//===----------------------------------------------------------------------===// // // The LLVM Compiler Infrastructure // // This file is dual licensed under the MIT and the University of Illinois Open // Source Licenses. See LICENSE.TXT for details. // //===----------------------------------------------------------------------===// // UNSUPPORTED: c++98, c++03, c++11, c++14, c++17 // template // constexpr int countl_one(T x) noexcept; // The number of consecutive 1 bits, starting from the most significant bit. // [ Note: Returns N if x == std::numeric_limits::max(). ] // // Remarks: This function shall not participate in overload resolution unless // T is an unsigned integer type #include #include #include #include #include "test_macros.h" class A{}; enum E1 : unsigned char { rEd }; enum class E2 : unsigned char { red }; template constexpr bool constexpr_test() { const int dig = std::numeric_limits::digits; const T max = std::numeric_limits::max(); return std::countl_one(max) == dig && std::countl_one(T(max - 1)) == dig - 1 && std::countl_one(T(max - 2)) == dig - 2 && std::countl_one(T(max - 3)) == dig - 2 && std::countl_one(T(max - 4)) == dig - 3 && std::countl_one(T(max - 5)) == dig - 3 && std::countl_one(T(max - 6)) == dig - 3 && std::countl_one(T(max - 7)) == dig - 3 && std::countl_one(T(max - 8)) == dig - 4 && std::countl_one(T(max - 9)) == dig - 4 ; } template void runtime_test() { ASSERT_SAME_TYPE(int, decltype(std::countl_one(T(0)))); ASSERT_NOEXCEPT( std::countl_one(T(0))); const int dig = std::numeric_limits::digits; assert( std::countl_one(T(~121)) == dig - 7); assert( std::countl_one(T(~122)) == dig - 7); assert( std::countl_one(T(~123)) == dig - 7); assert( std::countl_one(T(~124)) == dig - 7); assert( std::countl_one(T(~125)) == dig - 7); assert( std::countl_one(T(~126)) == dig - 7); assert( std::countl_one(T(~127)) == dig - 7); assert( std::countl_one(T(~128)) == dig - 8); assert( std::countl_one(T(~129)) == dig - 8); assert( std::countl_one(T(~130)) == dig - 8); } int main() { { auto lambda = [](auto x) -> decltype(std::countl_one(x)) {}; using L = decltype(lambda); static_assert( std::is_invocable_v, ""); static_assert( std::is_invocable_v, ""); static_assert( std::is_invocable_v, ""); static_assert( std::is_invocable_v, ""); static_assert( std::is_invocable_v, ""); static_assert( std::is_invocable_v, ""); static_assert( std::is_invocable_v, ""); static_assert( std::is_invocable_v, ""); static_assert( std::is_invocable_v, ""); static_assert( std::is_invocable_v, ""); static_assert( std::is_invocable_v, ""); static_assert(!std::is_invocable_v, ""); static_assert(!std::is_invocable_v, ""); static_assert(!std::is_invocable_v, ""); static_assert(!std::is_invocable_v, ""); static_assert(!std::is_invocable_v, ""); static_assert(!std::is_invocable_v, ""); static_assert(!std::is_invocable_v, ""); static_assert(!std::is_invocable_v, ""); static_assert(!std::is_invocable_v, ""); static_assert(!std::is_invocable_v, ""); static_assert(!std::is_invocable_v, ""); static_assert(!std::is_invocable_v, ""); static_assert(!std::is_invocable_v, ""); #ifndef _LIBCPP_HAS_NO_INT128 static_assert( std::is_invocable_v, ""); static_assert(!std::is_invocable_v, ""); #endif static_assert(!std::is_invocable_v, ""); static_assert(!std::is_invocable_v, ""); static_assert(!std::is_invocable_v, ""); } static_assert(constexpr_test(), ""); static_assert(constexpr_test(), ""); static_assert(constexpr_test(), ""); static_assert(constexpr_test(), ""); static_assert(constexpr_test(), ""); static_assert(constexpr_test(), ""); static_assert(constexpr_test(), ""); static_assert(constexpr_test(), ""); static_assert(constexpr_test(), ""); static_assert(constexpr_test(), ""); static_assert(constexpr_test(), ""); static_assert(constexpr_test(), ""); #ifndef _LIBCPP_HAS_NO_INT128 static_assert(constexpr_test<__uint128_t>(), ""); #endif runtime_test(); runtime_test(); runtime_test(); runtime_test(); runtime_test(); runtime_test(); runtime_test(); runtime_test(); runtime_test(); runtime_test(); runtime_test(); runtime_test(); #ifndef _LIBCPP_HAS_NO_INT128 runtime_test<__uint128_t>(); { const int dig = std::numeric_limits<__uint128_t>::digits; __uint128_t val = 128; val <<= 32; assert( std::countl_one(~val) == dig - 40); val <<= 2; assert( std::countl_one(~val) == dig - 42); val <<= 3; assert( std::countl_one(~val) == dig - 45); } #endif }