9ec1ff8cf5
git-svn-id: svn://svn.rockbox.org/rockbox/trunk@6329 a1c6a512-1295-4272-9138-f99709370657
196 lines
5.3 KiB
C
196 lines
5.3 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) 2005 Stepan Moskovchenko
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*
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* All files in this archive are subject to the GNU General Public License.
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* See the file COPYING in the source tree root for full license agreement.
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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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extern struct plugin_api * rb;
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unsigned int readWord(int file)
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{
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return (readChar(file)<<0) | (readChar(file)<<8); // | (readChar(file)<<8) | (readChar(file)<<0);
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}
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unsigned int readDWord(int file)
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{
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return (readChar(file)<<0) | (readChar(file)<<8) | (readChar(file)<<16) | (readChar(file)<<24);
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}
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struct GWaveform * loadWaveform(int file)
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{
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struct GWaveform * wav = (struct GWaveform *)allocate(sizeof(struct GWaveform));
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rb->memset(wav, 0, sizeof(struct GWaveform));
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wav->name=readData(file, 7);
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printf("\nWAVE NAME = [%s]", wav->name);
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wav->fractions=readChar(file);
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wav->wavSize=readDWord(file);
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wav->startLoop=readDWord(file);
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wav->endLoop=readDWord(file);
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wav->sampRate=readWord(file);
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wav->lowFreq=readDWord(file);
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wav->highFreq=readDWord(file);
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wav->rootFreq=readDWord(file);
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wav->tune=readWord(file);
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wav->balance=readChar(file);
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wav->envRate=readData(file, 6);
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wav->envOffset=readData(file, 6);
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wav->tremSweep=readChar(file);
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wav->tremRate==readChar(file);
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wav->tremDepth=readChar(file);
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wav->vibSweep=readChar(file);
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wav->vibRate=readChar(file);
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wav->vibDepth=readChar(file);
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wav->mode=readChar(file);
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wav->scaleFreq=readWord(file);
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wav->scaleFactor=readWord(file);
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printf("\nScaleFreq = %d ScaleFactor = %d RootFreq = %d", wav->scaleFreq, wav->scaleFactor, wav->rootFreq);
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wav->res=readData(file, 36);
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wav->data=readData(file, wav->wavSize);
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wav->numSamples = wav->wavSize / 2;
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wav->startLoop = wav->startLoop >> 1;
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wav->endLoop = wav->endLoop >> 1;
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unsigned int a=0;
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/* half baked 8 bit conversion UNFINISHED*/
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/*
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if(wav->mode & 1 == 0) //Whoops, 8 bit
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{
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wav->numSamples = wav->wavSize;
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//Allocate a block for the rest of it
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//It should end up right after the previous one.
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wav->wavSize = wav->wavSize * 2;
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void * foo = allocate(wav->wavSize);
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for(a=0; a<1000; a++)
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printf("\n!!!!!!!!!!!!!!!!!!!!!!!!!!!");
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for(a=wav->wavSize-1; a>0; a-=2)
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{
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}
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// int b1=wf->data[s]+((wf->mode & 2) << 6);
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// return b1<<8;
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}
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*/
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/* Iriver needs byteswapping.. big endian, go figure. Gus files are little endian */
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#if !defined(SIMULATOR)
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for(a=0; a<wav->numSamples; a++)
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{
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((unsigned short *) wav->data)[a] = SWAB16(((unsigned short *) wav->data)[a]);
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}
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#endif
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/* Convert unsigned to signed by subtracting 32768 */
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if(wav->mode & 2)
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{
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for(a=0; a<wav->numSamples; a++)
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((short *) wav->data)[a] = ((unsigned short *) wav->data)[a] - 32768;
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}
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return wav;
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}
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int selectWaveform(struct GPatch * pat, int midiNote)
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{
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/* We divide by 100 here because everyone's freq formula is slightly different */
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unsigned int tabFreq = gustable[midiNote]/100; /* Comparison */
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unsigned int a=0;
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for(a=0; a<pat->numWaveforms; a++)
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{
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if(pat->waveforms[a]->lowFreq/100 <= tabFreq &&
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pat->waveforms[a]->highFreq/100 >= tabFreq)
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{
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return a;
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}
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}
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return 0;
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}
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struct GPatch * gusload(char * filename)
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{
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struct GPatch * gp = (struct GPatch *)allocate(sizeof(struct GPatch));
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rb->memset(gp, 0, sizeof(struct GPatch));
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int file = rb->open(filename, O_RDONLY);
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if(file == -1)
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{
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char message[50];
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rb->snprintf(message, 50, "Error opening %s", filename);
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rb->splash(HZ*2, true, message);
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return NULL;
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}
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gp->header=readData(file, 12);
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gp->gravisid=readData(file, 10);
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gp->desc=readData(file, 60);
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gp->inst=readChar(file);
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gp->voc=readChar(file);
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gp->chan=readChar(file);
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gp->numWaveforms=readWord(file);
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gp->vol=readWord(file);
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gp->datSize=readDWord(file);
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gp->res=readData(file, 36);
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gp->instrID=readWord(file);
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gp->instrName=readData(file,16);
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gp->instrSize=readDWord(file);
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gp->layers=readChar(file);
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gp->instrRes=readData(file,40);
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gp->layerDup=readChar(file);
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gp->layerID=readChar(file);
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gp->layerSize=readDWord(file);
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gp->numWaves=readChar(file);
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gp->layerRes=readData(file,40);
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printf("\nFILE: %s", filename);
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printf("\nlayerSamples=%d", gp->numWaves);
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int a=0;
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for(a=0; a<gp->numWaves; a++)
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gp->waveforms[a] = loadWaveform(file);
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printf("\nPrecomputing note table");
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for(a=0; a<128; a++)
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{
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gp->noteTable[a] = selectWaveform(gp, a);
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}
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rb->close(file);
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return gp;
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}
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