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package com.sun.grizzly.util.http;

import java.text.DateFormat;
import java.text.ParseException;
import java.text.SimpleDateFormat;
import java.util.Date;
import java.util.Locale;
import java.util.TimeZone;
import java.util.concurrent.ConcurrentHashMap;

/**
 * Utility class to generate HTTP dates.
 *
 * @author Gustav Trede 
 * @author Remy Maucherat
 */
public final class FastHttpDateFormat {

    protected static final int CACHE_SIZE = 1000;

    protected static final TimeZone GMT_TIME_ZONE = TimeZone.getTimeZone("GMT");
    /**
     * HTTP date format.
     */
    protected static final ThreadLocal FORMAT = 
        new ThreadLocal() {
            @Override
            protected SimpleDateFormat initialValue() {
                SimpleDateFormat f = 
                    new SimpleDateFormat("EEE, dd MMM yyyy HH:mm:ss zzz", Locale.US);
                f.setTimeZone(GMT_TIME_ZONE);
                return f;
            }
        };


    protected final static TimeZone gmtZone = TimeZone.getTimeZone("GMT");

    /**
     * ThreadLocal for the set of SimpleDateFormat formats to use in getDateHeader().
     * GMT timezone - all HTTP dates are on GMT
     */
    protected static final ThreadLocal FORMATS =
        new ThreadLocal() {
            @Override
            protected Object initialValue() {
                SimpleDateFormat[] f = new SimpleDateFormat[3];
                f[0] = new SimpleDateFormat("EEE, dd MMM yyyy HH:mm:ss zzz",
                        Locale.US);
                f[0].setTimeZone(GMT_TIME_ZONE);
                f[1] = new SimpleDateFormat("EEEEEE, dd-MMM-yy HH:mm:ss zzz",
                        Locale.US);
                f[1].setTimeZone(GMT_TIME_ZONE);
                f[2] = new SimpleDateFormat("EEE MMMM d HH:mm:ss yyyy",
                        Locale.US);
                f[2].setTimeZone(GMT_TIME_ZONE);
                return f;
            }
        };


    /**
     * Instant on which the currentDate object was generated.
     */
    protected static volatile long nextGeneration;


    /**
     * Current formatted date.
     */
    protected static volatile String currentDate;


    /**
     * Formatter cache.
     */
    protected static final ConcurrentHashMap formatCache = 
        new ConcurrentHashMap(CACHE_SIZE,0.75f,64);


    /**
     * Parser cache.
     */
    protected static final ConcurrentHashMap parseCache = 
        new ConcurrentHashMap(CACHE_SIZE,0.75f,64);


    // --------------------------------------------------------- Public Methods


    /**
     * Get the current date in HTTP format.
     */
    public static final String getCurrentDate() {
        long now = System.currentTimeMillis();
        if (now > nextGeneration) {
            synchronized(FORMAT) {
                if (now > nextGeneration) {
                    nextGeneration = now + 1000;
                    currentDate = FORMAT.get().format(new Date(now));
                }
            }
        }
        return currentDate;
    }


    /**
     * Get the HTTP format of the specified date.
* http spec only requre second precision http://tools.ietf.org/html/rfc2616#page-20
* therefore we dont use the millisecond precision , but second . * truncation is done in the same way for second precision in SimpleDateFormat:
* (999 millisec. = 0 sec.) * @param timestamp in millisec * @param the formater used if cache value was not found */ public static final String formatDate(long value, DateFormat threadLocalformat) { // truncating to second precision // this way we optimally use the cache to only store needed http values value = (value/1000)*1000; Long longValue = value; String cachedDate = formatCache.get(longValue); if (cachedDate != null){ return cachedDate; } String newDate = null; Date dateValue = new Date(value); if (threadLocalformat != null) { newDate = threadLocalformat.format(dateValue); } else { newDate = FORMAT.get().format(dateValue); } updateFormatCache(longValue, newDate); return newDate; } /** * Try to parse the given date as a HTTP date. */ public static final long parseDate(final String value, DateFormat[] threadLocalformats) { Long cachedDate = parseCache.get(value); if (cachedDate != null){ return cachedDate; } long date ; if (threadLocalformats != null) { date = internalParseDate(value, threadLocalformats); } else { date = internalParseDate(value, (SimpleDateFormat[])FORMATS.get()); } if (date != -1) { updateParseCache(value, date); } return date; } /** * Parse date with given formatters. */ private static final long internalParseDate (String value, DateFormat[] formats){ for (int i = 0;i < formats.length; i++) { try { return formats[i].parse(value).getTime(); } catch (ParseException e) { return -1; } } return -1; } /** * Update cache. */ private static void updateFormatCache(Long key, String value) { if (value == null) { return; } if (formatCache.size() > CACHE_SIZE) { formatCache.clear(); } formatCache.put(key, value); } /** * Update cache. */ private static void updateParseCache(String key, Long value) { if (parseCache.size() > CACHE_SIZE) { parseCache.clear(); } parseCache.put(key, value); } }




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