mirror of
https://github.com/libretro/scummvm.git
synced 2024-12-14 21:59:17 +00:00
0ceb383cd3
Much thanks to fuzzie for her assistance.
266 lines
8.2 KiB
C++
266 lines
8.2 KiB
C++
/* ScummVM - Graphic Adventure Engine
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*
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* ScummVM is the legal property of its developers, whose names
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* are too numerous to list here. Please refer to the COPYRIGHT
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* file distributed with this source distribution.
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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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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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*
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*/
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#include "common/list.h"
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#include "common/scummsys.h"
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#include "image/codecs/codec.h"
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#include "image/jpeg.h"
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#include "image/codecs/bmp_raw.h"
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#include "image/codecs/cdtoons.h"
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#include "image/codecs/cinepak.h"
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#include "image/codecs/indeo3.h"
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#include "image/codecs/mjpeg.h"
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#include "image/codecs/mpeg.h"
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#include "image/codecs/msvideo1.h"
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#include "image/codecs/msrle.h"
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#include "image/codecs/qtrle.h"
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#include "image/codecs/rpza.h"
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#include "image/codecs/smc.h"
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#include "image/codecs/svq1.h"
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#include "image/codecs/truemotion1.h"
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#include "common/endian.h"
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#include "common/textconsole.h"
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namespace Image {
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namespace {
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/**
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* Add a color to the QuickTime dither table check queue if it hasn't already been found.
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*/
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inline void addColorToQueue(uint16 color, uint16 index, byte *checkBuffer, Common::List<uint16> &checkQueue) {
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if ((READ_UINT16(checkBuffer + color * 2) & 0xFF) == 0) {
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// Previously unfound color
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WRITE_UINT16(checkBuffer + color * 2, index);
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checkQueue.push_back(color);
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}
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}
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inline byte adjustColorRange(byte currentColor, byte correctColor, byte palColor) {
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return CLIP<int>(currentColor - palColor + correctColor, 0, 255);
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}
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inline uint16 makeQuickTimeDitherColor(byte r, byte g, byte b) {
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// RGB554
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return ((r & 0xF8) << 6) | ((g & 0xF8) << 1) | (b >> 4);
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}
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} // End of anonymous namespace
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byte *Codec::createQuickTimeDitherTable(const byte *palette, uint colorCount) {
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byte *buf = new byte[0x10000];
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memset(buf, 0, 0x10000);
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Common::List<uint16> checkQueue;
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bool foundBlack = false;
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bool foundWhite = false;
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const byte *palPtr = palette;
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// See what colors we have, and add them to the queue to check
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for (uint i = 0; i < colorCount; i++) {
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byte r = *palPtr++;
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byte g = *palPtr++;
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byte b = *palPtr++;
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uint16 n = (i << 8) | 1;
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uint16 col = makeQuickTimeDitherColor(r, g, b);
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if (col == 0) {
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// Special case for close-to-black
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// The original did more here, but it effectively discarded the value
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// due to a poor if-check (whole 16-bit value instead of lower 8-bits).
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WRITE_UINT16(buf, n);
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foundBlack = true;
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} else if (col == 0x3FFF) {
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// Special case for close-to-white
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// The original did more here, but it effectively discarded the value
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// due to a poor if-check (whole 16-bit value instead of lower 8-bits).
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WRITE_UINT16(buf + 0x7FFE, n);
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foundWhite = true;
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} else {
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// Previously unfound color
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addColorToQueue(col, n, buf, checkQueue);
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}
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}
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// More special handling for white
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if (foundWhite)
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checkQueue.push_front(0x3FFF);
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// More special handling for black
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if (foundBlack)
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checkQueue.push_front(0);
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// Go through the list of colors we have and match up similar colors
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// to fill in the table as best as we can.
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while (!checkQueue.empty()) {
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uint16 col = checkQueue.front();
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checkQueue.pop_front();
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uint16 index = READ_UINT16(buf + col * 2);
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uint32 x = col << 4;
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if ((x & 0xFF) < 0xF0)
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addColorToQueue((x + 0x10) >> 4, index, buf, checkQueue);
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if ((x & 0xFF) >= 0x10)
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addColorToQueue((x - 0x10) >> 4, index, buf, checkQueue);
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uint32 y = col << 7;
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if ((y & 0xFF00) < 0xF800)
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addColorToQueue((y + 0x800) >> 7, index, buf, checkQueue);
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if ((y & 0xFF00) >= 0x800)
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addColorToQueue((y - 0x800) >> 7, index, buf, checkQueue);
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uint32 z = col << 2;
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if ((z & 0xFF00) < 0xF800)
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addColorToQueue((z + 0x800) >> 2, index, buf, checkQueue);
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if ((z & 0xFF00) >= 0x800)
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addColorToQueue((z - 0x800) >> 2, index, buf, checkQueue);
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}
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// Contract the table back to just palette entries
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for (int i = 0; i < 0x4000; i++)
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buf[i] = READ_UINT16(buf + i * 2) >> 8;
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// Now go through and distribute the error to three more pixels
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byte *bufPtr = buf;
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for (uint realR = 0; realR < 0x100; realR += 8) {
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for (uint realG = 0; realG < 0x100; realG += 8) {
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for (uint realB = 0; realB < 0x100; realB += 16) {
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byte palIndex = *bufPtr;
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byte r = realR;
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byte g = realG;
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byte b = realB;
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byte palR = palette[palIndex * 3] & 0xF8;
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byte palG = palette[palIndex * 3 + 1] & 0xF8;
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byte palB = palette[palIndex * 3 + 2] & 0xF0;
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r = adjustColorRange(r, realR, palR);
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g = adjustColorRange(g, realG, palG);
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b = adjustColorRange(b, realB, palB);
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palIndex = buf[makeQuickTimeDitherColor(r, g, b)];
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bufPtr[0x4000] = palIndex;
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palR = palette[palIndex * 3] & 0xF8;
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palG = palette[palIndex * 3 + 1] & 0xF8;
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palB = palette[palIndex * 3 + 2] & 0xF0;
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r = adjustColorRange(r, realR, palR);
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g = adjustColorRange(g, realG, palG);
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b = adjustColorRange(b, realB, palB);
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palIndex = buf[makeQuickTimeDitherColor(r, g, b)];
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bufPtr[0x8000] = palIndex;
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palR = palette[palIndex * 3] & 0xF8;
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palG = palette[palIndex * 3 + 1] & 0xF8;
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palB = palette[palIndex * 3 + 2] & 0xF0;
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r = adjustColorRange(r, realR, palR);
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g = adjustColorRange(g, realG, palG);
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b = adjustColorRange(b, realB, palB);
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palIndex = buf[makeQuickTimeDitherColor(r, g, b)];
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bufPtr[0xC000] = palIndex;
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bufPtr++;
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}
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}
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}
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return buf;
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}
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Codec *createBitmapCodec(uint32 tag, int width, int height, int bitsPerPixel) {
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switch (tag) {
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case SWAP_CONSTANT_32(0):
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return new BitmapRawDecoder(width, height, bitsPerPixel);
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case SWAP_CONSTANT_32(1):
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return new MSRLEDecoder(width, height, bitsPerPixel);
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case MKTAG('C','R','A','M'):
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case MKTAG('m','s','v','c'):
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case MKTAG('W','H','A','M'):
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return new MSVideo1Decoder(width, height, bitsPerPixel);
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case MKTAG('c','v','i','d'):
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return new CinepakDecoder(bitsPerPixel);
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case MKTAG('I','V','3','2'):
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return new Indeo3Decoder(width, height);
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#ifdef IMAGE_CODECS_TRUEMOTION1_H
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case MKTAG('D','U','C','K'):
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case MKTAG('d','u','c','k'):
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return new TrueMotion1Decoder();
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#endif
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#ifdef USE_MPEG2
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case MKTAG('m','p','g','2'):
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return new MPEGDecoder();
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#endif
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case MKTAG('M','J','P','G'):
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case MKTAG('m','j','p','g'):
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return new MJPEGDecoder();
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default:
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if (tag & 0x00FFFFFF)
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warning("Unknown BMP/AVI compression format \'%s\'", tag2str(tag));
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else
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warning("Unknown BMP/AVI compression format %d", SWAP_BYTES_32(tag));
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}
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return 0;
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}
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Codec *createQuickTimeCodec(uint32 tag, int width, int height, int bitsPerPixel) {
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switch (tag) {
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case MKTAG('c','v','i','d'):
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// Cinepak: As used by most Myst and all Riven videos as well as some Myst ME videos. "The Chief" videos also use this.
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return new CinepakDecoder(bitsPerPixel);
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case MKTAG('r','p','z','a'):
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// Apple Video ("Road Pizza"): Used by some Myst videos.
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return new RPZADecoder(width, height);
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case MKTAG('r','l','e',' '):
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// QuickTime RLE: Used by some Myst ME videos.
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return new QTRLEDecoder(width, height, bitsPerPixel);
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case MKTAG('s','m','c',' '):
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// Apple SMC: Used by some Myst videos.
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return new SMCDecoder(width, height);
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case MKTAG('S','V','Q','1'):
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// Sorenson Video 1: Used by some Myst ME videos.
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return new SVQ1Decoder(width, height);
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case MKTAG('S','V','Q','3'):
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// Sorenson Video 3: Used by some Myst ME videos.
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warning("Sorenson Video 3 not yet supported");
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break;
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case MKTAG('j','p','e','g'):
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// JPEG: Used by some Myst ME 10th Anniversary videos.
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return new JPEGDecoder();
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case MKTAG('Q','k','B','k'):
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// CDToons: Used by most of the Broderbund games.
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return new CDToonsDecoder(width, height);
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default:
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warning("Unsupported QuickTime codec \'%s\'", tag2str(tag));
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}
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return 0;
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}
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} // End of namespace Image
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