diff --git a/pasdk/test_dsp/framework/audioStreamOutProc.c b/pasdk/test_dsp/framework/audioStreamOutProc.c
index 3eb5658f6f564e15cd8d74399320ca5ca1955136..63789bcc5f7093e56e425e6c5ce31c933c3e8846 100644 (file)
// FL: debug
#include "evmc66x_gpio_dbg.h"
+#include "dbgCapAf.h"
+// -----------------------------------------------------------------------------
+// Debugging Trace Control, local to this file.
+//
+#include "logp.h"
+
#define TRACE_TIME(a)
+// Allow a developer to selectively enable tracing.
+#define CURRENT_TRACE_MASK 0x07
+
+#define TRACE_MASK_TERSE 0x01 // only flag errors and show init
+#define TRACE_MASK_GENERAL 0x02 // half dozen lines per frame
+#define TRACE_MASK_VERBOSE 0x04 // trace full operation
+
+#if !(CURRENT_TRACE_MASK & TRACE_MASK_TERSE)
+ #undef TRACE_TERSE0
+ #undef TRACE_TERSE1
+ #undef TRACE_TERSE2
+ #undef TRACE_TERSE3
+ #undef TRACE_TERSE4
+ #define TRACE_TERSE0(a)
+ #define TRACE_TERSE1(a,b)
+ #define TRACE_TERSE2(a,b,c)
+ #define TRACE_TERSE3(a,b,c,d)
+ #define TRACE_TERSE4(a,b,c,d,e)
+#endif
+
+#if !(CURRENT_TRACE_MASK & TRACE_MASK_GENERAL)
+ #undef TRACE_GEN0
+ #undef TRACE_GEN1
+ #undef TRACE_GEN2
+ #undef TRACE_GEN3
+ #undef TRACE_GEN4
+ #define TRACE_GEN0(a)
+ #define TRACE_GEN1(a,b)
+ #define TRACE_GEN2(a,b,c)
+ #define TRACE_GEN3(a,b,c,d)
+ #define TRACE_GEN4(a,b,c,d,e)
+#endif
+
+#if !(CURRENT_TRACE_MASK & TRACE_MASK_VERBOSE)
+ #undef TRACE_VERBOSE0
+ #undef TRACE_VERBOSE1
+ #undef TRACE_VERBOSE2
+ #undef TRACE_VERBOSE3
+ #undef TRACE_VERBOSE4
+ #define TRACE_VERBOSE0(a)
+ #define TRACE_VERBOSE1(a,b)
+ #define TRACE_VERBOSE2(a,b,c)
+ #define TRACE_VERBOSE3(a,b,c,d)
+ #define TRACE_VERBOSE4(a,b,c,d,e)
+#endif
+
+// .............................................................................
+
//
// Audio Stream Definitions
//
UInt32 gMasterCbResetCnt =0; // master circular buffer reset count
// Global debug counters */
+UInt32 gAsopTxSioReclaimCnt =0;
UInt32 gAsopInitOutProcCnt =0;
UInt32 gAsopInitSyncDecResetCnt =0;
UInt32 gAsopInitSyncDecInfo1Cnt =0;
UInt32 gAsopFinalCnt =0;
UInt32 gAsopOutSioUpdateCnt =0;
UInt32 gAsopQuitCnt =0;
-UInt32 gAsopTxSioReclaimCnt =0;
-
/*
* ======== taskAsopFxn ========
if (!pQ)
{
- TRACE_TERSE0("TaskAsip: No Patchs defined. Exiting.");
+ TRACE_TERSE0("TaskAsop: No Patchs defined. Exiting.");
LINNO_RPRT(TaskAsop, -1);
return;
}
//
for (z=STREAM1; z < STREAMN; z++)
{
- TRACE_VERBOSE1("TaskAsip: AS%d: running", as+z);
+ TRACE_VERBOSE1("TaskAsop: AS%d: running", as+z);
}
errno = 0; // init error indicator -- no error
}
}
+/* No need to start-clocks here, since only selecting the device. */
+#if 0
// if device selected and valid then enable stat tracking if
// required and start clocking
if ((pAstCfg->xOut[z].outBufStatus.sioSelect < 0) && (pAstCfg->xOut[z].hTxSio))
}
}
}
+#endif
}
return errno;
return 0;
} //PAF_ASOT_encodeCommand
+//debug -- allow dynamic config
+//Int16 gStrFrameLen=DEF_STR_FRAME_LEN; // stream frame length (PCM samples)
+
// Purpose: Decoding Function for reinitializing the decoding process.
Int
PAF_ASOT_decodeInit(
for (z=DECODE1; z < DECODEN; z++)
{
+ // Initialize decoder output circular buffer for stream reads
+ //errno = cbInitStreamRead(pCbCtl, z, gStrFrameLen);
+ errno = cbInitStreamRead(pCbCtl, z);
+ if (errno)
+ {
+ TRACE_TERSE1("PAF_ASOT_decodeInit:cbInitStreamRead() error=%d", errno);
+ SW_BREAKPOINT; // debug
+ return errno;
+ }
+
// Start decoder output circular buffer reads
errno = cbReadStart(pCbCtl, z);
if (errno)
SW_BREAKPOINT; // debug
return errno;
}
+
gCbReadAfErr=0; // reset read circular buffer error count
gDecOpCbRdAfUnd=0; // reset decoder output circular buffer underflow count
gMaxDecOpCbRdAfUnd=0; // reset max decoder output circular buffer underflow count
Int z; /* decode/stream counter */
PAF_AudioFrame *pAfRd;
Int cbErrno;
- PAF_AST_DecOpCircBufStats cbStats; /* circular buffer statistics */
+ //PAF_AST_DecOpCircBufStats cbStats; /* circular buffer statistics */
Int errno;
// Read decoder output circular buffer
//
pAfRd = pAstCfg->xStr[zS].pAudioFrame;
- //GPIOSetOutput(GPIO_PORT_0, GPIO_PIN_106);
+ //GPIOSetOutput(GPIO_PORT_0, GPIO_PIN_106); // debug
cbErrno = cbReadAf(pCbCtl, z, pAfRd);
- if ((cbErrno < 0) && (cbErrno != ASP_DECOP_CB_READ_UNDERFLOW))
+ //GPIOClearOutput(GPIO_PORT_0, GPIO_PIN_106); // debug
+ if ((cbErrno < 0) &&
+ (cbErrno != ASP_DECOP_CB_AF_READ_UNDERFLOW) &&
+ (cbErrno != ASP_DECOP_CB_PCM_READ_UNDERFLOW))
{
gCbReadAfErr++;
TRACE_TERSE1("PAF_ASOT_decodeStream:cbReadAf() error=%d", cbErrno);
- //SW_BREAKPOINT; // FL: debug
+ //SW_BREAKPOINT; // debug
return cbErrno;
}
// Handle underflows
- if (cbErrno == ASP_DECOP_CB_READ_UNDERFLOW)
+ if ((cbErrno == ASP_DECOP_CB_AF_READ_UNDERFLOW) ||
+ (cbErrno == ASP_DECOP_CB_PCM_READ_UNDERFLOW))
{
- // FL: some number of underflows alway occur on start of stream when ASOT only depends on configured Output.
- // DDP: ~2 underflows
- // MAT-THD: ~16 underflows
- // Need to check behavior of cbReset().
+ // (***) FL: Need to check behavior of cbReset().
// Need to check behavior on exit/re-entry into Output processing.
-
gDecOpCbRdAfUnd++; // increment circular buffer underflow count
if (gDecOpCbRdAfUnd >= DEC_OP_CB_RDAF_UND_THR)
{
gDecOpCbRdAfUnd = 0; // reset circular buffer underflow count
}
//Log_info0("PAF_ASOT_decodeStream:cbReadAf() complete.");
- //GPIOClearOutput(GPIO_PORT_0, GPIO_PIN_106);
+ //GPIOClearOutput(GPIO_PORT_0, GPIO_PIN_106); // debug
Log_info0("PAF_ASOT_decodeStream:cbReadAf() complete.");
#if 0 // (***) FL: shows timing of CB read
//cbGetStats(pCbCtl, z, &cbStats);
cbGetStats(pCbCtl, z, &gCbStats);
- // FL: debug
+ // debug
cbLog(pCbCtl, z, 1, "PAF_ASOT_decodeStream:cbReadAf");
- //if (capAfWrite(pAfRd, 0) != CAP_AF_SOK)
+ //if (capAfWrite(pAfRd, PAF_LEFT) != CAP_AF_SOK)
//{
// Log_info0("capAfWrite() error");
//}
Int z; /* encode/output counter */
Int errno; /* error number */
Int zX, zE, zS;
- UInt32 curTime;
+ // debug
+ //UInt32 curTime;
pAstCfg = pAsotCfg->pAstCfg; // get pointer to AST common (shared) configuration
as = pAstCfg->as;
pAstCfg->xOut[z].outBufConfig.lengthofFrame =
pAstCfg->xEnc[zE].encodeInStruct.pAudioFrame->sampleCount;
TRACE_GEN2("PAF_ASOT_decodeEncode: AS%d: processing block %d -- idle", as+zS, block);
+ //GPIOClearOutput(GPIO_PORT_0, GPIO_PIN_106); // debug
errno = SIO_reclaim(pAstCfg->xOut[z].hTxSio,(Ptr *) &pAstCfg->xOut[z].pOutBuf, NULL);
+ //GPIOSetOutput(GPIO_PORT_0, GPIO_PIN_106); // debug
if (errno < 0)
{
SIO_idle(pAstCfg->xOut[z].hTxSio);
}
#endif
- gAsopTxSioReclaimCnt++;
-
//
// Simulate Tx SIO_reclaim() pend
//
//Semaphore_pend(semaphoreTxAudio, BIOS_WAIT_FOREVER);
- curTime = Clock_getTicks();
- //System_printf("System time in TaskAsipFxn Tx audio = %lu\n", (ULong)curTime);
+ //curTime = Clock_getTicks();
+ //System_printf("System time in TaskAsopFxn Tx audio = %lu\n", (ULong)curTime);
//Log_info1("outputEncode():Tx SIO reclaim(), system time = %u", curTime);
+
+ gAsopTxSioReclaimCnt++;
}
else
{
if (pAstCfg->xOut[z].hTxSio)
{
TRACE_GEN2("PAF_ASOT_decodeEncode: AS%d: processing block %d -- output", as+zS, block);
+ //GPIOSetOutput(GPIO_PORT_0, GPIO_PIN_106); // debug
errno = SIO_issue(pAstCfg->xOut[z].hTxSio,
&pAstCfg->xOut[z].outBufConfig, sizeof (pAstCfg->xOut[z].outBufConfig), 0);
+ //GPIOClearOutput(GPIO_PORT_0, GPIO_PIN_106); // debug
if (errno)
{
SIO_idle(pAstCfg->xOut[z].hTxSio);
PAF_AST_Config *pAstCfg;
Int as; /* Audio Stream Number (1, 2, etc.) */
Int z; /* output counter */
- Int errno,nbufs; /* error number */
+ Int errno,nbufs, errme; /* error number */
Int zE, zS, zX;
Int zMD;
PAF_SIO_IALG_Obj *pObj;
}
}
+// Need to Revisit: Starting Clocks here seems logical & also manages the McASP without spurious underruns .
+
+#if 1
+ // if device selected and valid then enable stat tracking if
+ // required and start clocking
+ if ((pAstCfg->xOut[z].outBufStatus.sioSelect < 0) && (pAstCfg->xOut[z].hTxSio))
+ {
+ TRACE_VERBOSE0("PAF_ASOT_startOutput: start SIO clocks");
+ errme = SIO_ctrl(pAstCfg->xOut[z].hTxSio, PAF_SIO_CONTROL_OUTPUT_START_CLOCKS, 0);
+ if (errno)
+ {
+ TRACE_VERBOSE2("PAF_ASOT_startOutput: errme 0x%x, errno 0x%x", errme, errno);
+ SIO_idle(pAstCfg->xOut[z].hTxSio);
+ if (!errno)
+ {
+ errno = ASPERR_DEVOUT + errme;
+ }
+ }
+ }
+#endif
// Set sample count so that DOB knows how much data to send
pAstCfg->xOut[z].outBufConfig.lengthofFrame =
pAstCfg->xEnc[zE].encodeInStruct.pAudioFrame->sampleCount;
return ASOP_SOK;
}
+// FL: debug, allow modification of output frame length via JTAG
+Int16 gOutFrameLen=PAF_ASOT_FRAMELENGTH; // output frame length (PCM samples)
+
// Purpose: Init-Sync Dec Info1 state function.
// Performes Dec Info1 Init-Sync.
static Int PAF_ASOT_initSyncDecInfo1(
//{
// return errno;
//}
- outIsCpyAf(pDecInfo1Af, pStrAf);
+ // Hack to set ASOT output frame length.
+ // THD sets this to 256 (hard-coded in Dec Info)
+ // DDP sets this to 0 (audio frame passthrough, 0 from ASDT AF frame length)
+ // PCM sets this to 256 (decodeControl.frameLength)
+ //pDecInfo1Af->sampleCount = 256; // !!!! GJ: Revisit !!!!
+ pDecInfo1Af->sampleCount = gOutFrameLen;
+
+ outIsCpyAf(pDecInfo1Af, pStrAf);
+
+ // Hack to set ASOT output frame length
+ // THD sets this to 256 (hard-coded in Dec Info)
+ // DDP sets this to 0 (audio frame passthrough, 0 from ASDT AF frame length)
+ // PCM sets this to 256 (decodeControl.frameLength)
+ //pStrAf->sampleCount = 256; // !!!! GJ: Revisit !!!!
+
// outputInfo1():
// - ASP chain reset,
// - Enc Info
zMD = pAsotCfg->pAstCfg->masterDec; // get master Dec index
// Check circular buffer drain state
+ //GPIOSetOutput(GPIO_PORT_0, GPIO_PIN_107); // debug
errno = cbCheckDrainState(pCbCtl, zMD, &drainedFlag);
+ //GPIOClearOutput(GPIO_PORT_0, GPIO_PIN_107); // debug
if (errno < 0)
{
return errno;