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// Code generated by protoc-gen-go-pulsar. DO NOT EDIT.
package didv1
import (
_ "cosmossdk.io/api/cosmos/orm/v1"
fmt "fmt"
runtime "github.com/cosmos/cosmos-proto/runtime"
protoreflect "google.golang.org/protobuf/reflect/protoreflect"
protoiface "google.golang.org/protobuf/runtime/protoiface"
protoimpl "google.golang.org/protobuf/runtime/protoimpl"
io "io"
reflect "reflect"
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sort "sort"
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sync "sync"
)
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var _ protoreflect . Map = ( * _Authentication_6_map )( nil )
type _Authentication_6_map struct {
m * map [ string ] string
}
func ( x * _Authentication_6_map ) Len () int {
if x . m == nil {
return 0
}
return len ( * x . m )
}
func ( x * _Authentication_6_map ) Range ( f func ( protoreflect . MapKey , protoreflect . Value ) bool ) {
if x . m == nil {
return
}
for k , v := range * x . m {
mapKey := ( protoreflect . MapKey )( protoreflect . ValueOfString ( k ))
mapValue := protoreflect . ValueOfString ( v )
if ! f ( mapKey , mapValue ) {
break
}
}
}
func ( x * _Authentication_6_map ) Has ( key protoreflect . MapKey ) bool {
if x . m == nil {
return false
}
keyUnwrapped := key . String ()
concreteValue := keyUnwrapped
_ , ok := ( * x . m )[ concreteValue ]
return ok
}
func ( x * _Authentication_6_map ) Clear ( key protoreflect . MapKey ) {
if x . m == nil {
return
}
keyUnwrapped := key . String ()
concreteKey := keyUnwrapped
delete ( * x . m , concreteKey )
}
func ( x * _Authentication_6_map ) Get ( key protoreflect . MapKey ) protoreflect . Value {
if x . m == nil {
return protoreflect . Value {}
}
keyUnwrapped := key . String ()
concreteKey := keyUnwrapped
v , ok := ( * x . m )[ concreteKey ]
if ! ok {
return protoreflect . Value {}
}
return protoreflect . ValueOfString ( v )
}
func ( x * _Authentication_6_map ) Set ( key protoreflect . MapKey , value protoreflect . Value ) {
if ! key . IsValid () || ! value . IsValid () {
panic ( "invalid key or value provided" )
}
keyUnwrapped := key . String ()
concreteKey := keyUnwrapped
valueUnwrapped := value . String ()
concreteValue := valueUnwrapped
( * x . m )[ concreteKey ] = concreteValue
}
func ( x * _Authentication_6_map ) Mutable ( key protoreflect . MapKey ) protoreflect . Value {
panic ( "should not call Mutable on protoreflect.Map whose value is not of type protoreflect.Message" )
}
func ( x * _Authentication_6_map ) NewValue () protoreflect . Value {
v := ""
return protoreflect . ValueOfString ( v )
}
func ( x * _Authentication_6_map ) IsValid () bool {
return x . m != nil
}
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var (
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md_Authentication protoreflect . MessageDescriptor
fd_Authentication_did protoreflect . FieldDescriptor
fd_Authentication_controller protoreflect . FieldDescriptor
fd_Authentication_subject protoreflect . FieldDescriptor
fd_Authentication_public_key protoreflect . FieldDescriptor
fd_Authentication_credential_id protoreflect . FieldDescriptor
fd_Authentication_metadata protoreflect . FieldDescriptor
fd_Authentication_creation_block protoreflect . FieldDescriptor
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)
func init () {
file_did_v1_state_proto_init ()
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md_Authentication = File_did_v1_state_proto . Messages (). ByName ( "Authentication" )
fd_Authentication_did = md_Authentication . Fields (). ByName ( "did" )
fd_Authentication_controller = md_Authentication . Fields (). ByName ( "controller" )
fd_Authentication_subject = md_Authentication . Fields (). ByName ( "subject" )
fd_Authentication_public_key = md_Authentication . Fields (). ByName ( "public_key" )
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fd_Authentication_credential_id = md_Authentication . Fields (). ByName ( "credential_id" )
fd_Authentication_metadata = md_Authentication . Fields (). ByName ( "metadata" )
fd_Authentication_creation_block = md_Authentication . Fields (). ByName ( "creation_block" )
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}
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var _ protoreflect . Message = ( * fastReflection_Authentication )( nil )
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type fastReflection_Authentication Authentication
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func ( x * Authentication ) ProtoReflect () protoreflect . Message {
return ( * fastReflection_Authentication )( x )
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}
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func ( x * Authentication ) slowProtoReflect () protoreflect . Message {
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mi := & file_did_v1_state_proto_msgTypes [ 0 ]
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if protoimpl . UnsafeEnabled && x != nil {
ms := protoimpl . X . MessageStateOf ( protoimpl . Pointer ( x ))
if ms . LoadMessageInfo () == nil {
ms . StoreMessageInfo ( mi )
}
return ms
}
return mi . MessageOf ( x )
}
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var _fastReflection_Authentication_messageType fastReflection_Authentication_messageType
var _ protoreflect . MessageType = fastReflection_Authentication_messageType {}
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type fastReflection_Authentication_messageType struct {}
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func ( x fastReflection_Authentication_messageType ) Zero () protoreflect . Message {
return ( * fastReflection_Authentication )( nil )
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}
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func ( x fastReflection_Authentication_messageType ) New () protoreflect . Message {
return new ( fastReflection_Authentication )
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}
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func ( x fastReflection_Authentication_messageType ) Descriptor () protoreflect . MessageDescriptor {
return md_Authentication
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}
// Descriptor returns message descriptor, which contains only the protobuf
// type information for the message.
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func ( x * fastReflection_Authentication ) Descriptor () protoreflect . MessageDescriptor {
return md_Authentication
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}
// Type returns the message type, which encapsulates both Go and protobuf
// type information. If the Go type information is not needed,
// it is recommended that the message descriptor be used instead.
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func ( x * fastReflection_Authentication ) Type () protoreflect . MessageType {
return _fastReflection_Authentication_messageType
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}
// New returns a newly allocated and mutable empty message.
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func ( x * fastReflection_Authentication ) New () protoreflect . Message {
return new ( fastReflection_Authentication )
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}
// Interface unwraps the message reflection interface and
// returns the underlying ProtoMessage interface.
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func ( x * fastReflection_Authentication ) Interface () protoreflect . ProtoMessage {
return ( * Authentication )( x )
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}
// Range iterates over every populated field in an undefined order,
// calling f for each field descriptor and value encountered.
// Range returns immediately if f returns false.
// While iterating, mutating operations may only be performed
// on the current field descriptor.
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func ( x * fastReflection_Authentication ) Range ( f func ( protoreflect . FieldDescriptor , protoreflect . Value ) bool ) {
if x . Did != "" {
value := protoreflect . ValueOfString ( x . Did )
if ! f ( fd_Authentication_did , value ) {
return
}
}
if x . Controller != "" {
value := protoreflect . ValueOfString ( x . Controller )
if ! f ( fd_Authentication_controller , value ) {
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return
}
}
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if x . Subject != "" {
value := protoreflect . ValueOfString ( x . Subject )
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if ! f ( fd_Authentication_subject , value ) {
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return
}
}
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if x . PublicKey != nil {
value := protoreflect . ValueOfMessage ( x . PublicKey . ProtoReflect ())
if ! f ( fd_Authentication_public_key , value ) {
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return
}
}
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if len ( x . CredentialId ) != 0 {
value := protoreflect . ValueOfBytes ( x . CredentialId )
if ! f ( fd_Authentication_credential_id , value ) {
return
}
}
if len ( x . Metadata ) != 0 {
value := protoreflect . ValueOfMap ( & _Authentication_6_map { m : & x . Metadata })
if ! f ( fd_Authentication_metadata , value ) {
return
}
}
if x . CreationBlock != int64 ( 0 ) {
value := protoreflect . ValueOfInt64 ( x . CreationBlock )
if ! f ( fd_Authentication_creation_block , value ) {
return
}
}
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}
// Has reports whether a field is populated.
//
// Some fields have the property of nullability where it is possible to
// distinguish between the default value of a field and whether the field
// was explicitly populated with the default value. Singular message fields,
// member fields of a oneof, and proto2 scalar fields are nullable. Such
// fields are populated only if explicitly set.
//
// In other cases (aside from the nullable cases above),
// a proto3 scalar field is populated if it contains a non-zero value, and
// a repeated field is populated if it is non-empty.
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func ( x * fastReflection_Authentication ) Has ( fd protoreflect . FieldDescriptor ) bool {
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switch fd . FullName () {
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case "did.v1.Authentication.did" :
return x . Did != ""
case "did.v1.Authentication.controller" :
return x . Controller != ""
case "did.v1.Authentication.subject" :
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return x . Subject != ""
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case "did.v1.Authentication.public_key" :
return x . PublicKey != nil
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case "did.v1.Authentication.credential_id" :
return len ( x . CredentialId ) != 0
case "did.v1.Authentication.metadata" :
return len ( x . Metadata ) != 0
case "did.v1.Authentication.creation_block" :
return x . CreationBlock != int64 ( 0 )
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default :
if fd . IsExtension () {
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panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.Authentication" ))
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}
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panic ( fmt . Errorf ( "message did.v1.Authentication does not contain field %s" , fd . FullName ()))
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}
}
// Clear clears the field such that a subsequent Has call reports false.
//
// Clearing an extension field clears both the extension type and value
// associated with the given field number.
//
// Clear is a mutating operation and unsafe for concurrent use.
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func ( x * fastReflection_Authentication ) Clear ( fd protoreflect . FieldDescriptor ) {
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switch fd . FullName () {
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case "did.v1.Authentication.did" :
x . Did = ""
case "did.v1.Authentication.controller" :
x . Controller = ""
case "did.v1.Authentication.subject" :
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x . Subject = ""
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case "did.v1.Authentication.public_key" :
x . PublicKey = nil
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case "did.v1.Authentication.credential_id" :
x . CredentialId = nil
case "did.v1.Authentication.metadata" :
x . Metadata = nil
case "did.v1.Authentication.creation_block" :
x . CreationBlock = int64 ( 0 )
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default :
if fd . IsExtension () {
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panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.Authentication" ))
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}
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panic ( fmt . Errorf ( "message did.v1.Authentication does not contain field %s" , fd . FullName ()))
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}
}
// Get retrieves the value for a field.
//
// For unpopulated scalars, it returns the default value, where
// the default value of a bytes scalar is guaranteed to be a copy.
// For unpopulated composite types, it returns an empty, read-only view
// of the value; to obtain a mutable reference, use Mutable.
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func ( x * fastReflection_Authentication ) Get ( descriptor protoreflect . FieldDescriptor ) protoreflect . Value {
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switch descriptor . FullName () {
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case "did.v1.Authentication.did" :
value := x . Did
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return protoreflect . ValueOfString ( value )
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case "did.v1.Authentication.controller" :
value := x . Controller
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return protoreflect . ValueOfString ( value )
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case "did.v1.Authentication.subject" :
value := x . Subject
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return protoreflect . ValueOfString ( value )
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case "did.v1.Authentication.public_key" :
value := x . PublicKey
return protoreflect . ValueOfMessage ( value . ProtoReflect ())
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case "did.v1.Authentication.credential_id" :
value := x . CredentialId
return protoreflect . ValueOfBytes ( value )
case "did.v1.Authentication.metadata" :
if len ( x . Metadata ) == 0 {
return protoreflect . ValueOfMap ( & _Authentication_6_map {})
}
mapValue := & _Authentication_6_map { m : & x . Metadata }
return protoreflect . ValueOfMap ( mapValue )
case "did.v1.Authentication.creation_block" :
value := x . CreationBlock
return protoreflect . ValueOfInt64 ( value )
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default :
if descriptor . IsExtension () {
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panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.Authentication" ))
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}
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panic ( fmt . Errorf ( "message did.v1.Authentication does not contain field %s" , descriptor . FullName ()))
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}
}
// Set stores the value for a field.
//
// For a field belonging to a oneof, it implicitly clears any other field
// that may be currently set within the same oneof.
// For extension fields, it implicitly stores the provided ExtensionType.
// When setting a composite type, it is unspecified whether the stored value
// aliases the source's memory in any way. If the composite value is an
// empty, read-only value, then it panics.
//
// Set is a mutating operation and unsafe for concurrent use.
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func ( x * fastReflection_Authentication ) Set ( fd protoreflect . FieldDescriptor , value protoreflect . Value ) {
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switch fd . FullName () {
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case "did.v1.Authentication.did" :
x . Did = value . Interface ().( string )
case "did.v1.Authentication.controller" :
x . Controller = value . Interface ().( string )
case "did.v1.Authentication.subject" :
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x . Subject = value . Interface ().( string )
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case "did.v1.Authentication.public_key" :
x . PublicKey = value . Message (). Interface ().( * PubKey )
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case "did.v1.Authentication.credential_id" :
x . CredentialId = value . Bytes ()
case "did.v1.Authentication.metadata" :
mv := value . Map ()
cmv := mv .( * _Authentication_6_map )
x . Metadata = * cmv . m
case "did.v1.Authentication.creation_block" :
x . CreationBlock = value . Int ()
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default :
if fd . IsExtension () {
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panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.Authentication" ))
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}
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panic ( fmt . Errorf ( "message did.v1.Authentication does not contain field %s" , fd . FullName ()))
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}
}
// Mutable returns a mutable reference to a composite type.
//
// If the field is unpopulated, it may allocate a composite value.
// For a field belonging to a oneof, it implicitly clears any other field
// that may be currently set within the same oneof.
// For extension fields, it implicitly stores the provided ExtensionType
// if not already stored.
// It panics if the field does not contain a composite type.
//
// Mutable is a mutating operation and unsafe for concurrent use.
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func ( x * fastReflection_Authentication ) Mutable ( fd protoreflect . FieldDescriptor ) protoreflect . Value {
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switch fd . FullName () {
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case "did.v1.Authentication.public_key" :
if x . PublicKey == nil {
x . PublicKey = new ( PubKey )
}
return protoreflect . ValueOfMessage ( x . PublicKey . ProtoReflect ())
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case "did.v1.Authentication.metadata" :
if x . Metadata == nil {
x . Metadata = make ( map [ string ] string )
}
value := & _Authentication_6_map { m : & x . Metadata }
return protoreflect . ValueOfMap ( value )
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case "did.v1.Authentication.did" :
panic ( fmt . Errorf ( "field did of message did.v1.Authentication is not mutable" ))
case "did.v1.Authentication.controller" :
panic ( fmt . Errorf ( "field controller of message did.v1.Authentication is not mutable" ))
case "did.v1.Authentication.subject" :
panic ( fmt . Errorf ( "field subject of message did.v1.Authentication is not mutable" ))
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case "did.v1.Authentication.credential_id" :
panic ( fmt . Errorf ( "field credential_id of message did.v1.Authentication is not mutable" ))
case "did.v1.Authentication.creation_block" :
panic ( fmt . Errorf ( "field creation_block of message did.v1.Authentication is not mutable" ))
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default :
if fd . IsExtension () {
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panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.Authentication" ))
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}
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panic ( fmt . Errorf ( "message did.v1.Authentication does not contain field %s" , fd . FullName ()))
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}
}
// NewField returns a new value that is assignable to the field
// for the given descriptor. For scalars, this returns the default value.
// For lists, maps, and messages, this returns a new, empty, mutable value.
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func ( x * fastReflection_Authentication ) NewField ( fd protoreflect . FieldDescriptor ) protoreflect . Value {
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switch fd . FullName () {
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case "did.v1.Authentication.did" :
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return protoreflect . ValueOfString ( "" )
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case "did.v1.Authentication.controller" :
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return protoreflect . ValueOfString ( "" )
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case "did.v1.Authentication.subject" :
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return protoreflect . ValueOfString ( "" )
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case "did.v1.Authentication.public_key" :
m := new ( PubKey )
return protoreflect . ValueOfMessage ( m . ProtoReflect ())
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case "did.v1.Authentication.credential_id" :
return protoreflect . ValueOfBytes ( nil )
case "did.v1.Authentication.metadata" :
m := make ( map [ string ] string )
return protoreflect . ValueOfMap ( & _Authentication_6_map { m : & m })
case "did.v1.Authentication.creation_block" :
return protoreflect . ValueOfInt64 ( int64 ( 0 ))
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default :
if fd . IsExtension () {
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panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.Authentication" ))
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}
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panic ( fmt . Errorf ( "message did.v1.Authentication does not contain field %s" , fd . FullName ()))
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}
}
// WhichOneof reports which field within the oneof is populated,
// returning nil if none are populated.
// It panics if the oneof descriptor does not belong to this message.
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func ( x * fastReflection_Authentication ) WhichOneof ( d protoreflect . OneofDescriptor ) protoreflect . FieldDescriptor {
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switch d . FullName () {
default :
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panic ( fmt . Errorf ( "%s is not a oneof field in did.v1.Authentication" , d . FullName ()))
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}
panic ( "unreachable" )
}
// GetUnknown retrieves the entire list of unknown fields.
// The caller may only mutate the contents of the RawFields
// if the mutated bytes are stored back into the message with SetUnknown.
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func ( x * fastReflection_Authentication ) GetUnknown () protoreflect . RawFields {
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return x . unknownFields
}
// SetUnknown stores an entire list of unknown fields.
// The raw fields must be syntactically valid according to the wire format.
// An implementation may panic if this is not the case.
// Once stored, the caller must not mutate the content of the RawFields.
// An empty RawFields may be passed to clear the fields.
//
// SetUnknown is a mutating operation and unsafe for concurrent use.
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func ( x * fastReflection_Authentication ) SetUnknown ( fields protoreflect . RawFields ) {
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x . unknownFields = fields
}
// IsValid reports whether the message is valid.
//
// An invalid message is an empty, read-only value.
//
// An invalid message often corresponds to a nil pointer of the concrete
// message type, but the details are implementation dependent.
// Validity is not part of the protobuf data model, and may not
// be preserved in marshaling or other operations.
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func ( x * fastReflection_Authentication ) IsValid () bool {
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return x != nil
}
// ProtoMethods returns optional fastReflectionFeature-path implementations of various operations.
// This method may return nil.
//
// The returned methods type is identical to
// "google.golang.org/protobuf/runtime/protoiface".Methods.
// Consult the protoiface package documentation for details.
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func ( x * fastReflection_Authentication ) ProtoMethods () * protoiface . Methods {
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size := func ( input protoiface . SizeInput ) protoiface . SizeOutput {
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x := input . Message . Interface ().( * Authentication )
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if x == nil {
return protoiface . SizeOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Size : 0 ,
}
}
options := runtime . SizeInputToOptions ( input )
_ = options
var n int
var l int
_ = l
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l = len ( x . Did )
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if l > 0 {
n += 1 + l + runtime . Sov ( uint64 ( l ))
}
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l = len ( x . Controller )
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if l > 0 {
n += 1 + l + runtime . Sov ( uint64 ( l ))
}
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l = len ( x . Subject )
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if l > 0 {
n += 1 + l + runtime . Sov ( uint64 ( l ))
}
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if x . PublicKey != nil {
l = options . Size ( x . PublicKey )
n += 1 + l + runtime . Sov ( uint64 ( l ))
}
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l = len ( x . CredentialId )
if l > 0 {
n += 1 + l + runtime . Sov ( uint64 ( l ))
}
if len ( x . Metadata ) > 0 {
SiZeMaP := func ( k string , v string ) {
mapEntrySize := 1 + len ( k ) + runtime . Sov ( uint64 ( len ( k ))) + 1 + len ( v ) + runtime . Sov ( uint64 ( len ( v )))
n += mapEntrySize + 1 + runtime . Sov ( uint64 ( mapEntrySize ))
}
if options . Deterministic {
sortme := make ([] string , 0 , len ( x . Metadata ))
for k := range x . Metadata {
sortme = append ( sortme , k )
}
sort . Strings ( sortme )
for _ , k := range sortme {
v := x . Metadata [ k ]
SiZeMaP ( k , v )
}
} else {
for k , v := range x . Metadata {
SiZeMaP ( k , v )
}
}
}
if x . CreationBlock != 0 {
n += 1 + runtime . Sov ( uint64 ( x . CreationBlock ))
}
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if x . unknownFields != nil {
n += len ( x . unknownFields )
}
return protoiface . SizeOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Size : n ,
}
}
marshal := func ( input protoiface . MarshalInput ) ( protoiface . MarshalOutput , error ) {
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x := input . Message . Interface ().( * Authentication )
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if x == nil {
return protoiface . MarshalOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Buf : input . Buf ,
}, nil
}
options := runtime . MarshalInputToOptions ( input )
_ = options
size := options . Size ( x )
dAtA := make ([] byte , size )
i := len ( dAtA )
_ = i
var l int
_ = l
if x . unknownFields != nil {
i -= len ( x . unknownFields )
copy ( dAtA [ i :], x . unknownFields )
}
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if x . CreationBlock != 0 {
i = runtime . EncodeVarint ( dAtA , i , uint64 ( x . CreationBlock ))
i --
dAtA [ i ] = 0x38
}
if len ( x . Metadata ) > 0 {
MaRsHaLmAp := func ( k string , v string ) ( protoiface . MarshalOutput , error ) {
baseI := i
i -= len ( v )
copy ( dAtA [ i :], v )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( v )))
i --
dAtA [ i ] = 0x12
i -= len ( k )
copy ( dAtA [ i :], k )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( k )))
i --
dAtA [ i ] = 0xa
i = runtime . EncodeVarint ( dAtA , i , uint64 ( baseI - i ))
i --
dAtA [ i ] = 0x32
return protoiface . MarshalOutput {}, nil
}
if options . Deterministic {
keysForMetadata := make ([] string , 0 , len ( x . Metadata ))
for k := range x . Metadata {
keysForMetadata = append ( keysForMetadata , string ( k ))
}
sort . Slice ( keysForMetadata , func ( i , j int ) bool {
return keysForMetadata [ i ] < keysForMetadata [ j ]
})
for iNdEx := len ( keysForMetadata ) - 1 ; iNdEx >= 0 ; iNdEx -- {
v := x . Metadata [ string ( keysForMetadata [ iNdEx ])]
out , err := MaRsHaLmAp ( keysForMetadata [ iNdEx ], v )
if err != nil {
return out , err
}
}
} else {
for k := range x . Metadata {
v := x . Metadata [ k ]
out , err := MaRsHaLmAp ( k , v )
if err != nil {
return out , err
}
}
}
}
if len ( x . CredentialId ) > 0 {
i -= len ( x . CredentialId )
copy ( dAtA [ i :], x . CredentialId )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( x . CredentialId )))
i --
dAtA [ i ] = 0x2a
}
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if x . PublicKey != nil {
encoded , err := options . Marshal ( x . PublicKey )
if err != nil {
return protoiface . MarshalOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Buf : input . Buf ,
}, err
}
i -= len ( encoded )
copy ( dAtA [ i :], encoded )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( encoded )))
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i --
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dAtA [ i ] = 0x22
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}
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if len ( x . Subject ) > 0 {
i -= len ( x . Subject )
copy ( dAtA [ i :], x . Subject )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( x . Subject )))
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i --
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dAtA [ i ] = 0x1a
}
if len ( x . Controller ) > 0 {
i -= len ( x . Controller )
copy ( dAtA [ i :], x . Controller )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( x . Controller )))
i --
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dAtA [ i ] = 0x12
}
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if len ( x . Did ) > 0 {
i -= len ( x . Did )
copy ( dAtA [ i :], x . Did )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( x . Did )))
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i --
dAtA [ i ] = 0xa
}
if input . Buf != nil {
input . Buf = append ( input . Buf , dAtA ... )
} else {
input . Buf = dAtA
}
return protoiface . MarshalOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Buf : input . Buf ,
}, nil
}
unmarshal := func ( input protoiface . UnmarshalInput ) ( protoiface . UnmarshalOutput , error ) {
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x := input . Message . Interface ().( * Authentication )
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if x == nil {
return protoiface . UnmarshalOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Flags : input . Flags ,
}, nil
}
options := runtime . UnmarshalInputToOptions ( input )
_ = options
dAtA := input . Buf
l := len ( dAtA )
iNdEx := 0
for iNdEx < l {
preIndex := iNdEx
var wire uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
wire |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
fieldNum := int32 ( wire >> 3 )
wireType := int ( wire & 0x7 )
if wireType == 4 {
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return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: Authentication: wiretype end group for non-group" )
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}
if fieldNum <= 0 {
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return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: Authentication: illegal tag %d (wire type %d)" , fieldNum , wire )
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}
switch fieldNum {
case 1 :
if wireType != 2 {
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return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field Did" , wireType )
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}
var stringLen uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLen |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLen := int ( stringLen )
if intStringLen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + intStringLen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
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x . Did = string ( dAtA [ iNdEx : postIndex ])
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iNdEx = postIndex
case 2 :
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if wireType != 2 {
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return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field Controller" , wireType )
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}
var stringLen uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLen |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLen := int ( stringLen )
if intStringLen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + intStringLen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
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x . Controller = string ( dAtA [ iNdEx : postIndex ])
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iNdEx = postIndex
case 3 :
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if wireType != 2 {
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return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field Subject" , wireType )
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}
var stringLen uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLen |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLen := int ( stringLen )
if intStringLen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + intStringLen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
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x . Subject = string ( dAtA [ iNdEx : postIndex ])
iNdEx = postIndex
case 4 :
if wireType != 2 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field PublicKey" , wireType )
}
var msglen int
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
msglen |= int ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
if msglen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + msglen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
if x . PublicKey == nil {
x . PublicKey = & PubKey {}
}
if err := options . Unmarshal ( dAtA [ iNdEx : postIndex ], x . PublicKey ); err != nil {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, err
}
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iNdEx = postIndex
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case 5 :
if wireType != 2 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field CredentialId" , wireType )
}
var byteLen int
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
byteLen |= int ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
if byteLen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + byteLen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
x . CredentialId = append ( x . CredentialId [: 0 ], dAtA [ iNdEx : postIndex ] ... )
if x . CredentialId == nil {
x . CredentialId = [] byte {}
}
iNdEx = postIndex
case 6 :
if wireType != 2 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field Metadata" , wireType )
}
var msglen int
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
msglen |= int ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
if msglen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + msglen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
if x . Metadata == nil {
x . Metadata = make ( map [ string ] string )
}
var mapkey string
var mapvalue string
for iNdEx < postIndex {
entryPreIndex := iNdEx
var wire uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
wire |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
fieldNum := int32 ( wire >> 3 )
if fieldNum == 1 {
var stringLenmapkey uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLenmapkey |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLenmapkey := int ( stringLenmapkey )
if intStringLenmapkey < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postStringIndexmapkey := iNdEx + intStringLenmapkey
if postStringIndexmapkey < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postStringIndexmapkey > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
mapkey = string ( dAtA [ iNdEx : postStringIndexmapkey ])
iNdEx = postStringIndexmapkey
} else if fieldNum == 2 {
var stringLenmapvalue uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLenmapvalue |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLenmapvalue := int ( stringLenmapvalue )
if intStringLenmapvalue < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postStringIndexmapvalue := iNdEx + intStringLenmapvalue
if postStringIndexmapvalue < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postStringIndexmapvalue > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
mapvalue = string ( dAtA [ iNdEx : postStringIndexmapvalue ])
iNdEx = postStringIndexmapvalue
} else {
iNdEx = entryPreIndex
skippy , err := runtime . Skip ( dAtA [ iNdEx :])
if err != nil {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, err
}
if ( skippy < 0 ) || ( iNdEx + skippy ) < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if ( iNdEx + skippy ) > postIndex {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
iNdEx += skippy
}
}
x . Metadata [ mapkey ] = mapvalue
iNdEx = postIndex
case 7 :
if wireType != 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field CreationBlock" , wireType )
}
x . CreationBlock = 0
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
x . CreationBlock |= int64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
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default :
iNdEx = preIndex
skippy , err := runtime . Skip ( dAtA [ iNdEx :])
if err != nil {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, err
}
if ( skippy < 0 ) || ( iNdEx + skippy ) < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if ( iNdEx + skippy ) > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
if ! options . DiscardUnknown {
x . unknownFields = append ( x . unknownFields , dAtA [ iNdEx : iNdEx + skippy ] ... )
}
iNdEx += skippy
}
}
if iNdEx > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, nil
}
return & protoiface . Methods {
NoUnkeyedLiterals : struct {}{},
Flags : protoiface . SupportMarshalDeterministic | protoiface . SupportUnmarshalDiscardUnknown ,
Size : size ,
Marshal : marshal ,
Unmarshal : unmarshal ,
Merge : nil ,
CheckInitialized : nil ,
}
}
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var (
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md_Controller protoreflect . MessageDescriptor
fd_Controller_number protoreflect . FieldDescriptor
fd_Controller_did protoreflect . FieldDescriptor
fd_Controller_sonr_address protoreflect . FieldDescriptor
fd_Controller_eth_address protoreflect . FieldDescriptor
fd_Controller_btc_address protoreflect . FieldDescriptor
fd_Controller_public_key protoreflect . FieldDescriptor
fd_Controller_ks_val protoreflect . FieldDescriptor
fd_Controller_claimed_block protoreflect . FieldDescriptor
fd_Controller_creation_block protoreflect . FieldDescriptor
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)
func init () {
file_did_v1_state_proto_init ()
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md_Controller = File_did_v1_state_proto . Messages (). ByName ( "Controller" )
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fd_Controller_number = md_Controller . Fields (). ByName ( "number" )
fd_Controller_did = md_Controller . Fields (). ByName ( "did" )
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fd_Controller_sonr_address = md_Controller . Fields (). ByName ( "sonr_address" )
fd_Controller_eth_address = md_Controller . Fields (). ByName ( "eth_address" )
fd_Controller_btc_address = md_Controller . Fields (). ByName ( "btc_address" )
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fd_Controller_public_key = md_Controller . Fields (). ByName ( "public_key" )
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fd_Controller_ks_val = md_Controller . Fields (). ByName ( "ks_val" )
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fd_Controller_claimed_block = md_Controller . Fields (). ByName ( "claimed_block" )
fd_Controller_creation_block = md_Controller . Fields (). ByName ( "creation_block" )
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}
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var _ protoreflect . Message = ( * fastReflection_Controller )( nil )
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type fastReflection_Controller Controller
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func ( x * Controller ) ProtoReflect () protoreflect . Message {
return ( * fastReflection_Controller )( x )
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}
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func ( x * Controller ) slowProtoReflect () protoreflect . Message {
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mi := & file_did_v1_state_proto_msgTypes [ 1 ]
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if protoimpl . UnsafeEnabled && x != nil {
ms := protoimpl . X . MessageStateOf ( protoimpl . Pointer ( x ))
if ms . LoadMessageInfo () == nil {
ms . StoreMessageInfo ( mi )
}
return ms
}
return mi . MessageOf ( x )
}
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var _fastReflection_Controller_messageType fastReflection_Controller_messageType
var _ protoreflect . MessageType = fastReflection_Controller_messageType {}
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type fastReflection_Controller_messageType struct {}
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func ( x fastReflection_Controller_messageType ) Zero () protoreflect . Message {
return ( * fastReflection_Controller )( nil )
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}
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func ( x fastReflection_Controller_messageType ) New () protoreflect . Message {
return new ( fastReflection_Controller )
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}
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func ( x fastReflection_Controller_messageType ) Descriptor () protoreflect . MessageDescriptor {
return md_Controller
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}
// Descriptor returns message descriptor, which contains only the protobuf
// type information for the message.
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func ( x * fastReflection_Controller ) Descriptor () protoreflect . MessageDescriptor {
return md_Controller
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}
// Type returns the message type, which encapsulates both Go and protobuf
// type information. If the Go type information is not needed,
// it is recommended that the message descriptor be used instead.
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func ( x * fastReflection_Controller ) Type () protoreflect . MessageType {
return _fastReflection_Controller_messageType
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}
// New returns a newly allocated and mutable empty message.
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func ( x * fastReflection_Controller ) New () protoreflect . Message {
return new ( fastReflection_Controller )
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}
// Interface unwraps the message reflection interface and
// returns the underlying ProtoMessage interface.
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func ( x * fastReflection_Controller ) Interface () protoreflect . ProtoMessage {
return ( * Controller )( x )
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}
// Range iterates over every populated field in an undefined order,
// calling f for each field descriptor and value encountered.
// Range returns immediately if f returns false.
// While iterating, mutating operations may only be performed
// on the current field descriptor.
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func ( x * fastReflection_Controller ) Range ( f func ( protoreflect . FieldDescriptor , protoreflect . Value ) bool ) {
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if x . Number != uint64 ( 0 ) {
value := protoreflect . ValueOfUint64 ( x . Number )
if ! f ( fd_Controller_number , value ) {
return
}
}
if x . Did != "" {
value := protoreflect . ValueOfString ( x . Did )
if ! f ( fd_Controller_did , value ) {
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return
}
}
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if x . SonrAddress != "" {
value := protoreflect . ValueOfString ( x . SonrAddress )
if ! f ( fd_Controller_sonr_address , value ) {
return
}
}
if x . EthAddress != "" {
value := protoreflect . ValueOfString ( x . EthAddress )
if ! f ( fd_Controller_eth_address , value ) {
return
}
}
if x . BtcAddress != "" {
value := protoreflect . ValueOfString ( x . BtcAddress )
if ! f ( fd_Controller_btc_address , value ) {
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return
}
}
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if x . PublicKey != nil {
value := protoreflect . ValueOfMessage ( x . PublicKey . ProtoReflect ())
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if ! f ( fd_Controller_public_key , value ) {
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return
}
}
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if x . KsVal != "" {
value := protoreflect . ValueOfString ( x . KsVal )
if ! f ( fd_Controller_ks_val , value ) {
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return
}
}
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if x . ClaimedBlock != int64 ( 0 ) {
value := protoreflect . ValueOfInt64 ( x . ClaimedBlock )
if ! f ( fd_Controller_claimed_block , value ) {
return
}
}
if x . CreationBlock != int64 ( 0 ) {
value := protoreflect . ValueOfInt64 ( x . CreationBlock )
if ! f ( fd_Controller_creation_block , value ) {
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return
}
}
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}
// Has reports whether a field is populated.
//
// Some fields have the property of nullability where it is possible to
// distinguish between the default value of a field and whether the field
// was explicitly populated with the default value. Singular message fields,
// member fields of a oneof, and proto2 scalar fields are nullable. Such
// fields are populated only if explicitly set.
//
// In other cases (aside from the nullable cases above),
// a proto3 scalar field is populated if it contains a non-zero value, and
// a repeated field is populated if it is non-empty.
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func ( x * fastReflection_Controller ) Has ( fd protoreflect . FieldDescriptor ) bool {
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switch fd . FullName () {
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case "did.v1.Controller.number" :
return x . Number != uint64 ( 0 )
case "did.v1.Controller.did" :
return x . Did != ""
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case "did.v1.Controller.sonr_address" :
return x . SonrAddress != ""
case "did.v1.Controller.eth_address" :
return x . EthAddress != ""
case "did.v1.Controller.btc_address" :
return x . BtcAddress != ""
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case "did.v1.Controller.public_key" :
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return x . PublicKey != nil
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case "did.v1.Controller.ks_val" :
return x . KsVal != ""
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case "did.v1.Controller.claimed_block" :
return x . ClaimedBlock != int64 ( 0 )
case "did.v1.Controller.creation_block" :
return x . CreationBlock != int64 ( 0 )
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default :
if fd . IsExtension () {
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panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.Controller" ))
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}
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panic ( fmt . Errorf ( "message did.v1.Controller does not contain field %s" , fd . FullName ()))
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}
}
// Clear clears the field such that a subsequent Has call reports false.
//
// Clearing an extension field clears both the extension type and value
// associated with the given field number.
//
// Clear is a mutating operation and unsafe for concurrent use.
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func ( x * fastReflection_Controller ) Clear ( fd protoreflect . FieldDescriptor ) {
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switch fd . FullName () {
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case "did.v1.Controller.number" :
x . Number = uint64 ( 0 )
case "did.v1.Controller.did" :
x . Did = ""
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case "did.v1.Controller.sonr_address" :
x . SonrAddress = ""
case "did.v1.Controller.eth_address" :
x . EthAddress = ""
case "did.v1.Controller.btc_address" :
x . BtcAddress = ""
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case "did.v1.Controller.public_key" :
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x . PublicKey = nil
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case "did.v1.Controller.ks_val" :
x . KsVal = ""
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case "did.v1.Controller.claimed_block" :
x . ClaimedBlock = int64 ( 0 )
case "did.v1.Controller.creation_block" :
x . CreationBlock = int64 ( 0 )
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default :
if fd . IsExtension () {
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panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.Controller" ))
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}
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panic ( fmt . Errorf ( "message did.v1.Controller does not contain field %s" , fd . FullName ()))
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}
}
// Get retrieves the value for a field.
//
// For unpopulated scalars, it returns the default value, where
// the default value of a bytes scalar is guaranteed to be a copy.
// For unpopulated composite types, it returns an empty, read-only view
// of the value; to obtain a mutable reference, use Mutable.
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func ( x * fastReflection_Controller ) Get ( descriptor protoreflect . FieldDescriptor ) protoreflect . Value {
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switch descriptor . FullName () {
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case "did.v1.Controller.number" :
value := x . Number
return protoreflect . ValueOfUint64 ( value )
case "did.v1.Controller.did" :
value := x . Did
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return protoreflect . ValueOfString ( value )
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case "did.v1.Controller.sonr_address" :
value := x . SonrAddress
return protoreflect . ValueOfString ( value )
case "did.v1.Controller.eth_address" :
value := x . EthAddress
return protoreflect . ValueOfString ( value )
case "did.v1.Controller.btc_address" :
value := x . BtcAddress
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return protoreflect . ValueOfString ( value )
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case "did.v1.Controller.public_key" :
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value := x . PublicKey
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return protoreflect . ValueOfMessage ( value . ProtoReflect ())
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case "did.v1.Controller.ks_val" :
value := x . KsVal
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return protoreflect . ValueOfString ( value )
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case "did.v1.Controller.claimed_block" :
value := x . ClaimedBlock
return protoreflect . ValueOfInt64 ( value )
case "did.v1.Controller.creation_block" :
value := x . CreationBlock
return protoreflect . ValueOfInt64 ( value )
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default :
if descriptor . IsExtension () {
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panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.Controller" ))
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}
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panic ( fmt . Errorf ( "message did.v1.Controller does not contain field %s" , descriptor . FullName ()))
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}
}
// Set stores the value for a field.
//
// For a field belonging to a oneof, it implicitly clears any other field
// that may be currently set within the same oneof.
// For extension fields, it implicitly stores the provided ExtensionType.
// When setting a composite type, it is unspecified whether the stored value
// aliases the source's memory in any way. If the composite value is an
// empty, read-only value, then it panics.
//
// Set is a mutating operation and unsafe for concurrent use.
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func ( x * fastReflection_Controller ) Set ( fd protoreflect . FieldDescriptor , value protoreflect . Value ) {
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switch fd . FullName () {
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case "did.v1.Controller.number" :
x . Number = value . Uint ()
case "did.v1.Controller.did" :
x . Did = value . Interface ().( string )
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case "did.v1.Controller.sonr_address" :
x . SonrAddress = value . Interface ().( string )
case "did.v1.Controller.eth_address" :
x . EthAddress = value . Interface ().( string )
case "did.v1.Controller.btc_address" :
x . BtcAddress = value . Interface ().( string )
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case "did.v1.Controller.public_key" :
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x . PublicKey = value . Message (). Interface ().( * PubKey )
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case "did.v1.Controller.ks_val" :
x . KsVal = value . Interface ().( string )
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case "did.v1.Controller.claimed_block" :
x . ClaimedBlock = value . Int ()
case "did.v1.Controller.creation_block" :
x . CreationBlock = value . Int ()
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default :
if fd . IsExtension () {
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panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.Controller" ))
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}
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panic ( fmt . Errorf ( "message did.v1.Controller does not contain field %s" , fd . FullName ()))
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}
}
// Mutable returns a mutable reference to a composite type.
//
// If the field is unpopulated, it may allocate a composite value.
// For a field belonging to a oneof, it implicitly clears any other field
// that may be currently set within the same oneof.
// For extension fields, it implicitly stores the provided ExtensionType
// if not already stored.
// It panics if the field does not contain a composite type.
//
// Mutable is a mutating operation and unsafe for concurrent use.
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func ( x * fastReflection_Controller ) Mutable ( fd protoreflect . FieldDescriptor ) protoreflect . Value {
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switch fd . FullName () {
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case "did.v1.Controller.public_key" :
if x . PublicKey == nil {
x . PublicKey = new ( PubKey )
}
return protoreflect . ValueOfMessage ( x . PublicKey . ProtoReflect ())
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case "did.v1.Controller.number" :
panic ( fmt . Errorf ( "field number of message did.v1.Controller is not mutable" ))
case "did.v1.Controller.did" :
panic ( fmt . Errorf ( "field did of message did.v1.Controller is not mutable" ))
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case "did.v1.Controller.sonr_address" :
panic ( fmt . Errorf ( "field sonr_address of message did.v1.Controller is not mutable" ))
case "did.v1.Controller.eth_address" :
panic ( fmt . Errorf ( "field eth_address of message did.v1.Controller is not mutable" ))
case "did.v1.Controller.btc_address" :
panic ( fmt . Errorf ( "field btc_address of message did.v1.Controller is not mutable" ))
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case "did.v1.Controller.ks_val" :
panic ( fmt . Errorf ( "field ks_val of message did.v1.Controller is not mutable" ))
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case "did.v1.Controller.claimed_block" :
panic ( fmt . Errorf ( "field claimed_block of message did.v1.Controller is not mutable" ))
case "did.v1.Controller.creation_block" :
panic ( fmt . Errorf ( "field creation_block of message did.v1.Controller is not mutable" ))
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default :
if fd . IsExtension () {
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panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.Controller" ))
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}
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panic ( fmt . Errorf ( "message did.v1.Controller does not contain field %s" , fd . FullName ()))
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}
}
// NewField returns a new value that is assignable to the field
// for the given descriptor. For scalars, this returns the default value.
// For lists, maps, and messages, this returns a new, empty, mutable value.
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func ( x * fastReflection_Controller ) NewField ( fd protoreflect . FieldDescriptor ) protoreflect . Value {
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switch fd . FullName () {
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case "did.v1.Controller.number" :
return protoreflect . ValueOfUint64 ( uint64 ( 0 ))
case "did.v1.Controller.did" :
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return protoreflect . ValueOfString ( "" )
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case "did.v1.Controller.sonr_address" :
return protoreflect . ValueOfString ( "" )
case "did.v1.Controller.eth_address" :
return protoreflect . ValueOfString ( "" )
case "did.v1.Controller.btc_address" :
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return protoreflect . ValueOfString ( "" )
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case "did.v1.Controller.public_key" :
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m := new ( PubKey )
return protoreflect . ValueOfMessage ( m . ProtoReflect ())
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case "did.v1.Controller.ks_val" :
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return protoreflect . ValueOfString ( "" )
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case "did.v1.Controller.claimed_block" :
return protoreflect . ValueOfInt64 ( int64 ( 0 ))
case "did.v1.Controller.creation_block" :
return protoreflect . ValueOfInt64 ( int64 ( 0 ))
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default :
if fd . IsExtension () {
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panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.Controller" ))
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}
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panic ( fmt . Errorf ( "message did.v1.Controller does not contain field %s" , fd . FullName ()))
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}
}
// WhichOneof reports which field within the oneof is populated,
// returning nil if none are populated.
// It panics if the oneof descriptor does not belong to this message.
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func ( x * fastReflection_Controller ) WhichOneof ( d protoreflect . OneofDescriptor ) protoreflect . FieldDescriptor {
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switch d . FullName () {
default :
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panic ( fmt . Errorf ( "%s is not a oneof field in did.v1.Controller" , d . FullName ()))
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}
panic ( "unreachable" )
}
// GetUnknown retrieves the entire list of unknown fields.
// The caller may only mutate the contents of the RawFields
// if the mutated bytes are stored back into the message with SetUnknown.
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func ( x * fastReflection_Controller ) GetUnknown () protoreflect . RawFields {
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return x . unknownFields
}
// SetUnknown stores an entire list of unknown fields.
// The raw fields must be syntactically valid according to the wire format.
// An implementation may panic if this is not the case.
// Once stored, the caller must not mutate the content of the RawFields.
// An empty RawFields may be passed to clear the fields.
//
// SetUnknown is a mutating operation and unsafe for concurrent use.
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func ( x * fastReflection_Controller ) SetUnknown ( fields protoreflect . RawFields ) {
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x . unknownFields = fields
}
// IsValid reports whether the message is valid.
//
// An invalid message is an empty, read-only value.
//
// An invalid message often corresponds to a nil pointer of the concrete
// message type, but the details are implementation dependent.
// Validity is not part of the protobuf data model, and may not
// be preserved in marshaling or other operations.
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func ( x * fastReflection_Controller ) IsValid () bool {
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return x != nil
}
// ProtoMethods returns optional fastReflectionFeature-path implementations of various operations.
// This method may return nil.
//
// The returned methods type is identical to
// "google.golang.org/protobuf/runtime/protoiface".Methods.
// Consult the protoiface package documentation for details.
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func ( x * fastReflection_Controller ) ProtoMethods () * protoiface . Methods {
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size := func ( input protoiface . SizeInput ) protoiface . SizeOutput {
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x := input . Message . Interface ().( * Controller )
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if x == nil {
return protoiface . SizeOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Size : 0 ,
}
}
options := runtime . SizeInputToOptions ( input )
_ = options
var n int
var l int
_ = l
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if x . Number != 0 {
n += 1 + runtime . Sov ( uint64 ( x . Number ))
}
l = len ( x . Did )
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if l > 0 {
n += 1 + l + runtime . Sov ( uint64 ( l ))
}
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l = len ( x . SonrAddress )
if l > 0 {
n += 1 + l + runtime . Sov ( uint64 ( l ))
}
l = len ( x . EthAddress )
if l > 0 {
n += 1 + l + runtime . Sov ( uint64 ( l ))
}
l = len ( x . BtcAddress )
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if l > 0 {
n += 1 + l + runtime . Sov ( uint64 ( l ))
}
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if x . PublicKey != nil {
l = options . Size ( x . PublicKey )
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n += 1 + l + runtime . Sov ( uint64 ( l ))
}
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l = len ( x . KsVal )
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if l > 0 {
n += 1 + l + runtime . Sov ( uint64 ( l ))
}
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if x . ClaimedBlock != 0 {
n += 1 + runtime . Sov ( uint64 ( x . ClaimedBlock ))
}
if x . CreationBlock != 0 {
n += 1 + runtime . Sov ( uint64 ( x . CreationBlock ))
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}
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if x . unknownFields != nil {
n += len ( x . unknownFields )
}
return protoiface . SizeOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Size : n ,
}
}
marshal := func ( input protoiface . MarshalInput ) ( protoiface . MarshalOutput , error ) {
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x := input . Message . Interface ().( * Controller )
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if x == nil {
return protoiface . MarshalOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Buf : input . Buf ,
}, nil
}
options := runtime . MarshalInputToOptions ( input )
_ = options
size := options . Size ( x )
dAtA := make ([] byte , size )
i := len ( dAtA )
_ = i
var l int
_ = l
if x . unknownFields != nil {
i -= len ( x . unknownFields )
copy ( dAtA [ i :], x . unknownFields )
}
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if x . CreationBlock != 0 {
i = runtime . EncodeVarint ( dAtA , i , uint64 ( x . CreationBlock ))
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i --
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dAtA [ i ] = 0x48
}
if x . ClaimedBlock != 0 {
i = runtime . EncodeVarint ( dAtA , i , uint64 ( x . ClaimedBlock ))
2024-09-25 19:45:28 -04:00
i --
dAtA [ i ] = 0x40
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}
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if len ( x . KsVal ) > 0 {
i -= len ( x . KsVal )
copy ( dAtA [ i :], x . KsVal )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( x . KsVal )))
2024-08-31 16:54:16 -04:00
i --
2024-09-19 02:04:22 -04:00
dAtA [ i ] = 0x3a
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}
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if x . PublicKey != nil {
encoded , err := options . Marshal ( x . PublicKey )
if err != nil {
return protoiface . MarshalOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Buf : input . Buf ,
}, err
}
i -= len ( encoded )
copy ( dAtA [ i :], encoded )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( encoded )))
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i --
2024-09-19 02:04:22 -04:00
dAtA [ i ] = 0x32
2024-07-05 22:20:13 -04:00
}
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if len ( x . BtcAddress ) > 0 {
i -= len ( x . BtcAddress )
copy ( dAtA [ i :], x . BtcAddress )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( x . BtcAddress )))
i --
2024-09-25 19:45:28 -04:00
dAtA [ i ] = 0x2a
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}
if len ( x . EthAddress ) > 0 {
i -= len ( x . EthAddress )
copy ( dAtA [ i :], x . EthAddress )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( x . EthAddress )))
i --
2024-09-25 19:45:28 -04:00
dAtA [ i ] = 0x22
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}
if len ( x . SonrAddress ) > 0 {
i -= len ( x . SonrAddress )
copy ( dAtA [ i :], x . SonrAddress )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( x . SonrAddress )))
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i --
2024-09-25 19:45:28 -04:00
dAtA [ i ] = 0x1a
}
if len ( x . Did ) > 0 {
i -= len ( x . Did )
copy ( dAtA [ i :], x . Did )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( x . Did )))
i --
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dAtA [ i ] = 0x12
}
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if x . Number != 0 {
i = runtime . EncodeVarint ( dAtA , i , uint64 ( x . Number ))
2024-07-05 22:20:13 -04:00
i --
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dAtA [ i ] = 0x8
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}
if input . Buf != nil {
input . Buf = append ( input . Buf , dAtA ... )
} else {
input . Buf = dAtA
}
return protoiface . MarshalOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Buf : input . Buf ,
}, nil
}
unmarshal := func ( input protoiface . UnmarshalInput ) ( protoiface . UnmarshalOutput , error ) {
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x := input . Message . Interface ().( * Controller )
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if x == nil {
return protoiface . UnmarshalOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Flags : input . Flags ,
}, nil
}
options := runtime . UnmarshalInputToOptions ( input )
_ = options
dAtA := input . Buf
l := len ( dAtA )
iNdEx := 0
for iNdEx < l {
preIndex := iNdEx
var wire uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
wire |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
fieldNum := int32 ( wire >> 3 )
wireType := int ( wire & 0x7 )
if wireType == 4 {
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return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: Controller: wiretype end group for non-group" )
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}
if fieldNum <= 0 {
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return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: Controller: illegal tag %d (wire type %d)" , fieldNum , wire )
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}
switch fieldNum {
case 1 :
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if wireType != 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field Number" , wireType )
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}
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x . Number = 0
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for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
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x . Number |= uint64 ( b & 0x7F ) << shift
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if b < 0x80 {
break
}
}
case 2 :
if wireType != 2 {
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return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field Did" , wireType )
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}
var stringLen uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLen |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLen := int ( stringLen )
if intStringLen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + intStringLen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
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x . Did = string ( dAtA [ iNdEx : postIndex ])
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iNdEx = postIndex
case 3 :
if wireType != 2 {
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return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field SonrAddress" , wireType )
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}
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var stringLen uint64
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for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
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stringLen |= uint64 ( b & 0x7F ) << shift
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if b < 0x80 {
break
}
}
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intStringLen := int ( stringLen )
if intStringLen < 0 {
2024-07-05 22:20:13 -04:00
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
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postIndex := iNdEx + intStringLen
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if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
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x . SonrAddress = string ( dAtA [ iNdEx : postIndex ])
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iNdEx = postIndex
case 4 :
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if wireType != 2 {
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return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field EthAddress" , wireType )
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}
var stringLen uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLen |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLen := int ( stringLen )
if intStringLen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + intStringLen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
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x . EthAddress = string ( dAtA [ iNdEx : postIndex ])
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iNdEx = postIndex
case 5 :
if wireType != 2 {
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return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field BtcAddress" , wireType )
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}
var stringLen uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLen |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLen := int ( stringLen )
if intStringLen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + intStringLen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
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x . BtcAddress = string ( dAtA [ iNdEx : postIndex ])
2024-09-19 02:04:22 -04:00
iNdEx = postIndex
case 6 :
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if wireType != 2 {
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return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field PublicKey" , wireType )
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}
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var msglen int
2024-08-31 16:54:16 -04:00
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
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msglen |= int ( b & 0x7F ) << shift
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if b < 0x80 {
break
}
}
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if msglen < 0 {
2024-08-31 16:54:16 -04:00
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
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postIndex := iNdEx + msglen
2024-08-31 16:54:16 -04:00
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
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if x . PublicKey == nil {
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x . PublicKey = & PubKey {}
}
if err := options . Unmarshal ( dAtA [ iNdEx : postIndex ], x . PublicKey ); err != nil {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, err
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}
2024-08-31 16:54:16 -04:00
iNdEx = postIndex
2024-09-19 02:04:22 -04:00
case 7 :
2024-08-31 16:54:16 -04:00
if wireType != 2 {
2024-09-25 19:45:28 -04:00
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field KsVal" , wireType )
2024-08-31 16:54:16 -04:00
}
var stringLen uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLen |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLen := int ( stringLen )
if intStringLen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + intStringLen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
2024-09-25 19:45:28 -04:00
x . KsVal = string ( dAtA [ iNdEx : postIndex ])
2024-08-31 16:54:16 -04:00
iNdEx = postIndex
2024-09-19 02:04:22 -04:00
case 8 :
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if wireType != 0 {
2024-09-29 14:40:36 -04:00
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field ClaimedBlock" , wireType )
}
x . ClaimedBlock = 0
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
x . ClaimedBlock |= int64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
case 9 :
if wireType != 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field CreationBlock" , wireType )
2024-09-18 17:27:30 -04:00
}
2024-09-29 14:40:36 -04:00
x . CreationBlock = 0
2024-09-18 17:27:30 -04:00
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
2024-09-29 14:40:36 -04:00
x . CreationBlock |= int64 ( b & 0x7F ) << shift
2024-09-18 17:27:30 -04:00
if b < 0x80 {
break
}
}
2024-07-05 22:20:13 -04:00
default :
iNdEx = preIndex
skippy , err := runtime . Skip ( dAtA [ iNdEx :])
if err != nil {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, err
}
if ( skippy < 0 ) || ( iNdEx + skippy ) < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if ( iNdEx + skippy ) > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
if ! options . DiscardUnknown {
x . unknownFields = append ( x . unknownFields , dAtA [ iNdEx : iNdEx + skippy ] ... )
}
iNdEx += skippy
}
}
if iNdEx > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, nil
}
return & protoiface . Methods {
NoUnkeyedLiterals : struct {}{},
Flags : protoiface . SupportMarshalDeterministic | protoiface . SupportUnmarshalDiscardUnknown ,
Size : size ,
Marshal : marshal ,
Unmarshal : unmarshal ,
Merge : nil ,
CheckInitialized : nil ,
}
}
2024-09-29 14:40:36 -04:00
var _ protoreflect . Map = ( * _Verification_8_map )( nil )
type _Verification_8_map struct {
m * map [ string ] string
}
func ( x * _Verification_8_map ) Len () int {
if x . m == nil {
return 0
}
return len ( * x . m )
}
func ( x * _Verification_8_map ) Range ( f func ( protoreflect . MapKey , protoreflect . Value ) bool ) {
if x . m == nil {
return
}
for k , v := range * x . m {
mapKey := ( protoreflect . MapKey )( protoreflect . ValueOfString ( k ))
mapValue := protoreflect . ValueOfString ( v )
if ! f ( mapKey , mapValue ) {
break
}
}
}
func ( x * _Verification_8_map ) Has ( key protoreflect . MapKey ) bool {
if x . m == nil {
return false
}
keyUnwrapped := key . String ()
concreteValue := keyUnwrapped
_ , ok := ( * x . m )[ concreteValue ]
return ok
}
func ( x * _Verification_8_map ) Clear ( key protoreflect . MapKey ) {
if x . m == nil {
return
}
keyUnwrapped := key . String ()
concreteKey := keyUnwrapped
delete ( * x . m , concreteKey )
}
func ( x * _Verification_8_map ) Get ( key protoreflect . MapKey ) protoreflect . Value {
if x . m == nil {
return protoreflect . Value {}
}
keyUnwrapped := key . String ()
concreteKey := keyUnwrapped
v , ok := ( * x . m )[ concreteKey ]
if ! ok {
return protoreflect . Value {}
}
return protoreflect . ValueOfString ( v )
}
func ( x * _Verification_8_map ) Set ( key protoreflect . MapKey , value protoreflect . Value ) {
if ! key . IsValid () || ! value . IsValid () {
panic ( "invalid key or value provided" )
}
keyUnwrapped := key . String ()
concreteKey := keyUnwrapped
valueUnwrapped := value . String ()
concreteValue := valueUnwrapped
( * x . m )[ concreteKey ] = concreteValue
}
func ( x * _Verification_8_map ) Mutable ( key protoreflect . MapKey ) protoreflect . Value {
panic ( "should not call Mutable on protoreflect.Map whose value is not of type protoreflect.Message" )
}
func ( x * _Verification_8_map ) NewValue () protoreflect . Value {
v := ""
return protoreflect . ValueOfString ( v )
}
func ( x * _Verification_8_map ) IsValid () bool {
return x . m != nil
}
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var (
2024-09-19 02:04:22 -04:00
md_Verification protoreflect . MessageDescriptor
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fd_Verification_did protoreflect . FieldDescriptor
2024-09-19 02:04:22 -04:00
fd_Verification_controller protoreflect . FieldDescriptor
fd_Verification_did_method protoreflect . FieldDescriptor
fd_Verification_issuer protoreflect . FieldDescriptor
fd_Verification_subject protoreflect . FieldDescriptor
fd_Verification_public_key protoreflect . FieldDescriptor
fd_Verification_verification_type protoreflect . FieldDescriptor
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fd_Verification_metadata protoreflect . FieldDescriptor
fd_Verification_creation_block protoreflect . FieldDescriptor
2024-09-11 15:10:54 -04:00
)
2024-09-05 01:24:57 -04:00
2024-09-11 15:10:54 -04:00
func init () {
file_did_v1_state_proto_init ()
2024-09-18 17:27:30 -04:00
md_Verification = File_did_v1_state_proto . Messages (). ByName ( "Verification" )
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fd_Verification_did = md_Verification . Fields (). ByName ( "did" )
2024-09-18 17:27:30 -04:00
fd_Verification_controller = md_Verification . Fields (). ByName ( "controller" )
2024-09-19 02:04:22 -04:00
fd_Verification_did_method = md_Verification . Fields (). ByName ( "did_method" )
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fd_Verification_issuer = md_Verification . Fields (). ByName ( "issuer" )
fd_Verification_subject = md_Verification . Fields (). ByName ( "subject" )
fd_Verification_public_key = md_Verification . Fields (). ByName ( "public_key" )
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fd_Verification_verification_type = md_Verification . Fields (). ByName ( "verification_type" )
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fd_Verification_metadata = md_Verification . Fields (). ByName ( "metadata" )
fd_Verification_creation_block = md_Verification . Fields (). ByName ( "creation_block" )
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}
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var _ protoreflect . Message = ( * fastReflection_Verification )( nil )
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type fastReflection_Verification Verification
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func ( x * Verification ) ProtoReflect () protoreflect . Message {
return ( * fastReflection_Verification )( x )
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}
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func ( x * Verification ) slowProtoReflect () protoreflect . Message {
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mi := & file_did_v1_state_proto_msgTypes [ 2 ]
if protoimpl . UnsafeEnabled && x != nil {
ms := protoimpl . X . MessageStateOf ( protoimpl . Pointer ( x ))
if ms . LoadMessageInfo () == nil {
ms . StoreMessageInfo ( mi )
}
return ms
}
return mi . MessageOf ( x )
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}
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var _fastReflection_Verification_messageType fastReflection_Verification_messageType
var _ protoreflect . MessageType = fastReflection_Verification_messageType {}
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type fastReflection_Verification_messageType struct {}
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func ( x fastReflection_Verification_messageType ) Zero () protoreflect . Message {
return ( * fastReflection_Verification )( nil )
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}
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func ( x fastReflection_Verification_messageType ) New () protoreflect . Message {
return new ( fastReflection_Verification )
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}
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func ( x fastReflection_Verification_messageType ) Descriptor () protoreflect . MessageDescriptor {
return md_Verification
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}
// Descriptor returns message descriptor, which contains only the protobuf
// type information for the message.
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func ( x * fastReflection_Verification ) Descriptor () protoreflect . MessageDescriptor {
return md_Verification
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}
// Type returns the message type, which encapsulates both Go and protobuf
// type information. If the Go type information is not needed,
// it is recommended that the message descriptor be used instead.
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func ( x * fastReflection_Verification ) Type () protoreflect . MessageType {
return _fastReflection_Verification_messageType
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}
// New returns a newly allocated and mutable empty message.
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func ( x * fastReflection_Verification ) New () protoreflect . Message {
return new ( fastReflection_Verification )
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}
// Interface unwraps the message reflection interface and
// returns the underlying ProtoMessage interface.
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func ( x * fastReflection_Verification ) Interface () protoreflect . ProtoMessage {
return ( * Verification )( x )
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}
// Range iterates over every populated field in an undefined order,
// calling f for each field descriptor and value encountered.
// Range returns immediately if f returns false.
// While iterating, mutating operations may only be performed
// on the current field descriptor.
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func ( x * fastReflection_Verification ) Range ( f func ( protoreflect . FieldDescriptor , protoreflect . Value ) bool ) {
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if x . Did != "" {
value := protoreflect . ValueOfString ( x . Did )
if ! f ( fd_Verification_did , value ) {
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return
}
}
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if x . Controller != "" {
value := protoreflect . ValueOfString ( x . Controller )
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if ! f ( fd_Verification_controller , value ) {
return
}
}
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if x . DidMethod != "" {
value := protoreflect . ValueOfString ( x . DidMethod )
if ! f ( fd_Verification_did_method , value ) {
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return
}
}
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if x . Issuer != "" {
value := protoreflect . ValueOfString ( x . Issuer )
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if ! f ( fd_Verification_issuer , value ) {
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return
}
}
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if x . Subject != "" {
value := protoreflect . ValueOfString ( x . Subject )
if ! f ( fd_Verification_subject , value ) {
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return
}
}
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if x . PublicKey != nil {
value := protoreflect . ValueOfMessage ( x . PublicKey . ProtoReflect ())
if ! f ( fd_Verification_public_key , value ) {
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return
}
}
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if x . VerificationType != "" {
value := protoreflect . ValueOfString ( x . VerificationType )
if ! f ( fd_Verification_verification_type , value ) {
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return
}
}
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if len ( x . Metadata ) != 0 {
value := protoreflect . ValueOfMap ( & _Verification_8_map { m : & x . Metadata })
if ! f ( fd_Verification_metadata , value ) {
return
}
}
if x . CreationBlock != int64 ( 0 ) {
value := protoreflect . ValueOfInt64 ( x . CreationBlock )
if ! f ( fd_Verification_creation_block , value ) {
return
}
}
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}
// Has reports whether a field is populated.
//
// Some fields have the property of nullability where it is possible to
// distinguish between the default value of a field and whether the field
// was explicitly populated with the default value. Singular message fields,
// member fields of a oneof, and proto2 scalar fields are nullable. Such
// fields are populated only if explicitly set.
//
// In other cases (aside from the nullable cases above),
// a proto3 scalar field is populated if it contains a non-zero value, and
// a repeated field is populated if it is non-empty.
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func ( x * fastReflection_Verification ) Has ( fd protoreflect . FieldDescriptor ) bool {
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switch fd . FullName () {
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case "did.v1.Verification.did" :
return x . Did != ""
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case "did.v1.Verification.controller" :
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return x . Controller != ""
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case "did.v1.Verification.did_method" :
return x . DidMethod != ""
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case "did.v1.Verification.issuer" :
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return x . Issuer != ""
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case "did.v1.Verification.subject" :
return x . Subject != ""
case "did.v1.Verification.public_key" :
return x . PublicKey != nil
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case "did.v1.Verification.verification_type" :
return x . VerificationType != ""
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case "did.v1.Verification.metadata" :
return len ( x . Metadata ) != 0
case "did.v1.Verification.creation_block" :
return x . CreationBlock != int64 ( 0 )
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default :
if fd . IsExtension () {
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panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.Verification" ))
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}
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panic ( fmt . Errorf ( "message did.v1.Verification does not contain field %s" , fd . FullName ()))
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}
}
// Clear clears the field such that a subsequent Has call reports false.
//
// Clearing an extension field clears both the extension type and value
// associated with the given field number.
//
// Clear is a mutating operation and unsafe for concurrent use.
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func ( x * fastReflection_Verification ) Clear ( fd protoreflect . FieldDescriptor ) {
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switch fd . FullName () {
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case "did.v1.Verification.did" :
x . Did = ""
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case "did.v1.Verification.controller" :
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x . Controller = ""
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case "did.v1.Verification.did_method" :
x . DidMethod = ""
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case "did.v1.Verification.issuer" :
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x . Issuer = ""
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case "did.v1.Verification.subject" :
x . Subject = ""
case "did.v1.Verification.public_key" :
x . PublicKey = nil
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case "did.v1.Verification.verification_type" :
x . VerificationType = ""
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case "did.v1.Verification.metadata" :
x . Metadata = nil
case "did.v1.Verification.creation_block" :
x . CreationBlock = int64 ( 0 )
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default :
if fd . IsExtension () {
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panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.Verification" ))
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}
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panic ( fmt . Errorf ( "message did.v1.Verification does not contain field %s" , fd . FullName ()))
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}
}
// Get retrieves the value for a field.
//
// For unpopulated scalars, it returns the default value, where
// the default value of a bytes scalar is guaranteed to be a copy.
// For unpopulated composite types, it returns an empty, read-only view
// of the value; to obtain a mutable reference, use Mutable.
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func ( x * fastReflection_Verification ) Get ( descriptor protoreflect . FieldDescriptor ) protoreflect . Value {
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switch descriptor . FullName () {
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case "did.v1.Verification.did" :
value := x . Did
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return protoreflect . ValueOfString ( value )
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case "did.v1.Verification.controller" :
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value := x . Controller
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return protoreflect . ValueOfString ( value )
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case "did.v1.Verification.did_method" :
value := x . DidMethod
return protoreflect . ValueOfString ( value )
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case "did.v1.Verification.issuer" :
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value := x . Issuer
return protoreflect . ValueOfString ( value )
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case "did.v1.Verification.subject" :
value := x . Subject
return protoreflect . ValueOfString ( value )
case "did.v1.Verification.public_key" :
value := x . PublicKey
return protoreflect . ValueOfMessage ( value . ProtoReflect ())
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case "did.v1.Verification.verification_type" :
value := x . VerificationType
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return protoreflect . ValueOfString ( value )
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case "did.v1.Verification.metadata" :
if len ( x . Metadata ) == 0 {
return protoreflect . ValueOfMap ( & _Verification_8_map {})
}
mapValue := & _Verification_8_map { m : & x . Metadata }
return protoreflect . ValueOfMap ( mapValue )
case "did.v1.Verification.creation_block" :
value := x . CreationBlock
return protoreflect . ValueOfInt64 ( value )
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default :
if descriptor . IsExtension () {
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panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.Verification" ))
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}
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panic ( fmt . Errorf ( "message did.v1.Verification does not contain field %s" , descriptor . FullName ()))
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}
}
// Set stores the value for a field.
//
// For a field belonging to a oneof, it implicitly clears any other field
// that may be currently set within the same oneof.
// For extension fields, it implicitly stores the provided ExtensionType.
// When setting a composite type, it is unspecified whether the stored value
// aliases the source's memory in any way. If the composite value is an
// empty, read-only value, then it panics.
//
// Set is a mutating operation and unsafe for concurrent use.
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func ( x * fastReflection_Verification ) Set ( fd protoreflect . FieldDescriptor , value protoreflect . Value ) {
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switch fd . FullName () {
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case "did.v1.Verification.did" :
x . Did = value . Interface ().( string )
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case "did.v1.Verification.controller" :
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x . Controller = value . Interface ().( string )
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case "did.v1.Verification.did_method" :
x . DidMethod = value . Interface ().( string )
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case "did.v1.Verification.issuer" :
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x . Issuer = value . Interface ().( string )
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case "did.v1.Verification.subject" :
x . Subject = value . Interface ().( string )
case "did.v1.Verification.public_key" :
x . PublicKey = value . Message (). Interface ().( * PubKey )
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case "did.v1.Verification.verification_type" :
x . VerificationType = value . Interface ().( string )
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case "did.v1.Verification.metadata" :
mv := value . Map ()
cmv := mv .( * _Verification_8_map )
x . Metadata = * cmv . m
case "did.v1.Verification.creation_block" :
x . CreationBlock = value . Int ()
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default :
if fd . IsExtension () {
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panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.Verification" ))
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}
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panic ( fmt . Errorf ( "message did.v1.Verification does not contain field %s" , fd . FullName ()))
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}
}
// Mutable returns a mutable reference to a composite type.
//
// If the field is unpopulated, it may allocate a composite value.
// For a field belonging to a oneof, it implicitly clears any other field
// that may be currently set within the same oneof.
// For extension fields, it implicitly stores the provided ExtensionType
// if not already stored.
// It panics if the field does not contain a composite type.
//
// Mutable is a mutating operation and unsafe for concurrent use.
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func ( x * fastReflection_Verification ) Mutable ( fd protoreflect . FieldDescriptor ) protoreflect . Value {
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switch fd . FullName () {
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case "did.v1.Verification.public_key" :
if x . PublicKey == nil {
x . PublicKey = new ( PubKey )
}
return protoreflect . ValueOfMessage ( x . PublicKey . ProtoReflect ())
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case "did.v1.Verification.metadata" :
if x . Metadata == nil {
x . Metadata = make ( map [ string ] string )
}
value := & _Verification_8_map { m : & x . Metadata }
return protoreflect . ValueOfMap ( value )
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case "did.v1.Verification.did" :
panic ( fmt . Errorf ( "field did of message did.v1.Verification is not mutable" ))
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case "did.v1.Verification.controller" :
panic ( fmt . Errorf ( "field controller of message did.v1.Verification is not mutable" ))
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case "did.v1.Verification.did_method" :
panic ( fmt . Errorf ( "field did_method of message did.v1.Verification is not mutable" ))
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case "did.v1.Verification.issuer" :
panic ( fmt . Errorf ( "field issuer of message did.v1.Verification is not mutable" ))
case "did.v1.Verification.subject" :
panic ( fmt . Errorf ( "field subject of message did.v1.Verification is not mutable" ))
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case "did.v1.Verification.verification_type" :
panic ( fmt . Errorf ( "field verification_type of message did.v1.Verification is not mutable" ))
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case "did.v1.Verification.creation_block" :
panic ( fmt . Errorf ( "field creation_block of message did.v1.Verification is not mutable" ))
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default :
if fd . IsExtension () {
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panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.Verification" ))
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}
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panic ( fmt . Errorf ( "message did.v1.Verification does not contain field %s" , fd . FullName ()))
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}
}
// NewField returns a new value that is assignable to the field
// for the given descriptor. For scalars, this returns the default value.
// For lists, maps, and messages, this returns a new, empty, mutable value.
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func ( x * fastReflection_Verification ) NewField ( fd protoreflect . FieldDescriptor ) protoreflect . Value {
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switch fd . FullName () {
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case "did.v1.Verification.did" :
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return protoreflect . ValueOfString ( "" )
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case "did.v1.Verification.controller" :
return protoreflect . ValueOfString ( "" )
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case "did.v1.Verification.did_method" :
return protoreflect . ValueOfString ( "" )
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case "did.v1.Verification.issuer" :
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return protoreflect . ValueOfString ( "" )
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case "did.v1.Verification.subject" :
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return protoreflect . ValueOfString ( "" )
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case "did.v1.Verification.public_key" :
m := new ( PubKey )
return protoreflect . ValueOfMessage ( m . ProtoReflect ())
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case "did.v1.Verification.verification_type" :
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return protoreflect . ValueOfString ( "" )
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case "did.v1.Verification.metadata" :
m := make ( map [ string ] string )
return protoreflect . ValueOfMap ( & _Verification_8_map { m : & m })
case "did.v1.Verification.creation_block" :
return protoreflect . ValueOfInt64 ( int64 ( 0 ))
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default :
if fd . IsExtension () {
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panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.Verification" ))
2024-07-05 22:20:13 -04:00
}
2024-09-18 17:27:30 -04:00
panic ( fmt . Errorf ( "message did.v1.Verification does not contain field %s" , fd . FullName ()))
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}
}
// WhichOneof reports which field within the oneof is populated,
// returning nil if none are populated.
// It panics if the oneof descriptor does not belong to this message.
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func ( x * fastReflection_Verification ) WhichOneof ( d protoreflect . OneofDescriptor ) protoreflect . FieldDescriptor {
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switch d . FullName () {
default :
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panic ( fmt . Errorf ( "%s is not a oneof field in did.v1.Verification" , d . FullName ()))
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}
panic ( "unreachable" )
}
// GetUnknown retrieves the entire list of unknown fields.
// The caller may only mutate the contents of the RawFields
// if the mutated bytes are stored back into the message with SetUnknown.
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func ( x * fastReflection_Verification ) GetUnknown () protoreflect . RawFields {
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return x . unknownFields
}
// SetUnknown stores an entire list of unknown fields.
// The raw fields must be syntactically valid according to the wire format.
// An implementation may panic if this is not the case.
// Once stored, the caller must not mutate the content of the RawFields.
// An empty RawFields may be passed to clear the fields.
//
// SetUnknown is a mutating operation and unsafe for concurrent use.
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func ( x * fastReflection_Verification ) SetUnknown ( fields protoreflect . RawFields ) {
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x . unknownFields = fields
}
// IsValid reports whether the message is valid.
//
// An invalid message is an empty, read-only value.
//
// An invalid message often corresponds to a nil pointer of the concrete
// message type, but the details are implementation dependent.
// Validity is not part of the protobuf data model, and may not
// be preserved in marshaling or other operations.
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func ( x * fastReflection_Verification ) IsValid () bool {
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return x != nil
}
// ProtoMethods returns optional fastReflectionFeature-path implementations of various operations.
// This method may return nil.
//
// The returned methods type is identical to
// "google.golang.org/protobuf/runtime/protoiface".Methods.
// Consult the protoiface package documentation for details.
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func ( x * fastReflection_Verification ) ProtoMethods () * protoiface . Methods {
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size := func ( input protoiface . SizeInput ) protoiface . SizeOutput {
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x := input . Message . Interface ().( * Verification )
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if x == nil {
return protoiface . SizeOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Size : 0 ,
}
}
options := runtime . SizeInputToOptions ( input )
_ = options
var n int
var l int
_ = l
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l = len ( x . Did )
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if l > 0 {
n += 1 + l + runtime . Sov ( uint64 ( l ))
}
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l = len ( x . Controller )
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if l > 0 {
n += 1 + l + runtime . Sov ( uint64 ( l ))
}
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l = len ( x . DidMethod )
if l > 0 {
n += 1 + l + runtime . Sov ( uint64 ( l ))
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}
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l = len ( x . Issuer )
if l > 0 {
n += 1 + l + runtime . Sov ( uint64 ( l ))
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}
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l = len ( x . Subject )
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if l > 0 {
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n += 1 + l + runtime . Sov ( uint64 ( l ))
}
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if x . PublicKey != nil {
l = options . Size ( x . PublicKey )
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n += 1 + l + runtime . Sov ( uint64 ( l ))
}
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l = len ( x . VerificationType )
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if l > 0 {
n += 1 + l + runtime . Sov ( uint64 ( l ))
}
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if len ( x . Metadata ) > 0 {
SiZeMaP := func ( k string , v string ) {
mapEntrySize := 1 + len ( k ) + runtime . Sov ( uint64 ( len ( k ))) + 1 + len ( v ) + runtime . Sov ( uint64 ( len ( v )))
n += mapEntrySize + 1 + runtime . Sov ( uint64 ( mapEntrySize ))
}
if options . Deterministic {
sortme := make ([] string , 0 , len ( x . Metadata ))
for k := range x . Metadata {
sortme = append ( sortme , k )
}
sort . Strings ( sortme )
for _ , k := range sortme {
v := x . Metadata [ k ]
SiZeMaP ( k , v )
}
} else {
for k , v := range x . Metadata {
SiZeMaP ( k , v )
}
}
}
if x . CreationBlock != 0 {
n += 1 + runtime . Sov ( uint64 ( x . CreationBlock ))
}
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if x . unknownFields != nil {
n += len ( x . unknownFields )
}
return protoiface . SizeOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Size : n ,
}
}
marshal := func ( input protoiface . MarshalInput ) ( protoiface . MarshalOutput , error ) {
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x := input . Message . Interface ().( * Verification )
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if x == nil {
return protoiface . MarshalOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Buf : input . Buf ,
}, nil
}
options := runtime . MarshalInputToOptions ( input )
_ = options
size := options . Size ( x )
dAtA := make ([] byte , size )
i := len ( dAtA )
_ = i
var l int
_ = l
if x . unknownFields != nil {
i -= len ( x . unknownFields )
copy ( dAtA [ i :], x . unknownFields )
}
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if x . CreationBlock != 0 {
i = runtime . EncodeVarint ( dAtA , i , uint64 ( x . CreationBlock ))
i --
dAtA [ i ] = 0x48
}
if len ( x . Metadata ) > 0 {
MaRsHaLmAp := func ( k string , v string ) ( protoiface . MarshalOutput , error ) {
baseI := i
i -= len ( v )
copy ( dAtA [ i :], v )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( v )))
i --
dAtA [ i ] = 0x12
i -= len ( k )
copy ( dAtA [ i :], k )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( k )))
i --
dAtA [ i ] = 0xa
i = runtime . EncodeVarint ( dAtA , i , uint64 ( baseI - i ))
i --
dAtA [ i ] = 0x42
return protoiface . MarshalOutput {}, nil
}
if options . Deterministic {
keysForMetadata := make ([] string , 0 , len ( x . Metadata ))
for k := range x . Metadata {
keysForMetadata = append ( keysForMetadata , string ( k ))
}
sort . Slice ( keysForMetadata , func ( i , j int ) bool {
return keysForMetadata [ i ] < keysForMetadata [ j ]
})
for iNdEx := len ( keysForMetadata ) - 1 ; iNdEx >= 0 ; iNdEx -- {
v := x . Metadata [ string ( keysForMetadata [ iNdEx ])]
out , err := MaRsHaLmAp ( keysForMetadata [ iNdEx ], v )
if err != nil {
return out , err
}
}
} else {
for k := range x . Metadata {
v := x . Metadata [ k ]
out , err := MaRsHaLmAp ( k , v )
if err != nil {
return out , err
}
}
}
}
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if len ( x . VerificationType ) > 0 {
i -= len ( x . VerificationType )
copy ( dAtA [ i :], x . VerificationType )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( x . VerificationType )))
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i --
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dAtA [ i ] = 0x3a
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}
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if x . PublicKey != nil {
encoded , err := options . Marshal ( x . PublicKey )
if err != nil {
return protoiface . MarshalOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Buf : input . Buf ,
}, err
}
i -= len ( encoded )
copy ( dAtA [ i :], encoded )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( encoded )))
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i --
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dAtA [ i ] = 0x32
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}
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if len ( x . Subject ) > 0 {
i -= len ( x . Subject )
copy ( dAtA [ i :], x . Subject )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( x . Subject )))
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i --
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dAtA [ i ] = 0x2a
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}
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if len ( x . Issuer ) > 0 {
i -= len ( x . Issuer )
copy ( dAtA [ i :], x . Issuer )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( x . Issuer )))
i --
2024-09-18 17:27:30 -04:00
dAtA [ i ] = 0x22
}
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if len ( x . DidMethod ) > 0 {
i -= len ( x . DidMethod )
copy ( dAtA [ i :], x . DidMethod )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( x . DidMethod )))
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i --
2024-09-19 02:04:22 -04:00
dAtA [ i ] = 0x1a
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}
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if len ( x . Controller ) > 0 {
i -= len ( x . Controller )
copy ( dAtA [ i :], x . Controller )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( x . Controller )))
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i --
dAtA [ i ] = 0x12
}
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if len ( x . Did ) > 0 {
i -= len ( x . Did )
copy ( dAtA [ i :], x . Did )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( x . Did )))
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i --
dAtA [ i ] = 0xa
}
if input . Buf != nil {
input . Buf = append ( input . Buf , dAtA ... )
} else {
input . Buf = dAtA
}
return protoiface . MarshalOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Buf : input . Buf ,
}, nil
}
unmarshal := func ( input protoiface . UnmarshalInput ) ( protoiface . UnmarshalOutput , error ) {
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x := input . Message . Interface ().( * Verification )
if x == nil {
return protoiface . UnmarshalOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Flags : input . Flags ,
}, nil
}
options := runtime . UnmarshalInputToOptions ( input )
_ = options
dAtA := input . Buf
l := len ( dAtA )
iNdEx := 0
for iNdEx < l {
preIndex := iNdEx
var wire uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
wire |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
fieldNum := int32 ( wire >> 3 )
wireType := int ( wire & 0x7 )
if wireType == 4 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: Verification: wiretype end group for non-group" )
}
if fieldNum <= 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: Verification: illegal tag %d (wire type %d)" , fieldNum , wire )
}
switch fieldNum {
case 1 :
if wireType != 2 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field Did" , wireType )
}
var stringLen uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLen |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLen := int ( stringLen )
if intStringLen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + intStringLen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
x . Did = string ( dAtA [ iNdEx : postIndex ])
iNdEx = postIndex
case 2 :
if wireType != 2 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field Controller" , wireType )
}
var stringLen uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLen |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLen := int ( stringLen )
if intStringLen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + intStringLen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
x . Controller = string ( dAtA [ iNdEx : postIndex ])
iNdEx = postIndex
case 3 :
if wireType != 2 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field DidMethod" , wireType )
}
var stringLen uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLen |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLen := int ( stringLen )
if intStringLen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + intStringLen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
x . DidMethod = string ( dAtA [ iNdEx : postIndex ])
iNdEx = postIndex
case 4 :
if wireType != 2 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field Issuer" , wireType )
}
var stringLen uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLen |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLen := int ( stringLen )
if intStringLen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + intStringLen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
x . Issuer = string ( dAtA [ iNdEx : postIndex ])
iNdEx = postIndex
case 5 :
if wireType != 2 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field Subject" , wireType )
}
var stringLen uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLen |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLen := int ( stringLen )
if intStringLen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + intStringLen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
x . Subject = string ( dAtA [ iNdEx : postIndex ])
iNdEx = postIndex
case 6 :
if wireType != 2 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field PublicKey" , wireType )
}
var msglen int
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
msglen |= int ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
if msglen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + msglen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
if x . PublicKey == nil {
x . PublicKey = & PubKey {}
}
if err := options . Unmarshal ( dAtA [ iNdEx : postIndex ], x . PublicKey ); err != nil {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, err
}
iNdEx = postIndex
case 7 :
if wireType != 2 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field VerificationType" , wireType )
}
var stringLen uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLen |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLen := int ( stringLen )
if intStringLen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + intStringLen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
x . VerificationType = string ( dAtA [ iNdEx : postIndex ])
iNdEx = postIndex
case 8 :
if wireType != 2 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field Metadata" , wireType )
}
var msglen int
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
msglen |= int ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
if msglen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + msglen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
if x . Metadata == nil {
x . Metadata = make ( map [ string ] string )
}
var mapkey string
var mapvalue string
for iNdEx < postIndex {
entryPreIndex := iNdEx
var wire uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
wire |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
fieldNum := int32 ( wire >> 3 )
if fieldNum == 1 {
var stringLenmapkey uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLenmapkey |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLenmapkey := int ( stringLenmapkey )
if intStringLenmapkey < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postStringIndexmapkey := iNdEx + intStringLenmapkey
if postStringIndexmapkey < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postStringIndexmapkey > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
mapkey = string ( dAtA [ iNdEx : postStringIndexmapkey ])
iNdEx = postStringIndexmapkey
} else if fieldNum == 2 {
var stringLenmapvalue uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLenmapvalue |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLenmapvalue := int ( stringLenmapvalue )
if intStringLenmapvalue < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postStringIndexmapvalue := iNdEx + intStringLenmapvalue
if postStringIndexmapvalue < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postStringIndexmapvalue > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
mapvalue = string ( dAtA [ iNdEx : postStringIndexmapvalue ])
iNdEx = postStringIndexmapvalue
} else {
iNdEx = entryPreIndex
skippy , err := runtime . Skip ( dAtA [ iNdEx :])
if err != nil {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, err
}
if ( skippy < 0 ) || ( iNdEx + skippy ) < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if ( iNdEx + skippy ) > postIndex {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
iNdEx += skippy
}
}
x . Metadata [ mapkey ] = mapvalue
iNdEx = postIndex
case 9 :
if wireType != 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field CreationBlock" , wireType )
}
x . CreationBlock = 0
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
x . CreationBlock |= int64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
default :
iNdEx = preIndex
skippy , err := runtime . Skip ( dAtA [ iNdEx :])
if err != nil {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, err
}
if ( skippy < 0 ) || ( iNdEx + skippy ) < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if ( iNdEx + skippy ) > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
if ! options . DiscardUnknown {
x . unknownFields = append ( x . unknownFields , dAtA [ iNdEx : iNdEx + skippy ] ... )
}
iNdEx += skippy
}
}
if iNdEx > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, nil
}
return & protoiface . Methods {
NoUnkeyedLiterals : struct {}{},
Flags : protoiface . SupportMarshalDeterministic | protoiface . SupportUnmarshalDiscardUnknown ,
Size : size ,
Marshal : marshal ,
Unmarshal : unmarshal ,
Merge : nil ,
CheckInitialized : nil ,
}
}
var (
md_Keyshares protoreflect . MessageDescriptor
fd_Keyshares_validator_cid protoreflect . FieldDescriptor
fd_Keyshares_user_cid protoreflect . FieldDescriptor
fd_Keyshares_last_updated_block protoreflect . FieldDescriptor
)
func init () {
file_did_v1_state_proto_init ()
md_Keyshares = File_did_v1_state_proto . Messages (). ByName ( "Keyshares" )
fd_Keyshares_validator_cid = md_Keyshares . Fields (). ByName ( "validator_cid" )
fd_Keyshares_user_cid = md_Keyshares . Fields (). ByName ( "user_cid" )
fd_Keyshares_last_updated_block = md_Keyshares . Fields (). ByName ( "last_updated_block" )
}
var _ protoreflect . Message = ( * fastReflection_Keyshares )( nil )
type fastReflection_Keyshares Keyshares
func ( x * Keyshares ) ProtoReflect () protoreflect . Message {
return ( * fastReflection_Keyshares )( x )
}
func ( x * Keyshares ) slowProtoReflect () protoreflect . Message {
mi := & file_did_v1_state_proto_msgTypes [ 3 ]
if protoimpl . UnsafeEnabled && x != nil {
ms := protoimpl . X . MessageStateOf ( protoimpl . Pointer ( x ))
if ms . LoadMessageInfo () == nil {
ms . StoreMessageInfo ( mi )
}
return ms
}
return mi . MessageOf ( x )
}
var _fastReflection_Keyshares_messageType fastReflection_Keyshares_messageType
var _ protoreflect . MessageType = fastReflection_Keyshares_messageType {}
type fastReflection_Keyshares_messageType struct {}
func ( x fastReflection_Keyshares_messageType ) Zero () protoreflect . Message {
return ( * fastReflection_Keyshares )( nil )
}
func ( x fastReflection_Keyshares_messageType ) New () protoreflect . Message {
return new ( fastReflection_Keyshares )
}
func ( x fastReflection_Keyshares_messageType ) Descriptor () protoreflect . MessageDescriptor {
return md_Keyshares
}
// Descriptor returns message descriptor, which contains only the protobuf
// type information for the message.
func ( x * fastReflection_Keyshares ) Descriptor () protoreflect . MessageDescriptor {
return md_Keyshares
}
// Type returns the message type, which encapsulates both Go and protobuf
// type information. If the Go type information is not needed,
// it is recommended that the message descriptor be used instead.
func ( x * fastReflection_Keyshares ) Type () protoreflect . MessageType {
return _fastReflection_Keyshares_messageType
}
// New returns a newly allocated and mutable empty message.
func ( x * fastReflection_Keyshares ) New () protoreflect . Message {
return new ( fastReflection_Keyshares )
}
// Interface unwraps the message reflection interface and
// returns the underlying ProtoMessage interface.
func ( x * fastReflection_Keyshares ) Interface () protoreflect . ProtoMessage {
return ( * Keyshares )( x )
}
// Range iterates over every populated field in an undefined order,
// calling f for each field descriptor and value encountered.
// Range returns immediately if f returns false.
// While iterating, mutating operations may only be performed
// on the current field descriptor.
func ( x * fastReflection_Keyshares ) Range ( f func ( protoreflect . FieldDescriptor , protoreflect . Value ) bool ) {
if x . ValidatorCid != "" {
value := protoreflect . ValueOfString ( x . ValidatorCid )
if ! f ( fd_Keyshares_validator_cid , value ) {
return
}
}
if x . UserCid != "" {
value := protoreflect . ValueOfString ( x . UserCid )
if ! f ( fd_Keyshares_user_cid , value ) {
return
}
}
if x . LastUpdatedBlock != int64 ( 0 ) {
value := protoreflect . ValueOfInt64 ( x . LastUpdatedBlock )
if ! f ( fd_Keyshares_last_updated_block , value ) {
return
}
}
}
// Has reports whether a field is populated.
//
// Some fields have the property of nullability where it is possible to
// distinguish between the default value of a field and whether the field
// was explicitly populated with the default value. Singular message fields,
// member fields of a oneof, and proto2 scalar fields are nullable. Such
// fields are populated only if explicitly set.
//
// In other cases (aside from the nullable cases above),
// a proto3 scalar field is populated if it contains a non-zero value, and
// a repeated field is populated if it is non-empty.
func ( x * fastReflection_Keyshares ) Has ( fd protoreflect . FieldDescriptor ) bool {
switch fd . FullName () {
case "did.v1.Keyshares.validator_cid" :
return x . ValidatorCid != ""
case "did.v1.Keyshares.user_cid" :
return x . UserCid != ""
case "did.v1.Keyshares.last_updated_block" :
return x . LastUpdatedBlock != int64 ( 0 )
default :
if fd . IsExtension () {
panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.Keyshares" ))
}
panic ( fmt . Errorf ( "message did.v1.Keyshares does not contain field %s" , fd . FullName ()))
}
}
// Clear clears the field such that a subsequent Has call reports false.
//
// Clearing an extension field clears both the extension type and value
// associated with the given field number.
//
// Clear is a mutating operation and unsafe for concurrent use.
func ( x * fastReflection_Keyshares ) Clear ( fd protoreflect . FieldDescriptor ) {
switch fd . FullName () {
case "did.v1.Keyshares.validator_cid" :
x . ValidatorCid = ""
case "did.v1.Keyshares.user_cid" :
x . UserCid = ""
case "did.v1.Keyshares.last_updated_block" :
x . LastUpdatedBlock = int64 ( 0 )
default :
if fd . IsExtension () {
panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.Keyshares" ))
}
panic ( fmt . Errorf ( "message did.v1.Keyshares does not contain field %s" , fd . FullName ()))
}
}
// Get retrieves the value for a field.
//
// For unpopulated scalars, it returns the default value, where
// the default value of a bytes scalar is guaranteed to be a copy.
// For unpopulated composite types, it returns an empty, read-only view
// of the value; to obtain a mutable reference, use Mutable.
func ( x * fastReflection_Keyshares ) Get ( descriptor protoreflect . FieldDescriptor ) protoreflect . Value {
switch descriptor . FullName () {
case "did.v1.Keyshares.validator_cid" :
value := x . ValidatorCid
return protoreflect . ValueOfString ( value )
case "did.v1.Keyshares.user_cid" :
value := x . UserCid
return protoreflect . ValueOfString ( value )
case "did.v1.Keyshares.last_updated_block" :
value := x . LastUpdatedBlock
return protoreflect . ValueOfInt64 ( value )
default :
if descriptor . IsExtension () {
panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.Keyshares" ))
}
panic ( fmt . Errorf ( "message did.v1.Keyshares does not contain field %s" , descriptor . FullName ()))
}
}
// Set stores the value for a field.
//
// For a field belonging to a oneof, it implicitly clears any other field
// that may be currently set within the same oneof.
// For extension fields, it implicitly stores the provided ExtensionType.
// When setting a composite type, it is unspecified whether the stored value
// aliases the source's memory in any way. If the composite value is an
// empty, read-only value, then it panics.
//
// Set is a mutating operation and unsafe for concurrent use.
func ( x * fastReflection_Keyshares ) Set ( fd protoreflect . FieldDescriptor , value protoreflect . Value ) {
switch fd . FullName () {
case "did.v1.Keyshares.validator_cid" :
x . ValidatorCid = value . Interface ().( string )
case "did.v1.Keyshares.user_cid" :
x . UserCid = value . Interface ().( string )
case "did.v1.Keyshares.last_updated_block" :
x . LastUpdatedBlock = value . Int ()
default :
if fd . IsExtension () {
panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.Keyshares" ))
}
panic ( fmt . Errorf ( "message did.v1.Keyshares does not contain field %s" , fd . FullName ()))
}
}
// Mutable returns a mutable reference to a composite type.
//
// If the field is unpopulated, it may allocate a composite value.
// For a field belonging to a oneof, it implicitly clears any other field
// that may be currently set within the same oneof.
// For extension fields, it implicitly stores the provided ExtensionType
// if not already stored.
// It panics if the field does not contain a composite type.
//
// Mutable is a mutating operation and unsafe for concurrent use.
func ( x * fastReflection_Keyshares ) Mutable ( fd protoreflect . FieldDescriptor ) protoreflect . Value {
switch fd . FullName () {
case "did.v1.Keyshares.validator_cid" :
panic ( fmt . Errorf ( "field validator_cid of message did.v1.Keyshares is not mutable" ))
case "did.v1.Keyshares.user_cid" :
panic ( fmt . Errorf ( "field user_cid of message did.v1.Keyshares is not mutable" ))
case "did.v1.Keyshares.last_updated_block" :
panic ( fmt . Errorf ( "field last_updated_block of message did.v1.Keyshares is not mutable" ))
default :
if fd . IsExtension () {
panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.Keyshares" ))
}
panic ( fmt . Errorf ( "message did.v1.Keyshares does not contain field %s" , fd . FullName ()))
}
}
// NewField returns a new value that is assignable to the field
// for the given descriptor. For scalars, this returns the default value.
// For lists, maps, and messages, this returns a new, empty, mutable value.
func ( x * fastReflection_Keyshares ) NewField ( fd protoreflect . FieldDescriptor ) protoreflect . Value {
switch fd . FullName () {
case "did.v1.Keyshares.validator_cid" :
return protoreflect . ValueOfString ( "" )
case "did.v1.Keyshares.user_cid" :
return protoreflect . ValueOfString ( "" )
case "did.v1.Keyshares.last_updated_block" :
return protoreflect . ValueOfInt64 ( int64 ( 0 ))
default :
if fd . IsExtension () {
panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.Keyshares" ))
}
panic ( fmt . Errorf ( "message did.v1.Keyshares does not contain field %s" , fd . FullName ()))
}
}
// WhichOneof reports which field within the oneof is populated,
// returning nil if none are populated.
// It panics if the oneof descriptor does not belong to this message.
func ( x * fastReflection_Keyshares ) WhichOneof ( d protoreflect . OneofDescriptor ) protoreflect . FieldDescriptor {
switch d . FullName () {
default :
panic ( fmt . Errorf ( "%s is not a oneof field in did.v1.Keyshares" , d . FullName ()))
}
panic ( "unreachable" )
}
// GetUnknown retrieves the entire list of unknown fields.
// The caller may only mutate the contents of the RawFields
// if the mutated bytes are stored back into the message with SetUnknown.
func ( x * fastReflection_Keyshares ) GetUnknown () protoreflect . RawFields {
return x . unknownFields
}
// SetUnknown stores an entire list of unknown fields.
// The raw fields must be syntactically valid according to the wire format.
// An implementation may panic if this is not the case.
// Once stored, the caller must not mutate the content of the RawFields.
// An empty RawFields may be passed to clear the fields.
//
// SetUnknown is a mutating operation and unsafe for concurrent use.
func ( x * fastReflection_Keyshares ) SetUnknown ( fields protoreflect . RawFields ) {
x . unknownFields = fields
}
// IsValid reports whether the message is valid.
//
// An invalid message is an empty, read-only value.
//
// An invalid message often corresponds to a nil pointer of the concrete
// message type, but the details are implementation dependent.
// Validity is not part of the protobuf data model, and may not
// be preserved in marshaling or other operations.
func ( x * fastReflection_Keyshares ) IsValid () bool {
return x != nil
}
// ProtoMethods returns optional fastReflectionFeature-path implementations of various operations.
// This method may return nil.
//
// The returned methods type is identical to
// "google.golang.org/protobuf/runtime/protoiface".Methods.
// Consult the protoiface package documentation for details.
func ( x * fastReflection_Keyshares ) ProtoMethods () * protoiface . Methods {
size := func ( input protoiface . SizeInput ) protoiface . SizeOutput {
x := input . Message . Interface ().( * Keyshares )
if x == nil {
return protoiface . SizeOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Size : 0 ,
}
}
options := runtime . SizeInputToOptions ( input )
_ = options
var n int
var l int
_ = l
l = len ( x . ValidatorCid )
if l > 0 {
n += 1 + l + runtime . Sov ( uint64 ( l ))
}
l = len ( x . UserCid )
if l > 0 {
n += 1 + l + runtime . Sov ( uint64 ( l ))
}
if x . LastUpdatedBlock != 0 {
n += 1 + runtime . Sov ( uint64 ( x . LastUpdatedBlock ))
}
if x . unknownFields != nil {
n += len ( x . unknownFields )
}
return protoiface . SizeOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Size : n ,
}
}
marshal := func ( input protoiface . MarshalInput ) ( protoiface . MarshalOutput , error ) {
x := input . Message . Interface ().( * Keyshares )
if x == nil {
return protoiface . MarshalOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Buf : input . Buf ,
}, nil
}
options := runtime . MarshalInputToOptions ( input )
_ = options
size := options . Size ( x )
dAtA := make ([] byte , size )
i := len ( dAtA )
_ = i
var l int
_ = l
if x . unknownFields != nil {
i -= len ( x . unknownFields )
copy ( dAtA [ i :], x . unknownFields )
}
if x . LastUpdatedBlock != 0 {
i = runtime . EncodeVarint ( dAtA , i , uint64 ( x . LastUpdatedBlock ))
i --
dAtA [ i ] = 0x18
}
if len ( x . UserCid ) > 0 {
i -= len ( x . UserCid )
copy ( dAtA [ i :], x . UserCid )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( x . UserCid )))
i --
dAtA [ i ] = 0x12
}
if len ( x . ValidatorCid ) > 0 {
i -= len ( x . ValidatorCid )
copy ( dAtA [ i :], x . ValidatorCid )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( x . ValidatorCid )))
i --
dAtA [ i ] = 0xa
}
if input . Buf != nil {
input . Buf = append ( input . Buf , dAtA ... )
} else {
input . Buf = dAtA
}
return protoiface . MarshalOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Buf : input . Buf ,
}, nil
}
unmarshal := func ( input protoiface . UnmarshalInput ) ( protoiface . UnmarshalOutput , error ) {
x := input . Message . Interface ().( * Keyshares )
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if x == nil {
return protoiface . UnmarshalOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Flags : input . Flags ,
}, nil
}
options := runtime . UnmarshalInputToOptions ( input )
_ = options
dAtA := input . Buf
l := len ( dAtA )
iNdEx := 0
for iNdEx < l {
preIndex := iNdEx
var wire uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
wire |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
fieldNum := int32 ( wire >> 3 )
wireType := int ( wire & 0x7 )
if wireType == 4 {
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return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: Keyshares: wiretype end group for non-group" )
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}
if fieldNum <= 0 {
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return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: Keyshares: illegal tag %d (wire type %d)" , fieldNum , wire )
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}
switch fieldNum {
case 1 :
if wireType != 2 {
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return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field ValidatorCid" , wireType )
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}
var stringLen uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLen |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLen := int ( stringLen )
if intStringLen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + intStringLen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
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x . ValidatorCid = string ( dAtA [ iNdEx : postIndex ])
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iNdEx = postIndex
case 2 :
if wireType != 2 {
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return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field UserCid" , wireType )
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}
var stringLen uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLen |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLen := int ( stringLen )
if intStringLen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + intStringLen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
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x . UserCid = string ( dAtA [ iNdEx : postIndex ])
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iNdEx = postIndex
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case 3 :
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if wireType != 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field LastUpdatedBlock" , wireType )
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}
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x . LastUpdatedBlock = 0
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for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
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x . LastUpdatedBlock |= int64 ( b & 0x7F ) << shift
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if b < 0x80 {
break
}
}
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default :
iNdEx = preIndex
skippy , err := runtime . Skip ( dAtA [ iNdEx :])
if err != nil {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, err
}
if ( skippy < 0 ) || ( iNdEx + skippy ) < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if ( iNdEx + skippy ) > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
if ! options . DiscardUnknown {
x . unknownFields = append ( x . unknownFields , dAtA [ iNdEx : iNdEx + skippy ] ... )
}
iNdEx += skippy
}
}
if iNdEx > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, nil
}
return & protoiface . Methods {
NoUnkeyedLiterals : struct {}{},
Flags : protoiface . SupportMarshalDeterministic | protoiface . SupportUnmarshalDiscardUnknown ,
Size : size ,
Marshal : marshal ,
Unmarshal : unmarshal ,
Merge : nil ,
CheckInitialized : nil ,
}
}
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var (
md_PubKey protoreflect . MessageDescriptor
fd_PubKey_role protoreflect . FieldDescriptor
fd_PubKey_key_type protoreflect . FieldDescriptor
fd_PubKey_raw_key protoreflect . FieldDescriptor
fd_PubKey_jwk protoreflect . FieldDescriptor
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)
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func init () {
file_did_v1_state_proto_init ()
md_PubKey = File_did_v1_state_proto . Messages (). ByName ( "PubKey" )
fd_PubKey_role = md_PubKey . Fields (). ByName ( "role" )
fd_PubKey_key_type = md_PubKey . Fields (). ByName ( "key_type" )
fd_PubKey_raw_key = md_PubKey . Fields (). ByName ( "raw_key" )
fd_PubKey_jwk = md_PubKey . Fields (). ByName ( "jwk" )
}
var _ protoreflect . Message = ( * fastReflection_PubKey )( nil )
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type fastReflection_PubKey PubKey
func ( x * PubKey ) ProtoReflect () protoreflect . Message {
return ( * fastReflection_PubKey )( x )
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}
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func ( x * PubKey ) slowProtoReflect () protoreflect . Message {
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mi := & file_did_v1_state_proto_msgTypes [ 4 ]
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if protoimpl . UnsafeEnabled && x != nil {
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ms := protoimpl . X . MessageStateOf ( protoimpl . Pointer ( x ))
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if ms . LoadMessageInfo () == nil {
ms . StoreMessageInfo ( mi )
}
return ms
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}
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return mi . MessageOf ( x )
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}
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var _fastReflection_PubKey_messageType fastReflection_PubKey_messageType
var _ protoreflect . MessageType = fastReflection_PubKey_messageType {}
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type fastReflection_PubKey_messageType struct {}
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func ( x fastReflection_PubKey_messageType ) Zero () protoreflect . Message {
return ( * fastReflection_PubKey )( nil )
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}
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func ( x fastReflection_PubKey_messageType ) New () protoreflect . Message {
return new ( fastReflection_PubKey )
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}
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func ( x fastReflection_PubKey_messageType ) Descriptor () protoreflect . MessageDescriptor {
return md_PubKey
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}
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// Descriptor returns message descriptor, which contains only the protobuf
// type information for the message.
func ( x * fastReflection_PubKey ) Descriptor () protoreflect . MessageDescriptor {
return md_PubKey
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}
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// Type returns the message type, which encapsulates both Go and protobuf
// type information. If the Go type information is not needed,
// it is recommended that the message descriptor be used instead.
func ( x * fastReflection_PubKey ) Type () protoreflect . MessageType {
return _fastReflection_PubKey_messageType
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}
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// New returns a newly allocated and mutable empty message.
func ( x * fastReflection_PubKey ) New () protoreflect . Message {
return new ( fastReflection_PubKey )
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}
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// Interface unwraps the message reflection interface and
// returns the underlying ProtoMessage interface.
func ( x * fastReflection_PubKey ) Interface () protoreflect . ProtoMessage {
return ( * PubKey )( x )
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}
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// Range iterates over every populated field in an undefined order,
// calling f for each field descriptor and value encountered.
// Range returns immediately if f returns false.
// While iterating, mutating operations may only be performed
// on the current field descriptor.
func ( x * fastReflection_PubKey ) Range ( f func ( protoreflect . FieldDescriptor , protoreflect . Value ) bool ) {
if x . Role != "" {
value := protoreflect . ValueOfString ( x . Role )
if ! f ( fd_PubKey_role , value ) {
return
}
}
if x . KeyType != "" {
value := protoreflect . ValueOfString ( x . KeyType )
if ! f ( fd_PubKey_key_type , value ) {
return
}
}
if x . RawKey != nil {
value := protoreflect . ValueOfMessage ( x . RawKey . ProtoReflect ())
if ! f ( fd_PubKey_raw_key , value ) {
return
}
}
if x . Jwk != nil {
value := protoreflect . ValueOfMessage ( x . Jwk . ProtoReflect ())
if ! f ( fd_PubKey_jwk , value ) {
return
}
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}
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}
// Has reports whether a field is populated.
//
// Some fields have the property of nullability where it is possible to
// distinguish between the default value of a field and whether the field
// was explicitly populated with the default value. Singular message fields,
// member fields of a oneof, and proto2 scalar fields are nullable. Such
// fields are populated only if explicitly set.
//
// In other cases (aside from the nullable cases above),
// a proto3 scalar field is populated if it contains a non-zero value, and
// a repeated field is populated if it is non-empty.
func ( x * fastReflection_PubKey ) Has ( fd protoreflect . FieldDescriptor ) bool {
switch fd . FullName () {
case "did.v1.PubKey.role" :
return x . Role != ""
case "did.v1.PubKey.key_type" :
return x . KeyType != ""
case "did.v1.PubKey.raw_key" :
return x . RawKey != nil
case "did.v1.PubKey.jwk" :
return x . Jwk != nil
default :
if fd . IsExtension () {
panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.PubKey" ))
}
panic ( fmt . Errorf ( "message did.v1.PubKey does not contain field %s" , fd . FullName ()))
}
}
// Clear clears the field such that a subsequent Has call reports false.
//
// Clearing an extension field clears both the extension type and value
// associated with the given field number.
//
// Clear is a mutating operation and unsafe for concurrent use.
func ( x * fastReflection_PubKey ) Clear ( fd protoreflect . FieldDescriptor ) {
switch fd . FullName () {
case "did.v1.PubKey.role" :
x . Role = ""
case "did.v1.PubKey.key_type" :
x . KeyType = ""
case "did.v1.PubKey.raw_key" :
x . RawKey = nil
case "did.v1.PubKey.jwk" :
x . Jwk = nil
default :
if fd . IsExtension () {
panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.PubKey" ))
}
panic ( fmt . Errorf ( "message did.v1.PubKey does not contain field %s" , fd . FullName ()))
}
}
// Get retrieves the value for a field.
//
// For unpopulated scalars, it returns the default value, where
// the default value of a bytes scalar is guaranteed to be a copy.
// For unpopulated composite types, it returns an empty, read-only view
// of the value; to obtain a mutable reference, use Mutable.
func ( x * fastReflection_PubKey ) Get ( descriptor protoreflect . FieldDescriptor ) protoreflect . Value {
switch descriptor . FullName () {
case "did.v1.PubKey.role" :
value := x . Role
return protoreflect . ValueOfString ( value )
case "did.v1.PubKey.key_type" :
value := x . KeyType
return protoreflect . ValueOfString ( value )
case "did.v1.PubKey.raw_key" :
value := x . RawKey
return protoreflect . ValueOfMessage ( value . ProtoReflect ())
case "did.v1.PubKey.jwk" :
value := x . Jwk
return protoreflect . ValueOfMessage ( value . ProtoReflect ())
default :
if descriptor . IsExtension () {
panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.PubKey" ))
}
panic ( fmt . Errorf ( "message did.v1.PubKey does not contain field %s" , descriptor . FullName ()))
}
}
// Set stores the value for a field.
//
// For a field belonging to a oneof, it implicitly clears any other field
// that may be currently set within the same oneof.
// For extension fields, it implicitly stores the provided ExtensionType.
// When setting a composite type, it is unspecified whether the stored value
// aliases the source's memory in any way. If the composite value is an
// empty, read-only value, then it panics.
//
// Set is a mutating operation and unsafe for concurrent use.
func ( x * fastReflection_PubKey ) Set ( fd protoreflect . FieldDescriptor , value protoreflect . Value ) {
switch fd . FullName () {
case "did.v1.PubKey.role" :
x . Role = value . Interface ().( string )
case "did.v1.PubKey.key_type" :
x . KeyType = value . Interface ().( string )
case "did.v1.PubKey.raw_key" :
x . RawKey = value . Message (). Interface ().( * RawKey )
case "did.v1.PubKey.jwk" :
x . Jwk = value . Message (). Interface ().( * JSONWebKey )
default :
if fd . IsExtension () {
panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.PubKey" ))
}
panic ( fmt . Errorf ( "message did.v1.PubKey does not contain field %s" , fd . FullName ()))
}
}
// Mutable returns a mutable reference to a composite type.
//
// If the field is unpopulated, it may allocate a composite value.
// For a field belonging to a oneof, it implicitly clears any other field
// that may be currently set within the same oneof.
// For extension fields, it implicitly stores the provided ExtensionType
// if not already stored.
// It panics if the field does not contain a composite type.
//
// Mutable is a mutating operation and unsafe for concurrent use.
func ( x * fastReflection_PubKey ) Mutable ( fd protoreflect . FieldDescriptor ) protoreflect . Value {
switch fd . FullName () {
case "did.v1.PubKey.raw_key" :
if x . RawKey == nil {
x . RawKey = new ( RawKey )
}
return protoreflect . ValueOfMessage ( x . RawKey . ProtoReflect ())
case "did.v1.PubKey.jwk" :
if x . Jwk == nil {
x . Jwk = new ( JSONWebKey )
}
return protoreflect . ValueOfMessage ( x . Jwk . ProtoReflect ())
case "did.v1.PubKey.role" :
panic ( fmt . Errorf ( "field role of message did.v1.PubKey is not mutable" ))
case "did.v1.PubKey.key_type" :
panic ( fmt . Errorf ( "field key_type of message did.v1.PubKey is not mutable" ))
default :
if fd . IsExtension () {
panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.PubKey" ))
}
panic ( fmt . Errorf ( "message did.v1.PubKey does not contain field %s" , fd . FullName ()))
}
}
// NewField returns a new value that is assignable to the field
// for the given descriptor. For scalars, this returns the default value.
// For lists, maps, and messages, this returns a new, empty, mutable value.
func ( x * fastReflection_PubKey ) NewField ( fd protoreflect . FieldDescriptor ) protoreflect . Value {
switch fd . FullName () {
case "did.v1.PubKey.role" :
return protoreflect . ValueOfString ( "" )
case "did.v1.PubKey.key_type" :
return protoreflect . ValueOfString ( "" )
case "did.v1.PubKey.raw_key" :
m := new ( RawKey )
return protoreflect . ValueOfMessage ( m . ProtoReflect ())
case "did.v1.PubKey.jwk" :
m := new ( JSONWebKey )
return protoreflect . ValueOfMessage ( m . ProtoReflect ())
default :
if fd . IsExtension () {
panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.PubKey" ))
}
panic ( fmt . Errorf ( "message did.v1.PubKey does not contain field %s" , fd . FullName ()))
}
}
// WhichOneof reports which field within the oneof is populated,
// returning nil if none are populated.
// It panics if the oneof descriptor does not belong to this message.
func ( x * fastReflection_PubKey ) WhichOneof ( d protoreflect . OneofDescriptor ) protoreflect . FieldDescriptor {
switch d . FullName () {
default :
panic ( fmt . Errorf ( "%s is not a oneof field in did.v1.PubKey" , d . FullName ()))
}
panic ( "unreachable" )
}
// GetUnknown retrieves the entire list of unknown fields.
// The caller may only mutate the contents of the RawFields
// if the mutated bytes are stored back into the message with SetUnknown.
func ( x * fastReflection_PubKey ) GetUnknown () protoreflect . RawFields {
return x . unknownFields
}
// SetUnknown stores an entire list of unknown fields.
// The raw fields must be syntactically valid according to the wire format.
// An implementation may panic if this is not the case.
// Once stored, the caller must not mutate the content of the RawFields.
// An empty RawFields may be passed to clear the fields.
//
// SetUnknown is a mutating operation and unsafe for concurrent use.
func ( x * fastReflection_PubKey ) SetUnknown ( fields protoreflect . RawFields ) {
x . unknownFields = fields
}
// IsValid reports whether the message is valid.
//
// An invalid message is an empty, read-only value.
//
// An invalid message often corresponds to a nil pointer of the concrete
// message type, but the details are implementation dependent.
// Validity is not part of the protobuf data model, and may not
// be preserved in marshaling or other operations.
func ( x * fastReflection_PubKey ) IsValid () bool {
return x != nil
}
// ProtoMethods returns optional fastReflectionFeature-path implementations of various operations.
// This method may return nil.
//
// The returned methods type is identical to
// "google.golang.org/protobuf/runtime/protoiface".Methods.
// Consult the protoiface package documentation for details.
func ( x * fastReflection_PubKey ) ProtoMethods () * protoiface . Methods {
size := func ( input protoiface . SizeInput ) protoiface . SizeOutput {
x := input . Message . Interface ().( * PubKey )
if x == nil {
return protoiface . SizeOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Size : 0 ,
}
}
options := runtime . SizeInputToOptions ( input )
_ = options
var n int
var l int
_ = l
l = len ( x . Role )
if l > 0 {
n += 1 + l + runtime . Sov ( uint64 ( l ))
}
l = len ( x . KeyType )
if l > 0 {
n += 1 + l + runtime . Sov ( uint64 ( l ))
}
if x . RawKey != nil {
l = options . Size ( x . RawKey )
n += 1 + l + runtime . Sov ( uint64 ( l ))
}
if x . Jwk != nil {
l = options . Size ( x . Jwk )
n += 1 + l + runtime . Sov ( uint64 ( l ))
}
if x . unknownFields != nil {
n += len ( x . unknownFields )
}
return protoiface . SizeOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Size : n ,
}
}
marshal := func ( input protoiface . MarshalInput ) ( protoiface . MarshalOutput , error ) {
x := input . Message . Interface ().( * PubKey )
if x == nil {
return protoiface . MarshalOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Buf : input . Buf ,
}, nil
}
options := runtime . MarshalInputToOptions ( input )
_ = options
size := options . Size ( x )
dAtA := make ([] byte , size )
i := len ( dAtA )
_ = i
var l int
_ = l
if x . unknownFields != nil {
i -= len ( x . unknownFields )
copy ( dAtA [ i :], x . unknownFields )
}
if x . Jwk != nil {
encoded , err := options . Marshal ( x . Jwk )
if err != nil {
return protoiface . MarshalOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Buf : input . Buf ,
}, err
}
i -= len ( encoded )
copy ( dAtA [ i :], encoded )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( encoded )))
i --
dAtA [ i ] = 0x22
}
if x . RawKey != nil {
encoded , err := options . Marshal ( x . RawKey )
if err != nil {
return protoiface . MarshalOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Buf : input . Buf ,
}, err
}
i -= len ( encoded )
copy ( dAtA [ i :], encoded )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( encoded )))
i --
dAtA [ i ] = 0x1a
}
if len ( x . KeyType ) > 0 {
i -= len ( x . KeyType )
copy ( dAtA [ i :], x . KeyType )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( x . KeyType )))
i --
dAtA [ i ] = 0x12
}
if len ( x . Role ) > 0 {
i -= len ( x . Role )
copy ( dAtA [ i :], x . Role )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( x . Role )))
i --
dAtA [ i ] = 0xa
}
if input . Buf != nil {
input . Buf = append ( input . Buf , dAtA ... )
} else {
input . Buf = dAtA
}
return protoiface . MarshalOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Buf : input . Buf ,
}, nil
}
unmarshal := func ( input protoiface . UnmarshalInput ) ( protoiface . UnmarshalOutput , error ) {
x := input . Message . Interface ().( * PubKey )
if x == nil {
return protoiface . UnmarshalOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Flags : input . Flags ,
}, nil
}
options := runtime . UnmarshalInputToOptions ( input )
_ = options
dAtA := input . Buf
l := len ( dAtA )
iNdEx := 0
for iNdEx < l {
preIndex := iNdEx
var wire uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
wire |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
fieldNum := int32 ( wire >> 3 )
wireType := int ( wire & 0x7 )
if wireType == 4 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: PubKey: wiretype end group for non-group" )
}
if fieldNum <= 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: PubKey: illegal tag %d (wire type %d)" , fieldNum , wire )
}
switch fieldNum {
case 1 :
if wireType != 2 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field Role" , wireType )
}
var stringLen uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLen |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLen := int ( stringLen )
if intStringLen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + intStringLen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
x . Role = string ( dAtA [ iNdEx : postIndex ])
iNdEx = postIndex
case 2 :
if wireType != 2 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field KeyType" , wireType )
}
var stringLen uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLen |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLen := int ( stringLen )
if intStringLen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + intStringLen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
x . KeyType = string ( dAtA [ iNdEx : postIndex ])
iNdEx = postIndex
case 3 :
if wireType != 2 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field RawKey" , wireType )
}
var msglen int
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
msglen |= int ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
if msglen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + msglen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
if x . RawKey == nil {
x . RawKey = & RawKey {}
}
if err := options . Unmarshal ( dAtA [ iNdEx : postIndex ], x . RawKey ); err != nil {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, err
}
iNdEx = postIndex
case 4 :
if wireType != 2 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field Jwk" , wireType )
}
var msglen int
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
msglen |= int ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
if msglen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + msglen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
if x . Jwk == nil {
x . Jwk = & JSONWebKey {}
}
if err := options . Unmarshal ( dAtA [ iNdEx : postIndex ], x . Jwk ); err != nil {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, err
}
iNdEx = postIndex
default :
iNdEx = preIndex
skippy , err := runtime . Skip ( dAtA [ iNdEx :])
if err != nil {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, err
}
if ( skippy < 0 ) || ( iNdEx + skippy ) < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if ( iNdEx + skippy ) > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
if ! options . DiscardUnknown {
x . unknownFields = append ( x . unknownFields , dAtA [ iNdEx : iNdEx + skippy ] ... )
}
iNdEx += skippy
}
}
if iNdEx > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, nil
}
return & protoiface . Methods {
NoUnkeyedLiterals : struct {}{},
Flags : protoiface . SupportMarshalDeterministic | protoiface . SupportUnmarshalDiscardUnknown ,
Size : size ,
Marshal : marshal ,
Unmarshal : unmarshal ,
Merge : nil ,
CheckInitialized : nil ,
}
}
var (
md_JSONWebKey protoreflect . MessageDescriptor
fd_JSONWebKey_kty protoreflect . FieldDescriptor
fd_JSONWebKey_crv protoreflect . FieldDescriptor
fd_JSONWebKey_x protoreflect . FieldDescriptor
fd_JSONWebKey_y protoreflect . FieldDescriptor
fd_JSONWebKey_n protoreflect . FieldDescriptor
fd_JSONWebKey_e protoreflect . FieldDescriptor
)
func init () {
file_did_v1_state_proto_init ()
md_JSONWebKey = File_did_v1_state_proto . Messages (). ByName ( "JSONWebKey" )
fd_JSONWebKey_kty = md_JSONWebKey . Fields (). ByName ( "kty" )
fd_JSONWebKey_crv = md_JSONWebKey . Fields (). ByName ( "crv" )
fd_JSONWebKey_x = md_JSONWebKey . Fields (). ByName ( "x" )
fd_JSONWebKey_y = md_JSONWebKey . Fields (). ByName ( "y" )
fd_JSONWebKey_n = md_JSONWebKey . Fields (). ByName ( "n" )
fd_JSONWebKey_e = md_JSONWebKey . Fields (). ByName ( "e" )
}
var _ protoreflect . Message = ( * fastReflection_JSONWebKey )( nil )
type fastReflection_JSONWebKey JSONWebKey
func ( x * JSONWebKey ) ProtoReflect () protoreflect . Message {
return ( * fastReflection_JSONWebKey )( x )
}
func ( x * JSONWebKey ) slowProtoReflect () protoreflect . Message {
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mi := & file_did_v1_state_proto_msgTypes [ 5 ]
2024-09-27 20:58:05 -04:00
if protoimpl . UnsafeEnabled && x != nil {
ms := protoimpl . X . MessageStateOf ( protoimpl . Pointer ( x ))
if ms . LoadMessageInfo () == nil {
ms . StoreMessageInfo ( mi )
}
return ms
}
return mi . MessageOf ( x )
}
var _fastReflection_JSONWebKey_messageType fastReflection_JSONWebKey_messageType
var _ protoreflect . MessageType = fastReflection_JSONWebKey_messageType {}
type fastReflection_JSONWebKey_messageType struct {}
func ( x fastReflection_JSONWebKey_messageType ) Zero () protoreflect . Message {
return ( * fastReflection_JSONWebKey )( nil )
}
func ( x fastReflection_JSONWebKey_messageType ) New () protoreflect . Message {
return new ( fastReflection_JSONWebKey )
}
func ( x fastReflection_JSONWebKey_messageType ) Descriptor () protoreflect . MessageDescriptor {
return md_JSONWebKey
}
// Descriptor returns message descriptor, which contains only the protobuf
// type information for the message.
func ( x * fastReflection_JSONWebKey ) Descriptor () protoreflect . MessageDescriptor {
return md_JSONWebKey
}
// Type returns the message type, which encapsulates both Go and protobuf
// type information. If the Go type information is not needed,
// it is recommended that the message descriptor be used instead.
func ( x * fastReflection_JSONWebKey ) Type () protoreflect . MessageType {
return _fastReflection_JSONWebKey_messageType
}
// New returns a newly allocated and mutable empty message.
func ( x * fastReflection_JSONWebKey ) New () protoreflect . Message {
return new ( fastReflection_JSONWebKey )
}
// Interface unwraps the message reflection interface and
// returns the underlying ProtoMessage interface.
func ( x * fastReflection_JSONWebKey ) Interface () protoreflect . ProtoMessage {
return ( * JSONWebKey )( x )
}
// Range iterates over every populated field in an undefined order,
// calling f for each field descriptor and value encountered.
// Range returns immediately if f returns false.
// While iterating, mutating operations may only be performed
// on the current field descriptor.
func ( x * fastReflection_JSONWebKey ) Range ( f func ( protoreflect . FieldDescriptor , protoreflect . Value ) bool ) {
if x . Kty != "" {
value := protoreflect . ValueOfString ( x . Kty )
if ! f ( fd_JSONWebKey_kty , value ) {
return
}
}
if x . Crv != "" {
value := protoreflect . ValueOfString ( x . Crv )
if ! f ( fd_JSONWebKey_crv , value ) {
return
}
}
if x . X != "" {
value := protoreflect . ValueOfString ( x . X )
if ! f ( fd_JSONWebKey_x , value ) {
return
}
}
if x . Y != "" {
value := protoreflect . ValueOfString ( x . Y )
if ! f ( fd_JSONWebKey_y , value ) {
return
}
}
if x . N != "" {
value := protoreflect . ValueOfString ( x . N )
if ! f ( fd_JSONWebKey_n , value ) {
return
}
}
if x . E != "" {
value := protoreflect . ValueOfString ( x . E )
if ! f ( fd_JSONWebKey_e , value ) {
return
}
}
}
// Has reports whether a field is populated.
//
// Some fields have the property of nullability where it is possible to
// distinguish between the default value of a field and whether the field
// was explicitly populated with the default value. Singular message fields,
// member fields of a oneof, and proto2 scalar fields are nullable. Such
// fields are populated only if explicitly set.
//
// In other cases (aside from the nullable cases above),
// a proto3 scalar field is populated if it contains a non-zero value, and
// a repeated field is populated if it is non-empty.
func ( x * fastReflection_JSONWebKey ) Has ( fd protoreflect . FieldDescriptor ) bool {
switch fd . FullName () {
case "did.v1.JSONWebKey.kty" :
return x . Kty != ""
case "did.v1.JSONWebKey.crv" :
return x . Crv != ""
case "did.v1.JSONWebKey.x" :
return x . X != ""
case "did.v1.JSONWebKey.y" :
return x . Y != ""
case "did.v1.JSONWebKey.n" :
return x . N != ""
case "did.v1.JSONWebKey.e" :
return x . E != ""
default :
if fd . IsExtension () {
panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.JSONWebKey" ))
}
panic ( fmt . Errorf ( "message did.v1.JSONWebKey does not contain field %s" , fd . FullName ()))
}
}
// Clear clears the field such that a subsequent Has call reports false.
//
// Clearing an extension field clears both the extension type and value
// associated with the given field number.
//
// Clear is a mutating operation and unsafe for concurrent use.
func ( x * fastReflection_JSONWebKey ) Clear ( fd protoreflect . FieldDescriptor ) {
switch fd . FullName () {
case "did.v1.JSONWebKey.kty" :
x . Kty = ""
case "did.v1.JSONWebKey.crv" :
x . Crv = ""
case "did.v1.JSONWebKey.x" :
x . X = ""
case "did.v1.JSONWebKey.y" :
x . Y = ""
case "did.v1.JSONWebKey.n" :
x . N = ""
case "did.v1.JSONWebKey.e" :
x . E = ""
default :
if fd . IsExtension () {
panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.JSONWebKey" ))
}
panic ( fmt . Errorf ( "message did.v1.JSONWebKey does not contain field %s" , fd . FullName ()))
}
}
// Get retrieves the value for a field.
//
// For unpopulated scalars, it returns the default value, where
// the default value of a bytes scalar is guaranteed to be a copy.
// For unpopulated composite types, it returns an empty, read-only view
// of the value; to obtain a mutable reference, use Mutable.
func ( x * fastReflection_JSONWebKey ) Get ( descriptor protoreflect . FieldDescriptor ) protoreflect . Value {
switch descriptor . FullName () {
case "did.v1.JSONWebKey.kty" :
value := x . Kty
return protoreflect . ValueOfString ( value )
case "did.v1.JSONWebKey.crv" :
value := x . Crv
return protoreflect . ValueOfString ( value )
case "did.v1.JSONWebKey.x" :
value := x . X
return protoreflect . ValueOfString ( value )
case "did.v1.JSONWebKey.y" :
value := x . Y
return protoreflect . ValueOfString ( value )
case "did.v1.JSONWebKey.n" :
value := x . N
return protoreflect . ValueOfString ( value )
case "did.v1.JSONWebKey.e" :
value := x . E
return protoreflect . ValueOfString ( value )
default :
if descriptor . IsExtension () {
panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.JSONWebKey" ))
}
panic ( fmt . Errorf ( "message did.v1.JSONWebKey does not contain field %s" , descriptor . FullName ()))
}
}
// Set stores the value for a field.
//
// For a field belonging to a oneof, it implicitly clears any other field
// that may be currently set within the same oneof.
// For extension fields, it implicitly stores the provided ExtensionType.
// When setting a composite type, it is unspecified whether the stored value
// aliases the source's memory in any way. If the composite value is an
// empty, read-only value, then it panics.
//
// Set is a mutating operation and unsafe for concurrent use.
func ( x * fastReflection_JSONWebKey ) Set ( fd protoreflect . FieldDescriptor , value protoreflect . Value ) {
switch fd . FullName () {
case "did.v1.JSONWebKey.kty" :
x . Kty = value . Interface ().( string )
case "did.v1.JSONWebKey.crv" :
x . Crv = value . Interface ().( string )
case "did.v1.JSONWebKey.x" :
x . X = value . Interface ().( string )
case "did.v1.JSONWebKey.y" :
x . Y = value . Interface ().( string )
case "did.v1.JSONWebKey.n" :
x . N = value . Interface ().( string )
case "did.v1.JSONWebKey.e" :
x . E = value . Interface ().( string )
default :
if fd . IsExtension () {
panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.JSONWebKey" ))
}
panic ( fmt . Errorf ( "message did.v1.JSONWebKey does not contain field %s" , fd . FullName ()))
}
}
// Mutable returns a mutable reference to a composite type.
//
// If the field is unpopulated, it may allocate a composite value.
// For a field belonging to a oneof, it implicitly clears any other field
// that may be currently set within the same oneof.
// For extension fields, it implicitly stores the provided ExtensionType
// if not already stored.
// It panics if the field does not contain a composite type.
//
// Mutable is a mutating operation and unsafe for concurrent use.
func ( x * fastReflection_JSONWebKey ) Mutable ( fd protoreflect . FieldDescriptor ) protoreflect . Value {
switch fd . FullName () {
case "did.v1.JSONWebKey.kty" :
panic ( fmt . Errorf ( "field kty of message did.v1.JSONWebKey is not mutable" ))
case "did.v1.JSONWebKey.crv" :
panic ( fmt . Errorf ( "field crv of message did.v1.JSONWebKey is not mutable" ))
case "did.v1.JSONWebKey.x" :
panic ( fmt . Errorf ( "field x of message did.v1.JSONWebKey is not mutable" ))
case "did.v1.JSONWebKey.y" :
panic ( fmt . Errorf ( "field y of message did.v1.JSONWebKey is not mutable" ))
case "did.v1.JSONWebKey.n" :
panic ( fmt . Errorf ( "field n of message did.v1.JSONWebKey is not mutable" ))
case "did.v1.JSONWebKey.e" :
panic ( fmt . Errorf ( "field e of message did.v1.JSONWebKey is not mutable" ))
default :
if fd . IsExtension () {
panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.JSONWebKey" ))
}
panic ( fmt . Errorf ( "message did.v1.JSONWebKey does not contain field %s" , fd . FullName ()))
}
}
// NewField returns a new value that is assignable to the field
// for the given descriptor. For scalars, this returns the default value.
// For lists, maps, and messages, this returns a new, empty, mutable value.
func ( x * fastReflection_JSONWebKey ) NewField ( fd protoreflect . FieldDescriptor ) protoreflect . Value {
switch fd . FullName () {
case "did.v1.JSONWebKey.kty" :
return protoreflect . ValueOfString ( "" )
case "did.v1.JSONWebKey.crv" :
return protoreflect . ValueOfString ( "" )
case "did.v1.JSONWebKey.x" :
return protoreflect . ValueOfString ( "" )
case "did.v1.JSONWebKey.y" :
return protoreflect . ValueOfString ( "" )
case "did.v1.JSONWebKey.n" :
return protoreflect . ValueOfString ( "" )
case "did.v1.JSONWebKey.e" :
return protoreflect . ValueOfString ( "" )
default :
if fd . IsExtension () {
panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.JSONWebKey" ))
}
panic ( fmt . Errorf ( "message did.v1.JSONWebKey does not contain field %s" , fd . FullName ()))
}
}
// WhichOneof reports which field within the oneof is populated,
// returning nil if none are populated.
// It panics if the oneof descriptor does not belong to this message.
func ( x * fastReflection_JSONWebKey ) WhichOneof ( d protoreflect . OneofDescriptor ) protoreflect . FieldDescriptor {
switch d . FullName () {
default :
panic ( fmt . Errorf ( "%s is not a oneof field in did.v1.JSONWebKey" , d . FullName ()))
}
panic ( "unreachable" )
}
// GetUnknown retrieves the entire list of unknown fields.
// The caller may only mutate the contents of the RawFields
// if the mutated bytes are stored back into the message with SetUnknown.
func ( x * fastReflection_JSONWebKey ) GetUnknown () protoreflect . RawFields {
return x . unknownFields
}
// SetUnknown stores an entire list of unknown fields.
// The raw fields must be syntactically valid according to the wire format.
// An implementation may panic if this is not the case.
// Once stored, the caller must not mutate the content of the RawFields.
// An empty RawFields may be passed to clear the fields.
//
// SetUnknown is a mutating operation and unsafe for concurrent use.
func ( x * fastReflection_JSONWebKey ) SetUnknown ( fields protoreflect . RawFields ) {
x . unknownFields = fields
}
// IsValid reports whether the message is valid.
//
// An invalid message is an empty, read-only value.
//
// An invalid message often corresponds to a nil pointer of the concrete
// message type, but the details are implementation dependent.
// Validity is not part of the protobuf data model, and may not
// be preserved in marshaling or other operations.
func ( x * fastReflection_JSONWebKey ) IsValid () bool {
return x != nil
}
// ProtoMethods returns optional fastReflectionFeature-path implementations of various operations.
// This method may return nil.
//
// The returned methods type is identical to
// "google.golang.org/protobuf/runtime/protoiface".Methods.
// Consult the protoiface package documentation for details.
func ( x * fastReflection_JSONWebKey ) ProtoMethods () * protoiface . Methods {
size := func ( input protoiface . SizeInput ) protoiface . SizeOutput {
x := input . Message . Interface ().( * JSONWebKey )
if x == nil {
return protoiface . SizeOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Size : 0 ,
}
}
options := runtime . SizeInputToOptions ( input )
_ = options
var n int
var l int
_ = l
l = len ( x . Kty )
if l > 0 {
n += 1 + l + runtime . Sov ( uint64 ( l ))
}
l = len ( x . Crv )
if l > 0 {
n += 1 + l + runtime . Sov ( uint64 ( l ))
}
l = len ( x . X )
if l > 0 {
n += 1 + l + runtime . Sov ( uint64 ( l ))
}
l = len ( x . Y )
if l > 0 {
n += 1 + l + runtime . Sov ( uint64 ( l ))
}
l = len ( x . N )
if l > 0 {
n += 1 + l + runtime . Sov ( uint64 ( l ))
}
l = len ( x . E )
if l > 0 {
n += 1 + l + runtime . Sov ( uint64 ( l ))
}
if x . unknownFields != nil {
n += len ( x . unknownFields )
}
return protoiface . SizeOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Size : n ,
}
}
marshal := func ( input protoiface . MarshalInput ) ( protoiface . MarshalOutput , error ) {
x := input . Message . Interface ().( * JSONWebKey )
if x == nil {
return protoiface . MarshalOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Buf : input . Buf ,
}, nil
}
options := runtime . MarshalInputToOptions ( input )
_ = options
size := options . Size ( x )
dAtA := make ([] byte , size )
i := len ( dAtA )
_ = i
var l int
_ = l
if x . unknownFields != nil {
i -= len ( x . unknownFields )
copy ( dAtA [ i :], x . unknownFields )
}
if len ( x . E ) > 0 {
i -= len ( x . E )
copy ( dAtA [ i :], x . E )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( x . E )))
i --
dAtA [ i ] = 0x32
}
if len ( x . N ) > 0 {
i -= len ( x . N )
copy ( dAtA [ i :], x . N )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( x . N )))
i --
dAtA [ i ] = 0x2a
}
if len ( x . Y ) > 0 {
i -= len ( x . Y )
copy ( dAtA [ i :], x . Y )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( x . Y )))
i --
dAtA [ i ] = 0x22
}
if len ( x . X ) > 0 {
i -= len ( x . X )
copy ( dAtA [ i :], x . X )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( x . X )))
i --
dAtA [ i ] = 0x1a
}
if len ( x . Crv ) > 0 {
i -= len ( x . Crv )
copy ( dAtA [ i :], x . Crv )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( x . Crv )))
i --
dAtA [ i ] = 0x12
}
if len ( x . Kty ) > 0 {
i -= len ( x . Kty )
copy ( dAtA [ i :], x . Kty )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( x . Kty )))
i --
dAtA [ i ] = 0xa
}
if input . Buf != nil {
input . Buf = append ( input . Buf , dAtA ... )
} else {
input . Buf = dAtA
}
return protoiface . MarshalOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Buf : input . Buf ,
}, nil
}
unmarshal := func ( input protoiface . UnmarshalInput ) ( protoiface . UnmarshalOutput , error ) {
x := input . Message . Interface ().( * JSONWebKey )
if x == nil {
return protoiface . UnmarshalOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Flags : input . Flags ,
}, nil
}
options := runtime . UnmarshalInputToOptions ( input )
_ = options
dAtA := input . Buf
l := len ( dAtA )
iNdEx := 0
for iNdEx < l {
preIndex := iNdEx
var wire uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
wire |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
fieldNum := int32 ( wire >> 3 )
wireType := int ( wire & 0x7 )
if wireType == 4 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: JSONWebKey: wiretype end group for non-group" )
}
if fieldNum <= 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: JSONWebKey: illegal tag %d (wire type %d)" , fieldNum , wire )
}
switch fieldNum {
case 1 :
if wireType != 2 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field Kty" , wireType )
}
var stringLen uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLen |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLen := int ( stringLen )
if intStringLen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + intStringLen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
x . Kty = string ( dAtA [ iNdEx : postIndex ])
iNdEx = postIndex
case 2 :
if wireType != 2 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field Crv" , wireType )
}
var stringLen uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLen |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLen := int ( stringLen )
if intStringLen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + intStringLen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
x . Crv = string ( dAtA [ iNdEx : postIndex ])
iNdEx = postIndex
case 3 :
if wireType != 2 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field X" , wireType )
}
var stringLen uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLen |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLen := int ( stringLen )
if intStringLen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + intStringLen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
x . X = string ( dAtA [ iNdEx : postIndex ])
iNdEx = postIndex
case 4 :
if wireType != 2 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field Y" , wireType )
}
var stringLen uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLen |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLen := int ( stringLen )
if intStringLen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + intStringLen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
x . Y = string ( dAtA [ iNdEx : postIndex ])
iNdEx = postIndex
case 5 :
if wireType != 2 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field N" , wireType )
}
var stringLen uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLen |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLen := int ( stringLen )
if intStringLen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + intStringLen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
x . N = string ( dAtA [ iNdEx : postIndex ])
iNdEx = postIndex
case 6 :
if wireType != 2 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field E" , wireType )
}
var stringLen uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLen |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLen := int ( stringLen )
if intStringLen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + intStringLen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
x . E = string ( dAtA [ iNdEx : postIndex ])
iNdEx = postIndex
default :
iNdEx = preIndex
skippy , err := runtime . Skip ( dAtA [ iNdEx :])
if err != nil {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, err
}
if ( skippy < 0 ) || ( iNdEx + skippy ) < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if ( iNdEx + skippy ) > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
if ! options . DiscardUnknown {
x . unknownFields = append ( x . unknownFields , dAtA [ iNdEx : iNdEx + skippy ] ... )
}
iNdEx += skippy
}
}
if iNdEx > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, nil
}
return & protoiface . Methods {
NoUnkeyedLiterals : struct {}{},
Flags : protoiface . SupportMarshalDeterministic | protoiface . SupportUnmarshalDiscardUnknown ,
Size : size ,
Marshal : marshal ,
Unmarshal : unmarshal ,
Merge : nil ,
CheckInitialized : nil ,
}
}
var (
md_RawKey protoreflect . MessageDescriptor
fd_RawKey_algorithm protoreflect . FieldDescriptor
fd_RawKey_encoding protoreflect . FieldDescriptor
fd_RawKey_curve protoreflect . FieldDescriptor
fd_RawKey_key protoreflect . FieldDescriptor
)
func init () {
file_did_v1_state_proto_init ()
md_RawKey = File_did_v1_state_proto . Messages (). ByName ( "RawKey" )
fd_RawKey_algorithm = md_RawKey . Fields (). ByName ( "algorithm" )
fd_RawKey_encoding = md_RawKey . Fields (). ByName ( "encoding" )
fd_RawKey_curve = md_RawKey . Fields (). ByName ( "curve" )
fd_RawKey_key = md_RawKey . Fields (). ByName ( "key" )
}
var _ protoreflect . Message = ( * fastReflection_RawKey )( nil )
type fastReflection_RawKey RawKey
func ( x * RawKey ) ProtoReflect () protoreflect . Message {
return ( * fastReflection_RawKey )( x )
}
func ( x * RawKey ) slowProtoReflect () protoreflect . Message {
2024-09-29 14:40:36 -04:00
mi := & file_did_v1_state_proto_msgTypes [ 6 ]
2024-09-27 20:58:05 -04:00
if protoimpl . UnsafeEnabled && x != nil {
ms := protoimpl . X . MessageStateOf ( protoimpl . Pointer ( x ))
if ms . LoadMessageInfo () == nil {
ms . StoreMessageInfo ( mi )
}
return ms
}
return mi . MessageOf ( x )
}
var _fastReflection_RawKey_messageType fastReflection_RawKey_messageType
var _ protoreflect . MessageType = fastReflection_RawKey_messageType {}
type fastReflection_RawKey_messageType struct {}
func ( x fastReflection_RawKey_messageType ) Zero () protoreflect . Message {
return ( * fastReflection_RawKey )( nil )
}
func ( x fastReflection_RawKey_messageType ) New () protoreflect . Message {
return new ( fastReflection_RawKey )
}
func ( x fastReflection_RawKey_messageType ) Descriptor () protoreflect . MessageDescriptor {
return md_RawKey
}
// Descriptor returns message descriptor, which contains only the protobuf
// type information for the message.
func ( x * fastReflection_RawKey ) Descriptor () protoreflect . MessageDescriptor {
return md_RawKey
}
// Type returns the message type, which encapsulates both Go and protobuf
// type information. If the Go type information is not needed,
// it is recommended that the message descriptor be used instead.
func ( x * fastReflection_RawKey ) Type () protoreflect . MessageType {
return _fastReflection_RawKey_messageType
}
// New returns a newly allocated and mutable empty message.
func ( x * fastReflection_RawKey ) New () protoreflect . Message {
return new ( fastReflection_RawKey )
}
// Interface unwraps the message reflection interface and
// returns the underlying ProtoMessage interface.
func ( x * fastReflection_RawKey ) Interface () protoreflect . ProtoMessage {
return ( * RawKey )( x )
}
// Range iterates over every populated field in an undefined order,
// calling f for each field descriptor and value encountered.
// Range returns immediately if f returns false.
// While iterating, mutating operations may only be performed
// on the current field descriptor.
func ( x * fastReflection_RawKey ) Range ( f func ( protoreflect . FieldDescriptor , protoreflect . Value ) bool ) {
if x . Algorithm != "" {
value := protoreflect . ValueOfString ( x . Algorithm )
if ! f ( fd_RawKey_algorithm , value ) {
return
}
}
if x . Encoding != "" {
value := protoreflect . ValueOfString ( x . Encoding )
if ! f ( fd_RawKey_encoding , value ) {
return
}
}
if x . Curve != "" {
value := protoreflect . ValueOfString ( x . Curve )
if ! f ( fd_RawKey_curve , value ) {
return
}
}
if len ( x . Key ) != 0 {
value := protoreflect . ValueOfBytes ( x . Key )
if ! f ( fd_RawKey_key , value ) {
return
}
}
}
// Has reports whether a field is populated.
//
// Some fields have the property of nullability where it is possible to
// distinguish between the default value of a field and whether the field
// was explicitly populated with the default value. Singular message fields,
// member fields of a oneof, and proto2 scalar fields are nullable. Such
// fields are populated only if explicitly set.
//
// In other cases (aside from the nullable cases above),
// a proto3 scalar field is populated if it contains a non-zero value, and
// a repeated field is populated if it is non-empty.
func ( x * fastReflection_RawKey ) Has ( fd protoreflect . FieldDescriptor ) bool {
switch fd . FullName () {
case "did.v1.RawKey.algorithm" :
return x . Algorithm != ""
case "did.v1.RawKey.encoding" :
return x . Encoding != ""
case "did.v1.RawKey.curve" :
return x . Curve != ""
case "did.v1.RawKey.key" :
return len ( x . Key ) != 0
default :
if fd . IsExtension () {
panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.RawKey" ))
}
panic ( fmt . Errorf ( "message did.v1.RawKey does not contain field %s" , fd . FullName ()))
}
}
// Clear clears the field such that a subsequent Has call reports false.
//
// Clearing an extension field clears both the extension type and value
// associated with the given field number.
//
// Clear is a mutating operation and unsafe for concurrent use.
func ( x * fastReflection_RawKey ) Clear ( fd protoreflect . FieldDescriptor ) {
switch fd . FullName () {
case "did.v1.RawKey.algorithm" :
x . Algorithm = ""
case "did.v1.RawKey.encoding" :
x . Encoding = ""
case "did.v1.RawKey.curve" :
x . Curve = ""
case "did.v1.RawKey.key" :
x . Key = nil
default :
if fd . IsExtension () {
panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.RawKey" ))
}
panic ( fmt . Errorf ( "message did.v1.RawKey does not contain field %s" , fd . FullName ()))
}
}
// Get retrieves the value for a field.
//
// For unpopulated scalars, it returns the default value, where
// the default value of a bytes scalar is guaranteed to be a copy.
// For unpopulated composite types, it returns an empty, read-only view
// of the value; to obtain a mutable reference, use Mutable.
func ( x * fastReflection_RawKey ) Get ( descriptor protoreflect . FieldDescriptor ) protoreflect . Value {
switch descriptor . FullName () {
case "did.v1.RawKey.algorithm" :
value := x . Algorithm
return protoreflect . ValueOfString ( value )
case "did.v1.RawKey.encoding" :
value := x . Encoding
return protoreflect . ValueOfString ( value )
case "did.v1.RawKey.curve" :
value := x . Curve
return protoreflect . ValueOfString ( value )
case "did.v1.RawKey.key" :
value := x . Key
return protoreflect . ValueOfBytes ( value )
default :
if descriptor . IsExtension () {
panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.RawKey" ))
}
panic ( fmt . Errorf ( "message did.v1.RawKey does not contain field %s" , descriptor . FullName ()))
}
}
// Set stores the value for a field.
//
// For a field belonging to a oneof, it implicitly clears any other field
// that may be currently set within the same oneof.
// For extension fields, it implicitly stores the provided ExtensionType.
// When setting a composite type, it is unspecified whether the stored value
// aliases the source's memory in any way. If the composite value is an
// empty, read-only value, then it panics.
//
// Set is a mutating operation and unsafe for concurrent use.
func ( x * fastReflection_RawKey ) Set ( fd protoreflect . FieldDescriptor , value protoreflect . Value ) {
switch fd . FullName () {
case "did.v1.RawKey.algorithm" :
x . Algorithm = value . Interface ().( string )
case "did.v1.RawKey.encoding" :
x . Encoding = value . Interface ().( string )
case "did.v1.RawKey.curve" :
x . Curve = value . Interface ().( string )
case "did.v1.RawKey.key" :
x . Key = value . Bytes ()
default :
if fd . IsExtension () {
panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.RawKey" ))
}
panic ( fmt . Errorf ( "message did.v1.RawKey does not contain field %s" , fd . FullName ()))
}
}
// Mutable returns a mutable reference to a composite type.
//
// If the field is unpopulated, it may allocate a composite value.
// For a field belonging to a oneof, it implicitly clears any other field
// that may be currently set within the same oneof.
// For extension fields, it implicitly stores the provided ExtensionType
// if not already stored.
// It panics if the field does not contain a composite type.
//
// Mutable is a mutating operation and unsafe for concurrent use.
func ( x * fastReflection_RawKey ) Mutable ( fd protoreflect . FieldDescriptor ) protoreflect . Value {
switch fd . FullName () {
case "did.v1.RawKey.algorithm" :
panic ( fmt . Errorf ( "field algorithm of message did.v1.RawKey is not mutable" ))
case "did.v1.RawKey.encoding" :
panic ( fmt . Errorf ( "field encoding of message did.v1.RawKey is not mutable" ))
case "did.v1.RawKey.curve" :
panic ( fmt . Errorf ( "field curve of message did.v1.RawKey is not mutable" ))
case "did.v1.RawKey.key" :
panic ( fmt . Errorf ( "field key of message did.v1.RawKey is not mutable" ))
default :
if fd . IsExtension () {
panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.RawKey" ))
}
panic ( fmt . Errorf ( "message did.v1.RawKey does not contain field %s" , fd . FullName ()))
}
}
// NewField returns a new value that is assignable to the field
// for the given descriptor. For scalars, this returns the default value.
// For lists, maps, and messages, this returns a new, empty, mutable value.
func ( x * fastReflection_RawKey ) NewField ( fd protoreflect . FieldDescriptor ) protoreflect . Value {
switch fd . FullName () {
case "did.v1.RawKey.algorithm" :
return protoreflect . ValueOfString ( "" )
case "did.v1.RawKey.encoding" :
return protoreflect . ValueOfString ( "" )
case "did.v1.RawKey.curve" :
return protoreflect . ValueOfString ( "" )
case "did.v1.RawKey.key" :
return protoreflect . ValueOfBytes ( nil )
default :
if fd . IsExtension () {
panic ( fmt . Errorf ( "proto3 declared messages do not support extensions: did.v1.RawKey" ))
}
panic ( fmt . Errorf ( "message did.v1.RawKey does not contain field %s" , fd . FullName ()))
}
}
// WhichOneof reports which field within the oneof is populated,
// returning nil if none are populated.
// It panics if the oneof descriptor does not belong to this message.
func ( x * fastReflection_RawKey ) WhichOneof ( d protoreflect . OneofDescriptor ) protoreflect . FieldDescriptor {
switch d . FullName () {
default :
panic ( fmt . Errorf ( "%s is not a oneof field in did.v1.RawKey" , d . FullName ()))
}
panic ( "unreachable" )
}
// GetUnknown retrieves the entire list of unknown fields.
// The caller may only mutate the contents of the RawFields
// if the mutated bytes are stored back into the message with SetUnknown.
func ( x * fastReflection_RawKey ) GetUnknown () protoreflect . RawFields {
return x . unknownFields
}
// SetUnknown stores an entire list of unknown fields.
// The raw fields must be syntactically valid according to the wire format.
// An implementation may panic if this is not the case.
// Once stored, the caller must not mutate the content of the RawFields.
// An empty RawFields may be passed to clear the fields.
//
// SetUnknown is a mutating operation and unsafe for concurrent use.
func ( x * fastReflection_RawKey ) SetUnknown ( fields protoreflect . RawFields ) {
x . unknownFields = fields
}
// IsValid reports whether the message is valid.
//
// An invalid message is an empty, read-only value.
//
// An invalid message often corresponds to a nil pointer of the concrete
// message type, but the details are implementation dependent.
// Validity is not part of the protobuf data model, and may not
// be preserved in marshaling or other operations.
func ( x * fastReflection_RawKey ) IsValid () bool {
return x != nil
}
// ProtoMethods returns optional fastReflectionFeature-path implementations of various operations.
// This method may return nil.
//
// The returned methods type is identical to
// "google.golang.org/protobuf/runtime/protoiface".Methods.
// Consult the protoiface package documentation for details.
func ( x * fastReflection_RawKey ) ProtoMethods () * protoiface . Methods {
size := func ( input protoiface . SizeInput ) protoiface . SizeOutput {
x := input . Message . Interface ().( * RawKey )
if x == nil {
return protoiface . SizeOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Size : 0 ,
}
}
options := runtime . SizeInputToOptions ( input )
_ = options
var n int
var l int
_ = l
l = len ( x . Algorithm )
if l > 0 {
n += 1 + l + runtime . Sov ( uint64 ( l ))
}
l = len ( x . Encoding )
if l > 0 {
n += 1 + l + runtime . Sov ( uint64 ( l ))
}
l = len ( x . Curve )
if l > 0 {
n += 1 + l + runtime . Sov ( uint64 ( l ))
}
l = len ( x . Key )
if l > 0 {
n += 1 + l + runtime . Sov ( uint64 ( l ))
}
if x . unknownFields != nil {
n += len ( x . unknownFields )
}
return protoiface . SizeOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Size : n ,
}
}
marshal := func ( input protoiface . MarshalInput ) ( protoiface . MarshalOutput , error ) {
x := input . Message . Interface ().( * RawKey )
if x == nil {
return protoiface . MarshalOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Buf : input . Buf ,
}, nil
}
options := runtime . MarshalInputToOptions ( input )
_ = options
size := options . Size ( x )
dAtA := make ([] byte , size )
i := len ( dAtA )
_ = i
var l int
_ = l
if x . unknownFields != nil {
i -= len ( x . unknownFields )
copy ( dAtA [ i :], x . unknownFields )
}
if len ( x . Key ) > 0 {
i -= len ( x . Key )
copy ( dAtA [ i :], x . Key )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( x . Key )))
i --
dAtA [ i ] = 0x22
}
if len ( x . Curve ) > 0 {
i -= len ( x . Curve )
copy ( dAtA [ i :], x . Curve )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( x . Curve )))
i --
dAtA [ i ] = 0x1a
}
if len ( x . Encoding ) > 0 {
i -= len ( x . Encoding )
copy ( dAtA [ i :], x . Encoding )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( x . Encoding )))
i --
dAtA [ i ] = 0x12
}
if len ( x . Algorithm ) > 0 {
i -= len ( x . Algorithm )
copy ( dAtA [ i :], x . Algorithm )
i = runtime . EncodeVarint ( dAtA , i , uint64 ( len ( x . Algorithm )))
i --
dAtA [ i ] = 0xa
}
if input . Buf != nil {
input . Buf = append ( input . Buf , dAtA ... )
} else {
input . Buf = dAtA
}
return protoiface . MarshalOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Buf : input . Buf ,
}, nil
}
unmarshal := func ( input protoiface . UnmarshalInput ) ( protoiface . UnmarshalOutput , error ) {
x := input . Message . Interface ().( * RawKey )
if x == nil {
return protoiface . UnmarshalOutput {
NoUnkeyedLiterals : input . NoUnkeyedLiterals ,
Flags : input . Flags ,
}, nil
}
options := runtime . UnmarshalInputToOptions ( input )
_ = options
dAtA := input . Buf
l := len ( dAtA )
iNdEx := 0
for iNdEx < l {
preIndex := iNdEx
var wire uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
wire |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
fieldNum := int32 ( wire >> 3 )
wireType := int ( wire & 0x7 )
if wireType == 4 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: RawKey: wiretype end group for non-group" )
}
if fieldNum <= 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: RawKey: illegal tag %d (wire type %d)" , fieldNum , wire )
}
switch fieldNum {
case 1 :
if wireType != 2 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field Algorithm" , wireType )
}
var stringLen uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLen |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLen := int ( stringLen )
if intStringLen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + intStringLen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
x . Algorithm = string ( dAtA [ iNdEx : postIndex ])
iNdEx = postIndex
case 2 :
if wireType != 2 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field Encoding" , wireType )
}
var stringLen uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLen |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLen := int ( stringLen )
if intStringLen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + intStringLen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
x . Encoding = string ( dAtA [ iNdEx : postIndex ])
iNdEx = postIndex
case 3 :
if wireType != 2 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field Curve" , wireType )
}
var stringLen uint64
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
stringLen |= uint64 ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
intStringLen := int ( stringLen )
if intStringLen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + intStringLen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
x . Curve = string ( dAtA [ iNdEx : postIndex ])
iNdEx = postIndex
case 4 :
if wireType != 2 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, fmt . Errorf ( "proto: wrong wireType = %d for field Key" , wireType )
}
var byteLen int
for shift := uint ( 0 ); ; shift += 7 {
if shift >= 64 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrIntOverflow
}
if iNdEx >= l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
b := dAtA [ iNdEx ]
iNdEx ++
byteLen |= int ( b & 0x7F ) << shift
if b < 0x80 {
break
}
}
if byteLen < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
postIndex := iNdEx + byteLen
if postIndex < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if postIndex > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
x . Key = append ( x . Key [: 0 ], dAtA [ iNdEx : postIndex ] ... )
if x . Key == nil {
x . Key = [] byte {}
}
iNdEx = postIndex
default :
iNdEx = preIndex
skippy , err := runtime . Skip ( dAtA [ iNdEx :])
if err != nil {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, err
}
if ( skippy < 0 ) || ( iNdEx + skippy ) < 0 {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, runtime . ErrInvalidLength
}
if ( iNdEx + skippy ) > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
if ! options . DiscardUnknown {
x . unknownFields = append ( x . unknownFields , dAtA [ iNdEx : iNdEx + skippy ] ... )
}
iNdEx += skippy
}
}
if iNdEx > l {
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, io . ErrUnexpectedEOF
}
return protoiface . UnmarshalOutput { NoUnkeyedLiterals : input . NoUnkeyedLiterals , Flags : input . Flags }, nil
}
return & protoiface . Methods {
NoUnkeyedLiterals : struct {}{},
Flags : protoiface . SupportMarshalDeterministic | protoiface . SupportUnmarshalDiscardUnknown ,
Size : size ,
Marshal : marshal ,
Unmarshal : unmarshal ,
Merge : nil ,
CheckInitialized : nil ,
}
}
// Code generated by protoc-gen-go. DO NOT EDIT.
// versions:
// protoc-gen-go v1.27.0
// protoc (unknown)
// source: did/v1/state.proto
const (
// Verify that this generated code is sufficiently up-to-date.
_ = protoimpl . EnforceVersion ( 20 - protoimpl . MinVersion )
// Verify that runtime/protoimpl is sufficiently up-to-date.
_ = protoimpl . EnforceVersion ( protoimpl . MaxVersion - 20 )
)
type Authentication struct {
state protoimpl . MessageState
sizeCache protoimpl . SizeCache
unknownFields protoimpl . UnknownFields
// The unique identifier of the authentication
Did string `protobuf:"bytes,1,opt,name=did,proto3" json:"did,omitempty"`
// The authentication of the DID
Controller string `protobuf:"bytes,2,opt,name=controller,proto3" json:"controller,omitempty"`
// Origin of the authentication
Subject string `protobuf:"bytes,3,opt,name=subject,proto3" json:"subject,omitempty"`
// PubKey is the verification method
PublicKey * PubKey `protobuf:"bytes,4,opt,name=public_key,json=publicKey,proto3" json:"public_key,omitempty"`
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// CredentialID is the byte representation of the credential ID
CredentialId [] byte `protobuf:"bytes,5,opt,name=credential_id,json=credentialId,proto3" json:"credential_id,omitempty"`
// Metadata of the authentication
Metadata map [ string ] string `protobuf:"bytes,6,rep,name=metadata,proto3" json:"metadata,omitempty" protobuf_key:"bytes,1,opt,name=key,proto3" protobuf_val:"bytes,2,opt,name=value,proto3"`
// CreationBlock is the block number of the creation of the authentication
CreationBlock int64 `protobuf:"varint,7,opt,name=creation_block,json=creationBlock,proto3" json:"creation_block,omitempty"`
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}
func ( x * Authentication ) Reset () {
* x = Authentication {}
if protoimpl . UnsafeEnabled {
mi := & file_did_v1_state_proto_msgTypes [ 0 ]
ms := protoimpl . X . MessageStateOf ( protoimpl . Pointer ( x ))
ms . StoreMessageInfo ( mi )
}
}
func ( x * Authentication ) String () string {
return protoimpl . X . MessageStringOf ( x )
}
func ( * Authentication ) ProtoMessage () {}
// Deprecated: Use Authentication.ProtoReflect.Descriptor instead.
func ( * Authentication ) Descriptor () ([] byte , [] int ) {
return file_did_v1_state_proto_rawDescGZIP (), [] int { 0 }
}
func ( x * Authentication ) GetDid () string {
if x != nil {
return x . Did
}
return ""
}
func ( x * Authentication ) GetController () string {
if x != nil {
return x . Controller
}
return ""
}
func ( x * Authentication ) GetSubject () string {
if x != nil {
return x . Subject
}
return ""
}
func ( x * Authentication ) GetPublicKey () * PubKey {
if x != nil {
return x . PublicKey
}
return nil
}
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func ( x * Authentication ) GetCredentialId () [] byte {
if x != nil {
return x . CredentialId
}
return nil
}
func ( x * Authentication ) GetMetadata () map [ string ] string {
if x != nil {
return x . Metadata
}
return nil
}
func ( x * Authentication ) GetCreationBlock () int64 {
if x != nil {
return x . CreationBlock
}
return 0
}
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// Controller represents a Sonr DWN Vault
type Controller struct {
state protoimpl . MessageState
sizeCache protoimpl . SizeCache
unknownFields protoimpl . UnknownFields
// The unique identifier of the controller
Number uint64 `protobuf:"varint,1,opt,name=number,proto3" json:"number,omitempty"`
// The unique identifier of the controller
Did string `protobuf:"bytes,2,opt,name=did,proto3" json:"did,omitempty"`
// The DID of the controller
SonrAddress string `protobuf:"bytes,3,opt,name=sonr_address,json=sonrAddress,proto3" json:"sonr_address,omitempty"`
// The DID of the controller
EthAddress string `protobuf:"bytes,4,opt,name=eth_address,json=ethAddress,proto3" json:"eth_address,omitempty"`
// The DID of the controller
BtcAddress string `protobuf:"bytes,5,opt,name=btc_address,json=btcAddress,proto3" json:"btc_address,omitempty"`
// PubKey is the verification method
PublicKey * PubKey `protobuf:"bytes,6,opt,name=public_key,json=publicKey,proto3" json:"public_key,omitempty"`
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// Pointer to the Keyshares
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KsVal string `protobuf:"bytes,7,opt,name=ks_val,json=ksVal,proto3" json:"ks_val,omitempty"`
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// The block number of when a user claimed the controller
ClaimedBlock int64 `protobuf:"varint,8,opt,name=claimed_block,json=claimedBlock,proto3" json:"claimed_block,omitempty"`
// CreationBlock is the block number of the creation of the controller
CreationBlock int64 `protobuf:"varint,9,opt,name=creation_block,json=creationBlock,proto3" json:"creation_block,omitempty"`
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}
func ( x * Controller ) Reset () {
* x = Controller {}
if protoimpl . UnsafeEnabled {
mi := & file_did_v1_state_proto_msgTypes [ 1 ]
ms := protoimpl . X . MessageStateOf ( protoimpl . Pointer ( x ))
ms . StoreMessageInfo ( mi )
}
}
func ( x * Controller ) String () string {
return protoimpl . X . MessageStringOf ( x )
}
func ( * Controller ) ProtoMessage () {}
// Deprecated: Use Controller.ProtoReflect.Descriptor instead.
func ( * Controller ) Descriptor () ([] byte , [] int ) {
return file_did_v1_state_proto_rawDescGZIP (), [] int { 1 }
}
func ( x * Controller ) GetNumber () uint64 {
if x != nil {
return x . Number
}
return 0
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}
func ( x * Controller ) GetDid () string {
if x != nil {
return x . Did
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}
return ""
}
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func ( x * Controller ) GetSonrAddress () string {
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if x != nil {
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return x . SonrAddress
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}
return ""
}
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func ( x * Controller ) GetEthAddress () string {
if x != nil {
return x . EthAddress
}
return ""
}
func ( x * Controller ) GetBtcAddress () string {
if x != nil {
return x . BtcAddress
}
return ""
}
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func ( x * Controller ) GetPublicKey () * PubKey {
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if x != nil {
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return x . PublicKey
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}
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return nil
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}
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func ( x * Controller ) GetKsVal () string {
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if x != nil {
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return x . KsVal
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}
return ""
}
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func ( x * Controller ) GetClaimedBlock () int64 {
if x != nil {
return x . ClaimedBlock
}
return 0
}
func ( x * Controller ) GetCreationBlock () int64 {
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if x != nil {
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return x . CreationBlock
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}
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return 0
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}
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// Verification represents a verification method
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type Verification struct {
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state protoimpl . MessageState
sizeCache protoimpl . SizeCache
unknownFields protoimpl . UnknownFields
// The unique identifier of the verification
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Did string `protobuf:"bytes,1,opt,name=did,proto3" json:"did,omitempty"`
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// The controller of the verification
Controller string `protobuf:"bytes,2,opt,name=controller,proto3" json:"controller,omitempty"`
// The DIDNamespace of the verification
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DidMethod string `protobuf:"bytes,3,opt,name=did_method,json=didMethod,proto3" json:"did_method,omitempty"`
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// The value of the linked identifier
Issuer string `protobuf:"bytes,4,opt,name=issuer,proto3" json:"issuer,omitempty"`
// The subject of the verification
Subject string `protobuf:"bytes,5,opt,name=subject,proto3" json:"subject,omitempty"`
// The public key of the verification
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PublicKey * PubKey `protobuf:"bytes,6,opt,name=public_key,json=publicKey,proto3" json:"public_key,omitempty"`
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// The verification method type
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VerificationType string `protobuf:"bytes,7,opt,name=verification_type,json=verificationType,proto3" json:"verification_type,omitempty"`
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// Metadata of the verification
Metadata map [ string ] string `protobuf:"bytes,8,rep,name=metadata,proto3" json:"metadata,omitempty" protobuf_key:"bytes,1,opt,name=key,proto3" protobuf_val:"bytes,2,opt,name=value,proto3"`
// CreationBlock is the block number of the creation of the controller
CreationBlock int64 `protobuf:"varint,9,opt,name=creation_block,json=creationBlock,proto3" json:"creation_block,omitempty"`
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}
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func ( x * Verification ) Reset () {
* x = Verification {}
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if protoimpl . UnsafeEnabled {
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mi := & file_did_v1_state_proto_msgTypes [ 2 ]
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ms := protoimpl . X . MessageStateOf ( protoimpl . Pointer ( x ))
ms . StoreMessageInfo ( mi )
}
}
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func ( x * Verification ) String () string {
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return protoimpl . X . MessageStringOf ( x )
}
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func ( * Verification ) ProtoMessage () {}
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// Deprecated: Use Verification.ProtoReflect.Descriptor instead.
func ( * Verification ) Descriptor () ([] byte , [] int ) {
return file_did_v1_state_proto_rawDescGZIP (), [] int { 2 }
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}
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func ( x * Verification ) GetDid () string {
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if x != nil {
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return x . Did
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}
return ""
}
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func ( x * Verification ) GetController () string {
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if x != nil {
return x . Controller
}
return ""
}
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func ( x * Verification ) GetDidMethod () string {
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if x != nil {
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return x . DidMethod
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}
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return ""
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}
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func ( x * Verification ) GetIssuer () string {
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if x != nil {
return x . Issuer
}
return ""
}
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func ( x * Verification ) GetSubject () string {
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if x != nil {
return x . Subject
}
return ""
}
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func ( x * Verification ) GetPublicKey () * PubKey {
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if x != nil {
return x . PublicKey
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}
return nil
}
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func ( x * Verification ) GetVerificationType () string {
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if x != nil {
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return x . VerificationType
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}
return ""
}
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func ( x * Verification ) GetMetadata () map [ string ] string {
if x != nil {
return x . Metadata
}
return nil
}
func ( x * Verification ) GetCreationBlock () int64 {
if x != nil {
return x . CreationBlock
}
return 0
}
type Keyshares struct {
state protoimpl . MessageState
sizeCache protoimpl . SizeCache
unknownFields protoimpl . UnknownFields
ValidatorCid string `protobuf:"bytes,1,opt,name=validator_cid,json=validatorCid,proto3" json:"validator_cid,omitempty"`
UserCid string `protobuf:"bytes,2,opt,name=user_cid,json=userCid,proto3" json:"user_cid,omitempty"`
LastUpdatedBlock int64 `protobuf:"varint,3,opt,name=last_updated_block,json=lastUpdatedBlock,proto3" json:"last_updated_block,omitempty"`
}
func ( x * Keyshares ) Reset () {
* x = Keyshares {}
if protoimpl . UnsafeEnabled {
mi := & file_did_v1_state_proto_msgTypes [ 3 ]
ms := protoimpl . X . MessageStateOf ( protoimpl . Pointer ( x ))
ms . StoreMessageInfo ( mi )
}
}
func ( x * Keyshares ) String () string {
return protoimpl . X . MessageStringOf ( x )
}
func ( * Keyshares ) ProtoMessage () {}
// Deprecated: Use Keyshares.ProtoReflect.Descriptor instead.
func ( * Keyshares ) Descriptor () ([] byte , [] int ) {
return file_did_v1_state_proto_rawDescGZIP (), [] int { 3 }
}
func ( x * Keyshares ) GetValidatorCid () string {
if x != nil {
return x . ValidatorCid
}
return ""
}
func ( x * Keyshares ) GetUserCid () string {
if x != nil {
return x . UserCid
}
return ""
}
func ( x * Keyshares ) GetLastUpdatedBlock () int64 {
if x != nil {
return x . LastUpdatedBlock
}
return 0
}
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// PubKey defines a public key for a did
type PubKey struct {
state protoimpl . MessageState
sizeCache protoimpl . SizeCache
unknownFields protoimpl . UnknownFields
Role string `protobuf:"bytes,1,opt,name=role,proto3" json:"role,omitempty"`
KeyType string `protobuf:"bytes,2,opt,name=key_type,json=keyType,proto3" json:"key_type,omitempty"`
RawKey * RawKey `protobuf:"bytes,3,opt,name=raw_key,json=rawKey,proto3" json:"raw_key,omitempty"`
Jwk * JSONWebKey `protobuf:"bytes,4,opt,name=jwk,proto3" json:"jwk,omitempty"`
}
func ( x * PubKey ) Reset () {
* x = PubKey {}
if protoimpl . UnsafeEnabled {
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mi := & file_did_v1_state_proto_msgTypes [ 4 ]
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ms := protoimpl . X . MessageStateOf ( protoimpl . Pointer ( x ))
ms . StoreMessageInfo ( mi )
}
}
func ( x * PubKey ) String () string {
return protoimpl . X . MessageStringOf ( x )
}
func ( * PubKey ) ProtoMessage () {}
// Deprecated: Use PubKey.ProtoReflect.Descriptor instead.
func ( * PubKey ) Descriptor () ([] byte , [] int ) {
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return file_did_v1_state_proto_rawDescGZIP (), [] int { 4 }
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}
func ( x * PubKey ) GetRole () string {
if x != nil {
return x . Role
}
return ""
}
func ( x * PubKey ) GetKeyType () string {
if x != nil {
return x . KeyType
}
return ""
}
func ( x * PubKey ) GetRawKey () * RawKey {
if x != nil {
return x . RawKey
}
return nil
}
func ( x * PubKey ) GetJwk () * JSONWebKey {
if x != nil {
return x . Jwk
}
return nil
}
// JWK represents a JSON Web Key
type JSONWebKey struct {
state protoimpl . MessageState
sizeCache protoimpl . SizeCache
unknownFields protoimpl . UnknownFields
Kty string `protobuf:"bytes,1,opt,name=kty,proto3" json:"kty,omitempty"` // Key Type
Crv string `protobuf:"bytes,2,opt,name=crv,proto3" json:"crv,omitempty"` // Curve (for EC and OKP keys)
X string `protobuf:"bytes,3,opt,name=x,proto3" json:"x,omitempty"` // X coordinate (for EC and OKP keys)
Y string `protobuf:"bytes,4,opt,name=y,proto3" json:"y,omitempty"` // Y coordinate (for EC keys)
N string `protobuf:"bytes,5,opt,name=n,proto3" json:"n,omitempty"` // Modulus (for RSA keys)
E string `protobuf:"bytes,6,opt,name=e,proto3" json:"e,omitempty"` // Exponent (for RSA keys)
}
func ( x * JSONWebKey ) Reset () {
* x = JSONWebKey {}
if protoimpl . UnsafeEnabled {
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mi := & file_did_v1_state_proto_msgTypes [ 5 ]
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ms := protoimpl . X . MessageStateOf ( protoimpl . Pointer ( x ))
ms . StoreMessageInfo ( mi )
}
}
func ( x * JSONWebKey ) String () string {
return protoimpl . X . MessageStringOf ( x )
}
func ( * JSONWebKey ) ProtoMessage () {}
// Deprecated: Use JSONWebKey.ProtoReflect.Descriptor instead.
func ( * JSONWebKey ) Descriptor () ([] byte , [] int ) {
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return file_did_v1_state_proto_rawDescGZIP (), [] int { 5 }
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}
func ( x * JSONWebKey ) GetKty () string {
if x != nil {
return x . Kty
}
return ""
}
func ( x * JSONWebKey ) GetCrv () string {
if x != nil {
return x . Crv
}
return ""
}
func ( x * JSONWebKey ) GetX () string {
if x != nil {
return x . X
}
return ""
}
func ( x * JSONWebKey ) GetY () string {
if x != nil {
return x . Y
}
return ""
}
func ( x * JSONWebKey ) GetN () string {
if x != nil {
return x . N
}
return ""
}
func ( x * JSONWebKey ) GetE () string {
if x != nil {
return x . E
}
return ""
}
type RawKey struct {
state protoimpl . MessageState
sizeCache protoimpl . SizeCache
unknownFields protoimpl . UnknownFields
Algorithm string `protobuf:"bytes,1,opt,name=algorithm,proto3" json:"algorithm,omitempty"`
Encoding string `protobuf:"bytes,2,opt,name=encoding,proto3" json:"encoding,omitempty"`
Curve string `protobuf:"bytes,3,opt,name=curve,proto3" json:"curve,omitempty"`
Key [] byte `protobuf:"bytes,4,opt,name=key,proto3" json:"key,omitempty"`
}
func ( x * RawKey ) Reset () {
* x = RawKey {}
if protoimpl . UnsafeEnabled {
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mi := & file_did_v1_state_proto_msgTypes [ 6 ]
2024-09-27 20:58:05 -04:00
ms := protoimpl . X . MessageStateOf ( protoimpl . Pointer ( x ))
ms . StoreMessageInfo ( mi )
}
}
func ( x * RawKey ) String () string {
return protoimpl . X . MessageStringOf ( x )
}
func ( * RawKey ) ProtoMessage () {}
// Deprecated: Use RawKey.ProtoReflect.Descriptor instead.
func ( * RawKey ) Descriptor () ([] byte , [] int ) {
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return file_did_v1_state_proto_rawDescGZIP (), [] int { 6 }
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}
func ( x * RawKey ) GetAlgorithm () string {
if x != nil {
return x . Algorithm
}
return ""
}
func ( x * RawKey ) GetEncoding () string {
if x != nil {
return x . Encoding
}
return ""
}
func ( x * RawKey ) GetCurve () string {
if x != nil {
return x . Curve
}
return ""
}
func ( x * RawKey ) GetKey () [] byte {
if x != nil {
return x . Key
}
return nil
}
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var File_did_v1_state_proto protoreflect . FileDescriptor
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}
var (
file_did_v1_state_proto_rawDescOnce sync . Once
file_did_v1_state_proto_rawDescData = file_did_v1_state_proto_rawDesc
)
func file_did_v1_state_proto_rawDescGZIP () [] byte {
file_did_v1_state_proto_rawDescOnce . Do ( func () {
file_did_v1_state_proto_rawDescData = protoimpl . X . CompressGZIP ( file_did_v1_state_proto_rawDescData )
})
return file_did_v1_state_proto_rawDescData
}
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var file_did_v1_state_proto_msgTypes = make ([] protoimpl . MessageInfo , 9 )
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var file_did_v1_state_proto_goTypes = [] interface {}{
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( * Authentication )( nil ), // 0: did.v1.Authentication
( * Controller )( nil ), // 1: did.v1.Controller
( * Verification )( nil ), // 2: did.v1.Verification
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( * Keyshares )( nil ), // 3: did.v1.Keyshares
( * PubKey )( nil ), // 4: did.v1.PubKey
( * JSONWebKey )( nil ), // 5: did.v1.JSONWebKey
( * RawKey )( nil ), // 6: did.v1.RawKey
nil , // 7: did.v1.Authentication.MetadataEntry
nil , // 8: did.v1.Verification.MetadataEntry
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}
var file_did_v1_state_proto_depIdxs = [] int32 {
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4 , // 0: did.v1.Authentication.public_key:type_name -> did.v1.PubKey
7 , // 1: did.v1.Authentication.metadata:type_name -> did.v1.Authentication.MetadataEntry
4 , // 2: did.v1.Controller.public_key:type_name -> did.v1.PubKey
4 , // 3: did.v1.Verification.public_key:type_name -> did.v1.PubKey
8 , // 4: did.v1.Verification.metadata:type_name -> did.v1.Verification.MetadataEntry
6 , // 5: did.v1.PubKey.raw_key:type_name -> did.v1.RawKey
5 , // 6: did.v1.PubKey.jwk:type_name -> did.v1.JSONWebKey
7 , // [7:7] is the sub-list for method output_type
7 , // [7:7] is the sub-list for method input_type
7 , // [7:7] is the sub-list for extension type_name
7 , // [7:7] is the sub-list for extension extendee
0 , // [0:7] is the sub-list for field type_name
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}
func init () { file_did_v1_state_proto_init () }
func file_did_v1_state_proto_init () {
if File_did_v1_state_proto != nil {
return
}
if ! protoimpl . UnsafeEnabled {
file_did_v1_state_proto_msgTypes [ 0 ]. Exporter = func ( v interface {}, i int ) interface {} {
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switch v := v .( * Authentication ); i {
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case 0 :
return & v . state
case 1 :
return & v . sizeCache
case 2 :
return & v . unknownFields
default :
return nil
}
}
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file_did_v1_state_proto_msgTypes [ 1 ]. Exporter = func ( v interface {}, i int ) interface {} {
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switch v := v .( * Controller ); i {
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case 0 :
return & v . state
case 1 :
return & v . sizeCache
case 2 :
return & v . unknownFields
default :
return nil
}
}
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file_did_v1_state_proto_msgTypes [ 2 ]. Exporter = func ( v interface {}, i int ) interface {} {
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switch v := v .( * Verification ); i {
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case 0 :
return & v . state
case 1 :
return & v . sizeCache
case 2 :
return & v . unknownFields
default :
return nil
}
}
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file_did_v1_state_proto_msgTypes [ 3 ]. Exporter = func ( v interface {}, i int ) interface {} {
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switch v := v .( * Keyshares ); i {
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case 0 :
return & v . state
case 1 :
return & v . sizeCache
case 2 :
return & v . unknownFields
default :
return nil
}
}
file_did_v1_state_proto_msgTypes [ 4 ]. Exporter = func ( v interface {}, i int ) interface {} {
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switch v := v .( * PubKey ); i {
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case 0 :
return & v . state
case 1 :
return & v . sizeCache
case 2 :
return & v . unknownFields
default :
return nil
}
}
file_did_v1_state_proto_msgTypes [ 5 ]. Exporter = func ( v interface {}, i int ) interface {} {
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switch v := v .( * JSONWebKey ); i {
case 0 :
return & v . state
case 1 :
return & v . sizeCache
case 2 :
return & v . unknownFields
default :
return nil
}
}
file_did_v1_state_proto_msgTypes [ 6 ]. Exporter = func ( v interface {}, i int ) interface {} {
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switch v := v .( * RawKey ); i {
case 0 :
return & v . state
case 1 :
return & v . sizeCache
case 2 :
return & v . unknownFields
default :
return nil
}
}
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}
type x struct {}
out := protoimpl . TypeBuilder {
File : protoimpl . DescBuilder {
GoPackagePath : reflect . TypeOf ( x {}). PkgPath (),
RawDescriptor : file_did_v1_state_proto_rawDesc ,
NumEnums : 0 ,
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NumMessages : 9 ,
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NumExtensions : 0 ,
NumServices : 0 ,
},
GoTypes : file_did_v1_state_proto_goTypes ,
DependencyIndexes : file_did_v1_state_proto_depIdxs ,
MessageInfos : file_did_v1_state_proto_msgTypes ,
}. Build ()
File_did_v1_state_proto = out . File
file_did_v1_state_proto_rawDesc = nil
file_did_v1_state_proto_goTypes = nil
file_did_v1_state_proto_depIdxs = nil
}