libdpf/thirdparty/simde/test/x86/avx512/cvtt.c
Ryan Henry 3f10e05176 Update googletest to 1.18.0 and SIMDe to 0.8.2.
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>
2026-09-24 14:30:19 -06:00

288 lines
17 KiB
C

/* SPDX-License-Identifier: MIT
*
* Permission is hereby granted, free of charge, to any person
* obtaining a copy of this software and associated documentation
* files (the "Software"), to deal in the Software without
* restriction, including without limitation the rights to use, copy,
* modify, merge, publish, distribute, sublicense, and/or sell copies
* of the Software, and to permit persons to whom the Software is
* furnished to do so, subject to the following conditions:
*
* The above copyright notice and this permission notice shall be
* included in all copies or substantial portions of the Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
* NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
* BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
* ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
* CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
* SOFTWARE.
*
* Copyright:
* 2020 Evan Nemerson <evan@nemerson.com>
* 2020 Himanshi Mathur <himanshi18037@iiitd.ac.in>
* 2020 Hidayat Khan <huk2209@gmail.com>
*/
#define SIMDE_TEST_X86_AVX512_INSN cvtt
#include <test/x86/avx512/test-avx512.h>
#include <simde/x86/avx512/set.h>
#include <simde/x86/avx512/cvtt.h>
static int
test_simde_mm_cvttpd_epi64 (SIMDE_MUNIT_TEST_ARGS) {
#if 1
static const struct {
const simde_float64 a[2];
const int64_t r[2];
} test_vec[] = {
{ { SIMDE_FLOAT64_C( 548.43), SIMDE_FLOAT64_C( -160.32) },
{ INT64_C( 548), -INT64_C( 160) } },
{ { SIMDE_FLOAT64_C( -665.23), SIMDE_FLOAT64_C( 909.86) },
{ -INT64_C( 665), INT64_C( 909) } },
{ { SIMDE_FLOAT64_C( 869.84), SIMDE_FLOAT64_C( -522.84) },
{ INT64_C( 869), -INT64_C( 522) } },
{ { SIMDE_FLOAT64_C( -396.75), SIMDE_FLOAT64_C( -885.22) },
{ -INT64_C( 396), -INT64_C( 885) } },
{ { SIMDE_FLOAT64_C( 670.62), SIMDE_FLOAT64_C( -665.50) },
{ INT64_C( 670), -INT64_C( 665) } },
{ { SIMDE_FLOAT64_C( 66.13), SIMDE_FLOAT64_C( 606.16) },
{ INT64_C( 66), INT64_C( 606) } },
{ { SIMDE_FLOAT64_C( -31.40), SIMDE_FLOAT64_C( -401.49) },
{ -INT64_C( 31), -INT64_C( 401) } },
{ { SIMDE_FLOAT64_C( 27.98), SIMDE_FLOAT64_C( 872.01) },
{ INT64_C( 27), INT64_C( 872) } }
};
for (size_t i = 0 ; i < (sizeof(test_vec) / sizeof(test_vec[0])) ; i++) {
simde__m128d a = simde_mm_loadu_pd(test_vec[i].a);
simde__m128i r = simde_mm_cvttpd_epi64(a);
simde_test_x86_assert_equal_i64x2(r, simde_x_mm_loadu_epi64(test_vec[i].r));
}
return 0;
#else
fputc('\n', stdout);
for (int i = 0 ; i < 8 ; i++) {
simde__m128d a = simde_test_x86_random_f64x2(-SIMDE_FLOAT64_C(1000.0), SIMDE_FLOAT64_C(1000.0));
simde__m128i r = simde_mm_cvttpd_epi64(a);
simde_test_x86_write_f64x2(2, a, SIMDE_TEST_VEC_POS_FIRST);
simde_test_x86_write_i64x2(2, r, SIMDE_TEST_VEC_POS_LAST);
}
return 1;
#endif
}
static int
test_simde_mm_mask_cvttpd_epi64 (SIMDE_MUNIT_TEST_ARGS) {
#if 1
static const struct {
const int64_t src[2];
const simde__mmask8 k;
const simde_float64 a[2];
const int64_t r[2];
} test_vec[] = {
{ { -INT64_C( 361962842543030048), -INT64_C( 3474737081876049297) },
UINT8_C(108),
{ SIMDE_FLOAT64_C( 957.75), SIMDE_FLOAT64_C( 751.50) },
{ -INT64_C( 361962842543030048), -INT64_C( 3474737081876049297) } },
{ { INT64_C( 688050963011175950), -INT64_C( 7209247915320387714) },
UINT8_C( 81),
{ SIMDE_FLOAT64_C( -23.92), SIMDE_FLOAT64_C( -116.15) },
{ -INT64_C( 23), -INT64_C( 7209247915320387714) } },
{ { -INT64_C( 1696959715454980277), -INT64_C( 8986700034522357505) },
UINT8_C(136),
{ SIMDE_FLOAT64_C( 40.92), SIMDE_FLOAT64_C( -333.21) },
{ -INT64_C( 1696959715454980277), -INT64_C( 8986700034522357505) } },
{ { -INT64_C( 3906979509015529327), -INT64_C( 7568519742650574791) },
UINT8_C( 88),
{ SIMDE_FLOAT64_C( 414.99), SIMDE_FLOAT64_C( -679.12) },
{ -INT64_C( 3906979509015529327), -INT64_C( 7568519742650574791) } },
{ { INT64_C( 1324577026109679169), -INT64_C( 6354291571612128933) },
UINT8_C(219),
{ SIMDE_FLOAT64_C( 727.53), SIMDE_FLOAT64_C( -94.39) },
{ INT64_C( 727), -INT64_C( 94) } },
{ { INT64_C( 7972755038995392676), -INT64_C( 3786475889184342912) },
UINT8_C(133),
{ SIMDE_FLOAT64_C( -53.71), SIMDE_FLOAT64_C( 557.50) },
{ -INT64_C( 53), -INT64_C( 3786475889184342912) } },
{ { -INT64_C( 2204071043036436841), INT64_C( 6065779050755933240) },
UINT8_C(112),
{ SIMDE_FLOAT64_C( 377.02), SIMDE_FLOAT64_C( -369.85) },
{ -INT64_C( 2204071043036436841), INT64_C( 6065779050755933240) } },
{ { -INT64_C( 7696596639603648289), -INT64_C( 5674106389503363330) },
UINT8_C(151),
{ SIMDE_FLOAT64_C( -383.32), SIMDE_FLOAT64_C( 295.30) },
{ -INT64_C( 383), INT64_C( 295) } }
};
for (size_t i = 0 ; i < (sizeof(test_vec) / sizeof(test_vec[0])) ; i++) {
simde__m128i src = simde_x_mm_loadu_epi64(test_vec[i].src);
simde__m128d a = simde_mm_loadu_pd(test_vec[i].a);
simde__m128i r = simde_mm_mask_cvttpd_epi64(src, test_vec[i].k, a);
simde_test_x86_assert_equal_i64x2(r, simde_x_mm_loadu_epi64(test_vec[i].r));
}
return 0;
#else
fputc('\n', stdout);
for (int i = 0 ; i < 8 ; i++) {
simde__m128i src = simde_test_x86_random_i64x2();
simde__mmask8 k = simde_test_x86_random_mmask8();
simde__m128d a = simde_test_x86_random_f64x2(-SIMDE_FLOAT64_C(1000.0), SIMDE_FLOAT64_C(1000.0));
simde__m128i r = simde_mm_mask_cvttpd_epi64(src, k, a);
simde_test_x86_write_i64x2(2, src, SIMDE_TEST_VEC_POS_FIRST);
simde_test_x86_write_mmask8(2, k, SIMDE_TEST_VEC_POS_MIDDLE);
simde_test_x86_write_f64x2(2, a, SIMDE_TEST_VEC_POS_MIDDLE);
simde_test_x86_write_i64x2(2, r, SIMDE_TEST_VEC_POS_LAST);
}
return 1;
#endif
}
static int
test_simde_mm_maskz_cvttpd_epi64 (SIMDE_MUNIT_TEST_ARGS) {
#if 1
static const struct {
const simde__mmask8 k;
const simde_float64 a[2];
const int64_t r[2];
} test_vec[] = {
{ UINT8_C(120),
{ SIMDE_FLOAT64_C( -637.12), SIMDE_FLOAT64_C( 286.78) },
{ INT64_C( 0), INT64_C( 0) } },
{ UINT8_C(201),
{ SIMDE_FLOAT64_C( 14.68), SIMDE_FLOAT64_C( -536.46) },
{ INT64_C( 14), INT64_C( 0) } },
{ UINT8_C(194),
{ SIMDE_FLOAT64_C( 4.38), SIMDE_FLOAT64_C( -326.23) },
{ INT64_C( 0), -INT64_C( 326) } },
{ UINT8_C( 50),
{ SIMDE_FLOAT64_C( -618.60), SIMDE_FLOAT64_C( 303.92) },
{ INT64_C( 0), INT64_C( 303) } },
{ UINT8_C( 17),
{ SIMDE_FLOAT64_C( -934.04), SIMDE_FLOAT64_C( -855.69) },
{ -INT64_C( 934), INT64_C( 0) } },
{ UINT8_C(134),
{ SIMDE_FLOAT64_C( -621.04), SIMDE_FLOAT64_C( 304.82) },
{ INT64_C( 0), INT64_C( 304) } },
{ UINT8_C(182),
{ SIMDE_FLOAT64_C( -152.60), SIMDE_FLOAT64_C( 172.70) },
{ INT64_C( 0), INT64_C( 172) } },
{ UINT8_C(108),
{ SIMDE_FLOAT64_C( -737.88), SIMDE_FLOAT64_C( -401.93) },
{ INT64_C( 0), INT64_C( 0) } }
};
for (size_t i = 0 ; i < (sizeof(test_vec) / sizeof(test_vec[0])) ; i++) {
simde__m128d a = simde_mm_loadu_pd(test_vec[i].a);
simde__m128i r = simde_mm_maskz_cvttpd_epi64(test_vec[i].k, a);
simde_test_x86_assert_equal_i64x2(r, simde_x_mm_loadu_epi64(test_vec[i].r));
}
return 0;
#else
fputc('\n', stdout);
for (int i = 0 ; i < 8 ; i++) {
simde__mmask8 k = simde_test_x86_random_mmask8();
simde__m128d a = simde_test_x86_random_f64x2(-SIMDE_FLOAT64_C(1000.0), SIMDE_FLOAT64_C(1000.0));
simde__m128i r = simde_mm_maskz_cvttpd_epi64(k, a);
simde_test_x86_write_mmask8(2, k, SIMDE_TEST_VEC_POS_FIRST);
simde_test_x86_write_f64x2(2, a, SIMDE_TEST_VEC_POS_MIDDLE);
simde_test_x86_write_i64x2(2, r, SIMDE_TEST_VEC_POS_LAST);
}
return 1;
#endif
}
static int
test_simde_mm512_cvttps_epi32 (SIMDE_MUNIT_TEST_ARGS) {
#if 1
static const struct {
const simde_float32 a[16];
const int32_t r[16];
} test_vec[] = {
{ { SIMDE_FLOAT32_C( 729.57), SIMDE_FLOAT32_C( -785.48), SIMDE_FLOAT32_C( -245.56), SIMDE_FLOAT32_C( 741.78),
SIMDE_FLOAT32_C( -900.88), SIMDE_FLOAT32_C( -418.95), SIMDE_FLOAT32_C( -554.45), SIMDE_FLOAT32_C( -819.65),
SIMDE_FLOAT32_C( 260.27), SIMDE_FLOAT32_C( 953.13), SIMDE_FLOAT32_C( -926.11), SIMDE_FLOAT32_C( 341.73),
SIMDE_FLOAT32_C( -339.95), SIMDE_FLOAT32_C( 886.92), SIMDE_FLOAT32_C( 452.88), SIMDE_FLOAT32_C( 215.16) },
{ INT32_C( 729), -INT32_C( 785), -INT32_C( 245), INT32_C( 741), -INT32_C( 900), -INT32_C( 418), -INT32_C( 554), -INT32_C( 819),
INT32_C( 260), INT32_C( 953), -INT32_C( 926), INT32_C( 341), -INT32_C( 339), INT32_C( 886), INT32_C( 452), INT32_C( 215) } },
{ { SIMDE_FLOAT32_C( -840.48), SIMDE_FLOAT32_C( 618.54), SIMDE_FLOAT32_C( 980.39), SIMDE_FLOAT32_C( 428.66),
SIMDE_FLOAT32_C( -251.24), SIMDE_FLOAT32_C( 397.38), SIMDE_FLOAT32_C( -975.80), SIMDE_FLOAT32_C( 766.05),
SIMDE_FLOAT32_C( -458.73), SIMDE_FLOAT32_C( 215.13), SIMDE_FLOAT32_C( -841.38), SIMDE_FLOAT32_C( -638.70),
SIMDE_FLOAT32_C( -411.92), SIMDE_FLOAT32_C( -220.19), SIMDE_FLOAT32_C( 165.38), SIMDE_FLOAT32_C( -682.35) },
{ -INT32_C( 840), INT32_C( 618), INT32_C( 980), INT32_C( 428), -INT32_C( 251), INT32_C( 397), -INT32_C( 975), INT32_C( 766),
-INT32_C( 458), INT32_C( 215), -INT32_C( 841), -INT32_C( 638), -INT32_C( 411), -INT32_C( 220), INT32_C( 165), -INT32_C( 682) } },
{ { SIMDE_FLOAT32_C( -5.67), SIMDE_FLOAT32_C( 919.82), SIMDE_FLOAT32_C( -940.57), SIMDE_FLOAT32_C( 93.45),
SIMDE_FLOAT32_C( -499.13), SIMDE_FLOAT32_C( -495.03), SIMDE_FLOAT32_C( 273.79), SIMDE_FLOAT32_C( 761.13),
SIMDE_FLOAT32_C( -541.89), SIMDE_FLOAT32_C( 347.69), SIMDE_FLOAT32_C( 102.86), SIMDE_FLOAT32_C( 118.16),
SIMDE_FLOAT32_C( 234.61), SIMDE_FLOAT32_C( -444.26), SIMDE_FLOAT32_C( -666.68), SIMDE_FLOAT32_C( 394.13) },
{ -INT32_C( 5), INT32_C( 919), -INT32_C( 940), INT32_C( 93), -INT32_C( 499), -INT32_C( 495), INT32_C( 273), INT32_C( 761),
-INT32_C( 541), INT32_C( 347), INT32_C( 102), INT32_C( 118), INT32_C( 234), -INT32_C( 444), -INT32_C( 666), INT32_C( 394) } },
{ { SIMDE_FLOAT32_C( -825.71), SIMDE_FLOAT32_C( -686.29), SIMDE_FLOAT32_C( -177.21), SIMDE_FLOAT32_C( -76.96),
SIMDE_FLOAT32_C( 711.09), SIMDE_FLOAT32_C( -153.01), SIMDE_FLOAT32_C( -310.91), SIMDE_FLOAT32_C( -747.64),
SIMDE_FLOAT32_C( -937.88), SIMDE_FLOAT32_C( -152.29), SIMDE_FLOAT32_C( -386.34), SIMDE_FLOAT32_C( -349.81),
SIMDE_FLOAT32_C( 627.52), SIMDE_FLOAT32_C( 779.04), SIMDE_FLOAT32_C( -32.16), SIMDE_FLOAT32_C( -378.15) },
{ -INT32_C( 825), -INT32_C( 686), -INT32_C( 177), -INT32_C( 76), INT32_C( 711), -INT32_C( 153), -INT32_C( 310), -INT32_C( 747),
-INT32_C( 937), -INT32_C( 152), -INT32_C( 386), -INT32_C( 349), INT32_C( 627), INT32_C( 779), -INT32_C( 32), -INT32_C( 378) } },
{ { SIMDE_FLOAT32_C( 698.86), SIMDE_FLOAT32_C( 27.27), SIMDE_FLOAT32_C( 715.30), SIMDE_FLOAT32_C( -800.28),
SIMDE_FLOAT32_C( 532.24), SIMDE_FLOAT32_C( -10.91), SIMDE_FLOAT32_C( 960.86), SIMDE_FLOAT32_C( 990.35),
SIMDE_FLOAT32_C( -663.22), SIMDE_FLOAT32_C( 63.72), SIMDE_FLOAT32_C( 108.52), SIMDE_FLOAT32_C( 571.39),
SIMDE_FLOAT32_C( 619.47), SIMDE_FLOAT32_C( 441.84), SIMDE_FLOAT32_C( -34.48), SIMDE_FLOAT32_C( 793.75) },
{ INT32_C( 698), INT32_C( 27), INT32_C( 715), -INT32_C( 800), INT32_C( 532), -INT32_C( 10), INT32_C( 960), INT32_C( 990),
-INT32_C( 663), INT32_C( 63), INT32_C( 108), INT32_C( 571), INT32_C( 619), INT32_C( 441), -INT32_C( 34), INT32_C( 793) } },
{ { SIMDE_FLOAT32_C( 755.54), SIMDE_FLOAT32_C( 788.31), SIMDE_FLOAT32_C( -283.21), SIMDE_FLOAT32_C( 466.63),
SIMDE_FLOAT32_C( -364.70), SIMDE_FLOAT32_C( 405.88), SIMDE_FLOAT32_C( 719.00), SIMDE_FLOAT32_C( -302.58),
SIMDE_FLOAT32_C( -746.40), SIMDE_FLOAT32_C( -667.34), SIMDE_FLOAT32_C( 347.62), SIMDE_FLOAT32_C( 881.12),
SIMDE_FLOAT32_C( -888.30), SIMDE_FLOAT32_C( -684.54), SIMDE_FLOAT32_C( -497.03), SIMDE_FLOAT32_C( 810.56) },
{ INT32_C( 755), INT32_C( 788), -INT32_C( 283), INT32_C( 466), -INT32_C( 364), INT32_C( 405), INT32_C( 719), -INT32_C( 302),
-INT32_C( 746), -INT32_C( 667), INT32_C( 347), INT32_C( 881), -INT32_C( 888), -INT32_C( 684), -INT32_C( 497), INT32_C( 810) } },
{ { SIMDE_FLOAT32_C( 342.73), SIMDE_FLOAT32_C( -781.74), SIMDE_FLOAT32_C( -989.72), SIMDE_FLOAT32_C( -125.03),
SIMDE_FLOAT32_C( 207.36), SIMDE_FLOAT32_C( 971.14), SIMDE_FLOAT32_C( -134.67), SIMDE_FLOAT32_C( 544.14),
SIMDE_FLOAT32_C( 34.86), SIMDE_FLOAT32_C( 973.84), SIMDE_FLOAT32_C( 115.53), SIMDE_FLOAT32_C( -345.67),
SIMDE_FLOAT32_C( 415.68), SIMDE_FLOAT32_C( -918.96), SIMDE_FLOAT32_C( -551.92), SIMDE_FLOAT32_C( 171.22) },
{ INT32_C( 342), -INT32_C( 781), -INT32_C( 989), -INT32_C( 125), INT32_C( 207), INT32_C( 971), -INT32_C( 134), INT32_C( 544),
INT32_C( 34), INT32_C( 973), INT32_C( 115), -INT32_C( 345), INT32_C( 415), -INT32_C( 918), -INT32_C( 551), INT32_C( 171) } },
{ { SIMDE_FLOAT32_C( 869.36), SIMDE_FLOAT32_C( 164.87), SIMDE_FLOAT32_C( -362.14), SIMDE_FLOAT32_C( -495.34),
SIMDE_FLOAT32_C( -429.24), SIMDE_FLOAT32_C( -643.14), SIMDE_FLOAT32_C( 202.08), SIMDE_FLOAT32_C( -175.65),
SIMDE_FLOAT32_C( -310.49), SIMDE_FLOAT32_C( -450.30), SIMDE_FLOAT32_C( -294.53), SIMDE_FLOAT32_C( -198.79),
SIMDE_FLOAT32_C( -134.84), SIMDE_FLOAT32_C( 208.44), SIMDE_FLOAT32_C( -388.23), SIMDE_FLOAT32_C( -792.11) },
{ INT32_C( 869), INT32_C( 164), -INT32_C( 362), -INT32_C( 495), -INT32_C( 429), -INT32_C( 643), INT32_C( 202), -INT32_C( 175),
-INT32_C( 310), -INT32_C( 450), -INT32_C( 294), -INT32_C( 198), -INT32_C( 134), INT32_C( 208), -INT32_C( 388), -INT32_C( 792) } },
};
for (size_t i = 0 ; i < (sizeof(test_vec) / sizeof(test_vec[0])) ; i++) {
simde__m512 a = simde_mm512_loadu_ps(test_vec[i].a);
simde__m512i r = simde_mm512_cvttps_epi32(a);
simde_test_x86_assert_equal_i32x16(r, simde_mm512_loadu_epi32(test_vec[i].r));
}
return 0;
#else
fputc('\n', stdout);
for (int i = 0 ; i < 8 ; i++) {
simde__m512 a = simde_test_x86_random_f32x16(-SIMDE_FLOAT32_C(1000.0), SIMDE_FLOAT32_C(1000.0));
simde__m512i r = simde_mm512_cvttps_epi32(a);
simde_test_x86_write_f32x16(2, a, SIMDE_TEST_VEC_POS_FIRST);
simde_test_x86_write_i32x16(2, r, SIMDE_TEST_VEC_POS_LAST);
}
return 1;
#endif
}
SIMDE_TEST_FUNC_LIST_BEGIN
SIMDE_TEST_FUNC_LIST_ENTRY(mm_cvttpd_epi64)
SIMDE_TEST_FUNC_LIST_ENTRY(mm_mask_cvttpd_epi64)
SIMDE_TEST_FUNC_LIST_ENTRY(mm_maskz_cvttpd_epi64)
SIMDE_TEST_FUNC_LIST_ENTRY(mm512_cvttps_epi32)
SIMDE_TEST_FUNC_LIST_END
#include <test/x86/avx512/test-avx512-footer.h>