return __width;
}
+ constexpr
+ hh_mm_ss(_Duration __d, bool __is_neg)
+ : _M_is_neg(__is_neg),
+ _M_h (duration_cast<chrono::hours>(__d)),
+ _M_m (duration_cast<chrono::minutes>(__d - hours())),
+ _M_s (duration_cast<chrono::seconds>(__d - hours() - minutes()))
+ {
+ auto __ss = __d - hours() - minutes() - seconds();
+ if constexpr (treat_as_floating_point_v<typename precision::rep>)
+ _M_ss = __ss;
+ else
+ _M_ss = duration_cast<precision>(__ss);
+ }
+
+ static constexpr _Duration
+ _S_abs(_Duration __d)
+ {
+ if constexpr (numeric_limits<typename _Duration::rep>::is_signed)
+ return chrono::abs(__d);
+ else
+ return __d;
+ }
+
public:
static constexpr unsigned fractional_width = {_S_fractional_width()};
{ }
constexpr explicit
- hh_mm_ss(_Duration __d) noexcept
- : _M_is_neg (__d < _Duration::zero()),
- _M_h (duration_cast<chrono::hours>(abs(__d))),
- _M_m (duration_cast<chrono::minutes>(abs(__d) - hours())),
- _M_s (duration_cast<chrono::seconds>(abs(__d) - hours() - minutes()))
- {
- if constexpr (treat_as_floating_point_v<typename precision::rep>)
- _M_ss = abs(__d) - hours() - minutes() - seconds();
- else
- _M_ss = duration_cast<precision>(abs(__d) - hours()
- - minutes() - seconds());
- }
+ hh_mm_ss(_Duration __d)
+ : hh_mm_ss(_S_abs(__d), __d < _Duration::zero())
+ { }
constexpr bool
is_negative() const noexcept
static_assert(seconds{hh_mm_ss{100min}} == 100min);
- // TODO: treat_as_floating_point_v
+ // treat_as_floating_point_v
+ using fseconds = duration<double, ratio<1>>;
+ constexpr hh_mm_ss<fseconds> fsec{0x123.0004p5s};
+ static_assert(std::is_same_v<hh_mm_ss<fseconds>::precision, fseconds>);
+ static_assert(fsec.hours() == 2h);
+ static_assert(fsec.minutes() == 35min);
+ static_assert(fsec.seconds() == 12s);
+ static_assert(fsec.subseconds() == 0x.0004p5s);
+ static_assert(!fsec.is_negative());
+ static_assert(fsec.to_duration() == 0x123.0004p5s);
+
+ using fminutes = duration<double, ratio<60>>;
+ constexpr hh_mm_ss<fminutes> fmin{-0x1.23p4min};
+ static_assert(std::is_same_v<hh_mm_ss<fminutes>::precision, fseconds>);
+ static_assert(fmin.hours() == 0h);
+ static_assert(fmin.minutes() == 18min);
+ static_assert(fmin.seconds() == 11s);
+ static_assert(fmin.subseconds() == 0.25s);
+ static_assert(fmin.is_negative());
+ static_assert(fmin.to_duration() == -0x1.23p4min);
+}
+
+constexpr void
+default_construction()
+{
+ using namespace std::chrono;
+
+ constexpr hh_mm_ss<seconds> s1;
+ static_assert(s1.to_duration() == s1.to_duration().zero());
+ constexpr hh_mm_ss<duration<char>> s2;
+ static_assert(s2.to_duration() == s2.to_duration().zero());
+ constexpr hh_mm_ss<duration<int, std::centi>> s3;
+ static_assert(s3.to_duration() == s3.to_duration().zero());
+ constexpr hh_mm_ss<duration<long long, std::femto>> s4;
+ static_assert(s4.to_duration() == s4.to_duration().zero());
+ constexpr hh_mm_ss<duration<double>> s5;
+ static_assert(s5.to_duration() == s5.to_duration().zero());
+}
+
+constexpr void
+unsigned_rep()
+{
+ using namespace std::chrono;
+
+ constexpr duration<unsigned, std::milli> ms(3690001);
+
+ constexpr hh_mm_ss hms(ms); // PR libstdc++/108265
+ static_assert( ! hms.is_negative() );
+ static_assert( hms.to_duration() == milliseconds(ms.count()) );
+ static_assert( hms.hours() == 1h );
+ static_assert( hms.minutes() == 1min );
+ static_assert( hms.seconds() == 30s );
+ static_assert( hms.subseconds() == 1ms );
}