| // Copyright (c) Facebook, Inc. and its affiliates. |
| // All rights reserved. |
| // |
| // Copyright 2019 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 <gtest/gtest.h> |
| |
| #include <xnnpack/common.h> |
| #include <xnnpack/isa-checks.h> |
| |
| #include <xnnpack/zip.h> |
| #include "zip-microkernel-tester.h" |
| |
| |
| #if XNN_ARCH_ARM || XNN_ARCH_ARM64 |
| TEST(X8_ZIP_X2__NEON, n_eq_8) { |
| TEST_REQUIRES_ARM_NEON; |
| ZipMicrokernelTester() |
| .n(8) |
| .g(2) |
| .Test(xnn_x8_zip_x2_ukernel__neon); |
| } |
| |
| TEST(X8_ZIP_X2__NEON, n_div_16) { |
| TEST_REQUIRES_ARM_NEON; |
| for (size_t n = 8; n < 128; n += 8) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(2) |
| .Test(xnn_x8_zip_x2_ukernel__neon); |
| } |
| } |
| |
| TEST(X8_ZIP_X2__NEON, n_gt_8) { |
| TEST_REQUIRES_ARM_NEON; |
| for (size_t n = 9; n < 16; n++) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(2) |
| .Test(xnn_x8_zip_x2_ukernel__neon); |
| } |
| } |
| |
| TEST(X8_ZIP_X2__NEON, n_lt_8) { |
| TEST_REQUIRES_ARM_NEON; |
| for (size_t n = 1; n < 8; n++) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(2) |
| .Test(xnn_x8_zip_x2_ukernel__neon); |
| } |
| } |
| |
| TEST(X8_ZIP_X3__NEON, n_eq_8) { |
| TEST_REQUIRES_ARM_NEON; |
| ZipMicrokernelTester() |
| .n(9) |
| .g(3) |
| .Test(xnn_x8_zip_x3_ukernel__neon); |
| } |
| |
| TEST(X8_ZIP_X3__NEON, n_div_8) { |
| TEST_REQUIRES_ARM_NEON; |
| for (size_t n = 8; n < 128; n += 8) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(3) |
| .Test(xnn_x8_zip_x3_ukernel__neon); |
| } |
| } |
| |
| TEST(X8_ZIP_X3__NEON, n_gt_8) { |
| TEST_REQUIRES_ARM_NEON; |
| for (size_t n = 9; n < 16; n++) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(3) |
| .Test(xnn_x8_zip_x3_ukernel__neon); |
| } |
| } |
| |
| TEST(X8_ZIP_X3__NEON, n_lt_8) { |
| TEST_REQUIRES_ARM_NEON; |
| for (size_t n = 1; n < 8; n++) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(3) |
| .Test(xnn_x8_zip_x3_ukernel__neon); |
| } |
| } |
| |
| TEST(X8_ZIP_X4__NEON, n_eq_8) { |
| TEST_REQUIRES_ARM_NEON; |
| ZipMicrokernelTester() |
| .n(8) |
| .g(4) |
| .Test(xnn_x8_zip_x4_ukernel__neon); |
| } |
| |
| TEST(X8_ZIP_X4__NEON, n_div_8) { |
| TEST_REQUIRES_ARM_NEON; |
| for (size_t n = 8; n < 128; n += 8) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(4) |
| .Test(xnn_x8_zip_x4_ukernel__neon); |
| } |
| } |
| |
| TEST(X8_ZIP_X4__NEON, n_gt_8) { |
| TEST_REQUIRES_ARM_NEON; |
| for (size_t n = 9; n < 16; n++) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(4) |
| .Test(xnn_x8_zip_x4_ukernel__neon); |
| } |
| } |
| |
| TEST(X8_ZIP_X4__NEON, n_lt_16) { |
| TEST_REQUIRES_ARM_NEON; |
| for (size_t n = 1; n < 16; n++) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(4) |
| .Test(xnn_x8_zip_x4_ukernel__neon); |
| } |
| } |
| |
| TEST(X8_ZIP_XM__NEON, n_eq_8_m_eq_4) { |
| TEST_REQUIRES_ARM_NEON; |
| ZipMicrokernelTester() |
| .n(8) |
| .g(4) |
| .Test(xnn_x8_zip_xm_ukernel__neon); |
| } |
| |
| TEST(X8_ZIP_XM__NEON, n_eq_8_m_div_4) { |
| TEST_REQUIRES_ARM_NEON; |
| for (size_t g = 4; g < 32; g += 4) { |
| ZipMicrokernelTester() |
| .n(8) |
| .g(g) |
| .Test(xnn_x8_zip_xm_ukernel__neon); |
| } |
| } |
| |
| TEST(X8_ZIP_XM__NEON, n_eq_8_m_gt_4) { |
| TEST_REQUIRES_ARM_NEON; |
| for (size_t g = 5; g < 8; g++) { |
| ZipMicrokernelTester() |
| .n(8) |
| .g(g) |
| .Test(xnn_x8_zip_xm_ukernel__neon); |
| } |
| } |
| |
| TEST(X8_ZIP_XM__NEON, n_div_8_m_eq_4) { |
| TEST_REQUIRES_ARM_NEON; |
| for (size_t n = 8; n < 128; n += 8) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(4) |
| .Test(xnn_x8_zip_xm_ukernel__neon); |
| } |
| } |
| |
| TEST(X8_ZIP_XM__NEON, n_div_8_m_div_4) { |
| TEST_REQUIRES_ARM_NEON; |
| for (size_t n = 8; n < 128; n += 8) { |
| for (size_t g = 4; g < 32; g += 4) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(g) |
| .Test(xnn_x8_zip_xm_ukernel__neon); |
| } |
| } |
| } |
| |
| TEST(X8_ZIP_XM__NEON, n_div_8_m_gt_4) { |
| TEST_REQUIRES_ARM_NEON; |
| for (size_t n = 8; n < 128; n += 8) { |
| for (size_t g = 5; g < 8; g++) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(g) |
| .Test(xnn_x8_zip_xm_ukernel__neon); |
| } |
| } |
| } |
| |
| TEST(X8_ZIP_XM__NEON, n_gt_8_m_eq_4) { |
| TEST_REQUIRES_ARM_NEON; |
| for (size_t n = 9; n < 16; n++) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(4) |
| .Test(xnn_x8_zip_xm_ukernel__neon); |
| } |
| } |
| |
| TEST(X8_ZIP_XM__NEON, n_gt_8_m_div_4) { |
| TEST_REQUIRES_ARM_NEON; |
| for (size_t n = 9; n < 16; n++) { |
| for (size_t g = 4; g < 32; g += 4) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(g) |
| .Test(xnn_x8_zip_xm_ukernel__neon); |
| } |
| } |
| } |
| |
| TEST(X8_ZIP_XM__NEON, n_gt_8_m_gt_4) { |
| TEST_REQUIRES_ARM_NEON; |
| for (size_t n = 9; n < 16; n++) { |
| for (size_t g = 5; g < 8; g++) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(g) |
| .Test(xnn_x8_zip_xm_ukernel__neon); |
| } |
| } |
| } |
| |
| TEST(X8_ZIP_XM__NEON, n_lt_8) { |
| TEST_REQUIRES_ARM_NEON; |
| for (size_t n = 1; n < 8; n++) { |
| for (size_t g = 4; g < 12; g++) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(g) |
| .Test(xnn_x8_zip_xm_ukernel__neon); |
| } |
| } |
| } |
| #endif // XNN_ARCH_ARM || XNN_ARCH_ARM64 |
| |
| #if XNN_ARCH_X86 || XNN_ARCH_X86_64 |
| TEST(X8_ZIP_X2__SSE2, n_eq_16) { |
| TEST_REQUIRES_X86_SSE2; |
| ZipMicrokernelTester() |
| .n(16) |
| .g(2) |
| .Test(xnn_x8_zip_x2_ukernel__sse2); |
| } |
| |
| TEST(X8_ZIP_X2__SSE2, n_div_16) { |
| TEST_REQUIRES_X86_SSE2; |
| for (size_t n = 16; n < 256; n += 16) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(2) |
| .Test(xnn_x8_zip_x2_ukernel__sse2); |
| } |
| } |
| |
| TEST(X8_ZIP_X2__SSE2, n_gt_16) { |
| TEST_REQUIRES_X86_SSE2; |
| for (size_t n = 17; n < 32; n++) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(2) |
| .Test(xnn_x8_zip_x2_ukernel__sse2); |
| } |
| } |
| |
| TEST(X8_ZIP_X2__SSE2, n_lt_16) { |
| TEST_REQUIRES_X86_SSE2; |
| for (size_t n = 1; n < 16; n++) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(2) |
| .Test(xnn_x8_zip_x2_ukernel__sse2); |
| } |
| } |
| |
| TEST(X8_ZIP_X3__SSE2, n_eq_16) { |
| TEST_REQUIRES_X86_SSE2; |
| ZipMicrokernelTester() |
| .n(16) |
| .g(3) |
| .Test(xnn_x8_zip_x3_ukernel__sse2); |
| } |
| |
| TEST(X8_ZIP_X3__SSE2, n_div_16) { |
| TEST_REQUIRES_X86_SSE2; |
| for (size_t n = 16; n < 256; n += 16) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(3) |
| .Test(xnn_x8_zip_x3_ukernel__sse2); |
| } |
| } |
| |
| TEST(X8_ZIP_X3__SSE2, n_gt_16) { |
| TEST_REQUIRES_X86_SSE2; |
| for (size_t n = 17; n < 32; n++) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(3) |
| .Test(xnn_x8_zip_x3_ukernel__sse2); |
| } |
| } |
| |
| TEST(X8_ZIP_X3__SSE2, n_lt_16) { |
| TEST_REQUIRES_X86_SSE2; |
| for (size_t n = 1; n < 16; n++) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(3) |
| .Test(xnn_x8_zip_x3_ukernel__sse2); |
| } |
| } |
| |
| TEST(X8_ZIP_X4__SSE2, n_eq_16) { |
| TEST_REQUIRES_X86_SSE2; |
| ZipMicrokernelTester() |
| .n(16) |
| .g(4) |
| .Test(xnn_x8_zip_x4_ukernel__sse2); |
| } |
| |
| TEST(X8_ZIP_X4__SSE2, n_div_16) { |
| TEST_REQUIRES_X86_SSE2; |
| for (size_t n = 16; n < 256; n += 16) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(4) |
| .Test(xnn_x8_zip_x4_ukernel__sse2); |
| } |
| } |
| |
| TEST(X8_ZIP_X4__SSE2, n_gt_16) { |
| TEST_REQUIRES_X86_SSE2; |
| for (size_t n = 17; n < 32; n++) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(4) |
| .Test(xnn_x8_zip_x4_ukernel__sse2); |
| } |
| } |
| |
| TEST(X8_ZIP_X4__SSE2, n_lt_16) { |
| TEST_REQUIRES_X86_SSE2; |
| for (size_t n = 1; n < 16; n++) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(4) |
| .Test(xnn_x8_zip_x4_ukernel__sse2); |
| } |
| } |
| |
| TEST(X8_ZIP_XM__SSE2, n_eq_8_m_eq_4) { |
| TEST_REQUIRES_X86_SSE2; |
| ZipMicrokernelTester() |
| .n(8) |
| .g(4) |
| .Test(xnn_x8_zip_xm_ukernel__sse2); |
| } |
| |
| TEST(X8_ZIP_XM__SSE2, n_eq_8_m_div_4) { |
| TEST_REQUIRES_X86_SSE2; |
| for (size_t g = 4; g < 32; g += 4) { |
| ZipMicrokernelTester() |
| .n(8) |
| .g(g) |
| .Test(xnn_x8_zip_xm_ukernel__sse2); |
| } |
| } |
| |
| TEST(X8_ZIP_XM__SSE2, n_eq_8_m_gt_4) { |
| TEST_REQUIRES_X86_SSE2; |
| for (size_t g = 5; g < 8; g++) { |
| ZipMicrokernelTester() |
| .n(8) |
| .g(g) |
| .Test(xnn_x8_zip_xm_ukernel__sse2); |
| } |
| } |
| |
| TEST(X8_ZIP_XM__SSE2, n_eq_16_m_eq_4) { |
| TEST_REQUIRES_X86_SSE2; |
| ZipMicrokernelTester() |
| .n(16) |
| .g(4) |
| .Test(xnn_x8_zip_xm_ukernel__sse2); |
| } |
| |
| TEST(X8_ZIP_XM__SSE2, n_eq_16_m_div_4) { |
| TEST_REQUIRES_X86_SSE2; |
| for (size_t g = 4; g < 32; g += 4) { |
| ZipMicrokernelTester() |
| .n(16) |
| .g(g) |
| .Test(xnn_x8_zip_xm_ukernel__sse2); |
| } |
| } |
| |
| TEST(X8_ZIP_XM__SSE2, n_eq_16_m_gt_4) { |
| TEST_REQUIRES_X86_SSE2; |
| for (size_t g = 5; g < 8; g++) { |
| ZipMicrokernelTester() |
| .n(16) |
| .g(g) |
| .Test(xnn_x8_zip_xm_ukernel__sse2); |
| } |
| } |
| |
| TEST(X8_ZIP_XM__SSE2, n_div_16_m_eq_4) { |
| TEST_REQUIRES_X86_SSE2; |
| for (size_t n = 16; n < 256; n += 16) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(4) |
| .Test(xnn_x8_zip_xm_ukernel__sse2); |
| } |
| } |
| |
| TEST(X8_ZIP_XM__SSE2, n_div_16_m_div_4) { |
| TEST_REQUIRES_X86_SSE2; |
| for (size_t n = 16; n < 256; n += 16) { |
| for (size_t g = 4; g < 32; g += 4) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(g) |
| .Test(xnn_x8_zip_xm_ukernel__sse2); |
| } |
| } |
| } |
| |
| TEST(X8_ZIP_XM__SSE2, n_div_16_m_gt_4) { |
| TEST_REQUIRES_X86_SSE2; |
| for (size_t n = 16; n < 256; n += 16) { |
| for (size_t g = 5; g < 8; g++) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(g) |
| .Test(xnn_x8_zip_xm_ukernel__sse2); |
| } |
| } |
| } |
| |
| TEST(X8_ZIP_XM__SSE2, n_gt_16_m_eq_4) { |
| TEST_REQUIRES_X86_SSE2; |
| for (size_t n = 17; n < 32; n++) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(4) |
| .Test(xnn_x8_zip_xm_ukernel__sse2); |
| } |
| } |
| |
| TEST(X8_ZIP_XM__SSE2, n_gt_16_m_div_4) { |
| TEST_REQUIRES_X86_SSE2; |
| for (size_t n = 17; n < 32; n++) { |
| for (size_t g = 4; g < 32; g += 4) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(g) |
| .Test(xnn_x8_zip_xm_ukernel__sse2); |
| } |
| } |
| } |
| |
| TEST(X8_ZIP_XM__SSE2, n_gt_16_m_gt_4) { |
| TEST_REQUIRES_X86_SSE2; |
| for (size_t n = 17; n < 32; n++) { |
| for (size_t g = 5; g < 8; g++) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(g) |
| .Test(xnn_x8_zip_xm_ukernel__sse2); |
| } |
| } |
| } |
| |
| TEST(X8_ZIP_XM__SSE2, n_lt_16) { |
| TEST_REQUIRES_X86_SSE2; |
| for (size_t n = 1; n < 16; n++) { |
| for (size_t g = 4; g < 12; g++) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(g) |
| .Test(xnn_x8_zip_xm_ukernel__sse2); |
| } |
| } |
| } |
| #endif // XNN_ARCH_X86 || XNN_ARCH_X86_64 |
| |
| TEST(X8_ZIP_X2__SCALAR, n_eq_1) { |
| ZipMicrokernelTester() |
| .n(1) |
| .g(2) |
| .Test(xnn_x8_zip_x2_ukernel__scalar); |
| } |
| |
| TEST(X8_ZIP_X2__SCALAR, n_gt_1) { |
| for (size_t n = 2; n < 8; n++) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(2) |
| .Test(xnn_x8_zip_x2_ukernel__scalar); |
| } |
| } |
| |
| TEST(X8_ZIP_X3__SCALAR, n_eq_1) { |
| ZipMicrokernelTester() |
| .n(9) |
| .g(3) |
| .Test(xnn_x8_zip_x3_ukernel__scalar); |
| } |
| |
| TEST(X8_ZIP_X3__SCALAR, n_gt_1) { |
| for (size_t n = 2; n < 8; n++) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(3) |
| .Test(xnn_x8_zip_x3_ukernel__scalar); |
| } |
| } |
| |
| TEST(X8_ZIP_X4__SCALAR, n_eq_1) { |
| ZipMicrokernelTester() |
| .n(1) |
| .g(4) |
| .Test(xnn_x8_zip_x4_ukernel__scalar); |
| } |
| |
| TEST(X8_ZIP_X4__SCALAR, n_gt_1) { |
| for (size_t n = 2; n < 8; n++) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(4) |
| .Test(xnn_x8_zip_x4_ukernel__scalar); |
| } |
| } |
| |
| TEST(X8_ZIP_XM__SCALAR, n_eq_1_m_eq_4) { |
| ZipMicrokernelTester() |
| .n(1) |
| .g(4) |
| .Test(xnn_x8_zip_xm_ukernel__scalar); |
| } |
| |
| TEST(X8_ZIP_XM__SCALAR, n_eq_1_m_div_4) { |
| for (size_t g = 4; g < 32; g += 4) { |
| ZipMicrokernelTester() |
| .n(1) |
| .g(g) |
| .Test(xnn_x8_zip_xm_ukernel__scalar); |
| } |
| } |
| |
| TEST(X8_ZIP_XM__SCALAR, n_eq_1_m_gt_4) { |
| for (size_t g = 5; g < 8; g++) { |
| ZipMicrokernelTester() |
| .n(1) |
| .g(g) |
| .Test(xnn_x8_zip_xm_ukernel__scalar); |
| } |
| } |
| |
| TEST(X8_ZIP_XM__SCALAR, n_gt_1_m_eq_4) { |
| for (size_t n = 2; n < 8; n++) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(4) |
| .Test(xnn_x8_zip_xm_ukernel__scalar); |
| } |
| } |
| |
| TEST(X8_ZIP_XM__SCALAR, n_gt_1_m_div_4) { |
| for (size_t n = 2; n < 8; n++) { |
| for (size_t g = 4; g < 32; g += 4) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(g) |
| .Test(xnn_x8_zip_xm_ukernel__scalar); |
| } |
| } |
| } |
| |
| TEST(X8_ZIP_XM__SCALAR, n_gt_1_m_gt_4) { |
| for (size_t n = 2; n < 8; n++) { |
| for (size_t g = 5; g < 8; g++) { |
| ZipMicrokernelTester() |
| .n(n) |
| .g(g) |
| .Test(xnn_x8_zip_xm_ukernel__scalar); |
| } |
| } |
| } |