001/*
002 * Licensed to the Apache Software Foundation (ASF) under one or more
003 * contributor license agreements.  See the NOTICE file distributed with
004 * this work for additional information regarding copyright ownership.
005 * The ASF licenses this file to You under the Apache License, Version 2.0
006 * (the "License"); you may not use this file except in compliance with
007 * the License.  You may obtain a copy of the License at
008 *
009 *      https://www.apache.org/licenses/LICENSE-2.0
010 *
011 * Unless required by applicable law or agreed to in writing, software
012 * distributed under the License is distributed on an "AS IS" BASIS,
013 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
014 * See the License for the specific language governing permissions and
015 * limitations under the License.
016 */
017package org.apache.commons.lang3.time;
018
019import java.text.ParseException;
020import java.text.ParsePosition;
021import java.time.LocalDateTime;
022import java.time.OffsetDateTime;
023import java.time.ZoneId;
024import java.time.ZonedDateTime;
025import java.util.Calendar;
026import java.util.Date;
027import java.util.Iterator;
028import java.util.Locale;
029import java.util.NoSuchElementException;
030import java.util.Objects;
031import java.util.TimeZone;
032import java.util.concurrent.TimeUnit;
033
034import org.apache.commons.lang3.LocaleUtils;
035
036/**
037 * A suite of utilities surrounding the use of the
038 * {@link java.util.Calendar} and {@link java.util.Date} object.
039 *
040 * <p>
041 * DateUtils contains a lot of common methods considering manipulations
042 * of Dates or Calendars. Some methods require some extra explanation.
043 * The truncate, ceiling and round methods could be considered the Math.floor(),
044 * Math.ceil() or Math.round versions for dates
045 * This way date-fields will be ignored in bottom-up order.
046 * As a complement to these methods we've introduced some fragment-methods.
047 * With these methods the Date-fields will be ignored in top-down order.
048 * Since a date without a year is not a valid date, you have to decide in what
049 * kind of date-field you want your result, for instance milliseconds or days.
050 * </p>
051 * <p>
052 * Several methods are provided for adding to {@link Date} objects, of the form
053 * {@code addXXX(Date date, int amount)}. It is important to note these methods
054 * use a {@link Calendar} internally (with default time zone and locale) and may
055 * be affected by changes to daylight saving time (DST).
056 * </p>
057 *
058 * @since 2.0
059 */
060public class DateUtils {
061
062    /**
063     * Date iterator.
064     */
065    static final class DateIterator implements Iterator<Calendar> {
066        private final Calendar endFinal;
067        private final Calendar spot;
068
069        /**
070         * Constructs a DateIterator that ranges from one date to another.
071         *
072         * @param startFinal start date (inclusive).
073         * @param endFinal end date (inclusive).
074         */
075        DateIterator(final Calendar startFinal, final Calendar endFinal) {
076            this.endFinal = endFinal;
077            spot = startFinal;
078            spot.add(Calendar.DATE, -1);
079        }
080
081        /**
082         * Tests whether the iterator has more dates before the end date.
083         *
084         * @return {@code true} if the iterator has yet to reach the end date.
085         */
086        @Override
087        public boolean hasNext() {
088            return spot.before(endFinal);
089        }
090
091        /**
092         * Returns the next calendar in the iteration.
093         *
094         * @return Object calendar for the next date.
095         */
096        @Override
097        public Calendar next() {
098            if (spot.equals(endFinal)) {
099                throw new NoSuchElementException();
100            }
101            spot.add(Calendar.DATE, 1);
102            return (Calendar) spot.clone();
103        }
104
105        /**
106         * Always throws {@link UnsupportedOperationException}.
107         *
108         * @throws UnsupportedOperationException Thrown because this operation is unsupported.
109         * @see java.util.Iterator#remove()
110         */
111        @Override
112        public void remove() {
113            throw new UnsupportedOperationException();
114        }
115    }
116
117    /**
118     * Enumerates calendar modification types.
119     */
120    private enum ModifyType {
121
122        /**
123         * Truncation.
124         */
125        TRUNCATE,
126
127        /**
128         * Rounding.
129         */
130        ROUND,
131
132        /**
133         * Ceiling.
134         */
135        CEILING
136    }
137
138    /**
139     * Number of milliseconds in a standard second.
140     *
141     * @since 2.1
142     */
143    public static final long MILLIS_PER_SECOND = 1_000;
144
145    /**
146     * Number of milliseconds in a standard minute.
147     *
148     * @since 2.1
149     */
150    public static final long MILLIS_PER_MINUTE = 60 * MILLIS_PER_SECOND;
151
152    /**
153     * Number of milliseconds in a standard hour.
154     *
155     * @since 2.1
156     */
157    public static final long MILLIS_PER_HOUR = 60 * MILLIS_PER_MINUTE;
158
159    /**
160     * Number of milliseconds in a standard day.
161     *
162     * @since 2.1
163     */
164    public static final long MILLIS_PER_DAY = 24 * MILLIS_PER_HOUR;
165
166    /**
167     * This is half a month, so this represents whether a date is in the top
168     * or bottom half of the month.
169     */
170    public static final int SEMI_MONTH = 1001;
171    private static final int[][] fields = {
172            {Calendar.MILLISECOND},
173            {Calendar.SECOND},
174            {Calendar.MINUTE},
175            {Calendar.HOUR_OF_DAY, Calendar.HOUR},
176            {Calendar.DATE, Calendar.DAY_OF_MONTH, Calendar.AM_PM
177                /* Calendar.DAY_OF_YEAR, Calendar.DAY_OF_WEEK, Calendar.DAY_OF_WEEK_IN_MONTH */
178            },
179            {Calendar.MONTH, SEMI_MONTH},
180            {Calendar.YEAR},
181            {Calendar.ERA}};
182
183    /**
184     * A week range, starting on Sunday.
185     */
186    public static final int RANGE_WEEK_SUNDAY = 1;
187
188    /**
189     * A week range, starting on Monday.
190     */
191    public static final int RANGE_WEEK_MONDAY = 2;
192
193    /**
194     * A week range, starting on the day focused.
195     */
196    public static final int RANGE_WEEK_RELATIVE = 3;
197
198    /**
199     * A week range, centered around the day focused.
200     */
201    public static final int RANGE_WEEK_CENTER = 4;
202
203    /**
204     * A month range, the week starting on Sunday.
205     */
206    public static final int RANGE_MONTH_SUNDAY = 5;
207
208    /**
209     * A month range, the week starting on Monday.
210     */
211    public static final int RANGE_MONTH_MONDAY = 6;
212
213    /**
214     * Adds to a date returning a new object.
215     * The original {@link Date} is unchanged.
216     *
217     * @param date  The date, not null.
218     * @param calendarField  The calendar field to add to.
219     * @param amount  The amount to add, may be negative.
220     * @return The new {@link Date} with the amount added.
221     * @throws NullPointerException Thrown if the date is null.
222     */
223    private static Date add(final Date date, final int calendarField, final int amount) {
224        validateDateNotNull(date);
225        final Calendar c = Calendar.getInstance();
226        c.setTime(date);
227        c.add(calendarField, amount);
228        return c.getTime();
229    }
230
231    /**
232     * Adds a number of days to a date returning a new object.
233     * The original {@link Date} is unchanged.
234     *
235     * @param date  The date, not null.
236     * @param amount  The amount to add, may be negative.
237     * @return The new {@link Date} with the amount added.
238     * @throws NullPointerException Thrown if the date is null.
239     */
240    public static Date addDays(final Date date, final int amount) {
241        return add(date, Calendar.DAY_OF_MONTH, amount);
242    }
243
244    /**
245     * Adds a number of hours to a date returning a new object.
246     * The original {@link Date} is unchanged.
247     *
248     * @param date  The date, not null.
249     * @param amount  The amount to add, may be negative.
250     * @return The new {@link Date} with the amount added.
251     * @throws NullPointerException Thrown if the date is null.
252     */
253    public static Date addHours(final Date date, final int amount) {
254        return add(date, Calendar.HOUR_OF_DAY, amount);
255    }
256
257    /**
258     * Adds a number of milliseconds to a date returning a new object.
259     * The original {@link Date} is unchanged.
260     *
261     * @param date  The date, not null.
262     * @param amount  The amount to add, may be negative.
263     * @return The new {@link Date} with the amount added.
264     * @throws NullPointerException Thrown if the date is null.
265     */
266    public static Date addMilliseconds(final Date date, final int amount) {
267        return add(date, Calendar.MILLISECOND, amount);
268    }
269
270    /**
271     * Adds a number of minutes to a date returning a new object.
272     * The original {@link Date} is unchanged.
273     *
274     * @param date  The date, not null.
275     * @param amount  The amount to add, may be negative.
276     * @return The new {@link Date} with the amount added.
277     * @throws NullPointerException Thrown if the date is null.
278     */
279    public static Date addMinutes(final Date date, final int amount) {
280        return add(date, Calendar.MINUTE, amount);
281    }
282
283    /**
284     * Adds a number of months to a date returning a new object.
285     * The original {@link Date} is unchanged.
286     *
287     * @param date  The date, not null.
288     * @param amount  The amount to add, may be negative.
289     * @return The new {@link Date} with the amount added.
290     * @throws NullPointerException Thrown if the date is null.
291     */
292    public static Date addMonths(final Date date, final int amount) {
293        return add(date, Calendar.MONTH, amount);
294    }
295
296    /**
297     * Adds a number of seconds to a date returning a new object.
298     * The original {@link Date} is unchanged.
299     *
300     * @param date  The date, not null.
301     * @param amount  The amount to add, may be negative.
302     * @return The new {@link Date} with the amount added.
303     * @throws NullPointerException Thrown if the date is null.
304     */
305    public static Date addSeconds(final Date date, final int amount) {
306        return add(date, Calendar.SECOND, amount);
307    }
308
309    /**
310     * Adds a number of weeks to a date returning a new object.
311     * The original {@link Date} is unchanged.
312     *
313     * @param date  The date, not null.
314     * @param amount  The amount to add, may be negative.
315     * @return The new {@link Date} with the amount added.
316     * @throws NullPointerException Thrown if the date is null.
317     */
318    public static Date addWeeks(final Date date, final int amount) {
319        return add(date, Calendar.WEEK_OF_YEAR, amount);
320    }
321
322    /**
323     * Adds a number of years to a date returning a new object.
324     * The original {@link Date} is unchanged.
325     *
326     * @param date  The date, not null.
327     * @param amount  The amount to add, may be negative.
328     * @return The new {@link Date} with the amount added.
329     * @throws NullPointerException Thrown if the date is null.
330     */
331    public static Date addYears(final Date date, final int amount) {
332        return add(date, Calendar.YEAR, amount);
333    }
334
335    /**
336     * Gets a date ceiling, leaving the field specified as the most
337     * significant field.
338     *
339     * <p>
340     * For example, if you had the date-time of 28 Mar 2002
341     * 13:45:01.231, if you passed with HOUR, it would return 28 Mar
342     * 2002 14:00:00.000.  If this was passed with MONTH, it would
343     * return 1 Apr 2002 0:00:00.000.
344     * </p>
345     *
346     * @param calendar  The date to work with, not null.
347     * @param field  The field from {@link Calendar} or {@code SEMI_MONTH}.
348     * @return The different ceil date, not null.
349     * @throws NullPointerException Thrown if the date is {@code null}.
350     * @throws ArithmeticException Thrown if the year is over 280 million.
351     * @since 2.5
352     */
353    public static Calendar ceiling(final Calendar calendar, final int field) {
354        Objects.requireNonNull(calendar, "calendar");
355        return modify((Calendar) calendar.clone(), field, ModifyType.CEILING);
356    }
357
358    /**
359     * Gets a date ceiling, leaving the field specified as the most
360     * significant field.
361     *
362     * <p>
363     * For example, if you had the date-time of 28 Mar 2002
364     * 13:45:01.231, if you passed with HOUR, it would return 28 Mar
365     * 2002 14:00:00.000.  If this was passed with MONTH, it would
366     * return 1 Apr 2002 0:00:00.000.
367     * </p>
368     *
369     * @param date  The date to work with, not null.
370     * @param field  The field from {@link Calendar} or {@code SEMI_MONTH}.
371     * @return The different ceil date, not null.
372     * @throws NullPointerException Thrown if the date is {@code null}.
373     * @throws ArithmeticException Thrown if the year is over 280 million.
374     * @since 2.5
375     */
376    public static Date ceiling(final Date date, final int field) {
377        return modify(toCalendar(date), field, ModifyType.CEILING).getTime();
378    }
379
380    /**
381     * Gets a date ceiling, leaving the field specified as the most
382     * significant field.
383     *
384     * <p>
385     * For example, if you had the date-time of 28 Mar 2002
386     * 13:45:01.231, if you passed with HOUR, it would return 28 Mar
387     * 2002 14:00:00.000.  If this was passed with MONTH, it would
388     * return 1 Apr 2002 0:00:00.000.
389     * </p>
390     *
391     * @param date  The date to work with, either {@link Date} or {@link Calendar}, not null.
392     * @param field  The field from {@link Calendar} or {@code SEMI_MONTH}.
393     * @return The different ceil date, not null.
394     * @throws NullPointerException Thrown if the date is {@code null}.
395     * @throws ClassCastException Thrown if the object type is not a {@link Date} or {@link Calendar}.
396     * @throws ArithmeticException Thrown if the year is over 280 million.
397     * @since 2.5
398     */
399    public static Date ceiling(final Object date, final int field) {
400        Objects.requireNonNull(date, "date");
401        if (date instanceof Date) {
402            return ceiling((Date) date, field);
403        }
404        if (date instanceof Calendar) {
405            return ceiling((Calendar) date, field).getTime();
406        }
407        throw new ClassCastException("Could not find ceiling of for type: " + date.getClass());
408    }
409
410    /**
411     * Gets a Calendar fragment for any unit.
412     *
413     * @param calendar The calendar to work with, not null.
414     * @param fragment The Calendar field part of calendar to calculate.
415     * @param unit     The time unit.
416     * @return number of units within the fragment of the calendar.
417     * @throws NullPointerException Thrown if the date is {@code null} or fragment is not supported.
418     * @since 2.4
419     */
420    private static long getFragment(final Calendar calendar, final int fragment, final TimeUnit unit) {
421        Objects.requireNonNull(calendar, "calendar");
422        long result = 0;
423        final int offset = unit == TimeUnit.DAYS ? 0 : 1;
424
425        // Fragments bigger than a day require a breakdown to days
426        switch (fragment) {
427            case Calendar.YEAR:
428                result += unit.convert(calendar.get(Calendar.DAY_OF_YEAR) - offset, TimeUnit.DAYS);
429                break;
430            case Calendar.MONTH:
431                result += unit.convert(calendar.get(Calendar.DAY_OF_MONTH) - offset, TimeUnit.DAYS);
432                break;
433            default:
434                break;
435        }
436
437        switch (fragment) {
438            // Number of days already calculated for these cases
439            case Calendar.YEAR:
440            case Calendar.MONTH:
441
442            // The rest of the valid cases
443            case Calendar.DAY_OF_YEAR:
444            case Calendar.DATE:
445                result += unit.convert(calendar.get(Calendar.HOUR_OF_DAY), TimeUnit.HOURS);
446                // falls-through
447            case Calendar.HOUR_OF_DAY:
448                result += unit.convert(calendar.get(Calendar.MINUTE), TimeUnit.MINUTES);
449                // falls-through
450            case Calendar.MINUTE:
451                result += unit.convert(calendar.get(Calendar.SECOND), TimeUnit.SECONDS);
452                // falls-through
453            case Calendar.SECOND:
454                result += unit.convert(calendar.get(Calendar.MILLISECOND), TimeUnit.MILLISECONDS);
455                break;
456            case Calendar.MILLISECOND: break; //never useful
457                default: throw new IllegalArgumentException("The fragment " + fragment + " is not supported");
458        }
459        return result;
460    }
461
462    /**
463     * Gets a Date fragment for any unit.
464     *
465     * @param date The date to work with, not null.
466     * @param fragment The Calendar field part of date to calculate.
467     * @param unit The time unit.
468     * @return number of units within the fragment of the date.
469     * @throws NullPointerException Thrown if the date is {@code null}.
470     * @throws IllegalArgumentException Thrown if fragment is not supported.
471     * @since 2.4
472     */
473    private static long getFragment(final Date date, final int fragment, final TimeUnit unit) {
474        validateDateNotNull(date);
475        final Calendar calendar = Calendar.getInstance();
476        calendar.setTime(date);
477        return getFragment(calendar, fragment, unit);
478    }
479
480    /**
481     * Gets the number of days within the
482     * fragment. All datefields greater than the fragment will be ignored.
483     *
484     * <p>
485     * Asking the days of any date will only return the number of days
486     * of the current month (resulting in a number between 1 and 31). This
487     * method will retrieve the number of days for any fragment.
488     * For example, if you want to calculate the number of days past this year,
489     * your fragment is Calendar.YEAR. The result will be all days of the
490     * past month(s).
491     * </p>
492     *
493     * <p>
494     * Valid fragments are: Calendar.YEAR, Calendar.MONTH, both
495     * Calendar.DAY_OF_YEAR and Calendar.DATE, Calendar.HOUR_OF_DAY,
496     * Calendar.MINUTE, Calendar.SECOND and Calendar.MILLISECOND
497     * A fragment less than or equal to a DAY field will return 0.
498     * </p>
499     *
500     * <ul>
501     *  <li>January 28, 2008 with Calendar.MONTH as fragment will return 28
502     *   (equivalent to calendar.get(Calendar.DAY_OF_MONTH))</li>
503     *  <li>February 28, 2008 with Calendar.MONTH as fragment will return 28
504     *   (equivalent to calendar.get(Calendar.DAY_OF_MONTH))</li>
505     *  <li>January 28, 2008 with Calendar.YEAR as fragment will return 28
506     *   (equivalent to calendar.get(Calendar.DAY_OF_YEAR))</li>
507     *  <li>February 28, 2008 with Calendar.YEAR as fragment will return 59
508     *   (equivalent to calendar.get(Calendar.DAY_OF_YEAR))</li>
509     *  <li>January 28, 2008 with Calendar.MILLISECOND as fragment will return 0
510     *   (a millisecond cannot be split in days)</li>
511     * </ul>
512     *
513     * @param calendar The calendar to work with, not null.
514     * @param fragment The {@link Calendar} field part of calendar to calculate.
515     * @return number of days within the fragment of date.
516     * @throws NullPointerException Thrown if the date is {@code null} or
517     * fragment is not supported.
518     * @since 2.4
519     */
520    public static long getFragmentInDays(final Calendar calendar, final int fragment) {
521        return getFragment(calendar, fragment, TimeUnit.DAYS);
522    }
523
524    /**
525     * Gets the number of days within the
526     * fragment. All date fields greater than the fragment will be ignored.
527     *
528     * <p>
529     * Asking the days of any date will only return the number of days
530     * of the current month (resulting in a number between 1 and 31). This
531     * method will retrieve the number of days for any fragment.
532     * For example, if you want to calculate the number of days past this year,
533     * your fragment is Calendar.YEAR. The result will be all days of the
534     * past month(s).
535     * </p>
536     *
537     * <p>
538     * Valid fragments are: Calendar.YEAR, Calendar.MONTH, both
539     * Calendar.DAY_OF_YEAR and Calendar.DATE, Calendar.HOUR_OF_DAY,
540     * Calendar.MINUTE, Calendar.SECOND and Calendar.MILLISECOND
541     * A fragment less than or equal to a DAY field will return 0.
542     * </p>
543     *
544     * <ul>
545     *  <li>January 28, 2008 with Calendar.MONTH as fragment will return 28
546     *   (equivalent to deprecated date.getDay())</li>
547     *  <li>February 28, 2008 with Calendar.MONTH as fragment will return 28
548     *   (equivalent to deprecated date.getDay())</li>
549     *  <li>January 28, 2008 with Calendar.YEAR as fragment will return 28</li>
550     *  <li>February 28, 2008 with Calendar.YEAR as fragment will return 59</li>
551     *  <li>January 28, 2008 with Calendar.MILLISECOND as fragment will return 0
552     *   (a millisecond cannot be split in days)</li>
553     * </ul>
554     *
555     * @param date The date to work with, not null.
556     * @param fragment The {@link Calendar} field part of date to calculate.
557     * @return number of days  within the fragment of date.
558     * @throws NullPointerException Thrown if the date is {@code null}.
559     * @throws IllegalArgumentException Thrown if the fragment is not supported.
560     * @since 2.4
561     */
562    public static long getFragmentInDays(final Date date, final int fragment) {
563        return getFragment(date, fragment, TimeUnit.DAYS);
564    }
565
566    /**
567     * Gets the number of hours within the
568     * fragment. All date fields greater than the fragment will be ignored.
569     *
570     * <p>
571     * Asking the hours of any date will only return the number of hours
572     * of the current day (resulting in a number between 0 and 23). This
573     * method will retrieve the number of hours for any fragment.
574     * For example, if you want to calculate the number of hours past this month,
575     * your fragment is Calendar.MONTH. The result will be all hours of the
576     * past day(s).
577     * </p>
578     *
579     * <p>
580     * Valid fragments are: Calendar.YEAR, Calendar.MONTH, both
581     * Calendar.DAY_OF_YEAR and Calendar.DATE, Calendar.HOUR_OF_DAY,
582     * Calendar.MINUTE, Calendar.SECOND and Calendar.MILLISECOND
583     * A fragment less than or equal to a HOUR field will return 0.
584     * </p>
585     *
586     * <ul>
587     *  <li>January 1, 2008 7:15:10.538 with Calendar.DAY_OF_YEAR as fragment will return 7
588     *   (equivalent to calendar.get(Calendar.HOUR_OF_DAY))</li>
589     *  <li>January 6, 2008 7:15:10.538 with Calendar.DAY_OF_YEAR as fragment will return 7
590     *   (equivalent to calendar.get(Calendar.HOUR_OF_DAY))</li>
591     *  <li>January 1, 2008 7:15:10.538 with Calendar.MONTH as fragment will return 7</li>
592     *  <li>January 6, 2008 7:15:10.538 with Calendar.MONTH as fragment will return 127 (5*24 + 7)</li>
593     *  <li>January 16, 2008 7:15:10.538 with Calendar.MILLISECOND as fragment will return 0
594     *   (a millisecond cannot be split in hours)</li>
595     * </ul>
596     *
597     * @param calendar The calendar to work with, not null.
598     * @param fragment The {@link Calendar} field part of calendar to calculate.
599     * @return number of hours within the fragment of date.
600     * @throws NullPointerException Thrown if the date is {@code null} or
601     * fragment is not supported.
602     * @since 2.4
603     */
604    public static long getFragmentInHours(final Calendar calendar, final int fragment) {
605        return getFragment(calendar, fragment, TimeUnit.HOURS);
606    }
607
608    /**
609     * Gets the number of hours within the
610     * fragment. All date fields greater than the fragment will be ignored.
611     *
612     * <p>
613     * Asking the hours of any date will only return the number of hours
614     * of the current day (resulting in a number between 0 and 23). This
615     * method will retrieve the number of hours for any fragment.
616     * For example, if you want to calculate the number of hours past this month,
617     * your fragment is Calendar.MONTH. The result will be all hours of the
618     * past day(s).
619     * </p>
620     *
621     * <p>
622     * Valid fragments are: Calendar.YEAR, Calendar.MONTH, both
623     * Calendar.DAY_OF_YEAR and Calendar.DATE, Calendar.HOUR_OF_DAY,
624     * Calendar.MINUTE, Calendar.SECOND and Calendar.MILLISECOND
625     * A fragment less than or equal to a HOUR field will return 0.
626     * </p>
627     *
628     * <ul>
629     *  <li>January 1, 2008 7:15:10.538 with Calendar.DAY_OF_YEAR as fragment will return 7
630     *   (equivalent to deprecated date.getHours())</li>
631     *  <li>January 6, 2008 7:15:10.538 with Calendar.DAY_OF_YEAR as fragment will return 7
632     *   (equivalent to deprecated date.getHours())</li>
633     *  <li>January 1, 2008 7:15:10.538 with Calendar.MONTH as fragment will return 7</li>
634     *  <li>January 6, 2008 7:15:10.538 with Calendar.MONTH as fragment will return 127 (5*24 + 7)</li>
635     *  <li>January 16, 2008 7:15:10.538 with Calendar.MILLISECOND as fragment will return 0
636     *   (a millisecond cannot be split in hours)</li>
637     * </ul>
638     *
639     * @param date The date to work with, not null.
640     * @param fragment The {@link Calendar} field part of date to calculate.
641     * @return number of hours within the fragment of date.
642     * @throws NullPointerException Thrown if the date is {@code null}.
643     * @throws IllegalArgumentException Thrown if the fragment is not supported.
644     * @since 2.4
645     */
646    public static long getFragmentInHours(final Date date, final int fragment) {
647        return getFragment(date, fragment, TimeUnit.HOURS);
648    }
649
650    /**
651     * Gets the number of milliseconds within the
652     * fragment. All date fields greater than the fragment will be ignored.
653     *
654     * <p>
655     * Asking the milliseconds of any date will only return the number of milliseconds
656     * of the current second (resulting in a number between 0 and 999). This
657     * method will retrieve the number of milliseconds for any fragment.
658     * For example, if you want to calculate the number of seconds past today,
659     * your fragment is Calendar.DATE or Calendar.DAY_OF_YEAR. The result will
660     * be all seconds of the past hour(s), minutes(s) and second(s).
661     * </p>
662     *
663     * <p>
664     * Valid fragments are: Calendar.YEAR, Calendar.MONTH, both
665     * Calendar.DAY_OF_YEAR and Calendar.DATE, Calendar.HOUR_OF_DAY,
666     * Calendar.MINUTE, Calendar.SECOND and Calendar.MILLISECOND
667     * A fragment less than or equal to a MILLISECOND field will return 0.
668     * </p>
669     *
670     * <ul>
671     *  <li>January 1, 2008 7:15:10.538 with Calendar.SECOND as fragment will return 538
672     *   (equivalent to calendar.get(Calendar.MILLISECOND))</li>
673     *  <li>January 6, 2008 7:15:10.538 with Calendar.SECOND as fragment will return 538
674     *   (equivalent to calendar.get(Calendar.MILLISECOND))</li>
675     *  <li>January 6, 2008 7:15:10.538 with Calendar.MINUTE as fragment will return 10538
676     *   (10*1000 + 538)</li>
677     *  <li>January 16, 2008 7:15:10.538 with Calendar.MILLISECOND as fragment will return 0
678     *   (a millisecond cannot be split in milliseconds)</li>
679     * </ul>
680     *
681     * @param calendar The calendar to work with, not null.
682     * @param fragment The {@link Calendar} field part of calendar to calculate.
683     * @return number of milliseconds within the fragment of date.
684     * @throws NullPointerException Thrown if the date is {@code null} or
685     * fragment is not supported.
686     * @since 2.4
687     */
688  public static long getFragmentInMilliseconds(final Calendar calendar, final int fragment) {
689    return getFragment(calendar, fragment, TimeUnit.MILLISECONDS);
690  }
691
692    /**
693     * Gets the number of milliseconds within the
694     * fragment. All date fields greater than the fragment will be ignored.
695     *
696     * <p>
697     * Asking the milliseconds of any date will only return the number of milliseconds
698     * of the current second (resulting in a number between 0 and 999). This
699     * method will retrieve the number of milliseconds for any fragment.
700     * For example, if you want to calculate the number of milliseconds past today,
701     * your fragment is Calendar.DATE or Calendar.DAY_OF_YEAR. The result will
702     * be all milliseconds of the past hour(s), minutes(s) and second(s).
703     * </p>
704     *
705     * <p>
706     * Valid fragments are: Calendar.YEAR, Calendar.MONTH, both
707     * Calendar.DAY_OF_YEAR and Calendar.DATE, Calendar.HOUR_OF_DAY,
708     * Calendar.MINUTE, Calendar.SECOND and Calendar.MILLISECOND
709     * A fragment less than or equal to a SECOND field will return 0.
710     * </p>
711     *
712     * <ul>
713     *  <li>January 1, 2008 7:15:10.538 with Calendar.SECOND as fragment will return 538</li>
714     *  <li>January 6, 2008 7:15:10.538 with Calendar.SECOND as fragment will return 538</li>
715     *  <li>January 6, 2008 7:15:10.538 with Calendar.MINUTE as fragment will return 10538 (10*1000 + 538)</li>
716     *  <li>January 16, 2008 7:15:10.538 with Calendar.MILLISECOND as fragment will return 0
717     *   (a millisecond cannot be split in milliseconds)</li>
718     * </ul>
719     *
720     * @param date The date to work with, not null.
721     * @param fragment The {@link Calendar} field part of date to calculate.
722     * @return number of milliseconds within the fragment of date.
723     * @throws NullPointerException Thrown if the date is {@code null}.
724     * @throws IllegalArgumentException Thrown if the fragment is not supported.
725     * @since 2.4
726     */
727    public static long getFragmentInMilliseconds(final Date date, final int fragment) {
728        return getFragment(date, fragment, TimeUnit.MILLISECONDS);
729    }
730
731    /**
732     * Gets the number of minutes within the
733     * fragment. All date fields greater than the fragment will be ignored.
734     *
735     * <p>
736     * Asking the minutes of any date will only return the number of minutes
737     * of the current hour (resulting in a number between 0 and 59). This
738     * method will retrieve the number of minutes for any fragment.
739     * For example, if you want to calculate the number of minutes past this month,
740     * your fragment is Calendar.MONTH. The result will be all minutes of the
741     * past day(s) and hour(s).
742     * </p>
743     *
744     * <p>
745     * Valid fragments are: Calendar.YEAR, Calendar.MONTH, both
746     * Calendar.DAY_OF_YEAR and Calendar.DATE, Calendar.HOUR_OF_DAY,
747     * Calendar.MINUTE, Calendar.SECOND and Calendar.MILLISECOND
748     * A fragment less than or equal to a MINUTE field will return 0.
749     * </p>
750     *
751     * <ul>
752     *  <li>January 1, 2008 7:15:10.538 with Calendar.HOUR_OF_DAY as fragment will return 15
753     *   (equivalent to calendar.get(Calendar.MINUTES))</li>
754     *  <li>January 6, 2008 7:15:10.538 with Calendar.HOUR_OF_DAY as fragment will return 15
755     *   (equivalent to calendar.get(Calendar.MINUTES))</li>
756     *  <li>January 1, 2008 7:15:10.538 with Calendar.MONTH as fragment will return 15</li>
757     *  <li>January 6, 2008 7:15:10.538 with Calendar.MONTH as fragment will return 435 (7*60 + 15)</li>
758     *  <li>January 16, 2008 7:15:10.538 with Calendar.MILLISECOND as fragment will return 0
759     *   (a millisecond cannot be split in minutes)</li>
760     * </ul>
761     *
762     * @param calendar The calendar to work with, not null.
763     * @param fragment The {@link Calendar} field part of calendar to calculate.
764     * @return number of minutes within the fragment of date.
765     * @throws NullPointerException Thrown if the date is {@code null} or
766     * fragment is not supported.
767     * @since 2.4
768     */
769    public static long getFragmentInMinutes(final Calendar calendar, final int fragment) {
770        return getFragment(calendar, fragment, TimeUnit.MINUTES);
771    }
772
773    /**
774     * Gets the number of minutes within the
775     * fragment. All date fields greater than the fragment will be ignored.
776     *
777     * <p>
778     * Asking the minutes of any date will only return the number of minutes
779     * of the current hour (resulting in a number between 0 and 59). This
780     * method will retrieve the number of minutes for any fragment.
781     * For example, if you want to calculate the number of minutes past this month,
782     * your fragment is Calendar.MONTH. The result will be all minutes of the
783     * past day(s) and hour(s).
784     * </p>
785     *
786     * <p>
787     * Valid fragments are: Calendar.YEAR, Calendar.MONTH, both
788     * Calendar.DAY_OF_YEAR and Calendar.DATE, Calendar.HOUR_OF_DAY,
789     * Calendar.MINUTE, Calendar.SECOND and Calendar.MILLISECOND
790     * A fragment less than or equal to a MINUTE field will return 0.
791     * </p>
792     *
793     * <ul>
794     *  <li>January 1, 2008 7:15:10.538 with Calendar.HOUR_OF_DAY as fragment will return 15
795     *   (equivalent to deprecated date.getMinutes())</li>
796     *  <li>January 6, 2008 7:15:10.538 with Calendar.HOUR_OF_DAY as fragment will return 15
797     *   (equivalent to deprecated date.getMinutes())</li>
798     *  <li>January 1, 2008 7:15:10.538 with Calendar.MONTH as fragment will return 15</li>
799     *  <li>January 6, 2008 7:15:10.538 with Calendar.MONTH as fragment will return 435 (7*60 + 15)</li>
800     *  <li>January 16, 2008 7:15:10.538 with Calendar.MILLISECOND as fragment will return 0
801     *   (a millisecond cannot be split in minutes)</li>
802     * </ul>
803     *
804     * @param date The date to work with, not null.
805     * @param fragment The {@link Calendar} field part of date to calculate.
806     * @return number of minutes within the fragment of date.
807     * @throws NullPointerException Thrown if the date is {@code null}.
808     * @throws IllegalArgumentException Thrown if the fragment is not supported.
809     * @since 2.4
810     */
811    public static long getFragmentInMinutes(final Date date, final int fragment) {
812        return getFragment(date, fragment, TimeUnit.MINUTES);
813    }
814
815    /**
816     * Gets the number of seconds within the
817     * fragment. All date fields greater than the fragment will be ignored.
818     *
819     * <p>
820     * Asking the seconds of any date will only return the number of seconds
821     * of the current minute (resulting in a number between 0 and 59). This
822     * method will retrieve the number of seconds for any fragment.
823     * For example, if you want to calculate the number of seconds past today,
824     * your fragment is Calendar.DATE or Calendar.DAY_OF_YEAR. The result will
825     * be all seconds of the past hour(s) and minutes(s).
826     * </p>
827     *
828     * <p>
829     * Valid fragments are: Calendar.YEAR, Calendar.MONTH, both
830     * Calendar.DAY_OF_YEAR and Calendar.DATE, Calendar.HOUR_OF_DAY,
831     * Calendar.MINUTE, Calendar.SECOND and Calendar.MILLISECOND
832     * A fragment less than or equal to a SECOND field will return 0.
833     * </p>
834     *
835     * <ul>
836     *  <li>January 1, 2008 7:15:10.538 with Calendar.MINUTE as fragment will return 10
837     *   (equivalent to calendar.get(Calendar.SECOND))</li>
838     *  <li>January 6, 2008 7:15:10.538 with Calendar.MINUTE as fragment will return 10
839     *   (equivalent to calendar.get(Calendar.SECOND))</li>
840     *  <li>January 6, 2008 7:15:10.538 with Calendar.DAY_OF_YEAR as fragment will return 26110
841     *   (7*3600 + 15*60 + 10)</li>
842     *  <li>January 16, 2008 7:15:10.538 with Calendar.MILLISECOND as fragment will return 0
843     *   (a millisecond cannot be split in seconds)</li>
844     * </ul>
845     *
846     * @param calendar The calendar to work with, not null.
847     * @param fragment The {@link Calendar} field part of calendar to calculate.
848     * @return number of seconds within the fragment of date.
849     * @throws NullPointerException Thrown if the date is {@code null} or
850     * fragment is not supported.
851     * @since 2.4
852     */
853    public static long getFragmentInSeconds(final Calendar calendar, final int fragment) {
854        return getFragment(calendar, fragment, TimeUnit.SECONDS);
855    }
856
857    /**
858     * Gets the number of seconds within the
859     * fragment. All date fields greater than the fragment will be ignored.
860     *
861     * <p>
862     * Asking the seconds of any date will only return the number of seconds
863     * of the current minute (resulting in a number between 0 and 59). This
864     * method will retrieve the number of seconds for any fragment.
865     * For example, if you want to calculate the number of seconds past today,
866     * your fragment is Calendar.DATE or Calendar.DAY_OF_YEAR. The result will
867     * be all seconds of the past hour(s) and minutes(s).
868     * </p>
869     *
870     * <p>
871     * Valid fragments are: Calendar.YEAR, Calendar.MONTH, both
872     * Calendar.DAY_OF_YEAR and Calendar.DATE, Calendar.HOUR_OF_DAY,
873     * Calendar.MINUTE, Calendar.SECOND and Calendar.MILLISECOND
874     * A fragment less than or equal to a SECOND field will return 0.
875     * </p>
876     *
877     * <ul>
878     *  <li>January 1, 2008 7:15:10.538 with Calendar.MINUTE as fragment will return 10
879     *   (equivalent to deprecated date.getSeconds())</li>
880     *  <li>January 6, 2008 7:15:10.538 with Calendar.MINUTE as fragment will return 10
881     *   (equivalent to deprecated date.getSeconds())</li>
882     *  <li>January 6, 2008 7:15:10.538 with Calendar.DAY_OF_YEAR as fragment will return 26110
883     *   (7*3600 + 15*60 + 10)</li>
884     *  <li>January 16, 2008 7:15:10.538 with Calendar.MILLISECOND as fragment will return 0
885     *   (a millisecond cannot be split in seconds)</li>
886     * </ul>
887     *
888     * @param date The date to work with, not null.
889     * @param fragment The {@link Calendar} field part of date to calculate.
890     * @return number of seconds within the fragment of date.
891     * @throws NullPointerException Thrown if the date is {@code null}.
892     * @throws IllegalArgumentException Thrown if the fragment is not supported.
893     * @since 2.4
894     */
895    public static long getFragmentInSeconds(final Date date, final int fragment) {
896        return getFragment(date, fragment, TimeUnit.SECONDS);
897    }
898
899    /**
900     * Tests whether two calendar objects are on the same day ignoring time.
901     *
902     * <p>
903     * 28 Mar 2002 13:45 and 28 Mar 2002 06:01 would return true.
904     * 28 Mar 2002 13:45 and 12 Mar 2002 13:45 would return false.
905     * </p>
906     *
907     * @param cal1  The first calendar, not altered, not null.
908     * @param cal2  The second calendar, not altered, not null.
909     * @return true if they represent the same day.
910     * @throws NullPointerException Thrown if either calendar is {@code null}.
911     * @since 2.1
912     */
913    public static boolean isSameDay(final Calendar cal1, final Calendar cal2) {
914        Objects.requireNonNull(cal1, "cal1");
915        Objects.requireNonNull(cal2, "cal2");
916        return cal1.get(Calendar.ERA) == cal2.get(Calendar.ERA) &&
917                cal1.get(Calendar.YEAR) == cal2.get(Calendar.YEAR) &&
918                cal1.get(Calendar.DAY_OF_YEAR) == cal2.get(Calendar.DAY_OF_YEAR);
919    }
920
921    /**
922     * Tests whether two date objects are on the same day ignoring time.
923     *
924     * <p>
925     * 28 Mar 2002 13:45 and 28 Mar 2002 06:01 would return true.
926     * 28 Mar 2002 13:45 and 12 Mar 2002 13:45 would return false.
927     * </p>
928     *
929     * @param date1  The first date, not altered, not null.
930     * @param date2  The second date, not altered, not null.
931     * @return true if they represent the same day.
932     * @throws NullPointerException Thrown if either date is {@code null}.
933     * @since 2.1
934     */
935    public static boolean isSameDay(final Date date1, final Date date2) {
936        return isSameDay(toCalendar(date1), toCalendar(date2));
937    }
938
939    /**
940     * Tests whether two calendar objects represent the same instant in time.
941     *
942     * <p>
943     * This method compares the long millisecond time of the two objects.
944     * </p>
945     *
946     * @param cal1  The first calendar, not altered, not null.
947     * @param cal2  The second calendar, not altered, not null.
948     * @return true if they represent the same millisecond instant.
949     * @throws NullPointerException Thrown if either date is {@code null}.
950     * @since 2.1
951     */
952    public static boolean isSameInstant(final Calendar cal1, final Calendar cal2) {
953        Objects.requireNonNull(cal1, "cal1");
954        Objects.requireNonNull(cal2, "cal2");
955        return cal1.getTime().getTime() == cal2.getTime().getTime();
956    }
957
958    /**
959     * Tests whether two date objects represent the same instant in time.
960     *
961     * <p>
962     * This method compares the long millisecond time of the two objects.
963     * </p>
964     *
965     * @param date1  The first date, not altered, not null.
966     * @param date2  The second date, not altered, not null.
967     * @return true if they represent the same millisecond instant.
968     * @throws NullPointerException Thrown if either date is {@code null}.
969     * @since 2.1
970     */
971    public static boolean isSameInstant(final Date date1, final Date date2) {
972        Objects.requireNonNull(date1, "date1");
973        Objects.requireNonNull(date2, "date2");
974        return date1.getTime() == date2.getTime();
975    }
976
977    /**
978     * Tests whether two calendar objects represent the same local time.
979     *
980     * <p>
981     * This method compares the values of the fields of the two objects.
982     * In addition, both calendars must be the same of the same type.
983     * </p>
984     *
985     * @param cal1  The first calendar, not altered, not null.
986     * @param cal2  The second calendar, not altered, not null.
987     * @return true if they represent the same millisecond instant.
988     * @throws NullPointerException Thrown if either date is {@code null}.
989     * @since 2.1
990     */
991    public static boolean isSameLocalTime(final Calendar cal1, final Calendar cal2) {
992        Objects.requireNonNull(cal1, "cal1");
993        Objects.requireNonNull(cal2, "cal2");
994        return cal1.get(Calendar.MILLISECOND) == cal2.get(Calendar.MILLISECOND) &&
995                cal1.get(Calendar.SECOND) == cal2.get(Calendar.SECOND) &&
996                cal1.get(Calendar.MINUTE) == cal2.get(Calendar.MINUTE) &&
997                cal1.get(Calendar.HOUR_OF_DAY) == cal2.get(Calendar.HOUR_OF_DAY) &&
998                cal1.get(Calendar.DAY_OF_YEAR) == cal2.get(Calendar.DAY_OF_YEAR) &&
999                cal1.get(Calendar.YEAR) == cal2.get(Calendar.YEAR) &&
1000                cal1.get(Calendar.ERA) == cal2.get(Calendar.ERA) &&
1001                cal1.getClass() == cal2.getClass();
1002    }
1003
1004    /**
1005     * Constructs an {@link Iterator} over each day in a date
1006     * range defined by a focus date and range style.
1007     *
1008     * <p>
1009     * For instance, passing Thursday, July 4, 2002 and a
1010     * {@code RANGE_MONTH_SUNDAY} will return an {@link Iterator}
1011     * that starts with Sunday, June 30, 2002 and ends with Saturday, August 3,
1012     * 2002, returning a Calendar instance for each intermediate day.
1013     * </p>
1014     *
1015     * <p>
1016     * This method provides an iterator that returns Calendar objects.
1017     * The days are progressed using {@link Calendar#add(int, int)}.
1018     * </p>
1019     *
1020     * @param calendar  The date to work with, not null.
1021     * @param rangeStyle  The style constant to use. Must be one of
1022     * {@link DateUtils#RANGE_MONTH_SUNDAY},
1023     * {@link DateUtils#RANGE_MONTH_MONDAY},
1024     * {@link DateUtils#RANGE_WEEK_SUNDAY},
1025     * {@link DateUtils#RANGE_WEEK_MONDAY},
1026     * {@link DateUtils#RANGE_WEEK_RELATIVE},
1027     * {@link DateUtils#RANGE_WEEK_CENTER}.
1028     * @return The date iterator, not null.
1029     * @throws NullPointerException Thrown if calendar is {@code null}.
1030     * @throws IllegalArgumentException Thrown if the rangeStyle is invalid.
1031     */
1032    public static Iterator<Calendar> iterator(final Calendar calendar, final int rangeStyle) {
1033        Objects.requireNonNull(calendar, "calendar");
1034        final Calendar start;
1035        final Calendar end;
1036        int startCutoff = Calendar.SUNDAY;
1037        int endCutoff = Calendar.SATURDAY;
1038        switch (rangeStyle) {
1039            case RANGE_MONTH_SUNDAY:
1040            case RANGE_MONTH_MONDAY:
1041                //Set start to the first of the month
1042                start = truncate(calendar, Calendar.MONTH);
1043                //Set end to the last of the month
1044                end = (Calendar) start.clone();
1045                end.add(Calendar.MONTH, 1);
1046                end.add(Calendar.DATE, -1);
1047                //Loop start back to the previous sunday or monday
1048                if (rangeStyle == RANGE_MONTH_MONDAY) {
1049                    startCutoff = Calendar.MONDAY;
1050                    endCutoff = Calendar.SUNDAY;
1051                }
1052                break;
1053            case RANGE_WEEK_SUNDAY:
1054            case RANGE_WEEK_MONDAY:
1055            case RANGE_WEEK_RELATIVE:
1056            case RANGE_WEEK_CENTER:
1057                //Set start and end to the current date
1058                start = truncate(calendar, Calendar.DATE);
1059                end = truncate(calendar, Calendar.DATE);
1060                switch (rangeStyle) {
1061                    case RANGE_WEEK_SUNDAY:
1062                        //already set by default
1063                        break;
1064                    case RANGE_WEEK_MONDAY:
1065                        startCutoff = Calendar.MONDAY;
1066                        endCutoff = Calendar.SUNDAY;
1067                        break;
1068                    case RANGE_WEEK_RELATIVE:
1069                        startCutoff = calendar.get(Calendar.DAY_OF_WEEK);
1070                        endCutoff = startCutoff - 1;
1071                        break;
1072                    case RANGE_WEEK_CENTER:
1073                        startCutoff = calendar.get(Calendar.DAY_OF_WEEK) - 3;
1074                        endCutoff = calendar.get(Calendar.DAY_OF_WEEK) + 3;
1075                        break;
1076                    default:
1077                        break;
1078                }
1079                break;
1080            default:
1081                throw new IllegalArgumentException("The range style " + rangeStyle + " is not valid.");
1082        }
1083        if (startCutoff < Calendar.SUNDAY) {
1084            startCutoff += 7;
1085        }
1086        if (startCutoff > Calendar.SATURDAY) {
1087            startCutoff -= 7;
1088        }
1089        if (endCutoff < Calendar.SUNDAY) {
1090            endCutoff += 7;
1091        }
1092        if (endCutoff > Calendar.SATURDAY) {
1093            endCutoff -= 7;
1094        }
1095        while (start.get(Calendar.DAY_OF_WEEK) != startCutoff) {
1096            start.add(Calendar.DATE, -1);
1097        }
1098        while (end.get(Calendar.DAY_OF_WEEK) != endCutoff) {
1099            end.add(Calendar.DATE, 1);
1100        }
1101        return new DateIterator(start, end);
1102    }
1103
1104    /**
1105     * Constructs an {@link Iterator} over each day in a date
1106     * range defined by a focus date and range style.
1107     *
1108     * <p>
1109     * For instance, passing Thursday, July 4, 2002 and a
1110     * {@code RANGE_MONTH_SUNDAY} will return an {@link Iterator}
1111     * that starts with Sunday, June 30, 2002 and ends with Saturday, August 3,
1112     * 2002, returning a Calendar instance for each intermediate day.
1113     * </p>
1114     *
1115     * <p>
1116     * This method provides an iterator that returns Calendar objects.
1117     * The days are progressed using {@link Calendar#add(int, int)}.
1118     * </p>
1119     *
1120     * @param focus  The date to work with, not null.
1121     * @param rangeStyle  The style constant to use. Must be one of
1122     * {@link DateUtils#RANGE_MONTH_SUNDAY},
1123     * {@link DateUtils#RANGE_MONTH_MONDAY},
1124     * {@link DateUtils#RANGE_WEEK_SUNDAY},
1125     * {@link DateUtils#RANGE_WEEK_MONDAY},
1126     * {@link DateUtils#RANGE_WEEK_RELATIVE},
1127     * {@link DateUtils#RANGE_WEEK_CENTER}.
1128     * @return The date iterator, not null, not null.
1129     * @throws NullPointerException Thrown if the date is {@code null}.
1130     * @throws IllegalArgumentException Thrown if the rangeStyle is invalid.
1131     */
1132    public static Iterator<Calendar> iterator(final Date focus, final int rangeStyle) {
1133        return iterator(toCalendar(focus), rangeStyle);
1134    }
1135
1136    /**
1137     * Constructs an {@link Iterator} over each day in a date
1138     * range defined by a focus date and range style.
1139     *
1140     * <p>
1141     * For instance, passing Thursday, July 4, 2002 and a
1142     * {@code RANGE_MONTH_SUNDAY} will return an {@link Iterator}
1143     * that starts with Sunday, June 30, 2002 and ends with Saturday, August 3,
1144     * 2002, returning a Calendar instance for each intermediate day.
1145     * </p>
1146     *
1147     * @param calendar  The date to work with, either {@link Date} or {@link Calendar}, not null.
1148     * @param rangeStyle  The style constant to use. Must be one of the range
1149     * styles listed for the {@link #iterator(Calendar, int)} method.
1150     * @return The date iterator, not null.
1151     * @throws NullPointerException Thrown if the date is {@code null}.
1152     * @throws ClassCastException Thrown if the object type is not a {@link Date} or {@link Calendar}.
1153     */
1154    public static Iterator<?> iterator(final Object calendar, final int rangeStyle) {
1155        Objects.requireNonNull(calendar, "calendar");
1156        if (calendar instanceof Date) {
1157            return iterator((Date) calendar, rangeStyle);
1158        }
1159        if (calendar instanceof Calendar) {
1160            return iterator((Calendar) calendar, rangeStyle);
1161        }
1162        throw new ClassCastException("Could not iterate based on " + calendar);
1163    }
1164
1165    /**
1166     * Internal calculation method.
1167     *
1168     * @param val  The calendar, not null.
1169     * @param field  The field constant.
1170     * @param modType  type to truncate, round or ceiling.
1171     * @return The given calendar.
1172     * @throws ArithmeticException Thrown if the year is over 280 million.
1173     */
1174    private static Calendar modify(final Calendar val, final int field, final ModifyType modType) {
1175        if (val.get(Calendar.YEAR) > 280000000) {
1176            throw new ArithmeticException("Calendar value too large for accurate calculations");
1177        }
1178        if (field == Calendar.MILLISECOND) {
1179            return val;
1180        }
1181        final long originalMillis = val.getTimeInMillis();
1182        // Fix for LANG-59 START
1183        // see https://issues.apache.org/jira/browse/LANG-59
1184        //
1185        // Manually truncate milliseconds, seconds and minutes, rather than using
1186        // Calendar methods.
1187        final Date date = val.getTime();
1188        long time = date.getTime();
1189        boolean done = false;
1190        // truncate milliseconds
1191        final int millisecs = val.get(Calendar.MILLISECOND);
1192        if (ModifyType.TRUNCATE == modType || millisecs < 500) {
1193            time -= millisecs;
1194        }
1195        if (field == Calendar.SECOND) {
1196            done = true;
1197        }
1198        // truncate seconds
1199        final int seconds = val.get(Calendar.SECOND);
1200        if (!done && (ModifyType.TRUNCATE == modType || seconds < 30)) {
1201            time = time - seconds * MILLIS_PER_SECOND;
1202        }
1203        if (field == Calendar.MINUTE) {
1204            done = true;
1205        }
1206        // truncate minutes
1207        final int minutes = val.get(Calendar.MINUTE);
1208        if (!done && (ModifyType.TRUNCATE == modType || minutes < 30)) {
1209            time = time - minutes * MILLIS_PER_MINUTE;
1210        }
1211        // reset time
1212        if (date.getTime() != time) {
1213            date.setTime(time);
1214            val.setTime(date);
1215        }
1216        // Fix for LANG-59 END
1217        boolean roundUp = false;
1218        for (final int[] aField : fields) {
1219            for (final int element : aField) {
1220                if (element == field) {
1221                    // This is our field... we stop looping
1222                    if (modType == ModifyType.CEILING && originalMillis != val.getTimeInMillis() || modType == ModifyType.ROUND && roundUp) {
1223                        if (field == SEMI_MONTH) {
1224                            // This is a special case that's hard to generalize
1225                            // If the date is 1, we round up to 16, otherwise
1226                            // we subtract 15 days and add 1 month
1227                            if (val.get(Calendar.DATE) == 1) {
1228                                val.add(Calendar.DATE, 15);
1229                            } else {
1230                                val.add(Calendar.DATE, -15);
1231                                val.add(Calendar.MONTH, 1);
1232                            }
1233                            // Fix for LANG-440 START
1234                        } else if (field == Calendar.AM_PM) {
1235                            // This is a special case
1236                            // If the time is 0, we round up to 12, otherwise
1237                            // we subtract 12 hours and add 1 day
1238                            if (val.get(Calendar.HOUR_OF_DAY) == 0) {
1239                                val.add(Calendar.HOUR_OF_DAY, 12);
1240                            } else {
1241                                val.add(Calendar.HOUR_OF_DAY, -12);
1242                                val.add(Calendar.DATE, 1);
1243                            }
1244                            // Fix for LANG-440 END
1245                        } else {
1246                            // We need at add one to this field since the
1247                            // last number causes us to round up
1248                            val.add(aField[0], 1);
1249                        }
1250                    }
1251                    return val;
1252                }
1253            }
1254            // We have various fields that are not easy roundings
1255            int offset = 0;
1256            boolean offsetSet = false;
1257            // These are special types of fields that require different rounding rules
1258            switch (field) {
1259            case SEMI_MONTH:
1260                if (aField[0] == Calendar.DATE) {
1261                    // If we're going to drop the DATE field's value,
1262                    // we want to do this our own way.
1263                    // We need to subtract 1 since the date has a minimum of 1
1264                    offset = val.get(Calendar.DATE) - 1;
1265                    // If we're above 15 days adjustment, that means we're in the
1266                    // bottom half of the month and should stay accordingly.
1267                    if (offset >= 15) {
1268                        offset -= 15;
1269                    }
1270                    // Record whether we're in the top or bottom half of that range
1271                    roundUp = offset > 7;
1272                    offsetSet = true;
1273                }
1274                break;
1275            case Calendar.AM_PM:
1276                if (aField[0] == Calendar.HOUR_OF_DAY) {
1277                    // If we're going to drop the HOUR field's value,
1278                    // we want to do this our own way.
1279                    offset = val.get(Calendar.HOUR_OF_DAY);
1280                    if (offset >= 12) {
1281                        offset -= 12;
1282                    }
1283                    roundUp = offset >= 6;
1284                    offsetSet = true;
1285                }
1286                break;
1287            default:
1288                break;
1289            }
1290            if (!offsetSet) {
1291                final int min = val.getActualMinimum(aField[0]);
1292                final int max = val.getActualMaximum(aField[0]);
1293                // Calculate the offset from the minimum allowed value
1294                offset = val.get(aField[0]) - min;
1295                // Set roundUp if this is more than halfway between the minimum and maximum
1296                roundUp = offset > (max - min) / 2;
1297            }
1298            // We need to remove this field
1299            if (offset != 0) {
1300                val.set(aField[0], val.get(aField[0]) - offset);
1301            }
1302        }
1303        throw new IllegalArgumentException("The field " + field + " is not supported");
1304    }
1305
1306    /**
1307     * Parses a string representing a date by trying a variety of different parsers,
1308     * using the default date format symbols for the given locale.
1309     *
1310     * <p>
1311     * The parse will try each parse pattern in turn.
1312     * A parse is only deemed successful if it parses the whole of the input string.
1313     * If no parse patterns match, a ParseException is thrown.
1314     * </p>
1315     * The parser will be lenient toward the parsed date.
1316     *
1317     * @param str  The date to parse, not null.
1318     * @param locale The locale whose date format symbols should be used. If {@code null},
1319     * the system locale is used (as per {@link #parseDate(String, String...)}).
1320     * @param parsePatterns  The date format patterns to use, see SimpleDateFormat, not null.
1321     * @return The parsed date.
1322     * @throws NullPointerException Thrown if the date string or pattern array is null.
1323     * @throws ParseException Thrown if none of the date patterns were suitable (or there were none).
1324     * @since 3.2
1325     */
1326    public static Date parseDate(final String str, final Locale locale, final String... parsePatterns) throws ParseException {
1327        return parseDateWithLeniency(str, locale, parsePatterns, true);
1328    }
1329
1330    /**
1331     * Parses a string representing a date by trying a variety of different parsers.
1332     *
1333     * <p>
1334     * The parse will try each parse pattern in turn.
1335     * A parse is only deemed successful if it parses the whole of the input string.
1336     * If no parse patterns match, a ParseException is thrown.
1337     * </p>
1338     * The parser will be lenient toward the parsed date.
1339     *
1340     * @param str  The date to parse, not null.
1341     * @param parsePatterns  The date format patterns to use, see SimpleDateFormat, not null.
1342     * @return The parsed date.
1343     * @throws NullPointerException Thrown if the date string or pattern array is null.
1344     * @throws ParseException Thrown if none of the date patterns were suitable (or there were none).
1345     */
1346    public static Date parseDate(final String str, final String... parsePatterns) throws ParseException {
1347        return parseDate(str, null, parsePatterns);
1348    }
1349
1350    /**
1351     * Parses a string representing a date by trying a variety of different parsers,
1352     * using the default date format symbols for the given locale.
1353     *
1354     * <p>
1355     * The parse will try each parse pattern in turn.
1356     * A parse is only deemed successful if it parses the whole of the input string.
1357     * If no parse patterns match, a ParseException is thrown.
1358     * </p>
1359     * The parser parses strictly - it does not allow for dates such as "February 942, 1996".
1360     *
1361     * @param str  The date to parse, not null.
1362     * @param locale The locale whose date format symbols should be used. If {@code null},
1363     * the system locale is used (as per {@link #parseDateStrictly(String, String...)}).
1364     * @param parsePatterns  The date format patterns to use, see SimpleDateFormat, not null.
1365     * @return The parsed date.
1366     * @throws NullPointerException Thrown if the date string or pattern array is null.
1367     * @throws ParseException Thrown if none of the date patterns were suitable.
1368     * @since 3.2
1369     */
1370    public static Date parseDateStrictly(final String str, final Locale locale, final String... parsePatterns) throws ParseException {
1371        return parseDateWithLeniency(str, locale, parsePatterns, false);
1372    }
1373
1374    /**
1375     * Parses a string representing a date by trying a variety of different parsers.
1376     *
1377     * <p>
1378     * The parse will try each parse pattern in turn.
1379     * A parse is only deemed successful if it parses the whole of the input string.
1380     * If no parse patterns match, a ParseException is thrown.
1381     * </p>
1382     * The parser parses strictly - it does not allow for dates such as "February 942, 1996".
1383     *
1384     * @param str  The date to parse, not null.
1385     * @param parsePatterns  The date format patterns to use, see SimpleDateFormat, not null.
1386     * @return The parsed date.
1387     * @throws NullPointerException Thrown if the date string or pattern array is null.
1388     * @throws ParseException Thrown if none of the date patterns were suitable.
1389     * @since 2.5
1390     */
1391    public static Date parseDateStrictly(final String str, final String... parsePatterns) throws ParseException {
1392        return parseDateStrictly(str, null, parsePatterns);
1393    }
1394
1395    /**
1396     * Parses a string representing a date by trying a variety of different parsers.
1397     *
1398     * <p>
1399     * The parse will try each parse pattern in turn.
1400     * A parse is only deemed successful if it parses the whole of the input string.
1401     * If no parse patterns match, a ParseException is thrown.
1402     * </p>
1403     *
1404     * @param dateStr  The date to parse, not null.
1405     * @param locale The locale to use when interpreting the pattern, can be null in which
1406     * case the default system locale is used.
1407     * @param parsePatterns  The date format patterns to use, see SimpleDateFormat, not null.
1408     * @param lenient Specify whether or not date/time parsing is to be lenient.
1409     * @return The parsed date.
1410     * @throws NullPointerException Thrown if the date string or pattern array is null.
1411     * @throws ParseException Thrown if none of the date patterns were suitable.
1412     * @see java.util.Calendar#isLenient()
1413     */
1414    private static Date parseDateWithLeniency(final String dateStr, final Locale locale, final String[] parsePatterns,
1415        final boolean lenient) throws ParseException {
1416        Objects.requireNonNull(dateStr, "str");
1417        Objects.requireNonNull(parsePatterns, "parsePatterns");
1418
1419        final TimeZone tz = TimeZone.getDefault();
1420        final Locale lcl = LocaleUtils.toLocale(locale);
1421        final ParsePosition pos = new ParsePosition(0);
1422        final Calendar calendar = Calendar.getInstance(tz, lcl);
1423        calendar.setLenient(lenient);
1424
1425        for (final String parsePattern : parsePatterns) {
1426            final FastDateParser fdp = new FastDateParser(parsePattern, tz, lcl);
1427            calendar.clear();
1428            // Calendar.clear() does not reset the time zone. A previous TZ-aware pattern (for example, "z", "zz", "Z", "X..") that partially parsed could have
1429            // mutated the calendar's time zone via Calendar.setTimeZone(...) before failing on the remaining tokens. Restore the caller-supplied zone for each
1430            // attempt so the outcome of pattern N+1 does not depend on the partial state left by pattern N.
1431            calendar.setTimeZone(tz);
1432            try {
1433                if (fdp.parse(dateStr, pos, calendar) && pos.getIndex() == dateStr.length()) {
1434                    return calendar.getTime();
1435                }
1436            } catch (final IllegalArgumentException ignored) {
1437                // leniency is preventing calendar from being set
1438            }
1439            pos.setIndex(0);
1440        }
1441        throw new ParseException("Unable to parse the date: " + dateStr, -1);
1442    }
1443
1444    /**
1445     * Rounds a date, leaving the field specified as the most
1446     * significant field.
1447     *
1448     * <p>
1449     * For example, if you had the date-time of 28 Mar 2002
1450     * 13:45:01.231, if this was passed with HOUR, it would return
1451     * 28 Mar 2002 14:00:00.000. If this was passed with MONTH, it
1452     * would return 1 April 2002 0:00:00.000.
1453     * </p>
1454     *
1455     * <p>
1456     * For a date in a time zone that handles the change to daylight
1457     * saving time, rounding to Calendar.HOUR_OF_DAY will behave as follows.
1458     * Suppose daylight saving time begins at 02:00 on March 30. Rounding a
1459     * date that crosses this time would produce the following values:
1460     * </p>
1461     * <ul>
1462     * <li>March 30, 2003 01:10 rounds to March 30, 2003 01:00</li>
1463     * <li>March 30, 2003 01:40 rounds to March 30, 2003 03:00</li>
1464     * <li>March 30, 2003 02:10 rounds to March 30, 2003 03:00</li>
1465     * <li>March 30, 2003 02:40 rounds to March 30, 2003 04:00</li>
1466     * </ul>
1467     *
1468     * @param calendar  The date to work with, not null.
1469     * @param field  The field from {@link Calendar} or {@code SEMI_MONTH}.
1470     * @return The different rounded date, not null.
1471     * @throws NullPointerException Thrown if the date is {@code null}.
1472     * @throws ArithmeticException Thrown if the year is over 280 million.
1473     */
1474    public static Calendar round(final Calendar calendar, final int field) {
1475        Objects.requireNonNull(calendar, "calendar");
1476        return modify((Calendar) calendar.clone(), field, ModifyType.ROUND);
1477    }
1478
1479    /**
1480     * Rounds a date, leaving the field specified as the most
1481     * significant field.
1482     *
1483     * <p>
1484     * For example, if you had the date-time of 28 Mar 2002
1485     * 13:45:01.231, if this was passed with HOUR, it would return
1486     * 28 Mar 2002 14:00:00.000. If this was passed with MONTH, it
1487     * would return 1 April 2002 0:00:00.000.
1488     * </p>
1489     *
1490     * <p>
1491     * For a date in a time zone that handles the change to daylight
1492     * saving time, rounding to Calendar.HOUR_OF_DAY will behave as follows.
1493     * Suppose daylight saving time begins at 02:00 on March 30. Rounding a
1494     * date that crosses this time would produce the following values:
1495     * </p>
1496     * <ul>
1497     * <li>March 30, 2003 01:10 rounds to March 30, 2003 01:00</li>
1498     * <li>March 30, 2003 01:40 rounds to March 30, 2003 03:00</li>
1499     * <li>March 30, 2003 02:10 rounds to March 30, 2003 03:00</li>
1500     * <li>March 30, 2003 02:40 rounds to March 30, 2003 04:00</li>
1501     * </ul>
1502     *
1503     * @param date  The date to work with, not null.
1504     * @param field  The field from {@link Calendar} or {@code SEMI_MONTH}.
1505     * @return The different rounded date, not null.
1506     * @throws NullPointerException Thrown if the date is null.
1507     * @throws ArithmeticException Thrown if the year is over 280 million.
1508     */
1509    public static Date round(final Date date, final int field) {
1510        return modify(toCalendar(date), field, ModifyType.ROUND).getTime();
1511    }
1512
1513    /**
1514     * Rounds a date, leaving the field specified as the most
1515     * significant field.
1516     *
1517     * <p>
1518     * For example, if you had the date-time of 28 Mar 2002
1519     * 13:45:01.231, if this was passed with HOUR, it would return
1520     * 28 Mar 2002 14:00:00.000. If this was passed with MONTH, it
1521     * would return 1 April 2002 0:00:00.000.
1522     * </p>
1523     *
1524     * <p>
1525     * For a date in a time zone that handles the change to daylight
1526     * saving time, rounding to Calendar.HOUR_OF_DAY will behave as follows.
1527     * Suppose daylight saving time begins at 02:00 on March 30. Rounding a
1528     * date that crosses this time would produce the following values:
1529     * </p>
1530     * <ul>
1531     * <li>March 30, 2003 01:10 rounds to March 30, 2003 01:00</li>
1532     * <li>March 30, 2003 01:40 rounds to March 30, 2003 03:00</li>
1533     * <li>March 30, 2003 02:10 rounds to March 30, 2003 03:00</li>
1534     * <li>March 30, 2003 02:40 rounds to March 30, 2003 04:00</li>
1535     * </ul>
1536     *
1537     * @param date  The date to work with, either {@link Date} or {@link Calendar}, not null.
1538     * @param field  The field from {@link Calendar} or {@code SEMI_MONTH}.
1539     * @return The different rounded date, not null.
1540     * @throws NullPointerException Thrown if the date is {@code null}.
1541     * @throws ClassCastException Thrown if the object type is not a {@link Date} or {@link Calendar}.
1542     * @throws ArithmeticException Thrown if the year is over 280 million.
1543     */
1544    public static Date round(final Object date, final int field) {
1545        Objects.requireNonNull(date, "date");
1546        if (date instanceof Date) {
1547            return round((Date) date, field);
1548        }
1549        if (date instanceof Calendar) {
1550            return round((Calendar) date, field).getTime();
1551        }
1552        throw new ClassCastException("Could not round " + date);
1553    }
1554
1555    /**
1556     * Sets the specified field to a date returning a new object.
1557     * This does not use a lenient calendar.
1558     * The original {@link Date} is unchanged.
1559     *
1560     * @param date  The date, not null.
1561     * @param calendarField  The {@link Calendar} field to set the amount to.
1562     * @param amount The amount to set.
1563     * @return A new {@link Date} set with the specified value.
1564     * @throws NullPointerException Thrown if the date is null.
1565     * @since 2.4
1566     */
1567    private static Date set(final Date date, final int calendarField, final int amount) {
1568        validateDateNotNull(date);
1569        // getInstance() returns a new object, so this method is thread safe.
1570        final Calendar c = Calendar.getInstance();
1571        c.setLenient(false);
1572        c.setTime(date);
1573        c.set(calendarField, amount);
1574        return c.getTime();
1575    }
1576
1577    /**
1578     * Sets the day of month field to a date returning a new object.
1579     * The original {@link Date} is unchanged.
1580     *
1581     * @param date  The date, not null.
1582     * @param amount The amount to set.
1583     * @return A new {@link Date} set with the specified value.
1584     * @throws NullPointerException Thrown if the date is null.
1585     * @throws IllegalArgumentException Thrown if {@code amount} is not in the range
1586     *  {@code 1 <= amount <= 31}.
1587     * @since 2.4
1588     */
1589    public static Date setDays(final Date date, final int amount) {
1590        return set(date, Calendar.DAY_OF_MONTH, amount);
1591    }
1592
1593    /**
1594     * Sets the hours field to a date returning a new object.  Hours range
1595     * from  0-23.
1596     * The original {@link Date} is unchanged.
1597     *
1598     * @param date  The date, not null.
1599     * @param amount The amount to set.
1600     * @return A new {@link Date} set with the specified value.
1601     * @throws NullPointerException Thrown if the date is null.
1602     * @throws IllegalArgumentException Thrown if {@code amount} is not in the range
1603     *  {@code 0 <= amount <= 23}.
1604     * @since 2.4
1605     */
1606    public static Date setHours(final Date date, final int amount) {
1607        return set(date, Calendar.HOUR_OF_DAY, amount);
1608    }
1609
1610    /**
1611     * Sets the milliseconds field to a date returning a new object.
1612     * The original {@link Date} is unchanged.
1613     *
1614     * @param date  The date, not null.
1615     * @param amount The amount to set.
1616     * @return A new {@link Date} set with the specified value.
1617     * @throws NullPointerException Thrown if the date is null.
1618     * @throws IllegalArgumentException Thrown if {@code amount} is not in the range
1619     *  {@code 0 <= amount <= 999}.
1620     * @since 2.4
1621     */
1622    public static Date setMilliseconds(final Date date, final int amount) {
1623        return set(date, Calendar.MILLISECOND, amount);
1624    }
1625
1626    /**
1627     * Sets the minute field to a date returning a new object.
1628     * The original {@link Date} is unchanged.
1629     *
1630     * @param date  The date, not null.
1631     * @param amount The amount to set.
1632     * @return A new {@link Date} set with the specified value.
1633     * @throws NullPointerException Thrown if the date is null.
1634     * @throws IllegalArgumentException Thrown if {@code amount} is not in the range
1635     *  {@code 0 <= amount <= 59}.
1636     * @since 2.4
1637     */
1638    public static Date setMinutes(final Date date, final int amount) {
1639        return set(date, Calendar.MINUTE, amount);
1640    }
1641
1642    /**
1643     * Sets the months field to a date returning a new object.
1644     * The original {@link Date} is unchanged.
1645     *
1646     * @param date  The date, not null.
1647     * @param amount The amount to set.
1648     * @return A new {@link Date} set with the specified value.
1649     * @throws NullPointerException Thrown if the date is null.
1650     * @throws IllegalArgumentException Thrown if {@code amount} is not in the range
1651     *  {@code 0 <= amount <= 11}.
1652     * @since 2.4
1653     */
1654    public static Date setMonths(final Date date, final int amount) {
1655        return set(date, Calendar.MONTH, amount);
1656    }
1657
1658    /**
1659     * Sets the seconds field to a date returning a new object.
1660     * The original {@link Date} is unchanged.
1661     *
1662     * @param date  The date, not null.
1663     * @param amount The amount to set.
1664     * @return A new {@link Date} set with the specified value.
1665     * @throws NullPointerException Thrown if the date is null.
1666     * @throws IllegalArgumentException Thrown if {@code amount} is not in the range
1667     *  {@code 0 <= amount <= 59}.
1668     * @since 2.4
1669     */
1670    public static Date setSeconds(final Date date, final int amount) {
1671        return set(date, Calendar.SECOND, amount);
1672    }
1673
1674    /**
1675     * Sets the years field to a date returning a new object.
1676     * The original {@link Date} is unchanged.
1677     *
1678     * @param date  The date, not null.
1679     * @param amount The amount to set.
1680     * @return A new {@link Date} set with the specified value.
1681     * @throws NullPointerException Thrown if the date is null.
1682     * @since 2.4
1683     */
1684    public static Date setYears(final Date date, final int amount) {
1685        return set(date, Calendar.YEAR, amount);
1686    }
1687
1688    /**
1689     * Converts a {@link Date} into a {@link Calendar}.
1690     *
1691     * @param date The date to convert to a Calendar.
1692     * @return The created Calendar.
1693     * @throws NullPointerException Thrown if null is passed in.
1694     * @since 3.0
1695     */
1696    public static Calendar toCalendar(final Date date) {
1697        final Calendar c = Calendar.getInstance();
1698        c.setTime(Objects.requireNonNull(date, "date"));
1699        return c;
1700    }
1701
1702    /**
1703     * Converts a {@link Date} of a given {@link TimeZone} into a {@link Calendar}.
1704     *
1705     * @param date The date to convert to a Calendar.
1706     * @param tz The time zone of the {@code date}.
1707     * @return The created Calendar.
1708     * @throws NullPointerException Thrown if {@code date} or {@code tz} is null.
1709     */
1710    public static Calendar toCalendar(final Date date, final TimeZone tz) {
1711        final Calendar c = Calendar.getInstance(tz);
1712        c.setTime(Objects.requireNonNull(date, "date"));
1713        return c;
1714    }
1715
1716    /**
1717     * Converts a {@link Date} to a {@link LocalDateTime}.
1718     *
1719     * @param date The Date to convert, not null.
1720     * @return A new LocalDateTime.
1721     * @since 3.19.0
1722     */
1723    public static LocalDateTime toLocalDateTime(final Date date) {
1724        return toLocalDateTime(date, TimeZone.getDefault());
1725    }
1726
1727    /**
1728     * Converts a {@link Date} to a {@link LocalDateTime}.
1729     *
1730     * @param date     The Date to convert to a LocalDateTime, not null.
1731     * @param timeZone The time zone, null maps to the default time zone.
1732     * @return A new LocalDateTime.
1733     * @since 3.19.0
1734     */
1735    public static LocalDateTime toLocalDateTime(final Date date, final TimeZone timeZone) {
1736        return LocalDateTime.ofInstant(date.toInstant(), toZoneId(timeZone));
1737    }
1738
1739    /**
1740     * Converts a {@link Date} to a {@link OffsetDateTime}.
1741     *
1742     * @param date The Date to convert, not null.
1743     * @return A new OffsetDateTime.
1744     * @since 3.19.0
1745     */
1746    public static OffsetDateTime toOffsetDateTime(final Date date) {
1747        return toOffsetDateTime(date, TimeZone.getDefault());
1748    }
1749
1750    /**
1751     * Converts a {@link Date} to a {@link OffsetDateTime}.
1752     *
1753     * @param date     The Date to convert to an OffsetDateTime, not null.
1754     * @param timeZone The time zone, null maps to the default time zone.
1755     * @return A new OffsetDateTime.
1756     * @since 3.19.0
1757     */
1758    public static OffsetDateTime toOffsetDateTime(final Date date, final TimeZone timeZone) {
1759        return OffsetDateTime.ofInstant(date.toInstant(), toZoneId(timeZone));
1760    }
1761
1762    /**
1763     * Converts a {@link Date} to a {@link ZonedDateTime}.
1764     *
1765     * @param date The Date to convert, not null.
1766     * @return A new ZonedDateTime.
1767     * @since 3.19.0
1768     */
1769    public static ZonedDateTime toZonedDateTime(final Date date) {
1770        return toZonedDateTime(date, TimeZone.getDefault());
1771    }
1772
1773    /**
1774     * Converts a {@link Date} to a {@link ZonedDateTime}.
1775     *
1776     * @param date     The Date to convert to a ZonedDateTime, not null.
1777     * @param timeZone The time zone, null maps to the default time zone.
1778     * @return A new ZonedDateTime.
1779     * @since 3.19.0
1780     */
1781    public static ZonedDateTime toZonedDateTime(final Date date, final TimeZone timeZone) {
1782        return ZonedDateTime.ofInstant(date.toInstant(), toZoneId(timeZone));
1783    }
1784
1785    private static ZoneId toZoneId(final TimeZone timeZone) {
1786        return TimeZones.toTimeZone(timeZone).toZoneId();
1787    }
1788
1789    /**
1790     * Truncates a date, leaving the field specified as the most
1791     * significant field.
1792     *
1793     * <p>
1794     * For example, if you had the date-time of 28 Mar 2002
1795     * 13:45:01.231, if you passed with HOUR, it would return 28 Mar
1796     * 2002 13:00:00.000.  If this was passed with MONTH, it would
1797     * return 1 Mar 2002 0:00:00.000.
1798     * </p>
1799     *
1800     * @param date  The date to work with, not null.
1801     * @param field  The field from {@link Calendar} or {@code SEMI_MONTH}.
1802     * @return The different truncated date, not null.
1803     * @throws NullPointerException Thrown if the date is {@code null}.
1804     * @throws ArithmeticException Thrown if the year is over 280 million.
1805     */
1806    public static Calendar truncate(final Calendar date, final int field) {
1807        Objects.requireNonNull(date, "date");
1808        return modify((Calendar) date.clone(), field, ModifyType.TRUNCATE);
1809    }
1810
1811    /**
1812     * Truncates a date, leaving the field specified as the most
1813     * significant field.
1814     *
1815     * <p>
1816     * For example, if you had the date-time of 28 Mar 2002
1817     * 13:45:01.231, if you passed with HOUR, it would return 28 Mar
1818     * 2002 13:00:00.000.  If this was passed with MONTH, it would
1819     * return 1 Mar 2002 0:00:00.000.
1820     * </p>
1821     *
1822     * @param date  The date to work with, not null.
1823     * @param field  The field from {@link Calendar} or {@code SEMI_MONTH}.
1824     * @return The different truncated date, not null.
1825     * @throws NullPointerException Thrown if the date is {@code null}.
1826     * @throws ArithmeticException Thrown if the year is over 280 million.
1827     */
1828    public static Date truncate(final Date date, final int field) {
1829        return modify(toCalendar(date), field, ModifyType.TRUNCATE).getTime();
1830    }
1831
1832    /**
1833     * Truncates a date, leaving the field specified as the most
1834     * significant field.
1835     *
1836     * <p>
1837     * For example, if you had the date-time of 28 Mar 2002
1838     * 13:45:01.231, if you passed with HOUR, it would return 28 Mar
1839     * 2002 13:00:00.000.  If this was passed with MONTH, it would
1840     * return 1 Mar 2002 0:00:00.000.
1841     * </p>
1842     *
1843     * @param date  The date to work with, either {@link Date} or {@link Calendar}, not null.
1844     * @param field  The field from {@link Calendar} or {@code SEMI_MONTH}.
1845     * @return The different truncated date, not null.
1846     * @throws NullPointerException Thrown if the date is {@code null}.
1847     * @throws ClassCastException Thrown if the object type is not a {@link Date} or {@link Calendar}.
1848     * @throws ArithmeticException Thrown if the year is over 280 million.
1849     */
1850    public static Date truncate(final Object date, final int field) {
1851        Objects.requireNonNull(date, "date");
1852        if (date instanceof Date) {
1853            return truncate((Date) date, field);
1854        }
1855        if (date instanceof Calendar) {
1856            return truncate((Calendar) date, field).getTime();
1857        }
1858        throw new ClassCastException("Could not truncate " + date);
1859    }
1860
1861    /**
1862     * Determines how two calendars compare up to no more than the specified
1863     * most significant field.
1864     *
1865     * @param cal1 The first calendar, not {@code null}.
1866     * @param cal2 The second calendar, not {@code null}.
1867     * @param field The field from {@link Calendar}.
1868     * @return A negative integer, zero, or a positive integer as the first
1869     * calendar is less than, equal to, or greater than the second.
1870     * @throws NullPointerException Thrown if any argument is {@code null}.
1871     * @see #truncate(Calendar, int)
1872     * @see #truncatedCompareTo(Date, Date, int)
1873     * @since 3.0
1874     */
1875    public static int truncatedCompareTo(final Calendar cal1, final Calendar cal2, final int field) {
1876        final Calendar truncatedCal1 = truncate(cal1, field);
1877        final Calendar truncatedCal2 = truncate(cal2, field);
1878        return truncatedCal1.compareTo(truncatedCal2);
1879    }
1880
1881    /**
1882     * Determines how two dates compare up to no more than the specified
1883     * most significant field.
1884     *
1885     * @param date1 The first date, not {@code null}.
1886     * @param date2 The second date, not {@code null}.
1887     * @param field The field from {@link Calendar}.
1888     * @return A negative integer, zero, or a positive integer as the first
1889     * date is less than, equal to, or greater than the second.
1890     * @throws NullPointerException Thrown if any argument is {@code null}.
1891     * @see #truncate(Calendar, int)
1892     * @see #truncatedCompareTo(Date, Date, int)
1893     * @since 3.0
1894     */
1895    public static int truncatedCompareTo(final Date date1, final Date date2, final int field) {
1896        final Date truncatedDate1 = truncate(date1, field);
1897        final Date truncatedDate2 = truncate(date2, field);
1898        return truncatedDate1.compareTo(truncatedDate2);
1899    }
1900
1901    /**
1902     * Determines if two calendars are equal up to no more than the specified
1903     * most significant field.
1904     *
1905     * @param cal1 The first calendar, not {@code null}.
1906     * @param cal2 The second calendar, not {@code null}.
1907     * @param field The field from {@link Calendar}.
1908     * @return {@code true} if equal; otherwise {@code false}.
1909     * @throws NullPointerException Thrown if any argument is {@code null}.
1910     * @see #truncate(Calendar, int)
1911     * @see #truncatedEquals(Date, Date, int)
1912     * @since 3.0
1913     */
1914    public static boolean truncatedEquals(final Calendar cal1, final Calendar cal2, final int field) {
1915        return truncatedCompareTo(cal1, cal2, field) == 0;
1916    }
1917
1918    /**
1919     * Determines if two dates are equal up to no more than the specified
1920     * most significant field.
1921     *
1922     * @param date1 The first date, not {@code null}.
1923     * @param date2 The second date, not {@code null}.
1924     * @param field The field from {@link Calendar}.
1925     * @return {@code true} if equal; otherwise {@code false}.
1926     * @throws NullPointerException Thrown if any argument is {@code null}.
1927     * @see #truncate(Date, int)
1928     * @see #truncatedEquals(Calendar, Calendar, int)
1929     * @since 3.0
1930     */
1931    public static boolean truncatedEquals(final Date date1, final Date date2, final int field) {
1932        return truncatedCompareTo(date1, date2, field) == 0;
1933    }
1934
1935    /**
1936     * @param date Date to validate.
1937     * @throws NullPointerException Thrown if {@code date == null}.
1938     */
1939    private static void validateDateNotNull(final Date date) {
1940        Objects.requireNonNull(date, "date");
1941    }
1942
1943    /**
1944     * {@link DateUtils} instances should NOT be constructed in
1945     * standard programming. Instead, the static methods on the class should
1946     * be used, such as {@code DateUtils.parseDate(str);}.
1947     *
1948     * <p>
1949     * This constructor is public to permit tools that require a JavaBean
1950     * instance to operate.
1951     * </p>
1952     *
1953     * @deprecated TODO Make private in 4.0.
1954     */
1955    @Deprecated
1956    public DateUtils() {
1957        // empty
1958    }
1959
1960}