mirror of
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458 lines
12 KiB
C
458 lines
12 KiB
C
/*
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+----------------------------------------------------------------------+
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| PHP Version 5 |
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+----------------------------------------------------------------------+
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| Copyright (c) 1997-2013 The PHP Group |
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+----------------------------------------------------------------------+
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| This source file is subject to version 3.01 of the PHP license, |
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| that is bundled with this package in the file LICENSE, and is |
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| available through the world-wide-web at the following url: |
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| http://www.php.net/license/3_01.txt |
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| If you did not receive a copy of the PHP license and are unable to |
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| obtain it through the world-wide-web, please send a note to |
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| license@php.net so we can mail you a copy immediately. |
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+----------------------------------------------------------------------+
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| Authors: Derick Rethans <derick@derickrethans.nl> |
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+----------------------------------------------------------------------+
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*/
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/* $Id$ */
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#include "timelib.h"
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#include <stdio.h>
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#ifdef HAVE_LOCALE_H
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#include <locale.h>
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#endif
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#ifdef HAVE_STRING_H
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#include <string.h>
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#else
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#include <strings.h>
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#endif
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#include "timezonedb.h"
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#if (defined(__APPLE__) || defined(__APPLE_CC__)) && (defined(__BIG_ENDIAN__) || defined(__LITTLE_ENDIAN__))
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# if defined(__LITTLE_ENDIAN__)
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# undef WORDS_BIGENDIAN
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# else
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# if defined(__BIG_ENDIAN__)
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# define WORDS_BIGENDIAN
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# endif
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# endif
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#endif
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#ifdef WORDS_BIGENDIAN
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#define timelib_conv_int(l) (l)
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#else
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#define timelib_conv_int(l) ((l & 0x000000ff) << 24) + ((l & 0x0000ff00) << 8) + ((l & 0x00ff0000) >> 8) + ((l & 0xff000000) >> 24)
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#endif
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static void read_preamble(const unsigned char **tzf, timelib_tzinfo *tz)
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{
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/* skip ID */
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*tzf += 4;
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/* read BC flag */
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tz->bc = (**tzf == '\1');
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*tzf += 1;
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/* read country code */
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memcpy(tz->location.country_code, *tzf, 2);
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tz->location.country_code[2] = '\0';
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*tzf += 2;
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/* skip read of preamble */
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*tzf += 13;
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}
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static void read_header(const unsigned char **tzf, timelib_tzinfo *tz)
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{
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uint32_t buffer[6];
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memcpy(&buffer, *tzf, sizeof(buffer));
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tz->ttisgmtcnt = timelib_conv_int(buffer[0]);
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tz->ttisstdcnt = timelib_conv_int(buffer[1]);
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tz->leapcnt = timelib_conv_int(buffer[2]);
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tz->timecnt = timelib_conv_int(buffer[3]);
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tz->typecnt = timelib_conv_int(buffer[4]);
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tz->charcnt = timelib_conv_int(buffer[5]);
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*tzf += sizeof(buffer);
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}
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static void read_transistions(const unsigned char **tzf, timelib_tzinfo *tz)
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{
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int32_t *buffer = NULL;
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uint32_t i;
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unsigned char *cbuffer = NULL;
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if (tz->timecnt) {
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buffer = (int32_t*) malloc(tz->timecnt * sizeof(int32_t));
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if (!buffer) {
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return;
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}
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memcpy(buffer, *tzf, sizeof(int32_t) * tz->timecnt);
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*tzf += (sizeof(int32_t) * tz->timecnt);
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for (i = 0; i < tz->timecnt; i++) {
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buffer[i] = timelib_conv_int(buffer[i]);
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}
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cbuffer = (unsigned char*) malloc(tz->timecnt * sizeof(unsigned char));
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if (!cbuffer) {
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free(buffer);
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return;
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}
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memcpy(cbuffer, *tzf, sizeof(unsigned char) * tz->timecnt);
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*tzf += sizeof(unsigned char) * tz->timecnt;
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}
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tz->trans = buffer;
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tz->trans_idx = cbuffer;
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}
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static void read_types(const unsigned char **tzf, timelib_tzinfo *tz)
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{
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unsigned char *buffer;
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int32_t *leap_buffer;
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unsigned int i, j;
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buffer = (unsigned char*) malloc(tz->typecnt * sizeof(unsigned char) * 6);
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if (!buffer) {
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return;
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}
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memcpy(buffer, *tzf, sizeof(unsigned char) * 6 * tz->typecnt);
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*tzf += sizeof(unsigned char) * 6 * tz->typecnt;
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tz->type = (ttinfo*) malloc(tz->typecnt * sizeof(struct ttinfo));
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if (!tz->type) {
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free(buffer);
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return;
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}
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for (i = 0; i < tz->typecnt; i++) {
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j = i * 6;
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tz->type[i].offset = (buffer[j] * 16777216) + (buffer[j + 1] * 65536) + (buffer[j + 2] * 256) + buffer[j + 3];
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tz->type[i].isdst = buffer[j + 4];
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tz->type[i].abbr_idx = buffer[j + 5];
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}
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free(buffer);
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tz->timezone_abbr = (char*) malloc(tz->charcnt);
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if (!tz->timezone_abbr) {
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return;
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}
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memcpy(tz->timezone_abbr, *tzf, sizeof(char) * tz->charcnt);
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*tzf += sizeof(char) * tz->charcnt;
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if (tz->leapcnt) {
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leap_buffer = (int32_t *) malloc(tz->leapcnt * 2 * sizeof(int32_t));
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if (!leap_buffer) {
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return;
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}
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memcpy(leap_buffer, *tzf, sizeof(int32_t) * tz->leapcnt * 2);
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*tzf += sizeof(int32_t) * tz->leapcnt * 2;
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tz->leap_times = (tlinfo*) malloc(tz->leapcnt * sizeof(tlinfo));
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if (!tz->leap_times) {
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free(leap_buffer);
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return;
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}
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for (i = 0; i < tz->leapcnt; i++) {
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tz->leap_times[i].trans = timelib_conv_int(leap_buffer[i * 2]);
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tz->leap_times[i].offset = timelib_conv_int(leap_buffer[i * 2 + 1]);
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}
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free(leap_buffer);
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}
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if (tz->ttisstdcnt) {
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buffer = (unsigned char*) malloc(tz->ttisstdcnt * sizeof(unsigned char));
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if (!buffer) {
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return;
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}
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memcpy(buffer, *tzf, sizeof(unsigned char) * tz->ttisstdcnt);
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*tzf += sizeof(unsigned char) * tz->ttisstdcnt;
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for (i = 0; i < tz->ttisstdcnt; i++) {
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tz->type[i].isstdcnt = buffer[i];
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}
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free(buffer);
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}
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if (tz->ttisgmtcnt) {
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buffer = (unsigned char*) malloc(tz->ttisgmtcnt * sizeof(unsigned char));
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if (!buffer) {
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return;
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}
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memcpy(buffer, *tzf, sizeof(unsigned char) * tz->ttisgmtcnt);
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*tzf += sizeof(unsigned char) * tz->ttisgmtcnt;
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for (i = 0; i < tz->ttisgmtcnt; i++) {
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tz->type[i].isgmtcnt = buffer[i];
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}
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free(buffer);
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}
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}
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static void read_location(const unsigned char **tzf, timelib_tzinfo *tz)
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{
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uint32_t buffer[3];
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uint32_t comments_len;
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memcpy(&buffer, *tzf, sizeof(buffer));
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tz->location.latitude = timelib_conv_int(buffer[0]);
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tz->location.latitude = (tz->location.latitude / 100000) - 90;
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tz->location.longitude = timelib_conv_int(buffer[1]);
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tz->location.longitude = (tz->location.longitude / 100000) - 180;
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comments_len = timelib_conv_int(buffer[2]);
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*tzf += sizeof(buffer);
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tz->location.comments = malloc(comments_len + 1);
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memcpy(tz->location.comments, *tzf, comments_len);
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tz->location.comments[comments_len] = '\0';
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*tzf += comments_len;
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}
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void timelib_dump_tzinfo(timelib_tzinfo *tz)
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{
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uint32_t i;
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printf("Country Code: %s\n", tz->location.country_code);
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printf("Geo Location: %f,%f\n", tz->location.latitude, tz->location.longitude);
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printf("Comments:\n%s\n", tz->location.comments);
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printf("BC: %s\n", tz->bc ? "" : "yes");
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printf("UTC/Local count: %lu\n", (unsigned long) tz->ttisgmtcnt);
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printf("Std/Wall count: %lu\n", (unsigned long) tz->ttisstdcnt);
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printf("Leap.sec. count: %lu\n", (unsigned long) tz->leapcnt);
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printf("Trans. count: %lu\n", (unsigned long) tz->timecnt);
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printf("Local types count: %lu\n", (unsigned long) tz->typecnt);
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printf("Zone Abbr. count: %lu\n", (unsigned long) tz->charcnt);
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printf ("%8s (%12s) = %3d [%5ld %1d %3d '%s' (%d,%d)]\n",
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"", "", 0,
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(long int) tz->type[0].offset,
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tz->type[0].isdst,
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tz->type[0].abbr_idx,
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&tz->timezone_abbr[tz->type[0].abbr_idx],
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tz->type[0].isstdcnt,
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tz->type[0].isgmtcnt
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);
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for (i = 0; i < tz->timecnt; i++) {
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printf ("%08X (%12d) = %3d [%5ld %1d %3d '%s' (%d,%d)]\n",
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tz->trans[i], tz->trans[i], tz->trans_idx[i],
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(long int) tz->type[tz->trans_idx[i]].offset,
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tz->type[tz->trans_idx[i]].isdst,
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tz->type[tz->trans_idx[i]].abbr_idx,
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&tz->timezone_abbr[tz->type[tz->trans_idx[i]].abbr_idx],
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tz->type[tz->trans_idx[i]].isstdcnt,
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tz->type[tz->trans_idx[i]].isgmtcnt
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);
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}
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for (i = 0; i < tz->leapcnt; i++) {
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printf ("%08X (%12ld) = %d\n",
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tz->leap_times[i].trans,
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(long) tz->leap_times[i].trans,
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tz->leap_times[i].offset);
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}
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}
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static int seek_to_tz_position(const unsigned char **tzf, char *timezone, const timelib_tzdb *tzdb)
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{
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int left = 0, right = tzdb->index_size - 1;
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#ifdef HAVE_SETLOCALE
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char *cur_locale = NULL, *tmp;
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tmp = setlocale(LC_CTYPE, NULL);
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if (tmp) {
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cur_locale = strdup(tmp);
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}
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setlocale(LC_CTYPE, "C");
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#endif
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do {
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int mid = ((unsigned)left + right) >> 1;
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int cmp = strcasecmp(timezone, tzdb->index[mid].id);
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if (cmp < 0) {
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right = mid - 1;
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} else if (cmp > 0) {
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left = mid + 1;
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} else { /* (cmp == 0) */
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(*tzf) = &(tzdb->data[tzdb->index[mid].pos]);
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#ifdef HAVE_SETLOCALE
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setlocale(LC_CTYPE, cur_locale);
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if (cur_locale) free(cur_locale);
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#endif
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return 1;
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}
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} while (left <= right);
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#ifdef HAVE_SETLOCALE
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setlocale(LC_CTYPE, cur_locale);
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if (cur_locale) free(cur_locale);
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#endif
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return 0;
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}
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const timelib_tzdb *timelib_builtin_db(void)
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{
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return &timezonedb_builtin;
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}
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const timelib_tzdb_index_entry *timelib_timezone_builtin_identifiers_list(int *count)
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{
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*count = sizeof(timezonedb_idx_builtin) / sizeof(*timezonedb_idx_builtin);
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return timezonedb_idx_builtin;
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}
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int timelib_timezone_id_is_valid(char *timezone, const timelib_tzdb *tzdb)
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{
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const unsigned char *tzf;
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return (seek_to_tz_position(&tzf, timezone, tzdb));
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}
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timelib_tzinfo *timelib_parse_tzfile(char *timezone, const timelib_tzdb *tzdb)
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{
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const unsigned char *tzf;
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timelib_tzinfo *tmp;
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if (seek_to_tz_position(&tzf, timezone, tzdb)) {
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tmp = timelib_tzinfo_ctor(timezone);
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read_preamble(&tzf, tmp);
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read_header(&tzf, tmp);
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read_transistions(&tzf, tmp);
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read_types(&tzf, tmp);
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read_location(&tzf, tmp);
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} else {
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tmp = NULL;
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}
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return tmp;
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}
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static ttinfo* fetch_timezone_offset(timelib_tzinfo *tz, timelib_sll ts, timelib_sll *transition_time)
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{
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uint32_t i;
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/* If there is no transistion time, we pick the first one, if that doesn't
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* exist we return NULL */
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if (!tz->timecnt || !tz->trans) {
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*transition_time = 0;
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if (tz->typecnt == 1) {
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return &(tz->type[0]);
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}
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return NULL;
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}
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/* If the TS is lower than the first transistion time, then we scan over
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* all the transistion times to find the first non-DST one, or the first
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* one in case there are only DST entries. Not sure which smartass came up
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* with this idea in the first though :) */
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if (ts < tz->trans[0]) {
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uint32_t j;
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*transition_time = 0;
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j = 0;
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while (j < tz->timecnt && tz->type[j].isdst) {
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++j;
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}
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if (j == tz->timecnt) {
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j = 0;
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}
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return &(tz->type[j]);
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}
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/* In all other cases we loop through the available transtion times to find
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* the correct entry */
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for (i = 0; i < tz->timecnt; i++) {
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if (ts < tz->trans[i]) {
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*transition_time = tz->trans[i - 1];
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return &(tz->type[tz->trans_idx[i - 1]]);
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}
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}
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*transition_time = tz->trans[tz->timecnt - 1];
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return &(tz->type[tz->trans_idx[tz->timecnt - 1]]);
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}
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static tlinfo* fetch_leaptime_offset(timelib_tzinfo *tz, timelib_sll ts)
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{
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int i;
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if (!tz->leapcnt || !tz->leap_times) {
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return NULL;
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}
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for (i = tz->leapcnt - 1; i > 0; i--) {
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if (ts > tz->leap_times[i].trans) {
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return &(tz->leap_times[i]);
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}
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}
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return NULL;
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}
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int timelib_timestamp_is_in_dst(timelib_sll ts, timelib_tzinfo *tz)
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{
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ttinfo *to;
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timelib_sll dummy;
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if ((to = fetch_timezone_offset(tz, ts, &dummy))) {
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return to->isdst;
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}
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return -1;
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}
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timelib_time_offset *timelib_get_time_zone_info(timelib_sll ts, timelib_tzinfo *tz)
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{
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ttinfo *to;
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tlinfo *tl;
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int32_t offset = 0, leap_secs = 0;
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char *abbr;
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timelib_time_offset *tmp = timelib_time_offset_ctor();
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timelib_sll transistion_time;
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if ((to = fetch_timezone_offset(tz, ts, &transistion_time))) {
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offset = to->offset;
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abbr = &(tz->timezone_abbr[to->abbr_idx]);
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tmp->is_dst = to->isdst;
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tmp->transistion_time = transistion_time;
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} else {
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offset = 0;
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abbr = tz->timezone_abbr;
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tmp->is_dst = 0;
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tmp->transistion_time = 0;
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}
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if ((tl = fetch_leaptime_offset(tz, ts))) {
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leap_secs = -tl->offset;
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}
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tmp->offset = offset;
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tmp->leap_secs = leap_secs;
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tmp->abbr = abbr ? strdup(abbr) : strdup("GMT");
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return tmp;
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}
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timelib_sll timelib_get_current_offset(timelib_time *t)
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{
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timelib_time_offset *gmt_offset;
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timelib_sll retval;
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switch (t->zone_type) {
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case TIMELIB_ZONETYPE_ABBR:
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case TIMELIB_ZONETYPE_OFFSET:
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return (t->z + t->dst) * -60;
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case TIMELIB_ZONETYPE_ID:
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gmt_offset = timelib_get_time_zone_info(t->sse, t->tz_info);
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retval = gmt_offset->offset;
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timelib_time_offset_dtor(gmt_offset);
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return retval;
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default:
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return 0;
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}
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}
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