#include "hdr/errno_macros.h"
#include "hdr/math_macros.h"
#include "hdr/stdint_proxy.h"
#include "src/__support/FPUtil/FPBits.h"
#include "src/math/sinf.h"
#include "test/UnitTest/FPMatcher.h"
#include "test/UnitTest/Test.h"
#include "test/src/math/sdcomp26094.h"
#include "utils/MPFRWrapper/MPFRUtils.h"
#ifdef LIBC_MATH_HAS_SKIP_ACCURATE_PASS
#define TOLERANCE 3
#define FP_ASSERT ASSERT_MPFR_MATCH
#else
#define TOLERANCE 0
#define FP_ASSERT ASSERT_MPFR_MATCH_ALL_ROUNDING
#endif
using LlvmLibcSinfTest = LIBC_NAMESPACE::testing::FPTest<float>;
using LIBC_NAMESPACE::testing::SDCOMP26094_VALUES;
namespace mpfr = LIBC_NAMESPACE::testing::mpfr;
TEST_F(LlvmLibcSinfTest, SpecialNumbers) {
EXPECT_FP_EQ(aNaN, LIBC_NAMESPACE::sinf(aNaN));
EXPECT_MATH_ERRNO(0);
EXPECT_FP_EQ(0.0f, LIBC_NAMESPACE::sinf(0.0f));
EXPECT_MATH_ERRNO(0);
#ifdef LIBC_MATH_HAS_SKIP_ACCURATE_PASS
EXPECT_TRUE(0.0f == LIBC_NAMESPACE::sinf(-0.0f));
#else
EXPECT_FP_EQ(-0.0f, LIBC_NAMESPACE::sinf(-0.0f));
EXPECT_MATH_ERRNO(0);
#endif
EXPECT_FP_EQ(aNaN, LIBC_NAMESPACE::sinf(inf));
EXPECT_MATH_ERRNO(EDOM);
EXPECT_FP_EQ(aNaN, LIBC_NAMESPACE::sinf(neg_inf));
EXPECT_MATH_ERRNO(EDOM);
}
TEST_F(LlvmLibcSinfTest, InFloatRange) {
constexpr uint32_t COUNT = 100'000;
constexpr uint32_t STEP = UINT32_MAX / COUNT;
for (uint32_t i = 0, v = 0; i <= COUNT; ++i, v += STEP) {
float x = FPBits(v).get_val();
if (FPBits(v).is_nan() || FPBits(v).is_inf())
continue;
FP_ASSERT(mpfr::Operation::Sin, x, LIBC_NAMESPACE::sinf(x),
TOLERANCE + 0.5);
}
}
TEST_F(LlvmLibcSinfTest, SpecificBitPatterns) {
constexpr int N = 36;
constexpr uint32_t INPUTS[N] = {
0x3f06'0a92U,
0x3f3a'dc51U,
0x3f49'0fdbU,
0x3f86'0a92U,
0x3fa7'832aU,
0x3fc9'0fdbU,
0x4017'1973U,
0x4049'0fdbU,
0x4096'cbe4U,
0x40c9'0fdbU,
0x433b'7490U,
0x437c'e5f1U,
0x4619'9998U,
0x474d'246fU,
0x4afd'ece4U,
0x4c23'32e9U,
0x50a3'e87fU,
0x5239'47f6U,
0x53b1'46a6U,
0x55ca'fb2aU,
0x588e'f060U,
0x5c07'bcd0U,
0x5ebc'fddeU,
0x5fa6'eba7U,
0x61a4'0b40U,
0x6386'134eU,
0x6589'8498U,
0x6600'0001U,
0x664e'46e4U,
0x66b0'14aaU,
0x67a9'242bU,
0x6a19'76f1U,
0x6c55'da58U,
0x6f79'be45U,
0x7276'69d4U,
0x7758'4625U,
};
for (int i = 0; i < N; ++i) {
float x = FPBits(INPUTS[i]).get_val();
FP_ASSERT(mpfr::Operation::Sin, x, LIBC_NAMESPACE::sinf(x),
TOLERANCE + 0.5);
FP_ASSERT(mpfr::Operation::Sin, -x, LIBC_NAMESPACE::sinf(-x),
TOLERANCE + 0.5);
}
}
TEST_F(LlvmLibcSinfTest, SmallValues) {
float x = FPBits(0x1780'0000U).get_val();
FP_ASSERT(mpfr::Operation::Sin, x, LIBC_NAMESPACE::sinf(x), 0.5);
x = FPBits(0x0040'0000U).get_val();
FP_ASSERT(mpfr::Operation::Sin, x, LIBC_NAMESPACE::sinf(x), 0.5);
}
TEST_F(LlvmLibcSinfTest, SDCOMP_26094) {
for (uint32_t v : SDCOMP26094_VALUES) {
float x = FPBits((v)).get_val();
FP_ASSERT(mpfr::Operation::Sin, x, LIBC_NAMESPACE::sinf(x),
TOLERANCE + 0.5);
}
}