#include #include "../sources/SIMDHelpers.h" #include "../sources/Buffer.h" #include #include #include static void Dummy(benchmark::State& state) { Buffer buffer (state.range(0)); std::random_device rd { }; std::mt19937 gen { rd() }; std::uniform_real_distribution dist { 1, 2 }; for (auto _ : state) { auto fillValue = dist(gen); benchmark::DoNotOptimize(fillValue); } } static void Fill_float(benchmark::State& state) { Buffer buffer (state.range(0)); std::random_device rd { }; std::mt19937 gen { rd() }; std::uniform_real_distribution dist { 1, 2 }; for (auto _ : state) { fill(absl::MakeSpan(buffer), dist(gen)); } } static void Fill_float_unaligned(benchmark::State& state) { Buffer buffer (state.range(0)); std::random_device rd { }; std::mt19937 gen { rd() }; std::uniform_real_distribution dist { 1, 2 }; for (auto _ : state) { fill(absl::MakeSpan(buffer).subspan(1), dist(gen)); } } static void Fill_float_SSE(benchmark::State& state) { Buffer buffer (state.range(0)); std::random_device rd { }; std::mt19937 gen { rd() }; std::uniform_real_distribution dist { 1, 2 }; for (auto _ : state) { fill(absl::MakeSpan(buffer), dist(gen)); } } static void Fill_float_SSE_unaligned(benchmark::State& state) { Buffer buffer (state.range(0)); std::random_device rd { }; std::mt19937 gen { rd() }; std::uniform_real_distribution dist { 1, 2 }; for (auto _ : state) { fill(absl::MakeSpan(buffer).subspan(1), dist(gen)); } } static void Fill_double(benchmark::State& state) { Buffer buffer (state.range(0)); std::random_device rd { }; std::mt19937 gen { rd() }; std::uniform_real_distribution dist { 1, 2 }; for (auto _ : state) { fill(absl::MakeSpan(buffer), dist(gen)); } } BENCHMARK(Dummy)->Range((2<<6), (2<<16)); BENCHMARK(Fill_float)->Range((2<<6), (2<<16)); BENCHMARK(Fill_float_SSE)->Range((2<<6), (2<<16)); BENCHMARK(Fill_float_unaligned)->Range((2<<6), (2<<16)); BENCHMARK(Fill_float_SSE_unaligned)->Range((2<<6), (2<<16)); BENCHMARK(Fill_double)->Range((2<<6), (2<<16)); BENCHMARK_MAIN();