| //===----------------------------------------------------------------------===// |
| // |
| // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. |
| // See https://llvm.org/LICENSE.txt for license information. |
| // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception |
| // |
| //===----------------------------------------------------------------------===// |
| /// |
| /// \file |
| /// This file contains unit tests for single-precision SIMD expm1. |
| /// |
| //===----------------------------------------------------------------------===// |
| |
| #include "hdr/math_macros.h" |
| #include "src/__support/CPP/simd.h" |
| #include "src/__support/FPUtil/FPBits.h" |
| #include "src/math/expm1f.h" |
| #include "src/mathvec/expm1f.h" |
| #include "test/UnitTest/SIMDMatcher.h" |
| #include "test/UnitTest/Test.h" |
| #include "test/src/mathvec/UnitTestWrappers.h" |
| |
| #include "hdr/stdint_proxy.h" |
| |
| using LlvmLibcVecExpm1fTest = LIBC_NAMESPACE::testing::FPTest<float>; |
| |
| using Expm1fOp = |
| LIBC_NAMESPACE::testing::mathvec::UnaryOp<float, LIBC_NAMESPACE::expm1f, |
| LIBC_NAMESPACE::expm1f>; |
| using LIBC_NAMESPACE::cpp::splat; |
| using LIBC_NAMESPACE::testing::mathvec::wrap_ref; |
| using LIBC_NAMESPACE::testing::mathvec::wrap_vector; |
| |
| TEST_F(LlvmLibcVecExpm1fTest, SpecialNumbers) { |
| EXPECT_SIMD_EQ(splat(aNaN), wrap_vector<Expm1fOp>(aNaN)); |
| |
| EXPECT_SIMD_EQ(splat(inf), wrap_vector<Expm1fOp>(inf)); |
| |
| EXPECT_SIMD_EQ(splat(-1.0f), wrap_vector<Expm1fOp>(neg_inf)); |
| |
| EXPECT_SIMD_EQ(splat(0.0f), wrap_vector<Expm1fOp>(0.0f)); |
| |
| EXPECT_SIMD_EQ(splat(-0.0f), wrap_vector<Expm1fOp>(-0.0f)); |
| } |
| |
| TEST_F(LlvmLibcVecExpm1fTest, Overflow) { |
| float x = FPBits(0x7f7fffffU).get_val(); |
| EXPECT_SIMD_EQ(splat(inf), wrap_vector<Expm1fOp>(x)); |
| |
| x = FPBits(0x42cffff8U).get_val(); |
| EXPECT_SIMD_EQ(splat(inf), wrap_vector<Expm1fOp>(x)); |
| |
| x = FPBits(0x42d00008U).get_val(); |
| EXPECT_SIMD_EQ(splat(inf), wrap_vector<Expm1fOp>(x)); |
| } |
| |
| TEST_F(LlvmLibcVecExpm1fTest, Underflow) { |
| float x = FPBits(0xff7fffffU).get_val(); |
| EXPECT_SIMD_EQ(splat(-1.0f), wrap_vector<Expm1fOp>(x)); |
| |
| x = FPBits(0xc2cffff8U).get_val(); |
| EXPECT_SIMD_EQ(wrap_ref<Expm1fOp>(x, 1.0), wrap_vector<Expm1fOp>(x, 1.0)); |
| |
| x = FPBits(0xc2d00008U).get_val(); |
| EXPECT_SIMD_EQ(wrap_ref<Expm1fOp>(x, 1.0), wrap_vector<Expm1fOp>(x, 1.0)); |
| } |
| |
| TEST_F(LlvmLibcVecExpm1fTest, Borderline) { |
| float x; |
| |
| x = FPBits(0x42affff8U).get_val(); |
| EXPECT_SIMD_EQ(wrap_ref<Expm1fOp>(x, 1.0), wrap_vector<Expm1fOp>(x, 1.0)); |
| |
| x = FPBits(0x42b00008U).get_val(); |
| EXPECT_SIMD_EQ(wrap_ref<Expm1fOp>(x, 1.0), wrap_vector<Expm1fOp>(x, 1.0)); |
| |
| x = FPBits(0xc2affff8U).get_val(); |
| EXPECT_SIMD_EQ(wrap_ref<Expm1fOp>(x, 1.0), wrap_vector<Expm1fOp>(x, 1.0)); |
| |
| x = FPBits(0xc2b00008U).get_val(); |
| EXPECT_SIMD_EQ(wrap_ref<Expm1fOp>(x, 1.0), wrap_vector<Expm1fOp>(x, 1.0)); |
| |
| x = FPBits(0x3dc252ddU).get_val(); |
| EXPECT_SIMD_EQ(wrap_ref<Expm1fOp>(x, 1.0), wrap_vector<Expm1fOp>(x, 1.0)); |
| |
| x = FPBits(0x3e35bec5U).get_val(); |
| EXPECT_SIMD_EQ(wrap_ref<Expm1fOp>(x, 1.0), wrap_vector<Expm1fOp>(x, 1.0)); |
| |
| x = FPBits(0x942ed494U).get_val(); |
| EXPECT_SIMD_EQ(wrap_ref<Expm1fOp>(x, 1.0), wrap_vector<Expm1fOp>(x, 1.0)); |
| |
| x = FPBits(0xbdc1c6cbU).get_val(); |
| EXPECT_SIMD_EQ(wrap_ref<Expm1fOp>(x, 1.0), wrap_vector<Expm1fOp>(x, 1.0)); |
| } |
| |
| TEST_F(LlvmLibcVecExpm1fTest, InFloatRange) { |
| TEST_MATHVEC_FLOAT_RANGE(Expm1fOp); |
| } |