mirror of
https://github.com/opencv/opencv.git
synced 2024-11-25 11:40:44 +08:00
492 lines
18 KiB
C++
492 lines
18 KiB
C++
// Generated by the protocol buffer compiler. DO NOT EDIT!
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// source: tensor_shape.proto
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#ifndef PROTOBUF_tensor_5fshape_2eproto__INCLUDED
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#define PROTOBUF_tensor_5fshape_2eproto__INCLUDED
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#include <string>
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#include <google/protobuf/stubs/common.h>
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#if GOOGLE_PROTOBUF_VERSION < 3005000
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#error This file was generated by a newer version of protoc which is
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#error incompatible with your Protocol Buffer headers. Please update
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#error your headers.
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#endif
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#if 3005001 < GOOGLE_PROTOBUF_MIN_PROTOC_VERSION
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#error This file was generated by an older version of protoc which is
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#error incompatible with your Protocol Buffer headers. Please
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#error regenerate this file with a newer version of protoc.
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#endif
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#include <google/protobuf/io/coded_stream.h>
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#include <google/protobuf/arena.h>
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#include <google/protobuf/arenastring.h>
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#include <google/protobuf/generated_message_table_driven.h>
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#include <google/protobuf/generated_message_util.h>
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#include <google/protobuf/metadata.h>
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#include <google/protobuf/message.h>
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#include <google/protobuf/repeated_field.h> // IWYU pragma: export
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#include <google/protobuf/extension_set.h> // IWYU pragma: export
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#include <google/protobuf/unknown_field_set.h>
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// @@protoc_insertion_point(includes)
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namespace protobuf_tensor_5fshape_2eproto {
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// Internal implementation detail -- do not use these members.
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struct TableStruct {
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static const ::google::protobuf::internal::ParseTableField entries[];
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static const ::google::protobuf::internal::AuxillaryParseTableField aux[];
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static const ::google::protobuf::internal::ParseTable schema[2];
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static const ::google::protobuf::internal::FieldMetadata field_metadata[];
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static const ::google::protobuf::internal::SerializationTable serialization_table[];
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static const ::google::protobuf::uint32 offsets[];
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};
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void AddDescriptors();
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void InitDefaultsTensorShapeProto_DimImpl();
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void InitDefaultsTensorShapeProto_Dim();
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void InitDefaultsTensorShapeProtoImpl();
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void InitDefaultsTensorShapeProto();
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inline void InitDefaults() {
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InitDefaultsTensorShapeProto_Dim();
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InitDefaultsTensorShapeProto();
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}
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} // namespace protobuf_tensor_5fshape_2eproto
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namespace opencv_tensorflow {
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class TensorShapeProto;
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class TensorShapeProtoDefaultTypeInternal;
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extern TensorShapeProtoDefaultTypeInternal _TensorShapeProto_default_instance_;
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class TensorShapeProto_Dim;
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class TensorShapeProto_DimDefaultTypeInternal;
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extern TensorShapeProto_DimDefaultTypeInternal _TensorShapeProto_Dim_default_instance_;
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} // namespace opencv_tensorflow
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namespace opencv_tensorflow {
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// ===================================================================
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class TensorShapeProto_Dim : public ::google::protobuf::Message /* @@protoc_insertion_point(class_definition:opencv_tensorflow.TensorShapeProto.Dim) */ {
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public:
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TensorShapeProto_Dim();
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virtual ~TensorShapeProto_Dim();
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TensorShapeProto_Dim(const TensorShapeProto_Dim& from);
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inline TensorShapeProto_Dim& operator=(const TensorShapeProto_Dim& from) {
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CopyFrom(from);
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return *this;
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}
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#if LANG_CXX11
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TensorShapeProto_Dim(TensorShapeProto_Dim&& from) noexcept
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: TensorShapeProto_Dim() {
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*this = ::std::move(from);
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}
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inline TensorShapeProto_Dim& operator=(TensorShapeProto_Dim&& from) noexcept {
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if (GetArenaNoVirtual() == from.GetArenaNoVirtual()) {
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if (this != &from) InternalSwap(&from);
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} else {
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CopyFrom(from);
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}
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return *this;
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}
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#endif
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inline ::google::protobuf::Arena* GetArena() const PROTOBUF_FINAL {
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return GetArenaNoVirtual();
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}
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inline void* GetMaybeArenaPointer() const PROTOBUF_FINAL {
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return MaybeArenaPtr();
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}
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static const ::google::protobuf::Descriptor* descriptor();
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static const TensorShapeProto_Dim& default_instance();
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static void InitAsDefaultInstance(); // FOR INTERNAL USE ONLY
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static inline const TensorShapeProto_Dim* internal_default_instance() {
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return reinterpret_cast<const TensorShapeProto_Dim*>(
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&_TensorShapeProto_Dim_default_instance_);
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}
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static PROTOBUF_CONSTEXPR int const kIndexInFileMessages =
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0;
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void UnsafeArenaSwap(TensorShapeProto_Dim* other);
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void Swap(TensorShapeProto_Dim* other);
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friend void swap(TensorShapeProto_Dim& a, TensorShapeProto_Dim& b) {
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a.Swap(&b);
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}
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// implements Message ----------------------------------------------
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inline TensorShapeProto_Dim* New() const PROTOBUF_FINAL { return New(NULL); }
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TensorShapeProto_Dim* New(::google::protobuf::Arena* arena) const PROTOBUF_FINAL;
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void CopyFrom(const ::google::protobuf::Message& from) PROTOBUF_FINAL;
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void MergeFrom(const ::google::protobuf::Message& from) PROTOBUF_FINAL;
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void CopyFrom(const TensorShapeProto_Dim& from);
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void MergeFrom(const TensorShapeProto_Dim& from);
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void Clear() PROTOBUF_FINAL;
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bool IsInitialized() const PROTOBUF_FINAL;
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size_t ByteSizeLong() const PROTOBUF_FINAL;
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bool MergePartialFromCodedStream(
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::google::protobuf::io::CodedInputStream* input) PROTOBUF_FINAL;
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void SerializeWithCachedSizes(
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::google::protobuf::io::CodedOutputStream* output) const PROTOBUF_FINAL;
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::google::protobuf::uint8* InternalSerializeWithCachedSizesToArray(
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bool deterministic, ::google::protobuf::uint8* target) const PROTOBUF_FINAL;
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int GetCachedSize() const PROTOBUF_FINAL { return _cached_size_; }
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private:
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void SharedCtor();
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void SharedDtor();
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void SetCachedSize(int size) const PROTOBUF_FINAL;
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void InternalSwap(TensorShapeProto_Dim* other);
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protected:
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explicit TensorShapeProto_Dim(::google::protobuf::Arena* arena);
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private:
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static void ArenaDtor(void* object);
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inline void RegisterArenaDtor(::google::protobuf::Arena* arena);
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private:
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inline ::google::protobuf::Arena* GetArenaNoVirtual() const {
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return _internal_metadata_.arena();
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}
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inline void* MaybeArenaPtr() const {
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return _internal_metadata_.raw_arena_ptr();
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}
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public:
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::google::protobuf::Metadata GetMetadata() const PROTOBUF_FINAL;
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// nested types ----------------------------------------------------
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// accessors -------------------------------------------------------
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// string name = 2;
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void clear_name();
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static const int kNameFieldNumber = 2;
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const ::std::string& name() const;
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void set_name(const ::std::string& value);
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#if LANG_CXX11
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void set_name(::std::string&& value);
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#endif
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void set_name(const char* value);
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void set_name(const char* value, size_t size);
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::std::string* mutable_name();
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::std::string* release_name();
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void set_allocated_name(::std::string* name);
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PROTOBUF_RUNTIME_DEPRECATED("The unsafe_arena_ accessors for"
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" string fields are deprecated and will be removed in a"
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" future release.")
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::std::string* unsafe_arena_release_name();
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PROTOBUF_RUNTIME_DEPRECATED("The unsafe_arena_ accessors for"
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" string fields are deprecated and will be removed in a"
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" future release.")
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void unsafe_arena_set_allocated_name(
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::std::string* name);
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// int64 size = 1;
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void clear_size();
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static const int kSizeFieldNumber = 1;
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::google::protobuf::int64 size() const;
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void set_size(::google::protobuf::int64 value);
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// @@protoc_insertion_point(class_scope:opencv_tensorflow.TensorShapeProto.Dim)
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private:
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::google::protobuf::internal::InternalMetadataWithArena _internal_metadata_;
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template <typename T> friend class ::google::protobuf::Arena::InternalHelper;
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typedef void InternalArenaConstructable_;
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typedef void DestructorSkippable_;
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::google::protobuf::internal::ArenaStringPtr name_;
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::google::protobuf::int64 size_;
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mutable int _cached_size_;
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friend struct ::protobuf_tensor_5fshape_2eproto::TableStruct;
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friend void ::protobuf_tensor_5fshape_2eproto::InitDefaultsTensorShapeProto_DimImpl();
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};
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// -------------------------------------------------------------------
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class TensorShapeProto : public ::google::protobuf::Message /* @@protoc_insertion_point(class_definition:opencv_tensorflow.TensorShapeProto) */ {
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public:
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TensorShapeProto();
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virtual ~TensorShapeProto();
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TensorShapeProto(const TensorShapeProto& from);
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inline TensorShapeProto& operator=(const TensorShapeProto& from) {
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CopyFrom(from);
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return *this;
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}
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#if LANG_CXX11
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TensorShapeProto(TensorShapeProto&& from) noexcept
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: TensorShapeProto() {
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*this = ::std::move(from);
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}
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inline TensorShapeProto& operator=(TensorShapeProto&& from) noexcept {
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if (GetArenaNoVirtual() == from.GetArenaNoVirtual()) {
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if (this != &from) InternalSwap(&from);
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} else {
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CopyFrom(from);
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}
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return *this;
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}
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#endif
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inline ::google::protobuf::Arena* GetArena() const PROTOBUF_FINAL {
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return GetArenaNoVirtual();
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}
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inline void* GetMaybeArenaPointer() const PROTOBUF_FINAL {
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return MaybeArenaPtr();
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}
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static const ::google::protobuf::Descriptor* descriptor();
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static const TensorShapeProto& default_instance();
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static void InitAsDefaultInstance(); // FOR INTERNAL USE ONLY
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static inline const TensorShapeProto* internal_default_instance() {
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return reinterpret_cast<const TensorShapeProto*>(
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&_TensorShapeProto_default_instance_);
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}
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static PROTOBUF_CONSTEXPR int const kIndexInFileMessages =
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1;
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void UnsafeArenaSwap(TensorShapeProto* other);
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void Swap(TensorShapeProto* other);
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friend void swap(TensorShapeProto& a, TensorShapeProto& b) {
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a.Swap(&b);
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}
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// implements Message ----------------------------------------------
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inline TensorShapeProto* New() const PROTOBUF_FINAL { return New(NULL); }
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TensorShapeProto* New(::google::protobuf::Arena* arena) const PROTOBUF_FINAL;
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void CopyFrom(const ::google::protobuf::Message& from) PROTOBUF_FINAL;
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void MergeFrom(const ::google::protobuf::Message& from) PROTOBUF_FINAL;
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void CopyFrom(const TensorShapeProto& from);
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void MergeFrom(const TensorShapeProto& from);
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void Clear() PROTOBUF_FINAL;
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bool IsInitialized() const PROTOBUF_FINAL;
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size_t ByteSizeLong() const PROTOBUF_FINAL;
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bool MergePartialFromCodedStream(
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::google::protobuf::io::CodedInputStream* input) PROTOBUF_FINAL;
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void SerializeWithCachedSizes(
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::google::protobuf::io::CodedOutputStream* output) const PROTOBUF_FINAL;
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::google::protobuf::uint8* InternalSerializeWithCachedSizesToArray(
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bool deterministic, ::google::protobuf::uint8* target) const PROTOBUF_FINAL;
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int GetCachedSize() const PROTOBUF_FINAL { return _cached_size_; }
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private:
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void SharedCtor();
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void SharedDtor();
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void SetCachedSize(int size) const PROTOBUF_FINAL;
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void InternalSwap(TensorShapeProto* other);
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protected:
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explicit TensorShapeProto(::google::protobuf::Arena* arena);
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private:
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static void ArenaDtor(void* object);
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inline void RegisterArenaDtor(::google::protobuf::Arena* arena);
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private:
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inline ::google::protobuf::Arena* GetArenaNoVirtual() const {
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return _internal_metadata_.arena();
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}
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inline void* MaybeArenaPtr() const {
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return _internal_metadata_.raw_arena_ptr();
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}
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public:
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::google::protobuf::Metadata GetMetadata() const PROTOBUF_FINAL;
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// nested types ----------------------------------------------------
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typedef TensorShapeProto_Dim Dim;
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// accessors -------------------------------------------------------
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// repeated .opencv_tensorflow.TensorShapeProto.Dim dim = 2;
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int dim_size() const;
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void clear_dim();
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static const int kDimFieldNumber = 2;
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const ::opencv_tensorflow::TensorShapeProto_Dim& dim(int index) const;
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::opencv_tensorflow::TensorShapeProto_Dim* mutable_dim(int index);
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::opencv_tensorflow::TensorShapeProto_Dim* add_dim();
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::google::protobuf::RepeatedPtrField< ::opencv_tensorflow::TensorShapeProto_Dim >*
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mutable_dim();
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const ::google::protobuf::RepeatedPtrField< ::opencv_tensorflow::TensorShapeProto_Dim >&
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dim() const;
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// bool unknown_rank = 3;
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void clear_unknown_rank();
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static const int kUnknownRankFieldNumber = 3;
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bool unknown_rank() const;
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void set_unknown_rank(bool value);
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// @@protoc_insertion_point(class_scope:opencv_tensorflow.TensorShapeProto)
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private:
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::google::protobuf::internal::InternalMetadataWithArena _internal_metadata_;
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template <typename T> friend class ::google::protobuf::Arena::InternalHelper;
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typedef void InternalArenaConstructable_;
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typedef void DestructorSkippable_;
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::google::protobuf::RepeatedPtrField< ::opencv_tensorflow::TensorShapeProto_Dim > dim_;
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bool unknown_rank_;
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mutable int _cached_size_;
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friend struct ::protobuf_tensor_5fshape_2eproto::TableStruct;
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friend void ::protobuf_tensor_5fshape_2eproto::InitDefaultsTensorShapeProtoImpl();
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};
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// ===================================================================
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// ===================================================================
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#ifdef __GNUC__
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#pragma GCC diagnostic push
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#pragma GCC diagnostic ignored "-Wstrict-aliasing"
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#endif // __GNUC__
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// TensorShapeProto_Dim
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// int64 size = 1;
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inline void TensorShapeProto_Dim::clear_size() {
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size_ = GOOGLE_LONGLONG(0);
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}
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inline ::google::protobuf::int64 TensorShapeProto_Dim::size() const {
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// @@protoc_insertion_point(field_get:opencv_tensorflow.TensorShapeProto.Dim.size)
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return size_;
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}
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inline void TensorShapeProto_Dim::set_size(::google::protobuf::int64 value) {
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size_ = value;
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// @@protoc_insertion_point(field_set:opencv_tensorflow.TensorShapeProto.Dim.size)
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}
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// string name = 2;
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inline void TensorShapeProto_Dim::clear_name() {
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name_.ClearToEmpty(&::google::protobuf::internal::GetEmptyStringAlreadyInited(), GetArenaNoVirtual());
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}
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inline const ::std::string& TensorShapeProto_Dim::name() const {
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// @@protoc_insertion_point(field_get:opencv_tensorflow.TensorShapeProto.Dim.name)
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return name_.Get();
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}
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inline void TensorShapeProto_Dim::set_name(const ::std::string& value) {
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name_.Set(&::google::protobuf::internal::GetEmptyStringAlreadyInited(), value, GetArenaNoVirtual());
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// @@protoc_insertion_point(field_set:opencv_tensorflow.TensorShapeProto.Dim.name)
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}
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#if LANG_CXX11
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inline void TensorShapeProto_Dim::set_name(::std::string&& value) {
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name_.Set(
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&::google::protobuf::internal::GetEmptyStringAlreadyInited(), ::std::move(value), GetArenaNoVirtual());
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// @@protoc_insertion_point(field_set_rvalue:opencv_tensorflow.TensorShapeProto.Dim.name)
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}
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#endif
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inline void TensorShapeProto_Dim::set_name(const char* value) {
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GOOGLE_DCHECK(value != NULL);
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name_.Set(&::google::protobuf::internal::GetEmptyStringAlreadyInited(), ::std::string(value),
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GetArenaNoVirtual());
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// @@protoc_insertion_point(field_set_char:opencv_tensorflow.TensorShapeProto.Dim.name)
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}
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inline void TensorShapeProto_Dim::set_name(const char* value,
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size_t size) {
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name_.Set(&::google::protobuf::internal::GetEmptyStringAlreadyInited(), ::std::string(
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reinterpret_cast<const char*>(value), size), GetArenaNoVirtual());
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// @@protoc_insertion_point(field_set_pointer:opencv_tensorflow.TensorShapeProto.Dim.name)
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}
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inline ::std::string* TensorShapeProto_Dim::mutable_name() {
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// @@protoc_insertion_point(field_mutable:opencv_tensorflow.TensorShapeProto.Dim.name)
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return name_.Mutable(&::google::protobuf::internal::GetEmptyStringAlreadyInited(), GetArenaNoVirtual());
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}
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inline ::std::string* TensorShapeProto_Dim::release_name() {
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// @@protoc_insertion_point(field_release:opencv_tensorflow.TensorShapeProto.Dim.name)
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return name_.Release(&::google::protobuf::internal::GetEmptyStringAlreadyInited(), GetArenaNoVirtual());
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}
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inline void TensorShapeProto_Dim::set_allocated_name(::std::string* name) {
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if (name != NULL) {
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} else {
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}
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name_.SetAllocated(&::google::protobuf::internal::GetEmptyStringAlreadyInited(), name,
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GetArenaNoVirtual());
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// @@protoc_insertion_point(field_set_allocated:opencv_tensorflow.TensorShapeProto.Dim.name)
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}
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inline ::std::string* TensorShapeProto_Dim::unsafe_arena_release_name() {
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// @@protoc_insertion_point(field_unsafe_arena_release:opencv_tensorflow.TensorShapeProto.Dim.name)
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GOOGLE_DCHECK(GetArenaNoVirtual() != NULL);
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return name_.UnsafeArenaRelease(&::google::protobuf::internal::GetEmptyStringAlreadyInited(),
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GetArenaNoVirtual());
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}
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inline void TensorShapeProto_Dim::unsafe_arena_set_allocated_name(
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::std::string* name) {
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GOOGLE_DCHECK(GetArenaNoVirtual() != NULL);
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if (name != NULL) {
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} else {
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}
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name_.UnsafeArenaSetAllocated(&::google::protobuf::internal::GetEmptyStringAlreadyInited(),
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name, GetArenaNoVirtual());
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// @@protoc_insertion_point(field_unsafe_arena_set_allocated:opencv_tensorflow.TensorShapeProto.Dim.name)
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}
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// -------------------------------------------------------------------
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// TensorShapeProto
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// repeated .opencv_tensorflow.TensorShapeProto.Dim dim = 2;
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inline int TensorShapeProto::dim_size() const {
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return dim_.size();
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}
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inline void TensorShapeProto::clear_dim() {
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dim_.Clear();
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}
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inline const ::opencv_tensorflow::TensorShapeProto_Dim& TensorShapeProto::dim(int index) const {
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// @@protoc_insertion_point(field_get:opencv_tensorflow.TensorShapeProto.dim)
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return dim_.Get(index);
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}
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inline ::opencv_tensorflow::TensorShapeProto_Dim* TensorShapeProto::mutable_dim(int index) {
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// @@protoc_insertion_point(field_mutable:opencv_tensorflow.TensorShapeProto.dim)
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return dim_.Mutable(index);
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}
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inline ::opencv_tensorflow::TensorShapeProto_Dim* TensorShapeProto::add_dim() {
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// @@protoc_insertion_point(field_add:opencv_tensorflow.TensorShapeProto.dim)
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return dim_.Add();
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}
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inline ::google::protobuf::RepeatedPtrField< ::opencv_tensorflow::TensorShapeProto_Dim >*
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TensorShapeProto::mutable_dim() {
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// @@protoc_insertion_point(field_mutable_list:opencv_tensorflow.TensorShapeProto.dim)
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return &dim_;
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}
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inline const ::google::protobuf::RepeatedPtrField< ::opencv_tensorflow::TensorShapeProto_Dim >&
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TensorShapeProto::dim() const {
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// @@protoc_insertion_point(field_list:opencv_tensorflow.TensorShapeProto.dim)
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return dim_;
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|
}
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// bool unknown_rank = 3;
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|
inline void TensorShapeProto::clear_unknown_rank() {
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|
unknown_rank_ = false;
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|
}
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|
inline bool TensorShapeProto::unknown_rank() const {
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// @@protoc_insertion_point(field_get:opencv_tensorflow.TensorShapeProto.unknown_rank)
|
|
return unknown_rank_;
|
|
}
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|
inline void TensorShapeProto::set_unknown_rank(bool value) {
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|
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|
unknown_rank_ = value;
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|
// @@protoc_insertion_point(field_set:opencv_tensorflow.TensorShapeProto.unknown_rank)
|
|
}
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|
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|
#ifdef __GNUC__
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|
#pragma GCC diagnostic pop
|
|
#endif // __GNUC__
|
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// -------------------------------------------------------------------
|
|
|
|
|
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// @@protoc_insertion_point(namespace_scope)
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|
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} // namespace opencv_tensorflow
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|
|
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// @@protoc_insertion_point(global_scope)
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|
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#endif // PROTOBUF_tensor_5fshape_2eproto__INCLUDED
|