Files
gamertan bfe6cfd29e
verify / verify (push) Successful in 3m40s
auth: publish passkey foundations preview
2026-08-21 17:33:00 -04:00

915 lines
21 KiB
Go

// Code generated by github.com/tinylib/msgp DO NOT EDIT.
package webauthn
import (
"gamertan.com/web/internal/webauthnvendored/protocol"
"github.com/tinylib/msgp/msgp"
)
// DecodeMsg implements msgp.Decodable
func (z *Credential) DecodeMsg(dc *msgp.Reader) (err error) {
var field []byte
_ = field
var zb0001 uint32
zb0001, err = dc.ReadMapHeader()
if err != nil {
err = msgp.WrapError(err)
return
}
var zb0001Mask uint8 /* 3 bits */
_ = zb0001Mask
for zb0001 > 0 {
zb0001--
field, err = dc.ReadMapKeyPtr()
if err != nil {
err = msgp.WrapError(err)
return
}
switch msgp.UnsafeString(field) {
case "id":
z.ID, err = dc.ReadBytes(z.ID)
if err != nil {
err = msgp.WrapError(err, "ID")
return
}
case "pk":
z.PublicKey, err = dc.ReadBytes(z.PublicKey)
if err != nil {
err = msgp.WrapError(err, "PublicKey")
return
}
case "atttype":
z.AttestationType, err = dc.ReadString()
if err != nil {
err = msgp.WrapError(err, "AttestationType")
return
}
zb0001Mask |= 0x1
case "attfmt":
z.AttestationFormat, err = dc.ReadString()
if err != nil {
err = msgp.WrapError(err, "AttestationFormat")
return
}
zb0001Mask |= 0x2
case "t":
var zb0002 uint32
zb0002, err = dc.ReadArrayHeader()
if err != nil {
err = msgp.WrapError(err, "Transport")
return
}
if cap(z.Transport) >= int(zb0002) {
z.Transport = (z.Transport)[:zb0002]
} else {
z.Transport = make([]protocol.AuthenticatorTransport, zb0002)
}
for za0001 := range z.Transport {
{
var zb0003 string
zb0003, err = dc.ReadString()
if err != nil {
err = msgp.WrapError(err, "Transport", za0001)
return
}
z.Transport[za0001] = protocol.AuthenticatorTransport(zb0003)
}
}
zb0001Mask |= 0x4
case "flg":
{
var zb0004 byte
zb0004, err = dc.ReadByte()
if err != nil {
err = msgp.WrapError(err, "Flags")
return
}
z.Flags = CredentialFlagsFromMsgpByte(zb0004)
}
case "a":
err = z.Authenticator.DecodeMsg(dc)
if err != nil {
err = msgp.WrapError(err, "Authenticator")
return
}
case "att":
err = z.Attestation.DecodeMsg(dc)
if err != nil {
err = msgp.WrapError(err, "Attestation")
return
}
default:
err = dc.Skip()
if err != nil {
err = msgp.WrapError(err)
return
}
}
}
// Clear omitted fields.
if zb0001Mask != 0x7 {
if (zb0001Mask & 0x1) == 0 {
z.AttestationType = ""
}
if (zb0001Mask & 0x2) == 0 {
z.AttestationFormat = ""
}
if (zb0001Mask & 0x4) == 0 {
z.Transport = nil
}
}
return
}
// EncodeMsg implements msgp.Encodable
func (z *Credential) EncodeMsg(en *msgp.Writer) (err error) {
// check for omitted fields
zb0001Len := uint32(8)
var zb0001Mask uint8 /* 8 bits */
_ = zb0001Mask
if z.AttestationType == "" {
zb0001Len--
zb0001Mask |= 0x4
}
if z.AttestationFormat == "" {
zb0001Len--
zb0001Mask |= 0x8
}
if z.Transport == nil {
zb0001Len--
zb0001Mask |= 0x10
}
// variable map header, size zb0001Len
err = en.Append(0x80 | uint8(zb0001Len))
if err != nil {
return
}
// skip if no fields are to be emitted
if zb0001Len != 0 {
// write "id"
err = en.Append(0xa2, 0x69, 0x64)
if err != nil {
return
}
err = en.WriteBytes(z.ID)
if err != nil {
err = msgp.WrapError(err, "ID")
return
}
// write "pk"
err = en.Append(0xa2, 0x70, 0x6b)
if err != nil {
return
}
err = en.WriteBytes(z.PublicKey)
if err != nil {
err = msgp.WrapError(err, "PublicKey")
return
}
if (zb0001Mask & 0x4) == 0 { // if not omitted
// write "atttype"
err = en.Append(0xa7, 0x61, 0x74, 0x74, 0x74, 0x79, 0x70, 0x65)
if err != nil {
return
}
err = en.WriteString(z.AttestationType)
if err != nil {
err = msgp.WrapError(err, "AttestationType")
return
}
}
if (zb0001Mask & 0x8) == 0 { // if not omitted
// write "attfmt"
err = en.Append(0xa6, 0x61, 0x74, 0x74, 0x66, 0x6d, 0x74)
if err != nil {
return
}
err = en.WriteString(z.AttestationFormat)
if err != nil {
err = msgp.WrapError(err, "AttestationFormat")
return
}
}
if (zb0001Mask & 0x10) == 0 { // if not omitted
// write "t"
err = en.Append(0xa1, 0x74)
if err != nil {
return
}
err = en.WriteArrayHeader(uint32(len(z.Transport)))
if err != nil {
err = msgp.WrapError(err, "Transport")
return
}
for za0001 := range z.Transport {
err = en.WriteString(string(z.Transport[za0001]))
if err != nil {
err = msgp.WrapError(err, "Transport", za0001)
return
}
}
}
// write "flg"
err = en.Append(0xa3, 0x66, 0x6c, 0x67)
if err != nil {
return
}
err = en.WriteByte((CredentialFlags).MsgpByte(z.Flags))
if err != nil {
err = msgp.WrapError(err, "Flags")
return
}
// write "a"
err = en.Append(0xa1, 0x61)
if err != nil {
return
}
err = z.Authenticator.EncodeMsg(en)
if err != nil {
err = msgp.WrapError(err, "Authenticator")
return
}
// write "att"
err = en.Append(0xa3, 0x61, 0x74, 0x74)
if err != nil {
return
}
err = z.Attestation.EncodeMsg(en)
if err != nil {
err = msgp.WrapError(err, "Attestation")
return
}
}
return
}
// MarshalMsg implements msgp.Marshaler
func (z *Credential) MarshalMsg(b []byte) (o []byte, err error) {
o = msgp.Require(b, z.Msgsize())
// check for omitted fields
zb0001Len := uint32(8)
var zb0001Mask uint8 /* 8 bits */
_ = zb0001Mask
if z.AttestationType == "" {
zb0001Len--
zb0001Mask |= 0x4
}
if z.AttestationFormat == "" {
zb0001Len--
zb0001Mask |= 0x8
}
if z.Transport == nil {
zb0001Len--
zb0001Mask |= 0x10
}
// variable map header, size zb0001Len
o = append(o, 0x80|uint8(zb0001Len))
// skip if no fields are to be emitted
if zb0001Len != 0 {
// string "id"
o = append(o, 0xa2, 0x69, 0x64)
o = msgp.AppendBytes(o, z.ID)
// string "pk"
o = append(o, 0xa2, 0x70, 0x6b)
o = msgp.AppendBytes(o, z.PublicKey)
if (zb0001Mask & 0x4) == 0 { // if not omitted
// string "atttype"
o = append(o, 0xa7, 0x61, 0x74, 0x74, 0x74, 0x79, 0x70, 0x65)
o = msgp.AppendString(o, z.AttestationType)
}
if (zb0001Mask & 0x8) == 0 { // if not omitted
// string "attfmt"
o = append(o, 0xa6, 0x61, 0x74, 0x74, 0x66, 0x6d, 0x74)
o = msgp.AppendString(o, z.AttestationFormat)
}
if (zb0001Mask & 0x10) == 0 { // if not omitted
// string "t"
o = append(o, 0xa1, 0x74)
o = msgp.AppendArrayHeader(o, uint32(len(z.Transport)))
for za0001 := range z.Transport {
o = msgp.AppendString(o, string(z.Transport[za0001]))
}
}
// string "flg"
o = append(o, 0xa3, 0x66, 0x6c, 0x67)
o = msgp.AppendByte(o, (CredentialFlags).MsgpByte(z.Flags))
// string "a"
o = append(o, 0xa1, 0x61)
o, err = z.Authenticator.MarshalMsg(o)
if err != nil {
err = msgp.WrapError(err, "Authenticator")
return
}
// string "att"
o = append(o, 0xa3, 0x61, 0x74, 0x74)
o, err = z.Attestation.MarshalMsg(o)
if err != nil {
err = msgp.WrapError(err, "Attestation")
return
}
}
return
}
// UnmarshalMsg implements msgp.Unmarshaler
func (z *Credential) UnmarshalMsg(bts []byte) (o []byte, err error) {
var field []byte
_ = field
var zb0001 uint32
zb0001, bts, err = msgp.ReadMapHeaderBytes(bts)
if err != nil {
err = msgp.WrapError(err)
return
}
var zb0001Mask uint8 /* 3 bits */
_ = zb0001Mask
for zb0001 > 0 {
zb0001--
field, bts, err = msgp.ReadMapKeyZC(bts)
if err != nil {
err = msgp.WrapError(err)
return
}
switch msgp.UnsafeString(field) {
case "id":
z.ID, bts, err = msgp.ReadBytesBytes(bts, z.ID)
if err != nil {
err = msgp.WrapError(err, "ID")
return
}
case "pk":
z.PublicKey, bts, err = msgp.ReadBytesBytes(bts, z.PublicKey)
if err != nil {
err = msgp.WrapError(err, "PublicKey")
return
}
case "atttype":
z.AttestationType, bts, err = msgp.ReadStringBytes(bts)
if err != nil {
err = msgp.WrapError(err, "AttestationType")
return
}
zb0001Mask |= 0x1
case "attfmt":
z.AttestationFormat, bts, err = msgp.ReadStringBytes(bts)
if err != nil {
err = msgp.WrapError(err, "AttestationFormat")
return
}
zb0001Mask |= 0x2
case "t":
var zb0002 uint32
zb0002, bts, err = msgp.ReadArrayHeaderBytes(bts)
if err != nil {
err = msgp.WrapError(err, "Transport")
return
}
if cap(z.Transport) >= int(zb0002) {
z.Transport = (z.Transport)[:zb0002]
} else {
z.Transport = make([]protocol.AuthenticatorTransport, zb0002)
}
for za0001 := range z.Transport {
{
var zb0003 string
zb0003, bts, err = msgp.ReadStringBytes(bts)
if err != nil {
err = msgp.WrapError(err, "Transport", za0001)
return
}
z.Transport[za0001] = protocol.AuthenticatorTransport(zb0003)
}
}
zb0001Mask |= 0x4
case "flg":
{
var zb0004 byte
zb0004, bts, err = msgp.ReadByteBytes(bts)
if err != nil {
err = msgp.WrapError(err, "Flags")
return
}
z.Flags = CredentialFlagsFromMsgpByte(zb0004)
}
case "a":
bts, err = z.Authenticator.UnmarshalMsg(bts)
if err != nil {
err = msgp.WrapError(err, "Authenticator")
return
}
case "att":
bts, err = z.Attestation.UnmarshalMsg(bts)
if err != nil {
err = msgp.WrapError(err, "Attestation")
return
}
default:
bts, err = msgp.Skip(bts)
if err != nil {
err = msgp.WrapError(err)
return
}
}
}
// Clear omitted fields.
if zb0001Mask != 0x7 {
if (zb0001Mask & 0x1) == 0 {
z.AttestationType = ""
}
if (zb0001Mask & 0x2) == 0 {
z.AttestationFormat = ""
}
if (zb0001Mask & 0x4) == 0 {
z.Transport = nil
}
}
o = bts
return
}
// Msgsize returns an upper bound estimate of the number of bytes occupied by the serialized message
func (z *Credential) Msgsize() (s int) {
s = 1 + 3 + msgp.BytesPrefixSize + len(z.ID) + 3 + msgp.BytesPrefixSize + len(z.PublicKey) + 8 + msgp.StringPrefixSize + len(z.AttestationType) + 7 + msgp.StringPrefixSize + len(z.AttestationFormat) + 2 + msgp.ArrayHeaderSize
for za0001 := range z.Transport {
s += msgp.StringPrefixSize + len(string(z.Transport[za0001]))
}
s += 4 + msgp.ByteSize + 2 + z.Authenticator.Msgsize() + 4 + z.Attestation.Msgsize()
return
}
// DecodeMsg implements msgp.Decodable
func (z *CredentialAttestation) DecodeMsg(dc *msgp.Reader) (err error) {
var field []byte
_ = field
var zb0001 uint32
zb0001, err = dc.ReadMapHeader()
if err != nil {
err = msgp.WrapError(err)
return
}
var zb0001Mask uint8 /* 5 bits */
_ = zb0001Mask
for zb0001 > 0 {
zb0001--
field, err = dc.ReadMapKeyPtr()
if err != nil {
err = msgp.WrapError(err)
return
}
switch msgp.UnsafeString(field) {
case "cdj":
z.ClientDataJSON, err = dc.ReadBytes(z.ClientDataJSON)
if err != nil {
err = msgp.WrapError(err, "ClientDataJSON")
return
}
zb0001Mask |= 0x1
case "cdh":
z.ClientDataHash, err = dc.ReadBytes(z.ClientDataHash)
if err != nil {
err = msgp.WrapError(err, "ClientDataHash")
return
}
zb0001Mask |= 0x2
case "data":
z.AuthenticatorData, err = dc.ReadBytes(z.AuthenticatorData)
if err != nil {
err = msgp.WrapError(err, "AuthenticatorData")
return
}
zb0001Mask |= 0x4
case "alg":
z.PublicKeyAlgorithm, err = dc.ReadInt64()
if err != nil {
err = msgp.WrapError(err, "PublicKeyAlgorithm")
return
}
zb0001Mask |= 0x8
case "obj":
z.Object, err = dc.ReadBytes(z.Object)
if err != nil {
err = msgp.WrapError(err, "Object")
return
}
zb0001Mask |= 0x10
default:
err = dc.Skip()
if err != nil {
err = msgp.WrapError(err)
return
}
}
}
// Clear omitted fields.
if zb0001Mask != 0x1f {
if (zb0001Mask & 0x1) == 0 {
z.ClientDataJSON = nil
}
if (zb0001Mask & 0x2) == 0 {
z.ClientDataHash = nil
}
if (zb0001Mask & 0x4) == 0 {
z.AuthenticatorData = nil
}
if (zb0001Mask & 0x8) == 0 {
z.PublicKeyAlgorithm = 0
}
if (zb0001Mask & 0x10) == 0 {
z.Object = nil
}
}
return
}
// EncodeMsg implements msgp.Encodable
func (z *CredentialAttestation) EncodeMsg(en *msgp.Writer) (err error) {
// check for omitted fields
zb0001Len := uint32(5)
var zb0001Mask uint8 /* 5 bits */
_ = zb0001Mask
if z.ClientDataJSON == nil {
zb0001Len--
zb0001Mask |= 0x1
}
if z.ClientDataHash == nil {
zb0001Len--
zb0001Mask |= 0x2
}
if z.AuthenticatorData == nil {
zb0001Len--
zb0001Mask |= 0x4
}
if z.PublicKeyAlgorithm == 0 {
zb0001Len--
zb0001Mask |= 0x8
}
if z.Object == nil {
zb0001Len--
zb0001Mask |= 0x10
}
// variable map header, size zb0001Len
err = en.Append(0x80 | uint8(zb0001Len))
if err != nil {
return
}
// skip if no fields are to be emitted
if zb0001Len != 0 {
if (zb0001Mask & 0x1) == 0 { // if not omitted
// write "cdj"
err = en.Append(0xa3, 0x63, 0x64, 0x6a)
if err != nil {
return
}
err = en.WriteBytes(z.ClientDataJSON)
if err != nil {
err = msgp.WrapError(err, "ClientDataJSON")
return
}
}
if (zb0001Mask & 0x2) == 0 { // if not omitted
// write "cdh"
err = en.Append(0xa3, 0x63, 0x64, 0x68)
if err != nil {
return
}
err = en.WriteBytes(z.ClientDataHash)
if err != nil {
err = msgp.WrapError(err, "ClientDataHash")
return
}
}
if (zb0001Mask & 0x4) == 0 { // if not omitted
// write "data"
err = en.Append(0xa4, 0x64, 0x61, 0x74, 0x61)
if err != nil {
return
}
err = en.WriteBytes(z.AuthenticatorData)
if err != nil {
err = msgp.WrapError(err, "AuthenticatorData")
return
}
}
if (zb0001Mask & 0x8) == 0 { // if not omitted
// write "alg"
err = en.Append(0xa3, 0x61, 0x6c, 0x67)
if err != nil {
return
}
err = en.WriteInt64(z.PublicKeyAlgorithm)
if err != nil {
err = msgp.WrapError(err, "PublicKeyAlgorithm")
return
}
}
if (zb0001Mask & 0x10) == 0 { // if not omitted
// write "obj"
err = en.Append(0xa3, 0x6f, 0x62, 0x6a)
if err != nil {
return
}
err = en.WriteBytes(z.Object)
if err != nil {
err = msgp.WrapError(err, "Object")
return
}
}
}
return
}
// MarshalMsg implements msgp.Marshaler
func (z *CredentialAttestation) MarshalMsg(b []byte) (o []byte, err error) {
o = msgp.Require(b, z.Msgsize())
// check for omitted fields
zb0001Len := uint32(5)
var zb0001Mask uint8 /* 5 bits */
_ = zb0001Mask
if z.ClientDataJSON == nil {
zb0001Len--
zb0001Mask |= 0x1
}
if z.ClientDataHash == nil {
zb0001Len--
zb0001Mask |= 0x2
}
if z.AuthenticatorData == nil {
zb0001Len--
zb0001Mask |= 0x4
}
if z.PublicKeyAlgorithm == 0 {
zb0001Len--
zb0001Mask |= 0x8
}
if z.Object == nil {
zb0001Len--
zb0001Mask |= 0x10
}
// variable map header, size zb0001Len
o = append(o, 0x80|uint8(zb0001Len))
// skip if no fields are to be emitted
if zb0001Len != 0 {
if (zb0001Mask & 0x1) == 0 { // if not omitted
// string "cdj"
o = append(o, 0xa3, 0x63, 0x64, 0x6a)
o = msgp.AppendBytes(o, z.ClientDataJSON)
}
if (zb0001Mask & 0x2) == 0 { // if not omitted
// string "cdh"
o = append(o, 0xa3, 0x63, 0x64, 0x68)
o = msgp.AppendBytes(o, z.ClientDataHash)
}
if (zb0001Mask & 0x4) == 0 { // if not omitted
// string "data"
o = append(o, 0xa4, 0x64, 0x61, 0x74, 0x61)
o = msgp.AppendBytes(o, z.AuthenticatorData)
}
if (zb0001Mask & 0x8) == 0 { // if not omitted
// string "alg"
o = append(o, 0xa3, 0x61, 0x6c, 0x67)
o = msgp.AppendInt64(o, z.PublicKeyAlgorithm)
}
if (zb0001Mask & 0x10) == 0 { // if not omitted
// string "obj"
o = append(o, 0xa3, 0x6f, 0x62, 0x6a)
o = msgp.AppendBytes(o, z.Object)
}
}
return
}
// UnmarshalMsg implements msgp.Unmarshaler
func (z *CredentialAttestation) UnmarshalMsg(bts []byte) (o []byte, err error) {
var field []byte
_ = field
var zb0001 uint32
zb0001, bts, err = msgp.ReadMapHeaderBytes(bts)
if err != nil {
err = msgp.WrapError(err)
return
}
var zb0001Mask uint8 /* 5 bits */
_ = zb0001Mask
for zb0001 > 0 {
zb0001--
field, bts, err = msgp.ReadMapKeyZC(bts)
if err != nil {
err = msgp.WrapError(err)
return
}
switch msgp.UnsafeString(field) {
case "cdj":
z.ClientDataJSON, bts, err = msgp.ReadBytesBytes(bts, z.ClientDataJSON)
if err != nil {
err = msgp.WrapError(err, "ClientDataJSON")
return
}
zb0001Mask |= 0x1
case "cdh":
z.ClientDataHash, bts, err = msgp.ReadBytesBytes(bts, z.ClientDataHash)
if err != nil {
err = msgp.WrapError(err, "ClientDataHash")
return
}
zb0001Mask |= 0x2
case "data":
z.AuthenticatorData, bts, err = msgp.ReadBytesBytes(bts, z.AuthenticatorData)
if err != nil {
err = msgp.WrapError(err, "AuthenticatorData")
return
}
zb0001Mask |= 0x4
case "alg":
z.PublicKeyAlgorithm, bts, err = msgp.ReadInt64Bytes(bts)
if err != nil {
err = msgp.WrapError(err, "PublicKeyAlgorithm")
return
}
zb0001Mask |= 0x8
case "obj":
z.Object, bts, err = msgp.ReadBytesBytes(bts, z.Object)
if err != nil {
err = msgp.WrapError(err, "Object")
return
}
zb0001Mask |= 0x10
default:
bts, err = msgp.Skip(bts)
if err != nil {
err = msgp.WrapError(err)
return
}
}
}
// Clear omitted fields.
if zb0001Mask != 0x1f {
if (zb0001Mask & 0x1) == 0 {
z.ClientDataJSON = nil
}
if (zb0001Mask & 0x2) == 0 {
z.ClientDataHash = nil
}
if (zb0001Mask & 0x4) == 0 {
z.AuthenticatorData = nil
}
if (zb0001Mask & 0x8) == 0 {
z.PublicKeyAlgorithm = 0
}
if (zb0001Mask & 0x10) == 0 {
z.Object = nil
}
}
o = bts
return
}
// Msgsize returns an upper bound estimate of the number of bytes occupied by the serialized message
func (z *CredentialAttestation) Msgsize() (s int) {
s = 1 + 4 + msgp.BytesPrefixSize + len(z.ClientDataJSON) + 4 + msgp.BytesPrefixSize + len(z.ClientDataHash) + 5 + msgp.BytesPrefixSize + len(z.AuthenticatorData) + 4 + msgp.Int64Size + 4 + msgp.BytesPrefixSize + len(z.Object)
return
}
// DecodeMsg implements msgp.Decodable
func (z *CredentialFlags) DecodeMsg(dc *msgp.Reader) (err error) {
{
var zb0001 byte
zb0001, err = dc.ReadByte()
if err != nil {
err = msgp.WrapError(err)
return
}
(*z) = CredentialFlagsFromMsgpByte(zb0001)
}
return
}
// EncodeMsg implements msgp.Encodable
func (z CredentialFlags) EncodeMsg(en *msgp.Writer) (err error) {
err = en.WriteByte((CredentialFlags).MsgpByte(z))
if err != nil {
err = msgp.WrapError(err)
return
}
return
}
// MarshalMsg implements msgp.Marshaler
func (z CredentialFlags) MarshalMsg(b []byte) (o []byte, err error) {
o = msgp.Require(b, z.Msgsize())
o = msgp.AppendByte(o, (CredentialFlags).MsgpByte(z))
return
}
// UnmarshalMsg implements msgp.Unmarshaler
func (z *CredentialFlags) UnmarshalMsg(bts []byte) (o []byte, err error) {
{
var zb0001 byte
zb0001, bts, err = msgp.ReadByteBytes(bts)
if err != nil {
err = msgp.WrapError(err)
return
}
(*z) = CredentialFlagsFromMsgpByte(zb0001)
}
o = bts
return
}
// Msgsize returns an upper bound estimate of the number of bytes occupied by the serialized message
func (z CredentialFlags) Msgsize() (s int) {
s = msgp.ByteSize
return
}
// DecodeMsg implements msgp.Decodable
func (z *Credentials) DecodeMsg(dc *msgp.Reader) (err error) {
var zb0002 uint32
zb0002, err = dc.ReadArrayHeader()
if err != nil {
err = msgp.WrapError(err)
return
}
if cap((*z)) >= int(zb0002) {
(*z) = (*z)[:zb0002]
} else {
(*z) = make(Credentials, zb0002)
}
for zb0001 := range *z {
err = (*z)[zb0001].DecodeMsg(dc)
if err != nil {
err = msgp.WrapError(err, zb0001)
return
}
}
return
}
// EncodeMsg implements msgp.Encodable
func (z Credentials) EncodeMsg(en *msgp.Writer) (err error) {
err = en.WriteArrayHeader(uint32(len(z)))
if err != nil {
err = msgp.WrapError(err)
return
}
for zb0003 := range z {
err = z[zb0003].EncodeMsg(en)
if err != nil {
err = msgp.WrapError(err, zb0003)
return
}
}
return
}
// MarshalMsg implements msgp.Marshaler
func (z Credentials) MarshalMsg(b []byte) (o []byte, err error) {
o = msgp.Require(b, z.Msgsize())
o = msgp.AppendArrayHeader(o, uint32(len(z)))
for zb0003 := range z {
o, err = z[zb0003].MarshalMsg(o)
if err != nil {
err = msgp.WrapError(err, zb0003)
return
}
}
return
}
// UnmarshalMsg implements msgp.Unmarshaler
func (z *Credentials) UnmarshalMsg(bts []byte) (o []byte, err error) {
var zb0002 uint32
zb0002, bts, err = msgp.ReadArrayHeaderBytes(bts)
if err != nil {
err = msgp.WrapError(err)
return
}
if cap((*z)) >= int(zb0002) {
(*z) = (*z)[:zb0002]
} else {
(*z) = make(Credentials, zb0002)
}
for zb0001 := range *z {
bts, err = (*z)[zb0001].UnmarshalMsg(bts)
if err != nil {
err = msgp.WrapError(err, zb0001)
return
}
}
o = bts
return
}
// Msgsize returns an upper bound estimate of the number of bytes occupied by the serialized message
func (z Credentials) Msgsize() (s int) {
s = msgp.ArrayHeaderSize
for zb0003 := range z {
s += z[zb0003].Msgsize()
}
return
}