// Copyright 2020 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 #include #include #include #include #include #include #include #include "bench/utils.h" static void xnnpack_truncation_f32(benchmark::State& state) { const size_t batch_size = state.range(0); std::random_device random_device; auto rng = std::mt19937(random_device()); auto f32rng = std::bind(std::uniform_real_distribution(-10.0f, 10.0f), std::ref(rng)); std::vector input(batch_size + XNN_EXTRA_BYTES / sizeof(float)); std::vector output(batch_size); std::generate(input.begin(), input.end(), std::ref(f32rng)); std::fill(output.begin(), output.end(), std::nanf("")); xnn_status status = xnn_initialize(nullptr /* allocator */); if (status != xnn_status_success) { state.SkipWithError("failed to initialize XNNPACK"); return; } xnn_operator_t truncation_op = nullptr; status = xnn_create_truncation_nc_f32( 1 /* channels */, 1 /* input stride */, 1 /* output stride */, 0 /* flags */, &truncation_op); if (status != xnn_status_success || truncation_op == nullptr) { state.SkipWithError("failed to create Truncation operator"); return; } status = xnn_setup_truncation_nc_f32( truncation_op, batch_size, input.data(), output.data(), nullptr /* thread pool */); if (status != xnn_status_success) { state.SkipWithError("failed to setup Truncation operator"); return; } for (auto _ : state) { status = xnn_run_operator(truncation_op, nullptr /* thread pool */); if (status != xnn_status_success) { state.SkipWithError("failed to run Truncation operator"); return; } } status = xnn_delete_operator(truncation_op); if (status != xnn_status_success) { state.SkipWithError("failed to delete Truncation operator"); return; } const uint64_t cpu_frequency = benchmark::utils::GetCurrentCpuFrequency(); if (cpu_frequency != 0) { state.counters["cpufreq"] = cpu_frequency; } state.counters["elements"] = benchmark::Counter(uint64_t(state.iterations()) * batch_size, benchmark::Counter::kIsRate); const size_t bytes_per_iteration = 2 * batch_size * sizeof(float); state.counters["bytes"] = benchmark::Counter(uint64_t(state.iterations()) * bytes_per_iteration, benchmark::Counter::kIsRate); } BENCHMARK(xnnpack_truncation_f32) ->Apply(benchmark::utils::UnaryElementwiseParameters) ->UseRealTime(); #ifndef XNNPACK_BENCHMARK_NO_MAIN BENCHMARK_MAIN(); #endif