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Implements: https://wg21.link/P0543R3 - https://eel.is/c++draft/numeric.sat Additional references: - Division: https://eel.is/c++draft/expr.mul#4 - Arithmetic conversions: https://eel.is/c++draft/expr.arith.conv#1 - Clang builtins: https://clang.llvm.org/docs/LanguageExtensions.html#builtin-functions Depends on: https://github.com/llvm/llvm-project/pull/78086 --------- Co-authored-by: Zingam <zingam@outlook.com> Co-authored-by: Mark de Wever <zar-rpg@xs4all.nl>
159 lines
5.7 KiB
C++
159 lines
5.7 KiB
C++
//===----------------------------------------------------------------------===//
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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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// UNSUPPORTED: c++03, c++11, c++14, c++17, c++20, c++23
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// The test uses "Placeholder variables with no name"
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// <numeric>
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// template<class T>
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// constexpr T div_sat(T x, T y) noexcept; // freestanding
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#include <cassert>
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#include <concepts>
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#include <limits>
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#include <numeric>
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#include "test_macros.h"
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template <typename IntegerT>
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constexpr bool test_signed() {
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constexpr auto minVal = std::numeric_limits<IntegerT>::min();
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constexpr auto maxVal = std::numeric_limits<IntegerT>::max();
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// TODO(LLVM-20) remove [[maybe_unused]] and `{}` scope since all supported compilers support "Placeholder variables with no name"
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[[maybe_unused]] std::same_as<IntegerT> decltype(auto) _ = std::div_sat(minVal, maxVal);
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static_assert(noexcept(std::div_sat(minVal, maxVal)));
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// clang-format off
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// Limit values (-1, 0, 1, min, max)
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assert(std::div_sat(IntegerT{-1}, IntegerT{-1}) == IntegerT{ 1});
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assert(std::div_sat(IntegerT{-1}, IntegerT{ 1}) == IntegerT{-1});
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assert(std::div_sat(IntegerT{-1}, minVal) == IntegerT{ 0});
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assert(std::div_sat(IntegerT{-1}, maxVal) == IntegerT{ 0});
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assert(std::div_sat(IntegerT{ 0}, IntegerT{-1}) == IntegerT{ 0});
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assert(std::div_sat(IntegerT{ 0}, IntegerT{ 1}) == IntegerT{ 0});
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assert(std::div_sat(IntegerT{ 0}, minVal) == IntegerT{ 0});
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assert(std::div_sat(IntegerT{ 0}, maxVal) == IntegerT{ 0});
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assert(std::div_sat(IntegerT{ 1}, IntegerT{-1}) == IntegerT{-1});
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assert(std::div_sat(IntegerT{ 1}, IntegerT{ 1}) == IntegerT{ 1});
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assert(std::div_sat(IntegerT{ 1}, minVal) == IntegerT{ 0});
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assert(std::div_sat(IntegerT{ 1}, maxVal) == IntegerT{ 0});
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assert(std::div_sat( minVal, IntegerT{ 1}) == minVal);
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assert(std::div_sat( minVal, IntegerT{-1}) == maxVal); // saturated
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assert(std::div_sat( minVal, minVal) == IntegerT{ 1});
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assert(std::div_sat( minVal, maxVal) == (minVal / maxVal));
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assert(std::div_sat( maxVal, IntegerT{-1}) == -maxVal);
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assert(std::div_sat( maxVal, IntegerT{ 1}) == maxVal);
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assert(std::div_sat( maxVal, minVal) == IntegerT{ 0});
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assert(std::div_sat( maxVal, maxVal) == IntegerT{ 1});
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// No saturation (no limit values)
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assert(std::div_sat(IntegerT{27}, IntegerT{28}) == IntegerT{0});
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assert(std::div_sat(IntegerT{28}, IntegerT{27}) == IntegerT{1});
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{
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constexpr IntegerT lesserVal = minVal / IntegerT{2} + IntegerT{-28};
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constexpr IntegerT biggerVal = minVal / IntegerT{2} + IntegerT{-27};
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assert(std::div_sat(lesserVal, biggerVal) == IntegerT{1});
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assert(std::div_sat(biggerVal, lesserVal) == IntegerT{0});
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}
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{
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constexpr IntegerT lesserVal = minVal / IntegerT{2} + IntegerT{-27};
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constexpr IntegerT biggerVal = maxVal / IntegerT{2} + IntegerT{28};
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assert(std::div_sat(lesserVal, biggerVal) == IntegerT{-1});
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assert(std::div_sat(biggerVal, lesserVal) == IntegerT{-1});
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}
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{
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constexpr IntegerT lesserVal = maxVal / IntegerT{2} + IntegerT{27};
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constexpr IntegerT biggerVal = maxVal / IntegerT{2} + IntegerT{28};
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assert(std::div_sat(lesserVal, biggerVal) == IntegerT{0});
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assert(std::div_sat(biggerVal, lesserVal) == IntegerT{1});
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}
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// clang-format on
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return true;
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}
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template <typename IntegerT>
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constexpr bool test_unsigned() {
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constexpr auto minVal = std::numeric_limits<IntegerT>::min();
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constexpr auto maxVal = std::numeric_limits<IntegerT>::max();
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// TODO(LLVM-20) remove [[maybe_unused]] since all supported compilers support "Placeholder variables with no name"
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[[maybe_unused]] std::same_as<IntegerT> decltype(auto) _ = std::div_sat(minVal, maxVal);
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static_assert(noexcept(std::div_sat(minVal, maxVal)));
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// clang-format off
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// No limit values (0, 1, min, max)
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assert(std::div_sat(IntegerT{0}, IntegerT{1}) == IntegerT{0});
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assert(std::div_sat(IntegerT{0}, maxVal) == IntegerT{0});
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assert(std::div_sat(IntegerT{1}, IntegerT{1}) == IntegerT{1});
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assert(std::div_sat(IntegerT{1}, maxVal) == IntegerT{0});
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assert(std::div_sat( minVal, IntegerT{1}) == minVal);
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assert(std::div_sat( minVal, maxVal) == IntegerT{0});
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assert(std::div_sat( maxVal, IntegerT{1}) == maxVal);
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assert(std::div_sat( maxVal, maxVal) == IntegerT{1});
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// No saturation (no limit values)
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assert(std::div_sat(IntegerT{27}, IntegerT{28}) == IntegerT{0});
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assert(std::div_sat(IntegerT{28}, IntegerT{27}) == IntegerT{1});
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{
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constexpr IntegerT lesserVal = maxVal / IntegerT{2} + IntegerT{27};
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constexpr IntegerT biggerVal = maxVal / IntegerT{2} + IntegerT{28};
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assert(std::div_sat(lesserVal, biggerVal) == IntegerT{0});
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assert(std::div_sat(biggerVal, lesserVal) == IntegerT{1});
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}
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// Unsigned integer division never overflows
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// clang-format on
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return true;
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}
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constexpr bool test() {
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// Signed
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test_signed<signed char>();
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test_signed<short int>();
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test_signed<int>();
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test_signed<long int>();
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test_signed<long long int>();
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#ifndef TEST_HAS_NO_INT128
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test_signed<__int128_t>();
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#endif
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// Unsigned
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test_unsigned<unsigned char>();
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test_unsigned<unsigned short int>();
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test_unsigned<unsigned int>();
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test_unsigned<unsigned long int>();
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test_unsigned<unsigned long long int>();
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#ifndef TEST_HAS_NO_INT128
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test_unsigned<__uint128_t>();
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#endif
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return true;
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}
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int main(int, char**) {
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test();
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static_assert(test());
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return 0;
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}
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