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Implemented test for custom clocks derived from sys_clock.
Created mil_clock and s2s_clock, that are both using to_sys/from_sys function and are fully interoperable with existing clocks (including ones based on utc). Implemented an trait is used to provide direct conversion from s2s_clock to mil_clock without converting to sys_clock (conversion counter is used for this purpose).
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test/tz_test/custom_clock_casts.pass.cpp
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test/tz_test/custom_clock_casts.pass.cpp
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// The MIT License (MIT)
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//
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// Copyright (c) 2017 Tomasz Kamiński
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//
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// Permission is hereby granted, free of charge, to any person obtaining a copy
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// of this software and associated documentation files (the "Software"), to deal
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// in the Software without restriction, including without limitation the rights
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// to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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// copies of the Software, and to permit persons to whom the Software is
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// furnished to do so, subject to the following conditions:
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//
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// The above copyright notice and this permission notice shall be included in all
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// copies or substantial portions of the Software.
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//
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// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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// OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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// SOFTWARE.
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#include "tz.h"
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#include <cassert>
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#include <type_traits>
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//used to count number of conversion
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int conversions = 0;
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//to/from impl
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struct mil_clock
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{
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using duration = std::common_type_t<std::chrono::system_clock::duration, date::days>;
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using rep = duration::rep;
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using period = duration::period;
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using time_point = std::chrono::time_point<mil_clock, duration>;
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static constexpr date::sys_days epoch = date::year{2000}/date::month{0}/date::day{1};
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template<typename Duration>
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static
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std::chrono::time_point<std::chrono::system_clock, std::common_type_t<Duration, date::days>>
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to_sys(std::chrono::time_point<mil_clock, Duration> const& tp)
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{
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++conversions;
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return epoch + tp.time_since_epoch();
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}
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template<typename Duration>
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static
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std::chrono::time_point<mil_clock, std::common_type_t<Duration, date::days>>
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from_sys(std::chrono::time_point<std::chrono::system_clock, Duration> const& tp)
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{
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++conversions;
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using res = std::chrono::time_point<mil_clock, std::common_type_t<Duration, date::days>>;
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return res(tp - epoch);
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}
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static time_point now()
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{
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return from_sys(std::chrono::system_clock::now());
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}
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};
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date::sys_days const mil_clock::epoch;
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// traits example
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struct s2s_clock
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{
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using duration = std::chrono::system_clock::duration;
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using rep = duration::rep;
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using period = duration::period;
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using time_point = std::chrono::time_point<s2s_clock, duration>;
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template<typename Duration>
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static
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std::chrono::time_point<std::chrono::system_clock, Duration>
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to_sys(std::chrono::time_point<s2s_clock, Duration> const& tp)
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{
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++conversions;
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return std::chrono::time_point<std::chrono::system_clock, Duration>(tp.time_since_epoch());
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}
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template<typename Duration>
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static
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std::chrono::time_point<s2s_clock, Duration>
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from_sys(std::chrono::time_point<std::chrono::system_clock, Duration> const& tp)
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{
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++conversions;
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return std::chrono::time_point<s2s_clock, Duration>(tp.time_since_epoch());
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}
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static time_point now()
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{
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return from_sys(std::chrono::system_clock::now());
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}
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};
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namespace date
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{
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template<>
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struct clock_time_conversion<s2s_clock, mil_clock>
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{
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template<typename Duration>
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std::chrono::time_point<mil_clock, std::common_type_t<Duration, date::days>>
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operator()(std::chrono::time_point<s2s_clock, Duration> const& tp)
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{
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++conversions;
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using res = std::chrono::time_point<mil_clock, std::common_type_t<Duration, date::days>>;
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return res(tp.time_since_epoch() - mil_clock::epoch.time_since_epoch());
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}
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};
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}
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int
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main()
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{
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using namespace date;
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using sys_clock = std::chrono::system_clock;
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// self
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{
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sys_days st(1997_y/dec/12);
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auto mt = mil_clock::from_sys(st);
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assert(clock_cast<mil_clock>(mt) == mt);
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}
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// mil <-> sys
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{
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sys_days st(1997_y/dec/12);
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auto mt = mil_clock::from_sys(st);
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assert(clock_cast<mil_clock>(st) == mt);
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assert(clock_cast<sys_clock>(mt) == st);
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}
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// mil <-> utc
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{
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sys_days st(1997_y/dec/12);
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auto mt = mil_clock::from_sys(st);
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auto ut = utc_clock::from_sys(st);
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assert(clock_cast<mil_clock>(ut) == mt);
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assert(clock_cast<utc_clock>(mt) == ut);
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}
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// mil <-> tai
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{
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sys_days st(1997_y/dec/12);
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auto mt = mil_clock::from_sys(st);
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auto ut = utc_clock::from_sys(st);
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auto tt = tai_clock::from_utc(ut);
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assert(clock_cast<tai_clock>(mt) == tt);
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assert(clock_cast<mil_clock>(tt) == mt);
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}
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// mil <-> gps
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{
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sys_days st(1997_y/dec/12);
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auto mt = mil_clock::from_sys(st);
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auto ut = utc_clock::from_sys(st);
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auto gt = gps_clock::from_utc(ut);
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assert(clock_cast<gps_clock>(mt) == gt);
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assert(clock_cast<mil_clock>(gt) == mt);
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}
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// s2s -> mil
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{
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sys_days st(1997_y/dec/12);
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auto mt = mil_clock::from_sys(st);
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auto s2t = s2s_clock::from_sys(st);
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//direct trait conversion
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conversions = 0;
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assert(clock_cast<mil_clock>(s2t) == mt);
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assert(conversions == 1);
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//uses sys_clock
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conversions = 0;
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assert(clock_cast<s2s_clock>(mt) == s2t);
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assert(conversions == 2);
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}
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}
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