7a9389330e
gcc/: * gcc.c (default_compilers): Add entry for ".go". * common.opt: Add -static-libgo as a driver option. * doc/install.texi (Configuration): Mention libgo as an option for --enable-shared. Mention go as an option for --enable-languages. * doc/invoke.texi (Overall Options): Mention .go as a file name suffix. Mention go as a -x option. * doc/frontends.texi (G++ and GCC): Mention Go as a supported language. * doc/sourcebuild.texi (Top Level): Mention libgo. * doc/standards.texi (Standards): Add section on Go language. Move references for other languages into their own section. * doc/contrib.texi (Contributors): Mention that I contributed the Go frontend. gcc/testsuite/: * lib/go.exp: New file. * lib/go-dg.exp: New file. * lib/go-torture.exp: New file. * lib/target-supports.exp (check_compile): Match // Go. From-SVN: r167407
230 lines
5.2 KiB
Go
230 lines
5.2 KiB
Go
// Copyright 2009 The Go Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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// The time package provides functionality for measuring and
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// displaying time.
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package time
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import (
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"os"
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)
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// Seconds reports the number of seconds since the Unix epoch,
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// January 1, 1970 00:00:00 UTC.
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func Seconds() int64 {
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sec, _, err := os.Time()
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if err != nil {
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panic(err)
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}
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return sec
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}
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// Nanoseconds reports the number of nanoseconds since the Unix epoch,
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// January 1, 1970 00:00:00 UTC.
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func Nanoseconds() int64 {
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sec, nsec, err := os.Time()
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if err != nil {
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panic(err)
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}
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return sec*1e9 + nsec
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}
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// Days of the week.
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const (
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Sunday = iota
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Monday
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Tuesday
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Wednesday
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Thursday
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Friday
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Saturday
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)
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// Time is the struct representing a parsed time value.
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type Time struct {
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Year int64 // 2006 is 2006
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Month, Day int // Jan-2 is 1, 2
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Hour, Minute, Second int // 15:04:05 is 15, 4, 5.
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Weekday int // Sunday, Monday, ...
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ZoneOffset int // seconds east of UTC, e.g. -7*60 for -0700
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Zone string // e.g., "MST"
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}
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var nonleapyear = []int{31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31}
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var leapyear = []int{31, 29, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31}
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func months(year int64) []int {
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if year%4 == 0 && (year%100 != 0 || year%400 == 0) {
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return leapyear
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}
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return nonleapyear
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}
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const (
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secondsPerDay = 24 * 60 * 60
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daysPer400Years = 365*400 + 97
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daysPer100Years = 365*100 + 24
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daysPer4Years = 365*4 + 1
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days1970To2001 = 31*365 + 8
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)
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// SecondsToUTC converts sec, in number of seconds since the Unix epoch,
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// into a parsed Time value in the UTC time zone.
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func SecondsToUTC(sec int64) *Time {
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t := new(Time)
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// Split into time and day.
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day := sec / secondsPerDay
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sec -= day * secondsPerDay
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if sec < 0 {
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day--
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sec += secondsPerDay
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}
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// Time
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t.Hour = int(sec / 3600)
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t.Minute = int((sec / 60) % 60)
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t.Second = int(sec % 60)
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// Day 0 = January 1, 1970 was a Thursday
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t.Weekday = int((day + Thursday) % 7)
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if t.Weekday < 0 {
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t.Weekday += 7
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}
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// Change day from 0 = 1970 to 0 = 2001,
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// to make leap year calculations easier
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// (2001 begins 4-, 100-, and 400-year cycles ending in a leap year.)
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day -= days1970To2001
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year := int64(2001)
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if day < 0 {
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// Go back enough 400 year cycles to make day positive.
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n := -day/daysPer400Years + 1
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year -= 400 * n
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day += daysPer400Years * n
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}
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// Cut off 400 year cycles.
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n := day / daysPer400Years
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year += 400 * n
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day -= daysPer400Years * n
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// Cut off 100-year cycles
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n = day / daysPer100Years
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if n > 3 { // happens on last day of 400th year
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n = 3
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}
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year += 100 * n
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day -= daysPer100Years * n
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// Cut off 4-year cycles
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n = day / daysPer4Years
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if n > 24 { // happens on last day of 100th year
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n = 24
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}
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year += 4 * n
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day -= daysPer4Years * n
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// Cut off non-leap years.
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n = day / 365
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if n > 3 { // happens on last day of 4th year
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n = 3
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}
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year += n
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day -= 365 * n
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t.Year = year
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// If someone ever needs yearday,
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// tyearday = day (+1?)
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months := months(year)
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var m int
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yday := int(day)
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for m = 0; m < 12 && yday >= months[m]; m++ {
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yday -= months[m]
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}
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t.Month = m + 1
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t.Day = yday + 1
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t.Zone = "UTC"
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return t
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}
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// UTC returns the current time as a parsed Time value in the UTC time zone.
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func UTC() *Time { return SecondsToUTC(Seconds()) }
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// SecondsToLocalTime converts sec, in number of seconds since the Unix epoch,
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// into a parsed Time value in the local time zone.
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func SecondsToLocalTime(sec int64) *Time {
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z, offset := lookupTimezone(sec)
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t := SecondsToUTC(sec + int64(offset))
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t.Zone = z
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t.ZoneOffset = offset
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return t
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}
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// LocalTime returns the current time as a parsed Time value in the local time zone.
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func LocalTime() *Time { return SecondsToLocalTime(Seconds()) }
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// Seconds returns the number of seconds since January 1, 1970 represented by the
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// parsed Time value.
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func (t *Time) Seconds() int64 {
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// First, accumulate days since January 1, 2001.
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// Using 2001 instead of 1970 makes the leap-year
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// handling easier (see SecondsToUTC), because
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// it is at the beginning of the 4-, 100-, and 400-year cycles.
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day := int64(0)
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// Rewrite year to be >= 2001.
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year := t.Year
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if year < 2001 {
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n := (2001-year)/400 + 1
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year += 400 * n
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day -= daysPer400Years * n
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}
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// Add in days from 400-year cycles.
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n := (year - 2001) / 400
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year -= 400 * n
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day += daysPer400Years * n
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// Add in 100-year cycles.
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n = (year - 2001) / 100
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year -= 100 * n
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day += daysPer100Years * n
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// Add in 4-year cycles.
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n = (year - 2001) / 4
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year -= 4 * n
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day += daysPer4Years * n
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// Add in non-leap years.
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n = year - 2001
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day += 365 * n
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// Add in days this year.
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months := months(t.Year)
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for m := 0; m < t.Month-1; m++ {
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day += int64(months[m])
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}
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day += int64(t.Day - 1)
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// Convert days to seconds since January 1, 2001.
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sec := day * secondsPerDay
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// Add in time elapsed today.
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sec += int64(t.Hour) * 3600
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sec += int64(t.Minute) * 60
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sec += int64(t.Second)
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// Convert from seconds since 2001 to seconds since 1970.
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sec += days1970To2001 * secondsPerDay
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// Account for local time zone.
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sec -= int64(t.ZoneOffset)
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return sec
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}
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