Chromium Code Reviews| Index: runtime/lib/date_patch.dart |
| diff --git a/runtime/lib/date.dart b/runtime/lib/date_patch.dart |
| similarity index 64% |
| rename from runtime/lib/date.dart |
| rename to runtime/lib/date_patch.dart |
| index 71c079fa7b6e40c1ed5d2b10b0efce6c3a5cc51a..17d5a43af2840c2f437f6525a0f1e9ac1d95c6a0 100644 |
| --- a/runtime/lib/date.dart |
| +++ b/runtime/lib/date_patch.dart |
| @@ -1,20 +1,18 @@ |
| -// Copyright (c) 2011, the Dart project authors. Please see the AUTHORS file |
| +// Copyright (c) 2012, the Dart project authors. Please see the AUTHORS file |
| // for details. All rights reserved. Use of this source code is governed by a |
| // BSD-style license that can be found in the LICENSE file. |
| // Dart core library. |
| // VM implementation of DateImplementation. |
| -class DateImplementation implements Date { |
| - static final int _MAX_MILLISECONDS_SINCE_EPOCH = 8640000000000000; |
| - |
| - DateImplementation(int years, |
| - [int month = 1, |
| - int day = 1, |
| - int hour = 0, |
| - int minute = 0, |
| - int second = 0, |
| - int millisecond = 0, |
| - bool isUtc = false]) |
| +patch class DateImplementation { |
| + /* patch */ DateImplementation(int years, |
| + [int month = 1, |
| + int day = 1, |
| + int hour = 0, |
| + int minute = 0, |
| + int second = 0, |
| + int millisecond = 0, |
| + bool isUtc = false]) |
| : this.isUtc = isUtc, |
| this.millisecondsSinceEpoch = _brokenDownDateToMillisecondsSinceEpoch( |
| years, month, day, hour, minute, second, millisecond, isUtc) { |
| @@ -22,149 +20,41 @@ class DateImplementation implements Date { |
| if (isUtc === null) throw new IllegalArgumentException(); |
| } |
| - DateImplementation.now() |
| + /* patch */ DateImplementation.now() |
| : isUtc = false, |
| millisecondsSinceEpoch = _getCurrentMs() { |
| } |
| - factory DateImplementation.fromString(String formattedString) { |
| - // Read in (a subset of) ISO 8601. |
| - // Examples: |
| - // - "2012-02-27 13:27:00" |
| - // - "2012-02-27 13:27:00.423z" |
| - // - "20120227 13:27:00" |
| - // - "20120227T132700" |
| - // - "20120227" |
| - // - "2012-02-27T14Z" |
| - // - "-123450101 00:00:00 Z" // In the year -12345. |
| - final RegExp re = const RegExp( |
| - @'^([+-]?\d?\d\d\d\d)-?(\d\d)-?(\d\d)' // The day part. |
| - @'(?:[ T](\d\d)(?::?(\d\d)(?::?(\d\d)(.\d{1,6})?)?)? ?([zZ])?)?$'); |
| - Match match = re.firstMatch(formattedString); |
| - if (match !== null) { |
| - int parseIntOrZero(String matched) { |
| - // TODO(floitsch): we should not need to test against the empty string. |
| - if (matched === null || matched == "") return 0; |
| - return Math.parseInt(matched); |
| - } |
| - |
| - double parseDoubleOrZero(String matched) { |
| - // TODO(floitsch): we should not need to test against the empty string. |
| - if (matched === null || matched == "") return 0.0; |
| - return Math.parseDouble(matched); |
| - } |
| - |
| - int years = Math.parseInt(match[1]); |
| - int month = Math.parseInt(match[2]); |
| - int day = Math.parseInt(match[3]); |
| - int hour = parseIntOrZero(match[4]); |
| - int minute = parseIntOrZero(match[5]); |
| - int second = parseIntOrZero(match[6]); |
| - bool addOneMillisecond = false; |
| - int millisecond = (parseDoubleOrZero(match[7]) * 1000).round().toInt(); |
| - if (millisecond == 1000) { |
| - addOneMillisecond = true; |
| - millisecond = 999; |
| - } |
| - // TODO(floitsch): we should not need to test against the empty string. |
| - bool isUtc = (match[8] !== null) && (match[8] != ""); |
| - int millisecondsSinceEpoch = _brokenDownDateToMillisecondsSinceEpoch( |
| - years, month, day, hour, minute, second, millisecond, isUtc); |
| - if (millisecondsSinceEpoch === null) { |
| - throw new IllegalArgumentException(formattedString); |
| - } |
| - if (addOneMillisecond) millisecondsSinceEpoch++; |
| - return new DateImplementation.fromMillisecondsSinceEpoch( |
| - millisecondsSinceEpoch, isUtc); |
| - } else { |
| - throw new IllegalArgumentException(formattedString); |
| - } |
| - } |
| - |
| - DateImplementation.fromMillisecondsSinceEpoch( |
| - int this.millisecondsSinceEpoch, [bool isUtc = false]) |
| - : this.isUtc = isUtc { |
| - if (millisecondsSinceEpoch.abs() > _MAX_MILLISECONDS_SINCE_EPOCH) { |
| - throw new IllegalArgumentException(millisecondsSinceEpoch); |
| - } |
| - if (isUtc === null) { |
| - throw new IllegalArgumentException(isUtc); |
| - } |
| - } |
| - |
| - bool operator ==(Object other) { |
| - if (other is !DateImplementation) return false; |
| - DateImplementation otherDate = other; |
| - return millisecondsSinceEpoch == otherDate.millisecondsSinceEpoch; |
| - } |
| - |
| - bool operator <(Date other) |
| - => millisecondsSinceEpoch < other.millisecondsSinceEpoch; |
| - |
| - bool operator <=(Date other) |
| - => millisecondsSinceEpoch <= other.millisecondsSinceEpoch; |
| - |
| - bool operator >(Date other) |
| - => millisecondsSinceEpoch > other.millisecondsSinceEpoch; |
| - |
| - bool operator >=(Date other) |
| - => millisecondsSinceEpoch >= other.millisecondsSinceEpoch; |
| - |
| - int compareTo(Date other) |
| - => millisecondsSinceEpoch.compareTo(other.millisecondsSinceEpoch); |
| - |
| - int hashCode() => millisecondsSinceEpoch; |
| - |
| - Date toLocal() { |
| - if (isUtc) { |
| - return new DateImplementation.fromMillisecondsSinceEpoch( |
| - millisecondsSinceEpoch, false); |
| - } |
| - return this; |
| - } |
| - |
| - Date toUtc() { |
| - if (isUtc) return this; |
| - return new DateImplementation.fromMillisecondsSinceEpoch( |
| - millisecondsSinceEpoch, true); |
| - } |
| - |
| - String get timeZoneName() { |
| + /* patch */ String get timeZoneName() { |
| if (isUtc) return "UTC"; |
| return _timeZoneName(millisecondsSinceEpoch); |
| } |
| - Duration get timeZoneOffset() { |
| + /* patch */ Duration get timeZoneOffset() { |
| if (isUtc) return new Duration(0); |
| int offsetInSeconds = _timeZoneOffsetInSeconds(millisecondsSinceEpoch); |
| return new Duration(seconds: offsetInSeconds); |
| } |
| - int get year() { |
| - return _decomposeIntoYearMonthDay(_localDateInUtcMs)[0]; |
| - } |
| + /* patch */ int get year() => _decomposeIntoYearMonthDay(_localDateInUtcMs)[0]; |
| - int get month() { |
| - return _decomposeIntoYearMonthDay(_localDateInUtcMs)[1]; |
| - } |
| + /* patch */ int get month() => _decomposeIntoYearMonthDay(_localDateInUtcMs)[1]; |
| - int get day() { |
| - return _decomposeIntoYearMonthDay(_localDateInUtcMs)[2]; |
| - } |
| + /* patch */ int get day() => _decomposeIntoYearMonthDay(_localDateInUtcMs)[2]; |
| - int get hour() { |
| + /* patch */ int get hour() { |
| int valueInHours = _flooredDivision(_localDateInUtcMs, |
| Duration.MILLISECONDS_PER_HOUR); |
| return valueInHours % Duration.HOURS_PER_DAY; |
| } |
| - int get minute() { |
| + /* patch */ int get minute() { |
| int valueInMinutes = _flooredDivision(_localDateInUtcMs, |
| Duration.MILLISECONDS_PER_MINUTE); |
| return valueInMinutes % Duration.MINUTES_PER_HOUR; |
| } |
| - int get second() { |
| + /* patch */ int get second() { |
| // Seconds are unaffected by the timezone the user is in. So we can |
| // directly use the millisecondsSinceEpoch and not [_localDateInUtcMs]. |
| int valueInSeconds = |
| @@ -173,7 +63,7 @@ class DateImplementation implements Date { |
| return valueInSeconds % Duration.SECONDS_PER_MINUTE; |
| } |
| - int get millisecond() { |
| + /* patch */ int get millisecond() { |
| // Milliseconds are unaffected by the timezone the user is in. So we can |
| // directly use the value and not the [_localDateInUtcValue]. |
| return millisecondsSinceEpoch % Duration.MILLISECONDS_PER_SECOND; |
| @@ -181,7 +71,7 @@ class DateImplementation implements Date { |
| /** Returns the weekday of [this]. In accordance with ISO 8601 a week |
| * starts with Monday. Monday has the value 1 up to Sunday with 7. */ |
| - int get weekday() { |
| + /* patch */ int get weekday() { |
| int daysSince1970 = |
| _flooredDivision(_localDateInUtcMs, Duration.MILLISECONDS_PER_DAY); |
| // 1970-1-1 was a Thursday. |
| @@ -189,59 +79,6 @@ class DateImplementation implements Date { |
| Date.MON; |
| } |
| - String toString() { |
| - String fourDigits(int n) { |
| - int absN = n.abs(); |
| - String sign = n < 0 ? "-" : ""; |
| - if (absN >= 1000) return "$n"; |
| - if (absN >= 100) return "${sign}0$absN"; |
| - if (absN >= 10) return "${sign}00$absN"; |
| - return "${sign}000$absN"; |
| - } |
| - String threeDigits(int n) { |
| - if (n >= 100) return "${n}"; |
| - if (n >= 10) return "0${n}"; |
| - return "00${n}"; |
| - } |
| - String twoDigits(int n) { |
| - if (n >= 10) return "${n}"; |
| - return "0${n}"; |
| - } |
| - |
| - String y = fourDigits(year); |
| - String m = twoDigits(month); |
| - String d = twoDigits(day); |
| - String h = twoDigits(hour); |
| - String min = twoDigits(minute); |
| - String sec = twoDigits(second); |
| - String ms = threeDigits(millisecond); |
| - if (isUtc) { |
| - return "$y-$m-$d $h:$min:$sec.${ms}Z"; |
| - } else { |
| - return "$y-$m-$d $h:$min:$sec.$ms"; |
| - } |
| - } |
| - |
| - /** Returns a new [Date] with the [duration] added to [this]. */ |
| - Date add(Duration duration) { |
| - int ms = millisecondsSinceEpoch; |
| - return new DateImplementation.fromMillisecondsSinceEpoch( |
| - ms + duration.inMilliseconds, isUtc); |
| - } |
| - |
| - /** Returns a new [Date] with the [duration] subtracted from [this]. */ |
| - Date subtract(Duration duration) { |
| - int ms = millisecondsSinceEpoch; |
| - return new DateImplementation.fromMillisecondsSinceEpoch( |
| - ms - duration.inMilliseconds, isUtc); |
| - } |
| - |
| - /** Returns a [Duration] with the difference of [this] and [other]. */ |
| - Duration difference(Date other) { |
| - int ms = millisecondsSinceEpoch; |
| - int otherMs = other.millisecondsSinceEpoch; |
| - return new DurationImplementation(milliseconds: ms - otherMs); |
| - } |
| /** The first list contains the days until each month in non-leap years. The |
| * second list contains the days in leap years. */ |
| @@ -388,6 +225,11 @@ class DateImplementation implements Date { |
| return millisecondsSinceEpoch; |
| } |
| + static int _weekDay(y) { |
|
Mads Ager (google)
2012/08/15 09:47:28
Ivan fixed support for closures in patches. I will
|
| + // 1/1/1970 was a Thursday. |
| + return (_dayFromYear(y) + 4) % 7; |
| + } |
| + |
| /** |
| * Returns a year in the range 2008-2035 matching |
| * * leap year, and |
| @@ -398,10 +240,6 @@ class DateImplementation implements Date { |
| */ |
| static _equivalentYear(int year) { |
| // Returns the week day (in range 0 - 6). |
| - int weekDay(y) { |
| - // 1/1/1970 was a Thursday. |
| - return (_dayFromYear(y) + 4) % 7; |
| - } |
| // 1/1/1956 was a Sunday (i.e. weekday 0). 1956 was a leap-year. |
| // 1/1/1967 was a Sunday (i.e. weekday 0). |
| // Without leap years a subsequent year has a week day + 1 (for example |
| @@ -411,7 +249,7 @@ class DateImplementation implements Date { |
| // 15 days. 15 % 7 = 1. So after 12 years the week day has always |
| // (now independently of leap-years) advanced by one. |
| // weekDay * 12 gives thus a year starting with the wanted weekDay. |
| - int recentYear = (_isLeapYear(year) ? 1956 : 1967) + (weekDay(year) * 12); |
| + int recentYear = (_isLeapYear(year) ? 1956 : 1967) + (_weekDay(year) * 12); |
| // Close to the year 2008 the calendar cycles every 4 * 7 years (4 for the |
| // leap years, 7 for the weekdays). |
| // Find the year in the range 2008..2037 that is equivalent mod 28. |
| @@ -475,9 +313,6 @@ class DateImplementation implements Date { |
| return _timeZoneNameForClampedSeconds(equivalentSeconds); |
| } |
| - final bool isUtc; |
| - final int millisecondsSinceEpoch; |
| - |
| // Natives |
| static int _getCurrentMs() native "DateNatives_currentTimeMillis"; |