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@snap/camera-kit

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import Long from "long"; import _m0 from "protobufjs/minimal"; export const protobufPackage = "google.protobuf"; export var FieldDescriptorProto_Type; (function (FieldDescriptorProto_Type) { FieldDescriptorProto_Type[FieldDescriptorProto_Type["TYPE_DOUBLE"] = 1] = "TYPE_DOUBLE"; FieldDescriptorProto_Type[FieldDescriptorProto_Type["TYPE_FLOAT"] = 2] = "TYPE_FLOAT"; FieldDescriptorProto_Type[FieldDescriptorProto_Type["TYPE_INT64"] = 3] = "TYPE_INT64"; FieldDescriptorProto_Type[FieldDescriptorProto_Type["TYPE_UINT64"] = 4] = "TYPE_UINT64"; FieldDescriptorProto_Type[FieldDescriptorProto_Type["TYPE_INT32"] = 5] = "TYPE_INT32"; FieldDescriptorProto_Type[FieldDescriptorProto_Type["TYPE_FIXED64"] = 6] = "TYPE_FIXED64"; FieldDescriptorProto_Type[FieldDescriptorProto_Type["TYPE_FIXED32"] = 7] = "TYPE_FIXED32"; FieldDescriptorProto_Type[FieldDescriptorProto_Type["TYPE_BOOL"] = 8] = "TYPE_BOOL"; FieldDescriptorProto_Type[FieldDescriptorProto_Type["TYPE_STRING"] = 9] = "TYPE_STRING"; FieldDescriptorProto_Type[FieldDescriptorProto_Type["TYPE_GROUP"] = 10] = "TYPE_GROUP"; FieldDescriptorProto_Type[FieldDescriptorProto_Type["TYPE_MESSAGE"] = 11] = "TYPE_MESSAGE"; FieldDescriptorProto_Type[FieldDescriptorProto_Type["TYPE_BYTES"] = 12] = "TYPE_BYTES"; FieldDescriptorProto_Type[FieldDescriptorProto_Type["TYPE_UINT32"] = 13] = "TYPE_UINT32"; FieldDescriptorProto_Type[FieldDescriptorProto_Type["TYPE_ENUM"] = 14] = "TYPE_ENUM"; FieldDescriptorProto_Type[FieldDescriptorProto_Type["TYPE_SFIXED32"] = 15] = "TYPE_SFIXED32"; FieldDescriptorProto_Type[FieldDescriptorProto_Type["TYPE_SFIXED64"] = 16] = "TYPE_SFIXED64"; FieldDescriptorProto_Type[FieldDescriptorProto_Type["TYPE_SINT32"] = 17] = "TYPE_SINT32"; FieldDescriptorProto_Type[FieldDescriptorProto_Type["TYPE_SINT64"] = 18] = "TYPE_SINT64"; FieldDescriptorProto_Type[FieldDescriptorProto_Type["UNRECOGNIZED"] = -1] = "UNRECOGNIZED"; })(FieldDescriptorProto_Type || (FieldDescriptorProto_Type = {})); export var FieldDescriptorProto_Label; (function (FieldDescriptorProto_Label) { FieldDescriptorProto_Label[FieldDescriptorProto_Label["LABEL_OPTIONAL"] = 1] = "LABEL_OPTIONAL"; FieldDescriptorProto_Label[FieldDescriptorProto_Label["LABEL_REQUIRED"] = 2] = "LABEL_REQUIRED"; FieldDescriptorProto_Label[FieldDescriptorProto_Label["LABEL_REPEATED"] = 3] = "LABEL_REPEATED"; FieldDescriptorProto_Label[FieldDescriptorProto_Label["UNRECOGNIZED"] = -1] = "UNRECOGNIZED"; })(FieldDescriptorProto_Label || (FieldDescriptorProto_Label = {})); export var FileOptions_OptimizeMode; (function (FileOptions_OptimizeMode) { FileOptions_OptimizeMode[FileOptions_OptimizeMode["SPEED"] = 1] = "SPEED"; FileOptions_OptimizeMode[FileOptions_OptimizeMode["CODE_SIZE"] = 2] = "CODE_SIZE"; FileOptions_OptimizeMode[FileOptions_OptimizeMode["LITE_RUNTIME"] = 3] = "LITE_RUNTIME"; FileOptions_OptimizeMode[FileOptions_OptimizeMode["UNRECOGNIZED"] = -1] = "UNRECOGNIZED"; })(FileOptions_OptimizeMode || (FileOptions_OptimizeMode = {})); export var FieldOptions_CType; (function (FieldOptions_CType) { FieldOptions_CType[FieldOptions_CType["STRING"] = 0] = "STRING"; FieldOptions_CType[FieldOptions_CType["CORD"] = 1] = "CORD"; FieldOptions_CType[FieldOptions_CType["STRING_PIECE"] = 2] = "STRING_PIECE"; FieldOptions_CType[FieldOptions_CType["UNRECOGNIZED"] = -1] = "UNRECOGNIZED"; })(FieldOptions_CType || (FieldOptions_CType = {})); export var FieldOptions_JSType; (function (FieldOptions_JSType) { FieldOptions_JSType[FieldOptions_JSType["JS_NORMAL"] = 0] = "JS_NORMAL"; FieldOptions_JSType[FieldOptions_JSType["JS_STRING"] = 1] = "JS_STRING"; FieldOptions_JSType[FieldOptions_JSType["JS_NUMBER"] = 2] = "JS_NUMBER"; FieldOptions_JSType[FieldOptions_JSType["UNRECOGNIZED"] = -1] = "UNRECOGNIZED"; })(FieldOptions_JSType || (FieldOptions_JSType = {})); export var MethodOptions_IdempotencyLevel; (function (MethodOptions_IdempotencyLevel) { MethodOptions_IdempotencyLevel[MethodOptions_IdempotencyLevel["IDEMPOTENCY_UNKNOWN"] = 0] = "IDEMPOTENCY_UNKNOWN"; MethodOptions_IdempotencyLevel[MethodOptions_IdempotencyLevel["NO_SIDE_EFFECTS"] = 1] = "NO_SIDE_EFFECTS"; MethodOptions_IdempotencyLevel[MethodOptions_IdempotencyLevel["IDEMPOTENT"] = 2] = "IDEMPOTENT"; MethodOptions_IdempotencyLevel[MethodOptions_IdempotencyLevel["UNRECOGNIZED"] = -1] = "UNRECOGNIZED"; })(MethodOptions_IdempotencyLevel || (MethodOptions_IdempotencyLevel = {})); function createBaseFileDescriptorSet() { return { file: [] }; } export const FileDescriptorSet = { encode(message, writer = _m0.Writer.create()) { for (const v of message.file) { FileDescriptorProto.encode(v, writer.uint32(10).fork()).ldelim(); } return writer; }, decode(input, length) { const reader = input instanceof _m0.Reader ? input : new _m0.Reader(input); let end = length === undefined ? reader.len : reader.pos + length; const message = createBaseFileDescriptorSet(); while (reader.pos < end) { const tag = reader.uint32(); switch (tag >>> 3) { case 1: message.file.push(FileDescriptorProto.decode(reader, reader.uint32())); break; default: reader.skipType(tag & 7); break; } } return message; }, fromPartial(object) { var _a; const message = createBaseFileDescriptorSet(); message.file = ((_a = object.file) === null || _a === void 0 ? void 0 : _a.map((e) => FileDescriptorProto.fromPartial(e))) || []; return message; }, }; function createBaseFileDescriptorProto() { return { name: "", package: "", dependency: [], publicDependency: [], weakDependency: [], messageType: [], enumType: [], service: [], extension: [], options: undefined, sourceCodeInfo: undefined, syntax: "", }; } export const FileDescriptorProto = { encode(message, writer = _m0.Writer.create()) { if (message.name !== "") { writer.uint32(10).string(message.name); } if (message.package !== "") { writer.uint32(18).string(message.package); } for (const v of message.dependency) { writer.uint32(26).string(v); } writer.uint32(82).fork(); for (const v of message.publicDependency) { writer.int32(v); } writer.ldelim(); writer.uint32(90).fork(); for (const v of message.weakDependency) { writer.int32(v); } writer.ldelim(); for (const v of message.messageType) { DescriptorProto.encode(v, writer.uint32(34).fork()).ldelim(); } for (const v of message.enumType) { EnumDescriptorProto.encode(v, writer.uint32(42).fork()).ldelim(); } for (const v of message.service) { ServiceDescriptorProto.encode(v, writer.uint32(50).fork()).ldelim(); } for (const v of message.extension) { FieldDescriptorProto.encode(v, writer.uint32(58).fork()).ldelim(); } if (message.options !== undefined) { FileOptions.encode(message.options, writer.uint32(66).fork()).ldelim(); } if (message.sourceCodeInfo !== undefined) { SourceCodeInfo.encode(message.sourceCodeInfo, writer.uint32(74).fork()).ldelim(); } if (message.syntax !== "") { writer.uint32(98).string(message.syntax); } return writer; }, decode(input, length) { const reader = input instanceof _m0.Reader ? 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FileOptions.fromPartial(object.options) : undefined; message.sourceCodeInfo = object.sourceCodeInfo !== undefined && object.sourceCodeInfo !== null ? SourceCodeInfo.fromPartial(object.sourceCodeInfo) : undefined; message.syntax = (_k = object.syntax) !== null && _k !== void 0 ? _k : ""; return message; }, }; function createBaseDescriptorProto() { return { name: "", field: [], extension: [], nestedType: [], enumType: [], extensionRange: [], oneofDecl: [], options: undefined, reservedRange: [], reservedName: [], }; } export const DescriptorProto = { encode(message, writer = _m0.Writer.create()) { if (message.name !== "") { writer.uint32(10).string(message.name); } for (const v of message.field) { FieldDescriptorProto.encode(v, writer.uint32(18).fork()).ldelim(); } for (const v of message.extension) { FieldDescriptorProto.encode(v, writer.uint32(50).fork()).ldelim(); } for (const v of message.nestedType) { DescriptorProto.encode(v, writer.uint32(26).fork()).ldelim(); } for (const v of message.enumType) { EnumDescriptorProto.encode(v, writer.uint32(34).fork()).ldelim(); } for (const v of message.extensionRange) { DescriptorProto_ExtensionRange.encode(v, writer.uint32(42).fork()).ldelim(); } for (const v of message.oneofDecl) { OneofDescriptorProto.encode(v, writer.uint32(66).fork()).ldelim(); } if (message.options !== undefined) { MessageOptions.encode(message.options, writer.uint32(58).fork()).ldelim(); } for (const v of message.reservedRange) { DescriptorProto_ReservedRange.encode(v, writer.uint32(74).fork()).ldelim(); } for (const v of message.reservedName) { writer.uint32(82).string(v); } return writer; }, decode(input, length) { const reader = input instanceof _m0.Reader ? input : new _m0.Reader(input); let end = length === undefined ? reader.len : reader.pos + length; const message = createBaseDescriptorProto(); while (reader.pos < end) { const tag = reader.uint32(); switch (tag >>> 3) { case 1: message.name = reader.string(); break; case 2: message.field.push(FieldDescriptorProto.decode(reader, reader.uint32())); break; case 6: message.extension.push(FieldDescriptorProto.decode(reader, reader.uint32())); break; case 3: message.nestedType.push(DescriptorProto.decode(reader, reader.uint32())); break; case 4: message.enumType.push(EnumDescriptorProto.decode(reader, reader.uint32())); break; case 5: message.extensionRange.push(DescriptorProto_ExtensionRange.decode(reader, reader.uint32())); break; case 8: message.oneofDecl.push(OneofDescriptorProto.decode(reader, reader.uint32())); break; case 7: message.options = MessageOptions.decode(reader, reader.uint32()); break; case 9: message.reservedRange.push(DescriptorProto_ReservedRange.decode(reader, reader.uint32())); break; case 10: message.reservedName.push(reader.string()); break; default: reader.skipType(tag & 7); break; } } return message; }, fromPartial(object) { var _a, _b, _c, _d, _e, _f, _g, _h, _j; const message = createBaseDescriptorProto(); message.name = (_a = object.name) !== null && _a !== void 0 ? _a : ""; message.field = ((_b = object.field) === null || _b === void 0 ? void 0 : _b.map((e) => FieldDescriptorProto.fromPartial(e))) || []; message.extension = ((_c = object.extension) === null || _c === void 0 ? void 0 : _c.map((e) => FieldDescriptorProto.fromPartial(e))) || []; message.nestedType = ((_d = object.nestedType) === null || _d === void 0 ? void 0 : _d.map((e) => DescriptorProto.fromPartial(e))) || []; message.enumType = ((_e = object.enumType) === null || _e === void 0 ? void 0 : _e.map((e) => EnumDescriptorProto.fromPartial(e))) || []; message.extensionRange = ((_f = object.extensionRange) === null || _f === void 0 ? void 0 : _f.map((e) => DescriptorProto_ExtensionRange.fromPartial(e))) || []; message.oneofDecl = ((_g = object.oneofDecl) === null || _g === void 0 ? void 0 : _g.map((e) => OneofDescriptorProto.fromPartial(e))) || []; message.options = object.options !== undefined && object.options !== null ? 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ExtensionRangeOptions.fromPartial(object.options) : undefined; return message; }, }; function createBaseDescriptorProto_ReservedRange() { return { start: 0, end: 0 }; } export const DescriptorProto_ReservedRange = { encode(message, writer = _m0.Writer.create()) { if (message.start !== 0) { writer.uint32(8).int32(message.start); } if (message.end !== 0) { writer.uint32(16).int32(message.end); } return writer; }, decode(input, length) { const reader = input instanceof _m0.Reader ? input : new _m0.Reader(input); let end = length === undefined ? reader.len : reader.pos + length; const message = createBaseDescriptorProto_ReservedRange(); while (reader.pos < end) { const tag = reader.uint32(); switch (tag >>> 3) { case 1: message.start = reader.int32(); break; case 2: message.end = reader.int32(); break; default: reader.skipType(tag & 7); break; } } return message; }, fromPartial(object) { var _a, _b; const message = createBaseDescriptorProto_ReservedRange(); message.start = (_a = object.start) !== null && _a !== void 0 ? 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FieldOptions.fromPartial(object.options) : undefined; message.proto3Optional = (_k = object.proto3Optional) !== null && _k !== void 0 ? _k : false; return message; }, }; function createBaseOneofDescriptorProto() { return { name: "", options: undefined }; } export const OneofDescriptorProto = { encode(message, writer = _m0.Writer.create()) { if (message.name !== "") { writer.uint32(10).string(message.name); } if (message.options !== undefined) { OneofOptions.encode(message.options, writer.uint32(18).fork()).ldelim(); } return writer; }, decode(input, length) { const reader = input instanceof _m0.Reader ? input : new _m0.Reader(input); let end = length === undefined ? reader.len : reader.pos + length; const message = createBaseOneofDescriptorProto(); while (reader.pos < end) { const tag = reader.uint32(); switch (tag >>> 3) { case 1: message.name = reader.string(); break; case 2: message.options = OneofOptions.decode(reader, reader.uint32()); break; default: reader.skipType(tag & 7); break; } } return message; }, fromPartial(object) { var _a; const message = createBaseOneofDescriptorProto(); message.name = (_a = object.name) !== null && _a !== void 0 ? _a : ""; message.options = object.options !== undefined && object.options !== null ? OneofOptions.fromPartial(object.options) : undefined; return message; }, }; function createBaseEnumDescriptorProto() { return { name: "", value: [], options: undefined, reservedRange: [], reservedName: [] }; } export const EnumDescriptorProto = { encode(message, writer = _m0.Writer.create()) { if (message.name !== "") { writer.uint32(10).string(message.name); } for (const v of message.value) { EnumValueDescriptorProto.encode(v, writer.uint32(18).fork()).ldelim(); } if (message.options !== undefined) { EnumOptions.encode(message.options, writer.uint32(26).fork()).ldelim(); } for (const v of message.reservedRange) { EnumDescriptorProto_EnumReservedRange.encode(v, writer.uint32(34).fork()).ldelim(); } for (const v of message.reservedName) { writer.uint32(42).string(v); } return writer; }, decode(input, length) { const reader = input instanceof _m0.Reader ? input : new _m0.Reader(input); let end = length === undefined ? reader.len : reader.pos + length; const message = createBaseEnumDescriptorProto(); while (reader.pos < end) { const tag = reader.uint32(); switch (tag >>> 3) { case 1: message.name = reader.string(); break; case 2: message.value.push(EnumValueDescriptorProto.decode(reader, reader.uint32())); break; case 3: message.options = EnumOptions.decode(reader, reader.uint32()); break; case 4: message.reservedRange.push(EnumDescriptorProto_EnumReservedRange.decode(reader, reader.uint32())); break; case 5: message.reservedName.push(reader.string()); break; default: reader.skipType(tag & 7); break; } } return message; }, fromPartial(object) { var _a, _b, _c, _d; const message = createBaseEnumDescriptorProto(); message.name = (_a = object.name) !== null && _a !== void 0 ? _a : ""; message.value = ((_b = object.value) === null || _b === void 0 ? void 0 : _b.map((e) => EnumValueDescriptorProto.fromPartial(e))) || []; message.options = object.options !== undefined && object.options !== null ? EnumOptions.fromPartial(object.options) : undefined; message.reservedRange = ((_c = object.reservedRange) === null || _c === void 0 ? void 0 : _c.map((e) => EnumDescriptorProto_EnumReservedRange.fromPartial(e))) || []; message.reservedName = ((_d = object.reservedName) === null || _d === void 0 ? void 0 : _d.map((e) => e)) || []; return message; }, }; function createBaseEnumDescriptorProto_EnumReservedRange() { return { start: 0, end: 0 }; } export const EnumDescriptorProto_EnumReservedRange = { encode(message, writer = _m0.Writer.create()) { if (message.start !== 0) { writer.uint32(8).int32(message.start); } if (message.end !== 0) { writer.uint32(16).int32(message.end); } return writer; }, decode(input, length) { const reader = input instanceof _m0.Reader ? input : new _m0.Reader(input); let end = length === undefined ? reader.len : reader.pos + length; const message = createBaseEnumDescriptorProto_EnumReservedRange(); while (reader.pos < end) { const tag = reader.uint32(); switch (tag >>> 3) { case 1: message.start = reader.int32(); break; case 2: message.end = reader.int32(); break; default: reader.skipType(tag & 7); break; } } return message; }, fromPartial(object) { var _a, _b; const message = createBaseEnumDescriptorProto_EnumReservedRange(); message.start = (_a = object.start) !== null && _a !== void 0 ? _a : 0; message.end = (_b = object.end) !== null && _b !== void 0 ? _b : 0; return message; }, }; function createBaseEnumValueDescriptorProto() { return { name: "", number: 0, options: undefined }; } export const EnumValueDescriptorProto = { encode(message, writer = _m0.Writer.create()) { if (message.name !== "") { writer.uint32(10).string(message.name); } if (message.number !== 0) { writer.uint32(16).int32(message.number); } if (message.options !== undefined) { EnumValueOptions.encode(message.options, writer.uint32(26).fork()).ldelim(); } return writer; }, decode(input, length) { const reader = input instanceof _m0.Reader ? input : new _m0.Reader(input); let end = length === undefined ? reader.len : reader.pos + length; const message = createBaseEnumValueDescriptorProto(); while (reader.pos < end) { const tag = reader.uint32(); switch (tag >>> 3) { case 1: message.name = reader.string(); break; case 2: message.number = reader.int32(); break; case 3: message.options = EnumValueOptions.decode(reader, reader.uint32()); break; default: reader.skipType(tag & 7); break; } } return message; }, fromPartial(object) { var _a, _b; const message = createBaseEnumValueDescriptorProto(); message.name = (_a = object.name) !== null && _a !== void 0 ? _a : ""; message.number = (_b = object.number) !== null && _b !== void 0 ? _b : 0; message.options = object.options !== undefined && object.options !== null ? EnumValueOptions.fromPartial(object.options) : undefined; return message; }, }; function createBaseServiceDescriptorProto() { return { name: "", method: [], options: undefined }; } export const ServiceDescriptorProto = { encode(message, writer = _m0.Writer.create()) { if (message.name !== "") { writer.uint32(10).string(message.name); } for (const v of message.method) { MethodDescriptorProto.encode(v, writer.uint32(18).fork()).ldelim(); } if (message.options !== undefined) { ServiceOptions.encode(message.options, writer.uint32(26).fork()).ldelim(); } return writer; }, decode(input, length) { const reader = input instanceof _m0.Reader ? input : new _m0.Reader(input); let end = length === undefined ? reader.len : reader.pos + length; const message = createBaseServiceDescriptorProto(); while (reader.pos < end) { const tag = reader.uint32(); switch (tag >>> 3) { case 1: message.name = reader.string(); break; case 2: message.method.push(MethodDescriptorProto.decode(reader, reader.uint32())); break; case 3: message.options = ServiceOptions.decode(reader, reader.uint32()); break; default: reader.skipType(tag & 7); break; } } return message; }, fromPartial(object) { var _a, _b; const message = createBaseServiceDescriptorProto(); message.name = (_a = object.name) !== null && _a !== void 0 ? _a : ""; message.method = ((_b = object.method) === null || _b === void 0 ? void 0 : _b.map((e) => MethodDescriptorProto.fromPartial(e))) || []; message.options = object.options !== undefined && object.options !== null ? ServiceOptions.fromPartial(object.options) : undefined; return message; }, }; function createBaseMethodDescriptorProto() { return { name: "", inputType: "", outputType: "", options: undefined, clientStreaming: false, serverStreaming: false, }; } export const MethodDescriptorProto = { encode(message, writer = _m0.Writer.create()) { if (message.name !== "") { writer.uint32(10).string(message.name); } if (message.inputType !== "") { writer.uint32(18).string(message.inputType); } if (message.outputType !== "") { writer.uint32(26).string(message.outputType); } if (message.options !== undefined) { MethodOptions.encode(message.options, writer.uint32(34).fork()).ldelim(); } if (message.clientStreaming === true) { writer.uint32(40).bool(message.clientStreaming); } if (message.serverStreaming === true) { writer.uint32(48).bool(message.serverStreaming); } return writer; }, decode(input, length) { const reader = input instanceof _m0.Reader ? input : new _m0.Reader(input); let end = length === undefined ? reader.len : reader.pos + length; const message = createBaseMethodDescriptorProto(); while (reader.pos < end) { const tag = reader.uint32(); switch (tag >>> 3) { case 1: message.name = reader.string(); break; case 2: message.inputType = reader.string(); break; case 3: message.outputType = reader.string(); break; case 4: message.options = MethodOptions.decode(reader, reader.uint32()); break; case 5: message.clientStreaming = reader.bool(); break; case 6: message.serverStreaming = reader.bool(); break; default: reader.skipType(tag & 7); break; } } return message; }, fromPartial(object) { var _a, _b, _c, _d, _e; const message = createBaseMethodDescriptorProto(); message.name = (_a = object.name) !== null && _a !== void 0 ? _a : ""; message.inputType = (_b = object.inputType) !== null && _b !== void 0 ? _b : ""; message.outputType = (_c = object.outputType) !== null && _c !== void 0 ? _c : ""; message.options = object.options !== undefined && object.options !== null ? MethodOptions.fromPartial(object.options) : undefined; message.clientStreaming = (_d = object.clientStreaming) !== null && _d !== void 0 ? _d : false; message.serverStreaming = (_e = object.serverStreaming) !== null && _e !== void 0 ? _e : false; return message; }, }; function createBaseFileOptions() { return { javaPackage: "", javaOuterClassname: "", javaMultipleFiles: false, javaGenerateEqualsAndHash: false, javaStringCheckUtf8: false, optimizeFor: 1, goPackage: "", ccGenericServices: false, javaGenericServices: false, pyGenericServices: false, phpGenericServices: false, deprecated: false, ccEnableArenas: false, objcClassPrefix: "", csharpNamespace: "", swiftPrefix: "", phpClassPrefix: "", phpNamespace: "", phpMetadataNamespace: "", rubyPackage: "", uninterpretedOption: [], }; } export const FileOptions = { encode(message, writer = _m0.Writer.create()) { if (message.javaPackage !== "") { writer.uint32(10).string(message.javaPackage); } if (message.javaOuterClassname !== "") { writer.uint32(66).string(message.javaOuterClassname); } if (message.javaMultipleFiles === true) { writer.uint32(80).bool(message.javaMultipleFiles); } if (message.javaGenerateEqualsAndHash === true) { writer.uint32(160).bool(message.javaGenerateEqualsAndHash); } if (message.javaStringCheckUtf8 === true) { writer.uint32(216).bool(message.javaStringCheckUtf8); } if (message.optimizeFor !== 1) { writer.uint32(72).int32(message.optimizeFor); } if (message.goPackage !== "") { writer.uint32(90).string(message.goPackage); } if (message.ccGenericServices === true) { writer.uint32(128).bool(message.ccGenericServices); } if (message.javaGenericServices === true) { writer.uint32(136).bool(message.javaGenericServices); } if (message.pyGenericServices === true) { writer.uint32(144).bool(message.pyGenericServices); } if (message.phpGenericServices === true) { writer.uint32(336).bool(message.phpGenericServices); } if (message.deprecated === true) { writer.uint32(184).bool(message.deprecated); } if (message.ccEnableArenas === true) { writer.uint32(248).bool(message.ccEnableArenas); } if (message.objcClassPrefix !== "") { writer.uint32(290).string(message.objcClassPrefix); } if (message.csharpNamespace !== "") { writer.uint32(298).string(message.csharpNamespace); } if (message.swiftPrefix !== "") { writer.uint32(314).string(message.swiftPrefix); } if (message.phpClassPrefix !== "") { writer.uint32(322).string(message.phpClassPrefix); } if (message.phpNamespace !== "") { writer.uint32(330).string(message.phpNamespace); } if (message.phpMetadataNamespace !== "") { writer.uint32(354).string(message.phpMetadataNamespace); } if (message.rubyPackage !== "") { writer.uint32(362).string(message.rubyPackage); } for (const v of message.uninterpretedOption) { UninterpretedOption.encode(v, writer.uint32(7994).fork()).ldelim(); } return writer; }, decode(input, length) { const reader = input instanceof _m0.Reader ? input : new _m0.Reader(input); let end = length === undefined ? reader.len : reader.pos + length; const message = createBaseFileOptions(); while (reader.pos < end) { const tag = reader.uint32(); switch (tag >>> 3) { case 1: message.javaPackage = reader.string(); break; case 8: message.javaOuterClassname = reader.string(); break; case 10: message.javaMultipleFiles = reader.bool(); break; case 20: message.javaGenerateEqualsAndHash = reader.bool(); break; case 27: message.javaStringCheckUtf8 = reader.bool(); break; case 9: message.optimizeFor = reader.int32(); break; case 11: message.goPackage = reader.string(); break; case 16: message.ccGenericServices = reader.bool(); break; case 17: message.javaGenericServices = reader.bool(); break; case 18: message.pyGenericServices = reader.bool(); break; case 42: message.phpGenericServices = reader.bool(); break; case 23: message.deprecated = reader.bool(); break; case 31: message.ccEnableArenas = reader.bool(); break; case 36: message.objcClassPrefix = reader.string(); break; case 37: message.csharpNamespace = reader.string(); break; case 39: message.swiftPrefix = reader.string(); break; case 40: message.phpClassPrefix = reader.string(); break; case 41: message.phpNamespace = reader.string(); break; case 44: message.phpMetadataNamespace = reader.string(); break; case 45: message.rubyPackage = reader.string(); break; case 999: message.uninterpretedOption.push(UninterpretedOption.decode(reader, reader.uint32())); break; default: reader.skipType(tag & 7); break; } } return message; }, fromPartial(object) { var _a, _b, _c, _d, _e, _f, _g, _h, _j, _k, _l, _m, _o, _p, _q, _r, _s, _t, _u, _v, _w; const message = createBaseFileOptions(); message.javaPackage = (_a = object.javaPackage) !== null && _a !== void 0 ? _a : ""; message.javaOuterClassname = (_b = object.javaOuterClassname) !== null && _b !== void 0 ? _b : ""; message.javaMultipleFiles = (_c = object.javaMultipleFiles) !== null && _c !== void 0 ? _c : false; message.javaGenerateEqualsAndHash = (_d = object.javaGenerateEqualsAndHash) !== null && _d !== void 0 ? _d : false; message.javaStringCheckUtf8 = (_e = object.javaStringCheckUtf8) !== null && _e !== void 0 ? _e : false; message.optimizeFor = (_f = object.optimizeFor) !== null && _f !== void 0 ? _f : 1; message.goPackage = (_g = object.goPackage) !== null && _g !== void 0 ? _g : ""; message.ccGenericServices = (_h = object.ccGenericServices) !== null && _h !== void 0 ? _h : false; message.javaGenericServices = (_j = object.javaGenericServices) !== null && _j !== void 0 ? _j : false; message.pyGenericServices = (_k = object.pyGenericServices) !== null && _k !== void 0 ? _k : false; message.phpGenericServices = (_l = object.phpGenericServices) !== null && _l !== void 0 ? _l : false; message.deprecated = (_m = object.deprecated) !== null && _m !== void 0 ? _m : false; message.ccEnableArenas = (_o = object.ccEnableArenas) !== null && _o !== void 0 ? _o : false; message.objcClassPrefix = (_p = object.objcClassPrefix) !== null && _p !== void 0 ? _p : ""; message.csharpNamespace = (_q = object.csharpNamespace) !== null && _q !== void 0 ? _q : ""; message.swiftPrefix = (_r = object.swiftPrefix) !== null && _r !== void 0 ? _r : ""; message.phpClassPrefix = (_s = object.phpClassPrefix) !== null && _s !== void 0 ? _s : ""; message.phpNamespace = (_t = object.phpNamespace) !== null && _t !== void 0 ? _t : ""; message.phpMetadataNamespace = (_u = object.phpMetadataNamespace) !== null && _u !== void 0 ? _u : ""; message.rubyPackage = (_v = object.rubyPackage) !== null && _v !== void 0 ? _v : ""; message.uninterpretedOption = ((_w = object.uninterpretedOption) === null || _w === void 0 ? void 0 : _w.map((e) => UninterpretedOption.fromPartial(e))) || []; return message; }, }; function createBaseMessageOptions() { return { messageSetWireFormat: false, noStandardDescriptorAccessor: false, deprecated: false, mapEntry: false, uninterpretedOption: [], }; } export const MessageOptions = { encode(message, writer = _m0.Writer.create()) { if (message.messageSetWireFormat === true) { writer.uint32(8).bool(message.messageSetWireFormat); } if (message.noStandardDescriptorAccessor === true) { writer.uint32(16).bool(message.noStandardDescriptorAccessor); } if (message.deprecated === true) { writer.uint32(24).bool(message.deprecated); } if (message.mapEntry === true) { writer.uint32(56).bool(message.mapEntry); } for (const v of message.uninterpretedOption) { UninterpretedOption.encode(v, writer.uint32(7994).fork()).ldelim(); } return writer; }, decode(input, length) { const reader = input instanceof _m0.Reader ? input : new _m0.Reader(input); let end = length === undefined ? reader.len : reader.pos + length; const message = createBaseMessageOptions(); while (reader.pos < end) { const tag = reader.uint32(); switch (tag >>> 3) { case 1: message.messageSetWireFormat = reader.bool(); break; case 2: message.noStandardDescriptorAccessor = reader.bool(); break; case 3: message.deprecated = reader.bool(); break; case 7: message.mapEntry = reader.bool(); break; case 999: message.uninterpretedOption.p