mirror of
https://github.com/netsurf-browser/netsurf
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3d9a1198db
Reduce constant bitmap overhead per reference by moving to a flag word. Allow bitmaps to be reduced back to their raw data to free extra memory in a highly efficient manner. svn path=/import/netsurf/; revision=2089
279 lines
7.7 KiB
C
279 lines
7.7 KiB
C
/*
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* This file is part of NetSurf, http://netsurf.sourceforge.net/
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* Licensed under the GNU General Public License,
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* http://www.opensource.org/licenses/gpl-license
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* Copyright 2003 John M Bell <jmb202@ecs.soton.ac.uk>
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* Copyright 2004 Richard Wilson <not_ginger_matt@users.sourceforge.net>
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*/
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#include <assert.h>
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#include <string.h>
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#include <stdbool.h>
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#include <stdlib.h>
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#include "netsurf/utils/config.h"
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#include "netsurf/content/content.h"
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#include "netsurf/desktop/browser.h"
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#include "netsurf/desktop/options.h"
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#include "netsurf/desktop/plotters.h"
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#include "netsurf/image/bitmap.h"
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#include "netsurf/image/gif.h"
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#include "netsurf/image/gifread.h"
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#include "netsurf/utils/log.h"
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#include "netsurf/utils/messages.h"
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#include "netsurf/utils/utils.h"
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/* GIF FUNCTIONALITY
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=================
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All GIFs are dynamically decompressed using the routines that gifread.c
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provides. Whilst this allows support for progressive decoding, it is
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not implemented here as NetSurf currently does not provide such support.
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[rjw] - Sun 4th April 2004
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*/
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#ifdef WITH_GIF
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static void nsgif_invalidate(struct bitmap *bitmap, void *private_word);
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static void nsgif_animate(void *p);
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static void nsgif_get_frame(struct content *c);
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bool nsgif_create(struct content *c, const char *params[]) {
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union content_msg_data msg_data;
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/* Initialise our data structure
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*/
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c->data.gif.gif = calloc(sizeof(gif_animation), 1);
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if (!c->data.gif.gif) {
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msg_data.error = messages_get("NoMemory");
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content_broadcast(c, CONTENT_MSG_ERROR, msg_data);
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warn_user("NoMemory", 0);
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return false;
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}
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return true;
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}
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bool nsgif_convert(struct content *c, int iwidth, int iheight) {
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int res;
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struct gif_animation *gif;
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union content_msg_data msg_data;
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/* Create our animation
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*/
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gif = c->data.gif.gif;
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gif->gif_data = c->source_data;
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gif->buffer_size = c->source_size;
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gif->buffer_position = 0;
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/* Initialise the GIF
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*/
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res = gif_initialise(gif);
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switch (res) {
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case GIF_INSUFFICIENT_MEMORY:
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msg_data.error = messages_get("NoMemory");
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content_broadcast(c, CONTENT_MSG_ERROR, msg_data);
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warn_user("NoMemory", 0);
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return false;
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case GIF_INSUFFICIENT_DATA:
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case GIF_DATA_ERROR:
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msg_data.error = messages_get("BadGIF");
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content_broadcast(c, CONTENT_MSG_ERROR, msg_data);
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return false;
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}
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/* Abort on bad GIFs
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*/
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if ((gif->frame_count_partial == 0) || (gif->width == 0) ||
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(gif->height == 0)) {
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msg_data.error = messages_get("BadGIF");
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content_broadcast(c, CONTENT_MSG_ERROR, msg_data);
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return false;
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}
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/* Store our content width and description
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*/
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c->width = gif->width;
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c->height = gif->height;
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c->title = malloc(100);
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if (c->title)
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snprintf(c->title, 100, messages_get("GIFTitle"), c->width, c->height, c->source_size);
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c->size += (gif->width * gif->height * 4) + 16 + 44 + 100;
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/* Schedule the animation if we have one
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*/
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c->data.gif.current_frame = 0;
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if (gif->frame_count_partial > 1)
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schedule(gif->frames[0].frame_delay, nsgif_animate, c);
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else
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bitmap_set_suspendable(gif->frame_image, gif, nsgif_invalidate);
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/* Exit as a success
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*/
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c->bitmap = gif->frame_image;
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c->status = CONTENT_STATUS_DONE;
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return true;
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}
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void nsgif_invalidate(struct bitmap *bitmap, void *private_word) {
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struct gif_animation *gif = (struct gif_animation *)private_word;
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gif->decoded_frame = -1;
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}
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bool nsgif_redraw(struct content *c, int x, int y,
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int width, int height,
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int clip_x0, int clip_y0, int clip_x1, int clip_y1,
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float scale, unsigned long background_colour) {
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if (c->data.gif.current_frame != c->data.gif.gif->decoded_frame)
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nsgif_get_frame(c);
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c->bitmap = c->data.gif.gif->frame_image;
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return plot.bitmap(x, y, width, height, c->bitmap, background_colour);
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}
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bool nsgif_redraw_tiled(struct content *c, int x, int y,
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int width, int height,
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int clip_x0, int clip_y0, int clip_x1, int clip_y1,
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float scale, unsigned long background_colour,
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bool repeat_x, bool repeat_y) {
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if (c->data.gif.current_frame != c->data.gif.gif->decoded_frame)
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nsgif_get_frame(c);
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c->bitmap = c->data.gif.gif->frame_image;
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return plot.bitmap_tile(x, y, width, height, c->bitmap, background_colour,
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repeat_x, repeat_y);
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}
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void nsgif_destroy(struct content *c)
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{
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/* Free all the associated memory buffers
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*/
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schedule_remove(nsgif_animate, c);
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gif_finalise(c->data.gif.gif);
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free(c->data.gif.gif);
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free(c->title);
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}
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/**
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* Updates the GIF bitmap to display the current frame
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*
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* \param c the content to update
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*/
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void nsgif_get_frame(struct content *c) {
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int previous_frame, current_frame, frame;
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current_frame = c->data.gif.current_frame;
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if (!option_animate_images)
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current_frame = 0;
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if (current_frame < c->data.gif.gif->decoded_frame)
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previous_frame = 0;
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else
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previous_frame = c->data.gif.gif->decoded_frame + 1;
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for (frame = previous_frame; frame <= current_frame; frame++)
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gif_decode_frame(c->data.gif.gif, frame);
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}
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/** Performs any necessary animation.
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@param c The content to animate
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*/
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void nsgif_animate(void *p)
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{
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struct content *c = p;
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union content_msg_data data;
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struct gif_animation *gif;
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int delay;
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int f;
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/* Advance by a frame, updating the loop count accordingly
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*/
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gif = c->data.gif.gif;
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c->data.gif.current_frame++;
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if (c->data.gif.current_frame == (int)gif->frame_count_partial) {
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c->data.gif.current_frame = 0;
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/* A loop count of 0 has a special meaning of infinite
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*/
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if (gif->loop_count != 0) {
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gif->loop_count--;
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if (gif->loop_count == 0) {
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c->data.gif.current_frame = gif->frame_count_partial - 1;
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gif->loop_count = -1;
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}
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}
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}
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/* Continue animating if we should
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*/
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if (gif->loop_count >= 0) {
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delay = gif->frames[c->data.gif.current_frame].frame_delay;
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if (delay < option_minimum_gif_delay)
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delay = option_minimum_gif_delay;
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schedule(delay, nsgif_animate, c);
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}
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if (!option_animate_images)
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return;
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/* area within gif to redraw */
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f = c->data.gif.current_frame;
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data.redraw.x = gif->frames[f].redraw_x;
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data.redraw.y = gif->frames[f].redraw_y;
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data.redraw.width = gif->frames[f].redraw_width;
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data.redraw.height = gif->frames[f].redraw_height;
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/* redraw background (true) or plot on top (false) */
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if (c->data.gif.current_frame > 0) {
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data.redraw.full_redraw = gif->frames[f - 1].redraw_required;
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/* previous frame needed clearing: expand the redraw area to cover it */
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if (data.redraw.full_redraw) {
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if (data.redraw.x > gif->frames[f - 1].redraw_x) {
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data.redraw.width += data.redraw.x - gif->frames[f - 1].redraw_x;
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data.redraw.x = gif->frames[f - 1].redraw_x;
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}
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if (data.redraw.y > gif->frames[f - 1].redraw_y) {
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data.redraw.height += (data.redraw.y - gif->frames[f - 1].redraw_y);
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data.redraw.y = gif->frames[f - 1].redraw_y;
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}
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if ((gif->frames[f - 1].redraw_x + gif->frames[f - 1].redraw_width) >
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(data.redraw.x + data.redraw.width))
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data.redraw.width = gif->frames[f - 1].redraw_x - data.redraw.x +
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gif->frames[f - 1].redraw_width;
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if ((gif->frames[f - 1].redraw_y + gif->frames[f - 1].redraw_height) >
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(data.redraw.y + data.redraw.height))
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data.redraw.height = gif->frames[f - 1].redraw_y - data.redraw.y +
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gif->frames[f - 1].redraw_height;
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}
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} else {
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/* do advanced check */
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if ((data.redraw.x == 0) && (data.redraw.y == 0) &&
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(data.redraw.width == gif->width) &&
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(data.redraw.height == gif->height)) {
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data.redraw.full_redraw = !gif->frames[f].opaque;
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} else {
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data.redraw.full_redraw = true;
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data.redraw.x = 0;
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data.redraw.y = 0;
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data.redraw.width = gif->width;
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data.redraw.height = gif->height;
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}
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}
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/* other data */
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data.redraw.object = c;
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data.redraw.object_x = 0;
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data.redraw.object_y = 0;
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data.redraw.object_width = c->width;
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data.redraw.object_height = c->height;
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content_broadcast(c, CONTENT_MSG_REDRAW, data);
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}
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#endif
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