DO NOT MERGE: [libc++] Add __truncating_cast for safely casting float types to integers
am: 55b6136b3a
Change-Id: I621f34d4fdde4ddcf2ca2083e0ab524428e2e188
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@@ -1426,6 +1426,40 @@ trunc(_A1 __lcpp_x) _NOEXCEPT {return ::trunc((double)__lcpp_x);}
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#endif // !(defined(_LIBCPP_MSVCRT) && ((_VC_CRT_MAJOR_VERSION-0) < 14))
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#endif // !(defined(_LIBCPP_MSVCRT) && ((_VC_CRT_MAJOR_VERSION-0) < 14))
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_LIBCPP_BEGIN_NAMESPACE_STD
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template <class _IntT, class _FloatT,
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bool _FloatBigger = (numeric_limits<_FloatT>::digits > numeric_limits<_IntT>::digits),
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int _Bits = (numeric_limits<_IntT>::digits - numeric_limits<_FloatT>::digits)>
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_LIBCPP_INLINE_VISIBILITY
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_LIBCPP_CONSTEXPR _IntT __max_representable_int_for_float() _NOEXCEPT {
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static_assert(is_floating_point<_FloatT>::value, "must be a floating point type");
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static_assert(is_integral<_IntT>::value, "must be an integral type");
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static_assert(numeric_limits<_FloatT>::radix == 2, "FloatT has incorrect radix");
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static_assert(_IsSame<_FloatT, float>::value || _IsSame<_FloatT, double>::value
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|| _IsSame<_FloatT,long double>::value, "unsupported floating point type");
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return _FloatBigger ? numeric_limits<_IntT>::max() : (numeric_limits<_IntT>::max() >> _Bits << _Bits);
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}
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// Convert a floating point number to the specified integral type after
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// clamping to the integral types representable range.
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//
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// The behavior is undefined if `__r` is NaN.
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template <class _IntT, class _RealT>
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_LIBCPP_INLINE_VISIBILITY
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_IntT __clamp_to_integral(_RealT __r) _NOEXCEPT {
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using _Lim = std::numeric_limits<_IntT>;
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const _IntT _MaxVal = std::__max_representable_int_for_float<_IntT, _RealT>();
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if (__r >= ::nextafter(static_cast<_RealT>(_MaxVal), INFINITY)) {
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return _Lim::max();
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} else if (__r <= _Lim::lowest()) {
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return _Lim::min();
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}
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return static_cast<_IntT>(__r);
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}
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_LIBCPP_END_NAMESPACE_STD
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} // extern "C++"
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} // extern "C++"
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#endif // __cplusplus
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#endif // __cplusplus
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90
test/libcxx/numerics/clamp_to_integral.pass.cpp
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90
test/libcxx/numerics/clamp_to_integral.pass.cpp
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@@ -0,0 +1,90 @@
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//===----------------------------------------------------------------------===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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// __clamp_to_integral<IntT>(RealT)
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// Test the conversion function that truncates floating point types to the
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// closest representable value for the specified integer type, or
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// numeric_limits<IntT>::max()/min() if the value isn't representable.
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#include <limits>
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#include <cassert>
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#include <cmath>
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template <class IntT>
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void test() {
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typedef std::numeric_limits<IntT> Lim;
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const bool MaxIsRepresentable = sizeof(IntT) < 8;
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const bool IsSigned = std::is_signed<IntT>::value;
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struct TestCase {
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double Input;
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IntT Expect;
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bool IsRepresentable;
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} TestCases[] = {
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{0, 0, true},
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{1, 1, true},
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{IsSigned ? static_cast<IntT>(-1) : 0,
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IsSigned ? static_cast<IntT>(-1) : 0, true},
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{Lim::lowest(), Lim::lowest(), true},
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{static_cast<double>(Lim::max()), Lim::max(), MaxIsRepresentable},
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{static_cast<double>(Lim::max()) + 1, Lim::max(), false},
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{static_cast<double>(Lim::max()) + 1024, Lim::max(), false},
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{nextafter(static_cast<double>(Lim::max()), INFINITY), Lim::max(), false},
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};
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for (TestCase TC : TestCases) {
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auto res = std::__clamp_to_integral<IntT>(TC.Input);
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assert(res == TC.Expect);
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if (TC.IsRepresentable) {
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auto other = static_cast<IntT>(std::trunc(TC.Input));
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assert(res == other);
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} else
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assert(res == Lim::min() || res == Lim::max());
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}
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}
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template <class IntT>
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void test_float() {
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typedef std::numeric_limits<IntT> Lim;
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const bool MaxIsRepresentable = sizeof(IntT) < 4;
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((void)MaxIsRepresentable);
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const bool IsSigned = std::is_signed<IntT>::value;
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struct TestCase {
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float Input;
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IntT Expect;
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bool IsRepresentable;
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} TestCases[] = {
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{0, 0, true},
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{1, 1, true},
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{IsSigned ? static_cast<IntT>(-1) : 0,
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IsSigned ? static_cast<IntT>(-1) : 0, true},
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{Lim::lowest(), Lim::lowest(), true},
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{static_cast<float>(Lim::max()), Lim::max(), MaxIsRepresentable },
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{nextafter(static_cast<float>(Lim::max()), INFINITY), Lim::max(), false},
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};
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for (TestCase TC : TestCases) {
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auto res = std::__clamp_to_integral<IntT>(TC.Input);
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assert(res == TC.Expect);
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if (TC.IsRepresentable) {
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auto other = static_cast<IntT>(std::trunc(TC.Input));
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assert(res == other);
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} else
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assert(res == Lim::min() || res == Lim::max());
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}
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}
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int main() {
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test<short>();
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test<unsigned short>();
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test<int>();
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test<unsigned>();
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test<long long>();
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test<unsigned long long>();
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test_float<short>();
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test_float<int>();
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test_float<long long>();
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}
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