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Erich Elsen563df5f2019-10-23 08:02:21 -07001// Copyright 2019 Google LLC
2//
3// This source code is licensed under the BSD-style license found in the
4// LICENSE file in the root directory of this source tree.
5
6#include <algorithm>
7#include <cfloat>
8#include <cmath>
9#include <functional>
10#include <random>
11#include <vector>
12
13#include <cpuinfo.h>
14
15#include <benchmark/benchmark.h>
16#include "bench/dconv.h"
17#include "bench/utils.h"
18#include <xnnpack/AlignedAllocator.h>
Erich Elsen563df5f2019-10-23 08:02:21 -070019#include <xnnpack/common.h>
Marat Dukhaneeaa7bd2019-10-25 17:31:25 -070020#include <xnnpack/conv.h>
Erich Elsen563df5f2019-10-23 08:02:21 -070021#include <xnnpack/pack.h>
Marat Dukhaneeaa7bd2019-10-25 17:31:25 -070022#include <xnnpack/params-init.h>
Erich Elsen563df5f2019-10-23 08:02:21 -070023#include <xnnpack/params.h>
Erich Elsen563df5f2019-10-23 08:02:21 -070024
25
Marat Dukhan1f29b802020-05-15 23:46:39 -070026static void DConvHWC2CHW3X3S2P1Benchmark(benchmark::State& state,
27 xnn_f32_conv_hwc2chw_ukernel_function conv,
Marat Dukhan4e895872020-12-04 15:27:45 -080028 uint32_t output_channels_tile,
29 benchmark::utils::IsaCheckFunction isa_check = nullptr)
Erich Elsen563df5f2019-10-23 08:02:21 -070030{
Marat Dukhan4e895872020-12-04 15:27:45 -080031 if (isa_check && !isa_check(state)) {
32 return;
Erich Elsen563df5f2019-10-23 08:02:21 -070033 }
34
35 const size_t input_height = state.range(0);
36 const size_t input_width = state.range(1);
37 const size_t output_channels = state.range(2);
38
39 std::random_device random_device;
40 auto rng = std::mt19937(random_device());
Marat Dukhan44f0ca72020-08-02 21:46:58 -070041 auto f32rng = std::bind(std::uniform_real_distribution<float>(0.0f, 1.0f), std::ref(rng));
Erich Elsen563df5f2019-10-23 08:02:21 -070042
43 const size_t input_channels = 3;
44 const size_t kernel_size = 3;
45 const size_t padding = 1;
46 const size_t subsampling = 2;
47
48 const size_t output_height = (input_height + 2 * padding - kernel_size) / subsampling + 1;
49 const size_t output_width = (input_width + 2 * padding - kernel_size) / subsampling + 1;
50
51 std::vector<float> input(input_height * input_width * input_channels + XNN_EXTRA_BYTES / sizeof(float));
52 std::generate(input.begin(), input.end(), std::ref(f32rng));
53 std::vector<float> kernel(output_channels * kernel_size * kernel_size * input_channels);
54 std::generate(kernel.begin(), kernel.end(), std::ref(f32rng));
55 std::vector<float> bias(output_channels);
56 std::generate(bias.begin(), bias.end(), std::ref(f32rng));
57
Marat Dukhane13e6392021-07-26 22:22:35 -070058 std::vector<float, AlignedAllocator<float, 64>> zero(input_channels * input_width + XNN_EXTRA_BYTES / sizeof(float));
Erich Elsen563df5f2019-10-23 08:02:21 -070059
60 const size_t weights_elements = (kernel_size * kernel_size * input_channels + 1) *
61 benchmark::utils::RoundUp<size_t>(output_channels, output_channels_tile);
62 const size_t output_elements = output_height * output_width * output_channels;
63 const size_t num_buffers = 1 +
64 benchmark::utils::DivideRoundUp<size_t>(benchmark::utils::GetMaxCacheSize(),
65 sizeof(float) * (weights_elements + output_elements));
66
Marat Dukhane13e6392021-07-26 22:22:35 -070067 std::vector<float, AlignedAllocator<float, 64>> packed_weights(weights_elements * num_buffers);
Erich Elsen563df5f2019-10-23 08:02:21 -070068 std::fill(packed_weights.begin(), packed_weights.end(), 0.0f);
69 xnn_pack_f32_dconv_oki_w(
70 output_channels, input_channels, output_channels_tile,
71 kernel_size /* kernel height */, kernel_size /* kernel width */,
Marat Dukhanb42f8662020-07-06 20:46:13 -070072 kernel.data(), bias.data(), packed_weights.data(), NULL);
Erich Elsen563df5f2019-10-23 08:02:21 -070073 for (size_t n = 1; n < num_buffers; n++) {
74 std::copy(packed_weights.cbegin(),
75 packed_weights.cbegin() + weights_elements,
76 packed_weights.begin() + n * weights_elements);
77 }
78
79 std::vector<float> output(output_elements * num_buffers);
80 std::fill(output.begin(), output.end(), std::nanf(""));
81
Marat Dukhanf56f4c42021-05-17 01:47:20 -070082 xnn_f32_minmax_params params;
83 xnn_init_f32_minmax_params(&params, -std::numeric_limits<float>::infinity(), +std::numeric_limits<float>::infinity());
Erich Elsen563df5f2019-10-23 08:02:21 -070084
85 size_t buffer_index = 0;
86 for (auto _ : state) {
87 state.PauseTiming();
88 benchmark::utils::PrefetchToL1(input.data(), input.size() * sizeof(float));
89 buffer_index = (buffer_index + 1) % num_buffers;
90 state.ResumeTiming();
91
92 conv(
93 input_height, input_width,
94 0 /* output_y_start */, output_height /* output_y_end */,
95 input.data(), zero.data(),
96 packed_weights.data() + buffer_index * weights_elements,
97 output.data() + buffer_index * output_elements,
98 padding, output_channels,
99 output_channels * output_width * sizeof(float),
100 output_channels * sizeof(float),
Frank Barcharde70dbeb2020-05-01 15:46:41 -0700101 &params);
Erich Elsen563df5f2019-10-23 08:02:21 -0700102 }
103
Marat Dukhand713e8a2020-12-04 14:23:12 -0800104 const uint64_t cpu_frequency = benchmark::utils::GetCurrentCpuFrequency();
105 if (cpu_frequency != 0) {
106 state.counters["cpufreq"] = cpu_frequency;
107 }
108
Erich Elsen563df5f2019-10-23 08:02:21 -0700109 state.counters["FLOPS"] = benchmark::Counter(
110 uint64_t(state.iterations()) * 2 *
111 output_height * output_width *
112 input_channels * output_channels *
113 kernel_size * kernel_size,
114 benchmark::Counter::kIsRate);
115}
116
117#if XNN_ARCH_ARM64
Marat Dukhan1f29b802020-05-15 23:46:39 -0700118 static void f32_conv_hwc2chw_3x3s2p1c3x4__neonfma_2x2(benchmark::State& state, const char* net) {
Marat Dukhan4e895872020-12-04 15:27:45 -0800119 DConvHWC2CHW3X3S2P1Benchmark(state, xnn_f32_conv_hwc2chw_ukernel_3x3s2p1c3x4__neonfma_2x2, 4, benchmark::utils::CheckNEONFMA);
Erich Elsen563df5f2019-10-23 08:02:21 -0700120 }
121
Marat Dukhan1f29b802020-05-15 23:46:39 -0700122 BENCHMARK_DCONV(f32_conv_hwc2chw_3x3s2p1c3x4__neonfma_2x2);
Erich Elsen563df5f2019-10-23 08:02:21 -0700123#endif
Erich Elsen0a1970e2020-06-10 09:24:59 -0700124
Erich Elsenb1233402020-06-08 15:53:15 -0700125#if XNN_ARCH_X86 || XNN_ARCH_X86_64
126 static void f32_conv_hwc2chw_3x3s2p1c3x4__sse_1x1(benchmark::State& state, const char* net) {
127 DConvHWC2CHW3X3S2P1Benchmark(state, xnn_f32_conv_hwc2chw_ukernel_3x3s2p1c3x4__sse_1x1, 4);
128 }
129
130 BENCHMARK_DCONV(f32_conv_hwc2chw_3x3s2p1c3x4__sse_1x1);
131
132 static void f32_conv_hwc2chw_3x3s2p1c3x4__sse_2x2(benchmark::State& state, const char* net) {
133 DConvHWC2CHW3X3S2P1Benchmark(state, xnn_f32_conv_hwc2chw_ukernel_3x3s2p1c3x4__sse_2x2, 4);
134 }
135
136 BENCHMARK_DCONV(f32_conv_hwc2chw_3x3s2p1c3x4__sse_2x2);
137#endif
Erich Elsen0a1970e2020-06-10 09:24:59 -0700138
Marat Dukhan4c617792021-12-21 15:47:58 -0800139#if XNN_ARCH_WASMSIMD || XNN_ARCH_WASMRELAXEDSIMD
Frank Barchard22136062020-11-24 18:44:46 -0800140 static void f32_conv_hwc2chw_3x3s2p1c3x4__wasmsimd_2x2(benchmark::State& state, const char* net) {
141 DConvHWC2CHW3X3S2P1Benchmark(state, xnn_f32_conv_hwc2chw_ukernel_3x3s2p1c3x4__wasmsimd_2x2, 4);
Erich Elsen563df5f2019-10-23 08:02:21 -0700142 }
143
Frank Barchard22136062020-11-24 18:44:46 -0800144 BENCHMARK_DCONV(f32_conv_hwc2chw_3x3s2p1c3x4__wasmsimd_2x2);
Marat Dukhan4c617792021-12-21 15:47:58 -0800145#endif // XNN_ARCH_WASMSIMD || XNN_ARCH_WASMRELAXEDSIMD
Erich Elsen0a1970e2020-06-10 09:24:59 -0700146
147static void f32_conv_hwc2chw_3x3s2p1c3x4__scalar_1x1(benchmark::State& state, const char* net) {
148 DConvHWC2CHW3X3S2P1Benchmark(state, xnn_f32_conv_hwc2chw_ukernel_3x3s2p1c3x4__scalar_1x1, 4);
149}
150
151BENCHMARK_DCONV(f32_conv_hwc2chw_3x3s2p1c3x4__scalar_1x1);
Erich Elsen563df5f2019-10-23 08:02:21 -0700152
153#ifndef XNNPACK_BENCHMARK_NO_MAIN
154BENCHMARK_MAIN();
155#endif