Googletest 1.18 asks for CMake 3.13 or newer, so configuring the tests no longer warns that CMake compatibility below 3.10 is deprecated. Co-authored-by: Cursor <cursoragent@cursor.com>
316 lines
8.9 KiB
C
316 lines
8.9 KiB
C
/* SPDX-License-Identifier: MIT
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*
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* Permission is hereby granted, free of charge, to any person
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* obtaining a copy of this software and associated documentation
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* files (the "Software"), to deal in the Software without
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* restriction, including without limitation the rights to use, copy,
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* modify, merge, publish, distribute, sublicense, and/or sell copies
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* of the Software, and to permit persons to whom the Software is
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* furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice shall be
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* included in all copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
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* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
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* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
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* NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
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* BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
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* ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
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* CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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* SOFTWARE.
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*
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* Copyright:
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* 2023 Michael R. Crusoe <crusoe@debian.org>
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*/
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#define SIMDE_TEST_X86_AVX512_INSN kxor
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#include <test/x86/avx512/test-avx512.h>
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#include <simde/x86/avx512/kxor.h>
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static int
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test_simde_kxor_mask8 (SIMDE_MUNIT_TEST_ARGS) {
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#if 1
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static const struct {
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const simde__mmask8 a;
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const simde__mmask8 b;
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const simde__mmask8 r;
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} test_vec[] = {
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{ UINT8_C(180),
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UINT8_C(253),
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UINT8_C( 73) },
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{ UINT8_C( 16),
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UINT8_C( 50),
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UINT8_C( 34) },
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{ UINT8_C(181),
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UINT8_C(122),
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UINT8_C(207) },
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{ UINT8_C( 81),
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UINT8_C( 92),
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UINT8_C( 13) },
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{ UINT8_C( 21),
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UINT8_C(159),
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UINT8_C(138) },
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{ UINT8_C(254),
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UINT8_C(236),
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UINT8_C( 18) },
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{ UINT8_C(101),
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UINT8_C(123),
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UINT8_C( 30) },
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{ UINT8_C(122),
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UINT8_C(180),
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UINT8_C(206) },
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};
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for (size_t i = 0 ; i < (sizeof(test_vec) / sizeof(test_vec[0])) ; i++) {
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simde__mmask8 r = simde_kxor_mask8(test_vec[i].a, test_vec[i].b);
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simde_assert_equal_mmask8(r, test_vec[i].r);
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}
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return 0;
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#else
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fputc('\n', stdout);
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for (int i = 0 ; i < 8 ; i++) {
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simde__mmask8 a = simde_test_x86_random_mmask8();
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simde__mmask8 b = simde_test_x86_random_mmask8();
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simde__mmask8 r = simde_kxor_mask8(a, b);
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simde_test_x86_write_mmask8(2, a, SIMDE_TEST_VEC_POS_FIRST);
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simde_test_x86_write_mmask8(2, b, SIMDE_TEST_VEC_POS_MIDDLE);
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simde_test_x86_write_mmask8(2, r, SIMDE_TEST_VEC_POS_LAST);
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}
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return 1;
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#endif
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}
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static int
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test_simde_kxor_mask16 (SIMDE_MUNIT_TEST_ARGS) {
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#if 1
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static const struct {
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const simde__mmask16 a;
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const simde__mmask16 b;
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const simde__mmask16 r;
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} test_vec[] = {
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{ UINT16_C( 5117),
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UINT16_C(43689),
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UINT16_C(47444) },
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{ UINT16_C(32526),
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UINT16_C(40254),
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UINT16_C(57904) },
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{ UINT16_C( 9192),
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UINT16_C(52494),
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UINT16_C(61158) },
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{ UINT16_C(22597),
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UINT16_C(18227),
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UINT16_C( 8054) },
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{ UINT16_C(29104),
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UINT16_C(25853),
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UINT16_C( 5453) },
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{ UINT16_C(23320),
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UINT16_C(54041),
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UINT16_C(34817) },
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{ UINT16_C(22991),
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UINT16_C(47721),
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UINT16_C(58278) },
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{ UINT16_C(11519),
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UINT16_C(64553),
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UINT16_C(53462) },
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};
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for (size_t i = 0 ; i < (sizeof(test_vec) / sizeof(test_vec[0])) ; i++) {
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simde__mmask16 r = simde_kxor_mask16(test_vec[i].a, test_vec[i].b);
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simde_assert_equal_mmask16(r, test_vec[i].r);
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}
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return 0;
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#else
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fputc('\n', stdout);
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for (int i = 0 ; i < 8 ; i++) {
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simde__mmask16 a = simde_test_x86_random_mmask16();
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simde__mmask16 b = simde_test_x86_random_mmask16();
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simde__mmask16 r = simde_kxor_mask16(a, b);
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simde_test_x86_write_mmask16(2, a, SIMDE_TEST_VEC_POS_FIRST);
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simde_test_x86_write_mmask16(2, b, SIMDE_TEST_VEC_POS_MIDDLE);
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simde_test_x86_write_mmask16(2, r, SIMDE_TEST_VEC_POS_LAST);
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}
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return 1;
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#endif
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}
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static int
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test_simde_mm512_kxor (SIMDE_MUNIT_TEST_ARGS) {
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#if 1
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static const struct {
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const simde__mmask16 a;
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const simde__mmask16 b;
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const simde__mmask16 r;
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} test_vec[] = {
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{ UINT16_C(22659),
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UINT16_C(15183),
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UINT16_C(25548) },
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{ UINT16_C(64429),
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UINT16_C(37846),
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UINT16_C(26747) },
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{ UINT16_C(26767),
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UINT16_C(29157),
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UINT16_C( 6506) },
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{ UINT16_C( 8933),
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UINT16_C(26186),
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UINT16_C(17583) },
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{ UINT16_C(22529),
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UINT16_C(46653),
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UINT16_C(60988) },
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{ UINT16_C(42932),
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UINT16_C(46173),
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UINT16_C( 5097) },
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{ UINT16_C(29882),
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UINT16_C(38464),
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UINT16_C(58106) },
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{ UINT16_C(42475),
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UINT16_C(28355),
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UINT16_C(52008) },
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};
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for (size_t i = 0 ; i < (sizeof(test_vec) / sizeof(test_vec[0])) ; i++) {
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simde__mmask16 r = simde_mm512_kxor(test_vec[i].a, test_vec[i].b);
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simde_assert_equal_mmask16(r, test_vec[i].r);
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}
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return 0;
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#else
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fputc('\n', stdout);
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for (int i = 0 ; i < 8 ; i++) {
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simde__mmask16 a = simde_test_x86_random_mmask16();
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simde__mmask16 b = simde_test_x86_random_mmask16();
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simde__mmask16 r = simde_mm512_kxor(a, b);
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simde_test_x86_write_mmask16(2, a, SIMDE_TEST_VEC_POS_FIRST);
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simde_test_x86_write_mmask16(2, b, SIMDE_TEST_VEC_POS_MIDDLE);
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simde_test_x86_write_mmask16(2, r, SIMDE_TEST_VEC_POS_LAST);
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}
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return 1;
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#endif
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}
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static int
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test_simde_kxor_mask32 (SIMDE_MUNIT_TEST_ARGS) {
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#if 1
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static const struct {
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const simde__mmask32 a;
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const simde__mmask32 b;
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const simde__mmask32 r;
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} test_vec[] = {
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{ UINT32_C(1319621183),
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UINT32_C( 988538194),
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UINT32_C(1951151981) },
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{ UINT32_C(1292368392),
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UINT32_C( 60045906),
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UINT32_C(1318305882) },
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{ UINT32_C(3295122091),
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UINT32_C(3164045549),
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UINT32_C(2028999238) },
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{ UINT32_C(3648454874),
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UINT32_C(1825939500),
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UINT32_C(3047334134) },
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{ UINT32_C(3300555890),
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UINT32_C(1778296161),
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UINT32_C(2906970387) },
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{ UINT32_C(4072080799),
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UINT32_C(3958721344),
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UINT32_C( 423775967) },
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{ UINT32_C(3400490205),
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UINT32_C(3079096029),
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UINT32_C(2099780096) },
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{ UINT32_C(1938882118),
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UINT32_C( 283075998),
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UINT32_C(1666161624) },
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};
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for (size_t i = 0 ; i < (sizeof(test_vec) / sizeof(test_vec[0])) ; i++) {
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simde__mmask32 r = simde_kxor_mask32(test_vec[i].a, test_vec[i].b);
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simde_assert_equal_mmask32(r, test_vec[i].r);
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}
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return 0;
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#else
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fputc('\n', stdout);
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for (int i = 0 ; i < 8 ; i++) {
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simde__mmask32 a = simde_test_x86_random_mmask32();
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simde__mmask32 b = simde_test_x86_random_mmask32();
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simde__mmask32 r = simde_kxor_mask32(a, b);
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simde_test_x86_write_mmask32(2, a, SIMDE_TEST_VEC_POS_FIRST);
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simde_test_x86_write_mmask32(2, b, SIMDE_TEST_VEC_POS_MIDDLE);
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simde_test_x86_write_mmask32(2, r, SIMDE_TEST_VEC_POS_LAST);
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}
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return 1;
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#endif
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}
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static int
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test_simde_kxor_mask64 (SIMDE_MUNIT_TEST_ARGS) {
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#if 1
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static const struct {
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const simde__mmask64 a;
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const simde__mmask64 b;
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const simde__mmask64 r;
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} test_vec[] = {
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{ UINT64_C(16045713311770450402),
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UINT64_C(10161464015097717977),
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UINT64_C( 6028374389748530491) },
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{ UINT64_C( 4734935752840295457),
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UINT64_C(10199408145817945564),
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UINT64_C(14717285644810580477) },
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{ UINT64_C( 885094986567147564),
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UINT64_C(18383177860084209889),
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UINT64_C(17534298883154606285) },
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{ UINT64_C( 3465998565237421534),
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UINT64_C(10101633752882728440),
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UINT64_C(13558514613629663270) },
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{ UINT64_C( 6977834486443999638),
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UINT64_C( 230826133395995480),
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UINT64_C( 7197368326119946958) },
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{ UINT64_C(15927531924707095172),
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UINT64_C( 9273107251932017859),
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UINT64_C( 6753503951651178055) },
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{ UINT64_C( 4508419775504426930),
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UINT64_C( 1532535115017912859),
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UINT64_C( 3158632437299094953) },
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{ UINT64_C(15608903556322435290),
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UINT64_C( 9373588207016091307),
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UINT64_C( 6523565052813000305) },
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};
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for (size_t i = 0 ; i < (sizeof(test_vec) / sizeof(test_vec[0])) ; i++) {
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simde__mmask64 r = simde_kxor_mask64(test_vec[i].a, test_vec[i].b);
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simde_assert_equal_mmask64(r, test_vec[i].r);
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}
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return 0;
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#else
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fputc('\n', stdout);
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for (int i = 0 ; i < 8 ; i++) {
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simde__mmask64 a = simde_test_x86_random_mmask64();
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simde__mmask64 b = simde_test_x86_random_mmask64();
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simde__mmask64 r = simde_kxor_mask64(a, b);
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simde_test_x86_write_mmask64(2, a, SIMDE_TEST_VEC_POS_FIRST);
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simde_test_x86_write_mmask64(2, b, SIMDE_TEST_VEC_POS_MIDDLE);
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simde_test_x86_write_mmask64(2, r, SIMDE_TEST_VEC_POS_LAST);
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}
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return 1;
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#endif
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}
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SIMDE_TEST_FUNC_LIST_BEGIN
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SIMDE_TEST_FUNC_LIST_ENTRY(kxor_mask8)
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SIMDE_TEST_FUNC_LIST_ENTRY(kxor_mask16)
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SIMDE_TEST_FUNC_LIST_ENTRY(mm512_kxor)
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SIMDE_TEST_FUNC_LIST_ENTRY(kxor_mask32)
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SIMDE_TEST_FUNC_LIST_ENTRY(kxor_mask64)
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SIMDE_TEST_FUNC_LIST_END
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#include <test/x86/avx512/test-avx512-footer.h>
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