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607 lines
20 KiB
607 lines
20 KiB
// Copyright 2019 Google LLC
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//
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// This source code is licensed under the BSD-style license found in the
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// LICENSE file in the root directory of this source tree.
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#include <gtest/gtest.h>
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#include "argmax-pooling-operator-tester.h"
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#include <xnnpack/params.h>
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static uint32_t FindMaxSinglePassPoolingSize(const argmaxpool_parameters* ukernel) {
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uint32_t mr = 0;
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while (ukernel->qr == 0) {
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mr = std::max<uint32_t>(mr, ukernel->mr);
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ukernel++;
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}
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return mr;
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}
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static argmaxpool_parameters FindMultiPassMicroKernel(const argmaxpool_parameters* ukernel) {
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while (ukernel->qr == 0) {
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ukernel++;
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}
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return *ukernel;
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}
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TEST(ARGMAX_POOLING_NHWC_F32, unit_batch_small_1xM_pool) {
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ASSERT_EQ(xnn_status_success, xnn_initialize(nullptr /* allocator */));
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for (size_t channels = 1; channels <= 100; channels += 15) {
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for (size_t pool_size = 2; pool_size <= FindMaxSinglePassPoolingSize(xnn_params.f32.argmaxpool); pool_size++) {
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ArgmaxPoolingOperatorTester()
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.batch_size(1)
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.input_height(2)
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.input_width(pool_size + 2)
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.pooling_height(1)
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.pooling_width(pool_size)
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.channels(channels)
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.TestF32();
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}
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}
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}
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TEST(ARGMAX_POOLING_NHWC_F32, unit_batch_small_1xM_pool_with_padding) {
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ASSERT_EQ(xnn_status_success, xnn_initialize(nullptr /* allocator */));
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for (size_t channels = 1; channels <= 100; channels += 15) {
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for (size_t pool_size = 3; pool_size <= FindMaxSinglePassPoolingSize(xnn_params.f32.argmaxpool); pool_size++) {
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for (size_t padding_left = 0; padding_left <= 1; padding_left++) {
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for (size_t padding_right = 0; padding_right <= 1; padding_right++) {
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ArgmaxPoolingOperatorTester()
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.batch_size(1)
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.input_height(2)
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.input_width(pool_size + 2)
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.padding_left(padding_left)
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.padding_right(padding_right)
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.pooling_height(1)
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.pooling_width(pool_size)
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.channels(channels)
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.TestF32();
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}
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}
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}
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}
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}
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TEST(ARGMAX_POOLING_NHWC_F32, unit_batch_small_1xM_pool_with_tf_same_padding) {
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ASSERT_EQ(xnn_status_success, xnn_initialize(nullptr /* allocator */));
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for (size_t channels = 1; channels <= 100; channels += 15) {
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for (size_t pool_size = 3; pool_size <= FindMaxSinglePassPoolingSize(xnn_params.f32.argmaxpool); pool_size++) {
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for (size_t input_width = pool_size + 1; input_width <= pool_size; input_width++) {
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ArgmaxPoolingOperatorTester()
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.batch_size(1)
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.input_height(2)
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.input_width(input_width)
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.padding_tf_same(true)
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.pooling_height(1)
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.pooling_width(pool_size)
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.channels(channels)
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.TestF32();
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}
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}
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}
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}
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TEST(ARGMAX_POOLING_NHWC_F32, unit_batch_small_Mx1_pool) {
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ASSERT_EQ(xnn_status_success, xnn_initialize(nullptr /* allocator */));
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for (size_t channels = 1; channels <= 100; channels += 15) {
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for (size_t pool_size = 2; pool_size <= FindMaxSinglePassPoolingSize(xnn_params.f32.argmaxpool); pool_size++) {
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ArgmaxPoolingOperatorTester()
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.batch_size(1)
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.input_height(pool_size + 1)
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.input_width(3)
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.pooling_height(pool_size)
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.pooling_width(1)
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.channels(channels)
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.TestF32();
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}
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}
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}
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TEST(ARGMAX_POOLING_NHWC_F32, unit_batch_small_Mx1_pool_with_padding) {
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ASSERT_EQ(xnn_status_success, xnn_initialize(nullptr /* allocator */));
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for (size_t channels = 1; channels <= 100; channels += 15) {
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for (size_t pool_size = 2; pool_size <= FindMaxSinglePassPoolingSize(xnn_params.f32.argmaxpool); pool_size++) {
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for (size_t padding_top = 0; padding_top <= 1; padding_top++) {
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for (size_t padding_bottom = 0; padding_bottom <= 1; padding_bottom++) {
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ArgmaxPoolingOperatorTester()
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.batch_size(1)
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.input_height(pool_size + 1)
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.input_width(3)
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.padding_top(padding_top)
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.padding_bottom(padding_bottom)
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.pooling_height(pool_size)
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.pooling_width(1)
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.channels(channels)
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.TestF32();
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}
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}
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}
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}
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}
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TEST(ARGMAX_POOLING_NHWC_F32, unit_batch_small_Mx1_pool_with_tf_same_padding) {
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ASSERT_EQ(xnn_status_success, xnn_initialize(nullptr /* allocator */));
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for (size_t channels = 1; channels <= 100; channels += 15) {
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for (size_t pool_size = 2; pool_size <= FindMaxSinglePassPoolingSize(xnn_params.f32.argmaxpool); pool_size++) {
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for (size_t input_height = pool_size + 1; input_height <= pool_size * 2; input_height++) {
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ArgmaxPoolingOperatorTester()
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.batch_size(1)
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.input_height(input_height)
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.input_width(3)
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.padding_tf_same(true)
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.pooling_height(pool_size)
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.pooling_width(1)
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.channels(channels)
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.TestF32();
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}
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}
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}
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}
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TEST(ARGMAX_POOLING_NHWC_F32, unit_batch_small_pool_with_input_stride) {
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ASSERT_EQ(xnn_status_success, xnn_initialize(nullptr /* allocator */));
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for (size_t channels = 1; channels <= 100; channels += 15) {
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for (size_t pool_size = 2; pool_size <= FindMaxSinglePassPoolingSize(xnn_params.f32.argmaxpool); pool_size++) {
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ArgmaxPoolingOperatorTester()
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.batch_size(1)
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.input_height(pool_size + 1)
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.input_width(3)
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.pooling_height(pool_size)
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.pooling_width(1)
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.channels(channels)
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.input_pixel_stride(5 * channels)
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.TestF32();
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ArgmaxPoolingOperatorTester()
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.batch_size(1)
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.input_height(2)
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.input_width(pool_size + 2)
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.pooling_height(1)
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.pooling_width(pool_size)
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.channels(channels)
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.input_pixel_stride(5 * channels)
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.TestF32();
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}
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}
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}
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TEST(ARGMAX_POOLING_NHWC_F32, unit_batch_small_pool_with_output_stride) {
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ASSERT_EQ(xnn_status_success, xnn_initialize(nullptr /* allocator */));
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for (size_t channels = 1; channels <= 100; channels += 15) {
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for (size_t pool_size = 2; pool_size <= FindMaxSinglePassPoolingSize(xnn_params.f32.argmaxpool); pool_size++) {
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ArgmaxPoolingOperatorTester()
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.batch_size(1)
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.input_height(pool_size + 1)
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.input_width(3)
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.pooling_height(pool_size)
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.pooling_width(1)
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.channels(channels)
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.output_pixel_stride(5 * channels)
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.TestF32();
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ArgmaxPoolingOperatorTester()
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.batch_size(1)
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.input_height(2)
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.input_width(pool_size + 2)
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.pooling_height(1)
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.pooling_width(pool_size)
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.channels(channels)
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.output_pixel_stride(5 * channels)
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.TestF32();
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}
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}
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}
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TEST(ARGMAX_POOLING_NHWC_F32, unit_batch_large_1xM_pool) {
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ASSERT_EQ(xnn_status_success, xnn_initialize(nullptr /* allocator */));
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const auto multipass = FindMultiPassMicroKernel(xnn_params.f32.argmaxpool);
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for (size_t channels = 1; channels <= 100; channels += 15) {
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for (size_t pool_size = multipass.mr + 1; pool_size <= multipass.mr + multipass.qr; pool_size++) {
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ArgmaxPoolingOperatorTester()
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.batch_size(1)
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.input_height(2)
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.input_width(pool_size + 2)
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.pooling_height(1)
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.pooling_width(pool_size)
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.channels(channels)
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.TestF32();
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}
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}
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}
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TEST(ARGMAX_POOLING_NHWC_F32, unit_batch_large_1xM_pool_with_padding) {
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ASSERT_EQ(xnn_status_success, xnn_initialize(nullptr /* allocator */));
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const auto multipass = FindMultiPassMicroKernel(xnn_params.f32.argmaxpool);
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for (size_t channels = 1; channels <= 100; channels += 15) {
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for (size_t pool_size = multipass.mr + 1; pool_size <= multipass.mr + multipass.qr; pool_size++) {
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for (size_t padding_left = 0; padding_left <= 1; padding_left++) {
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for (size_t padding_right = 0; padding_right <= 1; padding_right++) {
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ArgmaxPoolingOperatorTester()
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.batch_size(1)
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.input_height(2)
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.input_width(pool_size + 2)
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.padding_left(padding_left)
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.padding_right(padding_right)
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.pooling_height(1)
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.pooling_width(pool_size)
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.channels(channels)
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.TestF32();
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}
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}
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}
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}
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}
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TEST(ARGMAX_POOLING_NHWC_F32, unit_batch_large_1xM_pool_with_tf_same_padding) {
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ASSERT_EQ(xnn_status_success, xnn_initialize(nullptr /* allocator */));
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const auto multipass = FindMultiPassMicroKernel(xnn_params.f32.argmaxpool);
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for (size_t channels = 1; channels <= 100; channels += 15) {
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for (size_t pool_size = multipass.mr + 1; pool_size <= multipass.mr + multipass.qr; pool_size++) {
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for (size_t input_width = pool_size + 1; input_width <= pool_size * 2; input_width++) {
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ArgmaxPoolingOperatorTester()
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.batch_size(1)
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.input_height(2)
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.input_width(input_width)
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.padding_tf_same(true)
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.pooling_height(1)
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.pooling_width(pool_size)
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.channels(channels)
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.TestF32();
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}
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}
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}
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}
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TEST(ARGMAX_POOLING_NHWC_F32, unit_batch_large_Mx1_pool) {
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ASSERT_EQ(xnn_status_success, xnn_initialize(nullptr /* allocator */));
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const auto multipass = FindMultiPassMicroKernel(xnn_params.f32.argmaxpool);
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for (size_t channels = 1; channels <= 100; channels += 15) {
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for (size_t pool_size = multipass.mr + 1; pool_size <= multipass.mr + multipass.qr; pool_size++) {
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ArgmaxPoolingOperatorTester()
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.batch_size(1)
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.input_height(pool_size + 1)
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.input_width(3)
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.pooling_height(pool_size)
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.pooling_width(1)
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.channels(channels)
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.TestF32();
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}
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}
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}
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TEST(ARGMAX_POOLING_NHWC_F32, unit_batch_large_Mx1_pool_with_padding) {
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ASSERT_EQ(xnn_status_success, xnn_initialize(nullptr /* allocator */));
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const auto multipass = FindMultiPassMicroKernel(xnn_params.f32.argmaxpool);
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for (size_t channels = 1; channels <= 100; channels += 15) {
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for (size_t pool_size = multipass.mr + 1; pool_size <= multipass.mr + multipass.qr; pool_size++) {
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for (size_t padding_top = 0; padding_top <= 1; padding_top++) {
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for (size_t padding_bottom = 0; padding_bottom <= 1; padding_bottom++) {
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ArgmaxPoolingOperatorTester()
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.batch_size(1)
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.input_height(pool_size + 1)
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.input_width(3)
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.padding_top(padding_top)
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.padding_bottom(padding_bottom)
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.pooling_height(pool_size)
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.pooling_width(1)
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.channels(channels)
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.TestF32();
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}
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}
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}
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}
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}
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TEST(ARGMAX_POOLING_NHWC_F32, unit_batch_large_Mx1_pool_with_tf_same_padding) {
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ASSERT_EQ(xnn_status_success, xnn_initialize(nullptr /* allocator */));
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const auto multipass = FindMultiPassMicroKernel(xnn_params.f32.argmaxpool);
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for (size_t channels = 1; channels <= 100; channels += 15) {
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for (size_t pool_size = multipass.mr + 1; pool_size <= multipass.mr + multipass.qr; pool_size++) {
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for (size_t input_height = pool_size + 2; input_height <= pool_size * 2; input_height++) {
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ArgmaxPoolingOperatorTester()
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.batch_size(1)
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.input_height(input_height)
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.input_width(3)
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.padding_tf_same(true)
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.pooling_height(pool_size)
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.pooling_width(1)
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.channels(channels)
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.TestF32();
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}
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}
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}
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}
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TEST(ARGMAX_POOLING_NHWC_F32, unit_batch_large_pool_with_input_stride) {
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ASSERT_EQ(xnn_status_success, xnn_initialize(nullptr /* allocator */));
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const auto multipass = FindMultiPassMicroKernel(xnn_params.f32.argmaxpool);
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for (size_t channels = 1; channels <= 100; channels += 15) {
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for (size_t pool_size = multipass.mr + 1; pool_size <= multipass.mr + multipass.qr; pool_size++) {
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ArgmaxPoolingOperatorTester()
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.batch_size(1)
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.input_height(pool_size + 1)
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.input_width(3)
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.pooling_height(pool_size)
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.pooling_width(1)
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.channels(channels)
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.input_pixel_stride(5 * channels)
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.TestF32();
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ArgmaxPoolingOperatorTester()
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.batch_size(1)
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.input_height(2)
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.input_width(pool_size + 2)
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.pooling_height(1)
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.pooling_width(pool_size)
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.channels(channels)
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.input_pixel_stride(5 * channels)
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.TestF32();
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}
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}
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}
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TEST(ARGMAX_POOLING_NHWC_F32, unit_batch_large_pool_with_output_stride) {
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ASSERT_EQ(xnn_status_success, xnn_initialize(nullptr /* allocator */));
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const auto multipass = FindMultiPassMicroKernel(xnn_params.f32.argmaxpool);
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for (size_t channels = 1; channels <= 100; channels += 15) {
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for (size_t pool_size = multipass.mr + 1; pool_size <= multipass.mr + multipass.qr; pool_size++) {
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ArgmaxPoolingOperatorTester()
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.batch_size(1)
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.input_height(pool_size + 1)
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.input_width(3)
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.pooling_height(pool_size)
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.pooling_width(1)
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.channels(channels)
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.output_pixel_stride(5 * channels)
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.TestF32();
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ArgmaxPoolingOperatorTester()
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.batch_size(1)
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.input_height(2)
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.input_width(pool_size + 2)
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.pooling_height(1)
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.pooling_width(pool_size)
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.channels(channels)
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.output_pixel_stride(5 * channels)
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.TestF32();
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}
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}
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}
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TEST(ARGMAX_POOLING_NHWC_F32, small_batch_small_pool) {
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ASSERT_EQ(xnn_status_success, xnn_initialize(nullptr /* allocator */));
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for (size_t channels = 1; channels <= 100; channels += 15) {
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for (size_t pool_size = 2; pool_size <= FindMaxSinglePassPoolingSize(xnn_params.f32.argmaxpool); pool_size++) {
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ArgmaxPoolingOperatorTester()
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.batch_size(3)
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.input_height(pool_size + 1)
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.input_width(3)
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.pooling_height(pool_size)
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.pooling_width(1)
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.channels(channels)
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.TestF32();
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ArgmaxPoolingOperatorTester()
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.batch_size(3)
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|
.input_height(2)
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|
.input_width(pool_size + 2)
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|
.pooling_height(1)
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.pooling_width(pool_size)
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.channels(channels)
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.TestF32();
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}
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}
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}
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TEST(ARGMAX_POOLING_NHWC_F32, small_batch_small_pool_with_input_stride) {
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ASSERT_EQ(xnn_status_success, xnn_initialize(nullptr /* allocator */));
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for (size_t channels = 1; channels <= 100; channels += 15) {
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for (size_t pool_size = 2; pool_size <= FindMaxSinglePassPoolingSize(xnn_params.f32.argmaxpool); pool_size++) {
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ArgmaxPoolingOperatorTester()
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.batch_size(3)
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.input_height(pool_size + 1)
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.input_width(3)
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.pooling_height(pool_size)
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.pooling_width(1)
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.channels(channels)
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.input_pixel_stride(5 * channels)
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.TestF32();
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ArgmaxPoolingOperatorTester()
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.batch_size(3)
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.input_height(2)
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.input_width(pool_size + 2)
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.pooling_height(1)
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.pooling_width(pool_size)
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.channels(channels)
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.input_pixel_stride(5 * channels)
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.TestF32();
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}
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}
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}
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TEST(ARGMAX_POOLING_NHWC_F32, small_batch_small_pool_with_output_stride) {
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ASSERT_EQ(xnn_status_success, xnn_initialize(nullptr /* allocator */));
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for (size_t channels = 1; channels <= 100; channels += 15) {
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for (size_t pool_size = 2; pool_size <= FindMaxSinglePassPoolingSize(xnn_params.f32.argmaxpool); pool_size++) {
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ArgmaxPoolingOperatorTester()
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.batch_size(3)
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.input_height(pool_size + 1)
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.input_width(3)
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.pooling_height(pool_size)
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.pooling_width(1)
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.channels(channels)
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.output_pixel_stride(5 * channels)
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.TestF32();
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ArgmaxPoolingOperatorTester()
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.batch_size(3)
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.input_height(2)
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.input_width(pool_size + 2)
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.pooling_height(1)
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.pooling_width(pool_size)
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.channels(channels)
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.output_pixel_stride(5 * channels)
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.TestF32();
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}
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}
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}
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TEST(ARGMAX_POOLING_NHWC_F32, small_batch_large_pool) {
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ASSERT_EQ(xnn_status_success, xnn_initialize(nullptr /* allocator */));
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const auto multipass = FindMultiPassMicroKernel(xnn_params.f32.argmaxpool);
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for (size_t channels = 1; channels <= 100; channels += 15) {
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for (size_t pool_size = multipass.mr + 1; pool_size <= multipass.mr + multipass.qr; pool_size++) {
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ArgmaxPoolingOperatorTester()
|
|
.batch_size(3)
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|
.input_height(pool_size + 1)
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|
.input_width(3)
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|
.pooling_height(pool_size)
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|
.pooling_width(1)
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|
.channels(channels)
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|
.TestF32();
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|
ArgmaxPoolingOperatorTester()
|
|
.batch_size(3)
|
|
.input_height(2)
|
|
.input_width(pool_size + 2)
|
|
.pooling_height(1)
|
|
.pooling_width(pool_size)
|
|
.channels(channels)
|
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.TestF32();
|
|
}
|
|
}
|
|
}
|
|
|
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TEST(ARGMAX_POOLING_NHWC_F32, small_batch_large_pool_with_input_stride) {
|
|
ASSERT_EQ(xnn_status_success, xnn_initialize(nullptr /* allocator */));
|
|
const auto multipass = FindMultiPassMicroKernel(xnn_params.f32.argmaxpool);
|
|
for (size_t channels = 1; channels <= 100; channels += 15) {
|
|
for (size_t pool_size = multipass.mr + 1; pool_size <= multipass.mr + multipass.qr; pool_size++) {
|
|
ArgmaxPoolingOperatorTester()
|
|
.batch_size(3)
|
|
.input_height(pool_size + 1)
|
|
.input_width(3)
|
|
.pooling_height(pool_size)
|
|
.pooling_width(1)
|
|
.channels(channels)
|
|
.input_pixel_stride(5 * channels)
|
|
.TestF32();
|
|
ArgmaxPoolingOperatorTester()
|
|
.batch_size(3)
|
|
.input_height(2)
|
|
.input_width(pool_size + 2)
|
|
.pooling_height(1)
|
|
.pooling_width(pool_size)
|
|
.channels(channels)
|
|
.input_pixel_stride(5 * channels)
|
|
.TestF32();
|
|
}
|
|
}
|
|
}
|
|
|
|
TEST(ARGMAX_POOLING_NHWC_F32, small_batch_large_pool_with_output_stride) {
|
|
ASSERT_EQ(xnn_status_success, xnn_initialize(nullptr /* allocator */));
|
|
const auto multipass = FindMultiPassMicroKernel(xnn_params.f32.argmaxpool);
|
|
for (size_t channels = 1; channels <= 100; channels += 15) {
|
|
for (size_t pool_size = multipass.mr + 1; pool_size <= multipass.mr + multipass.qr; pool_size++) {
|
|
ArgmaxPoolingOperatorTester()
|
|
.batch_size(3)
|
|
.input_height(pool_size + 1)
|
|
.input_width(3)
|
|
.pooling_height(pool_size)
|
|
.pooling_width(1)
|
|
.channels(channels)
|
|
.output_pixel_stride(5 * channels)
|
|
.TestF32();
|
|
ArgmaxPoolingOperatorTester()
|
|
.batch_size(3)
|
|
.input_height(2)
|
|
.input_width(pool_size + 2)
|
|
.pooling_height(1)
|
|
.pooling_width(pool_size)
|
|
.channels(channels)
|
|
.output_pixel_stride(5 * channels)
|
|
.TestF32();
|
|
}
|
|
}
|
|
}
|
|
|
|
TEST(ARGMAX_POOLING_NHWC_F32, setup_increasing_batch) {
|
|
ASSERT_EQ(xnn_status_success, xnn_initialize(nullptr /* allocator */));
|
|
ArgmaxPoolingOperatorTester()
|
|
.batch_size(3)
|
|
.next_batch_size(5)
|
|
.input_height(8)
|
|
.input_width(8)
|
|
.pooling_height(5)
|
|
.pooling_width(3)
|
|
.channels(24)
|
|
.TestSetupF32();
|
|
}
|
|
|
|
TEST(ARGMAX_POOLING_NHWC_F32, setup_decreasing_batch) {
|
|
ASSERT_EQ(xnn_status_success, xnn_initialize(nullptr /* allocator */));
|
|
ArgmaxPoolingOperatorTester()
|
|
.batch_size(5)
|
|
.next_batch_size(3)
|
|
.input_height(8)
|
|
.input_width(8)
|
|
.pooling_height(5)
|
|
.pooling_width(3)
|
|
.channels(24)
|
|
.TestSetupF32();
|
|
}
|
|
|
|
TEST(ARGMAX_POOLING_NHWC_F32, setup_changing_height) {
|
|
ASSERT_EQ(xnn_status_success, xnn_initialize(nullptr /* allocator */));
|
|
ArgmaxPoolingOperatorTester()
|
|
.batch_size(3)
|
|
.input_height(8)
|
|
.input_width(8)
|
|
.next_input_height(9)
|
|
.pooling_height(5)
|
|
.pooling_width(3)
|
|
.channels(24)
|
|
.TestSetupF32();
|
|
ArgmaxPoolingOperatorTester()
|
|
.batch_size(3)
|
|
.input_height(8)
|
|
.input_width(8)
|
|
.next_input_height(7)
|
|
.pooling_height(5)
|
|
.pooling_width(3)
|
|
.channels(24)
|
|
.TestSetupF32();
|
|
}
|
|
|
|
TEST(ARGMAX_POOLING_NHWC_F32, setup_changing_width) {
|
|
ASSERT_EQ(xnn_status_success, xnn_initialize(nullptr /* allocator */));
|
|
ArgmaxPoolingOperatorTester()
|
|
.batch_size(3)
|
|
.input_height(8)
|
|
.input_width(8)
|
|
.next_input_width(9)
|
|
.pooling_height(5)
|
|
.pooling_width(3)
|
|
.channels(24)
|
|
.TestSetupF32();
|
|
ArgmaxPoolingOperatorTester()
|
|
.batch_size(3)
|
|
.input_height(8)
|
|
.input_width(8)
|
|
.next_input_width(7)
|
|
.pooling_height(5)
|
|
.pooling_width(3)
|
|
.channels(24)
|
|
.TestSetupF32();
|
|
}
|
|
|
|
TEST(ARGMAX_POOLING_NHWC_F32, setup_swap_height_and_width) {
|
|
ASSERT_EQ(xnn_status_success, xnn_initialize(nullptr /* allocator */));
|
|
ArgmaxPoolingOperatorTester()
|
|
.batch_size(3)
|
|
.input_height(9)
|
|
.input_width(8)
|
|
.next_input_height(8)
|
|
.next_input_width(9)
|
|
.pooling_height(5)
|
|
.pooling_width(3)
|
|
.channels(24)
|
|
.TestSetupF32();
|
|
}
|