// Generated by the protocol buffer compiler. DO NOT EDIT! // source: opencv-onnx.proto #include "opencv-onnx.pb.h" #include #include #include #include #include // @@protoc_insertion_point(includes) #include PROTOBUF_PRAGMA_INIT_SEG namespace opencv_onnx { constexpr AttributeProto::AttributeProto( ::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized) : floats_() , ints_() , strings_() , tensors_() , graphs_() , type_protos_() , sparse_tensors_() , name_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string) , s_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string) , doc_string_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string) , ref_attr_name_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string) , t_(nullptr) , g_(nullptr) , tp_(nullptr) , sparse_tensor_(nullptr) , i_(int64_t{0}) , f_(0) , type_(0) {} struct AttributeProtoDefaultTypeInternal { constexpr AttributeProtoDefaultTypeInternal() : _instance(::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized{}) {} ~AttributeProtoDefaultTypeInternal() {} union { AttributeProto _instance; }; }; PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT AttributeProtoDefaultTypeInternal _AttributeProto_default_instance_; constexpr ValueInfoProto::ValueInfoProto( ::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized) : metadata_props_() , name_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string) , doc_string_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string) , type_(nullptr){} struct ValueInfoProtoDefaultTypeInternal { constexpr ValueInfoProtoDefaultTypeInternal() : _instance(::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized{}) {} ~ValueInfoProtoDefaultTypeInternal() {} union { ValueInfoProto _instance; }; }; PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT ValueInfoProtoDefaultTypeInternal _ValueInfoProto_default_instance_; constexpr NodeProto::NodeProto( ::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized) : input_() , output_() , attribute_() , metadata_props_() , device_configurations_() , name_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string) , op_type_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string) , doc_string_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string) , domain_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string) , overload_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string){} struct NodeProtoDefaultTypeInternal { constexpr NodeProtoDefaultTypeInternal() : _instance(::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized{}) {} ~NodeProtoDefaultTypeInternal() {} union { NodeProto _instance; }; }; PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT NodeProtoDefaultTypeInternal _NodeProto_default_instance_; constexpr IntIntListEntryProto::IntIntListEntryProto( ::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized) : value_() , key_(int64_t{0}){} struct IntIntListEntryProtoDefaultTypeInternal { constexpr IntIntListEntryProtoDefaultTypeInternal() : _instance(::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized{}) {} ~IntIntListEntryProtoDefaultTypeInternal() {} union { IntIntListEntryProto _instance; }; }; PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT IntIntListEntryProtoDefaultTypeInternal _IntIntListEntryProto_default_instance_; constexpr NodeDeviceConfigurationProto::NodeDeviceConfigurationProto( ::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized) : sharding_spec_() , configuration_id_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string) , pipeline_stage_(0){} struct NodeDeviceConfigurationProtoDefaultTypeInternal { constexpr NodeDeviceConfigurationProtoDefaultTypeInternal() : _instance(::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized{}) {} ~NodeDeviceConfigurationProtoDefaultTypeInternal() {} union { NodeDeviceConfigurationProto _instance; }; }; PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT NodeDeviceConfigurationProtoDefaultTypeInternal _NodeDeviceConfigurationProto_default_instance_; constexpr ShardingSpecProto::ShardingSpecProto( ::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized) : device_() , index_to_device_group_map_() , sharded_dim_() , tensor_name_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string){} struct ShardingSpecProtoDefaultTypeInternal { constexpr ShardingSpecProtoDefaultTypeInternal() : _instance(::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized{}) {} ~ShardingSpecProtoDefaultTypeInternal() {} union { ShardingSpecProto _instance; }; }; PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT ShardingSpecProtoDefaultTypeInternal _ShardingSpecProto_default_instance_; constexpr ShardedDimProto::ShardedDimProto( ::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized) : simple_sharding_() , axis_(int64_t{0}){} struct ShardedDimProtoDefaultTypeInternal { constexpr ShardedDimProtoDefaultTypeInternal() : _instance(::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized{}) {} ~ShardedDimProtoDefaultTypeInternal() {} union { ShardedDimProto _instance; }; }; PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT ShardedDimProtoDefaultTypeInternal _ShardedDimProto_default_instance_; constexpr SimpleShardedDimProto::SimpleShardedDimProto( ::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized) : num_shards_(int64_t{0}) , _oneof_case_{}{} struct SimpleShardedDimProtoDefaultTypeInternal { constexpr SimpleShardedDimProtoDefaultTypeInternal() : _instance(::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized{}) {} ~SimpleShardedDimProtoDefaultTypeInternal() {} union { SimpleShardedDimProto _instance; }; }; PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT SimpleShardedDimProtoDefaultTypeInternal _SimpleShardedDimProto_default_instance_; constexpr TrainingInfoProto::TrainingInfoProto( ::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized) : initialization_binding_() , update_binding_() , initialization_(nullptr) , algorithm_(nullptr){} struct TrainingInfoProtoDefaultTypeInternal { constexpr TrainingInfoProtoDefaultTypeInternal() : _instance(::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized{}) {} ~TrainingInfoProtoDefaultTypeInternal() {} union { TrainingInfoProto _instance; }; }; PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT TrainingInfoProtoDefaultTypeInternal _TrainingInfoProto_default_instance_; constexpr ModelProto::ModelProto( ::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized) : opset_import_() , metadata_props_() , training_info_() , functions_() , configuration_() , producer_name_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string) , producer_version_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string) , domain_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string) , doc_string_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string) , graph_(nullptr) , ir_version_(int64_t{0}) , model_version_(int64_t{0}){} struct ModelProtoDefaultTypeInternal { constexpr ModelProtoDefaultTypeInternal() : _instance(::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized{}) {} ~ModelProtoDefaultTypeInternal() {} union { ModelProto _instance; }; }; PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT ModelProtoDefaultTypeInternal _ModelProto_default_instance_; constexpr DeviceConfigurationProto::DeviceConfigurationProto( ::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized) : device_() , name_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string) , num_devices_(0){} struct DeviceConfigurationProtoDefaultTypeInternal { constexpr DeviceConfigurationProtoDefaultTypeInternal() : _instance(::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized{}) {} ~DeviceConfigurationProtoDefaultTypeInternal() {} union { DeviceConfigurationProto _instance; }; }; PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT DeviceConfigurationProtoDefaultTypeInternal _DeviceConfigurationProto_default_instance_; constexpr StringStringEntryProto::StringStringEntryProto( ::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized) : key_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string) , value_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string){} struct StringStringEntryProtoDefaultTypeInternal { constexpr StringStringEntryProtoDefaultTypeInternal() : _instance(::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized{}) {} ~StringStringEntryProtoDefaultTypeInternal() {} union { StringStringEntryProto _instance; }; }; PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT StringStringEntryProtoDefaultTypeInternal _StringStringEntryProto_default_instance_; constexpr TensorAnnotation::TensorAnnotation( ::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized) : quant_parameter_tensor_names_() , tensor_name_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string){} struct TensorAnnotationDefaultTypeInternal { constexpr TensorAnnotationDefaultTypeInternal() : _instance(::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized{}) {} ~TensorAnnotationDefaultTypeInternal() {} union { TensorAnnotation _instance; }; }; PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT TensorAnnotationDefaultTypeInternal _TensorAnnotation_default_instance_; constexpr GraphProto::GraphProto( ::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized) : node_() , initializer_() , input_() , output_() , value_info_() , quantization_annotation_() , sparse_initializer_() , metadata_props_() , name_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string) , doc_string_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string){} struct GraphProtoDefaultTypeInternal { constexpr GraphProtoDefaultTypeInternal() : _instance(::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized{}) {} ~GraphProtoDefaultTypeInternal() {} union { GraphProto _instance; }; }; PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT GraphProtoDefaultTypeInternal _GraphProto_default_instance_; constexpr TensorProto_Segment::TensorProto_Segment( ::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized) : begin_(int64_t{0}) , end_(int64_t{0}){} struct TensorProto_SegmentDefaultTypeInternal { constexpr TensorProto_SegmentDefaultTypeInternal() : _instance(::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized{}) {} ~TensorProto_SegmentDefaultTypeInternal() {} union { TensorProto_Segment _instance; }; }; PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT TensorProto_SegmentDefaultTypeInternal _TensorProto_Segment_default_instance_; constexpr TensorProto::TensorProto( ::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized) : dims_() , float_data_() , int32_data_() , _int32_data_cached_byte_size_(0) , string_data_() , int64_data_() , _int64_data_cached_byte_size_(0) , double_data_() , uint64_data_() , _uint64_data_cached_byte_size_(0) , external_data_() , metadata_props_() , name_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string) , raw_data_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string) , doc_string_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string) , segment_(nullptr) , data_type_(0) , data_location_(0) {} struct TensorProtoDefaultTypeInternal { constexpr TensorProtoDefaultTypeInternal() : _instance(::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized{}) {} ~TensorProtoDefaultTypeInternal() {} union { TensorProto _instance; }; }; PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT TensorProtoDefaultTypeInternal _TensorProto_default_instance_; constexpr SparseTensorProto::SparseTensorProto( ::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized) : dims_() , values_(nullptr) , indices_(nullptr){} struct SparseTensorProtoDefaultTypeInternal { constexpr SparseTensorProtoDefaultTypeInternal() : _instance(::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized{}) {} ~SparseTensorProtoDefaultTypeInternal() {} union { SparseTensorProto _instance; }; }; PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT SparseTensorProtoDefaultTypeInternal _SparseTensorProto_default_instance_; constexpr TensorShapeProto_Dimension::TensorShapeProto_Dimension( ::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized) : denotation_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string) , _oneof_case_{}{} struct TensorShapeProto_DimensionDefaultTypeInternal { constexpr TensorShapeProto_DimensionDefaultTypeInternal() : _instance(::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized{}) {} ~TensorShapeProto_DimensionDefaultTypeInternal() {} union { TensorShapeProto_Dimension _instance; }; }; PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT TensorShapeProto_DimensionDefaultTypeInternal _TensorShapeProto_Dimension_default_instance_; constexpr TensorShapeProto::TensorShapeProto( ::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized) : dim_(){} struct TensorShapeProtoDefaultTypeInternal { constexpr TensorShapeProtoDefaultTypeInternal() : _instance(::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized{}) {} ~TensorShapeProtoDefaultTypeInternal() {} union { TensorShapeProto _instance; }; }; PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT TensorShapeProtoDefaultTypeInternal _TensorShapeProto_default_instance_; constexpr TypeProto_Tensor::TypeProto_Tensor( ::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized) : shape_(nullptr) , elem_type_(0){} struct TypeProto_TensorDefaultTypeInternal { constexpr TypeProto_TensorDefaultTypeInternal() : _instance(::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized{}) {} ~TypeProto_TensorDefaultTypeInternal() {} union { TypeProto_Tensor _instance; }; }; PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT TypeProto_TensorDefaultTypeInternal _TypeProto_Tensor_default_instance_; constexpr TypeProto_Sequence::TypeProto_Sequence( ::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized) : elem_type_(nullptr){} struct TypeProto_SequenceDefaultTypeInternal { constexpr TypeProto_SequenceDefaultTypeInternal() : _instance(::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized{}) {} ~TypeProto_SequenceDefaultTypeInternal() {} union { TypeProto_Sequence _instance; }; }; PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT TypeProto_SequenceDefaultTypeInternal _TypeProto_Sequence_default_instance_; constexpr TypeProto_Map::TypeProto_Map( ::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized) : value_type_(nullptr) , key_type_(0){} struct TypeProto_MapDefaultTypeInternal { constexpr TypeProto_MapDefaultTypeInternal() : _instance(::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized{}) {} ~TypeProto_MapDefaultTypeInternal() {} union { TypeProto_Map _instance; }; }; PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT TypeProto_MapDefaultTypeInternal _TypeProto_Map_default_instance_; constexpr TypeProto_Optional::TypeProto_Optional( ::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized) : elem_type_(nullptr){} struct TypeProto_OptionalDefaultTypeInternal { constexpr TypeProto_OptionalDefaultTypeInternal() : _instance(::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized{}) {} ~TypeProto_OptionalDefaultTypeInternal() {} union { TypeProto_Optional _instance; }; }; PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT TypeProto_OptionalDefaultTypeInternal _TypeProto_Optional_default_instance_; constexpr TypeProto_SparseTensor::TypeProto_SparseTensor( ::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized) : shape_(nullptr) , elem_type_(0){} struct TypeProto_SparseTensorDefaultTypeInternal { constexpr TypeProto_SparseTensorDefaultTypeInternal() : _instance(::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized{}) {} ~TypeProto_SparseTensorDefaultTypeInternal() {} union { TypeProto_SparseTensor _instance; }; }; PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT TypeProto_SparseTensorDefaultTypeInternal _TypeProto_SparseTensor_default_instance_; constexpr TypeProto::TypeProto( ::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized) : denotation_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string) , _oneof_case_{}{} struct TypeProtoDefaultTypeInternal { constexpr TypeProtoDefaultTypeInternal() : _instance(::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized{}) {} ~TypeProtoDefaultTypeInternal() {} union { TypeProto _instance; }; }; PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT TypeProtoDefaultTypeInternal _TypeProto_default_instance_; constexpr OperatorSetIdProto::OperatorSetIdProto( ::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized) : domain_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string) , version_(int64_t{0}){} struct OperatorSetIdProtoDefaultTypeInternal { constexpr OperatorSetIdProtoDefaultTypeInternal() : _instance(::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized{}) {} ~OperatorSetIdProtoDefaultTypeInternal() {} union { OperatorSetIdProto _instance; }; }; PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT OperatorSetIdProtoDefaultTypeInternal _OperatorSetIdProto_default_instance_; constexpr FunctionProto::FunctionProto( ::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized) : input_() , output_() , attribute_() , node_() , opset_import_() , attribute_proto_() , value_info_() , metadata_props_() , name_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string) , doc_string_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string) , domain_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string) , overload_(&::PROTOBUF_NAMESPACE_ID::internal::fixed_address_empty_string){} struct FunctionProtoDefaultTypeInternal { constexpr FunctionProtoDefaultTypeInternal() : _instance(::PROTOBUF_NAMESPACE_ID::internal::ConstantInitialized{}) {} ~FunctionProtoDefaultTypeInternal() {} union { FunctionProto _instance; }; }; PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT FunctionProtoDefaultTypeInternal _FunctionProto_default_instance_; } // namespace opencv_onnx namespace opencv_onnx { bool AttributeProto_AttributeType_IsValid(int value) { switch (value) { case 0: case 1: case 2: case 3: case 4: case 5: case 6: case 7: case 8: case 9: case 10: case 11: case 12: case 13: case 14: return true; default: return false; } } static ::PROTOBUF_NAMESPACE_ID::internal::ExplicitlyConstructed AttributeProto_AttributeType_strings[15] = {}; static const char AttributeProto_AttributeType_names[] = "FLOAT" "FLOATS" "GRAPH" "GRAPHS" "INT" "INTS" "SPARSE_TENSOR" "SPARSE_TENSORS" "STRING" "STRINGS" "TENSOR" "TENSORS" "TYPE_PROTO" "TYPE_PROTOS" "UNDEFINED"; static const ::PROTOBUF_NAMESPACE_ID::internal::EnumEntry AttributeProto_AttributeType_entries[] = { { {AttributeProto_AttributeType_names + 0, 5}, 1 }, { {AttributeProto_AttributeType_names + 5, 6}, 6 }, { {AttributeProto_AttributeType_names + 11, 5}, 5 }, { {AttributeProto_AttributeType_names + 16, 6}, 10 }, { {AttributeProto_AttributeType_names + 22, 3}, 2 }, { {AttributeProto_AttributeType_names + 25, 4}, 7 }, { {AttributeProto_AttributeType_names + 29, 13}, 11 }, { {AttributeProto_AttributeType_names + 42, 14}, 12 }, { {AttributeProto_AttributeType_names + 56, 6}, 3 }, { {AttributeProto_AttributeType_names + 62, 7}, 8 }, { {AttributeProto_AttributeType_names + 69, 6}, 4 }, { {AttributeProto_AttributeType_names + 75, 7}, 9 }, { {AttributeProto_AttributeType_names + 82, 10}, 13 }, { {AttributeProto_AttributeType_names + 92, 11}, 14 }, { {AttributeProto_AttributeType_names + 103, 9}, 0 }, }; static const int AttributeProto_AttributeType_entries_by_number[] = { 14, // 0 -> UNDEFINED 0, // 1 -> FLOAT 4, // 2 -> INT 8, // 3 -> STRING 10, // 4 -> TENSOR 2, // 5 -> GRAPH 1, // 6 -> FLOATS 5, // 7 -> INTS 9, // 8 -> STRINGS 11, // 9 -> TENSORS 3, // 10 -> GRAPHS 6, // 11 -> SPARSE_TENSOR 7, // 12 -> SPARSE_TENSORS 12, // 13 -> TYPE_PROTO 13, // 14 -> TYPE_PROTOS }; const std::string& AttributeProto_AttributeType_Name( AttributeProto_AttributeType value) { static const bool dummy = ::PROTOBUF_NAMESPACE_ID::internal::InitializeEnumStrings( AttributeProto_AttributeType_entries, AttributeProto_AttributeType_entries_by_number, 15, AttributeProto_AttributeType_strings); (void) dummy; int idx = ::PROTOBUF_NAMESPACE_ID::internal::LookUpEnumName( AttributeProto_AttributeType_entries, AttributeProto_AttributeType_entries_by_number, 15, value); return idx == -1 ? ::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString() : AttributeProto_AttributeType_strings[idx].get(); } bool AttributeProto_AttributeType_Parse( ::PROTOBUF_NAMESPACE_ID::ConstStringParam name, AttributeProto_AttributeType* value) { int int_value; bool success = ::PROTOBUF_NAMESPACE_ID::internal::LookUpEnumValue( AttributeProto_AttributeType_entries, 15, name, &int_value); if (success) { *value = static_cast(int_value); } return success; } #if (__cplusplus < 201703) && (!defined(_MSC_VER) || (_MSC_VER >= 1900 && _MSC_VER < 1912)) constexpr AttributeProto_AttributeType AttributeProto::UNDEFINED; constexpr AttributeProto_AttributeType AttributeProto::FLOAT; constexpr AttributeProto_AttributeType AttributeProto::INT; constexpr AttributeProto_AttributeType AttributeProto::STRING; constexpr AttributeProto_AttributeType AttributeProto::TENSOR; constexpr AttributeProto_AttributeType AttributeProto::GRAPH; constexpr AttributeProto_AttributeType AttributeProto::SPARSE_TENSOR; constexpr AttributeProto_AttributeType AttributeProto::TYPE_PROTO; constexpr AttributeProto_AttributeType AttributeProto::FLOATS; constexpr AttributeProto_AttributeType AttributeProto::INTS; constexpr AttributeProto_AttributeType AttributeProto::STRINGS; constexpr AttributeProto_AttributeType AttributeProto::TENSORS; constexpr AttributeProto_AttributeType AttributeProto::GRAPHS; constexpr AttributeProto_AttributeType AttributeProto::SPARSE_TENSORS; constexpr AttributeProto_AttributeType AttributeProto::TYPE_PROTOS; constexpr AttributeProto_AttributeType AttributeProto::AttributeType_MIN; constexpr AttributeProto_AttributeType AttributeProto::AttributeType_MAX; constexpr int AttributeProto::AttributeType_ARRAYSIZE; #endif // (__cplusplus < 201703) && (!defined(_MSC_VER) || (_MSC_VER >= 1900 && _MSC_VER < 1912)) bool TensorProto_DataType_IsValid(int value) { switch (value) { case 0: case 1: case 2: case 3: case 4: case 5: case 6: case 7: case 8: case 9: case 10: case 11: case 12: case 13: case 14: case 15: case 16: case 17: case 18: case 19: case 20: case 21: case 22: case 23: return true; default: return false; } } static ::PROTOBUF_NAMESPACE_ID::internal::ExplicitlyConstructed TensorProto_DataType_strings[24] = {}; static const char TensorProto_DataType_names[] = "BFLOAT16" "BOOL" "COMPLEX128" "COMPLEX64" "DOUBLE" "FLOAT" "FLOAT16" "FLOAT4E2M1" "FLOAT8E4M3FN" "FLOAT8E4M3FNUZ" "FLOAT8E5M2" "FLOAT8E5M2FNUZ" "INT16" "INT32" "INT4" "INT64" "INT8" "STRING" "UINT16" "UINT32" "UINT4" "UINT64" "UINT8" "UNDEFINED"; static const ::PROTOBUF_NAMESPACE_ID::internal::EnumEntry TensorProto_DataType_entries[] = { { {TensorProto_DataType_names + 0, 8}, 16 }, { {TensorProto_DataType_names + 8, 4}, 9 }, { {TensorProto_DataType_names + 12, 10}, 15 }, { {TensorProto_DataType_names + 22, 9}, 14 }, { {TensorProto_DataType_names + 31, 6}, 11 }, { {TensorProto_DataType_names + 37, 5}, 1 }, { {TensorProto_DataType_names + 42, 7}, 10 }, { {TensorProto_DataType_names + 49, 10}, 23 }, { {TensorProto_DataType_names + 59, 12}, 17 }, { {TensorProto_DataType_names + 71, 14}, 18 }, { {TensorProto_DataType_names + 85, 10}, 19 }, { {TensorProto_DataType_names + 95, 14}, 20 }, { {TensorProto_DataType_names + 109, 5}, 5 }, { {TensorProto_DataType_names + 114, 5}, 6 }, { {TensorProto_DataType_names + 119, 4}, 22 }, { {TensorProto_DataType_names + 123, 5}, 7 }, { {TensorProto_DataType_names + 128, 4}, 3 }, { {TensorProto_DataType_names + 132, 6}, 8 }, { {TensorProto_DataType_names + 138, 6}, 4 }, { {TensorProto_DataType_names + 144, 6}, 12 }, { {TensorProto_DataType_names + 150, 5}, 21 }, { {TensorProto_DataType_names + 155, 6}, 13 }, { {TensorProto_DataType_names + 161, 5}, 2 }, { {TensorProto_DataType_names + 166, 9}, 0 }, }; static const int TensorProto_DataType_entries_by_number[] = { 23, // 0 -> UNDEFINED 5, // 1 -> FLOAT 22, // 2 -> UINT8 16, // 3 -> INT8 18, // 4 -> UINT16 12, // 5 -> INT16 13, // 6 -> INT32 15, // 7 -> INT64 17, // 8 -> STRING 1, // 9 -> BOOL 6, // 10 -> FLOAT16 4, // 11 -> DOUBLE 19, // 12 -> UINT32 21, // 13 -> UINT64 3, // 14 -> COMPLEX64 2, // 15 -> COMPLEX128 0, // 16 -> BFLOAT16 8, // 17 -> FLOAT8E4M3FN 9, // 18 -> FLOAT8E4M3FNUZ 10, // 19 -> FLOAT8E5M2 11, // 20 -> FLOAT8E5M2FNUZ 20, // 21 -> UINT4 14, // 22 -> INT4 7, // 23 -> FLOAT4E2M1 }; const std::string& TensorProto_DataType_Name( TensorProto_DataType value) { static const bool dummy = ::PROTOBUF_NAMESPACE_ID::internal::InitializeEnumStrings( TensorProto_DataType_entries, TensorProto_DataType_entries_by_number, 24, TensorProto_DataType_strings); (void) dummy; int idx = ::PROTOBUF_NAMESPACE_ID::internal::LookUpEnumName( TensorProto_DataType_entries, TensorProto_DataType_entries_by_number, 24, value); return idx == -1 ? ::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString() : TensorProto_DataType_strings[idx].get(); } bool TensorProto_DataType_Parse( ::PROTOBUF_NAMESPACE_ID::ConstStringParam name, TensorProto_DataType* value) { int int_value; bool success = ::PROTOBUF_NAMESPACE_ID::internal::LookUpEnumValue( TensorProto_DataType_entries, 24, name, &int_value); if (success) { *value = static_cast(int_value); } return success; } #if (__cplusplus < 201703) && (!defined(_MSC_VER) || (_MSC_VER >= 1900 && _MSC_VER < 1912)) constexpr TensorProto_DataType TensorProto::UNDEFINED; constexpr TensorProto_DataType TensorProto::FLOAT; constexpr TensorProto_DataType TensorProto::UINT8; constexpr TensorProto_DataType TensorProto::INT8; constexpr TensorProto_DataType TensorProto::UINT16; constexpr TensorProto_DataType TensorProto::INT16; constexpr TensorProto_DataType TensorProto::INT32; constexpr TensorProto_DataType TensorProto::INT64; constexpr TensorProto_DataType TensorProto::STRING; constexpr TensorProto_DataType TensorProto::BOOL; constexpr TensorProto_DataType TensorProto::FLOAT16; constexpr TensorProto_DataType TensorProto::DOUBLE; constexpr TensorProto_DataType TensorProto::UINT32; constexpr TensorProto_DataType TensorProto::UINT64; constexpr TensorProto_DataType TensorProto::COMPLEX64; constexpr TensorProto_DataType TensorProto::COMPLEX128; constexpr TensorProto_DataType TensorProto::BFLOAT16; constexpr TensorProto_DataType TensorProto::FLOAT8E4M3FN; constexpr TensorProto_DataType TensorProto::FLOAT8E4M3FNUZ; constexpr TensorProto_DataType TensorProto::FLOAT8E5M2; constexpr TensorProto_DataType TensorProto::FLOAT8E5M2FNUZ; constexpr TensorProto_DataType TensorProto::UINT4; constexpr TensorProto_DataType TensorProto::INT4; constexpr TensorProto_DataType TensorProto::FLOAT4E2M1; constexpr TensorProto_DataType TensorProto::DataType_MIN; constexpr TensorProto_DataType TensorProto::DataType_MAX; constexpr int TensorProto::DataType_ARRAYSIZE; #endif // (__cplusplus < 201703) && (!defined(_MSC_VER) || (_MSC_VER >= 1900 && _MSC_VER < 1912)) bool TensorProto_DataLocation_IsValid(int value) { switch (value) { case 0: case 1: return true; default: return false; } } static ::PROTOBUF_NAMESPACE_ID::internal::ExplicitlyConstructed TensorProto_DataLocation_strings[2] = {}; static const char TensorProto_DataLocation_names[] = "DEFAULT" "EXTERNAL"; static const ::PROTOBUF_NAMESPACE_ID::internal::EnumEntry TensorProto_DataLocation_entries[] = { { {TensorProto_DataLocation_names + 0, 7}, 0 }, { {TensorProto_DataLocation_names + 7, 8}, 1 }, }; static const int TensorProto_DataLocation_entries_by_number[] = { 0, // 0 -> DEFAULT 1, // 1 -> EXTERNAL }; const std::string& TensorProto_DataLocation_Name( TensorProto_DataLocation value) { static const bool dummy = ::PROTOBUF_NAMESPACE_ID::internal::InitializeEnumStrings( TensorProto_DataLocation_entries, TensorProto_DataLocation_entries_by_number, 2, TensorProto_DataLocation_strings); (void) dummy; int idx = ::PROTOBUF_NAMESPACE_ID::internal::LookUpEnumName( TensorProto_DataLocation_entries, TensorProto_DataLocation_entries_by_number, 2, value); return idx == -1 ? ::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString() : TensorProto_DataLocation_strings[idx].get(); } bool TensorProto_DataLocation_Parse( ::PROTOBUF_NAMESPACE_ID::ConstStringParam name, TensorProto_DataLocation* value) { int int_value; bool success = ::PROTOBUF_NAMESPACE_ID::internal::LookUpEnumValue( TensorProto_DataLocation_entries, 2, name, &int_value); if (success) { *value = static_cast(int_value); } return success; } #if (__cplusplus < 201703) && (!defined(_MSC_VER) || (_MSC_VER >= 1900 && _MSC_VER < 1912)) constexpr TensorProto_DataLocation TensorProto::DEFAULT; constexpr TensorProto_DataLocation TensorProto::EXTERNAL; constexpr TensorProto_DataLocation TensorProto::DataLocation_MIN; constexpr TensorProto_DataLocation TensorProto::DataLocation_MAX; constexpr int TensorProto::DataLocation_ARRAYSIZE; #endif // (__cplusplus < 201703) && (!defined(_MSC_VER) || (_MSC_VER >= 1900 && _MSC_VER < 1912)) bool Version_IsValid(int value) { switch (value) { case 0: case 1: case 2: case 3: case 4: case 5: case 6: case 7: case 8: case 9: case 10: case 11: return true; default: return false; } } static ::PROTOBUF_NAMESPACE_ID::internal::ExplicitlyConstructed Version_strings[12] = {}; static const char Version_names[] = "IR_VERSION" "IR_VERSION_2017_10_10" "IR_VERSION_2017_10_30" "IR_VERSION_2017_11_3" "IR_VERSION_2019_1_22" "IR_VERSION_2019_3_18" "IR_VERSION_2019_9_19" "IR_VERSION_2020_5_8" "IR_VERSION_2021_7_30" "IR_VERSION_2023_5_5" "IR_VERSION_2024_3_25" "_START_VERSION"; static const ::PROTOBUF_NAMESPACE_ID::internal::EnumEntry Version_entries[] = { { {Version_names + 0, 10}, 11 }, { {Version_names + 10, 21}, 1 }, { {Version_names + 31, 21}, 2 }, { {Version_names + 52, 20}, 3 }, { {Version_names + 72, 20}, 4 }, { {Version_names + 92, 20}, 5 }, { {Version_names + 112, 20}, 6 }, { {Version_names + 132, 19}, 7 }, { {Version_names + 151, 20}, 8 }, { {Version_names + 171, 19}, 9 }, { {Version_names + 190, 20}, 10 }, { {Version_names + 210, 14}, 0 }, }; static const int Version_entries_by_number[] = { 11, // 0 -> _START_VERSION 1, // 1 -> IR_VERSION_2017_10_10 2, // 2 -> IR_VERSION_2017_10_30 3, // 3 -> IR_VERSION_2017_11_3 4, // 4 -> IR_VERSION_2019_1_22 5, // 5 -> IR_VERSION_2019_3_18 6, // 6 -> IR_VERSION_2019_9_19 7, // 7 -> IR_VERSION_2020_5_8 8, // 8 -> IR_VERSION_2021_7_30 9, // 9 -> IR_VERSION_2023_5_5 10, // 10 -> IR_VERSION_2024_3_25 0, // 11 -> IR_VERSION }; const std::string& Version_Name( Version value) { static const bool dummy = ::PROTOBUF_NAMESPACE_ID::internal::InitializeEnumStrings( Version_entries, Version_entries_by_number, 12, Version_strings); (void) dummy; int idx = ::PROTOBUF_NAMESPACE_ID::internal::LookUpEnumName( Version_entries, Version_entries_by_number, 12, value); return idx == -1 ? ::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString() : Version_strings[idx].get(); } bool Version_Parse( ::PROTOBUF_NAMESPACE_ID::ConstStringParam name, Version* value) { int int_value; bool success = ::PROTOBUF_NAMESPACE_ID::internal::LookUpEnumValue( Version_entries, 12, name, &int_value); if (success) { *value = static_cast(int_value); } return success; } bool OperatorStatus_IsValid(int value) { switch (value) { case 0: case 1: return true; default: return false; } } static ::PROTOBUF_NAMESPACE_ID::internal::ExplicitlyConstructed OperatorStatus_strings[2] = {}; static const char OperatorStatus_names[] = "EXPERIMENTAL" "STABLE"; static const ::PROTOBUF_NAMESPACE_ID::internal::EnumEntry OperatorStatus_entries[] = { { {OperatorStatus_names + 0, 12}, 0 }, { {OperatorStatus_names + 12, 6}, 1 }, }; static const int OperatorStatus_entries_by_number[] = { 0, // 0 -> EXPERIMENTAL 1, // 1 -> STABLE }; const std::string& OperatorStatus_Name( OperatorStatus value) { static const bool dummy = ::PROTOBUF_NAMESPACE_ID::internal::InitializeEnumStrings( OperatorStatus_entries, OperatorStatus_entries_by_number, 2, OperatorStatus_strings); (void) dummy; int idx = ::PROTOBUF_NAMESPACE_ID::internal::LookUpEnumName( OperatorStatus_entries, OperatorStatus_entries_by_number, 2, value); return idx == -1 ? ::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString() : OperatorStatus_strings[idx].get(); } bool OperatorStatus_Parse( ::PROTOBUF_NAMESPACE_ID::ConstStringParam name, OperatorStatus* value) { int int_value; bool success = ::PROTOBUF_NAMESPACE_ID::internal::LookUpEnumValue( OperatorStatus_entries, 2, name, &int_value); if (success) { *value = static_cast(int_value); } return success; } // =================================================================== class AttributeProto::_Internal { public: using HasBits = decltype(std::declval()._has_bits_); static void set_has_name(HasBits* has_bits) { (*has_bits)[0] |= 1u; } static void set_has_ref_attr_name(HasBits* has_bits) { (*has_bits)[0] |= 8u; } static void set_has_doc_string(HasBits* has_bits) { (*has_bits)[0] |= 4u; } static void set_has_type(HasBits* has_bits) { (*has_bits)[0] |= 1024u; } static void set_has_f(HasBits* has_bits) { (*has_bits)[0] |= 512u; } static void set_has_i(HasBits* has_bits) { (*has_bits)[0] |= 256u; } static void set_has_s(HasBits* has_bits) { (*has_bits)[0] |= 2u; } static const ::opencv_onnx::TensorProto& t(const AttributeProto* msg); static void set_has_t(HasBits* has_bits) { (*has_bits)[0] |= 16u; } static const ::opencv_onnx::GraphProto& g(const AttributeProto* msg); static void set_has_g(HasBits* has_bits) { (*has_bits)[0] |= 32u; } static const ::opencv_onnx::SparseTensorProto& sparse_tensor(const AttributeProto* msg); static void set_has_sparse_tensor(HasBits* has_bits) { (*has_bits)[0] |= 128u; } static const ::opencv_onnx::TypeProto& tp(const AttributeProto* msg); static void set_has_tp(HasBits* has_bits) { (*has_bits)[0] |= 64u; } }; const ::opencv_onnx::TensorProto& AttributeProto::_Internal::t(const AttributeProto* msg) { return *msg->t_; } const ::opencv_onnx::GraphProto& AttributeProto::_Internal::g(const AttributeProto* msg) { return *msg->g_; } const ::opencv_onnx::SparseTensorProto& AttributeProto::_Internal::sparse_tensor(const AttributeProto* msg) { return *msg->sparse_tensor_; } const ::opencv_onnx::TypeProto& AttributeProto::_Internal::tp(const AttributeProto* msg) { return *msg->tp_; } AttributeProto::AttributeProto(::PROTOBUF_NAMESPACE_ID::Arena* arena, bool is_message_owned) : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena, is_message_owned), floats_(arena), ints_(arena), strings_(arena), tensors_(arena), graphs_(arena), type_protos_(arena), sparse_tensors_(arena) { SharedCtor(); if (!is_message_owned) { RegisterArenaDtor(arena); } // @@protoc_insertion_point(arena_constructor:opencv_onnx.AttributeProto) } AttributeProto::AttributeProto(const AttributeProto& from) : ::PROTOBUF_NAMESPACE_ID::MessageLite(), _has_bits_(from._has_bits_), floats_(from.floats_), ints_(from.ints_), strings_(from.strings_), tensors_(from.tensors_), graphs_(from.graphs_), type_protos_(from.type_protos_), sparse_tensors_(from.sparse_tensors_) { _internal_metadata_.MergeFrom(from._internal_metadata_); name_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING name_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_name()) { name_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_name(), GetArenaForAllocation()); } s_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING s_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_s()) { s_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_s(), GetArenaForAllocation()); } doc_string_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING doc_string_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_doc_string()) { doc_string_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_doc_string(), GetArenaForAllocation()); } ref_attr_name_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING ref_attr_name_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_ref_attr_name()) { ref_attr_name_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_ref_attr_name(), GetArenaForAllocation()); } if (from._internal_has_t()) { t_ = new ::opencv_onnx::TensorProto(*from.t_); } else { t_ = nullptr; } if (from._internal_has_g()) { g_ = new ::opencv_onnx::GraphProto(*from.g_); } else { g_ = nullptr; } if (from._internal_has_tp()) { tp_ = new ::opencv_onnx::TypeProto(*from.tp_); } else { tp_ = nullptr; } if (from._internal_has_sparse_tensor()) { sparse_tensor_ = new ::opencv_onnx::SparseTensorProto(*from.sparse_tensor_); } else { sparse_tensor_ = nullptr; } ::memcpy(&i_, &from.i_, static_cast(reinterpret_cast(&type_) - reinterpret_cast(&i_)) + sizeof(type_)); // @@protoc_insertion_point(copy_constructor:opencv_onnx.AttributeProto) } inline void AttributeProto::SharedCtor() { name_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING name_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING s_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING s_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING doc_string_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING doc_string_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING ref_attr_name_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING ref_attr_name_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING ::memset(reinterpret_cast(this) + static_cast( reinterpret_cast(&t_) - reinterpret_cast(this)), 0, static_cast(reinterpret_cast(&type_) - reinterpret_cast(&t_)) + sizeof(type_)); } AttributeProto::~AttributeProto() { // @@protoc_insertion_point(destructor:opencv_onnx.AttributeProto) if (GetArenaForAllocation() != nullptr) return; SharedDtor(); _internal_metadata_.Delete(); } inline void AttributeProto::SharedDtor() { GOOGLE_DCHECK(GetArenaForAllocation() == nullptr); name_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); s_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); doc_string_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); ref_attr_name_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); if (this != internal_default_instance()) delete t_; if (this != internal_default_instance()) delete g_; if (this != internal_default_instance()) delete tp_; if (this != internal_default_instance()) delete sparse_tensor_; } void AttributeProto::ArenaDtor(void* object) { AttributeProto* _this = reinterpret_cast< AttributeProto* >(object); (void)_this; } void AttributeProto::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) { } void AttributeProto::SetCachedSize(int size) const { _cached_size_.Set(size); } void AttributeProto::Clear() { // @@protoc_insertion_point(message_clear_start:opencv_onnx.AttributeProto) uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; floats_.Clear(); ints_.Clear(); strings_.Clear(); tensors_.Clear(); graphs_.Clear(); type_protos_.Clear(); sparse_tensors_.Clear(); cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x000000ffu) { if (cached_has_bits & 0x00000001u) { name_.ClearNonDefaultToEmpty(); } if (cached_has_bits & 0x00000002u) { s_.ClearNonDefaultToEmpty(); } if (cached_has_bits & 0x00000004u) { doc_string_.ClearNonDefaultToEmpty(); } if (cached_has_bits & 0x00000008u) { ref_attr_name_.ClearNonDefaultToEmpty(); } if (cached_has_bits & 0x00000010u) { GOOGLE_DCHECK(t_ != nullptr); t_->Clear(); } if (cached_has_bits & 0x00000020u) { GOOGLE_DCHECK(g_ != nullptr); g_->Clear(); } if (cached_has_bits & 0x00000040u) { GOOGLE_DCHECK(tp_ != nullptr); tp_->Clear(); } if (cached_has_bits & 0x00000080u) { GOOGLE_DCHECK(sparse_tensor_ != nullptr); sparse_tensor_->Clear(); } } if (cached_has_bits & 0x00000700u) { ::memset(&i_, 0, static_cast( reinterpret_cast(&type_) - reinterpret_cast(&i_)) + sizeof(type_)); } _has_bits_.Clear(); _internal_metadata_.Clear(); } const char* AttributeProto::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) { #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure _Internal::HasBits has_bits{}; while (!ctx->Done(&ptr)) { uint32_t tag; ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag); switch (tag >> 3) { // optional string name = 1; case 1: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 10)) { auto str = _internal_mutable_name(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // optional float f = 2; case 2: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 21)) { _Internal::set_has_f(&has_bits); f_ = ::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad(ptr); ptr += sizeof(float); } else goto handle_unusual; continue; // optional int64 i = 3; case 3: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 24)) { _Internal::set_has_i(&has_bits); i_ = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr); CHK_(ptr); } else goto handle_unusual; continue; // optional bytes s = 4; case 4: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 34)) { auto str = _internal_mutable_s(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // optional .opencv_onnx.TensorProto t = 5; case 5: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 42)) { ptr = ctx->ParseMessage(_internal_mutable_t(), ptr); CHK_(ptr); } else goto handle_unusual; continue; // optional .opencv_onnx.GraphProto g = 6; case 6: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 50)) { ptr = ctx->ParseMessage(_internal_mutable_g(), ptr); CHK_(ptr); } else goto handle_unusual; continue; // repeated float floats = 7; case 7: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 61)) { ptr -= 1; do { ptr += 1; _internal_add_floats(::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad(ptr)); ptr += sizeof(float); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<61>(ptr)); } else if (static_cast(tag) == 58) { ptr = ::PROTOBUF_NAMESPACE_ID::internal::PackedFloatParser(_internal_mutable_floats(), ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // repeated int64 ints = 8; case 8: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 64)) { ptr -= 1; do { ptr += 1; _internal_add_ints(::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr)); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<64>(ptr)); } else if (static_cast(tag) == 66) { ptr = ::PROTOBUF_NAMESPACE_ID::internal::PackedInt64Parser(_internal_mutable_ints(), ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // repeated bytes strings = 9; case 9: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 74)) { ptr -= 1; do { ptr += 1; auto str = _internal_add_strings(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<74>(ptr)); } else goto handle_unusual; continue; // repeated .opencv_onnx.TensorProto tensors = 10; case 10: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 82)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_tensors(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<82>(ptr)); } else goto handle_unusual; continue; // repeated .opencv_onnx.GraphProto graphs = 11; case 11: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 90)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_graphs(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<90>(ptr)); } else goto handle_unusual; continue; // optional string doc_string = 13; case 13: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 106)) { auto str = _internal_mutable_doc_string(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // optional .opencv_onnx.TypeProto tp = 14; case 14: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 114)) { ptr = ctx->ParseMessage(_internal_mutable_tp(), ptr); CHK_(ptr); } else goto handle_unusual; continue; // repeated .opencv_onnx.TypeProto type_protos = 15; case 15: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 122)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_type_protos(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<122>(ptr)); } else goto handle_unusual; continue; // optional .opencv_onnx.AttributeProto.AttributeType type = 20; case 20: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 160)) { uint64_t val = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr); CHK_(ptr); if (PROTOBUF_PREDICT_TRUE(::opencv_onnx::AttributeProto_AttributeType_IsValid(val))) { _internal_set_type(static_cast<::opencv_onnx::AttributeProto_AttributeType>(val)); } else { ::PROTOBUF_NAMESPACE_ID::internal::WriteVarint(20, val, mutable_unknown_fields()); } } else goto handle_unusual; continue; // optional string ref_attr_name = 21; case 21: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 170)) { auto str = _internal_mutable_ref_attr_name(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // optional .opencv_onnx.SparseTensorProto sparse_tensor = 22; case 22: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 178)) { ptr = ctx->ParseMessage(_internal_mutable_sparse_tensor(), ptr); CHK_(ptr); } else goto handle_unusual; continue; // repeated .opencv_onnx.SparseTensorProto sparse_tensors = 23; case 23: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 186)) { ptr -= 2; do { ptr += 2; ptr = ctx->ParseMessage(_internal_add_sparse_tensors(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<186>(ptr)); } else goto handle_unusual; continue; default: goto handle_unusual; } // switch handle_unusual: if ((tag == 0) || ((tag & 7) == 4)) { CHK_(ptr); ctx->SetLastTag(tag); goto message_done; } ptr = UnknownFieldParse( tag, _internal_metadata_.mutable_unknown_fields(), ptr, ctx); CHK_(ptr != nullptr); } // while message_done: _has_bits_.Or(has_bits); return ptr; failure: ptr = nullptr; goto message_done; #undef CHK_ } uint8_t* AttributeProto::_InternalSerialize( uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const { // @@protoc_insertion_point(serialize_to_array_start:opencv_onnx.AttributeProto) uint32_t cached_has_bits = 0; (void) cached_has_bits; cached_has_bits = _has_bits_[0]; // optional string name = 1; if (cached_has_bits & 0x00000001u) { target = stream->WriteStringMaybeAliased( 1, this->_internal_name(), target); } // optional float f = 2; if (cached_has_bits & 0x00000200u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(2, this->_internal_f(), target); } // optional int64 i = 3; if (cached_has_bits & 0x00000100u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt64ToArray(3, this->_internal_i(), target); } // optional bytes s = 4; if (cached_has_bits & 0x00000002u) { target = stream->WriteBytesMaybeAliased( 4, this->_internal_s(), target); } // optional .opencv_onnx.TensorProto t = 5; if (cached_has_bits & 0x00000010u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage( 5, _Internal::t(this), target, stream); } // optional .opencv_onnx.GraphProto g = 6; if (cached_has_bits & 0x00000020u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage( 6, _Internal::g(this), target, stream); } // repeated float floats = 7; for (int i = 0, n = this->_internal_floats_size(); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteFloatToArray(7, this->_internal_floats(i), target); } // repeated int64 ints = 8; for (int i = 0, n = this->_internal_ints_size(); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt64ToArray(8, this->_internal_ints(i), target); } // repeated bytes strings = 9; for (int i = 0, n = this->_internal_strings_size(); i < n; i++) { const auto& s = this->_internal_strings(i); target = stream->WriteBytes(9, s, target); } // repeated .opencv_onnx.TensorProto tensors = 10; for (unsigned int i = 0, n = static_cast(this->_internal_tensors_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(10, this->_internal_tensors(i), target, stream); } // repeated .opencv_onnx.GraphProto graphs = 11; for (unsigned int i = 0, n = static_cast(this->_internal_graphs_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(11, this->_internal_graphs(i), target, stream); } // optional string doc_string = 13; if (cached_has_bits & 0x00000004u) { target = stream->WriteStringMaybeAliased( 13, this->_internal_doc_string(), target); } // optional .opencv_onnx.TypeProto tp = 14; if (cached_has_bits & 0x00000040u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage( 14, _Internal::tp(this), target, stream); } // repeated .opencv_onnx.TypeProto type_protos = 15; for (unsigned int i = 0, n = static_cast(this->_internal_type_protos_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(15, this->_internal_type_protos(i), target, stream); } // optional .opencv_onnx.AttributeProto.AttributeType type = 20; if (cached_has_bits & 0x00000400u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteEnumToArray( 20, this->_internal_type(), target); } // optional string ref_attr_name = 21; if (cached_has_bits & 0x00000008u) { target = stream->WriteStringMaybeAliased( 21, this->_internal_ref_attr_name(), target); } // optional .opencv_onnx.SparseTensorProto sparse_tensor = 22; if (cached_has_bits & 0x00000080u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage( 22, _Internal::sparse_tensor(this), target, stream); } // repeated .opencv_onnx.SparseTensorProto sparse_tensors = 23; for (unsigned int i = 0, n = static_cast(this->_internal_sparse_tensors_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(23, this->_internal_sparse_tensors(i), target, stream); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { target = stream->WriteRaw(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(), static_cast(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target); } // @@protoc_insertion_point(serialize_to_array_end:opencv_onnx.AttributeProto) return target; } size_t AttributeProto::ByteSizeLong() const { // @@protoc_insertion_point(message_byte_size_start:opencv_onnx.AttributeProto) size_t total_size = 0; uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; // repeated float floats = 7; { unsigned int count = static_cast(this->_internal_floats_size()); size_t data_size = 4UL * count; total_size += 1 * ::PROTOBUF_NAMESPACE_ID::internal::FromIntSize(this->_internal_floats_size()); total_size += data_size; } // repeated int64 ints = 8; { size_t data_size = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: Int64Size(this->ints_); total_size += 1 * ::PROTOBUF_NAMESPACE_ID::internal::FromIntSize(this->_internal_ints_size()); total_size += data_size; } // repeated bytes strings = 9; total_size += 1 * ::PROTOBUF_NAMESPACE_ID::internal::FromIntSize(strings_.size()); for (int i = 0, n = strings_.size(); i < n; i++) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::BytesSize( strings_.Get(i)); } // repeated .opencv_onnx.TensorProto tensors = 10; total_size += 1UL * this->_internal_tensors_size(); for (const auto& msg : this->tensors_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } // repeated .opencv_onnx.GraphProto graphs = 11; total_size += 1UL * this->_internal_graphs_size(); for (const auto& msg : this->graphs_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } // repeated .opencv_onnx.TypeProto type_protos = 15; total_size += 1UL * this->_internal_type_protos_size(); for (const auto& msg : this->type_protos_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } // repeated .opencv_onnx.SparseTensorProto sparse_tensors = 23; total_size += 2UL * this->_internal_sparse_tensors_size(); for (const auto& msg : this->sparse_tensors_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x000000ffu) { // optional string name = 1; if (cached_has_bits & 0x00000001u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_name()); } // optional bytes s = 4; if (cached_has_bits & 0x00000002u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::BytesSize( this->_internal_s()); } // optional string doc_string = 13; if (cached_has_bits & 0x00000004u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_doc_string()); } // optional string ref_attr_name = 21; if (cached_has_bits & 0x00000008u) { total_size += 2 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_ref_attr_name()); } // optional .opencv_onnx.TensorProto t = 5; if (cached_has_bits & 0x00000010u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize( *t_); } // optional .opencv_onnx.GraphProto g = 6; if (cached_has_bits & 0x00000020u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize( *g_); } // optional .opencv_onnx.TypeProto tp = 14; if (cached_has_bits & 0x00000040u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize( *tp_); } // optional .opencv_onnx.SparseTensorProto sparse_tensor = 22; if (cached_has_bits & 0x00000080u) { total_size += 2 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize( *sparse_tensor_); } } if (cached_has_bits & 0x00000700u) { // optional int64 i = 3; if (cached_has_bits & 0x00000100u) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int64SizePlusOne(this->_internal_i()); } // optional float f = 2; if (cached_has_bits & 0x00000200u) { total_size += 1 + 4; } // optional .opencv_onnx.AttributeProto.AttributeType type = 20; if (cached_has_bits & 0x00000400u) { total_size += 2 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::EnumSize(this->_internal_type()); } } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { total_size += _internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size(); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size); SetCachedSize(cached_size); return total_size; } void AttributeProto::CheckTypeAndMergeFrom( const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) { MergeFrom(*::PROTOBUF_NAMESPACE_ID::internal::DownCast( &from)); } void AttributeProto::MergeFrom(const AttributeProto& from) { // @@protoc_insertion_point(class_specific_merge_from_start:opencv_onnx.AttributeProto) GOOGLE_DCHECK_NE(&from, this); uint32_t cached_has_bits = 0; (void) cached_has_bits; floats_.MergeFrom(from.floats_); ints_.MergeFrom(from.ints_); strings_.MergeFrom(from.strings_); tensors_.MergeFrom(from.tensors_); graphs_.MergeFrom(from.graphs_); type_protos_.MergeFrom(from.type_protos_); sparse_tensors_.MergeFrom(from.sparse_tensors_); cached_has_bits = from._has_bits_[0]; if (cached_has_bits & 0x000000ffu) { if (cached_has_bits & 0x00000001u) { _internal_set_name(from._internal_name()); } if (cached_has_bits & 0x00000002u) { _internal_set_s(from._internal_s()); } if (cached_has_bits & 0x00000004u) { _internal_set_doc_string(from._internal_doc_string()); } if (cached_has_bits & 0x00000008u) { _internal_set_ref_attr_name(from._internal_ref_attr_name()); } if (cached_has_bits & 0x00000010u) { _internal_mutable_t()->::opencv_onnx::TensorProto::MergeFrom(from._internal_t()); } if (cached_has_bits & 0x00000020u) { _internal_mutable_g()->::opencv_onnx::GraphProto::MergeFrom(from._internal_g()); } if (cached_has_bits & 0x00000040u) { _internal_mutable_tp()->::opencv_onnx::TypeProto::MergeFrom(from._internal_tp()); } if (cached_has_bits & 0x00000080u) { _internal_mutable_sparse_tensor()->::opencv_onnx::SparseTensorProto::MergeFrom(from._internal_sparse_tensor()); } } if (cached_has_bits & 0x00000700u) { if (cached_has_bits & 0x00000100u) { i_ = from.i_; } if (cached_has_bits & 0x00000200u) { f_ = from.f_; } if (cached_has_bits & 0x00000400u) { type_ = from.type_; } _has_bits_[0] |= cached_has_bits; } _internal_metadata_.MergeFrom(from._internal_metadata_); } void AttributeProto::CopyFrom(const AttributeProto& from) { // @@protoc_insertion_point(class_specific_copy_from_start:opencv_onnx.AttributeProto) if (&from == this) return; Clear(); MergeFrom(from); } bool AttributeProto::IsInitialized() const { return true; } void AttributeProto::InternalSwap(AttributeProto* other) { using std::swap; auto* lhs_arena = GetArenaForAllocation(); auto* rhs_arena = other->GetArenaForAllocation(); _internal_metadata_.InternalSwap(&other->_internal_metadata_); swap(_has_bits_[0], other->_has_bits_[0]); floats_.InternalSwap(&other->floats_); ints_.InternalSwap(&other->ints_); strings_.InternalSwap(&other->strings_); tensors_.InternalSwap(&other->tensors_); graphs_.InternalSwap(&other->graphs_); type_protos_.InternalSwap(&other->type_protos_); sparse_tensors_.InternalSwap(&other->sparse_tensors_); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &name_, lhs_arena, &other->name_, rhs_arena ); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &s_, lhs_arena, &other->s_, rhs_arena ); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &doc_string_, lhs_arena, &other->doc_string_, rhs_arena ); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &ref_attr_name_, lhs_arena, &other->ref_attr_name_, rhs_arena ); ::PROTOBUF_NAMESPACE_ID::internal::memswap< PROTOBUF_FIELD_OFFSET(AttributeProto, type_) + sizeof(AttributeProto::type_) - PROTOBUF_FIELD_OFFSET(AttributeProto, t_)>( reinterpret_cast(&t_), reinterpret_cast(&other->t_)); } std::string AttributeProto::GetTypeName() const { return "opencv_onnx.AttributeProto"; } // =================================================================== class ValueInfoProto::_Internal { public: using HasBits = decltype(std::declval()._has_bits_); static void set_has_name(HasBits* has_bits) { (*has_bits)[0] |= 1u; } static const ::opencv_onnx::TypeProto& type(const ValueInfoProto* msg); static void set_has_type(HasBits* has_bits) { (*has_bits)[0] |= 4u; } static void set_has_doc_string(HasBits* has_bits) { (*has_bits)[0] |= 2u; } }; const ::opencv_onnx::TypeProto& ValueInfoProto::_Internal::type(const ValueInfoProto* msg) { return *msg->type_; } ValueInfoProto::ValueInfoProto(::PROTOBUF_NAMESPACE_ID::Arena* arena, bool is_message_owned) : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena, is_message_owned), metadata_props_(arena) { SharedCtor(); if (!is_message_owned) { RegisterArenaDtor(arena); } // @@protoc_insertion_point(arena_constructor:opencv_onnx.ValueInfoProto) } ValueInfoProto::ValueInfoProto(const ValueInfoProto& from) : ::PROTOBUF_NAMESPACE_ID::MessageLite(), _has_bits_(from._has_bits_), metadata_props_(from.metadata_props_) { _internal_metadata_.MergeFrom(from._internal_metadata_); name_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING name_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_name()) { name_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_name(), GetArenaForAllocation()); } doc_string_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING doc_string_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_doc_string()) { doc_string_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_doc_string(), GetArenaForAllocation()); } if (from._internal_has_type()) { type_ = new ::opencv_onnx::TypeProto(*from.type_); } else { type_ = nullptr; } // @@protoc_insertion_point(copy_constructor:opencv_onnx.ValueInfoProto) } inline void ValueInfoProto::SharedCtor() { name_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING name_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING doc_string_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING doc_string_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING type_ = nullptr; } ValueInfoProto::~ValueInfoProto() { // @@protoc_insertion_point(destructor:opencv_onnx.ValueInfoProto) if (GetArenaForAllocation() != nullptr) return; SharedDtor(); _internal_metadata_.Delete(); } inline void ValueInfoProto::SharedDtor() { GOOGLE_DCHECK(GetArenaForAllocation() == nullptr); name_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); doc_string_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); if (this != internal_default_instance()) delete type_; } void ValueInfoProto::ArenaDtor(void* object) { ValueInfoProto* _this = reinterpret_cast< ValueInfoProto* >(object); (void)_this; } void ValueInfoProto::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) { } void ValueInfoProto::SetCachedSize(int size) const { _cached_size_.Set(size); } void ValueInfoProto::Clear() { // @@protoc_insertion_point(message_clear_start:opencv_onnx.ValueInfoProto) uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; metadata_props_.Clear(); cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000007u) { if (cached_has_bits & 0x00000001u) { name_.ClearNonDefaultToEmpty(); } if (cached_has_bits & 0x00000002u) { doc_string_.ClearNonDefaultToEmpty(); } if (cached_has_bits & 0x00000004u) { GOOGLE_DCHECK(type_ != nullptr); type_->Clear(); } } _has_bits_.Clear(); _internal_metadata_.Clear(); } const char* ValueInfoProto::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) { #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure _Internal::HasBits has_bits{}; while (!ctx->Done(&ptr)) { uint32_t tag; ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag); switch (tag >> 3) { // optional string name = 1; case 1: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 10)) { auto str = _internal_mutable_name(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // optional .opencv_onnx.TypeProto type = 2; case 2: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 18)) { ptr = ctx->ParseMessage(_internal_mutable_type(), ptr); CHK_(ptr); } else goto handle_unusual; continue; // optional string doc_string = 3; case 3: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 26)) { auto str = _internal_mutable_doc_string(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // repeated .opencv_onnx.StringStringEntryProto metadata_props = 4; case 4: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 34)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_metadata_props(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<34>(ptr)); } else goto handle_unusual; continue; default: goto handle_unusual; } // switch handle_unusual: if ((tag == 0) || ((tag & 7) == 4)) { CHK_(ptr); ctx->SetLastTag(tag); goto message_done; } ptr = UnknownFieldParse( tag, _internal_metadata_.mutable_unknown_fields(), ptr, ctx); CHK_(ptr != nullptr); } // while message_done: _has_bits_.Or(has_bits); return ptr; failure: ptr = nullptr; goto message_done; #undef CHK_ } uint8_t* ValueInfoProto::_InternalSerialize( uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const { // @@protoc_insertion_point(serialize_to_array_start:opencv_onnx.ValueInfoProto) uint32_t cached_has_bits = 0; (void) cached_has_bits; cached_has_bits = _has_bits_[0]; // optional string name = 1; if (cached_has_bits & 0x00000001u) { target = stream->WriteStringMaybeAliased( 1, this->_internal_name(), target); } // optional .opencv_onnx.TypeProto type = 2; if (cached_has_bits & 0x00000004u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage( 2, _Internal::type(this), target, stream); } // optional string doc_string = 3; if (cached_has_bits & 0x00000002u) { target = stream->WriteStringMaybeAliased( 3, this->_internal_doc_string(), target); } // repeated .opencv_onnx.StringStringEntryProto metadata_props = 4; for (unsigned int i = 0, n = static_cast(this->_internal_metadata_props_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(4, this->_internal_metadata_props(i), target, stream); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { target = stream->WriteRaw(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(), static_cast(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target); } // @@protoc_insertion_point(serialize_to_array_end:opencv_onnx.ValueInfoProto) return target; } size_t ValueInfoProto::ByteSizeLong() const { // @@protoc_insertion_point(message_byte_size_start:opencv_onnx.ValueInfoProto) size_t total_size = 0; uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; // repeated .opencv_onnx.StringStringEntryProto metadata_props = 4; total_size += 1UL * this->_internal_metadata_props_size(); for (const auto& msg : this->metadata_props_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000007u) { // optional string name = 1; if (cached_has_bits & 0x00000001u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_name()); } // optional string doc_string = 3; if (cached_has_bits & 0x00000002u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_doc_string()); } // optional .opencv_onnx.TypeProto type = 2; if (cached_has_bits & 0x00000004u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize( *type_); } } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { total_size += _internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size(); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size); SetCachedSize(cached_size); return total_size; } void ValueInfoProto::CheckTypeAndMergeFrom( const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) { MergeFrom(*::PROTOBUF_NAMESPACE_ID::internal::DownCast( &from)); } void ValueInfoProto::MergeFrom(const ValueInfoProto& from) { // @@protoc_insertion_point(class_specific_merge_from_start:opencv_onnx.ValueInfoProto) GOOGLE_DCHECK_NE(&from, this); uint32_t cached_has_bits = 0; (void) cached_has_bits; metadata_props_.MergeFrom(from.metadata_props_); cached_has_bits = from._has_bits_[0]; if (cached_has_bits & 0x00000007u) { if (cached_has_bits & 0x00000001u) { _internal_set_name(from._internal_name()); } if (cached_has_bits & 0x00000002u) { _internal_set_doc_string(from._internal_doc_string()); } if (cached_has_bits & 0x00000004u) { _internal_mutable_type()->::opencv_onnx::TypeProto::MergeFrom(from._internal_type()); } } _internal_metadata_.MergeFrom(from._internal_metadata_); } void ValueInfoProto::CopyFrom(const ValueInfoProto& from) { // @@protoc_insertion_point(class_specific_copy_from_start:opencv_onnx.ValueInfoProto) if (&from == this) return; Clear(); MergeFrom(from); } bool ValueInfoProto::IsInitialized() const { return true; } void ValueInfoProto::InternalSwap(ValueInfoProto* other) { using std::swap; auto* lhs_arena = GetArenaForAllocation(); auto* rhs_arena = other->GetArenaForAllocation(); _internal_metadata_.InternalSwap(&other->_internal_metadata_); swap(_has_bits_[0], other->_has_bits_[0]); metadata_props_.InternalSwap(&other->metadata_props_); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &name_, lhs_arena, &other->name_, rhs_arena ); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &doc_string_, lhs_arena, &other->doc_string_, rhs_arena ); swap(type_, other->type_); } std::string ValueInfoProto::GetTypeName() const { return "opencv_onnx.ValueInfoProto"; } // =================================================================== class NodeProto::_Internal { public: using HasBits = decltype(std::declval()._has_bits_); static void set_has_name(HasBits* has_bits) { (*has_bits)[0] |= 1u; } static void set_has_op_type(HasBits* has_bits) { (*has_bits)[0] |= 2u; } static void set_has_domain(HasBits* has_bits) { (*has_bits)[0] |= 8u; } static void set_has_overload(HasBits* has_bits) { (*has_bits)[0] |= 16u; } static void set_has_doc_string(HasBits* has_bits) { (*has_bits)[0] |= 4u; } }; NodeProto::NodeProto(::PROTOBUF_NAMESPACE_ID::Arena* arena, bool is_message_owned) : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena, is_message_owned), input_(arena), output_(arena), attribute_(arena), metadata_props_(arena), device_configurations_(arena) { SharedCtor(); if (!is_message_owned) { RegisterArenaDtor(arena); } // @@protoc_insertion_point(arena_constructor:opencv_onnx.NodeProto) } NodeProto::NodeProto(const NodeProto& from) : ::PROTOBUF_NAMESPACE_ID::MessageLite(), _has_bits_(from._has_bits_), input_(from.input_), output_(from.output_), attribute_(from.attribute_), metadata_props_(from.metadata_props_), device_configurations_(from.device_configurations_) { _internal_metadata_.MergeFrom(from._internal_metadata_); name_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING name_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_name()) { name_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_name(), GetArenaForAllocation()); } op_type_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING op_type_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_op_type()) { op_type_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_op_type(), GetArenaForAllocation()); } doc_string_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING doc_string_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_doc_string()) { doc_string_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_doc_string(), GetArenaForAllocation()); } domain_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING domain_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_domain()) { domain_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_domain(), GetArenaForAllocation()); } overload_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING overload_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_overload()) { overload_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_overload(), GetArenaForAllocation()); } // @@protoc_insertion_point(copy_constructor:opencv_onnx.NodeProto) } inline void NodeProto::SharedCtor() { name_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING name_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING op_type_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING op_type_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING doc_string_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING doc_string_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING domain_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING domain_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING overload_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING overload_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING } NodeProto::~NodeProto() { // @@protoc_insertion_point(destructor:opencv_onnx.NodeProto) if (GetArenaForAllocation() != nullptr) return; SharedDtor(); _internal_metadata_.Delete(); } inline void NodeProto::SharedDtor() { GOOGLE_DCHECK(GetArenaForAllocation() == nullptr); name_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); op_type_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); doc_string_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); domain_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); overload_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); } void NodeProto::ArenaDtor(void* object) { NodeProto* _this = reinterpret_cast< NodeProto* >(object); (void)_this; } void NodeProto::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) { } void NodeProto::SetCachedSize(int size) const { _cached_size_.Set(size); } void NodeProto::Clear() { // @@protoc_insertion_point(message_clear_start:opencv_onnx.NodeProto) uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; input_.Clear(); output_.Clear(); attribute_.Clear(); metadata_props_.Clear(); device_configurations_.Clear(); cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x0000001fu) { if (cached_has_bits & 0x00000001u) { name_.ClearNonDefaultToEmpty(); } if (cached_has_bits & 0x00000002u) { op_type_.ClearNonDefaultToEmpty(); } if (cached_has_bits & 0x00000004u) { doc_string_.ClearNonDefaultToEmpty(); } if (cached_has_bits & 0x00000008u) { domain_.ClearNonDefaultToEmpty(); } if (cached_has_bits & 0x00000010u) { overload_.ClearNonDefaultToEmpty(); } } _has_bits_.Clear(); _internal_metadata_.Clear(); } const char* NodeProto::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) { #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure _Internal::HasBits has_bits{}; while (!ctx->Done(&ptr)) { uint32_t tag; ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag); switch (tag >> 3) { // repeated string input = 1; case 1: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 10)) { ptr -= 1; do { ptr += 1; auto str = _internal_add_input(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<10>(ptr)); } else goto handle_unusual; continue; // repeated string output = 2; case 2: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 18)) { ptr -= 1; do { ptr += 1; auto str = _internal_add_output(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<18>(ptr)); } else goto handle_unusual; continue; // optional string name = 3; case 3: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 26)) { auto str = _internal_mutable_name(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // optional string op_type = 4; case 4: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 34)) { auto str = _internal_mutable_op_type(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // repeated .opencv_onnx.AttributeProto attribute = 5; case 5: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 42)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_attribute(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<42>(ptr)); } else goto handle_unusual; continue; // optional string doc_string = 6; case 6: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 50)) { auto str = _internal_mutable_doc_string(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // optional string domain = 7; case 7: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 58)) { auto str = _internal_mutable_domain(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // optional string overload = 8; case 8: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 66)) { auto str = _internal_mutable_overload(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // repeated .opencv_onnx.StringStringEntryProto metadata_props = 9; case 9: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 74)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_metadata_props(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<74>(ptr)); } else goto handle_unusual; continue; // repeated .opencv_onnx.NodeDeviceConfigurationProto device_configurations = 10; case 10: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 82)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_device_configurations(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<82>(ptr)); } else goto handle_unusual; continue; default: goto handle_unusual; } // switch handle_unusual: if ((tag == 0) || ((tag & 7) == 4)) { CHK_(ptr); ctx->SetLastTag(tag); goto message_done; } ptr = UnknownFieldParse( tag, _internal_metadata_.mutable_unknown_fields(), ptr, ctx); CHK_(ptr != nullptr); } // while message_done: _has_bits_.Or(has_bits); return ptr; failure: ptr = nullptr; goto message_done; #undef CHK_ } uint8_t* NodeProto::_InternalSerialize( uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const { // @@protoc_insertion_point(serialize_to_array_start:opencv_onnx.NodeProto) uint32_t cached_has_bits = 0; (void) cached_has_bits; // repeated string input = 1; for (int i = 0, n = this->_internal_input_size(); i < n; i++) { const auto& s = this->_internal_input(i); target = stream->WriteString(1, s, target); } // repeated string output = 2; for (int i = 0, n = this->_internal_output_size(); i < n; i++) { const auto& s = this->_internal_output(i); target = stream->WriteString(2, s, target); } cached_has_bits = _has_bits_[0]; // optional string name = 3; if (cached_has_bits & 0x00000001u) { target = stream->WriteStringMaybeAliased( 3, this->_internal_name(), target); } // optional string op_type = 4; if (cached_has_bits & 0x00000002u) { target = stream->WriteStringMaybeAliased( 4, this->_internal_op_type(), target); } // repeated .opencv_onnx.AttributeProto attribute = 5; for (unsigned int i = 0, n = static_cast(this->_internal_attribute_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(5, this->_internal_attribute(i), target, stream); } // optional string doc_string = 6; if (cached_has_bits & 0x00000004u) { target = stream->WriteStringMaybeAliased( 6, this->_internal_doc_string(), target); } // optional string domain = 7; if (cached_has_bits & 0x00000008u) { target = stream->WriteStringMaybeAliased( 7, this->_internal_domain(), target); } // optional string overload = 8; if (cached_has_bits & 0x00000010u) { target = stream->WriteStringMaybeAliased( 8, this->_internal_overload(), target); } // repeated .opencv_onnx.StringStringEntryProto metadata_props = 9; for (unsigned int i = 0, n = static_cast(this->_internal_metadata_props_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(9, this->_internal_metadata_props(i), target, stream); } // repeated .opencv_onnx.NodeDeviceConfigurationProto device_configurations = 10; for (unsigned int i = 0, n = static_cast(this->_internal_device_configurations_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(10, this->_internal_device_configurations(i), target, stream); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { target = stream->WriteRaw(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(), static_cast(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target); } // @@protoc_insertion_point(serialize_to_array_end:opencv_onnx.NodeProto) return target; } size_t NodeProto::ByteSizeLong() const { // @@protoc_insertion_point(message_byte_size_start:opencv_onnx.NodeProto) size_t total_size = 0; uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; // repeated string input = 1; total_size += 1 * ::PROTOBUF_NAMESPACE_ID::internal::FromIntSize(input_.size()); for (int i = 0, n = input_.size(); i < n; i++) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( input_.Get(i)); } // repeated string output = 2; total_size += 1 * ::PROTOBUF_NAMESPACE_ID::internal::FromIntSize(output_.size()); for (int i = 0, n = output_.size(); i < n; i++) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( output_.Get(i)); } // repeated .opencv_onnx.AttributeProto attribute = 5; total_size += 1UL * this->_internal_attribute_size(); for (const auto& msg : this->attribute_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } // repeated .opencv_onnx.StringStringEntryProto metadata_props = 9; total_size += 1UL * this->_internal_metadata_props_size(); for (const auto& msg : this->metadata_props_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } // repeated .opencv_onnx.NodeDeviceConfigurationProto device_configurations = 10; total_size += 1UL * this->_internal_device_configurations_size(); for (const auto& msg : this->device_configurations_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x0000001fu) { // optional string name = 3; if (cached_has_bits & 0x00000001u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_name()); } // optional string op_type = 4; if (cached_has_bits & 0x00000002u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_op_type()); } // optional string doc_string = 6; if (cached_has_bits & 0x00000004u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_doc_string()); } // optional string domain = 7; if (cached_has_bits & 0x00000008u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_domain()); } // optional string overload = 8; if (cached_has_bits & 0x00000010u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_overload()); } } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { total_size += _internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size(); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size); SetCachedSize(cached_size); return total_size; } void NodeProto::CheckTypeAndMergeFrom( const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) { MergeFrom(*::PROTOBUF_NAMESPACE_ID::internal::DownCast( &from)); } void NodeProto::MergeFrom(const NodeProto& from) { // @@protoc_insertion_point(class_specific_merge_from_start:opencv_onnx.NodeProto) GOOGLE_DCHECK_NE(&from, this); uint32_t cached_has_bits = 0; (void) cached_has_bits; input_.MergeFrom(from.input_); output_.MergeFrom(from.output_); attribute_.MergeFrom(from.attribute_); metadata_props_.MergeFrom(from.metadata_props_); device_configurations_.MergeFrom(from.device_configurations_); cached_has_bits = from._has_bits_[0]; if (cached_has_bits & 0x0000001fu) { if (cached_has_bits & 0x00000001u) { _internal_set_name(from._internal_name()); } if (cached_has_bits & 0x00000002u) { _internal_set_op_type(from._internal_op_type()); } if (cached_has_bits & 0x00000004u) { _internal_set_doc_string(from._internal_doc_string()); } if (cached_has_bits & 0x00000008u) { _internal_set_domain(from._internal_domain()); } if (cached_has_bits & 0x00000010u) { _internal_set_overload(from._internal_overload()); } } _internal_metadata_.MergeFrom(from._internal_metadata_); } void NodeProto::CopyFrom(const NodeProto& from) { // @@protoc_insertion_point(class_specific_copy_from_start:opencv_onnx.NodeProto) if (&from == this) return; Clear(); MergeFrom(from); } bool NodeProto::IsInitialized() const { return true; } void NodeProto::InternalSwap(NodeProto* other) { using std::swap; auto* lhs_arena = GetArenaForAllocation(); auto* rhs_arena = other->GetArenaForAllocation(); _internal_metadata_.InternalSwap(&other->_internal_metadata_); swap(_has_bits_[0], other->_has_bits_[0]); input_.InternalSwap(&other->input_); output_.InternalSwap(&other->output_); attribute_.InternalSwap(&other->attribute_); metadata_props_.InternalSwap(&other->metadata_props_); device_configurations_.InternalSwap(&other->device_configurations_); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &name_, lhs_arena, &other->name_, rhs_arena ); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &op_type_, lhs_arena, &other->op_type_, rhs_arena ); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &doc_string_, lhs_arena, &other->doc_string_, rhs_arena ); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &domain_, lhs_arena, &other->domain_, rhs_arena ); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &overload_, lhs_arena, &other->overload_, rhs_arena ); } std::string NodeProto::GetTypeName() const { return "opencv_onnx.NodeProto"; } // =================================================================== class IntIntListEntryProto::_Internal { public: using HasBits = decltype(std::declval()._has_bits_); static void set_has_key(HasBits* has_bits) { (*has_bits)[0] |= 1u; } }; IntIntListEntryProto::IntIntListEntryProto(::PROTOBUF_NAMESPACE_ID::Arena* arena, bool is_message_owned) : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena, is_message_owned), value_(arena) { SharedCtor(); if (!is_message_owned) { RegisterArenaDtor(arena); } // @@protoc_insertion_point(arena_constructor:opencv_onnx.IntIntListEntryProto) } IntIntListEntryProto::IntIntListEntryProto(const IntIntListEntryProto& from) : ::PROTOBUF_NAMESPACE_ID::MessageLite(), _has_bits_(from._has_bits_), value_(from.value_) { _internal_metadata_.MergeFrom(from._internal_metadata_); key_ = from.key_; // @@protoc_insertion_point(copy_constructor:opencv_onnx.IntIntListEntryProto) } inline void IntIntListEntryProto::SharedCtor() { key_ = int64_t{0}; } IntIntListEntryProto::~IntIntListEntryProto() { // @@protoc_insertion_point(destructor:opencv_onnx.IntIntListEntryProto) if (GetArenaForAllocation() != nullptr) return; SharedDtor(); _internal_metadata_.Delete(); } inline void IntIntListEntryProto::SharedDtor() { GOOGLE_DCHECK(GetArenaForAllocation() == nullptr); } void IntIntListEntryProto::ArenaDtor(void* object) { IntIntListEntryProto* _this = reinterpret_cast< IntIntListEntryProto* >(object); (void)_this; } void IntIntListEntryProto::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) { } void IntIntListEntryProto::SetCachedSize(int size) const { _cached_size_.Set(size); } void IntIntListEntryProto::Clear() { // @@protoc_insertion_point(message_clear_start:opencv_onnx.IntIntListEntryProto) uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; value_.Clear(); key_ = int64_t{0}; _has_bits_.Clear(); _internal_metadata_.Clear(); } const char* IntIntListEntryProto::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) { #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure _Internal::HasBits has_bits{}; while (!ctx->Done(&ptr)) { uint32_t tag; ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag); switch (tag >> 3) { // optional int64 key = 1; case 1: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 8)) { _Internal::set_has_key(&has_bits); key_ = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr); CHK_(ptr); } else goto handle_unusual; continue; // repeated int64 value = 2; case 2: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 16)) { ptr -= 1; do { ptr += 1; _internal_add_value(::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr)); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<16>(ptr)); } else if (static_cast(tag) == 18) { ptr = ::PROTOBUF_NAMESPACE_ID::internal::PackedInt64Parser(_internal_mutable_value(), ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; default: goto handle_unusual; } // switch handle_unusual: if ((tag == 0) || ((tag & 7) == 4)) { CHK_(ptr); ctx->SetLastTag(tag); goto message_done; } ptr = UnknownFieldParse( tag, _internal_metadata_.mutable_unknown_fields(), ptr, ctx); CHK_(ptr != nullptr); } // while message_done: _has_bits_.Or(has_bits); return ptr; failure: ptr = nullptr; goto message_done; #undef CHK_ } uint8_t* IntIntListEntryProto::_InternalSerialize( uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const { // @@protoc_insertion_point(serialize_to_array_start:opencv_onnx.IntIntListEntryProto) uint32_t cached_has_bits = 0; (void) cached_has_bits; cached_has_bits = _has_bits_[0]; // optional int64 key = 1; if (cached_has_bits & 0x00000001u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt64ToArray(1, this->_internal_key(), target); } // repeated int64 value = 2; for (int i = 0, n = this->_internal_value_size(); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt64ToArray(2, this->_internal_value(i), target); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { target = stream->WriteRaw(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(), static_cast(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target); } // @@protoc_insertion_point(serialize_to_array_end:opencv_onnx.IntIntListEntryProto) return target; } size_t IntIntListEntryProto::ByteSizeLong() const { // @@protoc_insertion_point(message_byte_size_start:opencv_onnx.IntIntListEntryProto) size_t total_size = 0; uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; // repeated int64 value = 2; { size_t data_size = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: Int64Size(this->value_); total_size += 1 * ::PROTOBUF_NAMESPACE_ID::internal::FromIntSize(this->_internal_value_size()); total_size += data_size; } // optional int64 key = 1; cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000001u) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int64SizePlusOne(this->_internal_key()); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { total_size += _internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size(); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size); SetCachedSize(cached_size); return total_size; } void IntIntListEntryProto::CheckTypeAndMergeFrom( const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) { MergeFrom(*::PROTOBUF_NAMESPACE_ID::internal::DownCast( &from)); } void IntIntListEntryProto::MergeFrom(const IntIntListEntryProto& from) { // @@protoc_insertion_point(class_specific_merge_from_start:opencv_onnx.IntIntListEntryProto) GOOGLE_DCHECK_NE(&from, this); uint32_t cached_has_bits = 0; (void) cached_has_bits; value_.MergeFrom(from.value_); if (from._internal_has_key()) { _internal_set_key(from._internal_key()); } _internal_metadata_.MergeFrom(from._internal_metadata_); } void IntIntListEntryProto::CopyFrom(const IntIntListEntryProto& from) { // @@protoc_insertion_point(class_specific_copy_from_start:opencv_onnx.IntIntListEntryProto) if (&from == this) return; Clear(); MergeFrom(from); } bool IntIntListEntryProto::IsInitialized() const { return true; } void IntIntListEntryProto::InternalSwap(IntIntListEntryProto* other) { using std::swap; _internal_metadata_.InternalSwap(&other->_internal_metadata_); swap(_has_bits_[0], other->_has_bits_[0]); value_.InternalSwap(&other->value_); swap(key_, other->key_); } std::string IntIntListEntryProto::GetTypeName() const { return "opencv_onnx.IntIntListEntryProto"; } // =================================================================== class NodeDeviceConfigurationProto::_Internal { public: using HasBits = decltype(std::declval()._has_bits_); static void set_has_configuration_id(HasBits* has_bits) { (*has_bits)[0] |= 1u; } static void set_has_pipeline_stage(HasBits* has_bits) { (*has_bits)[0] |= 2u; } }; NodeDeviceConfigurationProto::NodeDeviceConfigurationProto(::PROTOBUF_NAMESPACE_ID::Arena* arena, bool is_message_owned) : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena, is_message_owned), sharding_spec_(arena) { SharedCtor(); if (!is_message_owned) { RegisterArenaDtor(arena); } // @@protoc_insertion_point(arena_constructor:opencv_onnx.NodeDeviceConfigurationProto) } NodeDeviceConfigurationProto::NodeDeviceConfigurationProto(const NodeDeviceConfigurationProto& from) : ::PROTOBUF_NAMESPACE_ID::MessageLite(), _has_bits_(from._has_bits_), sharding_spec_(from.sharding_spec_) { _internal_metadata_.MergeFrom(from._internal_metadata_); configuration_id_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING configuration_id_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_configuration_id()) { configuration_id_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_configuration_id(), GetArenaForAllocation()); } pipeline_stage_ = from.pipeline_stage_; // @@protoc_insertion_point(copy_constructor:opencv_onnx.NodeDeviceConfigurationProto) } inline void NodeDeviceConfigurationProto::SharedCtor() { configuration_id_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING configuration_id_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING pipeline_stage_ = 0; } NodeDeviceConfigurationProto::~NodeDeviceConfigurationProto() { // @@protoc_insertion_point(destructor:opencv_onnx.NodeDeviceConfigurationProto) if (GetArenaForAllocation() != nullptr) return; SharedDtor(); _internal_metadata_.Delete(); } inline void NodeDeviceConfigurationProto::SharedDtor() { GOOGLE_DCHECK(GetArenaForAllocation() == nullptr); configuration_id_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); } void NodeDeviceConfigurationProto::ArenaDtor(void* object) { NodeDeviceConfigurationProto* _this = reinterpret_cast< NodeDeviceConfigurationProto* >(object); (void)_this; } void NodeDeviceConfigurationProto::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) { } void NodeDeviceConfigurationProto::SetCachedSize(int size) const { _cached_size_.Set(size); } void NodeDeviceConfigurationProto::Clear() { // @@protoc_insertion_point(message_clear_start:opencv_onnx.NodeDeviceConfigurationProto) uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; sharding_spec_.Clear(); cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000001u) { configuration_id_.ClearNonDefaultToEmpty(); } pipeline_stage_ = 0; _has_bits_.Clear(); _internal_metadata_.Clear(); } const char* NodeDeviceConfigurationProto::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) { #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure _Internal::HasBits has_bits{}; while (!ctx->Done(&ptr)) { uint32_t tag; ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag); switch (tag >> 3) { // optional string configuration_id = 1; case 1: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 10)) { auto str = _internal_mutable_configuration_id(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // repeated .opencv_onnx.ShardingSpecProto sharding_spec = 2; case 2: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 18)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_sharding_spec(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<18>(ptr)); } else goto handle_unusual; continue; // optional int32 pipeline_stage = 3; case 3: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 24)) { _Internal::set_has_pipeline_stage(&has_bits); pipeline_stage_ = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint32(&ptr); CHK_(ptr); } else goto handle_unusual; continue; default: goto handle_unusual; } // switch handle_unusual: if ((tag == 0) || ((tag & 7) == 4)) { CHK_(ptr); ctx->SetLastTag(tag); goto message_done; } ptr = UnknownFieldParse( tag, _internal_metadata_.mutable_unknown_fields(), ptr, ctx); CHK_(ptr != nullptr); } // while message_done: _has_bits_.Or(has_bits); return ptr; failure: ptr = nullptr; goto message_done; #undef CHK_ } uint8_t* NodeDeviceConfigurationProto::_InternalSerialize( uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const { // @@protoc_insertion_point(serialize_to_array_start:opencv_onnx.NodeDeviceConfigurationProto) uint32_t cached_has_bits = 0; (void) cached_has_bits; cached_has_bits = _has_bits_[0]; // optional string configuration_id = 1; if (cached_has_bits & 0x00000001u) { target = stream->WriteStringMaybeAliased( 1, this->_internal_configuration_id(), target); } // repeated .opencv_onnx.ShardingSpecProto sharding_spec = 2; for (unsigned int i = 0, n = static_cast(this->_internal_sharding_spec_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(2, this->_internal_sharding_spec(i), target, stream); } // optional int32 pipeline_stage = 3; if (cached_has_bits & 0x00000002u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt32ToArray(3, this->_internal_pipeline_stage(), target); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { target = stream->WriteRaw(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(), static_cast(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target); } // @@protoc_insertion_point(serialize_to_array_end:opencv_onnx.NodeDeviceConfigurationProto) return target; } size_t NodeDeviceConfigurationProto::ByteSizeLong() const { // @@protoc_insertion_point(message_byte_size_start:opencv_onnx.NodeDeviceConfigurationProto) size_t total_size = 0; uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; // repeated .opencv_onnx.ShardingSpecProto sharding_spec = 2; total_size += 1UL * this->_internal_sharding_spec_size(); for (const auto& msg : this->sharding_spec_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000003u) { // optional string configuration_id = 1; if (cached_has_bits & 0x00000001u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_configuration_id()); } // optional int32 pipeline_stage = 3; if (cached_has_bits & 0x00000002u) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int32SizePlusOne(this->_internal_pipeline_stage()); } } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { total_size += _internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size(); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size); SetCachedSize(cached_size); return total_size; } void NodeDeviceConfigurationProto::CheckTypeAndMergeFrom( const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) { MergeFrom(*::PROTOBUF_NAMESPACE_ID::internal::DownCast( &from)); } void NodeDeviceConfigurationProto::MergeFrom(const NodeDeviceConfigurationProto& from) { // @@protoc_insertion_point(class_specific_merge_from_start:opencv_onnx.NodeDeviceConfigurationProto) GOOGLE_DCHECK_NE(&from, this); uint32_t cached_has_bits = 0; (void) cached_has_bits; sharding_spec_.MergeFrom(from.sharding_spec_); cached_has_bits = from._has_bits_[0]; if (cached_has_bits & 0x00000003u) { if (cached_has_bits & 0x00000001u) { _internal_set_configuration_id(from._internal_configuration_id()); } if (cached_has_bits & 0x00000002u) { pipeline_stage_ = from.pipeline_stage_; } _has_bits_[0] |= cached_has_bits; } _internal_metadata_.MergeFrom(from._internal_metadata_); } void NodeDeviceConfigurationProto::CopyFrom(const NodeDeviceConfigurationProto& from) { // @@protoc_insertion_point(class_specific_copy_from_start:opencv_onnx.NodeDeviceConfigurationProto) if (&from == this) return; Clear(); MergeFrom(from); } bool NodeDeviceConfigurationProto::IsInitialized() const { return true; } void NodeDeviceConfigurationProto::InternalSwap(NodeDeviceConfigurationProto* other) { using std::swap; auto* lhs_arena = GetArenaForAllocation(); auto* rhs_arena = other->GetArenaForAllocation(); _internal_metadata_.InternalSwap(&other->_internal_metadata_); swap(_has_bits_[0], other->_has_bits_[0]); sharding_spec_.InternalSwap(&other->sharding_spec_); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &configuration_id_, lhs_arena, &other->configuration_id_, rhs_arena ); swap(pipeline_stage_, other->pipeline_stage_); } std::string NodeDeviceConfigurationProto::GetTypeName() const { return "opencv_onnx.NodeDeviceConfigurationProto"; } // =================================================================== class ShardingSpecProto::_Internal { public: using HasBits = decltype(std::declval()._has_bits_); static void set_has_tensor_name(HasBits* has_bits) { (*has_bits)[0] |= 1u; } }; ShardingSpecProto::ShardingSpecProto(::PROTOBUF_NAMESPACE_ID::Arena* arena, bool is_message_owned) : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena, is_message_owned), device_(arena), index_to_device_group_map_(arena), sharded_dim_(arena) { SharedCtor(); if (!is_message_owned) { RegisterArenaDtor(arena); } // @@protoc_insertion_point(arena_constructor:opencv_onnx.ShardingSpecProto) } ShardingSpecProto::ShardingSpecProto(const ShardingSpecProto& from) : ::PROTOBUF_NAMESPACE_ID::MessageLite(), _has_bits_(from._has_bits_), device_(from.device_), index_to_device_group_map_(from.index_to_device_group_map_), sharded_dim_(from.sharded_dim_) { _internal_metadata_.MergeFrom(from._internal_metadata_); tensor_name_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING tensor_name_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_tensor_name()) { tensor_name_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_tensor_name(), GetArenaForAllocation()); } // @@protoc_insertion_point(copy_constructor:opencv_onnx.ShardingSpecProto) } inline void ShardingSpecProto::SharedCtor() { tensor_name_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING tensor_name_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING } ShardingSpecProto::~ShardingSpecProto() { // @@protoc_insertion_point(destructor:opencv_onnx.ShardingSpecProto) if (GetArenaForAllocation() != nullptr) return; SharedDtor(); _internal_metadata_.Delete(); } inline void ShardingSpecProto::SharedDtor() { GOOGLE_DCHECK(GetArenaForAllocation() == nullptr); tensor_name_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); } void ShardingSpecProto::ArenaDtor(void* object) { ShardingSpecProto* _this = reinterpret_cast< ShardingSpecProto* >(object); (void)_this; } void ShardingSpecProto::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) { } void ShardingSpecProto::SetCachedSize(int size) const { _cached_size_.Set(size); } void ShardingSpecProto::Clear() { // @@protoc_insertion_point(message_clear_start:opencv_onnx.ShardingSpecProto) uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; device_.Clear(); index_to_device_group_map_.Clear(); sharded_dim_.Clear(); cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000001u) { tensor_name_.ClearNonDefaultToEmpty(); } _has_bits_.Clear(); _internal_metadata_.Clear(); } const char* ShardingSpecProto::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) { #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure _Internal::HasBits has_bits{}; while (!ctx->Done(&ptr)) { uint32_t tag; ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag); switch (tag >> 3) { // optional string tensor_name = 1; case 1: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 10)) { auto str = _internal_mutable_tensor_name(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // repeated int64 device = 2; case 2: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 16)) { ptr -= 1; do { ptr += 1; _internal_add_device(::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr)); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<16>(ptr)); } else if (static_cast(tag) == 18) { ptr = ::PROTOBUF_NAMESPACE_ID::internal::PackedInt64Parser(_internal_mutable_device(), ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // repeated .opencv_onnx.IntIntListEntryProto index_to_device_group_map = 3; case 3: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 26)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_index_to_device_group_map(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<26>(ptr)); } else goto handle_unusual; continue; // repeated .opencv_onnx.ShardedDimProto sharded_dim = 4; case 4: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 34)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_sharded_dim(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<34>(ptr)); } else goto handle_unusual; continue; default: goto handle_unusual; } // switch handle_unusual: if ((tag == 0) || ((tag & 7) == 4)) { CHK_(ptr); ctx->SetLastTag(tag); goto message_done; } ptr = UnknownFieldParse( tag, _internal_metadata_.mutable_unknown_fields(), ptr, ctx); CHK_(ptr != nullptr); } // while message_done: _has_bits_.Or(has_bits); return ptr; failure: ptr = nullptr; goto message_done; #undef CHK_ } uint8_t* ShardingSpecProto::_InternalSerialize( uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const { // @@protoc_insertion_point(serialize_to_array_start:opencv_onnx.ShardingSpecProto) uint32_t cached_has_bits = 0; (void) cached_has_bits; cached_has_bits = _has_bits_[0]; // optional string tensor_name = 1; if (cached_has_bits & 0x00000001u) { target = stream->WriteStringMaybeAliased( 1, this->_internal_tensor_name(), target); } // repeated int64 device = 2; for (int i = 0, n = this->_internal_device_size(); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt64ToArray(2, this->_internal_device(i), target); } // repeated .opencv_onnx.IntIntListEntryProto index_to_device_group_map = 3; for (unsigned int i = 0, n = static_cast(this->_internal_index_to_device_group_map_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(3, this->_internal_index_to_device_group_map(i), target, stream); } // repeated .opencv_onnx.ShardedDimProto sharded_dim = 4; for (unsigned int i = 0, n = static_cast(this->_internal_sharded_dim_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(4, this->_internal_sharded_dim(i), target, stream); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { target = stream->WriteRaw(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(), static_cast(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target); } // @@protoc_insertion_point(serialize_to_array_end:opencv_onnx.ShardingSpecProto) return target; } size_t ShardingSpecProto::ByteSizeLong() const { // @@protoc_insertion_point(message_byte_size_start:opencv_onnx.ShardingSpecProto) size_t total_size = 0; uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; // repeated int64 device = 2; { size_t data_size = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: Int64Size(this->device_); total_size += 1 * ::PROTOBUF_NAMESPACE_ID::internal::FromIntSize(this->_internal_device_size()); total_size += data_size; } // repeated .opencv_onnx.IntIntListEntryProto index_to_device_group_map = 3; total_size += 1UL * this->_internal_index_to_device_group_map_size(); for (const auto& msg : this->index_to_device_group_map_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } // repeated .opencv_onnx.ShardedDimProto sharded_dim = 4; total_size += 1UL * this->_internal_sharded_dim_size(); for (const auto& msg : this->sharded_dim_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } // optional string tensor_name = 1; cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000001u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_tensor_name()); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { total_size += _internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size(); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size); SetCachedSize(cached_size); return total_size; } void ShardingSpecProto::CheckTypeAndMergeFrom( const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) { MergeFrom(*::PROTOBUF_NAMESPACE_ID::internal::DownCast( &from)); } void ShardingSpecProto::MergeFrom(const ShardingSpecProto& from) { // @@protoc_insertion_point(class_specific_merge_from_start:opencv_onnx.ShardingSpecProto) GOOGLE_DCHECK_NE(&from, this); uint32_t cached_has_bits = 0; (void) cached_has_bits; device_.MergeFrom(from.device_); index_to_device_group_map_.MergeFrom(from.index_to_device_group_map_); sharded_dim_.MergeFrom(from.sharded_dim_); if (from._internal_has_tensor_name()) { _internal_set_tensor_name(from._internal_tensor_name()); } _internal_metadata_.MergeFrom(from._internal_metadata_); } void ShardingSpecProto::CopyFrom(const ShardingSpecProto& from) { // @@protoc_insertion_point(class_specific_copy_from_start:opencv_onnx.ShardingSpecProto) if (&from == this) return; Clear(); MergeFrom(from); } bool ShardingSpecProto::IsInitialized() const { return true; } void ShardingSpecProto::InternalSwap(ShardingSpecProto* other) { using std::swap; auto* lhs_arena = GetArenaForAllocation(); auto* rhs_arena = other->GetArenaForAllocation(); _internal_metadata_.InternalSwap(&other->_internal_metadata_); swap(_has_bits_[0], other->_has_bits_[0]); device_.InternalSwap(&other->device_); index_to_device_group_map_.InternalSwap(&other->index_to_device_group_map_); sharded_dim_.InternalSwap(&other->sharded_dim_); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &tensor_name_, lhs_arena, &other->tensor_name_, rhs_arena ); } std::string ShardingSpecProto::GetTypeName() const { return "opencv_onnx.ShardingSpecProto"; } // =================================================================== class ShardedDimProto::_Internal { public: using HasBits = decltype(std::declval()._has_bits_); static void set_has_axis(HasBits* has_bits) { (*has_bits)[0] |= 1u; } }; ShardedDimProto::ShardedDimProto(::PROTOBUF_NAMESPACE_ID::Arena* arena, bool is_message_owned) : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena, is_message_owned), simple_sharding_(arena) { SharedCtor(); if (!is_message_owned) { RegisterArenaDtor(arena); } // @@protoc_insertion_point(arena_constructor:opencv_onnx.ShardedDimProto) } ShardedDimProto::ShardedDimProto(const ShardedDimProto& from) : ::PROTOBUF_NAMESPACE_ID::MessageLite(), _has_bits_(from._has_bits_), simple_sharding_(from.simple_sharding_) { _internal_metadata_.MergeFrom(from._internal_metadata_); axis_ = from.axis_; // @@protoc_insertion_point(copy_constructor:opencv_onnx.ShardedDimProto) } inline void ShardedDimProto::SharedCtor() { axis_ = int64_t{0}; } ShardedDimProto::~ShardedDimProto() { // @@protoc_insertion_point(destructor:opencv_onnx.ShardedDimProto) if (GetArenaForAllocation() != nullptr) return; SharedDtor(); _internal_metadata_.Delete(); } inline void ShardedDimProto::SharedDtor() { GOOGLE_DCHECK(GetArenaForAllocation() == nullptr); } void ShardedDimProto::ArenaDtor(void* object) { ShardedDimProto* _this = reinterpret_cast< ShardedDimProto* >(object); (void)_this; } void ShardedDimProto::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) { } void ShardedDimProto::SetCachedSize(int size) const { _cached_size_.Set(size); } void ShardedDimProto::Clear() { // @@protoc_insertion_point(message_clear_start:opencv_onnx.ShardedDimProto) uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; simple_sharding_.Clear(); axis_ = int64_t{0}; _has_bits_.Clear(); _internal_metadata_.Clear(); } const char* ShardedDimProto::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) { #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure _Internal::HasBits has_bits{}; while (!ctx->Done(&ptr)) { uint32_t tag; ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag); switch (tag >> 3) { // optional int64 axis = 1; case 1: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 8)) { _Internal::set_has_axis(&has_bits); axis_ = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr); CHK_(ptr); } else goto handle_unusual; continue; // repeated .opencv_onnx.SimpleShardedDimProto simple_sharding = 2; case 2: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 18)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_simple_sharding(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<18>(ptr)); } else goto handle_unusual; continue; default: goto handle_unusual; } // switch handle_unusual: if ((tag == 0) || ((tag & 7) == 4)) { CHK_(ptr); ctx->SetLastTag(tag); goto message_done; } ptr = UnknownFieldParse( tag, _internal_metadata_.mutable_unknown_fields(), ptr, ctx); CHK_(ptr != nullptr); } // while message_done: _has_bits_.Or(has_bits); return ptr; failure: ptr = nullptr; goto message_done; #undef CHK_ } uint8_t* ShardedDimProto::_InternalSerialize( uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const { // @@protoc_insertion_point(serialize_to_array_start:opencv_onnx.ShardedDimProto) uint32_t cached_has_bits = 0; (void) cached_has_bits; cached_has_bits = _has_bits_[0]; // optional int64 axis = 1; if (cached_has_bits & 0x00000001u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt64ToArray(1, this->_internal_axis(), target); } // repeated .opencv_onnx.SimpleShardedDimProto simple_sharding = 2; for (unsigned int i = 0, n = static_cast(this->_internal_simple_sharding_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(2, this->_internal_simple_sharding(i), target, stream); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { target = stream->WriteRaw(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(), static_cast(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target); } // @@protoc_insertion_point(serialize_to_array_end:opencv_onnx.ShardedDimProto) return target; } size_t ShardedDimProto::ByteSizeLong() const { // @@protoc_insertion_point(message_byte_size_start:opencv_onnx.ShardedDimProto) size_t total_size = 0; uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; // repeated .opencv_onnx.SimpleShardedDimProto simple_sharding = 2; total_size += 1UL * this->_internal_simple_sharding_size(); for (const auto& msg : this->simple_sharding_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } // optional int64 axis = 1; cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000001u) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int64SizePlusOne(this->_internal_axis()); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { total_size += _internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size(); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size); SetCachedSize(cached_size); return total_size; } void ShardedDimProto::CheckTypeAndMergeFrom( const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) { MergeFrom(*::PROTOBUF_NAMESPACE_ID::internal::DownCast( &from)); } void ShardedDimProto::MergeFrom(const ShardedDimProto& from) { // @@protoc_insertion_point(class_specific_merge_from_start:opencv_onnx.ShardedDimProto) GOOGLE_DCHECK_NE(&from, this); uint32_t cached_has_bits = 0; (void) cached_has_bits; simple_sharding_.MergeFrom(from.simple_sharding_); if (from._internal_has_axis()) { _internal_set_axis(from._internal_axis()); } _internal_metadata_.MergeFrom(from._internal_metadata_); } void ShardedDimProto::CopyFrom(const ShardedDimProto& from) { // @@protoc_insertion_point(class_specific_copy_from_start:opencv_onnx.ShardedDimProto) if (&from == this) return; Clear(); MergeFrom(from); } bool ShardedDimProto::IsInitialized() const { return true; } void ShardedDimProto::InternalSwap(ShardedDimProto* other) { using std::swap; _internal_metadata_.InternalSwap(&other->_internal_metadata_); swap(_has_bits_[0], other->_has_bits_[0]); simple_sharding_.InternalSwap(&other->simple_sharding_); swap(axis_, other->axis_); } std::string ShardedDimProto::GetTypeName() const { return "opencv_onnx.ShardedDimProto"; } // =================================================================== class SimpleShardedDimProto::_Internal { public: using HasBits = decltype(std::declval()._has_bits_); static void set_has_num_shards(HasBits* has_bits) { (*has_bits)[0] |= 1u; } }; SimpleShardedDimProto::SimpleShardedDimProto(::PROTOBUF_NAMESPACE_ID::Arena* arena, bool is_message_owned) : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena, is_message_owned) { SharedCtor(); if (!is_message_owned) { RegisterArenaDtor(arena); } // @@protoc_insertion_point(arena_constructor:opencv_onnx.SimpleShardedDimProto) } SimpleShardedDimProto::SimpleShardedDimProto(const SimpleShardedDimProto& from) : ::PROTOBUF_NAMESPACE_ID::MessageLite(), _has_bits_(from._has_bits_) { _internal_metadata_.MergeFrom(from._internal_metadata_); num_shards_ = from.num_shards_; clear_has_dim(); switch (from.dim_case()) { case kDimValue: { _internal_set_dim_value(from._internal_dim_value()); break; } case kDimParam: { _internal_set_dim_param(from._internal_dim_param()); break; } case DIM_NOT_SET: { break; } } // @@protoc_insertion_point(copy_constructor:opencv_onnx.SimpleShardedDimProto) } inline void SimpleShardedDimProto::SharedCtor() { num_shards_ = int64_t{0}; clear_has_dim(); } SimpleShardedDimProto::~SimpleShardedDimProto() { // @@protoc_insertion_point(destructor:opencv_onnx.SimpleShardedDimProto) if (GetArenaForAllocation() != nullptr) return; SharedDtor(); _internal_metadata_.Delete(); } inline void SimpleShardedDimProto::SharedDtor() { GOOGLE_DCHECK(GetArenaForAllocation() == nullptr); if (has_dim()) { clear_dim(); } } void SimpleShardedDimProto::ArenaDtor(void* object) { SimpleShardedDimProto* _this = reinterpret_cast< SimpleShardedDimProto* >(object); (void)_this; } void SimpleShardedDimProto::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) { } void SimpleShardedDimProto::SetCachedSize(int size) const { _cached_size_.Set(size); } void SimpleShardedDimProto::clear_dim() { // @@protoc_insertion_point(one_of_clear_start:opencv_onnx.SimpleShardedDimProto) switch (dim_case()) { case kDimValue: { // No need to clear break; } case kDimParam: { dim_.dim_param_.Destroy(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, GetArenaForAllocation()); break; } case DIM_NOT_SET: { break; } } _oneof_case_[0] = DIM_NOT_SET; } void SimpleShardedDimProto::Clear() { // @@protoc_insertion_point(message_clear_start:opencv_onnx.SimpleShardedDimProto) uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; num_shards_ = int64_t{0}; clear_dim(); _has_bits_.Clear(); _internal_metadata_.Clear(); } const char* SimpleShardedDimProto::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) { #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure _Internal::HasBits has_bits{}; while (!ctx->Done(&ptr)) { uint32_t tag; ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag); switch (tag >> 3) { // int64 dim_value = 1; case 1: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 8)) { _internal_set_dim_value(::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr)); CHK_(ptr); } else goto handle_unusual; continue; // string dim_param = 2; case 2: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 18)) { auto str = _internal_mutable_dim_param(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // optional int64 num_shards = 3; case 3: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 24)) { _Internal::set_has_num_shards(&has_bits); num_shards_ = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr); CHK_(ptr); } else goto handle_unusual; continue; default: goto handle_unusual; } // switch handle_unusual: if ((tag == 0) || ((tag & 7) == 4)) { CHK_(ptr); ctx->SetLastTag(tag); goto message_done; } ptr = UnknownFieldParse( tag, _internal_metadata_.mutable_unknown_fields(), ptr, ctx); CHK_(ptr != nullptr); } // while message_done: _has_bits_.Or(has_bits); return ptr; failure: ptr = nullptr; goto message_done; #undef CHK_ } uint8_t* SimpleShardedDimProto::_InternalSerialize( uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const { // @@protoc_insertion_point(serialize_to_array_start:opencv_onnx.SimpleShardedDimProto) uint32_t cached_has_bits = 0; (void) cached_has_bits; switch (dim_case()) { case kDimValue: { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt64ToArray(1, this->_internal_dim_value(), target); break; } case kDimParam: { target = stream->WriteStringMaybeAliased( 2, this->_internal_dim_param(), target); break; } default: ; } cached_has_bits = _has_bits_[0]; // optional int64 num_shards = 3; if (cached_has_bits & 0x00000001u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt64ToArray(3, this->_internal_num_shards(), target); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { target = stream->WriteRaw(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(), static_cast(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target); } // @@protoc_insertion_point(serialize_to_array_end:opencv_onnx.SimpleShardedDimProto) return target; } size_t SimpleShardedDimProto::ByteSizeLong() const { // @@protoc_insertion_point(message_byte_size_start:opencv_onnx.SimpleShardedDimProto) size_t total_size = 0; uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; // optional int64 num_shards = 3; cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000001u) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int64SizePlusOne(this->_internal_num_shards()); } switch (dim_case()) { // int64 dim_value = 1; case kDimValue: { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int64SizePlusOne(this->_internal_dim_value()); break; } // string dim_param = 2; case kDimParam: { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_dim_param()); break; } case DIM_NOT_SET: { break; } } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { total_size += _internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size(); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size); SetCachedSize(cached_size); return total_size; } void SimpleShardedDimProto::CheckTypeAndMergeFrom( const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) { MergeFrom(*::PROTOBUF_NAMESPACE_ID::internal::DownCast( &from)); } void SimpleShardedDimProto::MergeFrom(const SimpleShardedDimProto& from) { // @@protoc_insertion_point(class_specific_merge_from_start:opencv_onnx.SimpleShardedDimProto) GOOGLE_DCHECK_NE(&from, this); uint32_t cached_has_bits = 0; (void) cached_has_bits; if (from._internal_has_num_shards()) { _internal_set_num_shards(from._internal_num_shards()); } switch (from.dim_case()) { case kDimValue: { _internal_set_dim_value(from._internal_dim_value()); break; } case kDimParam: { _internal_set_dim_param(from._internal_dim_param()); break; } case DIM_NOT_SET: { break; } } _internal_metadata_.MergeFrom(from._internal_metadata_); } void SimpleShardedDimProto::CopyFrom(const SimpleShardedDimProto& from) { // @@protoc_insertion_point(class_specific_copy_from_start:opencv_onnx.SimpleShardedDimProto) if (&from == this) return; Clear(); MergeFrom(from); } bool SimpleShardedDimProto::IsInitialized() const { return true; } void SimpleShardedDimProto::InternalSwap(SimpleShardedDimProto* other) { using std::swap; _internal_metadata_.InternalSwap(&other->_internal_metadata_); swap(_has_bits_[0], other->_has_bits_[0]); swap(num_shards_, other->num_shards_); swap(dim_, other->dim_); swap(_oneof_case_[0], other->_oneof_case_[0]); } std::string SimpleShardedDimProto::GetTypeName() const { return "opencv_onnx.SimpleShardedDimProto"; } // =================================================================== class TrainingInfoProto::_Internal { public: using HasBits = decltype(std::declval()._has_bits_); static const ::opencv_onnx::GraphProto& initialization(const TrainingInfoProto* msg); static void set_has_initialization(HasBits* has_bits) { (*has_bits)[0] |= 1u; } static const ::opencv_onnx::GraphProto& algorithm(const TrainingInfoProto* msg); static void set_has_algorithm(HasBits* has_bits) { (*has_bits)[0] |= 2u; } }; const ::opencv_onnx::GraphProto& TrainingInfoProto::_Internal::initialization(const TrainingInfoProto* msg) { return *msg->initialization_; } const ::opencv_onnx::GraphProto& TrainingInfoProto::_Internal::algorithm(const TrainingInfoProto* msg) { return *msg->algorithm_; } TrainingInfoProto::TrainingInfoProto(::PROTOBUF_NAMESPACE_ID::Arena* arena, bool is_message_owned) : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena, is_message_owned), initialization_binding_(arena), update_binding_(arena) { SharedCtor(); if (!is_message_owned) { RegisterArenaDtor(arena); } // @@protoc_insertion_point(arena_constructor:opencv_onnx.TrainingInfoProto) } TrainingInfoProto::TrainingInfoProto(const TrainingInfoProto& from) : ::PROTOBUF_NAMESPACE_ID::MessageLite(), _has_bits_(from._has_bits_), initialization_binding_(from.initialization_binding_), update_binding_(from.update_binding_) { _internal_metadata_.MergeFrom(from._internal_metadata_); if (from._internal_has_initialization()) { initialization_ = new ::opencv_onnx::GraphProto(*from.initialization_); } else { initialization_ = nullptr; } if (from._internal_has_algorithm()) { algorithm_ = new ::opencv_onnx::GraphProto(*from.algorithm_); } else { algorithm_ = nullptr; } // @@protoc_insertion_point(copy_constructor:opencv_onnx.TrainingInfoProto) } inline void TrainingInfoProto::SharedCtor() { ::memset(reinterpret_cast(this) + static_cast( reinterpret_cast(&initialization_) - reinterpret_cast(this)), 0, static_cast(reinterpret_cast(&algorithm_) - reinterpret_cast(&initialization_)) + sizeof(algorithm_)); } TrainingInfoProto::~TrainingInfoProto() { // @@protoc_insertion_point(destructor:opencv_onnx.TrainingInfoProto) if (GetArenaForAllocation() != nullptr) return; SharedDtor(); _internal_metadata_.Delete(); } inline void TrainingInfoProto::SharedDtor() { GOOGLE_DCHECK(GetArenaForAllocation() == nullptr); if (this != internal_default_instance()) delete initialization_; if (this != internal_default_instance()) delete algorithm_; } void TrainingInfoProto::ArenaDtor(void* object) { TrainingInfoProto* _this = reinterpret_cast< TrainingInfoProto* >(object); (void)_this; } void TrainingInfoProto::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) { } void TrainingInfoProto::SetCachedSize(int size) const { _cached_size_.Set(size); } void TrainingInfoProto::Clear() { // @@protoc_insertion_point(message_clear_start:opencv_onnx.TrainingInfoProto) uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; initialization_binding_.Clear(); update_binding_.Clear(); cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000003u) { if (cached_has_bits & 0x00000001u) { GOOGLE_DCHECK(initialization_ != nullptr); initialization_->Clear(); } if (cached_has_bits & 0x00000002u) { GOOGLE_DCHECK(algorithm_ != nullptr); algorithm_->Clear(); } } _has_bits_.Clear(); _internal_metadata_.Clear(); } const char* TrainingInfoProto::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) { #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure _Internal::HasBits has_bits{}; while (!ctx->Done(&ptr)) { uint32_t tag; ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag); switch (tag >> 3) { // optional .opencv_onnx.GraphProto initialization = 1; case 1: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 10)) { ptr = ctx->ParseMessage(_internal_mutable_initialization(), ptr); CHK_(ptr); } else goto handle_unusual; continue; // optional .opencv_onnx.GraphProto algorithm = 2; case 2: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 18)) { ptr = ctx->ParseMessage(_internal_mutable_algorithm(), ptr); CHK_(ptr); } else goto handle_unusual; continue; // repeated .opencv_onnx.StringStringEntryProto initialization_binding = 3; case 3: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 26)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_initialization_binding(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<26>(ptr)); } else goto handle_unusual; continue; // repeated .opencv_onnx.StringStringEntryProto update_binding = 4; case 4: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 34)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_update_binding(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<34>(ptr)); } else goto handle_unusual; continue; default: goto handle_unusual; } // switch handle_unusual: if ((tag == 0) || ((tag & 7) == 4)) { CHK_(ptr); ctx->SetLastTag(tag); goto message_done; } ptr = UnknownFieldParse( tag, _internal_metadata_.mutable_unknown_fields(), ptr, ctx); CHK_(ptr != nullptr); } // while message_done: _has_bits_.Or(has_bits); return ptr; failure: ptr = nullptr; goto message_done; #undef CHK_ } uint8_t* TrainingInfoProto::_InternalSerialize( uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const { // @@protoc_insertion_point(serialize_to_array_start:opencv_onnx.TrainingInfoProto) uint32_t cached_has_bits = 0; (void) cached_has_bits; cached_has_bits = _has_bits_[0]; // optional .opencv_onnx.GraphProto initialization = 1; if (cached_has_bits & 0x00000001u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage( 1, _Internal::initialization(this), target, stream); } // optional .opencv_onnx.GraphProto algorithm = 2; if (cached_has_bits & 0x00000002u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage( 2, _Internal::algorithm(this), target, stream); } // repeated .opencv_onnx.StringStringEntryProto initialization_binding = 3; for (unsigned int i = 0, n = static_cast(this->_internal_initialization_binding_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(3, this->_internal_initialization_binding(i), target, stream); } // repeated .opencv_onnx.StringStringEntryProto update_binding = 4; for (unsigned int i = 0, n = static_cast(this->_internal_update_binding_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(4, this->_internal_update_binding(i), target, stream); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { target = stream->WriteRaw(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(), static_cast(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target); } // @@protoc_insertion_point(serialize_to_array_end:opencv_onnx.TrainingInfoProto) return target; } size_t TrainingInfoProto::ByteSizeLong() const { // @@protoc_insertion_point(message_byte_size_start:opencv_onnx.TrainingInfoProto) size_t total_size = 0; uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; // repeated .opencv_onnx.StringStringEntryProto initialization_binding = 3; total_size += 1UL * this->_internal_initialization_binding_size(); for (const auto& msg : this->initialization_binding_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } // repeated .opencv_onnx.StringStringEntryProto update_binding = 4; total_size += 1UL * this->_internal_update_binding_size(); for (const auto& msg : this->update_binding_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000003u) { // optional .opencv_onnx.GraphProto initialization = 1; if (cached_has_bits & 0x00000001u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize( *initialization_); } // optional .opencv_onnx.GraphProto algorithm = 2; if (cached_has_bits & 0x00000002u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize( *algorithm_); } } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { total_size += _internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size(); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size); SetCachedSize(cached_size); return total_size; } void TrainingInfoProto::CheckTypeAndMergeFrom( const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) { MergeFrom(*::PROTOBUF_NAMESPACE_ID::internal::DownCast( &from)); } void TrainingInfoProto::MergeFrom(const TrainingInfoProto& from) { // @@protoc_insertion_point(class_specific_merge_from_start:opencv_onnx.TrainingInfoProto) GOOGLE_DCHECK_NE(&from, this); uint32_t cached_has_bits = 0; (void) cached_has_bits; initialization_binding_.MergeFrom(from.initialization_binding_); update_binding_.MergeFrom(from.update_binding_); cached_has_bits = from._has_bits_[0]; if (cached_has_bits & 0x00000003u) { if (cached_has_bits & 0x00000001u) { _internal_mutable_initialization()->::opencv_onnx::GraphProto::MergeFrom(from._internal_initialization()); } if (cached_has_bits & 0x00000002u) { _internal_mutable_algorithm()->::opencv_onnx::GraphProto::MergeFrom(from._internal_algorithm()); } } _internal_metadata_.MergeFrom(from._internal_metadata_); } void TrainingInfoProto::CopyFrom(const TrainingInfoProto& from) { // @@protoc_insertion_point(class_specific_copy_from_start:opencv_onnx.TrainingInfoProto) if (&from == this) return; Clear(); MergeFrom(from); } bool TrainingInfoProto::IsInitialized() const { return true; } void TrainingInfoProto::InternalSwap(TrainingInfoProto* other) { using std::swap; _internal_metadata_.InternalSwap(&other->_internal_metadata_); swap(_has_bits_[0], other->_has_bits_[0]); initialization_binding_.InternalSwap(&other->initialization_binding_); update_binding_.InternalSwap(&other->update_binding_); ::PROTOBUF_NAMESPACE_ID::internal::memswap< PROTOBUF_FIELD_OFFSET(TrainingInfoProto, algorithm_) + sizeof(TrainingInfoProto::algorithm_) - PROTOBUF_FIELD_OFFSET(TrainingInfoProto, initialization_)>( reinterpret_cast(&initialization_), reinterpret_cast(&other->initialization_)); } std::string TrainingInfoProto::GetTypeName() const { return "opencv_onnx.TrainingInfoProto"; } // =================================================================== class ModelProto::_Internal { public: using HasBits = decltype(std::declval()._has_bits_); static void set_has_ir_version(HasBits* has_bits) { (*has_bits)[0] |= 32u; } static void set_has_producer_name(HasBits* has_bits) { (*has_bits)[0] |= 1u; } static void set_has_producer_version(HasBits* has_bits) { (*has_bits)[0] |= 2u; } static void set_has_domain(HasBits* has_bits) { (*has_bits)[0] |= 4u; } static void set_has_model_version(HasBits* has_bits) { (*has_bits)[0] |= 64u; } static void set_has_doc_string(HasBits* has_bits) { (*has_bits)[0] |= 8u; } static const ::opencv_onnx::GraphProto& graph(const ModelProto* msg); static void set_has_graph(HasBits* has_bits) { (*has_bits)[0] |= 16u; } }; const ::opencv_onnx::GraphProto& ModelProto::_Internal::graph(const ModelProto* msg) { return *msg->graph_; } ModelProto::ModelProto(::PROTOBUF_NAMESPACE_ID::Arena* arena, bool is_message_owned) : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena, is_message_owned), opset_import_(arena), metadata_props_(arena), training_info_(arena), functions_(arena), configuration_(arena) { SharedCtor(); if (!is_message_owned) { RegisterArenaDtor(arena); } // @@protoc_insertion_point(arena_constructor:opencv_onnx.ModelProto) } ModelProto::ModelProto(const ModelProto& from) : ::PROTOBUF_NAMESPACE_ID::MessageLite(), _has_bits_(from._has_bits_), opset_import_(from.opset_import_), metadata_props_(from.metadata_props_), training_info_(from.training_info_), functions_(from.functions_), configuration_(from.configuration_) { _internal_metadata_.MergeFrom(from._internal_metadata_); producer_name_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING producer_name_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_producer_name()) { producer_name_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_producer_name(), GetArenaForAllocation()); } producer_version_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING producer_version_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_producer_version()) { producer_version_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_producer_version(), GetArenaForAllocation()); } domain_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING domain_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_domain()) { domain_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_domain(), GetArenaForAllocation()); } doc_string_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING doc_string_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_doc_string()) { doc_string_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_doc_string(), GetArenaForAllocation()); } if (from._internal_has_graph()) { graph_ = new ::opencv_onnx::GraphProto(*from.graph_); } else { graph_ = nullptr; } ::memcpy(&ir_version_, &from.ir_version_, static_cast(reinterpret_cast(&model_version_) - reinterpret_cast(&ir_version_)) + sizeof(model_version_)); // @@protoc_insertion_point(copy_constructor:opencv_onnx.ModelProto) } inline void ModelProto::SharedCtor() { producer_name_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING producer_name_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING producer_version_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING producer_version_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING domain_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING domain_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING doc_string_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING doc_string_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING ::memset(reinterpret_cast(this) + static_cast( reinterpret_cast(&graph_) - reinterpret_cast(this)), 0, static_cast(reinterpret_cast(&model_version_) - reinterpret_cast(&graph_)) + sizeof(model_version_)); } ModelProto::~ModelProto() { // @@protoc_insertion_point(destructor:opencv_onnx.ModelProto) if (GetArenaForAllocation() != nullptr) return; SharedDtor(); _internal_metadata_.Delete(); } inline void ModelProto::SharedDtor() { GOOGLE_DCHECK(GetArenaForAllocation() == nullptr); producer_name_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); producer_version_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); domain_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); doc_string_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); if (this != internal_default_instance()) delete graph_; } void ModelProto::ArenaDtor(void* object) { ModelProto* _this = reinterpret_cast< ModelProto* >(object); (void)_this; } void ModelProto::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) { } void ModelProto::SetCachedSize(int size) const { _cached_size_.Set(size); } void ModelProto::Clear() { // @@protoc_insertion_point(message_clear_start:opencv_onnx.ModelProto) uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; opset_import_.Clear(); metadata_props_.Clear(); training_info_.Clear(); functions_.Clear(); configuration_.Clear(); cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x0000001fu) { if (cached_has_bits & 0x00000001u) { producer_name_.ClearNonDefaultToEmpty(); } if (cached_has_bits & 0x00000002u) { producer_version_.ClearNonDefaultToEmpty(); } if (cached_has_bits & 0x00000004u) { domain_.ClearNonDefaultToEmpty(); } if (cached_has_bits & 0x00000008u) { doc_string_.ClearNonDefaultToEmpty(); } if (cached_has_bits & 0x00000010u) { GOOGLE_DCHECK(graph_ != nullptr); graph_->Clear(); } } if (cached_has_bits & 0x00000060u) { ::memset(&ir_version_, 0, static_cast( reinterpret_cast(&model_version_) - reinterpret_cast(&ir_version_)) + sizeof(model_version_)); } _has_bits_.Clear(); _internal_metadata_.Clear(); } const char* ModelProto::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) { #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure _Internal::HasBits has_bits{}; while (!ctx->Done(&ptr)) { uint32_t tag; ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag); switch (tag >> 3) { // optional int64 ir_version = 1; case 1: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 8)) { _Internal::set_has_ir_version(&has_bits); ir_version_ = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr); CHK_(ptr); } else goto handle_unusual; continue; // optional string producer_name = 2; case 2: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 18)) { auto str = _internal_mutable_producer_name(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // optional string producer_version = 3; case 3: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 26)) { auto str = _internal_mutable_producer_version(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // optional string domain = 4; case 4: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 34)) { auto str = _internal_mutable_domain(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // optional int64 model_version = 5; case 5: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 40)) { _Internal::set_has_model_version(&has_bits); model_version_ = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr); CHK_(ptr); } else goto handle_unusual; continue; // optional string doc_string = 6; case 6: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 50)) { auto str = _internal_mutable_doc_string(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // optional .opencv_onnx.GraphProto graph = 7; case 7: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 58)) { ptr = ctx->ParseMessage(_internal_mutable_graph(), ptr); CHK_(ptr); } else goto handle_unusual; continue; // repeated .opencv_onnx.OperatorSetIdProto opset_import = 8; case 8: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 66)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_opset_import(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<66>(ptr)); } else goto handle_unusual; continue; // repeated .opencv_onnx.StringStringEntryProto metadata_props = 14; case 14: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 114)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_metadata_props(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<114>(ptr)); } else goto handle_unusual; continue; // repeated .opencv_onnx.TrainingInfoProto training_info = 20; case 20: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 162)) { ptr -= 2; do { ptr += 2; ptr = ctx->ParseMessage(_internal_add_training_info(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<162>(ptr)); } else goto handle_unusual; continue; // repeated .opencv_onnx.FunctionProto functions = 25; case 25: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 202)) { ptr -= 2; do { ptr += 2; ptr = ctx->ParseMessage(_internal_add_functions(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<202>(ptr)); } else goto handle_unusual; continue; // repeated .opencv_onnx.DeviceConfigurationProto configuration = 26; case 26: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 210)) { ptr -= 2; do { ptr += 2; ptr = ctx->ParseMessage(_internal_add_configuration(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<210>(ptr)); } else goto handle_unusual; continue; default: goto handle_unusual; } // switch handle_unusual: if ((tag == 0) || ((tag & 7) == 4)) { CHK_(ptr); ctx->SetLastTag(tag); goto message_done; } ptr = UnknownFieldParse( tag, _internal_metadata_.mutable_unknown_fields(), ptr, ctx); CHK_(ptr != nullptr); } // while message_done: _has_bits_.Or(has_bits); return ptr; failure: ptr = nullptr; goto message_done; #undef CHK_ } uint8_t* ModelProto::_InternalSerialize( uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const { // @@protoc_insertion_point(serialize_to_array_start:opencv_onnx.ModelProto) uint32_t cached_has_bits = 0; (void) cached_has_bits; cached_has_bits = _has_bits_[0]; // optional int64 ir_version = 1; if (cached_has_bits & 0x00000020u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt64ToArray(1, this->_internal_ir_version(), target); } // optional string producer_name = 2; if (cached_has_bits & 0x00000001u) { target = stream->WriteStringMaybeAliased( 2, this->_internal_producer_name(), target); } // optional string producer_version = 3; if (cached_has_bits & 0x00000002u) { target = stream->WriteStringMaybeAliased( 3, this->_internal_producer_version(), target); } // optional string domain = 4; if (cached_has_bits & 0x00000004u) { target = stream->WriteStringMaybeAliased( 4, this->_internal_domain(), target); } // optional int64 model_version = 5; if (cached_has_bits & 0x00000040u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt64ToArray(5, this->_internal_model_version(), target); } // optional string doc_string = 6; if (cached_has_bits & 0x00000008u) { target = stream->WriteStringMaybeAliased( 6, this->_internal_doc_string(), target); } // optional .opencv_onnx.GraphProto graph = 7; if (cached_has_bits & 0x00000010u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage( 7, _Internal::graph(this), target, stream); } // repeated .opencv_onnx.OperatorSetIdProto opset_import = 8; for (unsigned int i = 0, n = static_cast(this->_internal_opset_import_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(8, this->_internal_opset_import(i), target, stream); } // repeated .opencv_onnx.StringStringEntryProto metadata_props = 14; for (unsigned int i = 0, n = static_cast(this->_internal_metadata_props_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(14, this->_internal_metadata_props(i), target, stream); } // repeated .opencv_onnx.TrainingInfoProto training_info = 20; for (unsigned int i = 0, n = static_cast(this->_internal_training_info_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(20, this->_internal_training_info(i), target, stream); } // repeated .opencv_onnx.FunctionProto functions = 25; for (unsigned int i = 0, n = static_cast(this->_internal_functions_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(25, this->_internal_functions(i), target, stream); } // repeated .opencv_onnx.DeviceConfigurationProto configuration = 26; for (unsigned int i = 0, n = static_cast(this->_internal_configuration_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(26, this->_internal_configuration(i), target, stream); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { target = stream->WriteRaw(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(), static_cast(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target); } // @@protoc_insertion_point(serialize_to_array_end:opencv_onnx.ModelProto) return target; } size_t ModelProto::ByteSizeLong() const { // @@protoc_insertion_point(message_byte_size_start:opencv_onnx.ModelProto) size_t total_size = 0; uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; // repeated .opencv_onnx.OperatorSetIdProto opset_import = 8; total_size += 1UL * this->_internal_opset_import_size(); for (const auto& msg : this->opset_import_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } // repeated .opencv_onnx.StringStringEntryProto metadata_props = 14; total_size += 1UL * this->_internal_metadata_props_size(); for (const auto& msg : this->metadata_props_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } // repeated .opencv_onnx.TrainingInfoProto training_info = 20; total_size += 2UL * this->_internal_training_info_size(); for (const auto& msg : this->training_info_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } // repeated .opencv_onnx.FunctionProto functions = 25; total_size += 2UL * this->_internal_functions_size(); for (const auto& msg : this->functions_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } // repeated .opencv_onnx.DeviceConfigurationProto configuration = 26; total_size += 2UL * this->_internal_configuration_size(); for (const auto& msg : this->configuration_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x0000007fu) { // optional string producer_name = 2; if (cached_has_bits & 0x00000001u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_producer_name()); } // optional string producer_version = 3; if (cached_has_bits & 0x00000002u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_producer_version()); } // optional string domain = 4; if (cached_has_bits & 0x00000004u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_domain()); } // optional string doc_string = 6; if (cached_has_bits & 0x00000008u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_doc_string()); } // optional .opencv_onnx.GraphProto graph = 7; if (cached_has_bits & 0x00000010u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize( *graph_); } // optional int64 ir_version = 1; if (cached_has_bits & 0x00000020u) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int64SizePlusOne(this->_internal_ir_version()); } // optional int64 model_version = 5; if (cached_has_bits & 0x00000040u) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int64SizePlusOne(this->_internal_model_version()); } } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { total_size += _internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size(); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size); SetCachedSize(cached_size); return total_size; } void ModelProto::CheckTypeAndMergeFrom( const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) { MergeFrom(*::PROTOBUF_NAMESPACE_ID::internal::DownCast( &from)); } void ModelProto::MergeFrom(const ModelProto& from) { // @@protoc_insertion_point(class_specific_merge_from_start:opencv_onnx.ModelProto) GOOGLE_DCHECK_NE(&from, this); uint32_t cached_has_bits = 0; (void) cached_has_bits; opset_import_.MergeFrom(from.opset_import_); metadata_props_.MergeFrom(from.metadata_props_); training_info_.MergeFrom(from.training_info_); functions_.MergeFrom(from.functions_); configuration_.MergeFrom(from.configuration_); cached_has_bits = from._has_bits_[0]; if (cached_has_bits & 0x0000007fu) { if (cached_has_bits & 0x00000001u) { _internal_set_producer_name(from._internal_producer_name()); } if (cached_has_bits & 0x00000002u) { _internal_set_producer_version(from._internal_producer_version()); } if (cached_has_bits & 0x00000004u) { _internal_set_domain(from._internal_domain()); } if (cached_has_bits & 0x00000008u) { _internal_set_doc_string(from._internal_doc_string()); } if (cached_has_bits & 0x00000010u) { _internal_mutable_graph()->::opencv_onnx::GraphProto::MergeFrom(from._internal_graph()); } if (cached_has_bits & 0x00000020u) { ir_version_ = from.ir_version_; } if (cached_has_bits & 0x00000040u) { model_version_ = from.model_version_; } _has_bits_[0] |= cached_has_bits; } _internal_metadata_.MergeFrom(from._internal_metadata_); } void ModelProto::CopyFrom(const ModelProto& from) { // @@protoc_insertion_point(class_specific_copy_from_start:opencv_onnx.ModelProto) if (&from == this) return; Clear(); MergeFrom(from); } bool ModelProto::IsInitialized() const { return true; } void ModelProto::InternalSwap(ModelProto* other) { using std::swap; auto* lhs_arena = GetArenaForAllocation(); auto* rhs_arena = other->GetArenaForAllocation(); _internal_metadata_.InternalSwap(&other->_internal_metadata_); swap(_has_bits_[0], other->_has_bits_[0]); opset_import_.InternalSwap(&other->opset_import_); metadata_props_.InternalSwap(&other->metadata_props_); training_info_.InternalSwap(&other->training_info_); functions_.InternalSwap(&other->functions_); configuration_.InternalSwap(&other->configuration_); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &producer_name_, lhs_arena, &other->producer_name_, rhs_arena ); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &producer_version_, lhs_arena, &other->producer_version_, rhs_arena ); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &domain_, lhs_arena, &other->domain_, rhs_arena ); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &doc_string_, lhs_arena, &other->doc_string_, rhs_arena ); ::PROTOBUF_NAMESPACE_ID::internal::memswap< PROTOBUF_FIELD_OFFSET(ModelProto, model_version_) + sizeof(ModelProto::model_version_) - PROTOBUF_FIELD_OFFSET(ModelProto, graph_)>( reinterpret_cast(&graph_), reinterpret_cast(&other->graph_)); } std::string ModelProto::GetTypeName() const { return "opencv_onnx.ModelProto"; } // =================================================================== class DeviceConfigurationProto::_Internal { public: using HasBits = decltype(std::declval()._has_bits_); static void set_has_name(HasBits* has_bits) { (*has_bits)[0] |= 1u; } static void set_has_num_devices(HasBits* has_bits) { (*has_bits)[0] |= 2u; } }; DeviceConfigurationProto::DeviceConfigurationProto(::PROTOBUF_NAMESPACE_ID::Arena* arena, bool is_message_owned) : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena, is_message_owned), device_(arena) { SharedCtor(); if (!is_message_owned) { RegisterArenaDtor(arena); } // @@protoc_insertion_point(arena_constructor:opencv_onnx.DeviceConfigurationProto) } DeviceConfigurationProto::DeviceConfigurationProto(const DeviceConfigurationProto& from) : ::PROTOBUF_NAMESPACE_ID::MessageLite(), _has_bits_(from._has_bits_), device_(from.device_) { _internal_metadata_.MergeFrom(from._internal_metadata_); name_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING name_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_name()) { name_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_name(), GetArenaForAllocation()); } num_devices_ = from.num_devices_; // @@protoc_insertion_point(copy_constructor:opencv_onnx.DeviceConfigurationProto) } inline void DeviceConfigurationProto::SharedCtor() { name_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING name_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING num_devices_ = 0; } DeviceConfigurationProto::~DeviceConfigurationProto() { // @@protoc_insertion_point(destructor:opencv_onnx.DeviceConfigurationProto) if (GetArenaForAllocation() != nullptr) return; SharedDtor(); _internal_metadata_.Delete(); } inline void DeviceConfigurationProto::SharedDtor() { GOOGLE_DCHECK(GetArenaForAllocation() == nullptr); name_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); } void DeviceConfigurationProto::ArenaDtor(void* object) { DeviceConfigurationProto* _this = reinterpret_cast< DeviceConfigurationProto* >(object); (void)_this; } void DeviceConfigurationProto::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) { } void DeviceConfigurationProto::SetCachedSize(int size) const { _cached_size_.Set(size); } void DeviceConfigurationProto::Clear() { // @@protoc_insertion_point(message_clear_start:opencv_onnx.DeviceConfigurationProto) uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; device_.Clear(); cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000001u) { name_.ClearNonDefaultToEmpty(); } num_devices_ = 0; _has_bits_.Clear(); _internal_metadata_.Clear(); } const char* DeviceConfigurationProto::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) { #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure _Internal::HasBits has_bits{}; while (!ctx->Done(&ptr)) { uint32_t tag; ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag); switch (tag >> 3) { // optional string name = 1; case 1: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 10)) { auto str = _internal_mutable_name(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // optional int32 num_devices = 2; case 2: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 16)) { _Internal::set_has_num_devices(&has_bits); num_devices_ = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint32(&ptr); CHK_(ptr); } else goto handle_unusual; continue; // repeated string device = 3; case 3: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 26)) { ptr -= 1; do { ptr += 1; auto str = _internal_add_device(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<26>(ptr)); } else goto handle_unusual; continue; default: goto handle_unusual; } // switch handle_unusual: if ((tag == 0) || ((tag & 7) == 4)) { CHK_(ptr); ctx->SetLastTag(tag); goto message_done; } ptr = UnknownFieldParse( tag, _internal_metadata_.mutable_unknown_fields(), ptr, ctx); CHK_(ptr != nullptr); } // while message_done: _has_bits_.Or(has_bits); return ptr; failure: ptr = nullptr; goto message_done; #undef CHK_ } uint8_t* DeviceConfigurationProto::_InternalSerialize( uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const { // @@protoc_insertion_point(serialize_to_array_start:opencv_onnx.DeviceConfigurationProto) uint32_t cached_has_bits = 0; (void) cached_has_bits; cached_has_bits = _has_bits_[0]; // optional string name = 1; if (cached_has_bits & 0x00000001u) { target = stream->WriteStringMaybeAliased( 1, this->_internal_name(), target); } // optional int32 num_devices = 2; if (cached_has_bits & 0x00000002u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt32ToArray(2, this->_internal_num_devices(), target); } // repeated string device = 3; for (int i = 0, n = this->_internal_device_size(); i < n; i++) { const auto& s = this->_internal_device(i); target = stream->WriteString(3, s, target); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { target = stream->WriteRaw(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(), static_cast(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target); } // @@protoc_insertion_point(serialize_to_array_end:opencv_onnx.DeviceConfigurationProto) return target; } size_t DeviceConfigurationProto::ByteSizeLong() const { // @@protoc_insertion_point(message_byte_size_start:opencv_onnx.DeviceConfigurationProto) size_t total_size = 0; uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; // repeated string device = 3; total_size += 1 * ::PROTOBUF_NAMESPACE_ID::internal::FromIntSize(device_.size()); for (int i = 0, n = device_.size(); i < n; i++) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( device_.Get(i)); } cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000003u) { // optional string name = 1; if (cached_has_bits & 0x00000001u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_name()); } // optional int32 num_devices = 2; if (cached_has_bits & 0x00000002u) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int32SizePlusOne(this->_internal_num_devices()); } } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { total_size += _internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size(); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size); SetCachedSize(cached_size); return total_size; } void DeviceConfigurationProto::CheckTypeAndMergeFrom( const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) { MergeFrom(*::PROTOBUF_NAMESPACE_ID::internal::DownCast( &from)); } void DeviceConfigurationProto::MergeFrom(const DeviceConfigurationProto& from) { // @@protoc_insertion_point(class_specific_merge_from_start:opencv_onnx.DeviceConfigurationProto) GOOGLE_DCHECK_NE(&from, this); uint32_t cached_has_bits = 0; (void) cached_has_bits; device_.MergeFrom(from.device_); cached_has_bits = from._has_bits_[0]; if (cached_has_bits & 0x00000003u) { if (cached_has_bits & 0x00000001u) { _internal_set_name(from._internal_name()); } if (cached_has_bits & 0x00000002u) { num_devices_ = from.num_devices_; } _has_bits_[0] |= cached_has_bits; } _internal_metadata_.MergeFrom(from._internal_metadata_); } void DeviceConfigurationProto::CopyFrom(const DeviceConfigurationProto& from) { // @@protoc_insertion_point(class_specific_copy_from_start:opencv_onnx.DeviceConfigurationProto) if (&from == this) return; Clear(); MergeFrom(from); } bool DeviceConfigurationProto::IsInitialized() const { return true; } void DeviceConfigurationProto::InternalSwap(DeviceConfigurationProto* other) { using std::swap; auto* lhs_arena = GetArenaForAllocation(); auto* rhs_arena = other->GetArenaForAllocation(); _internal_metadata_.InternalSwap(&other->_internal_metadata_); swap(_has_bits_[0], other->_has_bits_[0]); device_.InternalSwap(&other->device_); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &name_, lhs_arena, &other->name_, rhs_arena ); swap(num_devices_, other->num_devices_); } std::string DeviceConfigurationProto::GetTypeName() const { return "opencv_onnx.DeviceConfigurationProto"; } // =================================================================== class StringStringEntryProto::_Internal { public: using HasBits = decltype(std::declval()._has_bits_); static void set_has_key(HasBits* has_bits) { (*has_bits)[0] |= 1u; } static void set_has_value(HasBits* has_bits) { (*has_bits)[0] |= 2u; } }; StringStringEntryProto::StringStringEntryProto(::PROTOBUF_NAMESPACE_ID::Arena* arena, bool is_message_owned) : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena, is_message_owned) { SharedCtor(); if (!is_message_owned) { RegisterArenaDtor(arena); } // @@protoc_insertion_point(arena_constructor:opencv_onnx.StringStringEntryProto) } StringStringEntryProto::StringStringEntryProto(const StringStringEntryProto& from) : ::PROTOBUF_NAMESPACE_ID::MessageLite(), _has_bits_(from._has_bits_) { _internal_metadata_.MergeFrom(from._internal_metadata_); key_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING key_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_key()) { key_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_key(), GetArenaForAllocation()); } value_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING value_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_value()) { value_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_value(), GetArenaForAllocation()); } // @@protoc_insertion_point(copy_constructor:opencv_onnx.StringStringEntryProto) } inline void StringStringEntryProto::SharedCtor() { key_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING key_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING value_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING value_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING } StringStringEntryProto::~StringStringEntryProto() { // @@protoc_insertion_point(destructor:opencv_onnx.StringStringEntryProto) if (GetArenaForAllocation() != nullptr) return; SharedDtor(); _internal_metadata_.Delete(); } inline void StringStringEntryProto::SharedDtor() { GOOGLE_DCHECK(GetArenaForAllocation() == nullptr); key_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); value_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); } void StringStringEntryProto::ArenaDtor(void* object) { StringStringEntryProto* _this = reinterpret_cast< StringStringEntryProto* >(object); (void)_this; } void StringStringEntryProto::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) { } void StringStringEntryProto::SetCachedSize(int size) const { _cached_size_.Set(size); } void StringStringEntryProto::Clear() { // @@protoc_insertion_point(message_clear_start:opencv_onnx.StringStringEntryProto) uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000003u) { if (cached_has_bits & 0x00000001u) { key_.ClearNonDefaultToEmpty(); } if (cached_has_bits & 0x00000002u) { value_.ClearNonDefaultToEmpty(); } } _has_bits_.Clear(); _internal_metadata_.Clear(); } const char* StringStringEntryProto::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) { #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure _Internal::HasBits has_bits{}; while (!ctx->Done(&ptr)) { uint32_t tag; ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag); switch (tag >> 3) { // optional string key = 1; case 1: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 10)) { auto str = _internal_mutable_key(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // optional string value = 2; case 2: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 18)) { auto str = _internal_mutable_value(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; default: goto handle_unusual; } // switch handle_unusual: if ((tag == 0) || ((tag & 7) == 4)) { CHK_(ptr); ctx->SetLastTag(tag); goto message_done; } ptr = UnknownFieldParse( tag, _internal_metadata_.mutable_unknown_fields(), ptr, ctx); CHK_(ptr != nullptr); } // while message_done: _has_bits_.Or(has_bits); return ptr; failure: ptr = nullptr; goto message_done; #undef CHK_ } uint8_t* StringStringEntryProto::_InternalSerialize( uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const { // @@protoc_insertion_point(serialize_to_array_start:opencv_onnx.StringStringEntryProto) uint32_t cached_has_bits = 0; (void) cached_has_bits; cached_has_bits = _has_bits_[0]; // optional string key = 1; if (cached_has_bits & 0x00000001u) { target = stream->WriteStringMaybeAliased( 1, this->_internal_key(), target); } // optional string value = 2; if (cached_has_bits & 0x00000002u) { target = stream->WriteStringMaybeAliased( 2, this->_internal_value(), target); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { target = stream->WriteRaw(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(), static_cast(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target); } // @@protoc_insertion_point(serialize_to_array_end:opencv_onnx.StringStringEntryProto) return target; } size_t StringStringEntryProto::ByteSizeLong() const { // @@protoc_insertion_point(message_byte_size_start:opencv_onnx.StringStringEntryProto) size_t total_size = 0; uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000003u) { // optional string key = 1; if (cached_has_bits & 0x00000001u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_key()); } // optional string value = 2; if (cached_has_bits & 0x00000002u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_value()); } } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { total_size += _internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size(); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size); SetCachedSize(cached_size); return total_size; } void StringStringEntryProto::CheckTypeAndMergeFrom( const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) { MergeFrom(*::PROTOBUF_NAMESPACE_ID::internal::DownCast( &from)); } void StringStringEntryProto::MergeFrom(const StringStringEntryProto& from) { // @@protoc_insertion_point(class_specific_merge_from_start:opencv_onnx.StringStringEntryProto) GOOGLE_DCHECK_NE(&from, this); uint32_t cached_has_bits = 0; (void) cached_has_bits; cached_has_bits = from._has_bits_[0]; if (cached_has_bits & 0x00000003u) { if (cached_has_bits & 0x00000001u) { _internal_set_key(from._internal_key()); } if (cached_has_bits & 0x00000002u) { _internal_set_value(from._internal_value()); } } _internal_metadata_.MergeFrom(from._internal_metadata_); } void StringStringEntryProto::CopyFrom(const StringStringEntryProto& from) { // @@protoc_insertion_point(class_specific_copy_from_start:opencv_onnx.StringStringEntryProto) if (&from == this) return; Clear(); MergeFrom(from); } bool StringStringEntryProto::IsInitialized() const { return true; } void StringStringEntryProto::InternalSwap(StringStringEntryProto* other) { using std::swap; auto* lhs_arena = GetArenaForAllocation(); auto* rhs_arena = other->GetArenaForAllocation(); _internal_metadata_.InternalSwap(&other->_internal_metadata_); swap(_has_bits_[0], other->_has_bits_[0]); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &key_, lhs_arena, &other->key_, rhs_arena ); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &value_, lhs_arena, &other->value_, rhs_arena ); } std::string StringStringEntryProto::GetTypeName() const { return "opencv_onnx.StringStringEntryProto"; } // =================================================================== class TensorAnnotation::_Internal { public: using HasBits = decltype(std::declval()._has_bits_); static void set_has_tensor_name(HasBits* has_bits) { (*has_bits)[0] |= 1u; } }; TensorAnnotation::TensorAnnotation(::PROTOBUF_NAMESPACE_ID::Arena* arena, bool is_message_owned) : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena, is_message_owned), quant_parameter_tensor_names_(arena) { SharedCtor(); if (!is_message_owned) { RegisterArenaDtor(arena); } // @@protoc_insertion_point(arena_constructor:opencv_onnx.TensorAnnotation) } TensorAnnotation::TensorAnnotation(const TensorAnnotation& from) : ::PROTOBUF_NAMESPACE_ID::MessageLite(), _has_bits_(from._has_bits_), quant_parameter_tensor_names_(from.quant_parameter_tensor_names_) { _internal_metadata_.MergeFrom(from._internal_metadata_); tensor_name_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING tensor_name_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_tensor_name()) { tensor_name_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_tensor_name(), GetArenaForAllocation()); } // @@protoc_insertion_point(copy_constructor:opencv_onnx.TensorAnnotation) } inline void TensorAnnotation::SharedCtor() { tensor_name_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING tensor_name_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING } TensorAnnotation::~TensorAnnotation() { // @@protoc_insertion_point(destructor:opencv_onnx.TensorAnnotation) if (GetArenaForAllocation() != nullptr) return; SharedDtor(); _internal_metadata_.Delete(); } inline void TensorAnnotation::SharedDtor() { GOOGLE_DCHECK(GetArenaForAllocation() == nullptr); tensor_name_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); } void TensorAnnotation::ArenaDtor(void* object) { TensorAnnotation* _this = reinterpret_cast< TensorAnnotation* >(object); (void)_this; } void TensorAnnotation::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) { } void TensorAnnotation::SetCachedSize(int size) const { _cached_size_.Set(size); } void TensorAnnotation::Clear() { // @@protoc_insertion_point(message_clear_start:opencv_onnx.TensorAnnotation) uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; quant_parameter_tensor_names_.Clear(); cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000001u) { tensor_name_.ClearNonDefaultToEmpty(); } _has_bits_.Clear(); _internal_metadata_.Clear(); } const char* TensorAnnotation::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) { #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure _Internal::HasBits has_bits{}; while (!ctx->Done(&ptr)) { uint32_t tag; ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag); switch (tag >> 3) { // optional string tensor_name = 1; case 1: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 10)) { auto str = _internal_mutable_tensor_name(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // repeated .opencv_onnx.StringStringEntryProto quant_parameter_tensor_names = 2; case 2: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 18)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_quant_parameter_tensor_names(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<18>(ptr)); } else goto handle_unusual; continue; default: goto handle_unusual; } // switch handle_unusual: if ((tag == 0) || ((tag & 7) == 4)) { CHK_(ptr); ctx->SetLastTag(tag); goto message_done; } ptr = UnknownFieldParse( tag, _internal_metadata_.mutable_unknown_fields(), ptr, ctx); CHK_(ptr != nullptr); } // while message_done: _has_bits_.Or(has_bits); return ptr; failure: ptr = nullptr; goto message_done; #undef CHK_ } uint8_t* TensorAnnotation::_InternalSerialize( uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const { // @@protoc_insertion_point(serialize_to_array_start:opencv_onnx.TensorAnnotation) uint32_t cached_has_bits = 0; (void) cached_has_bits; cached_has_bits = _has_bits_[0]; // optional string tensor_name = 1; if (cached_has_bits & 0x00000001u) { target = stream->WriteStringMaybeAliased( 1, this->_internal_tensor_name(), target); } // repeated .opencv_onnx.StringStringEntryProto quant_parameter_tensor_names = 2; for (unsigned int i = 0, n = static_cast(this->_internal_quant_parameter_tensor_names_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(2, this->_internal_quant_parameter_tensor_names(i), target, stream); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { target = stream->WriteRaw(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(), static_cast(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target); } // @@protoc_insertion_point(serialize_to_array_end:opencv_onnx.TensorAnnotation) return target; } size_t TensorAnnotation::ByteSizeLong() const { // @@protoc_insertion_point(message_byte_size_start:opencv_onnx.TensorAnnotation) size_t total_size = 0; uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; // repeated .opencv_onnx.StringStringEntryProto quant_parameter_tensor_names = 2; total_size += 1UL * this->_internal_quant_parameter_tensor_names_size(); for (const auto& msg : this->quant_parameter_tensor_names_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } // optional string tensor_name = 1; cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000001u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_tensor_name()); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { total_size += _internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size(); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size); SetCachedSize(cached_size); return total_size; } void TensorAnnotation::CheckTypeAndMergeFrom( const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) { MergeFrom(*::PROTOBUF_NAMESPACE_ID::internal::DownCast( &from)); } void TensorAnnotation::MergeFrom(const TensorAnnotation& from) { // @@protoc_insertion_point(class_specific_merge_from_start:opencv_onnx.TensorAnnotation) GOOGLE_DCHECK_NE(&from, this); uint32_t cached_has_bits = 0; (void) cached_has_bits; quant_parameter_tensor_names_.MergeFrom(from.quant_parameter_tensor_names_); if (from._internal_has_tensor_name()) { _internal_set_tensor_name(from._internal_tensor_name()); } _internal_metadata_.MergeFrom(from._internal_metadata_); } void TensorAnnotation::CopyFrom(const TensorAnnotation& from) { // @@protoc_insertion_point(class_specific_copy_from_start:opencv_onnx.TensorAnnotation) if (&from == this) return; Clear(); MergeFrom(from); } bool TensorAnnotation::IsInitialized() const { return true; } void TensorAnnotation::InternalSwap(TensorAnnotation* other) { using std::swap; auto* lhs_arena = GetArenaForAllocation(); auto* rhs_arena = other->GetArenaForAllocation(); _internal_metadata_.InternalSwap(&other->_internal_metadata_); swap(_has_bits_[0], other->_has_bits_[0]); quant_parameter_tensor_names_.InternalSwap(&other->quant_parameter_tensor_names_); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &tensor_name_, lhs_arena, &other->tensor_name_, rhs_arena ); } std::string TensorAnnotation::GetTypeName() const { return "opencv_onnx.TensorAnnotation"; } // =================================================================== class GraphProto::_Internal { public: using HasBits = decltype(std::declval()._has_bits_); static void set_has_name(HasBits* has_bits) { (*has_bits)[0] |= 1u; } static void set_has_doc_string(HasBits* has_bits) { (*has_bits)[0] |= 2u; } }; GraphProto::GraphProto(::PROTOBUF_NAMESPACE_ID::Arena* arena, bool is_message_owned) : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena, is_message_owned), node_(arena), initializer_(arena), input_(arena), output_(arena), value_info_(arena), quantization_annotation_(arena), sparse_initializer_(arena), metadata_props_(arena) { SharedCtor(); if (!is_message_owned) { RegisterArenaDtor(arena); } // @@protoc_insertion_point(arena_constructor:opencv_onnx.GraphProto) } GraphProto::GraphProto(const GraphProto& from) : ::PROTOBUF_NAMESPACE_ID::MessageLite(), _has_bits_(from._has_bits_), node_(from.node_), initializer_(from.initializer_), input_(from.input_), output_(from.output_), value_info_(from.value_info_), quantization_annotation_(from.quantization_annotation_), sparse_initializer_(from.sparse_initializer_), metadata_props_(from.metadata_props_) { _internal_metadata_.MergeFrom(from._internal_metadata_); name_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING name_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_name()) { name_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_name(), GetArenaForAllocation()); } doc_string_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING doc_string_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_doc_string()) { doc_string_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_doc_string(), GetArenaForAllocation()); } // @@protoc_insertion_point(copy_constructor:opencv_onnx.GraphProto) } inline void GraphProto::SharedCtor() { name_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING name_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING doc_string_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING doc_string_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING } GraphProto::~GraphProto() { // @@protoc_insertion_point(destructor:opencv_onnx.GraphProto) if (GetArenaForAllocation() != nullptr) return; SharedDtor(); _internal_metadata_.Delete(); } inline void GraphProto::SharedDtor() { GOOGLE_DCHECK(GetArenaForAllocation() == nullptr); name_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); doc_string_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); } void GraphProto::ArenaDtor(void* object) { GraphProto* _this = reinterpret_cast< GraphProto* >(object); (void)_this; } void GraphProto::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) { } void GraphProto::SetCachedSize(int size) const { _cached_size_.Set(size); } void GraphProto::Clear() { // @@protoc_insertion_point(message_clear_start:opencv_onnx.GraphProto) uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; node_.Clear(); initializer_.Clear(); input_.Clear(); output_.Clear(); value_info_.Clear(); quantization_annotation_.Clear(); sparse_initializer_.Clear(); metadata_props_.Clear(); cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000003u) { if (cached_has_bits & 0x00000001u) { name_.ClearNonDefaultToEmpty(); } if (cached_has_bits & 0x00000002u) { doc_string_.ClearNonDefaultToEmpty(); } } _has_bits_.Clear(); _internal_metadata_.Clear(); } const char* GraphProto::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) { #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure _Internal::HasBits has_bits{}; while (!ctx->Done(&ptr)) { uint32_t tag; ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag); switch (tag >> 3) { // repeated .opencv_onnx.NodeProto node = 1; case 1: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 10)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_node(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<10>(ptr)); } else goto handle_unusual; continue; // optional string name = 2; case 2: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 18)) { auto str = _internal_mutable_name(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // repeated .opencv_onnx.TensorProto initializer = 5; case 5: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 42)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_initializer(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<42>(ptr)); } else goto handle_unusual; continue; // optional string doc_string = 10; case 10: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 82)) { auto str = _internal_mutable_doc_string(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // repeated .opencv_onnx.ValueInfoProto input = 11; case 11: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 90)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_input(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<90>(ptr)); } else goto handle_unusual; continue; // repeated .opencv_onnx.ValueInfoProto output = 12; case 12: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 98)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_output(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<98>(ptr)); } else goto handle_unusual; continue; // repeated .opencv_onnx.ValueInfoProto value_info = 13; case 13: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 106)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_value_info(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<106>(ptr)); } else goto handle_unusual; continue; // repeated .opencv_onnx.TensorAnnotation quantization_annotation = 14; case 14: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 114)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_quantization_annotation(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<114>(ptr)); } else goto handle_unusual; continue; // repeated .opencv_onnx.SparseTensorProto sparse_initializer = 15; case 15: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 122)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_sparse_initializer(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<122>(ptr)); } else goto handle_unusual; continue; // repeated .opencv_onnx.StringStringEntryProto metadata_props = 16; case 16: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 130)) { ptr -= 2; do { ptr += 2; ptr = ctx->ParseMessage(_internal_add_metadata_props(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<130>(ptr)); } else goto handle_unusual; continue; default: goto handle_unusual; } // switch handle_unusual: if ((tag == 0) || ((tag & 7) == 4)) { CHK_(ptr); ctx->SetLastTag(tag); goto message_done; } ptr = UnknownFieldParse( tag, _internal_metadata_.mutable_unknown_fields(), ptr, ctx); CHK_(ptr != nullptr); } // while message_done: _has_bits_.Or(has_bits); return ptr; failure: ptr = nullptr; goto message_done; #undef CHK_ } uint8_t* GraphProto::_InternalSerialize( uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const { // @@protoc_insertion_point(serialize_to_array_start:opencv_onnx.GraphProto) uint32_t cached_has_bits = 0; (void) cached_has_bits; // repeated .opencv_onnx.NodeProto node = 1; for (unsigned int i = 0, n = static_cast(this->_internal_node_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(1, this->_internal_node(i), target, stream); } cached_has_bits = _has_bits_[0]; // optional string name = 2; if (cached_has_bits & 0x00000001u) { target = stream->WriteStringMaybeAliased( 2, this->_internal_name(), target); } // repeated .opencv_onnx.TensorProto initializer = 5; for (unsigned int i = 0, n = static_cast(this->_internal_initializer_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(5, this->_internal_initializer(i), target, stream); } // optional string doc_string = 10; if (cached_has_bits & 0x00000002u) { target = stream->WriteStringMaybeAliased( 10, this->_internal_doc_string(), target); } // repeated .opencv_onnx.ValueInfoProto input = 11; for (unsigned int i = 0, n = static_cast(this->_internal_input_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(11, this->_internal_input(i), target, stream); } // repeated .opencv_onnx.ValueInfoProto output = 12; for (unsigned int i = 0, n = static_cast(this->_internal_output_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(12, this->_internal_output(i), target, stream); } // repeated .opencv_onnx.ValueInfoProto value_info = 13; for (unsigned int i = 0, n = static_cast(this->_internal_value_info_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(13, this->_internal_value_info(i), target, stream); } // repeated .opencv_onnx.TensorAnnotation quantization_annotation = 14; for (unsigned int i = 0, n = static_cast(this->_internal_quantization_annotation_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(14, this->_internal_quantization_annotation(i), target, stream); } // repeated .opencv_onnx.SparseTensorProto sparse_initializer = 15; for (unsigned int i = 0, n = static_cast(this->_internal_sparse_initializer_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(15, this->_internal_sparse_initializer(i), target, stream); } // repeated .opencv_onnx.StringStringEntryProto metadata_props = 16; for (unsigned int i = 0, n = static_cast(this->_internal_metadata_props_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(16, this->_internal_metadata_props(i), target, stream); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { target = stream->WriteRaw(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(), static_cast(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target); } // @@protoc_insertion_point(serialize_to_array_end:opencv_onnx.GraphProto) return target; } size_t GraphProto::ByteSizeLong() const { // @@protoc_insertion_point(message_byte_size_start:opencv_onnx.GraphProto) size_t total_size = 0; uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; // repeated .opencv_onnx.NodeProto node = 1; total_size += 1UL * this->_internal_node_size(); for (const auto& msg : this->node_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } // repeated .opencv_onnx.TensorProto initializer = 5; total_size += 1UL * this->_internal_initializer_size(); for (const auto& msg : this->initializer_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } // repeated .opencv_onnx.ValueInfoProto input = 11; total_size += 1UL * this->_internal_input_size(); for (const auto& msg : this->input_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } // repeated .opencv_onnx.ValueInfoProto output = 12; total_size += 1UL * this->_internal_output_size(); for (const auto& msg : this->output_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } // repeated .opencv_onnx.ValueInfoProto value_info = 13; total_size += 1UL * this->_internal_value_info_size(); for (const auto& msg : this->value_info_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } // repeated .opencv_onnx.TensorAnnotation quantization_annotation = 14; total_size += 1UL * this->_internal_quantization_annotation_size(); for (const auto& msg : this->quantization_annotation_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } // repeated .opencv_onnx.SparseTensorProto sparse_initializer = 15; total_size += 1UL * this->_internal_sparse_initializer_size(); for (const auto& msg : this->sparse_initializer_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } // repeated .opencv_onnx.StringStringEntryProto metadata_props = 16; total_size += 2UL * this->_internal_metadata_props_size(); for (const auto& msg : this->metadata_props_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000003u) { // optional string name = 2; if (cached_has_bits & 0x00000001u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_name()); } // optional string doc_string = 10; if (cached_has_bits & 0x00000002u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_doc_string()); } } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { total_size += _internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size(); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size); SetCachedSize(cached_size); return total_size; } void GraphProto::CheckTypeAndMergeFrom( const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) { MergeFrom(*::PROTOBUF_NAMESPACE_ID::internal::DownCast( &from)); } void GraphProto::MergeFrom(const GraphProto& from) { // @@protoc_insertion_point(class_specific_merge_from_start:opencv_onnx.GraphProto) GOOGLE_DCHECK_NE(&from, this); uint32_t cached_has_bits = 0; (void) cached_has_bits; node_.MergeFrom(from.node_); initializer_.MergeFrom(from.initializer_); input_.MergeFrom(from.input_); output_.MergeFrom(from.output_); value_info_.MergeFrom(from.value_info_); quantization_annotation_.MergeFrom(from.quantization_annotation_); sparse_initializer_.MergeFrom(from.sparse_initializer_); metadata_props_.MergeFrom(from.metadata_props_); cached_has_bits = from._has_bits_[0]; if (cached_has_bits & 0x00000003u) { if (cached_has_bits & 0x00000001u) { _internal_set_name(from._internal_name()); } if (cached_has_bits & 0x00000002u) { _internal_set_doc_string(from._internal_doc_string()); } } _internal_metadata_.MergeFrom(from._internal_metadata_); } void GraphProto::CopyFrom(const GraphProto& from) { // @@protoc_insertion_point(class_specific_copy_from_start:opencv_onnx.GraphProto) if (&from == this) return; Clear(); MergeFrom(from); } bool GraphProto::IsInitialized() const { return true; } void GraphProto::InternalSwap(GraphProto* other) { using std::swap; auto* lhs_arena = GetArenaForAllocation(); auto* rhs_arena = other->GetArenaForAllocation(); _internal_metadata_.InternalSwap(&other->_internal_metadata_); swap(_has_bits_[0], other->_has_bits_[0]); node_.InternalSwap(&other->node_); initializer_.InternalSwap(&other->initializer_); input_.InternalSwap(&other->input_); output_.InternalSwap(&other->output_); value_info_.InternalSwap(&other->value_info_); quantization_annotation_.InternalSwap(&other->quantization_annotation_); sparse_initializer_.InternalSwap(&other->sparse_initializer_); metadata_props_.InternalSwap(&other->metadata_props_); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &name_, lhs_arena, &other->name_, rhs_arena ); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &doc_string_, lhs_arena, &other->doc_string_, rhs_arena ); } std::string GraphProto::GetTypeName() const { return "opencv_onnx.GraphProto"; } // =================================================================== class TensorProto_Segment::_Internal { public: using HasBits = decltype(std::declval()._has_bits_); static void set_has_begin(HasBits* has_bits) { (*has_bits)[0] |= 1u; } static void set_has_end(HasBits* has_bits) { (*has_bits)[0] |= 2u; } }; TensorProto_Segment::TensorProto_Segment(::PROTOBUF_NAMESPACE_ID::Arena* arena, bool is_message_owned) : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena, is_message_owned) { SharedCtor(); if (!is_message_owned) { RegisterArenaDtor(arena); } // @@protoc_insertion_point(arena_constructor:opencv_onnx.TensorProto.Segment) } TensorProto_Segment::TensorProto_Segment(const TensorProto_Segment& from) : ::PROTOBUF_NAMESPACE_ID::MessageLite(), _has_bits_(from._has_bits_) { _internal_metadata_.MergeFrom(from._internal_metadata_); ::memcpy(&begin_, &from.begin_, static_cast(reinterpret_cast(&end_) - reinterpret_cast(&begin_)) + sizeof(end_)); // @@protoc_insertion_point(copy_constructor:opencv_onnx.TensorProto.Segment) } inline void TensorProto_Segment::SharedCtor() { ::memset(reinterpret_cast(this) + static_cast( reinterpret_cast(&begin_) - reinterpret_cast(this)), 0, static_cast(reinterpret_cast(&end_) - reinterpret_cast(&begin_)) + sizeof(end_)); } TensorProto_Segment::~TensorProto_Segment() { // @@protoc_insertion_point(destructor:opencv_onnx.TensorProto.Segment) if (GetArenaForAllocation() != nullptr) return; SharedDtor(); _internal_metadata_.Delete(); } inline void TensorProto_Segment::SharedDtor() { GOOGLE_DCHECK(GetArenaForAllocation() == nullptr); } void TensorProto_Segment::ArenaDtor(void* object) { TensorProto_Segment* _this = reinterpret_cast< TensorProto_Segment* >(object); (void)_this; } void TensorProto_Segment::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) { } void TensorProto_Segment::SetCachedSize(int size) const { _cached_size_.Set(size); } void TensorProto_Segment::Clear() { // @@protoc_insertion_point(message_clear_start:opencv_onnx.TensorProto.Segment) uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000003u) { ::memset(&begin_, 0, static_cast( reinterpret_cast(&end_) - reinterpret_cast(&begin_)) + sizeof(end_)); } _has_bits_.Clear(); _internal_metadata_.Clear(); } const char* TensorProto_Segment::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) { #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure _Internal::HasBits has_bits{}; while (!ctx->Done(&ptr)) { uint32_t tag; ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag); switch (tag >> 3) { // optional int64 begin = 1; case 1: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 8)) { _Internal::set_has_begin(&has_bits); begin_ = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr); CHK_(ptr); } else goto handle_unusual; continue; // optional int64 end = 2; case 2: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 16)) { _Internal::set_has_end(&has_bits); end_ = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr); CHK_(ptr); } else goto handle_unusual; continue; default: goto handle_unusual; } // switch handle_unusual: if ((tag == 0) || ((tag & 7) == 4)) { CHK_(ptr); ctx->SetLastTag(tag); goto message_done; } ptr = UnknownFieldParse( tag, _internal_metadata_.mutable_unknown_fields(), ptr, ctx); CHK_(ptr != nullptr); } // while message_done: _has_bits_.Or(has_bits); return ptr; failure: ptr = nullptr; goto message_done; #undef CHK_ } uint8_t* TensorProto_Segment::_InternalSerialize( uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const { // @@protoc_insertion_point(serialize_to_array_start:opencv_onnx.TensorProto.Segment) uint32_t cached_has_bits = 0; (void) cached_has_bits; cached_has_bits = _has_bits_[0]; // optional int64 begin = 1; if (cached_has_bits & 0x00000001u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt64ToArray(1, this->_internal_begin(), target); } // optional int64 end = 2; if (cached_has_bits & 0x00000002u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt64ToArray(2, this->_internal_end(), target); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { target = stream->WriteRaw(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(), static_cast(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target); } // @@protoc_insertion_point(serialize_to_array_end:opencv_onnx.TensorProto.Segment) return target; } size_t TensorProto_Segment::ByteSizeLong() const { // @@protoc_insertion_point(message_byte_size_start:opencv_onnx.TensorProto.Segment) size_t total_size = 0; uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000003u) { // optional int64 begin = 1; if (cached_has_bits & 0x00000001u) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int64SizePlusOne(this->_internal_begin()); } // optional int64 end = 2; if (cached_has_bits & 0x00000002u) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int64SizePlusOne(this->_internal_end()); } } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { total_size += _internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size(); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size); SetCachedSize(cached_size); return total_size; } void TensorProto_Segment::CheckTypeAndMergeFrom( const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) { MergeFrom(*::PROTOBUF_NAMESPACE_ID::internal::DownCast( &from)); } void TensorProto_Segment::MergeFrom(const TensorProto_Segment& from) { // @@protoc_insertion_point(class_specific_merge_from_start:opencv_onnx.TensorProto.Segment) GOOGLE_DCHECK_NE(&from, this); uint32_t cached_has_bits = 0; (void) cached_has_bits; cached_has_bits = from._has_bits_[0]; if (cached_has_bits & 0x00000003u) { if (cached_has_bits & 0x00000001u) { begin_ = from.begin_; } if (cached_has_bits & 0x00000002u) { end_ = from.end_; } _has_bits_[0] |= cached_has_bits; } _internal_metadata_.MergeFrom(from._internal_metadata_); } void TensorProto_Segment::CopyFrom(const TensorProto_Segment& from) { // @@protoc_insertion_point(class_specific_copy_from_start:opencv_onnx.TensorProto.Segment) if (&from == this) return; Clear(); MergeFrom(from); } bool TensorProto_Segment::IsInitialized() const { return true; } void TensorProto_Segment::InternalSwap(TensorProto_Segment* other) { using std::swap; _internal_metadata_.InternalSwap(&other->_internal_metadata_); swap(_has_bits_[0], other->_has_bits_[0]); ::PROTOBUF_NAMESPACE_ID::internal::memswap< PROTOBUF_FIELD_OFFSET(TensorProto_Segment, end_) + sizeof(TensorProto_Segment::end_) - PROTOBUF_FIELD_OFFSET(TensorProto_Segment, begin_)>( reinterpret_cast(&begin_), reinterpret_cast(&other->begin_)); } std::string TensorProto_Segment::GetTypeName() const { return "opencv_onnx.TensorProto.Segment"; } // =================================================================== class TensorProto::_Internal { public: using HasBits = decltype(std::declval()._has_bits_); static void set_has_data_type(HasBits* has_bits) { (*has_bits)[0] |= 16u; } static const ::opencv_onnx::TensorProto_Segment& segment(const TensorProto* msg); static void set_has_segment(HasBits* has_bits) { (*has_bits)[0] |= 8u; } static void set_has_name(HasBits* has_bits) { (*has_bits)[0] |= 1u; } static void set_has_doc_string(HasBits* has_bits) { (*has_bits)[0] |= 4u; } static void set_has_raw_data(HasBits* has_bits) { (*has_bits)[0] |= 2u; } static void set_has_data_location(HasBits* has_bits) { (*has_bits)[0] |= 32u; } }; const ::opencv_onnx::TensorProto_Segment& TensorProto::_Internal::segment(const TensorProto* msg) { return *msg->segment_; } TensorProto::TensorProto(::PROTOBUF_NAMESPACE_ID::Arena* arena, bool is_message_owned) : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena, is_message_owned), dims_(arena), float_data_(arena), int32_data_(arena), string_data_(arena), int64_data_(arena), double_data_(arena), uint64_data_(arena), external_data_(arena), metadata_props_(arena) { SharedCtor(); if (!is_message_owned) { RegisterArenaDtor(arena); } // @@protoc_insertion_point(arena_constructor:opencv_onnx.TensorProto) } TensorProto::TensorProto(const TensorProto& from) : ::PROTOBUF_NAMESPACE_ID::MessageLite(), _has_bits_(from._has_bits_), dims_(from.dims_), float_data_(from.float_data_), int32_data_(from.int32_data_), string_data_(from.string_data_), int64_data_(from.int64_data_), double_data_(from.double_data_), uint64_data_(from.uint64_data_), external_data_(from.external_data_), metadata_props_(from.metadata_props_) { _internal_metadata_.MergeFrom(from._internal_metadata_); name_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING name_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_name()) { name_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_name(), GetArenaForAllocation()); } raw_data_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING raw_data_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_raw_data()) { raw_data_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_raw_data(), GetArenaForAllocation()); } doc_string_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING doc_string_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_doc_string()) { doc_string_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_doc_string(), GetArenaForAllocation()); } if (from._internal_has_segment()) { segment_ = new ::opencv_onnx::TensorProto_Segment(*from.segment_); } else { segment_ = nullptr; } ::memcpy(&data_type_, &from.data_type_, static_cast(reinterpret_cast(&data_location_) - reinterpret_cast(&data_type_)) + sizeof(data_location_)); // @@protoc_insertion_point(copy_constructor:opencv_onnx.TensorProto) } inline void TensorProto::SharedCtor() { name_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING name_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING raw_data_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING raw_data_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING doc_string_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING doc_string_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING ::memset(reinterpret_cast(this) + static_cast( reinterpret_cast(&segment_) - reinterpret_cast(this)), 0, static_cast(reinterpret_cast(&data_location_) - reinterpret_cast(&segment_)) + sizeof(data_location_)); } TensorProto::~TensorProto() { // @@protoc_insertion_point(destructor:opencv_onnx.TensorProto) if (GetArenaForAllocation() != nullptr) return; SharedDtor(); _internal_metadata_.Delete(); } inline void TensorProto::SharedDtor() { GOOGLE_DCHECK(GetArenaForAllocation() == nullptr); name_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); raw_data_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); doc_string_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); if (this != internal_default_instance()) delete segment_; } void TensorProto::ArenaDtor(void* object) { TensorProto* _this = reinterpret_cast< TensorProto* >(object); (void)_this; } void TensorProto::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) { } void TensorProto::SetCachedSize(int size) const { _cached_size_.Set(size); } void TensorProto::Clear() { // @@protoc_insertion_point(message_clear_start:opencv_onnx.TensorProto) uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; dims_.Clear(); float_data_.Clear(); int32_data_.Clear(); string_data_.Clear(); int64_data_.Clear(); double_data_.Clear(); uint64_data_.Clear(); external_data_.Clear(); metadata_props_.Clear(); cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x0000000fu) { if (cached_has_bits & 0x00000001u) { name_.ClearNonDefaultToEmpty(); } if (cached_has_bits & 0x00000002u) { raw_data_.ClearNonDefaultToEmpty(); } if (cached_has_bits & 0x00000004u) { doc_string_.ClearNonDefaultToEmpty(); } if (cached_has_bits & 0x00000008u) { GOOGLE_DCHECK(segment_ != nullptr); segment_->Clear(); } } if (cached_has_bits & 0x00000030u) { ::memset(&data_type_, 0, static_cast( reinterpret_cast(&data_location_) - reinterpret_cast(&data_type_)) + sizeof(data_location_)); } _has_bits_.Clear(); _internal_metadata_.Clear(); } const char* TensorProto::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) { #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure _Internal::HasBits has_bits{}; while (!ctx->Done(&ptr)) { uint32_t tag; ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag); switch (tag >> 3) { // repeated int64 dims = 1; case 1: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 8)) { ptr -= 1; do { ptr += 1; _internal_add_dims(::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr)); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<8>(ptr)); } else if (static_cast(tag) == 10) { ptr = ::PROTOBUF_NAMESPACE_ID::internal::PackedInt64Parser(_internal_mutable_dims(), ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // optional int32 data_type = 2; case 2: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 16)) { _Internal::set_has_data_type(&has_bits); data_type_ = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint32(&ptr); CHK_(ptr); } else goto handle_unusual; continue; // optional .opencv_onnx.TensorProto.Segment segment = 3; case 3: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 26)) { ptr = ctx->ParseMessage(_internal_mutable_segment(), ptr); CHK_(ptr); } else goto handle_unusual; continue; // repeated float float_data = 4 [packed = true]; case 4: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 34)) { ptr = ::PROTOBUF_NAMESPACE_ID::internal::PackedFloatParser(_internal_mutable_float_data(), ptr, ctx); CHK_(ptr); } else if (static_cast(tag) == 37) { _internal_add_float_data(::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad(ptr)); ptr += sizeof(float); } else goto handle_unusual; continue; // repeated int32 int32_data = 5 [packed = true]; case 5: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 42)) { ptr = ::PROTOBUF_NAMESPACE_ID::internal::PackedInt32Parser(_internal_mutable_int32_data(), ptr, ctx); CHK_(ptr); } else if (static_cast(tag) == 40) { _internal_add_int32_data(::PROTOBUF_NAMESPACE_ID::internal::ReadVarint32(&ptr)); CHK_(ptr); } else goto handle_unusual; continue; // repeated bytes string_data = 6; case 6: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 50)) { ptr -= 1; do { ptr += 1; auto str = _internal_add_string_data(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<50>(ptr)); } else goto handle_unusual; continue; // repeated int64 int64_data = 7 [packed = true]; case 7: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 58)) { ptr = ::PROTOBUF_NAMESPACE_ID::internal::PackedInt64Parser(_internal_mutable_int64_data(), ptr, ctx); CHK_(ptr); } else if (static_cast(tag) == 56) { _internal_add_int64_data(::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr)); CHK_(ptr); } else goto handle_unusual; continue; // optional string name = 8; case 8: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 66)) { auto str = _internal_mutable_name(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // optional bytes raw_data = 9; case 9: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 74)) { auto str = _internal_mutable_raw_data(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // repeated double double_data = 10 [packed = true]; case 10: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 82)) { ptr = ::PROTOBUF_NAMESPACE_ID::internal::PackedDoubleParser(_internal_mutable_double_data(), ptr, ctx); CHK_(ptr); } else if (static_cast(tag) == 81) { _internal_add_double_data(::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad(ptr)); ptr += sizeof(double); } else goto handle_unusual; continue; // repeated uint64 uint64_data = 11 [packed = true]; case 11: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 90)) { ptr = ::PROTOBUF_NAMESPACE_ID::internal::PackedUInt64Parser(_internal_mutable_uint64_data(), ptr, ctx); CHK_(ptr); } else if (static_cast(tag) == 88) { _internal_add_uint64_data(::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr)); CHK_(ptr); } else goto handle_unusual; continue; // optional string doc_string = 12; case 12: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 98)) { auto str = _internal_mutable_doc_string(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // repeated .opencv_onnx.StringStringEntryProto external_data = 13; case 13: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 106)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_external_data(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<106>(ptr)); } else goto handle_unusual; continue; // optional .opencv_onnx.TensorProto.DataLocation data_location = 14; case 14: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 112)) { uint64_t val = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr); CHK_(ptr); if (PROTOBUF_PREDICT_TRUE(::opencv_onnx::TensorProto_DataLocation_IsValid(val))) { _internal_set_data_location(static_cast<::opencv_onnx::TensorProto_DataLocation>(val)); } else { ::PROTOBUF_NAMESPACE_ID::internal::WriteVarint(14, val, mutable_unknown_fields()); } } else goto handle_unusual; continue; // repeated .opencv_onnx.StringStringEntryProto metadata_props = 16; case 16: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 130)) { ptr -= 2; do { ptr += 2; ptr = ctx->ParseMessage(_internal_add_metadata_props(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<130>(ptr)); } else goto handle_unusual; continue; default: goto handle_unusual; } // switch handle_unusual: if ((tag == 0) || ((tag & 7) == 4)) { CHK_(ptr); ctx->SetLastTag(tag); goto message_done; } ptr = UnknownFieldParse( tag, _internal_metadata_.mutable_unknown_fields(), ptr, ctx); CHK_(ptr != nullptr); } // while message_done: _has_bits_.Or(has_bits); return ptr; failure: ptr = nullptr; goto message_done; #undef CHK_ } uint8_t* TensorProto::_InternalSerialize( uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const { // @@protoc_insertion_point(serialize_to_array_start:opencv_onnx.TensorProto) uint32_t cached_has_bits = 0; (void) cached_has_bits; // repeated int64 dims = 1; for (int i = 0, n = this->_internal_dims_size(); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt64ToArray(1, this->_internal_dims(i), target); } cached_has_bits = _has_bits_[0]; // optional int32 data_type = 2; if (cached_has_bits & 0x00000010u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt32ToArray(2, this->_internal_data_type(), target); } // optional .opencv_onnx.TensorProto.Segment segment = 3; if (cached_has_bits & 0x00000008u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage( 3, _Internal::segment(this), target, stream); } // repeated float float_data = 4 [packed = true]; if (this->_internal_float_data_size() > 0) { target = stream->WriteFixedPacked(4, _internal_float_data(), target); } // repeated int32 int32_data = 5 [packed = true]; { int byte_size = _int32_data_cached_byte_size_.load(std::memory_order_relaxed); if (byte_size > 0) { target = stream->WriteInt32Packed( 5, _internal_int32_data(), byte_size, target); } } // repeated bytes string_data = 6; for (int i = 0, n = this->_internal_string_data_size(); i < n; i++) { const auto& s = this->_internal_string_data(i); target = stream->WriteBytes(6, s, target); } // repeated int64 int64_data = 7 [packed = true]; { int byte_size = _int64_data_cached_byte_size_.load(std::memory_order_relaxed); if (byte_size > 0) { target = stream->WriteInt64Packed( 7, _internal_int64_data(), byte_size, target); } } // optional string name = 8; if (cached_has_bits & 0x00000001u) { target = stream->WriteStringMaybeAliased( 8, this->_internal_name(), target); } // optional bytes raw_data = 9; if (cached_has_bits & 0x00000002u) { target = stream->WriteBytesMaybeAliased( 9, this->_internal_raw_data(), target); } // repeated double double_data = 10 [packed = true]; if (this->_internal_double_data_size() > 0) { target = stream->WriteFixedPacked(10, _internal_double_data(), target); } // repeated uint64 uint64_data = 11 [packed = true]; { int byte_size = _uint64_data_cached_byte_size_.load(std::memory_order_relaxed); if (byte_size > 0) { target = stream->WriteUInt64Packed( 11, _internal_uint64_data(), byte_size, target); } } // optional string doc_string = 12; if (cached_has_bits & 0x00000004u) { target = stream->WriteStringMaybeAliased( 12, this->_internal_doc_string(), target); } // repeated .opencv_onnx.StringStringEntryProto external_data = 13; for (unsigned int i = 0, n = static_cast(this->_internal_external_data_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(13, this->_internal_external_data(i), target, stream); } // optional .opencv_onnx.TensorProto.DataLocation data_location = 14; if (cached_has_bits & 0x00000020u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteEnumToArray( 14, this->_internal_data_location(), target); } // repeated .opencv_onnx.StringStringEntryProto metadata_props = 16; for (unsigned int i = 0, n = static_cast(this->_internal_metadata_props_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(16, this->_internal_metadata_props(i), target, stream); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { target = stream->WriteRaw(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(), static_cast(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target); } // @@protoc_insertion_point(serialize_to_array_end:opencv_onnx.TensorProto) return target; } size_t TensorProto::ByteSizeLong() const { // @@protoc_insertion_point(message_byte_size_start:opencv_onnx.TensorProto) size_t total_size = 0; uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; // repeated int64 dims = 1; { size_t data_size = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: Int64Size(this->dims_); total_size += 1 * ::PROTOBUF_NAMESPACE_ID::internal::FromIntSize(this->_internal_dims_size()); total_size += data_size; } // repeated float float_data = 4 [packed = true]; { unsigned int count = static_cast(this->_internal_float_data_size()); size_t data_size = 4UL * count; if (data_size > 0) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int32Size( static_cast(data_size)); } total_size += data_size; } // repeated int32 int32_data = 5 [packed = true]; { size_t data_size = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: Int32Size(this->int32_data_); if (data_size > 0) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int32Size( static_cast(data_size)); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(data_size); _int32_data_cached_byte_size_.store(cached_size, std::memory_order_relaxed); total_size += data_size; } // repeated bytes string_data = 6; total_size += 1 * ::PROTOBUF_NAMESPACE_ID::internal::FromIntSize(string_data_.size()); for (int i = 0, n = string_data_.size(); i < n; i++) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::BytesSize( string_data_.Get(i)); } // repeated int64 int64_data = 7 [packed = true]; { size_t data_size = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: Int64Size(this->int64_data_); if (data_size > 0) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int32Size( static_cast(data_size)); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(data_size); _int64_data_cached_byte_size_.store(cached_size, std::memory_order_relaxed); total_size += data_size; } // repeated double double_data = 10 [packed = true]; { unsigned int count = static_cast(this->_internal_double_data_size()); size_t data_size = 8UL * count; if (data_size > 0) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int32Size( static_cast(data_size)); } total_size += data_size; } // repeated uint64 uint64_data = 11 [packed = true]; { size_t data_size = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: UInt64Size(this->uint64_data_); if (data_size > 0) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int32Size( static_cast(data_size)); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(data_size); _uint64_data_cached_byte_size_.store(cached_size, std::memory_order_relaxed); total_size += data_size; } // repeated .opencv_onnx.StringStringEntryProto external_data = 13; total_size += 1UL * this->_internal_external_data_size(); for (const auto& msg : this->external_data_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } // repeated .opencv_onnx.StringStringEntryProto metadata_props = 16; total_size += 2UL * this->_internal_metadata_props_size(); for (const auto& msg : this->metadata_props_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x0000003fu) { // optional string name = 8; if (cached_has_bits & 0x00000001u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_name()); } // optional bytes raw_data = 9; if (cached_has_bits & 0x00000002u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::BytesSize( this->_internal_raw_data()); } // optional string doc_string = 12; if (cached_has_bits & 0x00000004u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_doc_string()); } // optional .opencv_onnx.TensorProto.Segment segment = 3; if (cached_has_bits & 0x00000008u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize( *segment_); } // optional int32 data_type = 2; if (cached_has_bits & 0x00000010u) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int32SizePlusOne(this->_internal_data_type()); } // optional .opencv_onnx.TensorProto.DataLocation data_location = 14; if (cached_has_bits & 0x00000020u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::EnumSize(this->_internal_data_location()); } } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { total_size += _internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size(); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size); SetCachedSize(cached_size); return total_size; } void TensorProto::CheckTypeAndMergeFrom( const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) { MergeFrom(*::PROTOBUF_NAMESPACE_ID::internal::DownCast( &from)); } void TensorProto::MergeFrom(const TensorProto& from) { // @@protoc_insertion_point(class_specific_merge_from_start:opencv_onnx.TensorProto) GOOGLE_DCHECK_NE(&from, this); uint32_t cached_has_bits = 0; (void) cached_has_bits; dims_.MergeFrom(from.dims_); float_data_.MergeFrom(from.float_data_); int32_data_.MergeFrom(from.int32_data_); string_data_.MergeFrom(from.string_data_); int64_data_.MergeFrom(from.int64_data_); double_data_.MergeFrom(from.double_data_); uint64_data_.MergeFrom(from.uint64_data_); external_data_.MergeFrom(from.external_data_); metadata_props_.MergeFrom(from.metadata_props_); cached_has_bits = from._has_bits_[0]; if (cached_has_bits & 0x0000003fu) { if (cached_has_bits & 0x00000001u) { _internal_set_name(from._internal_name()); } if (cached_has_bits & 0x00000002u) { _internal_set_raw_data(from._internal_raw_data()); } if (cached_has_bits & 0x00000004u) { _internal_set_doc_string(from._internal_doc_string()); } if (cached_has_bits & 0x00000008u) { _internal_mutable_segment()->::opencv_onnx::TensorProto_Segment::MergeFrom(from._internal_segment()); } if (cached_has_bits & 0x00000010u) { data_type_ = from.data_type_; } if (cached_has_bits & 0x00000020u) { data_location_ = from.data_location_; } _has_bits_[0] |= cached_has_bits; } _internal_metadata_.MergeFrom(from._internal_metadata_); } void TensorProto::CopyFrom(const TensorProto& from) { // @@protoc_insertion_point(class_specific_copy_from_start:opencv_onnx.TensorProto) if (&from == this) return; Clear(); MergeFrom(from); } bool TensorProto::IsInitialized() const { return true; } void TensorProto::InternalSwap(TensorProto* other) { using std::swap; auto* lhs_arena = GetArenaForAllocation(); auto* rhs_arena = other->GetArenaForAllocation(); _internal_metadata_.InternalSwap(&other->_internal_metadata_); swap(_has_bits_[0], other->_has_bits_[0]); dims_.InternalSwap(&other->dims_); float_data_.InternalSwap(&other->float_data_); int32_data_.InternalSwap(&other->int32_data_); string_data_.InternalSwap(&other->string_data_); int64_data_.InternalSwap(&other->int64_data_); double_data_.InternalSwap(&other->double_data_); uint64_data_.InternalSwap(&other->uint64_data_); external_data_.InternalSwap(&other->external_data_); metadata_props_.InternalSwap(&other->metadata_props_); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &name_, lhs_arena, &other->name_, rhs_arena ); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &raw_data_, lhs_arena, &other->raw_data_, rhs_arena ); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &doc_string_, lhs_arena, &other->doc_string_, rhs_arena ); ::PROTOBUF_NAMESPACE_ID::internal::memswap< PROTOBUF_FIELD_OFFSET(TensorProto, data_location_) + sizeof(TensorProto::data_location_) - PROTOBUF_FIELD_OFFSET(TensorProto, segment_)>( reinterpret_cast(&segment_), reinterpret_cast(&other->segment_)); } std::string TensorProto::GetTypeName() const { return "opencv_onnx.TensorProto"; } // =================================================================== class SparseTensorProto::_Internal { public: using HasBits = decltype(std::declval()._has_bits_); static const ::opencv_onnx::TensorProto& values(const SparseTensorProto* msg); static void set_has_values(HasBits* has_bits) { (*has_bits)[0] |= 1u; } static const ::opencv_onnx::TensorProto& indices(const SparseTensorProto* msg); static void set_has_indices(HasBits* has_bits) { (*has_bits)[0] |= 2u; } }; const ::opencv_onnx::TensorProto& SparseTensorProto::_Internal::values(const SparseTensorProto* msg) { return *msg->values_; } const ::opencv_onnx::TensorProto& SparseTensorProto::_Internal::indices(const SparseTensorProto* msg) { return *msg->indices_; } SparseTensorProto::SparseTensorProto(::PROTOBUF_NAMESPACE_ID::Arena* arena, bool is_message_owned) : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena, is_message_owned), dims_(arena) { SharedCtor(); if (!is_message_owned) { RegisterArenaDtor(arena); } // @@protoc_insertion_point(arena_constructor:opencv_onnx.SparseTensorProto) } SparseTensorProto::SparseTensorProto(const SparseTensorProto& from) : ::PROTOBUF_NAMESPACE_ID::MessageLite(), _has_bits_(from._has_bits_), dims_(from.dims_) { _internal_metadata_.MergeFrom(from._internal_metadata_); if (from._internal_has_values()) { values_ = new ::opencv_onnx::TensorProto(*from.values_); } else { values_ = nullptr; } if (from._internal_has_indices()) { indices_ = new ::opencv_onnx::TensorProto(*from.indices_); } else { indices_ = nullptr; } // @@protoc_insertion_point(copy_constructor:opencv_onnx.SparseTensorProto) } inline void SparseTensorProto::SharedCtor() { ::memset(reinterpret_cast(this) + static_cast( reinterpret_cast(&values_) - reinterpret_cast(this)), 0, static_cast(reinterpret_cast(&indices_) - reinterpret_cast(&values_)) + sizeof(indices_)); } SparseTensorProto::~SparseTensorProto() { // @@protoc_insertion_point(destructor:opencv_onnx.SparseTensorProto) if (GetArenaForAllocation() != nullptr) return; SharedDtor(); _internal_metadata_.Delete(); } inline void SparseTensorProto::SharedDtor() { GOOGLE_DCHECK(GetArenaForAllocation() == nullptr); if (this != internal_default_instance()) delete values_; if (this != internal_default_instance()) delete indices_; } void SparseTensorProto::ArenaDtor(void* object) { SparseTensorProto* _this = reinterpret_cast< SparseTensorProto* >(object); (void)_this; } void SparseTensorProto::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) { } void SparseTensorProto::SetCachedSize(int size) const { _cached_size_.Set(size); } void SparseTensorProto::Clear() { // @@protoc_insertion_point(message_clear_start:opencv_onnx.SparseTensorProto) uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; dims_.Clear(); cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000003u) { if (cached_has_bits & 0x00000001u) { GOOGLE_DCHECK(values_ != nullptr); values_->Clear(); } if (cached_has_bits & 0x00000002u) { GOOGLE_DCHECK(indices_ != nullptr); indices_->Clear(); } } _has_bits_.Clear(); _internal_metadata_.Clear(); } const char* SparseTensorProto::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) { #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure _Internal::HasBits has_bits{}; while (!ctx->Done(&ptr)) { uint32_t tag; ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag); switch (tag >> 3) { // optional .opencv_onnx.TensorProto values = 1; case 1: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 10)) { ptr = ctx->ParseMessage(_internal_mutable_values(), ptr); CHK_(ptr); } else goto handle_unusual; continue; // optional .opencv_onnx.TensorProto indices = 2; case 2: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 18)) { ptr = ctx->ParseMessage(_internal_mutable_indices(), ptr); CHK_(ptr); } else goto handle_unusual; continue; // repeated int64 dims = 3; case 3: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 24)) { ptr -= 1; do { ptr += 1; _internal_add_dims(::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr)); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<24>(ptr)); } else if (static_cast(tag) == 26) { ptr = ::PROTOBUF_NAMESPACE_ID::internal::PackedInt64Parser(_internal_mutable_dims(), ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; default: goto handle_unusual; } // switch handle_unusual: if ((tag == 0) || ((tag & 7) == 4)) { CHK_(ptr); ctx->SetLastTag(tag); goto message_done; } ptr = UnknownFieldParse( tag, _internal_metadata_.mutable_unknown_fields(), ptr, ctx); CHK_(ptr != nullptr); } // while message_done: _has_bits_.Or(has_bits); return ptr; failure: ptr = nullptr; goto message_done; #undef CHK_ } uint8_t* SparseTensorProto::_InternalSerialize( uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const { // @@protoc_insertion_point(serialize_to_array_start:opencv_onnx.SparseTensorProto) uint32_t cached_has_bits = 0; (void) cached_has_bits; cached_has_bits = _has_bits_[0]; // optional .opencv_onnx.TensorProto values = 1; if (cached_has_bits & 0x00000001u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage( 1, _Internal::values(this), target, stream); } // optional .opencv_onnx.TensorProto indices = 2; if (cached_has_bits & 0x00000002u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage( 2, _Internal::indices(this), target, stream); } // repeated int64 dims = 3; for (int i = 0, n = this->_internal_dims_size(); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt64ToArray(3, this->_internal_dims(i), target); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { target = stream->WriteRaw(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(), static_cast(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target); } // @@protoc_insertion_point(serialize_to_array_end:opencv_onnx.SparseTensorProto) return target; } size_t SparseTensorProto::ByteSizeLong() const { // @@protoc_insertion_point(message_byte_size_start:opencv_onnx.SparseTensorProto) size_t total_size = 0; uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; // repeated int64 dims = 3; { size_t data_size = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: Int64Size(this->dims_); total_size += 1 * ::PROTOBUF_NAMESPACE_ID::internal::FromIntSize(this->_internal_dims_size()); total_size += data_size; } cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000003u) { // optional .opencv_onnx.TensorProto values = 1; if (cached_has_bits & 0x00000001u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize( *values_); } // optional .opencv_onnx.TensorProto indices = 2; if (cached_has_bits & 0x00000002u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize( *indices_); } } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { total_size += _internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size(); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size); SetCachedSize(cached_size); return total_size; } void SparseTensorProto::CheckTypeAndMergeFrom( const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) { MergeFrom(*::PROTOBUF_NAMESPACE_ID::internal::DownCast( &from)); } void SparseTensorProto::MergeFrom(const SparseTensorProto& from) { // @@protoc_insertion_point(class_specific_merge_from_start:opencv_onnx.SparseTensorProto) GOOGLE_DCHECK_NE(&from, this); uint32_t cached_has_bits = 0; (void) cached_has_bits; dims_.MergeFrom(from.dims_); cached_has_bits = from._has_bits_[0]; if (cached_has_bits & 0x00000003u) { if (cached_has_bits & 0x00000001u) { _internal_mutable_values()->::opencv_onnx::TensorProto::MergeFrom(from._internal_values()); } if (cached_has_bits & 0x00000002u) { _internal_mutable_indices()->::opencv_onnx::TensorProto::MergeFrom(from._internal_indices()); } } _internal_metadata_.MergeFrom(from._internal_metadata_); } void SparseTensorProto::CopyFrom(const SparseTensorProto& from) { // @@protoc_insertion_point(class_specific_copy_from_start:opencv_onnx.SparseTensorProto) if (&from == this) return; Clear(); MergeFrom(from); } bool SparseTensorProto::IsInitialized() const { return true; } void SparseTensorProto::InternalSwap(SparseTensorProto* other) { using std::swap; _internal_metadata_.InternalSwap(&other->_internal_metadata_); swap(_has_bits_[0], other->_has_bits_[0]); dims_.InternalSwap(&other->dims_); ::PROTOBUF_NAMESPACE_ID::internal::memswap< PROTOBUF_FIELD_OFFSET(SparseTensorProto, indices_) + sizeof(SparseTensorProto::indices_) - PROTOBUF_FIELD_OFFSET(SparseTensorProto, values_)>( reinterpret_cast(&values_), reinterpret_cast(&other->values_)); } std::string SparseTensorProto::GetTypeName() const { return "opencv_onnx.SparseTensorProto"; } // =================================================================== class TensorShapeProto_Dimension::_Internal { public: using HasBits = decltype(std::declval()._has_bits_); static void set_has_denotation(HasBits* has_bits) { (*has_bits)[0] |= 1u; } }; TensorShapeProto_Dimension::TensorShapeProto_Dimension(::PROTOBUF_NAMESPACE_ID::Arena* arena, bool is_message_owned) : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena, is_message_owned) { SharedCtor(); if (!is_message_owned) { RegisterArenaDtor(arena); } // @@protoc_insertion_point(arena_constructor:opencv_onnx.TensorShapeProto.Dimension) } TensorShapeProto_Dimension::TensorShapeProto_Dimension(const TensorShapeProto_Dimension& from) : ::PROTOBUF_NAMESPACE_ID::MessageLite(), _has_bits_(from._has_bits_) { _internal_metadata_.MergeFrom(from._internal_metadata_); denotation_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING denotation_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_denotation()) { denotation_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_denotation(), GetArenaForAllocation()); } clear_has_value(); switch (from.value_case()) { case kDimValue: { _internal_set_dim_value(from._internal_dim_value()); break; } case kDimParam: { _internal_set_dim_param(from._internal_dim_param()); break; } case VALUE_NOT_SET: { break; } } // @@protoc_insertion_point(copy_constructor:opencv_onnx.TensorShapeProto.Dimension) } inline void TensorShapeProto_Dimension::SharedCtor() { denotation_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING denotation_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING clear_has_value(); } TensorShapeProto_Dimension::~TensorShapeProto_Dimension() { // @@protoc_insertion_point(destructor:opencv_onnx.TensorShapeProto.Dimension) if (GetArenaForAllocation() != nullptr) return; SharedDtor(); _internal_metadata_.Delete(); } inline void TensorShapeProto_Dimension::SharedDtor() { GOOGLE_DCHECK(GetArenaForAllocation() == nullptr); denotation_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); if (has_value()) { clear_value(); } } void TensorShapeProto_Dimension::ArenaDtor(void* object) { TensorShapeProto_Dimension* _this = reinterpret_cast< TensorShapeProto_Dimension* >(object); (void)_this; } void TensorShapeProto_Dimension::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) { } void TensorShapeProto_Dimension::SetCachedSize(int size) const { _cached_size_.Set(size); } void TensorShapeProto_Dimension::clear_value() { // @@protoc_insertion_point(one_of_clear_start:opencv_onnx.TensorShapeProto.Dimension) switch (value_case()) { case kDimValue: { // No need to clear break; } case kDimParam: { value_.dim_param_.Destroy(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, GetArenaForAllocation()); break; } case VALUE_NOT_SET: { break; } } _oneof_case_[0] = VALUE_NOT_SET; } void TensorShapeProto_Dimension::Clear() { // @@protoc_insertion_point(message_clear_start:opencv_onnx.TensorShapeProto.Dimension) uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000001u) { denotation_.ClearNonDefaultToEmpty(); } clear_value(); _has_bits_.Clear(); _internal_metadata_.Clear(); } const char* TensorShapeProto_Dimension::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) { #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure _Internal::HasBits has_bits{}; while (!ctx->Done(&ptr)) { uint32_t tag; ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag); switch (tag >> 3) { // int64 dim_value = 1; case 1: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 8)) { _internal_set_dim_value(::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr)); CHK_(ptr); } else goto handle_unusual; continue; // string dim_param = 2; case 2: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 18)) { auto str = _internal_mutable_dim_param(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // optional string denotation = 3; case 3: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 26)) { auto str = _internal_mutable_denotation(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; default: goto handle_unusual; } // switch handle_unusual: if ((tag == 0) || ((tag & 7) == 4)) { CHK_(ptr); ctx->SetLastTag(tag); goto message_done; } ptr = UnknownFieldParse( tag, _internal_metadata_.mutable_unknown_fields(), ptr, ctx); CHK_(ptr != nullptr); } // while message_done: _has_bits_.Or(has_bits); return ptr; failure: ptr = nullptr; goto message_done; #undef CHK_ } uint8_t* TensorShapeProto_Dimension::_InternalSerialize( uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const { // @@protoc_insertion_point(serialize_to_array_start:opencv_onnx.TensorShapeProto.Dimension) uint32_t cached_has_bits = 0; (void) cached_has_bits; switch (value_case()) { case kDimValue: { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt64ToArray(1, this->_internal_dim_value(), target); break; } case kDimParam: { target = stream->WriteStringMaybeAliased( 2, this->_internal_dim_param(), target); break; } default: ; } cached_has_bits = _has_bits_[0]; // optional string denotation = 3; if (cached_has_bits & 0x00000001u) { target = stream->WriteStringMaybeAliased( 3, this->_internal_denotation(), target); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { target = stream->WriteRaw(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(), static_cast(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target); } // @@protoc_insertion_point(serialize_to_array_end:opencv_onnx.TensorShapeProto.Dimension) return target; } size_t TensorShapeProto_Dimension::ByteSizeLong() const { // @@protoc_insertion_point(message_byte_size_start:opencv_onnx.TensorShapeProto.Dimension) size_t total_size = 0; uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; // optional string denotation = 3; cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000001u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_denotation()); } switch (value_case()) { // int64 dim_value = 1; case kDimValue: { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int64SizePlusOne(this->_internal_dim_value()); break; } // string dim_param = 2; case kDimParam: { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_dim_param()); break; } case VALUE_NOT_SET: { break; } } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { total_size += _internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size(); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size); SetCachedSize(cached_size); return total_size; } void TensorShapeProto_Dimension::CheckTypeAndMergeFrom( const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) { MergeFrom(*::PROTOBUF_NAMESPACE_ID::internal::DownCast( &from)); } void TensorShapeProto_Dimension::MergeFrom(const TensorShapeProto_Dimension& from) { // @@protoc_insertion_point(class_specific_merge_from_start:opencv_onnx.TensorShapeProto.Dimension) GOOGLE_DCHECK_NE(&from, this); uint32_t cached_has_bits = 0; (void) cached_has_bits; if (from._internal_has_denotation()) { _internal_set_denotation(from._internal_denotation()); } switch (from.value_case()) { case kDimValue: { _internal_set_dim_value(from._internal_dim_value()); break; } case kDimParam: { _internal_set_dim_param(from._internal_dim_param()); break; } case VALUE_NOT_SET: { break; } } _internal_metadata_.MergeFrom(from._internal_metadata_); } void TensorShapeProto_Dimension::CopyFrom(const TensorShapeProto_Dimension& from) { // @@protoc_insertion_point(class_specific_copy_from_start:opencv_onnx.TensorShapeProto.Dimension) if (&from == this) return; Clear(); MergeFrom(from); } bool TensorShapeProto_Dimension::IsInitialized() const { return true; } void TensorShapeProto_Dimension::InternalSwap(TensorShapeProto_Dimension* other) { using std::swap; auto* lhs_arena = GetArenaForAllocation(); auto* rhs_arena = other->GetArenaForAllocation(); _internal_metadata_.InternalSwap(&other->_internal_metadata_); swap(_has_bits_[0], other->_has_bits_[0]); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &denotation_, lhs_arena, &other->denotation_, rhs_arena ); swap(value_, other->value_); swap(_oneof_case_[0], other->_oneof_case_[0]); } std::string TensorShapeProto_Dimension::GetTypeName() const { return "opencv_onnx.TensorShapeProto.Dimension"; } // =================================================================== class TensorShapeProto::_Internal { public: }; TensorShapeProto::TensorShapeProto(::PROTOBUF_NAMESPACE_ID::Arena* arena, bool is_message_owned) : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena, is_message_owned), dim_(arena) { SharedCtor(); if (!is_message_owned) { RegisterArenaDtor(arena); } // @@protoc_insertion_point(arena_constructor:opencv_onnx.TensorShapeProto) } TensorShapeProto::TensorShapeProto(const TensorShapeProto& from) : ::PROTOBUF_NAMESPACE_ID::MessageLite(), dim_(from.dim_) { _internal_metadata_.MergeFrom(from._internal_metadata_); // @@protoc_insertion_point(copy_constructor:opencv_onnx.TensorShapeProto) } inline void TensorShapeProto::SharedCtor() { } TensorShapeProto::~TensorShapeProto() { // @@protoc_insertion_point(destructor:opencv_onnx.TensorShapeProto) if (GetArenaForAllocation() != nullptr) return; SharedDtor(); _internal_metadata_.Delete(); } inline void TensorShapeProto::SharedDtor() { GOOGLE_DCHECK(GetArenaForAllocation() == nullptr); } void TensorShapeProto::ArenaDtor(void* object) { TensorShapeProto* _this = reinterpret_cast< TensorShapeProto* >(object); (void)_this; } void TensorShapeProto::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) { } void TensorShapeProto::SetCachedSize(int size) const { _cached_size_.Set(size); } void TensorShapeProto::Clear() { // @@protoc_insertion_point(message_clear_start:opencv_onnx.TensorShapeProto) uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; dim_.Clear(); _internal_metadata_.Clear(); } const char* TensorShapeProto::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) { #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure while (!ctx->Done(&ptr)) { uint32_t tag; ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag); switch (tag >> 3) { // repeated .opencv_onnx.TensorShapeProto.Dimension dim = 1; case 1: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 10)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_dim(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<10>(ptr)); } else goto handle_unusual; continue; default: goto handle_unusual; } // switch handle_unusual: if ((tag == 0) || ((tag & 7) == 4)) { CHK_(ptr); ctx->SetLastTag(tag); goto message_done; } ptr = UnknownFieldParse( tag, _internal_metadata_.mutable_unknown_fields(), ptr, ctx); CHK_(ptr != nullptr); } // while message_done: return ptr; failure: ptr = nullptr; goto message_done; #undef CHK_ } uint8_t* TensorShapeProto::_InternalSerialize( uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const { // @@protoc_insertion_point(serialize_to_array_start:opencv_onnx.TensorShapeProto) uint32_t cached_has_bits = 0; (void) cached_has_bits; // repeated .opencv_onnx.TensorShapeProto.Dimension dim = 1; for (unsigned int i = 0, n = static_cast(this->_internal_dim_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(1, this->_internal_dim(i), target, stream); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { target = stream->WriteRaw(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(), static_cast(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target); } // @@protoc_insertion_point(serialize_to_array_end:opencv_onnx.TensorShapeProto) return target; } size_t TensorShapeProto::ByteSizeLong() const { // @@protoc_insertion_point(message_byte_size_start:opencv_onnx.TensorShapeProto) size_t total_size = 0; uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; // repeated .opencv_onnx.TensorShapeProto.Dimension dim = 1; total_size += 1UL * this->_internal_dim_size(); for (const auto& msg : this->dim_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { total_size += _internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size(); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size); SetCachedSize(cached_size); return total_size; } void TensorShapeProto::CheckTypeAndMergeFrom( const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) { MergeFrom(*::PROTOBUF_NAMESPACE_ID::internal::DownCast( &from)); } void TensorShapeProto::MergeFrom(const TensorShapeProto& from) { // @@protoc_insertion_point(class_specific_merge_from_start:opencv_onnx.TensorShapeProto) GOOGLE_DCHECK_NE(&from, this); uint32_t cached_has_bits = 0; (void) cached_has_bits; dim_.MergeFrom(from.dim_); _internal_metadata_.MergeFrom(from._internal_metadata_); } void TensorShapeProto::CopyFrom(const TensorShapeProto& from) { // @@protoc_insertion_point(class_specific_copy_from_start:opencv_onnx.TensorShapeProto) if (&from == this) return; Clear(); MergeFrom(from); } bool TensorShapeProto::IsInitialized() const { return true; } void TensorShapeProto::InternalSwap(TensorShapeProto* other) { using std::swap; _internal_metadata_.InternalSwap(&other->_internal_metadata_); dim_.InternalSwap(&other->dim_); } std::string TensorShapeProto::GetTypeName() const { return "opencv_onnx.TensorShapeProto"; } // =================================================================== class TypeProto_Tensor::_Internal { public: using HasBits = decltype(std::declval()._has_bits_); static void set_has_elem_type(HasBits* has_bits) { (*has_bits)[0] |= 2u; } static const ::opencv_onnx::TensorShapeProto& shape(const TypeProto_Tensor* msg); static void set_has_shape(HasBits* has_bits) { (*has_bits)[0] |= 1u; } }; const ::opencv_onnx::TensorShapeProto& TypeProto_Tensor::_Internal::shape(const TypeProto_Tensor* msg) { return *msg->shape_; } TypeProto_Tensor::TypeProto_Tensor(::PROTOBUF_NAMESPACE_ID::Arena* arena, bool is_message_owned) : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena, is_message_owned) { SharedCtor(); if (!is_message_owned) { RegisterArenaDtor(arena); } // @@protoc_insertion_point(arena_constructor:opencv_onnx.TypeProto.Tensor) } TypeProto_Tensor::TypeProto_Tensor(const TypeProto_Tensor& from) : ::PROTOBUF_NAMESPACE_ID::MessageLite(), _has_bits_(from._has_bits_) { _internal_metadata_.MergeFrom(from._internal_metadata_); if (from._internal_has_shape()) { shape_ = new ::opencv_onnx::TensorShapeProto(*from.shape_); } else { shape_ = nullptr; } elem_type_ = from.elem_type_; // @@protoc_insertion_point(copy_constructor:opencv_onnx.TypeProto.Tensor) } inline void TypeProto_Tensor::SharedCtor() { ::memset(reinterpret_cast(this) + static_cast( reinterpret_cast(&shape_) - reinterpret_cast(this)), 0, static_cast(reinterpret_cast(&elem_type_) - reinterpret_cast(&shape_)) + sizeof(elem_type_)); } TypeProto_Tensor::~TypeProto_Tensor() { // @@protoc_insertion_point(destructor:opencv_onnx.TypeProto.Tensor) if (GetArenaForAllocation() != nullptr) return; SharedDtor(); _internal_metadata_.Delete(); } inline void TypeProto_Tensor::SharedDtor() { GOOGLE_DCHECK(GetArenaForAllocation() == nullptr); if (this != internal_default_instance()) delete shape_; } void TypeProto_Tensor::ArenaDtor(void* object) { TypeProto_Tensor* _this = reinterpret_cast< TypeProto_Tensor* >(object); (void)_this; } void TypeProto_Tensor::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) { } void TypeProto_Tensor::SetCachedSize(int size) const { _cached_size_.Set(size); } void TypeProto_Tensor::Clear() { // @@protoc_insertion_point(message_clear_start:opencv_onnx.TypeProto.Tensor) uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000001u) { GOOGLE_DCHECK(shape_ != nullptr); shape_->Clear(); } elem_type_ = 0; _has_bits_.Clear(); _internal_metadata_.Clear(); } const char* TypeProto_Tensor::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) { #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure _Internal::HasBits has_bits{}; while (!ctx->Done(&ptr)) { uint32_t tag; ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag); switch (tag >> 3) { // optional int32 elem_type = 1; case 1: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 8)) { _Internal::set_has_elem_type(&has_bits); elem_type_ = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint32(&ptr); CHK_(ptr); } else goto handle_unusual; continue; // optional .opencv_onnx.TensorShapeProto shape = 2; case 2: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 18)) { ptr = ctx->ParseMessage(_internal_mutable_shape(), ptr); CHK_(ptr); } else goto handle_unusual; continue; default: goto handle_unusual; } // switch handle_unusual: if ((tag == 0) || ((tag & 7) == 4)) { CHK_(ptr); ctx->SetLastTag(tag); goto message_done; } ptr = UnknownFieldParse( tag, _internal_metadata_.mutable_unknown_fields(), ptr, ctx); CHK_(ptr != nullptr); } // while message_done: _has_bits_.Or(has_bits); return ptr; failure: ptr = nullptr; goto message_done; #undef CHK_ } uint8_t* TypeProto_Tensor::_InternalSerialize( uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const { // @@protoc_insertion_point(serialize_to_array_start:opencv_onnx.TypeProto.Tensor) uint32_t cached_has_bits = 0; (void) cached_has_bits; cached_has_bits = _has_bits_[0]; // optional int32 elem_type = 1; if (cached_has_bits & 0x00000002u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt32ToArray(1, this->_internal_elem_type(), target); } // optional .opencv_onnx.TensorShapeProto shape = 2; if (cached_has_bits & 0x00000001u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage( 2, _Internal::shape(this), target, stream); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { target = stream->WriteRaw(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(), static_cast(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target); } // @@protoc_insertion_point(serialize_to_array_end:opencv_onnx.TypeProto.Tensor) return target; } size_t TypeProto_Tensor::ByteSizeLong() const { // @@protoc_insertion_point(message_byte_size_start:opencv_onnx.TypeProto.Tensor) size_t total_size = 0; uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000003u) { // optional .opencv_onnx.TensorShapeProto shape = 2; if (cached_has_bits & 0x00000001u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize( *shape_); } // optional int32 elem_type = 1; if (cached_has_bits & 0x00000002u) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int32SizePlusOne(this->_internal_elem_type()); } } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { total_size += _internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size(); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size); SetCachedSize(cached_size); return total_size; } void TypeProto_Tensor::CheckTypeAndMergeFrom( const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) { MergeFrom(*::PROTOBUF_NAMESPACE_ID::internal::DownCast( &from)); } void TypeProto_Tensor::MergeFrom(const TypeProto_Tensor& from) { // @@protoc_insertion_point(class_specific_merge_from_start:opencv_onnx.TypeProto.Tensor) GOOGLE_DCHECK_NE(&from, this); uint32_t cached_has_bits = 0; (void) cached_has_bits; cached_has_bits = from._has_bits_[0]; if (cached_has_bits & 0x00000003u) { if (cached_has_bits & 0x00000001u) { _internal_mutable_shape()->::opencv_onnx::TensorShapeProto::MergeFrom(from._internal_shape()); } if (cached_has_bits & 0x00000002u) { elem_type_ = from.elem_type_; } _has_bits_[0] |= cached_has_bits; } _internal_metadata_.MergeFrom(from._internal_metadata_); } void TypeProto_Tensor::CopyFrom(const TypeProto_Tensor& from) { // @@protoc_insertion_point(class_specific_copy_from_start:opencv_onnx.TypeProto.Tensor) if (&from == this) return; Clear(); MergeFrom(from); } bool TypeProto_Tensor::IsInitialized() const { return true; } void TypeProto_Tensor::InternalSwap(TypeProto_Tensor* other) { using std::swap; _internal_metadata_.InternalSwap(&other->_internal_metadata_); swap(_has_bits_[0], other->_has_bits_[0]); ::PROTOBUF_NAMESPACE_ID::internal::memswap< PROTOBUF_FIELD_OFFSET(TypeProto_Tensor, elem_type_) + sizeof(TypeProto_Tensor::elem_type_) - PROTOBUF_FIELD_OFFSET(TypeProto_Tensor, shape_)>( reinterpret_cast(&shape_), reinterpret_cast(&other->shape_)); } std::string TypeProto_Tensor::GetTypeName() const { return "opencv_onnx.TypeProto.Tensor"; } // =================================================================== class TypeProto_Sequence::_Internal { public: using HasBits = decltype(std::declval()._has_bits_); static const ::opencv_onnx::TypeProto& elem_type(const TypeProto_Sequence* msg); static void set_has_elem_type(HasBits* has_bits) { (*has_bits)[0] |= 1u; } }; const ::opencv_onnx::TypeProto& TypeProto_Sequence::_Internal::elem_type(const TypeProto_Sequence* msg) { return *msg->elem_type_; } TypeProto_Sequence::TypeProto_Sequence(::PROTOBUF_NAMESPACE_ID::Arena* arena, bool is_message_owned) : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena, is_message_owned) { SharedCtor(); if (!is_message_owned) { RegisterArenaDtor(arena); } // @@protoc_insertion_point(arena_constructor:opencv_onnx.TypeProto.Sequence) } TypeProto_Sequence::TypeProto_Sequence(const TypeProto_Sequence& from) : ::PROTOBUF_NAMESPACE_ID::MessageLite(), _has_bits_(from._has_bits_) { _internal_metadata_.MergeFrom(from._internal_metadata_); if (from._internal_has_elem_type()) { elem_type_ = new ::opencv_onnx::TypeProto(*from.elem_type_); } else { elem_type_ = nullptr; } // @@protoc_insertion_point(copy_constructor:opencv_onnx.TypeProto.Sequence) } inline void TypeProto_Sequence::SharedCtor() { elem_type_ = nullptr; } TypeProto_Sequence::~TypeProto_Sequence() { // @@protoc_insertion_point(destructor:opencv_onnx.TypeProto.Sequence) if (GetArenaForAllocation() != nullptr) return; SharedDtor(); _internal_metadata_.Delete(); } inline void TypeProto_Sequence::SharedDtor() { GOOGLE_DCHECK(GetArenaForAllocation() == nullptr); if (this != internal_default_instance()) delete elem_type_; } void TypeProto_Sequence::ArenaDtor(void* object) { TypeProto_Sequence* _this = reinterpret_cast< TypeProto_Sequence* >(object); (void)_this; } void TypeProto_Sequence::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) { } void TypeProto_Sequence::SetCachedSize(int size) const { _cached_size_.Set(size); } void TypeProto_Sequence::Clear() { // @@protoc_insertion_point(message_clear_start:opencv_onnx.TypeProto.Sequence) uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000001u) { GOOGLE_DCHECK(elem_type_ != nullptr); elem_type_->Clear(); } _has_bits_.Clear(); _internal_metadata_.Clear(); } const char* TypeProto_Sequence::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) { #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure _Internal::HasBits has_bits{}; while (!ctx->Done(&ptr)) { uint32_t tag; ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag); switch (tag >> 3) { // optional .opencv_onnx.TypeProto elem_type = 1; case 1: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 10)) { ptr = ctx->ParseMessage(_internal_mutable_elem_type(), ptr); CHK_(ptr); } else goto handle_unusual; continue; default: goto handle_unusual; } // switch handle_unusual: if ((tag == 0) || ((tag & 7) == 4)) { CHK_(ptr); ctx->SetLastTag(tag); goto message_done; } ptr = UnknownFieldParse( tag, _internal_metadata_.mutable_unknown_fields(), ptr, ctx); CHK_(ptr != nullptr); } // while message_done: _has_bits_.Or(has_bits); return ptr; failure: ptr = nullptr; goto message_done; #undef CHK_ } uint8_t* TypeProto_Sequence::_InternalSerialize( uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const { // @@protoc_insertion_point(serialize_to_array_start:opencv_onnx.TypeProto.Sequence) uint32_t cached_has_bits = 0; (void) cached_has_bits; cached_has_bits = _has_bits_[0]; // optional .opencv_onnx.TypeProto elem_type = 1; if (cached_has_bits & 0x00000001u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage( 1, _Internal::elem_type(this), target, stream); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { target = stream->WriteRaw(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(), static_cast(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target); } // @@protoc_insertion_point(serialize_to_array_end:opencv_onnx.TypeProto.Sequence) return target; } size_t TypeProto_Sequence::ByteSizeLong() const { // @@protoc_insertion_point(message_byte_size_start:opencv_onnx.TypeProto.Sequence) size_t total_size = 0; uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; // optional .opencv_onnx.TypeProto elem_type = 1; cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000001u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize( *elem_type_); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { total_size += _internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size(); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size); SetCachedSize(cached_size); return total_size; } void TypeProto_Sequence::CheckTypeAndMergeFrom( const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) { MergeFrom(*::PROTOBUF_NAMESPACE_ID::internal::DownCast( &from)); } void TypeProto_Sequence::MergeFrom(const TypeProto_Sequence& from) { // @@protoc_insertion_point(class_specific_merge_from_start:opencv_onnx.TypeProto.Sequence) GOOGLE_DCHECK_NE(&from, this); uint32_t cached_has_bits = 0; (void) cached_has_bits; if (from._internal_has_elem_type()) { _internal_mutable_elem_type()->::opencv_onnx::TypeProto::MergeFrom(from._internal_elem_type()); } _internal_metadata_.MergeFrom(from._internal_metadata_); } void TypeProto_Sequence::CopyFrom(const TypeProto_Sequence& from) { // @@protoc_insertion_point(class_specific_copy_from_start:opencv_onnx.TypeProto.Sequence) if (&from == this) return; Clear(); MergeFrom(from); } bool TypeProto_Sequence::IsInitialized() const { return true; } void TypeProto_Sequence::InternalSwap(TypeProto_Sequence* other) { using std::swap; _internal_metadata_.InternalSwap(&other->_internal_metadata_); swap(_has_bits_[0], other->_has_bits_[0]); swap(elem_type_, other->elem_type_); } std::string TypeProto_Sequence::GetTypeName() const { return "opencv_onnx.TypeProto.Sequence"; } // =================================================================== class TypeProto_Map::_Internal { public: using HasBits = decltype(std::declval()._has_bits_); static void set_has_key_type(HasBits* has_bits) { (*has_bits)[0] |= 2u; } static const ::opencv_onnx::TypeProto& value_type(const TypeProto_Map* msg); static void set_has_value_type(HasBits* has_bits) { (*has_bits)[0] |= 1u; } }; const ::opencv_onnx::TypeProto& TypeProto_Map::_Internal::value_type(const TypeProto_Map* msg) { return *msg->value_type_; } TypeProto_Map::TypeProto_Map(::PROTOBUF_NAMESPACE_ID::Arena* arena, bool is_message_owned) : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena, is_message_owned) { SharedCtor(); if (!is_message_owned) { RegisterArenaDtor(arena); } // @@protoc_insertion_point(arena_constructor:opencv_onnx.TypeProto.Map) } TypeProto_Map::TypeProto_Map(const TypeProto_Map& from) : ::PROTOBUF_NAMESPACE_ID::MessageLite(), _has_bits_(from._has_bits_) { _internal_metadata_.MergeFrom(from._internal_metadata_); if (from._internal_has_value_type()) { value_type_ = new ::opencv_onnx::TypeProto(*from.value_type_); } else { value_type_ = nullptr; } key_type_ = from.key_type_; // @@protoc_insertion_point(copy_constructor:opencv_onnx.TypeProto.Map) } inline void TypeProto_Map::SharedCtor() { ::memset(reinterpret_cast(this) + static_cast( reinterpret_cast(&value_type_) - reinterpret_cast(this)), 0, static_cast(reinterpret_cast(&key_type_) - reinterpret_cast(&value_type_)) + sizeof(key_type_)); } TypeProto_Map::~TypeProto_Map() { // @@protoc_insertion_point(destructor:opencv_onnx.TypeProto.Map) if (GetArenaForAllocation() != nullptr) return; SharedDtor(); _internal_metadata_.Delete(); } inline void TypeProto_Map::SharedDtor() { GOOGLE_DCHECK(GetArenaForAllocation() == nullptr); if (this != internal_default_instance()) delete value_type_; } void TypeProto_Map::ArenaDtor(void* object) { TypeProto_Map* _this = reinterpret_cast< TypeProto_Map* >(object); (void)_this; } void TypeProto_Map::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) { } void TypeProto_Map::SetCachedSize(int size) const { _cached_size_.Set(size); } void TypeProto_Map::Clear() { // @@protoc_insertion_point(message_clear_start:opencv_onnx.TypeProto.Map) uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000001u) { GOOGLE_DCHECK(value_type_ != nullptr); value_type_->Clear(); } key_type_ = 0; _has_bits_.Clear(); _internal_metadata_.Clear(); } const char* TypeProto_Map::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) { #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure _Internal::HasBits has_bits{}; while (!ctx->Done(&ptr)) { uint32_t tag; ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag); switch (tag >> 3) { // optional int32 key_type = 1; case 1: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 8)) { _Internal::set_has_key_type(&has_bits); key_type_ = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint32(&ptr); CHK_(ptr); } else goto handle_unusual; continue; // optional .opencv_onnx.TypeProto value_type = 2; case 2: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 18)) { ptr = ctx->ParseMessage(_internal_mutable_value_type(), ptr); CHK_(ptr); } else goto handle_unusual; continue; default: goto handle_unusual; } // switch handle_unusual: if ((tag == 0) || ((tag & 7) == 4)) { CHK_(ptr); ctx->SetLastTag(tag); goto message_done; } ptr = UnknownFieldParse( tag, _internal_metadata_.mutable_unknown_fields(), ptr, ctx); CHK_(ptr != nullptr); } // while message_done: _has_bits_.Or(has_bits); return ptr; failure: ptr = nullptr; goto message_done; #undef CHK_ } uint8_t* TypeProto_Map::_InternalSerialize( uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const { // @@protoc_insertion_point(serialize_to_array_start:opencv_onnx.TypeProto.Map) uint32_t cached_has_bits = 0; (void) cached_has_bits; cached_has_bits = _has_bits_[0]; // optional int32 key_type = 1; if (cached_has_bits & 0x00000002u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt32ToArray(1, this->_internal_key_type(), target); } // optional .opencv_onnx.TypeProto value_type = 2; if (cached_has_bits & 0x00000001u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage( 2, _Internal::value_type(this), target, stream); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { target = stream->WriteRaw(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(), static_cast(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target); } // @@protoc_insertion_point(serialize_to_array_end:opencv_onnx.TypeProto.Map) return target; } size_t TypeProto_Map::ByteSizeLong() const { // @@protoc_insertion_point(message_byte_size_start:opencv_onnx.TypeProto.Map) size_t total_size = 0; uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000003u) { // optional .opencv_onnx.TypeProto value_type = 2; if (cached_has_bits & 0x00000001u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize( *value_type_); } // optional int32 key_type = 1; if (cached_has_bits & 0x00000002u) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int32SizePlusOne(this->_internal_key_type()); } } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { total_size += _internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size(); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size); SetCachedSize(cached_size); return total_size; } void TypeProto_Map::CheckTypeAndMergeFrom( const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) { MergeFrom(*::PROTOBUF_NAMESPACE_ID::internal::DownCast( &from)); } void TypeProto_Map::MergeFrom(const TypeProto_Map& from) { // @@protoc_insertion_point(class_specific_merge_from_start:opencv_onnx.TypeProto.Map) GOOGLE_DCHECK_NE(&from, this); uint32_t cached_has_bits = 0; (void) cached_has_bits; cached_has_bits = from._has_bits_[0]; if (cached_has_bits & 0x00000003u) { if (cached_has_bits & 0x00000001u) { _internal_mutable_value_type()->::opencv_onnx::TypeProto::MergeFrom(from._internal_value_type()); } if (cached_has_bits & 0x00000002u) { key_type_ = from.key_type_; } _has_bits_[0] |= cached_has_bits; } _internal_metadata_.MergeFrom(from._internal_metadata_); } void TypeProto_Map::CopyFrom(const TypeProto_Map& from) { // @@protoc_insertion_point(class_specific_copy_from_start:opencv_onnx.TypeProto.Map) if (&from == this) return; Clear(); MergeFrom(from); } bool TypeProto_Map::IsInitialized() const { return true; } void TypeProto_Map::InternalSwap(TypeProto_Map* other) { using std::swap; _internal_metadata_.InternalSwap(&other->_internal_metadata_); swap(_has_bits_[0], other->_has_bits_[0]); ::PROTOBUF_NAMESPACE_ID::internal::memswap< PROTOBUF_FIELD_OFFSET(TypeProto_Map, key_type_) + sizeof(TypeProto_Map::key_type_) - PROTOBUF_FIELD_OFFSET(TypeProto_Map, value_type_)>( reinterpret_cast(&value_type_), reinterpret_cast(&other->value_type_)); } std::string TypeProto_Map::GetTypeName() const { return "opencv_onnx.TypeProto.Map"; } // =================================================================== class TypeProto_Optional::_Internal { public: using HasBits = decltype(std::declval()._has_bits_); static const ::opencv_onnx::TypeProto& elem_type(const TypeProto_Optional* msg); static void set_has_elem_type(HasBits* has_bits) { (*has_bits)[0] |= 1u; } }; const ::opencv_onnx::TypeProto& TypeProto_Optional::_Internal::elem_type(const TypeProto_Optional* msg) { return *msg->elem_type_; } TypeProto_Optional::TypeProto_Optional(::PROTOBUF_NAMESPACE_ID::Arena* arena, bool is_message_owned) : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena, is_message_owned) { SharedCtor(); if (!is_message_owned) { RegisterArenaDtor(arena); } // @@protoc_insertion_point(arena_constructor:opencv_onnx.TypeProto.Optional) } TypeProto_Optional::TypeProto_Optional(const TypeProto_Optional& from) : ::PROTOBUF_NAMESPACE_ID::MessageLite(), _has_bits_(from._has_bits_) { _internal_metadata_.MergeFrom(from._internal_metadata_); if (from._internal_has_elem_type()) { elem_type_ = new ::opencv_onnx::TypeProto(*from.elem_type_); } else { elem_type_ = nullptr; } // @@protoc_insertion_point(copy_constructor:opencv_onnx.TypeProto.Optional) } inline void TypeProto_Optional::SharedCtor() { elem_type_ = nullptr; } TypeProto_Optional::~TypeProto_Optional() { // @@protoc_insertion_point(destructor:opencv_onnx.TypeProto.Optional) if (GetArenaForAllocation() != nullptr) return; SharedDtor(); _internal_metadata_.Delete(); } inline void TypeProto_Optional::SharedDtor() { GOOGLE_DCHECK(GetArenaForAllocation() == nullptr); if (this != internal_default_instance()) delete elem_type_; } void TypeProto_Optional::ArenaDtor(void* object) { TypeProto_Optional* _this = reinterpret_cast< TypeProto_Optional* >(object); (void)_this; } void TypeProto_Optional::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) { } void TypeProto_Optional::SetCachedSize(int size) const { _cached_size_.Set(size); } void TypeProto_Optional::Clear() { // @@protoc_insertion_point(message_clear_start:opencv_onnx.TypeProto.Optional) uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000001u) { GOOGLE_DCHECK(elem_type_ != nullptr); elem_type_->Clear(); } _has_bits_.Clear(); _internal_metadata_.Clear(); } const char* TypeProto_Optional::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) { #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure _Internal::HasBits has_bits{}; while (!ctx->Done(&ptr)) { uint32_t tag; ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag); switch (tag >> 3) { // optional .opencv_onnx.TypeProto elem_type = 1; case 1: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 10)) { ptr = ctx->ParseMessage(_internal_mutable_elem_type(), ptr); CHK_(ptr); } else goto handle_unusual; continue; default: goto handle_unusual; } // switch handle_unusual: if ((tag == 0) || ((tag & 7) == 4)) { CHK_(ptr); ctx->SetLastTag(tag); goto message_done; } ptr = UnknownFieldParse( tag, _internal_metadata_.mutable_unknown_fields(), ptr, ctx); CHK_(ptr != nullptr); } // while message_done: _has_bits_.Or(has_bits); return ptr; failure: ptr = nullptr; goto message_done; #undef CHK_ } uint8_t* TypeProto_Optional::_InternalSerialize( uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const { // @@protoc_insertion_point(serialize_to_array_start:opencv_onnx.TypeProto.Optional) uint32_t cached_has_bits = 0; (void) cached_has_bits; cached_has_bits = _has_bits_[0]; // optional .opencv_onnx.TypeProto elem_type = 1; if (cached_has_bits & 0x00000001u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage( 1, _Internal::elem_type(this), target, stream); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { target = stream->WriteRaw(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(), static_cast(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target); } // @@protoc_insertion_point(serialize_to_array_end:opencv_onnx.TypeProto.Optional) return target; } size_t TypeProto_Optional::ByteSizeLong() const { // @@protoc_insertion_point(message_byte_size_start:opencv_onnx.TypeProto.Optional) size_t total_size = 0; uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; // optional .opencv_onnx.TypeProto elem_type = 1; cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000001u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize( *elem_type_); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { total_size += _internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size(); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size); SetCachedSize(cached_size); return total_size; } void TypeProto_Optional::CheckTypeAndMergeFrom( const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) { MergeFrom(*::PROTOBUF_NAMESPACE_ID::internal::DownCast( &from)); } void TypeProto_Optional::MergeFrom(const TypeProto_Optional& from) { // @@protoc_insertion_point(class_specific_merge_from_start:opencv_onnx.TypeProto.Optional) GOOGLE_DCHECK_NE(&from, this); uint32_t cached_has_bits = 0; (void) cached_has_bits; if (from._internal_has_elem_type()) { _internal_mutable_elem_type()->::opencv_onnx::TypeProto::MergeFrom(from._internal_elem_type()); } _internal_metadata_.MergeFrom(from._internal_metadata_); } void TypeProto_Optional::CopyFrom(const TypeProto_Optional& from) { // @@protoc_insertion_point(class_specific_copy_from_start:opencv_onnx.TypeProto.Optional) if (&from == this) return; Clear(); MergeFrom(from); } bool TypeProto_Optional::IsInitialized() const { return true; } void TypeProto_Optional::InternalSwap(TypeProto_Optional* other) { using std::swap; _internal_metadata_.InternalSwap(&other->_internal_metadata_); swap(_has_bits_[0], other->_has_bits_[0]); swap(elem_type_, other->elem_type_); } std::string TypeProto_Optional::GetTypeName() const { return "opencv_onnx.TypeProto.Optional"; } // =================================================================== class TypeProto_SparseTensor::_Internal { public: using HasBits = decltype(std::declval()._has_bits_); static void set_has_elem_type(HasBits* has_bits) { (*has_bits)[0] |= 2u; } static const ::opencv_onnx::TensorShapeProto& shape(const TypeProto_SparseTensor* msg); static void set_has_shape(HasBits* has_bits) { (*has_bits)[0] |= 1u; } }; const ::opencv_onnx::TensorShapeProto& TypeProto_SparseTensor::_Internal::shape(const TypeProto_SparseTensor* msg) { return *msg->shape_; } TypeProto_SparseTensor::TypeProto_SparseTensor(::PROTOBUF_NAMESPACE_ID::Arena* arena, bool is_message_owned) : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena, is_message_owned) { SharedCtor(); if (!is_message_owned) { RegisterArenaDtor(arena); } // @@protoc_insertion_point(arena_constructor:opencv_onnx.TypeProto.SparseTensor) } TypeProto_SparseTensor::TypeProto_SparseTensor(const TypeProto_SparseTensor& from) : ::PROTOBUF_NAMESPACE_ID::MessageLite(), _has_bits_(from._has_bits_) { _internal_metadata_.MergeFrom(from._internal_metadata_); if (from._internal_has_shape()) { shape_ = new ::opencv_onnx::TensorShapeProto(*from.shape_); } else { shape_ = nullptr; } elem_type_ = from.elem_type_; // @@protoc_insertion_point(copy_constructor:opencv_onnx.TypeProto.SparseTensor) } inline void TypeProto_SparseTensor::SharedCtor() { ::memset(reinterpret_cast(this) + static_cast( reinterpret_cast(&shape_) - reinterpret_cast(this)), 0, static_cast(reinterpret_cast(&elem_type_) - reinterpret_cast(&shape_)) + sizeof(elem_type_)); } TypeProto_SparseTensor::~TypeProto_SparseTensor() { // @@protoc_insertion_point(destructor:opencv_onnx.TypeProto.SparseTensor) if (GetArenaForAllocation() != nullptr) return; SharedDtor(); _internal_metadata_.Delete(); } inline void TypeProto_SparseTensor::SharedDtor() { GOOGLE_DCHECK(GetArenaForAllocation() == nullptr); if (this != internal_default_instance()) delete shape_; } void TypeProto_SparseTensor::ArenaDtor(void* object) { TypeProto_SparseTensor* _this = reinterpret_cast< TypeProto_SparseTensor* >(object); (void)_this; } void TypeProto_SparseTensor::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) { } void TypeProto_SparseTensor::SetCachedSize(int size) const { _cached_size_.Set(size); } void TypeProto_SparseTensor::Clear() { // @@protoc_insertion_point(message_clear_start:opencv_onnx.TypeProto.SparseTensor) uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000001u) { GOOGLE_DCHECK(shape_ != nullptr); shape_->Clear(); } elem_type_ = 0; _has_bits_.Clear(); _internal_metadata_.Clear(); } const char* TypeProto_SparseTensor::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) { #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure _Internal::HasBits has_bits{}; while (!ctx->Done(&ptr)) { uint32_t tag; ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag); switch (tag >> 3) { // optional int32 elem_type = 1; case 1: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 8)) { _Internal::set_has_elem_type(&has_bits); elem_type_ = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint32(&ptr); CHK_(ptr); } else goto handle_unusual; continue; // optional .opencv_onnx.TensorShapeProto shape = 2; case 2: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 18)) { ptr = ctx->ParseMessage(_internal_mutable_shape(), ptr); CHK_(ptr); } else goto handle_unusual; continue; default: goto handle_unusual; } // switch handle_unusual: if ((tag == 0) || ((tag & 7) == 4)) { CHK_(ptr); ctx->SetLastTag(tag); goto message_done; } ptr = UnknownFieldParse( tag, _internal_metadata_.mutable_unknown_fields(), ptr, ctx); CHK_(ptr != nullptr); } // while message_done: _has_bits_.Or(has_bits); return ptr; failure: ptr = nullptr; goto message_done; #undef CHK_ } uint8_t* TypeProto_SparseTensor::_InternalSerialize( uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const { // @@protoc_insertion_point(serialize_to_array_start:opencv_onnx.TypeProto.SparseTensor) uint32_t cached_has_bits = 0; (void) cached_has_bits; cached_has_bits = _has_bits_[0]; // optional int32 elem_type = 1; if (cached_has_bits & 0x00000002u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt32ToArray(1, this->_internal_elem_type(), target); } // optional .opencv_onnx.TensorShapeProto shape = 2; if (cached_has_bits & 0x00000001u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage( 2, _Internal::shape(this), target, stream); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { target = stream->WriteRaw(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(), static_cast(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target); } // @@protoc_insertion_point(serialize_to_array_end:opencv_onnx.TypeProto.SparseTensor) return target; } size_t TypeProto_SparseTensor::ByteSizeLong() const { // @@protoc_insertion_point(message_byte_size_start:opencv_onnx.TypeProto.SparseTensor) size_t total_size = 0; uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000003u) { // optional .opencv_onnx.TensorShapeProto shape = 2; if (cached_has_bits & 0x00000001u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize( *shape_); } // optional int32 elem_type = 1; if (cached_has_bits & 0x00000002u) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int32SizePlusOne(this->_internal_elem_type()); } } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { total_size += _internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size(); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size); SetCachedSize(cached_size); return total_size; } void TypeProto_SparseTensor::CheckTypeAndMergeFrom( const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) { MergeFrom(*::PROTOBUF_NAMESPACE_ID::internal::DownCast( &from)); } void TypeProto_SparseTensor::MergeFrom(const TypeProto_SparseTensor& from) { // @@protoc_insertion_point(class_specific_merge_from_start:opencv_onnx.TypeProto.SparseTensor) GOOGLE_DCHECK_NE(&from, this); uint32_t cached_has_bits = 0; (void) cached_has_bits; cached_has_bits = from._has_bits_[0]; if (cached_has_bits & 0x00000003u) { if (cached_has_bits & 0x00000001u) { _internal_mutable_shape()->::opencv_onnx::TensorShapeProto::MergeFrom(from._internal_shape()); } if (cached_has_bits & 0x00000002u) { elem_type_ = from.elem_type_; } _has_bits_[0] |= cached_has_bits; } _internal_metadata_.MergeFrom(from._internal_metadata_); } void TypeProto_SparseTensor::CopyFrom(const TypeProto_SparseTensor& from) { // @@protoc_insertion_point(class_specific_copy_from_start:opencv_onnx.TypeProto.SparseTensor) if (&from == this) return; Clear(); MergeFrom(from); } bool TypeProto_SparseTensor::IsInitialized() const { return true; } void TypeProto_SparseTensor::InternalSwap(TypeProto_SparseTensor* other) { using std::swap; _internal_metadata_.InternalSwap(&other->_internal_metadata_); swap(_has_bits_[0], other->_has_bits_[0]); ::PROTOBUF_NAMESPACE_ID::internal::memswap< PROTOBUF_FIELD_OFFSET(TypeProto_SparseTensor, elem_type_) + sizeof(TypeProto_SparseTensor::elem_type_) - PROTOBUF_FIELD_OFFSET(TypeProto_SparseTensor, shape_)>( reinterpret_cast(&shape_), reinterpret_cast(&other->shape_)); } std::string TypeProto_SparseTensor::GetTypeName() const { return "opencv_onnx.TypeProto.SparseTensor"; } // =================================================================== class TypeProto::_Internal { public: using HasBits = decltype(std::declval()._has_bits_); static const ::opencv_onnx::TypeProto_Tensor& tensor_type(const TypeProto* msg); static const ::opencv_onnx::TypeProto_Sequence& sequence_type(const TypeProto* msg); static const ::opencv_onnx::TypeProto_Map& map_type(const TypeProto* msg); static const ::opencv_onnx::TypeProto_Optional& optional_type(const TypeProto* msg); static const ::opencv_onnx::TypeProto_SparseTensor& sparse_tensor_type(const TypeProto* msg); static void set_has_denotation(HasBits* has_bits) { (*has_bits)[0] |= 1u; } }; const ::opencv_onnx::TypeProto_Tensor& TypeProto::_Internal::tensor_type(const TypeProto* msg) { return *msg->value_.tensor_type_; } const ::opencv_onnx::TypeProto_Sequence& TypeProto::_Internal::sequence_type(const TypeProto* msg) { return *msg->value_.sequence_type_; } const ::opencv_onnx::TypeProto_Map& TypeProto::_Internal::map_type(const TypeProto* msg) { return *msg->value_.map_type_; } const ::opencv_onnx::TypeProto_Optional& TypeProto::_Internal::optional_type(const TypeProto* msg) { return *msg->value_.optional_type_; } const ::opencv_onnx::TypeProto_SparseTensor& TypeProto::_Internal::sparse_tensor_type(const TypeProto* msg) { return *msg->value_.sparse_tensor_type_; } void TypeProto::set_allocated_tensor_type(::opencv_onnx::TypeProto_Tensor* tensor_type) { ::PROTOBUF_NAMESPACE_ID::Arena* message_arena = GetArenaForAllocation(); clear_value(); if (tensor_type) { ::PROTOBUF_NAMESPACE_ID::Arena* submessage_arena = ::PROTOBUF_NAMESPACE_ID::Arena::InternalHelper<::opencv_onnx::TypeProto_Tensor>::GetOwningArena(tensor_type); if (message_arena != submessage_arena) { tensor_type = ::PROTOBUF_NAMESPACE_ID::internal::GetOwnedMessage( message_arena, tensor_type, submessage_arena); } set_has_tensor_type(); value_.tensor_type_ = tensor_type; } // @@protoc_insertion_point(field_set_allocated:opencv_onnx.TypeProto.tensor_type) } void TypeProto::set_allocated_sequence_type(::opencv_onnx::TypeProto_Sequence* sequence_type) { ::PROTOBUF_NAMESPACE_ID::Arena* message_arena = GetArenaForAllocation(); clear_value(); if (sequence_type) { ::PROTOBUF_NAMESPACE_ID::Arena* submessage_arena = ::PROTOBUF_NAMESPACE_ID::Arena::InternalHelper<::opencv_onnx::TypeProto_Sequence>::GetOwningArena(sequence_type); if (message_arena != submessage_arena) { sequence_type = ::PROTOBUF_NAMESPACE_ID::internal::GetOwnedMessage( message_arena, sequence_type, submessage_arena); } set_has_sequence_type(); value_.sequence_type_ = sequence_type; } // @@protoc_insertion_point(field_set_allocated:opencv_onnx.TypeProto.sequence_type) } void TypeProto::set_allocated_map_type(::opencv_onnx::TypeProto_Map* map_type) { ::PROTOBUF_NAMESPACE_ID::Arena* message_arena = GetArenaForAllocation(); clear_value(); if (map_type) { ::PROTOBUF_NAMESPACE_ID::Arena* submessage_arena = ::PROTOBUF_NAMESPACE_ID::Arena::InternalHelper<::opencv_onnx::TypeProto_Map>::GetOwningArena(map_type); if (message_arena != submessage_arena) { map_type = ::PROTOBUF_NAMESPACE_ID::internal::GetOwnedMessage( message_arena, map_type, submessage_arena); } set_has_map_type(); value_.map_type_ = map_type; } // @@protoc_insertion_point(field_set_allocated:opencv_onnx.TypeProto.map_type) } void TypeProto::set_allocated_optional_type(::opencv_onnx::TypeProto_Optional* optional_type) { ::PROTOBUF_NAMESPACE_ID::Arena* message_arena = GetArenaForAllocation(); clear_value(); if (optional_type) { ::PROTOBUF_NAMESPACE_ID::Arena* submessage_arena = ::PROTOBUF_NAMESPACE_ID::Arena::InternalHelper<::opencv_onnx::TypeProto_Optional>::GetOwningArena(optional_type); if (message_arena != submessage_arena) { optional_type = ::PROTOBUF_NAMESPACE_ID::internal::GetOwnedMessage( message_arena, optional_type, submessage_arena); } set_has_optional_type(); value_.optional_type_ = optional_type; } // @@protoc_insertion_point(field_set_allocated:opencv_onnx.TypeProto.optional_type) } void TypeProto::set_allocated_sparse_tensor_type(::opencv_onnx::TypeProto_SparseTensor* sparse_tensor_type) { ::PROTOBUF_NAMESPACE_ID::Arena* message_arena = GetArenaForAllocation(); clear_value(); if (sparse_tensor_type) { ::PROTOBUF_NAMESPACE_ID::Arena* submessage_arena = ::PROTOBUF_NAMESPACE_ID::Arena::InternalHelper<::opencv_onnx::TypeProto_SparseTensor>::GetOwningArena(sparse_tensor_type); if (message_arena != submessage_arena) { sparse_tensor_type = ::PROTOBUF_NAMESPACE_ID::internal::GetOwnedMessage( message_arena, sparse_tensor_type, submessage_arena); } set_has_sparse_tensor_type(); value_.sparse_tensor_type_ = sparse_tensor_type; } // @@protoc_insertion_point(field_set_allocated:opencv_onnx.TypeProto.sparse_tensor_type) } TypeProto::TypeProto(::PROTOBUF_NAMESPACE_ID::Arena* arena, bool is_message_owned) : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena, is_message_owned) { SharedCtor(); if (!is_message_owned) { RegisterArenaDtor(arena); } // @@protoc_insertion_point(arena_constructor:opencv_onnx.TypeProto) } TypeProto::TypeProto(const TypeProto& from) : ::PROTOBUF_NAMESPACE_ID::MessageLite(), _has_bits_(from._has_bits_) { _internal_metadata_.MergeFrom(from._internal_metadata_); denotation_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING denotation_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_denotation()) { denotation_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_denotation(), GetArenaForAllocation()); } clear_has_value(); switch (from.value_case()) { case kTensorType: { _internal_mutable_tensor_type()->::opencv_onnx::TypeProto_Tensor::MergeFrom(from._internal_tensor_type()); break; } case kSequenceType: { _internal_mutable_sequence_type()->::opencv_onnx::TypeProto_Sequence::MergeFrom(from._internal_sequence_type()); break; } case kMapType: { _internal_mutable_map_type()->::opencv_onnx::TypeProto_Map::MergeFrom(from._internal_map_type()); break; } case kOptionalType: { _internal_mutable_optional_type()->::opencv_onnx::TypeProto_Optional::MergeFrom(from._internal_optional_type()); break; } case kSparseTensorType: { _internal_mutable_sparse_tensor_type()->::opencv_onnx::TypeProto_SparseTensor::MergeFrom(from._internal_sparse_tensor_type()); break; } case VALUE_NOT_SET: { break; } } // @@protoc_insertion_point(copy_constructor:opencv_onnx.TypeProto) } inline void TypeProto::SharedCtor() { denotation_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING denotation_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING clear_has_value(); } TypeProto::~TypeProto() { // @@protoc_insertion_point(destructor:opencv_onnx.TypeProto) if (GetArenaForAllocation() != nullptr) return; SharedDtor(); _internal_metadata_.Delete(); } inline void TypeProto::SharedDtor() { GOOGLE_DCHECK(GetArenaForAllocation() == nullptr); denotation_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); if (has_value()) { clear_value(); } } void TypeProto::ArenaDtor(void* object) { TypeProto* _this = reinterpret_cast< TypeProto* >(object); (void)_this; } void TypeProto::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) { } void TypeProto::SetCachedSize(int size) const { _cached_size_.Set(size); } void TypeProto::clear_value() { // @@protoc_insertion_point(one_of_clear_start:opencv_onnx.TypeProto) switch (value_case()) { case kTensorType: { if (GetArenaForAllocation() == nullptr) { delete value_.tensor_type_; } break; } case kSequenceType: { if (GetArenaForAllocation() == nullptr) { delete value_.sequence_type_; } break; } case kMapType: { if (GetArenaForAllocation() == nullptr) { delete value_.map_type_; } break; } case kOptionalType: { if (GetArenaForAllocation() == nullptr) { delete value_.optional_type_; } break; } case kSparseTensorType: { if (GetArenaForAllocation() == nullptr) { delete value_.sparse_tensor_type_; } break; } case VALUE_NOT_SET: { break; } } _oneof_case_[0] = VALUE_NOT_SET; } void TypeProto::Clear() { // @@protoc_insertion_point(message_clear_start:opencv_onnx.TypeProto) uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000001u) { denotation_.ClearNonDefaultToEmpty(); } clear_value(); _has_bits_.Clear(); _internal_metadata_.Clear(); } const char* TypeProto::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) { #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure _Internal::HasBits has_bits{}; while (!ctx->Done(&ptr)) { uint32_t tag; ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag); switch (tag >> 3) { // .opencv_onnx.TypeProto.Tensor tensor_type = 1; case 1: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 10)) { ptr = ctx->ParseMessage(_internal_mutable_tensor_type(), ptr); CHK_(ptr); } else goto handle_unusual; continue; // .opencv_onnx.TypeProto.Sequence sequence_type = 4; case 4: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 34)) { ptr = ctx->ParseMessage(_internal_mutable_sequence_type(), ptr); CHK_(ptr); } else goto handle_unusual; continue; // .opencv_onnx.TypeProto.Map map_type = 5; case 5: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 42)) { ptr = ctx->ParseMessage(_internal_mutable_map_type(), ptr); CHK_(ptr); } else goto handle_unusual; continue; // optional string denotation = 6; case 6: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 50)) { auto str = _internal_mutable_denotation(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // .opencv_onnx.TypeProto.SparseTensor sparse_tensor_type = 8; case 8: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 66)) { ptr = ctx->ParseMessage(_internal_mutable_sparse_tensor_type(), ptr); CHK_(ptr); } else goto handle_unusual; continue; // .opencv_onnx.TypeProto.Optional optional_type = 9; case 9: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 74)) { ptr = ctx->ParseMessage(_internal_mutable_optional_type(), ptr); CHK_(ptr); } else goto handle_unusual; continue; default: goto handle_unusual; } // switch handle_unusual: if ((tag == 0) || ((tag & 7) == 4)) { CHK_(ptr); ctx->SetLastTag(tag); goto message_done; } ptr = UnknownFieldParse( tag, _internal_metadata_.mutable_unknown_fields(), ptr, ctx); CHK_(ptr != nullptr); } // while message_done: _has_bits_.Or(has_bits); return ptr; failure: ptr = nullptr; goto message_done; #undef CHK_ } uint8_t* TypeProto::_InternalSerialize( uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const { // @@protoc_insertion_point(serialize_to_array_start:opencv_onnx.TypeProto) uint32_t cached_has_bits = 0; (void) cached_has_bits; switch (value_case()) { case kTensorType: { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage( 1, _Internal::tensor_type(this), target, stream); break; } case kSequenceType: { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage( 4, _Internal::sequence_type(this), target, stream); break; } case kMapType: { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage( 5, _Internal::map_type(this), target, stream); break; } default: ; } cached_has_bits = _has_bits_[0]; // optional string denotation = 6; if (cached_has_bits & 0x00000001u) { target = stream->WriteStringMaybeAliased( 6, this->_internal_denotation(), target); } switch (value_case()) { case kSparseTensorType: { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage( 8, _Internal::sparse_tensor_type(this), target, stream); break; } case kOptionalType: { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage( 9, _Internal::optional_type(this), target, stream); break; } default: ; } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { target = stream->WriteRaw(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(), static_cast(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target); } // @@protoc_insertion_point(serialize_to_array_end:opencv_onnx.TypeProto) return target; } size_t TypeProto::ByteSizeLong() const { // @@protoc_insertion_point(message_byte_size_start:opencv_onnx.TypeProto) size_t total_size = 0; uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; // optional string denotation = 6; cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000001u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_denotation()); } switch (value_case()) { // .opencv_onnx.TypeProto.Tensor tensor_type = 1; case kTensorType: { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize( *value_.tensor_type_); break; } // .opencv_onnx.TypeProto.Sequence sequence_type = 4; case kSequenceType: { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize( *value_.sequence_type_); break; } // .opencv_onnx.TypeProto.Map map_type = 5; case kMapType: { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize( *value_.map_type_); break; } // .opencv_onnx.TypeProto.Optional optional_type = 9; case kOptionalType: { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize( *value_.optional_type_); break; } // .opencv_onnx.TypeProto.SparseTensor sparse_tensor_type = 8; case kSparseTensorType: { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize( *value_.sparse_tensor_type_); break; } case VALUE_NOT_SET: { break; } } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { total_size += _internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size(); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size); SetCachedSize(cached_size); return total_size; } void TypeProto::CheckTypeAndMergeFrom( const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) { MergeFrom(*::PROTOBUF_NAMESPACE_ID::internal::DownCast( &from)); } void TypeProto::MergeFrom(const TypeProto& from) { // @@protoc_insertion_point(class_specific_merge_from_start:opencv_onnx.TypeProto) GOOGLE_DCHECK_NE(&from, this); uint32_t cached_has_bits = 0; (void) cached_has_bits; if (from._internal_has_denotation()) { _internal_set_denotation(from._internal_denotation()); } switch (from.value_case()) { case kTensorType: { _internal_mutable_tensor_type()->::opencv_onnx::TypeProto_Tensor::MergeFrom(from._internal_tensor_type()); break; } case kSequenceType: { _internal_mutable_sequence_type()->::opencv_onnx::TypeProto_Sequence::MergeFrom(from._internal_sequence_type()); break; } case kMapType: { _internal_mutable_map_type()->::opencv_onnx::TypeProto_Map::MergeFrom(from._internal_map_type()); break; } case kOptionalType: { _internal_mutable_optional_type()->::opencv_onnx::TypeProto_Optional::MergeFrom(from._internal_optional_type()); break; } case kSparseTensorType: { _internal_mutable_sparse_tensor_type()->::opencv_onnx::TypeProto_SparseTensor::MergeFrom(from._internal_sparse_tensor_type()); break; } case VALUE_NOT_SET: { break; } } _internal_metadata_.MergeFrom(from._internal_metadata_); } void TypeProto::CopyFrom(const TypeProto& from) { // @@protoc_insertion_point(class_specific_copy_from_start:opencv_onnx.TypeProto) if (&from == this) return; Clear(); MergeFrom(from); } bool TypeProto::IsInitialized() const { return true; } void TypeProto::InternalSwap(TypeProto* other) { using std::swap; auto* lhs_arena = GetArenaForAllocation(); auto* rhs_arena = other->GetArenaForAllocation(); _internal_metadata_.InternalSwap(&other->_internal_metadata_); swap(_has_bits_[0], other->_has_bits_[0]); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &denotation_, lhs_arena, &other->denotation_, rhs_arena ); swap(value_, other->value_); swap(_oneof_case_[0], other->_oneof_case_[0]); } std::string TypeProto::GetTypeName() const { return "opencv_onnx.TypeProto"; } // =================================================================== class OperatorSetIdProto::_Internal { public: using HasBits = decltype(std::declval()._has_bits_); static void set_has_domain(HasBits* has_bits) { (*has_bits)[0] |= 1u; } static void set_has_version(HasBits* has_bits) { (*has_bits)[0] |= 2u; } }; OperatorSetIdProto::OperatorSetIdProto(::PROTOBUF_NAMESPACE_ID::Arena* arena, bool is_message_owned) : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena, is_message_owned) { SharedCtor(); if (!is_message_owned) { RegisterArenaDtor(arena); } // @@protoc_insertion_point(arena_constructor:opencv_onnx.OperatorSetIdProto) } OperatorSetIdProto::OperatorSetIdProto(const OperatorSetIdProto& from) : ::PROTOBUF_NAMESPACE_ID::MessageLite(), _has_bits_(from._has_bits_) { _internal_metadata_.MergeFrom(from._internal_metadata_); domain_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING domain_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_domain()) { domain_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_domain(), GetArenaForAllocation()); } version_ = from.version_; // @@protoc_insertion_point(copy_constructor:opencv_onnx.OperatorSetIdProto) } inline void OperatorSetIdProto::SharedCtor() { domain_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING domain_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING version_ = int64_t{0}; } OperatorSetIdProto::~OperatorSetIdProto() { // @@protoc_insertion_point(destructor:opencv_onnx.OperatorSetIdProto) if (GetArenaForAllocation() != nullptr) return; SharedDtor(); _internal_metadata_.Delete(); } inline void OperatorSetIdProto::SharedDtor() { GOOGLE_DCHECK(GetArenaForAllocation() == nullptr); domain_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); } void OperatorSetIdProto::ArenaDtor(void* object) { OperatorSetIdProto* _this = reinterpret_cast< OperatorSetIdProto* >(object); (void)_this; } void OperatorSetIdProto::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) { } void OperatorSetIdProto::SetCachedSize(int size) const { _cached_size_.Set(size); } void OperatorSetIdProto::Clear() { // @@protoc_insertion_point(message_clear_start:opencv_onnx.OperatorSetIdProto) uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000001u) { domain_.ClearNonDefaultToEmpty(); } version_ = int64_t{0}; _has_bits_.Clear(); _internal_metadata_.Clear(); } const char* OperatorSetIdProto::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) { #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure _Internal::HasBits has_bits{}; while (!ctx->Done(&ptr)) { uint32_t tag; ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag); switch (tag >> 3) { // optional string domain = 1; case 1: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 10)) { auto str = _internal_mutable_domain(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // optional int64 version = 2; case 2: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 16)) { _Internal::set_has_version(&has_bits); version_ = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr); CHK_(ptr); } else goto handle_unusual; continue; default: goto handle_unusual; } // switch handle_unusual: if ((tag == 0) || ((tag & 7) == 4)) { CHK_(ptr); ctx->SetLastTag(tag); goto message_done; } ptr = UnknownFieldParse( tag, _internal_metadata_.mutable_unknown_fields(), ptr, ctx); CHK_(ptr != nullptr); } // while message_done: _has_bits_.Or(has_bits); return ptr; failure: ptr = nullptr; goto message_done; #undef CHK_ } uint8_t* OperatorSetIdProto::_InternalSerialize( uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const { // @@protoc_insertion_point(serialize_to_array_start:opencv_onnx.OperatorSetIdProto) uint32_t cached_has_bits = 0; (void) cached_has_bits; cached_has_bits = _has_bits_[0]; // optional string domain = 1; if (cached_has_bits & 0x00000001u) { target = stream->WriteStringMaybeAliased( 1, this->_internal_domain(), target); } // optional int64 version = 2; if (cached_has_bits & 0x00000002u) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::WriteInt64ToArray(2, this->_internal_version(), target); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { target = stream->WriteRaw(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(), static_cast(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target); } // @@protoc_insertion_point(serialize_to_array_end:opencv_onnx.OperatorSetIdProto) return target; } size_t OperatorSetIdProto::ByteSizeLong() const { // @@protoc_insertion_point(message_byte_size_start:opencv_onnx.OperatorSetIdProto) size_t total_size = 0; uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x00000003u) { // optional string domain = 1; if (cached_has_bits & 0x00000001u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_domain()); } // optional int64 version = 2; if (cached_has_bits & 0x00000002u) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::Int64SizePlusOne(this->_internal_version()); } } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { total_size += _internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size(); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size); SetCachedSize(cached_size); return total_size; } void OperatorSetIdProto::CheckTypeAndMergeFrom( const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) { MergeFrom(*::PROTOBUF_NAMESPACE_ID::internal::DownCast( &from)); } void OperatorSetIdProto::MergeFrom(const OperatorSetIdProto& from) { // @@protoc_insertion_point(class_specific_merge_from_start:opencv_onnx.OperatorSetIdProto) GOOGLE_DCHECK_NE(&from, this); uint32_t cached_has_bits = 0; (void) cached_has_bits; cached_has_bits = from._has_bits_[0]; if (cached_has_bits & 0x00000003u) { if (cached_has_bits & 0x00000001u) { _internal_set_domain(from._internal_domain()); } if (cached_has_bits & 0x00000002u) { version_ = from.version_; } _has_bits_[0] |= cached_has_bits; } _internal_metadata_.MergeFrom(from._internal_metadata_); } void OperatorSetIdProto::CopyFrom(const OperatorSetIdProto& from) { // @@protoc_insertion_point(class_specific_copy_from_start:opencv_onnx.OperatorSetIdProto) if (&from == this) return; Clear(); MergeFrom(from); } bool OperatorSetIdProto::IsInitialized() const { return true; } void OperatorSetIdProto::InternalSwap(OperatorSetIdProto* other) { using std::swap; auto* lhs_arena = GetArenaForAllocation(); auto* rhs_arena = other->GetArenaForAllocation(); _internal_metadata_.InternalSwap(&other->_internal_metadata_); swap(_has_bits_[0], other->_has_bits_[0]); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &domain_, lhs_arena, &other->domain_, rhs_arena ); swap(version_, other->version_); } std::string OperatorSetIdProto::GetTypeName() const { return "opencv_onnx.OperatorSetIdProto"; } // =================================================================== class FunctionProto::_Internal { public: using HasBits = decltype(std::declval()._has_bits_); static void set_has_name(HasBits* has_bits) { (*has_bits)[0] |= 1u; } static void set_has_doc_string(HasBits* has_bits) { (*has_bits)[0] |= 2u; } static void set_has_domain(HasBits* has_bits) { (*has_bits)[0] |= 4u; } static void set_has_overload(HasBits* has_bits) { (*has_bits)[0] |= 8u; } }; FunctionProto::FunctionProto(::PROTOBUF_NAMESPACE_ID::Arena* arena, bool is_message_owned) : ::PROTOBUF_NAMESPACE_ID::MessageLite(arena, is_message_owned), input_(arena), output_(arena), attribute_(arena), node_(arena), opset_import_(arena), attribute_proto_(arena), value_info_(arena), metadata_props_(arena) { SharedCtor(); if (!is_message_owned) { RegisterArenaDtor(arena); } // @@protoc_insertion_point(arena_constructor:opencv_onnx.FunctionProto) } FunctionProto::FunctionProto(const FunctionProto& from) : ::PROTOBUF_NAMESPACE_ID::MessageLite(), _has_bits_(from._has_bits_), input_(from.input_), output_(from.output_), attribute_(from.attribute_), node_(from.node_), opset_import_(from.opset_import_), attribute_proto_(from.attribute_proto_), value_info_(from.value_info_), metadata_props_(from.metadata_props_) { _internal_metadata_.MergeFrom(from._internal_metadata_); name_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING name_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_name()) { name_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_name(), GetArenaForAllocation()); } doc_string_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING doc_string_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_doc_string()) { doc_string_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_doc_string(), GetArenaForAllocation()); } domain_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING domain_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_domain()) { domain_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_domain(), GetArenaForAllocation()); } overload_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING overload_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING if (from._internal_has_overload()) { overload_.Set(::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::EmptyDefault{}, from._internal_overload(), GetArenaForAllocation()); } // @@protoc_insertion_point(copy_constructor:opencv_onnx.FunctionProto) } inline void FunctionProto::SharedCtor() { name_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING name_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING doc_string_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING doc_string_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING domain_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING domain_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING overload_.UnsafeSetDefault(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); #ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING overload_.Set(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), "", GetArenaForAllocation()); #endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING } FunctionProto::~FunctionProto() { // @@protoc_insertion_point(destructor:opencv_onnx.FunctionProto) if (GetArenaForAllocation() != nullptr) return; SharedDtor(); _internal_metadata_.Delete(); } inline void FunctionProto::SharedDtor() { GOOGLE_DCHECK(GetArenaForAllocation() == nullptr); name_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); doc_string_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); domain_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); overload_.DestroyNoArena(&::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited()); } void FunctionProto::ArenaDtor(void* object) { FunctionProto* _this = reinterpret_cast< FunctionProto* >(object); (void)_this; } void FunctionProto::RegisterArenaDtor(::PROTOBUF_NAMESPACE_ID::Arena*) { } void FunctionProto::SetCachedSize(int size) const { _cached_size_.Set(size); } void FunctionProto::Clear() { // @@protoc_insertion_point(message_clear_start:opencv_onnx.FunctionProto) uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; input_.Clear(); output_.Clear(); attribute_.Clear(); node_.Clear(); opset_import_.Clear(); attribute_proto_.Clear(); value_info_.Clear(); metadata_props_.Clear(); cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x0000000fu) { if (cached_has_bits & 0x00000001u) { name_.ClearNonDefaultToEmpty(); } if (cached_has_bits & 0x00000002u) { doc_string_.ClearNonDefaultToEmpty(); } if (cached_has_bits & 0x00000004u) { domain_.ClearNonDefaultToEmpty(); } if (cached_has_bits & 0x00000008u) { overload_.ClearNonDefaultToEmpty(); } } _has_bits_.Clear(); _internal_metadata_.Clear(); } const char* FunctionProto::_InternalParse(const char* ptr, ::PROTOBUF_NAMESPACE_ID::internal::ParseContext* ctx) { #define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure _Internal::HasBits has_bits{}; while (!ctx->Done(&ptr)) { uint32_t tag; ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag); switch (tag >> 3) { // optional string name = 1; case 1: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 10)) { auto str = _internal_mutable_name(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // repeated string input = 4; case 4: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 34)) { ptr -= 1; do { ptr += 1; auto str = _internal_add_input(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<34>(ptr)); } else goto handle_unusual; continue; // repeated string output = 5; case 5: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 42)) { ptr -= 1; do { ptr += 1; auto str = _internal_add_output(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<42>(ptr)); } else goto handle_unusual; continue; // repeated string attribute = 6; case 6: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 50)) { ptr -= 1; do { ptr += 1; auto str = _internal_add_attribute(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<50>(ptr)); } else goto handle_unusual; continue; // repeated .opencv_onnx.NodeProto node = 7; case 7: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 58)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_node(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<58>(ptr)); } else goto handle_unusual; continue; // optional string doc_string = 8; case 8: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 66)) { auto str = _internal_mutable_doc_string(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // repeated .opencv_onnx.OperatorSetIdProto opset_import = 9; case 9: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 74)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_opset_import(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<74>(ptr)); } else goto handle_unusual; continue; // optional string domain = 10; case 10: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 82)) { auto str = _internal_mutable_domain(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // repeated .opencv_onnx.AttributeProto attribute_proto = 11; case 11: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 90)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_attribute_proto(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<90>(ptr)); } else goto handle_unusual; continue; // repeated .opencv_onnx.ValueInfoProto value_info = 12; case 12: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 98)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_value_info(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<98>(ptr)); } else goto handle_unusual; continue; // optional string overload = 13; case 13: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 106)) { auto str = _internal_mutable_overload(); ptr = ::PROTOBUF_NAMESPACE_ID::internal::InlineGreedyStringParser(str, ptr, ctx); CHK_(ptr); } else goto handle_unusual; continue; // repeated .opencv_onnx.StringStringEntryProto metadata_props = 14; case 14: if (PROTOBUF_PREDICT_TRUE(static_cast(tag) == 114)) { ptr -= 1; do { ptr += 1; ptr = ctx->ParseMessage(_internal_add_metadata_props(), ptr); CHK_(ptr); if (!ctx->DataAvailable(ptr)) break; } while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<114>(ptr)); } else goto handle_unusual; continue; default: goto handle_unusual; } // switch handle_unusual: if ((tag == 0) || ((tag & 7) == 4)) { CHK_(ptr); ctx->SetLastTag(tag); goto message_done; } ptr = UnknownFieldParse( tag, _internal_metadata_.mutable_unknown_fields(), ptr, ctx); CHK_(ptr != nullptr); } // while message_done: _has_bits_.Or(has_bits); return ptr; failure: ptr = nullptr; goto message_done; #undef CHK_ } uint8_t* FunctionProto::_InternalSerialize( uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const { // @@protoc_insertion_point(serialize_to_array_start:opencv_onnx.FunctionProto) uint32_t cached_has_bits = 0; (void) cached_has_bits; cached_has_bits = _has_bits_[0]; // optional string name = 1; if (cached_has_bits & 0x00000001u) { target = stream->WriteStringMaybeAliased( 1, this->_internal_name(), target); } // repeated string input = 4; for (int i = 0, n = this->_internal_input_size(); i < n; i++) { const auto& s = this->_internal_input(i); target = stream->WriteString(4, s, target); } // repeated string output = 5; for (int i = 0, n = this->_internal_output_size(); i < n; i++) { const auto& s = this->_internal_output(i); target = stream->WriteString(5, s, target); } // repeated string attribute = 6; for (int i = 0, n = this->_internal_attribute_size(); i < n; i++) { const auto& s = this->_internal_attribute(i); target = stream->WriteString(6, s, target); } // repeated .opencv_onnx.NodeProto node = 7; for (unsigned int i = 0, n = static_cast(this->_internal_node_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(7, this->_internal_node(i), target, stream); } // optional string doc_string = 8; if (cached_has_bits & 0x00000002u) { target = stream->WriteStringMaybeAliased( 8, this->_internal_doc_string(), target); } // repeated .opencv_onnx.OperatorSetIdProto opset_import = 9; for (unsigned int i = 0, n = static_cast(this->_internal_opset_import_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(9, this->_internal_opset_import(i), target, stream); } // optional string domain = 10; if (cached_has_bits & 0x00000004u) { target = stream->WriteStringMaybeAliased( 10, this->_internal_domain(), target); } // repeated .opencv_onnx.AttributeProto attribute_proto = 11; for (unsigned int i = 0, n = static_cast(this->_internal_attribute_proto_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(11, this->_internal_attribute_proto(i), target, stream); } // repeated .opencv_onnx.ValueInfoProto value_info = 12; for (unsigned int i = 0, n = static_cast(this->_internal_value_info_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(12, this->_internal_value_info(i), target, stream); } // optional string overload = 13; if (cached_has_bits & 0x00000008u) { target = stream->WriteStringMaybeAliased( 13, this->_internal_overload(), target); } // repeated .opencv_onnx.StringStringEntryProto metadata_props = 14; for (unsigned int i = 0, n = static_cast(this->_internal_metadata_props_size()); i < n; i++) { target = stream->EnsureSpace(target); target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite:: InternalWriteMessage(14, this->_internal_metadata_props(i), target, stream); } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { target = stream->WriteRaw(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).data(), static_cast(_internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size()), target); } // @@protoc_insertion_point(serialize_to_array_end:opencv_onnx.FunctionProto) return target; } size_t FunctionProto::ByteSizeLong() const { // @@protoc_insertion_point(message_byte_size_start:opencv_onnx.FunctionProto) size_t total_size = 0; uint32_t cached_has_bits = 0; // Prevent compiler warnings about cached_has_bits being unused (void) cached_has_bits; // repeated string input = 4; total_size += 1 * ::PROTOBUF_NAMESPACE_ID::internal::FromIntSize(input_.size()); for (int i = 0, n = input_.size(); i < n; i++) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( input_.Get(i)); } // repeated string output = 5; total_size += 1 * ::PROTOBUF_NAMESPACE_ID::internal::FromIntSize(output_.size()); for (int i = 0, n = output_.size(); i < n; i++) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( output_.Get(i)); } // repeated string attribute = 6; total_size += 1 * ::PROTOBUF_NAMESPACE_ID::internal::FromIntSize(attribute_.size()); for (int i = 0, n = attribute_.size(); i < n; i++) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( attribute_.Get(i)); } // repeated .opencv_onnx.NodeProto node = 7; total_size += 1UL * this->_internal_node_size(); for (const auto& msg : this->node_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } // repeated .opencv_onnx.OperatorSetIdProto opset_import = 9; total_size += 1UL * this->_internal_opset_import_size(); for (const auto& msg : this->opset_import_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } // repeated .opencv_onnx.AttributeProto attribute_proto = 11; total_size += 1UL * this->_internal_attribute_proto_size(); for (const auto& msg : this->attribute_proto_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } // repeated .opencv_onnx.ValueInfoProto value_info = 12; total_size += 1UL * this->_internal_value_info_size(); for (const auto& msg : this->value_info_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } // repeated .opencv_onnx.StringStringEntryProto metadata_props = 14; total_size += 1UL * this->_internal_metadata_props_size(); for (const auto& msg : this->metadata_props_) { total_size += ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg); } cached_has_bits = _has_bits_[0]; if (cached_has_bits & 0x0000000fu) { // optional string name = 1; if (cached_has_bits & 0x00000001u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_name()); } // optional string doc_string = 8; if (cached_has_bits & 0x00000002u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_doc_string()); } // optional string domain = 10; if (cached_has_bits & 0x00000004u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_domain()); } // optional string overload = 13; if (cached_has_bits & 0x00000008u) { total_size += 1 + ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize( this->_internal_overload()); } } if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) { total_size += _internal_metadata_.unknown_fields(::PROTOBUF_NAMESPACE_ID::internal::GetEmptyString).size(); } int cached_size = ::PROTOBUF_NAMESPACE_ID::internal::ToCachedSize(total_size); SetCachedSize(cached_size); return total_size; } void FunctionProto::CheckTypeAndMergeFrom( const ::PROTOBUF_NAMESPACE_ID::MessageLite& from) { MergeFrom(*::PROTOBUF_NAMESPACE_ID::internal::DownCast( &from)); } void FunctionProto::MergeFrom(const FunctionProto& from) { // @@protoc_insertion_point(class_specific_merge_from_start:opencv_onnx.FunctionProto) GOOGLE_DCHECK_NE(&from, this); uint32_t cached_has_bits = 0; (void) cached_has_bits; input_.MergeFrom(from.input_); output_.MergeFrom(from.output_); attribute_.MergeFrom(from.attribute_); node_.MergeFrom(from.node_); opset_import_.MergeFrom(from.opset_import_); attribute_proto_.MergeFrom(from.attribute_proto_); value_info_.MergeFrom(from.value_info_); metadata_props_.MergeFrom(from.metadata_props_); cached_has_bits = from._has_bits_[0]; if (cached_has_bits & 0x0000000fu) { if (cached_has_bits & 0x00000001u) { _internal_set_name(from._internal_name()); } if (cached_has_bits & 0x00000002u) { _internal_set_doc_string(from._internal_doc_string()); } if (cached_has_bits & 0x00000004u) { _internal_set_domain(from._internal_domain()); } if (cached_has_bits & 0x00000008u) { _internal_set_overload(from._internal_overload()); } } _internal_metadata_.MergeFrom(from._internal_metadata_); } void FunctionProto::CopyFrom(const FunctionProto& from) { // @@protoc_insertion_point(class_specific_copy_from_start:opencv_onnx.FunctionProto) if (&from == this) return; Clear(); MergeFrom(from); } bool FunctionProto::IsInitialized() const { return true; } void FunctionProto::InternalSwap(FunctionProto* other) { using std::swap; auto* lhs_arena = GetArenaForAllocation(); auto* rhs_arena = other->GetArenaForAllocation(); _internal_metadata_.InternalSwap(&other->_internal_metadata_); swap(_has_bits_[0], other->_has_bits_[0]); input_.InternalSwap(&other->input_); output_.InternalSwap(&other->output_); attribute_.InternalSwap(&other->attribute_); node_.InternalSwap(&other->node_); opset_import_.InternalSwap(&other->opset_import_); attribute_proto_.InternalSwap(&other->attribute_proto_); value_info_.InternalSwap(&other->value_info_); metadata_props_.InternalSwap(&other->metadata_props_); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &name_, lhs_arena, &other->name_, rhs_arena ); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &doc_string_, lhs_arena, &other->doc_string_, rhs_arena ); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &domain_, lhs_arena, &other->domain_, rhs_arena ); ::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap( &::PROTOBUF_NAMESPACE_ID::internal::GetEmptyStringAlreadyInited(), &overload_, lhs_arena, &other->overload_, rhs_arena ); } std::string FunctionProto::GetTypeName() const { return "opencv_onnx.FunctionProto"; } // @@protoc_insertion_point(namespace_scope) } // namespace opencv_onnx PROTOBUF_NAMESPACE_OPEN template<> PROTOBUF_NOINLINE ::opencv_onnx::AttributeProto* Arena::CreateMaybeMessage< ::opencv_onnx::AttributeProto >(Arena* arena) { return Arena::CreateMessageInternal< ::opencv_onnx::AttributeProto >(arena); } template<> PROTOBUF_NOINLINE ::opencv_onnx::ValueInfoProto* Arena::CreateMaybeMessage< ::opencv_onnx::ValueInfoProto >(Arena* arena) { return Arena::CreateMessageInternal< ::opencv_onnx::ValueInfoProto >(arena); } template<> PROTOBUF_NOINLINE ::opencv_onnx::NodeProto* Arena::CreateMaybeMessage< ::opencv_onnx::NodeProto >(Arena* arena) { return Arena::CreateMessageInternal< ::opencv_onnx::NodeProto >(arena); } template<> PROTOBUF_NOINLINE ::opencv_onnx::IntIntListEntryProto* Arena::CreateMaybeMessage< ::opencv_onnx::IntIntListEntryProto >(Arena* arena) { return Arena::CreateMessageInternal< ::opencv_onnx::IntIntListEntryProto >(arena); } template<> PROTOBUF_NOINLINE ::opencv_onnx::NodeDeviceConfigurationProto* Arena::CreateMaybeMessage< ::opencv_onnx::NodeDeviceConfigurationProto >(Arena* arena) { return Arena::CreateMessageInternal< ::opencv_onnx::NodeDeviceConfigurationProto >(arena); } template<> PROTOBUF_NOINLINE ::opencv_onnx::ShardingSpecProto* Arena::CreateMaybeMessage< ::opencv_onnx::ShardingSpecProto >(Arena* arena) { return Arena::CreateMessageInternal< ::opencv_onnx::ShardingSpecProto >(arena); } template<> PROTOBUF_NOINLINE ::opencv_onnx::ShardedDimProto* Arena::CreateMaybeMessage< ::opencv_onnx::ShardedDimProto >(Arena* arena) { return Arena::CreateMessageInternal< ::opencv_onnx::ShardedDimProto >(arena); } template<> PROTOBUF_NOINLINE ::opencv_onnx::SimpleShardedDimProto* Arena::CreateMaybeMessage< ::opencv_onnx::SimpleShardedDimProto >(Arena* arena) { return Arena::CreateMessageInternal< ::opencv_onnx::SimpleShardedDimProto >(arena); } template<> PROTOBUF_NOINLINE ::opencv_onnx::TrainingInfoProto* Arena::CreateMaybeMessage< ::opencv_onnx::TrainingInfoProto >(Arena* arena) { return Arena::CreateMessageInternal< ::opencv_onnx::TrainingInfoProto >(arena); } template<> PROTOBUF_NOINLINE ::opencv_onnx::ModelProto* Arena::CreateMaybeMessage< ::opencv_onnx::ModelProto >(Arena* arena) { return Arena::CreateMessageInternal< ::opencv_onnx::ModelProto >(arena); } template<> PROTOBUF_NOINLINE ::opencv_onnx::DeviceConfigurationProto* Arena::CreateMaybeMessage< ::opencv_onnx::DeviceConfigurationProto >(Arena* arena) { return Arena::CreateMessageInternal< ::opencv_onnx::DeviceConfigurationProto >(arena); } template<> PROTOBUF_NOINLINE ::opencv_onnx::StringStringEntryProto* Arena::CreateMaybeMessage< ::opencv_onnx::StringStringEntryProto >(Arena* arena) { return Arena::CreateMessageInternal< ::opencv_onnx::StringStringEntryProto >(arena); } template<> PROTOBUF_NOINLINE ::opencv_onnx::TensorAnnotation* Arena::CreateMaybeMessage< ::opencv_onnx::TensorAnnotation >(Arena* arena) { return Arena::CreateMessageInternal< ::opencv_onnx::TensorAnnotation >(arena); } template<> PROTOBUF_NOINLINE ::opencv_onnx::GraphProto* Arena::CreateMaybeMessage< ::opencv_onnx::GraphProto >(Arena* arena) { return Arena::CreateMessageInternal< ::opencv_onnx::GraphProto >(arena); } template<> PROTOBUF_NOINLINE ::opencv_onnx::TensorProto_Segment* Arena::CreateMaybeMessage< ::opencv_onnx::TensorProto_Segment >(Arena* arena) { return Arena::CreateMessageInternal< ::opencv_onnx::TensorProto_Segment >(arena); } template<> PROTOBUF_NOINLINE ::opencv_onnx::TensorProto* Arena::CreateMaybeMessage< ::opencv_onnx::TensorProto >(Arena* arena) { return Arena::CreateMessageInternal< ::opencv_onnx::TensorProto >(arena); } template<> PROTOBUF_NOINLINE ::opencv_onnx::SparseTensorProto* Arena::CreateMaybeMessage< ::opencv_onnx::SparseTensorProto >(Arena* arena) { return Arena::CreateMessageInternal< ::opencv_onnx::SparseTensorProto >(arena); } template<> PROTOBUF_NOINLINE ::opencv_onnx::TensorShapeProto_Dimension* Arena::CreateMaybeMessage< ::opencv_onnx::TensorShapeProto_Dimension >(Arena* arena) { return Arena::CreateMessageInternal< ::opencv_onnx::TensorShapeProto_Dimension >(arena); } template<> PROTOBUF_NOINLINE ::opencv_onnx::TensorShapeProto* Arena::CreateMaybeMessage< ::opencv_onnx::TensorShapeProto >(Arena* arena) { return Arena::CreateMessageInternal< ::opencv_onnx::TensorShapeProto >(arena); } template<> PROTOBUF_NOINLINE ::opencv_onnx::TypeProto_Tensor* Arena::CreateMaybeMessage< ::opencv_onnx::TypeProto_Tensor >(Arena* arena) { return Arena::CreateMessageInternal< ::opencv_onnx::TypeProto_Tensor >(arena); } template<> PROTOBUF_NOINLINE ::opencv_onnx::TypeProto_Sequence* Arena::CreateMaybeMessage< ::opencv_onnx::TypeProto_Sequence >(Arena* arena) { return Arena::CreateMessageInternal< ::opencv_onnx::TypeProto_Sequence >(arena); } template<> PROTOBUF_NOINLINE ::opencv_onnx::TypeProto_Map* Arena::CreateMaybeMessage< ::opencv_onnx::TypeProto_Map >(Arena* arena) { return Arena::CreateMessageInternal< ::opencv_onnx::TypeProto_Map >(arena); } template<> PROTOBUF_NOINLINE ::opencv_onnx::TypeProto_Optional* Arena::CreateMaybeMessage< ::opencv_onnx::TypeProto_Optional >(Arena* arena) { return Arena::CreateMessageInternal< ::opencv_onnx::TypeProto_Optional >(arena); } template<> PROTOBUF_NOINLINE ::opencv_onnx::TypeProto_SparseTensor* Arena::CreateMaybeMessage< ::opencv_onnx::TypeProto_SparseTensor >(Arena* arena) { return Arena::CreateMessageInternal< ::opencv_onnx::TypeProto_SparseTensor >(arena); } template<> PROTOBUF_NOINLINE ::opencv_onnx::TypeProto* Arena::CreateMaybeMessage< ::opencv_onnx::TypeProto >(Arena* arena) { return Arena::CreateMessageInternal< ::opencv_onnx::TypeProto >(arena); } template<> PROTOBUF_NOINLINE ::opencv_onnx::OperatorSetIdProto* Arena::CreateMaybeMessage< ::opencv_onnx::OperatorSetIdProto >(Arena* arena) { return Arena::CreateMessageInternal< ::opencv_onnx::OperatorSetIdProto >(arena); } template<> PROTOBUF_NOINLINE ::opencv_onnx::FunctionProto* Arena::CreateMaybeMessage< ::opencv_onnx::FunctionProto >(Arena* arena) { return Arena::CreateMessageInternal< ::opencv_onnx::FunctionProto >(arena); } PROTOBUF_NAMESPACE_CLOSE // @@protoc_insertion_point(global_scope) #include