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/*
 * Copyright (c) 2008-2022 The Aspectran Project
 *
 * Licensed under the Apache License, Version 2.0 (the "License");
 * you may not use this file except in compliance with the License.
 * You may obtain a copy of the License at
 *
 *     http://www.apache.org/licenses/LICENSE-2.0
 *
 * Unless required by applicable law or agreed to in writing, software
 * distributed under the License is distributed on an "AS IS" BASIS,
 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
 * See the License for the specific language governing permissions and
 * limitations under the License.
 */
package com.aspectran.core.util;

import java.util.Locale;
import java.util.TimeZone;

/**
 * This class has utility methods useful for parsing locale and timezone strings.
 */
public class LocaleUtils {

    /**
     * Parse the given {@code String} value into a {@link Locale}, accepting
     * the {@link Locale#toString} format as well as BCP 47 language tags.
     * @param localeValue the locale value: following either {@code Locale's}
     *      {@code toString()} format ("en", "en_UK", etc), also accepting spaces as
     *      separators (as an alternative to underscores), or BCP 47 (e.g. "en-UK")
     *      as specified by {@link Locale#forLanguageTag} on Java 7+
     * @return a corresponding {@code Locale} instance, or {@code null} if none
     * @throws IllegalArgumentException in case of an invalid locale specification
     * @see #parseLocaleString
     * @see Locale#forLanguageTag
     */
    public static Locale parseLocale(String localeValue) {
        String[] tokens = tokenizeLocaleSource(localeValue);
        if (tokens.length == 1) {
            validateLocalePart(localeValue);
            Locale resolved = Locale.forLanguageTag(localeValue);
            if (resolved.getLanguage().length() > 0) {
                return resolved;
            }
        }
        return parseLocaleTokens(localeValue, tokens);
    }

    /**
     * Parse the given {@code String} representation into a {@link Locale}.
     * 

For many parsing scenarios, this is an inverse operation of * {@link Locale#toString Locale's toString}, in a lenient sense. * This method does not aim for strict {@code Locale} design compliance; * it is rather specifically tailored for typical Spring parsing needs.

*

Note: This delegate does not accept the BCP 47 language tag format. * Please use {@link #parseLocale} for lenient parsing of both formats.

* @param localeString the locale {@code String}: following {@code Locale's} * {@code toString()} format ("en", "en_UK", etc), also accepting spaces as * separators (as an alternative to underscores) * @return a corresponding {@code Locale} instance, or {@code null} if none * @throws IllegalArgumentException in case of an invalid locale specification */ public static Locale parseLocaleString(String localeString) { return parseLocaleTokens(localeString, tokenizeLocaleSource(localeString)); } private static String[] tokenizeLocaleSource(String localeSource) { return StringUtils.tokenize(localeSource, "_ ", false); } private static Locale parseLocaleTokens(String localeString, String[] tokens) { String language = (tokens.length > 0 ? tokens[0] : StringUtils.EMPTY); String country = (tokens.length > 1 ? tokens[1] : StringUtils.EMPTY); validateLocalePart(language); validateLocalePart(country); String variant = StringUtils.EMPTY; if (tokens.length > 2) { // There is definitely a variant, and it is everything after the country // code sans the separator between the country code and the variant. int endIndexOfCountryCode = localeString.indexOf(country, language.length()) + country.length(); // Strip off any leading '_' and whitespace, what's left is the variant. variant = StringUtils.trimLeadingWhitespace(localeString.substring(endIndexOfCountryCode)); if (variant.startsWith("_")) { variant = StringUtils.trimLeadingCharacter(variant, '_'); } } if (variant.isEmpty() && country.startsWith("#")) { variant = country; country = StringUtils.EMPTY; } return (language.length() > 0 ? new Locale(language, country, variant) : null); } private static void validateLocalePart(String localePart) { for (int i = 0; i < localePart.length(); i++) { char ch = localePart.charAt(i); if (ch != ' ' && ch != '_' && ch != '-' && ch != '#' && !Character.isLetterOrDigit(ch)) { throw new IllegalArgumentException( "Locale part \"" + localePart + "\" contains invalid characters"); } } } /** * Parse the given {@code timeZoneString} value into a {@link TimeZone}. * @param timeZoneString the time zone {@code String}, following {@link TimeZone#getTimeZone(String)} * but throwing {@link IllegalArgumentException} in case of an invalid time zone specification * @return a corresponding {@link TimeZone} instance * @throws IllegalArgumentException in case of an invalid time zone specification */ public static TimeZone parseTimeZoneString(String timeZoneString) { TimeZone timeZone = TimeZone.getTimeZone(timeZoneString); if ("GMT".equals(timeZone.getID()) && !timeZoneString.startsWith("GMT")) { // We don't want that GMT fallback... throw new IllegalArgumentException("Invalid time zone specification '" + timeZoneString + "'"); } return timeZone; } }




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