149 lines
5.6 KiB
C++
149 lines
5.6 KiB
C++
//===-- Utility class to test different flavors of rint ---------*- C++ -*-===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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#ifndef LLVM_LIBC_TEST_SRC_MATH_RINTTEST_H
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#define LLVM_LIBC_TEST_SRC_MATH_RINTTEST_H
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#include "src/__support/CPP/algorithm.h"
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#include "src/__support/FPUtil/FEnvImpl.h"
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#include "src/__support/FPUtil/FPBits.h"
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#include "test/UnitTest/FEnvSafeTest.h"
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#include "test/UnitTest/FPMatcher.h"
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#include "test/UnitTest/Test.h"
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#include "utils/MPFRWrapper/MPFRUtils.h"
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#include "hdr/fenv_macros.h"
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#include "hdr/math_macros.h"
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namespace mpfr = LIBC_NAMESPACE::testing::mpfr;
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static constexpr int ROUNDING_MODES[4] = {FE_UPWARD, FE_DOWNWARD, FE_TOWARDZERO,
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FE_TONEAREST};
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template <typename T>
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class RIntTestTemplate : public LIBC_NAMESPACE::testing::FEnvSafeTest {
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public:
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typedef T (*RIntFunc)(T);
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private:
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using FPBits = LIBC_NAMESPACE::fputil::FPBits<T>;
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using StorageType = typename FPBits::StorageType;
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const T inf = FPBits::inf(Sign::POS).get_val();
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const T neg_inf = FPBits::inf(Sign::NEG).get_val();
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const T zero = FPBits::zero(Sign::POS).get_val();
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const T neg_zero = FPBits::zero(Sign::NEG).get_val();
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const T nan = FPBits::quiet_nan().get_val();
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static constexpr StorageType MIN_SUBNORMAL =
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FPBits::min_subnormal().uintval();
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static constexpr StorageType MAX_SUBNORMAL =
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FPBits::max_subnormal().uintval();
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static constexpr StorageType MIN_NORMAL = FPBits::min_normal().uintval();
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static constexpr StorageType MAX_NORMAL = FPBits::max_normal().uintval();
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static inline mpfr::RoundingMode to_mpfr_rounding_mode(int mode) {
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switch (mode) {
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case FE_UPWARD:
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return mpfr::RoundingMode::Upward;
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case FE_DOWNWARD:
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return mpfr::RoundingMode::Downward;
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case FE_TOWARDZERO:
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return mpfr::RoundingMode::TowardZero;
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case FE_TONEAREST:
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return mpfr::RoundingMode::Nearest;
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default:
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__builtin_unreachable();
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}
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}
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public:
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void testSpecialNumbers(RIntFunc func) {
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for (int mode : ROUNDING_MODES) {
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LIBC_NAMESPACE::fputil::set_round(mode);
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ASSERT_FP_EQ(inf, func(inf));
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ASSERT_FP_EQ(neg_inf, func(neg_inf));
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ASSERT_FP_EQ(nan, func(nan));
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ASSERT_FP_EQ(zero, func(zero));
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ASSERT_FP_EQ(neg_zero, func(neg_zero));
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}
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}
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void testRoundNumbers(RIntFunc func) {
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for (int mode : ROUNDING_MODES) {
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LIBC_NAMESPACE::fputil::set_round(mode);
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mpfr::RoundingMode mpfr_mode = to_mpfr_rounding_mode(mode);
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ASSERT_FP_EQ(func(T(1.0)), mpfr::round(T(1.0), mpfr_mode));
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ASSERT_FP_EQ(func(T(-1.0)), mpfr::round(T(-1.0), mpfr_mode));
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ASSERT_FP_EQ(func(T(10.0)), mpfr::round(T(10.0), mpfr_mode));
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ASSERT_FP_EQ(func(T(-10.0)), mpfr::round(T(-10.0), mpfr_mode));
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ASSERT_FP_EQ(func(T(1234.0)), mpfr::round(T(1234.0), mpfr_mode));
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ASSERT_FP_EQ(func(T(-1234.0)), mpfr::round(T(-1234.0), mpfr_mode));
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}
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}
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void testFractions(RIntFunc func) {
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for (int mode : ROUNDING_MODES) {
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LIBC_NAMESPACE::fputil::set_round(mode);
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mpfr::RoundingMode mpfr_mode = to_mpfr_rounding_mode(mode);
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ASSERT_FP_EQ(func(T(0.5)), mpfr::round(T(0.5), mpfr_mode));
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ASSERT_FP_EQ(func(T(-0.5)), mpfr::round(T(-0.5), mpfr_mode));
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ASSERT_FP_EQ(func(T(0.115)), mpfr::round(T(0.115), mpfr_mode));
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ASSERT_FP_EQ(func(T(-0.115)), mpfr::round(T(-0.115), mpfr_mode));
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ASSERT_FP_EQ(func(T(0.715)), mpfr::round(T(0.715), mpfr_mode));
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ASSERT_FP_EQ(func(T(-0.715)), mpfr::round(T(-0.715), mpfr_mode));
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}
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}
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void testSubnormalRange(RIntFunc func) {
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constexpr int COUNT = 100'001;
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constexpr StorageType STEP = LIBC_NAMESPACE::cpp::max(
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static_cast<StorageType>((MAX_SUBNORMAL - MIN_SUBNORMAL) / COUNT),
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StorageType(1));
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for (StorageType i = MIN_SUBNORMAL; i <= MAX_SUBNORMAL; i += STEP) {
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T x = FPBits(i).get_val();
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for (int mode : ROUNDING_MODES) {
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LIBC_NAMESPACE::fputil::set_round(mode);
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mpfr::RoundingMode mpfr_mode = to_mpfr_rounding_mode(mode);
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ASSERT_FP_EQ(func(x), mpfr::round(x, mpfr_mode));
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}
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}
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}
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void testNormalRange(RIntFunc func) {
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constexpr int COUNT = 100'001;
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constexpr StorageType STEP = LIBC_NAMESPACE::cpp::max(
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static_cast<StorageType>((MAX_NORMAL - MIN_NORMAL) / COUNT),
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StorageType(1));
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for (StorageType i = MIN_NORMAL; i <= MAX_NORMAL; i += STEP) {
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FPBits xbits(i);
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T x = xbits.get_val();
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// In normal range on x86 platforms, the long double implicit 1 bit can be
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// zero making the numbers NaN. We will skip them.
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if (xbits.is_nan())
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continue;
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for (int mode : ROUNDING_MODES) {
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LIBC_NAMESPACE::fputil::set_round(mode);
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mpfr::RoundingMode mpfr_mode = to_mpfr_rounding_mode(mode);
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ASSERT_FP_EQ(func(x), mpfr::round(x, mpfr_mode));
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}
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}
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}
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};
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#define LIST_RINT_TESTS(F, func) \
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using LlvmLibcRIntTest = RIntTestTemplate<F>; \
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TEST_F(LlvmLibcRIntTest, specialNumbers) { testSpecialNumbers(&func); } \
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TEST_F(LlvmLibcRIntTest, RoundNumbers) { testRoundNumbers(&func); } \
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TEST_F(LlvmLibcRIntTest, Fractions) { testFractions(&func); } \
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TEST_F(LlvmLibcRIntTest, SubnormalRange) { testSubnormalRange(&func); } \
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TEST_F(LlvmLibcRIntTest, NormalRange) { testNormalRange(&func); }
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#endif // LLVM_LIBC_TEST_SRC_MATH_RINTTEST_H
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