| // Copyright 2022 Google LLC |
| // |
| // This source code is licensed under the BSD-style license found in the |
| // LICENSE file in the root directory of this source tree. |
| |
| #include <algorithm> |
| #include <cmath> |
| #include <functional> |
| #include <random> |
| #include <vector> |
| |
| #include <benchmark/benchmark.h> |
| #include <fp16/fp16.h> |
| #include "bench/utils.h" |
| |
| #include <xnnpack.h> |
| #include <xnnpack/aligned-allocator.h> |
| #include <xnnpack/common.h> |
| #include <xnnpack/microfnptr.h> |
| #include <xnnpack/microparams-init.h> |
| #include <xnnpack/vcvt.h> |
| |
| |
| static void qu8_vcvt( |
| benchmark::State& state, |
| xnn_qu8_vcvt_ukernel_function cvt, |
| xnn_init_qu8_cvt_params_fn init_params, |
| benchmark::utils::IsaCheckFunction isa_check = nullptr) |
| { |
| if (isa_check && !isa_check(state)) { |
| return; |
| } |
| |
| const size_t num_elements = state.range(0); |
| |
| std::random_device random_device; |
| auto rng = std::mt19937(random_device()); |
| auto u8rng = std::bind( |
| std::uniform_int_distribution<int32_t>(std::numeric_limits<uint8_t>::min(), std::numeric_limits<uint8_t>::max()), |
| std::ref(rng)); |
| |
| std::vector<uint8_t, AlignedAllocator<uint8_t, 64>> x(num_elements + XNN_EXTRA_BYTES / sizeof(uint8_t)); |
| std::vector<uint8_t, AlignedAllocator<uint8_t, 64>> y(num_elements); |
| std::generate(x.begin(), x.end(), std::ref(u8rng)); |
| std::fill(y.begin(), y.end(), UINT8_C(0xAA)); |
| |
| xnn_qu8_cvt_params params; |
| init_params(¶ms, 1.25f /* scale */, 127 /* input zero point */, 129 /* output zero point */); |
| for (auto _ : state) { |
| cvt(num_elements * sizeof(uint8_t), x.data(), y.data(), ¶ms); |
| } |
| |
| const uint64_t cpu_frequency = benchmark::utils::GetCurrentCpuFrequency(); |
| if (cpu_frequency != 0) { |
| state.counters["cpufreq"] = cpu_frequency; |
| } |
| |
| const size_t elements_per_iteration = num_elements; |
| state.counters["elements"] = |
| benchmark::Counter(uint64_t(state.iterations()) * elements_per_iteration, benchmark::Counter::kIsRate); |
| |
| const size_t bytes_per_iteration = num_elements * (sizeof(uint8_t) + sizeof(uint8_t)); |
| state.counters["bytes"] = |
| benchmark::Counter(uint64_t(state.iterations()) * bytes_per_iteration, benchmark::Counter::kIsRate); |
| } |
| |
| #if XNN_ARCH_ARM || XNN_ARCH_ARM64 |
| BENCHMARK_CAPTURE(qu8_vcvt, neon_x8, |
| xnn_qu8_vcvt_ukernel__neon_x8, |
| xnn_init_qu8_cvt_neon_params, |
| benchmark::utils::CheckNEON) |
| ->Apply(benchmark::utils::UnaryElementwiseParameters<uint8_t, uint8_t>) |
| ->UseRealTime(); |
| BENCHMARK_CAPTURE(qu8_vcvt, neon_x16, |
| xnn_qu8_vcvt_ukernel__neon_x16, |
| xnn_init_qu8_cvt_neon_params, |
| benchmark::utils::CheckNEON) |
| ->Apply(benchmark::utils::UnaryElementwiseParameters<uint8_t, uint8_t>) |
| ->UseRealTime(); |
| BENCHMARK_CAPTURE(qu8_vcvt, neon_x32, |
| xnn_qu8_vcvt_ukernel__neon_x32, |
| xnn_init_qu8_cvt_neon_params, |
| benchmark::utils::CheckNEON) |
| ->Apply(benchmark::utils::UnaryElementwiseParameters<uint8_t, uint8_t>) |
| ->UseRealTime(); |
| #endif // XNN_ARCH_ARM || XNN_ARCH_ARM64 |
| |
| #if XNN_ARCH_ARM |
| BENCHMARK_CAPTURE(qu8_vcvt, armsimd32_x4, |
| xnn_qu8_vcvt_ukernel__armsimd32_x4, |
| xnn_init_qu8_cvt_armsimd32_params, |
| benchmark::utils::CheckARMV6) |
| ->Apply(benchmark::utils::UnaryElementwiseParameters<uint8_t, uint8_t>) |
| ->UseRealTime(); |
| BENCHMARK_CAPTURE(qu8_vcvt, armsimd32_x8, |
| xnn_qu8_vcvt_ukernel__armsimd32_x8, |
| xnn_init_qu8_cvt_armsimd32_params, |
| benchmark::utils::CheckARMV6) |
| ->Apply(benchmark::utils::UnaryElementwiseParameters<uint8_t, uint8_t>) |
| ->UseRealTime(); |
| #endif // XNN_ARCH_ARM |
| |
| #if XNN_ARCH_X86 || XNN_ARCH_X86_64 |
| BENCHMARK_CAPTURE(qu8_vcvt, avx2_x16, |
| xnn_qu8_vcvt_ukernel__avx2_x16, |
| xnn_init_qu8_cvt_avx2_params, |
| benchmark::utils::CheckAVX2) |
| ->Apply(benchmark::utils::UnaryElementwiseParameters<int8_t, int8_t>) |
| ->UseRealTime(); |
| BENCHMARK_CAPTURE(qu8_vcvt, avx2_x32, |
| xnn_qu8_vcvt_ukernel__avx2_x32, |
| xnn_init_qu8_cvt_avx2_params, |
| benchmark::utils::CheckAVX2) |
| ->Apply(benchmark::utils::UnaryElementwiseParameters<int8_t, int8_t>) |
| ->UseRealTime(); |
| BENCHMARK_CAPTURE(qu8_vcvt, avx2_x64, |
| xnn_qu8_vcvt_ukernel__avx2_x64, |
| xnn_init_qu8_cvt_avx2_params, |
| benchmark::utils::CheckAVX2) |
| ->Apply(benchmark::utils::UnaryElementwiseParameters<int8_t, int8_t>) |
| ->UseRealTime(); |
| |
| BENCHMARK_CAPTURE(qu8_vcvt, avx_x8, |
| xnn_qu8_vcvt_ukernel__avx_x8, |
| xnn_init_qu8_cvt_ssse3_params, |
| benchmark::utils::CheckAVX) |
| ->Apply(benchmark::utils::UnaryElementwiseParameters<uint8_t, uint8_t>) |
| ->UseRealTime(); |
| BENCHMARK_CAPTURE(qu8_vcvt, avx_x16, |
| xnn_qu8_vcvt_ukernel__avx_x16, |
| xnn_init_qu8_cvt_ssse3_params, |
| benchmark::utils::CheckAVX) |
| ->Apply(benchmark::utils::UnaryElementwiseParameters<uint8_t, uint8_t>) |
| ->UseRealTime(); |
| BENCHMARK_CAPTURE(qu8_vcvt, avx_x32, |
| xnn_qu8_vcvt_ukernel__avx_x32, |
| xnn_init_qu8_cvt_ssse3_params, |
| benchmark::utils::CheckAVX) |
| ->Apply(benchmark::utils::UnaryElementwiseParameters<uint8_t, uint8_t>) |
| ->UseRealTime(); |
| |
| BENCHMARK_CAPTURE(qu8_vcvt, sse41_x8, |
| xnn_qu8_vcvt_ukernel__sse41_x8, |
| xnn_init_qu8_cvt_ssse3_params, |
| benchmark::utils::CheckSSE41) |
| ->Apply(benchmark::utils::UnaryElementwiseParameters<uint8_t, uint8_t>) |
| ->UseRealTime(); |
| BENCHMARK_CAPTURE(qu8_vcvt, sse41_x16, |
| xnn_qu8_vcvt_ukernel__sse41_x16, |
| xnn_init_qu8_cvt_ssse3_params, |
| benchmark::utils::CheckSSE41) |
| ->Apply(benchmark::utils::UnaryElementwiseParameters<uint8_t, uint8_t>) |
| ->UseRealTime(); |
| BENCHMARK_CAPTURE(qu8_vcvt, sse41_x32, |
| xnn_qu8_vcvt_ukernel__sse41_x32, |
| xnn_init_qu8_cvt_ssse3_params, |
| benchmark::utils::CheckSSE41) |
| ->Apply(benchmark::utils::UnaryElementwiseParameters<uint8_t, uint8_t>) |
| ->UseRealTime(); |
| |
| BENCHMARK_CAPTURE(qu8_vcvt, ssse3_x16, |
| xnn_qu8_vcvt_ukernel__ssse3_x16, |
| xnn_init_qu8_cvt_ssse3_params, |
| benchmark::utils::CheckSSSE3) |
| ->Apply(benchmark::utils::UnaryElementwiseParameters<uint8_t, uint8_t>) |
| ->UseRealTime(); |
| BENCHMARK_CAPTURE(qu8_vcvt, ssse3_x32, |
| xnn_qu8_vcvt_ukernel__ssse3_x32, |
| xnn_init_qu8_cvt_ssse3_params, |
| benchmark::utils::CheckSSSE3) |
| ->Apply(benchmark::utils::UnaryElementwiseParameters<uint8_t, uint8_t>) |
| ->UseRealTime(); |
| |
| BENCHMARK_CAPTURE(qu8_vcvt, sse2_x16, |
| xnn_qu8_vcvt_ukernel__sse2_x16, |
| xnn_init_qu8_cvt_sse2_params) |
| ->Apply(benchmark::utils::UnaryElementwiseParameters<uint8_t, uint8_t>) |
| ->UseRealTime(); |
| BENCHMARK_CAPTURE(qu8_vcvt, sse2_x32, |
| xnn_qu8_vcvt_ukernel__sse2_x32, |
| xnn_init_qu8_cvt_sse2_params) |
| ->Apply(benchmark::utils::UnaryElementwiseParameters<uint8_t, uint8_t>) |
| ->UseRealTime(); |
| #endif // XNN_ARCH_X86 || XNN_ARCH_X86_64 |
| |
| #if XNN_ARCH_WASMRELAXEDSIMD |
| BENCHMARK_CAPTURE(qu8_vcvt, wasmrelaxedsimd_x8, |
| xnn_qu8_vcvt_ukernel__wasmrelaxedsimd_x8, |
| xnn_init_qu8_cvt_wasmsimd_params) |
| ->Apply(benchmark::utils::UnaryElementwiseParameters<uint8_t, uint8_t>) |
| ->UseRealTime(); |
| BENCHMARK_CAPTURE(qu8_vcvt, wasmrelaxedsimd_x16, |
| xnn_qu8_vcvt_ukernel__wasmrelaxedsimd_x16, |
| xnn_init_qu8_cvt_wasmsimd_params) |
| ->Apply(benchmark::utils::UnaryElementwiseParameters<uint8_t, uint8_t>) |
| ->UseRealTime(); |
| BENCHMARK_CAPTURE(qu8_vcvt, wasmrelaxedsimd_x32, |
| xnn_qu8_vcvt_ukernel__wasmrelaxedsimd_x32, |
| xnn_init_qu8_cvt_wasmsimd_params) |
| ->Apply(benchmark::utils::UnaryElementwiseParameters<uint8_t, uint8_t>) |
| ->UseRealTime(); |
| #endif // XNN_ARCH_WASMRELAXEDSIMD |
| |
| #if XNN_ARCH_WASMSIMD || XNN_ARCH_WASMRELAXEDSIMD |
| BENCHMARK_CAPTURE(qu8_vcvt, wasmsimd_x8, |
| xnn_qu8_vcvt_ukernel__wasmsimd_x8, |
| xnn_init_qu8_cvt_wasmsimd_params) |
| ->Apply(benchmark::utils::UnaryElementwiseParameters<uint8_t, uint8_t>) |
| ->UseRealTime(); |
| BENCHMARK_CAPTURE(qu8_vcvt, wasmsimd_x16, |
| xnn_qu8_vcvt_ukernel__wasmsimd_x16, |
| xnn_init_qu8_cvt_wasmsimd_params) |
| ->Apply(benchmark::utils::UnaryElementwiseParameters<uint8_t, uint8_t>) |
| ->UseRealTime(); |
| BENCHMARK_CAPTURE(qu8_vcvt, wasmsimd_x32, |
| xnn_qu8_vcvt_ukernel__wasmsimd_x32, |
| xnn_init_qu8_cvt_wasmsimd_params) |
| ->Apply(benchmark::utils::UnaryElementwiseParameters<uint8_t, uint8_t>) |
| ->UseRealTime(); |
| #endif // XNN_ARCH_WASMSIMD || XNN_ARCH_WASMRELAXEDSIMD |
| |
| BENCHMARK_CAPTURE(qu8_vcvt, scalar_x1, |
| xnn_qu8_vcvt_ukernel__scalar_x1, |
| xnn_init_qu8_cvt_scalar_params) |
| ->Apply(benchmark::utils::UnaryElementwiseParameters<uint8_t, uint8_t>) |
| ->UseRealTime(); |
| BENCHMARK_CAPTURE(qu8_vcvt, scalar_x2, |
| xnn_qu8_vcvt_ukernel__scalar_x2, |
| xnn_init_qu8_cvt_scalar_params) |
| ->Apply(benchmark::utils::UnaryElementwiseParameters<uint8_t, uint8_t>) |
| ->UseRealTime(); |
| BENCHMARK_CAPTURE(qu8_vcvt, scalar_x4, |
| xnn_qu8_vcvt_ukernel__scalar_x4, |
| xnn_init_qu8_cvt_scalar_params) |
| ->Apply(benchmark::utils::UnaryElementwiseParameters<uint8_t, uint8_t>) |
| ->UseRealTime(); |
| |
| #ifndef XNNPACK_BENCHMARK_NO_MAIN |
| BENCHMARK_MAIN(); |
| #endif |