423 lines
13 KiB
Mathematica
423 lines
13 KiB
Mathematica
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/* Copyright (c) 2011 Google Inc.
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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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//
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// GTLDateTime.m
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//
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#import "GTLDateTime.h"
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@implementation GTLDateTime
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// A note about milliseconds_:
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// RFC 3339 has support for fractions of a second. NSDateComponents is all
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// NSInteger based, so it can't handle a fraction of a second. NSDate is
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// built on NSTimeInterval so it has sub-millisecond precision. GTL takes
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// the compromise of supporting the RFC's optional fractional second support
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// by maintaining a number of milliseconds past what fits in the
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// NSDateComponents. The parsing and string conversions will include
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// 3 decimal digits (hence milliseconds). When going to a string, the decimal
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// digits are only included if the milliseconds are non zero.
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@dynamic date;
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@dynamic calendar;
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@dynamic RFC3339String;
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@dynamic stringValue;
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@dynamic timeZone;
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@dynamic hasTime;
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@synthesize dateComponents = dateComponents_,
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milliseconds = milliseconds_,
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offsetSeconds = offsetSeconds_,
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universalTime = isUniversalTime_;
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+ (GTLDateTime *)dateTimeWithRFC3339String:(NSString *)str {
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if (str == nil) return nil;
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GTLDateTime *result = [[[self alloc] init] autorelease];
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[result setFromRFC3339String:str];
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return result;
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}
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+ (GTLDateTime *)dateTimeWithDate:(NSDate *)date timeZone:(NSTimeZone *)tz {
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if (date == nil) return nil;
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GTLDateTime *result = [[[self alloc] init] autorelease];
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[result setFromDate:date timeZone:tz];
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return result;
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}
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- (void)dealloc {
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[dateComponents_ release];
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[timeZone_ release];
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[super dealloc];
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}
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- (id)copyWithZone:(NSZone *)zone {
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GTLDateTime *newObj = [[GTLDateTime alloc] init];
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newObj.universalTime = self.isUniversalTime;
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[newObj setTimeZone:self.timeZone withOffsetSeconds:self.offsetSeconds];
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newObj.dateComponents = self.dateComponents;
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newObj.milliseconds = self.milliseconds;
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return newObj;
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}
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// until NSDateComponent implements isEqual, we'll use this
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- (BOOL)doesDateComponents:(NSDateComponents *)dc1
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equalDateComponents:(NSDateComponents *)dc2 {
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return [dc1 era] == [dc2 era]
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&& [dc1 year] == [dc2 year]
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&& [dc1 month] == [dc2 month]
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&& [dc1 day] == [dc2 day]
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&& [dc1 hour] == [dc2 hour]
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&& [dc1 minute] == [dc2 minute]
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&& [dc1 second] == [dc2 second]
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&& [dc1 week] == [dc2 week]
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&& [dc1 weekday] == [dc2 weekday]
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&& [dc1 weekdayOrdinal] == [dc2 weekdayOrdinal];
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}
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- (BOOL)isEqual:(GTLDateTime *)other {
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if (self == other) return YES;
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if (![other isKindOfClass:[GTLDateTime class]]) return NO;
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BOOL areDateComponentsEqual = [self doesDateComponents:self.dateComponents
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equalDateComponents:other.dateComponents];
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NSTimeZone *tz1 = self.timeZone;
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NSTimeZone *tz2 = other.timeZone;
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BOOL areTimeZonesEqual = (tz1 == tz2 || (tz2 && [tz1 isEqual:tz2]));
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return self.offsetSeconds == other.offsetSeconds
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&& self.isUniversalTime == other.isUniversalTime
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&& self.milliseconds == other.milliseconds
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&& areDateComponentsEqual
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&& areTimeZonesEqual;
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}
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- (NSString *)description {
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return [NSString stringWithFormat:@"%@ %p: {%@}",
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[self class], self, self.RFC3339String];
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}
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- (NSTimeZone *)timeZone {
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if (timeZone_) {
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return timeZone_;
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}
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if (self.isUniversalTime) {
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NSTimeZone *ztz = [NSTimeZone timeZoneWithName:@"Universal"];
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return ztz;
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}
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NSInteger offsetSeconds = self.offsetSeconds;
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if (offsetSeconds != NSUndefinedDateComponent) {
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NSTimeZone *tz = [NSTimeZone timeZoneForSecondsFromGMT:offsetSeconds];
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return tz;
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}
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return nil;
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}
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- (void)setTimeZone:(NSTimeZone *)timeZone {
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[timeZone_ release];
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timeZone_ = [timeZone retain];
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if (timeZone) {
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NSInteger offsetSeconds = [timeZone secondsFromGMTForDate:self.date];
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self.offsetSeconds = offsetSeconds;
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} else {
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self.offsetSeconds = NSUndefinedDateComponent;
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}
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}
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- (void)setTimeZone:(NSTimeZone *)timeZone withOffsetSeconds:(NSInteger)val {
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[timeZone_ release];
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timeZone_ = [timeZone retain];
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offsetSeconds_ = val;
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}
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- (NSCalendar *)calendar {
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NSCalendar *cal = [[[NSCalendar alloc] initWithCalendarIdentifier:NSGregorianCalendar] autorelease];
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NSTimeZone *tz = self.timeZone;
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if (tz) {
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[cal setTimeZone:tz];
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}
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return cal;
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}
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- (NSDate *)date {
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NSCalendar *cal = self.calendar;
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NSDateComponents *dateComponents = self.dateComponents;
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NSTimeInterval extraMillisecondsAsSeconds = 0.0;
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if (!self.hasTime) {
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// we're not keeping track of a time, but NSDate always is based on
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// an absolute time. We want to avoid returning an NSDate where the
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// calendar date appears different from what was used to create our
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// date-time object.
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//
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// We'll make a copy of the date components, setting the time on our
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// copy to noon GMT, since that ensures the date renders correctly for
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// any time zone
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NSDateComponents *noonDateComponents = [[dateComponents copy] autorelease];
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[noonDateComponents setHour:12];
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[noonDateComponents setMinute:0];
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[noonDateComponents setSecond:0];
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dateComponents = noonDateComponents;
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NSTimeZone *gmt = [NSTimeZone timeZoneWithName:@"Universal"];
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[cal setTimeZone:gmt];
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} else {
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// Add in the fractional seconds that don't fit into NSDateComponents.
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extraMillisecondsAsSeconds = ((NSTimeInterval)self.milliseconds) / 1000.0;
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}
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NSDate *date = [cal dateFromComponents:dateComponents];
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// Add in any milliseconds that didn't fit into the dateComponents.
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if (extraMillisecondsAsSeconds > 0.0) {
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#if GTL_IPHONE || (MAC_OS_X_VERSION_MIN_REQUIRED > MAC_OS_X_VERSION_10_5)
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date = [date dateByAddingTimeInterval:extraMillisecondsAsSeconds];
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#else
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date = [date addTimeInterval:extraMillisecondsAsSeconds];
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#endif
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}
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return date;
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}
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- (NSString *)stringValue {
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return self.RFC3339String;
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}
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- (NSString *)RFC3339String {
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NSDateComponents *dateComponents = self.dateComponents;
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NSInteger offset = self.offsetSeconds;
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NSString *timeString = @""; // timeString like "T15:10:46-08:00"
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if (self.hasTime) {
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NSString *timeOffsetString; // timeOffsetString like "-08:00"
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if (self.isUniversalTime) {
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timeOffsetString = @"Z";
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} else if (offset == NSUndefinedDateComponent) {
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// unknown offset is rendered as -00:00 per
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// http://www.ietf.org/rfc/rfc3339.txt section 4.3
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timeOffsetString = @"-00:00";
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} else {
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NSString *sign = @"+";
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if (offset < 0) {
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sign = @"-";
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offset = -offset;
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}
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timeOffsetString = [NSString stringWithFormat:@"%@%02ld:%02ld",
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sign, (long)(offset/(60*60)) % 24, (long)(offset / 60) % 60];
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}
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NSString *fractionalSecondsString = @"";
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if (self.milliseconds > 0.0) {
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fractionalSecondsString = [NSString stringWithFormat:@".%03ld", (long)self.milliseconds];
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}
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timeString = [NSString stringWithFormat:@"T%02ld:%02ld:%02ld%@%@",
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(long)[dateComponents hour], (long)[dateComponents minute],
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(long)[dateComponents second], fractionalSecondsString, timeOffsetString];
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}
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// full dateString like "2006-11-17T15:10:46-08:00"
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NSString *dateString = [NSString stringWithFormat:@"%04ld-%02ld-%02ld%@",
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(long)[dateComponents year], (long)[dateComponents month],
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(long)[dateComponents day], timeString];
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return dateString;
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}
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- (void)setFromDate:(NSDate *)date timeZone:(NSTimeZone *)tz {
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NSCalendar *cal = [[[NSCalendar alloc] initWithCalendarIdentifier:NSGregorianCalendar] autorelease];
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if (tz) {
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[cal setTimeZone:tz];
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}
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NSUInteger const kComponentBits = (NSYearCalendarUnit | NSMonthCalendarUnit
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| NSDayCalendarUnit | NSHourCalendarUnit | NSMinuteCalendarUnit
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| NSSecondCalendarUnit);
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NSDateComponents *components = [cal components:kComponentBits fromDate:date];
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self.dateComponents = components;
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// Extract the fractional seconds.
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NSTimeInterval asTimeInterval = [date timeIntervalSince1970];
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NSTimeInterval worker = asTimeInterval - trunc(asTimeInterval);
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self.milliseconds = (NSInteger)round(worker * 1000.0);
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self.universalTime = NO;
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NSInteger offset = NSUndefinedDateComponent;
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if (tz) {
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offset = [tz secondsFromGMTForDate:date];
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if (offset == 0 && [tz isEqualToTimeZone:[NSTimeZone timeZoneWithName:@"Universal"]]) {
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self.universalTime = YES;
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}
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}
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self.offsetSeconds = offset;
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// though offset seconds are authoritative, we'll retain the time zone
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// since we can't regenerate it reliably from just the offset
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timeZone_ = [tz retain];
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}
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- (void)setFromRFC3339String:(NSString *)str {
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NSInteger year = NSUndefinedDateComponent;
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NSInteger month = NSUndefinedDateComponent;
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NSInteger day = NSUndefinedDateComponent;
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NSInteger hour = NSUndefinedDateComponent;
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NSInteger minute = NSUndefinedDateComponent;
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NSInteger sec = NSUndefinedDateComponent;
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NSInteger milliseconds = 0;
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double secDouble = -1.0;
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NSString* sign = nil;
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NSInteger offsetHour = 0;
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NSInteger offsetMinute = 0;
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if ([str length] > 0) {
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NSScanner* scanner = [NSScanner scannerWithString:str];
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// There should be no whitespace, so no skip characters.
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[scanner setCharactersToBeSkipped:nil];
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NSCharacterSet* dashSet = [NSCharacterSet characterSetWithCharactersInString:@"-"];
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NSCharacterSet* tSet = [NSCharacterSet characterSetWithCharactersInString:@"Tt "];
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NSCharacterSet* colonSet = [NSCharacterSet characterSetWithCharactersInString:@":"];
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NSCharacterSet* plusMinusZSet = [NSCharacterSet characterSetWithCharactersInString:@"+-zZ"];
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// for example, scan 2006-11-17T15:10:46-08:00
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// or 2006-11-17T15:10:46Z
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if (// yyyy-mm-dd
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[scanner scanInteger:&year] &&
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[scanner scanCharactersFromSet:dashSet intoString:NULL] &&
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[scanner scanInteger:&month] &&
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[scanner scanCharactersFromSet:dashSet intoString:NULL] &&
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[scanner scanInteger:&day] &&
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// Thh:mm:ss
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[scanner scanCharactersFromSet:tSet intoString:NULL] &&
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[scanner scanInteger:&hour] &&
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[scanner scanCharactersFromSet:colonSet intoString:NULL] &&
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[scanner scanInteger:&minute] &&
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[scanner scanCharactersFromSet:colonSet intoString:NULL] &&
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[scanner scanDouble:&secDouble]) {
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// At this point we got secDouble, pull it apart.
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sec = (NSInteger)secDouble;
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double worker = secDouble - ((double)sec);
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milliseconds = (NSInteger)round(worker * 1000.0);
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// Finish parsing, now the offset info.
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if (// Z or +hh:mm
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[scanner scanCharactersFromSet:plusMinusZSet intoString:&sign] &&
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[scanner scanInteger:&offsetHour] &&
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[scanner scanCharactersFromSet:colonSet intoString:NULL] &&
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[scanner scanInteger:&offsetMinute]) {
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}
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}
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}
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NSDateComponents *dateComponents = [[[NSDateComponents alloc] init] autorelease];
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[dateComponents setYear:year];
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[dateComponents setMonth:month];
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[dateComponents setDay:day];
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[dateComponents setHour:hour];
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[dateComponents setMinute:minute];
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[dateComponents setSecond:sec];
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self.dateComponents = dateComponents;
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self.milliseconds = milliseconds;
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// determine the offset, like from Z, or -08:00:00.0
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self.timeZone = nil;
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NSInteger totalOffset = NSUndefinedDateComponent;
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self.universalTime = NO;
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if ([sign caseInsensitiveCompare:@"Z"] == NSOrderedSame) {
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self.universalTime = YES;
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totalOffset = 0;
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} else if (sign != nil) {
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totalOffset = (60 * offsetMinute) + (60 * 60 * offsetHour);
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if ([sign isEqual:@"-"]) {
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if (totalOffset == 0) {
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// special case: offset of -0.00 means undefined offset
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totalOffset = NSUndefinedDateComponent;
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} else {
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totalOffset *= -1;
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}
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}
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}
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self.offsetSeconds = totalOffset;
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}
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- (BOOL)hasTime {
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NSDateComponents *dateComponents = self.dateComponents;
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BOOL hasTime = ([dateComponents hour] != NSUndefinedDateComponent
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&& [dateComponents minute] != NSUndefinedDateComponent);
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return hasTime;
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}
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- (void)setHasTime:(BOOL)shouldHaveTime {
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// we'll set time values to zero or NSUndefinedDateComponent as appropriate
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BOOL hadTime = self.hasTime;
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if (shouldHaveTime && !hadTime) {
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[dateComponents_ setHour:0];
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[dateComponents_ setMinute:0];
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[dateComponents_ setSecond:0];
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milliseconds_ = 0;
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offsetSeconds_ = NSUndefinedDateComponent;
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isUniversalTime_ = NO;
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} else if (hadTime && !shouldHaveTime) {
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[dateComponents_ setHour:NSUndefinedDateComponent];
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[dateComponents_ setMinute:NSUndefinedDateComponent];
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[dateComponents_ setSecond:NSUndefinedDateComponent];
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milliseconds_ = 0;
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offsetSeconds_ = NSUndefinedDateComponent;
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isUniversalTime_ = NO;
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self.timeZone = nil;
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}
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}
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@end
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