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317 lines
8.7 KiB
TypeScript
317 lines
8.7 KiB
TypeScript
// Copyright 2018-2020 the Deno authors. All rights reserved. MIT license.
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import { assert } from "../_util/assert.ts";
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export type DateFormat = "mm-dd-yyyy" | "dd-mm-yyyy" | "yyyy-mm-dd";
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export const SECOND = 1e3;
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export const MINUTE = SECOND * 60;
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export const HOUR = MINUTE * 60;
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export const DAY = HOUR * 24;
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export const WEEK = DAY * 7;
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const DAYS_PER_WEEK = 7;
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enum Day {
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Sun,
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Mon,
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Tue,
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Wed,
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Thu,
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Fri,
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Sat,
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}
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function execForce(reg: RegExp, pat: string): RegExpExecArray {
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const v = reg.exec(pat);
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assert(v != null);
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return v;
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}
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/**
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* Parse date from string using format string
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* @param dateStr Date string
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* @param format Format string
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* @return Parsed date
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*/
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export function parseDate(dateStr: string, format: DateFormat): Date {
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let m, d, y: string;
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let datePattern: RegExp;
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switch (format) {
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case "mm-dd-yyyy":
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datePattern = /^(\d{2})-(\d{2})-(\d{4})$/;
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[, m, d, y] = execForce(datePattern, dateStr);
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break;
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case "dd-mm-yyyy":
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datePattern = /^(\d{2})-(\d{2})-(\d{4})$/;
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[, d, m, y] = execForce(datePattern, dateStr);
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break;
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case "yyyy-mm-dd":
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datePattern = /^(\d{4})-(\d{2})-(\d{2})$/;
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[, y, m, d] = execForce(datePattern, dateStr);
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break;
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default:
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throw new Error("Invalid date format!");
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}
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return new Date(Number(y), Number(m) - 1, Number(d));
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}
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export type DateTimeFormat =
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| "mm-dd-yyyy hh:mm"
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| "dd-mm-yyyy hh:mm"
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| "yyyy-mm-dd hh:mm"
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| "hh:mm mm-dd-yyyy"
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| "hh:mm dd-mm-yyyy"
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| "hh:mm yyyy-mm-dd";
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/**
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* Parse date & time from string using format string
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* @param dateStr Date & time string
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* @param format Format string
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* @return Parsed date
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*/
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export function parseDateTime(
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datetimeStr: string,
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format: DateTimeFormat,
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): Date {
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let m, d, y, ho, mi: string;
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let datePattern: RegExp;
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switch (format) {
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case "mm-dd-yyyy hh:mm":
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datePattern = /^(\d{2})-(\d{2})-(\d{4}) (\d{2}):(\d{2})$/;
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[, m, d, y, ho, mi] = execForce(datePattern, datetimeStr);
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break;
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case "dd-mm-yyyy hh:mm":
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datePattern = /^(\d{2})-(\d{2})-(\d{4}) (\d{2}):(\d{2})$/;
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[, d, m, y, ho, mi] = execForce(datePattern, datetimeStr);
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break;
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case "yyyy-mm-dd hh:mm":
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datePattern = /^(\d{4})-(\d{2})-(\d{2}) (\d{2}):(\d{2})$/;
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[, y, m, d, ho, mi] = execForce(datePattern, datetimeStr);
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break;
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case "hh:mm mm-dd-yyyy":
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datePattern = /^(\d{2}):(\d{2}) (\d{2})-(\d{2})-(\d{4})$/;
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[, ho, mi, m, d, y] = execForce(datePattern, datetimeStr);
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break;
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case "hh:mm dd-mm-yyyy":
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datePattern = /^(\d{2}):(\d{2}) (\d{2})-(\d{2})-(\d{4})$/;
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[, ho, mi, d, m, y] = execForce(datePattern, datetimeStr);
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break;
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case "hh:mm yyyy-mm-dd":
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datePattern = /^(\d{2}):(\d{2}) (\d{4})-(\d{2})-(\d{2})$/;
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[, ho, mi, y, m, d] = execForce(datePattern, datetimeStr);
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break;
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default:
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throw new Error("Invalid datetime format!");
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}
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return new Date(Number(y), Number(m) - 1, Number(d), Number(ho), Number(mi));
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}
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/**
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* Get number of the day in the year
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* @return Number of the day in year
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*/
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export function dayOfYear(date: Date): number {
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const yearStart = new Date(date.getFullYear(), 0, 0);
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const diff = date.getTime() -
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yearStart.getTime() +
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(yearStart.getTimezoneOffset() - date.getTimezoneOffset()) * 60 * 1000;
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return Math.floor(diff / DAY);
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}
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/**
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* Get number of current day in year
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* @return Number of current day in year
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*/
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export function currentDayOfYear(): number {
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return dayOfYear(new Date());
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}
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/**
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* Get number of the week in the year (ISO-8601)
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* @return Number of the week in year
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*/
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export function weekOfYear(date: Date): number {
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const workingDate = new Date(
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Date.UTC(date.getFullYear(), date.getMonth(), date.getDate()),
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);
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const day = workingDate.getUTCDay();
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const nearestThursday = workingDate.getUTCDate() +
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Day.Thu -
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(day === Day.Sun ? DAYS_PER_WEEK : day);
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workingDate.setUTCDate(nearestThursday);
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// Get first day of year
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const yearStart = new Date(Date.UTC(workingDate.getUTCFullYear(), 0, 1));
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// return the calculated full weeks to nearest Thursday
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return Math.ceil((workingDate.getTime() - yearStart.getTime() + DAY) / WEEK);
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}
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/**
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* Parse a date to return a IMF formated string date
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* RFC: https://tools.ietf.org/html/rfc7231#section-7.1.1.1
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* IMF is the time format to use when generating times in HTTP
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* headers. The time being formatted must be in UTC for Format to
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* generate the correct format.
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* @param date Date to parse
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* @return IMF date formated string
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*/
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export function toIMF(date: Date): string {
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function dtPad(v: string, lPad = 2): string {
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return v.padStart(lPad, "0");
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}
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const d = dtPad(date.getUTCDate().toString());
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const h = dtPad(date.getUTCHours().toString());
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const min = dtPad(date.getUTCMinutes().toString());
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const s = dtPad(date.getUTCSeconds().toString());
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const y = date.getUTCFullYear();
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const days = ["Sun", "Mon", "Tue", "Wed", "Thu", "Fri", "Sat"];
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const months = [
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"Jan",
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"Feb",
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"Mar",
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"Apr",
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"May",
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"Jun",
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"Jul",
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"Aug",
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"Sep",
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"Oct",
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"Nov",
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"Dec",
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];
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return `${days[date.getUTCDay()]}, ${d} ${
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months[date.getUTCMonth()]
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} ${y} ${h}:${min}:${s} GMT`;
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}
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/**
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* Check given year is a leap year or not.
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* based on : https://docs.microsoft.com/en-us/office/troubleshoot/excel/determine-a-leap-year
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* @param year year in number or Date format
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*/
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export function isLeap(year: Date | number): boolean {
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const yearNumber = year instanceof Date ? year.getFullYear() : year;
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return (
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(yearNumber % 4 === 0 && yearNumber % 100 !== 0) || yearNumber % 400 === 0
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);
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}
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export type Unit =
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| "miliseconds"
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| "seconds"
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| "minutes"
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| "hours"
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| "days"
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| "weeks"
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| "months"
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| "quarters"
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| "years";
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export type DifferenceFormat = Partial<Record<Unit, number>>;
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export type DifferenceOptions = {
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units?: Unit[];
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};
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/**
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* Calculate difference between two dates.
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* @param from Year to calculate difference
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* @param to Year to calculate difference with
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* @param options Options for determining how to respond
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*
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* example :
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*
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* ```typescript
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* datetime.difference(new Date("2020/1/1"),new Date("2020/2/2"),{ units : ["days","months"] })
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* ```
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*/
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export function difference(
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from: Date,
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to: Date,
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options?: DifferenceOptions,
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): DifferenceFormat {
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const uniqueUnits = options?.units ? [...new Set(options?.units)] : [
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"miliseconds",
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"seconds",
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"minutes",
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"hours",
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"days",
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"weeks",
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"months",
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"quarters",
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"years",
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];
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const bigger = Math.max(from.getTime(), to.getTime());
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const smaller = Math.min(from.getTime(), to.getTime());
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const differenceInMs = bigger - smaller;
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const differences: DifferenceFormat = {};
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for (const uniqueUnit of uniqueUnits) {
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switch (uniqueUnit) {
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case "miliseconds":
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differences.miliseconds = differenceInMs;
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break;
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case "seconds":
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differences.seconds = Math.floor(differenceInMs / SECOND);
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break;
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case "minutes":
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differences.minutes = Math.floor(differenceInMs / MINUTE);
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break;
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case "hours":
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differences.hours = Math.floor(differenceInMs / HOUR);
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break;
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case "days":
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differences.days = Math.floor(differenceInMs / DAY);
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break;
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case "weeks":
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differences.weeks = Math.floor(differenceInMs / WEEK);
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break;
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case "months":
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differences.months = calculateMonthsDifference(bigger, smaller);
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break;
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case "quarters":
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differences.quarters = Math.floor(
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(typeof differences.months !== "undefined" &&
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differences.months / 4) ||
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calculateMonthsDifference(bigger, smaller) / 4,
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);
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break;
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case "years":
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differences.years = Math.floor(
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(typeof differences.months !== "undefined" &&
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differences.months / 12) ||
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calculateMonthsDifference(bigger, smaller) / 12,
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);
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break;
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}
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}
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return differences;
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}
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function calculateMonthsDifference(bigger: number, smaller: number): number {
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const biggerDate = new Date(bigger);
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const smallerDate = new Date(smaller);
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const yearsDiff = biggerDate.getFullYear() - smallerDate.getFullYear();
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const monthsDiff = biggerDate.getMonth() - smallerDate.getMonth();
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const calendarDiffrences = Math.abs(yearsDiff * 12 + monthsDiff);
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const compareResult = biggerDate > smallerDate ? 1 : -1;
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biggerDate.setMonth(
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biggerDate.getMonth() - compareResult * calendarDiffrences,
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);
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const isLastMonthNotFull = biggerDate > smallerDate
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? 1
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: -1 === -compareResult
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? 1
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: 0;
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const months = compareResult * (calendarDiffrences - isLastMonthNotFull);
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return months === 0 ? 0 : months;
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}
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