// 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" sort "sort" sync "sync" ) var _ protoreflect.List = (*_Authentication_8_list)(nil) type _Authentication_8_list struct { list *[]string } func (x *_Authentication_8_list) Len() int { if x.list == nil { return 0 } return len(*x.list) } func (x *_Authentication_8_list) Get(i int) protoreflect.Value { return protoreflect.ValueOfString((*x.list)[i]) } func (x *_Authentication_8_list) Set(i int, value protoreflect.Value) { valueUnwrapped := value.String() concreteValue := valueUnwrapped (*x.list)[i] = concreteValue } func (x *_Authentication_8_list) Append(value protoreflect.Value) { valueUnwrapped := value.String() concreteValue := valueUnwrapped *x.list = append(*x.list, concreteValue) } func (x *_Authentication_8_list) AppendMutable() protoreflect.Value { panic(fmt.Errorf("AppendMutable can not be called on message Authentication at list field CredentialTransport as it is not of Message kind")) } func (x *_Authentication_8_list) Truncate(n int) { *x.list = (*x.list)[:n] } func (x *_Authentication_8_list) NewElement() protoreflect.Value { v := "" return protoreflect.ValueOfString(v) } func (x *_Authentication_8_list) IsValid() bool { return x.list != nil } var ( md_Authentication protoreflect.MessageDescriptor fd_Authentication_id protoreflect.FieldDescriptor fd_Authentication_controller protoreflect.FieldDescriptor fd_Authentication_public_key protoreflect.FieldDescriptor fd_Authentication_origin protoreflect.FieldDescriptor fd_Authentication_subject protoreflect.FieldDescriptor fd_Authentication_credential_id protoreflect.FieldDescriptor fd_Authentication_credential_label protoreflect.FieldDescriptor fd_Authentication_credential_transport protoreflect.FieldDescriptor fd_Authentication_attestation_type protoreflect.FieldDescriptor fd_Authentication_metadata protoreflect.FieldDescriptor ) func init() { file_did_v1_state_proto_init() md_Authentication = File_did_v1_state_proto.Messages().ByName("Authentication") fd_Authentication_id = md_Authentication.Fields().ByName("id") fd_Authentication_controller = md_Authentication.Fields().ByName("controller") fd_Authentication_public_key = md_Authentication.Fields().ByName("public_key") fd_Authentication_origin = md_Authentication.Fields().ByName("origin") fd_Authentication_subject = md_Authentication.Fields().ByName("subject") fd_Authentication_credential_id = md_Authentication.Fields().ByName("credential_id") fd_Authentication_credential_label = md_Authentication.Fields().ByName("credential_label") fd_Authentication_credential_transport = md_Authentication.Fields().ByName("credential_transport") fd_Authentication_attestation_type = md_Authentication.Fields().ByName("attestation_type") fd_Authentication_metadata = md_Authentication.Fields().ByName("metadata") } var _ protoreflect.Message = (*fastReflection_Authentication)(nil) type fastReflection_Authentication Authentication func (x *Authentication) ProtoReflect() protoreflect.Message { return (*fastReflection_Authentication)(x) } func (x *Authentication) slowProtoReflect() protoreflect.Message { mi := &file_did_v1_state_proto_msgTypes[0] 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_Authentication_messageType fastReflection_Authentication_messageType var _ protoreflect.MessageType = fastReflection_Authentication_messageType{} type fastReflection_Authentication_messageType struct{} func (x fastReflection_Authentication_messageType) Zero() protoreflect.Message { return (*fastReflection_Authentication)(nil) } func (x fastReflection_Authentication_messageType) New() protoreflect.Message { return new(fastReflection_Authentication) } func (x fastReflection_Authentication_messageType) Descriptor() protoreflect.MessageDescriptor { return md_Authentication } // Descriptor returns message descriptor, which contains only the protobuf // type information for the message. func (x *fastReflection_Authentication) Descriptor() protoreflect.MessageDescriptor { return md_Authentication } // 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_Authentication) Type() protoreflect.MessageType { return _fastReflection_Authentication_messageType } // New returns a newly allocated and mutable empty message. func (x *fastReflection_Authentication) New() protoreflect.Message { return new(fastReflection_Authentication) } // Interface unwraps the message reflection interface and // returns the underlying ProtoMessage interface. func (x *fastReflection_Authentication) Interface() protoreflect.ProtoMessage { return (*Authentication)(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_Authentication) Range(f func(protoreflect.FieldDescriptor, protoreflect.Value) bool) { if x.Id != "" { value := protoreflect.ValueOfString(x.Id) if !f(fd_Authentication_id, value) { return } } if x.Controller != "" { value := protoreflect.ValueOfString(x.Controller) if !f(fd_Authentication_controller, value) { return } } if x.PublicKey != nil { value := protoreflect.ValueOfMessage(x.PublicKey.ProtoReflect()) if !f(fd_Authentication_public_key, value) { return } } if x.Origin != "" { value := protoreflect.ValueOfString(x.Origin) if !f(fd_Authentication_origin, value) { return } } if x.Subject != "" { value := protoreflect.ValueOfString(x.Subject) if !f(fd_Authentication_subject, value) { return } } if len(x.CredentialId) != 0 { value := protoreflect.ValueOfBytes(x.CredentialId) if !f(fd_Authentication_credential_id, value) { return } } if x.CredentialLabel != "" { value := protoreflect.ValueOfString(x.CredentialLabel) if !f(fd_Authentication_credential_label, value) { return } } if len(x.CredentialTransport) != 0 { value := protoreflect.ValueOfList(&_Authentication_8_list{list: &x.CredentialTransport}) if !f(fd_Authentication_credential_transport, value) { return } } if x.AttestationType != "" { value := protoreflect.ValueOfString(x.AttestationType) if !f(fd_Authentication_attestation_type, value) { return } } if x.Metadata != nil { value := protoreflect.ValueOfMessage(x.Metadata.ProtoReflect()) if !f(fd_Authentication_metadata, 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_Authentication) Has(fd protoreflect.FieldDescriptor) bool { switch fd.FullName() { case "did.v1.Authentication.id": return x.Id != "" case "did.v1.Authentication.controller": return x.Controller != "" case "did.v1.Authentication.public_key": return x.PublicKey != nil case "did.v1.Authentication.origin": return x.Origin != "" case "did.v1.Authentication.subject": return x.Subject != "" case "did.v1.Authentication.credential_id": return len(x.CredentialId) != 0 case "did.v1.Authentication.credential_label": return x.CredentialLabel != "" case "did.v1.Authentication.credential_transport": return len(x.CredentialTransport) != 0 case "did.v1.Authentication.attestation_type": return x.AttestationType != "" case "did.v1.Authentication.metadata": return x.Metadata != nil default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.Authentication")) } panic(fmt.Errorf("message did.v1.Authentication 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_Authentication) Clear(fd protoreflect.FieldDescriptor) { switch fd.FullName() { case "did.v1.Authentication.id": x.Id = "" case "did.v1.Authentication.controller": x.Controller = "" case "did.v1.Authentication.public_key": x.PublicKey = nil case "did.v1.Authentication.origin": x.Origin = "" case "did.v1.Authentication.subject": x.Subject = "" case "did.v1.Authentication.credential_id": x.CredentialId = nil case "did.v1.Authentication.credential_label": x.CredentialLabel = "" case "did.v1.Authentication.credential_transport": x.CredentialTransport = nil case "did.v1.Authentication.attestation_type": x.AttestationType = "" case "did.v1.Authentication.metadata": x.Metadata = nil default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.Authentication")) } panic(fmt.Errorf("message did.v1.Authentication 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_Authentication) Get(descriptor protoreflect.FieldDescriptor) protoreflect.Value { switch descriptor.FullName() { case "did.v1.Authentication.id": value := x.Id return protoreflect.ValueOfString(value) case "did.v1.Authentication.controller": value := x.Controller return protoreflect.ValueOfString(value) case "did.v1.Authentication.public_key": value := x.PublicKey return protoreflect.ValueOfMessage(value.ProtoReflect()) case "did.v1.Authentication.origin": value := x.Origin return protoreflect.ValueOfString(value) case "did.v1.Authentication.subject": value := x.Subject return protoreflect.ValueOfString(value) case "did.v1.Authentication.credential_id": value := x.CredentialId return protoreflect.ValueOfBytes(value) case "did.v1.Authentication.credential_label": value := x.CredentialLabel return protoreflect.ValueOfString(value) case "did.v1.Authentication.credential_transport": if len(x.CredentialTransport) == 0 { return protoreflect.ValueOfList(&_Authentication_8_list{}) } listValue := &_Authentication_8_list{list: &x.CredentialTransport} return protoreflect.ValueOfList(listValue) case "did.v1.Authentication.attestation_type": value := x.AttestationType return protoreflect.ValueOfString(value) case "did.v1.Authentication.metadata": value := x.Metadata return protoreflect.ValueOfMessage(value.ProtoReflect()) default: if descriptor.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.Authentication")) } panic(fmt.Errorf("message did.v1.Authentication 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_Authentication) Set(fd protoreflect.FieldDescriptor, value protoreflect.Value) { switch fd.FullName() { case "did.v1.Authentication.id": x.Id = value.Interface().(string) case "did.v1.Authentication.controller": x.Controller = value.Interface().(string) case "did.v1.Authentication.public_key": x.PublicKey = value.Message().Interface().(*PubKey) case "did.v1.Authentication.origin": x.Origin = value.Interface().(string) case "did.v1.Authentication.subject": x.Subject = value.Interface().(string) case "did.v1.Authentication.credential_id": x.CredentialId = value.Bytes() case "did.v1.Authentication.credential_label": x.CredentialLabel = value.Interface().(string) case "did.v1.Authentication.credential_transport": lv := value.List() clv := lv.(*_Authentication_8_list) x.CredentialTransport = *clv.list case "did.v1.Authentication.attestation_type": x.AttestationType = value.Interface().(string) case "did.v1.Authentication.metadata": x.Metadata = value.Message().Interface().(*Metadata) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.Authentication")) } panic(fmt.Errorf("message did.v1.Authentication 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_Authentication) Mutable(fd protoreflect.FieldDescriptor) protoreflect.Value { switch fd.FullName() { case "did.v1.Authentication.public_key": if x.PublicKey == nil { x.PublicKey = new(PubKey) } return protoreflect.ValueOfMessage(x.PublicKey.ProtoReflect()) case "did.v1.Authentication.credential_transport": if x.CredentialTransport == nil { x.CredentialTransport = []string{} } value := &_Authentication_8_list{list: &x.CredentialTransport} return protoreflect.ValueOfList(value) case "did.v1.Authentication.metadata": if x.Metadata == nil { x.Metadata = new(Metadata) } return protoreflect.ValueOfMessage(x.Metadata.ProtoReflect()) case "did.v1.Authentication.id": panic(fmt.Errorf("field id 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.origin": panic(fmt.Errorf("field origin 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")) case "did.v1.Authentication.credential_id": panic(fmt.Errorf("field credential_id of message did.v1.Authentication is not mutable")) case "did.v1.Authentication.credential_label": panic(fmt.Errorf("field credential_label of message did.v1.Authentication is not mutable")) case "did.v1.Authentication.attestation_type": panic(fmt.Errorf("field attestation_type of message did.v1.Authentication is not mutable")) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.Authentication")) } panic(fmt.Errorf("message did.v1.Authentication 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_Authentication) NewField(fd protoreflect.FieldDescriptor) protoreflect.Value { switch fd.FullName() { case "did.v1.Authentication.id": return protoreflect.ValueOfString("") case "did.v1.Authentication.controller": return protoreflect.ValueOfString("") case "did.v1.Authentication.public_key": m := new(PubKey) return protoreflect.ValueOfMessage(m.ProtoReflect()) case "did.v1.Authentication.origin": return protoreflect.ValueOfString("") case "did.v1.Authentication.subject": return protoreflect.ValueOfString("") case "did.v1.Authentication.credential_id": return protoreflect.ValueOfBytes(nil) case "did.v1.Authentication.credential_label": return protoreflect.ValueOfString("") case "did.v1.Authentication.credential_transport": list := []string{} return protoreflect.ValueOfList(&_Authentication_8_list{list: &list}) case "did.v1.Authentication.attestation_type": return protoreflect.ValueOfString("") case "did.v1.Authentication.metadata": m := new(Metadata) return protoreflect.ValueOfMessage(m.ProtoReflect()) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.Authentication")) } panic(fmt.Errorf("message did.v1.Authentication 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_Authentication) WhichOneof(d protoreflect.OneofDescriptor) protoreflect.FieldDescriptor { switch d.FullName() { default: panic(fmt.Errorf("%s is not a oneof field in did.v1.Authentication", 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_Authentication) 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_Authentication) 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_Authentication) 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_Authentication) ProtoMethods() *protoiface.Methods { size := func(input protoiface.SizeInput) protoiface.SizeOutput { x := input.Message.Interface().(*Authentication) 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.Id) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.Controller) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } if x.PublicKey != nil { l = options.Size(x.PublicKey) n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.Origin) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.Subject) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.CredentialId) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.CredentialLabel) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } if len(x.CredentialTransport) > 0 { for _, s := range x.CredentialTransport { l = len(s) n += 1 + l + runtime.Sov(uint64(l)) } } l = len(x.AttestationType) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } if x.Metadata != nil { l = options.Size(x.Metadata) 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().(*Authentication) 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.Metadata != nil { encoded, err := options.Marshal(x.Metadata) 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] = 0x52 } if len(x.AttestationType) > 0 { i -= len(x.AttestationType) copy(dAtA[i:], x.AttestationType) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.AttestationType))) i-- dAtA[i] = 0x4a } if len(x.CredentialTransport) > 0 { for iNdEx := len(x.CredentialTransport) - 1; iNdEx >= 0; iNdEx-- { i -= len(x.CredentialTransport[iNdEx]) copy(dAtA[i:], x.CredentialTransport[iNdEx]) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.CredentialTransport[iNdEx]))) i-- dAtA[i] = 0x42 } } if len(x.CredentialLabel) > 0 { i -= len(x.CredentialLabel) copy(dAtA[i:], x.CredentialLabel) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.CredentialLabel))) i-- dAtA[i] = 0x3a } 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] = 0x32 } if len(x.Subject) > 0 { i -= len(x.Subject) copy(dAtA[i:], x.Subject) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.Subject))) i-- dAtA[i] = 0x2a } if len(x.Origin) > 0 { i -= len(x.Origin) copy(dAtA[i:], x.Origin) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.Origin))) i-- dAtA[i] = 0x22 } 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))) i-- 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-- dAtA[i] = 0x12 } if len(x.Id) > 0 { i -= len(x.Id) copy(dAtA[i:], x.Id) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.Id))) 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().(*Authentication) 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: Authentication: wiretype end group for non-group") } if fieldNum <= 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: Authentication: 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 Id", 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.Id = 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 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 4: if wireType != 2 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field Origin", 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.Origin = 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 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 7: if wireType != 2 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field CredentialLabel", 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.CredentialLabel = 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 CredentialTransport", 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.CredentialTransport = append(x.CredentialTransport, string(dAtA[iNdEx:postIndex])) iNdEx = postIndex case 9: if wireType != 2 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field AttestationType", 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.AttestationType = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex case 10: 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 = &Metadata{} } if err := options.Unmarshal(dAtA[iNdEx:postIndex], x.Metadata); 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_Assertion protoreflect.MessageDescriptor fd_Assertion_id protoreflect.FieldDescriptor fd_Assertion_controller protoreflect.FieldDescriptor fd_Assertion_public_key protoreflect.FieldDescriptor fd_Assertion_origin protoreflect.FieldDescriptor fd_Assertion_subject protoreflect.FieldDescriptor fd_Assertion_metadata protoreflect.FieldDescriptor ) func init() { file_did_v1_state_proto_init() md_Assertion = File_did_v1_state_proto.Messages().ByName("Assertion") fd_Assertion_id = md_Assertion.Fields().ByName("id") fd_Assertion_controller = md_Assertion.Fields().ByName("controller") fd_Assertion_public_key = md_Assertion.Fields().ByName("public_key") fd_Assertion_origin = md_Assertion.Fields().ByName("origin") fd_Assertion_subject = md_Assertion.Fields().ByName("subject") fd_Assertion_metadata = md_Assertion.Fields().ByName("metadata") } var _ protoreflect.Message = (*fastReflection_Assertion)(nil) type fastReflection_Assertion Assertion func (x *Assertion) ProtoReflect() protoreflect.Message { return (*fastReflection_Assertion)(x) } func (x *Assertion) slowProtoReflect() protoreflect.Message { mi := &file_did_v1_state_proto_msgTypes[1] 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_Assertion_messageType fastReflection_Assertion_messageType var _ protoreflect.MessageType = fastReflection_Assertion_messageType{} type fastReflection_Assertion_messageType struct{} func (x fastReflection_Assertion_messageType) Zero() protoreflect.Message { return (*fastReflection_Assertion)(nil) } func (x fastReflection_Assertion_messageType) New() protoreflect.Message { return new(fastReflection_Assertion) } func (x fastReflection_Assertion_messageType) Descriptor() protoreflect.MessageDescriptor { return md_Assertion } // Descriptor returns message descriptor, which contains only the protobuf // type information for the message. func (x *fastReflection_Assertion) Descriptor() protoreflect.MessageDescriptor { return md_Assertion } // 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_Assertion) Type() protoreflect.MessageType { return _fastReflection_Assertion_messageType } // New returns a newly allocated and mutable empty message. func (x *fastReflection_Assertion) New() protoreflect.Message { return new(fastReflection_Assertion) } // Interface unwraps the message reflection interface and // returns the underlying ProtoMessage interface. func (x *fastReflection_Assertion) Interface() protoreflect.ProtoMessage { return (*Assertion)(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_Assertion) Range(f func(protoreflect.FieldDescriptor, protoreflect.Value) bool) { if x.Id != "" { value := protoreflect.ValueOfString(x.Id) if !f(fd_Assertion_id, value) { return } } if x.Controller != "" { value := protoreflect.ValueOfString(x.Controller) if !f(fd_Assertion_controller, value) { return } } if x.PublicKey != nil { value := protoreflect.ValueOfMessage(x.PublicKey.ProtoReflect()) if !f(fd_Assertion_public_key, value) { return } } if x.Origin != "" { value := protoreflect.ValueOfString(x.Origin) if !f(fd_Assertion_origin, value) { return } } if x.Subject != "" { value := protoreflect.ValueOfString(x.Subject) if !f(fd_Assertion_subject, value) { return } } if x.Metadata != nil { value := protoreflect.ValueOfMessage(x.Metadata.ProtoReflect()) if !f(fd_Assertion_metadata, 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_Assertion) Has(fd protoreflect.FieldDescriptor) bool { switch fd.FullName() { case "did.v1.Assertion.id": return x.Id != "" case "did.v1.Assertion.controller": return x.Controller != "" case "did.v1.Assertion.public_key": return x.PublicKey != nil case "did.v1.Assertion.origin": return x.Origin != "" case "did.v1.Assertion.subject": return x.Subject != "" case "did.v1.Assertion.metadata": return x.Metadata != nil default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.Assertion")) } panic(fmt.Errorf("message did.v1.Assertion 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_Assertion) Clear(fd protoreflect.FieldDescriptor) { switch fd.FullName() { case "did.v1.Assertion.id": x.Id = "" case "did.v1.Assertion.controller": x.Controller = "" case "did.v1.Assertion.public_key": x.PublicKey = nil case "did.v1.Assertion.origin": x.Origin = "" case "did.v1.Assertion.subject": x.Subject = "" case "did.v1.Assertion.metadata": x.Metadata = nil default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.Assertion")) } panic(fmt.Errorf("message did.v1.Assertion 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_Assertion) Get(descriptor protoreflect.FieldDescriptor) protoreflect.Value { switch descriptor.FullName() { case "did.v1.Assertion.id": value := x.Id return protoreflect.ValueOfString(value) case "did.v1.Assertion.controller": value := x.Controller return protoreflect.ValueOfString(value) case "did.v1.Assertion.public_key": value := x.PublicKey return protoreflect.ValueOfMessage(value.ProtoReflect()) case "did.v1.Assertion.origin": value := x.Origin return protoreflect.ValueOfString(value) case "did.v1.Assertion.subject": value := x.Subject return protoreflect.ValueOfString(value) case "did.v1.Assertion.metadata": value := x.Metadata return protoreflect.ValueOfMessage(value.ProtoReflect()) default: if descriptor.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.Assertion")) } panic(fmt.Errorf("message did.v1.Assertion 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_Assertion) Set(fd protoreflect.FieldDescriptor, value protoreflect.Value) { switch fd.FullName() { case "did.v1.Assertion.id": x.Id = value.Interface().(string) case "did.v1.Assertion.controller": x.Controller = value.Interface().(string) case "did.v1.Assertion.public_key": x.PublicKey = value.Message().Interface().(*PubKey) case "did.v1.Assertion.origin": x.Origin = value.Interface().(string) case "did.v1.Assertion.subject": x.Subject = value.Interface().(string) case "did.v1.Assertion.metadata": x.Metadata = value.Message().Interface().(*Metadata) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.Assertion")) } panic(fmt.Errorf("message did.v1.Assertion 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_Assertion) Mutable(fd protoreflect.FieldDescriptor) protoreflect.Value { switch fd.FullName() { case "did.v1.Assertion.public_key": if x.PublicKey == nil { x.PublicKey = new(PubKey) } return protoreflect.ValueOfMessage(x.PublicKey.ProtoReflect()) case "did.v1.Assertion.metadata": if x.Metadata == nil { x.Metadata = new(Metadata) } return protoreflect.ValueOfMessage(x.Metadata.ProtoReflect()) case "did.v1.Assertion.id": panic(fmt.Errorf("field id of message did.v1.Assertion is not mutable")) case "did.v1.Assertion.controller": panic(fmt.Errorf("field controller of message did.v1.Assertion is not mutable")) case "did.v1.Assertion.origin": panic(fmt.Errorf("field origin of message did.v1.Assertion is not mutable")) case "did.v1.Assertion.subject": panic(fmt.Errorf("field subject of message did.v1.Assertion is not mutable")) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.Assertion")) } panic(fmt.Errorf("message did.v1.Assertion 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_Assertion) NewField(fd protoreflect.FieldDescriptor) protoreflect.Value { switch fd.FullName() { case "did.v1.Assertion.id": return protoreflect.ValueOfString("") case "did.v1.Assertion.controller": return protoreflect.ValueOfString("") case "did.v1.Assertion.public_key": m := new(PubKey) return protoreflect.ValueOfMessage(m.ProtoReflect()) case "did.v1.Assertion.origin": return protoreflect.ValueOfString("") case "did.v1.Assertion.subject": return protoreflect.ValueOfString("") case "did.v1.Assertion.metadata": m := new(Metadata) return protoreflect.ValueOfMessage(m.ProtoReflect()) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.Assertion")) } panic(fmt.Errorf("message did.v1.Assertion 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_Assertion) WhichOneof(d protoreflect.OneofDescriptor) protoreflect.FieldDescriptor { switch d.FullName() { default: panic(fmt.Errorf("%s is not a oneof field in did.v1.Assertion", 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_Assertion) 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_Assertion) 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_Assertion) 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_Assertion) ProtoMethods() *protoiface.Methods { size := func(input protoiface.SizeInput) protoiface.SizeOutput { x := input.Message.Interface().(*Assertion) 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.Id) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.Controller) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } if x.PublicKey != nil { l = options.Size(x.PublicKey) n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.Origin) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.Subject) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } if x.Metadata != nil { l = options.Size(x.Metadata) 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().(*Assertion) 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.Metadata != nil { encoded, err := options.Marshal(x.Metadata) 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] = 0x32 } if len(x.Subject) > 0 { i -= len(x.Subject) copy(dAtA[i:], x.Subject) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.Subject))) i-- dAtA[i] = 0x2a } if len(x.Origin) > 0 { i -= len(x.Origin) copy(dAtA[i:], x.Origin) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.Origin))) i-- dAtA[i] = 0x22 } 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))) i-- 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-- dAtA[i] = 0x12 } if len(x.Id) > 0 { i -= len(x.Id) copy(dAtA[i:], x.Id) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.Id))) 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().(*Assertion) 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: Assertion: wiretype end group for non-group") } if fieldNum <= 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: Assertion: 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 Id", 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.Id = 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 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 4: if wireType != 2 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field Origin", 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.Origin = 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 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 = &Metadata{} } if err := options.Unmarshal(dAtA[iNdEx:postIndex], x.Metadata); 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 _ protoreflect.List = (*_Controller_3_list)(nil) type _Controller_3_list struct { list *[]string } func (x *_Controller_3_list) Len() int { if x.list == nil { return 0 } return len(*x.list) } func (x *_Controller_3_list) Get(i int) protoreflect.Value { return protoreflect.ValueOfString((*x.list)[i]) } func (x *_Controller_3_list) Set(i int, value protoreflect.Value) { valueUnwrapped := value.String() concreteValue := valueUnwrapped (*x.list)[i] = concreteValue } func (x *_Controller_3_list) Append(value protoreflect.Value) { valueUnwrapped := value.String() concreteValue := valueUnwrapped *x.list = append(*x.list, concreteValue) } func (x *_Controller_3_list) AppendMutable() protoreflect.Value { panic(fmt.Errorf("AppendMutable can not be called on message Controller at list field Aliases as it is not of Message kind")) } func (x *_Controller_3_list) Truncate(n int) { *x.list = (*x.list)[:n] } func (x *_Controller_3_list) NewElement() protoreflect.Value { v := "" return protoreflect.ValueOfString(v) } func (x *_Controller_3_list) IsValid() bool { return x.list != nil } var ( md_Controller protoreflect.MessageDescriptor fd_Controller_id protoreflect.FieldDescriptor fd_Controller_address protoreflect.FieldDescriptor fd_Controller_aliases protoreflect.FieldDescriptor fd_Controller_public_key protoreflect.FieldDescriptor fd_Controller_vault_cid protoreflect.FieldDescriptor ) func init() { file_did_v1_state_proto_init() md_Controller = File_did_v1_state_proto.Messages().ByName("Controller") fd_Controller_id = md_Controller.Fields().ByName("id") fd_Controller_address = md_Controller.Fields().ByName("address") fd_Controller_aliases = md_Controller.Fields().ByName("aliases") fd_Controller_public_key = md_Controller.Fields().ByName("public_key") fd_Controller_vault_cid = md_Controller.Fields().ByName("vault_cid") } var _ protoreflect.Message = (*fastReflection_Controller)(nil) type fastReflection_Controller Controller func (x *Controller) ProtoReflect() protoreflect.Message { return (*fastReflection_Controller)(x) } func (x *Controller) slowProtoReflect() protoreflect.Message { 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) } var _fastReflection_Controller_messageType fastReflection_Controller_messageType var _ protoreflect.MessageType = fastReflection_Controller_messageType{} type fastReflection_Controller_messageType struct{} func (x fastReflection_Controller_messageType) Zero() protoreflect.Message { return (*fastReflection_Controller)(nil) } func (x fastReflection_Controller_messageType) New() protoreflect.Message { return new(fastReflection_Controller) } func (x fastReflection_Controller_messageType) Descriptor() protoreflect.MessageDescriptor { return md_Controller } // Descriptor returns message descriptor, which contains only the protobuf // type information for the message. func (x *fastReflection_Controller) Descriptor() protoreflect.MessageDescriptor { return md_Controller } // 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_Controller) Type() protoreflect.MessageType { return _fastReflection_Controller_messageType } // New returns a newly allocated and mutable empty message. func (x *fastReflection_Controller) New() protoreflect.Message { return new(fastReflection_Controller) } // Interface unwraps the message reflection interface and // returns the underlying ProtoMessage interface. func (x *fastReflection_Controller) Interface() protoreflect.ProtoMessage { return (*Controller)(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_Controller) Range(f func(protoreflect.FieldDescriptor, protoreflect.Value) bool) { if x.Id != "" { value := protoreflect.ValueOfString(x.Id) if !f(fd_Controller_id, value) { return } } if x.Address != "" { value := protoreflect.ValueOfString(x.Address) if !f(fd_Controller_address, value) { return } } if len(x.Aliases) != 0 { value := protoreflect.ValueOfList(&_Controller_3_list{list: &x.Aliases}) if !f(fd_Controller_aliases, value) { return } } if x.PublicKey != nil { value := protoreflect.ValueOfMessage(x.PublicKey.ProtoReflect()) if !f(fd_Controller_public_key, value) { return } } if x.VaultCid != "" { value := protoreflect.ValueOfString(x.VaultCid) if !f(fd_Controller_vault_cid, 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_Controller) Has(fd protoreflect.FieldDescriptor) bool { switch fd.FullName() { case "did.v1.Controller.id": return x.Id != "" case "did.v1.Controller.address": return x.Address != "" case "did.v1.Controller.aliases": return len(x.Aliases) != 0 case "did.v1.Controller.public_key": return x.PublicKey != nil case "did.v1.Controller.vault_cid": return x.VaultCid != "" default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.Controller")) } panic(fmt.Errorf("message did.v1.Controller 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_Controller) Clear(fd protoreflect.FieldDescriptor) { switch fd.FullName() { case "did.v1.Controller.id": x.Id = "" case "did.v1.Controller.address": x.Address = "" case "did.v1.Controller.aliases": x.Aliases = nil case "did.v1.Controller.public_key": x.PublicKey = nil case "did.v1.Controller.vault_cid": x.VaultCid = "" default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.Controller")) } panic(fmt.Errorf("message did.v1.Controller 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_Controller) Get(descriptor protoreflect.FieldDescriptor) protoreflect.Value { switch descriptor.FullName() { case "did.v1.Controller.id": value := x.Id return protoreflect.ValueOfString(value) case "did.v1.Controller.address": value := x.Address return protoreflect.ValueOfString(value) case "did.v1.Controller.aliases": if len(x.Aliases) == 0 { return protoreflect.ValueOfList(&_Controller_3_list{}) } listValue := &_Controller_3_list{list: &x.Aliases} return protoreflect.ValueOfList(listValue) case "did.v1.Controller.public_key": value := x.PublicKey return protoreflect.ValueOfMessage(value.ProtoReflect()) case "did.v1.Controller.vault_cid": value := x.VaultCid return protoreflect.ValueOfString(value) default: if descriptor.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.Controller")) } panic(fmt.Errorf("message did.v1.Controller 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_Controller) Set(fd protoreflect.FieldDescriptor, value protoreflect.Value) { switch fd.FullName() { case "did.v1.Controller.id": x.Id = value.Interface().(string) case "did.v1.Controller.address": x.Address = value.Interface().(string) case "did.v1.Controller.aliases": lv := value.List() clv := lv.(*_Controller_3_list) x.Aliases = *clv.list case "did.v1.Controller.public_key": x.PublicKey = value.Message().Interface().(*PubKey) case "did.v1.Controller.vault_cid": x.VaultCid = value.Interface().(string) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.Controller")) } panic(fmt.Errorf("message did.v1.Controller 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_Controller) Mutable(fd protoreflect.FieldDescriptor) protoreflect.Value { switch fd.FullName() { case "did.v1.Controller.aliases": if x.Aliases == nil { x.Aliases = []string{} } value := &_Controller_3_list{list: &x.Aliases} return protoreflect.ValueOfList(value) case "did.v1.Controller.public_key": if x.PublicKey == nil { x.PublicKey = new(PubKey) } return protoreflect.ValueOfMessage(x.PublicKey.ProtoReflect()) case "did.v1.Controller.id": panic(fmt.Errorf("field id of message did.v1.Controller is not mutable")) case "did.v1.Controller.address": panic(fmt.Errorf("field address of message did.v1.Controller is not mutable")) case "did.v1.Controller.vault_cid": panic(fmt.Errorf("field vault_cid of message did.v1.Controller is not mutable")) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.Controller")) } panic(fmt.Errorf("message did.v1.Controller 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_Controller) NewField(fd protoreflect.FieldDescriptor) protoreflect.Value { switch fd.FullName() { case "did.v1.Controller.id": return protoreflect.ValueOfString("") case "did.v1.Controller.address": return protoreflect.ValueOfString("") case "did.v1.Controller.aliases": list := []string{} return protoreflect.ValueOfList(&_Controller_3_list{list: &list}) case "did.v1.Controller.public_key": m := new(PubKey) return protoreflect.ValueOfMessage(m.ProtoReflect()) case "did.v1.Controller.vault_cid": return protoreflect.ValueOfString("") default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.Controller")) } panic(fmt.Errorf("message did.v1.Controller 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_Controller) WhichOneof(d protoreflect.OneofDescriptor) protoreflect.FieldDescriptor { switch d.FullName() { default: panic(fmt.Errorf("%s is not a oneof field in did.v1.Controller", 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_Controller) 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_Controller) 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_Controller) 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_Controller) ProtoMethods() *protoiface.Methods { size := func(input protoiface.SizeInput) protoiface.SizeOutput { x := input.Message.Interface().(*Controller) 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.Id) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.Address) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } if len(x.Aliases) > 0 { for _, s := range x.Aliases { l = len(s) n += 1 + l + runtime.Sov(uint64(l)) } } if x.PublicKey != nil { l = options.Size(x.PublicKey) n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.VaultCid) 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().(*Controller) 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.VaultCid) > 0 { i -= len(x.VaultCid) copy(dAtA[i:], x.VaultCid) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.VaultCid))) i-- dAtA[i] = 0x2a } 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))) i-- dAtA[i] = 0x22 } if len(x.Aliases) > 0 { for iNdEx := len(x.Aliases) - 1; iNdEx >= 0; iNdEx-- { i -= len(x.Aliases[iNdEx]) copy(dAtA[i:], x.Aliases[iNdEx]) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.Aliases[iNdEx]))) i-- dAtA[i] = 0x1a } } if len(x.Address) > 0 { i -= len(x.Address) copy(dAtA[i:], x.Address) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.Address))) i-- dAtA[i] = 0x12 } if len(x.Id) > 0 { i -= len(x.Id) copy(dAtA[i:], x.Id) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.Id))) 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().(*Controller) 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: Controller: wiretype end group for non-group") } if fieldNum <= 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: Controller: 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 Id", 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.Id = 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 Address", 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.Address = 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 Aliases", 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.Aliases = append(x.Aliases, 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 } iNdEx = postIndex case 5: if wireType != 2 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field VaultCid", 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.VaultCid = 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_Delegation protoreflect.MessageDescriptor fd_Delegation_id protoreflect.FieldDescriptor fd_Delegation_controller protoreflect.FieldDescriptor fd_Delegation_chain_index protoreflect.FieldDescriptor fd_Delegation_public_key protoreflect.FieldDescriptor fd_Delegation_account_address protoreflect.FieldDescriptor fd_Delegation_account_label protoreflect.FieldDescriptor fd_Delegation_chain_id protoreflect.FieldDescriptor ) func init() { file_did_v1_state_proto_init() md_Delegation = File_did_v1_state_proto.Messages().ByName("Delegation") fd_Delegation_id = md_Delegation.Fields().ByName("id") fd_Delegation_controller = md_Delegation.Fields().ByName("controller") fd_Delegation_chain_index = md_Delegation.Fields().ByName("chain_index") fd_Delegation_public_key = md_Delegation.Fields().ByName("public_key") fd_Delegation_account_address = md_Delegation.Fields().ByName("account_address") fd_Delegation_account_label = md_Delegation.Fields().ByName("account_label") fd_Delegation_chain_id = md_Delegation.Fields().ByName("chain_id") } var _ protoreflect.Message = (*fastReflection_Delegation)(nil) type fastReflection_Delegation Delegation func (x *Delegation) ProtoReflect() protoreflect.Message { return (*fastReflection_Delegation)(x) } func (x *Delegation) 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_Delegation_messageType fastReflection_Delegation_messageType var _ protoreflect.MessageType = fastReflection_Delegation_messageType{} type fastReflection_Delegation_messageType struct{} func (x fastReflection_Delegation_messageType) Zero() protoreflect.Message { return (*fastReflection_Delegation)(nil) } func (x fastReflection_Delegation_messageType) New() protoreflect.Message { return new(fastReflection_Delegation) } func (x fastReflection_Delegation_messageType) Descriptor() protoreflect.MessageDescriptor { return md_Delegation } // Descriptor returns message descriptor, which contains only the protobuf // type information for the message. func (x *fastReflection_Delegation) Descriptor() protoreflect.MessageDescriptor { return md_Delegation } // 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_Delegation) Type() protoreflect.MessageType { return _fastReflection_Delegation_messageType } // New returns a newly allocated and mutable empty message. func (x *fastReflection_Delegation) New() protoreflect.Message { return new(fastReflection_Delegation) } // Interface unwraps the message reflection interface and // returns the underlying ProtoMessage interface. func (x *fastReflection_Delegation) Interface() protoreflect.ProtoMessage { return (*Delegation)(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_Delegation) Range(f func(protoreflect.FieldDescriptor, protoreflect.Value) bool) { if x.Id != "" { value := protoreflect.ValueOfString(x.Id) if !f(fd_Delegation_id, value) { return } } if x.Controller != "" { value := protoreflect.ValueOfString(x.Controller) if !f(fd_Delegation_controller, value) { return } } if x.ChainIndex != "" { value := protoreflect.ValueOfString(x.ChainIndex) if !f(fd_Delegation_chain_index, value) { return } } if x.PublicKey != nil { value := protoreflect.ValueOfMessage(x.PublicKey.ProtoReflect()) if !f(fd_Delegation_public_key, value) { return } } if x.AccountAddress != "" { value := protoreflect.ValueOfString(x.AccountAddress) if !f(fd_Delegation_account_address, value) { return } } if x.AccountLabel != "" { value := protoreflect.ValueOfString(x.AccountLabel) if !f(fd_Delegation_account_label, value) { return } } if x.ChainId != "" { value := protoreflect.ValueOfString(x.ChainId) if !f(fd_Delegation_chain_id, 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_Delegation) Has(fd protoreflect.FieldDescriptor) bool { switch fd.FullName() { case "did.v1.Delegation.id": return x.Id != "" case "did.v1.Delegation.controller": return x.Controller != "" case "did.v1.Delegation.chain_index": return x.ChainIndex != "" case "did.v1.Delegation.public_key": return x.PublicKey != nil case "did.v1.Delegation.account_address": return x.AccountAddress != "" case "did.v1.Delegation.account_label": return x.AccountLabel != "" case "did.v1.Delegation.chain_id": return x.ChainId != "" default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.Delegation")) } panic(fmt.Errorf("message did.v1.Delegation 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_Delegation) Clear(fd protoreflect.FieldDescriptor) { switch fd.FullName() { case "did.v1.Delegation.id": x.Id = "" case "did.v1.Delegation.controller": x.Controller = "" case "did.v1.Delegation.chain_index": x.ChainIndex = "" case "did.v1.Delegation.public_key": x.PublicKey = nil case "did.v1.Delegation.account_address": x.AccountAddress = "" case "did.v1.Delegation.account_label": x.AccountLabel = "" case "did.v1.Delegation.chain_id": x.ChainId = "" default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.Delegation")) } panic(fmt.Errorf("message did.v1.Delegation 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_Delegation) Get(descriptor protoreflect.FieldDescriptor) protoreflect.Value { switch descriptor.FullName() { case "did.v1.Delegation.id": value := x.Id return protoreflect.ValueOfString(value) case "did.v1.Delegation.controller": value := x.Controller return protoreflect.ValueOfString(value) case "did.v1.Delegation.chain_index": value := x.ChainIndex return protoreflect.ValueOfString(value) case "did.v1.Delegation.public_key": value := x.PublicKey return protoreflect.ValueOfMessage(value.ProtoReflect()) case "did.v1.Delegation.account_address": value := x.AccountAddress return protoreflect.ValueOfString(value) case "did.v1.Delegation.account_label": value := x.AccountLabel return protoreflect.ValueOfString(value) case "did.v1.Delegation.chain_id": value := x.ChainId return protoreflect.ValueOfString(value) default: if descriptor.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.Delegation")) } panic(fmt.Errorf("message did.v1.Delegation 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_Delegation) Set(fd protoreflect.FieldDescriptor, value protoreflect.Value) { switch fd.FullName() { case "did.v1.Delegation.id": x.Id = value.Interface().(string) case "did.v1.Delegation.controller": x.Controller = value.Interface().(string) case "did.v1.Delegation.chain_index": x.ChainIndex = value.Interface().(string) case "did.v1.Delegation.public_key": x.PublicKey = value.Message().Interface().(*PubKey) case "did.v1.Delegation.account_address": x.AccountAddress = value.Interface().(string) case "did.v1.Delegation.account_label": x.AccountLabel = value.Interface().(string) case "did.v1.Delegation.chain_id": x.ChainId = value.Interface().(string) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.Delegation")) } panic(fmt.Errorf("message did.v1.Delegation 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_Delegation) Mutable(fd protoreflect.FieldDescriptor) protoreflect.Value { switch fd.FullName() { case "did.v1.Delegation.public_key": if x.PublicKey == nil { x.PublicKey = new(PubKey) } return protoreflect.ValueOfMessage(x.PublicKey.ProtoReflect()) case "did.v1.Delegation.id": panic(fmt.Errorf("field id of message did.v1.Delegation is not mutable")) case "did.v1.Delegation.controller": panic(fmt.Errorf("field controller of message did.v1.Delegation is not mutable")) case "did.v1.Delegation.chain_index": panic(fmt.Errorf("field chain_index of message did.v1.Delegation is not mutable")) case "did.v1.Delegation.account_address": panic(fmt.Errorf("field account_address of message did.v1.Delegation is not mutable")) case "did.v1.Delegation.account_label": panic(fmt.Errorf("field account_label of message did.v1.Delegation is not mutable")) case "did.v1.Delegation.chain_id": panic(fmt.Errorf("field chain_id of message did.v1.Delegation is not mutable")) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.Delegation")) } panic(fmt.Errorf("message did.v1.Delegation 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_Delegation) NewField(fd protoreflect.FieldDescriptor) protoreflect.Value { switch fd.FullName() { case "did.v1.Delegation.id": return protoreflect.ValueOfString("") case "did.v1.Delegation.controller": return protoreflect.ValueOfString("") case "did.v1.Delegation.chain_index": return protoreflect.ValueOfString("") case "did.v1.Delegation.public_key": m := new(PubKey) return protoreflect.ValueOfMessage(m.ProtoReflect()) case "did.v1.Delegation.account_address": return protoreflect.ValueOfString("") case "did.v1.Delegation.account_label": return protoreflect.ValueOfString("") case "did.v1.Delegation.chain_id": return protoreflect.ValueOfString("") default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.Delegation")) } panic(fmt.Errorf("message did.v1.Delegation 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_Delegation) WhichOneof(d protoreflect.OneofDescriptor) protoreflect.FieldDescriptor { switch d.FullName() { default: panic(fmt.Errorf("%s is not a oneof field in did.v1.Delegation", 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_Delegation) 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_Delegation) 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_Delegation) 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_Delegation) ProtoMethods() *protoiface.Methods { size := func(input protoiface.SizeInput) protoiface.SizeOutput { x := input.Message.Interface().(*Delegation) 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.Id) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.Controller) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.ChainIndex) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } if x.PublicKey != nil { l = options.Size(x.PublicKey) n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.AccountAddress) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.AccountLabel) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.ChainId) 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().(*Delegation) 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.ChainId) > 0 { i -= len(x.ChainId) copy(dAtA[i:], x.ChainId) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.ChainId))) i-- dAtA[i] = 0x3a } if len(x.AccountLabel) > 0 { i -= len(x.AccountLabel) copy(dAtA[i:], x.AccountLabel) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.AccountLabel))) i-- dAtA[i] = 0x32 } if len(x.AccountAddress) > 0 { i -= len(x.AccountAddress) copy(dAtA[i:], x.AccountAddress) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.AccountAddress))) i-- dAtA[i] = 0x2a } 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))) i-- dAtA[i] = 0x22 } if len(x.ChainIndex) > 0 { i -= len(x.ChainIndex) copy(dAtA[i:], x.ChainIndex) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.ChainIndex))) i-- 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-- dAtA[i] = 0x12 } if len(x.Id) > 0 { i -= len(x.Id) copy(dAtA[i:], x.Id) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.Id))) 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().(*Delegation) 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: Delegation: wiretype end group for non-group") } if fieldNum <= 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: Delegation: 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 Id", 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.Id = 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 ChainIndex", 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.ChainIndex = 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 } iNdEx = postIndex case 5: if wireType != 2 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field AccountAddress", 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.AccountAddress = 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 AccountLabel", 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.AccountLabel = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex case 7: if wireType != 2 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field ChainId", 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.ChainId = 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 _ protoreflect.Map = (*_ServiceRecord_6_map)(nil) type _ServiceRecord_6_map struct { m *map[string]string } func (x *_ServiceRecord_6_map) Len() int { if x.m == nil { return 0 } return len(*x.m) } func (x *_ServiceRecord_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 *_ServiceRecord_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 *_ServiceRecord_6_map) Clear(key protoreflect.MapKey) { if x.m == nil { return } keyUnwrapped := key.String() concreteKey := keyUnwrapped delete(*x.m, concreteKey) } func (x *_ServiceRecord_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 *_ServiceRecord_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 *_ServiceRecord_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 *_ServiceRecord_6_map) NewValue() protoreflect.Value { v := "" return protoreflect.ValueOfString(v) } func (x *_ServiceRecord_6_map) IsValid() bool { return x.m != nil } var ( md_ServiceRecord protoreflect.MessageDescriptor fd_ServiceRecord_id protoreflect.FieldDescriptor fd_ServiceRecord_service_type protoreflect.FieldDescriptor fd_ServiceRecord_controller protoreflect.FieldDescriptor fd_ServiceRecord_origin_uri protoreflect.FieldDescriptor fd_ServiceRecord_description protoreflect.FieldDescriptor fd_ServiceRecord_service_endpoints protoreflect.FieldDescriptor fd_ServiceRecord_permissions protoreflect.FieldDescriptor fd_ServiceRecord_metadata protoreflect.FieldDescriptor ) func init() { file_did_v1_state_proto_init() md_ServiceRecord = File_did_v1_state_proto.Messages().ByName("ServiceRecord") fd_ServiceRecord_id = md_ServiceRecord.Fields().ByName("id") fd_ServiceRecord_service_type = md_ServiceRecord.Fields().ByName("service_type") fd_ServiceRecord_controller = md_ServiceRecord.Fields().ByName("controller") fd_ServiceRecord_origin_uri = md_ServiceRecord.Fields().ByName("origin_uri") fd_ServiceRecord_description = md_ServiceRecord.Fields().ByName("description") fd_ServiceRecord_service_endpoints = md_ServiceRecord.Fields().ByName("service_endpoints") fd_ServiceRecord_permissions = md_ServiceRecord.Fields().ByName("permissions") fd_ServiceRecord_metadata = md_ServiceRecord.Fields().ByName("metadata") } var _ protoreflect.Message = (*fastReflection_ServiceRecord)(nil) type fastReflection_ServiceRecord ServiceRecord func (x *ServiceRecord) ProtoReflect() protoreflect.Message { return (*fastReflection_ServiceRecord)(x) } func (x *ServiceRecord) slowProtoReflect() protoreflect.Message { mi := &file_did_v1_state_proto_msgTypes[4] 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_ServiceRecord_messageType fastReflection_ServiceRecord_messageType var _ protoreflect.MessageType = fastReflection_ServiceRecord_messageType{} type fastReflection_ServiceRecord_messageType struct{} func (x fastReflection_ServiceRecord_messageType) Zero() protoreflect.Message { return (*fastReflection_ServiceRecord)(nil) } func (x fastReflection_ServiceRecord_messageType) New() protoreflect.Message { return new(fastReflection_ServiceRecord) } func (x fastReflection_ServiceRecord_messageType) Descriptor() protoreflect.MessageDescriptor { return md_ServiceRecord } // Descriptor returns message descriptor, which contains only the protobuf // type information for the message. func (x *fastReflection_ServiceRecord) Descriptor() protoreflect.MessageDescriptor { return md_ServiceRecord } // 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_ServiceRecord) Type() protoreflect.MessageType { return _fastReflection_ServiceRecord_messageType } // New returns a newly allocated and mutable empty message. func (x *fastReflection_ServiceRecord) New() protoreflect.Message { return new(fastReflection_ServiceRecord) } // Interface unwraps the message reflection interface and // returns the underlying ProtoMessage interface. func (x *fastReflection_ServiceRecord) Interface() protoreflect.ProtoMessage { return (*ServiceRecord)(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_ServiceRecord) Range(f func(protoreflect.FieldDescriptor, protoreflect.Value) bool) { if x.Id != "" { value := protoreflect.ValueOfString(x.Id) if !f(fd_ServiceRecord_id, value) { return } } if x.ServiceType != "" { value := protoreflect.ValueOfString(x.ServiceType) if !f(fd_ServiceRecord_service_type, value) { return } } if x.Controller != "" { value := protoreflect.ValueOfString(x.Controller) if !f(fd_ServiceRecord_controller, value) { return } } if x.OriginUri != "" { value := protoreflect.ValueOfString(x.OriginUri) if !f(fd_ServiceRecord_origin_uri, value) { return } } if x.Description != "" { value := protoreflect.ValueOfString(x.Description) if !f(fd_ServiceRecord_description, value) { return } } if len(x.ServiceEndpoints) != 0 { value := protoreflect.ValueOfMap(&_ServiceRecord_6_map{m: &x.ServiceEndpoints}) if !f(fd_ServiceRecord_service_endpoints, value) { return } } if x.Permissions != nil { value := protoreflect.ValueOfMessage(x.Permissions.ProtoReflect()) if !f(fd_ServiceRecord_permissions, value) { return } } if x.Metadata != nil { value := protoreflect.ValueOfMessage(x.Metadata.ProtoReflect()) if !f(fd_ServiceRecord_metadata, 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_ServiceRecord) Has(fd protoreflect.FieldDescriptor) bool { switch fd.FullName() { case "did.v1.ServiceRecord.id": return x.Id != "" case "did.v1.ServiceRecord.service_type": return x.ServiceType != "" case "did.v1.ServiceRecord.controller": return x.Controller != "" case "did.v1.ServiceRecord.origin_uri": return x.OriginUri != "" case "did.v1.ServiceRecord.description": return x.Description != "" case "did.v1.ServiceRecord.service_endpoints": return len(x.ServiceEndpoints) != 0 case "did.v1.ServiceRecord.permissions": return x.Permissions != nil case "did.v1.ServiceRecord.metadata": return x.Metadata != nil default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.ServiceRecord")) } panic(fmt.Errorf("message did.v1.ServiceRecord 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_ServiceRecord) Clear(fd protoreflect.FieldDescriptor) { switch fd.FullName() { case "did.v1.ServiceRecord.id": x.Id = "" case "did.v1.ServiceRecord.service_type": x.ServiceType = "" case "did.v1.ServiceRecord.controller": x.Controller = "" case "did.v1.ServiceRecord.origin_uri": x.OriginUri = "" case "did.v1.ServiceRecord.description": x.Description = "" case "did.v1.ServiceRecord.service_endpoints": x.ServiceEndpoints = nil case "did.v1.ServiceRecord.permissions": x.Permissions = nil case "did.v1.ServiceRecord.metadata": x.Metadata = nil default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.ServiceRecord")) } panic(fmt.Errorf("message did.v1.ServiceRecord 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_ServiceRecord) Get(descriptor protoreflect.FieldDescriptor) protoreflect.Value { switch descriptor.FullName() { case "did.v1.ServiceRecord.id": value := x.Id return protoreflect.ValueOfString(value) case "did.v1.ServiceRecord.service_type": value := x.ServiceType return protoreflect.ValueOfString(value) case "did.v1.ServiceRecord.controller": value := x.Controller return protoreflect.ValueOfString(value) case "did.v1.ServiceRecord.origin_uri": value := x.OriginUri return protoreflect.ValueOfString(value) case "did.v1.ServiceRecord.description": value := x.Description return protoreflect.ValueOfString(value) case "did.v1.ServiceRecord.service_endpoints": if len(x.ServiceEndpoints) == 0 { return protoreflect.ValueOfMap(&_ServiceRecord_6_map{}) } mapValue := &_ServiceRecord_6_map{m: &x.ServiceEndpoints} return protoreflect.ValueOfMap(mapValue) case "did.v1.ServiceRecord.permissions": value := x.Permissions return protoreflect.ValueOfMessage(value.ProtoReflect()) case "did.v1.ServiceRecord.metadata": value := x.Metadata return protoreflect.ValueOfMessage(value.ProtoReflect()) default: if descriptor.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.ServiceRecord")) } panic(fmt.Errorf("message did.v1.ServiceRecord 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_ServiceRecord) Set(fd protoreflect.FieldDescriptor, value protoreflect.Value) { switch fd.FullName() { case "did.v1.ServiceRecord.id": x.Id = value.Interface().(string) case "did.v1.ServiceRecord.service_type": x.ServiceType = value.Interface().(string) case "did.v1.ServiceRecord.controller": x.Controller = value.Interface().(string) case "did.v1.ServiceRecord.origin_uri": x.OriginUri = value.Interface().(string) case "did.v1.ServiceRecord.description": x.Description = value.Interface().(string) case "did.v1.ServiceRecord.service_endpoints": mv := value.Map() cmv := mv.(*_ServiceRecord_6_map) x.ServiceEndpoints = *cmv.m case "did.v1.ServiceRecord.permissions": x.Permissions = value.Message().Interface().(*Permissions) case "did.v1.ServiceRecord.metadata": x.Metadata = value.Message().Interface().(*Metadata) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.ServiceRecord")) } panic(fmt.Errorf("message did.v1.ServiceRecord 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_ServiceRecord) Mutable(fd protoreflect.FieldDescriptor) protoreflect.Value { switch fd.FullName() { case "did.v1.ServiceRecord.service_endpoints": if x.ServiceEndpoints == nil { x.ServiceEndpoints = make(map[string]string) } value := &_ServiceRecord_6_map{m: &x.ServiceEndpoints} return protoreflect.ValueOfMap(value) case "did.v1.ServiceRecord.permissions": if x.Permissions == nil { x.Permissions = new(Permissions) } return protoreflect.ValueOfMessage(x.Permissions.ProtoReflect()) case "did.v1.ServiceRecord.metadata": if x.Metadata == nil { x.Metadata = new(Metadata) } return protoreflect.ValueOfMessage(x.Metadata.ProtoReflect()) case "did.v1.ServiceRecord.id": panic(fmt.Errorf("field id of message did.v1.ServiceRecord is not mutable")) case "did.v1.ServiceRecord.service_type": panic(fmt.Errorf("field service_type of message did.v1.ServiceRecord is not mutable")) case "did.v1.ServiceRecord.controller": panic(fmt.Errorf("field controller of message did.v1.ServiceRecord is not mutable")) case "did.v1.ServiceRecord.origin_uri": panic(fmt.Errorf("field origin_uri of message did.v1.ServiceRecord is not mutable")) case "did.v1.ServiceRecord.description": panic(fmt.Errorf("field description of message did.v1.ServiceRecord is not mutable")) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.ServiceRecord")) } panic(fmt.Errorf("message did.v1.ServiceRecord 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_ServiceRecord) NewField(fd protoreflect.FieldDescriptor) protoreflect.Value { switch fd.FullName() { case "did.v1.ServiceRecord.id": return protoreflect.ValueOfString("") case "did.v1.ServiceRecord.service_type": return protoreflect.ValueOfString("") case "did.v1.ServiceRecord.controller": return protoreflect.ValueOfString("") case "did.v1.ServiceRecord.origin_uri": return protoreflect.ValueOfString("") case "did.v1.ServiceRecord.description": return protoreflect.ValueOfString("") case "did.v1.ServiceRecord.service_endpoints": m := make(map[string]string) return protoreflect.ValueOfMap(&_ServiceRecord_6_map{m: &m}) case "did.v1.ServiceRecord.permissions": m := new(Permissions) return protoreflect.ValueOfMessage(m.ProtoReflect()) case "did.v1.ServiceRecord.metadata": m := new(Metadata) return protoreflect.ValueOfMessage(m.ProtoReflect()) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: did.v1.ServiceRecord")) } panic(fmt.Errorf("message did.v1.ServiceRecord 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_ServiceRecord) WhichOneof(d protoreflect.OneofDescriptor) protoreflect.FieldDescriptor { switch d.FullName() { default: panic(fmt.Errorf("%s is not a oneof field in did.v1.ServiceRecord", 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_ServiceRecord) 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_ServiceRecord) 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_ServiceRecord) 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_ServiceRecord) ProtoMethods() *protoiface.Methods { size := func(input protoiface.SizeInput) protoiface.SizeOutput { x := input.Message.Interface().(*ServiceRecord) 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.Id) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.ServiceType) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.Controller) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.OriginUri) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.Description) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } if len(x.ServiceEndpoints) > 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.ServiceEndpoints)) for k := range x.ServiceEndpoints { sortme = append(sortme, k) } sort.Strings(sortme) for _, k := range sortme { v := x.ServiceEndpoints[k] SiZeMaP(k, v) } } else { for k, v := range x.ServiceEndpoints { SiZeMaP(k, v) } } } if x.Permissions != nil { l = options.Size(x.Permissions) n += 1 + l + runtime.Sov(uint64(l)) } if x.Metadata != nil { l = options.Size(x.Metadata) 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().(*ServiceRecord) 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.Metadata != nil { encoded, err := options.Marshal(x.Metadata) 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] = 0x42 } if x.Permissions != nil { encoded, err := options.Marshal(x.Permissions) 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] = 0x3a } if len(x.ServiceEndpoints) > 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 { keysForServiceEndpoints := make([]string, 0, len(x.ServiceEndpoints)) for k := range x.ServiceEndpoints { keysForServiceEndpoints = append(keysForServiceEndpoints, string(k)) } sort.Slice(keysForServiceEndpoints, func(i, j int) bool { return keysForServiceEndpoints[i] < keysForServiceEndpoints[j] }) for iNdEx := len(keysForServiceEndpoints) - 1; iNdEx >= 0; iNdEx-- { v := x.ServiceEndpoints[string(keysForServiceEndpoints[iNdEx])] out, err := MaRsHaLmAp(keysForServiceEndpoints[iNdEx], v) if err != nil { return out, err } } } else { for k := range x.ServiceEndpoints { v := x.ServiceEndpoints[k] out, err := MaRsHaLmAp(k, v) if err != nil { return out, err } } } } if len(x.Description) > 0 { i -= len(x.Description) copy(dAtA[i:], x.Description) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.Description))) i-- dAtA[i] = 0x2a } if len(x.OriginUri) > 0 { i -= len(x.OriginUri) copy(dAtA[i:], x.OriginUri) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.OriginUri))) i-- dAtA[i] = 0x22 } if len(x.Controller) > 0 { i -= len(x.Controller) copy(dAtA[i:], x.Controller) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.Controller))) i-- dAtA[i] = 0x1a } if len(x.ServiceType) > 0 { i -= len(x.ServiceType) copy(dAtA[i:], x.ServiceType) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.ServiceType))) i-- dAtA[i] = 0x12 } if len(x.Id) > 0 { i -= len(x.Id) copy(dAtA[i:], x.Id) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.Id))) 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().(*ServiceRecord) 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: ServiceRecord: wiretype end group for non-group") } if fieldNum <= 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: ServiceRecord: 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 Id", 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.Id = 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 ServiceType", 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.ServiceType = 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 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 4: if wireType != 2 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field OriginUri", 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.OriginUri = 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 Description", 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.Description = 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 ServiceEndpoints", 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.ServiceEndpoints == nil { x.ServiceEndpoints = 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.ServiceEndpoints[mapkey] = mapvalue iNdEx = postIndex case 7: if wireType != 2 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field Permissions", 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.Permissions == nil { x.Permissions = &Permissions{} } if err := options.Unmarshal(dAtA[iNdEx:postIndex], x.Permissions); err != nil { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, err } 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 = &Metadata{} } if err := options.Unmarshal(dAtA[iNdEx:postIndex], x.Metadata); 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, } } // 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) ) // Authentication represents strongly created credentials (e.g., Passkeys, SSH, GPG, Native Secure Enclaave) type Authentication struct { state protoimpl.MessageState sizeCache protoimpl.SizeCache unknownFields protoimpl.UnknownFields // The unique identifier of the attestation Id string `protobuf:"bytes,1,opt,name=id,proto3" json:"id,omitempty"` // The controller of the attestation Controller string `protobuf:"bytes,2,opt,name=controller,proto3" json:"controller,omitempty"` // Key type (e.g., "passkey", "ssh", "gpg", "native-secure-enclave") PublicKey *PubKey `protobuf:"bytes,3,opt,name=public_key,json=publicKey,proto3" json:"public_key,omitempty"` // The origin of the attestation Origin string `protobuf:"bytes,4,opt,name=origin,proto3" json:"origin,omitempty"` // The subject of the attestation Subject string `protobuf:"bytes,5,opt,name=subject,proto3" json:"subject,omitempty"` // The value of the linked identifier CredentialId []byte `protobuf:"bytes,6,opt,name=credential_id,json=credentialId,proto3" json:"credential_id,omitempty"` // The credential label CredentialLabel string `protobuf:"bytes,7,opt,name=credential_label,json=credentialLabel,proto3" json:"credential_label,omitempty"` // The display label of the attestation CredentialTransport []string `protobuf:"bytes,8,rep,name=credential_transport,json=credentialTransport,proto3" json:"credential_transport,omitempty"` // The attestationtype of the attestation AttestationType string `protobuf:"bytes,9,opt,name=attestation_type,json=attestationType,proto3" json:"attestation_type,omitempty"` // Metadata is optional additional information about the assertion Metadata *Metadata `protobuf:"bytes,10,opt,name=metadata,proto3" json:"metadata,omitempty"` } 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) GetId() string { if x != nil { return x.Id } return "" } func (x *Authentication) GetController() string { if x != nil { return x.Controller } return "" } func (x *Authentication) GetPublicKey() *PubKey { if x != nil { return x.PublicKey } return nil } func (x *Authentication) GetOrigin() string { if x != nil { return x.Origin } return "" } func (x *Authentication) GetSubject() string { if x != nil { return x.Subject } return "" } func (x *Authentication) GetCredentialId() []byte { if x != nil { return x.CredentialId } return nil } func (x *Authentication) GetCredentialLabel() string { if x != nil { return x.CredentialLabel } return "" } func (x *Authentication) GetCredentialTransport() []string { if x != nil { return x.CredentialTransport } return nil } func (x *Authentication) GetAttestationType() string { if x != nil { return x.AttestationType } return "" } func (x *Authentication) GetMetadata() *Metadata { if x != nil { return x.Metadata } return nil } // Assertion represents linked identifiers (e.g., Crypto Accounts, Github, Email, Phone) type Assertion struct { state protoimpl.MessageState sizeCache protoimpl.SizeCache unknownFields protoimpl.UnknownFields // The unique identifier of the attestation Id string `protobuf:"bytes,1,opt,name=id,proto3" json:"id,omitempty"` // The type of the linked identifier (e.g., "crypto", "github", "email", "phone") Controller string `protobuf:"bytes,2,opt,name=controller,proto3" json:"controller,omitempty"` // The value of the linked identifier PublicKey *PubKey `protobuf:"bytes,3,opt,name=public_key,json=publicKey,proto3" json:"public_key,omitempty"` // The origin of the attestation Origin string `protobuf:"bytes,4,opt,name=origin,proto3" json:"origin,omitempty"` // The subject of the attestation Subject string `protobuf:"bytes,5,opt,name=subject,proto3" json:"subject,omitempty"` // The controller of the attestation Metadata *Metadata `protobuf:"bytes,6,opt,name=metadata,proto3" json:"metadata,omitempty"` } func (x *Assertion) Reset() { *x = Assertion{} if protoimpl.UnsafeEnabled { mi := &file_did_v1_state_proto_msgTypes[1] ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) ms.StoreMessageInfo(mi) } } func (x *Assertion) String() string { return protoimpl.X.MessageStringOf(x) } func (*Assertion) ProtoMessage() {} // Deprecated: Use Assertion.ProtoReflect.Descriptor instead. func (*Assertion) Descriptor() ([]byte, []int) { return file_did_v1_state_proto_rawDescGZIP(), []int{1} } func (x *Assertion) GetId() string { if x != nil { return x.Id } return "" } func (x *Assertion) GetController() string { if x != nil { return x.Controller } return "" } func (x *Assertion) GetPublicKey() *PubKey { if x != nil { return x.PublicKey } return nil } func (x *Assertion) GetOrigin() string { if x != nil { return x.Origin } return "" } func (x *Assertion) GetSubject() string { if x != nil { return x.Subject } return "" } func (x *Assertion) GetMetadata() *Metadata { if x != nil { return x.Metadata } return nil } // Controller represents a Sonr DWN Vault type Controller struct { state protoimpl.MessageState sizeCache protoimpl.SizeCache unknownFields protoimpl.UnknownFields // The unique identifier of the controller Id string `protobuf:"bytes,1,opt,name=id,proto3" json:"id,omitempty"` // The DID of the controller Address string `protobuf:"bytes,2,opt,name=address,proto3" json:"address,omitempty"` // Aliases of the controller Aliases []string `protobuf:"bytes,3,rep,name=aliases,proto3" json:"aliases,omitempty"` // PubKey is the verification method PublicKey *PubKey `protobuf:"bytes,4,opt,name=public_key,json=publicKey,proto3" json:"public_key,omitempty"` // The vault address or identifier VaultCid string `protobuf:"bytes,5,opt,name=vault_cid,json=vaultCid,proto3" json:"vault_cid,omitempty"` } func (x *Controller) Reset() { *x = Controller{} if protoimpl.UnsafeEnabled { mi := &file_did_v1_state_proto_msgTypes[2] 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{2} } func (x *Controller) GetId() string { if x != nil { return x.Id } return "" } func (x *Controller) GetAddress() string { if x != nil { return x.Address } return "" } func (x *Controller) GetAliases() []string { if x != nil { return x.Aliases } return nil } func (x *Controller) GetPublicKey() *PubKey { if x != nil { return x.PublicKey } return nil } func (x *Controller) GetVaultCid() string { if x != nil { return x.VaultCid } return "" } // Delegation represents IBC Account Controllers for various chains (e.g., ETH, BTC) type Delegation struct { state protoimpl.MessageState sizeCache protoimpl.SizeCache unknownFields protoimpl.UnknownFields // The unique identifier of the delegation Id string `protobuf:"bytes,1,opt,name=id,proto3" json:"id,omitempty"` // The Decentralized Identifier of the delegated account Controller string `protobuf:"bytes,2,opt,name=controller,proto3" json:"controller,omitempty"` // Resolved from module parameters ChainIndex string `protobuf:"bytes,3,opt,name=chain_index,json=chainIndex,proto3" json:"chain_index,omitempty"` // The delegation proof or verification method PublicKey *PubKey `protobuf:"bytes,4,opt,name=public_key,json=publicKey,proto3" json:"public_key,omitempty"` // The Account Address AccountAddress string `protobuf:"bytes,5,opt,name=account_address,json=accountAddress,proto3" json:"account_address,omitempty"` // The Account label AccountLabel string `protobuf:"bytes,6,opt,name=account_label,json=accountLabel,proto3" json:"account_label,omitempty"` // The Chain ID ChainId string `protobuf:"bytes,7,opt,name=chain_id,json=chainId,proto3" json:"chain_id,omitempty"` } func (x *Delegation) Reset() { *x = Delegation{} if protoimpl.UnsafeEnabled { mi := &file_did_v1_state_proto_msgTypes[3] ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) ms.StoreMessageInfo(mi) } } func (x *Delegation) String() string { return protoimpl.X.MessageStringOf(x) } func (*Delegation) ProtoMessage() {} // Deprecated: Use Delegation.ProtoReflect.Descriptor instead. func (*Delegation) Descriptor() ([]byte, []int) { return file_did_v1_state_proto_rawDescGZIP(), []int{3} } func (x *Delegation) GetId() string { if x != nil { return x.Id } return "" } func (x *Delegation) GetController() string { if x != nil { return x.Controller } return "" } func (x *Delegation) GetChainIndex() string { if x != nil { return x.ChainIndex } return "" } func (x *Delegation) GetPublicKey() *PubKey { if x != nil { return x.PublicKey } return nil } func (x *Delegation) GetAccountAddress() string { if x != nil { return x.AccountAddress } return "" } func (x *Delegation) GetAccountLabel() string { if x != nil { return x.AccountLabel } return "" } func (x *Delegation) GetChainId() string { if x != nil { return x.ChainId } return "" } // ServiceRecord represents a decentralized service in a DID Document type ServiceRecord struct { state protoimpl.MessageState sizeCache protoimpl.SizeCache unknownFields protoimpl.UnknownFields // The ID of the service Id string `protobuf:"bytes,1,opt,name=id,proto3" json:"id,omitempty"` // The type of the service ServiceType string `protobuf:"bytes,2,opt,name=service_type,json=serviceType,proto3" json:"service_type,omitempty"` // The controller DID of the service Controller string `protobuf:"bytes,3,opt,name=controller,proto3" json:"controller,omitempty"` // The domain name of the service OriginUri string `protobuf:"bytes,4,opt,name=origin_uri,json=originUri,proto3" json:"origin_uri,omitempty"` // The description of the service Description string `protobuf:"bytes,5,opt,name=description,proto3" json:"description,omitempty"` // The service endpoint ServiceEndpoints map[string]string `protobuf:"bytes,6,rep,name=service_endpoints,json=serviceEndpoints,proto3" json:"service_endpoints,omitempty" protobuf_key:"bytes,1,opt,name=key,proto3" protobuf_val:"bytes,2,opt,name=value,proto3"` // Scopes is the Authorization Grants of the service Permissions *Permissions `protobuf:"bytes,7,opt,name=permissions,proto3" json:"permissions,omitempty"` // Metadata is optional additional information about the service Metadata *Metadata `protobuf:"bytes,8,opt,name=metadata,proto3" json:"metadata,omitempty"` } func (x *ServiceRecord) Reset() { *x = ServiceRecord{} if protoimpl.UnsafeEnabled { mi := &file_did_v1_state_proto_msgTypes[4] ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) ms.StoreMessageInfo(mi) } } func (x *ServiceRecord) String() string { return protoimpl.X.MessageStringOf(x) } func (*ServiceRecord) ProtoMessage() {} // Deprecated: Use ServiceRecord.ProtoReflect.Descriptor instead. func (*ServiceRecord) Descriptor() ([]byte, []int) { return file_did_v1_state_proto_rawDescGZIP(), []int{4} } func (x *ServiceRecord) GetId() string { if x != nil { return x.Id } return "" } func (x *ServiceRecord) GetServiceType() string { if x != nil { return x.ServiceType } return "" } func (x *ServiceRecord) GetController() string { if x != nil { return x.Controller } return "" } func (x *ServiceRecord) GetOriginUri() string { if x != nil { return x.OriginUri } return "" } func (x *ServiceRecord) GetDescription() string { if x != nil { return x.Description } return "" } func (x *ServiceRecord) GetServiceEndpoints() map[string]string { if x != nil { return x.ServiceEndpoints } return nil } func (x *ServiceRecord) GetPermissions() *Permissions { if x != nil { return x.Permissions } return nil } func (x *ServiceRecord) GetMetadata() *Metadata { if x != nil { return x.Metadata } return nil } var File_did_v1_state_proto protoreflect.FileDescriptor var file_did_v1_state_proto_rawDesc = []byte{ 0x0a, 0x12, 0x64, 0x69, 0x64, 0x2f, 0x76, 0x31, 0x2f, 0x73, 0x74, 0x61, 0x74, 0x65, 0x2e, 0x70, 0x72, 0x6f, 0x74, 0x6f, 0x12, 0x06, 0x64, 0x69, 0x64, 0x2e, 0x76, 0x31, 0x1a, 0x17, 0x63, 0x6f, 0x73, 0x6d, 0x6f, 0x73, 0x2f, 0x6f, 0x72, 0x6d, 0x2f, 0x76, 0x31, 0x2f, 0x6f, 0x72, 0x6d, 0x2e, 0x70, 0x72, 0x6f, 0x74, 0x6f, 0x1a, 0x14, 0x64, 0x69, 0x64, 0x2f, 0x76, 0x31, 0x2f, 0x67, 0x65, 0x6e, 0x65, 0x73, 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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 } var file_did_v1_state_proto_msgTypes = make([]protoimpl.MessageInfo, 6) var file_did_v1_state_proto_goTypes = []interface{}{ (*Authentication)(nil), // 0: did.v1.Authentication (*Assertion)(nil), // 1: did.v1.Assertion (*Controller)(nil), // 2: did.v1.Controller (*Delegation)(nil), // 3: did.v1.Delegation (*ServiceRecord)(nil), // 4: did.v1.ServiceRecord nil, // 5: did.v1.ServiceRecord.ServiceEndpointsEntry (*PubKey)(nil), // 6: did.v1.PubKey (*Metadata)(nil), // 7: did.v1.Metadata (*Permissions)(nil), // 8: did.v1.Permissions } var file_did_v1_state_proto_depIdxs = []int32{ 6, // 0: did.v1.Authentication.public_key:type_name -> did.v1.PubKey 7, // 1: did.v1.Authentication.metadata:type_name -> did.v1.Metadata 6, // 2: did.v1.Assertion.public_key:type_name -> did.v1.PubKey 7, // 3: did.v1.Assertion.metadata:type_name -> did.v1.Metadata 6, // 4: did.v1.Controller.public_key:type_name -> did.v1.PubKey 6, // 5: did.v1.Delegation.public_key:type_name -> did.v1.PubKey 5, // 6: did.v1.ServiceRecord.service_endpoints:type_name -> did.v1.ServiceRecord.ServiceEndpointsEntry 8, // 7: did.v1.ServiceRecord.permissions:type_name -> did.v1.Permissions 7, // 8: did.v1.ServiceRecord.metadata:type_name -> did.v1.Metadata 9, // [9:9] is the sub-list for method output_type 9, // [9:9] is the sub-list for method input_type 9, // [9:9] is the sub-list for extension type_name 9, // [9:9] is the sub-list for extension extendee 0, // [0:9] is the sub-list for field type_name } func init() { file_did_v1_state_proto_init() } func file_did_v1_state_proto_init() { if File_did_v1_state_proto != nil { return } file_did_v1_genesis_proto_init() file_did_v1_models_proto_init() if !protoimpl.UnsafeEnabled { file_did_v1_state_proto_msgTypes[0].Exporter = func(v interface{}, i int) interface{} { switch v := v.(*Authentication); 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[1].Exporter = func(v interface{}, i int) interface{} { switch v := v.(*Assertion); 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[2].Exporter = func(v interface{}, i int) interface{} { switch v := v.(*Controller); 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[3].Exporter = func(v interface{}, i int) interface{} { switch v := v.(*Delegation); 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[4].Exporter = func(v interface{}, i int) interface{} { switch v := v.(*ServiceRecord); i { case 0: return &v.state case 1: return 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