Java上的正则表达式日期格式验证

时间:2010-01-27 19:25:03

标签: java regex date parsing

我只是想知道是否有办法(可能使用正则表达式)来验证Java桌面应用程序上的输入正是一个字符串格式化为:“YYYY-MM-DD”。

我搜索过但没有成功。

谢谢

11 个答案:

答案 0 :(得分:78)

使用以下正则表达式:

^\d{4}-\d{2}-\d{2}$

,如

if (str.matches("\\d{4}-\\d{2}-\\d{2}")) {
    ...
}

使用matches方法,隐式存在锚点^$(字符串的开头和结尾)。

答案 1 :(得分:29)

您需要的不仅仅是regex,例如“9999-99-00”不是有效日期。有一个SimpleDateFormat类是为了做到这一点而构建的。更重量级,但更全面。

e.g。

SimpleDateFormat format = new SimpleDateFormat("yyyy-MM-dd");

boolean isValidDate(string input) {
     try {
          format.parse(input);
          return true;
     }
     catch(ParseException e){
          return false;
     }
}

不幸的是,SimpleDateFormat既是重量级的,也不是线程安全的。

答案 2 :(得分:22)

全部放在一起:

  • REGEX不会验证值(例如“2010-19-19”)
  • SimpleDateFormat不检查格式(“2010-1-2”,“1-0002-003”被接受)

有必要同时使用它们来验证格式和值:

public static boolean isValid(String text) {
    if (text == null || !text.matches("\\d{4}-[01]\\d-[0-3]\\d"))
        return false;
    SimpleDateFormat df = new SimpleDateFormat("yyyy-MM-dd");
    df.setLenient(false);
    try {
        df.parse(text);
        return true;
    } catch (ParseException ex) {
        return false;
    }
}


<小时/> ThreadLocal可用于避免为每次调用创建新的SimpleDateFormat 因为SimpleDateFormat不是线程安全的,所以在多线程上下文中需要它:

private static final ThreadLocal<SimpleDateFormat> format = new ThreadLocal<SimpleDateFormat>() {
    @Override
    protected SimpleDateFormat initialValue() {
        SimpleDateFormat df = new SimpleDateFormat("yyyy-MM-dd");
        df.setLenient(false);
        System.out.println("created");
        return df;
    }
};

public static boolean isValid(String text) {
    if (text == null || !text.matches("\\d{4}-[01]\\d-[0-3]\\d"))
        return false;
    try {
        format.get().parse(text);
        return true;
    } catch (ParseException ex) {
        return false;
    }
}

(对于匹配器也可以这样做,也不是线程安全的)

答案 3 :(得分:11)

这样做正则表达式:"^((19|20)\\d\\d)-(0?[1-9]|1[012])-(0?[1-9]|[12][0-9]|3[01])$" 这将处理有效格式和有效日期。它不会验证当月的正确日期,即闰年。

String regex = "^((19|20)\\d\\d)-(0?[1-9]|1[012])-(0?[1-9]|[12][0-9]|3[01])$";

Assert.assertTrue("Date: matched.", Pattern.matches(regex, "2011-1-1"));
Assert.assertFalse("Date (month): not matched.", Pattern.matches(regex, "2011-13-1"));
祝你好运!

答案 4 :(得分:9)

我会选择一个简单的正则表达式,它会检查天数是否超过31天和不超过12天。例如:

(0?[1-9]|[12][0-9]|3[01])-(0?[1-9]|1[012])-((18|19|20|21)\\d\\d)

格式为“dd-MM-yyyy”。您可以根据需要进行调整(例如,取下?以使前导0成为必需 - 现在是可选的),然后使用自定义逻辑来减少特定规则,例如闰年2月天数情况,以及其他几个月的病例数。请参阅下面的DateChecker代码。

我选择这种方法,因为我测试了这是考虑到性能时最好的方法。我检查了这个(第一个)方法,而第二个方法是验证一个正则表达式来处理其他用例的正则表达式,以及第三个使用上面结合SimpleDateFormat.parse(日期)的相同简单正则表达式的方法。
第一种方法比第二种方法快4倍,比第3种方法快8倍。请参见底部的自包含日期检查程序和性能测试程序主类。 我未经检查的一件事是joda时间方法。 (更有效的日期/时间库)。

日期检查员代码:

class DateChecker {

    private Matcher matcher;
    private Pattern pattern;

    public DateChecker(String regex) {
        pattern = Pattern.compile(regex);
    }

    /**
     * Checks if the date format is a valid.
     * Uses the regex pattern to match the date first. 
     * Than additionally checks are performed on the boundaries of the days taken the month into account (leap years are covered).
     * 
     * @param date the date that needs to be checked.
     * @return if the date is of an valid format or not.
     */
    public boolean check(final String date) {
        matcher = pattern.matcher(date);
        if (matcher.matches()) {
            matcher.reset();
            if (matcher.find()) {
                int day = Integer.parseInt(matcher.group(1));
                int month = Integer.parseInt(matcher.group(2));
                int year = Integer.parseInt(matcher.group(3));

                switch (month) {
                case 1:
                case 3:
                case 5:
                case 7:
                case 8:
                case 10:
                case 12: return day < 32;
                case 4:
                case 6:
                case 9:
                case 11: return day < 31;
                case 2: 
                    int modulo100 = year % 100;
                    //http://science.howstuffworks.com/science-vs-myth/everyday-myths/question50.htm
                    if ((modulo100 == 0 && year % 400 == 0) || (modulo100 != 0 && year % LEAP_STEP == 0)) {
                        //its a leap year
                        return day < 30;
                    } else {
                        return day < 29;
                    }
                default:
                    break;
                }
            }
        }
        return false;
    }

    public String getRegex() {
        return pattern.pattern();
    }
}

日期检查/测试和性能测试:

import java.text.ParseException;
import java.text.SimpleDateFormat;
import java.util.ArrayList;
import java.util.List;
import java.util.regex.Matcher;
import java.util.regex.Pattern;

public class Tester {

    private static final String[] validDateStrings = new String[]{
        "1-1-2000", //leading 0s for day and month optional
        "01-1-2000", //leading 0 for month only optional
        "1-01-2000", //leading 0 for day only optional
        "01-01-1800", //first accepted date
        "31-12-2199", //last accepted date
        "31-01-2000", //January has 31 days
        "31-03-2000", //March has 31 days
        "31-05-2000", //May has 31 days
        "31-07-2000", //July has 31 days
        "31-08-2000", //August has 31 days
        "31-10-2000", //October has 31 days
        "31-12-2000", //December has 31 days
        "30-04-2000", //April has 30 days
        "30-06-2000", //June has 30 days
        "30-09-2000", //September has 30 days
        "30-11-2000", //November has 30 days
    };
    private static final String[] invalidDateStrings = new String[]{
        "00-01-2000", //there is no 0-th day
        "01-00-2000", //there is no 0-th month
        "31-12-1799", //out of lower boundary date
        "01-01-2200", //out of high boundary date
        "32-01-2000", //January doesn't have 32 days
        "32-03-2000", //March doesn't have 32 days
        "32-05-2000", //May doesn't have 32 days
        "32-07-2000", //July doesn't have 32 days
        "32-08-2000", //August doesn't have 32 days
        "32-10-2000", //October doesn't have 32 days
        "32-12-2000", //December doesn't have 32 days
        "31-04-2000", //April doesn't have 31 days
        "31-06-2000", //June doesn't have 31 days
        "31-09-2000", //September doesn't have 31 days
        "31-11-2000", //November doesn't have 31 days
        "001-02-2000", //SimpleDateFormat valid date (day with leading 0s) even with lenient set to false
        "1-0002-2000", //SimpleDateFormat valid date (month with leading 0s) even with lenient set to false
        "01-02-0003", //SimpleDateFormat valid date (year with leading 0s) even with lenient set to false
        "01.01-2000", //. invalid separator between day and month
        "01-01.2000", //. invalid separator between month and year
        "01/01-2000", /// invalid separator between day and month
        "01-01/2000", /// invalid separator between month and year
        "01_01-2000", //_ invalid separator between day and month
        "01-01_2000", //_ invalid separator between month and year
        "01-01-2000-12345", //only whole string should be matched
        "01-13-2000", //month bigger than 13
    };

    /**
     * These constants will be used to generate the valid and invalid boundary dates for the leap years. (For no leap year, Feb. 28 valid and Feb. 29 invalid; for a leap year Feb. 29 valid and Feb. 30 invalid)   
     */
    private static final int LEAP_STEP = 4;
    private static final int YEAR_START = 1800;
    private static final int YEAR_END = 2199;

    /**
     * This date regex will find matches for valid dates between 1800 and 2199 in the format of "dd-MM-yyyy".
     * The leading 0 is optional.
     */
    private static final String DATE_REGEX = "((0?[1-9]|[12][0-9]|3[01])-(0?[13578]|1[02])-(18|19|20|21)[0-9]{2})|((0?[1-9]|[12][0-9]|30)-(0?[469]|11)-(18|19|20|21)[0-9]{2})|((0?[1-9]|1[0-9]|2[0-8])-(0?2)-(18|19|20|21)[0-9]{2})|(29-(0?2)-(((18|19|20|21)(04|08|[2468][048]|[13579][26]))|2000))";

    /**
     * This date regex is similar to the first one, but with the difference of matching only the whole string. So "01-01-2000-12345" won't pass with a match.
     * Keep in mind that String.matches tries to match only the whole string.
     */
    private static final String DATE_REGEX_ONLY_WHOLE_STRING = "^" + DATE_REGEX + "$";

    /**
     * The simple regex (without checking for 31 day months and leap years):
     */
    private static final String DATE_REGEX_SIMPLE = "(0?[1-9]|[12][0-9]|3[01])-(0?[1-9]|1[012])-((18|19|20|21)\\d\\d)";

    /**
     * This date regex is similar to the first one, but with the difference of matching only the whole string. So "01-01-2000-12345" won't pass with a match.
     */
    private static final String DATE_REGEX_SIMPLE_ONLY_WHOLE_STRING = "^" + DATE_REGEX_SIMPLE + "$";

    private static final SimpleDateFormat SDF = new SimpleDateFormat("dd-MM-yyyy");
    static {
        SDF.setLenient(false);
    }

    private static final DateChecker dateValidatorSimple = new DateChecker(DATE_REGEX_SIMPLE);
    private static final DateChecker dateValidatorSimpleOnlyWholeString = new DateChecker(DATE_REGEX_SIMPLE_ONLY_WHOLE_STRING);

    /**
     * @param args
     */
    public static void main(String[] args) {
        DateTimeStatistics dateTimeStatistics = new DateTimeStatistics();
        boolean shouldMatch = true;
        for (int i = 0; i < validDateStrings.length; i++) {
            String validDate = validDateStrings[i];
            matchAssertAndPopulateTimes(
                    dateTimeStatistics,
                    shouldMatch, validDate);
        }

        shouldMatch = false;
        for (int i = 0; i < invalidDateStrings.length; i++) {
            String invalidDate = invalidDateStrings[i];

            matchAssertAndPopulateTimes(dateTimeStatistics,
                    shouldMatch, invalidDate);
        }

        for (int year = YEAR_START; year < (YEAR_END + 1); year++) {
            FebruaryBoundaryDates februaryBoundaryDates = createValidAndInvalidFebruaryBoundaryDateStringsFromYear(year);
            shouldMatch = true;
            matchAssertAndPopulateTimes(dateTimeStatistics,
                    shouldMatch, februaryBoundaryDates.getValidFebruaryBoundaryDateString());
            shouldMatch = false;
            matchAssertAndPopulateTimes(dateTimeStatistics,
                    shouldMatch, februaryBoundaryDates.getInvalidFebruaryBoundaryDateString());
        }

        dateTimeStatistics.calculateAvarageTimesAndPrint();
    }

    private static void matchAssertAndPopulateTimes(
            DateTimeStatistics dateTimeStatistics,
            boolean shouldMatch, String date) {
        dateTimeStatistics.addDate(date);
        matchAndPopulateTimeToMatch(date, DATE_REGEX, shouldMatch, dateTimeStatistics.getTimesTakenWithDateRegex());
        matchAndPopulateTimeToMatch(date, DATE_REGEX_ONLY_WHOLE_STRING, shouldMatch, dateTimeStatistics.getTimesTakenWithDateRegexOnlyWholeString());
        boolean matchesSimpleDateFormat = matchWithSimpleDateFormatAndPopulateTimeToMatchAndReturnMatches(date, dateTimeStatistics.getTimesTakenWithSimpleDateFormatParse());
        matchAndPopulateTimeToMatchAndReturnMatchesAndCheck(
                dateTimeStatistics.getTimesTakenWithDateRegexSimple(), shouldMatch,
                date, matchesSimpleDateFormat, DATE_REGEX_SIMPLE);
        matchAndPopulateTimeToMatchAndReturnMatchesAndCheck(
                dateTimeStatistics.getTimesTakenWithDateRegexSimpleOnlyWholeString(), shouldMatch,
                date, matchesSimpleDateFormat, DATE_REGEX_SIMPLE_ONLY_WHOLE_STRING);

        matchAndPopulateTimeToMatch(date, dateValidatorSimple, shouldMatch, dateTimeStatistics.getTimesTakenWithdateValidatorSimple());
        matchAndPopulateTimeToMatch(date, dateValidatorSimpleOnlyWholeString, shouldMatch, dateTimeStatistics.getTimesTakenWithdateValidatorSimpleOnlyWholeString());
    }

    private static void matchAndPopulateTimeToMatchAndReturnMatchesAndCheck(
            List<Long> times,
            boolean shouldMatch, String date, boolean matchesSimpleDateFormat, String regex) {
        boolean matchesFromRegex = matchAndPopulateTimeToMatchAndReturnMatches(date, regex, times);
        assert !((matchesSimpleDateFormat && matchesFromRegex) ^ shouldMatch) : "Parsing with SimpleDateFormat and date:" + date + "\nregex:" + regex + "\nshouldMatch:" + shouldMatch;
    }

    private static void matchAndPopulateTimeToMatch(String date, String regex, boolean shouldMatch, List<Long> times) {
        boolean matches = matchAndPopulateTimeToMatchAndReturnMatches(date, regex, times);
        assert !(matches ^ shouldMatch) : "date:" + date + "\nregex:" + regex + "\nshouldMatch:" + shouldMatch;
    }

    private static void matchAndPopulateTimeToMatch(String date, DateChecker dateValidator, boolean shouldMatch, List<Long> times) {
        long timestampStart;
        long timestampEnd;
        boolean matches;
        timestampStart = System.nanoTime();
        matches = dateValidator.check(date);
        timestampEnd = System.nanoTime();
        times.add(timestampEnd - timestampStart);
        assert !(matches ^ shouldMatch) : "date:" + date + "\ndateValidator with regex:" + dateValidator.getRegex() + "\nshouldMatch:" + shouldMatch;
    }

    private static boolean matchAndPopulateTimeToMatchAndReturnMatches(String date, String regex, List<Long> times) {
        long timestampStart;
        long timestampEnd;
        boolean matches;
        timestampStart = System.nanoTime();
        matches = date.matches(regex);
        timestampEnd = System.nanoTime();
        times.add(timestampEnd - timestampStart);
        return matches;
    }

    private static boolean matchWithSimpleDateFormatAndPopulateTimeToMatchAndReturnMatches(String date, List<Long> times) {
        long timestampStart;
        long timestampEnd;
        boolean matches = true;
        timestampStart = System.nanoTime();
        try {
            SDF.parse(date);
        } catch (ParseException e) {
            matches = false;
        } finally {
            timestampEnd = System.nanoTime();
            times.add(timestampEnd - timestampStart);
        }
        return matches;
    }

    private static FebruaryBoundaryDates createValidAndInvalidFebruaryBoundaryDateStringsFromYear(int year) {
        FebruaryBoundaryDates februaryBoundaryDates;
        int modulo100 = year % 100;
        //http://science.howstuffworks.com/science-vs-myth/everyday-myths/question50.htm
        if ((modulo100 == 0 && year % 400 == 0) || (modulo100 != 0 && year % LEAP_STEP == 0)) {
            februaryBoundaryDates = new FebruaryBoundaryDates(
                    createFebruaryDateFromDayAndYear(29, year), 
                    createFebruaryDateFromDayAndYear(30, year)
                    );
        } else {
            februaryBoundaryDates = new FebruaryBoundaryDates(
                    createFebruaryDateFromDayAndYear(28, year), 
                    createFebruaryDateFromDayAndYear(29, year)
                    );
        }
        return februaryBoundaryDates;
    }

    private static String createFebruaryDateFromDayAndYear(int day, int year) {
        return String.format("%d-02-%d", day, year);
    }

    static class FebruaryBoundaryDates {
        private String validFebruaryBoundaryDateString;
        String invalidFebruaryBoundaryDateString;
        public FebruaryBoundaryDates(String validFebruaryBoundaryDateString,
                String invalidFebruaryBoundaryDateString) {
            super();
            this.validFebruaryBoundaryDateString = validFebruaryBoundaryDateString;
            this.invalidFebruaryBoundaryDateString = invalidFebruaryBoundaryDateString;
        }
        public String getValidFebruaryBoundaryDateString() {
            return validFebruaryBoundaryDateString;
        }
        public void setValidFebruaryBoundaryDateString(
                String validFebruaryBoundaryDateString) {
            this.validFebruaryBoundaryDateString = validFebruaryBoundaryDateString;
        }
        public String getInvalidFebruaryBoundaryDateString() {
            return invalidFebruaryBoundaryDateString;
        }
        public void setInvalidFebruaryBoundaryDateString(
                String invalidFebruaryBoundaryDateString) {
            this.invalidFebruaryBoundaryDateString = invalidFebruaryBoundaryDateString;
        }
    }

    static class DateTimeStatistics {
        private List<String> dates = new ArrayList<String>();
        private List<Long> timesTakenWithDateRegex = new ArrayList<Long>();
        private List<Long> timesTakenWithDateRegexOnlyWholeString = new ArrayList<Long>();
        private List<Long> timesTakenWithDateRegexSimple = new ArrayList<Long>();
        private List<Long> timesTakenWithDateRegexSimpleOnlyWholeString = new ArrayList<Long>();
        private List<Long> timesTakenWithSimpleDateFormatParse = new ArrayList<Long>();
        private List<Long> timesTakenWithdateValidatorSimple = new ArrayList<Long>();
        private List<Long> timesTakenWithdateValidatorSimpleOnlyWholeString = new ArrayList<Long>();
        public List<String> getDates() {
            return dates;
        }
        public List<Long> getTimesTakenWithDateRegex() {
            return timesTakenWithDateRegex;
        }
        public List<Long> getTimesTakenWithDateRegexOnlyWholeString() {
            return timesTakenWithDateRegexOnlyWholeString;
        }
        public List<Long> getTimesTakenWithDateRegexSimple() {
            return timesTakenWithDateRegexSimple;
        }
        public List<Long> getTimesTakenWithDateRegexSimpleOnlyWholeString() {
            return timesTakenWithDateRegexSimpleOnlyWholeString;
        }
        public List<Long> getTimesTakenWithSimpleDateFormatParse() {
            return timesTakenWithSimpleDateFormatParse;
        }
        public List<Long> getTimesTakenWithdateValidatorSimple() {
            return timesTakenWithdateValidatorSimple;
        }
        public List<Long> getTimesTakenWithdateValidatorSimpleOnlyWholeString() {
            return timesTakenWithdateValidatorSimpleOnlyWholeString;
        }
        public void addDate(String date) {
            dates.add(date);
        }
        public void addTimesTakenWithDateRegex(long time) {
            timesTakenWithDateRegex.add(time);
        }
        public void addTimesTakenWithDateRegexOnlyWholeString(long time) {
            timesTakenWithDateRegexOnlyWholeString.add(time);
        }
        public void addTimesTakenWithDateRegexSimple(long time) {
            timesTakenWithDateRegexSimple.add(time);
        }
        public void addTimesTakenWithDateRegexSimpleOnlyWholeString(long time) {
            timesTakenWithDateRegexSimpleOnlyWholeString.add(time);
        }
        public void addTimesTakenWithSimpleDateFormatParse(long time) {
            timesTakenWithSimpleDateFormatParse.add(time);
        }
        public void addTimesTakenWithdateValidatorSimple(long time) {
            timesTakenWithdateValidatorSimple.add(time);
        }
        public void addTimesTakenWithdateValidatorSimpleOnlyWholeString(long time) {
            timesTakenWithdateValidatorSimpleOnlyWholeString.add(time);
        }

        private void calculateAvarageTimesAndPrint() {
            long[] sumOfTimes = new long[7];
            int timesSize = timesTakenWithDateRegex.size();
            for (int i = 0; i < timesSize; i++) {
                sumOfTimes[0] += timesTakenWithDateRegex.get(i);
                sumOfTimes[1] += timesTakenWithDateRegexOnlyWholeString.get(i);
                sumOfTimes[2] += timesTakenWithDateRegexSimple.get(i);
                sumOfTimes[3] += timesTakenWithDateRegexSimpleOnlyWholeString.get(i);
                sumOfTimes[4] += timesTakenWithSimpleDateFormatParse.get(i);
                sumOfTimes[5] += timesTakenWithdateValidatorSimple.get(i);
                sumOfTimes[6] += timesTakenWithdateValidatorSimpleOnlyWholeString.get(i);
            }
            System.out.println("AVG from timesTakenWithDateRegex (in nanoseconds):" + (double) sumOfTimes[0] / timesSize);
            System.out.println("AVG from timesTakenWithDateRegexOnlyWholeString (in nanoseconds):" + (double) sumOfTimes[1] / timesSize);
            System.out.println("AVG from timesTakenWithDateRegexSimple (in nanoseconds):" + (double) sumOfTimes[2] / timesSize);
            System.out.println("AVG from timesTakenWithDateRegexSimpleOnlyWholeString (in nanoseconds):" + (double) sumOfTimes[3] / timesSize);
            System.out.println("AVG from timesTakenWithSimpleDateFormatParse (in nanoseconds):" + (double) sumOfTimes[4] / timesSize);
            System.out.println("AVG from timesTakenWithDateRegexSimple + timesTakenWithSimpleDateFormatParse (in nanoseconds):" + (double) (sumOfTimes[2] + sumOfTimes[4]) / timesSize);
            System.out.println("AVG from timesTakenWithDateRegexSimpleOnlyWholeString + timesTakenWithSimpleDateFormatParse (in nanoseconds):" + (double) (sumOfTimes[3] + sumOfTimes[4]) / timesSize);
            System.out.println("AVG from timesTakenWithdateValidatorSimple (in nanoseconds):" + (double) sumOfTimes[5] / timesSize);
            System.out.println("AVG from timesTakenWithdateValidatorSimpleOnlyWholeString (in nanoseconds):" + (double) sumOfTimes[6] / timesSize);
        }
    }

    static class DateChecker {

        private Matcher matcher;
        private Pattern pattern;

        public DateChecker(String regex) {
            pattern = Pattern.compile(regex);
        }

        /**
         * Checks if the date format is a valid.
         * Uses the regex pattern to match the date first. 
         * Than additionally checks are performed on the boundaries of the days taken the month into account (leap years are covered).
         * 
         * @param date the date that needs to be checked.
         * @return if the date is of an valid format or not.
         */
        public boolean check(final String date) {
            matcher = pattern.matcher(date);
            if (matcher.matches()) {
                matcher.reset();
                if (matcher.find()) {
                    int day = Integer.parseInt(matcher.group(1));
                    int month = Integer.parseInt(matcher.group(2));
                    int year = Integer.parseInt(matcher.group(3));

                    switch (month) {
                    case 1:
                    case 3:
                    case 5:
                    case 7:
                    case 8:
                    case 10:
                    case 12: return day < 32;
                    case 4:
                    case 6:
                    case 9:
                    case 11: return day < 31;
                    case 2: 
                        int modulo100 = year % 100;
                        //http://science.howstuffworks.com/science-vs-myth/everyday-myths/question50.htm
                        if ((modulo100 == 0 && year % 400 == 0) || (modulo100 != 0 && year % LEAP_STEP == 0)) {
                            //its a leap year
                            return day < 30;
                        } else {
                            return day < 29;
                        }
                    default:
                        break;
                    }
                }
            }
            return false;
        }

        public String getRegex() {
            return pattern.pattern();
        }
    }
}

一些有用的注释:
- 要启用断言(断言检查),您需要在运行测试器时使用-ea参数。 (在eclipse中,这是通过编辑运行/调试配置 - &gt;参数选项卡 - &gt; VM参数 - >插入“-ea”来完成的 - 上面的正则表达式限制在1800年到2199年之间 - 您不需要在开头使用^,而在结尾使用$仅匹配整个日期字符串。 String.matches负责处理。
- 确保检查有效和无效的情况,并根据您的规则进行更改 - 每个正则表达式的“唯一整个字符串”版本提供与“普通”版本(没有^和$的版本)相同的速度。如果你看到性能差异,这是因为java“被使用”来处理相同的指令,所以时间会降低。如果您切换“正常”和“仅整个字符串”版本执行的行,您将看到此证明。

希望这有助于某人!
干杯,

答案 5 :(得分:4)

java.time

使用Java 8+进行日期/时间验证的正确(且简单)方法是使用java.time.format.DateTimeFormatter类。使用正则表达式进行验证并不是日期的理想选择。对于此问题中的示例案例:

DateTimeFormatter formatter = DateTimeFormatter.ofPattern("yyyy-MM-dd");

try {
    LocalDate date = formatter.parse(text, LocalDate::from);
} catch (DateTimeParseException e) {
    // Thrown if text could not be parsed in the specified format
}

此代码将解析文本,验证它是否为有效日期,并将日期作为LocalDate对象返回。请注意,如果您的用例与其中任何一个匹配,DateTimeFormatter类具有许多与ISO标准匹配的静态预定义日期格式。

答案 6 :(得分:2)

使用掩码构造SimpleDateFormat,然后调用: SimpleDateFormat.parse(String s,ParsePosition p)

答案 7 :(得分:1)

为了精确控制,请使用Steve B建议的SimpleDateFormat("YYYY-MM-dd")来考虑InputVerifier

答案 8 :(得分:0)

如果你想要一个简单的正则表达式,那么它将是不准确的。 https://www.freeformatter.com/java-regex-tester.html#ad-output提供了一个测试Java正则表达式的工具。此外,在底部,您可以找到一些用于验证日期的建议正则表达式。

ISO日期格式(yyyy-mm-dd):

^[0-9]{4}-(((0[13578]|(10|12))-(0[1-9]|[1-2][0-9]|3[0-1]))|(02-(0[1-9]|[1-2][0-9]))|((0[469]|11)-(0[1-9]|[1-2][0-9]|30)))$

ISO日期格式(yyyy-mm-dd),分隔符' - '或'/'或'。'要么 ' '。强制使用相同的分隔符。

^[0-9]{4}([- /.])(((0[13578]|(10|12))\1(0[1-9]|[1-2][0-9]|3[0-1]))|(02\1(0[1-9]|[1-2][0-9]))|((0[469]|11)\1(0[1-9]|[1-2][0-9]|30)))$

美国日期格式(mm / dd / yyyy)

^(((0[13578]|(10|12))/(0[1-9]|[1-2][0-9]|3[0-1]))|(02/(0[1-9]|[1-2][0-9]))|((0[469]|11)/(0[1-9]|[1-2][0-9]|30)))/[0-9]{4}$

小时和分钟,24小时格式(HH:MM):

^(20|21|22|23|[01]\d|\d)((:[0-5]\d){1,2})$
祝你好运

答案 9 :(得分:0)

  

如果使用模式,以下添加的代码对我有用   dd-MM-yyyy。

public boolean isValidDate(String date) {
        boolean check;
        String date1 = "^(0?[1-9]|[12][0-9]|3[01])-(0?[1-9]|1[012])-([12][0-9]{3})$";
        check = date.matches(date1);

        return check;
    }

答案 10 :(得分:0)

以下正则表达式将考虑到leap年,接受YYYY-MM-DD(在1600-2999年范围内)格式的日期:

 ^((?:(?:1[6-9]|2[0-9])\d{2})(-)(?:(?:(?:0[13578]|1[02])(-)31)|((0[1,3-9]|1[0-2])(-)(29|30))))$|^(?:(?:(?:(?:1[6-9]|[2-9]\d)?(?:0[48]|[2468][048]|[13579][26])|(?:(?:16|[2468][048]|[3579][26])00)))(-)02(-)29)$|^(?:(?:1[6-9]|2[0-9])\d{2})(-)(?:(?:0[1-9])|(?:1[0-2]))(-)(?:0[1-9]|1\d|2[0-8])$

示例:

Date regex examples

您可以here对其进行测试。

注意:如果要接受一位数字作为月份或日期,则可以使用:

 ^((?:(?:1[6-9]|2[0-9])\d{2})(-)(?:(?:(?:0?[13578]|1[02])(-)31)|((0?[1,3-9]|1[0-2])(-)(29|30))))$|^(?:(?:(?:(?:1[6-9]|[2-9]\d)?(?:0[48]|[2468][048]|[13579][26])|(?:(?:16|[2468][048]|[3579][26])00)))(-)0?2(-)29)$|^(?:(?:1[6-9]|2[0-9])\d{2})(-)(?:(?:0?[1-9])|(?:1[0-2]))(-)(?:0?[1-9]|1\d|2[0-8])$

我从solution开始创建了上述正则表达式