Pillow/libImaging/SgiRleDecode.c

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/*
* The Python Imaging Library.
* $Id$
*
* decoder for Sgi RLE data.
*
* history:
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* 2017-07-28 mb fixed for images larger than 64KB
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* 2017-07-20 mb created
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*
* Copyright (c) Mickael Bonfill 2017.
*
* See the README file for information on usage and redistribution.
*/
#include "Imaging.h"
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#include "Sgi.h"
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#define SGI_HEADER_SIZE 512
#define RLE_COPY_FLAG 0x80
#define RLE_MAX_RUN 0x7f
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static void read4B(uint32_t* dest, UINT8* buf)
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{
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*dest = (uint32_t)((buf[0] << 24) | (buf[1] << 16) | (buf[2] << 8) | buf[3]);
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}
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static int expandrow(UINT8* dest, UINT8* src, int n, int z)
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{
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UINT8 pixel, count;
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for (;n > 0; n--)
{
pixel = *src++;
if (n == 1 && pixel != 0)
return n;
count = pixel & RLE_MAX_RUN;
if (!count)
return count;
if (pixel & RLE_COPY_FLAG) {
while(count--) {
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*dest = *src++;
dest += z;
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}
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}
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else {
pixel = *src++;
while (count--) {
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*dest = pixel;
dest += z;
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}
}
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}
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return 0;
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}
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static int expandrow2(UINT16* dest, UINT16* src, int n, int z)
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{
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UINT8 pixel, count;
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for (;n > 0; n--)
{
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pixel = ((UINT8*)src)[1];
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++src;
if (n == 1 && pixel != 0)
return n;
count = pixel & RLE_MAX_RUN;
if (!count)
return count;
if (pixel & RLE_COPY_FLAG) {
while(count--) {
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*dest = *src++;
dest += z;
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}
}
else {
while (count--) {
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*dest = *src;
dest += z;
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}
++src;
}
}
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return 0;
}
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int
ImagingSgiRleDecode(Imaging im, ImagingCodecState state,
UINT8* buf, int bytes)
{
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uint32_t *starttab, *lengthtab, rleoffset, rlelength;
int tablen, i, j, rowno, channo, bpc;
long bufsize;
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UINT8 *ptr;
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SGISTATE *context;
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/* Get all data from File descriptor */
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_imaging_seek_pyFd(state->fd, 0L, SEEK_END);
bufsize = _imaging_tell_pyFd(state->fd);
bufsize -= SGI_HEADER_SIZE;
ptr = malloc(sizeof(UINT8) * bufsize);
_imaging_seek_pyFd(state->fd, SGI_HEADER_SIZE, SEEK_SET);
_imaging_read_pyFd(state->fd, ptr, bufsize);
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/* decoder initialization */
state->count = 0;
context = (SGISTATE*)state->context;
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state->y = 0;
if (state->ystep < 0)
state->y = im->ysize - 1;
else
state->ystep = 1;
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/* Allocate memory for RLE tables and rows */
free(state->buffer);
state->buffer = malloc(sizeof(UINT8) * 2 * im->xsize * im->bands);
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tablen = im->bands * im->ysize;
starttab = calloc(tablen, sizeof(uint32_t));
lengthtab = calloc(tablen, sizeof(uint32_t));
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/* populate offsets table */
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for (i = 0, j = 0; i < tablen; i++, j+=4)
read4B(&starttab[i], &ptr[j]);
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/* populate lengths table */
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for (i = 0, j = tablen * sizeof(uint32_t); i < tablen; i++, j+=4)
read4B(&lengthtab[i], &ptr[j]);
state->count += tablen * sizeof(uint32_t) * 2;
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/* read compressed rows */
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for (rowno = 0; rowno < im->ysize; rowno++, state->y += state->ystep)
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{
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for (channo = 0; channo < im->bands; channo++)
{
rleoffset = starttab[rowno + channo * im->ysize];
rlelength = lengthtab[rowno + channo * im->ysize];
rleoffset -= SGI_HEADER_SIZE;
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/* row decompression */
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if (context->bpc ==1) {
if(expandrow(&state->buffer[channo], &ptr[rleoffset], rlelength, im->bands))
goto sgi_finish_decode;
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}
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else {
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if(expandrow2((UINT16*)&state->buffer[channo * 2], (UINT16*)&ptr[rleoffset], rlelength, im->bands))
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goto sgi_finish_decode;
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}
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state->count += rlelength;
}
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/* store decompressed data in image */
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state->shuffle((UINT8*)im->image[state->y], state->buffer, im->xsize);
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}
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bufsize++;
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sgi_finish_decode:
free(starttab);
free(lengthtab);
free(ptr);
return state->count - bufsize;
}