mirror of
https://github.com/libretro/scummvm.git
synced 2025-01-05 17:20:30 +00:00
6f3d72e8b7
svn-id: r8075
183 lines
5.3 KiB
C++
183 lines
5.3 KiB
C++
/* ScummVM - Scumm Interpreter
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* Copyright (C) 2003 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 "sky/music/mt32music.h"
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void SkyMT32Music::passTimerFunc(void *param) {
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((SkyMT32Music*)param)->timerCall();
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}
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SkyMT32Music::SkyMT32Music(MidiDriver *pMidiDrv, SkyDisk *pSkyDisk, uint32 version)
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: SkyMusicBase(pSkyDisk, version) {
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_driverFileBase = 60200;
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_midiDrv = pMidiDrv;
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int midiRes = _midiDrv->open();
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if (midiRes != 0) {
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error("Can't open midi device. Errorcode: %d\n",midiRes);
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}
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_midiDrv->setTimerCallback(this, passTimerFunc);
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_ignoreNextPoll = false;
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for (uint8 cnt = 0; cnt < 128; cnt++)
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_dummyMap[cnt] = cnt;
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}
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SkyMT32Music::~SkyMT32Music(void) {
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_midiDrv->close();
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_midiDrv->setTimerCallback(NULL, NULL);
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delete _midiDrv;
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}
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void SkyMT32Music::timerCall(void) {
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// midi driver polls hundred times per sec. We only want 50 times.
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_ignoreNextPoll = !_ignoreNextPoll;
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if (!_ignoreNextPoll) return;
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if (_musicData != NULL)
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pollMusic();
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}
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void SkyMT32Music::setupPointers(void) {
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_musicDataLoc = (_musicData[0x7DD] << 8) | _musicData[0x7DC];
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_sysExSequence = ((_musicData[0x7E1] << 8) | _musicData[0x7E0]) + _musicData;
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}
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void SkyMT32Music::setupChannels(uint8 *channelData) {
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_numberOfChannels = channelData[0];
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channelData++;
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for (uint8 cnt = 0; cnt < _numberOfChannels; cnt++) {
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uint16 chDataStart = ((channelData[(cnt << 1) | 1] << 8) | channelData[cnt << 1]) + _musicDataLoc;
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_channels[cnt] = new SkyGmChannel(_musicData, chDataStart, _midiDrv, _dummyMap);
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}
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}
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#define MIDI_PACK(a,b,c,d) ((a) | ((b) << 8) | ((c) << 16) | ((d) << 24))
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bool SkyMT32Music::processPatchSysEx(uint8 *sysExData) {
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uint8 crc = 0;
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if (sysExData[0] & 0x80) return false;
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uint8 patchNum = sysExData[0];
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sysExData++;
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uint8 timbreGroup = sysExData[0] >> 6;
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uint8 timbreNumber = sysExData[0] & 0x3F;
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uint8 keyShift = sysExData[1] & 0x3F;
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uint8 fineTune = sysExData[2] & 0x7F;
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uint8 benderRange = sysExData[3] & 0x7F;
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uint8 assignMode = sysExData[1] >> 6;
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uint8 reverbSwitch = sysExData[2] >> 7;
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_midiDrv->send(MIDI_PACK(0xF0, 0x41, 0x10, 0x16));
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_midiDrv->send(MIDI_PACK(0x12, 5, patchNum >> 4, (patchNum & 0xF) << 3));
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crc -= 5 + (patchNum >> 4) + ((patchNum & 0xF) << 3);
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crc -= timbreGroup + timbreNumber + keyShift + fineTune;
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crc -= benderRange + assignMode + reverbSwitch;
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_midiDrv->send(MIDI_PACK(timbreGroup, timbreNumber, keyShift, fineTune));
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_midiDrv->send(MIDI_PACK(benderRange, assignMode, reverbSwitch, crc));
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_midiDrv->send(0xF7);
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debug(3," Patch %02X:\n",patchNum);
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debug(3," Timbre Group: %d\n",timbreGroup);
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debug(3," Timbre Number: %d\n",timbreNumber);
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debug(3," Key Shift: %d\n",keyShift);
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debug(3," Fine Tune: %d\n",fineTune);
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debug(3," Bender Range: %d\n",benderRange);
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debug(3," Assign Mode: %d\n",assignMode);
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debug(3," Reverb Switch: %d\n\n",reverbSwitch);
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return true;
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}
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void SkyMT32Music::startDriver(void) {
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_midiDrv->send(0xFF); // reset midi device
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// setup timbres and patches using SysEx data
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uint8* sysExData = _sysExSequence;
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uint8 timbreNum = sysExData[0];
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uint8 cnt, crc;
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uint32 sysComb;
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sysExData++;
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for (cnt = 0; cnt < timbreNum; cnt++) {
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crc = 0;
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_midiDrv->send(MIDI_PACK(0xF0, 0x41, 0x10, 0x16));
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//- sendTimbreAddress
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sysComb = (0x2 << 16) | (sysExData[0] << 8) | 0xA;
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sysExData++;
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uint8 sysByte1 = (uint8)(sysComb >> 14);
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uint8 sysByte2 = (uint8)((sysComb & 0x3FFF) >> 7);
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uint8 sysByte3 = (uint8)(sysComb & 0x7F);
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_midiDrv->send(MIDI_PACK(0x12, sysByte1, sysByte2, sysByte3));
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debug(3,"InitBySysEx: Timbre address: %02X:%02X:%02X (%02X)\n",sysByte1,sysByte2,sysByte3,(sysExData-1)[0]);
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crc -= sysByte1 + sysByte2 + sysByte3;
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//- sendTimbreData
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uint8 dataLen = sysExData[0];
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debug(3,"[%02X]",dataLen);
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sysExData++;
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uint32 nextSend = 0;
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uint8 bytesInSend = 0;
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debug(3," Timbre Data:");
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do {
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uint8 rlVal = 1;
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uint8 codeVal = sysExData[0];
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sysExData++;
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if (codeVal & 0x80) {
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codeVal &= 0x7F;
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rlVal = sysExData[0];
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sysExData++;
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dataLen--;
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}
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for (uint8 cnt = 0; cnt < rlVal; cnt++) {
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nextSend |= codeVal << (bytesInSend << 3);
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crc -= codeVal;
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debug(3," %02X",codeVal);
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bytesInSend++;
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if (bytesInSend == 4) {
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_midiDrv->send(nextSend);
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nextSend = bytesInSend = 0;
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}
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}
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dataLen--;
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} while (dataLen > 0);
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crc &= 0x7F;
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debug(3," %02X F7\n",crc);
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nextSend |= crc << (bytesInSend << 3);
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bytesInSend++;
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if (bytesInSend == 4) {
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_midiDrv->send(nextSend);
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nextSend = bytesInSend = 0;
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}
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nextSend |= 0xF7 << (bytesInSend << 3);
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_midiDrv->send(nextSend);
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}
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while (processPatchSysEx(sysExData))
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sysExData += 5;
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}
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