2018-01-01 15:47:41 +11:00
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/*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*
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2018-01-10 17:19:39 +11:00
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* Copyright 2017-2018 Danny Robson <danny@nerdcruft.net>
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2018-01-01 15:47:41 +11:00
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*/
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#include "time/parse.hpp"
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2018-01-10 17:19:39 +11:00
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#include "debug.hpp"
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2018-01-01 15:47:41 +11:00
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#include "posix/except.hpp"
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#include <stdexcept>
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#include <iostream>
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///////////////////////////////////////////////////////////////////////////////
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%%{
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# based off rfc3339 rather than iso8601 because the former is public
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machine iso8601;
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date_fullyear = digit{4};
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date_month = digit{2};
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date_mday = digit{2};
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time_hour = digit{2};
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time_minute = digit{2};
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time_second = digit{2};
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time_secfrac = '.' digit{1,} ${ frac *= 10; frac += fc - '0'; };
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time_numoffset = ('+' %{dir=1;} | '-' %{dir=-1;})
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time_hour ${ offset.tm_hour *= 10; offset.tm_hour += fc - '0'; }
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':' time_minute ${ offset.tm_min *= 10; offset.tm_min += fc - '0'; };
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time_offset = 'Z' | time_numoffset;
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partial_time = time_hour ${ parts.tm_hour *= 10; parts.tm_hour += fc - '0'; }
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':' time_minute ${ parts.tm_min *= 10; parts.tm_min += fc - '0'; }
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':' time_second ${ parts.tm_sec *= 10; parts.tm_sec += fc - '0'; }
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time_secfrac?;
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full_date = date_fullyear ${ parts.tm_year *= 10; parts.tm_year += fc - '0'; }
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'-' date_month ${ parts.tm_mon *= 10; parts.tm_mon += fc - '0'; }
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'-' date_mday ${ parts.tm_mday *= 10; parts.tm_mday += fc - '0'; };
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full_time = partial_time time_offset;
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date_time := (
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full_date 'T' full_time
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)
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>{ success = false; }
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%{ success = true; };
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write data;
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}%%
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///////////////////////////////////////////////////////////////////////////////
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template <>
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bool
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util::debug::validator<tm>::is_valid (const tm &val) noexcept
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{
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// we don't test tm_year anywhere here because there isn't a valid range
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// for years, only that they are expressed as offsets from 1900;
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return val.tm_sec >= 0 && val.tm_sec <= 60 &&
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val.tm_min >= 0 && val.tm_min < 60 &&
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val.tm_hour >= 0 && val.tm_hour < 24 &&
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val.tm_mday > 0 && val.tm_mday <= 31 &&
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val.tm_mon >= 0 && val.tm_mon < 12 &&
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val.tm_wday >= 0 && val.tm_wday < 7 &&
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val.tm_yday >= 0 && val.tm_yday <= 365;
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}
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//-----------------------------------------------------------------------------
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std::ostream&
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operator<< (std::ostream &os, const tm&)
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{
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return os << "{}";
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}
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//-----------------------------------------------------------------------------
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std::chrono::seconds
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to_epoch (const tm &t)
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{
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// TODO: it's assumed the user isn't passing in oddities like 36 months or
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// similar. in the future we can account for this
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CHECK_SANITY (t);
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constexpr int
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cumulative_days [12] = {
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0, 31, 59, 90, 120, 151, 181, 212, 243, 273, 304, 334
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};
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constexpr int epoch_year = 1970;
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const int year = 1900 + t.tm_year;
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// find the number of days since 1970. careful of leap years.
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time_t secs;
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secs = (year - epoch_year) * 365 + cumulative_days[t.tm_mon % 12];
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secs += (year - epoch_year + epoch_year % 4) / 4;
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secs -= (year - epoch_year + epoch_year % 100) / 100;
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secs += (year - epoch_year + epoch_year % 400) / 400;
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const bool is_leap_year = (year % 4 == 0 && (year % 100 != 0 || year % 400 == 0));
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if (is_leap_year && t.tm_mon < 2)
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secs--;
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secs += t.tm_mday - 1;
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// hours
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secs *= 24;
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secs += t.tm_hour;
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// minutes
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secs *= 60;
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secs += t.tm_min;
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// seconds
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secs *= 60;
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secs += t.tm_sec;
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if (t.tm_isdst)
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secs -= 60 * 60;
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return std::chrono::seconds {secs};
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}
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//-----------------------------------------------------------------------------
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std::chrono::nanoseconds
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util::time::iso8601::parse (util::view<const char*> str)
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{
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int cs;
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const char *p = std::begin (str);
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const char *pe = std::end (str);
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const char *eof = pe;
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bool success = false;
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int dir = 0;
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int64_t frac = 0;
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struct tm parts, offset;
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memset (&parts, 0, sizeof (parts));
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memset (&offset, 0, sizeof (offset));
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%%write init;
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%%write exec;
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if (!success)
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throw std::invalid_argument ("invalid date string");
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parts.tm_year -= 1900;
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parts.tm_mon -= 1;
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// compute the timezone offset
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std::chrono::seconds diff {
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dir * (offset.tm_hour * 60 * 60 + offset.tm_min * 60)
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};
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// fractional part
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auto nano_digits = util::digits10 (std::nano::den-1);
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auto frac_digits = util::digits10 (frac);
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auto shift = util::pow (10, unsigned(nano_digits - frac_digits));
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// sum the time_t, timezone offset, and fractional components
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return to_epoch (parts) - diff + std::chrono::nanoseconds (frac * shift);
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}
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