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397 lines
10 KiB
C
397 lines
10 KiB
C
/*
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+----------------------------------------------------------------------+
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| PHP Version 4 |
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+----------------------------------------------------------------------+
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| Copyright (c) 1997-2002 The PHP Group |
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+----------------------------------------------------------------------+
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| This source file is subject to version 2.02 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 at through the world-wide-web at |
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| http://www.php.net/license/2_02.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: Thies C. Arntzen (thies@thieso.net) |
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+----------------------------------------------------------------------+
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*/
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/* $Id$ */
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/*
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* Functions to parse & compse IPTC data.
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* PhotoShop >= 3.0 can read and write textual data to JPEG files.
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* ... more to come .....
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*
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* i know, parts of this is now duplicated in image.c
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* but in this case i think it's okay!
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*/
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/*
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* TODO:
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* - add IPTC translation table
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*/
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#include "php.h"
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#include "php_iptc.h"
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#include "ext/standard/head.h"
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#include <sys/stat.h>
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/* some defines for the different JPEG block types */
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#define M_SOF0 0xC0 /* Start Of Frame N */
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#define M_SOF1 0xC1 /* N indicates which compression process */
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#define M_SOF2 0xC2 /* Only SOF0-SOF2 are now in common use */
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#define M_SOF3 0xC3
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#define M_SOF5 0xC5 /* NB: codes C4 and CC are NOT SOF markers */
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#define M_SOF6 0xC6
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#define M_SOF7 0xC7
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#define M_SOF9 0xC9
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#define M_SOF10 0xCA
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#define M_SOF11 0xCB
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#define M_SOF13 0xCD
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#define M_SOF14 0xCE
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#define M_SOF15 0xCF
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#define M_SOI 0xD8
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#define M_EOI 0xD9 /* End Of Image (end of datastream) */
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#define M_SOS 0xDA /* Start Of Scan (begins compressed data) */
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#define M_APP0 0xe0
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#define M_APP1 0xe1
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#define M_APP2 0xe2
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#define M_APP3 0xe3
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#define M_APP4 0xe4
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#define M_APP5 0xe5
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#define M_APP6 0xe6
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#define M_APP7 0xe7
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#define M_APP8 0xe8
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#define M_APP9 0xe9
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#define M_APP10 0xea
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#define M_APP11 0xeb
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#define M_APP12 0xec
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#define M_APP13 0xed
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#define M_APP14 0xee
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#define M_APP15 0xef
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/* {{{ php_iptc_put1
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*/
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static int php_iptc_put1(FILE *fp, int spool, unsigned char c, unsigned char **spoolbuf TSRMLS_DC)
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{
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if (spool > 0)
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PUTC(c);
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if (spoolbuf) *(*spoolbuf)++ = c;
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return c;
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}
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/* }}} */
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/* {{{ php_iptc_get1
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*/
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static int php_iptc_get1(FILE *fp, int spool, unsigned char **spoolbuf TSRMLS_DC)
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{
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int c;
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char cc;
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c = getc(fp);
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if (c == EOF) return EOF;
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if (spool > 0) {
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cc = c;
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PUTC(cc);
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}
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if (spoolbuf) *(*spoolbuf)++ = c;
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return c;
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}
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/* }}} */
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/* {{{ php_iptc_read_remaining
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*/
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static int php_iptc_read_remaining(FILE *fp, int spool, unsigned char **spoolbuf TSRMLS_DC)
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{
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int c;
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while ((c = php_iptc_get1(fp, spool, spoolbuf TSRMLS_CC)) != EOF) continue;
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return M_EOI;
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}
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/* }}} */
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/* {{{ php_iptc_skip_variable
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*/
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static int php_iptc_skip_variable(FILE *fp, int spool, unsigned char **spoolbuf TSRMLS_DC)
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{
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unsigned int length;
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int c1, c2;
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if ((c1 = php_iptc_get1(fp, spool, spoolbuf TSRMLS_CC)) == EOF) return M_EOI;
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if ((c2 = php_iptc_get1(fp, spool, spoolbuf TSRMLS_CC)) == EOF) return M_EOI;
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length = (((unsigned char) c1) << 8) + ((unsigned char) c2);
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length -= 2;
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while (length--)
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if (php_iptc_get1(fp, spool, spoolbuf TSRMLS_CC) == EOF) return M_EOI;
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return 0;
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}
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/* }}} */
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/* {{{ php_iptc_next_marker
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*/
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static int php_iptc_next_marker(FILE *fp, int spool, unsigned char **spoolbuf TSRMLS_DC)
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{
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int c;
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/* skip unimportant stuff */
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c = php_iptc_get1(fp, spool, spoolbuf TSRMLS_CC);
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if (c == EOF) return M_EOI;
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while (c != 0xff) {
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if ((c = php_iptc_get1(fp, spool, spoolbuf TSRMLS_CC)) == EOF)
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return M_EOI; /* we hit EOF */
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}
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/* get marker byte, swallowing possible padding */
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do {
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c = php_iptc_get1(fp, 0, 0 TSRMLS_CC);
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if (c == EOF)
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return M_EOI; /* we hit EOF */
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else
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if (c == 0xff)
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php_iptc_put1(fp, spool, (unsigned char)c, spoolbuf TSRMLS_CC);
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} while (c == 0xff);
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return (unsigned int) c;
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}
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/* }}} */
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static char psheader[] = "\xFF\xED\0\0Photoshop 3.0\08BIM\x04\x04\0\0\0\0";
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/* {{{ proto array iptcembed(string iptcdata, string jpeg_file_name [, int spool])
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Embed binary IPTC data into a JPEG image. */
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PHP_FUNCTION(iptcembed)
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{
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zval **iptcdata, **jpeg_file, **spool_flag;
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FILE *fp;
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unsigned int marker;
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unsigned int spool = 0, done = 0, inx, len;
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unsigned char *spoolbuf=0, *poi=0;
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struct stat sb;
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switch(ZEND_NUM_ARGS()){
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case 3:
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if (zend_get_parameters_ex(3, &iptcdata, &jpeg_file, &spool_flag) == FAILURE) {
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WRONG_PARAM_COUNT;
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}
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convert_to_string_ex(iptcdata);
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convert_to_string_ex(jpeg_file);
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convert_to_long_ex(spool_flag);
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spool = Z_LVAL_PP(spool_flag);
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break;
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case 2:
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if (zend_get_parameters_ex(2, &iptcdata, &jpeg_file) == FAILURE) {
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WRONG_PARAM_COUNT;
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}
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convert_to_string_ex(iptcdata);
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convert_to_string_ex(jpeg_file);
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break;
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default:
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WRONG_PARAM_COUNT;
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break;
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}
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if (php_check_open_basedir(Z_STRVAL_PP(jpeg_file) TSRMLS_CC)) {
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RETURN_FALSE;
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}
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if ((fp = VCWD_FOPEN(Z_STRVAL_PP(jpeg_file), "rb")) == 0) {
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php_error(E_WARNING, "Unable to open %s", Z_STRVAL_PP(jpeg_file));
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RETURN_FALSE;
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}
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len = Z_STRLEN_PP(iptcdata);
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if (spool < 2) {
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fstat(fileno(fp), &sb);
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poi = spoolbuf = emalloc(len + sizeof(psheader) + sb.st_size + 1024);
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if (! spoolbuf) {
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fclose(fp);
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RETURN_FALSE;
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}
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}
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if (php_iptc_get1(fp, spool, poi?&poi:0 TSRMLS_CC) != 0xFF) {
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fclose(fp);
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RETURN_FALSE;
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}
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if (php_iptc_get1(fp, spool, poi?&poi:0 TSRMLS_CC) != 0xD8) {
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fclose(fp);
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RETURN_FALSE;
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}
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while (!done) {
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marker = php_iptc_next_marker(fp, spool, poi?&poi:0 TSRMLS_CC);
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if (marker == M_EOI) { /* EOF */
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break;
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} else if (marker != M_APP13) {
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php_iptc_put1(fp, spool, (unsigned char)marker, poi?&poi:0 TSRMLS_CC);
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}
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switch (marker) {
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case M_APP13:
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/* we are going to write a new APP13 marker, so don't output the old one */
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php_iptc_skip_variable(fp, 0, 0 TSRMLS_CC);
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php_iptc_read_remaining(fp, spool, poi?&poi:0 TSRMLS_CC);
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done = 1;
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break;
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case M_APP0:
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/* APP0 is in each and every JPEG, so when we hit APP0 we insert our new APP13! */
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php_iptc_skip_variable(fp, spool, poi?&poi:0 TSRMLS_CC);
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if (len & 1) len++; /* make the length even */
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psheader[ 2 ] = (len+28)>>8;
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psheader[ 3 ] = (len+28)&0xff;
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for (inx = 0; inx < 28; inx++)
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php_iptc_put1(fp, spool, psheader[inx], poi?&poi:0 TSRMLS_CC);
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php_iptc_put1(fp, spool, (unsigned char)(len>>8), poi?&poi:0 TSRMLS_CC);
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php_iptc_put1(fp, spool, (unsigned char)(len&0xff), poi?&poi:0 TSRMLS_CC);
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for (inx = 0; inx < len; inx++)
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php_iptc_put1(fp, spool, Z_STRVAL_PP(iptcdata)[inx], poi?&poi:0 TSRMLS_CC);
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break;
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case M_SOS:
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/* we hit data, no more marker-inserting can be done! */
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php_iptc_read_remaining(fp, spool, poi?&poi:0 TSRMLS_CC);
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done = 1;
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break;
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default:
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php_iptc_skip_variable(fp, spool, poi?&poi:0 TSRMLS_CC);
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break;
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}
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}
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fclose(fp);
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if (spool < 2) {
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RETVAL_STRINGL(spoolbuf, poi - spoolbuf, 0);
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} else {
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RETURN_TRUE;
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}
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}
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/* }}} */
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/* {{{ proto array iptcparse(string iptcdata)
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Parse binary IPTC-data into associative array */
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PHP_FUNCTION(iptcparse)
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{
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unsigned int length, inx, len, inheader, tagsfound;
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unsigned char *buffer;
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unsigned char recnum, dataset;
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unsigned char key[ 16 ];
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zval *values, **str, **element;
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if (ZEND_NUM_ARGS() != 1 || zend_get_parameters_ex(1, &str) == FAILURE) {
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WRONG_PARAM_COUNT;
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}
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convert_to_string_ex(str);
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inx = 0;
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length = Z_STRLEN_PP(str);
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buffer = Z_STRVAL_PP(str);
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inheader = 0; /* have we already found the IPTC-Header??? */
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tagsfound = 0; /* number of tags already found */
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while (inx < length) { /* find 1st tag */
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if ((buffer[inx] == 0x1c) && (buffer[inx+1] == 0x02)){
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break;
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} else {
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inx++;
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}
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}
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while (inx < length) {
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if (buffer[ inx++ ] != 0x1c) {
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break; /* we ran against some data which does not conform to IPTC - stop parsing! */
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}
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if ((inx + 4) >= length)
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break;
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dataset = buffer[ inx++ ];
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recnum = buffer[ inx++ ];
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if (buffer[ inx ] & (unsigned char) 0x80) { /* long tag */
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len = (((long) buffer[ inx + 2 ]) << 24) + (((long) buffer[ inx + 3 ]) << 16) +
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(((long) buffer[ inx + 4 ]) << 8) + (((long) buffer[ inx + 5 ]));
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inx += 6;
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} else { /* short tag */
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len = (((unsigned short) buffer[ inx ])<<8) | (unsigned short)buffer[ inx+1 ];
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inx += 2;
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}
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sprintf(key, "%d#%03d", (unsigned int) dataset, (unsigned int) recnum);
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if ((len > length) || (inx + len) > length)
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break;
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if (tagsfound == 0) { /* found the 1st tag - initialize the return array */
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if (array_init(return_value) == FAILURE) {
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php_error(E_ERROR, "Unable to initialize array");
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RETURN_FALSE;
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}
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}
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if (zend_hash_find(Z_ARRVAL_P(return_value), key, strlen(key) + 1, (void **) &element) == FAILURE) {
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ALLOC_ZVAL(values);
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INIT_PZVAL(values);
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if (array_init(values) == FAILURE) {
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php_error(E_ERROR, "Unable to initialize array");
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RETURN_FALSE;
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}
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zend_hash_update(Z_ARRVAL_P(return_value), key, strlen(key)+1, (void *) &values, sizeof(pval*), (void **) &element);
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}
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add_next_index_stringl(*element, buffer+inx, len, 1);
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inx += len;
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tagsfound++;
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}
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if (! tagsfound) {
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RETURN_FALSE;
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}
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}
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/* }}} */
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/*
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* Local variables:
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* tab-width: 4
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* c-basic-offset: 4
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* End:
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* vim600: sw=4 ts=4 fdm=marker
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* vim<600: sw=4 ts=4
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*/
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