/* Copyright (c) 2021 Evan Nemerson * * 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. */ #define SIMDE_TEST_WASM_RELAXED_SIMD_INSN max #include "../../../simde/wasm/relaxed-simd.h" #include "test-relaxed-simd.h" static int test_simde_wasm_f32x4_relaxed_max(SIMDE_MUNIT_TEST_ARGS) { #if 1 SIMDE_TEST_STRUCT_MODIFIERS struct { simde_float32 a[sizeof(simde_v128_t) / sizeof(simde_float32)]; simde_float32 b[sizeof(simde_v128_t) / sizeof(simde_float32)]; simde_float32 r[sizeof(simde_v128_t) / sizeof(simde_float32)]; } test_vec[] = { { { SIMDE_FLOAT32_C( -920.07), SIMDE_FLOAT32_C( 830.32), SIMDE_FLOAT32_C( -196.85), SIMDE_FLOAT32_C( 291.81) }, { SIMDE_FLOAT32_C( -289.04), SIMDE_FLOAT32_C( 49.93), SIMDE_FLOAT32_C( -928.55), SIMDE_FLOAT32_C( 69.77) }, { SIMDE_FLOAT32_C( -289.04), SIMDE_FLOAT32_C( 830.32), SIMDE_FLOAT32_C( -196.85), SIMDE_FLOAT32_C( 291.81) } }, { { SIMDE_FLOAT32_C( -679.01), SIMDE_FLOAT32_C( 273.37), SIMDE_FLOAT32_C( -532.77), SIMDE_FLOAT32_C( 127.55) }, { SIMDE_FLOAT32_C( 100.92), SIMDE_FLOAT32_C( -536.72), SIMDE_FLOAT32_C( -535.51), SIMDE_FLOAT32_C( -444.83) }, { SIMDE_FLOAT32_C( 100.92), SIMDE_FLOAT32_C( 273.37), SIMDE_FLOAT32_C( -532.77), SIMDE_FLOAT32_C( 127.55) } }, { { SIMDE_FLOAT32_C( -370.35), SIMDE_FLOAT32_C( 910.66), SIMDE_FLOAT32_C( -449.76), SIMDE_FLOAT32_C( 756.97) }, { SIMDE_FLOAT32_C( -168.50), SIMDE_FLOAT32_C( 242.88), SIMDE_FLOAT32_C( -696.72), SIMDE_FLOAT32_C( 663.79) }, { SIMDE_FLOAT32_C( -168.50), SIMDE_FLOAT32_C( 910.66), SIMDE_FLOAT32_C( -449.76), SIMDE_FLOAT32_C( 756.97) } }, { { SIMDE_FLOAT32_C( -777.21), SIMDE_FLOAT32_C( -561.66), SIMDE_FLOAT32_C( 225.28), SIMDE_FLOAT32_C( 30.10) }, { SIMDE_FLOAT32_C( -535.78), SIMDE_FLOAT32_C( -546.75), SIMDE_FLOAT32_C( 345.48), SIMDE_FLOAT32_C( 708.52) }, { SIMDE_FLOAT32_C( -535.78), SIMDE_FLOAT32_C( -546.75), SIMDE_FLOAT32_C( 345.48), SIMDE_FLOAT32_C( 708.52) } }, { { SIMDE_FLOAT32_C( 940.56), SIMDE_FLOAT32_C( 303.87), SIMDE_FLOAT32_C( 810.53), SIMDE_FLOAT32_C( -526.94) }, { SIMDE_FLOAT32_C( 611.43), SIMDE_FLOAT32_C( 797.37), SIMDE_FLOAT32_C( 432.36), SIMDE_FLOAT32_C( 709.89) }, { SIMDE_FLOAT32_C( 940.56), SIMDE_FLOAT32_C( 797.37), SIMDE_FLOAT32_C( 810.53), SIMDE_FLOAT32_C( 709.89) } }, { { SIMDE_FLOAT32_C( -157.18), SIMDE_FLOAT32_C( -402.78), SIMDE_FLOAT32_C( -362.67), SIMDE_FLOAT32_C( -944.01) }, { SIMDE_FLOAT32_C( 106.70), SIMDE_FLOAT32_C( -208.07), SIMDE_FLOAT32_C( 277.04), SIMDE_FLOAT32_C( 374.11) }, { SIMDE_FLOAT32_C( 106.70), SIMDE_FLOAT32_C( -208.07), SIMDE_FLOAT32_C( 277.04), SIMDE_FLOAT32_C( 374.11) } }, { { SIMDE_FLOAT32_C( -402.16), SIMDE_FLOAT32_C( 227.84), SIMDE_FLOAT32_C( -493.53), SIMDE_FLOAT32_C( 869.48) }, { SIMDE_FLOAT32_C( 903.71), SIMDE_FLOAT32_C( -712.51), SIMDE_FLOAT32_C( -864.99), SIMDE_FLOAT32_C( -151.96) }, { SIMDE_FLOAT32_C( 903.71), SIMDE_FLOAT32_C( 227.84), SIMDE_FLOAT32_C( -493.53), SIMDE_FLOAT32_C( 869.48) } } }; for (size_t i = 0 ; i < (sizeof(test_vec) / sizeof(test_vec[0])) ; i++) { simde_v128_t a = simde_wasm_v128_load(test_vec[i].a); simde_v128_t b = simde_wasm_v128_load(test_vec[i].b); simde_v128_t r = simde_wasm_f32x4_relaxed_max(a, b); simde_test_wasm_f32x4_assert_equal(r, simde_wasm_v128_load(test_vec[i].r), INT_MAX); } return 0; #else fputc('\n', stdout); simde_float32 inputs[8 * 2 * (sizeof(simde_v128_t) / sizeof(simde_float32))]; simde_test_wasm_f32x4_random_full(8, 2, inputs, -SIMDE_FLOAT32_C(1000.0), SIMDE_FLOAT32_C(1000.0), HEDLEY_STATIC_CAST(SimdeTestVecFloatType, SIMDE_TEST_VEC_FLOAT_NAN | SIMDE_TEST_VEC_FLOAT_EQUAL)); for (size_t i = 0 ; i < 8 ; i++) { simde_v128_t a = simde_test_wasm_f32x4_random_full_extract(2, inputs, i, 0), b = simde_test_wasm_f32x4_random_full_extract(2, inputs, i, 1), r; r = simde_wasm_f32x4_relaxed_max(a, b); simde_test_wasm_f32x4_write(3, a, SIMDE_TEST_VEC_POS_FIRST); simde_test_wasm_f32x4_write(3, b, SIMDE_TEST_VEC_POS_MIDDLE); simde_test_wasm_f32x4_write(3, r, SIMDE_TEST_VEC_POS_LAST); } return 1; #endif } static int test_simde_wasm_f64x2_relaxed_max(SIMDE_MUNIT_TEST_ARGS) { #if 1 SIMDE_TEST_STRUCT_MODIFIERS struct { simde_float64 a[sizeof(simde_v128_t) / sizeof(simde_float64)]; simde_float64 b[sizeof(simde_v128_t) / sizeof(simde_float64)]; simde_float64 r[sizeof(simde_v128_t) / sizeof(simde_float64)]; } test_vec[] = { { { SIMDE_FLOAT64_C( 523.06), SIMDE_FLOAT64_C( -600.30) }, { SIMDE_FLOAT64_C( 212.57), SIMDE_FLOAT64_C( -725.13) }, { SIMDE_FLOAT64_C( 523.06), SIMDE_FLOAT64_C( -600.30) } }, { { SIMDE_FLOAT64_C( 630.42), SIMDE_FLOAT64_C( -507.35) }, { SIMDE_FLOAT64_C( 28.88), SIMDE_FLOAT64_C( -240.00) }, { SIMDE_FLOAT64_C( 630.42), SIMDE_FLOAT64_C( -240.00) } }, { { SIMDE_FLOAT64_C( 373.65), SIMDE_FLOAT64_C( 213.86) }, { SIMDE_FLOAT64_C( -611.53), SIMDE_FLOAT64_C( 707.90) }, { SIMDE_FLOAT64_C( 373.65), SIMDE_FLOAT64_C( 707.90) } }, { { SIMDE_FLOAT64_C( 339.86), SIMDE_FLOAT64_C( -860.05) }, { SIMDE_FLOAT64_C( 213.55), SIMDE_FLOAT64_C( -405.72) }, { SIMDE_FLOAT64_C( 339.86), SIMDE_FLOAT64_C( -405.72) } }, { { SIMDE_FLOAT64_C( -478.66), SIMDE_FLOAT64_C( -629.72) }, { SIMDE_FLOAT64_C( 841.82), SIMDE_FLOAT64_C( 793.27) }, { SIMDE_FLOAT64_C( 841.82), SIMDE_FLOAT64_C( 793.27) } }, { { SIMDE_FLOAT64_C( -262.99), SIMDE_FLOAT64_C( 802.55) }, { SIMDE_FLOAT64_C( -938.61), SIMDE_FLOAT64_C( 323.51) }, { SIMDE_FLOAT64_C( -262.99), SIMDE_FLOAT64_C( 802.55) } } }; for (size_t i = 0 ; i < (sizeof(test_vec) / sizeof(test_vec[0])) ; i++) { simde_v128_t a = simde_wasm_v128_load(test_vec[i].a); simde_v128_t b = simde_wasm_v128_load(test_vec[i].b); simde_v128_t r = simde_wasm_f64x2_relaxed_max(a, b); simde_test_wasm_f64x2_assert_equal(r, simde_wasm_v128_load(test_vec[i].r), 3); } return 0; #else fputc('\n', stdout); simde_float64 inputs[8 * 2 * (sizeof(simde_v128_t) / sizeof(simde_float64))]; simde_test_wasm_f64x2_random_full(8, 2, inputs, -SIMDE_FLOAT64_C(1000.0), SIMDE_FLOAT64_C(1000.0), HEDLEY_STATIC_CAST(SimdeTestVecFloatType, SIMDE_TEST_VEC_FLOAT_NAN)); for (size_t i = 0 ; i < 8 ; i++) { simde_v128_t a = simde_test_wasm_f64x2_random_full_extract(2, inputs, i, 0), b = simde_test_wasm_f64x2_random_full_extract(2, inputs, i, 1), r; r = simde_wasm_f64x2_relaxed_max(a, b); simde_test_wasm_f64x2_write(3, a, SIMDE_TEST_VEC_POS_FIRST); simde_test_wasm_f64x2_write(3, b, SIMDE_TEST_VEC_POS_MIDDLE); simde_test_wasm_f64x2_write(3, r, SIMDE_TEST_VEC_POS_LAST); } return 1; #endif } SIMDE_TEST_FUNC_LIST_BEGIN SIMDE_TEST_FUNC_LIST_ENTRY(wasm_f32x4_relaxed_max) SIMDE_TEST_FUNC_LIST_ENTRY(wasm_f64x2_relaxed_max) SIMDE_TEST_FUNC_LIST_END #include "test-relaxed-simd-footer.h"