#ifndef LLVM_LIBC_SRC___SUPPORT_MATH_EXPF16_H
#define LLVM_LIBC_SRC___SUPPORT_MATH_EXPF16_H
#include "include/llvm-libc-macros/float16-macros.h"
#ifdef LIBC_TYPES_HAS_FLOAT16
#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/PolyEval.h"
#include "src/__support/FPUtil/cast.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 "expf16_utils.h"
namespace LIBC_NAMESPACE_DECL {
namespace math {
LIBC_INLINE static constexpr float16 expf16(float16 x) {
#ifndef LIBC_MATH_HAS_SKIP_ACCURATE_PASS
constexpr fputil::ExceptValues<float16, 2> EXPF16_EXCEPTS_LO = {{
{0x1f79U, 0x3c07U, 1U, 0U, 0U},
{0x25cfU, 0x3c17U, 1U, 0U, 0U},
}};
constexpr fputil::ExceptValues<float16, 3> EXPF16_EXCEPTS_HI = {{
{0x3f0dU, 0x45d3U, 1U, 0U, 1U},
{0xa922U, 0x3bafU, 1U, 0U, 0U},
{0xa954U, 0x3bacU, 1U, 0U, 0U},
}};
#endif
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 <= 0x2800U || x_abs >= 0x4a00U)) {
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_bits.is_pos() && x_abs >= 0x4a00U) {
if (x_bits.is_inf())
return FPBits::inf().get_val();
switch (fputil::quick_get_round()) {
case FE_TONEAREST:
case FE_UPWARD:
fputil::set_errno_if_required(ERANGE);
fputil::raise_except_if_required(FE_OVERFLOW);
return FPBits::inf().get_val();
default:
return FPBits::max_normal().get_val();
}
}
if (x_u >= 0xcc80U) {
if (x_bits.is_inf())
return FPBits::zero().get_val();
fputil::set_errno_if_required(ERANGE);
fputil::raise_except_if_required(FE_UNDERFLOW | FE_INEXACT);
switch (fputil::quick_get_round()) {
case FE_UPWARD:
return FPBits::min_subnormal().get_val();
default:
return FPBits::zero().get_val();
}
}
if (x_abs <= 0x2800U && !x_bits.is_zero()) {
#ifndef LIBC_MATH_HAS_SKIP_ACCURATE_PASS
if (auto r = EXPF16_EXCEPTS_LO.lookup(x_u); LIBC_UNLIKELY(r.has_value()))
return r.value();
#endif
float xf = x;
return fputil::cast<float16>(
fputil::polyeval(xf, 0x1p+0f, 0x1p+0f, 0x1.0004p-1f, 0x1.555778p-3f));
}
}
#ifndef LIBC_MATH_HAS_SKIP_ACCURATE_PASS
if (auto r = EXPF16_EXCEPTS_HI.lookup(x_u); LIBC_UNLIKELY(r.has_value()))
return r.value();
#endif
auto [exp_hi_mid, exp_lo] = exp_range_reduction(x);
return fputil::cast<float16>(exp_hi_mid * exp_lo);
}
}
}
#endif
#endif