAuthenticationOAuth2) {
name = jsonFieldsNameOfGetStatusResponseResponseAuthenticationOAuth2[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetStatusResponseResponseAuthenticationOAuth2) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetStatusResponseResponseAuthenticationOAuth2) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s GetStatusResponseResponseAuthenticationOAuth2Providers) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields implements json.Marshaler.
func (s GetStatusResponseResponseAuthenticationOAuth2Providers) encodeFields(e *jx.Encoder) {
for k, elem := range s {
e.FieldStart(k)
e.Bool(elem)
}
}
// Decode decodes GetStatusResponseResponseAuthenticationOAuth2Providers from json.
func (s *GetStatusResponseResponseAuthenticationOAuth2Providers) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetStatusResponseResponseAuthenticationOAuth2Providers to nil")
}
m := s.init()
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
var elem bool
if err := func() error {
v, err := d.Bool()
elem = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrapf(err, "decode field %q", k)
}
m[string(k)] = elem
return nil
}); err != nil {
return errors.Wrap(err, "decode GetStatusResponseResponseAuthenticationOAuth2Providers")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s GetStatusResponseResponseAuthenticationOAuth2Providers) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetStatusResponseResponseAuthenticationOAuth2Providers) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetStatusResponseResponseBranding) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetStatusResponseResponseBranding) encodeFields(e *jx.Encoder) {
{
e.FieldStart("title")
s.Title.Encode(e)
}
{
e.FieldStart("logoUrl")
s.LogoUrl.Encode(e)
}
}
var jsonFieldsNameOfGetStatusResponseResponseBranding = [2]string{
0: "title",
1: "logoUrl",
}
// Decode decodes GetStatusResponseResponseBranding from json.
func (s *GetStatusResponseResponseBranding) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetStatusResponseResponseBranding to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "title":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Title.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"title\"")
}
case "logoUrl":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.LogoUrl.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"logoUrl\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetStatusResponseResponseBranding")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetStatusResponseResponseBranding) {
name = jsonFieldsNameOfGetStatusResponseResponseBranding[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetStatusResponseResponseBranding) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetStatusResponseResponseBranding) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetSubpageConfigByShortUuidRequestBody) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetSubpageConfigByShortUuidRequestBody) encodeFields(e *jx.Encoder) {
{
e.FieldStart("requestHeaders")
s.RequestHeaders.Encode(e)
}
}
var jsonFieldsNameOfGetSubpageConfigByShortUuidRequestBody = [1]string{
0: "requestHeaders",
}
// Decode decodes GetSubpageConfigByShortUuidRequestBody from json.
func (s *GetSubpageConfigByShortUuidRequestBody) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetSubpageConfigByShortUuidRequestBody to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "requestHeaders":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.RequestHeaders.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"requestHeaders\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetSubpageConfigByShortUuidRequestBody")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetSubpageConfigByShortUuidRequestBody) {
name = jsonFieldsNameOfGetSubpageConfigByShortUuidRequestBody[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetSubpageConfigByShortUuidRequestBody) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetSubpageConfigByShortUuidRequestBody) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s GetSubpageConfigByShortUuidRequestBodyRequestHeaders) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields implements json.Marshaler.
func (s GetSubpageConfigByShortUuidRequestBodyRequestHeaders) encodeFields(e *jx.Encoder) {
for k, elem := range s {
e.FieldStart(k)
e.Str(elem)
}
}
// Decode decodes GetSubpageConfigByShortUuidRequestBodyRequestHeaders from json.
func (s *GetSubpageConfigByShortUuidRequestBodyRequestHeaders) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetSubpageConfigByShortUuidRequestBodyRequestHeaders to nil")
}
m := s.init()
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
var elem string
if err := func() error {
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrapf(err, "decode field %q", k)
}
m[string(k)] = elem
return nil
}); err != nil {
return errors.Wrap(err, "decode GetSubpageConfigByShortUuidRequestBodyRequestHeaders")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s GetSubpageConfigByShortUuidRequestBodyRequestHeaders) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetSubpageConfigByShortUuidRequestBodyRequestHeaders) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetSubpageConfigByShortUuidResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetSubpageConfigByShortUuidResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfGetSubpageConfigByShortUuidResponse = [1]string{
0: "response",
}
// Decode decodes GetSubpageConfigByShortUuidResponse from json.
func (s *GetSubpageConfigByShortUuidResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetSubpageConfigByShortUuidResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetSubpageConfigByShortUuidResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetSubpageConfigByShortUuidResponse) {
name = jsonFieldsNameOfGetSubpageConfigByShortUuidResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetSubpageConfigByShortUuidResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetSubpageConfigByShortUuidResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetSubpageConfigByShortUuidResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetSubpageConfigByShortUuidResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("subpageConfigUuid")
s.SubpageConfigUuid.Encode(e)
}
{
e.FieldStart("webpageAllowed")
e.Bool(s.WebpageAllowed)
}
}
var jsonFieldsNameOfGetSubpageConfigByShortUuidResponseResponse = [2]string{
0: "subpageConfigUuid",
1: "webpageAllowed",
}
// Decode decodes GetSubpageConfigByShortUuidResponseResponse from json.
func (s *GetSubpageConfigByShortUuidResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetSubpageConfigByShortUuidResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "subpageConfigUuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.SubpageConfigUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"subpageConfigUuid\"")
}
case "webpageAllowed":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Bool()
s.WebpageAllowed = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"webpageAllowed\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetSubpageConfigByShortUuidResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetSubpageConfigByShortUuidResponseResponse) {
name = jsonFieldsNameOfGetSubpageConfigByShortUuidResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetSubpageConfigByShortUuidResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetSubpageConfigByShortUuidResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetSubscriptionRequestHistoryResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetSubscriptionRequestHistoryResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfGetSubscriptionRequestHistoryResponse = [1]string{
0: "response",
}
// Decode decodes GetSubscriptionRequestHistoryResponse from json.
func (s *GetSubscriptionRequestHistoryResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetSubscriptionRequestHistoryResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetSubscriptionRequestHistoryResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetSubscriptionRequestHistoryResponse) {
name = jsonFieldsNameOfGetSubscriptionRequestHistoryResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetSubscriptionRequestHistoryResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetSubscriptionRequestHistoryResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetSubscriptionRequestHistoryStatsResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetSubscriptionRequestHistoryStatsResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfGetSubscriptionRequestHistoryStatsResponse = [1]string{
0: "response",
}
// Decode decodes GetSubscriptionRequestHistoryStatsResponse from json.
func (s *GetSubscriptionRequestHistoryStatsResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetSubscriptionRequestHistoryStatsResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetSubscriptionRequestHistoryStatsResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetSubscriptionRequestHistoryStatsResponse) {
name = jsonFieldsNameOfGetSubscriptionRequestHistoryStatsResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetSubscriptionRequestHistoryStatsResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetSubscriptionRequestHistoryStatsResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetSubscriptionRequestHistoryStatsResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetSubscriptionRequestHistoryStatsResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("byParsedApp")
e.ArrStart()
for _, elem := range s.ByParsedApp {
elem.Encode(e)
}
e.ArrEnd()
}
{
e.FieldStart("hourlyRequestStats")
e.ArrStart()
for _, elem := range s.HourlyRequestStats {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfGetSubscriptionRequestHistoryStatsResponseResponse = [2]string{
0: "byParsedApp",
1: "hourlyRequestStats",
}
// Decode decodes GetSubscriptionRequestHistoryStatsResponseResponse from json.
func (s *GetSubscriptionRequestHistoryStatsResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetSubscriptionRequestHistoryStatsResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "byParsedApp":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.ByParsedApp = make([]ByAppItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem ByAppItem
if err := elem.Decode(d); err != nil {
return err
}
s.ByParsedApp = append(s.ByParsedApp, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"byParsedApp\"")
}
case "hourlyRequestStats":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.HourlyRequestStats = make([]GetSubscriptionRequestHistoryStatsResponseResponseHourlyRequestStatsItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem GetSubscriptionRequestHistoryStatsResponseResponseHourlyRequestStatsItem
if err := elem.Decode(d); err != nil {
return err
}
s.HourlyRequestStats = append(s.HourlyRequestStats, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"hourlyRequestStats\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetSubscriptionRequestHistoryStatsResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetSubscriptionRequestHistoryStatsResponseResponse) {
name = jsonFieldsNameOfGetSubscriptionRequestHistoryStatsResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetSubscriptionRequestHistoryStatsResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetSubscriptionRequestHistoryStatsResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetSubscriptionRequestHistoryStatsResponseResponseHourlyRequestStatsItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetSubscriptionRequestHistoryStatsResponseResponseHourlyRequestStatsItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("dateTime")
json.EncodeDateTime(e, s.DateTime)
}
{
e.FieldStart("requestCount")
e.Float64(s.RequestCount)
}
}
var jsonFieldsNameOfGetSubscriptionRequestHistoryStatsResponseResponseHourlyRequestStatsItem = [2]string{
0: "dateTime",
1: "requestCount",
}
// Decode decodes GetSubscriptionRequestHistoryStatsResponseResponseHourlyRequestStatsItem from json.
func (s *GetSubscriptionRequestHistoryStatsResponseResponseHourlyRequestStatsItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetSubscriptionRequestHistoryStatsResponseResponseHourlyRequestStatsItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "dateTime":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeDateTime(d)
s.DateTime = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"dateTime\"")
}
case "requestCount":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.RequestCount = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"requestCount\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetSubscriptionRequestHistoryStatsResponseResponseHourlyRequestStatsItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetSubscriptionRequestHistoryStatsResponseResponseHourlyRequestStatsItem) {
name = jsonFieldsNameOfGetSubscriptionRequestHistoryStatsResponseResponseHourlyRequestStatsItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetSubscriptionRequestHistoryStatsResponseResponseHourlyRequestStatsItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetSubscriptionRequestHistoryStatsResponseResponseHourlyRequestStatsItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetTopUsersByHwidDevicesResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetTopUsersByHwidDevicesResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfGetTopUsersByHwidDevicesResponse = [1]string{
0: "response",
}
// Decode decodes GetTopUsersByHwidDevicesResponse from json.
func (s *GetTopUsersByHwidDevicesResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetTopUsersByHwidDevicesResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetTopUsersByHwidDevicesResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetTopUsersByHwidDevicesResponse) {
name = jsonFieldsNameOfGetTopUsersByHwidDevicesResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetTopUsersByHwidDevicesResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetTopUsersByHwidDevicesResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetTopUsersByHwidDevicesResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetTopUsersByHwidDevicesResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("users")
e.ArrStart()
for _, elem := range s.Users {
elem.Encode(e)
}
e.ArrEnd()
}
{
e.FieldStart("total")
e.Float64(s.Total)
}
}
var jsonFieldsNameOfGetTopUsersByHwidDevicesResponseResponse = [2]string{
0: "users",
1: "total",
}
// Decode decodes GetTopUsersByHwidDevicesResponseResponse from json.
func (s *GetTopUsersByHwidDevicesResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetTopUsersByHwidDevicesResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "users":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Users = make([]GetTopUsersByHwidDevicesResponseResponseUsersItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem GetTopUsersByHwidDevicesResponseResponseUsersItem
if err := elem.Decode(d); err != nil {
return err
}
s.Users = append(s.Users, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"users\"")
}
case "total":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.Total = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"total\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetTopUsersByHwidDevicesResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetTopUsersByHwidDevicesResponseResponse) {
name = jsonFieldsNameOfGetTopUsersByHwidDevicesResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetTopUsersByHwidDevicesResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetTopUsersByHwidDevicesResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetTopUsersByHwidDevicesResponseResponseUsersItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetTopUsersByHwidDevicesResponseResponseUsersItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("userUuid")
json.EncodeUUID(e, s.UserUuid)
}
{
e.FieldStart("id")
e.Float64(s.ID)
}
{
e.FieldStart("username")
e.Str(s.Username)
}
{
e.FieldStart("devicesCount")
e.Float64(s.DevicesCount)
}
}
var jsonFieldsNameOfGetTopUsersByHwidDevicesResponseResponseUsersItem = [4]string{
0: "userUuid",
1: "id",
2: "username",
3: "devicesCount",
}
// Decode decodes GetTopUsersByHwidDevicesResponseResponseUsersItem from json.
func (s *GetTopUsersByHwidDevicesResponseResponseUsersItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetTopUsersByHwidDevicesResponseResponseUsersItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "userUuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UserUuid = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"userUuid\"")
}
case "id":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.ID = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"id\"")
}
case "username":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.Username = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"username\"")
}
case "devicesCount":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Float64()
s.DevicesCount = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"devicesCount\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetTopUsersByHwidDevicesResponseResponseUsersItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00001111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetTopUsersByHwidDevicesResponseResponseUsersItem) {
name = jsonFieldsNameOfGetTopUsersByHwidDevicesResponseResponseUsersItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetTopUsersByHwidDevicesResponseResponseUsersItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetTopUsersByHwidDevicesResponseResponseUsersItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetTorrentBlockerReportsStatsResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetTorrentBlockerReportsStatsResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfGetTorrentBlockerReportsStatsResponse = [1]string{
0: "response",
}
// Decode decodes GetTorrentBlockerReportsStatsResponse from json.
func (s *GetTorrentBlockerReportsStatsResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetTorrentBlockerReportsStatsResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetTorrentBlockerReportsStatsResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetTorrentBlockerReportsStatsResponse) {
name = jsonFieldsNameOfGetTorrentBlockerReportsStatsResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetTorrentBlockerReportsStatsResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetTorrentBlockerReportsStatsResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetTorrentBlockerReportsStatsResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetTorrentBlockerReportsStatsResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("stats")
s.Stats.Encode(e)
}
{
e.FieldStart("topUsers")
e.ArrStart()
for _, elem := range s.TopUsers {
elem.Encode(e)
}
e.ArrEnd()
}
{
e.FieldStart("topNodes")
e.ArrStart()
for _, elem := range s.TopNodes {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfGetTorrentBlockerReportsStatsResponseResponse = [3]string{
0: "stats",
1: "topUsers",
2: "topNodes",
}
// Decode decodes GetTorrentBlockerReportsStatsResponseResponse from json.
func (s *GetTorrentBlockerReportsStatsResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetTorrentBlockerReportsStatsResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "stats":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Stats.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"stats\"")
}
case "topUsers":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.TopUsers = make([]GetTorrentBlockerReportsStatsResponseResponseTopUsersItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem GetTorrentBlockerReportsStatsResponseResponseTopUsersItem
if err := elem.Decode(d); err != nil {
return err
}
s.TopUsers = append(s.TopUsers, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"topUsers\"")
}
case "topNodes":
requiredBitSet[0] |= 1 << 2
if err := func() error {
s.TopNodes = make([]TopNode, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem TopNode
if err := elem.Decode(d); err != nil {
return err
}
s.TopNodes = append(s.TopNodes, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"topNodes\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetTorrentBlockerReportsStatsResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetTorrentBlockerReportsStatsResponseResponse) {
name = jsonFieldsNameOfGetTorrentBlockerReportsStatsResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetTorrentBlockerReportsStatsResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetTorrentBlockerReportsStatsResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetTorrentBlockerReportsStatsResponseResponseStats) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetTorrentBlockerReportsStatsResponseResponseStats) encodeFields(e *jx.Encoder) {
{
e.FieldStart("distinctNodes")
e.Float64(s.DistinctNodes)
}
{
e.FieldStart("distinctUsers")
e.Float64(s.DistinctUsers)
}
{
e.FieldStart("totalReports")
e.Float64(s.TotalReports)
}
{
e.FieldStart("reportsLast24Hours")
e.Float64(s.ReportsLast24Hours)
}
}
var jsonFieldsNameOfGetTorrentBlockerReportsStatsResponseResponseStats = [4]string{
0: "distinctNodes",
1: "distinctUsers",
2: "totalReports",
3: "reportsLast24Hours",
}
// Decode decodes GetTorrentBlockerReportsStatsResponseResponseStats from json.
func (s *GetTorrentBlockerReportsStatsResponseResponseStats) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetTorrentBlockerReportsStatsResponseResponseStats to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "distinctNodes":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.DistinctNodes = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"distinctNodes\"")
}
case "distinctUsers":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.DistinctUsers = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"distinctUsers\"")
}
case "totalReports":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Float64()
s.TotalReports = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"totalReports\"")
}
case "reportsLast24Hours":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Float64()
s.ReportsLast24Hours = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"reportsLast24Hours\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetTorrentBlockerReportsStatsResponseResponseStats")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00001111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetTorrentBlockerReportsStatsResponseResponseStats) {
name = jsonFieldsNameOfGetTorrentBlockerReportsStatsResponseResponseStats[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetTorrentBlockerReportsStatsResponseResponseStats) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetTorrentBlockerReportsStatsResponseResponseStats) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetTorrentBlockerReportsStatsResponseResponseTopUsersItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetTorrentBlockerReportsStatsResponseResponseTopUsersItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("color")
e.Str(s.Color)
}
{
e.FieldStart("username")
e.Str(s.Username)
}
{
e.FieldStart("total")
e.Float64(s.Total)
}
}
var jsonFieldsNameOfGetTorrentBlockerReportsStatsResponseResponseTopUsersItem = [4]string{
0: "uuid",
1: "color",
2: "username",
3: "total",
}
// Decode decodes GetTorrentBlockerReportsStatsResponseResponseTopUsersItem from json.
func (s *GetTorrentBlockerReportsStatsResponseResponseTopUsersItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetTorrentBlockerReportsStatsResponseResponseTopUsersItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "color":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Color = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"color\"")
}
case "username":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.Username = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"username\"")
}
case "total":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Float64()
s.Total = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"total\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetTorrentBlockerReportsStatsResponseResponseTopUsersItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00001111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetTorrentBlockerReportsStatsResponseResponseTopUsersItem) {
name = jsonFieldsNameOfGetTorrentBlockerReportsStatsResponseResponseTopUsersItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetTorrentBlockerReportsStatsResponseResponseTopUsersItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetTorrentBlockerReportsStatsResponseResponseTopUsersItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetUserAccessibleNodesResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetUserAccessibleNodesResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfGetUserAccessibleNodesResponse = [1]string{
0: "response",
}
// Decode decodes GetUserAccessibleNodesResponse from json.
func (s *GetUserAccessibleNodesResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetUserAccessibleNodesResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetUserAccessibleNodesResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetUserAccessibleNodesResponse) {
name = jsonFieldsNameOfGetUserAccessibleNodesResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetUserAccessibleNodesResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetUserAccessibleNodesResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetUserAccessibleNodesResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetUserAccessibleNodesResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("userUuid")
json.EncodeUUID(e, s.UserUuid)
}
{
e.FieldStart("activeNodes")
e.ArrStart()
for _, elem := range s.ActiveNodes {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfGetUserAccessibleNodesResponseResponse = [2]string{
0: "userUuid",
1: "activeNodes",
}
// Decode decodes GetUserAccessibleNodesResponseResponse from json.
func (s *GetUserAccessibleNodesResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetUserAccessibleNodesResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "userUuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UserUuid = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"userUuid\"")
}
case "activeNodes":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.ActiveNodes = make([]GetUserAccessibleNodesResponseResponseActiveNodesItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem GetUserAccessibleNodesResponseResponseActiveNodesItem
if err := elem.Decode(d); err != nil {
return err
}
s.ActiveNodes = append(s.ActiveNodes, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"activeNodes\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetUserAccessibleNodesResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetUserAccessibleNodesResponseResponse) {
name = jsonFieldsNameOfGetUserAccessibleNodesResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetUserAccessibleNodesResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetUserAccessibleNodesResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetUserAccessibleNodesResponseResponseActiveNodesItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetUserAccessibleNodesResponseResponseActiveNodesItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("nodeName")
e.Str(s.NodeName)
}
{
e.FieldStart("countryCode")
e.Str(s.CountryCode)
}
{
e.FieldStart("configProfileUuid")
json.EncodeUUID(e, s.ConfigProfileUuid)
}
{
e.FieldStart("configProfileName")
e.Str(s.ConfigProfileName)
}
{
e.FieldStart("activeSquads")
e.ArrStart()
for _, elem := range s.ActiveSquads {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfGetUserAccessibleNodesResponseResponseActiveNodesItem = [6]string{
0: "uuid",
1: "nodeName",
2: "countryCode",
3: "configProfileUuid",
4: "configProfileName",
5: "activeSquads",
}
// Decode decodes GetUserAccessibleNodesResponseResponseActiveNodesItem from json.
func (s *GetUserAccessibleNodesResponseResponseActiveNodesItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetUserAccessibleNodesResponseResponseActiveNodesItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "nodeName":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.NodeName = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodeName\"")
}
case "countryCode":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.CountryCode = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"countryCode\"")
}
case "configProfileUuid":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := json.DecodeUUID(d)
s.ConfigProfileUuid = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"configProfileUuid\"")
}
case "configProfileName":
requiredBitSet[0] |= 1 << 4
if err := func() error {
v, err := d.Str()
s.ConfigProfileName = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"configProfileName\"")
}
case "activeSquads":
requiredBitSet[0] |= 1 << 5
if err := func() error {
s.ActiveSquads = make([]GetUserAccessibleNodesResponseResponseActiveNodesItemActiveSquadsItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem GetUserAccessibleNodesResponseResponseActiveNodesItemActiveSquadsItem
if err := elem.Decode(d); err != nil {
return err
}
s.ActiveSquads = append(s.ActiveSquads, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"activeSquads\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetUserAccessibleNodesResponseResponseActiveNodesItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00111111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetUserAccessibleNodesResponseResponseActiveNodesItem) {
name = jsonFieldsNameOfGetUserAccessibleNodesResponseResponseActiveNodesItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetUserAccessibleNodesResponseResponseActiveNodesItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetUserAccessibleNodesResponseResponseActiveNodesItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetUserAccessibleNodesResponseResponseActiveNodesItemActiveSquadsItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetUserAccessibleNodesResponseResponseActiveNodesItemActiveSquadsItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("squadName")
e.Str(s.SquadName)
}
{
e.FieldStart("activeInbounds")
e.ArrStart()
for _, elem := range s.ActiveInbounds {
e.Str(elem)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfGetUserAccessibleNodesResponseResponseActiveNodesItemActiveSquadsItem = [2]string{
0: "squadName",
1: "activeInbounds",
}
// Decode decodes GetUserAccessibleNodesResponseResponseActiveNodesItemActiveSquadsItem from json.
func (s *GetUserAccessibleNodesResponseResponseActiveNodesItemActiveSquadsItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetUserAccessibleNodesResponseResponseActiveNodesItemActiveSquadsItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "squadName":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.SquadName = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"squadName\"")
}
case "activeInbounds":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.ActiveInbounds = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.ActiveInbounds = append(s.ActiveInbounds, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"activeInbounds\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetUserAccessibleNodesResponseResponseActiveNodesItemActiveSquadsItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetUserAccessibleNodesResponseResponseActiveNodesItemActiveSquadsItem) {
name = jsonFieldsNameOfGetUserAccessibleNodesResponseResponseActiveNodesItemActiveSquadsItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetUserAccessibleNodesResponseResponseActiveNodesItemActiveSquadsItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetUserAccessibleNodesResponseResponseActiveNodesItemActiveSquadsItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetUserSubscriptionRequestHistoryResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetUserSubscriptionRequestHistoryResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfGetUserSubscriptionRequestHistoryResponse = [1]string{
0: "response",
}
// Decode decodes GetUserSubscriptionRequestHistoryResponse from json.
func (s *GetUserSubscriptionRequestHistoryResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetUserSubscriptionRequestHistoryResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetUserSubscriptionRequestHistoryResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetUserSubscriptionRequestHistoryResponse) {
name = jsonFieldsNameOfGetUserSubscriptionRequestHistoryResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetUserSubscriptionRequestHistoryResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetUserSubscriptionRequestHistoryResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetUsersStreamResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetUsersStreamResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfGetUsersStreamResponse = [1]string{
0: "response",
}
// Decode decodes GetUsersStreamResponse from json.
func (s *GetUsersStreamResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetUsersStreamResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetUsersStreamResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetUsersStreamResponse) {
name = jsonFieldsNameOfGetUsersStreamResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetUsersStreamResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetUsersStreamResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *GetUsersStreamResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *GetUsersStreamResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("users")
e.ArrStart()
for _, elem := range s.Users {
elem.Encode(e)
}
e.ArrEnd()
}
{
e.FieldStart("nextCursor")
s.NextCursor.Encode(e)
}
{
e.FieldStart("hasMore")
e.Bool(s.HasMore)
}
}
var jsonFieldsNameOfGetUsersStreamResponseResponse = [3]string{
0: "users",
1: "nextCursor",
2: "hasMore",
}
// Decode decodes GetUsersStreamResponseResponse from json.
func (s *GetUsersStreamResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode GetUsersStreamResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "users":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Users = make([]UserItemInfo, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem UserItemInfo
if err := elem.Decode(d); err != nil {
return err
}
s.Users = append(s.Users, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"users\"")
}
case "nextCursor":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.NextCursor.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nextCursor\"")
}
case "hasMore":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Bool()
s.HasMore = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"hasMore\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode GetUsersStreamResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGetUsersStreamResponseResponse) {
name = jsonFieldsNameOfGetUsersStreamResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *GetUsersStreamResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *GetUsersStreamResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *Github) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *Github) encodeFields(e *jx.Encoder) {
{
e.FieldStart("enabled")
e.Bool(s.Enabled)
}
{
e.FieldStart("clientId")
s.ClientId.Encode(e)
}
{
e.FieldStart("clientSecret")
s.ClientSecret.Encode(e)
}
{
e.FieldStart("allowedEmails")
e.ArrStart()
for _, elem := range s.AllowedEmails {
e.Str(elem)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfGithub = [4]string{
0: "enabled",
1: "clientId",
2: "clientSecret",
3: "allowedEmails",
}
// Decode decodes Github from json.
func (s *Github) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode Github to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "enabled":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Bool()
s.Enabled = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"enabled\"")
}
case "clientId":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.ClientId.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"clientId\"")
}
case "clientSecret":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.ClientSecret.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"clientSecret\"")
}
case "allowedEmails":
requiredBitSet[0] |= 1 << 3
if err := func() error {
s.AllowedEmails = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.AllowedEmails = append(s.AllowedEmails, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"allowedEmails\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode Github")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00001111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfGithub) {
name = jsonFieldsNameOfGithub[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *Github) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *Github) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *Header) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *Header) encodeFields(e *jx.Encoder) {
{
e.FieldStart("key")
e.Str(s.Key)
}
{
e.FieldStart("value")
e.Str(s.Value)
}
}
var jsonFieldsNameOfHeader = [2]string{
0: "key",
1: "value",
}
// Decode decodes Header from json.
func (s *Header) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode Header to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "key":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Key = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"key\"")
}
case "value":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Value = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"value\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode Header")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfHeader) {
name = jsonFieldsNameOfHeader[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *Header) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *Header) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *HostItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *HostItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("viewPosition")
e.Int(s.ViewPosition)
}
{
e.FieldStart("remark")
e.Str(s.Remark)
}
{
e.FieldStart("address")
e.Str(s.Address)
}
{
e.FieldStart("port")
e.Int(s.Port)
}
{
e.FieldStart("path")
s.Path.Encode(e)
}
{
e.FieldStart("sni")
s.Sni.Encode(e)
}
{
e.FieldStart("host")
s.Host.Encode(e)
}
{
e.FieldStart("alpn")
s.Alpn.Encode(e)
}
{
e.FieldStart("fingerprint")
s.Fingerprint.Encode(e)
}
{
e.FieldStart("isDisabled")
e.Bool(s.IsDisabled)
}
{
if s.SecurityLayer.Set {
e.FieldStart("securityLayer")
s.SecurityLayer.Encode(e)
}
}
{
if len(s.XhttpExtraParams) != 0 {
e.FieldStart("xhttpExtraParams")
e.Raw(s.XhttpExtraParams)
}
}
{
if len(s.MuxParams) != 0 {
e.FieldStart("muxParams")
e.Raw(s.MuxParams)
}
}
{
if len(s.SockoptParams) != 0 {
e.FieldStart("sockoptParams")
e.Raw(s.SockoptParams)
}
}
{
if len(s.FinalMask) != 0 {
e.FieldStart("finalMask")
e.Raw(s.FinalMask)
}
}
{
e.FieldStart("inbound")
s.Inbound.Encode(e)
}
{
e.FieldStart("serverDescription")
s.ServerDescription.Encode(e)
}
{
if s.Tags != nil {
e.FieldStart("tags")
e.ArrStart()
for _, elem := range s.Tags {
e.Str(elem)
}
e.ArrEnd()
}
}
{
if s.IsHidden.Set {
e.FieldStart("isHidden")
s.IsHidden.Encode(e)
}
}
{
if s.OverrideSniFromAddress.Set {
e.FieldStart("overrideSniFromAddress")
s.OverrideSniFromAddress.Encode(e)
}
}
{
if s.KeepSniBlank.Set {
e.FieldStart("keepSniBlank")
s.KeepSniBlank.Encode(e)
}
}
{
e.FieldStart("vlessRouteId")
s.VlessRouteId.Encode(e)
}
{
e.FieldStart("pinnedPeerCertSha256")
s.PinnedPeerCertSha256.Encode(e)
}
{
e.FieldStart("verifyPeerCertByName")
s.VerifyPeerCertByName.Encode(e)
}
{
e.FieldStart("shuffleHost")
e.Bool(s.ShuffleHost)
}
{
e.FieldStart("mihomoX25519")
e.Bool(s.MihomoX25519)
}
{
e.FieldStart("mihomoIpVersion")
s.MihomoIpVersion.Encode(e)
}
{
e.FieldStart("nodes")
e.ArrStart()
for _, elem := range s.Nodes {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
{
e.FieldStart("xrayJsonTemplateUuid")
s.XrayJsonTemplateUuid.Encode(e)
}
{
e.FieldStart("excludedInternalSquads")
e.ArrStart()
for _, elem := range s.ExcludedInternalSquads {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
{
e.FieldStart("excludeFromSubscriptionTypes")
e.ArrStart()
for _, elem := range s.ExcludeFromSubscriptionTypes {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfHostItem = [32]string{
0: "uuid",
1: "viewPosition",
2: "remark",
3: "address",
4: "port",
5: "path",
6: "sni",
7: "host",
8: "alpn",
9: "fingerprint",
10: "isDisabled",
11: "securityLayer",
12: "xhttpExtraParams",
13: "muxParams",
14: "sockoptParams",
15: "finalMask",
16: "inbound",
17: "serverDescription",
18: "tags",
19: "isHidden",
20: "overrideSniFromAddress",
21: "keepSniBlank",
22: "vlessRouteId",
23: "pinnedPeerCertSha256",
24: "verifyPeerCertByName",
25: "shuffleHost",
26: "mihomoX25519",
27: "mihomoIpVersion",
28: "nodes",
29: "xrayJsonTemplateUuid",
30: "excludedInternalSquads",
31: "excludeFromSubscriptionTypes",
}
// Decode decodes HostItem from json.
func (s *HostItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode HostItem to nil")
}
var requiredBitSet [4]uint8
s.setDefaults()
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "viewPosition":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Int()
s.ViewPosition = int(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"viewPosition\"")
}
case "remark":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.Remark = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"remark\"")
}
case "address":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Str()
s.Address = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"address\"")
}
case "port":
requiredBitSet[0] |= 1 << 4
if err := func() error {
v, err := d.Int()
s.Port = int(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"port\"")
}
case "path":
requiredBitSet[0] |= 1 << 5
if err := func() error {
if err := s.Path.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"path\"")
}
case "sni":
requiredBitSet[0] |= 1 << 6
if err := func() error {
if err := s.Sni.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"sni\"")
}
case "host":
requiredBitSet[0] |= 1 << 7
if err := func() error {
if err := s.Host.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"host\"")
}
case "alpn":
requiredBitSet[1] |= 1 << 0
if err := func() error {
if err := s.Alpn.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"alpn\"")
}
case "fingerprint":
requiredBitSet[1] |= 1 << 1
if err := func() error {
if err := s.Fingerprint.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"fingerprint\"")
}
case "isDisabled":
requiredBitSet[1] |= 1 << 2
if err := func() error {
v, err := d.Bool()
s.IsDisabled = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isDisabled\"")
}
case "securityLayer":
if err := func() error {
s.SecurityLayer.Reset()
if err := s.SecurityLayer.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"securityLayer\"")
}
case "xhttpExtraParams":
requiredBitSet[1] |= 1 << 4
if err := func() error {
v, err := d.RawAppend(nil)
s.XhttpExtraParams = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"xhttpExtraParams\"")
}
case "muxParams":
requiredBitSet[1] |= 1 << 5
if err := func() error {
v, err := d.RawAppend(nil)
s.MuxParams = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"muxParams\"")
}
case "sockoptParams":
requiredBitSet[1] |= 1 << 6
if err := func() error {
v, err := d.RawAppend(nil)
s.SockoptParams = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"sockoptParams\"")
}
case "finalMask":
requiredBitSet[1] |= 1 << 7
if err := func() error {
v, err := d.RawAppend(nil)
s.FinalMask = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"finalMask\"")
}
case "inbound":
requiredBitSet[2] |= 1 << 0
if err := func() error {
if err := s.Inbound.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"inbound\"")
}
case "serverDescription":
requiredBitSet[2] |= 1 << 1
if err := func() error {
if err := s.ServerDescription.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"serverDescription\"")
}
case "tags":
if err := func() error {
s.Tags = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.Tags = append(s.Tags, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"tags\"")
}
case "isHidden":
if err := func() error {
s.IsHidden.Reset()
if err := s.IsHidden.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isHidden\"")
}
case "overrideSniFromAddress":
if err := func() error {
s.OverrideSniFromAddress.Reset()
if err := s.OverrideSniFromAddress.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"overrideSniFromAddress\"")
}
case "keepSniBlank":
if err := func() error {
s.KeepSniBlank.Reset()
if err := s.KeepSniBlank.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"keepSniBlank\"")
}
case "vlessRouteId":
requiredBitSet[2] |= 1 << 6
if err := func() error {
if err := s.VlessRouteId.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"vlessRouteId\"")
}
case "pinnedPeerCertSha256":
requiredBitSet[2] |= 1 << 7
if err := func() error {
if err := s.PinnedPeerCertSha256.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"pinnedPeerCertSha256\"")
}
case "verifyPeerCertByName":
requiredBitSet[3] |= 1 << 0
if err := func() error {
if err := s.VerifyPeerCertByName.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"verifyPeerCertByName\"")
}
case "shuffleHost":
requiredBitSet[3] |= 1 << 1
if err := func() error {
v, err := d.Bool()
s.ShuffleHost = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"shuffleHost\"")
}
case "mihomoX25519":
requiredBitSet[3] |= 1 << 2
if err := func() error {
v, err := d.Bool()
s.MihomoX25519 = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"mihomoX25519\"")
}
case "mihomoIpVersion":
requiredBitSet[3] |= 1 << 3
if err := func() error {
if err := s.MihomoIpVersion.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"mihomoIpVersion\"")
}
case "nodes":
requiredBitSet[3] |= 1 << 4
if err := func() error {
s.Nodes = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.Nodes = append(s.Nodes, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodes\"")
}
case "xrayJsonTemplateUuid":
requiredBitSet[3] |= 1 << 5
if err := func() error {
if err := s.XrayJsonTemplateUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"xrayJsonTemplateUuid\"")
}
case "excludedInternalSquads":
requiredBitSet[3] |= 1 << 6
if err := func() error {
s.ExcludedInternalSquads = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.ExcludedInternalSquads = append(s.ExcludedInternalSquads, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"excludedInternalSquads\"")
}
case "excludeFromSubscriptionTypes":
requiredBitSet[3] |= 1 << 7
if err := func() error {
s.ExcludeFromSubscriptionTypes = make([]HostItemExcludeFromSubscriptionTypesItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem HostItemExcludeFromSubscriptionTypesItem
if err := elem.Decode(d); err != nil {
return err
}
s.ExcludeFromSubscriptionTypes = append(s.ExcludeFromSubscriptionTypes, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"excludeFromSubscriptionTypes\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode HostItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [4]uint8{
0b11111111,
0b11110111,
0b11000011,
0b11111111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfHostItem) {
name = jsonFieldsNameOfHostItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *HostItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *HostItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes HostItemAlpn as json.
func (s HostItemAlpn) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes HostItemAlpn from json.
func (s *HostItemAlpn) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode HostItemAlpn to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch HostItemAlpn(v) {
case HostItemAlpnH3:
*s = HostItemAlpnH3
case HostItemAlpnH2:
*s = HostItemAlpnH2
case HostItemAlpnHTTP11:
*s = HostItemAlpnHTTP11
case HostItemAlpnH2HTTP11:
*s = HostItemAlpnH2HTTP11
case HostItemAlpnH3H2HTTP11:
*s = HostItemAlpnH3H2HTTP11
case HostItemAlpnH3H2:
*s = HostItemAlpnH3H2
default:
*s = HostItemAlpn(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s HostItemAlpn) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *HostItemAlpn) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes HostItemExcludeFromSubscriptionTypesItem as json.
func (s HostItemExcludeFromSubscriptionTypesItem) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes HostItemExcludeFromSubscriptionTypesItem from json.
func (s *HostItemExcludeFromSubscriptionTypesItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode HostItemExcludeFromSubscriptionTypesItem to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch HostItemExcludeFromSubscriptionTypesItem(v) {
case HostItemExcludeFromSubscriptionTypesItemXRAYJSON:
*s = HostItemExcludeFromSubscriptionTypesItemXRAYJSON
case HostItemExcludeFromSubscriptionTypesItemXRAYBASE64:
*s = HostItemExcludeFromSubscriptionTypesItemXRAYBASE64
case HostItemExcludeFromSubscriptionTypesItemMIHOMO:
*s = HostItemExcludeFromSubscriptionTypesItemMIHOMO
case HostItemExcludeFromSubscriptionTypesItemSTASH:
*s = HostItemExcludeFromSubscriptionTypesItemSTASH
case HostItemExcludeFromSubscriptionTypesItemCLASH:
*s = HostItemExcludeFromSubscriptionTypesItemCLASH
case HostItemExcludeFromSubscriptionTypesItemSINGBOX:
*s = HostItemExcludeFromSubscriptionTypesItemSINGBOX
default:
*s = HostItemExcludeFromSubscriptionTypesItem(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s HostItemExcludeFromSubscriptionTypesItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *HostItemExcludeFromSubscriptionTypesItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes HostItemMihomoIpVersion as json.
func (s HostItemMihomoIpVersion) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes HostItemMihomoIpVersion from json.
func (s *HostItemMihomoIpVersion) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode HostItemMihomoIpVersion to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch HostItemMihomoIpVersion(v) {
case HostItemMihomoIpVersionDual:
*s = HostItemMihomoIpVersionDual
case HostItemMihomoIpVersionIpv4:
*s = HostItemMihomoIpVersionIpv4
case HostItemMihomoIpVersionIpv6:
*s = HostItemMihomoIpVersionIpv6
case HostItemMihomoIpVersionIpv4Prefer:
*s = HostItemMihomoIpVersionIpv4Prefer
case HostItemMihomoIpVersionIpv6Prefer:
*s = HostItemMihomoIpVersionIpv6Prefer
default:
*s = HostItemMihomoIpVersion(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s HostItemMihomoIpVersion) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *HostItemMihomoIpVersion) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes HostItemSecurityLayer as json.
func (s HostItemSecurityLayer) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes HostItemSecurityLayer from json.
func (s *HostItemSecurityLayer) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode HostItemSecurityLayer to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch HostItemSecurityLayer(v) {
case HostItemSecurityLayerDEFAULT:
*s = HostItemSecurityLayerDEFAULT
case HostItemSecurityLayerTLS:
*s = HostItemSecurityLayerTLS
case HostItemSecurityLayerNONE:
*s = HostItemSecurityLayerNONE
default:
*s = HostItemSecurityLayer(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s HostItemSecurityLayer) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *HostItemSecurityLayer) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *HostListResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *HostListResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
e.ArrStart()
for _, elem := range s.Response {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfHostListResponse = [1]string{
0: "response",
}
// Decode decodes HostListResponse from json.
func (s *HostListResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode HostListResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Response = make([]HostItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem HostItem
if err := elem.Decode(d); err != nil {
return err
}
s.Response = append(s.Response, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode HostListResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfHostListResponse) {
name = jsonFieldsNameOfHostListResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *HostListResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *HostListResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *HostOverride) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *HostOverride) encodeFields(e *jx.Encoder) {
{
if s.ServerDescription.Set {
e.FieldStart("serverDescription")
s.ServerDescription.Encode(e)
}
}
{
if s.VlessRouteId.Set {
e.FieldStart("vlessRouteId")
s.VlessRouteId.Encode(e)
}
}
}
var jsonFieldsNameOfHostOverride = [2]string{
0: "serverDescription",
1: "vlessRouteId",
}
// Decode decodes HostOverride from json.
func (s *HostOverride) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode HostOverride to nil")
}
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "serverDescription":
if err := func() error {
s.ServerDescription.Reset()
if err := s.ServerDescription.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"serverDescription\"")
}
case "vlessRouteId":
if err := func() error {
s.VlessRouteId.Reset()
if err := s.VlessRouteId.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"vlessRouteId\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode HostOverride")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *HostOverride) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *HostOverride) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *HostResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *HostResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfHostResponse = [1]string{
0: "response",
}
// Decode decodes HostResponse from json.
func (s *HostResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode HostResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode HostResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfHostResponse) {
name = jsonFieldsNameOfHostResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *HostResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *HostResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *HwidDevicesResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *HwidDevicesResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfHwidDevicesResponse = [1]string{
0: "response",
}
// Decode decodes HwidDevicesResponse from json.
func (s *HwidDevicesResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode HwidDevicesResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode HwidDevicesResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfHwidDevicesResponse) {
name = jsonFieldsNameOfHwidDevicesResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *HwidDevicesResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *HwidDevicesResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *HwidSettings) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *HwidSettings) encodeFields(e *jx.Encoder) {
{
e.FieldStart("enabled")
e.Bool(s.Enabled)
}
{
e.FieldStart("fallbackDeviceLimit")
e.Float64(s.FallbackDeviceLimit)
}
{
e.FieldStart("maxDevicesAnnounce")
s.MaxDevicesAnnounce.Encode(e)
}
}
var jsonFieldsNameOfHwidSettings = [3]string{
0: "enabled",
1: "fallbackDeviceLimit",
2: "maxDevicesAnnounce",
}
// Decode decodes HwidSettings from json.
func (s *HwidSettings) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode HwidSettings to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "enabled":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Bool()
s.Enabled = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"enabled\"")
}
case "fallbackDeviceLimit":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.FallbackDeviceLimit = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"fallbackDeviceLimit\"")
}
case "maxDevicesAnnounce":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.MaxDevicesAnnounce.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"maxDevicesAnnounce\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode HwidSettings")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfHwidSettings) {
name = jsonFieldsNameOfHwidSettings[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *HwidSettings) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *HwidSettings) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *Inbound) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *Inbound) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("profileUuid")
json.EncodeUUID(e, s.ProfileUuid)
}
{
e.FieldStart("tag")
e.Str(s.Tag)
}
{
e.FieldStart("type")
e.Str(s.Type)
}
{
e.FieldStart("network")
s.Network.Encode(e)
}
{
e.FieldStart("security")
s.Security.Encode(e)
}
{
e.FieldStart("port")
s.Port.Encode(e)
}
{
if len(s.RawInbound) != 0 {
e.FieldStart("rawInbound")
e.Raw(s.RawInbound)
}
}
}
var jsonFieldsNameOfInbound = [8]string{
0: "uuid",
1: "profileUuid",
2: "tag",
3: "type",
4: "network",
5: "security",
6: "port",
7: "rawInbound",
}
// Decode decodes Inbound from json.
func (s *Inbound) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode Inbound to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "profileUuid":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := json.DecodeUUID(d)
s.ProfileUuid = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"profileUuid\"")
}
case "tag":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.Tag = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"tag\"")
}
case "type":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Str()
s.Type = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"type\"")
}
case "network":
requiredBitSet[0] |= 1 << 4
if err := func() error {
if err := s.Network.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"network\"")
}
case "security":
requiredBitSet[0] |= 1 << 5
if err := func() error {
if err := s.Security.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"security\"")
}
case "port":
requiredBitSet[0] |= 1 << 6
if err := func() error {
if err := s.Port.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"port\"")
}
case "rawInbound":
requiredBitSet[0] |= 1 << 7
if err := func() error {
v, err := d.RawAppend(nil)
s.RawInbound = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"rawInbound\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode Inbound")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b11111111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfInbound) {
name = jsonFieldsNameOfInbound[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *Inbound) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *Inbound) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *InboundItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *InboundItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("configProfileUuid")
s.ConfigProfileUuid.Encode(e)
}
{
e.FieldStart("configProfileInboundUuid")
s.ConfigProfileInboundUuid.Encode(e)
}
}
var jsonFieldsNameOfInboundItem = [2]string{
0: "configProfileUuid",
1: "configProfileInboundUuid",
}
// Decode decodes InboundItem from json.
func (s *InboundItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode InboundItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "configProfileUuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.ConfigProfileUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"configProfileUuid\"")
}
case "configProfileInboundUuid":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.ConfigProfileInboundUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"configProfileInboundUuid\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode InboundItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfInboundItem) {
name = jsonFieldsNameOfInboundItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *InboundItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *InboundItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *InboundRef) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *InboundRef) encodeFields(e *jx.Encoder) {
{
e.FieldStart("configProfileUuid")
json.EncodeUUID(e, s.ConfigProfileUuid)
}
{
e.FieldStart("configProfileInboundUuid")
json.EncodeUUID(e, s.ConfigProfileInboundUuid)
}
}
var jsonFieldsNameOfInboundRef = [2]string{
0: "configProfileUuid",
1: "configProfileInboundUuid",
}
// Decode decodes InboundRef from json.
func (s *InboundRef) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode InboundRef to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "configProfileUuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.ConfigProfileUuid = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"configProfileUuid\"")
}
case "configProfileInboundUuid":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := json.DecodeUUID(d)
s.ConfigProfileInboundUuid = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"configProfileInboundUuid\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode InboundRef")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfInboundRef) {
name = jsonFieldsNameOfInboundRef[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *InboundRef) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *InboundRef) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *InboundsResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *InboundsResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfInboundsResponse = [1]string{
0: "response",
}
// Decode decodes InboundsResponse from json.
func (s *InboundsResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode InboundsResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode InboundsResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfInboundsResponse) {
name = jsonFieldsNameOfInboundsResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *InboundsResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *InboundsResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *InboundsResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *InboundsResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("total")
e.Float64(s.Total)
}
{
e.FieldStart("inbounds")
e.ArrStart()
for _, elem := range s.Inbounds {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfInboundsResponseResponse = [2]string{
0: "total",
1: "inbounds",
}
// Decode decodes InboundsResponseResponse from json.
func (s *InboundsResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode InboundsResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "total":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.Total = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"total\"")
}
case "inbounds":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.Inbounds = make([]InboundsResponseResponseInboundsItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem InboundsResponseResponseInboundsItem
if err := elem.Decode(d); err != nil {
return err
}
s.Inbounds = append(s.Inbounds, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"inbounds\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode InboundsResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfInboundsResponseResponse) {
name = jsonFieldsNameOfInboundsResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *InboundsResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *InboundsResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *InboundsResponseResponseInboundsItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *InboundsResponseResponseInboundsItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("profileUuid")
json.EncodeUUID(e, s.ProfileUuid)
}
{
e.FieldStart("tag")
e.Str(s.Tag)
}
{
e.FieldStart("type")
e.Str(s.Type)
}
{
e.FieldStart("network")
s.Network.Encode(e)
}
{
e.FieldStart("security")
s.Security.Encode(e)
}
{
e.FieldStart("port")
s.Port.Encode(e)
}
{
if len(s.RawInbound) != 0 {
e.FieldStart("rawInbound")
e.Raw(s.RawInbound)
}
}
{
e.FieldStart("activeSquads")
e.ArrStart()
for _, elem := range s.ActiveSquads {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfInboundsResponseResponseInboundsItem = [9]string{
0: "uuid",
1: "profileUuid",
2: "tag",
3: "type",
4: "network",
5: "security",
6: "port",
7: "rawInbound",
8: "activeSquads",
}
// Decode decodes InboundsResponseResponseInboundsItem from json.
func (s *InboundsResponseResponseInboundsItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode InboundsResponseResponseInboundsItem to nil")
}
var requiredBitSet [2]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "profileUuid":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := json.DecodeUUID(d)
s.ProfileUuid = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"profileUuid\"")
}
case "tag":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.Tag = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"tag\"")
}
case "type":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Str()
s.Type = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"type\"")
}
case "network":
requiredBitSet[0] |= 1 << 4
if err := func() error {
if err := s.Network.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"network\"")
}
case "security":
requiredBitSet[0] |= 1 << 5
if err := func() error {
if err := s.Security.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"security\"")
}
case "port":
requiredBitSet[0] |= 1 << 6
if err := func() error {
if err := s.Port.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"port\"")
}
case "rawInbound":
requiredBitSet[0] |= 1 << 7
if err := func() error {
v, err := d.RawAppend(nil)
s.RawInbound = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"rawInbound\"")
}
case "activeSquads":
requiredBitSet[1] |= 1 << 0
if err := func() error {
s.ActiveSquads = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.ActiveSquads = append(s.ActiveSquads, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"activeSquads\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode InboundsResponseResponseInboundsItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [2]uint8{
0b11111111,
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfInboundsResponseResponseInboundsItem) {
name = jsonFieldsNameOfInboundsResponseResponseInboundsItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *InboundsResponseResponseInboundsItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *InboundsResponseResponseInboundsItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *InboundsStat) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *InboundsStat) encodeFields(e *jx.Encoder) {
{
e.FieldStart("tag")
e.Str(s.Tag)
}
{
e.FieldStart("upload")
e.Str(s.Upload)
}
{
e.FieldStart("download")
e.Str(s.Download)
}
}
var jsonFieldsNameOfInboundsStat = [3]string{
0: "tag",
1: "upload",
2: "download",
}
// Decode decodes InboundsStat from json.
func (s *InboundsStat) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode InboundsStat to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "tag":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Tag = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"tag\"")
}
case "upload":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Upload = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"upload\"")
}
case "download":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.Download = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"download\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode InboundsStat")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfInboundsStat) {
name = jsonFieldsNameOfInboundsStat[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *InboundsStat) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *InboundsStat) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *InfraProviderResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *InfraProviderResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfInfraProviderResponseResponse = [1]string{
0: "response",
}
// Decode decodes InfraProviderResponseResponse from json.
func (s *InfraProviderResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode InfraProviderResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode InfraProviderResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfInfraProviderResponseResponse) {
name = jsonFieldsNameOfInfraProviderResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *InfraProviderResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *InfraProviderResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *InfraProvidersDetail) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *InfraProvidersDetail) encodeFields(e *jx.Encoder) {
{
e.FieldStart("nodeUuid")
json.EncodeUUID(e, s.NodeUuid)
}
{
e.FieldStart("countryCode")
e.Str(s.CountryCode)
}
}
var jsonFieldsNameOfInfraProvidersDetail = [2]string{
0: "nodeUuid",
1: "countryCode",
}
// Decode decodes InfraProvidersDetail from json.
func (s *InfraProvidersDetail) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode InfraProvidersDetail to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "nodeUuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.NodeUuid = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodeUuid\"")
}
case "countryCode":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.CountryCode = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"countryCode\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode InfraProvidersDetail")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfInfraProvidersDetail) {
name = jsonFieldsNameOfInfraProvidersDetail[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *InfraProvidersDetail) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *InfraProvidersDetail) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *InterfaceItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *InterfaceItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("interface")
e.Str(s.Interface)
}
{
e.FieldStart("rxBytesPerSec")
e.Float64(s.RxBytesPerSec)
}
{
e.FieldStart("txBytesPerSec")
e.Float64(s.TxBytesPerSec)
}
{
e.FieldStart("rxTotal")
e.Float64(s.RxTotal)
}
{
e.FieldStart("txTotal")
e.Float64(s.TxTotal)
}
}
var jsonFieldsNameOfInterfaceItem = [5]string{
0: "interface",
1: "rxBytesPerSec",
2: "txBytesPerSec",
3: "rxTotal",
4: "txTotal",
}
// Decode decodes InterfaceItem from json.
func (s *InterfaceItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode InterfaceItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "interface":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Interface = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"interface\"")
}
case "rxBytesPerSec":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.RxBytesPerSec = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"rxBytesPerSec\"")
}
case "txBytesPerSec":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Float64()
s.TxBytesPerSec = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"txBytesPerSec\"")
}
case "rxTotal":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Float64()
s.RxTotal = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"rxTotal\"")
}
case "txTotal":
requiredBitSet[0] |= 1 << 4
if err := func() error {
v, err := d.Float64()
s.TxTotal = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"txTotal\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode InterfaceItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00011111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfInterfaceItem) {
name = jsonFieldsNameOfInterfaceItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *InterfaceItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *InterfaceItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *InternalServerError) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *InternalServerError) encodeFields(e *jx.Encoder) {
{
if s.Timestamp.Set {
e.FieldStart("timestamp")
s.Timestamp.Encode(e)
}
}
{
if s.Path.Set {
e.FieldStart("path")
s.Path.Encode(e)
}
}
{
if s.Message.Set {
e.FieldStart("message")
s.Message.Encode(e)
}
}
{
if s.ErrorCode.Set {
e.FieldStart("errorCode")
s.ErrorCode.Encode(e)
}
}
}
var jsonFieldsNameOfInternalServerError = [4]string{
0: "timestamp",
1: "path",
2: "message",
3: "errorCode",
}
// Decode decodes InternalServerError from json.
func (s *InternalServerError) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode InternalServerError to nil")
}
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "timestamp":
if err := func() error {
s.Timestamp.Reset()
if err := s.Timestamp.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"timestamp\"")
}
case "path":
if err := func() error {
s.Path.Reset()
if err := s.Path.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"path\"")
}
case "message":
if err := func() error {
s.Message.Reset()
if err := s.Message.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"message\"")
}
case "errorCode":
if err := func() error {
s.ErrorCode.Reset()
if err := s.ErrorCode.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"errorCode\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode InternalServerError")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *InternalServerError) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *InternalServerError) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *InternalSquad) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *InternalSquad) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("viewPosition")
e.Int(s.ViewPosition)
}
{
e.FieldStart("name")
e.Str(s.Name)
}
{
e.FieldStart("info")
s.Info.Encode(e)
}
{
e.FieldStart("inbounds")
e.ArrStart()
for _, elem := range s.Inbounds {
elem.Encode(e)
}
e.ArrEnd()
}
{
e.FieldStart("createdAt")
json.EncodeDateTime(e, s.CreatedAt)
}
{
e.FieldStart("updatedAt")
json.EncodeDateTime(e, s.UpdatedAt)
}
}
var jsonFieldsNameOfInternalSquad = [7]string{
0: "uuid",
1: "viewPosition",
2: "name",
3: "info",
4: "inbounds",
5: "createdAt",
6: "updatedAt",
}
// Decode decodes InternalSquad from json.
func (s *InternalSquad) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode InternalSquad to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "viewPosition":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Int()
s.ViewPosition = int(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"viewPosition\"")
}
case "name":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "info":
requiredBitSet[0] |= 1 << 3
if err := func() error {
if err := s.Info.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"info\"")
}
case "inbounds":
requiredBitSet[0] |= 1 << 4
if err := func() error {
s.Inbounds = make([]Inbound, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem Inbound
if err := elem.Decode(d); err != nil {
return err
}
s.Inbounds = append(s.Inbounds, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"inbounds\"")
}
case "createdAt":
requiredBitSet[0] |= 1 << 5
if err := func() error {
v, err := json.DecodeDateTime(d)
s.CreatedAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"createdAt\"")
}
case "updatedAt":
requiredBitSet[0] |= 1 << 6
if err := func() error {
v, err := json.DecodeDateTime(d)
s.UpdatedAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"updatedAt\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode InternalSquad")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b01111111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfInternalSquad) {
name = jsonFieldsNameOfInternalSquad[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *InternalSquad) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *InternalSquad) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *InternalSquadResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *InternalSquadResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfInternalSquadResponseResponse = [1]string{
0: "response",
}
// Decode decodes InternalSquadResponseResponse from json.
func (s *InternalSquadResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode InternalSquadResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode InternalSquadResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfInternalSquadResponseResponse) {
name = jsonFieldsNameOfInternalSquadResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *InternalSquadResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *InternalSquadResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *InternalSquadsResponInfoItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *InternalSquadsResponInfoItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("membersCount")
e.Float64(s.MembersCount)
}
{
e.FieldStart("inboundsCount")
e.Float64(s.InboundsCount)
}
}
var jsonFieldsNameOfInternalSquadsResponInfoItem = [2]string{
0: "membersCount",
1: "inboundsCount",
}
// Decode decodes InternalSquadsResponInfoItem from json.
func (s *InternalSquadsResponInfoItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode InternalSquadsResponInfoItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "membersCount":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.MembersCount = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"membersCount\"")
}
case "inboundsCount":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.InboundsCount = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"inboundsCount\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode InternalSquadsResponInfoItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfInternalSquadsResponInfoItem) {
name = jsonFieldsNameOfInternalSquadsResponInfoItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *InternalSquadsResponInfoItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *InternalSquadsResponInfoItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *InternalSquadsResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *InternalSquadsResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfInternalSquadsResponse = [1]string{
0: "response",
}
// Decode decodes InternalSquadsResponse from json.
func (s *InternalSquadsResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode InternalSquadsResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode InternalSquadsResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfInternalSquadsResponse) {
name = jsonFieldsNameOfInternalSquadsResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *InternalSquadsResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *InternalSquadsResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *InternalSquadsResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *InternalSquadsResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("total")
e.Float64(s.Total)
}
{
e.FieldStart("internalSquads")
e.ArrStart()
for _, elem := range s.InternalSquads {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfInternalSquadsResponseResponse = [2]string{
0: "total",
1: "internalSquads",
}
// Decode decodes InternalSquadsResponseResponse from json.
func (s *InternalSquadsResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode InternalSquadsResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "total":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.Total = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"total\"")
}
case "internalSquads":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.InternalSquads = make([]InternalSquad, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem InternalSquad
if err := elem.Decode(d); err != nil {
return err
}
s.InternalSquads = append(s.InternalSquads, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"internalSquads\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode InternalSquadsResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfInternalSquadsResponseResponse) {
name = jsonFieldsNameOfInternalSquadsResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *InternalSquadsResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *InternalSquadsResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *Ips) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *Ips) encodeFields(e *jx.Encoder) {
{
e.FieldStart("ip")
e.Str(s.IP)
}
{
e.FieldStart("lastSeen")
json.EncodeDateTime(e, s.LastSeen)
}
}
var jsonFieldsNameOfIps = [2]string{
0: "ip",
1: "lastSeen",
}
// Decode decodes Ips from json.
func (s *Ips) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode Ips to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "ip":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.IP = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"ip\"")
}
case "lastSeen":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := json.DecodeDateTime(d)
s.LastSeen = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"lastSeen\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode Ips")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfIps) {
name = jsonFieldsNameOfIps[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *Ips) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *Ips) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *IpsResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *IpsResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfIpsResponseResponse = [1]string{
0: "response",
}
// Decode decodes IpsResponseResponse from json.
func (s *IpsResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode IpsResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode IpsResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfIpsResponseResponse) {
name = jsonFieldsNameOfIpsResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *IpsResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *IpsResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *IpsResponseResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *IpsResponseResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("jobId")
e.Str(s.JobId)
}
}
var jsonFieldsNameOfIpsResponseResponseResponse = [1]string{
0: "jobId",
}
// Decode decodes IpsResponseResponseResponse from json.
func (s *IpsResponseResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode IpsResponseResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "jobId":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.JobId = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"jobId\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode IpsResponseResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfIpsResponseResponseResponse) {
name = jsonFieldsNameOfIpsResponseResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *IpsResponseResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *IpsResponseResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *Keycloak) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *Keycloak) encodeFields(e *jx.Encoder) {
{
e.FieldStart("enabled")
e.Bool(s.Enabled)
}
{
e.FieldStart("realm")
s.Realm.Encode(e)
}
{
e.FieldStart("clientId")
s.ClientId.Encode(e)
}
{
e.FieldStart("clientSecret")
s.ClientSecret.Encode(e)
}
{
e.FieldStart("frontendDomain")
s.FrontendDomain.Encode(e)
}
{
e.FieldStart("keycloakDomain")
s.KeycloakDomain.Encode(e)
}
{
e.FieldStart("allowedEmails")
e.ArrStart()
for _, elem := range s.AllowedEmails {
e.Str(elem)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfKeycloak = [7]string{
0: "enabled",
1: "realm",
2: "clientId",
3: "clientSecret",
4: "frontendDomain",
5: "keycloakDomain",
6: "allowedEmails",
}
// Decode decodes Keycloak from json.
func (s *Keycloak) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode Keycloak to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "enabled":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Bool()
s.Enabled = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"enabled\"")
}
case "realm":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.Realm.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"realm\"")
}
case "clientId":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.ClientId.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"clientId\"")
}
case "clientSecret":
requiredBitSet[0] |= 1 << 3
if err := func() error {
if err := s.ClientSecret.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"clientSecret\"")
}
case "frontendDomain":
requiredBitSet[0] |= 1 << 4
if err := func() error {
if err := s.FrontendDomain.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"frontendDomain\"")
}
case "keycloakDomain":
requiredBitSet[0] |= 1 << 5
if err := func() error {
if err := s.KeycloakDomain.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"keycloakDomain\"")
}
case "allowedEmails":
requiredBitSet[0] |= 1 << 6
if err := func() error {
s.AllowedEmails = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.AllowedEmails = append(s.AllowedEmails, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"allowedEmails\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode Keycloak")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b01111111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfKeycloak) {
name = jsonFieldsNameOfKeycloak[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *Keycloak) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *Keycloak) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *LoginRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *LoginRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("username")
e.Str(s.Username)
}
{
e.FieldStart("password")
e.Str(s.Password)
}
}
var jsonFieldsNameOfLoginRequest = [2]string{
0: "username",
1: "password",
}
// Decode decodes LoginRequest from json.
func (s *LoginRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode LoginRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "username":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Username = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"username\"")
}
case "password":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Password = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"password\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode LoginRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfLoginRequest) {
name = jsonFieldsNameOfLoginRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *LoginRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *LoginRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes BrandingSettings as json.
func (o NilBrandingSettings) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes BrandingSettings from json.
func (o *NilBrandingSettings) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilBrandingSettings to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v BrandingSettings
o.Value = v
o.Null = true
return nil
}
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilBrandingSettings) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilBrandingSettings) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes CustomRemark as json.
func (o NilCustomRemark) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes CustomRemark from json.
func (o *NilCustomRemark) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilCustomRemark to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v CustomRemark
o.Value = v
o.Null = true
return nil
}
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilCustomRemark) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilCustomRemark) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes time.Time as json.
func (o NilDateTime) Encode(e *jx.Encoder, format func(*jx.Encoder, time.Time)) {
if o.Null {
e.Null()
return
}
format(e, o.Value)
}
// Decode decodes time.Time from json.
func (o *NilDateTime) Decode(d *jx.Decoder, format func(*jx.Decoder) (time.Time, error)) error {
if o == nil {
return errors.New("invalid: unable to decode NilDateTime to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v time.Time
o.Value = v
o.Null = true
return nil
}
o.Null = false
v, err := format(d)
if err != nil {
return err
}
o.Value = v
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilDateTime) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e, json.EncodeDateTime)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilDateTime) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d, json.DecodeDateTime)
}
// Encode encodes ExternalSquadResponseHeaders as json.
func (o NilExternalSquadResponseHeaders) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes ExternalSquadResponseHeaders from json.
func (o *NilExternalSquadResponseHeaders) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilExternalSquadResponseHeaders to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v ExternalSquadResponseHeaders
o.Value = v
o.Null = true
return nil
}
o.Null = false
o.Value = make(ExternalSquadResponseHeaders)
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilExternalSquadResponseHeaders) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilExternalSquadResponseHeaders) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes FetchIpsResultResponseResponseResult as json.
func (o NilFetchIpsResultResponseResponseResult) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes FetchIpsResultResponseResponseResult from json.
func (o *NilFetchIpsResultResponseResponseResult) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilFetchIpsResultResponseResponseResult to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v FetchIpsResultResponseResponseResult
o.Value = v
o.Null = true
return nil
}
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilFetchIpsResultResponseResponseResult) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilFetchIpsResultResponseResponseResult) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes FetchUsersIpsResultResponseResponseResult as json.
func (o NilFetchUsersIpsResultResponseResponseResult) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes FetchUsersIpsResultResponseResponseResult from json.
func (o *NilFetchUsersIpsResultResponseResponseResult) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilFetchUsersIpsResultResponseResponseResult to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v FetchUsersIpsResultResponseResponseResult
o.Value = v
o.Null = true
return nil
}
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilFetchUsersIpsResultResponseResponseResult) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilFetchUsersIpsResultResponseResponseResult) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes float64 as json.
func (o NilFloat64) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
e.Float64(float64(o.Value))
}
// Decode decodes float64 from json.
func (o *NilFloat64) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilFloat64 to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v float64
o.Value = v
o.Null = true
return nil
}
o.Null = false
v, err := d.Float64()
if err != nil {
return err
}
o.Value = float64(v)
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilFloat64) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilFloat64) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes GetRawSubscriptionByShortUuidResponseResponseConvertedUserInfoHwidCheckup as json.
func (o NilGetRawSubscriptionByShortUuidResponseResponseConvertedUserInfoHwidCheckup) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseConvertedUserInfoHwidCheckup from json.
func (o *NilGetRawSubscriptionByShortUuidResponseResponseConvertedUserInfoHwidCheckup) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilGetRawSubscriptionByShortUuidResponseResponseConvertedUserInfoHwidCheckup to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v GetRawSubscriptionByShortUuidResponseResponseConvertedUserInfoHwidCheckup
o.Value = v
o.Null = true
return nil
}
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilGetRawSubscriptionByShortUuidResponseResponseConvertedUserInfoHwidCheckup) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilGetRawSubscriptionByShortUuidResponseResponseConvertedUserInfoHwidCheckup) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverridesMihomoIpVersion as json.
func (o NilGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverridesMihomoIpVersion) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
e.Str(string(o.Value))
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverridesMihomoIpVersion from json.
func (o *NilGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverridesMihomoIpVersion) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverridesMihomoIpVersion to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverridesMihomoIpVersion
o.Value = v
o.Null = true
return nil
}
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverridesMihomoIpVersion) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemClientOverridesMihomoIpVersion) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header as json.
func (o NilGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header from json.
func (o *NilGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header
o.Value = v
o.Null = true
return nil
}
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1Extra as json.
func (o NilGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1Extra) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1Extra from json.
func (o *NilGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1Extra) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1Extra to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1Extra
o.Value = v
o.Null = true
return nil
}
o.Null = false
o.Value = make(GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1Extra)
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1Extra) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions1Extra) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2Headers as json.
func (o NilGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2Headers) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2Headers from json.
func (o *NilGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2Headers) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2Headers to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2Headers
o.Value = v
o.Null = true
return nil
}
o.Null = false
o.Value = make(GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2Headers)
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2Headers) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions2Headers) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3Headers as json.
func (o NilGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3Headers) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3Headers from json.
func (o *NilGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3Headers) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3Headers to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3Headers
o.Value = v
o.Null = true
return nil
}
o.Null = false
o.Value = make(GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3Headers)
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3Headers) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions3Headers) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes GetStatusResponseResponseAuthentication as json.
func (o NilGetStatusResponseResponseAuthentication) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes GetStatusResponseResponseAuthentication from json.
func (o *NilGetStatusResponseResponseAuthentication) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilGetStatusResponseResponseAuthentication to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v GetStatusResponseResponseAuthentication
o.Value = v
o.Null = true
return nil
}
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilGetStatusResponseResponseAuthentication) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilGetStatusResponseResponseAuthentication) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes HostItemAlpn as json.
func (o NilHostItemAlpn) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
e.Str(string(o.Value))
}
// Decode decodes HostItemAlpn from json.
func (o *NilHostItemAlpn) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilHostItemAlpn to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v HostItemAlpn
o.Value = v
o.Null = true
return nil
}
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilHostItemAlpn) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilHostItemAlpn) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes HostItemMihomoIpVersion as json.
func (o NilHostItemMihomoIpVersion) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
e.Str(string(o.Value))
}
// Decode decodes HostItemMihomoIpVersion from json.
func (o *NilHostItemMihomoIpVersion) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilHostItemMihomoIpVersion to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v HostItemMihomoIpVersion
o.Value = v
o.Null = true
return nil
}
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilHostItemMihomoIpVersion) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilHostItemMihomoIpVersion) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes HostOverride as json.
func (o NilHostOverride) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes HostOverride from json.
func (o *NilHostOverride) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilHostOverride to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v HostOverride
o.Value = v
o.Null = true
return nil
}
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilHostOverride) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilHostOverride) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes HwidSettings as json.
func (o NilHwidSettings) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes HwidSettings from json.
func (o *NilHwidSettings) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilHwidSettings to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v HwidSettings
o.Value = v
o.Null = true
return nil
}
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilHwidSettings) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilHwidSettings) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes InfraProvidersDetail as json.
func (o NilInfraProvidersDetail) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes InfraProvidersDetail from json.
func (o *NilInfraProvidersDetail) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilInfraProvidersDetail to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v InfraProvidersDetail
o.Value = v
o.Null = true
return nil
}
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilInfraProvidersDetail) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilInfraProvidersDetail) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes int as json.
func (o NilInt) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
e.Int(int(o.Value))
}
// Decode decodes int from json.
func (o *NilInt) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilInt to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v int
o.Value = v
o.Null = true
return nil
}
o.Null = false
v, err := d.Int()
if err != nil {
return err
}
o.Value = int(v)
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilInt) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilInt) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes InterfaceItem as json.
func (o NilInterfaceItem) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes InterfaceItem from json.
func (o *NilInterfaceItem) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilInterfaceItem to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v InterfaceItem
o.Value = v
o.Null = true
return nil
}
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilInterfaceItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilInterfaceItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes Oauth2Settings as json.
func (o NilOauth2Settings) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes Oauth2Settings from json.
func (o *NilOauth2Settings) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilOauth2Settings to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v Oauth2Settings
o.Value = v
o.Null = true
return nil
}
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilOauth2Settings) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilOauth2Settings) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes PasskeySettings as json.
func (o NilPasskeySettings) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes PasskeySettings from json.
func (o *NilPasskeySettings) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilPasskeySettings to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v PasskeySettings
o.Value = v
o.Null = true
return nil
}
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilPasskeySettings) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilPasskeySettings) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes PasswordSettings as json.
func (o NilPasswordSettings) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes PasswordSettings from json.
func (o *NilPasswordSettings) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilPasswordSettings to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v PasswordSettings
o.Value = v
o.Null = true
return nil
}
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilPasswordSettings) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilPasswordSettings) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes ProviderItem as json.
func (o NilProviderItem) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes ProviderItem from json.
func (o *NilProviderItem) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilProviderItem to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v ProviderItem
o.Value = v
o.Null = true
return nil
}
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilProviderItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilProviderItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes string as json.
func (o NilString) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
e.Str(string(o.Value))
}
// Decode decodes string from json.
func (o *NilString) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilString to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v string
o.Value = v
o.Null = true
return nil
}
o.Null = false
v, err := d.Str()
if err != nil {
return err
}
o.Value = string(v)
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilString) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilString) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes SubscriptionSettings as json.
func (o NilSubscriptionSettings) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes SubscriptionSettings from json.
func (o *NilSubscriptionSettings) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilSubscriptionSettings to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v SubscriptionSettings
o.Value = v
o.Null = true
return nil
}
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilSubscriptionSettings) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilSubscriptionSettings) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes SubscriptionSettingsResponseResponseCustomResponseHeaders as json.
func (o NilSubscriptionSettingsResponseResponseCustomResponseHeaders) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes SubscriptionSettingsResponseResponseCustomResponseHeaders from json.
func (o *NilSubscriptionSettingsResponseResponseCustomResponseHeaders) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilSubscriptionSettingsResponseResponseCustomResponseHeaders to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v SubscriptionSettingsResponseResponseCustomResponseHeaders
o.Value = v
o.Null = true
return nil
}
o.Null = false
o.Value = make(SubscriptionSettingsResponseResponseCustomResponseHeaders)
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilSubscriptionSettingsResponseResponseCustomResponseHeaders) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilSubscriptionSettingsResponseResponseCustomResponseHeaders) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes SystemItem as json.
func (o NilSystemItem) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes SystemItem from json.
func (o *NilSystemItem) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilSystemItem to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v SystemItem
o.Value = v
o.Null = true
return nil
}
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilSystemItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilSystemItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes url.URL as json.
func (o NilURI) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
json.EncodeURI(e, o.Value)
}
// Decode decodes url.URL from json.
func (o *NilURI) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilURI to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v url.URL
o.Value = v
o.Null = true
return nil
}
o.Null = false
v, err := json.DecodeURI(d)
if err != nil {
return err
}
o.Value = v
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilURI) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilURI) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes uuid.UUID as json.
func (o NilUUID) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
json.EncodeUUID(e, o.Value)
}
// Decode decodes uuid.UUID from json.
func (o *NilUUID) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilUUID to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v uuid.UUID
o.Value = v
o.Null = true
return nil
}
o.Null = false
v, err := json.DecodeUUID(d)
if err != nil {
return err
}
o.Value = v
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilUUID) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilUUID) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes Version as json.
func (o NilVersion) Encode(e *jx.Encoder) {
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes Version from json.
func (o *NilVersion) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode NilVersion to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v Version
o.Value = v
o.Null = true
return nil
}
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s NilVersion) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NilVersion) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *Node) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *Node) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("name")
e.Str(s.Name)
}
{
e.FieldStart("countryCode")
e.Str(s.CountryCode)
}
}
var jsonFieldsNameOfNode = [3]string{
0: "uuid",
1: "name",
2: "countryCode",
}
// Decode decodes Node from json.
func (s *Node) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode Node to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "name":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "countryCode":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.CountryCode = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"countryCode\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode Node")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfNode) {
name = jsonFieldsNameOfNode[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *Node) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *Node) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *NodePlugin) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *NodePlugin) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("viewPosition")
e.Int(s.ViewPosition)
}
{
e.FieldStart("name")
e.Str(s.Name)
}
{
if len(s.PluginConfig) != 0 {
e.FieldStart("pluginConfig")
e.Raw(s.PluginConfig)
}
}
}
var jsonFieldsNameOfNodePlugin = [4]string{
0: "uuid",
1: "viewPosition",
2: "name",
3: "pluginConfig",
}
// Decode decodes NodePlugin from json.
func (s *NodePlugin) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode NodePlugin to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "viewPosition":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Int()
s.ViewPosition = int(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"viewPosition\"")
}
case "name":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "pluginConfig":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.RawAppend(nil)
s.PluginConfig = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"pluginConfig\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode NodePlugin")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00001111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfNodePlugin) {
name = jsonFieldsNameOfNodePlugin[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *NodePlugin) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NodePlugin) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *NodePluginResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *NodePluginResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfNodePluginResponseResponse = [1]string{
0: "response",
}
// Decode decodes NodePluginResponseResponse from json.
func (s *NodePluginResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode NodePluginResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode NodePluginResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfNodePluginResponseResponse) {
name = jsonFieldsNameOfNodePluginResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *NodePluginResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NodePluginResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *NodePluginResponseResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *NodePluginResponseResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("viewPosition")
e.Int(s.ViewPosition)
}
{
e.FieldStart("name")
e.Str(s.Name)
}
{
if len(s.PluginConfig) != 0 {
e.FieldStart("pluginConfig")
e.Raw(s.PluginConfig)
}
}
}
var jsonFieldsNameOfNodePluginResponseResponseResponse = [4]string{
0: "uuid",
1: "viewPosition",
2: "name",
3: "pluginConfig",
}
// Decode decodes NodePluginResponseResponseResponse from json.
func (s *NodePluginResponseResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode NodePluginResponseResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "viewPosition":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Int()
s.ViewPosition = int(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"viewPosition\"")
}
case "name":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "pluginConfig":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.RawAppend(nil)
s.PluginConfig = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"pluginConfig\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode NodePluginResponseResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00001111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfNodePluginResponseResponseResponse) {
name = jsonFieldsNameOfNodePluginResponseResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *NodePluginResponseResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NodePluginResponseResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *NodePluginsResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *NodePluginsResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfNodePluginsResponseResponse = [1]string{
0: "response",
}
// Decode decodes NodePluginsResponseResponse from json.
func (s *NodePluginsResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode NodePluginsResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode NodePluginsResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfNodePluginsResponseResponse) {
name = jsonFieldsNameOfNodePluginsResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *NodePluginsResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NodePluginsResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *NodePluginsResponseResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *NodePluginsResponseResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("total")
e.Float64(s.Total)
}
{
e.FieldStart("nodePlugins")
e.ArrStart()
for _, elem := range s.NodePlugins {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfNodePluginsResponseResponseResponse = [2]string{
0: "total",
1: "nodePlugins",
}
// Decode decodes NodePluginsResponseResponseResponse from json.
func (s *NodePluginsResponseResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode NodePluginsResponseResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "total":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.Total = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"total\"")
}
case "nodePlugins":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.NodePlugins = make([]NodePlugin, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem NodePlugin
if err := elem.Decode(d); err != nil {
return err
}
s.NodePlugins = append(s.NodePlugins, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodePlugins\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode NodePluginsResponseResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfNodePluginsResponseResponseResponse) {
name = jsonFieldsNameOfNodePluginsResponseResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *NodePluginsResponseResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NodePluginsResponseResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *NodeRequestBodyRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *NodeRequestBodyRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("forceRestart")
e.Bool(s.ForceRestart)
}
}
var jsonFieldsNameOfNodeRequestBodyRequest = [1]string{
0: "forceRestart",
}
// Decode decodes NodeRequestBodyRequest from json.
func (s *NodeRequestBodyRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode NodeRequestBodyRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "forceRestart":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Bool()
s.ForceRestart = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"forceRestart\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode NodeRequestBodyRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfNodeRequestBodyRequest) {
name = jsonFieldsNameOfNodeRequestBodyRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *NodeRequestBodyRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NodeRequestBodyRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *NodeResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *NodeResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfNodeResponse = [1]string{
0: "response",
}
// Decode decodes NodeResponse from json.
func (s *NodeResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode NodeResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode NodeResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfNodeResponse) {
name = jsonFieldsNameOfNodeResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *NodeResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NodeResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *NodeResponseDataItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *NodeResponseDataItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("name")
e.Str(s.Name)
}
{
e.FieldStart("address")
e.Str(s.Address)
}
{
e.FieldStart("port")
s.Port.Encode(e)
}
{
e.FieldStart("proxyUrl")
s.ProxyUrl.Encode(e)
}
{
e.FieldStart("isConnected")
e.Bool(s.IsConnected)
}
{
e.FieldStart("isDisabled")
e.Bool(s.IsDisabled)
}
{
e.FieldStart("isConnecting")
e.Bool(s.IsConnecting)
}
{
e.FieldStart("lastStatusChange")
s.LastStatusChange.Encode(e, json.EncodeDateTime)
}
{
e.FieldStart("lastStatusMessage")
s.LastStatusMessage.Encode(e)
}
{
e.FieldStart("isTrafficTrackingActive")
e.Bool(s.IsTrafficTrackingActive)
}
{
e.FieldStart("trafficResetDay")
s.TrafficResetDay.Encode(e)
}
{
e.FieldStart("trafficLimitBytes")
s.TrafficLimitBytes.Encode(e)
}
{
e.FieldStart("trafficUsedBytes")
s.TrafficUsedBytes.Encode(e)
}
{
e.FieldStart("notifyPercent")
s.NotifyPercent.Encode(e)
}
{
e.FieldStart("viewPosition")
e.Int(s.ViewPosition)
}
{
e.FieldStart("countryCode")
e.Str(s.CountryCode)
}
{
e.FieldStart("consumptionMultiplier")
e.Float64(s.ConsumptionMultiplier)
}
{
e.FieldStart("nodeConsumptionMultiplier")
e.Float64(s.NodeConsumptionMultiplier)
}
{
e.FieldStart("tags")
e.ArrStart()
for _, elem := range s.Tags {
e.Str(elem)
}
e.ArrEnd()
}
{
e.FieldStart("createdAt")
json.EncodeDateTime(e, s.CreatedAt)
}
{
e.FieldStart("updatedAt")
json.EncodeDateTime(e, s.UpdatedAt)
}
{
e.FieldStart("configProfile")
s.ConfigProfile.Encode(e)
}
{
e.FieldStart("providerUuid")
s.ProviderUuid.Encode(e)
}
{
e.FieldStart("provider")
s.Provider.Encode(e)
}
{
e.FieldStart("activePluginUuid")
s.ActivePluginUuid.Encode(e)
}
{
e.FieldStart("system")
s.System.Encode(e)
}
{
e.FieldStart("versions")
s.Versions.Encode(e)
}
{
e.FieldStart("xrayUptime")
e.Float64(s.XrayUptime)
}
{
e.FieldStart("usersOnline")
e.Float64(s.UsersOnline)
}
{
e.FieldStart("note")
s.Note.Encode(e)
}
}
var jsonFieldsNameOfNodeResponseDataItem = [31]string{
0: "uuid",
1: "name",
2: "address",
3: "port",
4: "proxyUrl",
5: "isConnected",
6: "isDisabled",
7: "isConnecting",
8: "lastStatusChange",
9: "lastStatusMessage",
10: "isTrafficTrackingActive",
11: "trafficResetDay",
12: "trafficLimitBytes",
13: "trafficUsedBytes",
14: "notifyPercent",
15: "viewPosition",
16: "countryCode",
17: "consumptionMultiplier",
18: "nodeConsumptionMultiplier",
19: "tags",
20: "createdAt",
21: "updatedAt",
22: "configProfile",
23: "providerUuid",
24: "provider",
25: "activePluginUuid",
26: "system",
27: "versions",
28: "xrayUptime",
29: "usersOnline",
30: "note",
}
// Decode decodes NodeResponseDataItem from json.
func (s *NodeResponseDataItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode NodeResponseDataItem to nil")
}
var requiredBitSet [4]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "name":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "address":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.Address = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"address\"")
}
case "port":
requiredBitSet[0] |= 1 << 3
if err := func() error {
if err := s.Port.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"port\"")
}
case "proxyUrl":
requiredBitSet[0] |= 1 << 4
if err := func() error {
if err := s.ProxyUrl.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"proxyUrl\"")
}
case "isConnected":
requiredBitSet[0] |= 1 << 5
if err := func() error {
v, err := d.Bool()
s.IsConnected = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isConnected\"")
}
case "isDisabled":
requiredBitSet[0] |= 1 << 6
if err := func() error {
v, err := d.Bool()
s.IsDisabled = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isDisabled\"")
}
case "isConnecting":
requiredBitSet[0] |= 1 << 7
if err := func() error {
v, err := d.Bool()
s.IsConnecting = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isConnecting\"")
}
case "lastStatusChange":
requiredBitSet[1] |= 1 << 0
if err := func() error {
if err := s.LastStatusChange.Decode(d, json.DecodeDateTime); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"lastStatusChange\"")
}
case "lastStatusMessage":
requiredBitSet[1] |= 1 << 1
if err := func() error {
if err := s.LastStatusMessage.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"lastStatusMessage\"")
}
case "isTrafficTrackingActive":
requiredBitSet[1] |= 1 << 2
if err := func() error {
v, err := d.Bool()
s.IsTrafficTrackingActive = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isTrafficTrackingActive\"")
}
case "trafficResetDay":
requiredBitSet[1] |= 1 << 3
if err := func() error {
if err := s.TrafficResetDay.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"trafficResetDay\"")
}
case "trafficLimitBytes":
requiredBitSet[1] |= 1 << 4
if err := func() error {
if err := s.TrafficLimitBytes.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"trafficLimitBytes\"")
}
case "trafficUsedBytes":
requiredBitSet[1] |= 1 << 5
if err := func() error {
if err := s.TrafficUsedBytes.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"trafficUsedBytes\"")
}
case "notifyPercent":
requiredBitSet[1] |= 1 << 6
if err := func() error {
if err := s.NotifyPercent.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"notifyPercent\"")
}
case "viewPosition":
requiredBitSet[1] |= 1 << 7
if err := func() error {
v, err := d.Int()
s.ViewPosition = int(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"viewPosition\"")
}
case "countryCode":
requiredBitSet[2] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.CountryCode = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"countryCode\"")
}
case "consumptionMultiplier":
requiredBitSet[2] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.ConsumptionMultiplier = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"consumptionMultiplier\"")
}
case "nodeConsumptionMultiplier":
requiredBitSet[2] |= 1 << 2
if err := func() error {
v, err := d.Float64()
s.NodeConsumptionMultiplier = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodeConsumptionMultiplier\"")
}
case "tags":
requiredBitSet[2] |= 1 << 3
if err := func() error {
s.Tags = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.Tags = append(s.Tags, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"tags\"")
}
case "createdAt":
requiredBitSet[2] |= 1 << 4
if err := func() error {
v, err := json.DecodeDateTime(d)
s.CreatedAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"createdAt\"")
}
case "updatedAt":
requiredBitSet[2] |= 1 << 5
if err := func() error {
v, err := json.DecodeDateTime(d)
s.UpdatedAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"updatedAt\"")
}
case "configProfile":
requiredBitSet[2] |= 1 << 6
if err := func() error {
if err := s.ConfigProfile.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"configProfile\"")
}
case "providerUuid":
requiredBitSet[2] |= 1 << 7
if err := func() error {
if err := s.ProviderUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"providerUuid\"")
}
case "provider":
requiredBitSet[3] |= 1 << 0
if err := func() error {
if err := s.Provider.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"provider\"")
}
case "activePluginUuid":
requiredBitSet[3] |= 1 << 1
if err := func() error {
if err := s.ActivePluginUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"activePluginUuid\"")
}
case "system":
requiredBitSet[3] |= 1 << 2
if err := func() error {
if err := s.System.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"system\"")
}
case "versions":
requiredBitSet[3] |= 1 << 3
if err := func() error {
if err := s.Versions.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"versions\"")
}
case "xrayUptime":
requiredBitSet[3] |= 1 << 4
if err := func() error {
v, err := d.Float64()
s.XrayUptime = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"xrayUptime\"")
}
case "usersOnline":
requiredBitSet[3] |= 1 << 5
if err := func() error {
v, err := d.Float64()
s.UsersOnline = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"usersOnline\"")
}
case "note":
requiredBitSet[3] |= 1 << 6
if err := func() error {
if err := s.Note.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"note\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode NodeResponseDataItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [4]uint8{
0b11111111,
0b11111111,
0b11111111,
0b01111111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfNodeResponseDataItem) {
name = jsonFieldsNameOfNodeResponseDataItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *NodeResponseDataItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NodeResponseDataItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *NodeResponseInfoItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *NodeResponseInfoItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("arch")
e.Str(s.Arch)
}
{
e.FieldStart("cpus")
e.Int(s.Cpus)
}
{
e.FieldStart("cpuModel")
e.Str(s.CpuModel)
}
{
e.FieldStart("memoryTotal")
e.Float64(s.MemoryTotal)
}
{
e.FieldStart("hostname")
e.Str(s.Hostname)
}
{
e.FieldStart("platform")
e.Str(s.Platform)
}
{
e.FieldStart("release")
e.Str(s.Release)
}
{
e.FieldStart("type")
e.Str(s.Type)
}
{
e.FieldStart("version")
e.Str(s.Version)
}
{
e.FieldStart("networkInterfaces")
e.ArrStart()
for _, elem := range s.NetworkInterfaces {
e.Str(elem)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfNodeResponseInfoItem = [10]string{
0: "arch",
1: "cpus",
2: "cpuModel",
3: "memoryTotal",
4: "hostname",
5: "platform",
6: "release",
7: "type",
8: "version",
9: "networkInterfaces",
}
// Decode decodes NodeResponseInfoItem from json.
func (s *NodeResponseInfoItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode NodeResponseInfoItem to nil")
}
var requiredBitSet [2]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "arch":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Arch = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"arch\"")
}
case "cpus":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Int()
s.Cpus = int(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"cpus\"")
}
case "cpuModel":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.CpuModel = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"cpuModel\"")
}
case "memoryTotal":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Float64()
s.MemoryTotal = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"memoryTotal\"")
}
case "hostname":
requiredBitSet[0] |= 1 << 4
if err := func() error {
v, err := d.Str()
s.Hostname = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"hostname\"")
}
case "platform":
requiredBitSet[0] |= 1 << 5
if err := func() error {
v, err := d.Str()
s.Platform = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"platform\"")
}
case "release":
requiredBitSet[0] |= 1 << 6
if err := func() error {
v, err := d.Str()
s.Release = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"release\"")
}
case "type":
requiredBitSet[0] |= 1 << 7
if err := func() error {
v, err := d.Str()
s.Type = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"type\"")
}
case "version":
requiredBitSet[1] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Version = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"version\"")
}
case "networkInterfaces":
requiredBitSet[1] |= 1 << 1
if err := func() error {
s.NetworkInterfaces = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.NetworkInterfaces = append(s.NetworkInterfaces, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"networkInterfaces\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode NodeResponseInfoItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [2]uint8{
0b11111111,
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfNodeResponseInfoItem) {
name = jsonFieldsNameOfNodeResponseInfoItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *NodeResponseInfoItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NodeResponseInfoItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *NodesResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *NodesResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
e.ArrStart()
for _, elem := range s.Response {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfNodesResponse = [1]string{
0: "response",
}
// Decode decodes NodesResponse from json.
func (s *NodesResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode NodesResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Response = make([]NodeResponseDataItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem NodeResponseDataItem
if err := elem.Decode(d); err != nil {
return err
}
s.Response = append(s.Response, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode NodesResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfNodesResponse) {
name = jsonFieldsNameOfNodesResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *NodesResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NodesResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *NotFoundError) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *NotFoundError) encodeFields(e *jx.Encoder) {
{
e.FieldStart("message")
e.Str(s.Message)
}
{
e.FieldStart("statusCode")
e.Float64(s.StatusCode)
}
}
var jsonFieldsNameOfNotFoundError = [2]string{
0: "message",
1: "statusCode",
}
// Decode decodes NotFoundError from json.
func (s *NotFoundError) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode NotFoundError to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "message":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Message = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"message\"")
}
case "statusCode":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.StatusCode = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"statusCode\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode NotFoundError")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfNotFoundError) {
name = jsonFieldsNameOfNotFoundError[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *NotFoundError) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *NotFoundError) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *OAuth2AuthorizeRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *OAuth2AuthorizeRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("provider")
s.Provider.Encode(e)
}
}
var jsonFieldsNameOfOAuth2AuthorizeRequest = [1]string{
0: "provider",
}
// Decode decodes OAuth2AuthorizeRequest from json.
func (s *OAuth2AuthorizeRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode OAuth2AuthorizeRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "provider":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Provider.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"provider\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode OAuth2AuthorizeRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfOAuth2AuthorizeRequest) {
name = jsonFieldsNameOfOAuth2AuthorizeRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *OAuth2AuthorizeRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OAuth2AuthorizeRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes OAuth2AuthorizeRequestProvider as json.
func (s OAuth2AuthorizeRequestProvider) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes OAuth2AuthorizeRequestProvider from json.
func (s *OAuth2AuthorizeRequestProvider) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode OAuth2AuthorizeRequestProvider to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch OAuth2AuthorizeRequestProvider(v) {
case OAuth2AuthorizeRequestProviderTelegram:
*s = OAuth2AuthorizeRequestProviderTelegram
case OAuth2AuthorizeRequestProviderGithub:
*s = OAuth2AuthorizeRequestProviderGithub
case OAuth2AuthorizeRequestProviderPocketid:
*s = OAuth2AuthorizeRequestProviderPocketid
case OAuth2AuthorizeRequestProviderYandex:
*s = OAuth2AuthorizeRequestProviderYandex
case OAuth2AuthorizeRequestProviderKeycloak:
*s = OAuth2AuthorizeRequestProviderKeycloak
case OAuth2AuthorizeRequestProviderGeneric:
*s = OAuth2AuthorizeRequestProviderGeneric
default:
*s = OAuth2AuthorizeRequestProvider(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OAuth2AuthorizeRequestProvider) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OAuth2AuthorizeRequestProvider) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *OAuth2AuthorizeResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *OAuth2AuthorizeResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfOAuth2AuthorizeResponse = [1]string{
0: "response",
}
// Decode decodes OAuth2AuthorizeResponse from json.
func (s *OAuth2AuthorizeResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode OAuth2AuthorizeResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode OAuth2AuthorizeResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfOAuth2AuthorizeResponse) {
name = jsonFieldsNameOfOAuth2AuthorizeResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *OAuth2AuthorizeResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OAuth2AuthorizeResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *OAuth2AuthorizeResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *OAuth2AuthorizeResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("authorizationUrl")
s.AuthorizationUrl.Encode(e)
}
}
var jsonFieldsNameOfOAuth2AuthorizeResponseResponse = [1]string{
0: "authorizationUrl",
}
// Decode decodes OAuth2AuthorizeResponseResponse from json.
func (s *OAuth2AuthorizeResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode OAuth2AuthorizeResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "authorizationUrl":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.AuthorizationUrl.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"authorizationUrl\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode OAuth2AuthorizeResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfOAuth2AuthorizeResponseResponse) {
name = jsonFieldsNameOfOAuth2AuthorizeResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *OAuth2AuthorizeResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OAuth2AuthorizeResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *OAuth2CallbackRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *OAuth2CallbackRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("provider")
s.Provider.Encode(e)
}
{
e.FieldStart("code")
e.Str(s.Code)
}
{
e.FieldStart("state")
e.Str(s.State)
}
}
var jsonFieldsNameOfOAuth2CallbackRequest = [3]string{
0: "provider",
1: "code",
2: "state",
}
// Decode decodes OAuth2CallbackRequest from json.
func (s *OAuth2CallbackRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode OAuth2CallbackRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "provider":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Provider.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"provider\"")
}
case "code":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Code = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"code\"")
}
case "state":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.State = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"state\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode OAuth2CallbackRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfOAuth2CallbackRequest) {
name = jsonFieldsNameOfOAuth2CallbackRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *OAuth2CallbackRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OAuth2CallbackRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes OAuth2CallbackRequestProvider as json.
func (s OAuth2CallbackRequestProvider) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes OAuth2CallbackRequestProvider from json.
func (s *OAuth2CallbackRequestProvider) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode OAuth2CallbackRequestProvider to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch OAuth2CallbackRequestProvider(v) {
case OAuth2CallbackRequestProviderTelegram:
*s = OAuth2CallbackRequestProviderTelegram
case OAuth2CallbackRequestProviderGithub:
*s = OAuth2CallbackRequestProviderGithub
case OAuth2CallbackRequestProviderPocketid:
*s = OAuth2CallbackRequestProviderPocketid
case OAuth2CallbackRequestProviderYandex:
*s = OAuth2CallbackRequestProviderYandex
case OAuth2CallbackRequestProviderKeycloak:
*s = OAuth2CallbackRequestProviderKeycloak
case OAuth2CallbackRequestProviderGeneric:
*s = OAuth2CallbackRequestProviderGeneric
default:
*s = OAuth2CallbackRequestProvider(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OAuth2CallbackRequestProvider) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OAuth2CallbackRequestProvider) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *Oauth2Settings) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *Oauth2Settings) encodeFields(e *jx.Encoder) {
{
e.FieldStart("github")
s.Github.Encode(e)
}
{
e.FieldStart("pocketid")
s.Pocketid.Encode(e)
}
{
e.FieldStart("yandex")
s.Yandex.Encode(e)
}
{
if s.Keycloak.Set {
e.FieldStart("keycloak")
s.Keycloak.Encode(e)
}
}
{
if s.Generic.Set {
e.FieldStart("generic")
s.Generic.Encode(e)
}
}
{
if s.Telegram.Set {
e.FieldStart("telegram")
s.Telegram.Encode(e)
}
}
}
var jsonFieldsNameOfOauth2Settings = [6]string{
0: "github",
1: "pocketid",
2: "yandex",
3: "keycloak",
4: "generic",
5: "telegram",
}
// Decode decodes Oauth2Settings from json.
func (s *Oauth2Settings) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode Oauth2Settings to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "github":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Github.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"github\"")
}
case "pocketid":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.Pocketid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"pocketid\"")
}
case "yandex":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.Yandex.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"yandex\"")
}
case "keycloak":
if err := func() error {
s.Keycloak.Reset()
if err := s.Keycloak.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"keycloak\"")
}
case "generic":
if err := func() error {
s.Generic.Reset()
if err := s.Generic.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"generic\"")
}
case "telegram":
if err := func() error {
s.Telegram.Reset()
if err := s.Telegram.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"telegram\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode Oauth2Settings")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfOauth2Settings) {
name = jsonFieldsNameOfOauth2Settings[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *Oauth2Settings) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *Oauth2Settings) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes bool as json.
func (o OptBool) Encode(e *jx.Encoder) {
if !o.Set {
return
}
e.Bool(bool(o.Value))
}
// Decode decodes bool from json.
func (o *OptBool) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptBool to nil")
}
o.Set = true
v, err := d.Bool()
if err != nil {
return err
}
o.Value = bool(v)
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptBool) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptBool) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes BulkAllUpdateUsersRequestStatus as json.
func (o OptBulkAllUpdateUsersRequestStatus) Encode(e *jx.Encoder) {
if !o.Set {
return
}
e.Str(string(o.Value))
}
// Decode decodes BulkAllUpdateUsersRequestStatus from json.
func (o *OptBulkAllUpdateUsersRequestStatus) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptBulkAllUpdateUsersRequestStatus to nil")
}
o.Set = true
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptBulkAllUpdateUsersRequestStatus) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptBulkAllUpdateUsersRequestStatus) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes BulkAllUpdateUsersRequestTrafficLimitStrategy as json.
func (o OptBulkAllUpdateUsersRequestTrafficLimitStrategy) Encode(e *jx.Encoder) {
if !o.Set {
return
}
e.Str(string(o.Value))
}
// Decode decodes BulkAllUpdateUsersRequestTrafficLimitStrategy from json.
func (o *OptBulkAllUpdateUsersRequestTrafficLimitStrategy) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptBulkAllUpdateUsersRequestTrafficLimitStrategy to nil")
}
o.Set = true
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptBulkAllUpdateUsersRequestTrafficLimitStrategy) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptBulkAllUpdateUsersRequestTrafficLimitStrategy) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes BulkDeleteUsersByStatusRequestStatus as json.
func (o OptBulkDeleteUsersByStatusRequestStatus) Encode(e *jx.Encoder) {
if !o.Set {
return
}
e.Str(string(o.Value))
}
// Decode decodes BulkDeleteUsersByStatusRequestStatus from json.
func (o *OptBulkDeleteUsersByStatusRequestStatus) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptBulkDeleteUsersByStatusRequestStatus to nil")
}
o.Set = true
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptBulkDeleteUsersByStatusRequestStatus) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptBulkDeleteUsersByStatusRequestStatus) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes BulkUpdateUsersRequestFieldsStatus as json.
func (o OptBulkUpdateUsersRequestFieldsStatus) Encode(e *jx.Encoder) {
if !o.Set {
return
}
e.Str(string(o.Value))
}
// Decode decodes BulkUpdateUsersRequestFieldsStatus from json.
func (o *OptBulkUpdateUsersRequestFieldsStatus) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptBulkUpdateUsersRequestFieldsStatus to nil")
}
o.Set = true
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptBulkUpdateUsersRequestFieldsStatus) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptBulkUpdateUsersRequestFieldsStatus) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes BulkUpdateUsersRequestFieldsTrafficLimitStrategy as json.
func (o OptBulkUpdateUsersRequestFieldsTrafficLimitStrategy) Encode(e *jx.Encoder) {
if !o.Set {
return
}
e.Str(string(o.Value))
}
// Decode decodes BulkUpdateUsersRequestFieldsTrafficLimitStrategy from json.
func (o *OptBulkUpdateUsersRequestFieldsTrafficLimitStrategy) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptBulkUpdateUsersRequestFieldsTrafficLimitStrategy to nil")
}
o.Set = true
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptBulkUpdateUsersRequestFieldsTrafficLimitStrategy) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptBulkUpdateUsersRequestFieldsTrafficLimitStrategy) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes ConfigProfileRef as json.
func (o OptConfigProfileRef) Encode(e *jx.Encoder) {
if !o.Set {
return
}
o.Value.Encode(e)
}
// Decode decodes ConfigProfileRef from json.
func (o *OptConfigProfileRef) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptConfigProfileRef to nil")
}
o.Set = true
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptConfigProfileRef) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptConfigProfileRef) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes CreateHostRequestSecurityLayer as json.
func (o OptCreateHostRequestSecurityLayer) Encode(e *jx.Encoder) {
if !o.Set {
return
}
e.Str(string(o.Value))
}
// Decode decodes CreateHostRequestSecurityLayer from json.
func (o *OptCreateHostRequestSecurityLayer) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptCreateHostRequestSecurityLayer to nil")
}
o.Set = true
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptCreateHostRequestSecurityLayer) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptCreateHostRequestSecurityLayer) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes CreateUserRequestStatus as json.
func (o OptCreateUserRequestStatus) Encode(e *jx.Encoder) {
if !o.Set {
return
}
e.Str(string(o.Value))
}
// Decode decodes CreateUserRequestStatus from json.
func (o *OptCreateUserRequestStatus) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptCreateUserRequestStatus to nil")
}
o.Set = true
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptCreateUserRequestStatus) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptCreateUserRequestStatus) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes CreateUserRequestTrafficLimitStrategy as json.
func (o OptCreateUserRequestTrafficLimitStrategy) Encode(e *jx.Encoder) {
if !o.Set {
return
}
e.Str(string(o.Value))
}
// Decode decodes CreateUserRequestTrafficLimitStrategy from json.
func (o *OptCreateUserRequestTrafficLimitStrategy) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptCreateUserRequestTrafficLimitStrategy to nil")
}
o.Set = true
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptCreateUserRequestTrafficLimitStrategy) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptCreateUserRequestTrafficLimitStrategy) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes time.Time as json.
func (o OptDateTime) Encode(e *jx.Encoder, format func(*jx.Encoder, time.Time)) {
if !o.Set {
return
}
format(e, o.Value)
}
// Decode decodes time.Time from json.
func (o *OptDateTime) Decode(d *jx.Decoder, format func(*jx.Decoder) (time.Time, error)) error {
if o == nil {
return errors.New("invalid: unable to decode OptDateTime to nil")
}
o.Set = true
v, err := format(d)
if err != nil {
return err
}
o.Value = v
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptDateTime) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e, json.EncodeDateTime)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptDateTime) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d, json.DecodeDateTime)
}
// Encode encodes DebugSrrMatcherSettings as json.
func (o OptDebugSrrMatcherSettings) Encode(e *jx.Encoder) {
if !o.Set {
return
}
o.Value.Encode(e)
}
// Decode decodes DebugSrrMatcherSettings from json.
func (o *OptDebugSrrMatcherSettings) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptDebugSrrMatcherSettings to nil")
}
o.Set = true
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptDebugSrrMatcherSettings) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptDebugSrrMatcherSettings) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes EncryptionItem as json.
func (o OptEncryptionItem) Encode(e *jx.Encoder) {
if !o.Set {
return
}
o.Value.Encode(e)
}
// Decode decodes EncryptionItem from json.
func (o *OptEncryptionItem) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptEncryptionItem to nil")
}
o.Set = true
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptEncryptionItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptEncryptionItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes float64 as json.
func (o OptFloat64) Encode(e *jx.Encoder) {
if !o.Set {
return
}
e.Float64(float64(o.Value))
}
// Decode decodes float64 from json.
func (o *OptFloat64) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptFloat64 to nil")
}
o.Set = true
v, err := d.Float64()
if err != nil {
return err
}
o.Value = float64(v)
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptFloat64) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptFloat64) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes Generic as json.
func (o OptGeneric) Encode(e *jx.Encoder) {
if !o.Set {
return
}
o.Value.Encode(e)
}
// Decode decodes Generic from json.
func (o *OptGeneric) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptGeneric to nil")
}
o.Set = true
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptGeneric) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptGeneric) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions as json.
func (o OptGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions) Encode(e *jx.Encoder) {
if !o.Set {
return
}
o.Value.Encode(e)
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions from json.
func (o *OptGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions to nil")
}
o.Set = true
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemSecurityOptions) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Request as json.
func (o OptGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Request) Encode(e *jx.Encoder) {
if !o.Set {
return
}
o.Value.Encode(e)
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Request from json.
func (o *OptGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Request) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Request to nil")
}
o.Set = true
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Request) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Request) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1RequestHeaders as json.
func (o OptGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1RequestHeaders) Encode(e *jx.Encoder) {
if !o.Set {
return
}
o.Value.Encode(e)
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1RequestHeaders from json.
func (o *OptGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1RequestHeaders) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1RequestHeaders to nil")
}
o.Set = true
o.Value = make(GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1RequestHeaders)
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1RequestHeaders) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1RequestHeaders) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Response as json.
func (o OptGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Response) Encode(e *jx.Encoder) {
if !o.Set {
return
}
o.Value.Encode(e)
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Response from json.
func (o *OptGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Response) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Response to nil")
}
o.Set = true
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Response) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1Response) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1ResponseHeaders as json.
func (o OptGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1ResponseHeaders) Encode(e *jx.Encoder) {
if !o.Set {
return
}
o.Value.Encode(e)
}
// Decode decodes GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1ResponseHeaders from json.
func (o *OptGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1ResponseHeaders) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1ResponseHeaders to nil")
}
o.Set = true
o.Value = make(GetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1ResponseHeaders)
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1ResponseHeaders) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptGetRawSubscriptionByShortUuidResponseResponseResolvedProxyConfigsItemTransportOptions0Header1ResponseHeaders) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes HostItemSecurityLayer as json.
func (o OptHostItemSecurityLayer) Encode(e *jx.Encoder) {
if !o.Set {
return
}
e.Str(string(o.Value))
}
// Decode decodes HostItemSecurityLayer from json.
func (o *OptHostItemSecurityLayer) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptHostItemSecurityLayer to nil")
}
o.Set = true
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptHostItemSecurityLayer) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptHostItemSecurityLayer) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes InboundRef as json.
func (o OptInboundRef) Encode(e *jx.Encoder) {
if !o.Set {
return
}
o.Value.Encode(e)
}
// Decode decodes InboundRef from json.
func (o *OptInboundRef) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptInboundRef to nil")
}
o.Set = true
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptInboundRef) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptInboundRef) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes int as json.
func (o OptInt) Encode(e *jx.Encoder) {
if !o.Set {
return
}
e.Int(int(o.Value))
}
// Decode decodes int from json.
func (o *OptInt) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptInt to nil")
}
o.Set = true
v, err := d.Int()
if err != nil {
return err
}
o.Value = int(v)
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptInt) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptInt) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes Keycloak as json.
func (o OptKeycloak) Encode(e *jx.Encoder) {
if !o.Set {
return
}
o.Value.Encode(e)
}
// Decode decodes Keycloak from json.
func (o *OptKeycloak) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptKeycloak to nil")
}
o.Set = true
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptKeycloak) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptKeycloak) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes BrandingSettings as json.
func (o OptNilBrandingSettings) Encode(e *jx.Encoder) {
if !o.Set {
return
}
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes BrandingSettings from json.
func (o *OptNilBrandingSettings) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptNilBrandingSettings to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v BrandingSettings
o.Value = v
o.Set = true
o.Null = true
return nil
}
o.Set = true
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptNilBrandingSettings) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptNilBrandingSettings) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes CreateHostRequestAlpn as json.
func (o OptNilCreateHostRequestAlpn) Encode(e *jx.Encoder) {
if !o.Set {
return
}
if o.Null {
e.Null()
return
}
e.Str(string(o.Value))
}
// Decode decodes CreateHostRequestAlpn from json.
func (o *OptNilCreateHostRequestAlpn) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptNilCreateHostRequestAlpn to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v CreateHostRequestAlpn
o.Value = v
o.Set = true
o.Null = true
return nil
}
o.Set = true
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptNilCreateHostRequestAlpn) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptNilCreateHostRequestAlpn) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes CreateHostRequestMihomoIpVersion as json.
func (o OptNilCreateHostRequestMihomoIpVersion) Encode(e *jx.Encoder) {
if !o.Set {
return
}
if o.Null {
e.Null()
return
}
e.Str(string(o.Value))
}
// Decode decodes CreateHostRequestMihomoIpVersion from json.
func (o *OptNilCreateHostRequestMihomoIpVersion) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptNilCreateHostRequestMihomoIpVersion to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v CreateHostRequestMihomoIpVersion
o.Value = v
o.Set = true
o.Null = true
return nil
}
o.Set = true
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptNilCreateHostRequestMihomoIpVersion) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptNilCreateHostRequestMihomoIpVersion) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes CustomRemark as json.
func (o OptNilCustomRemark) Encode(e *jx.Encoder) {
if !o.Set {
return
}
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes CustomRemark from json.
func (o *OptNilCustomRemark) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptNilCustomRemark to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v CustomRemark
o.Value = v
o.Set = true
o.Null = true
return nil
}
o.Set = true
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptNilCustomRemark) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptNilCustomRemark) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes HostOverride as json.
func (o OptNilHostOverride) Encode(e *jx.Encoder) {
if !o.Set {
return
}
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes HostOverride from json.
func (o *OptNilHostOverride) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptNilHostOverride to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v HostOverride
o.Value = v
o.Set = true
o.Null = true
return nil
}
o.Set = true
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptNilHostOverride) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptNilHostOverride) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes HwidSettings as json.
func (o OptNilHwidSettings) Encode(e *jx.Encoder) {
if !o.Set {
return
}
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes HwidSettings from json.
func (o *OptNilHwidSettings) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptNilHwidSettings to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v HwidSettings
o.Value = v
o.Set = true
o.Null = true
return nil
}
o.Set = true
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptNilHwidSettings) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptNilHwidSettings) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes int as json.
func (o OptNilInt) Encode(e *jx.Encoder) {
if !o.Set {
return
}
if o.Null {
e.Null()
return
}
e.Int(int(o.Value))
}
// Decode decodes int from json.
func (o *OptNilInt) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptNilInt to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v int
o.Value = v
o.Set = true
o.Null = true
return nil
}
o.Set = true
o.Null = false
v, err := d.Int()
if err != nil {
return err
}
o.Value = int(v)
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptNilInt) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptNilInt) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes Oauth2Settings as json.
func (o OptNilOauth2Settings) Encode(e *jx.Encoder) {
if !o.Set {
return
}
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes Oauth2Settings from json.
func (o *OptNilOauth2Settings) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptNilOauth2Settings to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v Oauth2Settings
o.Value = v
o.Set = true
o.Null = true
return nil
}
o.Set = true
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptNilOauth2Settings) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptNilOauth2Settings) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes PasskeySettings as json.
func (o OptNilPasskeySettings) Encode(e *jx.Encoder) {
if !o.Set {
return
}
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes PasskeySettings from json.
func (o *OptNilPasskeySettings) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptNilPasskeySettings to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v PasskeySettings
o.Value = v
o.Set = true
o.Null = true
return nil
}
o.Set = true
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptNilPasskeySettings) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptNilPasskeySettings) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes PasswordSettings as json.
func (o OptNilPasswordSettings) Encode(e *jx.Encoder) {
if !o.Set {
return
}
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes PasswordSettings from json.
func (o *OptNilPasswordSettings) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptNilPasswordSettings to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v PasswordSettings
o.Value = v
o.Set = true
o.Null = true
return nil
}
o.Set = true
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptNilPasswordSettings) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptNilPasswordSettings) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes string as json.
func (o OptNilString) Encode(e *jx.Encoder) {
if !o.Set {
return
}
if o.Null {
e.Null()
return
}
e.Str(string(o.Value))
}
// Decode decodes string from json.
func (o *OptNilString) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptNilString to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v string
o.Value = v
o.Set = true
o.Null = true
return nil
}
o.Set = true
o.Null = false
v, err := d.Str()
if err != nil {
return err
}
o.Value = string(v)
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptNilString) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptNilString) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes SubscriptionSettings as json.
func (o OptNilSubscriptionSettings) Encode(e *jx.Encoder) {
if !o.Set {
return
}
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes SubscriptionSettings from json.
func (o *OptNilSubscriptionSettings) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptNilSubscriptionSettings to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v SubscriptionSettings
o.Value = v
o.Set = true
o.Null = true
return nil
}
o.Set = true
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptNilSubscriptionSettings) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptNilSubscriptionSettings) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes url.URL as json.
func (o OptNilURI) Encode(e *jx.Encoder) {
if !o.Set {
return
}
if o.Null {
e.Null()
return
}
json.EncodeURI(e, o.Value)
}
// Decode decodes url.URL from json.
func (o *OptNilURI) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptNilURI to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v url.URL
o.Value = v
o.Set = true
o.Null = true
return nil
}
o.Set = true
o.Null = false
v, err := json.DecodeURI(d)
if err != nil {
return err
}
o.Value = v
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptNilURI) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptNilURI) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes uuid.UUID as json.
func (o OptNilUUID) Encode(e *jx.Encoder) {
if !o.Set {
return
}
if o.Null {
e.Null()
return
}
json.EncodeUUID(e, o.Value)
}
// Decode decodes uuid.UUID from json.
func (o *OptNilUUID) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptNilUUID to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v uuid.UUID
o.Value = v
o.Set = true
o.Null = true
return nil
}
o.Set = true
o.Null = false
v, err := json.DecodeUUID(d)
if err != nil {
return err
}
o.Value = v
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptNilUUID) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptNilUUID) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes UpdateExternalSquadRequestResponseHeaders as json.
func (o OptNilUpdateExternalSquadRequestResponseHeaders) Encode(e *jx.Encoder) {
if !o.Set {
return
}
if o.Null {
e.Null()
return
}
o.Value.Encode(e)
}
// Decode decodes UpdateExternalSquadRequestResponseHeaders from json.
func (o *OptNilUpdateExternalSquadRequestResponseHeaders) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptNilUpdateExternalSquadRequestResponseHeaders to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v UpdateExternalSquadRequestResponseHeaders
o.Value = v
o.Set = true
o.Null = true
return nil
}
o.Set = true
o.Null = false
o.Value = make(UpdateExternalSquadRequestResponseHeaders)
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptNilUpdateExternalSquadRequestResponseHeaders) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptNilUpdateExternalSquadRequestResponseHeaders) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes UpdateHostRequestAlpn as json.
func (o OptNilUpdateHostRequestAlpn) Encode(e *jx.Encoder) {
if !o.Set {
return
}
if o.Null {
e.Null()
return
}
e.Str(string(o.Value))
}
// Decode decodes UpdateHostRequestAlpn from json.
func (o *OptNilUpdateHostRequestAlpn) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptNilUpdateHostRequestAlpn to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v UpdateHostRequestAlpn
o.Value = v
o.Set = true
o.Null = true
return nil
}
o.Set = true
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptNilUpdateHostRequestAlpn) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptNilUpdateHostRequestAlpn) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes UpdateHostRequestMihomoIpVersion as json.
func (o OptNilUpdateHostRequestMihomoIpVersion) Encode(e *jx.Encoder) {
if !o.Set {
return
}
if o.Null {
e.Null()
return
}
e.Str(string(o.Value))
}
// Decode decodes UpdateHostRequestMihomoIpVersion from json.
func (o *OptNilUpdateHostRequestMihomoIpVersion) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptNilUpdateHostRequestMihomoIpVersion to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v UpdateHostRequestMihomoIpVersion
o.Value = v
o.Set = true
o.Null = true
return nil
}
o.Set = true
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptNilUpdateHostRequestMihomoIpVersion) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptNilUpdateHostRequestMihomoIpVersion) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes UpdateManyHostsRequestAlpn as json.
func (o OptNilUpdateManyHostsRequestAlpn) Encode(e *jx.Encoder) {
if !o.Set {
return
}
if o.Null {
e.Null()
return
}
e.Str(string(o.Value))
}
// Decode decodes UpdateManyHostsRequestAlpn from json.
func (o *OptNilUpdateManyHostsRequestAlpn) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptNilUpdateManyHostsRequestAlpn to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v UpdateManyHostsRequestAlpn
o.Value = v
o.Set = true
o.Null = true
return nil
}
o.Set = true
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptNilUpdateManyHostsRequestAlpn) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptNilUpdateManyHostsRequestAlpn) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes UpdateManyHostsRequestMihomoIpVersion as json.
func (o OptNilUpdateManyHostsRequestMihomoIpVersion) Encode(e *jx.Encoder) {
if !o.Set {
return
}
if o.Null {
e.Null()
return
}
e.Str(string(o.Value))
}
// Decode decodes UpdateManyHostsRequestMihomoIpVersion from json.
func (o *OptNilUpdateManyHostsRequestMihomoIpVersion) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptNilUpdateManyHostsRequestMihomoIpVersion to nil")
}
if d.Next() == jx.Null {
if err := d.Null(); err != nil {
return err
}
var v UpdateManyHostsRequestMihomoIpVersion
o.Value = v
o.Set = true
o.Null = true
return nil
}
o.Set = true
o.Null = false
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptNilUpdateManyHostsRequestMihomoIpVersion) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptNilUpdateManyHostsRequestMihomoIpVersion) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes ResponseModification as json.
func (o OptResponseModification) Encode(e *jx.Encoder) {
if !o.Set {
return
}
o.Value.Encode(e)
}
// Decode decodes ResponseModification from json.
func (o *OptResponseModification) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptResponseModification to nil")
}
o.Set = true
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptResponseModification) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptResponseModification) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes ResponseRules as json.
func (o OptResponseRules) Encode(e *jx.Encoder) {
if !o.Set {
return
}
o.Value.Encode(e)
}
// Decode decodes ResponseRules from json.
func (o *OptResponseRules) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptResponseRules to nil")
}
o.Set = true
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptResponseRules) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptResponseRules) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes string as json.
func (o OptString) Encode(e *jx.Encoder) {
if !o.Set {
return
}
e.Str(string(o.Value))
}
// Decode decodes string from json.
func (o *OptString) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptString to nil")
}
o.Set = true
v, err := d.Str()
if err != nil {
return err
}
o.Value = string(v)
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptString) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptString) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes Telegram as json.
func (o OptTelegram) Encode(e *jx.Encoder) {
if !o.Set {
return
}
o.Value.Encode(e)
}
// Decode decodes Telegram from json.
func (o *OptTelegram) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptTelegram to nil")
}
o.Set = true
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptTelegram) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptTelegram) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes url.URL as json.
func (o OptURI) Encode(e *jx.Encoder) {
if !o.Set {
return
}
json.EncodeURI(e, o.Value)
}
// Decode decodes url.URL from json.
func (o *OptURI) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptURI to nil")
}
o.Set = true
v, err := json.DecodeURI(d)
if err != nil {
return err
}
o.Value = v
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptURI) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptURI) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes uuid.UUID as json.
func (o OptUUID) Encode(e *jx.Encoder) {
if !o.Set {
return
}
json.EncodeUUID(e, o.Value)
}
// Decode decodes uuid.UUID from json.
func (o *OptUUID) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptUUID to nil")
}
o.Set = true
v, err := json.DecodeUUID(d)
if err != nil {
return err
}
o.Value = v
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptUUID) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptUUID) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes UpdateHostRequestSecurityLayer as json.
func (o OptUpdateHostRequestSecurityLayer) Encode(e *jx.Encoder) {
if !o.Set {
return
}
e.Str(string(o.Value))
}
// Decode decodes UpdateHostRequestSecurityLayer from json.
func (o *OptUpdateHostRequestSecurityLayer) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptUpdateHostRequestSecurityLayer to nil")
}
o.Set = true
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptUpdateHostRequestSecurityLayer) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptUpdateHostRequestSecurityLayer) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes UpdateManyHostsRequestSecurityLayer as json.
func (o OptUpdateManyHostsRequestSecurityLayer) Encode(e *jx.Encoder) {
if !o.Set {
return
}
e.Str(string(o.Value))
}
// Decode decodes UpdateManyHostsRequestSecurityLayer from json.
func (o *OptUpdateManyHostsRequestSecurityLayer) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptUpdateManyHostsRequestSecurityLayer to nil")
}
o.Set = true
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptUpdateManyHostsRequestSecurityLayer) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptUpdateManyHostsRequestSecurityLayer) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes UpdateSubscriptionSettingsRequestCustomResponseHeaders as json.
func (o OptUpdateSubscriptionSettingsRequestCustomResponseHeaders) Encode(e *jx.Encoder) {
if !o.Set {
return
}
o.Value.Encode(e)
}
// Decode decodes UpdateSubscriptionSettingsRequestCustomResponseHeaders from json.
func (o *OptUpdateSubscriptionSettingsRequestCustomResponseHeaders) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptUpdateSubscriptionSettingsRequestCustomResponseHeaders to nil")
}
o.Set = true
o.Value = make(UpdateSubscriptionSettingsRequestCustomResponseHeaders)
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptUpdateSubscriptionSettingsRequestCustomResponseHeaders) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptUpdateSubscriptionSettingsRequestCustomResponseHeaders) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes UpdateUserRequestStatus as json.
func (o OptUpdateUserRequestStatus) Encode(e *jx.Encoder) {
if !o.Set {
return
}
e.Str(string(o.Value))
}
// Decode decodes UpdateUserRequestStatus from json.
func (o *OptUpdateUserRequestStatus) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptUpdateUserRequestStatus to nil")
}
o.Set = true
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptUpdateUserRequestStatus) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptUpdateUserRequestStatus) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes UpdateUserRequestTrafficLimitStrategy as json.
func (o OptUpdateUserRequestTrafficLimitStrategy) Encode(e *jx.Encoder) {
if !o.Set {
return
}
e.Str(string(o.Value))
}
// Decode decodes UpdateUserRequestTrafficLimitStrategy from json.
func (o *OptUpdateUserRequestTrafficLimitStrategy) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptUpdateUserRequestTrafficLimitStrategy to nil")
}
o.Set = true
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptUpdateUserRequestTrafficLimitStrategy) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptUpdateUserRequestTrafficLimitStrategy) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes UserItemInfoStatus as json.
func (o OptUserItemInfoStatus) Encode(e *jx.Encoder) {
if !o.Set {
return
}
e.Str(string(o.Value))
}
// Decode decodes UserItemInfoStatus from json.
func (o *OptUserItemInfoStatus) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptUserItemInfoStatus to nil")
}
o.Set = true
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptUserItemInfoStatus) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptUserItemInfoStatus) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes UserItemInfoTrafficLimitStrategy as json.
func (o OptUserItemInfoTrafficLimitStrategy) Encode(e *jx.Encoder) {
if !o.Set {
return
}
e.Str(string(o.Value))
}
// Decode decodes UserItemInfoTrafficLimitStrategy from json.
func (o *OptUserItemInfoTrafficLimitStrategy) Decode(d *jx.Decoder) error {
if o == nil {
return errors.New("invalid: unable to decode OptUserItemInfoTrafficLimitStrategy to nil")
}
o.Set = true
if err := o.Value.Decode(d); err != nil {
return err
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s OptUserItemInfoTrafficLimitStrategy) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *OptUserItemInfoTrafficLimitStrategy) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *PasskeyOptions) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *PasskeyOptions) encodeFields(e *jx.Encoder) {
{
if len(s.Response) != 0 {
e.FieldStart("response")
e.Raw(s.Response)
}
}
}
var jsonFieldsNameOfPasskeyOptions = [1]string{
0: "response",
}
// Decode decodes PasskeyOptions from json.
func (s *PasskeyOptions) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode PasskeyOptions to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.RawAppend(nil)
s.Response = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode PasskeyOptions")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfPasskeyOptions) {
name = jsonFieldsNameOfPasskeyOptions[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *PasskeyOptions) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *PasskeyOptions) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *PasskeySettings) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *PasskeySettings) encodeFields(e *jx.Encoder) {
{
e.FieldStart("enabled")
e.Bool(s.Enabled)
}
{
e.FieldStart("rpId")
s.RpId.Encode(e)
}
{
e.FieldStart("origin")
s.Origin.Encode(e)
}
}
var jsonFieldsNameOfPasskeySettings = [3]string{
0: "enabled",
1: "rpId",
2: "origin",
}
// Decode decodes PasskeySettings from json.
func (s *PasskeySettings) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode PasskeySettings to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "enabled":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Bool()
s.Enabled = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"enabled\"")
}
case "rpId":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.RpId.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"rpId\"")
}
case "origin":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.Origin.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"origin\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode PasskeySettings")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfPasskeySettings) {
name = jsonFieldsNameOfPasskeySettings[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *PasskeySettings) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *PasskeySettings) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *PasskeysResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *PasskeysResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfPasskeysResponse = [1]string{
0: "response",
}
// Decode decodes PasskeysResponse from json.
func (s *PasskeysResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode PasskeysResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode PasskeysResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfPasskeysResponse) {
name = jsonFieldsNameOfPasskeysResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *PasskeysResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *PasskeysResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *PasskeysResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *PasskeysResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("passkeys")
e.ArrStart()
for _, elem := range s.Passkeys {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfPasskeysResponseResponse = [1]string{
0: "passkeys",
}
// Decode decodes PasskeysResponseResponse from json.
func (s *PasskeysResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode PasskeysResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "passkeys":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Passkeys = make([]PasskeysResponseResponsePasskeysItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem PasskeysResponseResponsePasskeysItem
if err := elem.Decode(d); err != nil {
return err
}
s.Passkeys = append(s.Passkeys, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"passkeys\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode PasskeysResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfPasskeysResponseResponse) {
name = jsonFieldsNameOfPasskeysResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *PasskeysResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *PasskeysResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *PasskeysResponseResponsePasskeysItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *PasskeysResponseResponsePasskeysItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("id")
e.Str(s.ID)
}
{
e.FieldStart("name")
e.Str(s.Name)
}
{
e.FieldStart("createdAt")
json.EncodeDateTime(e, s.CreatedAt)
}
{
e.FieldStart("lastUsedAt")
json.EncodeDateTime(e, s.LastUsedAt)
}
}
var jsonFieldsNameOfPasskeysResponseResponsePasskeysItem = [4]string{
0: "id",
1: "name",
2: "createdAt",
3: "lastUsedAt",
}
// Decode decodes PasskeysResponseResponsePasskeysItem from json.
func (s *PasskeysResponseResponsePasskeysItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode PasskeysResponseResponsePasskeysItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "id":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.ID = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"id\"")
}
case "name":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "createdAt":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := json.DecodeDateTime(d)
s.CreatedAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"createdAt\"")
}
case "lastUsedAt":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := json.DecodeDateTime(d)
s.LastUsedAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"lastUsedAt\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode PasskeysResponseResponsePasskeysItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00001111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfPasskeysResponseResponsePasskeysItem) {
name = jsonFieldsNameOfPasskeysResponseResponsePasskeysItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *PasskeysResponseResponsePasskeysItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *PasskeysResponseResponsePasskeysItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *PasswordSettings) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *PasswordSettings) encodeFields(e *jx.Encoder) {
{
e.FieldStart("enabled")
e.Bool(s.Enabled)
}
}
var jsonFieldsNameOfPasswordSettings = [1]string{
0: "enabled",
}
// Decode decodes PasswordSettings from json.
func (s *PasswordSettings) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode PasswordSettings to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "enabled":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Bool()
s.Enabled = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"enabled\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode PasswordSettings")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfPasswordSettings) {
name = jsonFieldsNameOfPasswordSettings[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *PasswordSettings) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *PasswordSettings) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *PluginExecutorRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *PluginExecutorRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("command")
s.Command.Encode(e)
}
{
e.FieldStart("targetNodes")
s.TargetNodes.Encode(e)
}
}
var jsonFieldsNameOfPluginExecutorRequest = [2]string{
0: "command",
1: "targetNodes",
}
// Decode decodes PluginExecutorRequest from json.
func (s *PluginExecutorRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode PluginExecutorRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "command":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Command.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"command\"")
}
case "targetNodes":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.TargetNodes.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"targetNodes\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode PluginExecutorRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfPluginExecutorRequest) {
name = jsonFieldsNameOfPluginExecutorRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *PluginExecutorRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *PluginExecutorRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes PluginExecutorRequestCommand as json.
func (s PluginExecutorRequestCommand) Encode(e *jx.Encoder) {
switch s.Type {
case PluginExecutorRequestCommand0PluginExecutorRequestCommand:
s.PluginExecutorRequestCommand0.Encode(e)
case PluginExecutorRequestCommand1PluginExecutorRequestCommand:
s.PluginExecutorRequestCommand1.Encode(e)
case PluginExecutorRequestCommand2PluginExecutorRequestCommand:
s.PluginExecutorRequestCommand2.Encode(e)
}
}
func (s PluginExecutorRequestCommand) encodeFields(e *jx.Encoder) {
switch s.Type {
case PluginExecutorRequestCommand0PluginExecutorRequestCommand:
s.PluginExecutorRequestCommand0.encodeFields(e)
case PluginExecutorRequestCommand1PluginExecutorRequestCommand:
s.PluginExecutorRequestCommand1.encodeFields(e)
case PluginExecutorRequestCommand2PluginExecutorRequestCommand:
s.PluginExecutorRequestCommand2.encodeFields(e)
}
}
// Decode decodes PluginExecutorRequestCommand from json.
func (s *PluginExecutorRequestCommand) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode PluginExecutorRequestCommand to nil")
}
// Sum type fields.
if typ := d.Next(); typ != jx.Object {
return errors.Errorf("unexpected json type %q", typ)
}
var found bool
if err := d.Capture(func(d *jx.Decoder) error {
return d.ObjBytes(func(d *jx.Decoder, key []byte) error {
switch string(key) {
case "ips":
// Array element discrimination: peek into array to check first element type
if typ := d.Next(); typ != jx.Array {
return d.Skip()
}
// Capture array to peek at first element without consuming
if err := d.Capture(func(d *jx.Decoder) error {
// Check if array is empty
iter, err := d.ArrIter()
if err != nil {
return err
}
if !iter.Next() {
// Empty array - use first variant as default
if !found {
found = true
s.Type = PluginExecutorRequestCommand0PluginExecutorRequestCommand
}
return nil
}
elemType := d.Next()
switch elemType {
case jx.Object:
match := PluginExecutorRequestCommand0PluginExecutorRequestCommand
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case jx.String:
match := PluginExecutorRequestCommand1PluginExecutorRequestCommand
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
}
return nil
}); err != nil {
return err
}
case "command":
// Value-based discrimination: check enum value
if typ := d.Next(); typ != jx.String {
return d.Skip()
}
value, err := d.StrBytes()
if err != nil {
return err
}
switch string(value) {
case "blockIps":
match := PluginExecutorRequestCommand0PluginExecutorRequestCommand
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "recreateTables":
match := PluginExecutorRequestCommand2PluginExecutorRequestCommand
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "unblockIps":
match := PluginExecutorRequestCommand1PluginExecutorRequestCommand
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
default:
// Unknown enum value, ignore and continue
}
return nil
}
return d.Skip()
})
}); err != nil {
return errors.Wrap(err, "capture")
}
if !found {
return errors.New("unable to detect sum type variant")
}
switch s.Type {
case PluginExecutorRequestCommand0PluginExecutorRequestCommand:
if err := s.PluginExecutorRequestCommand0.Decode(d); err != nil {
return err
}
case PluginExecutorRequestCommand1PluginExecutorRequestCommand:
if err := s.PluginExecutorRequestCommand1.Decode(d); err != nil {
return err
}
case PluginExecutorRequestCommand2PluginExecutorRequestCommand:
if err := s.PluginExecutorRequestCommand2.Decode(d); err != nil {
return err
}
default:
return errors.Errorf("inferred invalid type: %s", s.Type)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s PluginExecutorRequestCommand) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *PluginExecutorRequestCommand) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *PluginExecutorRequestCommand0) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *PluginExecutorRequestCommand0) encodeFields(e *jx.Encoder) {
{
e.FieldStart("command")
s.Command.Encode(e)
}
{
e.FieldStart("ips")
e.ArrStart()
for _, elem := range s.Ips {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfPluginExecutorRequestCommand0 = [2]string{
0: "command",
1: "ips",
}
// Decode decodes PluginExecutorRequestCommand0 from json.
func (s *PluginExecutorRequestCommand0) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode PluginExecutorRequestCommand0 to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "command":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Command.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"command\"")
}
case "ips":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.Ips = make([]PluginExecutorRequestCommand0IpsItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem PluginExecutorRequestCommand0IpsItem
if err := elem.Decode(d); err != nil {
return err
}
s.Ips = append(s.Ips, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"ips\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode PluginExecutorRequestCommand0")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfPluginExecutorRequestCommand0) {
name = jsonFieldsNameOfPluginExecutorRequestCommand0[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *PluginExecutorRequestCommand0) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *PluginExecutorRequestCommand0) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes PluginExecutorRequestCommand0Command as json.
func (s PluginExecutorRequestCommand0Command) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes PluginExecutorRequestCommand0Command from json.
func (s *PluginExecutorRequestCommand0Command) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode PluginExecutorRequestCommand0Command to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch PluginExecutorRequestCommand0Command(v) {
case PluginExecutorRequestCommand0CommandBlockIps:
*s = PluginExecutorRequestCommand0CommandBlockIps
default:
*s = PluginExecutorRequestCommand0Command(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s PluginExecutorRequestCommand0Command) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *PluginExecutorRequestCommand0Command) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *PluginExecutorRequestCommand0IpsItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *PluginExecutorRequestCommand0IpsItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("ip")
e.Str(s.IP)
}
{
e.FieldStart("timeout")
e.Float64(s.Timeout)
}
}
var jsonFieldsNameOfPluginExecutorRequestCommand0IpsItem = [2]string{
0: "ip",
1: "timeout",
}
// Decode decodes PluginExecutorRequestCommand0IpsItem from json.
func (s *PluginExecutorRequestCommand0IpsItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode PluginExecutorRequestCommand0IpsItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "ip":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.IP = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"ip\"")
}
case "timeout":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.Timeout = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"timeout\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode PluginExecutorRequestCommand0IpsItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfPluginExecutorRequestCommand0IpsItem) {
name = jsonFieldsNameOfPluginExecutorRequestCommand0IpsItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *PluginExecutorRequestCommand0IpsItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *PluginExecutorRequestCommand0IpsItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *PluginExecutorRequestCommand1) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *PluginExecutorRequestCommand1) encodeFields(e *jx.Encoder) {
{
e.FieldStart("command")
s.Command.Encode(e)
}
{
e.FieldStart("ips")
e.ArrStart()
for _, elem := range s.Ips {
e.Str(elem)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfPluginExecutorRequestCommand1 = [2]string{
0: "command",
1: "ips",
}
// Decode decodes PluginExecutorRequestCommand1 from json.
func (s *PluginExecutorRequestCommand1) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode PluginExecutorRequestCommand1 to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "command":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Command.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"command\"")
}
case "ips":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.Ips = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.Ips = append(s.Ips, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"ips\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode PluginExecutorRequestCommand1")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfPluginExecutorRequestCommand1) {
name = jsonFieldsNameOfPluginExecutorRequestCommand1[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *PluginExecutorRequestCommand1) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *PluginExecutorRequestCommand1) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes PluginExecutorRequestCommand1Command as json.
func (s PluginExecutorRequestCommand1Command) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes PluginExecutorRequestCommand1Command from json.
func (s *PluginExecutorRequestCommand1Command) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode PluginExecutorRequestCommand1Command to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch PluginExecutorRequestCommand1Command(v) {
case PluginExecutorRequestCommand1CommandUnblockIps:
*s = PluginExecutorRequestCommand1CommandUnblockIps
default:
*s = PluginExecutorRequestCommand1Command(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s PluginExecutorRequestCommand1Command) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *PluginExecutorRequestCommand1Command) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *PluginExecutorRequestCommand2) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *PluginExecutorRequestCommand2) encodeFields(e *jx.Encoder) {
{
e.FieldStart("command")
s.Command.Encode(e)
}
}
var jsonFieldsNameOfPluginExecutorRequestCommand2 = [1]string{
0: "command",
}
// Decode decodes PluginExecutorRequestCommand2 from json.
func (s *PluginExecutorRequestCommand2) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode PluginExecutorRequestCommand2 to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "command":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Command.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"command\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode PluginExecutorRequestCommand2")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfPluginExecutorRequestCommand2) {
name = jsonFieldsNameOfPluginExecutorRequestCommand2[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *PluginExecutorRequestCommand2) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *PluginExecutorRequestCommand2) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes PluginExecutorRequestCommand2Command as json.
func (s PluginExecutorRequestCommand2Command) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes PluginExecutorRequestCommand2Command from json.
func (s *PluginExecutorRequestCommand2Command) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode PluginExecutorRequestCommand2Command to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch PluginExecutorRequestCommand2Command(v) {
case PluginExecutorRequestCommand2CommandRecreateTables:
*s = PluginExecutorRequestCommand2CommandRecreateTables
default:
*s = PluginExecutorRequestCommand2Command(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s PluginExecutorRequestCommand2Command) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *PluginExecutorRequestCommand2Command) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes PluginExecutorRequestTargetNodes as json.
func (s PluginExecutorRequestTargetNodes) Encode(e *jx.Encoder) {
switch s.Type {
case PluginExecutorRequestTargetNodes0PluginExecutorRequestTargetNodes:
s.PluginExecutorRequestTargetNodes0.Encode(e)
case PluginExecutorRequestTargetNodes1PluginExecutorRequestTargetNodes:
s.PluginExecutorRequestTargetNodes1.Encode(e)
}
}
func (s PluginExecutorRequestTargetNodes) encodeFields(e *jx.Encoder) {
switch s.Type {
case PluginExecutorRequestTargetNodes0PluginExecutorRequestTargetNodes:
s.PluginExecutorRequestTargetNodes0.encodeFields(e)
case PluginExecutorRequestTargetNodes1PluginExecutorRequestTargetNodes:
s.PluginExecutorRequestTargetNodes1.encodeFields(e)
}
}
// Decode decodes PluginExecutorRequestTargetNodes from json.
func (s *PluginExecutorRequestTargetNodes) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode PluginExecutorRequestTargetNodes to nil")
}
// Sum type fields.
if typ := d.Next(); typ != jx.Object {
return errors.Errorf("unexpected json type %q", typ)
}
var found bool
if err := d.Capture(func(d *jx.Decoder) error {
return d.ObjBytes(func(d *jx.Decoder, key []byte) error {
switch string(key) {
case "nodeUuids":
// Type-based discrimination: check if field has expected JSON type
if typ := d.Next(); typ != jx.Array {
// Field exists but has wrong type, not a match for this variant
return d.Skip()
}
match := PluginExecutorRequestTargetNodes1PluginExecutorRequestTargetNodes
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "target":
// Value-based discrimination: check enum value
if typ := d.Next(); typ != jx.String {
return d.Skip()
}
value, err := d.StrBytes()
if err != nil {
return err
}
switch string(value) {
case "allNodes":
match := PluginExecutorRequestTargetNodes0PluginExecutorRequestTargetNodes
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
case "specificNodes":
match := PluginExecutorRequestTargetNodes1PluginExecutorRequestTargetNodes
if found && s.Type != match {
s.Type = ""
return errors.Errorf("multiple oneOf matches: (%v, %v)", s.Type, match)
}
found = true
s.Type = match
default:
// Unknown enum value, ignore and continue
}
return nil
}
return d.Skip()
})
}); err != nil {
return errors.Wrap(err, "capture")
}
if !found {
return errors.New("unable to detect sum type variant")
}
switch s.Type {
case PluginExecutorRequestTargetNodes0PluginExecutorRequestTargetNodes:
if err := s.PluginExecutorRequestTargetNodes0.Decode(d); err != nil {
return err
}
case PluginExecutorRequestTargetNodes1PluginExecutorRequestTargetNodes:
if err := s.PluginExecutorRequestTargetNodes1.Decode(d); err != nil {
return err
}
default:
return errors.Errorf("inferred invalid type: %s", s.Type)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s PluginExecutorRequestTargetNodes) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *PluginExecutorRequestTargetNodes) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *PluginExecutorRequestTargetNodes0) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *PluginExecutorRequestTargetNodes0) encodeFields(e *jx.Encoder) {
{
e.FieldStart("target")
s.Target.Encode(e)
}
}
var jsonFieldsNameOfPluginExecutorRequestTargetNodes0 = [1]string{
0: "target",
}
// Decode decodes PluginExecutorRequestTargetNodes0 from json.
func (s *PluginExecutorRequestTargetNodes0) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode PluginExecutorRequestTargetNodes0 to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "target":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Target.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"target\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode PluginExecutorRequestTargetNodes0")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfPluginExecutorRequestTargetNodes0) {
name = jsonFieldsNameOfPluginExecutorRequestTargetNodes0[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *PluginExecutorRequestTargetNodes0) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *PluginExecutorRequestTargetNodes0) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes PluginExecutorRequestTargetNodes0Target as json.
func (s PluginExecutorRequestTargetNodes0Target) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes PluginExecutorRequestTargetNodes0Target from json.
func (s *PluginExecutorRequestTargetNodes0Target) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode PluginExecutorRequestTargetNodes0Target to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch PluginExecutorRequestTargetNodes0Target(v) {
case PluginExecutorRequestTargetNodes0TargetAllNodes:
*s = PluginExecutorRequestTargetNodes0TargetAllNodes
default:
*s = PluginExecutorRequestTargetNodes0Target(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s PluginExecutorRequestTargetNodes0Target) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *PluginExecutorRequestTargetNodes0Target) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *PluginExecutorRequestTargetNodes1) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *PluginExecutorRequestTargetNodes1) encodeFields(e *jx.Encoder) {
{
e.FieldStart("target")
s.Target.Encode(e)
}
{
e.FieldStart("nodeUuids")
e.ArrStart()
for _, elem := range s.NodeUuids {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfPluginExecutorRequestTargetNodes1 = [2]string{
0: "target",
1: "nodeUuids",
}
// Decode decodes PluginExecutorRequestTargetNodes1 from json.
func (s *PluginExecutorRequestTargetNodes1) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode PluginExecutorRequestTargetNodes1 to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "target":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Target.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"target\"")
}
case "nodeUuids":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.NodeUuids = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.NodeUuids = append(s.NodeUuids, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodeUuids\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode PluginExecutorRequestTargetNodes1")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfPluginExecutorRequestTargetNodes1) {
name = jsonFieldsNameOfPluginExecutorRequestTargetNodes1[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *PluginExecutorRequestTargetNodes1) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *PluginExecutorRequestTargetNodes1) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes PluginExecutorRequestTargetNodes1Target as json.
func (s PluginExecutorRequestTargetNodes1Target) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes PluginExecutorRequestTargetNodes1Target from json.
func (s *PluginExecutorRequestTargetNodes1Target) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode PluginExecutorRequestTargetNodes1Target to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch PluginExecutorRequestTargetNodes1Target(v) {
case PluginExecutorRequestTargetNodes1TargetSpecificNodes:
*s = PluginExecutorRequestTargetNodes1TargetSpecificNodes
default:
*s = PluginExecutorRequestTargetNodes1Target(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s PluginExecutorRequestTargetNodes1Target) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *PluginExecutorRequestTargetNodes1Target) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *Pocketid) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *Pocketid) encodeFields(e *jx.Encoder) {
{
e.FieldStart("enabled")
e.Bool(s.Enabled)
}
{
e.FieldStart("clientId")
s.ClientId.Encode(e)
}
{
e.FieldStart("clientSecret")
s.ClientSecret.Encode(e)
}
{
e.FieldStart("plainDomain")
s.PlainDomain.Encode(e)
}
{
e.FieldStart("allowedEmails")
e.ArrStart()
for _, elem := range s.AllowedEmails {
e.Str(elem)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfPocketid = [5]string{
0: "enabled",
1: "clientId",
2: "clientSecret",
3: "plainDomain",
4: "allowedEmails",
}
// Decode decodes Pocketid from json.
func (s *Pocketid) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode Pocketid to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "enabled":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Bool()
s.Enabled = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"enabled\"")
}
case "clientId":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.ClientId.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"clientId\"")
}
case "clientSecret":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.ClientSecret.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"clientSecret\"")
}
case "plainDomain":
requiredBitSet[0] |= 1 << 3
if err := func() error {
if err := s.PlainDomain.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"plainDomain\"")
}
case "allowedEmails":
requiredBitSet[0] |= 1 << 4
if err := func() error {
s.AllowedEmails = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.AllowedEmails = append(s.AllowedEmails, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"allowedEmails\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode Pocketid")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00011111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfPocketid) {
name = jsonFieldsNameOfPocketid[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *Pocketid) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *Pocketid) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ProfileModificationRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ProfileModificationRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuids")
e.ArrStart()
for _, elem := range s.Uuids {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
{
e.FieldStart("configProfile")
s.ConfigProfile.Encode(e)
}
}
var jsonFieldsNameOfProfileModificationRequest = [2]string{
0: "uuids",
1: "configProfile",
}
// Decode decodes ProfileModificationRequest from json.
func (s *ProfileModificationRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ProfileModificationRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuids":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Uuids = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.Uuids = append(s.Uuids, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuids\"")
}
case "configProfile":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.ConfigProfile.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"configProfile\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ProfileModificationRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfProfileModificationRequest) {
name = jsonFieldsNameOfProfileModificationRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ProfileModificationRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ProfileModificationRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ProfileModificationRequestConfigProfile) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ProfileModificationRequestConfigProfile) encodeFields(e *jx.Encoder) {
{
e.FieldStart("activeConfigProfileUuid")
json.EncodeUUID(e, s.ActiveConfigProfileUuid)
}
{
e.FieldStart("activeInbounds")
e.ArrStart()
for _, elem := range s.ActiveInbounds {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfProfileModificationRequestConfigProfile = [2]string{
0: "activeConfigProfileUuid",
1: "activeInbounds",
}
// Decode decodes ProfileModificationRequestConfigProfile from json.
func (s *ProfileModificationRequestConfigProfile) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ProfileModificationRequestConfigProfile to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "activeConfigProfileUuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.ActiveConfigProfileUuid = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"activeConfigProfileUuid\"")
}
case "activeInbounds":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.ActiveInbounds = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.ActiveInbounds = append(s.ActiveInbounds, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"activeInbounds\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ProfileModificationRequestConfigProfile")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfProfileModificationRequestConfigProfile) {
name = jsonFieldsNameOfProfileModificationRequestConfigProfile[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ProfileModificationRequestConfigProfile) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ProfileModificationRequestConfigProfile) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *Provider) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *Provider) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("name")
e.Str(s.Name)
}
{
e.FieldStart("faviconLink")
s.FaviconLink.Encode(e)
}
{
e.FieldStart("loginUrl")
s.LoginUrl.Encode(e)
}
{
e.FieldStart("createdAt")
json.EncodeDateTime(e, s.CreatedAt)
}
{
e.FieldStart("updatedAt")
json.EncodeDateTime(e, s.UpdatedAt)
}
{
e.FieldStart("billingHistory")
s.BillingHistory.Encode(e)
}
{
e.FieldStart("billingNodes")
e.ArrStart()
for _, elem := range s.BillingNodes {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfProvider = [8]string{
0: "uuid",
1: "name",
2: "faviconLink",
3: "loginUrl",
4: "createdAt",
5: "updatedAt",
6: "billingHistory",
7: "billingNodes",
}
// Decode decodes Provider from json.
func (s *Provider) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode Provider to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "name":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "faviconLink":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.FaviconLink.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"faviconLink\"")
}
case "loginUrl":
requiredBitSet[0] |= 1 << 3
if err := func() error {
if err := s.LoginUrl.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"loginUrl\"")
}
case "createdAt":
requiredBitSet[0] |= 1 << 4
if err := func() error {
v, err := json.DecodeDateTime(d)
s.CreatedAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"createdAt\"")
}
case "updatedAt":
requiredBitSet[0] |= 1 << 5
if err := func() error {
v, err := json.DecodeDateTime(d)
s.UpdatedAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"updatedAt\"")
}
case "billingHistory":
requiredBitSet[0] |= 1 << 6
if err := func() error {
if err := s.BillingHistory.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"billingHistory\"")
}
case "billingNodes":
requiredBitSet[0] |= 1 << 7
if err := func() error {
s.BillingNodes = make([]BillingNode, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem BillingNode
if err := elem.Decode(d); err != nil {
return err
}
s.BillingNodes = append(s.BillingNodes, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"billingNodes\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode Provider")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b11111111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfProvider) {
name = jsonFieldsNameOfProvider[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *Provider) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *Provider) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ProviderItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ProviderItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("name")
e.Str(s.Name)
}
{
e.FieldStart("faviconLink")
s.FaviconLink.Encode(e)
}
{
e.FieldStart("loginUrl")
s.LoginUrl.Encode(e)
}
{
e.FieldStart("createdAt")
json.EncodeDateTime(e, s.CreatedAt)
}
{
e.FieldStart("updatedAt")
json.EncodeDateTime(e, s.UpdatedAt)
}
}
var jsonFieldsNameOfProviderItem = [6]string{
0: "uuid",
1: "name",
2: "faviconLink",
3: "loginUrl",
4: "createdAt",
5: "updatedAt",
}
// Decode decodes ProviderItem from json.
func (s *ProviderItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ProviderItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "name":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "faviconLink":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.FaviconLink.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"faviconLink\"")
}
case "loginUrl":
requiredBitSet[0] |= 1 << 3
if err := func() error {
if err := s.LoginUrl.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"loginUrl\"")
}
case "createdAt":
requiredBitSet[0] |= 1 << 4
if err := func() error {
v, err := json.DecodeDateTime(d)
s.CreatedAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"createdAt\"")
}
case "updatedAt":
requiredBitSet[0] |= 1 << 5
if err := func() error {
v, err := json.DecodeDateTime(d)
s.UpdatedAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"updatedAt\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ProviderItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00111111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfProviderItem) {
name = jsonFieldsNameOfProviderItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ProviderItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ProviderItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *Record) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *Record) encodeFields(e *jx.Encoder) {
{
e.FieldStart("id")
e.Float64(s.ID)
}
{
e.FieldStart("userId")
e.Float64(s.UserId)
}
{
e.FieldStart("requestAt")
json.EncodeDateTime(e, s.RequestAt)
}
{
e.FieldStart("requestIp")
s.RequestIp.Encode(e)
}
{
e.FieldStart("userAgent")
s.UserAgent.Encode(e)
}
}
var jsonFieldsNameOfRecord = [5]string{
0: "id",
1: "userId",
2: "requestAt",
3: "requestIp",
4: "userAgent",
}
// Decode decodes Record from json.
func (s *Record) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode Record to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "id":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.ID = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"id\"")
}
case "userId":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.UserId = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"userId\"")
}
case "requestAt":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := json.DecodeDateTime(d)
s.RequestAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"requestAt\"")
}
case "requestIp":
requiredBitSet[0] |= 1 << 3
if err := func() error {
if err := s.RequestIp.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"requestIp\"")
}
case "userAgent":
requiredBitSet[0] |= 1 << 4
if err := func() error {
if err := s.UserAgent.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"userAgent\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode Record")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00011111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfRecord) {
name = jsonFieldsNameOfRecord[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *Record) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *Record) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *RegisterRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *RegisterRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("username")
e.Str(s.Username)
}
{
e.FieldStart("password")
e.Str(s.Password)
}
}
var jsonFieldsNameOfRegisterRequest = [2]string{
0: "username",
1: "password",
}
// Decode decodes RegisterRequest from json.
func (s *RegisterRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode RegisterRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "username":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Username = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"username\"")
}
case "password":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Password = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"password\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode RegisterRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfRegisterRequest) {
name = jsonFieldsNameOfRegisterRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *RegisterRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *RegisterRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ReorderHostRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ReorderHostRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("hosts")
e.ArrStart()
for _, elem := range s.Hosts {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfReorderHostRequest = [1]string{
0: "hosts",
}
// Decode decodes ReorderHostRequest from json.
func (s *ReorderHostRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ReorderHostRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "hosts":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Hosts = make([]ReorderRequestItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem ReorderRequestItem
if err := elem.Decode(d); err != nil {
return err
}
s.Hosts = append(s.Hosts, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"hosts\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ReorderHostRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfReorderHostRequest) {
name = jsonFieldsNameOfReorderHostRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ReorderHostRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ReorderHostRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ReorderHostResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ReorderHostResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfReorderHostResponse = [1]string{
0: "response",
}
// Decode decodes ReorderHostResponse from json.
func (s *ReorderHostResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ReorderHostResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ReorderHostResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfReorderHostResponse) {
name = jsonFieldsNameOfReorderHostResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ReorderHostResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ReorderHostResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ReorderHostResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ReorderHostResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("isUpdated")
e.Bool(s.IsUpdated)
}
}
var jsonFieldsNameOfReorderHostResponseResponse = [1]string{
0: "isUpdated",
}
// Decode decodes ReorderHostResponseResponse from json.
func (s *ReorderHostResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ReorderHostResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "isUpdated":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Bool()
s.IsUpdated = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isUpdated\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ReorderHostResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfReorderHostResponseResponse) {
name = jsonFieldsNameOfReorderHostResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ReorderHostResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ReorderHostResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ReorderNodeRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ReorderNodeRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("nodes")
e.ArrStart()
for _, elem := range s.Nodes {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfReorderNodeRequest = [1]string{
0: "nodes",
}
// Decode decodes ReorderNodeRequest from json.
func (s *ReorderNodeRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ReorderNodeRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "nodes":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Nodes = make([]ReorderRequestItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem ReorderRequestItem
if err := elem.Decode(d); err != nil {
return err
}
s.Nodes = append(s.Nodes, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodes\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ReorderNodeRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfReorderNodeRequest) {
name = jsonFieldsNameOfReorderNodeRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ReorderNodeRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ReorderNodeRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ReorderRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ReorderRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("items")
e.ArrStart()
for _, elem := range s.Items {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfReorderRequest = [1]string{
0: "items",
}
// Decode decodes ReorderRequest from json.
func (s *ReorderRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ReorderRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "items":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Items = make([]ReorderRequestItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem ReorderRequestItem
if err := elem.Decode(d); err != nil {
return err
}
s.Items = append(s.Items, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"items\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ReorderRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfReorderRequest) {
name = jsonFieldsNameOfReorderRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ReorderRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ReorderRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ReorderRequestItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ReorderRequestItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("viewPosition")
e.Int(s.ViewPosition)
}
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
}
var jsonFieldsNameOfReorderRequestItem = [2]string{
0: "viewPosition",
1: "uuid",
}
// Decode decodes ReorderRequestItem from json.
func (s *ReorderRequestItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ReorderRequestItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "viewPosition":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Int()
s.ViewPosition = int(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"viewPosition\"")
}
case "uuid":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ReorderRequestItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfReorderRequestItem) {
name = jsonFieldsNameOfReorderRequestItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ReorderRequestItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ReorderRequestItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ReportItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ReportItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("actionReport")
s.ActionReport.Encode(e)
}
{
e.FieldStart("xrayReport")
s.XrayReport.Encode(e)
}
}
var jsonFieldsNameOfReportItem = [2]string{
0: "actionReport",
1: "xrayReport",
}
// Decode decodes ReportItem from json.
func (s *ReportItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ReportItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "actionReport":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.ActionReport.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"actionReport\"")
}
case "xrayReport":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.XrayReport.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"xrayReport\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ReportItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfReportItem) {
name = jsonFieldsNameOfReportItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ReportItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ReportItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ResolveUserRequestBody) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ResolveUserRequestBody) encodeFields(e *jx.Encoder) {
{
if s.UUID.Set {
e.FieldStart("uuid")
s.UUID.Encode(e)
}
}
{
if s.ID.Set {
e.FieldStart("id")
s.ID.Encode(e)
}
}
{
if s.ShortUuid.Set {
e.FieldStart("shortUuid")
s.ShortUuid.Encode(e)
}
}
{
if s.Username.Set {
e.FieldStart("username")
s.Username.Encode(e)
}
}
}
var jsonFieldsNameOfResolveUserRequestBody = [4]string{
0: "uuid",
1: "id",
2: "shortUuid",
3: "username",
}
// Decode decodes ResolveUserRequestBody from json.
func (s *ResolveUserRequestBody) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ResolveUserRequestBody to nil")
}
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
if err := func() error {
s.UUID.Reset()
if err := s.UUID.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "id":
if err := func() error {
s.ID.Reset()
if err := s.ID.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"id\"")
}
case "shortUuid":
if err := func() error {
s.ShortUuid.Reset()
if err := s.ShortUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"shortUuid\"")
}
case "username":
if err := func() error {
s.Username.Reset()
if err := s.Username.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"username\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ResolveUserRequestBody")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ResolveUserRequestBody) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ResolveUserRequestBody) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ResolveUserResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ResolveUserResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfResolveUserResponse = [1]string{
0: "response",
}
// Decode decodes ResolveUserResponse from json.
func (s *ResolveUserResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ResolveUserResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ResolveUserResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfResolveUserResponse) {
name = jsonFieldsNameOfResolveUserResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ResolveUserResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ResolveUserResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ResolveUserResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ResolveUserResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("username")
e.Str(s.Username)
}
{
e.FieldStart("id")
e.Float64(s.ID)
}
{
e.FieldStart("shortUuid")
e.Str(s.ShortUuid)
}
}
var jsonFieldsNameOfResolveUserResponseResponse = [4]string{
0: "uuid",
1: "username",
2: "id",
3: "shortUuid",
}
// Decode decodes ResolveUserResponseResponse from json.
func (s *ResolveUserResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ResolveUserResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "username":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Username = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"username\"")
}
case "id":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Float64()
s.ID = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"id\"")
}
case "shortUuid":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Str()
s.ShortUuid = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"shortUuid\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ResolveUserResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00001111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfResolveUserResponseResponse) {
name = jsonFieldsNameOfResolveUserResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ResolveUserResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ResolveUserResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ResponseModification) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ResponseModification) encodeFields(e *jx.Encoder) {
{
if s.Headers != nil {
e.FieldStart("headers")
e.ArrStart()
for _, elem := range s.Headers {
elem.Encode(e)
}
e.ArrEnd()
}
}
{
if s.ApplyHeadersToEnd.Set {
e.FieldStart("applyHeadersToEnd")
s.ApplyHeadersToEnd.Encode(e)
}
}
{
if s.SubscriptionTemplate.Set {
e.FieldStart("subscriptionTemplate")
s.SubscriptionTemplate.Encode(e)
}
}
{
if s.IgnoreHostXrayJsonTemplate.Set {
e.FieldStart("ignoreHostXrayJsonTemplate")
s.IgnoreHostXrayJsonTemplate.Encode(e)
}
}
{
if s.IgnoreServeJsonAtBaseSubscription.Set {
e.FieldStart("ignoreServeJsonAtBaseSubscription")
s.IgnoreServeJsonAtBaseSubscription.Encode(e)
}
}
{
if s.AdditionalExtendedClientsRegex != nil {
e.FieldStart("additionalExtendedClientsRegex")
e.ArrStart()
for _, elem := range s.AdditionalExtendedClientsRegex {
e.Str(elem)
}
e.ArrEnd()
}
}
{
if s.DisableHwidCheck.Set {
e.FieldStart("disableHwidCheck")
s.DisableHwidCheck.Encode(e)
}
}
{
if s.Encryption.Set {
e.FieldStart("encryption")
s.Encryption.Encode(e)
}
}
{
if s.ExcludeHostsByTags != nil {
e.FieldStart("excludeHostsByTags")
e.ArrStart()
for _, elem := range s.ExcludeHostsByTags {
e.Str(elem)
}
e.ArrEnd()
}
}
}
var jsonFieldsNameOfResponseModification = [9]string{
0: "headers",
1: "applyHeadersToEnd",
2: "subscriptionTemplate",
3: "ignoreHostXrayJsonTemplate",
4: "ignoreServeJsonAtBaseSubscription",
5: "additionalExtendedClientsRegex",
6: "disableHwidCheck",
7: "encryption",
8: "excludeHostsByTags",
}
// Decode decodes ResponseModification from json.
func (s *ResponseModification) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ResponseModification to nil")
}
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "headers":
if err := func() error {
s.Headers = make([]Header, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem Header
if err := elem.Decode(d); err != nil {
return err
}
s.Headers = append(s.Headers, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"headers\"")
}
case "applyHeadersToEnd":
if err := func() error {
s.ApplyHeadersToEnd.Reset()
if err := s.ApplyHeadersToEnd.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"applyHeadersToEnd\"")
}
case "subscriptionTemplate":
if err := func() error {
s.SubscriptionTemplate.Reset()
if err := s.SubscriptionTemplate.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"subscriptionTemplate\"")
}
case "ignoreHostXrayJsonTemplate":
if err := func() error {
s.IgnoreHostXrayJsonTemplate.Reset()
if err := s.IgnoreHostXrayJsonTemplate.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"ignoreHostXrayJsonTemplate\"")
}
case "ignoreServeJsonAtBaseSubscription":
if err := func() error {
s.IgnoreServeJsonAtBaseSubscription.Reset()
if err := s.IgnoreServeJsonAtBaseSubscription.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"ignoreServeJsonAtBaseSubscription\"")
}
case "additionalExtendedClientsRegex":
if err := func() error {
s.AdditionalExtendedClientsRegex = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.AdditionalExtendedClientsRegex = append(s.AdditionalExtendedClientsRegex, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"additionalExtendedClientsRegex\"")
}
case "disableHwidCheck":
if err := func() error {
s.DisableHwidCheck.Reset()
if err := s.DisableHwidCheck.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"disableHwidCheck\"")
}
case "encryption":
if err := func() error {
s.Encryption.Reset()
if err := s.Encryption.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"encryption\"")
}
case "excludeHostsByTags":
if err := func() error {
s.ExcludeHostsByTags = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.ExcludeHostsByTags = append(s.ExcludeHostsByTags, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"excludeHostsByTags\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ResponseModification")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ResponseModification) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ResponseModification) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ResponseRules) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ResponseRules) encodeFields(e *jx.Encoder) {
{
e.FieldStart("version")
s.Version.Encode(e)
}
{
if s.Settings.Set {
e.FieldStart("settings")
s.Settings.Encode(e)
}
}
{
e.FieldStart("rules")
e.ArrStart()
for _, elem := range s.Rules {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfResponseRules = [3]string{
0: "version",
1: "settings",
2: "rules",
}
// Decode decodes ResponseRules from json.
func (s *ResponseRules) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ResponseRules to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "version":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Version.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"version\"")
}
case "settings":
if err := func() error {
s.Settings.Reset()
if err := s.Settings.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"settings\"")
}
case "rules":
requiredBitSet[0] |= 1 << 2
if err := func() error {
s.Rules = make([]Rule, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem Rule
if err := elem.Decode(d); err != nil {
return err
}
s.Rules = append(s.Rules, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"rules\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ResponseRules")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000101,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfResponseRules) {
name = jsonFieldsNameOfResponseRules[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ResponseRules) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ResponseRules) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes ResponseRulesVersion as json.
func (s ResponseRulesVersion) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes ResponseRulesVersion from json.
func (s *ResponseRulesVersion) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ResponseRulesVersion to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch ResponseRulesVersion(v) {
case ResponseRulesVersion1:
*s = ResponseRulesVersion1
default:
*s = ResponseRulesVersion(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s ResponseRulesVersion) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ResponseRulesVersion) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *RevokeUserSubscriptionBody) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *RevokeUserSubscriptionBody) encodeFields(e *jx.Encoder) {
{
if s.RevokeOnlyPasswords.Set {
e.FieldStart("revokeOnlyPasswords")
s.RevokeOnlyPasswords.Encode(e)
}
}
{
if s.ShortUuid.Set {
e.FieldStart("shortUuid")
s.ShortUuid.Encode(e)
}
}
}
var jsonFieldsNameOfRevokeUserSubscriptionBody = [2]string{
0: "revokeOnlyPasswords",
1: "shortUuid",
}
// Decode decodes RevokeUserSubscriptionBody from json.
func (s *RevokeUserSubscriptionBody) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode RevokeUserSubscriptionBody to nil")
}
s.setDefaults()
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "revokeOnlyPasswords":
if err := func() error {
s.RevokeOnlyPasswords.Reset()
if err := s.RevokeOnlyPasswords.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"revokeOnlyPasswords\"")
}
case "shortUuid":
if err := func() error {
s.ShortUuid.Reset()
if err := s.ShortUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"shortUuid\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode RevokeUserSubscriptionBody")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *RevokeUserSubscriptionBody) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *RevokeUserSubscriptionBody) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *Rule) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *Rule) encodeFields(e *jx.Encoder) {
{
e.FieldStart("name")
e.Str(s.Name)
}
{
if s.Description.Set {
e.FieldStart("description")
s.Description.Encode(e)
}
}
{
e.FieldStart("enabled")
e.Bool(s.Enabled)
}
{
e.FieldStart("operator")
s.Operator.Encode(e)
}
{
e.FieldStart("conditions")
e.ArrStart()
for _, elem := range s.Conditions {
elem.Encode(e)
}
e.ArrEnd()
}
{
e.FieldStart("responseType")
s.ResponseType.Encode(e)
}
{
if s.ResponseModifications.Set {
e.FieldStart("responseModifications")
s.ResponseModifications.Encode(e)
}
}
}
var jsonFieldsNameOfRule = [7]string{
0: "name",
1: "description",
2: "enabled",
3: "operator",
4: "conditions",
5: "responseType",
6: "responseModifications",
}
// Decode decodes Rule from json.
func (s *Rule) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode Rule to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "name":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "description":
if err := func() error {
s.Description.Reset()
if err := s.Description.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"description\"")
}
case "enabled":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Bool()
s.Enabled = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"enabled\"")
}
case "operator":
requiredBitSet[0] |= 1 << 3
if err := func() error {
if err := s.Operator.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"operator\"")
}
case "conditions":
requiredBitSet[0] |= 1 << 4
if err := func() error {
s.Conditions = make([]Condition, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem Condition
if err := elem.Decode(d); err != nil {
return err
}
s.Conditions = append(s.Conditions, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"conditions\"")
}
case "responseType":
requiredBitSet[0] |= 1 << 5
if err := func() error {
if err := s.ResponseType.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"responseType\"")
}
case "responseModifications":
if err := func() error {
s.ResponseModifications.Reset()
if err := s.ResponseModifications.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"responseModifications\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode Rule")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00111101,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfRule) {
name = jsonFieldsNameOfRule[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *Rule) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *Rule) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes RuleOperator as json.
func (s RuleOperator) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes RuleOperator from json.
func (s *RuleOperator) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode RuleOperator to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch RuleOperator(v) {
case RuleOperatorAND:
*s = RuleOperatorAND
case RuleOperatorOR:
*s = RuleOperatorOR
default:
*s = RuleOperator(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s RuleOperator) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *RuleOperator) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes RuleResponseType as json.
func (s RuleResponseType) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes RuleResponseType from json.
func (s *RuleResponseType) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode RuleResponseType to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch RuleResponseType(v) {
case RuleResponseTypeXRAYJSON:
*s = RuleResponseTypeXRAYJSON
case RuleResponseTypeXRAYBASE64:
*s = RuleResponseTypeXRAYBASE64
case RuleResponseTypeMIHOMO:
*s = RuleResponseTypeMIHOMO
case RuleResponseTypeSTASH:
*s = RuleResponseTypeSTASH
case RuleResponseTypeCLASH:
*s = RuleResponseTypeCLASH
case RuleResponseTypeSINGBOX:
*s = RuleResponseTypeSINGBOX
case RuleResponseTypeBROWSER:
*s = RuleResponseTypeBROWSER
case RuleResponseTypeBLOCK:
*s = RuleResponseTypeBLOCK
case RuleResponseTypeSTATUSCODE404:
*s = RuleResponseTypeSTATUSCODE404
case RuleResponseTypeSTATUSCODE451:
*s = RuleResponseTypeSTATUSCODE451
case RuleResponseTypeSOCKETDROP:
*s = RuleResponseTypeSOCKETDROP
default:
*s = RuleResponseType(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s RuleResponseType) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *RuleResponseType) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *SettingsResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *SettingsResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfSettingsResponse = [1]string{
0: "response",
}
// Decode decodes SettingsResponse from json.
func (s *SettingsResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode SettingsResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode SettingsResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfSettingsResponse) {
name = jsonFieldsNameOfSettingsResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *SettingsResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *SettingsResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *SettingsResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *SettingsResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("passkeySettings")
s.PasskeySettings.Encode(e)
}
{
e.FieldStart("oauth2Settings")
s.Oauth2Settings.Encode(e)
}
{
e.FieldStart("passwordSettings")
s.PasswordSettings.Encode(e)
}
{
e.FieldStart("brandingSettings")
s.BrandingSettings.Encode(e)
}
}
var jsonFieldsNameOfSettingsResponseResponse = [4]string{
0: "passkeySettings",
1: "oauth2Settings",
2: "passwordSettings",
3: "brandingSettings",
}
// Decode decodes SettingsResponseResponse from json.
func (s *SettingsResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode SettingsResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "passkeySettings":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.PasskeySettings.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"passkeySettings\"")
}
case "oauth2Settings":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.Oauth2Settings.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"oauth2Settings\"")
}
case "passwordSettings":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.PasswordSettings.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"passwordSettings\"")
}
case "brandingSettings":
requiredBitSet[0] |= 1 << 3
if err := func() error {
if err := s.BrandingSettings.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"brandingSettings\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode SettingsResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00001111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfSettingsResponseResponse) {
name = jsonFieldsNameOfSettingsResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *SettingsResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *SettingsResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *SnippetRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *SnippetRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("name")
e.Str(s.Name)
}
{
e.FieldStart("snippet")
e.ArrStart()
for _, elem := range s.Snippet {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfSnippetRequest = [2]string{
0: "name",
1: "snippet",
}
// Decode decodes SnippetRequest from json.
func (s *SnippetRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode SnippetRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "name":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "snippet":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.Snippet = make([]SnippetRequestSnippetItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem SnippetRequestSnippetItem
if err := elem.Decode(d); err != nil {
return err
}
s.Snippet = append(s.Snippet, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"snippet\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode SnippetRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfSnippetRequest) {
name = jsonFieldsNameOfSnippetRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *SnippetRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *SnippetRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *SnippetRequestSnippetItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *SnippetRequestSnippetItem) encodeFields(e *jx.Encoder) {
}
var jsonFieldsNameOfSnippetRequestSnippetItem = [0]string{}
// Decode decodes SnippetRequestSnippetItem from json.
func (s *SnippetRequestSnippetItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode SnippetRequestSnippetItem to nil")
}
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
default:
return d.Skip()
}
}); err != nil {
return errors.Wrap(err, "decode SnippetRequestSnippetItem")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *SnippetRequestSnippetItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *SnippetRequestSnippetItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *SnippetsResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *SnippetsResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfSnippetsResponse = [1]string{
0: "response",
}
// Decode decodes SnippetsResponse from json.
func (s *SnippetsResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode SnippetsResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode SnippetsResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfSnippetsResponse) {
name = jsonFieldsNameOfSnippetsResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *SnippetsResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *SnippetsResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *SnippetsResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *SnippetsResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("total")
e.Float64(s.Total)
}
{
e.FieldStart("snippets")
e.ArrStart()
for _, elem := range s.Snippets {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfSnippetsResponseResponse = [2]string{
0: "total",
1: "snippets",
}
// Decode decodes SnippetsResponseResponse from json.
func (s *SnippetsResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode SnippetsResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "total":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.Total = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"total\"")
}
case "snippets":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.Snippets = make([]SnippetsResponseResponseSnippetsItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem SnippetsResponseResponseSnippetsItem
if err := elem.Decode(d); err != nil {
return err
}
s.Snippets = append(s.Snippets, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"snippets\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode SnippetsResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfSnippetsResponseResponse) {
name = jsonFieldsNameOfSnippetsResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *SnippetsResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *SnippetsResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *SnippetsResponseResponseSnippetsItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *SnippetsResponseResponseSnippetsItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("name")
e.Str(s.Name)
}
{
if len(s.Snippet) != 0 {
e.FieldStart("snippet")
e.Raw(s.Snippet)
}
}
}
var jsonFieldsNameOfSnippetsResponseResponseSnippetsItem = [2]string{
0: "name",
1: "snippet",
}
// Decode decodes SnippetsResponseResponseSnippetsItem from json.
func (s *SnippetsResponseResponseSnippetsItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode SnippetsResponseResponseSnippetsItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "name":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "snippet":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.RawAppend(nil)
s.Snippet = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"snippet\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode SnippetsResponseResponseSnippetsItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfSnippetsResponseResponseSnippetsItem) {
name = jsonFieldsNameOfSnippetsResponseResponseSnippetsItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *SnippetsResponseResponseSnippetsItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *SnippetsResponseResponseSnippetsItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *Stat) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *Stat) encodeFields(e *jx.Encoder) {
{
e.FieldStart("memoryFree")
e.Float64(s.MemoryFree)
}
{
e.FieldStart("memoryUsed")
e.Float64(s.MemoryUsed)
}
{
e.FieldStart("uptime")
e.Float64(s.Uptime)
}
{
e.FieldStart("loadAvg")
e.ArrStart()
for _, elem := range s.LoadAvg {
e.Float64(elem)
}
e.ArrEnd()
}
{
e.FieldStart("interface")
s.Interface.Encode(e)
}
}
var jsonFieldsNameOfStat = [5]string{
0: "memoryFree",
1: "memoryUsed",
2: "uptime",
3: "loadAvg",
4: "interface",
}
// Decode decodes Stat from json.
func (s *Stat) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode Stat to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "memoryFree":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.MemoryFree = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"memoryFree\"")
}
case "memoryUsed":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.MemoryUsed = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"memoryUsed\"")
}
case "uptime":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Float64()
s.Uptime = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uptime\"")
}
case "loadAvg":
requiredBitSet[0] |= 1 << 3
if err := func() error {
s.LoadAvg = make([]float64, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem float64
v, err := d.Float64()
elem = float64(v)
if err != nil {
return err
}
s.LoadAvg = append(s.LoadAvg, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"loadAvg\"")
}
case "interface":
requiredBitSet[0] |= 1 << 4
if err := func() error {
if err := s.Interface.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"interface\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode Stat")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00011111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfStat) {
name = jsonFieldsNameOfStat[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *Stat) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *Stat) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *StatsNodeUsersUsageResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *StatsNodeUsersUsageResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfStatsNodeUsersUsageResponseResponse = [1]string{
0: "response",
}
// Decode decodes StatsNodeUsersUsageResponseResponse from json.
func (s *StatsNodeUsersUsageResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode StatsNodeUsersUsageResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode StatsNodeUsersUsageResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfStatsNodeUsersUsageResponseResponse) {
name = jsonFieldsNameOfStatsNodeUsersUsageResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *StatsNodeUsersUsageResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *StatsNodeUsersUsageResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *StatsNodeUsersUsageResponseResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *StatsNodeUsersUsageResponseResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("categories")
e.ArrStart()
for _, elem := range s.Categories {
e.Str(elem)
}
e.ArrEnd()
}
{
e.FieldStart("sparklineData")
e.ArrStart()
for _, elem := range s.SparklineData {
e.Float64(elem)
}
e.ArrEnd()
}
{
e.FieldStart("topUsers")
e.ArrStart()
for _, elem := range s.TopUsers {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfStatsNodeUsersUsageResponseResponseResponse = [3]string{
0: "categories",
1: "sparklineData",
2: "topUsers",
}
// Decode decodes StatsNodeUsersUsageResponseResponseResponse from json.
func (s *StatsNodeUsersUsageResponseResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode StatsNodeUsersUsageResponseResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "categories":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Categories = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.Categories = append(s.Categories, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"categories\"")
}
case "sparklineData":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.SparklineData = make([]float64, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem float64
v, err := d.Float64()
elem = float64(v)
if err != nil {
return err
}
s.SparklineData = append(s.SparklineData, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"sparklineData\"")
}
case "topUsers":
requiredBitSet[0] |= 1 << 2
if err := func() error {
s.TopUsers = make([]StatsNodeUsersUsageResponseResponseResponseTopUsersItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem StatsNodeUsersUsageResponseResponseResponseTopUsersItem
if err := elem.Decode(d); err != nil {
return err
}
s.TopUsers = append(s.TopUsers, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"topUsers\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode StatsNodeUsersUsageResponseResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfStatsNodeUsersUsageResponseResponseResponse) {
name = jsonFieldsNameOfStatsNodeUsersUsageResponseResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *StatsNodeUsersUsageResponseResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *StatsNodeUsersUsageResponseResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *StatsNodeUsersUsageResponseResponseResponseTopUsersItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *StatsNodeUsersUsageResponseResponseResponseTopUsersItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("color")
e.Str(s.Color)
}
{
e.FieldStart("username")
e.Str(s.Username)
}
{
e.FieldStart("total")
e.Float64(s.Total)
}
}
var jsonFieldsNameOfStatsNodeUsersUsageResponseResponseResponseTopUsersItem = [3]string{
0: "color",
1: "username",
2: "total",
}
// Decode decodes StatsNodeUsersUsageResponseResponseResponseTopUsersItem from json.
func (s *StatsNodeUsersUsageResponseResponseResponseTopUsersItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode StatsNodeUsersUsageResponseResponseResponseTopUsersItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "color":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Color = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"color\"")
}
case "username":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Username = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"username\"")
}
case "total":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Float64()
s.Total = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"total\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode StatsNodeUsersUsageResponseResponseResponseTopUsersItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfStatsNodeUsersUsageResponseResponseResponseTopUsersItem) {
name = jsonFieldsNameOfStatsNodeUsersUsageResponseResponseResponseTopUsersItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *StatsNodeUsersUsageResponseResponseResponseTopUsersItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *StatsNodeUsersUsageResponseResponseResponseTopUsersItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *StatsUserUsageResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *StatsUserUsageResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfStatsUserUsageResponseResponse = [1]string{
0: "response",
}
// Decode decodes StatsUserUsageResponseResponse from json.
func (s *StatsUserUsageResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode StatsUserUsageResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode StatsUserUsageResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfStatsUserUsageResponseResponse) {
name = jsonFieldsNameOfStatsUserUsageResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *StatsUserUsageResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *StatsUserUsageResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *StatsUserUsageResponseResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *StatsUserUsageResponseResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("categories")
e.ArrStart()
for _, elem := range s.Categories {
e.Str(elem)
}
e.ArrEnd()
}
{
e.FieldStart("sparklineData")
e.ArrStart()
for _, elem := range s.SparklineData {
e.Float64(elem)
}
e.ArrEnd()
}
{
e.FieldStart("topNodes")
e.ArrStart()
for _, elem := range s.TopNodes {
elem.Encode(e)
}
e.ArrEnd()
}
{
e.FieldStart("series")
e.ArrStart()
for _, elem := range s.Series {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfStatsUserUsageResponseResponseResponse = [4]string{
0: "categories",
1: "sparklineData",
2: "topNodes",
3: "series",
}
// Decode decodes StatsUserUsageResponseResponseResponse from json.
func (s *StatsUserUsageResponseResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode StatsUserUsageResponseResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "categories":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Categories = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.Categories = append(s.Categories, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"categories\"")
}
case "sparklineData":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.SparklineData = make([]float64, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem float64
v, err := d.Float64()
elem = float64(v)
if err != nil {
return err
}
s.SparklineData = append(s.SparklineData, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"sparklineData\"")
}
case "topNodes":
requiredBitSet[0] |= 1 << 2
if err := func() error {
s.TopNodes = make([]TopNode, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem TopNode
if err := elem.Decode(d); err != nil {
return err
}
s.TopNodes = append(s.TopNodes, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"topNodes\"")
}
case "series":
requiredBitSet[0] |= 1 << 3
if err := func() error {
s.Series = make([]StatsUserUsageResponseResponseResponseSeriesItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem StatsUserUsageResponseResponseResponseSeriesItem
if err := elem.Decode(d); err != nil {
return err
}
s.Series = append(s.Series, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"series\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode StatsUserUsageResponseResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00001111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfStatsUserUsageResponseResponseResponse) {
name = jsonFieldsNameOfStatsUserUsageResponseResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *StatsUserUsageResponseResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *StatsUserUsageResponseResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *StatsUserUsageResponseResponseResponseSeriesItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *StatsUserUsageResponseResponseResponseSeriesItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("name")
e.Str(s.Name)
}
{
e.FieldStart("color")
e.Str(s.Color)
}
{
e.FieldStart("countryCode")
e.Str(s.CountryCode)
}
{
e.FieldStart("total")
e.Float64(s.Total)
}
{
e.FieldStart("data")
e.ArrStart()
for _, elem := range s.Data {
e.Float64(elem)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfStatsUserUsageResponseResponseResponseSeriesItem = [6]string{
0: "uuid",
1: "name",
2: "color",
3: "countryCode",
4: "total",
5: "data",
}
// Decode decodes StatsUserUsageResponseResponseResponseSeriesItem from json.
func (s *StatsUserUsageResponseResponseResponseSeriesItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode StatsUserUsageResponseResponseResponseSeriesItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "name":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "color":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.Color = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"color\"")
}
case "countryCode":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Str()
s.CountryCode = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"countryCode\"")
}
case "total":
requiredBitSet[0] |= 1 << 4
if err := func() error {
v, err := d.Float64()
s.Total = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"total\"")
}
case "data":
requiredBitSet[0] |= 1 << 5
if err := func() error {
s.Data = make([]float64, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem float64
v, err := d.Float64()
elem = float64(v)
if err != nil {
return err
}
s.Data = append(s.Data, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"data\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode StatsUserUsageResponseResponseResponseSeriesItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00111111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfStatsUserUsageResponseResponseResponseSeriesItem) {
name = jsonFieldsNameOfStatsUserUsageResponseResponseResponseSeriesItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *StatsUserUsageResponseResponseResponseSeriesItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *StatsUserUsageResponseResponseResponseSeriesItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *Subscription) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *Subscription) encodeFields(e *jx.Encoder) {
{
e.FieldStart("isFound")
e.Bool(s.IsFound)
}
{
e.FieldStart("user")
s.User.Encode(e)
}
{
e.FieldStart("links")
e.ArrStart()
for _, elem := range s.Links {
e.Str(elem)
}
e.ArrEnd()
}
{
e.FieldStart("ssConfLinks")
s.SsConfLinks.Encode(e)
}
{
e.FieldStart("subscriptionUrl")
e.Str(s.SubscriptionUrl)
}
}
var jsonFieldsNameOfSubscription = [5]string{
0: "isFound",
1: "user",
2: "links",
3: "ssConfLinks",
4: "subscriptionUrl",
}
// Decode decodes Subscription from json.
func (s *Subscription) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode Subscription to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "isFound":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Bool()
s.IsFound = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isFound\"")
}
case "user":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.User.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"user\"")
}
case "links":
requiredBitSet[0] |= 1 << 2
if err := func() error {
s.Links = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.Links = append(s.Links, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"links\"")
}
case "ssConfLinks":
requiredBitSet[0] |= 1 << 3
if err := func() error {
if err := s.SsConfLinks.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"ssConfLinks\"")
}
case "subscriptionUrl":
requiredBitSet[0] |= 1 << 4
if err := func() error {
v, err := d.Str()
s.SubscriptionUrl = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"subscriptionUrl\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode Subscription")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00011111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfSubscription) {
name = jsonFieldsNameOfSubscription[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *Subscription) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *Subscription) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *SubscriptionPageConfigResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *SubscriptionPageConfigResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfSubscriptionPageConfigResponseResponse = [1]string{
0: "response",
}
// Decode decodes SubscriptionPageConfigResponseResponse from json.
func (s *SubscriptionPageConfigResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode SubscriptionPageConfigResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode SubscriptionPageConfigResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfSubscriptionPageConfigResponseResponse) {
name = jsonFieldsNameOfSubscriptionPageConfigResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *SubscriptionPageConfigResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *SubscriptionPageConfigResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *SubscriptionPageConfigResponseResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *SubscriptionPageConfigResponseResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("viewPosition")
e.Int(s.ViewPosition)
}
{
e.FieldStart("name")
e.Str(s.Name)
}
{
if len(s.Config) != 0 {
e.FieldStart("config")
e.Raw(s.Config)
}
}
}
var jsonFieldsNameOfSubscriptionPageConfigResponseResponseResponse = [4]string{
0: "uuid",
1: "viewPosition",
2: "name",
3: "config",
}
// Decode decodes SubscriptionPageConfigResponseResponseResponse from json.
func (s *SubscriptionPageConfigResponseResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode SubscriptionPageConfigResponseResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "viewPosition":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Int()
s.ViewPosition = int(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"viewPosition\"")
}
case "name":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "config":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.RawAppend(nil)
s.Config = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"config\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode SubscriptionPageConfigResponseResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00001111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfSubscriptionPageConfigResponseResponseResponse) {
name = jsonFieldsNameOfSubscriptionPageConfigResponseResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *SubscriptionPageConfigResponseResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *SubscriptionPageConfigResponseResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *SubscriptionPageConfigsResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *SubscriptionPageConfigsResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfSubscriptionPageConfigsResponseResponse = [1]string{
0: "response",
}
// Decode decodes SubscriptionPageConfigsResponseResponse from json.
func (s *SubscriptionPageConfigsResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode SubscriptionPageConfigsResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode SubscriptionPageConfigsResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfSubscriptionPageConfigsResponseResponse) {
name = jsonFieldsNameOfSubscriptionPageConfigsResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *SubscriptionPageConfigsResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *SubscriptionPageConfigsResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *SubscriptionPageConfigsResponseResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *SubscriptionPageConfigsResponseResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("total")
e.Float64(s.Total)
}
{
e.FieldStart("configs")
e.ArrStart()
for _, elem := range s.Configs {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfSubscriptionPageConfigsResponseResponseResponse = [2]string{
0: "total",
1: "configs",
}
// Decode decodes SubscriptionPageConfigsResponseResponseResponse from json.
func (s *SubscriptionPageConfigsResponseResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode SubscriptionPageConfigsResponseResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "total":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.Total = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"total\"")
}
case "configs":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.Configs = make([]Config, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem Config
if err := elem.Decode(d); err != nil {
return err
}
s.Configs = append(s.Configs, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"configs\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode SubscriptionPageConfigsResponseResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfSubscriptionPageConfigsResponseResponseResponse) {
name = jsonFieldsNameOfSubscriptionPageConfigsResponseResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *SubscriptionPageConfigsResponseResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *SubscriptionPageConfigsResponseResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *SubscriptionResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *SubscriptionResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfSubscriptionResponse = [1]string{
0: "response",
}
// Decode decodes SubscriptionResponse from json.
func (s *SubscriptionResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode SubscriptionResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode SubscriptionResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfSubscriptionResponse) {
name = jsonFieldsNameOfSubscriptionResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *SubscriptionResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *SubscriptionResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *SubscriptionSettings) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *SubscriptionSettings) encodeFields(e *jx.Encoder) {
{
if s.ProfileTitle.Set {
e.FieldStart("profileTitle")
s.ProfileTitle.Encode(e)
}
}
{
if s.SupportLink.Set {
e.FieldStart("supportLink")
s.SupportLink.Encode(e)
}
}
{
if s.ProfileUpdateInterval.Set {
e.FieldStart("profileUpdateInterval")
s.ProfileUpdateInterval.Encode(e)
}
}
{
if s.IsProfileWebpageUrlEnabled.Set {
e.FieldStart("isProfileWebpageUrlEnabled")
s.IsProfileWebpageUrlEnabled.Encode(e)
}
}
{
if s.ServeJsonAtBaseSubscription.Set {
e.FieldStart("serveJsonAtBaseSubscription")
s.ServeJsonAtBaseSubscription.Encode(e)
}
}
{
if s.IsShowCustomRemarks.Set {
e.FieldStart("isShowCustomRemarks")
s.IsShowCustomRemarks.Encode(e)
}
}
{
if s.HappAnnounce.Set {
e.FieldStart("happAnnounce")
s.HappAnnounce.Encode(e)
}
}
{
if s.HappRouting.Set {
e.FieldStart("happRouting")
s.HappRouting.Encode(e)
}
}
{
if s.RandomizeHosts.Set {
e.FieldStart("randomizeHosts")
s.RandomizeHosts.Encode(e)
}
}
}
var jsonFieldsNameOfSubscriptionSettings = [9]string{
0: "profileTitle",
1: "supportLink",
2: "profileUpdateInterval",
3: "isProfileWebpageUrlEnabled",
4: "serveJsonAtBaseSubscription",
5: "isShowCustomRemarks",
6: "happAnnounce",
7: "happRouting",
8: "randomizeHosts",
}
// Decode decodes SubscriptionSettings from json.
func (s *SubscriptionSettings) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode SubscriptionSettings to nil")
}
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "profileTitle":
if err := func() error {
s.ProfileTitle.Reset()
if err := s.ProfileTitle.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"profileTitle\"")
}
case "supportLink":
if err := func() error {
s.SupportLink.Reset()
if err := s.SupportLink.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"supportLink\"")
}
case "profileUpdateInterval":
if err := func() error {
s.ProfileUpdateInterval.Reset()
if err := s.ProfileUpdateInterval.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"profileUpdateInterval\"")
}
case "isProfileWebpageUrlEnabled":
if err := func() error {
s.IsProfileWebpageUrlEnabled.Reset()
if err := s.IsProfileWebpageUrlEnabled.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isProfileWebpageUrlEnabled\"")
}
case "serveJsonAtBaseSubscription":
if err := func() error {
s.ServeJsonAtBaseSubscription.Reset()
if err := s.ServeJsonAtBaseSubscription.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"serveJsonAtBaseSubscription\"")
}
case "isShowCustomRemarks":
if err := func() error {
s.IsShowCustomRemarks.Reset()
if err := s.IsShowCustomRemarks.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isShowCustomRemarks\"")
}
case "happAnnounce":
if err := func() error {
s.HappAnnounce.Reset()
if err := s.HappAnnounce.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"happAnnounce\"")
}
case "happRouting":
if err := func() error {
s.HappRouting.Reset()
if err := s.HappRouting.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"happRouting\"")
}
case "randomizeHosts":
if err := func() error {
s.RandomizeHosts.Reset()
if err := s.RandomizeHosts.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"randomizeHosts\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode SubscriptionSettings")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *SubscriptionSettings) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *SubscriptionSettings) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *SubscriptionSettingsResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *SubscriptionSettingsResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfSubscriptionSettingsResponse = [1]string{
0: "response",
}
// Decode decodes SubscriptionSettingsResponse from json.
func (s *SubscriptionSettingsResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode SubscriptionSettingsResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode SubscriptionSettingsResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfSubscriptionSettingsResponse) {
name = jsonFieldsNameOfSubscriptionSettingsResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *SubscriptionSettingsResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *SubscriptionSettingsResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *SubscriptionSettingsResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *SubscriptionSettingsResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("profileTitle")
e.Str(s.ProfileTitle)
}
{
e.FieldStart("supportLink")
e.Str(s.SupportLink)
}
{
e.FieldStart("profileUpdateInterval")
e.Int(s.ProfileUpdateInterval)
}
{
e.FieldStart("isProfileWebpageUrlEnabled")
e.Bool(s.IsProfileWebpageUrlEnabled)
}
{
e.FieldStart("serveJsonAtBaseSubscription")
e.Bool(s.ServeJsonAtBaseSubscription)
}
{
e.FieldStart("isShowCustomRemarks")
e.Bool(s.IsShowCustomRemarks)
}
{
e.FieldStart("customRemarks")
s.CustomRemarks.Encode(e)
}
{
e.FieldStart("happAnnounce")
s.HappAnnounce.Encode(e)
}
{
e.FieldStart("happRouting")
s.HappRouting.Encode(e)
}
{
e.FieldStart("customResponseHeaders")
s.CustomResponseHeaders.Encode(e)
}
{
e.FieldStart("randomizeHosts")
e.Bool(s.RandomizeHosts)
}
{
e.FieldStart("responseRules")
s.ResponseRules.Encode(e)
}
{
e.FieldStart("hwidSettings")
s.HwidSettings.Encode(e)
}
{
e.FieldStart("createdAt")
json.EncodeDateTime(e, s.CreatedAt)
}
{
e.FieldStart("updatedAt")
json.EncodeDateTime(e, s.UpdatedAt)
}
}
var jsonFieldsNameOfSubscriptionSettingsResponseResponse = [16]string{
0: "uuid",
1: "profileTitle",
2: "supportLink",
3: "profileUpdateInterval",
4: "isProfileWebpageUrlEnabled",
5: "serveJsonAtBaseSubscription",
6: "isShowCustomRemarks",
7: "customRemarks",
8: "happAnnounce",
9: "happRouting",
10: "customResponseHeaders",
11: "randomizeHosts",
12: "responseRules",
13: "hwidSettings",
14: "createdAt",
15: "updatedAt",
}
// Decode decodes SubscriptionSettingsResponseResponse from json.
func (s *SubscriptionSettingsResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode SubscriptionSettingsResponseResponse to nil")
}
var requiredBitSet [2]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "profileTitle":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.ProfileTitle = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"profileTitle\"")
}
case "supportLink":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.SupportLink = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"supportLink\"")
}
case "profileUpdateInterval":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Int()
s.ProfileUpdateInterval = int(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"profileUpdateInterval\"")
}
case "isProfileWebpageUrlEnabled":
requiredBitSet[0] |= 1 << 4
if err := func() error {
v, err := d.Bool()
s.IsProfileWebpageUrlEnabled = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isProfileWebpageUrlEnabled\"")
}
case "serveJsonAtBaseSubscription":
requiredBitSet[0] |= 1 << 5
if err := func() error {
v, err := d.Bool()
s.ServeJsonAtBaseSubscription = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"serveJsonAtBaseSubscription\"")
}
case "isShowCustomRemarks":
requiredBitSet[0] |= 1 << 6
if err := func() error {
v, err := d.Bool()
s.IsShowCustomRemarks = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isShowCustomRemarks\"")
}
case "customRemarks":
requiredBitSet[0] |= 1 << 7
if err := func() error {
if err := s.CustomRemarks.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"customRemarks\"")
}
case "happAnnounce":
requiredBitSet[1] |= 1 << 0
if err := func() error {
if err := s.HappAnnounce.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"happAnnounce\"")
}
case "happRouting":
requiredBitSet[1] |= 1 << 1
if err := func() error {
if err := s.HappRouting.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"happRouting\"")
}
case "customResponseHeaders":
requiredBitSet[1] |= 1 << 2
if err := func() error {
if err := s.CustomResponseHeaders.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"customResponseHeaders\"")
}
case "randomizeHosts":
requiredBitSet[1] |= 1 << 3
if err := func() error {
v, err := d.Bool()
s.RandomizeHosts = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"randomizeHosts\"")
}
case "responseRules":
requiredBitSet[1] |= 1 << 4
if err := func() error {
if err := s.ResponseRules.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"responseRules\"")
}
case "hwidSettings":
requiredBitSet[1] |= 1 << 5
if err := func() error {
if err := s.HwidSettings.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"hwidSettings\"")
}
case "createdAt":
requiredBitSet[1] |= 1 << 6
if err := func() error {
v, err := json.DecodeDateTime(d)
s.CreatedAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"createdAt\"")
}
case "updatedAt":
requiredBitSet[1] |= 1 << 7
if err := func() error {
v, err := json.DecodeDateTime(d)
s.UpdatedAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"updatedAt\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode SubscriptionSettingsResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [2]uint8{
0b11111111,
0b11111111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfSubscriptionSettingsResponseResponse) {
name = jsonFieldsNameOfSubscriptionSettingsResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *SubscriptionSettingsResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *SubscriptionSettingsResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s SubscriptionSettingsResponseResponseCustomResponseHeaders) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields implements json.Marshaler.
func (s SubscriptionSettingsResponseResponseCustomResponseHeaders) encodeFields(e *jx.Encoder) {
for k, elem := range s {
e.FieldStart(k)
e.Str(elem)
}
}
// Decode decodes SubscriptionSettingsResponseResponseCustomResponseHeaders from json.
func (s *SubscriptionSettingsResponseResponseCustomResponseHeaders) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode SubscriptionSettingsResponseResponseCustomResponseHeaders to nil")
}
m := s.init()
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
var elem string
if err := func() error {
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrapf(err, "decode field %q", k)
}
m[string(k)] = elem
return nil
}); err != nil {
return errors.Wrap(err, "decode SubscriptionSettingsResponseResponseCustomResponseHeaders")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s SubscriptionSettingsResponseResponseCustomResponseHeaders) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *SubscriptionSettingsResponseResponseCustomResponseHeaders) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s SubscriptionSsConfLinks) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields implements json.Marshaler.
func (s SubscriptionSsConfLinks) encodeFields(e *jx.Encoder) {
for k, elem := range s {
e.FieldStart(k)
e.Str(elem)
}
}
// Decode decodes SubscriptionSsConfLinks from json.
func (s *SubscriptionSsConfLinks) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode SubscriptionSsConfLinks to nil")
}
m := s.init()
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
var elem string
if err := func() error {
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrapf(err, "decode field %q", k)
}
m[string(k)] = elem
return nil
}); err != nil {
return errors.Wrap(err, "decode SubscriptionSsConfLinks")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s SubscriptionSsConfLinks) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *SubscriptionSsConfLinks) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *SystemItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *SystemItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("info")
s.Info.Encode(e)
}
{
e.FieldStart("stats")
s.Stats.Encode(e)
}
}
var jsonFieldsNameOfSystemItem = [2]string{
0: "info",
1: "stats",
}
// Decode decodes SystemItem from json.
func (s *SystemItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode SystemItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "info":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Info.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"info\"")
}
case "stats":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.Stats.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"stats\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode SystemItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfSystemItem) {
name = jsonFieldsNameOfSystemItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *SystemItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *SystemItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *TagsResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *TagsResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfTagsResponse = [1]string{
0: "response",
}
// Decode decodes TagsResponse from json.
func (s *TagsResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode TagsResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode TagsResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfTagsResponse) {
name = jsonFieldsNameOfTagsResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *TagsResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *TagsResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *TagsResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *TagsResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("tags")
e.ArrStart()
for _, elem := range s.Tags {
e.Str(elem)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfTagsResponseResponse = [1]string{
0: "tags",
}
// Decode decodes TagsResponseResponse from json.
func (s *TagsResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode TagsResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "tags":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Tags = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.Tags = append(s.Tags, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"tags\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode TagsResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfTagsResponseResponse) {
name = jsonFieldsNameOfTagsResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *TagsResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *TagsResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *Telegram) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *Telegram) encodeFields(e *jx.Encoder) {
{
e.FieldStart("enabled")
e.Bool(s.Enabled)
}
{
e.FieldStart("clientId")
s.ClientId.Encode(e)
}
{
e.FieldStart("clientSecret")
s.ClientSecret.Encode(e)
}
{
e.FieldStart("allowedIds")
e.ArrStart()
for _, elem := range s.AllowedIds {
e.Str(elem)
}
e.ArrEnd()
}
{
e.FieldStart("frontendDomain")
s.FrontendDomain.Encode(e)
}
}
var jsonFieldsNameOfTelegram = [5]string{
0: "enabled",
1: "clientId",
2: "clientSecret",
3: "allowedIds",
4: "frontendDomain",
}
// Decode decodes Telegram from json.
func (s *Telegram) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode Telegram to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "enabled":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Bool()
s.Enabled = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"enabled\"")
}
case "clientId":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.ClientId.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"clientId\"")
}
case "clientSecret":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.ClientSecret.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"clientSecret\"")
}
case "allowedIds":
requiredBitSet[0] |= 1 << 3
if err := func() error {
s.AllowedIds = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.AllowedIds = append(s.AllowedIds, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"allowedIds\"")
}
case "frontendDomain":
requiredBitSet[0] |= 1 << 4
if err := func() error {
if err := s.FrontendDomain.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"frontendDomain\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode Telegram")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00011111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfTelegram) {
name = jsonFieldsNameOfTelegram[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *Telegram) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *Telegram) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *Template) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *Template) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("viewPosition")
e.Int(s.ViewPosition)
}
{
e.FieldStart("name")
e.Str(s.Name)
}
{
e.FieldStart("templateType")
s.TemplateType.Encode(e)
}
{
if len(s.TemplateJson) != 0 {
e.FieldStart("templateJson")
e.Raw(s.TemplateJson)
}
}
{
e.FieldStart("encodedTemplateYaml")
s.EncodedTemplateYaml.Encode(e)
}
}
var jsonFieldsNameOfTemplate = [6]string{
0: "uuid",
1: "viewPosition",
2: "name",
3: "templateType",
4: "templateJson",
5: "encodedTemplateYaml",
}
// Decode decodes Template from json.
func (s *Template) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode Template to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "viewPosition":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Int()
s.ViewPosition = int(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"viewPosition\"")
}
case "name":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "templateType":
requiredBitSet[0] |= 1 << 3
if err := func() error {
if err := s.TemplateType.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"templateType\"")
}
case "templateJson":
requiredBitSet[0] |= 1 << 4
if err := func() error {
v, err := d.RawAppend(nil)
s.TemplateJson = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"templateJson\"")
}
case "encodedTemplateYaml":
requiredBitSet[0] |= 1 << 5
if err := func() error {
if err := s.EncodedTemplateYaml.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"encodedTemplateYaml\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode Template")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00111111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfTemplate) {
name = jsonFieldsNameOfTemplate[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *Template) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *Template) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *TemplateRef) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *TemplateRef) encodeFields(e *jx.Encoder) {
{
e.FieldStart("templateUuid")
json.EncodeUUID(e, s.TemplateUuid)
}
{
e.FieldStart("templateType")
s.TemplateType.Encode(e)
}
}
var jsonFieldsNameOfTemplateRef = [2]string{
0: "templateUuid",
1: "templateType",
}
// Decode decodes TemplateRef from json.
func (s *TemplateRef) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode TemplateRef to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "templateUuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.TemplateUuid = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"templateUuid\"")
}
case "templateType":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.TemplateType.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"templateType\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode TemplateRef")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfTemplateRef) {
name = jsonFieldsNameOfTemplateRef[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *TemplateRef) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *TemplateRef) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes TemplateRefTemplateType as json.
func (s TemplateRefTemplateType) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes TemplateRefTemplateType from json.
func (s *TemplateRefTemplateType) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode TemplateRefTemplateType to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch TemplateRefTemplateType(v) {
case TemplateRefTemplateTypeXRAYJSON:
*s = TemplateRefTemplateTypeXRAYJSON
case TemplateRefTemplateTypeXRAYBASE64:
*s = TemplateRefTemplateTypeXRAYBASE64
case TemplateRefTemplateTypeMIHOMO:
*s = TemplateRefTemplateTypeMIHOMO
case TemplateRefTemplateTypeSTASH:
*s = TemplateRefTemplateTypeSTASH
case TemplateRefTemplateTypeCLASH:
*s = TemplateRefTemplateTypeCLASH
case TemplateRefTemplateTypeSINGBOX:
*s = TemplateRefTemplateTypeSINGBOX
default:
*s = TemplateRefTemplateType(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s TemplateRefTemplateType) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *TemplateRefTemplateType) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *TemplateResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *TemplateResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfTemplateResponse = [1]string{
0: "response",
}
// Decode decodes TemplateResponse from json.
func (s *TemplateResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode TemplateResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode TemplateResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfTemplateResponse) {
name = jsonFieldsNameOfTemplateResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *TemplateResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *TemplateResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes TemplateTemplateType as json.
func (s TemplateTemplateType) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes TemplateTemplateType from json.
func (s *TemplateTemplateType) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode TemplateTemplateType to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch TemplateTemplateType(v) {
case TemplateTemplateTypeXRAYJSON:
*s = TemplateTemplateTypeXRAYJSON
case TemplateTemplateTypeXRAYBASE64:
*s = TemplateTemplateTypeXRAYBASE64
case TemplateTemplateTypeMIHOMO:
*s = TemplateTemplateTypeMIHOMO
case TemplateTemplateTypeSTASH:
*s = TemplateTemplateTypeSTASH
case TemplateTemplateTypeCLASH:
*s = TemplateTemplateTypeCLASH
case TemplateTemplateTypeSINGBOX:
*s = TemplateTemplateTypeSINGBOX
default:
*s = TemplateTemplateType(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s TemplateTemplateType) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *TemplateTemplateType) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *TemplatesResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *TemplatesResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfTemplatesResponse = [1]string{
0: "response",
}
// Decode decodes TemplatesResponse from json.
func (s *TemplatesResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode TemplatesResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode TemplatesResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfTemplatesResponse) {
name = jsonFieldsNameOfTemplatesResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *TemplatesResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *TemplatesResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *TemplatesResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *TemplatesResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("total")
e.Float64(s.Total)
}
{
e.FieldStart("templates")
e.ArrStart()
for _, elem := range s.Templates {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfTemplatesResponseResponse = [2]string{
0: "total",
1: "templates",
}
// Decode decodes TemplatesResponseResponse from json.
func (s *TemplatesResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode TemplatesResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "total":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.Total = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"total\"")
}
case "templates":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.Templates = make([]Template, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem Template
if err := elem.Decode(d); err != nil {
return err
}
s.Templates = append(s.Templates, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"templates\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode TemplatesResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfTemplatesResponseResponse) {
name = jsonFieldsNameOfTemplatesResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *TemplatesResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *TemplatesResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *TokenResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *TokenResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfTokenResponse = [1]string{
0: "response",
}
// Decode decodes TokenResponse from json.
func (s *TokenResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode TokenResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode TokenResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfTokenResponse) {
name = jsonFieldsNameOfTokenResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *TokenResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *TokenResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *TokenResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *TokenResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("accessToken")
e.Str(s.AccessToken)
}
}
var jsonFieldsNameOfTokenResponseResponse = [1]string{
0: "accessToken",
}
// Decode decodes TokenResponseResponse from json.
func (s *TokenResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode TokenResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "accessToken":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.AccessToken = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"accessToken\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode TokenResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfTokenResponseResponse) {
name = jsonFieldsNameOfTokenResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *TokenResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *TokenResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *TopNode) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *TopNode) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("countryCode")
e.Str(s.CountryCode)
}
{
e.FieldStart("color")
e.Str(s.Color)
}
{
e.FieldStart("name")
e.Str(s.Name)
}
{
e.FieldStart("total")
e.Float64(s.Total)
}
}
var jsonFieldsNameOfTopNode = [5]string{
0: "uuid",
1: "countryCode",
2: "color",
3: "name",
4: "total",
}
// Decode decodes TopNode from json.
func (s *TopNode) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode TopNode to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "countryCode":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.CountryCode = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"countryCode\"")
}
case "color":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.Color = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"color\"")
}
case "name":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "total":
requiredBitSet[0] |= 1 << 4
if err := func() error {
v, err := d.Float64()
s.Total = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"total\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode TopNode")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00011111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfTopNode) {
name = jsonFieldsNameOfTopNode[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *TopNode) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *TopNode) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *TorrentBlockerReportsResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *TorrentBlockerReportsResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfTorrentBlockerReportsResponseResponse = [1]string{
0: "response",
}
// Decode decodes TorrentBlockerReportsResponseResponse from json.
func (s *TorrentBlockerReportsResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode TorrentBlockerReportsResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode TorrentBlockerReportsResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfTorrentBlockerReportsResponseResponse) {
name = jsonFieldsNameOfTorrentBlockerReportsResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *TorrentBlockerReportsResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *TorrentBlockerReportsResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *TorrentBlockerReportsResponseResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *TorrentBlockerReportsResponseResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("records")
e.ArrStart()
for _, elem := range s.Records {
elem.Encode(e)
}
e.ArrEnd()
}
{
e.FieldStart("total")
e.Float64(s.Total)
}
}
var jsonFieldsNameOfTorrentBlockerReportsResponseResponseResponse = [2]string{
0: "records",
1: "total",
}
// Decode decodes TorrentBlockerReportsResponseResponseResponse from json.
func (s *TorrentBlockerReportsResponseResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode TorrentBlockerReportsResponseResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "records":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Records = make([]TorrentBlockerReportsResponseResponseResponseRecordsItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem TorrentBlockerReportsResponseResponseResponseRecordsItem
if err := elem.Decode(d); err != nil {
return err
}
s.Records = append(s.Records, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"records\"")
}
case "total":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.Total = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"total\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode TorrentBlockerReportsResponseResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfTorrentBlockerReportsResponseResponseResponse) {
name = jsonFieldsNameOfTorrentBlockerReportsResponseResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *TorrentBlockerReportsResponseResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *TorrentBlockerReportsResponseResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *TorrentBlockerReportsResponseResponseResponseRecordsItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *TorrentBlockerReportsResponseResponseResponseRecordsItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("id")
e.Float64(s.ID)
}
{
e.FieldStart("userId")
e.Float64(s.UserId)
}
{
e.FieldStart("nodeId")
e.Float64(s.NodeId)
}
{
e.FieldStart("user")
s.User.Encode(e)
}
{
e.FieldStart("node")
s.Node.Encode(e)
}
{
e.FieldStart("report")
s.Report.Encode(e)
}
{
e.FieldStart("createdAt")
json.EncodeDateTime(e, s.CreatedAt)
}
}
var jsonFieldsNameOfTorrentBlockerReportsResponseResponseResponseRecordsItem = [7]string{
0: "id",
1: "userId",
2: "nodeId",
3: "user",
4: "node",
5: "report",
6: "createdAt",
}
// Decode decodes TorrentBlockerReportsResponseResponseResponseRecordsItem from json.
func (s *TorrentBlockerReportsResponseResponseResponseRecordsItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode TorrentBlockerReportsResponseResponseResponseRecordsItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "id":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.ID = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"id\"")
}
case "userId":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.UserId = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"userId\"")
}
case "nodeId":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Float64()
s.NodeId = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodeId\"")
}
case "user":
requiredBitSet[0] |= 1 << 3
if err := func() error {
if err := s.User.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"user\"")
}
case "node":
requiredBitSet[0] |= 1 << 4
if err := func() error {
if err := s.Node.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"node\"")
}
case "report":
requiredBitSet[0] |= 1 << 5
if err := func() error {
if err := s.Report.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"report\"")
}
case "createdAt":
requiredBitSet[0] |= 1 << 6
if err := func() error {
v, err := json.DecodeDateTime(d)
s.CreatedAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"createdAt\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode TorrentBlockerReportsResponseResponseResponseRecordsItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b01111111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfTorrentBlockerReportsResponseResponseResponseRecordsItem) {
name = jsonFieldsNameOfTorrentBlockerReportsResponseResponseResponseRecordsItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *TorrentBlockerReportsResponseResponseResponseRecordsItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *TorrentBlockerReportsResponseResponseResponseRecordsItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *TorrentBlockerReportsResponseResponseResponseRecordsItemUser) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *TorrentBlockerReportsResponseResponseResponseRecordsItemUser) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("username")
e.Str(s.Username)
}
}
var jsonFieldsNameOfTorrentBlockerReportsResponseResponseResponseRecordsItemUser = [2]string{
0: "uuid",
1: "username",
}
// Decode decodes TorrentBlockerReportsResponseResponseResponseRecordsItemUser from json.
func (s *TorrentBlockerReportsResponseResponseResponseRecordsItemUser) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode TorrentBlockerReportsResponseResponseResponseRecordsItemUser to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "username":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Username = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"username\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode TorrentBlockerReportsResponseResponseResponseRecordsItemUser")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfTorrentBlockerReportsResponseResponseResponseRecordsItemUser) {
name = jsonFieldsNameOfTorrentBlockerReportsResponseResponseResponseRecordsItemUser[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *TorrentBlockerReportsResponseResponseResponseRecordsItemUser) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *TorrentBlockerReportsResponseResponseResponseRecordsItemUser) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *UnauthorizedError) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *UnauthorizedError) encodeFields(e *jx.Encoder) {
{
e.FieldStart("message")
e.Str(s.Message)
}
{
e.FieldStart("statusCode")
e.Float64(s.StatusCode)
}
}
var jsonFieldsNameOfUnauthorizedError = [2]string{
0: "message",
1: "statusCode",
}
// Decode decodes UnauthorizedError from json.
func (s *UnauthorizedError) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UnauthorizedError to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "message":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Message = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"message\"")
}
case "statusCode":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.StatusCode = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"statusCode\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode UnauthorizedError")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfUnauthorizedError) {
name = jsonFieldsNameOfUnauthorizedError[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *UnauthorizedError) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UnauthorizedError) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *UpdateConfigProfileRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *UpdateConfigProfileRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
if s.Name.Set {
e.FieldStart("name")
s.Name.Encode(e)
}
}
{
if s.Config != nil {
e.FieldStart("config")
s.Config.Encode(e)
}
}
}
var jsonFieldsNameOfUpdateConfigProfileRequest = [3]string{
0: "uuid",
1: "name",
2: "config",
}
// Decode decodes UpdateConfigProfileRequest from json.
func (s *UpdateConfigProfileRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpdateConfigProfileRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "name":
if err := func() error {
s.Name.Reset()
if err := s.Name.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "config":
if err := func() error {
s.Config = nil
var elem UpdateConfigProfileRequestConfig
if err := elem.Decode(d); err != nil {
return err
}
s.Config = &elem
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"config\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode UpdateConfigProfileRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfUpdateConfigProfileRequest) {
name = jsonFieldsNameOfUpdateConfigProfileRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *UpdateConfigProfileRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpdateConfigProfileRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *UpdateConfigProfileRequestConfig) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *UpdateConfigProfileRequestConfig) encodeFields(e *jx.Encoder) {
}
var jsonFieldsNameOfUpdateConfigProfileRequestConfig = [0]string{}
// Decode decodes UpdateConfigProfileRequestConfig from json.
func (s *UpdateConfigProfileRequestConfig) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpdateConfigProfileRequestConfig to nil")
}
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
default:
return d.Skip()
}
}); err != nil {
return errors.Wrap(err, "decode UpdateConfigProfileRequestConfig")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *UpdateConfigProfileRequestConfig) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpdateConfigProfileRequestConfig) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *UpdateExternalSquadRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *UpdateExternalSquadRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
if s.Name.Set {
e.FieldStart("name")
s.Name.Encode(e)
}
}
{
if s.Templates != nil {
e.FieldStart("templates")
e.ArrStart()
for _, elem := range s.Templates {
elem.Encode(e)
}
e.ArrEnd()
}
}
{
if s.SubscriptionSettings.Set {
e.FieldStart("subscriptionSettings")
s.SubscriptionSettings.Encode(e)
}
}
{
if s.HostOverrides.Set {
e.FieldStart("hostOverrides")
s.HostOverrides.Encode(e)
}
}
{
if s.ResponseHeaders.Set {
e.FieldStart("responseHeaders")
s.ResponseHeaders.Encode(e)
}
}
{
if s.HwidSettings.Set {
e.FieldStart("hwidSettings")
s.HwidSettings.Encode(e)
}
}
{
if s.CustomRemarks.Set {
e.FieldStart("customRemarks")
s.CustomRemarks.Encode(e)
}
}
{
if s.SubpageConfigUuid.Set {
e.FieldStart("subpageConfigUuid")
s.SubpageConfigUuid.Encode(e)
}
}
}
var jsonFieldsNameOfUpdateExternalSquadRequest = [9]string{
0: "uuid",
1: "name",
2: "templates",
3: "subscriptionSettings",
4: "hostOverrides",
5: "responseHeaders",
6: "hwidSettings",
7: "customRemarks",
8: "subpageConfigUuid",
}
// Decode decodes UpdateExternalSquadRequest from json.
func (s *UpdateExternalSquadRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpdateExternalSquadRequest to nil")
}
var requiredBitSet [2]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "name":
if err := func() error {
s.Name.Reset()
if err := s.Name.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "templates":
if err := func() error {
s.Templates = make([]TemplateRef, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem TemplateRef
if err := elem.Decode(d); err != nil {
return err
}
s.Templates = append(s.Templates, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"templates\"")
}
case "subscriptionSettings":
if err := func() error {
s.SubscriptionSettings.Reset()
if err := s.SubscriptionSettings.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"subscriptionSettings\"")
}
case "hostOverrides":
if err := func() error {
s.HostOverrides.Reset()
if err := s.HostOverrides.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"hostOverrides\"")
}
case "responseHeaders":
if err := func() error {
s.ResponseHeaders.Reset()
if err := s.ResponseHeaders.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"responseHeaders\"")
}
case "hwidSettings":
if err := func() error {
s.HwidSettings.Reset()
if err := s.HwidSettings.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"hwidSettings\"")
}
case "customRemarks":
if err := func() error {
s.CustomRemarks.Reset()
if err := s.CustomRemarks.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"customRemarks\"")
}
case "subpageConfigUuid":
if err := func() error {
s.SubpageConfigUuid.Reset()
if err := s.SubpageConfigUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"subpageConfigUuid\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode UpdateExternalSquadRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [2]uint8{
0b00000001,
0b00000000,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfUpdateExternalSquadRequest) {
name = jsonFieldsNameOfUpdateExternalSquadRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *UpdateExternalSquadRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpdateExternalSquadRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s UpdateExternalSquadRequestResponseHeaders) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields implements json.Marshaler.
func (s UpdateExternalSquadRequestResponseHeaders) encodeFields(e *jx.Encoder) {
for k, elem := range s {
e.FieldStart(k)
e.Str(elem)
}
}
// Decode decodes UpdateExternalSquadRequestResponseHeaders from json.
func (s *UpdateExternalSquadRequestResponseHeaders) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpdateExternalSquadRequestResponseHeaders to nil")
}
m := s.init()
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
var elem string
if err := func() error {
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrapf(err, "decode field %q", k)
}
m[string(k)] = elem
return nil
}); err != nil {
return errors.Wrap(err, "decode UpdateExternalSquadRequestResponseHeaders")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s UpdateExternalSquadRequestResponseHeaders) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpdateExternalSquadRequestResponseHeaders) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *UpdateHostRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *UpdateHostRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
if s.Inbound.Set {
e.FieldStart("inbound")
s.Inbound.Encode(e)
}
}
{
if s.Remark.Set {
e.FieldStart("remark")
s.Remark.Encode(e)
}
}
{
if s.Address.Set {
e.FieldStart("address")
s.Address.Encode(e)
}
}
{
if s.Port.Set {
e.FieldStart("port")
s.Port.Encode(e)
}
}
{
if s.Path.Set {
e.FieldStart("path")
s.Path.Encode(e)
}
}
{
if s.Sni.Set {
e.FieldStart("sni")
s.Sni.Encode(e)
}
}
{
if s.Host.Set {
e.FieldStart("host")
s.Host.Encode(e)
}
}
{
if s.Alpn.Set {
e.FieldStart("alpn")
s.Alpn.Encode(e)
}
}
{
if s.Fingerprint.Set {
e.FieldStart("fingerprint")
s.Fingerprint.Encode(e)
}
}
{
if s.IsDisabled.Set {
e.FieldStart("isDisabled")
s.IsDisabled.Encode(e)
}
}
{
if s.SecurityLayer.Set {
e.FieldStart("securityLayer")
s.SecurityLayer.Encode(e)
}
}
{
if len(s.XhttpExtraParams) != 0 {
e.FieldStart("xhttpExtraParams")
e.Raw(s.XhttpExtraParams)
}
}
{
if len(s.MuxParams) != 0 {
e.FieldStart("muxParams")
e.Raw(s.MuxParams)
}
}
{
if len(s.SockoptParams) != 0 {
e.FieldStart("sockoptParams")
e.Raw(s.SockoptParams)
}
}
{
if len(s.FinalMask) != 0 {
e.FieldStart("finalMask")
e.Raw(s.FinalMask)
}
}
{
if s.ServerDescription.Set {
e.FieldStart("serverDescription")
s.ServerDescription.Encode(e)
}
}
{
if s.Tags != nil {
e.FieldStart("tags")
e.ArrStart()
for _, elem := range s.Tags {
e.Str(elem)
}
e.ArrEnd()
}
}
{
if s.IsHidden.Set {
e.FieldStart("isHidden")
s.IsHidden.Encode(e)
}
}
{
if s.OverrideSniFromAddress.Set {
e.FieldStart("overrideSniFromAddress")
s.OverrideSniFromAddress.Encode(e)
}
}
{
if s.KeepSniBlank.Set {
e.FieldStart("keepSniBlank")
s.KeepSniBlank.Encode(e)
}
}
{
if s.VlessRouteId.Set {
e.FieldStart("vlessRouteId")
s.VlessRouteId.Encode(e)
}
}
{
if s.PinnedPeerCertSha256.Set {
e.FieldStart("pinnedPeerCertSha256")
s.PinnedPeerCertSha256.Encode(e)
}
}
{
if s.VerifyPeerCertByName.Set {
e.FieldStart("verifyPeerCertByName")
s.VerifyPeerCertByName.Encode(e)
}
}
{
if s.ShuffleHost.Set {
e.FieldStart("shuffleHost")
s.ShuffleHost.Encode(e)
}
}
{
if s.MihomoX25519.Set {
e.FieldStart("mihomoX25519")
s.MihomoX25519.Encode(e)
}
}
{
if s.MihomoIpVersion.Set {
e.FieldStart("mihomoIpVersion")
s.MihomoIpVersion.Encode(e)
}
}
{
if s.Nodes != nil {
e.FieldStart("nodes")
e.ArrStart()
for _, elem := range s.Nodes {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
}
{
if s.XrayJsonTemplateUuid.Set {
e.FieldStart("xrayJsonTemplateUuid")
s.XrayJsonTemplateUuid.Encode(e)
}
}
{
if s.ExcludedInternalSquads != nil {
e.FieldStart("excludedInternalSquads")
e.ArrStart()
for _, elem := range s.ExcludedInternalSquads {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
}
{
if s.ExcludeFromSubscriptionTypes != nil {
e.FieldStart("excludeFromSubscriptionTypes")
e.ArrStart()
for _, elem := range s.ExcludeFromSubscriptionTypes {
elem.Encode(e)
}
e.ArrEnd()
}
}
}
var jsonFieldsNameOfUpdateHostRequest = [31]string{
0: "uuid",
1: "inbound",
2: "remark",
3: "address",
4: "port",
5: "path",
6: "sni",
7: "host",
8: "alpn",
9: "fingerprint",
10: "isDisabled",
11: "securityLayer",
12: "xhttpExtraParams",
13: "muxParams",
14: "sockoptParams",
15: "finalMask",
16: "serverDescription",
17: "tags",
18: "isHidden",
19: "overrideSniFromAddress",
20: "keepSniBlank",
21: "vlessRouteId",
22: "pinnedPeerCertSha256",
23: "verifyPeerCertByName",
24: "shuffleHost",
25: "mihomoX25519",
26: "mihomoIpVersion",
27: "nodes",
28: "xrayJsonTemplateUuid",
29: "excludedInternalSquads",
30: "excludeFromSubscriptionTypes",
}
// Decode decodes UpdateHostRequest from json.
func (s *UpdateHostRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpdateHostRequest to nil")
}
var requiredBitSet [4]uint8
s.setDefaults()
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "inbound":
if err := func() error {
s.Inbound.Reset()
if err := s.Inbound.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"inbound\"")
}
case "remark":
if err := func() error {
s.Remark.Reset()
if err := s.Remark.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"remark\"")
}
case "address":
if err := func() error {
s.Address.Reset()
if err := s.Address.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"address\"")
}
case "port":
if err := func() error {
s.Port.Reset()
if err := s.Port.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"port\"")
}
case "path":
if err := func() error {
s.Path.Reset()
if err := s.Path.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"path\"")
}
case "sni":
if err := func() error {
s.Sni.Reset()
if err := s.Sni.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"sni\"")
}
case "host":
if err := func() error {
s.Host.Reset()
if err := s.Host.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"host\"")
}
case "alpn":
if err := func() error {
s.Alpn.Reset()
if err := s.Alpn.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"alpn\"")
}
case "fingerprint":
if err := func() error {
s.Fingerprint.Reset()
if err := s.Fingerprint.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"fingerprint\"")
}
case "isDisabled":
if err := func() error {
s.IsDisabled.Reset()
if err := s.IsDisabled.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isDisabled\"")
}
case "securityLayer":
if err := func() error {
s.SecurityLayer.Reset()
if err := s.SecurityLayer.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"securityLayer\"")
}
case "xhttpExtraParams":
if err := func() error {
v, err := d.RawAppend(nil)
s.XhttpExtraParams = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"xhttpExtraParams\"")
}
case "muxParams":
if err := func() error {
v, err := d.RawAppend(nil)
s.MuxParams = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"muxParams\"")
}
case "sockoptParams":
if err := func() error {
v, err := d.RawAppend(nil)
s.SockoptParams = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"sockoptParams\"")
}
case "finalMask":
if err := func() error {
v, err := d.RawAppend(nil)
s.FinalMask = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"finalMask\"")
}
case "serverDescription":
if err := func() error {
s.ServerDescription.Reset()
if err := s.ServerDescription.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"serverDescription\"")
}
case "tags":
if err := func() error {
s.Tags = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.Tags = append(s.Tags, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"tags\"")
}
case "isHidden":
if err := func() error {
s.IsHidden.Reset()
if err := s.IsHidden.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isHidden\"")
}
case "overrideSniFromAddress":
if err := func() error {
s.OverrideSniFromAddress.Reset()
if err := s.OverrideSniFromAddress.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"overrideSniFromAddress\"")
}
case "keepSniBlank":
if err := func() error {
s.KeepSniBlank.Reset()
if err := s.KeepSniBlank.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"keepSniBlank\"")
}
case "vlessRouteId":
if err := func() error {
s.VlessRouteId.Reset()
if err := s.VlessRouteId.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"vlessRouteId\"")
}
case "pinnedPeerCertSha256":
if err := func() error {
s.PinnedPeerCertSha256.Reset()
if err := s.PinnedPeerCertSha256.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"pinnedPeerCertSha256\"")
}
case "verifyPeerCertByName":
if err := func() error {
s.VerifyPeerCertByName.Reset()
if err := s.VerifyPeerCertByName.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"verifyPeerCertByName\"")
}
case "shuffleHost":
if err := func() error {
s.ShuffleHost.Reset()
if err := s.ShuffleHost.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"shuffleHost\"")
}
case "mihomoX25519":
if err := func() error {
s.MihomoX25519.Reset()
if err := s.MihomoX25519.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"mihomoX25519\"")
}
case "mihomoIpVersion":
if err := func() error {
s.MihomoIpVersion.Reset()
if err := s.MihomoIpVersion.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"mihomoIpVersion\"")
}
case "nodes":
if err := func() error {
s.Nodes = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.Nodes = append(s.Nodes, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodes\"")
}
case "xrayJsonTemplateUuid":
if err := func() error {
s.XrayJsonTemplateUuid.Reset()
if err := s.XrayJsonTemplateUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"xrayJsonTemplateUuid\"")
}
case "excludedInternalSquads":
if err := func() error {
s.ExcludedInternalSquads = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.ExcludedInternalSquads = append(s.ExcludedInternalSquads, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"excludedInternalSquads\"")
}
case "excludeFromSubscriptionTypes":
if err := func() error {
s.ExcludeFromSubscriptionTypes = make([]UpdateHostRequestExcludeFromSubscriptionTypesItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem UpdateHostRequestExcludeFromSubscriptionTypesItem
if err := elem.Decode(d); err != nil {
return err
}
s.ExcludeFromSubscriptionTypes = append(s.ExcludeFromSubscriptionTypes, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"excludeFromSubscriptionTypes\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode UpdateHostRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [4]uint8{
0b00000001,
0b00000000,
0b00000000,
0b00000000,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfUpdateHostRequest) {
name = jsonFieldsNameOfUpdateHostRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *UpdateHostRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpdateHostRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes UpdateHostRequestAlpn as json.
func (s UpdateHostRequestAlpn) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes UpdateHostRequestAlpn from json.
func (s *UpdateHostRequestAlpn) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpdateHostRequestAlpn to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch UpdateHostRequestAlpn(v) {
case UpdateHostRequestAlpnH3:
*s = UpdateHostRequestAlpnH3
case UpdateHostRequestAlpnH2:
*s = UpdateHostRequestAlpnH2
case UpdateHostRequestAlpnHTTP11:
*s = UpdateHostRequestAlpnHTTP11
case UpdateHostRequestAlpnH2HTTP11:
*s = UpdateHostRequestAlpnH2HTTP11
case UpdateHostRequestAlpnH3H2HTTP11:
*s = UpdateHostRequestAlpnH3H2HTTP11
case UpdateHostRequestAlpnH3H2:
*s = UpdateHostRequestAlpnH3H2
default:
*s = UpdateHostRequestAlpn(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s UpdateHostRequestAlpn) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpdateHostRequestAlpn) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes UpdateHostRequestExcludeFromSubscriptionTypesItem as json.
func (s UpdateHostRequestExcludeFromSubscriptionTypesItem) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes UpdateHostRequestExcludeFromSubscriptionTypesItem from json.
func (s *UpdateHostRequestExcludeFromSubscriptionTypesItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpdateHostRequestExcludeFromSubscriptionTypesItem to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch UpdateHostRequestExcludeFromSubscriptionTypesItem(v) {
case UpdateHostRequestExcludeFromSubscriptionTypesItemXRAYJSON:
*s = UpdateHostRequestExcludeFromSubscriptionTypesItemXRAYJSON
case UpdateHostRequestExcludeFromSubscriptionTypesItemXRAYBASE64:
*s = UpdateHostRequestExcludeFromSubscriptionTypesItemXRAYBASE64
case UpdateHostRequestExcludeFromSubscriptionTypesItemMIHOMO:
*s = UpdateHostRequestExcludeFromSubscriptionTypesItemMIHOMO
case UpdateHostRequestExcludeFromSubscriptionTypesItemSTASH:
*s = UpdateHostRequestExcludeFromSubscriptionTypesItemSTASH
case UpdateHostRequestExcludeFromSubscriptionTypesItemCLASH:
*s = UpdateHostRequestExcludeFromSubscriptionTypesItemCLASH
case UpdateHostRequestExcludeFromSubscriptionTypesItemSINGBOX:
*s = UpdateHostRequestExcludeFromSubscriptionTypesItemSINGBOX
default:
*s = UpdateHostRequestExcludeFromSubscriptionTypesItem(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s UpdateHostRequestExcludeFromSubscriptionTypesItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpdateHostRequestExcludeFromSubscriptionTypesItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes UpdateHostRequestMihomoIpVersion as json.
func (s UpdateHostRequestMihomoIpVersion) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes UpdateHostRequestMihomoIpVersion from json.
func (s *UpdateHostRequestMihomoIpVersion) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpdateHostRequestMihomoIpVersion to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch UpdateHostRequestMihomoIpVersion(v) {
case UpdateHostRequestMihomoIpVersionDual:
*s = UpdateHostRequestMihomoIpVersionDual
case UpdateHostRequestMihomoIpVersionIpv4:
*s = UpdateHostRequestMihomoIpVersionIpv4
case UpdateHostRequestMihomoIpVersionIpv6:
*s = UpdateHostRequestMihomoIpVersionIpv6
case UpdateHostRequestMihomoIpVersionIpv4Prefer:
*s = UpdateHostRequestMihomoIpVersionIpv4Prefer
case UpdateHostRequestMihomoIpVersionIpv6Prefer:
*s = UpdateHostRequestMihomoIpVersionIpv6Prefer
default:
*s = UpdateHostRequestMihomoIpVersion(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s UpdateHostRequestMihomoIpVersion) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpdateHostRequestMihomoIpVersion) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes UpdateHostRequestSecurityLayer as json.
func (s UpdateHostRequestSecurityLayer) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes UpdateHostRequestSecurityLayer from json.
func (s *UpdateHostRequestSecurityLayer) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpdateHostRequestSecurityLayer to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch UpdateHostRequestSecurityLayer(v) {
case UpdateHostRequestSecurityLayerDEFAULT:
*s = UpdateHostRequestSecurityLayerDEFAULT
case UpdateHostRequestSecurityLayerTLS:
*s = UpdateHostRequestSecurityLayerTLS
case UpdateHostRequestSecurityLayerNONE:
*s = UpdateHostRequestSecurityLayerNONE
default:
*s = UpdateHostRequestSecurityLayer(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s UpdateHostRequestSecurityLayer) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpdateHostRequestSecurityLayer) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *UpdateInfraBillingNodeRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *UpdateInfraBillingNodeRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuids")
e.ArrStart()
for _, elem := range s.Uuids {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
{
e.FieldStart("nextBillingAt")
json.EncodeDateTime(e, s.NextBillingAt)
}
}
var jsonFieldsNameOfUpdateInfraBillingNodeRequest = [2]string{
0: "uuids",
1: "nextBillingAt",
}
// Decode decodes UpdateInfraBillingNodeRequest from json.
func (s *UpdateInfraBillingNodeRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpdateInfraBillingNodeRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuids":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Uuids = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.Uuids = append(s.Uuids, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuids\"")
}
case "nextBillingAt":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := json.DecodeDateTime(d)
s.NextBillingAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nextBillingAt\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode UpdateInfraBillingNodeRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfUpdateInfraBillingNodeRequest) {
name = jsonFieldsNameOfUpdateInfraBillingNodeRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *UpdateInfraBillingNodeRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpdateInfraBillingNodeRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *UpdateInfraProviderRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *UpdateInfraProviderRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
if s.Name.Set {
e.FieldStart("name")
s.Name.Encode(e)
}
}
{
if s.FaviconLink.Set {
e.FieldStart("faviconLink")
s.FaviconLink.Encode(e)
}
}
{
if s.LoginUrl.Set {
e.FieldStart("loginUrl")
s.LoginUrl.Encode(e)
}
}
}
var jsonFieldsNameOfUpdateInfraProviderRequest = [4]string{
0: "uuid",
1: "name",
2: "faviconLink",
3: "loginUrl",
}
// Decode decodes UpdateInfraProviderRequest from json.
func (s *UpdateInfraProviderRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpdateInfraProviderRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "name":
if err := func() error {
s.Name.Reset()
if err := s.Name.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "faviconLink":
if err := func() error {
s.FaviconLink.Reset()
if err := s.FaviconLink.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"faviconLink\"")
}
case "loginUrl":
if err := func() error {
s.LoginUrl.Reset()
if err := s.LoginUrl.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"loginUrl\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode UpdateInfraProviderRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfUpdateInfraProviderRequest) {
name = jsonFieldsNameOfUpdateInfraProviderRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *UpdateInfraProviderRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpdateInfraProviderRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *UpdateInternalSquadRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *UpdateInternalSquadRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
if s.Name.Set {
e.FieldStart("name")
s.Name.Encode(e)
}
}
{
if s.Inbounds != nil {
e.FieldStart("inbounds")
e.ArrStart()
for _, elem := range s.Inbounds {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
}
}
var jsonFieldsNameOfUpdateInternalSquadRequest = [3]string{
0: "uuid",
1: "name",
2: "inbounds",
}
// Decode decodes UpdateInternalSquadRequest from json.
func (s *UpdateInternalSquadRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpdateInternalSquadRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "name":
if err := func() error {
s.Name.Reset()
if err := s.Name.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "inbounds":
if err := func() error {
s.Inbounds = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.Inbounds = append(s.Inbounds, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"inbounds\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode UpdateInternalSquadRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfUpdateInternalSquadRequest) {
name = jsonFieldsNameOfUpdateInternalSquadRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *UpdateInternalSquadRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpdateInternalSquadRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *UpdateManyHostsRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *UpdateManyHostsRequest) encodeFields(e *jx.Encoder) {
{
if s.Inbound.Set {
e.FieldStart("inbound")
s.Inbound.Encode(e)
}
}
{
if s.Remark.Set {
e.FieldStart("remark")
s.Remark.Encode(e)
}
}
{
if s.Address.Set {
e.FieldStart("address")
s.Address.Encode(e)
}
}
{
if s.Port.Set {
e.FieldStart("port")
s.Port.Encode(e)
}
}
{
if s.Path.Set {
e.FieldStart("path")
s.Path.Encode(e)
}
}
{
if s.Sni.Set {
e.FieldStart("sni")
s.Sni.Encode(e)
}
}
{
if s.Host.Set {
e.FieldStart("host")
s.Host.Encode(e)
}
}
{
if s.Alpn.Set {
e.FieldStart("alpn")
s.Alpn.Encode(e)
}
}
{
if s.Fingerprint.Set {
e.FieldStart("fingerprint")
s.Fingerprint.Encode(e)
}
}
{
if s.IsDisabled.Set {
e.FieldStart("isDisabled")
s.IsDisabled.Encode(e)
}
}
{
if s.SecurityLayer.Set {
e.FieldStart("securityLayer")
s.SecurityLayer.Encode(e)
}
}
{
if len(s.XhttpExtraParams) != 0 {
e.FieldStart("xhttpExtraParams")
e.Raw(s.XhttpExtraParams)
}
}
{
if len(s.MuxParams) != 0 {
e.FieldStart("muxParams")
e.Raw(s.MuxParams)
}
}
{
if len(s.SockoptParams) != 0 {
e.FieldStart("sockoptParams")
e.Raw(s.SockoptParams)
}
}
{
if len(s.FinalMask) != 0 {
e.FieldStart("finalMask")
e.Raw(s.FinalMask)
}
}
{
if s.ServerDescription.Set {
e.FieldStart("serverDescription")
s.ServerDescription.Encode(e)
}
}
{
if s.Tags != nil {
e.FieldStart("tags")
e.ArrStart()
for _, elem := range s.Tags {
e.Str(elem)
}
e.ArrEnd()
}
}
{
if s.IsHidden.Set {
e.FieldStart("isHidden")
s.IsHidden.Encode(e)
}
}
{
if s.OverrideSniFromAddress.Set {
e.FieldStart("overrideSniFromAddress")
s.OverrideSniFromAddress.Encode(e)
}
}
{
if s.KeepSniBlank.Set {
e.FieldStart("keepSniBlank")
s.KeepSniBlank.Encode(e)
}
}
{
if s.VlessRouteId.Set {
e.FieldStart("vlessRouteId")
s.VlessRouteId.Encode(e)
}
}
{
if s.PinnedPeerCertSha256.Set {
e.FieldStart("pinnedPeerCertSha256")
s.PinnedPeerCertSha256.Encode(e)
}
}
{
if s.VerifyPeerCertByName.Set {
e.FieldStart("verifyPeerCertByName")
s.VerifyPeerCertByName.Encode(e)
}
}
{
if s.ShuffleHost.Set {
e.FieldStart("shuffleHost")
s.ShuffleHost.Encode(e)
}
}
{
if s.MihomoX25519.Set {
e.FieldStart("mihomoX25519")
s.MihomoX25519.Encode(e)
}
}
{
if s.MihomoIpVersion.Set {
e.FieldStart("mihomoIpVersion")
s.MihomoIpVersion.Encode(e)
}
}
{
if s.Nodes != nil {
e.FieldStart("nodes")
e.ArrStart()
for _, elem := range s.Nodes {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
}
{
if s.XrayJsonTemplateUuid.Set {
e.FieldStart("xrayJsonTemplateUuid")
s.XrayJsonTemplateUuid.Encode(e)
}
}
{
if s.ExcludedInternalSquads != nil {
e.FieldStart("excludedInternalSquads")
e.ArrStart()
for _, elem := range s.ExcludedInternalSquads {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
}
{
if s.ExcludeFromSubscriptionTypes != nil {
e.FieldStart("excludeFromSubscriptionTypes")
e.ArrStart()
for _, elem := range s.ExcludeFromSubscriptionTypes {
elem.Encode(e)
}
e.ArrEnd()
}
}
{
e.FieldStart("uuids")
e.ArrStart()
for _, elem := range s.Uuids {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfUpdateManyHostsRequest = [31]string{
0: "inbound",
1: "remark",
2: "address",
3: "port",
4: "path",
5: "sni",
6: "host",
7: "alpn",
8: "fingerprint",
9: "isDisabled",
10: "securityLayer",
11: "xhttpExtraParams",
12: "muxParams",
13: "sockoptParams",
14: "finalMask",
15: "serverDescription",
16: "tags",
17: "isHidden",
18: "overrideSniFromAddress",
19: "keepSniBlank",
20: "vlessRouteId",
21: "pinnedPeerCertSha256",
22: "verifyPeerCertByName",
23: "shuffleHost",
24: "mihomoX25519",
25: "mihomoIpVersion",
26: "nodes",
27: "xrayJsonTemplateUuid",
28: "excludedInternalSquads",
29: "excludeFromSubscriptionTypes",
30: "uuids",
}
// Decode decodes UpdateManyHostsRequest from json.
func (s *UpdateManyHostsRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpdateManyHostsRequest to nil")
}
var requiredBitSet [4]uint8
s.setDefaults()
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "inbound":
if err := func() error {
s.Inbound.Reset()
if err := s.Inbound.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"inbound\"")
}
case "remark":
if err := func() error {
s.Remark.Reset()
if err := s.Remark.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"remark\"")
}
case "address":
if err := func() error {
s.Address.Reset()
if err := s.Address.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"address\"")
}
case "port":
if err := func() error {
s.Port.Reset()
if err := s.Port.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"port\"")
}
case "path":
if err := func() error {
s.Path.Reset()
if err := s.Path.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"path\"")
}
case "sni":
if err := func() error {
s.Sni.Reset()
if err := s.Sni.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"sni\"")
}
case "host":
if err := func() error {
s.Host.Reset()
if err := s.Host.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"host\"")
}
case "alpn":
if err := func() error {
s.Alpn.Reset()
if err := s.Alpn.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"alpn\"")
}
case "fingerprint":
if err := func() error {
s.Fingerprint.Reset()
if err := s.Fingerprint.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"fingerprint\"")
}
case "isDisabled":
if err := func() error {
s.IsDisabled.Reset()
if err := s.IsDisabled.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isDisabled\"")
}
case "securityLayer":
if err := func() error {
s.SecurityLayer.Reset()
if err := s.SecurityLayer.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"securityLayer\"")
}
case "xhttpExtraParams":
if err := func() error {
v, err := d.RawAppend(nil)
s.XhttpExtraParams = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"xhttpExtraParams\"")
}
case "muxParams":
if err := func() error {
v, err := d.RawAppend(nil)
s.MuxParams = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"muxParams\"")
}
case "sockoptParams":
if err := func() error {
v, err := d.RawAppend(nil)
s.SockoptParams = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"sockoptParams\"")
}
case "finalMask":
if err := func() error {
v, err := d.RawAppend(nil)
s.FinalMask = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"finalMask\"")
}
case "serverDescription":
if err := func() error {
s.ServerDescription.Reset()
if err := s.ServerDescription.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"serverDescription\"")
}
case "tags":
if err := func() error {
s.Tags = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.Tags = append(s.Tags, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"tags\"")
}
case "isHidden":
if err := func() error {
s.IsHidden.Reset()
if err := s.IsHidden.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isHidden\"")
}
case "overrideSniFromAddress":
if err := func() error {
s.OverrideSniFromAddress.Reset()
if err := s.OverrideSniFromAddress.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"overrideSniFromAddress\"")
}
case "keepSniBlank":
if err := func() error {
s.KeepSniBlank.Reset()
if err := s.KeepSniBlank.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"keepSniBlank\"")
}
case "vlessRouteId":
if err := func() error {
s.VlessRouteId.Reset()
if err := s.VlessRouteId.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"vlessRouteId\"")
}
case "pinnedPeerCertSha256":
if err := func() error {
s.PinnedPeerCertSha256.Reset()
if err := s.PinnedPeerCertSha256.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"pinnedPeerCertSha256\"")
}
case "verifyPeerCertByName":
if err := func() error {
s.VerifyPeerCertByName.Reset()
if err := s.VerifyPeerCertByName.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"verifyPeerCertByName\"")
}
case "shuffleHost":
if err := func() error {
s.ShuffleHost.Reset()
if err := s.ShuffleHost.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"shuffleHost\"")
}
case "mihomoX25519":
if err := func() error {
s.MihomoX25519.Reset()
if err := s.MihomoX25519.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"mihomoX25519\"")
}
case "mihomoIpVersion":
if err := func() error {
s.MihomoIpVersion.Reset()
if err := s.MihomoIpVersion.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"mihomoIpVersion\"")
}
case "nodes":
if err := func() error {
s.Nodes = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.Nodes = append(s.Nodes, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodes\"")
}
case "xrayJsonTemplateUuid":
if err := func() error {
s.XrayJsonTemplateUuid.Reset()
if err := s.XrayJsonTemplateUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"xrayJsonTemplateUuid\"")
}
case "excludedInternalSquads":
if err := func() error {
s.ExcludedInternalSquads = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.ExcludedInternalSquads = append(s.ExcludedInternalSquads, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"excludedInternalSquads\"")
}
case "excludeFromSubscriptionTypes":
if err := func() error {
s.ExcludeFromSubscriptionTypes = make([]UpdateManyHostsRequestExcludeFromSubscriptionTypesItem, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem UpdateManyHostsRequestExcludeFromSubscriptionTypesItem
if err := elem.Decode(d); err != nil {
return err
}
s.ExcludeFromSubscriptionTypes = append(s.ExcludeFromSubscriptionTypes, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"excludeFromSubscriptionTypes\"")
}
case "uuids":
requiredBitSet[3] |= 1 << 6
if err := func() error {
s.Uuids = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.Uuids = append(s.Uuids, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuids\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode UpdateManyHostsRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [4]uint8{
0b00000000,
0b00000000,
0b00000000,
0b01000000,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfUpdateManyHostsRequest) {
name = jsonFieldsNameOfUpdateManyHostsRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *UpdateManyHostsRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpdateManyHostsRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes UpdateManyHostsRequestAlpn as json.
func (s UpdateManyHostsRequestAlpn) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes UpdateManyHostsRequestAlpn from json.
func (s *UpdateManyHostsRequestAlpn) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpdateManyHostsRequestAlpn to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch UpdateManyHostsRequestAlpn(v) {
case UpdateManyHostsRequestAlpnH3:
*s = UpdateManyHostsRequestAlpnH3
case UpdateManyHostsRequestAlpnH2:
*s = UpdateManyHostsRequestAlpnH2
case UpdateManyHostsRequestAlpnHTTP11:
*s = UpdateManyHostsRequestAlpnHTTP11
case UpdateManyHostsRequestAlpnH2HTTP11:
*s = UpdateManyHostsRequestAlpnH2HTTP11
case UpdateManyHostsRequestAlpnH3H2HTTP11:
*s = UpdateManyHostsRequestAlpnH3H2HTTP11
case UpdateManyHostsRequestAlpnH3H2:
*s = UpdateManyHostsRequestAlpnH3H2
default:
*s = UpdateManyHostsRequestAlpn(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s UpdateManyHostsRequestAlpn) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpdateManyHostsRequestAlpn) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes UpdateManyHostsRequestExcludeFromSubscriptionTypesItem as json.
func (s UpdateManyHostsRequestExcludeFromSubscriptionTypesItem) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes UpdateManyHostsRequestExcludeFromSubscriptionTypesItem from json.
func (s *UpdateManyHostsRequestExcludeFromSubscriptionTypesItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpdateManyHostsRequestExcludeFromSubscriptionTypesItem to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch UpdateManyHostsRequestExcludeFromSubscriptionTypesItem(v) {
case UpdateManyHostsRequestExcludeFromSubscriptionTypesItemXRAYJSON:
*s = UpdateManyHostsRequestExcludeFromSubscriptionTypesItemXRAYJSON
case UpdateManyHostsRequestExcludeFromSubscriptionTypesItemXRAYBASE64:
*s = UpdateManyHostsRequestExcludeFromSubscriptionTypesItemXRAYBASE64
case UpdateManyHostsRequestExcludeFromSubscriptionTypesItemMIHOMO:
*s = UpdateManyHostsRequestExcludeFromSubscriptionTypesItemMIHOMO
case UpdateManyHostsRequestExcludeFromSubscriptionTypesItemSTASH:
*s = UpdateManyHostsRequestExcludeFromSubscriptionTypesItemSTASH
case UpdateManyHostsRequestExcludeFromSubscriptionTypesItemCLASH:
*s = UpdateManyHostsRequestExcludeFromSubscriptionTypesItemCLASH
case UpdateManyHostsRequestExcludeFromSubscriptionTypesItemSINGBOX:
*s = UpdateManyHostsRequestExcludeFromSubscriptionTypesItemSINGBOX
default:
*s = UpdateManyHostsRequestExcludeFromSubscriptionTypesItem(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s UpdateManyHostsRequestExcludeFromSubscriptionTypesItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpdateManyHostsRequestExcludeFromSubscriptionTypesItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes UpdateManyHostsRequestMihomoIpVersion as json.
func (s UpdateManyHostsRequestMihomoIpVersion) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes UpdateManyHostsRequestMihomoIpVersion from json.
func (s *UpdateManyHostsRequestMihomoIpVersion) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpdateManyHostsRequestMihomoIpVersion to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch UpdateManyHostsRequestMihomoIpVersion(v) {
case UpdateManyHostsRequestMihomoIpVersionDual:
*s = UpdateManyHostsRequestMihomoIpVersionDual
case UpdateManyHostsRequestMihomoIpVersionIpv4:
*s = UpdateManyHostsRequestMihomoIpVersionIpv4
case UpdateManyHostsRequestMihomoIpVersionIpv6:
*s = UpdateManyHostsRequestMihomoIpVersionIpv6
case UpdateManyHostsRequestMihomoIpVersionIpv4Prefer:
*s = UpdateManyHostsRequestMihomoIpVersionIpv4Prefer
case UpdateManyHostsRequestMihomoIpVersionIpv6Prefer:
*s = UpdateManyHostsRequestMihomoIpVersionIpv6Prefer
default:
*s = UpdateManyHostsRequestMihomoIpVersion(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s UpdateManyHostsRequestMihomoIpVersion) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpdateManyHostsRequestMihomoIpVersion) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes UpdateManyHostsRequestSecurityLayer as json.
func (s UpdateManyHostsRequestSecurityLayer) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes UpdateManyHostsRequestSecurityLayer from json.
func (s *UpdateManyHostsRequestSecurityLayer) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpdateManyHostsRequestSecurityLayer to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch UpdateManyHostsRequestSecurityLayer(v) {
case UpdateManyHostsRequestSecurityLayerDEFAULT:
*s = UpdateManyHostsRequestSecurityLayerDEFAULT
case UpdateManyHostsRequestSecurityLayerTLS:
*s = UpdateManyHostsRequestSecurityLayerTLS
case UpdateManyHostsRequestSecurityLayerNONE:
*s = UpdateManyHostsRequestSecurityLayerNONE
default:
*s = UpdateManyHostsRequestSecurityLayer(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s UpdateManyHostsRequestSecurityLayer) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpdateManyHostsRequestSecurityLayer) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *UpdateNodePluginRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *UpdateNodePluginRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
if s.Name.Set {
e.FieldStart("name")
s.Name.Encode(e)
}
}
{
if len(s.PluginConfig) != 0 {
e.FieldStart("pluginConfig")
e.Raw(s.PluginConfig)
}
}
}
var jsonFieldsNameOfUpdateNodePluginRequest = [3]string{
0: "uuid",
1: "name",
2: "pluginConfig",
}
// Decode decodes UpdateNodePluginRequest from json.
func (s *UpdateNodePluginRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpdateNodePluginRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "name":
if err := func() error {
s.Name.Reset()
if err := s.Name.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "pluginConfig":
if err := func() error {
v, err := d.RawAppend(nil)
s.PluginConfig = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"pluginConfig\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode UpdateNodePluginRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfUpdateNodePluginRequest) {
name = jsonFieldsNameOfUpdateNodePluginRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *UpdateNodePluginRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpdateNodePluginRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *UpdateNodeRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *UpdateNodeRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
if s.Name.Set {
e.FieldStart("name")
s.Name.Encode(e)
}
}
{
if s.Address.Set {
e.FieldStart("address")
s.Address.Encode(e)
}
}
{
if s.Port.Set {
e.FieldStart("port")
s.Port.Encode(e)
}
}
{
if s.ProxyUrl.Set {
e.FieldStart("proxyUrl")
s.ProxyUrl.Encode(e)
}
}
{
if s.IsTrafficTrackingActive.Set {
e.FieldStart("isTrafficTrackingActive")
s.IsTrafficTrackingActive.Encode(e)
}
}
{
if s.TrafficLimitBytes.Set {
e.FieldStart("trafficLimitBytes")
s.TrafficLimitBytes.Encode(e)
}
}
{
if s.NotifyPercent.Set {
e.FieldStart("notifyPercent")
s.NotifyPercent.Encode(e)
}
}
{
if s.TrafficResetDay.Set {
e.FieldStart("trafficResetDay")
s.TrafficResetDay.Encode(e)
}
}
{
if s.CountryCode.Set {
e.FieldStart("countryCode")
s.CountryCode.Encode(e)
}
}
{
if s.ConsumptionMultiplier.Set {
e.FieldStart("consumptionMultiplier")
s.ConsumptionMultiplier.Encode(e)
}
}
{
if s.NodeConsumptionMultiplier.Set {
e.FieldStart("nodeConsumptionMultiplier")
s.NodeConsumptionMultiplier.Encode(e)
}
}
{
if s.ConfigProfile.Set {
e.FieldStart("configProfile")
s.ConfigProfile.Encode(e)
}
}
{
if s.ProviderUuid.Set {
e.FieldStart("providerUuid")
s.ProviderUuid.Encode(e)
}
}
{
if s.Tags != nil {
e.FieldStart("tags")
e.ArrStart()
for _, elem := range s.Tags {
e.Str(elem)
}
e.ArrEnd()
}
}
{
if s.ActivePluginUuid.Set {
e.FieldStart("activePluginUuid")
s.ActivePluginUuid.Encode(e)
}
}
{
if s.Note.Set {
e.FieldStart("note")
s.Note.Encode(e)
}
}
}
var jsonFieldsNameOfUpdateNodeRequest = [17]string{
0: "uuid",
1: "name",
2: "address",
3: "port",
4: "proxyUrl",
5: "isTrafficTrackingActive",
6: "trafficLimitBytes",
7: "notifyPercent",
8: "trafficResetDay",
9: "countryCode",
10: "consumptionMultiplier",
11: "nodeConsumptionMultiplier",
12: "configProfile",
13: "providerUuid",
14: "tags",
15: "activePluginUuid",
16: "note",
}
// Decode decodes UpdateNodeRequest from json.
func (s *UpdateNodeRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpdateNodeRequest to nil")
}
var requiredBitSet [3]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "name":
if err := func() error {
s.Name.Reset()
if err := s.Name.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "address":
if err := func() error {
s.Address.Reset()
if err := s.Address.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"address\"")
}
case "port":
if err := func() error {
s.Port.Reset()
if err := s.Port.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"port\"")
}
case "proxyUrl":
if err := func() error {
s.ProxyUrl.Reset()
if err := s.ProxyUrl.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"proxyUrl\"")
}
case "isTrafficTrackingActive":
if err := func() error {
s.IsTrafficTrackingActive.Reset()
if err := s.IsTrafficTrackingActive.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isTrafficTrackingActive\"")
}
case "trafficLimitBytes":
if err := func() error {
s.TrafficLimitBytes.Reset()
if err := s.TrafficLimitBytes.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"trafficLimitBytes\"")
}
case "notifyPercent":
if err := func() error {
s.NotifyPercent.Reset()
if err := s.NotifyPercent.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"notifyPercent\"")
}
case "trafficResetDay":
if err := func() error {
s.TrafficResetDay.Reset()
if err := s.TrafficResetDay.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"trafficResetDay\"")
}
case "countryCode":
if err := func() error {
s.CountryCode.Reset()
if err := s.CountryCode.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"countryCode\"")
}
case "consumptionMultiplier":
if err := func() error {
s.ConsumptionMultiplier.Reset()
if err := s.ConsumptionMultiplier.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"consumptionMultiplier\"")
}
case "nodeConsumptionMultiplier":
if err := func() error {
s.NodeConsumptionMultiplier.Reset()
if err := s.NodeConsumptionMultiplier.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"nodeConsumptionMultiplier\"")
}
case "configProfile":
if err := func() error {
s.ConfigProfile.Reset()
if err := s.ConfigProfile.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"configProfile\"")
}
case "providerUuid":
if err := func() error {
s.ProviderUuid.Reset()
if err := s.ProviderUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"providerUuid\"")
}
case "tags":
if err := func() error {
s.Tags = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.Tags = append(s.Tags, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"tags\"")
}
case "activePluginUuid":
if err := func() error {
s.ActivePluginUuid.Reset()
if err := s.ActivePluginUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"activePluginUuid\"")
}
case "note":
if err := func() error {
s.Note.Reset()
if err := s.Note.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"note\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode UpdateNodeRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [3]uint8{
0b00000001,
0b00000000,
0b00000000,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfUpdateNodeRequest) {
name = jsonFieldsNameOfUpdateNodeRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *UpdateNodeRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpdateNodeRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *UpdatePasskeyRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *UpdatePasskeyRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("id")
e.Str(s.ID)
}
{
e.FieldStart("name")
e.Str(s.Name)
}
}
var jsonFieldsNameOfUpdatePasskeyRequest = [2]string{
0: "id",
1: "name",
}
// Decode decodes UpdatePasskeyRequest from json.
func (s *UpdatePasskeyRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpdatePasskeyRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "id":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.ID = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"id\"")
}
case "name":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Name = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode UpdatePasskeyRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfUpdatePasskeyRequest) {
name = jsonFieldsNameOfUpdatePasskeyRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *UpdatePasskeyRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpdatePasskeyRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *UpdateRemnawaveSettingsRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *UpdateRemnawaveSettingsRequest) encodeFields(e *jx.Encoder) {
{
if s.PasskeySettings.Set {
e.FieldStart("passkeySettings")
s.PasskeySettings.Encode(e)
}
}
{
if s.Oauth2Settings.Set {
e.FieldStart("oauth2Settings")
s.Oauth2Settings.Encode(e)
}
}
{
if s.PasswordSettings.Set {
e.FieldStart("passwordSettings")
s.PasswordSettings.Encode(e)
}
}
{
if s.BrandingSettings.Set {
e.FieldStart("brandingSettings")
s.BrandingSettings.Encode(e)
}
}
}
var jsonFieldsNameOfUpdateRemnawaveSettingsRequest = [4]string{
0: "passkeySettings",
1: "oauth2Settings",
2: "passwordSettings",
3: "brandingSettings",
}
// Decode decodes UpdateRemnawaveSettingsRequest from json.
func (s *UpdateRemnawaveSettingsRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpdateRemnawaveSettingsRequest to nil")
}
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "passkeySettings":
if err := func() error {
s.PasskeySettings.Reset()
if err := s.PasskeySettings.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"passkeySettings\"")
}
case "oauth2Settings":
if err := func() error {
s.Oauth2Settings.Reset()
if err := s.Oauth2Settings.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"oauth2Settings\"")
}
case "passwordSettings":
if err := func() error {
s.PasswordSettings.Reset()
if err := s.PasswordSettings.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"passwordSettings\"")
}
case "brandingSettings":
if err := func() error {
s.BrandingSettings.Reset()
if err := s.BrandingSettings.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"brandingSettings\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode UpdateRemnawaveSettingsRequest")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *UpdateRemnawaveSettingsRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpdateRemnawaveSettingsRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *UpdateSubscriptionPageConfigRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *UpdateSubscriptionPageConfigRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
if s.Name.Set {
e.FieldStart("name")
s.Name.Encode(e)
}
}
{
if len(s.Config) != 0 {
e.FieldStart("config")
e.Raw(s.Config)
}
}
}
var jsonFieldsNameOfUpdateSubscriptionPageConfigRequest = [3]string{
0: "uuid",
1: "name",
2: "config",
}
// Decode decodes UpdateSubscriptionPageConfigRequest from json.
func (s *UpdateSubscriptionPageConfigRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpdateSubscriptionPageConfigRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "name":
if err := func() error {
s.Name.Reset()
if err := s.Name.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "config":
if err := func() error {
v, err := d.RawAppend(nil)
s.Config = jx.Raw(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"config\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode UpdateSubscriptionPageConfigRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfUpdateSubscriptionPageConfigRequest) {
name = jsonFieldsNameOfUpdateSubscriptionPageConfigRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *UpdateSubscriptionPageConfigRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpdateSubscriptionPageConfigRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *UpdateSubscriptionSettingsRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *UpdateSubscriptionSettingsRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
if s.ProfileTitle.Set {
e.FieldStart("profileTitle")
s.ProfileTitle.Encode(e)
}
}
{
if s.SupportLink.Set {
e.FieldStart("supportLink")
s.SupportLink.Encode(e)
}
}
{
if s.ProfileUpdateInterval.Set {
e.FieldStart("profileUpdateInterval")
s.ProfileUpdateInterval.Encode(e)
}
}
{
if s.IsProfileWebpageUrlEnabled.Set {
e.FieldStart("isProfileWebpageUrlEnabled")
s.IsProfileWebpageUrlEnabled.Encode(e)
}
}
{
if s.ServeJsonAtBaseSubscription.Set {
e.FieldStart("serveJsonAtBaseSubscription")
s.ServeJsonAtBaseSubscription.Encode(e)
}
}
{
if s.HappAnnounce.Set {
e.FieldStart("happAnnounce")
s.HappAnnounce.Encode(e)
}
}
{
if s.HappRouting.Set {
e.FieldStart("happRouting")
s.HappRouting.Encode(e)
}
}
{
if s.IsShowCustomRemarks.Set {
e.FieldStart("isShowCustomRemarks")
s.IsShowCustomRemarks.Encode(e)
}
}
{
if s.CustomRemarks.Set {
e.FieldStart("customRemarks")
s.CustomRemarks.Encode(e)
}
}
{
if s.CustomResponseHeaders.Set {
e.FieldStart("customResponseHeaders")
s.CustomResponseHeaders.Encode(e)
}
}
{
if s.RandomizeHosts.Set {
e.FieldStart("randomizeHosts")
s.RandomizeHosts.Encode(e)
}
}
{
if s.ResponseRules.Set {
e.FieldStart("responseRules")
s.ResponseRules.Encode(e)
}
}
{
if s.HwidSettings.Set {
e.FieldStart("hwidSettings")
s.HwidSettings.Encode(e)
}
}
}
var jsonFieldsNameOfUpdateSubscriptionSettingsRequest = [14]string{
0: "uuid",
1: "profileTitle",
2: "supportLink",
3: "profileUpdateInterval",
4: "isProfileWebpageUrlEnabled",
5: "serveJsonAtBaseSubscription",
6: "happAnnounce",
7: "happRouting",
8: "isShowCustomRemarks",
9: "customRemarks",
10: "customResponseHeaders",
11: "randomizeHosts",
12: "responseRules",
13: "hwidSettings",
}
// Decode decodes UpdateSubscriptionSettingsRequest from json.
func (s *UpdateSubscriptionSettingsRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpdateSubscriptionSettingsRequest to nil")
}
var requiredBitSet [2]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "profileTitle":
if err := func() error {
s.ProfileTitle.Reset()
if err := s.ProfileTitle.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"profileTitle\"")
}
case "supportLink":
if err := func() error {
s.SupportLink.Reset()
if err := s.SupportLink.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"supportLink\"")
}
case "profileUpdateInterval":
if err := func() error {
s.ProfileUpdateInterval.Reset()
if err := s.ProfileUpdateInterval.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"profileUpdateInterval\"")
}
case "isProfileWebpageUrlEnabled":
if err := func() error {
s.IsProfileWebpageUrlEnabled.Reset()
if err := s.IsProfileWebpageUrlEnabled.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isProfileWebpageUrlEnabled\"")
}
case "serveJsonAtBaseSubscription":
if err := func() error {
s.ServeJsonAtBaseSubscription.Reset()
if err := s.ServeJsonAtBaseSubscription.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"serveJsonAtBaseSubscription\"")
}
case "happAnnounce":
if err := func() error {
s.HappAnnounce.Reset()
if err := s.HappAnnounce.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"happAnnounce\"")
}
case "happRouting":
if err := func() error {
s.HappRouting.Reset()
if err := s.HappRouting.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"happRouting\"")
}
case "isShowCustomRemarks":
if err := func() error {
s.IsShowCustomRemarks.Reset()
if err := s.IsShowCustomRemarks.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isShowCustomRemarks\"")
}
case "customRemarks":
if err := func() error {
s.CustomRemarks.Reset()
if err := s.CustomRemarks.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"customRemarks\"")
}
case "customResponseHeaders":
if err := func() error {
s.CustomResponseHeaders.Reset()
if err := s.CustomResponseHeaders.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"customResponseHeaders\"")
}
case "randomizeHosts":
if err := func() error {
s.RandomizeHosts.Reset()
if err := s.RandomizeHosts.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"randomizeHosts\"")
}
case "responseRules":
if err := func() error {
s.ResponseRules.Reset()
if err := s.ResponseRules.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"responseRules\"")
}
case "hwidSettings":
if err := func() error {
s.HwidSettings.Reset()
if err := s.HwidSettings.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"hwidSettings\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode UpdateSubscriptionSettingsRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [2]uint8{
0b00000001,
0b00000000,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfUpdateSubscriptionSettingsRequest) {
name = jsonFieldsNameOfUpdateSubscriptionSettingsRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *UpdateSubscriptionSettingsRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpdateSubscriptionSettingsRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s UpdateSubscriptionSettingsRequestCustomResponseHeaders) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields implements json.Marshaler.
func (s UpdateSubscriptionSettingsRequestCustomResponseHeaders) encodeFields(e *jx.Encoder) {
for k, elem := range s {
e.FieldStart(k)
e.Str(elem)
}
}
// Decode decodes UpdateSubscriptionSettingsRequestCustomResponseHeaders from json.
func (s *UpdateSubscriptionSettingsRequestCustomResponseHeaders) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpdateSubscriptionSettingsRequestCustomResponseHeaders to nil")
}
m := s.init()
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
var elem string
if err := func() error {
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrapf(err, "decode field %q", k)
}
m[string(k)] = elem
return nil
}); err != nil {
return errors.Wrap(err, "decode UpdateSubscriptionSettingsRequestCustomResponseHeaders")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s UpdateSubscriptionSettingsRequestCustomResponseHeaders) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpdateSubscriptionSettingsRequestCustomResponseHeaders) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *UpdateTemplateRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *UpdateTemplateRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
if s.Name.Set {
e.FieldStart("name")
s.Name.Encode(e)
}
}
{
if s.TemplateJson != nil {
e.FieldStart("templateJson")
s.TemplateJson.Encode(e)
}
}
{
if s.EncodedTemplateYaml.Set {
e.FieldStart("encodedTemplateYaml")
s.EncodedTemplateYaml.Encode(e)
}
}
}
var jsonFieldsNameOfUpdateTemplateRequest = [4]string{
0: "uuid",
1: "name",
2: "templateJson",
3: "encodedTemplateYaml",
}
// Decode decodes UpdateTemplateRequest from json.
func (s *UpdateTemplateRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpdateTemplateRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "name":
if err := func() error {
s.Name.Reset()
if err := s.Name.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"name\"")
}
case "templateJson":
if err := func() error {
s.TemplateJson = nil
var elem UpdateTemplateRequestTemplateJson
if err := elem.Decode(d); err != nil {
return err
}
s.TemplateJson = &elem
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"templateJson\"")
}
case "encodedTemplateYaml":
if err := func() error {
s.EncodedTemplateYaml.Reset()
if err := s.EncodedTemplateYaml.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"encodedTemplateYaml\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode UpdateTemplateRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfUpdateTemplateRequest) {
name = jsonFieldsNameOfUpdateTemplateRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *UpdateTemplateRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpdateTemplateRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *UpdateTemplateRequestTemplateJson) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *UpdateTemplateRequestTemplateJson) encodeFields(e *jx.Encoder) {
}
var jsonFieldsNameOfUpdateTemplateRequestTemplateJson = [0]string{}
// Decode decodes UpdateTemplateRequestTemplateJson from json.
func (s *UpdateTemplateRequestTemplateJson) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpdateTemplateRequestTemplateJson to nil")
}
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
default:
return d.Skip()
}
}); err != nil {
return errors.Wrap(err, "decode UpdateTemplateRequestTemplateJson")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *UpdateTemplateRequestTemplateJson) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpdateTemplateRequestTemplateJson) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *UpdateUserRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *UpdateUserRequest) encodeFields(e *jx.Encoder) {
{
if s.Username.Set {
e.FieldStart("username")
s.Username.Encode(e)
}
}
{
if s.UUID.Set {
e.FieldStart("uuid")
s.UUID.Encode(e)
}
}
{
if s.Status.Set {
e.FieldStart("status")
s.Status.Encode(e)
}
}
{
if s.TrafficLimitBytes.Set {
e.FieldStart("trafficLimitBytes")
s.TrafficLimitBytes.Encode(e)
}
}
{
if s.TrafficLimitStrategy.Set {
e.FieldStart("trafficLimitStrategy")
s.TrafficLimitStrategy.Encode(e)
}
}
{
if s.ExpireAt.Set {
e.FieldStart("expireAt")
s.ExpireAt.Encode(e, json.EncodeDateTime)
}
}
{
if s.Description.Set {
e.FieldStart("description")
s.Description.Encode(e)
}
}
{
if s.Tag.Set {
e.FieldStart("tag")
s.Tag.Encode(e)
}
}
{
if s.TelegramId.Set {
e.FieldStart("telegramId")
s.TelegramId.Encode(e)
}
}
{
if s.Email.Set {
e.FieldStart("email")
s.Email.Encode(e)
}
}
{
if s.HwidDeviceLimit.Set {
e.FieldStart("hwidDeviceLimit")
s.HwidDeviceLimit.Encode(e)
}
}
{
if s.ActiveInternalSquads != nil {
e.FieldStart("activeInternalSquads")
e.ArrStart()
for _, elem := range s.ActiveInternalSquads {
json.EncodeUUID(e, elem)
}
e.ArrEnd()
}
}
{
if s.ExternalSquadUuid.Set {
e.FieldStart("externalSquadUuid")
s.ExternalSquadUuid.Encode(e)
}
}
}
var jsonFieldsNameOfUpdateUserRequest = [13]string{
0: "username",
1: "uuid",
2: "status",
3: "trafficLimitBytes",
4: "trafficLimitStrategy",
5: "expireAt",
6: "description",
7: "tag",
8: "telegramId",
9: "email",
10: "hwidDeviceLimit",
11: "activeInternalSquads",
12: "externalSquadUuid",
}
// Decode decodes UpdateUserRequest from json.
func (s *UpdateUserRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpdateUserRequest to nil")
}
s.setDefaults()
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "username":
if err := func() error {
s.Username.Reset()
if err := s.Username.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"username\"")
}
case "uuid":
if err := func() error {
s.UUID.Reset()
if err := s.UUID.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "status":
if err := func() error {
s.Status.Reset()
if err := s.Status.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"status\"")
}
case "trafficLimitBytes":
if err := func() error {
s.TrafficLimitBytes.Reset()
if err := s.TrafficLimitBytes.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"trafficLimitBytes\"")
}
case "trafficLimitStrategy":
if err := func() error {
s.TrafficLimitStrategy.Reset()
if err := s.TrafficLimitStrategy.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"trafficLimitStrategy\"")
}
case "expireAt":
if err := func() error {
s.ExpireAt.Reset()
if err := s.ExpireAt.Decode(d, json.DecodeDateTime); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"expireAt\"")
}
case "description":
if err := func() error {
s.Description.Reset()
if err := s.Description.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"description\"")
}
case "tag":
if err := func() error {
s.Tag.Reset()
if err := s.Tag.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"tag\"")
}
case "telegramId":
if err := func() error {
s.TelegramId.Reset()
if err := s.TelegramId.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"telegramId\"")
}
case "email":
if err := func() error {
s.Email.Reset()
if err := s.Email.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"email\"")
}
case "hwidDeviceLimit":
if err := func() error {
s.HwidDeviceLimit.Reset()
if err := s.HwidDeviceLimit.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"hwidDeviceLimit\"")
}
case "activeInternalSquads":
if err := func() error {
s.ActiveInternalSquads = make([]uuid.UUID, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem uuid.UUID
v, err := json.DecodeUUID(d)
elem = v
if err != nil {
return err
}
s.ActiveInternalSquads = append(s.ActiveInternalSquads, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"activeInternalSquads\"")
}
case "externalSquadUuid":
if err := func() error {
s.ExternalSquadUuid.Reset()
if err := s.ExternalSquadUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"externalSquadUuid\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode UpdateUserRequest")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *UpdateUserRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpdateUserRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes UpdateUserRequestStatus as json.
func (s UpdateUserRequestStatus) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes UpdateUserRequestStatus from json.
func (s *UpdateUserRequestStatus) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpdateUserRequestStatus to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch UpdateUserRequestStatus(v) {
case UpdateUserRequestStatusACTIVE:
*s = UpdateUserRequestStatusACTIVE
case UpdateUserRequestStatusDISABLED:
*s = UpdateUserRequestStatusDISABLED
default:
*s = UpdateUserRequestStatus(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s UpdateUserRequestStatus) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpdateUserRequestStatus) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes UpdateUserRequestTrafficLimitStrategy as json.
func (s UpdateUserRequestTrafficLimitStrategy) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes UpdateUserRequestTrafficLimitStrategy from json.
func (s *UpdateUserRequestTrafficLimitStrategy) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpdateUserRequestTrafficLimitStrategy to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch UpdateUserRequestTrafficLimitStrategy(v) {
case UpdateUserRequestTrafficLimitStrategyNORESET:
*s = UpdateUserRequestTrafficLimitStrategyNORESET
case UpdateUserRequestTrafficLimitStrategyDAY:
*s = UpdateUserRequestTrafficLimitStrategyDAY
case UpdateUserRequestTrafficLimitStrategyWEEK:
*s = UpdateUserRequestTrafficLimitStrategyWEEK
case UpdateUserRequestTrafficLimitStrategyMONTH:
*s = UpdateUserRequestTrafficLimitStrategyMONTH
case UpdateUserRequestTrafficLimitStrategyMONTHROLLING:
*s = UpdateUserRequestTrafficLimitStrategyMONTHROLLING
default:
*s = UpdateUserRequestTrafficLimitStrategy(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s UpdateUserRequestTrafficLimitStrategy) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpdateUserRequestTrafficLimitStrategy) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *UpsertUserMetadataRequestBodyRequest) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *UpsertUserMetadataRequestBodyRequest) encodeFields(e *jx.Encoder) {
{
e.FieldStart("metadata")
s.Metadata.Encode(e)
}
}
var jsonFieldsNameOfUpsertUserMetadataRequestBodyRequest = [1]string{
0: "metadata",
}
// Decode decodes UpsertUserMetadataRequestBodyRequest from json.
func (s *UpsertUserMetadataRequestBodyRequest) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpsertUserMetadataRequestBodyRequest to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "metadata":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Metadata.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"metadata\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode UpsertUserMetadataRequestBodyRequest")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfUpsertUserMetadataRequestBodyRequest) {
name = jsonFieldsNameOfUpsertUserMetadataRequestBodyRequest[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *UpsertUserMetadataRequestBodyRequest) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpsertUserMetadataRequestBodyRequest) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *UpsertUserMetadataRequestBodyRequestMetadata) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *UpsertUserMetadataRequestBodyRequestMetadata) encodeFields(e *jx.Encoder) {
}
var jsonFieldsNameOfUpsertUserMetadataRequestBodyRequestMetadata = [0]string{}
// Decode decodes UpsertUserMetadataRequestBodyRequestMetadata from json.
func (s *UpsertUserMetadataRequestBodyRequestMetadata) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UpsertUserMetadataRequestBodyRequestMetadata to nil")
}
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
default:
return d.Skip()
}
}); err != nil {
return errors.Wrap(err, "decode UpsertUserMetadataRequestBodyRequestMetadata")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *UpsertUserMetadataRequestBodyRequestMetadata) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UpsertUserMetadataRequestBodyRequestMetadata) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *UserItem2) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *UserItem2) encodeFields(e *jx.Encoder) {
{
e.FieldStart("shortUuid")
e.Str(s.ShortUuid)
}
{
e.FieldStart("daysLeft")
e.Float64(s.DaysLeft)
}
{
e.FieldStart("trafficUsed")
e.Str(s.TrafficUsed)
}
{
e.FieldStart("trafficLimit")
e.Str(s.TrafficLimit)
}
{
e.FieldStart("lifetimeTrafficUsed")
e.Str(s.LifetimeTrafficUsed)
}
{
e.FieldStart("trafficUsedBytes")
e.Str(s.TrafficUsedBytes)
}
{
e.FieldStart("trafficLimitBytes")
e.Str(s.TrafficLimitBytes)
}
{
e.FieldStart("lifetimeTrafficUsedBytes")
e.Str(s.LifetimeTrafficUsedBytes)
}
{
e.FieldStart("username")
e.Str(s.Username)
}
{
e.FieldStart("expiresAt")
json.EncodeDateTime(e, s.ExpiresAt)
}
{
e.FieldStart("isActive")
e.Bool(s.IsActive)
}
{
e.FieldStart("userStatus")
s.UserStatus.Encode(e)
}
{
e.FieldStart("trafficLimitStrategy")
s.TrafficLimitStrategy.Encode(e)
}
}
var jsonFieldsNameOfUserItem2 = [13]string{
0: "shortUuid",
1: "daysLeft",
2: "trafficUsed",
3: "trafficLimit",
4: "lifetimeTrafficUsed",
5: "trafficUsedBytes",
6: "trafficLimitBytes",
7: "lifetimeTrafficUsedBytes",
8: "username",
9: "expiresAt",
10: "isActive",
11: "userStatus",
12: "trafficLimitStrategy",
}
// Decode decodes UserItem2 from json.
func (s *UserItem2) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UserItem2 to nil")
}
var requiredBitSet [2]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "shortUuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.ShortUuid = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"shortUuid\"")
}
case "daysLeft":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.DaysLeft = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"daysLeft\"")
}
case "trafficUsed":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.TrafficUsed = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"trafficUsed\"")
}
case "trafficLimit":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Str()
s.TrafficLimit = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"trafficLimit\"")
}
case "lifetimeTrafficUsed":
requiredBitSet[0] |= 1 << 4
if err := func() error {
v, err := d.Str()
s.LifetimeTrafficUsed = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"lifetimeTrafficUsed\"")
}
case "trafficUsedBytes":
requiredBitSet[0] |= 1 << 5
if err := func() error {
v, err := d.Str()
s.TrafficUsedBytes = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"trafficUsedBytes\"")
}
case "trafficLimitBytes":
requiredBitSet[0] |= 1 << 6
if err := func() error {
v, err := d.Str()
s.TrafficLimitBytes = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"trafficLimitBytes\"")
}
case "lifetimeTrafficUsedBytes":
requiredBitSet[0] |= 1 << 7
if err := func() error {
v, err := d.Str()
s.LifetimeTrafficUsedBytes = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"lifetimeTrafficUsedBytes\"")
}
case "username":
requiredBitSet[1] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Username = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"username\"")
}
case "expiresAt":
requiredBitSet[1] |= 1 << 1
if err := func() error {
v, err := json.DecodeDateTime(d)
s.ExpiresAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"expiresAt\"")
}
case "isActive":
requiredBitSet[1] |= 1 << 2
if err := func() error {
v, err := d.Bool()
s.IsActive = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"isActive\"")
}
case "userStatus":
requiredBitSet[1] |= 1 << 3
if err := func() error {
if err := s.UserStatus.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"userStatus\"")
}
case "trafficLimitStrategy":
requiredBitSet[1] |= 1 << 4
if err := func() error {
if err := s.TrafficLimitStrategy.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"trafficLimitStrategy\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode UserItem2")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [2]uint8{
0b11111111,
0b00011111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfUserItem2) {
name = jsonFieldsNameOfUserItem2[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *UserItem2) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UserItem2) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes UserItem2TrafficLimitStrategy as json.
func (s UserItem2TrafficLimitStrategy) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes UserItem2TrafficLimitStrategy from json.
func (s *UserItem2TrafficLimitStrategy) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UserItem2TrafficLimitStrategy to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch UserItem2TrafficLimitStrategy(v) {
case UserItem2TrafficLimitStrategyNORESET:
*s = UserItem2TrafficLimitStrategyNORESET
case UserItem2TrafficLimitStrategyDAY:
*s = UserItem2TrafficLimitStrategyDAY
case UserItem2TrafficLimitStrategyWEEK:
*s = UserItem2TrafficLimitStrategyWEEK
case UserItem2TrafficLimitStrategyMONTH:
*s = UserItem2TrafficLimitStrategyMONTH
case UserItem2TrafficLimitStrategyMONTHROLLING:
*s = UserItem2TrafficLimitStrategyMONTHROLLING
default:
*s = UserItem2TrafficLimitStrategy(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s UserItem2TrafficLimitStrategy) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UserItem2TrafficLimitStrategy) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes UserItem2UserStatus as json.
func (s UserItem2UserStatus) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes UserItem2UserStatus from json.
func (s *UserItem2UserStatus) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UserItem2UserStatus to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch UserItem2UserStatus(v) {
case UserItem2UserStatusACTIVE:
*s = UserItem2UserStatusACTIVE
case UserItem2UserStatusDISABLED:
*s = UserItem2UserStatusDISABLED
case UserItem2UserStatusLIMITED:
*s = UserItem2UserStatusLIMITED
case UserItem2UserStatusEXPIRED:
*s = UserItem2UserStatusEXPIRED
default:
*s = UserItem2UserStatus(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s UserItem2UserStatus) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UserItem2UserStatus) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *UserItemInfo) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *UserItemInfo) encodeFields(e *jx.Encoder) {
{
e.FieldStart("uuid")
json.EncodeUUID(e, s.UUID)
}
{
e.FieldStart("id")
e.Float64(s.ID)
}
{
e.FieldStart("shortUuid")
e.Str(s.ShortUuid)
}
{
e.FieldStart("username")
e.Str(s.Username)
}
{
if s.Status.Set {
e.FieldStart("status")
s.Status.Encode(e)
}
}
{
if s.TrafficLimitBytes.Set {
e.FieldStart("trafficLimitBytes")
s.TrafficLimitBytes.Encode(e)
}
}
{
if s.TrafficLimitStrategy.Set {
e.FieldStart("trafficLimitStrategy")
s.TrafficLimitStrategy.Encode(e)
}
}
{
e.FieldStart("expireAt")
json.EncodeDateTime(e, s.ExpireAt)
}
{
e.FieldStart("telegramId")
s.TelegramId.Encode(e)
}
{
e.FieldStart("email")
s.Email.Encode(e)
}
{
e.FieldStart("description")
s.Description.Encode(e)
}
{
e.FieldStart("tag")
s.Tag.Encode(e)
}
{
e.FieldStart("hwidDeviceLimit")
s.HwidDeviceLimit.Encode(e)
}
{
e.FieldStart("externalSquadUuid")
s.ExternalSquadUuid.Encode(e)
}
{
e.FieldStart("trojanPassword")
e.Str(s.TrojanPassword)
}
{
e.FieldStart("vlessUuid")
json.EncodeUUID(e, s.VlessUuid)
}
{
e.FieldStart("ssPassword")
e.Str(s.SsPassword)
}
{
if s.LastTriggeredThreshold.Set {
e.FieldStart("lastTriggeredThreshold")
s.LastTriggeredThreshold.Encode(e)
}
}
{
e.FieldStart("subRevokedAt")
s.SubRevokedAt.Encode(e, json.EncodeDateTime)
}
{
e.FieldStart("lastTrafficResetAt")
s.LastTrafficResetAt.Encode(e, json.EncodeDateTime)
}
{
e.FieldStart("createdAt")
json.EncodeDateTime(e, s.CreatedAt)
}
{
e.FieldStart("updatedAt")
json.EncodeDateTime(e, s.UpdatedAt)
}
{
e.FieldStart("subscriptionUrl")
e.Str(s.SubscriptionUrl)
}
{
e.FieldStart("activeInternalSquads")
e.ArrStart()
for _, elem := range s.ActiveInternalSquads {
elem.Encode(e)
}
e.ArrEnd()
}
{
e.FieldStart("userTraffic")
s.UserTraffic.Encode(e)
}
}
var jsonFieldsNameOfUserItemInfo = [25]string{
0: "uuid",
1: "id",
2: "shortUuid",
3: "username",
4: "status",
5: "trafficLimitBytes",
6: "trafficLimitStrategy",
7: "expireAt",
8: "telegramId",
9: "email",
10: "description",
11: "tag",
12: "hwidDeviceLimit",
13: "externalSquadUuid",
14: "trojanPassword",
15: "vlessUuid",
16: "ssPassword",
17: "lastTriggeredThreshold",
18: "subRevokedAt",
19: "lastTrafficResetAt",
20: "createdAt",
21: "updatedAt",
22: "subscriptionUrl",
23: "activeInternalSquads",
24: "userTraffic",
}
// Decode decodes UserItemInfo from json.
func (s *UserItemInfo) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UserItemInfo to nil")
}
var requiredBitSet [4]uint8
s.setDefaults()
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "uuid":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := json.DecodeUUID(d)
s.UUID = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"uuid\"")
}
case "id":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.ID = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"id\"")
}
case "shortUuid":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.ShortUuid = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"shortUuid\"")
}
case "username":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Str()
s.Username = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"username\"")
}
case "status":
if err := func() error {
s.Status.Reset()
if err := s.Status.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"status\"")
}
case "trafficLimitBytes":
if err := func() error {
s.TrafficLimitBytes.Reset()
if err := s.TrafficLimitBytes.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"trafficLimitBytes\"")
}
case "trafficLimitStrategy":
if err := func() error {
s.TrafficLimitStrategy.Reset()
if err := s.TrafficLimitStrategy.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"trafficLimitStrategy\"")
}
case "expireAt":
requiredBitSet[0] |= 1 << 7
if err := func() error {
v, err := json.DecodeDateTime(d)
s.ExpireAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"expireAt\"")
}
case "telegramId":
requiredBitSet[1] |= 1 << 0
if err := func() error {
if err := s.TelegramId.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"telegramId\"")
}
case "email":
requiredBitSet[1] |= 1 << 1
if err := func() error {
if err := s.Email.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"email\"")
}
case "description":
requiredBitSet[1] |= 1 << 2
if err := func() error {
if err := s.Description.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"description\"")
}
case "tag":
requiredBitSet[1] |= 1 << 3
if err := func() error {
if err := s.Tag.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"tag\"")
}
case "hwidDeviceLimit":
requiredBitSet[1] |= 1 << 4
if err := func() error {
if err := s.HwidDeviceLimit.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"hwidDeviceLimit\"")
}
case "externalSquadUuid":
requiredBitSet[1] |= 1 << 5
if err := func() error {
if err := s.ExternalSquadUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"externalSquadUuid\"")
}
case "trojanPassword":
requiredBitSet[1] |= 1 << 6
if err := func() error {
v, err := d.Str()
s.TrojanPassword = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"trojanPassword\"")
}
case "vlessUuid":
requiredBitSet[1] |= 1 << 7
if err := func() error {
v, err := json.DecodeUUID(d)
s.VlessUuid = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"vlessUuid\"")
}
case "ssPassword":
requiredBitSet[2] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.SsPassword = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"ssPassword\"")
}
case "lastTriggeredThreshold":
if err := func() error {
s.LastTriggeredThreshold.Reset()
if err := s.LastTriggeredThreshold.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"lastTriggeredThreshold\"")
}
case "subRevokedAt":
requiredBitSet[2] |= 1 << 2
if err := func() error {
if err := s.SubRevokedAt.Decode(d, json.DecodeDateTime); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"subRevokedAt\"")
}
case "lastTrafficResetAt":
requiredBitSet[2] |= 1 << 3
if err := func() error {
if err := s.LastTrafficResetAt.Decode(d, json.DecodeDateTime); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"lastTrafficResetAt\"")
}
case "createdAt":
requiredBitSet[2] |= 1 << 4
if err := func() error {
v, err := json.DecodeDateTime(d)
s.CreatedAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"createdAt\"")
}
case "updatedAt":
requiredBitSet[2] |= 1 << 5
if err := func() error {
v, err := json.DecodeDateTime(d)
s.UpdatedAt = v
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"updatedAt\"")
}
case "subscriptionUrl":
requiredBitSet[2] |= 1 << 6
if err := func() error {
v, err := d.Str()
s.SubscriptionUrl = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"subscriptionUrl\"")
}
case "activeInternalSquads":
requiredBitSet[2] |= 1 << 7
if err := func() error {
s.ActiveInternalSquads = make([]ActiveInternalSquad, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem ActiveInternalSquad
if err := elem.Decode(d); err != nil {
return err
}
s.ActiveInternalSquads = append(s.ActiveInternalSquads, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"activeInternalSquads\"")
}
case "userTraffic":
requiredBitSet[3] |= 1 << 0
if err := func() error {
if err := s.UserTraffic.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"userTraffic\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode UserItemInfo")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [4]uint8{
0b10001111,
0b11111111,
0b11111101,
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfUserItemInfo) {
name = jsonFieldsNameOfUserItemInfo[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *UserItemInfo) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UserItemInfo) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes UserItemInfoStatus as json.
func (s UserItemInfoStatus) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes UserItemInfoStatus from json.
func (s *UserItemInfoStatus) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UserItemInfoStatus to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch UserItemInfoStatus(v) {
case UserItemInfoStatusACTIVE:
*s = UserItemInfoStatusACTIVE
case UserItemInfoStatusDISABLED:
*s = UserItemInfoStatusDISABLED
case UserItemInfoStatusLIMITED:
*s = UserItemInfoStatusLIMITED
case UserItemInfoStatusEXPIRED:
*s = UserItemInfoStatusEXPIRED
default:
*s = UserItemInfoStatus(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s UserItemInfoStatus) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UserItemInfoStatus) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode encodes UserItemInfoTrafficLimitStrategy as json.
func (s UserItemInfoTrafficLimitStrategy) Encode(e *jx.Encoder) {
e.Str(string(s))
}
// Decode decodes UserItemInfoTrafficLimitStrategy from json.
func (s *UserItemInfoTrafficLimitStrategy) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UserItemInfoTrafficLimitStrategy to nil")
}
v, err := d.StrBytes()
if err != nil {
return err
}
// Try to use constant string.
switch UserItemInfoTrafficLimitStrategy(v) {
case UserItemInfoTrafficLimitStrategyNORESET:
*s = UserItemInfoTrafficLimitStrategyNORESET
case UserItemInfoTrafficLimitStrategyDAY:
*s = UserItemInfoTrafficLimitStrategyDAY
case UserItemInfoTrafficLimitStrategyWEEK:
*s = UserItemInfoTrafficLimitStrategyWEEK
case UserItemInfoTrafficLimitStrategyMONTH:
*s = UserItemInfoTrafficLimitStrategyMONTH
case UserItemInfoTrafficLimitStrategyMONTHROLLING:
*s = UserItemInfoTrafficLimitStrategyMONTHROLLING
default:
*s = UserItemInfoTrafficLimitStrategy(v)
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s UserItemInfoTrafficLimitStrategy) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UserItemInfoTrafficLimitStrategy) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *UserMetadataResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *UserMetadataResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfUserMetadataResponseResponse = [1]string{
0: "response",
}
// Decode decodes UserMetadataResponseResponse from json.
func (s *UserMetadataResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UserMetadataResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode UserMetadataResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfUserMetadataResponseResponse) {
name = jsonFieldsNameOfUserMetadataResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *UserMetadataResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UserMetadataResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *UserMetadataResponseResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *UserMetadataResponseResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("metadata")
s.Metadata.Encode(e)
}
}
var jsonFieldsNameOfUserMetadataResponseResponseResponse = [1]string{
0: "metadata",
}
// Decode decodes UserMetadataResponseResponseResponse from json.
func (s *UserMetadataResponseResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UserMetadataResponseResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "metadata":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Metadata.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"metadata\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode UserMetadataResponseResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfUserMetadataResponseResponseResponse) {
name = jsonFieldsNameOfUserMetadataResponseResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *UserMetadataResponseResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UserMetadataResponseResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *UserMetadataResponseResponseResponseMetadata) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *UserMetadataResponseResponseResponseMetadata) encodeFields(e *jx.Encoder) {
}
var jsonFieldsNameOfUserMetadataResponseResponseResponseMetadata = [0]string{}
// Decode decodes UserMetadataResponseResponseResponseMetadata from json.
func (s *UserMetadataResponseResponseResponseMetadata) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UserMetadataResponseResponseResponseMetadata to nil")
}
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
default:
return d.Skip()
}
}); err != nil {
return errors.Wrap(err, "decode UserMetadataResponseResponseResponseMetadata")
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *UserMetadataResponseResponseResponseMetadata) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UserMetadataResponseResponseResponseMetadata) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *UserResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *UserResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfUserResponse = [1]string{
0: "response",
}
// Decode decodes UserResponse from json.
func (s *UserResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UserResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode UserResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfUserResponse) {
name = jsonFieldsNameOfUserResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *UserResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UserResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *UserSubscriptionHistory) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *UserSubscriptionHistory) encodeFields(e *jx.Encoder) {
{
e.FieldStart("total")
e.Float64(s.Total)
}
{
e.FieldStart("records")
e.ArrStart()
for _, elem := range s.Records {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfUserSubscriptionHistory = [2]string{
0: "total",
1: "records",
}
// Decode decodes UserSubscriptionHistory from json.
func (s *UserSubscriptionHistory) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UserSubscriptionHistory to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "total":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.Total = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"total\"")
}
case "records":
requiredBitSet[0] |= 1 << 1
if err := func() error {
s.Records = make([]Record, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem Record
if err := elem.Decode(d); err != nil {
return err
}
s.Records = append(s.Records, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"records\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode UserSubscriptionHistory")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfUserSubscriptionHistory) {
name = jsonFieldsNameOfUserSubscriptionHistory[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *UserSubscriptionHistory) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UserSubscriptionHistory) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *UserTrafficItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *UserTrafficItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("usedTrafficBytes")
e.Float64(s.UsedTrafficBytes)
}
{
e.FieldStart("lifetimeUsedTrafficBytes")
e.Float64(s.LifetimeUsedTrafficBytes)
}
{
e.FieldStart("onlineAt")
s.OnlineAt.Encode(e, json.EncodeDateTime)
}
{
e.FieldStart("firstConnectedAt")
s.FirstConnectedAt.Encode(e, json.EncodeDateTime)
}
{
e.FieldStart("lastConnectedNodeUuid")
s.LastConnectedNodeUuid.Encode(e)
}
}
var jsonFieldsNameOfUserTrafficItem = [5]string{
0: "usedTrafficBytes",
1: "lifetimeUsedTrafficBytes",
2: "onlineAt",
3: "firstConnectedAt",
4: "lastConnectedNodeUuid",
}
// Decode decodes UserTrafficItem from json.
func (s *UserTrafficItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UserTrafficItem to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "usedTrafficBytes":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Float64()
s.UsedTrafficBytes = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"usedTrafficBytes\"")
}
case "lifetimeUsedTrafficBytes":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Float64()
s.LifetimeUsedTrafficBytes = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"lifetimeUsedTrafficBytes\"")
}
case "onlineAt":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.OnlineAt.Decode(d, json.DecodeDateTime); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"onlineAt\"")
}
case "firstConnectedAt":
requiredBitSet[0] |= 1 << 3
if err := func() error {
if err := s.FirstConnectedAt.Decode(d, json.DecodeDateTime); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"firstConnectedAt\"")
}
case "lastConnectedNodeUuid":
requiredBitSet[0] |= 1 << 4
if err := func() error {
if err := s.LastConnectedNodeUuid.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"lastConnectedNodeUuid\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode UserTrafficItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00011111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfUserTrafficItem) {
name = jsonFieldsNameOfUserTrafficItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *UserTrafficItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UserTrafficItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *UsersResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *UsersResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
e.ArrStart()
for _, elem := range s.Response {
elem.Encode(e)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfUsersResponse = [1]string{
0: "response",
}
// Decode decodes UsersResponse from json.
func (s *UsersResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode UsersResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
s.Response = make([]UserItemInfo, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem UserItemInfo
if err := elem.Decode(d); err != nil {
return err
}
s.Response = append(s.Response, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode UsersResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfUsersResponse) {
name = jsonFieldsNameOfUsersResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *UsersResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *UsersResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *ValidationError) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *ValidationError) encodeFields(e *jx.Encoder) {
{
e.FieldStart("validation")
e.Str(s.Validation)
}
{
e.FieldStart("code")
e.Str(s.Code)
}
{
e.FieldStart("message")
e.Str(s.Message)
}
{
e.FieldStart("path")
e.ArrStart()
for _, elem := range s.Path {
e.Str(elem)
}
e.ArrEnd()
}
}
var jsonFieldsNameOfValidationError = [4]string{
0: "validation",
1: "code",
2: "message",
3: "path",
}
// Decode decodes ValidationError from json.
func (s *ValidationError) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode ValidationError to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "validation":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Validation = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"validation\"")
}
case "code":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Code = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"code\"")
}
case "message":
requiredBitSet[0] |= 1 << 2
if err := func() error {
v, err := d.Str()
s.Message = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"message\"")
}
case "path":
requiredBitSet[0] |= 1 << 3
if err := func() error {
s.Path = make([]string, 0)
if err := d.Arr(func(d *jx.Decoder) error {
var elem string
v, err := d.Str()
elem = string(v)
if err != nil {
return err
}
s.Path = append(s.Path, elem)
return nil
}); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"path\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode ValidationError")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00001111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfValidationError) {
name = jsonFieldsNameOfValidationError[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *ValidationError) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *ValidationError) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *VerifyPasskeyRegistrationResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *VerifyPasskeyRegistrationResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("response")
s.Response.Encode(e)
}
}
var jsonFieldsNameOfVerifyPasskeyRegistrationResponse = [1]string{
0: "response",
}
// Decode decodes VerifyPasskeyRegistrationResponse from json.
func (s *VerifyPasskeyRegistrationResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode VerifyPasskeyRegistrationResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "response":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Response.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"response\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode VerifyPasskeyRegistrationResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfVerifyPasskeyRegistrationResponse) {
name = jsonFieldsNameOfVerifyPasskeyRegistrationResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *VerifyPasskeyRegistrationResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *VerifyPasskeyRegistrationResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *VerifyPasskeyRegistrationResponseResponse) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *VerifyPasskeyRegistrationResponseResponse) encodeFields(e *jx.Encoder) {
{
e.FieldStart("verified")
e.Bool(s.Verified)
}
}
var jsonFieldsNameOfVerifyPasskeyRegistrationResponseResponse = [1]string{
0: "verified",
}
// Decode decodes VerifyPasskeyRegistrationResponseResponse from json.
func (s *VerifyPasskeyRegistrationResponseResponse) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode VerifyPasskeyRegistrationResponseResponse to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "verified":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Bool()
s.Verified = bool(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"verified\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode VerifyPasskeyRegistrationResponseResponse")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000001,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfVerifyPasskeyRegistrationResponseResponse) {
name = jsonFieldsNameOfVerifyPasskeyRegistrationResponseResponse[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *VerifyPasskeyRegistrationResponseResponse) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *VerifyPasskeyRegistrationResponseResponse) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *Version) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *Version) encodeFields(e *jx.Encoder) {
{
e.FieldStart("xray")
e.Str(s.Xray)
}
{
e.FieldStart("node")
e.Str(s.Node)
}
}
var jsonFieldsNameOfVersion = [2]string{
0: "xray",
1: "node",
}
// Decode decodes Version from json.
func (s *Version) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode Version to nil")
}
var requiredBitSet [1]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "xray":
requiredBitSet[0] |= 1 << 0
if err := func() error {
v, err := d.Str()
s.Xray = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"xray\"")
}
case "node":
requiredBitSet[0] |= 1 << 1
if err := func() error {
v, err := d.Str()
s.Node = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"node\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode Version")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [1]uint8{
0b00000011,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfVersion) {
name = jsonFieldsNameOfVersion[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *Version) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *Version) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}
// Encode implements json.Marshaler.
func (s *XrayReportItem) Encode(e *jx.Encoder) {
e.ObjStart()
s.encodeFields(e)
e.ObjEnd()
}
// encodeFields encodes fields.
func (s *XrayReportItem) encodeFields(e *jx.Encoder) {
{
e.FieldStart("email")
s.Email.Encode(e)
}
{
e.FieldStart("level")
s.Level.Encode(e)
}
{
e.FieldStart("protocol")
s.Protocol.Encode(e)
}
{
e.FieldStart("network")
e.Str(s.Network)
}
{
e.FieldStart("source")
s.Source.Encode(e)
}
{
e.FieldStart("destination")
e.Str(s.Destination)
}
{
e.FieldStart("routeTarget")
s.RouteTarget.Encode(e)
}
{
e.FieldStart("originalTarget")
s.OriginalTarget.Encode(e)
}
{
e.FieldStart("inboundTag")
s.InboundTag.Encode(e)
}
{
e.FieldStart("inboundName")
s.InboundName.Encode(e)
}
{
e.FieldStart("inboundLocal")
s.InboundLocal.Encode(e)
}
{
e.FieldStart("outboundTag")
s.OutboundTag.Encode(e)
}
{
e.FieldStart("ts")
e.Float64(s.Ts)
}
}
var jsonFieldsNameOfXrayReportItem = [13]string{
0: "email",
1: "level",
2: "protocol",
3: "network",
4: "source",
5: "destination",
6: "routeTarget",
7: "originalTarget",
8: "inboundTag",
9: "inboundName",
10: "inboundLocal",
11: "outboundTag",
12: "ts",
}
// Decode decodes XrayReportItem from json.
func (s *XrayReportItem) Decode(d *jx.Decoder) error {
if s == nil {
return errors.New("invalid: unable to decode XrayReportItem to nil")
}
var requiredBitSet [2]uint8
if err := d.ObjBytes(func(d *jx.Decoder, k []byte) error {
switch string(k) {
case "email":
requiredBitSet[0] |= 1 << 0
if err := func() error {
if err := s.Email.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"email\"")
}
case "level":
requiredBitSet[0] |= 1 << 1
if err := func() error {
if err := s.Level.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"level\"")
}
case "protocol":
requiredBitSet[0] |= 1 << 2
if err := func() error {
if err := s.Protocol.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"protocol\"")
}
case "network":
requiredBitSet[0] |= 1 << 3
if err := func() error {
v, err := d.Str()
s.Network = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"network\"")
}
case "source":
requiredBitSet[0] |= 1 << 4
if err := func() error {
if err := s.Source.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"source\"")
}
case "destination":
requiredBitSet[0] |= 1 << 5
if err := func() error {
v, err := d.Str()
s.Destination = string(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"destination\"")
}
case "routeTarget":
requiredBitSet[0] |= 1 << 6
if err := func() error {
if err := s.RouteTarget.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"routeTarget\"")
}
case "originalTarget":
requiredBitSet[0] |= 1 << 7
if err := func() error {
if err := s.OriginalTarget.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"originalTarget\"")
}
case "inboundTag":
requiredBitSet[1] |= 1 << 0
if err := func() error {
if err := s.InboundTag.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"inboundTag\"")
}
case "inboundName":
requiredBitSet[1] |= 1 << 1
if err := func() error {
if err := s.InboundName.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"inboundName\"")
}
case "inboundLocal":
requiredBitSet[1] |= 1 << 2
if err := func() error {
if err := s.InboundLocal.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"inboundLocal\"")
}
case "outboundTag":
requiredBitSet[1] |= 1 << 3
if err := func() error {
if err := s.OutboundTag.Decode(d); err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"outboundTag\"")
}
case "ts":
requiredBitSet[1] |= 1 << 4
if err := func() error {
v, err := d.Float64()
s.Ts = float64(v)
if err != nil {
return err
}
return nil
}(); err != nil {
return errors.Wrap(err, "decode field \"ts\"")
}
default:
return d.Skip()
}
return nil
}); err != nil {
return errors.Wrap(err, "decode XrayReportItem")
}
// Validate required fields.
var failures []validate.FieldError
for i, mask := range [2]uint8{
0b11111111,
0b00011111,
} {
if result := (requiredBitSet[i] & mask) ^ mask; result != 0 {
// Mask only required fields and check equality to mask using XOR.
//
// If XOR result is not zero, result is not equal to expected, so some fields are missed.
// Bits of fields which would be set are actually bits of missed fields.
missed := bits.OnesCount8(result)
for bitN := 0; bitN < missed; bitN++ {
bitIdx := bits.TrailingZeros8(result)
fieldIdx := i*8 + bitIdx
var name string
if fieldIdx < len(jsonFieldsNameOfXrayReportItem) {
name = jsonFieldsNameOfXrayReportItem[fieldIdx]
} else {
name = strconv.Itoa(fieldIdx)
}
failures = append(failures, validate.FieldError{
Name: name,
Error: validate.ErrFieldRequired,
})
// Reset bit.
result &^= 1 << bitIdx
}
}
}
if len(failures) > 0 {
return &validate.Error{Fields: failures}
}
return nil
}
// MarshalJSON implements stdjson.Marshaler.
func (s *XrayReportItem) MarshalJSON() ([]byte, error) {
e := jx.Encoder{}
s.Encode(&e)
return e.Bytes(), nil
}
// UnmarshalJSON implements stdjson.Unmarshaler.
func (s *XrayReportItem) UnmarshalJSON(data []byte) error {
d := jx.DecodeBytes(data)
return s.Decode(d)
}