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https://github.com/libretro/scummvm.git
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575e94602c
o Plugged IMA ADPCM into SCUMM engine so latter HE titles now have speech though it is somewhat noisy don't know why as decoder is based on ADPCM reference implementation. svn-id: r17904
217 lines
5.7 KiB
C++
217 lines
5.7 KiB
C++
/* ScummVM - Scumm Interpreter
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* Copyright (C) 2005 The ScummVM project
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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., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
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*
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* $Header$
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*
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*/
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#include "stdafx.h"
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#include "common/stream.h"
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#include "sound/audiostream.h"
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#include "sound/adpcm.h"
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// Routines to convert 12 bit linear samples to the
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// Dialogic or Oki ADPCM coding format aka VOX
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class ADPCMInputStream : public AudioStream {
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private:
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bool _evenPos;
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Common::SeekableReadStream *_stream;
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typesADPCM _type;
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uint32 _endpos;
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struct adpcmStatus {
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int16 last;
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int16 stepIndex;
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} _status;
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int16 stepAdjust(byte);
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int16 okiADPCMDecode(byte);
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int16 imaADPCMDecode(byte);
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int readOkiBuffer(int16 *buffer, const int numSamples);
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int readIMABuffer(int16 *buffer, const int numSamples);
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public:
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ADPCMInputStream(Common::SeekableReadStream *stream, uint32 size, typesADPCM type);
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~ADPCMInputStream() {};
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int readBuffer(int16 *buffer, const int numSamples);
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bool endOfData() const { return (_stream->eos() || _stream->pos() >= _endpos); }
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bool isStereo() const { return false; }
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int getRate() const { return 22050; }
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};
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ADPCMInputStream::ADPCMInputStream(Common::SeekableReadStream *stream, uint32 size, typesADPCM type)
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: _stream(stream), _evenPos(true), _type(type) {
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_status.last = 0;
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_status.stepIndex = 0;
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_endpos = stream->pos() + size;
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}
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int ADPCMInputStream::readBuffer(int16 *buffer, const int numSamples) {
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switch (_type) {
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case kADPCMOki:
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return readOkiBuffer(buffer, numSamples);
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break;
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case kADPCMIma:
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return readIMABuffer(buffer, numSamples);
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break;
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default:
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error("Unsupported ADPCM encoding");
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break;
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}
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return 0;
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}
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int ADPCMInputStream::readOkiBuffer(int16 *buffer, const int numSamples) {
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int samples;
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for (samples = 0; samples < numSamples && !_stream->eos() && _stream->pos() < _endpos; samples++) {
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// * 16 effectively converts 12-bit input to 16-bit output
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if (_evenPos) {
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buffer[samples] = okiADPCMDecode((_stream->readByte() >> 4) & 0x0f) * 16;
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// Rewind back so we will reget byte later
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_stream->seek(-1, SEEK_CUR);
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} else {
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buffer[samples] = okiADPCMDecode(_stream->readByte() & 0x0f) * 16;
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}
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_evenPos = !_evenPos;
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}
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return samples;
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}
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int ADPCMInputStream::readIMABuffer(int16 *buffer, const int numSamples) {
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int samples;
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for (samples = 0; samples < numSamples && !_stream->eos() && _stream->pos() < _endpos; samples++) {
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if (_evenPos) {
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buffer[samples] = imaADPCMDecode((_stream->readByte() >> 4) & 0x0f);
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// Rewind back so we will reget byte later
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_stream->seek(-1, SEEK_CUR);
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} else {
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buffer[samples] = imaADPCMDecode(_stream->readByte() & 0x0f);
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}
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_evenPos = !_evenPos;
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}
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return samples;
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}
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// adjust the step for use on the next sample.
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int16 ADPCMInputStream::stepAdjust(byte code) {
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static const int16 adjusts[] = {-1, -1, -1, -1, 2, 4, 6, 8};
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return adjusts[code & 0x07];
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}
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static const int16 okiStepSize[49] = {
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16, 17, 19, 21, 23, 25, 28, 31,
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34, 37, 41, 45, 50, 55, 60, 66,
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73, 80, 88, 97, 107, 118, 130, 143,
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157, 173, 190, 209, 230, 253, 279, 307,
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337, 371, 408, 449, 494, 544, 598, 658,
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724, 796, 876, 963, 1060, 1166, 1282, 1408,
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1552
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};
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// Decode Linear to ADPCM
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int16 ADPCMInputStream::okiADPCMDecode(byte code) {
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int16 diff, E, SS, samp;
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SS = okiStepSize[_status.stepIndex];
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E = SS/8;
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if (code & 0x01)
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E += SS/4;
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if (code & 0x02)
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E += SS/2;
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if (code & 0x04)
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E += SS;
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diff = (code & 0x08) ? -E : E;
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samp = _status.last + diff;
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// Clip the values to +/- 2^11 (supposed to be 12 bits)
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if(samp > 2048)
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samp = 2048;
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if(samp < -2048)
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samp = -2048;
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_status.last = samp;
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_status.stepIndex += stepAdjust(code);
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if(_status.stepIndex < 0)
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_status.stepIndex = 0;
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if(_status.stepIndex > 48)
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_status.stepIndex = 48;
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return samp;
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}
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AudioStream *makeADPCMStream(Common::SeekableReadStream &stream, uint32 size, typesADPCM type) {
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AudioStream *audioStream = new ADPCMInputStream(&stream, size, type);
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return audioStream;
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}
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static const uint16 imaStepTable[89] = {
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7, 8, 9, 10, 11, 12, 13, 14,
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16, 17, 19, 21, 23, 25, 28, 31,
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34, 37, 41, 45, 50, 55, 60, 66,
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73, 80, 88, 97, 107, 118, 130, 143,
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157, 173, 190, 209, 230, 253, 279, 307,
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337, 371, 408, 449, 494, 544, 598, 658,
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724, 796, 876, 963, 1060, 1166, 1282, 1411,
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1552, 1707, 1878, 2066, 2272, 2499, 2749, 3024,
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3327, 3660, 4026, 4428, 4871, 5358, 5894, 6484,
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7132, 7845, 8630, 9493,10442,11487,12635,13899,
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15289,16818,18500,20350,22385,24623,27086,29794,
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32767
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};
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int16 ADPCMInputStream::imaADPCMDecode(byte code) {
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int32 diff, E, SS, samp;
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SS = imaStepTable[_status.stepIndex];
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E = SS/8;
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if (code & 0x01)
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E += SS/4;
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if (code & 0x02)
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E += SS/2;
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if (code & 0x04)
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E += SS;
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diff = (code & 0x08) ? -E : E;
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samp = _status.last + diff;
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if(samp < -32768)
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samp = -32768;
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else if(samp > 32767)
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samp = 32767;
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_status.last = samp;
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_status.stepIndex += stepAdjust(code);
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if(_status.stepIndex < 0)
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_status.stepIndex = 0;
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if(_status.stepIndex > 88)
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_status.stepIndex = 88;
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return samp;
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}
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