mirror of
https://github.com/libretro/scummvm.git
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484 lines
16 KiB
C++
484 lines
16 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 "sci/resource.h"
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#include "sci/engine/kernel.h"
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#include "sci/engine/selector.h"
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#include "sci/engine/seg_manager.h"
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#include "sci/sound/audio.h"
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#include "backends/audiocd/audiocd.h"
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#include "common/file.h"
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#include "common/memstream.h"
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#include "common/system.h"
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#include "audio/audiostream.h"
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#include "audio/decoders/aiff.h"
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#include "audio/decoders/flac.h"
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#include "audio/decoders/mac_snd.h"
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#include "audio/decoders/mp3.h"
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#include "audio/decoders/raw.h"
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#include "audio/decoders/vorbis.h"
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#include "audio/decoders/wave.h"
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namespace Sci {
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AudioPlayer::AudioPlayer(ResourceManager *resMan) : _resMan(resMan), _audioRate(11025),
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_syncResource(NULL), _syncOffset(0), _audioCdStart(0) {
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_mixer = g_system->getMixer();
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_wPlayFlag = false;
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}
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AudioPlayer::~AudioPlayer() {
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stopAllAudio();
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}
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void AudioPlayer::stopAllAudio() {
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stopSoundSync();
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stopAudio();
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if (_audioCdStart > 0)
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audioCdStop();
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}
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int AudioPlayer::startAudio(uint16 module, uint32 number) {
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int sampleLen;
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Audio::AudioStream *audioStream = getAudioStream(number, module, &sampleLen);
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if (audioStream) {
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_wPlayFlag = false;
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Audio::Mixer::SoundType soundType = (module == 65535) ? Audio::Mixer::kSFXSoundType : Audio::Mixer::kSpeechSoundType;
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_mixer->playStream(soundType, &_audioHandle, audioStream);
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return sampleLen;
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} else {
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// Don't throw a warning in this case. getAudioStream() already has. Some games
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// do miss audio entries (perhaps because of a typo, or because they were simply
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// forgotten).
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return 0;
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}
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}
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int AudioPlayer::wPlayAudio(uint16 module, uint32 tuple) {
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// Get the audio sample length and set the wPlay flag so we return 0 on
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// position. SSCI pre-loads the audio here, but it's much easier for us to
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// just get the sample length and return that. wPlayAudio should *not*
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// actually start the sample.
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int sampleLen = 0;
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Audio::AudioStream *audioStream = getAudioStream(tuple, module, &sampleLen);
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if (!audioStream)
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warning("wPlayAudio: unable to create stream for audio tuple %d, module %d", tuple, module);
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delete audioStream;
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_wPlayFlag = true;
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return sampleLen;
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}
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void AudioPlayer::stopAudio() {
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_mixer->stopHandle(_audioHandle);
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}
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void AudioPlayer::pauseAudio() {
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_mixer->pauseHandle(_audioHandle, true);
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}
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void AudioPlayer::resumeAudio() {
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_mixer->pauseHandle(_audioHandle, false);
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}
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int AudioPlayer::getAudioPosition() {
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if (_mixer->isSoundHandleActive(_audioHandle))
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return _mixer->getSoundElapsedTime(_audioHandle) * 6 / 100; // return elapsed time in ticks
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else if (_wPlayFlag)
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return 0; // Sound has "loaded" so return that it hasn't started
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else
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return -1; // Sound finished
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}
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enum SolFlags {
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kSolFlagCompressed = 1 << 0,
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kSolFlagUnknown = 1 << 1,
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kSolFlag16Bit = 1 << 2,
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kSolFlagIsSigned = 1 << 3
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};
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// FIXME: Move this to sound/adpcm.cpp?
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// Note that the 16-bit version is also used in coktelvideo.cpp
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static const uint16 tableDPCM16[128] = {
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0x0000, 0x0008, 0x0010, 0x0020, 0x0030, 0x0040, 0x0050, 0x0060, 0x0070, 0x0080,
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0x0090, 0x00A0, 0x00B0, 0x00C0, 0x00D0, 0x00E0, 0x00F0, 0x0100, 0x0110, 0x0120,
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0x0130, 0x0140, 0x0150, 0x0160, 0x0170, 0x0180, 0x0190, 0x01A0, 0x01B0, 0x01C0,
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0x01D0, 0x01E0, 0x01F0, 0x0200, 0x0208, 0x0210, 0x0218, 0x0220, 0x0228, 0x0230,
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0x0238, 0x0240, 0x0248, 0x0250, 0x0258, 0x0260, 0x0268, 0x0270, 0x0278, 0x0280,
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0x0288, 0x0290, 0x0298, 0x02A0, 0x02A8, 0x02B0, 0x02B8, 0x02C0, 0x02C8, 0x02D0,
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0x02D8, 0x02E0, 0x02E8, 0x02F0, 0x02F8, 0x0300, 0x0308, 0x0310, 0x0318, 0x0320,
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0x0328, 0x0330, 0x0338, 0x0340, 0x0348, 0x0350, 0x0358, 0x0360, 0x0368, 0x0370,
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0x0378, 0x0380, 0x0388, 0x0390, 0x0398, 0x03A0, 0x03A8, 0x03B0, 0x03B8, 0x03C0,
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0x03C8, 0x03D0, 0x03D8, 0x03E0, 0x03E8, 0x03F0, 0x03F8, 0x0400, 0x0440, 0x0480,
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0x04C0, 0x0500, 0x0540, 0x0580, 0x05C0, 0x0600, 0x0640, 0x0680, 0x06C0, 0x0700,
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0x0740, 0x0780, 0x07C0, 0x0800, 0x0900, 0x0A00, 0x0B00, 0x0C00, 0x0D00, 0x0E00,
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0x0F00, 0x1000, 0x1400, 0x1800, 0x1C00, 0x2000, 0x3000, 0x4000
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};
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static const byte tableDPCM8[8] = {0, 1, 2, 3, 6, 10, 15, 21};
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static void deDPCM16(byte *soundBuf, Common::SeekableReadStream &audioStream, uint32 n) {
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int16 *out = (int16 *) soundBuf;
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int32 s = 0;
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for (uint32 i = 0; i < n; i++) {
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byte b = audioStream.readByte();
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if (b & 0x80)
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s -= tableDPCM16[b & 0x7f];
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else
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s += tableDPCM16[b];
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s = CLIP<int32>(s, -32768, 32767);
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*out++ = TO_LE_16(s);
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}
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}
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static void deDPCM8Nibble(byte *soundBuf, int32 &s, byte b) {
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if (b & 8) {
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#ifdef ENABLE_SCI32
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// SCI2.1 reverses the order of the table values here
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if (getSciVersion() >= SCI_VERSION_2_1)
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s -= tableDPCM8[b & 7];
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else
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#endif
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s -= tableDPCM8[7 - (b & 7)];
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} else
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s += tableDPCM8[b & 7];
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s = CLIP<int32>(s, 0, 255);
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*soundBuf = s;
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}
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static void deDPCM8(byte *soundBuf, Common::SeekableReadStream &audioStream, uint32 n) {
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int32 s = 0x80;
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for (uint i = 0; i < n; i++) {
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byte b = audioStream.readByte();
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deDPCM8Nibble(soundBuf++, s, b >> 4);
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deDPCM8Nibble(soundBuf++, s, b & 0xf);
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}
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}
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// Sierra SOL audio file reader
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// Check here for more info: http://wiki.multimedia.cx/index.php?title=Sierra_Audio
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static bool readSOLHeader(Common::SeekableReadStream *audioStream, int headerSize, uint32 &size, uint16 &audioRate, byte &audioFlags, uint32 resSize) {
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if (headerSize != 7 && headerSize != 11 && headerSize != 12) {
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warning("SOL audio header of size %i not supported", headerSize);
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return false;
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}
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uint32 tag = audioStream->readUint32BE();
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if (tag != MKTAG('S','O','L',0)) {
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warning("No 'SOL' FourCC found");
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return false;
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}
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audioRate = audioStream->readUint16LE();
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audioFlags = audioStream->readByte();
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// For the QFG3 demo format, just use the resource size
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// Otherwise, load it from the header
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if (headerSize == 7)
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size = resSize;
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else
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size = audioStream->readUint32LE();
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return true;
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}
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static byte *readSOLAudio(Common::SeekableReadStream *audioStream, uint32 &size, byte audioFlags, byte &flags) {
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byte *buffer;
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// Convert the SOL stream flags to our own format
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flags = 0;
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if (audioFlags & kSolFlag16Bit)
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flags |= Audio::FLAG_16BITS | Audio::FLAG_LITTLE_ENDIAN;
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if (!(audioFlags & kSolFlagIsSigned))
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flags |= Audio::FLAG_UNSIGNED;
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if (audioFlags & kSolFlagCompressed) {
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buffer = (byte *)malloc(size * 2);
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assert(buffer);
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if (audioFlags & kSolFlag16Bit)
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deDPCM16(buffer, *audioStream, size);
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else
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deDPCM8(buffer, *audioStream, size);
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size *= 2;
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} else {
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// We assume that the sound data is raw PCM
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buffer = (byte *)malloc(size);
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assert(buffer);
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audioStream->read(buffer, size);
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}
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return buffer;
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}
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byte *AudioPlayer::getDecodedRobotAudioFrame(Common::SeekableReadStream *str, uint32 encodedSize) {
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byte flags = 0;
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return readSOLAudio(str, encodedSize, kSolFlagCompressed | kSolFlag16Bit, flags);
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}
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Audio::RewindableAudioStream *AudioPlayer::getAudioStream(uint32 number, uint32 volume, int *sampleLen) {
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Audio::SeekableAudioStream *audioSeekStream = 0;
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Audio::RewindableAudioStream *audioStream = 0;
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uint32 size = 0;
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byte *data = 0;
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byte flags = 0;
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Sci::Resource *audioRes;
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*sampleLen = 0;
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if (volume == 65535) {
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audioRes = _resMan->findResource(ResourceId(kResourceTypeAudio, number), false);
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if (!audioRes) {
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warning("Failed to find audio entry %i", number);
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return NULL;
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}
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} else {
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audioRes = _resMan->findResource(ResourceId(kResourceTypeAudio36, volume, number), false);
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if (!audioRes) {
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warning("Failed to find audio entry (%i, %i, %i, %i, %i)", volume, (number >> 24) & 0xff,
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(number >> 16) & 0xff, (number >> 8) & 0xff, number & 0xff);
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return NULL;
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}
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}
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byte audioFlags;
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uint32 audioCompressionType = audioRes->getAudioCompressionType();
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if (audioCompressionType) {
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#if (defined(USE_MAD) || defined(USE_VORBIS) || defined(USE_FLAC))
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// Compressed audio made by our tool
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byte *compressedData = (byte *)malloc(audioRes->size);
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assert(compressedData);
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// We copy over the compressed data in our own buffer. We have to do
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// this, because ResourceManager may free the original data late. All
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// other compression types already decompress completely into an
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// additional buffer here. MP3/OGG/FLAC decompression works on-the-fly
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// instead.
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memcpy(compressedData, audioRes->data, audioRes->size);
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Common::SeekableReadStream *compressedStream = new Common::MemoryReadStream(compressedData, audioRes->size, DisposeAfterUse::YES);
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switch (audioCompressionType) {
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case MKTAG('M','P','3',' '):
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#ifdef USE_MAD
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audioSeekStream = Audio::makeMP3Stream(compressedStream, DisposeAfterUse::YES);
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#endif
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break;
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case MKTAG('O','G','G',' '):
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#ifdef USE_VORBIS
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audioSeekStream = Audio::makeVorbisStream(compressedStream, DisposeAfterUse::YES);
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#endif
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break;
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case MKTAG('F','L','A','C'):
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#ifdef USE_FLAC
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audioSeekStream = Audio::makeFLACStream(compressedStream, DisposeAfterUse::YES);
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#endif
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break;
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}
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#else
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error("Compressed audio file encountered, but no appropriate decoder is compiled in");
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#endif
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} else {
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// Original source file
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if (audioRes->_headerSize > 0) {
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// SCI1.1
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Common::MemoryReadStream headerStream(audioRes->_header, audioRes->_headerSize, DisposeAfterUse::NO);
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if (readSOLHeader(&headerStream, audioRes->_headerSize, size, _audioRate, audioFlags, audioRes->size)) {
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Common::MemoryReadStream dataStream(audioRes->data, audioRes->size, DisposeAfterUse::NO);
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data = readSOLAudio(&dataStream, size, audioFlags, flags);
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}
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} else if (audioRes->size > 4 && READ_BE_UINT32(audioRes->data) == MKTAG('R','I','F','F')) {
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// WAVE detected
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Common::SeekableReadStream *waveStream = new Common::MemoryReadStream(audioRes->data, audioRes->size, DisposeAfterUse::NO);
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// Calculate samplelen from WAVE header
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int waveSize = 0, waveRate = 0;
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byte waveFlags = 0;
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bool ret = Audio::loadWAVFromStream(*waveStream, waveSize, waveRate, waveFlags);
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if (!ret)
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error("Failed to load WAV from stream");
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*sampleLen = (waveFlags & Audio::FLAG_16BITS ? waveSize >> 1 : waveSize) * 60 / waveRate;
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waveStream->seek(0, SEEK_SET);
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audioStream = Audio::makeWAVStream(waveStream, DisposeAfterUse::YES);
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} else if (audioRes->size > 4 && READ_BE_UINT32(audioRes->data) == MKTAG('F','O','R','M')) {
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// AIFF detected
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Common::SeekableReadStream *waveStream = new Common::MemoryReadStream(audioRes->data, audioRes->size, DisposeAfterUse::NO);
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// Calculate samplelen from AIFF header
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int waveSize = 0, waveRate = 0;
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byte waveFlags = 0;
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bool ret = Audio::loadAIFFFromStream(*waveStream, waveSize, waveRate, waveFlags);
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if (!ret)
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error("Failed to load AIFF from stream");
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*sampleLen = (waveFlags & Audio::FLAG_16BITS ? waveSize >> 1 : waveSize) * 60 / waveRate;
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waveStream->seek(0, SEEK_SET);
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audioStream = Audio::makeAIFFStream(waveStream, DisposeAfterUse::YES);
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} else if (audioRes->size > 14 && READ_BE_UINT16(audioRes->data) == 1 && READ_BE_UINT16(audioRes->data + 2) == 1
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&& READ_BE_UINT16(audioRes->data + 4) == 5 && READ_BE_UINT32(audioRes->data + 10) == 0x00018051) {
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// Mac snd detected
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Common::SeekableReadStream *sndStream = new Common::MemoryReadStream(audioRes->data, audioRes->size, DisposeAfterUse::NO);
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audioSeekStream = Audio::makeMacSndStream(sndStream, DisposeAfterUse::YES);
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if (!audioSeekStream)
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error("Failed to load Mac sound stream");
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} else {
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// SCI1 raw audio
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size = audioRes->size;
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data = (byte *)malloc(size);
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assert(data);
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memcpy(data, audioRes->data, size);
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flags = Audio::FLAG_UNSIGNED;
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_audioRate = 11025;
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}
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if (data)
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audioSeekStream = Audio::makeRawStream(data, size, _audioRate, flags);
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}
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if (audioSeekStream) {
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*sampleLen = (audioSeekStream->getLength().msecs() * 60) / 1000; // we translate msecs to ticks
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audioStream = audioSeekStream;
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}
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// We have to make sure that we don't depend on resource manager pointers
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// after this point, because the actual audio resource may get unloaded by
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// resource manager at any time.
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if (audioStream)
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return audioStream;
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return NULL;
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}
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void AudioPlayer::setSoundSync(ResourceId id, reg_t syncObjAddr, SegManager *segMan) {
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_syncResource = _resMan->findResource(id, 1);
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_syncOffset = 0;
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if (_syncResource) {
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writeSelectorValue(segMan, syncObjAddr, SELECTOR(syncCue), 0);
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} else {
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warning("setSoundSync: failed to find resource %s", id.toString().c_str());
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// Notify the scripts to stop sound sync
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writeSelectorValue(segMan, syncObjAddr, SELECTOR(syncCue), SIGNAL_OFFSET);
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}
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}
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void AudioPlayer::doSoundSync(reg_t syncObjAddr, SegManager *segMan) {
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if (_syncResource && (_syncOffset < _syncResource->size - 1)) {
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int16 syncCue = -1;
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int16 syncTime = (int16)READ_SCI11ENDIAN_UINT16(_syncResource->data + _syncOffset);
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_syncOffset += 2;
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if ((syncTime != -1) && (_syncOffset < _syncResource->size - 1)) {
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syncCue = (int16)READ_SCI11ENDIAN_UINT16(_syncResource->data + _syncOffset);
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_syncOffset += 2;
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}
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writeSelectorValue(segMan, syncObjAddr, SELECTOR(syncTime), syncTime);
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writeSelectorValue(segMan, syncObjAddr, SELECTOR(syncCue), syncCue);
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}
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}
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void AudioPlayer::stopSoundSync() {
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if (_syncResource) {
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_resMan->unlockResource(_syncResource);
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_syncResource = NULL;
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}
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}
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int AudioPlayer::audioCdPlay(int track, int start, int duration) {
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if (getSciVersion() == SCI_VERSION_1_1) {
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// King's Quest VI CD Audio format
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_audioCdStart = g_system->getMillis();
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// Subtract one from track. KQ6 starts at track 1, while ScummVM
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// ignores the data track and considers track 2 to be track 1.
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g_system->getAudioCDManager()->play(track - 1, 1, start, duration);
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return 1;
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} else {
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// Jones in the Fast Lane CD Audio format
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uint32 length = 0;
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audioCdStop();
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Common::File audioMap;
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if(!audioMap.open("cdaudio.map"))
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error("Could not open cdaudio.map");
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while (audioMap.pos() < audioMap.size()) {
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uint16 res = audioMap.readUint16LE();
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uint32 startFrame = audioMap.readUint16LE();
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startFrame += audioMap.readByte() << 16;
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audioMap.readByte(); // Unknown, always 0x20
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length = audioMap.readUint16LE();
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length += audioMap.readByte() << 16;
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audioMap.readByte(); // Unknown, always 0x00
|
|
|
|
// Jones uses the track as the resource value in the map
|
|
if (res == track) {
|
|
g_system->getAudioCDManager()->play(1, 1, startFrame, length);
|
|
_audioCdStart = g_system->getMillis();
|
|
break;
|
|
}
|
|
}
|
|
|
|
audioMap.close();
|
|
|
|
return length * 60 / 75; // return sample length in ticks
|
|
}
|
|
}
|
|
|
|
void AudioPlayer::audioCdStop() {
|
|
_audioCdStart = 0;
|
|
g_system->getAudioCDManager()->stop();
|
|
}
|
|
|
|
void AudioPlayer::audioCdUpdate() {
|
|
g_system->getAudioCDManager()->update();
|
|
}
|
|
|
|
int AudioPlayer::audioCdPosition() {
|
|
// Return -1 if the sample is done playing. Converting to frames to compare.
|
|
if (((g_system->getMillis() - _audioCdStart) * 75 / 1000) >= (uint32)g_system->getAudioCDManager()->getStatus().duration)
|
|
return -1;
|
|
|
|
// Return the position otherwise (in ticks).
|
|
return (g_system->getMillis() - _audioCdStart) * 60 / 1000;
|
|
}
|
|
|
|
} // End of namespace Sci
|