[483] | 1 | define(["./has", "./_base/lang"], function(has, lang){ |
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| 2 | // module: |
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| 3 | // dojo/date |
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| 4 | |
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| 5 | var date = { |
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| 6 | // summary: |
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| 7 | // Date manipulation utilities |
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| 8 | }; |
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| 9 | |
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| 10 | date.getDaysInMonth = function(/*Date*/dateObject){ |
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| 11 | // summary: |
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| 12 | // Returns the number of days in the month used by dateObject |
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| 13 | var month = dateObject.getMonth(); |
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| 14 | var days = [31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31]; |
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| 15 | if(month == 1 && date.isLeapYear(dateObject)){ return 29; } // Number |
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| 16 | return days[month]; // Number |
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| 17 | }; |
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| 18 | |
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| 19 | date.isLeapYear = function(/*Date*/dateObject){ |
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| 20 | // summary: |
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| 21 | // Determines if the year of the dateObject is a leap year |
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| 22 | // description: |
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| 23 | // Leap years are years with an additional day YYYY-02-29, where the |
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| 24 | // year number is a multiple of four with the following exception: If |
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| 25 | // a year is a multiple of 100, then it is only a leap year if it is |
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| 26 | // also a multiple of 400. For example, 1900 was not a leap year, but |
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| 27 | // 2000 is one. |
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| 28 | |
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| 29 | var year = dateObject.getFullYear(); |
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| 30 | return !(year%400) || (!(year%4) && !!(year%100)); // Boolean |
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| 31 | }; |
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| 32 | |
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| 33 | // FIXME: This is not localized |
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| 34 | date.getTimezoneName = function(/*Date*/dateObject){ |
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| 35 | // summary: |
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| 36 | // Get the user's time zone as provided by the browser |
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| 37 | // dateObject: |
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| 38 | // Needed because the timezone may vary with time (daylight savings) |
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| 39 | // description: |
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| 40 | // Try to get time zone info from toString or toLocaleString method of |
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| 41 | // the Date object -- UTC offset is not a time zone. See |
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| 42 | // http://www.twinsun.com/tz/tz-link.htm Note: results may be |
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| 43 | // inconsistent across browsers. |
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| 44 | |
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| 45 | var str = dateObject.toString(); // Start looking in toString |
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| 46 | var tz = ''; // The result -- return empty string if nothing found |
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| 47 | var match; |
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| 48 | |
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| 49 | // First look for something in parentheses -- fast lookup, no regex |
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| 50 | var pos = str.indexOf('('); |
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| 51 | if(pos > -1){ |
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| 52 | tz = str.substring(++pos, str.indexOf(')')); |
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| 53 | }else{ |
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| 54 | // If at first you don't succeed ... |
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| 55 | // If IE knows about the TZ, it appears before the year |
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| 56 | // Capital letters or slash before a 4-digit year |
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| 57 | // at the end of string |
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| 58 | var pat = /([A-Z\/]+) \d{4}$/; |
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| 59 | if((match = str.match(pat))){ |
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| 60 | tz = match[1]; |
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| 61 | }else{ |
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| 62 | // Some browsers (e.g. Safari) glue the TZ on the end |
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| 63 | // of toLocaleString instead of putting it in toString |
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| 64 | str = dateObject.toLocaleString(); |
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| 65 | // Capital letters or slash -- end of string, |
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| 66 | // after space |
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| 67 | pat = / ([A-Z\/]+)$/; |
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| 68 | if((match = str.match(pat))){ |
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| 69 | tz = match[1]; |
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| 70 | } |
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| 71 | } |
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| 72 | } |
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| 73 | |
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| 74 | // Make sure it doesn't somehow end up return AM or PM |
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| 75 | return (tz == 'AM' || tz == 'PM') ? '' : tz; // String |
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| 76 | }; |
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| 77 | |
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| 78 | // Utility methods to do arithmetic calculations with Dates |
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| 79 | |
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| 80 | date.compare = function(/*Date*/date1, /*Date?*/date2, /*String?*/portion){ |
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| 81 | // summary: |
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| 82 | // Compare two date objects by date, time, or both. |
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| 83 | // description: |
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| 84 | // Returns 0 if equal, positive if a > b, else negative. |
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| 85 | // date1: |
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| 86 | // Date object |
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| 87 | // date2: |
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| 88 | // Date object. If not specified, the current Date is used. |
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| 89 | // portion: |
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| 90 | // A string indicating the "date" or "time" portion of a Date object. |
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| 91 | // Compares both "date" and "time" by default. One of the following: |
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| 92 | // "date", "time", "datetime" |
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| 93 | |
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| 94 | // Extra step required in copy for IE - see #3112 |
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| 95 | date1 = new Date(+date1); |
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| 96 | date2 = new Date(+(date2 || new Date())); |
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| 97 | |
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| 98 | if(portion == "date"){ |
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| 99 | // Ignore times and compare dates. |
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| 100 | date1.setHours(0, 0, 0, 0); |
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| 101 | date2.setHours(0, 0, 0, 0); |
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| 102 | }else if(portion == "time"){ |
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| 103 | // Ignore dates and compare times. |
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| 104 | date1.setFullYear(0, 0, 0); |
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| 105 | date2.setFullYear(0, 0, 0); |
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| 106 | } |
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| 107 | |
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| 108 | if(date1 > date2){ return 1; } // int |
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| 109 | if(date1 < date2){ return -1; } // int |
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| 110 | return 0; // int |
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| 111 | }; |
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| 112 | |
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| 113 | date.add = function(/*Date*/date, /*String*/interval, /*int*/amount){ |
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| 114 | // summary: |
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| 115 | // Add to a Date in intervals of different size, from milliseconds to years |
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| 116 | // date: Date |
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| 117 | // Date object to start with |
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| 118 | // interval: |
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| 119 | // A string representing the interval. One of the following: |
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| 120 | // "year", "month", "day", "hour", "minute", "second", |
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| 121 | // "millisecond", "quarter", "week", "weekday" |
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| 122 | // amount: |
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| 123 | // How much to add to the date. |
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| 124 | |
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| 125 | var sum = new Date(+date); // convert to Number before copying to accomodate IE (#3112) |
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| 126 | var fixOvershoot = false; |
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| 127 | var property = "Date"; |
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| 128 | |
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| 129 | switch(interval){ |
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| 130 | case "day": |
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| 131 | break; |
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| 132 | case "weekday": |
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| 133 | //i18n FIXME: assumes Saturday/Sunday weekend, but this is not always true. see dojo/cldr/supplemental |
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| 134 | |
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| 135 | // Divide the increment time span into weekspans plus leftover days |
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| 136 | // e.g., 8 days is one 5-day weekspan / and two leftover days |
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| 137 | // Can't have zero leftover days, so numbers divisible by 5 get |
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| 138 | // a days value of 5, and the remaining days make up the number of weeks |
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| 139 | var days, weeks; |
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| 140 | var mod = amount % 5; |
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| 141 | if(!mod){ |
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| 142 | days = (amount > 0) ? 5 : -5; |
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| 143 | weeks = (amount > 0) ? ((amount-5)/5) : ((amount+5)/5); |
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| 144 | }else{ |
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| 145 | days = mod; |
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| 146 | weeks = parseInt(amount/5); |
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| 147 | } |
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| 148 | // Get weekday value for orig date param |
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| 149 | var strt = date.getDay(); |
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| 150 | // Orig date is Sat / positive incrementer |
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| 151 | // Jump over Sun |
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| 152 | var adj = 0; |
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| 153 | if(strt == 6 && amount > 0){ |
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| 154 | adj = 1; |
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| 155 | }else if(strt == 0 && amount < 0){ |
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| 156 | // Orig date is Sun / negative incrementer |
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| 157 | // Jump back over Sat |
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| 158 | adj = -1; |
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| 159 | } |
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| 160 | // Get weekday val for the new date |
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| 161 | var trgt = strt + days; |
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| 162 | // New date is on Sat or Sun |
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| 163 | if(trgt == 0 || trgt == 6){ |
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| 164 | adj = (amount > 0) ? 2 : -2; |
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| 165 | } |
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| 166 | // Increment by number of weeks plus leftover days plus |
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| 167 | // weekend adjustments |
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| 168 | amount = (7 * weeks) + days + adj; |
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| 169 | break; |
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| 170 | case "year": |
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| 171 | property = "FullYear"; |
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| 172 | // Keep increment/decrement from 2/29 out of March |
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| 173 | fixOvershoot = true; |
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| 174 | break; |
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| 175 | case "week": |
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| 176 | amount *= 7; |
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| 177 | break; |
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| 178 | case "quarter": |
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| 179 | // Naive quarter is just three months |
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| 180 | amount *= 3; |
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| 181 | // fallthrough... |
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| 182 | case "month": |
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| 183 | // Reset to last day of month if you overshoot |
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| 184 | fixOvershoot = true; |
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| 185 | property = "Month"; |
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| 186 | break; |
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| 187 | // case "hour": |
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| 188 | // case "minute": |
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| 189 | // case "second": |
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| 190 | // case "millisecond": |
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| 191 | default: |
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| 192 | property = "UTC"+interval.charAt(0).toUpperCase() + interval.substring(1) + "s"; |
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| 193 | } |
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| 194 | |
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| 195 | if(property){ |
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| 196 | sum["set"+property](sum["get"+property]()+amount); |
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| 197 | } |
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| 198 | |
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| 199 | if(fixOvershoot && (sum.getDate() < date.getDate())){ |
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| 200 | sum.setDate(0); |
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| 201 | } |
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| 202 | |
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| 203 | return sum; // Date |
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| 204 | }; |
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| 205 | |
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| 206 | date.difference = function(/*Date*/date1, /*Date?*/date2, /*String?*/interval){ |
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| 207 | // summary: |
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| 208 | // Get the difference in a specific unit of time (e.g., number of |
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| 209 | // months, weeks, days, etc.) between two dates, rounded to the |
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| 210 | // nearest integer. |
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| 211 | // date1: |
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| 212 | // Date object |
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| 213 | // date2: |
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| 214 | // Date object. If not specified, the current Date is used. |
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| 215 | // interval: |
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| 216 | // A string representing the interval. One of the following: |
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| 217 | // "year", "month", "day", "hour", "minute", "second", |
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| 218 | // "millisecond", "quarter", "week", "weekday" |
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| 219 | // |
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| 220 | // Defaults to "day". |
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| 221 | |
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| 222 | date2 = date2 || new Date(); |
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| 223 | interval = interval || "day"; |
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| 224 | var yearDiff = date2.getFullYear() - date1.getFullYear(); |
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| 225 | var delta = 1; // Integer return value |
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| 226 | |
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| 227 | switch(interval){ |
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| 228 | case "quarter": |
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| 229 | var m1 = date1.getMonth(); |
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| 230 | var m2 = date2.getMonth(); |
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| 231 | // Figure out which quarter the months are in |
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| 232 | var q1 = Math.floor(m1/3) + 1; |
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| 233 | var q2 = Math.floor(m2/3) + 1; |
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| 234 | // Add quarters for any year difference between the dates |
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| 235 | q2 += (yearDiff * 4); |
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| 236 | delta = q2 - q1; |
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| 237 | break; |
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| 238 | case "weekday": |
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| 239 | var days = Math.round(date.difference(date1, date2, "day")); |
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| 240 | var weeks = parseInt(date.difference(date1, date2, "week")); |
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| 241 | var mod = days % 7; |
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| 242 | |
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| 243 | // Even number of weeks |
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| 244 | if(mod == 0){ |
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| 245 | days = weeks*5; |
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| 246 | }else{ |
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| 247 | // Weeks plus spare change (< 7 days) |
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| 248 | var adj = 0; |
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| 249 | var aDay = date1.getDay(); |
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| 250 | var bDay = date2.getDay(); |
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| 251 | |
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| 252 | weeks = parseInt(days/7); |
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| 253 | mod = days % 7; |
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| 254 | // Mark the date advanced by the number of |
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| 255 | // round weeks (may be zero) |
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| 256 | var dtMark = new Date(date1); |
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| 257 | dtMark.setDate(dtMark.getDate()+(weeks*7)); |
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| 258 | var dayMark = dtMark.getDay(); |
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| 259 | |
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| 260 | // Spare change days -- 6 or less |
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| 261 | if(days > 0){ |
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| 262 | switch(true){ |
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| 263 | // Range starts on Sat |
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| 264 | case aDay == 6: |
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| 265 | adj = -1; |
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| 266 | break; |
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| 267 | // Range starts on Sun |
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| 268 | case aDay == 0: |
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| 269 | adj = 0; |
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| 270 | break; |
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| 271 | // Range ends on Sat |
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| 272 | case bDay == 6: |
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| 273 | adj = -1; |
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| 274 | break; |
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| 275 | // Range ends on Sun |
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| 276 | case bDay == 0: |
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| 277 | adj = -2; |
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| 278 | break; |
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| 279 | // Range contains weekend |
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| 280 | case (dayMark + mod) > 5: |
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| 281 | adj = -2; |
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| 282 | } |
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| 283 | }else if(days < 0){ |
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| 284 | switch(true){ |
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| 285 | // Range starts on Sat |
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| 286 | case aDay == 6: |
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| 287 | adj = 0; |
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| 288 | break; |
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| 289 | // Range starts on Sun |
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| 290 | case aDay == 0: |
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| 291 | adj = 1; |
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| 292 | break; |
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| 293 | // Range ends on Sat |
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| 294 | case bDay == 6: |
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| 295 | adj = 2; |
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| 296 | break; |
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| 297 | // Range ends on Sun |
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| 298 | case bDay == 0: |
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| 299 | adj = 1; |
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| 300 | break; |
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| 301 | // Range contains weekend |
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| 302 | case (dayMark + mod) < 0: |
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| 303 | adj = 2; |
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| 304 | } |
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| 305 | } |
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| 306 | days += adj; |
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| 307 | days -= (weeks*2); |
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| 308 | } |
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| 309 | delta = days; |
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| 310 | break; |
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| 311 | case "year": |
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| 312 | delta = yearDiff; |
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| 313 | break; |
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| 314 | case "month": |
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| 315 | delta = (date2.getMonth() - date1.getMonth()) + (yearDiff * 12); |
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| 316 | break; |
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| 317 | case "week": |
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| 318 | // Truncate instead of rounding |
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| 319 | // Don't use Math.floor -- value may be negative |
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| 320 | delta = parseInt(date.difference(date1, date2, "day")/7); |
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| 321 | break; |
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| 322 | case "day": |
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| 323 | delta /= 24; |
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| 324 | // fallthrough |
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| 325 | case "hour": |
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| 326 | delta /= 60; |
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| 327 | // fallthrough |
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| 328 | case "minute": |
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| 329 | delta /= 60; |
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| 330 | // fallthrough |
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| 331 | case "second": |
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| 332 | delta /= 1000; |
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| 333 | // fallthrough |
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| 334 | case "millisecond": |
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| 335 | delta *= date2.getTime() - date1.getTime(); |
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| 336 | } |
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| 337 | |
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| 338 | // Round for fractional values and DST leaps |
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| 339 | return Math.round(delta); // Number (integer) |
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| 340 | }; |
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| 341 | |
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| 342 | // Don't use setObject() because it may overwrite dojo/date/stamp (if that has already been loaded) |
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| 343 | has("extend-dojo") && lang.mixin(lang.getObject("dojo.date", true), date); |
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| 344 | |
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| 345 | return date; |
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| 346 | }); |
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