mirror of
https://github.com/php/php-src.git
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852 lines
20 KiB
C
852 lines
20 KiB
C
/*
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* gd_gd2.c
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*
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* Implements the I/O and support for the GD2 format.
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*
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* Changing the definition of GD2_DBG (below) will cause copious messages
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* to be displayed while it processes requests.
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*
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* Designed, Written & Copyright 1999, Philip Warner.
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*
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*/
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#include <stdio.h>
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#include <errno.h>
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#include <math.h>
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#include <string.h>
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#include <stdlib.h>
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#include "gd.h"
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#include "gd_errors.h"
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#include "gdhelpers.h"
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#include <zlib.h>
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#define TRUE 1
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#define FALSE 0
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/* 2.11: not part of the API, as the save routine can figure it out
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* from im->trueColor, and the load routine doesn't need to tell
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* the end user the saved format. NOTE: adding 2 is assumed
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* to result in the correct format value for truecolor!
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*/
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#define GD2_FMT_TRUECOLOR_RAW 3
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#define GD2_FMT_TRUECOLOR_COMPRESSED 4
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#define gd2_compressed(fmt) (((fmt) == GD2_FMT_COMPRESSED) || ((fmt) == GD2_FMT_TRUECOLOR_COMPRESSED))
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#define gd2_truecolor(fmt) (((fmt) == GD2_FMT_TRUECOLOR_RAW) || ((fmt) == GD2_FMT_TRUECOLOR_COMPRESSED))
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/* Use this for commenting out debug-print statements. */
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/* Just use the first '#define' to allow all the prints... */
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/* #define GD2_DBG(s) (s) */
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#define GD2_DBG(s)
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typedef struct
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{
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int offset;
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int size;
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} t_chunk_info;
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extern int _gdGetColors(gdIOCtx * in, gdImagePtr im, int gd2xFlag);
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extern void _gdPutColors(gdImagePtr im, gdIOCtx * out);
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/* */
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/* Read the extra info in the gd2 header. */
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/* */
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static int _gd2GetHeader(gdIOCtxPtr in, int *sx, int *sy, int *cs, int *vers, int *fmt, int *ncx, int *ncy, t_chunk_info ** chunkIdx)
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{
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int i;
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int ch;
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char id[5];
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t_chunk_info *cidx;
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int sidx;
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int nc;
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GD2_DBG(gd_error("Reading gd2 header info"));
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for (i = 0; i < 4; i++) {
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ch = gdGetC(in);
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if (ch == EOF) {
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goto fail1;
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}
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id[i] = ch;
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}
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id[4] = 0;
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GD2_DBG(gd_error("Got file code: %s", id));
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/* Equiv. of 'magick'. */
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if (strcmp(id, GD2_ID) != 0) {
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GD2_DBG(gd_error("Not a valid gd2 file"));
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goto fail1;
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}
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/* Version */
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if (gdGetWord(vers, in) != 1) {
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goto fail1;
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}
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GD2_DBG(gd_error("Version: %d", *vers));
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if ((*vers != 1) && (*vers != 2)) {
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GD2_DBG(gd_error("Bad version: %d", *vers));
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goto fail1;
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}
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/* Image Size */
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if (!gdGetWord(sx, in)) {
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GD2_DBG(gd_error("Could not get x-size"));
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goto fail1;
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}
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if (!gdGetWord(sy, in)) {
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GD2_DBG(gd_error("Could not get y-size"));
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goto fail1;
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}
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GD2_DBG(gd_error("Image is %dx%d", *sx, *sy));
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/* Chunk Size (pixels, not bytes!) */
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if (gdGetWord(cs, in) != 1) {
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goto fail1;
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}
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GD2_DBG(gd_error("ChunkSize: %d", *cs));
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if ((*cs < GD2_CHUNKSIZE_MIN) || (*cs > GD2_CHUNKSIZE_MAX)) {
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GD2_DBG(gd_error("Bad chunk size: %d", *cs));
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goto fail1;
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}
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/* Data Format */
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if (gdGetWord(fmt, in) != 1) {
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goto fail1;
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}
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GD2_DBG(gd_error("Format: %d", *fmt));
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if ((*fmt != GD2_FMT_RAW) && (*fmt != GD2_FMT_COMPRESSED) && (*fmt != GD2_FMT_TRUECOLOR_RAW) && (*fmt != GD2_FMT_TRUECOLOR_COMPRESSED)) {
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GD2_DBG(gd_error("Bad data format: %d", *fmt));
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goto fail1;
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}
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/* # of chunks wide */
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if (gdGetWord(ncx, in) != 1) {
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goto fail1;
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}
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GD2_DBG(gd_error("%d Chunks Wide", *ncx));
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/* # of chunks high */
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if (gdGetWord(ncy, in) != 1) {
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goto fail1;
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}
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GD2_DBG(gd_error("%d Chunks vertically", *ncy));
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if (gd2_compressed(*fmt)) {
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if (*ncx <= 0 || *ncy <= 0 || *ncx > INT_MAX / *ncy) {
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GD2_DBG(printf ("Illegal chunk counts: %d * %d\n", *ncx, *ncy));
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goto fail1;
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}
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nc = (*ncx) * (*ncy);
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GD2_DBG(gd_error("Reading %d chunk index entries", nc));
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if (overflow2(sizeof(t_chunk_info), nc)) {
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goto fail1;
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}
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sidx = sizeof(t_chunk_info) * nc;
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if (sidx <= 0) {
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goto fail1;
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}
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cidx = gdCalloc(sidx, 1);
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if (cidx == NULL) {
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goto fail1;
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}
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for (i = 0; i < nc; i++) {
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if (gdGetInt(&cidx[i].offset, in) != 1) {
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gdFree(cidx);
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goto fail1;
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}
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if (gdGetInt(&cidx[i].size, in) != 1) {
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gdFree(cidx);
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goto fail1;
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}
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if (cidx[i].offset < 0 || cidx[i].size < 0) {
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gdFree(cidx);
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goto fail1;
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}
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}
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*chunkIdx = cidx;
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}
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GD2_DBG(gd_error("gd2 header complete"));
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return 1;
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fail1:
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return 0;
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}
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static gdImagePtr _gd2CreateFromFile (gdIOCtxPtr in, int *sx, int *sy, int *cs, int *vers, int *fmt, int *ncx, int *ncy, t_chunk_info ** cidx)
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{
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gdImagePtr im;
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if (_gd2GetHeader (in, sx, sy, cs, vers, fmt, ncx, ncy, cidx) != 1) {
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GD2_DBG(gd_error("Bad GD2 header"));
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goto fail1;
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}
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if (gd2_truecolor(*fmt)) {
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im = gdImageCreateTrueColor(*sx, *sy);
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} else {
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im = gdImageCreate(*sx, *sy);
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}
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if (im == NULL) {
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GD2_DBG(gd_error("Could not create gdImage"));
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goto fail2;
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}
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if (!_gdGetColors(in, im, (*vers) == 2)) {
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GD2_DBG(gd_error("Could not read color palette"));
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goto fail3;
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}
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GD2_DBG(gd_error("Image palette completed: %d colours", im->colorsTotal));
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return im;
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fail3:
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gdImageDestroy(im);
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fail2:
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gdFree(*cidx);
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fail1:
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return 0;
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}
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static int _gd2ReadChunk (int offset, char *compBuf, int compSize, char *chunkBuf, uLongf * chunkLen, gdIOCtx * in)
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{
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int zerr;
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if (gdTell(in) != offset) {
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GD2_DBG(gd_error("Positioning in file to %d", offset));
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gdSeek(in, offset);
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} else {
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GD2_DBG(gd_error("Already Positioned in file to %d", offset));
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}
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/* Read and uncompress an entire chunk. */
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GD2_DBG(gd_error("Reading file"));
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if (gdGetBuf(compBuf, compSize, in) != compSize) {
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return FALSE;
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}
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GD2_DBG(gd_error("Got %d bytes. Uncompressing into buffer of %d bytes", compSize, (int)*chunkLen));
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zerr = uncompress((unsigned char *) chunkBuf, chunkLen, (unsigned char *) compBuf, compSize);
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if (zerr != Z_OK) {
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GD2_DBG(gd_error("Error %d from uncompress", zerr));
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return FALSE;
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}
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GD2_DBG(gd_error("Got chunk"));
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return TRUE;
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}
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gdImagePtr gdImageCreateFromGd2 (FILE * inFile)
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{
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gdIOCtx *in = gdNewFileCtx(inFile);
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gdImagePtr im;
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im = gdImageCreateFromGd2Ctx(in);
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in->gd_free(in);
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return im;
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}
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gdImagePtr gdImageCreateFromGd2Ptr (int size, void *data)
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{
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gdImagePtr im;
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gdIOCtx *in = gdNewDynamicCtxEx(size, data, 0);
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im = gdImageCreateFromGd2Ctx(in);
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in->gd_free(in);
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return im;
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}
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gdImagePtr gdImageCreateFromGd2Ctx (gdIOCtxPtr in)
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{
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int sx, sy;
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int i;
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int ncx, ncy, nc, cs, cx, cy;
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int x, y, ylo, yhi, xlo, xhi;
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int vers, fmt;
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t_chunk_info *chunkIdx = NULL; /* So we can gdFree it with impunity. */
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unsigned char *chunkBuf = NULL; /* So we can gdFree it with impunity. */
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int chunkNum = 0;
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int chunkMax = 0;
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uLongf chunkLen;
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int chunkPos = 0;
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int compMax = 0;
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int bytesPerPixel;
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char *compBuf = NULL; /* So we can gdFree it with impunity. */
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gdImagePtr im;
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/* Get the header */
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if (!(im = _gd2CreateFromFile(in, &sx, &sy, &cs, &vers, &fmt, &ncx, &ncy, &chunkIdx))) {
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return 0;
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}
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bytesPerPixel = im->trueColor ? 4 : 1;
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nc = ncx * ncy;
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if (gd2_compressed(fmt)) {
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/* Find the maximum compressed chunk size. */
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compMax = 0;
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for (i = 0; (i < nc); i++) {
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if (chunkIdx[i].size > compMax) {
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compMax = chunkIdx[i].size;
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}
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}
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compMax++;
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/* Allocate buffers */
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chunkMax = cs * bytesPerPixel * cs;
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if (chunkMax <= 0) {
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return 0;
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}
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chunkBuf = gdCalloc(chunkMax, 1);
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compBuf = gdCalloc(compMax, 1);
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GD2_DBG(gd_error("Largest compressed chunk is %d bytes", compMax));
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}
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/* Read the data... */
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for (cy = 0; (cy < ncy); cy++) {
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for (cx = 0; (cx < ncx); cx++) {
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ylo = cy * cs;
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yhi = ylo + cs;
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if (yhi > im->sy) {
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yhi = im->sy;
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}
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GD2_DBG(gd_error("Processing Chunk %d (%d, %d), y from %d to %d", chunkNum, cx, cy, ylo, yhi));
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if (gd2_compressed(fmt)) {
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chunkLen = chunkMax;
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if (!_gd2ReadChunk(chunkIdx[chunkNum].offset, compBuf, chunkIdx[chunkNum].size, (char *) chunkBuf, &chunkLen, in)) {
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GD2_DBG(gd_error("Error reading comproessed chunk"));
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goto fail2;
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}
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chunkPos = 0;
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}
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for (y = ylo; (y < yhi); y++) {
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xlo = cx * cs;
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xhi = xlo + cs;
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if (xhi > im->sx) {
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xhi = im->sx;
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}
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if (!gd2_compressed(fmt)) {
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for (x = xlo; x < xhi; x++) {
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if (im->trueColor) {
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if (!gdGetInt(&im->tpixels[y][x], in)) {
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gd_error("gd2: EOF while reading\n");
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gdImageDestroy(im);
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return NULL;
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}
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} else {
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int ch;
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if (!gdGetByte(&ch, in)) {
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gd_error("gd2: EOF while reading\n");
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gdImageDestroy(im);
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return NULL;
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}
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im->pixels[y][x] = ch;
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}
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}
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} else {
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for (x = xlo; x < xhi; x++) {
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if (im->trueColor) {
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/* 2.0.1: work around a gcc bug by being verbose. TBB */
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int a = chunkBuf[chunkPos++] << 24;
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int r = chunkBuf[chunkPos++] << 16;
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int g = chunkBuf[chunkPos++] << 8;
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int b = chunkBuf[chunkPos++];
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im->tpixels[y][x] = a + r + g + b;
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} else {
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im->pixels[y][x] = chunkBuf[chunkPos++];
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}
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}
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}
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}
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chunkNum++;
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}
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}
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GD2_DBG(gd_error("Freeing memory"));
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if (chunkBuf) {
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gdFree(chunkBuf);
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}
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if (compBuf) {
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gdFree(compBuf);
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}
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if (chunkIdx) {
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gdFree(chunkIdx);
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}
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GD2_DBG(gd_error("Done"));
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return im;
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fail2:
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gdImageDestroy(im);
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if (chunkBuf) {
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gdFree(chunkBuf);
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}
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if (compBuf) {
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gdFree(compBuf);
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}
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if (chunkIdx) {
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gdFree(chunkIdx);
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}
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return 0;
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}
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gdImagePtr gdImageCreateFromGd2PartPtr (int size, void *data, int srcx, int srcy, int w, int h)
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{
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gdImagePtr im;
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gdIOCtx *in = gdNewDynamicCtxEx(size, data, 0);
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im = gdImageCreateFromGd2PartCtx(in, srcx, srcy, w, h);
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in->gd_free(in);
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return im;
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}
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gdImagePtr gdImageCreateFromGd2Part (FILE * inFile, int srcx, int srcy, int w, int h)
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{
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gdImagePtr im;
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gdIOCtx *in = gdNewFileCtx(inFile);
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im = gdImageCreateFromGd2PartCtx(in, srcx, srcy, w, h);
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in->gd_free(in);
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return im;
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}
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gdImagePtr gdImageCreateFromGd2PartCtx (gdIOCtx * in, int srcx, int srcy, int w, int h)
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{
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int scx, scy, ecx, ecy, fsx, fsy;
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int nc, ncx, ncy, cs, cx, cy;
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int x, y, ylo, yhi, xlo, xhi;
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int dstart, dpos;
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int i;
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/* 2.0.12: unsigned is correct; fixes problems with color munging. Thanks to Steven Brown. */
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unsigned int ch;
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int vers, fmt;
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t_chunk_info *chunkIdx = NULL;
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unsigned char *chunkBuf = NULL;
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int chunkNum;
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int chunkMax = 0;
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uLongf chunkLen;
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int chunkPos = 0;
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int compMax;
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char *compBuf = NULL;
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gdImagePtr im;
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if (w<1 || h <1) {
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return 0;
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}
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/* The next few lines are basically copied from gd2CreateFromFile
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* we change the file size, so don't want to use the code directly.
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* but we do need to know the file size.
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*/
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if (_gd2GetHeader(in, &fsx, &fsy, &cs, &vers, &fmt, &ncx, &ncy, &chunkIdx) != 1) {
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goto fail1;
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}
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GD2_DBG(gd_error("File size is %dx%d", fsx, fsy));
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/* This is the difference - make a file based on size of chunks. */
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if (gd2_truecolor(fmt)) {
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im = gdImageCreateTrueColor(w, h);
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} else {
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im = gdImageCreate(w, h);
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}
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if (im == NULL) {
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goto fail1;
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}
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if (!_gdGetColors(in, im, vers == 2)) {
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goto fail2;
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}
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GD2_DBG(gd_error("Image palette completed: %d colours", im->colorsTotal));
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/* Process the header info */
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nc = ncx * ncy;
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if (gd2_compressed(fmt)) {
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/* Find the maximum compressed chunk size. */
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compMax = 0;
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for (i = 0; (i < nc); i++) {
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if (chunkIdx[i].size > compMax) {
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compMax = chunkIdx[i].size;
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}
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}
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compMax++;
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if (im->trueColor) {
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chunkMax = cs * cs * 4;
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} else {
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chunkMax = cs * cs;
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}
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if (chunkMax <= 0) {
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goto fail2;
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}
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chunkBuf = gdCalloc(chunkMax, 1);
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compBuf = gdCalloc(compMax, 1);
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}
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/* Work out start/end chunks */
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scx = srcx / cs;
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scy = srcy / cs;
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if (scx < 0) {
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scx = 0;
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}
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if (scy < 0) {
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scy = 0;
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}
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ecx = (srcx + w) / cs;
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ecy = (srcy + h) / cs;
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if (ecx >= ncx) {
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ecx = ncx - 1;
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}
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if (ecy >= ncy) {
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ecy = ncy - 1;
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}
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|
/* Remember file position of image data. */
|
|
dstart = gdTell(in);
|
|
GD2_DBG(gd_error("Data starts at %d", dstart));
|
|
|
|
/* Loop through the chunks. */
|
|
for (cy = scy; (cy <= ecy); cy++) {
|
|
ylo = cy * cs;
|
|
yhi = ylo + cs;
|
|
if (yhi > fsy) {
|
|
yhi = fsy;
|
|
}
|
|
|
|
for (cx = scx; cx <= ecx; cx++) {
|
|
|
|
xlo = cx * cs;
|
|
xhi = xlo + cs;
|
|
if (xhi > fsx) {
|
|
xhi = fsx;
|
|
}
|
|
|
|
GD2_DBG(gd_error("Processing Chunk (%d, %d), from %d to %d", cx, cy, ylo, yhi));
|
|
|
|
if (!gd2_compressed(fmt)) {
|
|
GD2_DBG(gd_error("Using raw format data"));
|
|
if (im->trueColor) {
|
|
dpos = (cy * (cs * fsx) * 4 + cx * cs * (yhi - ylo) * 4) + dstart;
|
|
} else {
|
|
dpos = cy * (cs * fsx) + cx * cs * (yhi - ylo) + dstart;
|
|
}
|
|
|
|
/* gd 2.0.11: gdSeek returns TRUE on success, not 0. Longstanding bug. 01/16/03 */
|
|
if (!gdSeek(in, dpos)) {
|
|
gd_error_ex(E_WARNING, "Error from seek: %d", errno);
|
|
goto fail2;
|
|
}
|
|
GD2_DBG(gd_error("Reading (%d, %d) from position %d", cx, cy, dpos - dstart));
|
|
} else {
|
|
chunkNum = cx + cy * ncx;
|
|
|
|
chunkLen = chunkMax;
|
|
if (!_gd2ReadChunk (chunkIdx[chunkNum].offset, compBuf, chunkIdx[chunkNum].size, (char *)chunkBuf, &chunkLen, in)) {
|
|
gd_error("Error reading comproessed chunk");
|
|
goto fail2;
|
|
}
|
|
chunkPos = 0;
|
|
GD2_DBG(gd_error("Reading (%d, %d) from chunk %d", cx, cy, chunkNum));
|
|
}
|
|
|
|
GD2_DBG(gd_error(" into (%d, %d) - (%d, %d)", xlo, ylo, xhi, yhi));
|
|
|
|
for (y = ylo; (y < yhi); y++) {
|
|
for (x = xlo; x < xhi; x++) {
|
|
if (!gd2_compressed(fmt)) {
|
|
if (im->trueColor) {
|
|
if (!gdGetInt((int *)&ch, in)) {
|
|
ch = 0;
|
|
}
|
|
} else {
|
|
ch = gdGetC(in);
|
|
if ((int)ch == EOF) {
|
|
ch = 0;
|
|
}
|
|
}
|
|
} else {
|
|
if (im->trueColor) {
|
|
ch = chunkBuf[chunkPos++];
|
|
ch = (ch << 8) + chunkBuf[chunkPos++];
|
|
ch = (ch << 8) + chunkBuf[chunkPos++];
|
|
ch = (ch << 8) + chunkBuf[chunkPos++];
|
|
} else {
|
|
ch = chunkBuf[chunkPos++];
|
|
}
|
|
}
|
|
|
|
/* Only use a point that is in the image. */
|
|
if ((x >= srcx) && (x < (srcx + w)) && (x < fsx) && (x >= 0) && (y >= srcy) && (y < (srcy + h)) && (y < fsy) && (y >= 0)) {
|
|
if (im->trueColor) {
|
|
im->tpixels[y - srcy][x - srcx] = ch;
|
|
} else {
|
|
im->pixels[y - srcy][x - srcx] = ch;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
if (chunkBuf) {
|
|
gdFree(chunkBuf);
|
|
}
|
|
if (compBuf) {
|
|
gdFree(compBuf);
|
|
}
|
|
if (chunkIdx) {
|
|
gdFree(chunkIdx);
|
|
}
|
|
|
|
return im;
|
|
|
|
fail2:
|
|
gdImageDestroy(im);
|
|
fail1:
|
|
if (chunkBuf) {
|
|
gdFree(chunkBuf);
|
|
}
|
|
if (compBuf) {
|
|
gdFree(compBuf);
|
|
}
|
|
if (chunkIdx) {
|
|
gdFree(chunkIdx);
|
|
}
|
|
|
|
return 0;
|
|
}
|
|
|
|
static void _gd2PutHeader (gdImagePtr im, gdIOCtx * out, int cs, int fmt, int cx, int cy)
|
|
{
|
|
int i;
|
|
|
|
/* Send the gd2 id, to verify file format. */
|
|
for (i = 0; i < 4; i++) {
|
|
gdPutC((unsigned char) (GD2_ID[i]), out);
|
|
}
|
|
|
|
/* We put the version info first, so future versions can easily change header info. */
|
|
|
|
gdPutWord(GD2_VERS, out);
|
|
gdPutWord(im->sx, out);
|
|
gdPutWord(im->sy, out);
|
|
gdPutWord(cs, out);
|
|
gdPutWord(fmt, out);
|
|
gdPutWord(cx, out);
|
|
gdPutWord(cy, out);
|
|
}
|
|
|
|
static void _gdImageGd2 (gdImagePtr im, gdIOCtx * out, int cs, int fmt)
|
|
{
|
|
int ncx, ncy, cx, cy;
|
|
int x, y, ylo, yhi, xlo, xhi;
|
|
int chunkLen;
|
|
int chunkNum = 0;
|
|
char *chunkData = NULL; /* So we can gdFree it with impunity. */
|
|
char *compData = NULL; /* So we can gdFree it with impunity. */
|
|
uLongf compLen;
|
|
int idxPos = 0;
|
|
int idxSize;
|
|
t_chunk_info *chunkIdx = NULL; /* So we can gdFree it with impunity. */
|
|
int posSave;
|
|
int bytesPerPixel = im->trueColor ? 4 : 1;
|
|
int compMax = 0;
|
|
|
|
/* Force fmt to a valid value since we don't return anything. */
|
|
if ((fmt != GD2_FMT_RAW) && (fmt != GD2_FMT_COMPRESSED)) {
|
|
fmt = GD2_FMT_COMPRESSED;
|
|
}
|
|
if (im->trueColor) {
|
|
fmt += 2;
|
|
}
|
|
/* Make sure chunk size is valid. These are arbitrary values; 64 because it seems
|
|
* a little silly to expect performance improvements on a 64x64 bit scale, and
|
|
* 4096 because we buffer one chunk, and a 16MB buffer seems a little large - it may be
|
|
* OK for one user, but for another to read it, they require the buffer.
|
|
*/
|
|
if (cs == 0) {
|
|
cs = GD2_CHUNKSIZE;
|
|
} else if (cs < GD2_CHUNKSIZE_MIN) {
|
|
cs = GD2_CHUNKSIZE_MIN;
|
|
} else if (cs > GD2_CHUNKSIZE_MAX) {
|
|
cs = GD2_CHUNKSIZE_MAX;
|
|
}
|
|
|
|
/* Work out number of chunks. */
|
|
ncx = (im->sx + cs - 1) / cs;
|
|
ncy = (im->sy + cs - 1) / cs;
|
|
|
|
/* Write the standard header. */
|
|
_gd2PutHeader (im, out, cs, fmt, ncx, ncy);
|
|
|
|
if (gd2_compressed(fmt)) {
|
|
/* Work out size of buffer for compressed data, If CHUNKSIZE is large,
|
|
* then these will be large!
|
|
*/
|
|
|
|
/* The zlib notes say output buffer size should be (input size) * 1.01 * 12
|
|
* - we'll use 1.02 to be paranoid.
|
|
*/
|
|
compMax = (int)(cs * bytesPerPixel * cs * 1.02f) + 12;
|
|
|
|
/* Allocate the buffers. */
|
|
chunkData = safe_emalloc(cs * bytesPerPixel, cs, 0);
|
|
memset(chunkData, 0, cs * bytesPerPixel * cs);
|
|
if (compMax <= 0) {
|
|
goto fail;
|
|
}
|
|
compData = gdCalloc(compMax, 1);
|
|
|
|
/* Save the file position of chunk index, and allocate enough space for
|
|
* each chunk_info block .
|
|
*/
|
|
idxPos = gdTell(out);
|
|
idxSize = ncx * ncy * sizeof(t_chunk_info);
|
|
GD2_DBG(gd_error("Index size is %d", idxSize));
|
|
gdSeek(out, idxPos + idxSize);
|
|
|
|
chunkIdx = safe_emalloc(idxSize, sizeof(t_chunk_info), 0);
|
|
memset(chunkIdx, 0, idxSize * sizeof(t_chunk_info));
|
|
}
|
|
|
|
_gdPutColors (im, out);
|
|
|
|
GD2_DBG(gd_error("Size: %dx%d", im->sx, im->sy));
|
|
GD2_DBG(gd_error("Chunks: %dx%d", ncx, ncy));
|
|
|
|
for (cy = 0; (cy < ncy); cy++) {
|
|
for (cx = 0; (cx < ncx); cx++) {
|
|
ylo = cy * cs;
|
|
yhi = ylo + cs;
|
|
if (yhi > im->sy) {
|
|
yhi = im->sy;
|
|
}
|
|
|
|
GD2_DBG(gd_error("Processing Chunk (%dx%d), y from %d to %d", cx, cy, ylo, yhi));
|
|
chunkLen = 0;
|
|
for (y = ylo; (y < yhi); y++) {
|
|
GD2_DBG(gd_error("y=%d: ",y));
|
|
xlo = cx * cs;
|
|
xhi = xlo + cs;
|
|
if (xhi > im->sx) {
|
|
xhi = im->sx;
|
|
}
|
|
|
|
if (gd2_compressed(fmt)) {
|
|
for (x = xlo; x < xhi; x++) {
|
|
GD2_DBG(gd_error("%d...",x));
|
|
if (im->trueColor) {
|
|
int p = im->tpixels[y][x];
|
|
chunkData[chunkLen++] = gdTrueColorGetAlpha(p);
|
|
chunkData[chunkLen++] = gdTrueColorGetRed(p);
|
|
chunkData[chunkLen++] = gdTrueColorGetGreen(p);
|
|
chunkData[chunkLen++] = gdTrueColorGetBlue(p);
|
|
} else {
|
|
chunkData[chunkLen++] = im->pixels[y][x];
|
|
}
|
|
}
|
|
} else {
|
|
for (x = xlo; x < xhi; x++) {
|
|
GD2_DBG(gd_error("%d, ",x));
|
|
|
|
if (im->trueColor) {
|
|
gdPutInt(im->tpixels[y][x], out);
|
|
} else {
|
|
gdPutC((unsigned char) im->pixels[y][x], out);
|
|
}
|
|
}
|
|
}
|
|
GD2_DBG(gd_error("y=%d done.",y));
|
|
}
|
|
|
|
if (gd2_compressed(fmt)) {
|
|
compLen = compMax;
|
|
if (compress((unsigned char *) &compData[0], &compLen, (unsigned char *) &chunkData[0], chunkLen) != Z_OK) {
|
|
gd_error("Error from compressing");
|
|
} else {
|
|
chunkIdx[chunkNum].offset = gdTell(out);
|
|
chunkIdx[chunkNum++].size = compLen;
|
|
GD2_DBG(gd_error("Chunk %d size %d offset %d", chunkNum, chunkIdx[chunkNum - 1].size, chunkIdx[chunkNum - 1].offset));
|
|
|
|
if (gdPutBuf (compData, compLen, out) <= 0) {
|
|
/* Any alternate suggestions for handling this? */
|
|
gd_error_ex(E_WARNING, "Error %d on write", errno);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
if (gd2_compressed(fmt)) {
|
|
/* Save the position, write the index, restore position (paranoia). */
|
|
GD2_DBG(gd_error("Seeking %d to write index", idxPos));
|
|
posSave = gdTell(out);
|
|
gdSeek(out, idxPos);
|
|
GD2_DBG(gd_error("Writing index"));
|
|
for (x = 0; x < chunkNum; x++) {
|
|
GD2_DBG(gd_error("Chunk %d size %d offset %d", x, chunkIdx[x].size, chunkIdx[x].offset));
|
|
gdPutInt(chunkIdx[x].offset, out);
|
|
gdPutInt(chunkIdx[x].size, out);
|
|
}
|
|
gdSeek(out, posSave);
|
|
}
|
|
fail:
|
|
GD2_DBG(gd_error("Freeing memory"));
|
|
if (chunkData) {
|
|
gdFree(chunkData);
|
|
}
|
|
if (compData) {
|
|
gdFree(compData);
|
|
}
|
|
if (chunkIdx) {
|
|
gdFree(chunkIdx);
|
|
}
|
|
GD2_DBG(gd_error("Done"));
|
|
}
|
|
|
|
void gdImageGd2 (gdImagePtr im, FILE * outFile, int cs, int fmt)
|
|
{
|
|
gdIOCtx *out = gdNewFileCtx(outFile);
|
|
|
|
_gdImageGd2(im, out, cs, fmt);
|
|
|
|
out->gd_free(out);
|
|
}
|
|
|
|
void *gdImageGd2Ptr (gdImagePtr im, int cs, int fmt, int *size)
|
|
{
|
|
void *rv;
|
|
gdIOCtx *out = gdNewDynamicCtx(2048, NULL);
|
|
|
|
_gdImageGd2(im, out, cs, fmt);
|
|
rv = gdDPExtractData(out, size);
|
|
out->gd_free(out);
|
|
|
|
return rv;
|
|
}
|