305 lines
		
	
	
		
			11 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			305 lines
		
	
	
		
			11 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
// Protocol Buffers - Google's data interchange format
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// Copyright 2008 Google Inc.  All rights reserved.
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// https://developers.google.com/protocol-buffers/
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//
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// Redistribution and use in source and binary forms, with or without
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// modification, are permitted provided that the following conditions are
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// met:
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//
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//     * Redistributions of source code must retain the above copyright
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// notice, this list of conditions and the following disclaimer.
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//     * Redistributions in binary form must reproduce the above
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// copyright notice, this list of conditions and the following disclaimer
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// in the documentation and/or other materials provided with the
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// distribution.
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//     * Neither the name of Google Inc. nor the names of its
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// contributors may be used to endorse or promote products derived from
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// this software without specific prior written permission.
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//
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// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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#ifndef GOOGLE_PROTOBUF_GENERATED_MESSAGE_TCTABLE_IMPL_H__
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#define GOOGLE_PROTOBUF_GENERATED_MESSAGE_TCTABLE_IMPL_H__
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#include <cstdint>
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#include <type_traits>
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#include <google/protobuf/parse_context.h>
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#include <google/protobuf/extension_set.h>
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#include <google/protobuf/generated_message_tctable_decl.h>
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#include <google/protobuf/message_lite.h>
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#include <google/protobuf/metadata_lite.h>
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#include <google/protobuf/port.h>
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#include <google/protobuf/wire_format_lite.h>
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// Must come last:
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#include <google/protobuf/port_def.inc>
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namespace google {
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namespace protobuf {
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class Message;
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class UnknownFieldSet;
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namespace internal {
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// PROTOBUF_TC_PARAM_DECL are the parameters for tailcall functions, it is
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// defined in port_def.inc.
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//
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// Note that this is performance sensitive: changing the parameters will change
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// the registers used by the ABI calling convention, which subsequently affects
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// register selection logic inside the function.
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// PROTOBUF_TC_PARAM_PASS passes values to match PROTOBUF_TC_PARAM_DECL.
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#define PROTOBUF_TC_PARAM_PASS msg, ptr, ctx, table, hasbits, data
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// PROTOBUF_TC_PARSE_* decide which function is used to parse message-typed
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// fields. The guard macros are defined in port_def.inc.
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#if PROTOBUF_TC_STATIC_PARSE_SINGULAR1
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#define PROTOBUF_TC_PARSE_SINGULAR1(MESSAGE) MESSAGE::Tct_ParseS1
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#else
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#define PROTOBUF_TC_PARSE_SINGULAR1(MESSAGE) \
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  ::google::protobuf::internal::TcParserBase::SingularParseMessage<MESSAGE, uint8_t>
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#endif  // PROTOBUF_TC_STATIC_PARSE_SINGULAR1
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#if PROTOBUF_TC_STATIC_PARSE_SINGULAR2
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#define PROTOBUF_TC_PARSE_SINGULAR2(MESSAGE) MESSAGE::Tct_ParseS2
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#else
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#define PROTOBUF_TC_PARSE_SINGULAR2(MESSAGE) \
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  ::google::protobuf::internal::TcParserBase::SingularParseMessage<MESSAGE, uint16_t>
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#endif  // PROTOBUF_TC_STATIC_PARSE_SINGULAR2
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#if PROTOBUF_TC_STATIC_PARSE_REPEATED1
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#define PROTOBUF_TC_PARSE_REPEATED1(MESSAGE) MESSAGE::Tct_ParseR1
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#else
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#define PROTOBUF_TC_PARSE_REPEATED1(MESSAGE) \
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  ::google::protobuf::internal::TcParserBase::RepeatedParseMessage<MESSAGE, uint8_t>
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#endif  // PROTOBUF_TC_STATIC_PARSE_REPEATED1
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#if PROTOBUF_TC_STATIC_PARSE_REPEATED2
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#define PROTOBUF_TC_PARSE_REPEATED2(MESSAGE) MESSAGE::Tct_ParseR2
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#else
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#define PROTOBUF_TC_PARSE_REPEATED2(MESSAGE) \
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  ::google::protobuf::internal::TcParserBase::RepeatedParseMessage<MESSAGE, uint16_t>
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#endif  // PROTOBUF_TC_STATIC_PARSE_REPEATED2
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#ifndef NDEBUG
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template <size_t align>
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#ifndef _MSC_VER
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[[noreturn]]
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#endif
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void AlignFail(uintptr_t address) {
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  GOOGLE_LOG(FATAL) << "Unaligned (" << align << ") access at " << address;
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}
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extern template void AlignFail<4>(uintptr_t);
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extern template void AlignFail<8>(uintptr_t);
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#endif
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class TcParserBase {
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 public:
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  static const char* GenericFallback(PROTOBUF_TC_PARAM_DECL);
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  static const char* GenericFallbackLite(PROTOBUF_TC_PARAM_DECL);
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  template <typename FieldType, typename TagType>
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  PROTOBUF_NOINLINE static const char* SingularParseMessage(
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      PROTOBUF_TC_PARAM_DECL) {
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    if (PROTOBUF_PREDICT_FALSE(data.coded_tag<TagType>() != 0)) {
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      return table->fallback(PROTOBUF_TC_PARAM_PASS);
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    }
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    ptr += sizeof(TagType);
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    hasbits |= (uint64_t{1} << data.hasbit_idx());
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    auto& field = RefAt<FieldType*>(msg, data.offset());
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    if (field == nullptr) {
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      auto arena = ctx->data().arena;
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      if (Arena::is_arena_constructable<FieldType>::value) {
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        field = Arena::CreateMessage<FieldType>(arena);
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      } else {
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        field = Arena::Create<FieldType>(arena);
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      }
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    }
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    SyncHasbits(msg, hasbits, table);
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    return ctx->ParseMessage(field, ptr);
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  }
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  template <typename FieldType, typename TagType>
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  PROTOBUF_NOINLINE static const char* RepeatedParseMessage(
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      PROTOBUF_TC_PARAM_DECL) {
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    if (PROTOBUF_PREDICT_FALSE(data.coded_tag<TagType>() != 0)) {
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      return table->fallback(PROTOBUF_TC_PARAM_PASS);
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    }
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    ptr += sizeof(TagType);
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    auto& field = RefAt<RepeatedPtrField<FieldType>>(msg, data.offset());
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    SyncHasbits(msg, hasbits, table);
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    ptr = ctx->ParseMessage(field.Add(), ptr);
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    return ptr;
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  }
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  template <typename LayoutType, typename TagType>
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  static const char* RepeatedFixed(PROTOBUF_TC_PARAM_DECL);
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  template <typename LayoutType, typename TagType>
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  static const char* PackedFixed(PROTOBUF_TC_PARAM_DECL);
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  enum VarintDecode { kNoConversion = 0, kZigZag = 1 };
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  template <typename FieldType, typename TagType, VarintDecode zigzag>
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  static const char* RepeatedVarint(PROTOBUF_TC_PARAM_DECL);
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  template <typename FieldType, typename TagType, VarintDecode zigzag>
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  static const char* PackedVarint(PROTOBUF_TC_PARAM_DECL);
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  enum Utf8Type { kNoUtf8 = 0, kUtf8 = 1, kUtf8ValidateOnly = 2 };
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  template <typename TagType, Utf8Type utf8>
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  static const char* SingularString(PROTOBUF_TC_PARAM_DECL);
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  template <typename TagType, Utf8Type utf8>
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  static const char* RepeatedString(PROTOBUF_TC_PARAM_DECL);
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  template <typename T>
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  static inline T& RefAt(void* x, size_t offset) {
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    T* target = reinterpret_cast<T*>(static_cast<char*>(x) + offset);
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#ifndef NDEBUG
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    if (PROTOBUF_PREDICT_FALSE(
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            reinterpret_cast<uintptr_t>(target) % alignof(T) != 0)) {
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      AlignFail<alignof(T)>(reinterpret_cast<uintptr_t>(target));
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    }
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#endif
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    return *target;
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  }
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  static inline PROTOBUF_ALWAYS_INLINE void SyncHasbits(
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      MessageLite* msg, uint64_t hasbits, const TailCallParseTableBase* table) {
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    const uint32_t has_bits_offset = table->has_bits_offset;
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    if (has_bits_offset) {
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      // Only the first 32 has-bits are updated. Nothing above those is stored,
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      // but e.g. messages without has-bits update the upper bits.
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      RefAt<uint32_t>(msg, has_bits_offset) = static_cast<uint32_t>(hasbits);
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    }
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  }
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 protected:
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  static inline PROTOBUF_ALWAYS_INLINE const char* Return(
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      PROTOBUF_TC_PARAM_DECL) {
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    SyncHasbits(msg, hasbits, table);
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    return ptr;
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  }
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  static inline PROTOBUF_ALWAYS_INLINE const char* Error(
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      PROTOBUF_TC_PARAM_DECL) {
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    SyncHasbits(msg, hasbits, table);
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    return nullptr;
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  }
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  class ScopedArenaSwap final {
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   public:
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    ScopedArenaSwap(MessageLite* msg, ParseContext* ctx)
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        : ctx_(ctx), saved_(ctx->data().arena) {
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      ctx_->data().arena = msg->GetArenaForAllocation();
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    }
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    ScopedArenaSwap(const ScopedArenaSwap&) = delete;
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    ~ScopedArenaSwap() { ctx_->data().arena = saved_; }
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   private:
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    ParseContext* const ctx_;
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    Arena* const saved_;
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  };
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  template <class MessageBaseT, class UnknownFieldsT>
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  static const char* GenericFallbackImpl(PROTOBUF_TC_PARAM_DECL) {
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#define CHK_(x) \
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  if (PROTOBUF_PREDICT_FALSE(!(x))) return nullptr /* NOLINT */
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    SyncHasbits(msg, hasbits, table);
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    uint32_t tag;
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    ptr = ::PROTOBUF_NAMESPACE_ID::internal::ReadTag(ptr, &tag);
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    CHK_(ptr);
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    if ((tag & 7) == WireFormatLite::WIRETYPE_END_GROUP || tag == 0) {
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      ctx->SetLastTag(tag);
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      return ptr;
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    }
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    uint32_t num = tag >> 3;
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    if (table->extension_range_low <= num &&
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        num <= table->extension_range_high) {
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      return RefAt<ExtensionSet>(msg, table->extension_offset)
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          .ParseField(tag, ptr,
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                      static_cast<const MessageBaseT*>(table->default_instance),
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                      &msg->_internal_metadata_, ctx);
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    }
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    return UnknownFieldParse(
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        tag, msg->_internal_metadata_.mutable_unknown_fields<UnknownFieldsT>(),
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        ptr, ctx);
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#undef CHK_
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  }
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};
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// TcParser implements most of the parsing logic for tailcall tables.
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//
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// This is templated on lg2(table size), since dispatching depends upon the size
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// of the table. The template parameter avoids runtime overhead for computing
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// the table entry index.
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template <uint32_t kPowerOf2>
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struct TcParser final : TcParserBase {
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  // Dispatch to the designated parse function
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  inline PROTOBUF_ALWAYS_INLINE static const char* TagDispatch(
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      PROTOBUF_TC_PARAM_DECL) {
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    const auto coded_tag = UnalignedLoad<uint16_t>(ptr);
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    constexpr size_t kIdxMask = ((1 << (kPowerOf2)) - 1);
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    const size_t idx = (coded_tag >> 3) & kIdxMask;
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    data = table->table()[idx].bits;
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    data.data ^= coded_tag;
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    PROTOBUF_MUSTTAIL return table->table()[idx].target(PROTOBUF_TC_PARAM_PASS);
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  }
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  // We can only safely call from field to next field if the call is optimized
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  // to a proper tail call. Otherwise we blow through stack. Clang and gcc
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  // reliably do this optimization in opt mode, but do not perform this in debug
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  // mode. Luckily the structure of the algorithm is such that it's always
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  // possible to just return and use the enclosing parse loop as a trampoline.
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  static const char* TailCall(PROTOBUF_TC_PARAM_DECL) {
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    constexpr bool always_return = !PROTOBUF_TAILCALL;
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    if (always_return || !ctx->DataAvailable(ptr)) {
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      PROTOBUF_MUSTTAIL return Return(PROTOBUF_TC_PARAM_PASS);
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    }
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    PROTOBUF_MUSTTAIL return TagDispatch(PROTOBUF_TC_PARAM_PASS);
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  }
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  static const char* ParseLoop(MessageLite* msg, const char* ptr,
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                               ParseContext* ctx,
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                               const TailCallParseTableBase* table) {
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    ScopedArenaSwap saved(msg, ctx);
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    const uint32_t has_bits_offset = table->has_bits_offset;
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    while (!ctx->Done(&ptr)) {
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      uint64_t hasbits = 0;
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      if (has_bits_offset) hasbits = RefAt<uint32_t>(msg, has_bits_offset);
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      ptr = TagDispatch(msg, ptr, ctx, table, hasbits, {});
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      if (ptr == nullptr) break;
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      if (ctx->LastTag() != 1) break;  // Ended on terminating tag
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    }
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    return ptr;
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  }
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  template <typename LayoutType, typename TagType>
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  static const char* SingularFixed(PROTOBUF_TC_PARAM_DECL);
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  template <typename FieldType, typename TagType, VarintDecode zigzag>
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  static const char* SingularVarint(PROTOBUF_TC_PARAM_DECL);
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};
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// Declare helper functions:
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#include <google/protobuf/generated_message_tctable_impl.inc>
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}  // namespace internal
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}  // namespace protobuf
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}  // namespace google
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#include <google/protobuf/port_undef.inc>
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#endif  // GOOGLE_PROTOBUF_GENERATED_MESSAGE_TCTABLE_IMPL_H__
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