0ceaff2b65
This adds ability to view gif images in rockbox. Works both on color and gray/monochrome targets (greylib). Aspect correction is supported as well. Limitations: - animated gifs are restricted to 32 frames - animated gifs loop always (loopcount is ignored) - plain text extension is not supported - animated gifs with interframe delay = 0 are treated as still images (web browsers usually treat delay 0 as 100ms to prevent exhaustive CPU load by such images) Change-Id: I61501f801ddcd403410e38d83e6bddc9883e7ede
241 lines
7.1 KiB
C
241 lines
7.1 KiB
C
/***************************************************************************
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* __________ __ ___.
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* Open \______ \ ____ ____ | | _\_ |__ _______ ___
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* Source | _// _ \_/ ___\| |/ /| __ \ / _ \ \/ /
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* Jukebox | | ( <_> ) \___| < | \_\ ( <_> > < <
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* Firmware |____|_ /\____/ \___ >__|_ \|___ /\____/__/\_ \
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* \/ \/ \/ \/ \/
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*
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* Copyright (c) 2012 Marcin Bukat
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version 2
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* of the License, or (at your option) any later version.
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*
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* This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
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* KIND, either express or implied.
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*
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****************************************************************************/
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#include "plugin.h"
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#include "lcd.h"
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#include <lib/pluginlib_bmp.h>
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#include "../imageviewer.h"
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#include "bmp.h"
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#include "gif_decoder.h"
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#include "gif_lib.h"
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/* decoder context struct */
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static struct gif_decoder decoder;
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static char print[32]; /* use a common snprintf() buffer */
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/* decompressed image in the possible sizes (1,2,4,8), wasting the other */
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/* max 32 frames */
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static unsigned char *disp[GIF_MAX_FRAMES][9];
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static unsigned char *disp_buf;
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#if defined(HAVE_LCD_COLOR)
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#define resize_bitmap smooth_resize_bitmap
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#else
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#define resize_bitmap grey_resize_bitmap
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#endif
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#if defined(USEGSLIB) && (CONFIG_PLATFORM & PLATFORM_HOSTED)
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/* hack: fix error "undefined reference to `_grey_info'". */
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GREY_INFO_STRUCT
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#endif /* USEGSLIB */
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static void draw_image_rect(struct image_info *info,
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int x, int y, int width, int height)
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{
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unsigned char **pdisp = (unsigned char **)info->data;
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#ifdef HAVE_LCD_COLOR
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rb->lcd_bitmap_part((fb_data *)*pdisp, info->x + x, info->y + y,
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STRIDE(SCREEN_MAIN, info->width, info->height),
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x + MAX(0, (LCD_WIDTH-info->width)/2),
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y + MAX(0, (LCD_HEIGHT-info->height)/2),
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width, height);
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#else
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mylcd_ub_gray_bitmap_part(*pdisp,
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info->x + x, info->y + y, info->width,
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x + MAX(0, (LCD_WIDTH-info->width)/2),
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y + MAX(0, (LCD_HEIGHT-info->height)/2),
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width, height);
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#endif
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}
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static int img_mem(int ds)
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{
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struct gif_decoder *p_decoder = &decoder;
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return p_decoder->native_img_size/ds;
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}
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static int load_image(char *filename, struct image_info *info,
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unsigned char *buf, ssize_t *buf_size)
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{
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int w, h;
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long time = 0; /* measured ticks */
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struct gif_decoder *p_decoder = &decoder;
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unsigned char *memory, *memory_max;
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size_t memory_size;
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/* cleanup */
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memset(&disp, 0, sizeof(disp));
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/* align buffer */
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memory = (unsigned char *)((intptr_t)(buf + 3) & ~3);
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memory_max = (unsigned char *)((intptr_t)(memory + *buf_size) & ~3);
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memory_size = memory_max - memory;
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#ifdef DISK_SPINDOWN
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if (iv->running_slideshow && iv->immediate_ata_off) {
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/* running slideshow and time is long enough: power down disk */
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rb->storage_sleep();
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}
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#endif
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/* initialize decoder context struct, set buffer decoder is free
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* to use.
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*/
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gif_decoder_init(p_decoder, memory, memory_size);
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/* populate internal data from gif file control structs */
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gif_open(filename, p_decoder);
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if (!p_decoder->error)
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{
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if (!iv->running_slideshow)
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{
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rb->lcd_putsf(0, 2, "image %dx%d",
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p_decoder->width,
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p_decoder->height);
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rb->lcd_putsf(0, 3, "decoding %d*%d",
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p_decoder->width,
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p_decoder->height);
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rb->lcd_update();
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}
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/* the actual decoding */
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time = *rb->current_tick;
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#ifdef HAVE_ADJUSTABLE_CPU_FREQ
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rb->cpu_boost(true);
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#endif
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gif_decode(p_decoder, iv->cb_progress);
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#ifdef HAVE_ADJUSTABLE_CPU_FREQ
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rb->cpu_boost(false);
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#endif
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time = *rb->current_tick - time;
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}
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if (!iv->running_slideshow && !p_decoder->error)
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{
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rb->snprintf(print, sizeof(print), " %ld.%02ld sec ", time/HZ, time%HZ);
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rb->lcd_getstringsize(print, &w, &h); /* centered in progress bar */
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rb->lcd_putsxy((LCD_WIDTH - w)/2, LCD_HEIGHT - h, print);
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rb->lcd_update();
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}
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if (p_decoder->error)
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{
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rb->splashf(HZ, "%s", GifErrorString(p_decoder->error));
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return PLUGIN_ERROR;
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}
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info->x_size = p_decoder->width;
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info->y_size = p_decoder->height;
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info->frames_count = p_decoder->frames_count;
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info->delay = p_decoder->delay;
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//p_decoder->native_img_size = (p_decoder->native_img_size + 3) & ~3;
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disp_buf = p_decoder->mem +
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((p_decoder->native_img_size*p_decoder->frames_count + 3) & ~3);
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*buf_size = memory_max - disp_buf;
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return PLUGIN_OK;
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}
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static int get_image(struct image_info *info, int frame, int ds)
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{
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unsigned char **p_disp = &disp[frame][ds]; /* short cut */
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struct gif_decoder *p_decoder = &decoder;
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info->width = p_decoder->width / ds;
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info->height = p_decoder->height / ds;
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info->data = p_disp;
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if (*p_disp != NULL)
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{
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/* we still have it */
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return PLUGIN_OK;
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}
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/* assign image buffer */
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if (ds > 1)
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{
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if (!iv->running_slideshow)
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{
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rb->lcd_putsf(0, 3, "resizing %d*%d", info->width, info->height);
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rb->lcd_update();
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}
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struct bitmap bmp_src, bmp_dst;
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/* size of the scalled image */
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int size = img_mem(ds);
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if (disp_buf + size >= p_decoder->mem + p_decoder->mem_size)
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{
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/* have to discard the current */
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int i;
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for (i=1; i<=8; i++)
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disp[frame][i] = NULL; /* invalidate all bitmaps */
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/* start again from the beginning of the buffer */
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disp_buf = p_decoder->mem +
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p_decoder->native_img_size*p_decoder->frames_count;
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}
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*p_disp = disp_buf;
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disp_buf += size;
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bmp_src.width = p_decoder->width;
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bmp_src.height = p_decoder->height;
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bmp_src.data = p_decoder->mem + p_decoder->native_img_size*frame;
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bmp_dst.width = info->width;
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bmp_dst.height = info->height;
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bmp_dst.data = *p_disp;
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#ifdef HAVE_ADJUSTABLE_CPU_FREQ
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rb->cpu_boost(true);
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#endif
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resize_bitmap(&bmp_src, &bmp_dst);
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#ifdef HAVE_ADJUSTABLE_CPU_FREQ
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rb->cpu_boost(false);
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#endif
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}
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else
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{
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*p_disp = p_decoder->mem + p_decoder->native_img_size*frame;
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}
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return PLUGIN_OK;
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}
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const struct image_decoder image_decoder = {
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true,
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img_mem,
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load_image,
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get_image,
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draw_image_rect,
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};
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IMGDEC_HEADER
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