// The MIT License (MIT) // // Copyright (c) 2018 Mateusz Pusz // // Permission is hereby granted, free of charge, to any person obtaining a copy // of this software and associated documentation files (the "Software"), to deal // in the Software without restriction, including without limitation the rights // to use, copy, modify, merge, publish, distribute, sublicense, and/or sell // copies of the Software, and to permit persons to whom the Software is // furnished to do so, subject to the following conditions: // // The above copyright notice and this permission notice shall be included in all // copies or substantial portions of the Software. // // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR // IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, // FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE // AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER // LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, // OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE // SOFTWARE. #include "test_tools.h" #include #include // IWYU pragma: keep #include #include #ifdef MP_UNITS_IMPORT_STD import std; #else #include #include #include #endif namespace { using namespace mp_units; using namespace mp_units::si::unit_symbols; using namespace std::chrono_literals; using sys_seconds = std::chrono::time_point; using sys_days = std::chrono::time_point, std::chrono::hours::period>>>; template using time_point = quantity_point, Rep>; static_assert(QuantityLike); static_assert(!Quantity); static_assert(!QuantityPoint); static_assert(!QuantityPointLike); static_assert(QuantityPointLike); static_assert(!Quantity); static_assert(!QuantityLike); static_assert(!QuantityPoint); // construction - same rep type static_assert( std::constructible_from, std::chrono::seconds>); static_assert(std::convertible_to>); static_assert(std::constructible_from, std::chrono::hours>); static_assert(std::convertible_to>); static_assert(std::constructible_from, std::chrono::hours>); static_assert(std::convertible_to>); static_assert(!std::constructible_from, std::chrono::seconds>); static_assert(!std::convertible_to>); static_assert( std::constructible_from, sys_seconds>); static_assert( !std::constructible_from, sys_seconds>); static_assert(std::convertible_to>); static_assert(std::constructible_from, sys_days>); static_assert(!std::constructible_from, sys_days>); static_assert(std::convertible_to>); static_assert(std::constructible_from, sys_days>); static_assert(!std::constructible_from, sys_days>); static_assert(std::convertible_to>); static_assert(!std::constructible_from, sys_seconds>); static_assert(!std::convertible_to>); // construction - different rep type (integral to a floating-point) static_assert(std::constructible_from, std::chrono::seconds>); static_assert(std::convertible_to>); static_assert(std::constructible_from, std::chrono::hours>); static_assert(std::convertible_to>); static_assert(std::constructible_from, std::chrono::seconds>); static_assert(std::convertible_to>); static_assert(std::constructible_from, sys_seconds>); static_assert(std::convertible_to>); static_assert(std::constructible_from, sys_days>); static_assert(std::convertible_to>); static_assert(std::constructible_from, sys_seconds>); static_assert(std::convertible_to>); static_assert(quantity{1s} == 1 * s); static_assert(quantity{1s} == 1 * s); static_assert(quantity{1s} == 1 * s); // CTAD static_assert(is_of_type>); static_assert(is_of_type>); static_assert( is_of_type>); static_assert(is_of_type>); // conversion to chrono static_assert( std::constructible_from>); static_assert(std::convertible_to, std::chrono::seconds>); static_assert(std::constructible_from>); static_assert(std::convertible_to, std::chrono::hours>); static_assert( std::constructible_from>); static_assert(std::convertible_to, sys_seconds>); // units mapping static_assert(quantity{1ns} == 1 * ns); static_assert(quantity{1us} == 1 * us); static_assert(quantity{1ms} == 1 * ms); static_assert(quantity{1s} == 1 * s); static_assert(quantity{1min} == 1 * min); static_assert(quantity{1h} == 1 * h); static_assert(quantity{std::chrono::days{1}} == 1 * d); static_assert(quantity{std::chrono::weeks{1}} == 7 * d); static_assert(quantity{std::chrono::months{1}} == 2629746 * s); static_assert(quantity{std::chrono::years{1}} == 31556952 * s); // operators static_assert(quantity{1s} + 1 * s == 2 * s); static_assert(quantity{1s} + 1 * min == 61 * s); static_assert(10 * m / quantity{2s} == 5 * m / s); static_assert(quantity_point{sys_seconds{1s}} + 1 * s == chrono_point_origin + 2 * s); static_assert(quantity_point{sys_seconds{1s}} + 1 * min == chrono_point_origin + 61 * s); // to_chrono_duration static_assert(to_chrono_duration(1 * s) == 1s); static_assert(to_chrono_duration(2 * h) == 2h); static_assert(to_chrono_duration(3 * ns) == 3ns); static_assert(to_chrono_duration(quantity{1s}) == 1s); static_assert(to_chrono_duration(quantity{2h}) == 2h); static_assert(to_chrono_duration(quantity{3ns}) == 3ns); static_assert(is_same_v>); static_assert(is_same_v>); static_assert(is_same_v); // to_chrono_time_point static_assert(to_chrono_time_point(quantity_point{sys_seconds{1s}}) == sys_seconds{1s}); static_assert(to_chrono_time_point(quantity_point{sys_days{sys_days::duration{1}}}) == sys_days{sys_days::duration{1}}); } // namespace