CnfgMgr.c++
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/******************************************************************************
*
* Configuration Manager for AudioEditor
*
*****************************************************************************/
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include "AudioApp.h"
#include "CnfgMgr.h"
#include "Mgrs.h"
extern char *bankFileName;
extern int verbose;
#if 0
#define ms2smp(a) (((int)((float)a * (float)OUTPUT_RATE/1000))&~0x7)
#endif
#define SECTION_SIZE 8
#define DEF_NUMBER_DMA_BUFFS 80
#define DEF_DMA_BUFF_SIZE 1024
#define DEF_DMA_FRAME_LAG 4
#define DEF_NUMBER_SYNTH_VIRTUAL_VOICES 32
#define DEF_NUMBER_SYNTH_PHYSICAL_VOICES 32
#define DEF_NUMBER_SEQP_VOICES 32
#define DEF_DMA_QUEUE_SIZE 50
#define DEF_NUMBER_SYNTH_UPDATES 128
#define DEF_NUMBER_SEQP_EVENTS 128
#define DEF_CMD_LIST_SIZE 5000
#define DEF_SAMPLES_PER_FRAME 640 /* Best if a multiple of 160 */
#define DEF_OUTPUT_RATE 44100
#define SAMPLES_PER_FRAME 0
#define CMD_LIST_SIZE 1
#define NUMBER_DMA_BUFFERS 2
#define DMA_BUFF_SIZE 3
#define DMA_FRAME_LAG 4
#define DMA_QUEUE_SIZE 5
#define NUMBER_SYNTH_VIRTUAL_VOICES 6
#define NUMBER_SYNTH_PHYSICAL_VOICES 7
#define NUMBER_SYNTH_UPDATES 8
#define SYNTH_OUTPUT_RATE 9
#define NUMBER_SEQP_VOICES 10
#define NUMBER_SEQP_EVENTS 11
#define FX_TYPE 12
#define BANK_FILE_NAME 13
#define REVERB_PARAMS 14
#define MAX_PARAM_STRINGS 15
#define NO_MATCH -1
char paramStrs[MAX_PARAM_STRINGS][MAX_PARAM_LENGTH] = {
"SAMPLES_PER_FRAME",
"CMD_LIST_SIZE",
"NUMBER_DMA_BUFFERS",
"DMA_BUFF_SIZE",
"DMA_FRAME_LAG",
"DMA_QUEUE_SIZE",
"NUMBER_SYNTH_VIRTUAL_VOICES",
"NUMBER_SYNTH_PHYSICAL_VOICES",
"NUMBER_SYNTH_UPDATES",
"SYNTH_OUTPUT_RATE",
"NUMBER_SEQP_VOICES",
"NUMBER_SEQP_EVENTS",
"FX_TYPE",
"BANK_FILE_NAME",
"REVERB_PARAMS"
};
#define MAX_REVERB_STRINGS 7
char fxStrs[MAX_REVERB_STRINGS][MAX_PARAM_LENGTH] = {
"AL_FX_NONE",
"AL_FX_SMALLROOM",
"AL_FX_BIGROOM",
"AL_FX_CHORUS",
"AL_FX_FLANGE",
"AL_FX_ECHO",
"AL_FX_CUSTOM"
};
CnfgMgr::CnfgMgr()
{
customFXOK = 0;
reverbAsset = 0;
}
int CnfgMgr::SetAudConfig(AudioConfig *audCnfg, char *fName)
{
audCnfg->audioHeap = 0; // should be set by giomgr
audCnfg->heapSize = 0; // should be set by giomgr
audCnfg->frameSize = DEF_SAMPLES_PER_FRAME;
audCnfg->maxCmdListSize = DEF_CMD_LIST_SIZE;
audCnfg->numDMABuffs = DEF_NUMBER_DMA_BUFFS;
audCnfg->dmaBufSize = DEF_DMA_BUFF_SIZE;
audCnfg->frameLag = DEF_DMA_FRAME_LAG;
audCnfg->dmaQSize = DEF_DMA_QUEUE_SIZE;
audCnfg->synConfig.maxVVoices = DEF_NUMBER_SYNTH_VIRTUAL_VOICES;
audCnfg->synConfig.maxPVoices = DEF_NUMBER_SYNTH_PHYSICAL_VOICES;
audCnfg->synConfig.maxUpdates = DEF_NUMBER_SYNTH_UPDATES;
audCnfg->synConfig.maxFXbusses = 1;
audCnfg->synConfig.outputRate = DEF_OUTPUT_RATE;
audCnfg->synConfig.fxType = 0;
audCnfg->synConfig.params = 0;
audCnfg->synConfig.heap = 0; // set by AudioApp
audCnfg->synConfig.dmaproc = 0; // set by AudioApp
audCnfg->seqpConfig.maxVoices = DEF_NUMBER_SEQP_VOICES;
audCnfg->seqpConfig.maxEvents = DEF_NUMBER_SEQP_EVENTS;
audCnfg->seqpConfig.maxChannels = 16;
audCnfg->seqpConfig.debugFlags = 0;
audCnfg->seqpConfig.heap = 0; // set by AudioApp
audCnfg->seqpConfig.initOsc = 0;
audCnfg->seqpConfig.updateOsc = 0;
audCnfg->seqpConfig.stopOsc = 0;
/* fx_params = &default_fx_params[0]; */
ConfigFromFile(audCnfg,fName);
return (0);
}
int CnfgMgr::ConfigFromFile(AudioConfig *audCnfg, char *fName)
{
int param,value;
int len;
char *fdata;
fdata = theFileMgr->GetFile(fName, &len);
if((int)fdata == FILE_FAILURE)
return -1;
dataCur = fdata;
dataEnd = fdata + len;
while(1)
{
if(GetToken(NULL,¶m) != TOKEN_PARAM_VALUE)
{
free(fdata);
return 0;
}
switch(param)
{
case SAMPLES_PER_FRAME:
if(GetToken(NULL,&value) != TOKEN_VALUE)
printf("Failure getting samples per frame\n");
else
{
audCnfg->frameSize = value;
if(verbose)
printf("%s = %d\n",paramStrs[param], value);
}
break;
case CMD_LIST_SIZE:
if(GetToken(NULL,&value) != TOKEN_VALUE)
printf("Failure getting command list size\n");
else
{
audCnfg->maxCmdListSize = value;
if(verbose)
printf("%s = %d\n",paramStrs[param], value);
}
break;
case NUMBER_DMA_BUFFERS:
if(GetToken(NULL,&value) != TOKEN_VALUE)
printf("Failure getting number dma buffers\n");
else
{
audCnfg->numDMABuffs = value;
if(verbose)
printf("%s = %d\n",paramStrs[param], value);
}
break;
case DMA_BUFF_SIZE:
if(GetToken(NULL,&value) != TOKEN_VALUE)
printf("Failure getting dma buffer size\n");
else
{
audCnfg->dmaBufSize = value;
if(verbose)
printf("%s = %d\n",paramStrs[param], value);
}
break;
case DMA_FRAME_LAG:
if(GetToken(NULL,&value) != TOKEN_VALUE)
printf("Failure getting dma frame lag\n");
else
{
audCnfg->frameLag = value;
if(verbose)
printf("%s = %d\n",paramStrs[param], value);
}
break;
case DMA_QUEUE_SIZE:
if(GetToken(NULL,&value) != TOKEN_VALUE)
printf("Failure getting dma queue size\n");
else
{
audCnfg->dmaQSize = value;
if(verbose)
printf("%s = %d\n",paramStrs[param], value);
}
break;
case NUMBER_SYNTH_VIRTUAL_VOICES:
if(GetToken(NULL,&value) != TOKEN_VALUE)
printf("Failure getting number synth virtual voices\n");
else
{
audCnfg->synConfig.maxVVoices = value;
if(verbose)
printf("%s = %d\n",paramStrs[param], value);
}
break;
case NUMBER_SYNTH_PHYSICAL_VOICES:
if(GetToken(NULL,&value) != TOKEN_VALUE)
printf("Failure getting number synth physical voices\n");
else
{
audCnfg->synConfig.maxPVoices = value;
if(verbose)
printf("%s = %d\n",paramStrs[param], value);
}
break;
case NUMBER_SYNTH_UPDATES:
if(GetToken(NULL,&value) != TOKEN_VALUE)
printf("Failure getting number synth updates\n");
else
{
audCnfg->synConfig.maxUpdates = value;
if(verbose)
printf("%s = %d\n",paramStrs[param], value);
}
break;
case SYNTH_OUTPUT_RATE:
if(GetToken(NULL,&value) != TOKEN_VALUE)
printf("Failure getting synth output rate\n");
else
{
audCnfg->synConfig.outputRate = value;
if(verbose)
printf("%s = %d\n",paramStrs[param], value);
}
break;
case NUMBER_SEQP_VOICES:
if(GetToken(NULL,&value) != TOKEN_VALUE)
printf("Failure getting number seqp voices\n");
else
{
audCnfg->seqpConfig.maxVoices = value;
if(verbose)
printf("%s = %d\n",paramStrs[param], value);
}
break;
case NUMBER_SEQP_EVENTS:
if(GetToken(NULL,&value) != TOKEN_VALUE)
printf("Failure getting number seqp events\n");
else
{
audCnfg->seqpConfig.maxEvents = value;
if(verbose)
printf("%s = %d\n",paramStrs[param], value);
}
break;
case FX_TYPE:
if(GetToken(NULL,&value) != TOKEN_FX_VALUE)
printf("Failure getting fx type\n");
else
{
if(value == AL_FX_CUSTOM)
customFXOK = 1;
audCnfg->synConfig.fxType = value;
reverbAsset = theAssetMgr->CreateReverb();
if(!reverbAsset)
{
customFXOK = 0;
printf("Failure creating reverb asset\n");
break;
}
reverbAsset->SetType(value);
if(verbose)
printf("%s = %s\n",paramStrs[param],fxStrs[value]);
}
break;
case BANK_FILE_NAME:
if(GetToken(&bankFileName,NULL) != TOKEN_STRING)
printf("Failure getting bank file name\n");
else if(verbose)
printf("%s = %s\n",paramStrs[param], bankFileName);
break;
case REVERB_PARAMS:
if(!customFXOK)
printf("Encountered reverb params, before FX_TYPE set to AL_FX_CUSTOM\n");
if(GetToken(NULL,&value) != TOKEN_VALUE)
printf("Failure getting number of fx sections\n");
else
{
int i,max;
if(customFXOK)
{
if(reverbAsset)
reverbAsset->AllocParamBuf(value);
}
max = (value * PARAMS_PER_SECTION) + 2;
for(i = 1; i < max; i++)
{
if(GetToken(NULL,&value) != TOKEN_VALUE)
printf("Failure getting reverb parameter %d\n",i);
else
{
if(verbose)
printf("\t%d",value);
if(customFXOK)
reverbAsset->SetParam(i,value);
}
if(verbose && ((i%8) == 1))
printf("\n");
}
if(verbose)
printf("\n");
}
break;
default:
printf("Found a param %s, with a value %d\n",paramStrs[param],value);
break;
}
}
}
int CnfgMgr::GetToken(char **tHdl, int *val)
{
#define NO_MODE 0
#define COMMENT_MODE 1
#define DEC_VALUE_MODE 3
#define HEX_VALUE_MODE 4
char c, *tStr;
int oldMode,mode = NO_MODE;
int value = 0;
int sign = 1;
int hexV,sLen,i;
while(1)
{
if(dataCur >= dataEnd)
return TOKEN_FAIL;
c = *dataCur;
if(c == '/' && dataCur[1] == '*') /* start a comment */
{
oldMode = mode;
mode = COMMENT_MODE;
}
else if(mode == COMMENT_MODE && c == '*' && dataCur[1] == '/' )
{
dataCur++; /* set past end of comment */
mode = oldMode;
}
else if(mode == NO_MODE)
{
if(c == '-')
sign = -1;
else if(c == '0' && ( dataCur[1] == 'x' || dataCur[1] == 'X'))
{
mode = HEX_VALUE_MODE;
dataCur++;
}
else if(c >= '0' && c <= '9')
{
mode = DEC_VALUE_MODE;
value = c - '0';
}
else
{
for(i = 0; i < MAX_PARAM_STRINGS; i++)
{
if(ParamCmp(paramStrs[i], dataCur) == 0)
{
dataCur += strlen(paramStrs[i]);
if(val)
{
*val = i;
return(TOKEN_PARAM_VALUE);
}
else
return(TOKEN_FAIL);
}
}
for(i = 0; i < MAX_REVERB_STRINGS; i++)
{
if(ParamCmp(fxStrs[i], dataCur) == 0)
{
dataCur += strlen(fxStrs[i]);
if(val)
{
*val = i;
return(TOKEN_FX_VALUE);
}
else
return(TOKEN_FAIL);
}
}
if((c >= 33 && c <= 60) || (c >= 62 && c <= 122))
{
sLen = 1;
while((dataCur[sLen] >= 33 && dataCur[sLen] <= 60) ||
(dataCur[sLen] >= 62 && dataCur[sLen] <= 122))
sLen++;
tStr = (char*)malloc(sLen+1);
if(tStr)
{
for(i = 0; i < sLen; i++)
tStr[i] = *dataCur++;
tStr[i] = 0;
*tHdl = tStr;
return (TOKEN_STRING);
}
else
return (TOKEN_FAIL);
}
}
}
else if(mode == HEX_VALUE_MODE)
{
hexV = HexValue(c);
if(hexV >= 0)
{
value *= 16;
value += hexV;
}
else /* ended */
{
dataCur++;
if(val)
{
*val = sign * value;
return (TOKEN_VALUE);
}
else
return (TOKEN_FAIL);
}
}
else if(mode == DEC_VALUE_MODE)
{
if(c >= '0' && c <= '9')
{
value *= 10;
value += c - '0';
}
else
{
dataCur++;
if(val)
{
*val = sign * value;
return (TOKEN_VALUE);
}
else
return (TOKEN_FAIL);
}
}
dataCur++;
}
}
int CnfgMgr::HexValue(char c)
{
if(c >= '0' && c <= '9')
return(c - '0');
if(c >= 'a' && c <= 'f')
return(c - 'a' + 10);
if(c >= 'A' && c <= 'F')
return(c - 'A' + 10);
return(-1);
}
int CnfgMgr::ParamCmp(char *s1, char *s2)
{
while(*s1 != 0)
{
if(*s1 == *s2)
{
s1++;
s2++;
}
else
return (-1);
}
return (0);
}