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find * -type f "-(" -name "*.bdf" -o -name "*.c" -o -name "*.h" -o -name "*.py" -o -name "*.rst" -o -name "*.txt" "-)" -exec sed -e "s/[[:space:]]*$//" -i {} \;
298 lines
6.3 KiB
C
298 lines
6.3 KiB
C
/*
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* The Python Imaging Library.
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* $Id$
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*
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* a fast, suspendable GIF decoder
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*
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* history:
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* 95-09-03 fl Created
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* 95-09-05 fl Fixed sign problem on 16-bit platforms
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* 95-09-13 fl Added some storage shortcuts
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* 96-03-28 fl Revised API, integrated with PIL
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* 96-12-10 fl Added interlace support
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* 96-12-16 fl Fixed premature termination bug introduced by last fix
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* 97-01-05 fl Don't mess up on bogus configuration
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* 97-01-17 fl Don't mess up on very small, interlaced files
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* 99-02-07 fl Minor speedups
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*
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* Copyright (c) Secret Labs AB 1997-99.
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* Copyright (c) Fredrik Lundh 1995-97.
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*
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* See the README file for information on usage and redistribution.
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*/
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#include "Imaging.h"
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#include <stdio.h>
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#include <memory.h> /* memcpy() */
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#include "Gif.h"
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#define NEWLINE(state, context) {\
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state->x = 0;\
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state->y += context->step;\
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while (state->y >= state->ysize)\
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switch (context->interlace) {\
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case 1:\
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context->repeat = state->y = 4;\
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context->interlace = 2;\
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break;\
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case 2:\
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context->step = 4;\
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context->repeat = state->y = 2;\
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context->interlace = 3;\
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break;\
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case 3:\
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context->step = 2;\
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context->repeat = state->y = 1;\
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context->interlace = 0;\
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break;\
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default:\
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return -1;\
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}\
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if (state->y < state->ysize)\
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out = im->image8[state->y + state->yoff] + state->xoff;\
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}
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int
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ImagingGifDecode(Imaging im, ImagingCodecState state, UINT8* buffer, int bytes)
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{
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UINT8* p;
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UINT8* out;
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int c, i;
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int thiscode;
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GIFDECODERSTATE *context = (GIFDECODERSTATE*) state->context;
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UINT8 *ptr = buffer;
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if (!state->state) {
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/* Initialise state */
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if (context->bits < 0 || context->bits > 8) {
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state->errcode = IMAGING_CODEC_CONFIG;
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return -1;
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}
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/* Clear code */
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context->clear = 1 << context->bits;
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/* End code */
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context->end = context->clear + 1;
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/* Interlace */
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if (context->interlace) {
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context->interlace = 1;
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context->step = context->repeat = 8;
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} else
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context->step = 1;
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state->state = 1;
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}
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out = im->image8[state->y + state->yoff] + state->xoff + state->x;
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for (;;) {
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if (state->state == 1) {
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/* First free entry in table */
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context->next = context->clear + 2;
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/* Initial code size */
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context->codesize = context->bits + 1;
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context->codemask = (1 << context->codesize) - 1;
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/* Buffer pointer. We fill the buffer from right, which
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allows us to return all of it in one operation. */
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context->bufferindex = GIFBUFFER;
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state->state = 2;
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}
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if (context->bufferindex < GIFBUFFER) {
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/* Return whole buffer in one chunk */
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i = GIFBUFFER - context->bufferindex;
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p = &context->buffer[context->bufferindex];
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context->bufferindex = GIFBUFFER;
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} else {
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/* Get current symbol */
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while (context->bitcount < context->codesize) {
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if (context->blocksize > 0) {
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/* Read next byte */
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c = *ptr++; bytes--;
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context->blocksize--;
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/* New bits are shifted in from from the left. */
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context->bitbuffer |= (INT32) c << context->bitcount;
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context->bitcount += 8;
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} else {
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/* New GIF block */
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/* We don't start decoding unless we have a full block */
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if (bytes < 1)
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return ptr - buffer;
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c = *ptr;
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if (bytes < c+1)
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return ptr - buffer;
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context->blocksize = c;
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ptr++; bytes--;
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}
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}
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/* Extract current symbol from bit buffer. */
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c = (int) context->bitbuffer & context->codemask;
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/* Adjust buffer */
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context->bitbuffer >>= context->codesize;
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context->bitcount -= context->codesize;
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/* If c is less than "clear", it's a data byte. Otherwise,
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it's either clear/end or a code symbol which should be
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expanded. */
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if (c == context->clear) {
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if (state->state != 2)
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state->state = 1;
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continue;
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}
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if (c == context->end)
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break;
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i = 1;
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p = &context->lastdata;
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if (state->state == 2) {
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/* First valid symbol after clear; use as is */
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if (c > context->clear) {
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state->errcode = IMAGING_CODEC_BROKEN;
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return -1;
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}
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context->lastdata = context->lastcode = c;
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state->state = 3;
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} else {
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thiscode = c;
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if (c > context->next) {
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state->errcode = IMAGING_CODEC_BROKEN;
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return -1;
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}
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if (c == context->next) {
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/* c == next is allowed. not sure why. */
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if (context->bufferindex <= 0) {
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state->errcode = IMAGING_CODEC_BROKEN;
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return -1;
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}
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context->buffer[--context->bufferindex] =
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context->lastdata;
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c = context->lastcode;
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}
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while (c >= context->clear) {
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/* Copy data string to buffer (beginning from right) */
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if (context->bufferindex <= 0 || c >= GIFTABLE) {
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state->errcode = IMAGING_CODEC_BROKEN;
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return -1;
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}
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context->buffer[--context->bufferindex] =
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context->data[c];
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c = context->link[c];
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}
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context->lastdata = c;
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if (context->next < GIFTABLE) {
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/* We'll only add this symbol if we have room
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for it (take advise, Netscape!) */
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context->data[context->next] = c;
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context->link[context->next] = context->lastcode;
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if (context->next == context->codemask &&
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context->codesize < GIFBITS) {
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/* Expand code size */
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context->codesize++;
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context->codemask = (1 << context->codesize) - 1;
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}
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context->next++;
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}
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context->lastcode = thiscode;
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}
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}
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/* Copy the bytes into the image */
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if (state->y >= state->ysize) {
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state->errcode = IMAGING_CODEC_OVERRUN;
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return -1;
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}
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/* To squeeze some extra pixels out of this loop, we test for
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some common cases and handle them separately. */
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/* FIXME: should we handle the transparency index in here??? */
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if (i == 1) {
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if (state->x < state->xsize-1) {
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/* Single pixel, not at the end of the line. */
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*out++ = p[0];
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state->x++;
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continue;
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}
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} else if (state->x + i <= state->xsize) {
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/* This string fits into current line. */
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memcpy(out, p, i);
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out += i;
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state->x += i;
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if (state->x == state->xsize) {
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NEWLINE(state, context);
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}
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continue;
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}
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/* No shortcut, copy pixel by pixel */
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for (c = 0; c < i; c++) {
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*out++ = p[c];
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if (++state->x >= state->xsize) {
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NEWLINE(state, context);
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}
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}
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}
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return ptr - buffer;
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}
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