// Code generated by protoc-gen-go-pulsar. DO NOT EDIT. package dexv1 import ( fmt "fmt" io "io" reflect "reflect" sync "sync" v1beta1 "cosmossdk.io/api/cosmos/base/v1beta1" runtime "github.com/cosmos/cosmos-proto/runtime" _ "github.com/cosmos/gogoproto/gogoproto" protoreflect "google.golang.org/protobuf/reflect/protoreflect" protoiface "google.golang.org/protobuf/runtime/protoiface" protoimpl "google.golang.org/protobuf/runtime/protoimpl" ) var ( md_EventDEXAccountRegistered protoreflect.MessageDescriptor fd_EventDEXAccountRegistered_did protoreflect.FieldDescriptor fd_EventDEXAccountRegistered_connection_id protoreflect.FieldDescriptor fd_EventDEXAccountRegistered_port_id protoreflect.FieldDescriptor fd_EventDEXAccountRegistered_account_address protoreflect.FieldDescriptor ) func init() { file_dex_v1_events_proto_init() md_EventDEXAccountRegistered = File_dex_v1_events_proto.Messages().ByName("EventDEXAccountRegistered") fd_EventDEXAccountRegistered_did = md_EventDEXAccountRegistered.Fields().ByName("did") fd_EventDEXAccountRegistered_connection_id = md_EventDEXAccountRegistered.Fields().ByName("connection_id") fd_EventDEXAccountRegistered_port_id = md_EventDEXAccountRegistered.Fields().ByName("port_id") fd_EventDEXAccountRegistered_account_address = md_EventDEXAccountRegistered.Fields().ByName("account_address") } var _ protoreflect.Message = (*fastReflection_EventDEXAccountRegistered)(nil) type fastReflection_EventDEXAccountRegistered EventDEXAccountRegistered func (x *EventDEXAccountRegistered) ProtoReflect() protoreflect.Message { return (*fastReflection_EventDEXAccountRegistered)(x) } func (x *EventDEXAccountRegistered) slowProtoReflect() protoreflect.Message { mi := &file_dex_v1_events_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_EventDEXAccountRegistered_messageType fastReflection_EventDEXAccountRegistered_messageType var _ protoreflect.MessageType = fastReflection_EventDEXAccountRegistered_messageType{} type fastReflection_EventDEXAccountRegistered_messageType struct{} func (x fastReflection_EventDEXAccountRegistered_messageType) Zero() protoreflect.Message { return (*fastReflection_EventDEXAccountRegistered)(nil) } func (x fastReflection_EventDEXAccountRegistered_messageType) New() protoreflect.Message { return new(fastReflection_EventDEXAccountRegistered) } func (x fastReflection_EventDEXAccountRegistered_messageType) Descriptor() protoreflect.MessageDescriptor { return md_EventDEXAccountRegistered } // Descriptor returns message descriptor, which contains only the protobuf // type information for the message. func (x *fastReflection_EventDEXAccountRegistered) Descriptor() protoreflect.MessageDescriptor { return md_EventDEXAccountRegistered } // 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_EventDEXAccountRegistered) Type() protoreflect.MessageType { return _fastReflection_EventDEXAccountRegistered_messageType } // New returns a newly allocated and mutable empty message. func (x *fastReflection_EventDEXAccountRegistered) New() protoreflect.Message { return new(fastReflection_EventDEXAccountRegistered) } // Interface unwraps the message reflection interface and // returns the underlying ProtoMessage interface. func (x *fastReflection_EventDEXAccountRegistered) Interface() protoreflect.ProtoMessage { return (*EventDEXAccountRegistered)(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_EventDEXAccountRegistered) Range(f func(protoreflect.FieldDescriptor, protoreflect.Value) bool) { if x.Did != "" { value := protoreflect.ValueOfString(x.Did) if !f(fd_EventDEXAccountRegistered_did, value) { return } } if x.ConnectionId != "" { value := protoreflect.ValueOfString(x.ConnectionId) if !f(fd_EventDEXAccountRegistered_connection_id, value) { return } } if x.PortId != "" { value := protoreflect.ValueOfString(x.PortId) if !f(fd_EventDEXAccountRegistered_port_id, value) { return } } if x.AccountAddress != "" { value := protoreflect.ValueOfString(x.AccountAddress) if !f(fd_EventDEXAccountRegistered_account_address, 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_EventDEXAccountRegistered) Has(fd protoreflect.FieldDescriptor) bool { switch fd.FullName() { case "dex.v1.EventDEXAccountRegistered.did": return x.Did != "" case "dex.v1.EventDEXAccountRegistered.connection_id": return x.ConnectionId != "" case "dex.v1.EventDEXAccountRegistered.port_id": return x.PortId != "" case "dex.v1.EventDEXAccountRegistered.account_address": return x.AccountAddress != "" default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventDEXAccountRegistered")) } panic(fmt.Errorf("message dex.v1.EventDEXAccountRegistered 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_EventDEXAccountRegistered) Clear(fd protoreflect.FieldDescriptor) { switch fd.FullName() { case "dex.v1.EventDEXAccountRegistered.did": x.Did = "" case "dex.v1.EventDEXAccountRegistered.connection_id": x.ConnectionId = "" case "dex.v1.EventDEXAccountRegistered.port_id": x.PortId = "" case "dex.v1.EventDEXAccountRegistered.account_address": x.AccountAddress = "" default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventDEXAccountRegistered")) } panic(fmt.Errorf("message dex.v1.EventDEXAccountRegistered 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_EventDEXAccountRegistered) Get(descriptor protoreflect.FieldDescriptor) protoreflect.Value { switch descriptor.FullName() { case "dex.v1.EventDEXAccountRegistered.did": value := x.Did return protoreflect.ValueOfString(value) case "dex.v1.EventDEXAccountRegistered.connection_id": value := x.ConnectionId return protoreflect.ValueOfString(value) case "dex.v1.EventDEXAccountRegistered.port_id": value := x.PortId return protoreflect.ValueOfString(value) case "dex.v1.EventDEXAccountRegistered.account_address": value := x.AccountAddress return protoreflect.ValueOfString(value) default: if descriptor.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventDEXAccountRegistered")) } panic(fmt.Errorf("message dex.v1.EventDEXAccountRegistered 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_EventDEXAccountRegistered) Set(fd protoreflect.FieldDescriptor, value protoreflect.Value) { switch fd.FullName() { case "dex.v1.EventDEXAccountRegistered.did": x.Did = value.Interface().(string) case "dex.v1.EventDEXAccountRegistered.connection_id": x.ConnectionId = value.Interface().(string) case "dex.v1.EventDEXAccountRegistered.port_id": x.PortId = value.Interface().(string) case "dex.v1.EventDEXAccountRegistered.account_address": x.AccountAddress = value.Interface().(string) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventDEXAccountRegistered")) } panic(fmt.Errorf("message dex.v1.EventDEXAccountRegistered 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_EventDEXAccountRegistered) Mutable(fd protoreflect.FieldDescriptor) protoreflect.Value { switch fd.FullName() { case "dex.v1.EventDEXAccountRegistered.did": panic(fmt.Errorf("field did of message dex.v1.EventDEXAccountRegistered is not mutable")) case "dex.v1.EventDEXAccountRegistered.connection_id": panic(fmt.Errorf("field connection_id of message dex.v1.EventDEXAccountRegistered is not mutable")) case "dex.v1.EventDEXAccountRegistered.port_id": panic(fmt.Errorf("field port_id of message dex.v1.EventDEXAccountRegistered is not mutable")) case "dex.v1.EventDEXAccountRegistered.account_address": panic(fmt.Errorf("field account_address of message dex.v1.EventDEXAccountRegistered is not mutable")) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventDEXAccountRegistered")) } panic(fmt.Errorf("message dex.v1.EventDEXAccountRegistered 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_EventDEXAccountRegistered) NewField(fd protoreflect.FieldDescriptor) protoreflect.Value { switch fd.FullName() { case "dex.v1.EventDEXAccountRegistered.did": return protoreflect.ValueOfString("") case "dex.v1.EventDEXAccountRegistered.connection_id": return protoreflect.ValueOfString("") case "dex.v1.EventDEXAccountRegistered.port_id": return protoreflect.ValueOfString("") case "dex.v1.EventDEXAccountRegistered.account_address": return protoreflect.ValueOfString("") default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventDEXAccountRegistered")) } panic(fmt.Errorf("message dex.v1.EventDEXAccountRegistered 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_EventDEXAccountRegistered) WhichOneof(d protoreflect.OneofDescriptor) protoreflect.FieldDescriptor { switch d.FullName() { default: panic(fmt.Errorf("%s is not a oneof field in dex.v1.EventDEXAccountRegistered", 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_EventDEXAccountRegistered) 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_EventDEXAccountRegistered) 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_EventDEXAccountRegistered) 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_EventDEXAccountRegistered) ProtoMethods() *protoiface.Methods { size := func(input protoiface.SizeInput) protoiface.SizeOutput { x := input.Message.Interface().(*EventDEXAccountRegistered) 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.Did) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.ConnectionId) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.PortId) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.AccountAddress) 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().(*EventDEXAccountRegistered) 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.AccountAddress) > 0 { i -= len(x.AccountAddress) copy(dAtA[i:], x.AccountAddress) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.AccountAddress))) i-- dAtA[i] = 0x22 } if len(x.PortId) > 0 { i -= len(x.PortId) copy(dAtA[i:], x.PortId) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.PortId))) i-- dAtA[i] = 0x1a } if len(x.ConnectionId) > 0 { i -= len(x.ConnectionId) copy(dAtA[i:], x.ConnectionId) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.ConnectionId))) i-- dAtA[i] = 0x12 } if len(x.Did) > 0 { i -= len(x.Did) copy(dAtA[i:], x.Did) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.Did))) 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().(*EventDEXAccountRegistered) 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: EventDEXAccountRegistered: wiretype end group for non-group") } if fieldNum <= 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: EventDEXAccountRegistered: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field Did", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { if shift >= 64 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrIntOverflow } if iNdEx >= l { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, io.ErrUnexpectedEOF } b := dAtA[iNdEx] iNdEx++ stringLen |= uint64(b&0x7F) << shift if b < 0x80 { break } } intStringLen := int(stringLen) if intStringLen < 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrInvalidLength } postIndex := iNdEx + intStringLen if postIndex < 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrInvalidLength } if postIndex > l { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, io.ErrUnexpectedEOF } x.Did = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex case 2: if wireType != 2 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field ConnectionId", 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.ConnectionId = 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 PortId", 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.PortId = 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 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 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_EventSwapExecuted protoreflect.MessageDescriptor fd_EventSwapExecuted_did protoreflect.FieldDescriptor fd_EventSwapExecuted_connection_id protoreflect.FieldDescriptor fd_EventSwapExecuted_source protoreflect.FieldDescriptor fd_EventSwapExecuted_target protoreflect.FieldDescriptor fd_EventSwapExecuted_tx_hash protoreflect.FieldDescriptor fd_EventSwapExecuted_sequence protoreflect.FieldDescriptor ) func init() { file_dex_v1_events_proto_init() md_EventSwapExecuted = File_dex_v1_events_proto.Messages().ByName("EventSwapExecuted") fd_EventSwapExecuted_did = md_EventSwapExecuted.Fields().ByName("did") fd_EventSwapExecuted_connection_id = md_EventSwapExecuted.Fields().ByName("connection_id") fd_EventSwapExecuted_source = md_EventSwapExecuted.Fields().ByName("source") fd_EventSwapExecuted_target = md_EventSwapExecuted.Fields().ByName("target") fd_EventSwapExecuted_tx_hash = md_EventSwapExecuted.Fields().ByName("tx_hash") fd_EventSwapExecuted_sequence = md_EventSwapExecuted.Fields().ByName("sequence") } var _ protoreflect.Message = (*fastReflection_EventSwapExecuted)(nil) type fastReflection_EventSwapExecuted EventSwapExecuted func (x *EventSwapExecuted) ProtoReflect() protoreflect.Message { return (*fastReflection_EventSwapExecuted)(x) } func (x *EventSwapExecuted) slowProtoReflect() protoreflect.Message { mi := &file_dex_v1_events_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_EventSwapExecuted_messageType fastReflection_EventSwapExecuted_messageType var _ protoreflect.MessageType = fastReflection_EventSwapExecuted_messageType{} type fastReflection_EventSwapExecuted_messageType struct{} func (x fastReflection_EventSwapExecuted_messageType) Zero() protoreflect.Message { return (*fastReflection_EventSwapExecuted)(nil) } func (x fastReflection_EventSwapExecuted_messageType) New() protoreflect.Message { return new(fastReflection_EventSwapExecuted) } func (x fastReflection_EventSwapExecuted_messageType) Descriptor() protoreflect.MessageDescriptor { return md_EventSwapExecuted } // Descriptor returns message descriptor, which contains only the protobuf // type information for the message. func (x *fastReflection_EventSwapExecuted) Descriptor() protoreflect.MessageDescriptor { return md_EventSwapExecuted } // 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_EventSwapExecuted) Type() protoreflect.MessageType { return _fastReflection_EventSwapExecuted_messageType } // New returns a newly allocated and mutable empty message. func (x *fastReflection_EventSwapExecuted) New() protoreflect.Message { return new(fastReflection_EventSwapExecuted) } // Interface unwraps the message reflection interface and // returns the underlying ProtoMessage interface. func (x *fastReflection_EventSwapExecuted) Interface() protoreflect.ProtoMessage { return (*EventSwapExecuted)(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_EventSwapExecuted) Range(f func(protoreflect.FieldDescriptor, protoreflect.Value) bool) { if x.Did != "" { value := protoreflect.ValueOfString(x.Did) if !f(fd_EventSwapExecuted_did, value) { return } } if x.ConnectionId != "" { value := protoreflect.ValueOfString(x.ConnectionId) if !f(fd_EventSwapExecuted_connection_id, value) { return } } if x.Source != nil { value := protoreflect.ValueOfMessage(x.Source.ProtoReflect()) if !f(fd_EventSwapExecuted_source, value) { return } } if x.Target != nil { value := protoreflect.ValueOfMessage(x.Target.ProtoReflect()) if !f(fd_EventSwapExecuted_target, value) { return } } if x.TxHash != "" { value := protoreflect.ValueOfString(x.TxHash) if !f(fd_EventSwapExecuted_tx_hash, value) { return } } if x.Sequence != uint64(0) { value := protoreflect.ValueOfUint64(x.Sequence) if !f(fd_EventSwapExecuted_sequence, 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_EventSwapExecuted) Has(fd protoreflect.FieldDescriptor) bool { switch fd.FullName() { case "dex.v1.EventSwapExecuted.did": return x.Did != "" case "dex.v1.EventSwapExecuted.connection_id": return x.ConnectionId != "" case "dex.v1.EventSwapExecuted.source": return x.Source != nil case "dex.v1.EventSwapExecuted.target": return x.Target != nil case "dex.v1.EventSwapExecuted.tx_hash": return x.TxHash != "" case "dex.v1.EventSwapExecuted.sequence": return x.Sequence != uint64(0) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventSwapExecuted")) } panic(fmt.Errorf("message dex.v1.EventSwapExecuted 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_EventSwapExecuted) Clear(fd protoreflect.FieldDescriptor) { switch fd.FullName() { case "dex.v1.EventSwapExecuted.did": x.Did = "" case "dex.v1.EventSwapExecuted.connection_id": x.ConnectionId = "" case "dex.v1.EventSwapExecuted.source": x.Source = nil case "dex.v1.EventSwapExecuted.target": x.Target = nil case "dex.v1.EventSwapExecuted.tx_hash": x.TxHash = "" case "dex.v1.EventSwapExecuted.sequence": x.Sequence = uint64(0) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventSwapExecuted")) } panic(fmt.Errorf("message dex.v1.EventSwapExecuted 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_EventSwapExecuted) Get(descriptor protoreflect.FieldDescriptor) protoreflect.Value { switch descriptor.FullName() { case "dex.v1.EventSwapExecuted.did": value := x.Did return protoreflect.ValueOfString(value) case "dex.v1.EventSwapExecuted.connection_id": value := x.ConnectionId return protoreflect.ValueOfString(value) case "dex.v1.EventSwapExecuted.source": value := x.Source return protoreflect.ValueOfMessage(value.ProtoReflect()) case "dex.v1.EventSwapExecuted.target": value := x.Target return protoreflect.ValueOfMessage(value.ProtoReflect()) case "dex.v1.EventSwapExecuted.tx_hash": value := x.TxHash return protoreflect.ValueOfString(value) case "dex.v1.EventSwapExecuted.sequence": value := x.Sequence return protoreflect.ValueOfUint64(value) default: if descriptor.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventSwapExecuted")) } panic(fmt.Errorf("message dex.v1.EventSwapExecuted 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_EventSwapExecuted) Set(fd protoreflect.FieldDescriptor, value protoreflect.Value) { switch fd.FullName() { case "dex.v1.EventSwapExecuted.did": x.Did = value.Interface().(string) case "dex.v1.EventSwapExecuted.connection_id": x.ConnectionId = value.Interface().(string) case "dex.v1.EventSwapExecuted.source": x.Source = value.Message().Interface().(*v1beta1.Coin) case "dex.v1.EventSwapExecuted.target": x.Target = value.Message().Interface().(*v1beta1.Coin) case "dex.v1.EventSwapExecuted.tx_hash": x.TxHash = value.Interface().(string) case "dex.v1.EventSwapExecuted.sequence": x.Sequence = value.Uint() default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventSwapExecuted")) } panic(fmt.Errorf("message dex.v1.EventSwapExecuted 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_EventSwapExecuted) Mutable(fd protoreflect.FieldDescriptor) protoreflect.Value { switch fd.FullName() { case "dex.v1.EventSwapExecuted.source": if x.Source == nil { x.Source = new(v1beta1.Coin) } return protoreflect.ValueOfMessage(x.Source.ProtoReflect()) case "dex.v1.EventSwapExecuted.target": if x.Target == nil { x.Target = new(v1beta1.Coin) } return protoreflect.ValueOfMessage(x.Target.ProtoReflect()) case "dex.v1.EventSwapExecuted.did": panic(fmt.Errorf("field did of message dex.v1.EventSwapExecuted is not mutable")) case "dex.v1.EventSwapExecuted.connection_id": panic(fmt.Errorf("field connection_id of message dex.v1.EventSwapExecuted is not mutable")) case "dex.v1.EventSwapExecuted.tx_hash": panic(fmt.Errorf("field tx_hash of message dex.v1.EventSwapExecuted is not mutable")) case "dex.v1.EventSwapExecuted.sequence": panic(fmt.Errorf("field sequence of message dex.v1.EventSwapExecuted is not mutable")) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventSwapExecuted")) } panic(fmt.Errorf("message dex.v1.EventSwapExecuted 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_EventSwapExecuted) NewField(fd protoreflect.FieldDescriptor) protoreflect.Value { switch fd.FullName() { case "dex.v1.EventSwapExecuted.did": return protoreflect.ValueOfString("") case "dex.v1.EventSwapExecuted.connection_id": return protoreflect.ValueOfString("") case "dex.v1.EventSwapExecuted.source": m := new(v1beta1.Coin) return protoreflect.ValueOfMessage(m.ProtoReflect()) case "dex.v1.EventSwapExecuted.target": m := new(v1beta1.Coin) return protoreflect.ValueOfMessage(m.ProtoReflect()) case "dex.v1.EventSwapExecuted.tx_hash": return protoreflect.ValueOfString("") case "dex.v1.EventSwapExecuted.sequence": return protoreflect.ValueOfUint64(uint64(0)) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventSwapExecuted")) } panic(fmt.Errorf("message dex.v1.EventSwapExecuted 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_EventSwapExecuted) WhichOneof(d protoreflect.OneofDescriptor) protoreflect.FieldDescriptor { switch d.FullName() { default: panic(fmt.Errorf("%s is not a oneof field in dex.v1.EventSwapExecuted", 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_EventSwapExecuted) 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_EventSwapExecuted) 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_EventSwapExecuted) 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_EventSwapExecuted) ProtoMethods() *protoiface.Methods { size := func(input protoiface.SizeInput) protoiface.SizeOutput { x := input.Message.Interface().(*EventSwapExecuted) 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.Did) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.ConnectionId) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } if x.Source != nil { l = options.Size(x.Source) n += 1 + l + runtime.Sov(uint64(l)) } if x.Target != nil { l = options.Size(x.Target) n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.TxHash) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } if x.Sequence != 0 { n += 1 + runtime.Sov(uint64(x.Sequence)) } 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().(*EventSwapExecuted) 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.Sequence != 0 { i = runtime.EncodeVarint(dAtA, i, uint64(x.Sequence)) i-- dAtA[i] = 0x30 } if len(x.TxHash) > 0 { i -= len(x.TxHash) copy(dAtA[i:], x.TxHash) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.TxHash))) i-- dAtA[i] = 0x2a } if x.Target != nil { encoded, err := options.Marshal(x.Target) if err != nil { return protoiface.MarshalOutput{ NoUnkeyedLiterals: input.NoUnkeyedLiterals, Buf: input.Buf, }, err } i -= len(encoded) copy(dAtA[i:], encoded) i = runtime.EncodeVarint(dAtA, i, uint64(len(encoded))) i-- dAtA[i] = 0x22 } if x.Source != nil { encoded, err := options.Marshal(x.Source) 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.ConnectionId) > 0 { i -= len(x.ConnectionId) copy(dAtA[i:], x.ConnectionId) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.ConnectionId))) i-- dAtA[i] = 0x12 } if len(x.Did) > 0 { i -= len(x.Did) copy(dAtA[i:], x.Did) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.Did))) 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().(*EventSwapExecuted) 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: EventSwapExecuted: wiretype end group for non-group") } if fieldNum <= 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: EventSwapExecuted: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field Did", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { if shift >= 64 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrIntOverflow } if iNdEx >= l { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, io.ErrUnexpectedEOF } b := dAtA[iNdEx] iNdEx++ stringLen |= uint64(b&0x7F) << shift if b < 0x80 { break } } intStringLen := int(stringLen) if intStringLen < 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrInvalidLength } postIndex := iNdEx + intStringLen if postIndex < 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrInvalidLength } if postIndex > l { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, io.ErrUnexpectedEOF } x.Did = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex case 2: if wireType != 2 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field ConnectionId", 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.ConnectionId = 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 Source", 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.Source == nil { x.Source = &v1beta1.Coin{} } if err := options.Unmarshal(dAtA[iNdEx:postIndex], x.Source); 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 Target", 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.Target == nil { x.Target = &v1beta1.Coin{} } if err := options.Unmarshal(dAtA[iNdEx:postIndex], x.Target); 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 TxHash", 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.TxHash = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex case 6: if wireType != 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field Sequence", wireType) } x.Sequence = 0 for shift := uint(0); ; shift += 7 { if shift >= 64 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrIntOverflow } if iNdEx >= l { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, io.ErrUnexpectedEOF } b := dAtA[iNdEx] iNdEx++ x.Sequence |= uint64(b&0x7F) << shift if b < 0x80 { break } } default: iNdEx = preIndex skippy, err := runtime.Skip(dAtA[iNdEx:]) if err != nil { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, err } if (skippy < 0) || (iNdEx+skippy) < 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrInvalidLength } if (iNdEx + skippy) > l { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, io.ErrUnexpectedEOF } if !options.DiscardUnknown { x.unknownFields = append(x.unknownFields, dAtA[iNdEx:iNdEx+skippy]...) } iNdEx += skippy } } if iNdEx > l { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, io.ErrUnexpectedEOF } return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, nil } return &protoiface.Methods{ NoUnkeyedLiterals: struct{}{}, Flags: protoiface.SupportMarshalDeterministic | protoiface.SupportUnmarshalDiscardUnknown, Size: size, Marshal: marshal, Unmarshal: unmarshal, Merge: nil, CheckInitialized: nil, } } var _ protoreflect.List = (*_EventLiquidityProvided_4_list)(nil) type _EventLiquidityProvided_4_list struct { list *[]*v1beta1.Coin } func (x *_EventLiquidityProvided_4_list) Len() int { if x.list == nil { return 0 } return len(*x.list) } func (x *_EventLiquidityProvided_4_list) Get(i int) protoreflect.Value { return protoreflect.ValueOfMessage((*x.list)[i].ProtoReflect()) } func (x *_EventLiquidityProvided_4_list) Set(i int, value protoreflect.Value) { valueUnwrapped := value.Message() concreteValue := valueUnwrapped.Interface().(*v1beta1.Coin) (*x.list)[i] = concreteValue } func (x *_EventLiquidityProvided_4_list) Append(value protoreflect.Value) { valueUnwrapped := value.Message() concreteValue := valueUnwrapped.Interface().(*v1beta1.Coin) *x.list = append(*x.list, concreteValue) } func (x *_EventLiquidityProvided_4_list) AppendMutable() protoreflect.Value { v := new(v1beta1.Coin) *x.list = append(*x.list, v) return protoreflect.ValueOfMessage(v.ProtoReflect()) } func (x *_EventLiquidityProvided_4_list) Truncate(n int) { for i := n; i < len(*x.list); i++ { (*x.list)[i] = nil } *x.list = (*x.list)[:n] } func (x *_EventLiquidityProvided_4_list) NewElement() protoreflect.Value { v := new(v1beta1.Coin) return protoreflect.ValueOfMessage(v.ProtoReflect()) } func (x *_EventLiquidityProvided_4_list) IsValid() bool { return x.list != nil } var ( md_EventLiquidityProvided protoreflect.MessageDescriptor fd_EventLiquidityProvided_did protoreflect.FieldDescriptor fd_EventLiquidityProvided_connection_id protoreflect.FieldDescriptor fd_EventLiquidityProvided_pool_id protoreflect.FieldDescriptor fd_EventLiquidityProvided_assets protoreflect.FieldDescriptor fd_EventLiquidityProvided_shares_received protoreflect.FieldDescriptor fd_EventLiquidityProvided_tx_hash protoreflect.FieldDescriptor ) func init() { file_dex_v1_events_proto_init() md_EventLiquidityProvided = File_dex_v1_events_proto.Messages().ByName("EventLiquidityProvided") fd_EventLiquidityProvided_did = md_EventLiquidityProvided.Fields().ByName("did") fd_EventLiquidityProvided_connection_id = md_EventLiquidityProvided.Fields().ByName("connection_id") fd_EventLiquidityProvided_pool_id = md_EventLiquidityProvided.Fields().ByName("pool_id") fd_EventLiquidityProvided_assets = md_EventLiquidityProvided.Fields().ByName("assets") fd_EventLiquidityProvided_shares_received = md_EventLiquidityProvided.Fields().ByName("shares_received") fd_EventLiquidityProvided_tx_hash = md_EventLiquidityProvided.Fields().ByName("tx_hash") } var _ protoreflect.Message = (*fastReflection_EventLiquidityProvided)(nil) type fastReflection_EventLiquidityProvided EventLiquidityProvided func (x *EventLiquidityProvided) ProtoReflect() protoreflect.Message { return (*fastReflection_EventLiquidityProvided)(x) } func (x *EventLiquidityProvided) slowProtoReflect() protoreflect.Message { mi := &file_dex_v1_events_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_EventLiquidityProvided_messageType fastReflection_EventLiquidityProvided_messageType var _ protoreflect.MessageType = fastReflection_EventLiquidityProvided_messageType{} type fastReflection_EventLiquidityProvided_messageType struct{} func (x fastReflection_EventLiquidityProvided_messageType) Zero() protoreflect.Message { return (*fastReflection_EventLiquidityProvided)(nil) } func (x fastReflection_EventLiquidityProvided_messageType) New() protoreflect.Message { return new(fastReflection_EventLiquidityProvided) } func (x fastReflection_EventLiquidityProvided_messageType) Descriptor() protoreflect.MessageDescriptor { return md_EventLiquidityProvided } // Descriptor returns message descriptor, which contains only the protobuf // type information for the message. func (x *fastReflection_EventLiquidityProvided) Descriptor() protoreflect.MessageDescriptor { return md_EventLiquidityProvided } // 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_EventLiquidityProvided) Type() protoreflect.MessageType { return _fastReflection_EventLiquidityProvided_messageType } // New returns a newly allocated and mutable empty message. func (x *fastReflection_EventLiquidityProvided) New() protoreflect.Message { return new(fastReflection_EventLiquidityProvided) } // Interface unwraps the message reflection interface and // returns the underlying ProtoMessage interface. func (x *fastReflection_EventLiquidityProvided) Interface() protoreflect.ProtoMessage { return (*EventLiquidityProvided)(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_EventLiquidityProvided) Range(f func(protoreflect.FieldDescriptor, protoreflect.Value) bool) { if x.Did != "" { value := protoreflect.ValueOfString(x.Did) if !f(fd_EventLiquidityProvided_did, value) { return } } if x.ConnectionId != "" { value := protoreflect.ValueOfString(x.ConnectionId) if !f(fd_EventLiquidityProvided_connection_id, value) { return } } if x.PoolId != "" { value := protoreflect.ValueOfString(x.PoolId) if !f(fd_EventLiquidityProvided_pool_id, value) { return } } if len(x.Assets) != 0 { value := protoreflect.ValueOfList(&_EventLiquidityProvided_4_list{list: &x.Assets}) if !f(fd_EventLiquidityProvided_assets, value) { return } } if x.SharesReceived != "" { value := protoreflect.ValueOfString(x.SharesReceived) if !f(fd_EventLiquidityProvided_shares_received, value) { return } } if x.TxHash != "" { value := protoreflect.ValueOfString(x.TxHash) if !f(fd_EventLiquidityProvided_tx_hash, 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_EventLiquidityProvided) Has(fd protoreflect.FieldDescriptor) bool { switch fd.FullName() { case "dex.v1.EventLiquidityProvided.did": return x.Did != "" case "dex.v1.EventLiquidityProvided.connection_id": return x.ConnectionId != "" case "dex.v1.EventLiquidityProvided.pool_id": return x.PoolId != "" case "dex.v1.EventLiquidityProvided.assets": return len(x.Assets) != 0 case "dex.v1.EventLiquidityProvided.shares_received": return x.SharesReceived != "" case "dex.v1.EventLiquidityProvided.tx_hash": return x.TxHash != "" default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventLiquidityProvided")) } panic(fmt.Errorf("message dex.v1.EventLiquidityProvided 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_EventLiquidityProvided) Clear(fd protoreflect.FieldDescriptor) { switch fd.FullName() { case "dex.v1.EventLiquidityProvided.did": x.Did = "" case "dex.v1.EventLiquidityProvided.connection_id": x.ConnectionId = "" case "dex.v1.EventLiquidityProvided.pool_id": x.PoolId = "" case "dex.v1.EventLiquidityProvided.assets": x.Assets = nil case "dex.v1.EventLiquidityProvided.shares_received": x.SharesReceived = "" case "dex.v1.EventLiquidityProvided.tx_hash": x.TxHash = "" default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventLiquidityProvided")) } panic(fmt.Errorf("message dex.v1.EventLiquidityProvided 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_EventLiquidityProvided) Get(descriptor protoreflect.FieldDescriptor) protoreflect.Value { switch descriptor.FullName() { case "dex.v1.EventLiquidityProvided.did": value := x.Did return protoreflect.ValueOfString(value) case "dex.v1.EventLiquidityProvided.connection_id": value := x.ConnectionId return protoreflect.ValueOfString(value) case "dex.v1.EventLiquidityProvided.pool_id": value := x.PoolId return protoreflect.ValueOfString(value) case "dex.v1.EventLiquidityProvided.assets": if len(x.Assets) == 0 { return protoreflect.ValueOfList(&_EventLiquidityProvided_4_list{}) } listValue := &_EventLiquidityProvided_4_list{list: &x.Assets} return protoreflect.ValueOfList(listValue) case "dex.v1.EventLiquidityProvided.shares_received": value := x.SharesReceived return protoreflect.ValueOfString(value) case "dex.v1.EventLiquidityProvided.tx_hash": value := x.TxHash return protoreflect.ValueOfString(value) default: if descriptor.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventLiquidityProvided")) } panic(fmt.Errorf("message dex.v1.EventLiquidityProvided 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_EventLiquidityProvided) Set(fd protoreflect.FieldDescriptor, value protoreflect.Value) { switch fd.FullName() { case "dex.v1.EventLiquidityProvided.did": x.Did = value.Interface().(string) case "dex.v1.EventLiquidityProvided.connection_id": x.ConnectionId = value.Interface().(string) case "dex.v1.EventLiquidityProvided.pool_id": x.PoolId = value.Interface().(string) case "dex.v1.EventLiquidityProvided.assets": lv := value.List() clv := lv.(*_EventLiquidityProvided_4_list) x.Assets = *clv.list case "dex.v1.EventLiquidityProvided.shares_received": x.SharesReceived = value.Interface().(string) case "dex.v1.EventLiquidityProvided.tx_hash": x.TxHash = value.Interface().(string) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventLiquidityProvided")) } panic(fmt.Errorf("message dex.v1.EventLiquidityProvided 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_EventLiquidityProvided) Mutable(fd protoreflect.FieldDescriptor) protoreflect.Value { switch fd.FullName() { case "dex.v1.EventLiquidityProvided.assets": if x.Assets == nil { x.Assets = []*v1beta1.Coin{} } value := &_EventLiquidityProvided_4_list{list: &x.Assets} return protoreflect.ValueOfList(value) case "dex.v1.EventLiquidityProvided.did": panic(fmt.Errorf("field did of message dex.v1.EventLiquidityProvided is not mutable")) case "dex.v1.EventLiquidityProvided.connection_id": panic(fmt.Errorf("field connection_id of message dex.v1.EventLiquidityProvided is not mutable")) case "dex.v1.EventLiquidityProvided.pool_id": panic(fmt.Errorf("field pool_id of message dex.v1.EventLiquidityProvided is not mutable")) case "dex.v1.EventLiquidityProvided.shares_received": panic(fmt.Errorf("field shares_received of message dex.v1.EventLiquidityProvided is not mutable")) case "dex.v1.EventLiquidityProvided.tx_hash": panic(fmt.Errorf("field tx_hash of message dex.v1.EventLiquidityProvided is not mutable")) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventLiquidityProvided")) } panic(fmt.Errorf("message dex.v1.EventLiquidityProvided 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_EventLiquidityProvided) NewField(fd protoreflect.FieldDescriptor) protoreflect.Value { switch fd.FullName() { case "dex.v1.EventLiquidityProvided.did": return protoreflect.ValueOfString("") case "dex.v1.EventLiquidityProvided.connection_id": return protoreflect.ValueOfString("") case "dex.v1.EventLiquidityProvided.pool_id": return protoreflect.ValueOfString("") case "dex.v1.EventLiquidityProvided.assets": list := []*v1beta1.Coin{} return protoreflect.ValueOfList(&_EventLiquidityProvided_4_list{list: &list}) case "dex.v1.EventLiquidityProvided.shares_received": return protoreflect.ValueOfString("") case "dex.v1.EventLiquidityProvided.tx_hash": return protoreflect.ValueOfString("") default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventLiquidityProvided")) } panic(fmt.Errorf("message dex.v1.EventLiquidityProvided 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_EventLiquidityProvided) WhichOneof(d protoreflect.OneofDescriptor) protoreflect.FieldDescriptor { switch d.FullName() { default: panic(fmt.Errorf("%s is not a oneof field in dex.v1.EventLiquidityProvided", 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_EventLiquidityProvided) 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_EventLiquidityProvided) 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_EventLiquidityProvided) 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_EventLiquidityProvided) ProtoMethods() *protoiface.Methods { size := func(input protoiface.SizeInput) protoiface.SizeOutput { x := input.Message.Interface().(*EventLiquidityProvided) 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.Did) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.ConnectionId) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.PoolId) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } if len(x.Assets) > 0 { for _, e := range x.Assets { l = options.Size(e) n += 1 + l + runtime.Sov(uint64(l)) } } l = len(x.SharesReceived) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.TxHash) 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().(*EventLiquidityProvided) 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.TxHash) > 0 { i -= len(x.TxHash) copy(dAtA[i:], x.TxHash) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.TxHash))) i-- dAtA[i] = 0x32 } if len(x.SharesReceived) > 0 { i -= len(x.SharesReceived) copy(dAtA[i:], x.SharesReceived) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.SharesReceived))) i-- dAtA[i] = 0x2a } if len(x.Assets) > 0 { for iNdEx := len(x.Assets) - 1; iNdEx >= 0; iNdEx-- { encoded, err := options.Marshal(x.Assets[iNdEx]) 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.PoolId) > 0 { i -= len(x.PoolId) copy(dAtA[i:], x.PoolId) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.PoolId))) i-- dAtA[i] = 0x1a } if len(x.ConnectionId) > 0 { i -= len(x.ConnectionId) copy(dAtA[i:], x.ConnectionId) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.ConnectionId))) i-- dAtA[i] = 0x12 } if len(x.Did) > 0 { i -= len(x.Did) copy(dAtA[i:], x.Did) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.Did))) 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().(*EventLiquidityProvided) 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: EventLiquidityProvided: wiretype end group for non-group") } if fieldNum <= 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: EventLiquidityProvided: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field Did", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { if shift >= 64 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrIntOverflow } if iNdEx >= l { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, io.ErrUnexpectedEOF } b := dAtA[iNdEx] iNdEx++ stringLen |= uint64(b&0x7F) << shift if b < 0x80 { break } } intStringLen := int(stringLen) if intStringLen < 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrInvalidLength } postIndex := iNdEx + intStringLen if postIndex < 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrInvalidLength } if postIndex > l { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, io.ErrUnexpectedEOF } x.Did = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex case 2: if wireType != 2 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field ConnectionId", 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.ConnectionId = 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 PoolId", 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.PoolId = 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 Assets", 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 } x.Assets = append(x.Assets, &v1beta1.Coin{}) if err := options.Unmarshal(dAtA[iNdEx:postIndex], x.Assets[len(x.Assets)-1]); 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 SharesReceived", 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.SharesReceived = 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 TxHash", 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.TxHash = 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.List = (*_EventLiquidityRemoved_5_list)(nil) type _EventLiquidityRemoved_5_list struct { list *[]*v1beta1.Coin } func (x *_EventLiquidityRemoved_5_list) Len() int { if x.list == nil { return 0 } return len(*x.list) } func (x *_EventLiquidityRemoved_5_list) Get(i int) protoreflect.Value { return protoreflect.ValueOfMessage((*x.list)[i].ProtoReflect()) } func (x *_EventLiquidityRemoved_5_list) Set(i int, value protoreflect.Value) { valueUnwrapped := value.Message() concreteValue := valueUnwrapped.Interface().(*v1beta1.Coin) (*x.list)[i] = concreteValue } func (x *_EventLiquidityRemoved_5_list) Append(value protoreflect.Value) { valueUnwrapped := value.Message() concreteValue := valueUnwrapped.Interface().(*v1beta1.Coin) *x.list = append(*x.list, concreteValue) } func (x *_EventLiquidityRemoved_5_list) AppendMutable() protoreflect.Value { v := new(v1beta1.Coin) *x.list = append(*x.list, v) return protoreflect.ValueOfMessage(v.ProtoReflect()) } func (x *_EventLiquidityRemoved_5_list) Truncate(n int) { for i := n; i < len(*x.list); i++ { (*x.list)[i] = nil } *x.list = (*x.list)[:n] } func (x *_EventLiquidityRemoved_5_list) NewElement() protoreflect.Value { v := new(v1beta1.Coin) return protoreflect.ValueOfMessage(v.ProtoReflect()) } func (x *_EventLiquidityRemoved_5_list) IsValid() bool { return x.list != nil } var ( md_EventLiquidityRemoved protoreflect.MessageDescriptor fd_EventLiquidityRemoved_did protoreflect.FieldDescriptor fd_EventLiquidityRemoved_connection_id protoreflect.FieldDescriptor fd_EventLiquidityRemoved_pool_id protoreflect.FieldDescriptor fd_EventLiquidityRemoved_shares_removed protoreflect.FieldDescriptor fd_EventLiquidityRemoved_assets protoreflect.FieldDescriptor fd_EventLiquidityRemoved_tx_hash protoreflect.FieldDescriptor ) func init() { file_dex_v1_events_proto_init() md_EventLiquidityRemoved = File_dex_v1_events_proto.Messages().ByName("EventLiquidityRemoved") fd_EventLiquidityRemoved_did = md_EventLiquidityRemoved.Fields().ByName("did") fd_EventLiquidityRemoved_connection_id = md_EventLiquidityRemoved.Fields().ByName("connection_id") fd_EventLiquidityRemoved_pool_id = md_EventLiquidityRemoved.Fields().ByName("pool_id") fd_EventLiquidityRemoved_shares_removed = md_EventLiquidityRemoved.Fields().ByName("shares_removed") fd_EventLiquidityRemoved_assets = md_EventLiquidityRemoved.Fields().ByName("assets") fd_EventLiquidityRemoved_tx_hash = md_EventLiquidityRemoved.Fields().ByName("tx_hash") } var _ protoreflect.Message = (*fastReflection_EventLiquidityRemoved)(nil) type fastReflection_EventLiquidityRemoved EventLiquidityRemoved func (x *EventLiquidityRemoved) ProtoReflect() protoreflect.Message { return (*fastReflection_EventLiquidityRemoved)(x) } func (x *EventLiquidityRemoved) slowProtoReflect() protoreflect.Message { mi := &file_dex_v1_events_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_EventLiquidityRemoved_messageType fastReflection_EventLiquidityRemoved_messageType var _ protoreflect.MessageType = fastReflection_EventLiquidityRemoved_messageType{} type fastReflection_EventLiquidityRemoved_messageType struct{} func (x fastReflection_EventLiquidityRemoved_messageType) Zero() protoreflect.Message { return (*fastReflection_EventLiquidityRemoved)(nil) } func (x fastReflection_EventLiquidityRemoved_messageType) New() protoreflect.Message { return new(fastReflection_EventLiquidityRemoved) } func (x fastReflection_EventLiquidityRemoved_messageType) Descriptor() protoreflect.MessageDescriptor { return md_EventLiquidityRemoved } // Descriptor returns message descriptor, which contains only the protobuf // type information for the message. func (x *fastReflection_EventLiquidityRemoved) Descriptor() protoreflect.MessageDescriptor { return md_EventLiquidityRemoved } // 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_EventLiquidityRemoved) Type() protoreflect.MessageType { return _fastReflection_EventLiquidityRemoved_messageType } // New returns a newly allocated and mutable empty message. func (x *fastReflection_EventLiquidityRemoved) New() protoreflect.Message { return new(fastReflection_EventLiquidityRemoved) } // Interface unwraps the message reflection interface and // returns the underlying ProtoMessage interface. func (x *fastReflection_EventLiquidityRemoved) Interface() protoreflect.ProtoMessage { return (*EventLiquidityRemoved)(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_EventLiquidityRemoved) Range(f func(protoreflect.FieldDescriptor, protoreflect.Value) bool) { if x.Did != "" { value := protoreflect.ValueOfString(x.Did) if !f(fd_EventLiquidityRemoved_did, value) { return } } if x.ConnectionId != "" { value := protoreflect.ValueOfString(x.ConnectionId) if !f(fd_EventLiquidityRemoved_connection_id, value) { return } } if x.PoolId != "" { value := protoreflect.ValueOfString(x.PoolId) if !f(fd_EventLiquidityRemoved_pool_id, value) { return } } if x.SharesRemoved != "" { value := protoreflect.ValueOfString(x.SharesRemoved) if !f(fd_EventLiquidityRemoved_shares_removed, value) { return } } if len(x.Assets) != 0 { value := protoreflect.ValueOfList(&_EventLiquidityRemoved_5_list{list: &x.Assets}) if !f(fd_EventLiquidityRemoved_assets, value) { return } } if x.TxHash != "" { value := protoreflect.ValueOfString(x.TxHash) if !f(fd_EventLiquidityRemoved_tx_hash, 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_EventLiquidityRemoved) Has(fd protoreflect.FieldDescriptor) bool { switch fd.FullName() { case "dex.v1.EventLiquidityRemoved.did": return x.Did != "" case "dex.v1.EventLiquidityRemoved.connection_id": return x.ConnectionId != "" case "dex.v1.EventLiquidityRemoved.pool_id": return x.PoolId != "" case "dex.v1.EventLiquidityRemoved.shares_removed": return x.SharesRemoved != "" case "dex.v1.EventLiquidityRemoved.assets": return len(x.Assets) != 0 case "dex.v1.EventLiquidityRemoved.tx_hash": return x.TxHash != "" default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventLiquidityRemoved")) } panic(fmt.Errorf("message dex.v1.EventLiquidityRemoved 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_EventLiquidityRemoved) Clear(fd protoreflect.FieldDescriptor) { switch fd.FullName() { case "dex.v1.EventLiquidityRemoved.did": x.Did = "" case "dex.v1.EventLiquidityRemoved.connection_id": x.ConnectionId = "" case "dex.v1.EventLiquidityRemoved.pool_id": x.PoolId = "" case "dex.v1.EventLiquidityRemoved.shares_removed": x.SharesRemoved = "" case "dex.v1.EventLiquidityRemoved.assets": x.Assets = nil case "dex.v1.EventLiquidityRemoved.tx_hash": x.TxHash = "" default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventLiquidityRemoved")) } panic(fmt.Errorf("message dex.v1.EventLiquidityRemoved 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_EventLiquidityRemoved) Get(descriptor protoreflect.FieldDescriptor) protoreflect.Value { switch descriptor.FullName() { case "dex.v1.EventLiquidityRemoved.did": value := x.Did return protoreflect.ValueOfString(value) case "dex.v1.EventLiquidityRemoved.connection_id": value := x.ConnectionId return protoreflect.ValueOfString(value) case "dex.v1.EventLiquidityRemoved.pool_id": value := x.PoolId return protoreflect.ValueOfString(value) case "dex.v1.EventLiquidityRemoved.shares_removed": value := x.SharesRemoved return protoreflect.ValueOfString(value) case "dex.v1.EventLiquidityRemoved.assets": if len(x.Assets) == 0 { return protoreflect.ValueOfList(&_EventLiquidityRemoved_5_list{}) } listValue := &_EventLiquidityRemoved_5_list{list: &x.Assets} return protoreflect.ValueOfList(listValue) case "dex.v1.EventLiquidityRemoved.tx_hash": value := x.TxHash return protoreflect.ValueOfString(value) default: if descriptor.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventLiquidityRemoved")) } panic(fmt.Errorf("message dex.v1.EventLiquidityRemoved 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_EventLiquidityRemoved) Set(fd protoreflect.FieldDescriptor, value protoreflect.Value) { switch fd.FullName() { case "dex.v1.EventLiquidityRemoved.did": x.Did = value.Interface().(string) case "dex.v1.EventLiquidityRemoved.connection_id": x.ConnectionId = value.Interface().(string) case "dex.v1.EventLiquidityRemoved.pool_id": x.PoolId = value.Interface().(string) case "dex.v1.EventLiquidityRemoved.shares_removed": x.SharesRemoved = value.Interface().(string) case "dex.v1.EventLiquidityRemoved.assets": lv := value.List() clv := lv.(*_EventLiquidityRemoved_5_list) x.Assets = *clv.list case "dex.v1.EventLiquidityRemoved.tx_hash": x.TxHash = value.Interface().(string) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventLiquidityRemoved")) } panic(fmt.Errorf("message dex.v1.EventLiquidityRemoved 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_EventLiquidityRemoved) Mutable(fd protoreflect.FieldDescriptor) protoreflect.Value { switch fd.FullName() { case "dex.v1.EventLiquidityRemoved.assets": if x.Assets == nil { x.Assets = []*v1beta1.Coin{} } value := &_EventLiquidityRemoved_5_list{list: &x.Assets} return protoreflect.ValueOfList(value) case "dex.v1.EventLiquidityRemoved.did": panic(fmt.Errorf("field did of message dex.v1.EventLiquidityRemoved is not mutable")) case "dex.v1.EventLiquidityRemoved.connection_id": panic(fmt.Errorf("field connection_id of message dex.v1.EventLiquidityRemoved is not mutable")) case "dex.v1.EventLiquidityRemoved.pool_id": panic(fmt.Errorf("field pool_id of message dex.v1.EventLiquidityRemoved is not mutable")) case "dex.v1.EventLiquidityRemoved.shares_removed": panic(fmt.Errorf("field shares_removed of message dex.v1.EventLiquidityRemoved is not mutable")) case "dex.v1.EventLiquidityRemoved.tx_hash": panic(fmt.Errorf("field tx_hash of message dex.v1.EventLiquidityRemoved is not mutable")) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventLiquidityRemoved")) } panic(fmt.Errorf("message dex.v1.EventLiquidityRemoved 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_EventLiquidityRemoved) NewField(fd protoreflect.FieldDescriptor) protoreflect.Value { switch fd.FullName() { case "dex.v1.EventLiquidityRemoved.did": return protoreflect.ValueOfString("") case "dex.v1.EventLiquidityRemoved.connection_id": return protoreflect.ValueOfString("") case "dex.v1.EventLiquidityRemoved.pool_id": return protoreflect.ValueOfString("") case "dex.v1.EventLiquidityRemoved.shares_removed": return protoreflect.ValueOfString("") case "dex.v1.EventLiquidityRemoved.assets": list := []*v1beta1.Coin{} return protoreflect.ValueOfList(&_EventLiquidityRemoved_5_list{list: &list}) case "dex.v1.EventLiquidityRemoved.tx_hash": return protoreflect.ValueOfString("") default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventLiquidityRemoved")) } panic(fmt.Errorf("message dex.v1.EventLiquidityRemoved 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_EventLiquidityRemoved) WhichOneof(d protoreflect.OneofDescriptor) protoreflect.FieldDescriptor { switch d.FullName() { default: panic(fmt.Errorf("%s is not a oneof field in dex.v1.EventLiquidityRemoved", 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_EventLiquidityRemoved) 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_EventLiquidityRemoved) 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_EventLiquidityRemoved) 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_EventLiquidityRemoved) ProtoMethods() *protoiface.Methods { size := func(input protoiface.SizeInput) protoiface.SizeOutput { x := input.Message.Interface().(*EventLiquidityRemoved) 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.Did) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.ConnectionId) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.PoolId) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.SharesRemoved) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } if len(x.Assets) > 0 { for _, e := range x.Assets { l = options.Size(e) n += 1 + l + runtime.Sov(uint64(l)) } } l = len(x.TxHash) 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().(*EventLiquidityRemoved) 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.TxHash) > 0 { i -= len(x.TxHash) copy(dAtA[i:], x.TxHash) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.TxHash))) i-- dAtA[i] = 0x32 } if len(x.Assets) > 0 { for iNdEx := len(x.Assets) - 1; iNdEx >= 0; iNdEx-- { encoded, err := options.Marshal(x.Assets[iNdEx]) 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] = 0x2a } } if len(x.SharesRemoved) > 0 { i -= len(x.SharesRemoved) copy(dAtA[i:], x.SharesRemoved) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.SharesRemoved))) i-- dAtA[i] = 0x22 } if len(x.PoolId) > 0 { i -= len(x.PoolId) copy(dAtA[i:], x.PoolId) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.PoolId))) i-- dAtA[i] = 0x1a } if len(x.ConnectionId) > 0 { i -= len(x.ConnectionId) copy(dAtA[i:], x.ConnectionId) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.ConnectionId))) i-- dAtA[i] = 0x12 } if len(x.Did) > 0 { i -= len(x.Did) copy(dAtA[i:], x.Did) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.Did))) 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().(*EventLiquidityRemoved) 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: EventLiquidityRemoved: wiretype end group for non-group") } if fieldNum <= 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: EventLiquidityRemoved: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field Did", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { if shift >= 64 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrIntOverflow } if iNdEx >= l { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, io.ErrUnexpectedEOF } b := dAtA[iNdEx] iNdEx++ stringLen |= uint64(b&0x7F) << shift if b < 0x80 { break } } intStringLen := int(stringLen) if intStringLen < 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrInvalidLength } postIndex := iNdEx + intStringLen if postIndex < 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrInvalidLength } if postIndex > l { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, io.ErrUnexpectedEOF } x.Did = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex case 2: if wireType != 2 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field ConnectionId", 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.ConnectionId = 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 PoolId", 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.PoolId = 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 SharesRemoved", 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.SharesRemoved = 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 Assets", 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 } x.Assets = append(x.Assets, &v1beta1.Coin{}) if err := options.Unmarshal(dAtA[iNdEx:postIndex], x.Assets[len(x.Assets)-1]); err != nil { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, err } iNdEx = postIndex case 6: if wireType != 2 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field TxHash", 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.TxHash = 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_EventOrderCreated protoreflect.MessageDescriptor fd_EventOrderCreated_did protoreflect.FieldDescriptor fd_EventOrderCreated_connection_id protoreflect.FieldDescriptor fd_EventOrderCreated_order_id protoreflect.FieldDescriptor fd_EventOrderCreated_sell_denom protoreflect.FieldDescriptor fd_EventOrderCreated_buy_denom protoreflect.FieldDescriptor fd_EventOrderCreated_amount protoreflect.FieldDescriptor fd_EventOrderCreated_price protoreflect.FieldDescriptor fd_EventOrderCreated_tx_hash protoreflect.FieldDescriptor ) func init() { file_dex_v1_events_proto_init() md_EventOrderCreated = File_dex_v1_events_proto.Messages().ByName("EventOrderCreated") fd_EventOrderCreated_did = md_EventOrderCreated.Fields().ByName("did") fd_EventOrderCreated_connection_id = md_EventOrderCreated.Fields().ByName("connection_id") fd_EventOrderCreated_order_id = md_EventOrderCreated.Fields().ByName("order_id") fd_EventOrderCreated_sell_denom = md_EventOrderCreated.Fields().ByName("sell_denom") fd_EventOrderCreated_buy_denom = md_EventOrderCreated.Fields().ByName("buy_denom") fd_EventOrderCreated_amount = md_EventOrderCreated.Fields().ByName("amount") fd_EventOrderCreated_price = md_EventOrderCreated.Fields().ByName("price") fd_EventOrderCreated_tx_hash = md_EventOrderCreated.Fields().ByName("tx_hash") } var _ protoreflect.Message = (*fastReflection_EventOrderCreated)(nil) type fastReflection_EventOrderCreated EventOrderCreated func (x *EventOrderCreated) ProtoReflect() protoreflect.Message { return (*fastReflection_EventOrderCreated)(x) } func (x *EventOrderCreated) slowProtoReflect() protoreflect.Message { mi := &file_dex_v1_events_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_EventOrderCreated_messageType fastReflection_EventOrderCreated_messageType var _ protoreflect.MessageType = fastReflection_EventOrderCreated_messageType{} type fastReflection_EventOrderCreated_messageType struct{} func (x fastReflection_EventOrderCreated_messageType) Zero() protoreflect.Message { return (*fastReflection_EventOrderCreated)(nil) } func (x fastReflection_EventOrderCreated_messageType) New() protoreflect.Message { return new(fastReflection_EventOrderCreated) } func (x fastReflection_EventOrderCreated_messageType) Descriptor() protoreflect.MessageDescriptor { return md_EventOrderCreated } // Descriptor returns message descriptor, which contains only the protobuf // type information for the message. func (x *fastReflection_EventOrderCreated) Descriptor() protoreflect.MessageDescriptor { return md_EventOrderCreated } // 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_EventOrderCreated) Type() protoreflect.MessageType { return _fastReflection_EventOrderCreated_messageType } // New returns a newly allocated and mutable empty message. func (x *fastReflection_EventOrderCreated) New() protoreflect.Message { return new(fastReflection_EventOrderCreated) } // Interface unwraps the message reflection interface and // returns the underlying ProtoMessage interface. func (x *fastReflection_EventOrderCreated) Interface() protoreflect.ProtoMessage { return (*EventOrderCreated)(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_EventOrderCreated) Range(f func(protoreflect.FieldDescriptor, protoreflect.Value) bool) { if x.Did != "" { value := protoreflect.ValueOfString(x.Did) if !f(fd_EventOrderCreated_did, value) { return } } if x.ConnectionId != "" { value := protoreflect.ValueOfString(x.ConnectionId) if !f(fd_EventOrderCreated_connection_id, value) { return } } if x.OrderId != "" { value := protoreflect.ValueOfString(x.OrderId) if !f(fd_EventOrderCreated_order_id, value) { return } } if x.SellDenom != "" { value := protoreflect.ValueOfString(x.SellDenom) if !f(fd_EventOrderCreated_sell_denom, value) { return } } if x.BuyDenom != "" { value := protoreflect.ValueOfString(x.BuyDenom) if !f(fd_EventOrderCreated_buy_denom, value) { return } } if x.Amount != "" { value := protoreflect.ValueOfString(x.Amount) if !f(fd_EventOrderCreated_amount, value) { return } } if x.Price != "" { value := protoreflect.ValueOfString(x.Price) if !f(fd_EventOrderCreated_price, value) { return } } if x.TxHash != "" { value := protoreflect.ValueOfString(x.TxHash) if !f(fd_EventOrderCreated_tx_hash, 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_EventOrderCreated) Has(fd protoreflect.FieldDescriptor) bool { switch fd.FullName() { case "dex.v1.EventOrderCreated.did": return x.Did != "" case "dex.v1.EventOrderCreated.connection_id": return x.ConnectionId != "" case "dex.v1.EventOrderCreated.order_id": return x.OrderId != "" case "dex.v1.EventOrderCreated.sell_denom": return x.SellDenom != "" case "dex.v1.EventOrderCreated.buy_denom": return x.BuyDenom != "" case "dex.v1.EventOrderCreated.amount": return x.Amount != "" case "dex.v1.EventOrderCreated.price": return x.Price != "" case "dex.v1.EventOrderCreated.tx_hash": return x.TxHash != "" default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventOrderCreated")) } panic(fmt.Errorf("message dex.v1.EventOrderCreated 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_EventOrderCreated) Clear(fd protoreflect.FieldDescriptor) { switch fd.FullName() { case "dex.v1.EventOrderCreated.did": x.Did = "" case "dex.v1.EventOrderCreated.connection_id": x.ConnectionId = "" case "dex.v1.EventOrderCreated.order_id": x.OrderId = "" case "dex.v1.EventOrderCreated.sell_denom": x.SellDenom = "" case "dex.v1.EventOrderCreated.buy_denom": x.BuyDenom = "" case "dex.v1.EventOrderCreated.amount": x.Amount = "" case "dex.v1.EventOrderCreated.price": x.Price = "" case "dex.v1.EventOrderCreated.tx_hash": x.TxHash = "" default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventOrderCreated")) } panic(fmt.Errorf("message dex.v1.EventOrderCreated 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_EventOrderCreated) Get(descriptor protoreflect.FieldDescriptor) protoreflect.Value { switch descriptor.FullName() { case "dex.v1.EventOrderCreated.did": value := x.Did return protoreflect.ValueOfString(value) case "dex.v1.EventOrderCreated.connection_id": value := x.ConnectionId return protoreflect.ValueOfString(value) case "dex.v1.EventOrderCreated.order_id": value := x.OrderId return protoreflect.ValueOfString(value) case "dex.v1.EventOrderCreated.sell_denom": value := x.SellDenom return protoreflect.ValueOfString(value) case "dex.v1.EventOrderCreated.buy_denom": value := x.BuyDenom return protoreflect.ValueOfString(value) case "dex.v1.EventOrderCreated.amount": value := x.Amount return protoreflect.ValueOfString(value) case "dex.v1.EventOrderCreated.price": value := x.Price return protoreflect.ValueOfString(value) case "dex.v1.EventOrderCreated.tx_hash": value := x.TxHash return protoreflect.ValueOfString(value) default: if descriptor.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventOrderCreated")) } panic(fmt.Errorf("message dex.v1.EventOrderCreated 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_EventOrderCreated) Set(fd protoreflect.FieldDescriptor, value protoreflect.Value) { switch fd.FullName() { case "dex.v1.EventOrderCreated.did": x.Did = value.Interface().(string) case "dex.v1.EventOrderCreated.connection_id": x.ConnectionId = value.Interface().(string) case "dex.v1.EventOrderCreated.order_id": x.OrderId = value.Interface().(string) case "dex.v1.EventOrderCreated.sell_denom": x.SellDenom = value.Interface().(string) case "dex.v1.EventOrderCreated.buy_denom": x.BuyDenom = value.Interface().(string) case "dex.v1.EventOrderCreated.amount": x.Amount = value.Interface().(string) case "dex.v1.EventOrderCreated.price": x.Price = value.Interface().(string) case "dex.v1.EventOrderCreated.tx_hash": x.TxHash = value.Interface().(string) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventOrderCreated")) } panic(fmt.Errorf("message dex.v1.EventOrderCreated 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_EventOrderCreated) Mutable(fd protoreflect.FieldDescriptor) protoreflect.Value { switch fd.FullName() { case "dex.v1.EventOrderCreated.did": panic(fmt.Errorf("field did of message dex.v1.EventOrderCreated is not mutable")) case "dex.v1.EventOrderCreated.connection_id": panic(fmt.Errorf("field connection_id of message dex.v1.EventOrderCreated is not mutable")) case "dex.v1.EventOrderCreated.order_id": panic(fmt.Errorf("field order_id of message dex.v1.EventOrderCreated is not mutable")) case "dex.v1.EventOrderCreated.sell_denom": panic(fmt.Errorf("field sell_denom of message dex.v1.EventOrderCreated is not mutable")) case "dex.v1.EventOrderCreated.buy_denom": panic(fmt.Errorf("field buy_denom of message dex.v1.EventOrderCreated is not mutable")) case "dex.v1.EventOrderCreated.amount": panic(fmt.Errorf("field amount of message dex.v1.EventOrderCreated is not mutable")) case "dex.v1.EventOrderCreated.price": panic(fmt.Errorf("field price of message dex.v1.EventOrderCreated is not mutable")) case "dex.v1.EventOrderCreated.tx_hash": panic(fmt.Errorf("field tx_hash of message dex.v1.EventOrderCreated is not mutable")) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventOrderCreated")) } panic(fmt.Errorf("message dex.v1.EventOrderCreated 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_EventOrderCreated) NewField(fd protoreflect.FieldDescriptor) protoreflect.Value { switch fd.FullName() { case "dex.v1.EventOrderCreated.did": return protoreflect.ValueOfString("") case "dex.v1.EventOrderCreated.connection_id": return protoreflect.ValueOfString("") case "dex.v1.EventOrderCreated.order_id": return protoreflect.ValueOfString("") case "dex.v1.EventOrderCreated.sell_denom": return protoreflect.ValueOfString("") case "dex.v1.EventOrderCreated.buy_denom": return protoreflect.ValueOfString("") case "dex.v1.EventOrderCreated.amount": return protoreflect.ValueOfString("") case "dex.v1.EventOrderCreated.price": return protoreflect.ValueOfString("") case "dex.v1.EventOrderCreated.tx_hash": return protoreflect.ValueOfString("") default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventOrderCreated")) } panic(fmt.Errorf("message dex.v1.EventOrderCreated 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_EventOrderCreated) WhichOneof(d protoreflect.OneofDescriptor) protoreflect.FieldDescriptor { switch d.FullName() { default: panic(fmt.Errorf("%s is not a oneof field in dex.v1.EventOrderCreated", 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_EventOrderCreated) 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_EventOrderCreated) 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_EventOrderCreated) 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_EventOrderCreated) ProtoMethods() *protoiface.Methods { size := func(input protoiface.SizeInput) protoiface.SizeOutput { x := input.Message.Interface().(*EventOrderCreated) 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.Did) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.ConnectionId) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.OrderId) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.SellDenom) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.BuyDenom) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.Amount) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.Price) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.TxHash) 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().(*EventOrderCreated) 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.TxHash) > 0 { i -= len(x.TxHash) copy(dAtA[i:], x.TxHash) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.TxHash))) i-- dAtA[i] = 0x42 } if len(x.Price) > 0 { i -= len(x.Price) copy(dAtA[i:], x.Price) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.Price))) i-- dAtA[i] = 0x3a } if len(x.Amount) > 0 { i -= len(x.Amount) copy(dAtA[i:], x.Amount) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.Amount))) i-- dAtA[i] = 0x32 } if len(x.BuyDenom) > 0 { i -= len(x.BuyDenom) copy(dAtA[i:], x.BuyDenom) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.BuyDenom))) i-- dAtA[i] = 0x2a } if len(x.SellDenom) > 0 { i -= len(x.SellDenom) copy(dAtA[i:], x.SellDenom) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.SellDenom))) i-- dAtA[i] = 0x22 } if len(x.OrderId) > 0 { i -= len(x.OrderId) copy(dAtA[i:], x.OrderId) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.OrderId))) i-- dAtA[i] = 0x1a } if len(x.ConnectionId) > 0 { i -= len(x.ConnectionId) copy(dAtA[i:], x.ConnectionId) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.ConnectionId))) i-- dAtA[i] = 0x12 } if len(x.Did) > 0 { i -= len(x.Did) copy(dAtA[i:], x.Did) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.Did))) 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().(*EventOrderCreated) 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: EventOrderCreated: wiretype end group for non-group") } if fieldNum <= 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: EventOrderCreated: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field Did", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { if shift >= 64 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrIntOverflow } if iNdEx >= l { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, io.ErrUnexpectedEOF } b := dAtA[iNdEx] iNdEx++ stringLen |= uint64(b&0x7F) << shift if b < 0x80 { break } } intStringLen := int(stringLen) if intStringLen < 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrInvalidLength } postIndex := iNdEx + intStringLen if postIndex < 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrInvalidLength } if postIndex > l { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, io.ErrUnexpectedEOF } x.Did = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex case 2: if wireType != 2 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field ConnectionId", 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.ConnectionId = 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 OrderId", 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.OrderId = 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 SellDenom", 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.SellDenom = 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 BuyDenom", 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.BuyDenom = 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 Amount", 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.Amount = 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 Price", 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.Price = 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 TxHash", 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.TxHash = 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_EventOrderCancelled protoreflect.MessageDescriptor fd_EventOrderCancelled_did protoreflect.FieldDescriptor fd_EventOrderCancelled_connection_id protoreflect.FieldDescriptor fd_EventOrderCancelled_order_id protoreflect.FieldDescriptor fd_EventOrderCancelled_tx_hash protoreflect.FieldDescriptor ) func init() { file_dex_v1_events_proto_init() md_EventOrderCancelled = File_dex_v1_events_proto.Messages().ByName("EventOrderCancelled") fd_EventOrderCancelled_did = md_EventOrderCancelled.Fields().ByName("did") fd_EventOrderCancelled_connection_id = md_EventOrderCancelled.Fields().ByName("connection_id") fd_EventOrderCancelled_order_id = md_EventOrderCancelled.Fields().ByName("order_id") fd_EventOrderCancelled_tx_hash = md_EventOrderCancelled.Fields().ByName("tx_hash") } var _ protoreflect.Message = (*fastReflection_EventOrderCancelled)(nil) type fastReflection_EventOrderCancelled EventOrderCancelled func (x *EventOrderCancelled) ProtoReflect() protoreflect.Message { return (*fastReflection_EventOrderCancelled)(x) } func (x *EventOrderCancelled) slowProtoReflect() protoreflect.Message { mi := &file_dex_v1_events_proto_msgTypes[5] 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_EventOrderCancelled_messageType fastReflection_EventOrderCancelled_messageType var _ protoreflect.MessageType = fastReflection_EventOrderCancelled_messageType{} type fastReflection_EventOrderCancelled_messageType struct{} func (x fastReflection_EventOrderCancelled_messageType) Zero() protoreflect.Message { return (*fastReflection_EventOrderCancelled)(nil) } func (x fastReflection_EventOrderCancelled_messageType) New() protoreflect.Message { return new(fastReflection_EventOrderCancelled) } func (x fastReflection_EventOrderCancelled_messageType) Descriptor() protoreflect.MessageDescriptor { return md_EventOrderCancelled } // Descriptor returns message descriptor, which contains only the protobuf // type information for the message. func (x *fastReflection_EventOrderCancelled) Descriptor() protoreflect.MessageDescriptor { return md_EventOrderCancelled } // 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_EventOrderCancelled) Type() protoreflect.MessageType { return _fastReflection_EventOrderCancelled_messageType } // New returns a newly allocated and mutable empty message. func (x *fastReflection_EventOrderCancelled) New() protoreflect.Message { return new(fastReflection_EventOrderCancelled) } // Interface unwraps the message reflection interface and // returns the underlying ProtoMessage interface. func (x *fastReflection_EventOrderCancelled) Interface() protoreflect.ProtoMessage { return (*EventOrderCancelled)(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_EventOrderCancelled) Range(f func(protoreflect.FieldDescriptor, protoreflect.Value) bool) { if x.Did != "" { value := protoreflect.ValueOfString(x.Did) if !f(fd_EventOrderCancelled_did, value) { return } } if x.ConnectionId != "" { value := protoreflect.ValueOfString(x.ConnectionId) if !f(fd_EventOrderCancelled_connection_id, value) { return } } if x.OrderId != "" { value := protoreflect.ValueOfString(x.OrderId) if !f(fd_EventOrderCancelled_order_id, value) { return } } if x.TxHash != "" { value := protoreflect.ValueOfString(x.TxHash) if !f(fd_EventOrderCancelled_tx_hash, 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_EventOrderCancelled) Has(fd protoreflect.FieldDescriptor) bool { switch fd.FullName() { case "dex.v1.EventOrderCancelled.did": return x.Did != "" case "dex.v1.EventOrderCancelled.connection_id": return x.ConnectionId != "" case "dex.v1.EventOrderCancelled.order_id": return x.OrderId != "" case "dex.v1.EventOrderCancelled.tx_hash": return x.TxHash != "" default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventOrderCancelled")) } panic(fmt.Errorf("message dex.v1.EventOrderCancelled 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_EventOrderCancelled) Clear(fd protoreflect.FieldDescriptor) { switch fd.FullName() { case "dex.v1.EventOrderCancelled.did": x.Did = "" case "dex.v1.EventOrderCancelled.connection_id": x.ConnectionId = "" case "dex.v1.EventOrderCancelled.order_id": x.OrderId = "" case "dex.v1.EventOrderCancelled.tx_hash": x.TxHash = "" default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventOrderCancelled")) } panic(fmt.Errorf("message dex.v1.EventOrderCancelled 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_EventOrderCancelled) Get(descriptor protoreflect.FieldDescriptor) protoreflect.Value { switch descriptor.FullName() { case "dex.v1.EventOrderCancelled.did": value := x.Did return protoreflect.ValueOfString(value) case "dex.v1.EventOrderCancelled.connection_id": value := x.ConnectionId return protoreflect.ValueOfString(value) case "dex.v1.EventOrderCancelled.order_id": value := x.OrderId return protoreflect.ValueOfString(value) case "dex.v1.EventOrderCancelled.tx_hash": value := x.TxHash return protoreflect.ValueOfString(value) default: if descriptor.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventOrderCancelled")) } panic(fmt.Errorf("message dex.v1.EventOrderCancelled 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_EventOrderCancelled) Set(fd protoreflect.FieldDescriptor, value protoreflect.Value) { switch fd.FullName() { case "dex.v1.EventOrderCancelled.did": x.Did = value.Interface().(string) case "dex.v1.EventOrderCancelled.connection_id": x.ConnectionId = value.Interface().(string) case "dex.v1.EventOrderCancelled.order_id": x.OrderId = value.Interface().(string) case "dex.v1.EventOrderCancelled.tx_hash": x.TxHash = value.Interface().(string) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventOrderCancelled")) } panic(fmt.Errorf("message dex.v1.EventOrderCancelled 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_EventOrderCancelled) Mutable(fd protoreflect.FieldDescriptor) protoreflect.Value { switch fd.FullName() { case "dex.v1.EventOrderCancelled.did": panic(fmt.Errorf("field did of message dex.v1.EventOrderCancelled is not mutable")) case "dex.v1.EventOrderCancelled.connection_id": panic(fmt.Errorf("field connection_id of message dex.v1.EventOrderCancelled is not mutable")) case "dex.v1.EventOrderCancelled.order_id": panic(fmt.Errorf("field order_id of message dex.v1.EventOrderCancelled is not mutable")) case "dex.v1.EventOrderCancelled.tx_hash": panic(fmt.Errorf("field tx_hash of message dex.v1.EventOrderCancelled is not mutable")) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventOrderCancelled")) } panic(fmt.Errorf("message dex.v1.EventOrderCancelled 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_EventOrderCancelled) NewField(fd protoreflect.FieldDescriptor) protoreflect.Value { switch fd.FullName() { case "dex.v1.EventOrderCancelled.did": return protoreflect.ValueOfString("") case "dex.v1.EventOrderCancelled.connection_id": return protoreflect.ValueOfString("") case "dex.v1.EventOrderCancelled.order_id": return protoreflect.ValueOfString("") case "dex.v1.EventOrderCancelled.tx_hash": return protoreflect.ValueOfString("") default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventOrderCancelled")) } panic(fmt.Errorf("message dex.v1.EventOrderCancelled 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_EventOrderCancelled) WhichOneof(d protoreflect.OneofDescriptor) protoreflect.FieldDescriptor { switch d.FullName() { default: panic(fmt.Errorf("%s is not a oneof field in dex.v1.EventOrderCancelled", 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_EventOrderCancelled) 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_EventOrderCancelled) 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_EventOrderCancelled) 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_EventOrderCancelled) ProtoMethods() *protoiface.Methods { size := func(input protoiface.SizeInput) protoiface.SizeOutput { x := input.Message.Interface().(*EventOrderCancelled) 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.Did) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.ConnectionId) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.OrderId) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.TxHash) 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().(*EventOrderCancelled) 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.TxHash) > 0 { i -= len(x.TxHash) copy(dAtA[i:], x.TxHash) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.TxHash))) i-- dAtA[i] = 0x22 } if len(x.OrderId) > 0 { i -= len(x.OrderId) copy(dAtA[i:], x.OrderId) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.OrderId))) i-- dAtA[i] = 0x1a } if len(x.ConnectionId) > 0 { i -= len(x.ConnectionId) copy(dAtA[i:], x.ConnectionId) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.ConnectionId))) i-- dAtA[i] = 0x12 } if len(x.Did) > 0 { i -= len(x.Did) copy(dAtA[i:], x.Did) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.Did))) 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().(*EventOrderCancelled) 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: EventOrderCancelled: wiretype end group for non-group") } if fieldNum <= 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: EventOrderCancelled: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field Did", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { if shift >= 64 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrIntOverflow } if iNdEx >= l { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, io.ErrUnexpectedEOF } b := dAtA[iNdEx] iNdEx++ stringLen |= uint64(b&0x7F) << shift if b < 0x80 { break } } intStringLen := int(stringLen) if intStringLen < 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrInvalidLength } postIndex := iNdEx + intStringLen if postIndex < 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrInvalidLength } if postIndex > l { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, io.ErrUnexpectedEOF } x.Did = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex case 2: if wireType != 2 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field ConnectionId", 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.ConnectionId = 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 OrderId", 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.OrderId = 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 TxHash", 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.TxHash = 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_EventOrderFilled protoreflect.MessageDescriptor fd_EventOrderFilled_did protoreflect.FieldDescriptor fd_EventOrderFilled_connection_id protoreflect.FieldDescriptor fd_EventOrderFilled_order_id protoreflect.FieldDescriptor fd_EventOrderFilled_fill_amount protoreflect.FieldDescriptor fd_EventOrderFilled_fill_price protoreflect.FieldDescriptor fd_EventOrderFilled_tx_hash protoreflect.FieldDescriptor ) func init() { file_dex_v1_events_proto_init() md_EventOrderFilled = File_dex_v1_events_proto.Messages().ByName("EventOrderFilled") fd_EventOrderFilled_did = md_EventOrderFilled.Fields().ByName("did") fd_EventOrderFilled_connection_id = md_EventOrderFilled.Fields().ByName("connection_id") fd_EventOrderFilled_order_id = md_EventOrderFilled.Fields().ByName("order_id") fd_EventOrderFilled_fill_amount = md_EventOrderFilled.Fields().ByName("fill_amount") fd_EventOrderFilled_fill_price = md_EventOrderFilled.Fields().ByName("fill_price") fd_EventOrderFilled_tx_hash = md_EventOrderFilled.Fields().ByName("tx_hash") } var _ protoreflect.Message = (*fastReflection_EventOrderFilled)(nil) type fastReflection_EventOrderFilled EventOrderFilled func (x *EventOrderFilled) ProtoReflect() protoreflect.Message { return (*fastReflection_EventOrderFilled)(x) } func (x *EventOrderFilled) slowProtoReflect() protoreflect.Message { mi := &file_dex_v1_events_proto_msgTypes[6] 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_EventOrderFilled_messageType fastReflection_EventOrderFilled_messageType var _ protoreflect.MessageType = fastReflection_EventOrderFilled_messageType{} type fastReflection_EventOrderFilled_messageType struct{} func (x fastReflection_EventOrderFilled_messageType) Zero() protoreflect.Message { return (*fastReflection_EventOrderFilled)(nil) } func (x fastReflection_EventOrderFilled_messageType) New() protoreflect.Message { return new(fastReflection_EventOrderFilled) } func (x fastReflection_EventOrderFilled_messageType) Descriptor() protoreflect.MessageDescriptor { return md_EventOrderFilled } // Descriptor returns message descriptor, which contains only the protobuf // type information for the message. func (x *fastReflection_EventOrderFilled) Descriptor() protoreflect.MessageDescriptor { return md_EventOrderFilled } // 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_EventOrderFilled) Type() protoreflect.MessageType { return _fastReflection_EventOrderFilled_messageType } // New returns a newly allocated and mutable empty message. func (x *fastReflection_EventOrderFilled) New() protoreflect.Message { return new(fastReflection_EventOrderFilled) } // Interface unwraps the message reflection interface and // returns the underlying ProtoMessage interface. func (x *fastReflection_EventOrderFilled) Interface() protoreflect.ProtoMessage { return (*EventOrderFilled)(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_EventOrderFilled) Range(f func(protoreflect.FieldDescriptor, protoreflect.Value) bool) { if x.Did != "" { value := protoreflect.ValueOfString(x.Did) if !f(fd_EventOrderFilled_did, value) { return } } if x.ConnectionId != "" { value := protoreflect.ValueOfString(x.ConnectionId) if !f(fd_EventOrderFilled_connection_id, value) { return } } if x.OrderId != "" { value := protoreflect.ValueOfString(x.OrderId) if !f(fd_EventOrderFilled_order_id, value) { return } } if x.FillAmount != "" { value := protoreflect.ValueOfString(x.FillAmount) if !f(fd_EventOrderFilled_fill_amount, value) { return } } if x.FillPrice != "" { value := protoreflect.ValueOfString(x.FillPrice) if !f(fd_EventOrderFilled_fill_price, value) { return } } if x.TxHash != "" { value := protoreflect.ValueOfString(x.TxHash) if !f(fd_EventOrderFilled_tx_hash, 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_EventOrderFilled) Has(fd protoreflect.FieldDescriptor) bool { switch fd.FullName() { case "dex.v1.EventOrderFilled.did": return x.Did != "" case "dex.v1.EventOrderFilled.connection_id": return x.ConnectionId != "" case "dex.v1.EventOrderFilled.order_id": return x.OrderId != "" case "dex.v1.EventOrderFilled.fill_amount": return x.FillAmount != "" case "dex.v1.EventOrderFilled.fill_price": return x.FillPrice != "" case "dex.v1.EventOrderFilled.tx_hash": return x.TxHash != "" default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventOrderFilled")) } panic(fmt.Errorf("message dex.v1.EventOrderFilled 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_EventOrderFilled) Clear(fd protoreflect.FieldDescriptor) { switch fd.FullName() { case "dex.v1.EventOrderFilled.did": x.Did = "" case "dex.v1.EventOrderFilled.connection_id": x.ConnectionId = "" case "dex.v1.EventOrderFilled.order_id": x.OrderId = "" case "dex.v1.EventOrderFilled.fill_amount": x.FillAmount = "" case "dex.v1.EventOrderFilled.fill_price": x.FillPrice = "" case "dex.v1.EventOrderFilled.tx_hash": x.TxHash = "" default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventOrderFilled")) } panic(fmt.Errorf("message dex.v1.EventOrderFilled 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_EventOrderFilled) Get(descriptor protoreflect.FieldDescriptor) protoreflect.Value { switch descriptor.FullName() { case "dex.v1.EventOrderFilled.did": value := x.Did return protoreflect.ValueOfString(value) case "dex.v1.EventOrderFilled.connection_id": value := x.ConnectionId return protoreflect.ValueOfString(value) case "dex.v1.EventOrderFilled.order_id": value := x.OrderId return protoreflect.ValueOfString(value) case "dex.v1.EventOrderFilled.fill_amount": value := x.FillAmount return protoreflect.ValueOfString(value) case "dex.v1.EventOrderFilled.fill_price": value := x.FillPrice return protoreflect.ValueOfString(value) case "dex.v1.EventOrderFilled.tx_hash": value := x.TxHash return protoreflect.ValueOfString(value) default: if descriptor.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventOrderFilled")) } panic(fmt.Errorf("message dex.v1.EventOrderFilled 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_EventOrderFilled) Set(fd protoreflect.FieldDescriptor, value protoreflect.Value) { switch fd.FullName() { case "dex.v1.EventOrderFilled.did": x.Did = value.Interface().(string) case "dex.v1.EventOrderFilled.connection_id": x.ConnectionId = value.Interface().(string) case "dex.v1.EventOrderFilled.order_id": x.OrderId = value.Interface().(string) case "dex.v1.EventOrderFilled.fill_amount": x.FillAmount = value.Interface().(string) case "dex.v1.EventOrderFilled.fill_price": x.FillPrice = value.Interface().(string) case "dex.v1.EventOrderFilled.tx_hash": x.TxHash = value.Interface().(string) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventOrderFilled")) } panic(fmt.Errorf("message dex.v1.EventOrderFilled 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_EventOrderFilled) Mutable(fd protoreflect.FieldDescriptor) protoreflect.Value { switch fd.FullName() { case "dex.v1.EventOrderFilled.did": panic(fmt.Errorf("field did of message dex.v1.EventOrderFilled is not mutable")) case "dex.v1.EventOrderFilled.connection_id": panic(fmt.Errorf("field connection_id of message dex.v1.EventOrderFilled is not mutable")) case "dex.v1.EventOrderFilled.order_id": panic(fmt.Errorf("field order_id of message dex.v1.EventOrderFilled is not mutable")) case "dex.v1.EventOrderFilled.fill_amount": panic(fmt.Errorf("field fill_amount of message dex.v1.EventOrderFilled is not mutable")) case "dex.v1.EventOrderFilled.fill_price": panic(fmt.Errorf("field fill_price of message dex.v1.EventOrderFilled is not mutable")) case "dex.v1.EventOrderFilled.tx_hash": panic(fmt.Errorf("field tx_hash of message dex.v1.EventOrderFilled is not mutable")) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventOrderFilled")) } panic(fmt.Errorf("message dex.v1.EventOrderFilled 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_EventOrderFilled) NewField(fd protoreflect.FieldDescriptor) protoreflect.Value { switch fd.FullName() { case "dex.v1.EventOrderFilled.did": return protoreflect.ValueOfString("") case "dex.v1.EventOrderFilled.connection_id": return protoreflect.ValueOfString("") case "dex.v1.EventOrderFilled.order_id": return protoreflect.ValueOfString("") case "dex.v1.EventOrderFilled.fill_amount": return protoreflect.ValueOfString("") case "dex.v1.EventOrderFilled.fill_price": return protoreflect.ValueOfString("") case "dex.v1.EventOrderFilled.tx_hash": return protoreflect.ValueOfString("") default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventOrderFilled")) } panic(fmt.Errorf("message dex.v1.EventOrderFilled 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_EventOrderFilled) WhichOneof(d protoreflect.OneofDescriptor) protoreflect.FieldDescriptor { switch d.FullName() { default: panic(fmt.Errorf("%s is not a oneof field in dex.v1.EventOrderFilled", 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_EventOrderFilled) 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_EventOrderFilled) 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_EventOrderFilled) 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_EventOrderFilled) ProtoMethods() *protoiface.Methods { size := func(input protoiface.SizeInput) protoiface.SizeOutput { x := input.Message.Interface().(*EventOrderFilled) 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.Did) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.ConnectionId) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.OrderId) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.FillAmount) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.FillPrice) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.TxHash) 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().(*EventOrderFilled) 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.TxHash) > 0 { i -= len(x.TxHash) copy(dAtA[i:], x.TxHash) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.TxHash))) i-- dAtA[i] = 0x32 } if len(x.FillPrice) > 0 { i -= len(x.FillPrice) copy(dAtA[i:], x.FillPrice) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.FillPrice))) i-- dAtA[i] = 0x2a } if len(x.FillAmount) > 0 { i -= len(x.FillAmount) copy(dAtA[i:], x.FillAmount) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.FillAmount))) i-- dAtA[i] = 0x22 } if len(x.OrderId) > 0 { i -= len(x.OrderId) copy(dAtA[i:], x.OrderId) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.OrderId))) i-- dAtA[i] = 0x1a } if len(x.ConnectionId) > 0 { i -= len(x.ConnectionId) copy(dAtA[i:], x.ConnectionId) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.ConnectionId))) i-- dAtA[i] = 0x12 } if len(x.Did) > 0 { i -= len(x.Did) copy(dAtA[i:], x.Did) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.Did))) 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().(*EventOrderFilled) 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: EventOrderFilled: wiretype end group for non-group") } if fieldNum <= 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: EventOrderFilled: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field Did", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { if shift >= 64 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrIntOverflow } if iNdEx >= l { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, io.ErrUnexpectedEOF } b := dAtA[iNdEx] iNdEx++ stringLen |= uint64(b&0x7F) << shift if b < 0x80 { break } } intStringLen := int(stringLen) if intStringLen < 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrInvalidLength } postIndex := iNdEx + intStringLen if postIndex < 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrInvalidLength } if postIndex > l { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, io.ErrUnexpectedEOF } x.Did = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex case 2: if wireType != 2 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field ConnectionId", 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.ConnectionId = 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 OrderId", 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.OrderId = 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 FillAmount", 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.FillAmount = 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 FillPrice", 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.FillPrice = 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 TxHash", 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.TxHash = 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_EventICAPacketSent protoreflect.MessageDescriptor fd_EventICAPacketSent_did protoreflect.FieldDescriptor fd_EventICAPacketSent_connection_id protoreflect.FieldDescriptor fd_EventICAPacketSent_packet_type protoreflect.FieldDescriptor fd_EventICAPacketSent_sequence protoreflect.FieldDescriptor ) func init() { file_dex_v1_events_proto_init() md_EventICAPacketSent = File_dex_v1_events_proto.Messages().ByName("EventICAPacketSent") fd_EventICAPacketSent_did = md_EventICAPacketSent.Fields().ByName("did") fd_EventICAPacketSent_connection_id = md_EventICAPacketSent.Fields().ByName("connection_id") fd_EventICAPacketSent_packet_type = md_EventICAPacketSent.Fields().ByName("packet_type") fd_EventICAPacketSent_sequence = md_EventICAPacketSent.Fields().ByName("sequence") } var _ protoreflect.Message = (*fastReflection_EventICAPacketSent)(nil) type fastReflection_EventICAPacketSent EventICAPacketSent func (x *EventICAPacketSent) ProtoReflect() protoreflect.Message { return (*fastReflection_EventICAPacketSent)(x) } func (x *EventICAPacketSent) slowProtoReflect() protoreflect.Message { mi := &file_dex_v1_events_proto_msgTypes[7] 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_EventICAPacketSent_messageType fastReflection_EventICAPacketSent_messageType var _ protoreflect.MessageType = fastReflection_EventICAPacketSent_messageType{} type fastReflection_EventICAPacketSent_messageType struct{} func (x fastReflection_EventICAPacketSent_messageType) Zero() protoreflect.Message { return (*fastReflection_EventICAPacketSent)(nil) } func (x fastReflection_EventICAPacketSent_messageType) New() protoreflect.Message { return new(fastReflection_EventICAPacketSent) } func (x fastReflection_EventICAPacketSent_messageType) Descriptor() protoreflect.MessageDescriptor { return md_EventICAPacketSent } // Descriptor returns message descriptor, which contains only the protobuf // type information for the message. func (x *fastReflection_EventICAPacketSent) Descriptor() protoreflect.MessageDescriptor { return md_EventICAPacketSent } // 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_EventICAPacketSent) Type() protoreflect.MessageType { return _fastReflection_EventICAPacketSent_messageType } // New returns a newly allocated and mutable empty message. func (x *fastReflection_EventICAPacketSent) New() protoreflect.Message { return new(fastReflection_EventICAPacketSent) } // Interface unwraps the message reflection interface and // returns the underlying ProtoMessage interface. func (x *fastReflection_EventICAPacketSent) Interface() protoreflect.ProtoMessage { return (*EventICAPacketSent)(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_EventICAPacketSent) Range(f func(protoreflect.FieldDescriptor, protoreflect.Value) bool) { if x.Did != "" { value := protoreflect.ValueOfString(x.Did) if !f(fd_EventICAPacketSent_did, value) { return } } if x.ConnectionId != "" { value := protoreflect.ValueOfString(x.ConnectionId) if !f(fd_EventICAPacketSent_connection_id, value) { return } } if x.PacketType != "" { value := protoreflect.ValueOfString(x.PacketType) if !f(fd_EventICAPacketSent_packet_type, value) { return } } if x.Sequence != uint64(0) { value := protoreflect.ValueOfUint64(x.Sequence) if !f(fd_EventICAPacketSent_sequence, 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_EventICAPacketSent) Has(fd protoreflect.FieldDescriptor) bool { switch fd.FullName() { case "dex.v1.EventICAPacketSent.did": return x.Did != "" case "dex.v1.EventICAPacketSent.connection_id": return x.ConnectionId != "" case "dex.v1.EventICAPacketSent.packet_type": return x.PacketType != "" case "dex.v1.EventICAPacketSent.sequence": return x.Sequence != uint64(0) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventICAPacketSent")) } panic(fmt.Errorf("message dex.v1.EventICAPacketSent 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_EventICAPacketSent) Clear(fd protoreflect.FieldDescriptor) { switch fd.FullName() { case "dex.v1.EventICAPacketSent.did": x.Did = "" case "dex.v1.EventICAPacketSent.connection_id": x.ConnectionId = "" case "dex.v1.EventICAPacketSent.packet_type": x.PacketType = "" case "dex.v1.EventICAPacketSent.sequence": x.Sequence = uint64(0) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventICAPacketSent")) } panic(fmt.Errorf("message dex.v1.EventICAPacketSent 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_EventICAPacketSent) Get(descriptor protoreflect.FieldDescriptor) protoreflect.Value { switch descriptor.FullName() { case "dex.v1.EventICAPacketSent.did": value := x.Did return protoreflect.ValueOfString(value) case "dex.v1.EventICAPacketSent.connection_id": value := x.ConnectionId return protoreflect.ValueOfString(value) case "dex.v1.EventICAPacketSent.packet_type": value := x.PacketType return protoreflect.ValueOfString(value) case "dex.v1.EventICAPacketSent.sequence": value := x.Sequence return protoreflect.ValueOfUint64(value) default: if descriptor.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventICAPacketSent")) } panic(fmt.Errorf("message dex.v1.EventICAPacketSent 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_EventICAPacketSent) Set(fd protoreflect.FieldDescriptor, value protoreflect.Value) { switch fd.FullName() { case "dex.v1.EventICAPacketSent.did": x.Did = value.Interface().(string) case "dex.v1.EventICAPacketSent.connection_id": x.ConnectionId = value.Interface().(string) case "dex.v1.EventICAPacketSent.packet_type": x.PacketType = value.Interface().(string) case "dex.v1.EventICAPacketSent.sequence": x.Sequence = value.Uint() default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventICAPacketSent")) } panic(fmt.Errorf("message dex.v1.EventICAPacketSent 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_EventICAPacketSent) Mutable(fd protoreflect.FieldDescriptor) protoreflect.Value { switch fd.FullName() { case "dex.v1.EventICAPacketSent.did": panic(fmt.Errorf("field did of message dex.v1.EventICAPacketSent is not mutable")) case "dex.v1.EventICAPacketSent.connection_id": panic(fmt.Errorf("field connection_id of message dex.v1.EventICAPacketSent is not mutable")) case "dex.v1.EventICAPacketSent.packet_type": panic(fmt.Errorf("field packet_type of message dex.v1.EventICAPacketSent is not mutable")) case "dex.v1.EventICAPacketSent.sequence": panic(fmt.Errorf("field sequence of message dex.v1.EventICAPacketSent is not mutable")) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventICAPacketSent")) } panic(fmt.Errorf("message dex.v1.EventICAPacketSent 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_EventICAPacketSent) NewField(fd protoreflect.FieldDescriptor) protoreflect.Value { switch fd.FullName() { case "dex.v1.EventICAPacketSent.did": return protoreflect.ValueOfString("") case "dex.v1.EventICAPacketSent.connection_id": return protoreflect.ValueOfString("") case "dex.v1.EventICAPacketSent.packet_type": return protoreflect.ValueOfString("") case "dex.v1.EventICAPacketSent.sequence": return protoreflect.ValueOfUint64(uint64(0)) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventICAPacketSent")) } panic(fmt.Errorf("message dex.v1.EventICAPacketSent 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_EventICAPacketSent) WhichOneof(d protoreflect.OneofDescriptor) protoreflect.FieldDescriptor { switch d.FullName() { default: panic(fmt.Errorf("%s is not a oneof field in dex.v1.EventICAPacketSent", 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_EventICAPacketSent) 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_EventICAPacketSent) 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_EventICAPacketSent) 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_EventICAPacketSent) ProtoMethods() *protoiface.Methods { size := func(input protoiface.SizeInput) protoiface.SizeOutput { x := input.Message.Interface().(*EventICAPacketSent) 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.Did) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.ConnectionId) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.PacketType) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } if x.Sequence != 0 { n += 1 + runtime.Sov(uint64(x.Sequence)) } 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().(*EventICAPacketSent) 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.Sequence != 0 { i = runtime.EncodeVarint(dAtA, i, uint64(x.Sequence)) i-- dAtA[i] = 0x20 } if len(x.PacketType) > 0 { i -= len(x.PacketType) copy(dAtA[i:], x.PacketType) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.PacketType))) i-- dAtA[i] = 0x1a } if len(x.ConnectionId) > 0 { i -= len(x.ConnectionId) copy(dAtA[i:], x.ConnectionId) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.ConnectionId))) i-- dAtA[i] = 0x12 } if len(x.Did) > 0 { i -= len(x.Did) copy(dAtA[i:], x.Did) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.Did))) 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().(*EventICAPacketSent) 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: EventICAPacketSent: wiretype end group for non-group") } if fieldNum <= 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: EventICAPacketSent: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field Did", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { if shift >= 64 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrIntOverflow } if iNdEx >= l { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, io.ErrUnexpectedEOF } b := dAtA[iNdEx] iNdEx++ stringLen |= uint64(b&0x7F) << shift if b < 0x80 { break } } intStringLen := int(stringLen) if intStringLen < 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrInvalidLength } postIndex := iNdEx + intStringLen if postIndex < 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrInvalidLength } if postIndex > l { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, io.ErrUnexpectedEOF } x.Did = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex case 2: if wireType != 2 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field ConnectionId", 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.ConnectionId = 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 PacketType", 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.PacketType = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex case 4: if wireType != 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field Sequence", wireType) } x.Sequence = 0 for shift := uint(0); ; shift += 7 { if shift >= 64 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrIntOverflow } if iNdEx >= l { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, io.ErrUnexpectedEOF } b := dAtA[iNdEx] iNdEx++ x.Sequence |= uint64(b&0x7F) << shift if b < 0x80 { break } } default: iNdEx = preIndex skippy, err := runtime.Skip(dAtA[iNdEx:]) if err != nil { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, err } if (skippy < 0) || (iNdEx+skippy) < 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrInvalidLength } if (iNdEx + skippy) > l { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, io.ErrUnexpectedEOF } if !options.DiscardUnknown { x.unknownFields = append(x.unknownFields, dAtA[iNdEx:iNdEx+skippy]...) } iNdEx += skippy } } if iNdEx > l { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, io.ErrUnexpectedEOF } return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, nil } return &protoiface.Methods{ NoUnkeyedLiterals: struct{}{}, Flags: protoiface.SupportMarshalDeterministic | protoiface.SupportUnmarshalDiscardUnknown, Size: size, Marshal: marshal, Unmarshal: unmarshal, Merge: nil, CheckInitialized: nil, } } var ( md_EventICAPacketAcknowledged protoreflect.MessageDescriptor fd_EventICAPacketAcknowledged_did protoreflect.FieldDescriptor fd_EventICAPacketAcknowledged_connection_id protoreflect.FieldDescriptor fd_EventICAPacketAcknowledged_packet_type protoreflect.FieldDescriptor fd_EventICAPacketAcknowledged_sequence protoreflect.FieldDescriptor fd_EventICAPacketAcknowledged_success protoreflect.FieldDescriptor fd_EventICAPacketAcknowledged_error protoreflect.FieldDescriptor ) func init() { file_dex_v1_events_proto_init() md_EventICAPacketAcknowledged = File_dex_v1_events_proto.Messages().ByName("EventICAPacketAcknowledged") fd_EventICAPacketAcknowledged_did = md_EventICAPacketAcknowledged.Fields().ByName("did") fd_EventICAPacketAcknowledged_connection_id = md_EventICAPacketAcknowledged.Fields().ByName("connection_id") fd_EventICAPacketAcknowledged_packet_type = md_EventICAPacketAcknowledged.Fields().ByName("packet_type") fd_EventICAPacketAcknowledged_sequence = md_EventICAPacketAcknowledged.Fields().ByName("sequence") fd_EventICAPacketAcknowledged_success = md_EventICAPacketAcknowledged.Fields().ByName("success") fd_EventICAPacketAcknowledged_error = md_EventICAPacketAcknowledged.Fields().ByName("error") } var _ protoreflect.Message = (*fastReflection_EventICAPacketAcknowledged)(nil) type fastReflection_EventICAPacketAcknowledged EventICAPacketAcknowledged func (x *EventICAPacketAcknowledged) ProtoReflect() protoreflect.Message { return (*fastReflection_EventICAPacketAcknowledged)(x) } func (x *EventICAPacketAcknowledged) slowProtoReflect() protoreflect.Message { mi := &file_dex_v1_events_proto_msgTypes[8] 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_EventICAPacketAcknowledged_messageType fastReflection_EventICAPacketAcknowledged_messageType var _ protoreflect.MessageType = fastReflection_EventICAPacketAcknowledged_messageType{} type fastReflection_EventICAPacketAcknowledged_messageType struct{} func (x fastReflection_EventICAPacketAcknowledged_messageType) Zero() protoreflect.Message { return (*fastReflection_EventICAPacketAcknowledged)(nil) } func (x fastReflection_EventICAPacketAcknowledged_messageType) New() protoreflect.Message { return new(fastReflection_EventICAPacketAcknowledged) } func (x fastReflection_EventICAPacketAcknowledged_messageType) Descriptor() protoreflect.MessageDescriptor { return md_EventICAPacketAcknowledged } // Descriptor returns message descriptor, which contains only the protobuf // type information for the message. func (x *fastReflection_EventICAPacketAcknowledged) Descriptor() protoreflect.MessageDescriptor { return md_EventICAPacketAcknowledged } // 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_EventICAPacketAcknowledged) Type() protoreflect.MessageType { return _fastReflection_EventICAPacketAcknowledged_messageType } // New returns a newly allocated and mutable empty message. func (x *fastReflection_EventICAPacketAcknowledged) New() protoreflect.Message { return new(fastReflection_EventICAPacketAcknowledged) } // Interface unwraps the message reflection interface and // returns the underlying ProtoMessage interface. func (x *fastReflection_EventICAPacketAcknowledged) Interface() protoreflect.ProtoMessage { return (*EventICAPacketAcknowledged)(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_EventICAPacketAcknowledged) Range(f func(protoreflect.FieldDescriptor, protoreflect.Value) bool) { if x.Did != "" { value := protoreflect.ValueOfString(x.Did) if !f(fd_EventICAPacketAcknowledged_did, value) { return } } if x.ConnectionId != "" { value := protoreflect.ValueOfString(x.ConnectionId) if !f(fd_EventICAPacketAcknowledged_connection_id, value) { return } } if x.PacketType != "" { value := protoreflect.ValueOfString(x.PacketType) if !f(fd_EventICAPacketAcknowledged_packet_type, value) { return } } if x.Sequence != uint64(0) { value := protoreflect.ValueOfUint64(x.Sequence) if !f(fd_EventICAPacketAcknowledged_sequence, value) { return } } if x.Success != false { value := protoreflect.ValueOfBool(x.Success) if !f(fd_EventICAPacketAcknowledged_success, value) { return } } if x.Error != "" { value := protoreflect.ValueOfString(x.Error) if !f(fd_EventICAPacketAcknowledged_error, 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_EventICAPacketAcknowledged) Has(fd protoreflect.FieldDescriptor) bool { switch fd.FullName() { case "dex.v1.EventICAPacketAcknowledged.did": return x.Did != "" case "dex.v1.EventICAPacketAcknowledged.connection_id": return x.ConnectionId != "" case "dex.v1.EventICAPacketAcknowledged.packet_type": return x.PacketType != "" case "dex.v1.EventICAPacketAcknowledged.sequence": return x.Sequence != uint64(0) case "dex.v1.EventICAPacketAcknowledged.success": return x.Success != false case "dex.v1.EventICAPacketAcknowledged.error": return x.Error != "" default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventICAPacketAcknowledged")) } panic(fmt.Errorf("message dex.v1.EventICAPacketAcknowledged 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_EventICAPacketAcknowledged) Clear(fd protoreflect.FieldDescriptor) { switch fd.FullName() { case "dex.v1.EventICAPacketAcknowledged.did": x.Did = "" case "dex.v1.EventICAPacketAcknowledged.connection_id": x.ConnectionId = "" case "dex.v1.EventICAPacketAcknowledged.packet_type": x.PacketType = "" case "dex.v1.EventICAPacketAcknowledged.sequence": x.Sequence = uint64(0) case "dex.v1.EventICAPacketAcknowledged.success": x.Success = false case "dex.v1.EventICAPacketAcknowledged.error": x.Error = "" default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventICAPacketAcknowledged")) } panic(fmt.Errorf("message dex.v1.EventICAPacketAcknowledged 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_EventICAPacketAcknowledged) Get(descriptor protoreflect.FieldDescriptor) protoreflect.Value { switch descriptor.FullName() { case "dex.v1.EventICAPacketAcknowledged.did": value := x.Did return protoreflect.ValueOfString(value) case "dex.v1.EventICAPacketAcknowledged.connection_id": value := x.ConnectionId return protoreflect.ValueOfString(value) case "dex.v1.EventICAPacketAcknowledged.packet_type": value := x.PacketType return protoreflect.ValueOfString(value) case "dex.v1.EventICAPacketAcknowledged.sequence": value := x.Sequence return protoreflect.ValueOfUint64(value) case "dex.v1.EventICAPacketAcknowledged.success": value := x.Success return protoreflect.ValueOfBool(value) case "dex.v1.EventICAPacketAcknowledged.error": value := x.Error return protoreflect.ValueOfString(value) default: if descriptor.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventICAPacketAcknowledged")) } panic(fmt.Errorf("message dex.v1.EventICAPacketAcknowledged 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_EventICAPacketAcknowledged) Set(fd protoreflect.FieldDescriptor, value protoreflect.Value) { switch fd.FullName() { case "dex.v1.EventICAPacketAcknowledged.did": x.Did = value.Interface().(string) case "dex.v1.EventICAPacketAcknowledged.connection_id": x.ConnectionId = value.Interface().(string) case "dex.v1.EventICAPacketAcknowledged.packet_type": x.PacketType = value.Interface().(string) case "dex.v1.EventICAPacketAcknowledged.sequence": x.Sequence = value.Uint() case "dex.v1.EventICAPacketAcknowledged.success": x.Success = value.Bool() case "dex.v1.EventICAPacketAcknowledged.error": x.Error = value.Interface().(string) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventICAPacketAcknowledged")) } panic(fmt.Errorf("message dex.v1.EventICAPacketAcknowledged 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_EventICAPacketAcknowledged) Mutable(fd protoreflect.FieldDescriptor) protoreflect.Value { switch fd.FullName() { case "dex.v1.EventICAPacketAcknowledged.did": panic(fmt.Errorf("field did of message dex.v1.EventICAPacketAcknowledged is not mutable")) case "dex.v1.EventICAPacketAcknowledged.connection_id": panic(fmt.Errorf("field connection_id of message dex.v1.EventICAPacketAcknowledged is not mutable")) case "dex.v1.EventICAPacketAcknowledged.packet_type": panic(fmt.Errorf("field packet_type of message dex.v1.EventICAPacketAcknowledged is not mutable")) case "dex.v1.EventICAPacketAcknowledged.sequence": panic(fmt.Errorf("field sequence of message dex.v1.EventICAPacketAcknowledged is not mutable")) case "dex.v1.EventICAPacketAcknowledged.success": panic(fmt.Errorf("field success of message dex.v1.EventICAPacketAcknowledged is not mutable")) case "dex.v1.EventICAPacketAcknowledged.error": panic(fmt.Errorf("field error of message dex.v1.EventICAPacketAcknowledged is not mutable")) default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventICAPacketAcknowledged")) } panic(fmt.Errorf("message dex.v1.EventICAPacketAcknowledged 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_EventICAPacketAcknowledged) NewField(fd protoreflect.FieldDescriptor) protoreflect.Value { switch fd.FullName() { case "dex.v1.EventICAPacketAcknowledged.did": return protoreflect.ValueOfString("") case "dex.v1.EventICAPacketAcknowledged.connection_id": return protoreflect.ValueOfString("") case "dex.v1.EventICAPacketAcknowledged.packet_type": return protoreflect.ValueOfString("") case "dex.v1.EventICAPacketAcknowledged.sequence": return protoreflect.ValueOfUint64(uint64(0)) case "dex.v1.EventICAPacketAcknowledged.success": return protoreflect.ValueOfBool(false) case "dex.v1.EventICAPacketAcknowledged.error": return protoreflect.ValueOfString("") default: if fd.IsExtension() { panic(fmt.Errorf("proto3 declared messages do not support extensions: dex.v1.EventICAPacketAcknowledged")) } panic(fmt.Errorf("message dex.v1.EventICAPacketAcknowledged 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_EventICAPacketAcknowledged) WhichOneof(d protoreflect.OneofDescriptor) protoreflect.FieldDescriptor { switch d.FullName() { default: panic(fmt.Errorf("%s is not a oneof field in dex.v1.EventICAPacketAcknowledged", 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_EventICAPacketAcknowledged) 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_EventICAPacketAcknowledged) 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_EventICAPacketAcknowledged) 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_EventICAPacketAcknowledged) ProtoMethods() *protoiface.Methods { size := func(input protoiface.SizeInput) protoiface.SizeOutput { x := input.Message.Interface().(*EventICAPacketAcknowledged) 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.Did) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.ConnectionId) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } l = len(x.PacketType) if l > 0 { n += 1 + l + runtime.Sov(uint64(l)) } if x.Sequence != 0 { n += 1 + runtime.Sov(uint64(x.Sequence)) } if x.Success { n += 2 } l = len(x.Error) 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().(*EventICAPacketAcknowledged) 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.Error) > 0 { i -= len(x.Error) copy(dAtA[i:], x.Error) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.Error))) i-- dAtA[i] = 0x32 } if x.Success { i-- if x.Success { dAtA[i] = 1 } else { dAtA[i] = 0 } i-- dAtA[i] = 0x28 } if x.Sequence != 0 { i = runtime.EncodeVarint(dAtA, i, uint64(x.Sequence)) i-- dAtA[i] = 0x20 } if len(x.PacketType) > 0 { i -= len(x.PacketType) copy(dAtA[i:], x.PacketType) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.PacketType))) i-- dAtA[i] = 0x1a } if len(x.ConnectionId) > 0 { i -= len(x.ConnectionId) copy(dAtA[i:], x.ConnectionId) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.ConnectionId))) i-- dAtA[i] = 0x12 } if len(x.Did) > 0 { i -= len(x.Did) copy(dAtA[i:], x.Did) i = runtime.EncodeVarint(dAtA, i, uint64(len(x.Did))) 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().(*EventICAPacketAcknowledged) 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: EventICAPacketAcknowledged: wiretype end group for non-group") } if fieldNum <= 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: EventICAPacketAcknowledged: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field Did", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { if shift >= 64 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrIntOverflow } if iNdEx >= l { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, io.ErrUnexpectedEOF } b := dAtA[iNdEx] iNdEx++ stringLen |= uint64(b&0x7F) << shift if b < 0x80 { break } } intStringLen := int(stringLen) if intStringLen < 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrInvalidLength } postIndex := iNdEx + intStringLen if postIndex < 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrInvalidLength } if postIndex > l { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, io.ErrUnexpectedEOF } x.Did = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex case 2: if wireType != 2 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field ConnectionId", 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.ConnectionId = 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 PacketType", 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.PacketType = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex case 4: if wireType != 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field Sequence", wireType) } x.Sequence = 0 for shift := uint(0); ; shift += 7 { if shift >= 64 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, runtime.ErrIntOverflow } if iNdEx >= l { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, io.ErrUnexpectedEOF } b := dAtA[iNdEx] iNdEx++ x.Sequence |= uint64(b&0x7F) << shift if b < 0x80 { break } } case 5: if wireType != 0 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field Success", wireType) } var v 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++ v |= int(b&0x7F) << shift if b < 0x80 { break } } x.Success = bool(v != 0) case 6: if wireType != 2 { return protoiface.UnmarshalOutput{NoUnkeyedLiterals: input.NoUnkeyedLiterals, Flags: input.Flags}, fmt.Errorf("proto: wrong wireType = %d for field Error", 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.Error = 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, } } // Code generated by protoc-gen-go. DO NOT EDIT. // versions: // protoc-gen-go v1.27.0 // protoc (unknown) // source: dex/v1/events.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) ) // EventDEXAccountRegistered is emitted when a new DEX account is registered type EventDEXAccountRegistered struct { state protoimpl.MessageState sizeCache protoimpl.SizeCache unknownFields protoimpl.UnknownFields // DID of the account owner Did string `protobuf:"bytes,1,opt,name=did,proto3" json:"did,omitempty"` // IBC connection ID ConnectionId string `protobuf:"bytes,2,opt,name=connection_id,json=connectionId,proto3" json:"connection_id,omitempty"` // Generated port ID PortId string `protobuf:"bytes,3,opt,name=port_id,json=portId,proto3" json:"port_id,omitempty"` // Remote account address (when available) AccountAddress string `protobuf:"bytes,4,opt,name=account_address,json=accountAddress,proto3" json:"account_address,omitempty"` } func (x *EventDEXAccountRegistered) Reset() { *x = EventDEXAccountRegistered{} if protoimpl.UnsafeEnabled { mi := &file_dex_v1_events_proto_msgTypes[0] ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) ms.StoreMessageInfo(mi) } } func (x *EventDEXAccountRegistered) String() string { return protoimpl.X.MessageStringOf(x) } func (*EventDEXAccountRegistered) ProtoMessage() {} // Deprecated: Use EventDEXAccountRegistered.ProtoReflect.Descriptor instead. func (*EventDEXAccountRegistered) Descriptor() ([]byte, []int) { return file_dex_v1_events_proto_rawDescGZIP(), []int{0} } func (x *EventDEXAccountRegistered) GetDid() string { if x != nil { return x.Did } return "" } func (x *EventDEXAccountRegistered) GetConnectionId() string { if x != nil { return x.ConnectionId } return "" } func (x *EventDEXAccountRegistered) GetPortId() string { if x != nil { return x.PortId } return "" } func (x *EventDEXAccountRegistered) GetAccountAddress() string { if x != nil { return x.AccountAddress } return "" } // EventSwapExecuted is emitted when a swap is executed type EventSwapExecuted struct { state protoimpl.MessageState sizeCache protoimpl.SizeCache unknownFields protoimpl.UnknownFields // DID of the trader Did string `protobuf:"bytes,1,opt,name=did,proto3" json:"did,omitempty"` // IBC connection ID ConnectionId string `protobuf:"bytes,2,opt,name=connection_id,json=connectionId,proto3" json:"connection_id,omitempty"` // Source token and amount Source *v1beta1.Coin `protobuf:"bytes,3,opt,name=source,proto3" json:"source,omitempty"` // Target token and amount received Target *v1beta1.Coin `protobuf:"bytes,4,opt,name=target,proto3" json:"target,omitempty"` // Transaction hash on remote chain TxHash string `protobuf:"bytes,5,opt,name=tx_hash,json=txHash,proto3" json:"tx_hash,omitempty"` // IBC packet sequence Sequence uint64 `protobuf:"varint,6,opt,name=sequence,proto3" json:"sequence,omitempty"` } func (x *EventSwapExecuted) Reset() { *x = EventSwapExecuted{} if protoimpl.UnsafeEnabled { mi := &file_dex_v1_events_proto_msgTypes[1] ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) ms.StoreMessageInfo(mi) } } func (x *EventSwapExecuted) String() string { return protoimpl.X.MessageStringOf(x) } func (*EventSwapExecuted) ProtoMessage() {} // Deprecated: Use EventSwapExecuted.ProtoReflect.Descriptor instead. func (*EventSwapExecuted) Descriptor() ([]byte, []int) { return file_dex_v1_events_proto_rawDescGZIP(), []int{1} } func (x *EventSwapExecuted) GetDid() string { if x != nil { return x.Did } return "" } func (x *EventSwapExecuted) GetConnectionId() string { if x != nil { return x.ConnectionId } return "" } func (x *EventSwapExecuted) GetSource() *v1beta1.Coin { if x != nil { return x.Source } return nil } func (x *EventSwapExecuted) GetTarget() *v1beta1.Coin { if x != nil { return x.Target } return nil } func (x *EventSwapExecuted) GetTxHash() string { if x != nil { return x.TxHash } return "" } func (x *EventSwapExecuted) GetSequence() uint64 { if x != nil { return x.Sequence } return 0 } // EventLiquidityProvided is emitted when liquidity is added type EventLiquidityProvided struct { state protoimpl.MessageState sizeCache protoimpl.SizeCache unknownFields protoimpl.UnknownFields // DID of the liquidity provider Did string `protobuf:"bytes,1,opt,name=did,proto3" json:"did,omitempty"` // IBC connection ID ConnectionId string `protobuf:"bytes,2,opt,name=connection_id,json=connectionId,proto3" json:"connection_id,omitempty"` // Pool ID PoolId string `protobuf:"bytes,3,opt,name=pool_id,json=poolId,proto3" json:"pool_id,omitempty"` // Assets provided Assets []*v1beta1.Coin `protobuf:"bytes,4,rep,name=assets,proto3" json:"assets,omitempty"` // Shares received SharesReceived string `protobuf:"bytes,5,opt,name=shares_received,json=sharesReceived,proto3" json:"shares_received,omitempty"` // Transaction hash on remote chain TxHash string `protobuf:"bytes,6,opt,name=tx_hash,json=txHash,proto3" json:"tx_hash,omitempty"` } func (x *EventLiquidityProvided) Reset() { *x = EventLiquidityProvided{} if protoimpl.UnsafeEnabled { mi := &file_dex_v1_events_proto_msgTypes[2] ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) ms.StoreMessageInfo(mi) } } func (x *EventLiquidityProvided) String() string { return protoimpl.X.MessageStringOf(x) } func (*EventLiquidityProvided) ProtoMessage() {} // Deprecated: Use EventLiquidityProvided.ProtoReflect.Descriptor instead. func (*EventLiquidityProvided) Descriptor() ([]byte, []int) { return file_dex_v1_events_proto_rawDescGZIP(), []int{2} } func (x *EventLiquidityProvided) GetDid() string { if x != nil { return x.Did } return "" } func (x *EventLiquidityProvided) GetConnectionId() string { if x != nil { return x.ConnectionId } return "" } func (x *EventLiquidityProvided) GetPoolId() string { if x != nil { return x.PoolId } return "" } func (x *EventLiquidityProvided) GetAssets() []*v1beta1.Coin { if x != nil { return x.Assets } return nil } func (x *EventLiquidityProvided) GetSharesReceived() string { if x != nil { return x.SharesReceived } return "" } func (x *EventLiquidityProvided) GetTxHash() string { if x != nil { return x.TxHash } return "" } // EventLiquidityRemoved is emitted when liquidity is removed type EventLiquidityRemoved struct { state protoimpl.MessageState sizeCache protoimpl.SizeCache unknownFields protoimpl.UnknownFields // DID of the liquidity provider Did string `protobuf:"bytes,1,opt,name=did,proto3" json:"did,omitempty"` // IBC connection ID ConnectionId string `protobuf:"bytes,2,opt,name=connection_id,json=connectionId,proto3" json:"connection_id,omitempty"` // Pool ID PoolId string `protobuf:"bytes,3,opt,name=pool_id,json=poolId,proto3" json:"pool_id,omitempty"` // Shares removed SharesRemoved string `protobuf:"bytes,4,opt,name=shares_removed,json=sharesRemoved,proto3" json:"shares_removed,omitempty"` // Assets received Assets []*v1beta1.Coin `protobuf:"bytes,5,rep,name=assets,proto3" json:"assets,omitempty"` // Transaction hash on remote chain TxHash string `protobuf:"bytes,6,opt,name=tx_hash,json=txHash,proto3" json:"tx_hash,omitempty"` } func (x *EventLiquidityRemoved) Reset() { *x = EventLiquidityRemoved{} if protoimpl.UnsafeEnabled { mi := &file_dex_v1_events_proto_msgTypes[3] ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) ms.StoreMessageInfo(mi) } } func (x *EventLiquidityRemoved) String() string { return protoimpl.X.MessageStringOf(x) } func (*EventLiquidityRemoved) ProtoMessage() {} // Deprecated: Use EventLiquidityRemoved.ProtoReflect.Descriptor instead. func (*EventLiquidityRemoved) Descriptor() ([]byte, []int) { return file_dex_v1_events_proto_rawDescGZIP(), []int{3} } func (x *EventLiquidityRemoved) GetDid() string { if x != nil { return x.Did } return "" } func (x *EventLiquidityRemoved) GetConnectionId() string { if x != nil { return x.ConnectionId } return "" } func (x *EventLiquidityRemoved) GetPoolId() string { if x != nil { return x.PoolId } return "" } func (x *EventLiquidityRemoved) GetSharesRemoved() string { if x != nil { return x.SharesRemoved } return "" } func (x *EventLiquidityRemoved) GetAssets() []*v1beta1.Coin { if x != nil { return x.Assets } return nil } func (x *EventLiquidityRemoved) GetTxHash() string { if x != nil { return x.TxHash } return "" } // EventOrderCreated is emitted when a limit order is created type EventOrderCreated struct { state protoimpl.MessageState sizeCache protoimpl.SizeCache unknownFields protoimpl.UnknownFields // DID of the trader Did string `protobuf:"bytes,1,opt,name=did,proto3" json:"did,omitempty"` // IBC connection ID ConnectionId string `protobuf:"bytes,2,opt,name=connection_id,json=connectionId,proto3" json:"connection_id,omitempty"` // Order ID on remote chain OrderId string `protobuf:"bytes,3,opt,name=order_id,json=orderId,proto3" json:"order_id,omitempty"` // Order details SellDenom string `protobuf:"bytes,4,opt,name=sell_denom,json=sellDenom,proto3" json:"sell_denom,omitempty"` BuyDenom string `protobuf:"bytes,5,opt,name=buy_denom,json=buyDenom,proto3" json:"buy_denom,omitempty"` Amount string `protobuf:"bytes,6,opt,name=amount,proto3" json:"amount,omitempty"` Price string `protobuf:"bytes,7,opt,name=price,proto3" json:"price,omitempty"` // Transaction hash on remote chain TxHash string `protobuf:"bytes,8,opt,name=tx_hash,json=txHash,proto3" json:"tx_hash,omitempty"` } func (x *EventOrderCreated) Reset() { *x = EventOrderCreated{} if protoimpl.UnsafeEnabled { mi := &file_dex_v1_events_proto_msgTypes[4] ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) ms.StoreMessageInfo(mi) } } func (x *EventOrderCreated) String() string { return protoimpl.X.MessageStringOf(x) } func (*EventOrderCreated) ProtoMessage() {} // Deprecated: Use EventOrderCreated.ProtoReflect.Descriptor instead. func (*EventOrderCreated) Descriptor() ([]byte, []int) { return file_dex_v1_events_proto_rawDescGZIP(), []int{4} } func (x *EventOrderCreated) GetDid() string { if x != nil { return x.Did } return "" } func (x *EventOrderCreated) GetConnectionId() string { if x != nil { return x.ConnectionId } return "" } func (x *EventOrderCreated) GetOrderId() string { if x != nil { return x.OrderId } return "" } func (x *EventOrderCreated) GetSellDenom() string { if x != nil { return x.SellDenom } return "" } func (x *EventOrderCreated) GetBuyDenom() string { if x != nil { return x.BuyDenom } return "" } func (x *EventOrderCreated) GetAmount() string { if x != nil { return x.Amount } return "" } func (x *EventOrderCreated) GetPrice() string { if x != nil { return x.Price } return "" } func (x *EventOrderCreated) GetTxHash() string { if x != nil { return x.TxHash } return "" } // EventOrderCancelled is emitted when an order is cancelled type EventOrderCancelled struct { state protoimpl.MessageState sizeCache protoimpl.SizeCache unknownFields protoimpl.UnknownFields // DID of the trader Did string `protobuf:"bytes,1,opt,name=did,proto3" json:"did,omitempty"` // IBC connection ID ConnectionId string `protobuf:"bytes,2,opt,name=connection_id,json=connectionId,proto3" json:"connection_id,omitempty"` // Order ID that was cancelled OrderId string `protobuf:"bytes,3,opt,name=order_id,json=orderId,proto3" json:"order_id,omitempty"` // Transaction hash on remote chain TxHash string `protobuf:"bytes,4,opt,name=tx_hash,json=txHash,proto3" json:"tx_hash,omitempty"` } func (x *EventOrderCancelled) Reset() { *x = EventOrderCancelled{} if protoimpl.UnsafeEnabled { mi := &file_dex_v1_events_proto_msgTypes[5] ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) ms.StoreMessageInfo(mi) } } func (x *EventOrderCancelled) String() string { return protoimpl.X.MessageStringOf(x) } func (*EventOrderCancelled) ProtoMessage() {} // Deprecated: Use EventOrderCancelled.ProtoReflect.Descriptor instead. func (*EventOrderCancelled) Descriptor() ([]byte, []int) { return file_dex_v1_events_proto_rawDescGZIP(), []int{5} } func (x *EventOrderCancelled) GetDid() string { if x != nil { return x.Did } return "" } func (x *EventOrderCancelled) GetConnectionId() string { if x != nil { return x.ConnectionId } return "" } func (x *EventOrderCancelled) GetOrderId() string { if x != nil { return x.OrderId } return "" } func (x *EventOrderCancelled) GetTxHash() string { if x != nil { return x.TxHash } return "" } // EventOrderFilled is emitted when an order is filled type EventOrderFilled struct { state protoimpl.MessageState sizeCache protoimpl.SizeCache unknownFields protoimpl.UnknownFields // DID of the trader Did string `protobuf:"bytes,1,opt,name=did,proto3" json:"did,omitempty"` // IBC connection ID ConnectionId string `protobuf:"bytes,2,opt,name=connection_id,json=connectionId,proto3" json:"connection_id,omitempty"` // Order ID that was filled OrderId string `protobuf:"bytes,3,opt,name=order_id,json=orderId,proto3" json:"order_id,omitempty"` // Fill details FillAmount string `protobuf:"bytes,4,opt,name=fill_amount,json=fillAmount,proto3" json:"fill_amount,omitempty"` FillPrice string `protobuf:"bytes,5,opt,name=fill_price,json=fillPrice,proto3" json:"fill_price,omitempty"` // Transaction hash on remote chain TxHash string `protobuf:"bytes,6,opt,name=tx_hash,json=txHash,proto3" json:"tx_hash,omitempty"` } func (x *EventOrderFilled) Reset() { *x = EventOrderFilled{} if protoimpl.UnsafeEnabled { mi := &file_dex_v1_events_proto_msgTypes[6] ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) ms.StoreMessageInfo(mi) } } func (x *EventOrderFilled) String() string { return protoimpl.X.MessageStringOf(x) } func (*EventOrderFilled) ProtoMessage() {} // Deprecated: Use EventOrderFilled.ProtoReflect.Descriptor instead. func (*EventOrderFilled) Descriptor() ([]byte, []int) { return file_dex_v1_events_proto_rawDescGZIP(), []int{6} } func (x *EventOrderFilled) GetDid() string { if x != nil { return x.Did } return "" } func (x *EventOrderFilled) GetConnectionId() string { if x != nil { return x.ConnectionId } return "" } func (x *EventOrderFilled) GetOrderId() string { if x != nil { return x.OrderId } return "" } func (x *EventOrderFilled) GetFillAmount() string { if x != nil { return x.FillAmount } return "" } func (x *EventOrderFilled) GetFillPrice() string { if x != nil { return x.FillPrice } return "" } func (x *EventOrderFilled) GetTxHash() string { if x != nil { return x.TxHash } return "" } // EventICAPacketSent is emitted when an ICA packet is sent type EventICAPacketSent struct { state protoimpl.MessageState sizeCache protoimpl.SizeCache unknownFields protoimpl.UnknownFields // DID of the sender Did string `protobuf:"bytes,1,opt,name=did,proto3" json:"did,omitempty"` // IBC connection ID ConnectionId string `protobuf:"bytes,2,opt,name=connection_id,json=connectionId,proto3" json:"connection_id,omitempty"` // Packet type (swap, liquidity, order, etc.) PacketType string `protobuf:"bytes,3,opt,name=packet_type,json=packetType,proto3" json:"packet_type,omitempty"` // IBC packet sequence Sequence uint64 `protobuf:"varint,4,opt,name=sequence,proto3" json:"sequence,omitempty"` } func (x *EventICAPacketSent) Reset() { *x = EventICAPacketSent{} if protoimpl.UnsafeEnabled { mi := &file_dex_v1_events_proto_msgTypes[7] ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) ms.StoreMessageInfo(mi) } } func (x *EventICAPacketSent) String() string { return protoimpl.X.MessageStringOf(x) } func (*EventICAPacketSent) ProtoMessage() {} // Deprecated: Use EventICAPacketSent.ProtoReflect.Descriptor instead. func (*EventICAPacketSent) Descriptor() ([]byte, []int) { return file_dex_v1_events_proto_rawDescGZIP(), []int{7} } func (x *EventICAPacketSent) GetDid() string { if x != nil { return x.Did } return "" } func (x *EventICAPacketSent) GetConnectionId() string { if x != nil { return x.ConnectionId } return "" } func (x *EventICAPacketSent) GetPacketType() string { if x != nil { return x.PacketType } return "" } func (x *EventICAPacketSent) GetSequence() uint64 { if x != nil { return x.Sequence } return 0 } // EventICAPacketAcknowledged is emitted when an ICA packet is acknowledged type EventICAPacketAcknowledged struct { state protoimpl.MessageState sizeCache protoimpl.SizeCache unknownFields protoimpl.UnknownFields // DID of the sender Did string `protobuf:"bytes,1,opt,name=did,proto3" json:"did,omitempty"` // IBC connection ID ConnectionId string `protobuf:"bytes,2,opt,name=connection_id,json=connectionId,proto3" json:"connection_id,omitempty"` // Packet type PacketType string `protobuf:"bytes,3,opt,name=packet_type,json=packetType,proto3" json:"packet_type,omitempty"` // IBC packet sequence Sequence uint64 `protobuf:"varint,4,opt,name=sequence,proto3" json:"sequence,omitempty"` // Success status Success bool `protobuf:"varint,5,opt,name=success,proto3" json:"success,omitempty"` // Error message if failed Error string `protobuf:"bytes,6,opt,name=error,proto3" json:"error,omitempty"` } func (x *EventICAPacketAcknowledged) Reset() { *x = EventICAPacketAcknowledged{} if protoimpl.UnsafeEnabled { mi := &file_dex_v1_events_proto_msgTypes[8] ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) ms.StoreMessageInfo(mi) } } func (x *EventICAPacketAcknowledged) String() string { return protoimpl.X.MessageStringOf(x) } func (*EventICAPacketAcknowledged) ProtoMessage() {} // Deprecated: Use EventICAPacketAcknowledged.ProtoReflect.Descriptor instead. func (*EventICAPacketAcknowledged) Descriptor() ([]byte, []int) { return file_dex_v1_events_proto_rawDescGZIP(), []int{8} } func (x *EventICAPacketAcknowledged) GetDid() string { if x != nil { return x.Did } return "" } func (x *EventICAPacketAcknowledged) GetConnectionId() string { if x != nil { return x.ConnectionId } return "" } func (x *EventICAPacketAcknowledged) GetPacketType() string { if x != nil { return x.PacketType } return "" } func (x 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file_dex_v1_events_proto_rawDescData = protoimpl.X.CompressGZIP(file_dex_v1_events_proto_rawDescData) }) return file_dex_v1_events_proto_rawDescData } var file_dex_v1_events_proto_msgTypes = make([]protoimpl.MessageInfo, 9) var file_dex_v1_events_proto_goTypes = []interface{}{ (*EventDEXAccountRegistered)(nil), // 0: dex.v1.EventDEXAccountRegistered (*EventSwapExecuted)(nil), // 1: dex.v1.EventSwapExecuted (*EventLiquidityProvided)(nil), // 2: dex.v1.EventLiquidityProvided (*EventLiquidityRemoved)(nil), // 3: dex.v1.EventLiquidityRemoved (*EventOrderCreated)(nil), // 4: dex.v1.EventOrderCreated (*EventOrderCancelled)(nil), // 5: dex.v1.EventOrderCancelled (*EventOrderFilled)(nil), // 6: dex.v1.EventOrderFilled (*EventICAPacketSent)(nil), // 7: dex.v1.EventICAPacketSent (*EventICAPacketAcknowledged)(nil), // 8: dex.v1.EventICAPacketAcknowledged (*v1beta1.Coin)(nil), // 9: cosmos.base.v1beta1.Coin } var file_dex_v1_events_proto_depIdxs = []int32{ 9, // 0: dex.v1.EventSwapExecuted.source:type_name -> cosmos.base.v1beta1.Coin 9, // 1: dex.v1.EventSwapExecuted.target:type_name -> cosmos.base.v1beta1.Coin 9, // 2: dex.v1.EventLiquidityProvided.assets:type_name -> cosmos.base.v1beta1.Coin 9, // 3: dex.v1.EventLiquidityRemoved.assets:type_name -> cosmos.base.v1beta1.Coin 4, // [4:4] is the sub-list for method output_type 4, // [4:4] is the sub-list for method input_type 4, // [4:4] is the sub-list for extension type_name 4, // [4:4] is the sub-list for extension extendee 0, // [0:4] is the sub-list for field type_name } func init() { file_dex_v1_events_proto_init() } func file_dex_v1_events_proto_init() { if File_dex_v1_events_proto != nil { return } if !protoimpl.UnsafeEnabled { file_dex_v1_events_proto_msgTypes[0].Exporter = func(v interface{}, i int) interface{} { switch v := v.(*EventDEXAccountRegistered); i { case 0: return &v.state case 1: return &v.sizeCache case 2: return &v.unknownFields default: return nil } } file_dex_v1_events_proto_msgTypes[1].Exporter = func(v interface{}, i int) interface{} { switch v := v.(*EventSwapExecuted); i { case 0: return &v.state case 1: return &v.sizeCache case 2: return &v.unknownFields default: return nil } } file_dex_v1_events_proto_msgTypes[2].Exporter = func(v interface{}, i int) interface{} { switch v := v.(*EventLiquidityProvided); i { case 0: return &v.state case 1: return &v.sizeCache case 2: return &v.unknownFields default: return nil } } file_dex_v1_events_proto_msgTypes[3].Exporter = func(v interface{}, i int) interface{} { switch v := v.(*EventLiquidityRemoved); i { case 0: return &v.state case 1: return &v.sizeCache case 2: return &v.unknownFields default: return nil } } file_dex_v1_events_proto_msgTypes[4].Exporter = func(v interface{}, i int) interface{} { switch v := v.(*EventOrderCreated); i { case 0: return &v.state case 1: return &v.sizeCache case 2: return &v.unknownFields default: return nil } } file_dex_v1_events_proto_msgTypes[5].Exporter = func(v interface{}, i int) interface{} { switch v := v.(*EventOrderCancelled); i { case 0: return &v.state case 1: return &v.sizeCache case 2: return &v.unknownFields default: return nil } } file_dex_v1_events_proto_msgTypes[6].Exporter = func(v interface{}, i int) interface{} { switch v := v.(*EventOrderFilled); i { case 0: return &v.state case 1: return &v.sizeCache case 2: return &v.unknownFields default: return nil } } file_dex_v1_events_proto_msgTypes[7].Exporter = func(v interface{}, i int) interface{} { switch v := v.(*EventICAPacketSent); i { case 0: return &v.state case 1: return &v.sizeCache case 2: return &v.unknownFields default: return nil } } file_dex_v1_events_proto_msgTypes[8].Exporter = func(v interface{}, i int) interface{} { switch v := v.(*EventICAPacketAcknowledged); i { case 0: return &v.state case 1: return &v.sizeCache case 2: return &v.unknownFields default: return nil } } } type x struct{} out := protoimpl.TypeBuilder{ File: protoimpl.DescBuilder{ GoPackagePath: reflect.TypeOf(x{}).PkgPath(), RawDescriptor: file_dex_v1_events_proto_rawDesc, NumEnums: 0, NumMessages: 9, NumExtensions: 0, NumServices: 0, }, GoTypes: file_dex_v1_events_proto_goTypes, DependencyIndexes: file_dex_v1_events_proto_depIdxs, MessageInfos: file_dex_v1_events_proto_msgTypes, }.Build() File_dex_v1_events_proto = out.File file_dex_v1_events_proto_rawDesc = nil file_dex_v1_events_proto_goTypes = nil file_dex_v1_events_proto_depIdxs = nil }