#include "src/math/sinhf16.h"
#include "hdr/errno_macros.h"
#include "hdr/fenv_macros.h"
#include "src/__support/FPUtil/FEnvImpl.h"
#include "src/__support/FPUtil/FPBits.h"
#include "src/__support/FPUtil/except_value_utils.h"
#include "src/__support/FPUtil/rounding_mode.h"
#include "src/__support/common.h"
#include "src/__support/macros/config.h"
#include "src/__support/macros/optimization.h"
#include "src/__support/math/expxf16_utils.h"
namespace LIBC_NAMESPACE_DECL {
#ifndef LIBC_MATH_HAS_SKIP_ACCURATE_PASS
static constexpr fputil::ExceptValues<float16, 17> SINHF16_EXCEPTS_POS = {{
{0x29c5U, 0x29c5U, 1U, 0U, 1U},
{0x2c94U, 0x2c94U, 1U, 0U, 1U},
{0x2fd4U, 0x2fd9U, 1U, 0U, 0U},
{0x32c7U, 0x32d3U, 1U, 0U, 1U},
{0x35baU, 0x35d9U, 1U, 0U, 1U},
{0x39adU, 0x3a29U, 1U, 0U, 1U},
{0x3a96U, 0x3b5aU, 1U, 0U, 1U},
{0x3d5dU, 0x3f1eU, 1U, 0U, 1U},
{0x4192U, 0x4809U, 1U, 0U, 0U},
{0x4337U, 0x4c9bU, 1U, 0U, 0U},
{0x4343U, 0x4cb6U, 1U, 0U, 1U},
{0x4406U, 0x4efcU, 1U, 0U, 0U},
{0x44bfU, 0x5331U, 1U, 0U, 1U},
{0x453bU, 0x55d7U, 1U, 0U, 0U},
{0x4629U, 0x5b65U, 1U, 0U, 1U},
{0x497cU, 0x7715U, 1U, 0U, 1U},
{0x40f2U, 0x45e2U, 1U, 0U, 1U},
}};
static constexpr fputil::ExceptValues<float16, 13> SINHF16_EXCEPTS_NEG = {{
{0xa9c5U, 0xa9c5U, 0U, 1U, 1U},
{0xac94U, 0xac94U, 0U, 1U, 1U},
{0xafd4U, 0xafd9U, 0U, 1U, 0U},
{0xb5baU, 0xb5d9U, 0U, 1U, 1U},
{0xba96U, 0xbb5aU, 0U, 1U, 1U},
{0xc337U, 0xcc9bU, 0U, 1U, 0U},
{0xc343U, 0xccb6U, 0U, 1U, 1U},
{0xc406U, 0xcefcU, 0U, 1U, 0U},
{0xc4bfU, 0xd331U, 0U, 1U, 1U},
{0xc53bU, 0xd5d7U, 0U, 1U, 0U},
{0xc629U, 0xdb65U, 0U, 1U, 1U},
{0xc97cU, 0xf715U, 0U, 1U, 1U},
{0xc0f2U, 0xc5e2U, 0U, 1U, 1U},
}};
#endif
LLVM_LIBC_FUNCTION(float16, sinhf16, (float16 x)) {
using namespace math::expxf16_internal;
using FPBits = fputil::FPBits<float16>;
FPBits x_bits(x);
uint16_t x_u = x_bits.uintval();
uint16_t x_abs = x_u & 0x7fffU;
if (LIBC_UNLIKELY(x_abs == 0U || (x_u >= 0x8400U && x_u <= 0xa400U) ||
x_abs >= 0x49e5U)) {
if (x_bits.is_nan()) {
if (x_bits.is_signaling_nan()) {
fputil::raise_except_if_required(FE_INVALID);
return FPBits::quiet_nan().get_val();
}
return x;
}
if (x_abs == 0U)
return FPBits::zero(x_bits.sign()).get_val();
if (x_abs >= 0x49e5U) {
if (x_bits.is_inf())
return FPBits::inf(x_bits.sign()).get_val();
int rounding_mode = fputil::quick_get_round();
if (rounding_mode == FE_TONEAREST ||
(x_bits.is_pos() && rounding_mode == FE_UPWARD) ||
(x_bits.is_neg() && rounding_mode == FE_DOWNWARD)) {
fputil::set_errno_if_required(ERANGE);
fputil::raise_except_if_required(FE_OVERFLOW | FE_INEXACT);
return FPBits::inf(x_bits.sign()).get_val();
}
return FPBits::max_normal(x_bits.sign()).get_val();
}
if (fputil::fenv_is_round_down())
return FPBits(static_cast<uint16_t>(x_u + 1)).get_val();
return FPBits(static_cast<uint16_t>(x_u)).get_val();
}
#ifndef LIBC_MATH_HAS_SKIP_ACCURATE_PASS
if (x_bits.is_pos()) {
if (auto r = SINHF16_EXCEPTS_POS.lookup(x_u); LIBC_UNLIKELY(r.has_value()))
return r.value();
} else {
if (auto r = SINHF16_EXCEPTS_NEG.lookup(x_u); LIBC_UNLIKELY(r.has_value()))
return r.value();
}
#endif
return eval_sinh_or_cosh<true>(x);
}
}