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//===----------------------------------------------------------------------===//
//
// Part of libcu++, the C++ Standard Library for your entire system,
// 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
// SPDX-FileCopyrightText: Copyright (c) 2025 NVIDIA CORPORATION & AFFILIATES.
//
//===----------------------------------------------------------------------===//
#ifndef _LIBCUDACXX___CMATH_FPCLASSIFY_H
#define _LIBCUDACXX___CMATH_FPCLASSIFY_H
#include <cuda/std/detail/__config>
#if defined(_CCCL_IMPLICIT_SYSTEM_HEADER_GCC)
# pragma GCC system_header
#elif defined(_CCCL_IMPLICIT_SYSTEM_HEADER_CLANG)
# pragma clang system_header
#elif defined(_CCCL_IMPLICIT_SYSTEM_HEADER_MSVC)
# pragma system_header
#endif // no system header
#include <cuda/std/__bit/bit_cast.h>
#include <cuda/std/__cmath/isinf.h>
#include <cuda/std/__cmath/isnan.h>
#include <cuda/std/__concepts/concept_macros.h>
#include <cuda/std/__floating_point/fp.h>
#include <cuda/std/__type_traits/is_integral.h>
#include <cuda/std/limits>
#if !_CCCL_COMPILER(NVRTC)
# include <math.h>
#endif // !_CCCL_COMPILER(NVRTC)
#include <cuda/std/__cccl/prologue.h>
#if _CCCL_COMPILER(NVRTC)
# ifndef FP_NAN
# define FP_NAN 0
# endif // ! FP_NAN
# ifndef FP_INFINITE
# define FP_INFINITE 1
# endif // ! FP_INFINITE
# ifndef FP_ZERO
# define FP_ZERO 2
# endif // ! FP_ZERO
# ifndef FP_SUBNORMAL
# define FP_SUBNORMAL 3
# endif // ! FP_SUBNORMAL
# ifndef FP_NORMAL
# define FP_NORMAL 4
# endif // ! FP_NORMAL
#else // ^^^ _CCCL_COMPILER(NVRTC) ^^^ ^/ vvv !_CCCL_COMPILER(NVRTC) vvv
# include <math.h>
#endif // !_CCCL_COMPILER(NVRTC)
_LIBCUDACXX_BEGIN_NAMESPACE_STD
#if _CCCL_CHECK_BUILTIN(builtin_fpclassify) || _CCCL_COMPILER(GCC)
# define _CCCL_BUILTIN_FPCLASSIFY(...) __builtin_fpclassify(__VA_ARGS__)
#endif // _CCCL_CHECK_BUILTIN(builtin_fpclassify)
// nvcc does not implement __builtin_fpclassify
#if _CCCL_CUDA_COMPILER(NVCC)
# undef _CCCL_BUILTIN_FPCLASSIFY
#endif // _CCCL_CUDA_COMPILER(NVCC)
template <class _Tp>
[[nodiscard]] _CCCL_API constexpr int __fpclassify_impl(_Tp __x) noexcept
{
static_assert(numeric_limits<_Tp>::has_denorm, "The type must have denorm support");
if constexpr (numeric_limits<_Tp>::has_quiet_NaN || numeric_limits<_Tp>::has_signaling_NaN)
{
if (_CUDA_VSTD::isnan(__x))
{
return FP_NAN;
}
}
if constexpr (numeric_limits<_Tp>::has_infinity)
{
if (_CUDA_VSTD::isinf(__x))
{
return FP_INFINITE;
}
}
if constexpr (_CCCL_TRAIT(is_floating_point, _Tp))
{
if (__x > -numeric_limits<_Tp>::min() && __x < numeric_limits<_Tp>::min())
{
return (__x == _Tp{}) ? FP_ZERO : FP_SUBNORMAL;
}
return FP_NORMAL;
}
else
{
const auto __storage = _CUDA_VSTD::__fp_get_storage(__x);
if ((__storage & __fp_exp_mask_of_v<_Tp>) == 0)
{
return (__storage & __fp_mant_mask_of_v<_Tp>) ? FP_SUBNORMAL : FP_ZERO;
}
return FP_NORMAL;
}
}
[[nodiscard]] _CCCL_API constexpr int fpclassify(float __x) noexcept
{
#if defined(_CCCL_BUILTIN_FPCLASSIFY)
return _CCCL_BUILTIN_FPCLASSIFY(FP_NAN, FP_INFINITE, FP_NORMAL, FP_SUBNORMAL, FP_ZERO, __x);
#else // ^^^ _CCCL_BUILTIN_FPCLASSIFY ^^^ / vvv !_CCCL_BUILTIN_FPCLASSIFY vvv
if (!_CUDA_VSTD::__cccl_default_is_constant_evaluated())
{
NV_IF_TARGET(NV_IS_HOST, (return ::fpclassify(__x);))
}
return _CUDA_VSTD::__fpclassify_impl(__x);
#endif // !_CCCL_BUILTIN_FPCLASSIFY
}
[[nodiscard]] _CCCL_API constexpr int fpclassify(double __x) noexcept
{
#if defined(_CCCL_BUILTIN_FPCLASSIFY)
return _CCCL_BUILTIN_FPCLASSIFY(FP_NAN, FP_INFINITE, FP_NORMAL, FP_SUBNORMAL, FP_ZERO, __x);
#else // ^^^ _CCCL_BUILTIN_FPCLASSIFY ^^^ / vvv !_CCCL_BUILTIN_FPCLASSIFY vvv
if (!_CUDA_VSTD::__cccl_default_is_constant_evaluated())
{
NV_IF_TARGET(NV_IS_HOST, (return ::fpclassify(__x);))
}
return _CUDA_VSTD::__fpclassify_impl(__x);
#endif // !_CCCL_BUILTIN_FPCLASSIFY
}
#if _CCCL_HAS_LONG_DOUBLE()
[[nodiscard]] _CCCL_API constexpr int fpclassify(long double __x) noexcept
{
# if defined(_CCCL_BUILTIN_FPCLASSIFY)
return _CCCL_BUILTIN_FPCLASSIFY(FP_NAN, FP_INFINITE, FP_NORMAL, FP_SUBNORMAL, FP_ZERO, __x);
# else // ^^^ _CCCL_BUILTIN_SIGNBIT ^^^ / vvv !_CCCL_BUILTIN_SIGNBIT vvv
if (!_CUDA_VSTD::__cccl_default_is_constant_evaluated())
{
NV_IF_TARGET(NV_IS_HOST, (return ::fpclassify(__x);))
}
return _CUDA_VSTD::__fpclassify_impl(__x);
# endif // !_CCCL_BUILTIN_SIGNBIT
}
#endif // _CCCL_HAS_LONG_DOUBLE()
#if _CCCL_HAS_NVFP16()
[[nodiscard]] _CCCL_API constexpr int fpclassify(__half __x) noexcept
{
return _CUDA_VSTD::__fpclassify_impl(__x);
}
#endif // _CCCL_HAS_NVFP16()
#if _CCCL_HAS_NVBF16()
[[nodiscard]] _CCCL_API constexpr int fpclassify(__nv_bfloat16 __x) noexcept
{
return _CUDA_VSTD::__fpclassify_impl(__x);
}
#endif // _CCCL_HAS_NVBF16()
#if _CCCL_HAS_NVFP8_E4M3()
[[nodiscard]] _CCCL_API constexpr int fpclassify(__nv_fp8_e4m3 __x) noexcept
{
return _CUDA_VSTD::__fpclassify_impl(__x);
}
#endif // _CCCL_HAS_NVFP8_E4M3()
#if _CCCL_HAS_NVFP8_E5M2()
[[nodiscard]] _CCCL_API constexpr int fpclassify(__nv_fp8_e5m2 __x) noexcept
{
return _CUDA_VSTD::__fpclassify_impl(__x);
}
#endif // _CCCL_HAS_NVFP8_E5M2()
#if _CCCL_HAS_NVFP8_E8M0()
[[nodiscard]] _CCCL_API constexpr int fpclassify(__nv_fp8_e8m0 __x) noexcept
{
return ((__x.__x & __fp_exp_mask_of_v<__nv_fp8_e8m0>) == __fp_exp_mask_of_v<__nv_fp8_e8m0>) ? FP_NAN : FP_NORMAL;
}
#endif // _CCCL_HAS_NVFP8_E8M0()
#if _CCCL_HAS_NVFP6_E2M3()
[[nodiscard]] _CCCL_API constexpr int fpclassify(__nv_fp6_e2m3 __x) noexcept
{
return _CUDA_VSTD::__fpclassify_impl(__x);
}
#endif // _CCCL_HAS_NVFP6_E2M3()
#if _CCCL_HAS_NVFP6_E3M2()
[[nodiscard]] _CCCL_API constexpr int fpclassify(__nv_fp6_e3m2 __x) noexcept
{
return _CUDA_VSTD::__fpclassify_impl(__x);
}
#endif // _CCCL_HAS_NVFP6_E3M2()
#if _CCCL_HAS_NVFP4_E2M1()
[[nodiscard]] _CCCL_API constexpr int fpclassify(__nv_fp4_e2m1 __x) noexcept
{
return _CUDA_VSTD::__fpclassify_impl(__x);
}
#endif // _CCCL_HAS_NVFP4_E2M1()
_CCCL_TEMPLATE(class _Tp)
_CCCL_REQUIRES(_CCCL_TRAIT(is_integral, _Tp))
[[nodiscard]] _CCCL_API constexpr int fpclassify(_Tp __x) noexcept
{
return (__x == 0) ? FP_ZERO : FP_NORMAL;
}
_LIBCUDACXX_END_NAMESPACE_STD
#include <cuda/std/__cccl/epilogue.h>
#endif // _LIBCUDACXX___CMATH_FPCLASSIFY_H
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