//===-- Unittests for ceill -----------------------------------------------===// // // 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 // //===----------------------------------------------------------------------===// #include "include/math.h" #include "src/math/ceill.h" #include "utils/FPUtil/FPBits.h" #include "utils/MPFRWrapper/MPFRUtils.h" #include "utils/UnitTest/Test.h" using FPBits = __llvm_libc::fputil::FPBits; namespace mpfr = __llvm_libc::testing::mpfr; // Zero tolerance; As in, exact match with MPFR result. static constexpr mpfr::Tolerance tolerance{mpfr::Tolerance::doublePrecision, 0, 0}; TEST(CeillTest, SpecialNumbers) { ASSERT_TRUE(FPBits::zero() == __llvm_libc::ceill(FPBits::zero())); ASSERT_TRUE(FPBits::negZero() == __llvm_libc::ceill(FPBits::negZero())); ASSERT_TRUE(FPBits::inf() == __llvm_libc::ceill(FPBits::inf())); ASSERT_TRUE(FPBits::negInf() == __llvm_libc::ceill(FPBits::negInf())); long double nan = FPBits::buildNaN(1); ASSERT_NE(isnan(nan), 0); ASSERT_NE(isnan(__llvm_libc::ceill(nan)), 0); } TEST(CeillTest, RoundedNumbers) { ASSERT_TRUE(FPBits(1.0l) == __llvm_libc::ceill(1.0l)); ASSERT_TRUE(FPBits(-1.0l) == __llvm_libc::ceill(-1.0l)); ASSERT_TRUE(FPBits(10.0l) == __llvm_libc::ceill(10.0l)); ASSERT_TRUE(FPBits(-10.0l) == __llvm_libc::ceill(-10.0l)); ASSERT_TRUE(FPBits(1234.0l) == __llvm_libc::ceill(1234.0l)); ASSERT_TRUE(FPBits(-1234.0l) == __llvm_libc::ceill(-1234.0l)); } TEST(CeillTest, Fractions) { ASSERT_TRUE(FPBits(2.0l) == __llvm_libc::ceill(1.3l)); ASSERT_TRUE(FPBits(-1.0l) == __llvm_libc::ceill(-1.3l)); ASSERT_TRUE(FPBits(2.0l) == __llvm_libc::ceill(1.5l)); ASSERT_TRUE(FPBits(-1.0l) == __llvm_libc::ceill(-1.5l)); ASSERT_TRUE(FPBits(2.0l) == __llvm_libc::ceill(1.75l)); ASSERT_TRUE(FPBits(-1.0l) == __llvm_libc::ceill(-1.75l)); ASSERT_TRUE(FPBits(11.0l) == __llvm_libc::ceill(10.32l)); ASSERT_TRUE(FPBits(-10.0l) == __llvm_libc::ceill(-10.32l)); ASSERT_TRUE(FPBits(11.0l) == __llvm_libc::ceill(10.65l)); ASSERT_TRUE(FPBits(-10.0l) == __llvm_libc::ceill(-10.65l)); ASSERT_TRUE(FPBits(1235.0l) == __llvm_libc::ceill(1234.18l)); ASSERT_TRUE(FPBits(-1234.0l) == __llvm_libc::ceill(-1234.18l)); ASSERT_TRUE(FPBits(1235.0l) == __llvm_libc::ceill(1234.96l)); ASSERT_TRUE(FPBits(-1234.0l) == __llvm_libc::ceill(-1234.96l)); } TEST(CeillTest, InLongDoubleRange) { using UIntType = FPBits::UIntType; constexpr UIntType count = 10000000; constexpr UIntType step = UIntType(-1) / count; for (UIntType i = 0, v = 0; i <= count; ++i, v += step) { long double x = FPBits(v); if (isnan(x) || isinf(x)) continue; ASSERT_MPFR_MATCH(mpfr::Operation::Ceil, x, __llvm_libc::ceill(x), tolerance); } }