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#include <benchmark/benchmark.h>
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#include <string.h>
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// For benchmarks of parsing speed.
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#include "benchmarks/descriptor.pb.h"
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#include "benchmarks/descriptor.upb.h"
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#include "benchmarks/descriptor.upbdefs.h"
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#include "benchmarks/descriptor_sv.pb.h"
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// For for benchmarks of building descriptors.
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#include "google/ads/googleads/v5/services/google_ads_service.upbdefs.h"
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#include "google/protobuf/descriptor.pb.h"
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#include "google/protobuf/descriptor.upb.h"
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#include "google/protobuf/descriptor.upbdefs.h"
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#include "upb/def.hpp"
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upb_strview descriptor = benchmarks_descriptor_proto_upbdefinit.descriptor;
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namespace protobuf = ::google::protobuf;
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/* A buffer big enough to parse descriptor.proto without going to heap. */
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char buf[65535];
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void CollectFileDescriptors(const upb_def_init* file,
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std::vector<upb_strview>& serialized_files,
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std::unordered_set<const upb_def_init*>& seen) {
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if (!seen.insert(file).second) return;
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for (upb_def_init **deps = file->deps; *deps; deps++) {
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CollectFileDescriptors(*deps, serialized_files, seen);
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}
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serialized_files.push_back(file->descriptor);
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}
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static void BM_ArenaOneAlloc(benchmark::State& state) {
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for (auto _ : state) {
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upb_arena* arena = upb_arena_new();
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upb_arena_malloc(arena, 1);
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upb_arena_free(arena);
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}
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}
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BENCHMARK(BM_ArenaOneAlloc);
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static void BM_ArenaInitialBlockOneAlloc(benchmark::State& state) {
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for (auto _ : state) {
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upb_arena* arena = upb_arena_init(buf, sizeof(buf), NULL);
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upb_arena_malloc(arena, 1);
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upb_arena_free(arena);
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}
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}
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BENCHMARK(BM_ArenaInitialBlockOneAlloc);
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static void BM_LoadDescriptor_Upb(benchmark::State& state) {
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size_t bytes_per_iter;
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for (auto _ : state) {
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upb::SymbolTable symtab;
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google_protobuf_DescriptorProto_getmsgdef(symtab.ptr());
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bytes_per_iter = _upb_symtab_bytesloaded(symtab.ptr());
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}
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state.SetBytesProcessed(state.iterations() * descriptor.size);
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}
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BENCHMARK(BM_LoadDescriptor_Upb);
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static void BM_LoadAdsDescriptor_Upb(benchmark::State& state) {
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size_t bytes_per_iter;
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for (auto _ : state) {
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upb::SymbolTable symtab;
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google_ads_googleads_v5_services_SearchGoogleAdsRequest_getmsgdef(
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symtab.ptr());
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bytes_per_iter = _upb_symtab_bytesloaded(symtab.ptr());
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}
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state.SetBytesProcessed(state.iterations() * bytes_per_iter);
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}
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BENCHMARK(BM_LoadAdsDescriptor_Upb);
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static void BM_LoadDescriptor_Proto2(benchmark::State& state) {
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for (auto _ : state) {
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protobuf::Arena arena;
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protobuf::StringPiece input(descriptor.data,descriptor.size);
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auto proto = protobuf::Arena::CreateMessage<protobuf::FileDescriptorProto>(
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&arena);
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protobuf::DescriptorPool pool;
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bool ok = proto->ParseFrom<protobuf::MessageLite::kMergePartial>(input) &&
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pool.BuildFile(*proto) != nullptr;
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if (!ok) {
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printf("Failed to add file.\n");
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exit(1);
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}
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}
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state.SetBytesProcessed(state.iterations() * descriptor.size);
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}
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BENCHMARK(BM_LoadDescriptor_Proto2);
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static void BM_LoadAdsDescriptor_Proto2(benchmark::State& state) {
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extern upb_def_init google_ads_googleads_v5_services_google_ads_service_proto_upbdefinit;
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std::vector<upb_strview> serialized_files;
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std::unordered_set<const upb_def_init*> seen_files;
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CollectFileDescriptors(
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&google_ads_googleads_v5_services_google_ads_service_proto_upbdefinit,
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serialized_files, seen_files);
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size_t bytes_per_iter;
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for (auto _ : state) {
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bytes_per_iter = 0;
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protobuf::Arena arena;
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protobuf::DescriptorPool pool;
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for (auto file : serialized_files) {
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protobuf::StringPiece input(file.data, file.size);
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auto proto = protobuf::Arena::CreateMessage<protobuf::FileDescriptorProto>(
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&arena);
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bool ok = proto->ParseFrom<protobuf::MessageLite::kMergePartial>(input) &&
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pool.BuildFile(*proto) != nullptr;
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if (!ok) {
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printf("Failed to add file.\n");
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exit(1);
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}
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bytes_per_iter += input.size();
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}
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}
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state.SetBytesProcessed(state.iterations() * bytes_per_iter);
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}
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BENCHMARK(BM_LoadAdsDescriptor_Proto2);
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static void BM_Parse_Upb_FileDesc_WithArena(benchmark::State& state) {
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size_t bytes = 0;
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for (auto _ : state) {
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upb_arena* arena = upb_arena_new();
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upb_benchmark_FileDescriptorProto* set =
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upb_benchmark_FileDescriptorProto_parse(descriptor.data,
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descriptor.size, arena);
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if (!set) {
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printf("Failed to parse.\n");
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exit(1);
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}
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bytes += descriptor.size;
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upb_arena_free(arena);
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}
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state.SetBytesProcessed(state.iterations() * descriptor.size);
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}
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BENCHMARK(BM_Parse_Upb_FileDesc_WithArena);
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static void BM_Parse_Upb_FileDesc_WithInitialBlock(benchmark::State& state) {
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size_t bytes = 0;
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for (auto _ : state) {
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upb_arena* arena = upb_arena_init(buf, sizeof(buf), NULL);
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upb_benchmark_FileDescriptorProto* set =
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upb_benchmark_FileDescriptorProto_parse(descriptor.data,
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descriptor.size, arena);
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if (!set) {
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printf("Failed to parse.\n");
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exit(1);
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}
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bytes += descriptor.size;
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upb_arena_free(arena);
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}
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state.SetBytesProcessed(state.iterations() * descriptor.size);
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}
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BENCHMARK(BM_Parse_Upb_FileDesc_WithInitialBlock);
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template <class P>
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struct NoArena {
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public:
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P* GetProto() { return &proto_; }
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private:
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P proto_;
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};
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template <class P>
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struct WithArena {
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public:
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P* GetProto() { return protobuf::Arena::CreateMessage<P>(&arena_); }
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private:
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protobuf::Arena arena_;
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};
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template <class P>
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struct WithInitialBlock {
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public:
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WithInitialBlock() : arena_(GetOptions()) {}
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P* GetProto() { return protobuf::Arena::CreateMessage<P>(&arena_); }
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private:
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protobuf::ArenaOptions GetOptions() {
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protobuf::ArenaOptions opts;
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opts.initial_block = buf;
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opts.initial_block_size = sizeof(buf);
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return opts;
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}
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protobuf::Arena arena_;
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};
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using FileDesc = ::upb_benchmark::FileDescriptorProto;
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using FileDescSV = ::upb_benchmark::sv::FileDescriptorProto;
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const protobuf::MessageLite::ParseFlags kMergePartial =
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protobuf::MessageLite::ParseFlags::kMergePartial;
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const protobuf::MessageLite::ParseFlags kAliasStrings =
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protobuf::MessageLite::ParseFlags::kMergePartialWithAliasing;
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template <class P, template <class> class Factory,
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protobuf::MessageLite::ParseFlags kParseFlags = kMergePartial>
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void BM_Parse_Proto2(benchmark::State& state) {
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size_t bytes = 0;
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for (auto _ : state) {
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Factory<P> proto_factory;
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auto proto = proto_factory.GetProto();
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protobuf::StringPiece input(descriptor.data,descriptor.size);
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bool ok = proto->template ParseFrom<kParseFlags>(input);
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if (!ok) {
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printf("Failed to parse.\n");
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exit(1);
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}
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bytes += descriptor.size;
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}
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state.SetBytesProcessed(state.iterations() * descriptor.size);
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}
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BENCHMARK_TEMPLATE(BM_Parse_Proto2, FileDesc, NoArena);
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BENCHMARK_TEMPLATE(BM_Parse_Proto2, FileDesc, WithArena);
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BENCHMARK_TEMPLATE(BM_Parse_Proto2, FileDesc, WithInitialBlock);
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//BENCHMARK_TEMPLATE(BM_Parse_Proto2, FileDescSV, NoArena);
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//BENCHMARK_TEMPLATE(BM_Parse_Proto2, FileDescSV, WithArena);
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BENCHMARK_TEMPLATE(BM_Parse_Proto2, FileDescSV, WithInitialBlock);
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//BENCHMARK_TEMPLATE(BM_Parse_Proto2, FileDescSV, NoArena, kAliasStrings);
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//BENCHMARK_TEMPLATE(BM_Parse_Proto2, FileDescSV, WithArena, kAliasStrings);
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BENCHMARK_TEMPLATE(BM_Parse_Proto2, FileDescSV, WithInitialBlock, kAliasStrings);
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static void BM_SerializeDescriptor_Proto2(benchmark::State& state) {
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size_t bytes = 0;
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upb_benchmark::FileDescriptorProto proto;
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proto.ParseFromArray(descriptor.data, descriptor.size);
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for (auto _ : state) {
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proto.SerializePartialToArray(buf, sizeof(buf));
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bytes += descriptor.size;
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}
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state.SetBytesProcessed(state.iterations() * descriptor.size);
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}
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BENCHMARK(BM_SerializeDescriptor_Proto2);
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static void BM_SerializeDescriptor_Upb(benchmark::State& state) {
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int64_t total = 0;
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upb_arena* arena = upb_arena_new();
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upb_benchmark_FileDescriptorProto* set =
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upb_benchmark_FileDescriptorProto_parse(descriptor.data, descriptor.size,
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arena);
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if (!set) {
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printf("Failed to parse.\n");
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exit(1);
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}
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for (auto _ : state) {
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upb_arena* enc_arena = upb_arena_init(buf, sizeof(buf), NULL);
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size_t size;
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char* data =
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upb_benchmark_FileDescriptorProto_serialize(set, enc_arena, &size);
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if (!data) {
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printf("Failed to serialize.\n");
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exit(1);
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}
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total += size;
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}
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state.SetBytesProcessed(total);
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}
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BENCHMARK(BM_SerializeDescriptor_Upb);
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