xref: /utopia/UTPA2-700.0.x/modules/vdec_v3/hal/curry/mvd_v3/halMVD_EX.c (revision 53ee8cc121a030b8d368113ac3e966b4705770ef)
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94 
95 
96 //-------------------------------------------------------------------------------------------------
97 //  Include Files
98 //-------------------------------------------------------------------------------------------------
99 // Common Definition
100 #ifdef MSOS_TYPE_LINUX_KERNEL
101 #include <linux/string.h>
102 #else
103 #include <string.h>
104 #endif
105 
106 #include "MsCommon.h"
107 #include "drvMVD_EX.h"
108 #include "drvBDMA.h"
109 
110 // Internal Definition
111 #include "regMVD_EX.h"
112 #include "halMVD_EX.h"
113 #include "halVPU_EX.h"
114 #include "osalMVD_EX.h"
115 #include "mvd4_interface.h" //firmware header
116 #include "asmCPU.h"
117 #include "controller.h"
118 #include "MVD_EX_Common.h"
119 #include "halCHIP.h"
120 //#include "drvCMAPool.h"
121 #include "drvCMAPool_v2.h"
122 #if defined(MSOS_TYPE_LINUX)
123 #include "msos/linux/ion_uapi.h"
124 #include "msos/linux/mdrv_cma_pool_st.h"
125 #endif
126 
127 #if (!defined(MSOS_TYPE_NUTTX) && !defined(MSOS_TYPE_OPTEE)) || defined(SUPPORT_X_MODEL_FEATURE)
128 
129 
130 #ifdef MSOS_TYPE_LINUX_KERNEL
131 #define VPRINTF printk
132 #else
133 #ifndef ANDROID
134 #define VPRINTF printf
135 #else
136 #include <sys/mman.h>
137 #include <cutils/ashmem.h>
138 #include <cutils/log.h>
139 #define VPRINTF ALOGD
140 #endif
141 #endif
142 //-------------------------------------------------------------------------------------------------
143 //  Driver Compiler Options
144 //-------------------------------------------------------------------------------------------------
145 #define SLQ_NEW_PUSH       1
146 #define VIRTUAL_CMD_TIMEOUT 50
147 #ifdef VDEC3
148 #define v3_temp 1
149 #define v3_thinplayer 0
150 #else
151 #define v3_temp 0
152 #define v3_thinplayer 0
153 #endif
154 
155 //-------------------------------------------------------------------------------------------------
156 //  Local Defines
157 //-------------------------------------------------------------------------------------------------
158 #define MIU1_BASEADDR       pMVDHalContext->stMiuCfg.u32Miu1BaseAddr
159 #define _PA2Offset(x)       (((x)>=MIU1_BASEADDR)?(x-MIU1_BASEADDR):(x))
160 
161 #ifdef MSOS_TYPE_LINUX_KERNEL
162 #include <asm/div64.h>
163 #define _90K_TO_MS_U64(x)   ((x!=MVD_U64_MAX)?(do_div(x,90)):(x))  //90k counter ==> ms
164 #else
165 #define _90K_TO_MS_U64(x)   ((x!=MVD_U64_MAX)?(x/=90):(x))  //90k counter ==> ms
166 #endif
167 
168 #ifndef MS_ASSERT
169 #ifdef MS_DEBUG
170 #define MS_ASSERT(expr)     do {                                                        \
171                                 if(!(expr))                                             \
172                                 printf("MVD assert fail %s %d!\n", __FILE__, __LINE__); \
173                             } while(0)
174 #else
175 #define MS_ASSERT(expr)
176 #endif
177 #endif
178 
179 #ifndef UNUSED
180 #define UNUSED(x) (void)(x)
181 #endif
182 //constant
183 #define MVD_PollingTimes      0x40000UL
184 
185 #define MVD_DEBUGVERBAL(x)    if (_u8HalDbgLevel>3)  { (x); }
186 #define MVD_DEBUG_FWCMD(x)    if (_u8HalDbgLevel>2)  { (x); }
187 #define MVD_DEBUGINFO(x)      if (_u8HalDbgLevel>1)  { (x); }
188 #define MVD_DEBUGERROR(x)     if (_u8HalDbgLevel>0)  { (x); }
189 #define MVD_ERROR(x)          x
190 
191 #define RIU     ((unsigned short volatile *) (u32RiuBaseAdd))
192 #define RIU8    ((unsigned char  volatile *) (u32RiuBaseAdd))
193 
194 #define MVDCPU_ON_MIU1     ((HAL_MVD_RegReadByte(MIU0_SEL0_H) & BIT0) == BIT0)
195 #define MVDHW_ON_MIU1      ((HAL_MVD_RegReadByte(MIU0_SEL2_L) & BIT6) == BIT6)
196 
197 // MVD5
198 #define SLQ_TBL_ENTRY_LEN        0x7FFFFFFF //31-bit
199 
200 #define MVD_WIDTH_ALIGN_BYTE     16
201 #define MVD_WIDTH_ALIGN_MASK     (MVD_WIDTH_ALIGN_BYTE - 1)
202 #define MVD_WIDTH_ALIGN_BITS     4
203 
204 #define MVD_FBNUM_DEFAULT        4
205 #define MVD_FBNUM_MAX            5
206 #define MVD_FBNUM_MIN            MVD_FBNUM_DEFAULT
207 
208 #define MVD_DHD_FBSIZE           0x5FA000  //Framebuffer size minimum for Dual HD: (1920*2)*1088*1.5
209 #define MVD_HD_FBSIZE            0x2FD000  //Framebuffer size minimum for High Definition
210 #define MVD4_VC1_FBSIZE_HDMIN    0xEF1000  //5 * 1920 * 1088 * 1.5 = 14.95MB
211 #define MVD4_VC1_FBSIZE_HDMIN1   0xBF4000  //4 * 1920 * 1088 * 1.5 = 11.96MB
212 #define MVD4_VC1_FBSIZE_SDMIN    0x2F7600  //5 * 720 * 576 * 1.5 = 2.97MB
213 #define MVD4_MPEG_FBSIZE_HDMIN   0xBF4000  //4 * 1920 * 1088 * 1.5 = 11.96MB
214 #define MVD4_MPEG_FBSIZE_SDMIN   0x25F800  //4 * 720 * 576 * 1.5 = 2.38MB
215 
216 #define _IS_VC1(x) ((x==E_MVD_CODEC_VC1_ADV) || (x==E_MVD_CODEC_VC1_MAIN))
217 
218 #define SLQ_ENTRY_LEN               8   //8-byte per entry
219 
220 #define MVD_U32_MAX                 0xffffffffUL
221 #define MVD_U64_MAX                 0xffffffffffffffffULL
222 #define MVD_GENERAL_MAX                 ((size_t)(-1))
223 
224 #define MAX_ADD_28BIT               0x0fffffffUL
225 
226 #define SLQ_ADDR_LEN                SLQ_TBL_ENTRY_LEN   //Slq address length is the same as SlqTbl
227 
228 //Initial value for PTS table
229 #define _INIT_ADDR                  MVD_U32_MAX
230 #define _INIT_LEN                   0
231 #define _INIT_TIMESTAMP             MVD_U32_MAX
232 #define _INIT_ID                    MVD_U32_MAX
233 
234 #define _MS_TO_90K(x)   (x*90)  //ms ==> 90k counter
235 #define _90K_TO_MS(x)   ((x!=MVD_U32_MAX)?(x/90):(x))  //90k counter ==> ms
236 
237 
238 #define MVD_DBG_STS(x)        {}
239 #define _SLQTBL_DUMP_PTS      FALSE//TRUE
240 #define _SLQTBL_DUMP_PUSHQ    FALSE//TRUE
241 #define _SLQTBL_DUMP_PKT      FALSE//TRUE
242 #define MVD_TURBO_INIT        FALSE//TRUE
243 
244 #define SLQ_ENTRY_MAX               1024
245 #define SLQ_ENTRY_LEN               8   //8-byte per entry
246 #define SLQ_TBL_SIZE                (SLQ_ENTRY_MAX * SLQ_ENTRY_LEN)
247 #define ES_TBL_SIZE                 (SLQ_ENTRY_MAX * 8) //8-byte per entry
248 
249 #define MVD_FW_SLQTBL_PTS_LEN       32
250 
251 #define SLQ_TBL_SAFERANGE              (40*SLQ_ENTRY_LEN)
252 //this should be smaller than FW's lookup range (current it's 16 entries)
253 
254 #define SLQTBL_CHECKVACANCY_WATERLEVEL (44*SLQ_ENTRY_LEN)
255 
256 
257 #define DIVX_PATTERN    0x63643030
258 #define FLV_PATTERN     0xffff0000
259 #define MPEG_PATTERN_0  0xC6010000 //this SC just for mpeg2/4
260 #if SLQ_NEW_PUSH
261 #define SLQ_PIC_START_FLAG 0x40000000
262 #define VC1_PATTERN     0x0D010000
263 #define RCV_PATTERN     0xFF00A55A
264 #endif
265 #define VC1_PATTERN_0   0xff010000
266 #define VC1_PATTERN_1   0x0000ffff
267 #define VC1_PATTERN_2   0xffffff01
268 #define VC1_PATTERN_3   0x0000ffee
269 
270 #define RCV_PATTERN_0   0x00000000
271 #define RCV_PATTERN_1   0xffffffff
272 #define RCV_PATTERN_2   0x00000000
273 #define RCV_PATTERN_3   0xeeeeeeee
274 
275 #define DUMMY_PATTERN   0xBE010000
276 #define DUMMY_SIZE      0x2000     //8K
277 
278 #define END_PATTERN_0   0xFF010000
279 #define END_PATTERN_1   0xDDCCBBAA
280 #define END_PATTERN_2   0xBBAAFFEE
281 #define END_PATTERN_3   0xFFEEDDCC
282 #define END_PATTERN_SIZE 256
283 
284 #define SKIP_PATTERN_0  0xc5010000
285 #define SKIP_PATTERN_1  0x270608ab
286 #define SKIP_PATTERN_SIZE 8
287 
288 #define CMD_TIMEOUT_MS  500
289 #define SKIP_DATA_TIMEOUT_MS 15
290 
291 //Length of internal buffers
292 #define MVD_FW_IAP_BUF_LEN                 (0x4000UL)   // 16k
293 #define MVD_FW_DP_BUF_LEN                  (0x80000UL)  //512k
294 #define MVD_FW_MV_BUF_LEN                  (0x48000UL)  //288K
295 //Alignment of HW buffers start address
296 #define MVD_FW_IAP_BUF_ALIGN               (0x4000UL)   // 16k
297 #define MVD_FW_DP_BUF_ALIGN                (0x8000UL)   // 32k
298 #define MVD_FW_MV_BUF_ALIGN                (0x8000UL)   // 32k
299 
300 //Three HW buffers are allocated after framebuffer, so we need to
301 //consider these buffers when checking the available framebuffer size/number.
302 #define MVD_HW_BUF_TOTAL_LEN               (MVD_FW_IAP_BUF_LEN + MVD_FW_DP_BUF_LEN + MVD_FW_MV_BUF_LEN) //u32HWBuffTotalSize
303 
304 #define MVD_FW_CODE_LEN                    (OFFSET_BASE)//refer to the define in mvd4_interface.h
305 #define MVD_FW_CODE_LEN_V00                (0x70000UL)  //length for old layout
306 #define MVD_FW_MPOOL_START_OFFSET          (0x90000UL)  //576K
307 #define MVD_FW_TASK_OFFSET                 (0x100000UL) //1M
308 
309 #define MVD3_FW_VOL_INFO_BUF_LEN            (0x1000UL)   //  4K
310 #define MVD3_FW_FRAME_INFO_BUF_LEN          (0x1000UL)   //  4K
311 #define MVD3_FW_DIVX_INFO_BUF_LEN           (0x1000UL)   //  4K
312 #define MVD3_FW_USER_DATA_BUF_LEN           (0x4000UL)   //  16K
313 #define MVD3_FW_USER_DATA_BUF_BACKUP_LEN    MVD3_FW_USER_DATA_BUF_LEN // 16K
314 #define MVD3_FW_SLQ_TAB_TMPBUF_LEN          (0x200UL)
315 #define MVD_FW_SLQTBL_PTS_BUF_LEN           (SLQ_ENTRY_MAX*MVD_FW_SLQTBL_PTS_LEN)
316 #define MVD_FW_DYN_SCALE_BUF_LEN            (0x2000UL)   //  8K
317 #define MVD_FW_SCALER_INFO_BUF_LEN          (0x100UL)    // 256bytes reserved
318 #define MVD_FW_DECFRM_INFO_BUF_LEN          (0x100UL)    // 256bytes reserved
319 #define MVD_FW_VBBU_TABLE_LEN               (0x2000UL)   // 8K
320 
321 #define MVD_FW_USER_DATA_HDR_LEN            (6)
322 #define MVD_FW_USER_DATA_PKT_LEN            (256)
323 #define MVD_FW_USER_DATA_EXT_HDR_LEN        (16)
324 #define FW_BUFF_ALIGN                       (0x1000)     //4k align
325 
326 #define SLQ_ENTRY_MAX               1024
327 #define MVD_FW_SLQTBL_PTS_LEN       32
328 #define MVD_NULLPKT_PTS             MVD_U32_MAX
329 
330 #define MVD_HW_MAX_PIXEL            (1920*1088*61000ULL) // FHD@60p
331 
332 //Get the start address, and the next start address.
333 #define GET_FW_BUFFADD(cur, size, start)                    \
334         do {                                                \
335             start = cur;                                    \
336             cur += size;                                    \
337         } while(0)
338 
339 //Get the aligned start address, and the next start address.
340 #define GET_FW_BUFFADD_ALIGN(cur, align, size, alignStart)  \
341         do {                                                \
342             cur = (MemAlign(cur, align));                   \
343             GET_FW_BUFFADD(cur, size, alignStart);          \
344         } while(0)
345 
346 //Init command arguments
347 #define SETUP_CMDARG(x)     \
348             do {            \
349                 x.Arg0 = 0; \
350                 x.Arg1 = 0; \
351                 x.Arg2 = 0; \
352                 x.Arg3 = 0; \
353                 x.Arg4 = 0; \
354                 x.Arg5 = 0; \
355                } while(0)
356 
357 //Set command arguments
358 #define SET_CMDARG(cmd, u32val, u8Num)      \
359             do {                            \
360                 cmd.Arg0 = L_WORD(u32val);  \
361                 cmd.Arg1 = H_WORD(u32val);  \
362                 cmd.Arg2 = L_DWORD(u32val); \
363                 cmd.Arg3 = H_DWORD(u32val); \
364                 cmd.Arg4 = 0;               \
365                 cmd.Arg5 = u8Num;           \
366                } while(0)
367 
368 #define SET_CMD_RET_FALSE(_cmdVal, _pStcmdArg)                                  \
369     do {                                                                        \
370         if (HAL_MVD_MVDCommand(_cmdVal, (_pStcmdArg)) == FALSE)                 \
371         {                                                                       \
372             MVD_DEBUGERROR(printf("Command: 0x%x fail!!\r\n", _cmdVal));        \
373             return FALSE;                                                       \
374         }                                                                       \
375     } while(0)
376 
377 #define SET_CMD_RET_VOID(_cmdVal, _pStcmdArg)                                  \
378     do {                                                                        \
379         if (HAL_MVD_MVDCommand(_cmdVal, (_pStcmdArg)) == FALSE)                 \
380         {                                                                       \
381             MVD_DEBUGERROR(printf("Command: 0x%x fail!!\r\n", _cmdVal));        \
382             return;                                                       \
383         }                                                                       \
384     } while(0)
385 
386 #define HAL_MVD_InvalidBuffRetFalse(x)                                                              \
387     do {                                                                                            \
388         if ((x)==0)                                                                                 \
389         {                                                                                           \
390             MVD_DEBUGERROR(printf("%s(%d) error: NULL buffer address.\n", __FUNCTION__, __LINE__)); \
391             return FALSE;                                                                           \
392         }                                                                                           \
393     } while(0)
394 
395 #define _MVD_Memset(pDstAddr, u32value, u32Size)                                \
396     do {                                                                        \
397         MS_U32 x = 0;                                                           \
398         for (x = 0; x < (u32Size/4); x=x+4)                                     \
399         {                                                                       \
400             HAL_MVD_Memset4Byte(pDstAddr+x,u32value);                         \
401         }                                                                       \
402         HAL_MVD_CPU_Sync();                                 \
403         HAL_MVD_ReadMemory();                                      \
404     } while (0)
405 
406 #define _MVD_MemResetBit(pDstAddr, mask_num)                      \
407     do{                                                         \
408         *pDstAddr = (*pDstAddr) & (~(0x1<<mask_num));   \
409     }while(0)                                                   \
410 
411 
412 typedef enum
413 {
414     MVD_HKSLQ_GET_READPTR = 0,
415     MVD_HKSLQ_GET_WRITEPTR = 1,
416     MVD_HKSLQ_NONE = 2,
417 } MVD_HKSLQ_CMD;
418 
419 #if SLQ_NEW_PUSH
420 typedef struct _MVD_SLQ_STATUS
421 {
422     MS_BOOL bSlqPicStart;
423     MS_BOOL bSlqPicCollect;
424     MS_BOOL bSlqPicWaitNextStart;
425     MS_BOOL bSlqFireRdy;
426     MS_BOOL bSlqCtrlBit;
427     MS_BOOL bSlqEnLastFrameShow;
428     MS_VIRT u32SlqPatternAddr;
429     MS_U32 u32SlqPushLength;
430     MS_VIRT u32VaildWptrAddr;
431 } MVD_SLQ_STATUS;
432 #endif
433 
434 typedef struct _MVD_SLQ_TBL_ST
435 {
436     MS_VIRT u32StAdd;
437     MS_VIRT u32EndAdd;
438     MS_U32 u32EntryCntMax;
439 
440     MS_VIRT u32RdPtr;
441     MS_VIRT u32WrPtr;
442     MS_VIRT u32Empty;
443     MS_VIRT* pu32LastEntry;
444 } MVD_SLQ_TBL_ST;
445 
446 typedef struct _MVD_ALIVEInfo
447 {
448     MS_U32 u32decode_count;
449     MS_U32 u32searchbuf_count;
450     MS_U32 u32searchcode_count;
451     MS_U32 u32prebuf_count;
452     MS_U32 u32vfifobuf_count;
453     MS_U32 u32searchheader_count;
454     MS_U32 u32flashpattern_count;
455     MS_U32 u32IdleCount;
456 } MVD_ALIVEInfo;
457 
458 
459 typedef struct _MVD_SLQ_ES_ST
460 {
461     MS_VIRT u32StAdd;
462     MS_VIRT u32EndAdd;
463 
464     MS_VIRT u32RdPtr;
465     MS_VIRT u32WrPtr;
466 } MVD_SLQ_ES_ST;
467 
468 typedef struct _MVD_FWBuff
469 {
470     MS_VIRT pu8MVDGetVolBufStart;
471     MS_VIRT u32VolAdd;
472     MS_VIRT pu8MVDGetFrameInfoBufStart;
473     MS_VIRT pu8MVDSetHeaderBufStart;
474     MS_VIRT u32UserDataBuf;
475     MS_VIRT u32MVDFWSLQTABTmpbufAdr;
476     MS_VIRT u32MVDFWPtsTblAddr;
477     MS_VIRT u32DynScalingAdd;
478     MS_VIRT u32ScalerInfoAdd;
479     MS_VIRT u32DecFrmInfoAdd;
480     MS_VIRT u32VBBUTableAdd;
481 } MVD_FWBuff;
482 
483 typedef enum _FW_BUFF_TYPE
484 {
485     FW_BUFF_VOLINFO,
486     FW_BUFF_FRMINFO,
487     FW_BUFF_HDR,
488     FW_BUFF_USRDATA,
489     FW_BUFF_SLQTBL,
490     FW_BUFF_FWSLQTAB,
491     FW_BUFF_PTSTBL,
492     FW_BUFF_DS,
493     FW_BUFF_XCINFO,
494     FW_BUFF_DECFRMINFO,
495 } FW_BUFF_TYPE;
496 
497 typedef struct _MVD_SLQTBLInfo
498 {
499     MS_U32 u32LastPts;      ///< record the last PTS to handle the repeat case
500     MS_U32 u32DummyPktCnt;  ///< accumulated dummy packet counter
501     MS_U32 u32SlqByteCnt;   ///< accumulated byte counter
502     MS_VIRT u32ESBuffEnd;    ///< miu offset of ES buffer end, used for report TS read/write ptr.
503     MS_VIRT u32FileEndPtr;   ///< write ptr of file-end
504     MS_VIRT u32PreEsRd;      ///< previous ES read ptr
505     MS_VIRT u32PreEsWr;      ///< previous ES write ptr
506     MS_BOOL bRdyToFireCmd;  ///< TRUE after FW is ready to update write pointer
507     MS_BOOL bSlqTblHasValidData; ///< TRUE if the write ptr is not updated
508     MS_BOOL bEnSlqTblHkCtrl;
509     BDMA_CpyType bdmaCpyType;
510     MVD_SLQ_STATUS* pSlqStatus;
511     MVD_SLQ_TBL_ST* pDrvSlqTbl;
512     MVD_SLQ_ES_ST*  pDrvEsTbl;
513     MVD_SLQ_ES_ST*  pDrvDivxTbl;
514 } MVD_SLQTBLInfo;
515 
516 //Only keep one record of MIU setting since there should be only one,
517 //even for multiple decoders.
518 typedef struct _MVDMiuCfg
519 {
520     MS_PHY u32Miu1BaseAddr;
521     MS_PHY u32Miu2BaseAddr;
522     MS_PHY u32Miu3BaseAddr;
523     MS_U8    u8FWMiuSel;
524     MS_U8    u8HWMiuSel;
525 } MVDMiuCfg;
526 
527 typedef struct
528 {
529     MS_U64 u64PTS;
530     MS_U32 u32POC;
531     MS_U8 u8FrameType;
532 } MVD_PVR_Seamless_Info;
533 
534 typedef enum
535 {
536     E_MVD_DEC_0 = 0,
537     E_MVD_DEC_1,
538     E_MVD_DEC_MAX
539 } MVD_DecNum;
540 #ifdef VDEC3
541 #define MAX_DEC_NUM 16
542 #else
543 #define MAX_DEC_NUM E_MVD_DEC_MAX
544 #endif
545 
546 //-------------------------------------------------------------------------------------------------
547 //  Local Structures
548 //-------------------------------------------------------------------------------------------------
549 
550 
551 //-------------------------------------------------------------------------------------------------
552 //  Global Variables
553 //-------------------------------------------------------------------------------------------------
554 static MS_VIRT u32RiuBaseAdd = 0;
555 MS_U8 _u8HalDbgLevel = 0;
556 #ifdef VDEC3//#ifdef VDEC3
557 static MS_U32 u32SharememoryBase[MAX_DEC_NUM] ={MVD_U32_MAX,MVD_U32_MAX,MVD_U32_MAX,MVD_U32_MAX};
558 #else
559 static MS_U32 u32SharememoryBase[MAX_DEC_NUM] ={MVD_U32_MAX,MVD_U32_MAX};
560 #endif
561 static MS_U8 u8SHMMiuSel=0;
562 #if 0
563 static MVD_MEMCfg   stMemCfg[MAX_DEC_NUM];
564 static MVD_CtrlCfg  stCtrlCfg[MAX_DEC_NUM];
565 static MVD_FWCfg    stFwCfg[MAX_DEC_NUM];
566 
567 // For SLQ table link
568 static MVD_SLQTBLInfo stSlqTblInfo[MAX_DEC_NUM];
569 static MVD_SLQ_STATUS _SlqStatus[MAX_DEC_NUM];  //for SLQ_NEW_PUSH
570 static MVD_SLQ_TBL_ST _drvSlqTbl[MAX_DEC_NUM];
571 static MVD_SLQ_ES_ST _drvEsTbl[MAX_DEC_NUM];    //maintain to report ES read/write ptr
572 static MVD_SLQ_ES_ST _drvDivxTbl[MAX_DEC_NUM];  //header for divx311
573 static FW_DIVX_INFO gdivxInfo[MAX_DEC_NUM];
574 
575 MS_BOOL bSlqTblHKCtrl = FALSE;   //read/write pointer can be accessed by HK directly
576 static MS_BOOL bStopped = TRUE;
577 
578 static HAL_MVD_Stream _stMVDStream[MAX_DEC_NUM] = {
579     {E_HAL_MVD_MAIN_STREAM0, FALSE},
580     {E_HAL_MVD_SUB_STREAM0, FALSE},
581     //{E_HAL_MVD_SUB_STREAM1, FALSE},
582 };
583 static MVD_FWBuff stFWBuff[MAX_DEC_NUM];
584 #endif
585 
586 #define FRM_RATE_CODE_NUM 9
587 
588 typedef struct
589 {
590     MVD_MEMCfg    stMemCfg[MAX_DEC_NUM];
591     MVD_CtrlCfg    stCtrlCfg[MAX_DEC_NUM];
592     MVD_FWCfg    stFwCfg[MAX_DEC_NUM];
593 
594     // For SLQ table link
595     MVD_SLQTBLInfo stSlqTblInfo[MAX_DEC_NUM];
596     MVD_SLQ_STATUS _SlqStatus[MAX_DEC_NUM];    //for SLQ_NEW_PUSH
597     MVD_SLQ_TBL_ST _drvSlqTbl[MAX_DEC_NUM];
598     MVD_SLQ_ES_ST _drvEsTbl[MAX_DEC_NUM];    //maintain to report ES read/write ptr
599     MVD_SLQ_ES_ST _drvDivxTbl[MAX_DEC_NUM];    //header for divx311
600     FW_DIVX_INFO gdivxInfo[MAX_DEC_NUM];
601 
602     MS_BOOL bSlqTblHKCtrl[MAX_DEC_NUM];    //read/write pointer can be accessed by HK directly
603     MS_BOOL bStopped[MAX_DEC_NUM];
604 
605     HAL_MVD_Stream _stMVDStream[MAX_DEC_NUM];
606 
607     MVD_FWBuff stFWBuff[MAX_DEC_NUM];
608 
609     #if _SLQTBL_DUMP_PKT
610     MS_U32 u32SendTimes[MAX_DEC_NUM];//HAL_MVD_SLQTblSendPacket
611     #endif
612 
613     MS_U32 u32pqTimes[MAX_DEC_NUM];//HAL_MVD_PushQueue
614     MS_BOOL bSetSkip[MAX_DEC_NUM];//MVD_FlushTSQueue
615 
616     MS_U32 u32PreVdCnt[MAX_DEC_NUM];//HAL_MVD_DbgDump
617     MS_U32 u32PreErrCnt[MAX_DEC_NUM];
618     MS_BOOL b1stDump[MAX_DEC_NUM];
619     //pre_set
620     HAL_MVD_Pre_Ctrl gMVDPreCtrl[MAX_DEC_NUM];
621     MS_BOOL bAutoInsertDummyPattern[MAX_DEC_NUM];
622     MVDMiuCfg stMiuCfg;
623     MS_BOOL bDropOnePTS[MAX_DEC_NUM];
624     MVD_ALIVEInfo  aliveInfo[MAX_DEC_NUM];
625 
626     MS_U32 u32DmxFrameRate[MAX_DEC_NUM];
627     MS_U32 u32DmxFrameRateBase[MAX_DEC_NUM];
628     MS_BOOL bCMAUsed;
629 
630     struct CMA_Pool_Init_Param cmaInitParam; // support two MIU
631     struct CMA_Pool_Free_Param cmaFreeParam[MAX_DEC_NUM];
632     MS_BOOL bCMATwoMIU[MAX_DEC_NUM];
633     MS_U32 u32LastAliveTime[MAX_DEC_NUM];
634     MS_BOOL bTrickPlay2xAVSync[MAX_DEC_NUM];
635 } MVD_Hal_CTX;
636 
637 //global variables
638 MVD_Hal_CTX* pMVDHalContext = NULL;
639 MVD_Hal_CTX gMVDHalContext;
640 const MS_U16 stFrameRateCode[FRM_RATE_CODE_NUM]=
641 {
642     NULL,23976,24000,25000,29976,30000,50000,59947,60000
643 };
644 
645 
646 #define GET_VOL_BUFFADD(idx)           pMVDHalContext->stFWBuff[(idx)].pu8MVDGetVolBufStart
647 #define GET_VOL_BUFFADD_NONCACHE(idx)  pMVDHalContext->stFWBuff[(idx)].u32VolAdd
648 #define GET_FRMINFO_BUFFADD(idx)       pMVDHalContext->stFWBuff[(idx)].pu8MVDGetFrameInfoBufStart
649 #define GET_HDR_BUFFADD(idx)           pMVDHalContext->stFWBuff[(idx)].pu8MVDSetHeaderBufStart
650 #define GET_USRDATA_BUFFADD(idx)       pMVDHalContext->stFWBuff[(idx)].u32UserDataBuf
651 #define GET_SLQ_BUFFADD(idx)           pMVDHalContext->stFWBuff[(idx)].u32MVDFWSLQTABTmpbufAdr
652 #define GET_PTSTBL_BUFFADD(idx)        pMVDHalContext->stFWBuff[(idx)].u32MVDFWPtsTblAddr
653 #define GET_DS_BUFFADD(idx)            pMVDHalContext->stFWBuff[(idx)].u32DynScalingAdd
654 #define GET_XCINFO_BUFFADD(idx)        pMVDHalContext->stFWBuff[(idx)].u32ScalerInfoAdd
655 #define GET_DECFRMINFO_BUFFADD(idx)    pMVDHalContext->stFWBuff[(idx)].u32DecFrmInfoAdd
656 #define GET_VBBUTABLEADD(idx)          pMVDHalContext->stFWBuff[(idx)].u32VBBUTableAdd
657 
658 
659 
660 //-------------------------------------------------------------------------------------------------
661 //  Local Variables
662 //-------------------------------------------------------------------------------------------------
663 
664 
665 //-------------------------------------------------------------------------------------------------
666 //  Debug Functions
667 //-------------------------------------------------------------------------------------------------
668 
669 
670 //-------------------------------------------------------------------------------------------------
671 //  Local Functions
672 //-------------------------------------------------------------------------------------------------
673 
HAL_MVD_Context_Init(void)674 static void HAL_MVD_Context_Init(void)
675 {
676 #ifdef VDEC3
677     MS_U8 i;
678 
679     for (i = 0; i < MAX_DEC_NUM; i++)
680     {
681         pMVDHalContext->bStopped[i] = TRUE;
682         pMVDHalContext->b1stDump[i] = TRUE;
683         pMVDHalContext->_stMVDStream[i].eStreamId = E_HAL_MVD_N_STREAM0 + i;
684     }
685 #else
686     pMVDHalContext->bStopped[0] = TRUE;
687     pMVDHalContext->bStopped[1] = TRUE;
688     pMVDHalContext->_stMVDStream[0].eStreamId = E_HAL_MVD_MAIN_STREAM0;
689     pMVDHalContext->_stMVDStream[1].eStreamId = E_HAL_MVD_SUB_STREAM0;
690 
691     pMVDHalContext->b1stDump[0] = TRUE;
692     pMVDHalContext->b1stDump[1] = TRUE;
693 #endif
694 }
695 
696 
697 
HAL_MVD_SetIsUsed(MS_U8 u8Idx,MS_BOOL bUsed)698 static void HAL_MVD_SetIsUsed(MS_U8 u8Idx, MS_BOOL bUsed)
699 {
700     pMVDHalContext->_stMVDStream[u8Idx].bUsed = bUsed;
701 }
702 
703 //Given the start address & the available size for the FW buffers,
704 //return the address of each buffers.
705 //Now only support u8Size==1, 2, 4
MVD_GetFWBuffData(MS_U8 u8Idx,FW_BUFF_TYPE eBuffType,MS_U16 u16Offset,MS_U8 u8Size)706 static MS_U32 MVD_GetFWBuffData(MS_U8 u8Idx, FW_BUFF_TYPE eBuffType, MS_U16 u16Offset, MS_U8 u8Size)
707 {
708     MS_U32 u32Val = 0;
709     MS_VIRT u32BufStart = NULL;
710     switch (eBuffType)
711     {
712         case FW_BUFF_VOLINFO:    u32BufStart = GET_VOL_BUFFADD(u8Idx);        break;
713         case FW_BUFF_FRMINFO:    u32BufStart = GET_FRMINFO_BUFFADD(u8Idx);    break;
714         case FW_BUFF_HDR:        u32BufStart = GET_HDR_BUFFADD(u8Idx);        break;
715         case FW_BUFF_USRDATA:    u32BufStart = GET_USRDATA_BUFFADD(u8Idx);    break;
716         case FW_BUFF_FWSLQTAB:   u32BufStart = GET_SLQ_BUFFADD(u8Idx);        break;
717         case FW_BUFF_PTSTBL:     u32BufStart = GET_PTSTBL_BUFFADD(u8Idx);     break;
718         case FW_BUFF_DS:         u32BufStart = GET_DS_BUFFADD(u8Idx);         break;
719         case FW_BUFF_XCINFO:     u32BufStart = GET_XCINFO_BUFFADD(u8Idx);     break;
720         case FW_BUFF_DECFRMINFO: u32BufStart = GET_DECFRMINFO_BUFFADD(u8Idx); break;
721         default:
722             break;
723     }
724     if (NULL == u32BufStart)
725     {
726         printf("%s err: u8Idx=0x%x, bufType=0x%x, offset=%d, size=%d\n",
727                __FUNCTION__, u8Idx, eBuffType, u16Offset, u8Size);
728         return 0;
729     }
730 
731     if (u8Size == sizeof(MS_U8))
732     {
733         u32Val = (MS_U32)HAL_MVD_MemReadByte(u32BufStart+u16Offset);
734     }
735     else if (u8Size == sizeof(MS_U32))
736     {
737         u32Val = HAL_MVD_MemRead4Byte(u32BufStart+u16Offset);
738     }
739     else if (u8Size == sizeof(MS_U16))
740     {
741         u32Val = HAL_MVD_MemRead2Byte(u32BufStart+u16Offset);
742     }
743 
744     MVD_DEBUGVERBAL(printf("%s: u32Val=%d for u8Idx=0x%x, bufType=0x%x, offset=%d, size=%d\n",
745                           __FUNCTION__, u32Val, u8Idx, eBuffType, u16Offset, u8Size));
746     return u32Val;
747 }
748 
749 #ifdef VDEC3
MVD_SetFWBuffData(MS_U8 u8Idx,FW_BUFF_TYPE eBuffType,MS_U16 u16Offset,MS_U8 u8Size,MS_U32 u32Value)750 static void MVD_SetFWBuffData(MS_U8 u8Idx, FW_BUFF_TYPE eBuffType, MS_U16 u16Offset, MS_U8 u8Size, MS_U32 u32Value)
751 {
752     MS_VIRT u32BufStart = NULL;
753 
754     switch (eBuffType)
755     {
756         case FW_BUFF_VOLINFO:    u32BufStart = GET_VOL_BUFFADD(u8Idx);        break;
757         case FW_BUFF_FRMINFO:    u32BufStart = GET_FRMINFO_BUFFADD(u8Idx);    break;
758         case FW_BUFF_HDR:        u32BufStart = GET_HDR_BUFFADD(u8Idx);        break;
759         case FW_BUFF_USRDATA:    u32BufStart = GET_USRDATA_BUFFADD(u8Idx);    break;
760         case FW_BUFF_FWSLQTAB:   u32BufStart = GET_SLQ_BUFFADD(u8Idx);        break;
761         case FW_BUFF_PTSTBL:     u32BufStart = GET_PTSTBL_BUFFADD(u8Idx);     break;
762         case FW_BUFF_DS:         u32BufStart = GET_DS_BUFFADD(u8Idx);         break;
763         case FW_BUFF_XCINFO:     u32BufStart = GET_XCINFO_BUFFADD(u8Idx);     break;
764         case FW_BUFF_DECFRMINFO: u32BufStart = GET_DECFRMINFO_BUFFADD(u8Idx); break;
765         default:
766             break;
767     }
768 
769     if (NULL == u32BufStart)
770     {
771         printf("%s err: u8Idx=0x%x, bufType=0x%x, offset=%d, size=%d, value=%d\n",
772                __FUNCTION__, (unsigned int)u8Idx,(unsigned int) eBuffType,(unsigned int) u16Offset,(unsigned int) u8Size,(unsigned int)u32Value);
773     }
774 
775     if (pMVDHalContext->stMiuCfg.u8HWMiuSel == MIU_SEL_1)
776     {
777         u32BufStart += HAL_MIU1_BASE;
778     }
779 /*    else if (pMVDHalContext->stMiuCfg.u8HWMiuSel == MIU_SEL_2)
780     {
781         u32BufStart += HAL_MIU2_BASE;
782     }*/
783 
784     if (u8Size == sizeof(MS_U8))
785     {
786         MS_U8* temp = (MS_U8*)MsOS_PA2KSEG1(u32BufStart+u16Offset);
787         *temp = (MS_U8)u32Value;
788     }
789     else if (u8Size == sizeof(MS_U32))
790     {
791         MS_U32* temp = (MS_U32*)MsOS_PA2KSEG1(u32BufStart+u16Offset);
792         *temp = (MS_U32)u32Value;
793     }
794     else if (u8Size == sizeof(MS_U16))
795     {
796         MS_U16* temp = (MS_U16*)MsOS_PA2KSEG1(u32BufStart+u16Offset);
797         *temp = (MS_U16)u32Value;
798     }
799 
800     MVD_DEBUGVERBAL(printf("%s: u8Idx=0x%x, bufType=0x%x, offset=%d, size=%d, value=%d\n",
801                           __FUNCTION__,  (unsigned int)u8Idx, (unsigned int)eBuffType, (unsigned int)u16Offset, (unsigned int)u8Size,(unsigned int)u32Value));
802 }
803 #endif
804 
805 
806 //-------------------------------------------------------------------------------------------------
807 //  Global Functions
808 //-------------------------------------------------------------------------------------------------
HAL_MVD_SetDbgLevel(MS_U8 level)809 void HAL_MVD_SetDbgLevel(MS_U8 level)
810 {
811     _u8HalDbgLevel = level;
812     return;
813 }
814 
815 
HAL_MVD_GetCaps(void)816 MS_U8 HAL_MVD_GetCaps(void)
817 {
818     MS_U8 caps = 0;
819 
820     caps |= (MVD_SUPPORT_MPEG2|MVD_SUPPORT_MPEG4|MVD_SUPPORT_VC1);
821     return caps;
822 }
823 
HAL_MVD_GetMaxPixel(MS_U32 u32Id)824 MS_U64 HAL_MVD_GetMaxPixel(MS_U32 u32Id)
825 {
826     return (MS_U64)MVD_HW_MAX_PIXEL/1000;
827 }
828 
HAL_MVD_GetDrvFwVer(void)829 MS_U32 HAL_MVD_GetDrvFwVer(void)
830 {
831     return MVD_FW_VERSION;
832 }
833 
834 #if 0
835 MS_U32 HAL_MVD_GetMiu1BaseAdd(void)
836 {
837     return MIU1_BASEADDR;
838 }
839 #endif
840 
841 //#if defined(CHIP_MUJI)
HAL_MVD_GetMiu1BaseAdd(void)842 MS_VIRT HAL_MVD_GetMiu1BaseAdd(void)
843 {
844     return MIU1_BASEADDR;
845 }
846 
HAL_MVD_GetFWSelMiu1(void)847 MS_BOOL HAL_MVD_GetFWSelMiu1(void)
848 {
849     return MVDCPU_ON_MIU1;
850 }
851 //#endif
852 
853 
HAL_MVD_GetFWSelMiu(void)854 MS_U8 HAL_MVD_GetFWSelMiu(void)
855 {
856     return pMVDHalContext->stMiuCfg.u8FWMiuSel;
857 }
858 
859 
860 
HAL_MVD_MemGetMap(MS_U8 u8Idx,MS_U8 u8type,MS_VIRT * pu32addr,MS_SIZE * pu32len)861 void HAL_MVD_MemGetMap(MS_U8 u8Idx, MS_U8 u8type, MS_VIRT* pu32addr, MS_SIZE* pu32len)
862 {
863     MVD_MEMCfg* pstMemCfg = HAL_MVD_GetMEMCfg(u8Idx);
864     MS_VIRT u32StartOffset;
865     MS_U8  u8MiuSel;
866 
867     switch (u8type)
868     {
869         case E_MVD_MMAP_ALL:
870         case E_MVD_MMAP_FW:
871             _phy_to_miu_offset(u8MiuSel, u32StartOffset, pstMemCfg->u32FWCodeAddr);
872             *pu32addr = u32StartOffset;
873             *pu32len = pstMemCfg->u32FWCodeSize;
874             break;
875         case E_MVD_MMAP_BS:
876             _phy_to_miu_offset(u8MiuSel, u32StartOffset, pstMemCfg->u32BSAddr);
877             *pu32addr = u32StartOffset;
878             *pu32len = pstMemCfg->u32BSSize;
879             break;
880         case E_MVD_MMAP_FB:
881             _phy_to_miu_offset(u8MiuSel, u32StartOffset, pstMemCfg->u32FBAddr);
882             *pu32addr = u32StartOffset;
883             *pu32len = pstMemCfg->u32FBSize;
884             break;
885         case E_MVD_MMAP_DRV:
886             _phy_to_miu_offset(u8MiuSel, u32StartOffset, pstMemCfg->u32DrvBufAddr);
887             *pu32addr = u32StartOffset;
888             *pu32len = pstMemCfg->u32DrvBufSize;
889             break;
890         default:
891             break;
892     }
893 
894     MVD_DEBUGINFO(printf("HAL_MVD_MemGetMap[%d] add=0x%lx len=0x%lx\n",u8type,(unsigned long)*pu32addr,(unsigned long)*pu32len));
895     return;
896 }
897 
HAL_MVD_RegSetBase(MS_VIRT u32Base)898 void HAL_MVD_RegSetBase(MS_VIRT u32Base)
899 {
900     u32RiuBaseAdd = u32Base;
901     HAL_VPU_EX_InitRegBase(u32Base);
902 }
903 
HAL_MVD_RegWriteByte(MS_VIRT u32Reg,MS_U8 u8Val)904 void HAL_MVD_RegWriteByte(MS_VIRT u32Reg, MS_U8 u8Val)
905 {
906     if ( __builtin_constant_p( u32Reg ) )
907     {
908         RIU8[((u32Reg) * 2) - ((u32Reg) & 1)] = u8Val;
909     }
910     else
911     {
912         RIU8[(u32Reg << 1) - (u32Reg & 1)] = u8Val;
913     }
914 }
915 
HAL_MVD_RegReadByte(MS_VIRT u32Reg)916 MS_U8 HAL_MVD_RegReadByte(MS_VIRT u32Reg)
917 {
918     return (__builtin_constant_p( u32Reg ) ?
919             (((u32Reg) & 0x01) ? RIU8[(u32Reg) * 2 - 1] : RIU8[(u32Reg) * 2]) :
920             (RIU8[(u32Reg << 1) - (u32Reg & 1)]));
921 }
922 
HAL_MVD_RegWriteBit(MS_VIRT u32Reg,MS_BOOL bEnable,MS_U8 u8Mask)923 void HAL_MVD_RegWriteBit(MS_VIRT u32Reg, MS_BOOL bEnable, MS_U8 u8Mask)
924 {
925     MS_VIRT u32Reg8 = ((u32Reg) * 2) - ((u32Reg) & 1);
926     RIU8[u32Reg8] = (bEnable) ? (RIU8[u32Reg8] |  (u8Mask)) :
927                                 (RIU8[u32Reg8] & ~(u8Mask));
928 }
929 
HAL_MVD_RegWriteByteMask(MS_VIRT u32Reg,MS_U8 u8Val,MS_U8 u8Msk)930 void HAL_MVD_RegWriteByteMask(MS_VIRT u32Reg, MS_U8 u8Val, MS_U8 u8Msk)
931 {
932     MS_VIRT u32Reg8 = ((u32Reg) * 2) - ((u32Reg) & 1);
933     RIU8[u32Reg8] = (RIU8[u32Reg8] & ~(u8Msk)) | ((u8Val) & (u8Msk));
934 }
935 
HAL_MVD_RegWrite4Byte(MS_VIRT u32Reg,MS_U32 u32Val)936 void HAL_MVD_RegWrite4Byte(MS_VIRT u32Reg, MS_U32 u32Val)
937 {
938     if ( __builtin_constant_p( u32Reg ) && !((u32Reg) & 0x01) )
939     {
940         RIU[u32Reg] = (MS_U16)(u32Val);
941         RIU[(u32Reg) + 2] = (MS_U16)((u32Val) >> 16);
942     }
943     else
944     {
945         if (u32Reg & 0x01)
946         {
947             RIU8[(u32Reg << 1) - 1] = u32Val;
948             RIU[u32Reg + 1] = (u32Val >> 8);
949             RIU8[((u32Reg + 3) << 1)] = (u32Val >> 24);
950         }
951         else
952         {
953             RIU[u32Reg] = u32Val;
954             RIU[u32Reg + 2] = (u32Val >> 16);
955         }
956     }
957 }
958 
959 
HAL_MVD_MemRead4Byte(MS_VIRT u32Address)960 MS_U32 HAL_MVD_MemRead4Byte(MS_VIRT u32Address)
961 {
962     volatile MS_U32 u32Val;
963     MS_ASSERT(!(u32Address & 0x03UL));
964 
965     HAL_MVD_CPU_Sync();
966     HAL_MVD_ReadMemory();
967 
968     _miu_offset_to_phy(pMVDHalContext->stMiuCfg.u8FWMiuSel,u32Address,u32Address);
969 
970     u32Val = *(volatile MS_U32*) HAL_MVD_PA2NonCacheSeg(u32Address);
971 
972     //printf("mvd rd 0x%lx = 0x%lx\n", u32Address, u32Val);
973     return u32Val;
974 }
975 
HAL_MVD_MemRead2Byte(MS_VIRT u32Address)976 MS_U16 HAL_MVD_MemRead2Byte(MS_VIRT u32Address)
977 {
978     MS_VIRT u32ReadAddr;
979     MS_U32 u32ReadValue;
980     MS_U16 u16Value;
981     MS_U8 u8Shift;
982     u32ReadAddr = (u32Address >> 2) << 2;
983     u8Shift = (MS_U8)((u32Address & 0x03) * 8);
984     u32ReadValue = HAL_MVD_MemRead4Byte(u32ReadAddr);
985 
986     u16Value = (MS_U16)(u32ReadValue >> u8Shift);
987     if(u8Shift == 24)
988     {
989         u32ReadValue = HAL_MVD_MemRead4Byte(u32ReadAddr+4);
990         u16Value = u16Value << 8 || (MS_U16)(u32ReadValue & 0xFF);
991     }
992     return u16Value;
993 }
994 
HAL_MVD_MemReadByte(MS_VIRT u32Address)995 MS_U8 HAL_MVD_MemReadByte(MS_VIRT u32Address)
996 {
997     MS_VIRT u32ReadAddr;
998     MS_U32 u32ReadValue;
999     MS_U8 u8Value;
1000     MS_U8 u8Shift;
1001     u32ReadAddr = (u32Address >> 2) << 2;
1002     u8Shift = (MS_U8)((u32Address & 0x03) * 8);
1003     u32ReadValue = HAL_MVD_MemRead4Byte(u32ReadAddr);
1004     u8Value = (MS_U8)(u32ReadValue >> u8Shift);
1005 
1006     return u8Value;
1007 }
1008 
HAL_MVD_MemWrite4Byte(MS_VIRT u32Address,MS_U32 u32Value)1009 MS_BOOL HAL_MVD_MemWrite4Byte(MS_VIRT u32Address, MS_U32 u32Value)
1010 {
1011 
1012     _miu_offset_to_phy(pMVDHalContext->stMiuCfg.u8FWMiuSel,u32Address,u32Address);
1013 
1014     *(volatile MS_U32 *) HAL_MVD_PA2NonCacheSeg(u32Address) = u32Value;
1015 
1016     HAL_MVD_CPU_Sync();
1017     HAL_MVD_FlushMemory();
1018 
1019     return TRUE;
1020 }
1021 
HAL_MVD_MemWriteByte(MS_VIRT u32Address,MS_U8 u8Value)1022 MS_BOOL HAL_MVD_MemWriteByte(MS_VIRT u32Address, MS_U8 u8Value)
1023 {
1024     MS_VIRT u32ReadAddr;
1025     MS_U32 u32ReadValue;
1026     MS_U8 u8Shift;
1027 
1028     u32ReadAddr = (u32Address >> 2) << 2;
1029     u8Shift = (MS_U8)((u32Address & 0x03UL) * 8);
1030     u32ReadValue = HAL_MVD_MemRead4Byte(u32ReadAddr);
1031     u32ReadValue &= ~(0xFFUL << u8Shift);
1032     u32ReadValue |= ((MS_U32)u8Value << u8Shift);
1033     HAL_MVD_MemWrite4Byte(u32ReadAddr, u32ReadValue);
1034     return TRUE;
1035 }
1036 
HAL_MVD_MemWrite2Byte(MS_VIRT u32Address,MS_U16 u16Value)1037 MS_BOOL HAL_MVD_MemWrite2Byte(MS_VIRT u32Address, MS_U16 u16Value)
1038 {
1039     MS_VIRT u32ReadAddr;
1040     MS_U32 u32ReadValue;
1041     MS_U8 u8Shift;
1042 
1043     u8Shift = (MS_U8)((u32Address & 0x03UL) * 8) ;
1044     if(u8Shift < 24)
1045     {
1046         u32ReadAddr = (u32Address >> 2) << 2;
1047         u32ReadValue = HAL_MVD_MemRead4Byte(u32ReadAddr);
1048         u32ReadValue &= ~(0xFFFF << u8Shift);
1049         u32ReadValue |= ((MS_U32)u16Value << u8Shift);
1050         HAL_MVD_MemWrite4Byte(u32ReadAddr, u32ReadValue);
1051     }
1052     else
1053     {
1054         HAL_MVD_MemWriteByte(u32Address, (MS_U8)(u16Value));
1055         HAL_MVD_MemWriteByte(u32Address+1, (MS_U8)(u16Value >> 8));
1056     }
1057     return TRUE;
1058 }
1059 
1060 
HAL_MVD_SetReqMask(MS_BOOL bEnMask)1061 void HAL_MVD_SetReqMask(MS_BOOL bEnMask)
1062 {
1063     HAL_VPU_EX_MIU_RW_Protect(bEnMask);
1064 
1065     if (MVDHW_ON_MIU1) // miu1
1066     {
1067         HAL_MVD_RegWriteBit(MIU1_RQ2_MASK_L, bEnMask, BIT6);  //MVD R/W
1068         HAL_MVD_RegWriteBit(MIU1_RQ0_MASK_H, bEnMask, BIT2);  //MVD bbu R/W
1069     }
1070     else // miu0
1071     {
1072         HAL_MVD_RegWriteBit(MIU0_RQ2_MASK_L, bEnMask, BIT6);  //MVD R/W
1073         HAL_MVD_RegWriteBit(MIU0_RQ0_MASK_H, bEnMask, BIT2);  //MVD bbu R/W
1074     }
1075     HAL_MVD_Delayms(1);
1076 
1077     return;
1078 }
1079 
HAL_MVD_Memset4Byte(MS_VIRT u32Address,MS_U32 u32Value)1080 static MS_BOOL HAL_MVD_Memset4Byte(MS_VIRT u32Address, MS_U32 u32Value)
1081 {
1082     _miu_offset_to_phy(pMVDHalContext->stMiuCfg.u8FWMiuSel,u32Address,u32Address);
1083 
1084     *(volatile MS_U32 *) HAL_MVD_PA2NonCacheSeg(u32Address) = u32Value;
1085 
1086     return TRUE;
1087 }
1088 
1089 //------------------------------------------------------------------------------
1090 /// Initialize MVD
1091 /// @return -result of resetting MVD hardware
1092 //------------------------------------------------------------------------------
HAL_MVD_RstHW(void)1093 MS_BOOL HAL_MVD_RstHW(void)
1094 {
1095     MS_U32 u32Time = 0;
1096 
1097 #if defined(MSOS_TYPE_ECOS)
1098         if(MsOS_In_Interrupt() != TRUE)
1099         {
1100             OSAL_MVD_IntDisable();
1101             OSAL_MVD_LockHwMutex();
1102         }
1103 #else
1104         OSAL_MVD_LockHwMutex();
1105 #endif
1106 
1107     HAL_MVD_SetReqMask(ENABLE);
1108 
1109     HAL_MVD_RegWriteBit(MVD_CTRL, 1, MVD_CTRL_DISCONNECT_MIU);//disconnect MIU
1110     HAL_MVD_RegWriteBit(MVD_CTRL, 0, MVD_CTRL_DISCONNECT_MIU);//release reset
1111 
1112     HAL_MVD_RegWriteBit(MVD_CTRL, 1, MVD_CTRL_RST);//reset MVD
1113     HAL_MVD_RegWriteBit(MVD_CTRL, 0, MVD_CTRL_RST);//release reset
1114 
1115     u32Time = HAL_MVD_GetTime();
1116     while ( ((HAL_MVD_RegReadByte(MVD_STATUS) & MVD_STATUS_READY) == 0)
1117             && ((HAL_MVD_GetTime() - u32Time) < 200) );
1118 
1119 #if 0 //bring up
1120     printf("====================>>>>MVD Ctrl status1.5a : 0x%x\n",HAL_MVD_RegReadByte(MVD_STATUS));
1121     HAL_MVD_RegWriteBit(MVD_STATUS, 1, MVD_T8_MIU_128_0);//release reset
1122     HAL_MVD_RegWriteBit(MVD_STATUS, 1, MVD_T8_MIU_128_1);//release reset
1123     MVD_DEBUGINFO(printf("MVD Ctrl status : 0x%x\n",HAL_MVD_RegReadByte(MVD_STATUS)));
1124     printf("====================>>>>MVD Ctrl status1.5b : 0x%x\n",HAL_MVD_RegReadByte(MVD_STATUS));
1125 #endif
1126 
1127     HAL_MVD_SetReqMask(DISABLE);
1128 
1129 #if defined(MSOS_TYPE_ECOS)
1130         if(MsOS_In_Interrupt() != TRUE)
1131         {
1132             OSAL_MVD_UnlockHwMutex();
1133             OSAL_MVD_IntEnable();
1134         }
1135 #else
1136     OSAL_MVD_UnlockHwMutex();
1137 #endif
1138 
1139     return TRUE;
1140 }
1141 
1142 
1143 //------------------------------------------------------------------------------
1144 /// Release CPU
1145 /// @return -release CPU successfully or not
1146 //------------------------------------------------------------------------------
HAL_MVD_ReleaseFW(void)1147 MS_BOOL HAL_MVD_ReleaseFW(void)
1148 {
1149     //For dual decoder, we only release VPU if it is not released yet.
1150     if (TRUE == HAL_VPU_EX_IsRsted())
1151     {
1152         MVD_DEBUGINFO(printf("%s VPU_IsRsted\n", __FUNCTION__));
1153         return TRUE;
1154     }
1155 
1156     HAL_VPU_EX_SwRstRelse();
1157     return TRUE;
1158 }
1159 
HAL_MVD_PA2NonCacheSeg(MS_PHY u32PhyAddr)1160 MS_VIRT HAL_MVD_PA2NonCacheSeg(MS_PHY u32PhyAddr)
1161 {
1162     return MS_PA2KSEG1(u32PhyAddr);
1163 }
1164 
HAL_MVD_GetTime(void)1165 MS_U32 HAL_MVD_GetTime(void)
1166 {
1167     return MsOS_GetSystemTime();
1168 }
1169 
HAL_MVD_Delayms(MS_U32 u32msecs)1170 void HAL_MVD_Delayms(MS_U32 u32msecs)
1171 {
1172     MsOS_DelayTask(u32msecs);
1173 }
1174 
HAL_MVD_CPU_Sync(void)1175 void HAL_MVD_CPU_Sync(void)
1176 {
1177     MAsm_CPU_Sync();
1178 }
1179 
HAL_MVD_FlushMemory(void)1180 void HAL_MVD_FlushMemory(void)
1181 {
1182     MsOS_FlushMemory();
1183 }
1184 
HAL_MVD_ReadMemory(void)1185 void HAL_MVD_ReadMemory(void)
1186 {
1187     MsOS_ReadMemory();
1188 }
1189 
1190 //Record the memory layout from system configuration
HAL_MVD_SetMEMCfg(MS_U8 u8Idx,MVD_MEMCfg * pMEMCfg)1191 MS_BOOL HAL_MVD_SetMEMCfg(MS_U8 u8Idx, MVD_MEMCfg* pMEMCfg)
1192 {
1193     memcpy(&(pMVDHalContext->stMemCfg[u8Idx]), pMEMCfg, sizeof(MVD_MEMCfg));
1194     //record the MIU settings
1195     pMVDHalContext->stMiuCfg.u32Miu1BaseAddr = pMEMCfg->u32Miu1BaseAddr;
1196     pMVDHalContext->stMiuCfg.u32Miu2BaseAddr = pMEMCfg->u32Miu2BaseAddr;
1197     pMVDHalContext->stMiuCfg.u32Miu3BaseAddr = pMEMCfg->u32Miu3BaseAddr;
1198     pMVDHalContext->stMiuCfg.u8FWMiuSel = pMEMCfg->u8FWMiuSel;
1199     pMVDHalContext->stMiuCfg.u8HWMiuSel = pMEMCfg->u8HWMiuSel;
1200     return TRUE;
1201 }
1202 
HAL_MVD_GetMEMCfg(MS_U8 u8Idx)1203 MVD_MEMCfg* HAL_MVD_GetMEMCfg(MS_U8 u8Idx)
1204 {
1205     //printf("%s: u8Idx=0x%x\n", __FUNCTION__, u8Idx);
1206     MVD_MEMCfg* pInfo = NULL;
1207     pInfo = &(pMVDHalContext->stMemCfg[u8Idx]);
1208     return pInfo;
1209 }
1210 
HAL_MVD_SetFWCfg(MS_U8 u8Idx,MVD_FWCfg * pFWCfg)1211 MS_BOOL HAL_MVD_SetFWCfg(MS_U8 u8Idx, MVD_FWCfg* pFWCfg)
1212 {
1213     //printf("%s: u8Idx=0x%x\n", __FUNCTION__, u8Idx);
1214     memcpy(&(pMVDHalContext->stFwCfg[u8Idx]), pFWCfg, sizeof(MVD_FWCfg));
1215     memcpy(&(pMVDHalContext->stFwCfg[u8Idx].stFBReduction), &pFWCfg->stFBReduction,sizeof(MVD_FB_Reduction));
1216     return TRUE;
1217 }
1218 
HAL_MVD_GetFWCfg(MS_U8 u8Idx)1219 MVD_FWCfg* HAL_MVD_GetFWCfg(MS_U8 u8Idx)
1220 {
1221     MVD_FWCfg* pInfo = NULL;
1222     //printf("%s: u8Idx=0x%x\n", __FUNCTION__, u8Idx);
1223     pInfo = &(pMVDHalContext->stFwCfg[u8Idx]);
1224     return pInfo;
1225 }
1226 
HAL_MVD_GetFBMode(MS_U8 u8Idx)1227 MS_U8 HAL_MVD_GetFBMode(MS_U8 u8Idx)
1228 {
1229     MS_U8 u8Mode = MVD3_SD_MODE;
1230     u8Mode = pMVDHalContext->stFwCfg[u8Idx].u8FBMode;
1231     MVD_DEBUGINFO(printf("FBMode=0x%x\n", u8Mode));
1232     return u8Mode;
1233 }
1234 
HAL_MVD_GetCodecType(MS_U8 u8Idx)1235 MVD_CodecType HAL_MVD_GetCodecType(MS_U8 u8Idx)
1236 {
1237     MVD_CodecType eCodecType = E_MVD_CODEC_UNKNOWN;
1238     eCodecType = pMVDHalContext->stFwCfg[u8Idx].eCodecType;
1239     return eCodecType;
1240 }
1241 
HAL_MVD_GetSrcMode(MS_U8 u8Idx)1242 MVD_SrcMode HAL_MVD_GetSrcMode(MS_U8 u8Idx)
1243 {
1244     MVD_SrcMode eSrcMode = E_MVD_SRC_UNKNOWN;
1245     eSrcMode = pMVDHalContext->stFwCfg[u8Idx].eSrcMode;
1246     return eSrcMode;
1247 }
1248 
HAL_MVD_SetSrcMode(MS_U8 u8Idx,MVD_SrcMode mode)1249 MS_BOOL HAL_MVD_SetSrcMode(MS_U8 u8Idx,MVD_SrcMode mode)
1250 {
1251     if(pMVDHalContext != NULL)
1252     {
1253         pMVDHalContext->stFwCfg[u8Idx].eSrcMode = mode;
1254         return TRUE;
1255     }
1256     else
1257     {
1258         return FALSE;
1259     }
1260 }
1261 
1262 
HAL_MVD_GetCtrlCfg(MS_U8 u8Idx)1263 MVD_CtrlCfg* HAL_MVD_GetCtrlCfg(MS_U8 u8Idx)
1264 {
1265     MVD_CtrlCfg* pInfo = NULL;
1266     pInfo = &(pMVDHalContext->stCtrlCfg[u8Idx]);
1267     return pInfo;
1268 }
1269 
HAL_MVD_GetSlqTblInfo(MS_U8 u8Idx)1270 MVD_SLQTBLInfo* HAL_MVD_GetSlqTblInfo(MS_U8 u8Idx)
1271 {
1272     MVD_SLQTBLInfo* pInfo = NULL;
1273     pInfo = &(pMVDHalContext->stSlqTblInfo[u8Idx]);
1274     return pInfo;
1275 }
1276 
HAL_MVD_PowerCtrl(MS_BOOL bOn)1277 void HAL_MVD_PowerCtrl(MS_BOOL bOn)
1278 {
1279 #ifdef CONFIG_MSTAR_CLKM
1280     HAL_VPU_EX_SetClkManagement(E_VPU_EX_CLKPORT_MVD, bOn);
1281 #else
1282     HAL_MVD_RegWriteBit(REG_CKG_MVD_ENABLE, bOn, CKG_MVD_ENABLE_GATED);
1283     HAL_MVD_RegWriteBit(REG_CKG_MVD_ENABLE, bOn, CKG_MVD_PAS_ENABLE_GATED);
1284 
1285     HAL_MVD_RegWriteByteMask(REG_CKG_MVD, CKG_MVD_288MHZ, CKG_MVD_MASK);
1286     HAL_MVD_RegWriteBit(REG_CKG_MVD, !bOn, CKG_MVD_GATED);
1287     HAL_MVD_RegWriteBit(REG_CKG_MVD, !bOn, CKG_MVD_INVERT);
1288 #endif
1289     HAL_MVD_RegWriteBit(REG_CKG_MVD_CHROMA_A, !bOn, CKG_MVD_CHROMA_A_GATED);
1290     HAL_MVD_RegWriteBit(REG_CKG_MVD_CHROMA_A, !bOn, CKG_MVD_CHROMA_A_INVERT);
1291 
1292     HAL_MVD_RegWriteBit(REG_CKG_MVD_CHROMA_B, !bOn, CKG_MVD_CHROMA_B_GATED);
1293     HAL_MVD_RegWriteBit(REG_CKG_MVD_CHROMA_B, !bOn, CKG_MVD_CHROMA_B_INVERT);
1294 
1295     HAL_MVD_RegWriteBit(REG_CKG_MVD_CHROMA_C, !bOn, CKG_MVD_CHROMA_C_GATED);
1296     HAL_MVD_RegWriteBit(REG_CKG_MVD_CHROMA_C, !bOn, CKG_MVD_CHROMA_C_INVERT);
1297 
1298     HAL_MVD_RegWriteBit(REG_CKG_MVD_LUMA_A, !bOn, CKG_MVD_LUMA_A_GATED);
1299     HAL_MVD_RegWriteBit(REG_CKG_MVD_LUMA_A, !bOn, CKG_MVD_LUMA_A_INVERT);
1300 
1301     HAL_MVD_RegWriteBit(REG_CKG_MVD_LUMA_B, !bOn, CKG_MVD_LUMA_B_GATED);
1302     HAL_MVD_RegWriteBit(REG_CKG_MVD_LUMA_B, !bOn, CKG_MVD_LUMA_B_INVERT);
1303 
1304     HAL_MVD_RegWriteBit(REG_CKG_MVD_LUMA_C, !bOn, CKG_MVD_LUMA_C_GATED);
1305     HAL_MVD_RegWriteBit(REG_CKG_MVD_LUMA_C, !bOn, CKG_MVD_LUMA_C_INVERT);
1306 
1307     HAL_MVD_RegWriteBit(REG_CKG_MVD_RMEM, !bOn, CKG_MVD_RMEM_GATED);
1308     HAL_MVD_RegWriteBit(REG_CKG_MVD_RMEM, !bOn, CKG_MVD_RMEM_INVERT);
1309 
1310     HAL_MVD_RegWriteBit(REG_CKG_MVD_RMEM1, !bOn, CKG_MVD_RMEM1_GATED);
1311     HAL_MVD_RegWriteBit(REG_CKG_MVD_RMEM1, !bOn, CKG_MVD_RMEM1_INVERT);
1312 
1313     HAL_MVD_RegWriteBit(REG_CKG_MVD_RREFDAT, !bOn, CKG_MVD_RREFDAT_GATED);
1314     HAL_MVD_RegWriteBit(REG_CKG_MVD_RREFDAT, !bOn, CKG_MVD_RREFDAT_INVERT);
1315 
1316     return;
1317 }
1318 
1319 #if 0
1320 void HAL_MVD_Sleep(MS_U32 u32us)
1321 {
1322     MsOS_DelayTaskUs(u32us);
1323 }
1324 #endif
HAL_MVD_ResetHandShake(MS_U8 u8Idx,MVD_HANDSHAKE_CMD cmd)1325 void HAL_MVD_ResetHandShake(MS_U8 u8Idx, MVD_HANDSHAKE_CMD cmd)
1326 {
1327     MS_U32 u32BufAddr = GET_FRMINFO_BUFFADD(u8Idx);
1328     HAL_MVD_CPU_Sync();
1329     HAL_MVD_ReadMemory();
1330     MVD_CMD_HANDSHADE_INDEX u32CmdState;
1331     u32CmdState.value= HAL_MVD_MemRead4Byte(u32BufAddr + OFFSET_CMD_HANDSHAKE_INDEX);
1332     switch (cmd)
1333     {
1334         case MVD_HANDSHAKE_PAUSE:
1335             (u32CmdState.mvdcmd_handshake_pause) = 0;
1336             break;
1337         case MVD_HANDSHAKE_SLQ_RST:
1338             (u32CmdState.mvdcmd_handshake_slq_reset) = 0;
1339             break;
1340         case MVD_HANDSHAKE_STOP:
1341             (u32CmdState.mvdcmd_handshake_stop) = 0;
1342             break;
1343         case MVD_HANDSHAKE_SKIP_DATA:
1344             (u32CmdState.mvdcmd_handshake_skip_data) = 0;
1345             break;
1346         case MVD_HANDSHAKE_SINGLE_STEP:
1347             (u32CmdState.mvdcmd_handshake_single_step) = 0;
1348             break;
1349         case MVD_HANDSHAKE_SCALER_INFO:
1350             (u32CmdState.mvdcmd_handshake_scaler_data_ready) = 0;
1351             break;
1352         case MVD_HANDSHAKE_GET_NXTDISPFRM:
1353             (u32CmdState.mvdcmd_handshake_get_nextdispfrm_ready) = 0;
1354             break;
1355         case MVD_HANDSHAKE_PARSER_RST:
1356             (u32CmdState.mvdcmd_handshake_parser_rst) = 0;
1357             break;
1358         case MVD_HANDSHAKE_RST_CC608:
1359             (u32CmdState.mvdcmd_handshake_cc608_rst) = 0;
1360             break;
1361         case MVD_HANDSHAKE_RST_CC708:
1362             (u32CmdState.mvdcmd_handshake_cc708_rst) = 0;
1363             break;
1364         case MVD_HANDSHAKE_VIRTUAL_COMMAND:
1365             (u32CmdState.mvdcmd_handshake_virtualCommand) = 0;
1366             break;
1367         case MVD_HANDSHAKE_FLUSHQUEUE_COMMAND:
1368             (u32CmdState.mvdcmd_handshake_flush) = 0;
1369             break;
1370         case MVD_HANDSHAKE_VSYNC_CONTROL:
1371             (u32CmdState.mvdcmd_handshake_vsync_control) = 0;
1372             break;
1373         default:
1374             break;
1375     }
1376     HAL_MVD_MemWrite4Byte(u32BufAddr + OFFSET_CMD_HANDSHAKE_INDEX,u32CmdState.value);
1377     MsOS_FlushMemory();
1378 }
1379 
1380 //------------------------------------------------------------------------------
1381 /// Wait MVD command ready or timeout
1382 /// @return -MVD command ready or timeout
1383 //------------------------------------------------------------------------------
HAL_MVD_TimeOut(MS_U8 u8Idx)1384 MS_BOOL HAL_MVD_TimeOut(MS_U8 u8Idx)
1385 {
1386     MS_U32 i;
1387     MS_U32 u32StartTime = MsOS_GetSystemTime();
1388 
1389     for ( i = 0; i < MVD_PollingTimes; i++ )
1390     {
1391         ///- wait until MVD command ready or timeout
1392         if ( ( HAL_MVD_RegReadByte(MVD_STATUS) & MVD_STATUS_READY ) == MVD_STATUS_READY )
1393         {
1394             return FALSE;
1395         }
1396 
1397         if (/*(TRUE == pMVDHalContext->bStopped[u8Idx]) ||*/ ((MsOS_GetSystemTime()-u32StartTime)>1300))
1398         {
1399             MVD_DEBUGINFO(printf("%s: bStopped(%x) or timeout(%d)\n", __FUNCTION__, pMVDHalContext->bStopped[u8Idx], MsOS_GetSystemTime()-u32StartTime));
1400             return TRUE;
1401         }
1402 
1403         //HAL_MVD_Sleep(5);
1404     }
1405     MVD_DEBUGERROR( printf("MVD_TimeOut=%x\n", i) );
1406     return TRUE;
1407 }
1408 
1409 //------------------------------------------------------------------------------
1410 /// Set MVD firmware command
1411 /// @param -u8cmd \b IN : MVD command
1412 /// @param -pstCmdArg \b IN : pointer to command argument
1413 //------------------------------------------------------------------------------
HAL_MVD_MVDCommand(MS_U8 u8cmd,MVD_CmdArg * pstCmdArg)1414 MS_BOOL HAL_MVD_MVDCommand ( MS_U8 u8cmd, MVD_CmdArg *pstCmdArg )
1415 {
1416     MS_BOOL bRet = TRUE;
1417 #ifdef VDEC3
1418     MS_U32 u32CmdArg;
1419     MS_U32 u32Ret = FALSE;
1420     MS_U32 u32Timeout;
1421     MS_U8  u8HalIdx = pstCmdArg->Arg5;
1422     MS_U32 u32Id = MVD_GetStreamId(u8HalIdx);
1423     MS_U8 u8VPUIdx = HAL_VPU_EX_GetTaskId(u32Id);
1424     MVD_MEMCfg* pstMemCfg = HAL_MVD_GetMEMCfg(u8HalIdx);
1425     CMD_QUEUE *pShm = (CMD_QUEUE *)MsOS_PA2KSEG1(pstMemCfg->u32FWCodeAddr + VCOMMANDQ_INFO_START + u8VPUIdx*0x100000);
1426     MS_VIRT u32BufStart2 = NULL;
1427     MS_BOOL bResponse = FALSE;
1428 #endif
1429 #if defined(MSOS_TYPE_ECOS)
1430     if(MsOS_In_Interrupt() != TRUE)
1431     {
1432         OSAL_MVD_IntDisable();
1433         OSAL_MVD_LockHwMutex();
1434     }
1435 #else
1436     OSAL_MVD_LockHwMutex();
1437 #endif
1438 
1439 
1440 #ifdef VDEC3
1441     if(HAL_MVD_IsDisplayCommand(u8cmd) == TRUE)
1442     {
1443         if(HAL_MVD_IsNeedResponseCommand(u8cmd) == TRUE)
1444         {
1445             // clear handshake dram
1446             u32BufStart2 = GET_VOL_BUFFADD(u8HalIdx);
1447 
1448             _miu_offset_to_phy(pMVDHalContext->stMiuCfg.u8FWMiuSel,u32BufStart2,u32BufStart2);
1449 
1450             MS_U8* temp2 = (MS_U8*)MsOS_PA2KSEG1(u32BufStart2+OFFSET_VCHANDSHAKE);
1451 
1452             *temp2 = 0;
1453 
1454             MsOS_FlushMemory();
1455         }
1456 
1457 
1458         u32CmdArg = pstCmdArg->Arg0 | (pstCmdArg->Arg1<<8) | (pstCmdArg->Arg2 << 16) | (pstCmdArg->Arg3 << 24);
1459 
1460         u32Timeout = MsOS_GetSystemTime()+VIRTUAL_CMD_TIMEOUT;
1461 
1462         do
1463         {
1464             u32Ret = HAL_VPU_EX_DRAMStreamDispCMDQueueSend(u32Id,(void*)pShm,E_HVD_CMDQ_ARG,u32CmdArg);
1465 
1466 
1467             if(u32Ret == E_HVD_COMMAND_QUEUE_NOT_INITIALED)
1468             {
1469                 bRet = FALSE;
1470                 break;
1471             }
1472             else if (MsOS_GetSystemTime() > u32Timeout && u32Ret != E_HVD_COMMAND_QUEUE_SEND_SUCCESSFUL )
1473             {
1474                 bRet = FALSE;
1475                 break;
1476             }
1477         }while(u32Ret != E_HVD_COMMAND_QUEUE_SEND_SUCCESSFUL);
1478 
1479         if(bRet == FALSE || u32Ret != E_HVD_COMMAND_QUEUE_SEND_SUCCESSFUL)
1480         {
1481             bRet = FALSE;
1482             goto _CMD_DONE;
1483         }
1484 
1485 
1486         u32Timeout = MsOS_GetSystemTime()+VIRTUAL_CMD_TIMEOUT;
1487 
1488         do
1489         {
1490             u32Ret = HAL_VPU_EX_DRAMStreamDispCMDQueueSend(u32Id,(void*)pShm,E_HVD_CMDQ_CMD,u8cmd|(u8VPUIdx<<24)|(pstCmdArg->Arg4<<16));
1491 
1492             if(u32Ret == E_HVD_COMMAND_QUEUE_NOT_INITIALED)
1493             {
1494                 bRet = FALSE;
1495                 break;
1496             }
1497             else if (MsOS_GetSystemTime() > u32Timeout && u32Ret != E_HVD_COMMAND_QUEUE_SEND_SUCCESSFUL)
1498             {
1499                 bRet = FALSE;
1500                 break;
1501             }
1502         }while(u32Ret != E_HVD_COMMAND_QUEUE_SEND_SUCCESSFUL);
1503 
1504         if(bRet == FALSE || u32Ret != E_HVD_COMMAND_QUEUE_SEND_SUCCESSFUL)
1505         {
1506             bRet = FALSE;
1507             goto _CMD_DONE;
1508         }
1509 
1510         if(HAL_MVD_IsNeedResponseCommand(u8cmd) == TRUE)
1511         {
1512             u32Timeout = MsOS_GetSystemTime()+VIRTUAL_CMD_TIMEOUT;
1513 
1514             while(MsOS_GetSystemTime() < u32Timeout)
1515             {
1516                 #if 0
1517                 if (HAL_MVD_IsCmdFinished(u8HalIdx, MVD_HANDSHAKE_VIRTUAL_COMMAND))
1518                 {
1519                     bResponse = TRUE;
1520                     break;
1521                 }
1522                 #else
1523                 if(MVD_GetFWBuffData(u8HalIdx, FW_BUFF_VOLINFO, OFFSET_VCHANDSHAKE, sizeof(MS_U8)) == 1)
1524                 {
1525                     bResponse = TRUE;
1526                     break;
1527                 }
1528                 #endif
1529             }
1530 
1531             if(bResponse == FALSE)  // fail case
1532             {
1533                 bRet = FALSE;
1534                 goto _CMD_DONE;
1535             }
1536 
1537             pstCmdArg->Arg0 = MVD_GetFWBuffData(u8HalIdx, FW_BUFF_VOLINFO, OFFSET_VIRTUAL_COMMANDARG0, sizeof(MS_U8));
1538             pstCmdArg->Arg1 = MVD_GetFWBuffData(u8HalIdx, FW_BUFF_VOLINFO, OFFSET_VIRTUAL_COMMANDARG1, sizeof(MS_U8));
1539             pstCmdArg->Arg2 = MVD_GetFWBuffData(u8HalIdx, FW_BUFF_VOLINFO, OFFSET_VIRTUAL_COMMANDARG2, sizeof(MS_U8));
1540             pstCmdArg->Arg3 = MVD_GetFWBuffData(u8HalIdx, FW_BUFF_VOLINFO, OFFSET_VIRTUAL_COMMANDARG3, sizeof(MS_U8));
1541             pstCmdArg->Arg4 = MVD_GetFWBuffData(u8HalIdx, FW_BUFF_VOLINFO, OFFSET_VIRTUAL_COMMANDARG4, sizeof(MS_U8));
1542         }
1543 
1544     }
1545     else if(HAL_MVD_IsNormalCommand(u8cmd) == TRUE)
1546     {
1547         if(HAL_MVD_IsNeedResponseCommand(u8cmd) == TRUE)
1548         {
1549             // clear handshake dram
1550             u32BufStart2 = GET_VOL_BUFFADD(u8HalIdx);
1551 
1552             _miu_offset_to_phy(pMVDHalContext->stMiuCfg.u8FWMiuSel,u32BufStart2,u32BufStart2);
1553 
1554             MS_U8* temp2 = (MS_U8*)MsOS_PA2KSEG1(u32BufStart2+OFFSET_VCHANDSHAKE);
1555 
1556             *temp2 = 0;
1557 
1558             MsOS_ReadMemory();
1559             MsOS_FlushMemory();
1560         }
1561 
1562         u32CmdArg = pstCmdArg->Arg0 | (pstCmdArg->Arg1<<8) | (pstCmdArg->Arg2 << 16) | (pstCmdArg->Arg3 << 24);
1563 
1564         u32Timeout = MsOS_GetSystemTime()+VIRTUAL_CMD_TIMEOUT;
1565 
1566         do
1567         {
1568             //u32Ret = HAL_VPU_EX_DRAMStreamCMDQueueSend_MVD(pstCmdArg->Arg5,E_HVD_CMDQ_ARG,u32CmdArg);
1569             u32Ret = HAL_VPU_EX_DRAMStreamCMDQueueSend(u32Id,(void*)pShm,E_HVD_CMDQ_ARG,u32CmdArg);
1570 
1571             if(u32Ret == E_HVD_COMMAND_QUEUE_NOT_INITIALED)
1572             {
1573                 bRet = FALSE;
1574                 break;
1575             }
1576             else if (MsOS_GetSystemTime() > u32Timeout && u32Ret != E_HVD_COMMAND_QUEUE_SEND_SUCCESSFUL )
1577             {
1578                 bRet = FALSE;
1579                 break;
1580             }
1581         }while(u32Ret != E_HVD_COMMAND_QUEUE_SEND_SUCCESSFUL);
1582 
1583 
1584         if(bRet == FALSE || u32Ret != E_HVD_COMMAND_QUEUE_SEND_SUCCESSFUL)
1585         {
1586             bRet = FALSE;
1587             goto _CMD_DONE;
1588         }
1589 
1590 
1591         u32Timeout = MsOS_GetSystemTime()+VIRTUAL_CMD_TIMEOUT;
1592         do
1593         {
1594             //u32Ret = HAL_VPU_EX_DRAMStreamCMDQueueSend_MVD(pstCmdArg->Arg5,E_HVD_CMDQ_CMD,u8cmd|(pstCmdArg->Arg5<<24)|(pstCmdArg->Arg4<<16));
1595             u32Ret = HAL_VPU_EX_DRAMStreamCMDQueueSend(u32Id,(void*)pShm,E_HVD_CMDQ_CMD,u8cmd|(u8VPUIdx<<24)|(pstCmdArg->Arg4<<16));
1596 
1597             if(u32Ret == E_HVD_COMMAND_QUEUE_NOT_INITIALED)
1598             {
1599                 bRet = FALSE;
1600                 break;
1601             }
1602             else if (MsOS_GetSystemTime() > u32Timeout && u32Ret != E_HVD_COMMAND_QUEUE_SEND_SUCCESSFUL)
1603             {
1604                 bRet = FALSE;
1605                 break;
1606             }
1607         }while(u32Ret != E_HVD_COMMAND_QUEUE_SEND_SUCCESSFUL);
1608 
1609         if(bRet == FALSE || u32Ret != E_HVD_COMMAND_QUEUE_SEND_SUCCESSFUL)
1610         {
1611             bRet = FALSE;
1612             goto _CMD_DONE;
1613         }
1614 
1615         if(HAL_MVD_IsNeedResponseCommand(u8cmd) == TRUE)
1616         {
1617             u32Timeout = MsOS_GetSystemTime()+VIRTUAL_CMD_TIMEOUT;
1618 
1619             while(MsOS_GetSystemTime() < u32Timeout)
1620             {
1621                 #if 0
1622                 if (HAL_MVD_IsCmdFinished(u8HalIdx, MVD_HANDSHAKE_VIRTUAL_COMMAND))
1623                 {
1624                     bResponse = TRUE;
1625                     break;
1626                 }
1627                 #else
1628                 if(MVD_GetFWBuffData(u8HalIdx, FW_BUFF_VOLINFO, OFFSET_VCHANDSHAKE, sizeof(MS_U8)) == 1)
1629                 {
1630                     bResponse = TRUE;
1631                     break;
1632                 }
1633                 #endif
1634             }
1635 
1636             if(bResponse == FALSE)  // fail case
1637             {
1638                 bRet = FALSE;
1639                 goto _CMD_DONE;
1640             }
1641 
1642             pstCmdArg->Arg0 = MVD_GetFWBuffData(u8HalIdx, FW_BUFF_VOLINFO, OFFSET_VIRTUAL_COMMANDARG0, sizeof(MS_U8));
1643             pstCmdArg->Arg1 = MVD_GetFWBuffData(u8HalIdx, FW_BUFF_VOLINFO, OFFSET_VIRTUAL_COMMANDARG1, sizeof(MS_U8));
1644             pstCmdArg->Arg2 = MVD_GetFWBuffData(u8HalIdx, FW_BUFF_VOLINFO, OFFSET_VIRTUAL_COMMANDARG2, sizeof(MS_U8));
1645             pstCmdArg->Arg3 = MVD_GetFWBuffData(u8HalIdx, FW_BUFF_VOLINFO, OFFSET_VIRTUAL_COMMANDARG3, sizeof(MS_U8));
1646             pstCmdArg->Arg4 = MVD_GetFWBuffData(u8HalIdx, FW_BUFF_VOLINFO, OFFSET_VIRTUAL_COMMANDARG4, sizeof(MS_U8));
1647         }
1648     }
1649     else
1650 #endif
1651     {
1652         if ( HAL_MVD_TimeOut(pstCmdArg->Arg5) == TRUE )
1653         {
1654             bRet = FALSE;
1655             goto _CMD_DONE;
1656         }
1657 
1658         HAL_MVD_RegWriteByte(MVD_ARG0, pstCmdArg->Arg0);
1659         HAL_MVD_RegWriteByte(MVD_ARG1, pstCmdArg->Arg1);
1660         HAL_MVD_RegWriteByte(MVD_ARG2, pstCmdArg->Arg2);
1661         HAL_MVD_RegWriteByte(MVD_ARG3, pstCmdArg->Arg3);
1662         HAL_MVD_RegWriteByte(MVD_ARG4, pstCmdArg->Arg4);
1663         HAL_MVD_RegWriteByte(MVD_ARG5, pstCmdArg->Arg5);
1664         HAL_MVD_RegWriteByte(MVD_COMMAND, u8cmd);
1665         if ((CMD_GET_AFD != u8cmd) && (CMD_SLQ_GET_TBL_RPTR != u8cmd) &&
1666             (CMD_SLQ_UPDATE_TBL_WPTR != u8cmd) && (CMD_GET_NEXTDISPFRM != u8cmd) &&
1667             (CMD_DECODE_STATUS != u8cmd) && (CMD_RD_PTS != u8cmd) &&
1668             (CMD_GET_INT_STAT != u8cmd) && (CMD_RD_IO != u8cmd))
1669         {
1670             MVD_DEBUG_FWCMD(printf("MVD_CMD: %x; %x, %x, %x, %x, %x, %x\n", u8cmd, pstCmdArg->Arg0,
1671             pstCmdArg->Arg1, pstCmdArg->Arg2, pstCmdArg->Arg3, pstCmdArg->Arg4, pstCmdArg->Arg5));
1672         }
1673 
1674         if ( HAL_MVD_TimeOut(pstCmdArg->Arg5) == TRUE )
1675         {
1676             bRet = FALSE;
1677             goto _CMD_DONE;
1678         }
1679 
1680         pstCmdArg->Arg0 = HAL_MVD_RegReadByte(MVD_ARG0);
1681         pstCmdArg->Arg1 = HAL_MVD_RegReadByte(MVD_ARG1);
1682         pstCmdArg->Arg2 = HAL_MVD_RegReadByte(MVD_ARG2);
1683         pstCmdArg->Arg3 = HAL_MVD_RegReadByte(MVD_ARG3);
1684         pstCmdArg->Arg4 = HAL_MVD_RegReadByte(MVD_ARG4);
1685         pstCmdArg->Arg5 = HAL_MVD_RegReadByte(MVD_ARG5);
1686     }
1687 
1688 _CMD_DONE:
1689 #if defined(MSOS_TYPE_ECOS)
1690     if(MsOS_In_Interrupt() != TRUE)
1691     {
1692         OSAL_MVD_UnlockHwMutex();
1693         OSAL_MVD_IntEnable();
1694     }
1695 #else
1696     OSAL_MVD_UnlockHwMutex();
1697 #endif
1698 
1699 
1700     if (!bRet)
1701     {
1702         MVD_DEBUG_FWCMD(printf("%s timeout dump pc\n", __FUNCTION__));
1703         MS_U32 x=0;
1704         for (x=0; x<30; x++)
1705             MVD_DEBUG_FWCMD(printf("0x%x\n", HAL_VPU_EX_GetProgCnt()));
1706         MVD_DEBUG_FWCMD(printf("###\n"));
1707     }
1708 
1709     return bRet;
1710 }
1711 
HAL_MVD_SetSyncClk(MS_BOOL bEnable)1712 void HAL_MVD_SetSyncClk(MS_BOOL bEnable)
1713 {
1714     MS_ASSERT(0==bEnable);//Notice: Euclid & T3 have no sync_mode; Bit4 must be 0.
1715 
1716 #if defined(MSOS_TYPE_ECOS)
1717         if(MsOS_In_Interrupt() != TRUE)
1718         {
1719             OSAL_MVD_IntDisable();
1720             OSAL_MVD_LockHwMutex();
1721         }
1722 #else
1723         OSAL_MVD_LockHwMutex();
1724 #endif
1725     HAL_MVD_RegWriteBit(MVD_CTRL, bEnable, MVD_CTRL_CLK_SYNCMODE);
1726 #if defined(MSOS_TYPE_ECOS)
1727         if(MsOS_In_Interrupt() != TRUE)
1728         {
1729             OSAL_MVD_UnlockHwMutex();
1730             OSAL_MVD_IntEnable();
1731         }
1732 #else
1733         OSAL_MVD_UnlockHwMutex();
1734 #endif
1735 
1736     return;
1737 }
1738 
HAL_MVD_InitHW(VPU_EX_SourceType SourceType,VPU_EX_DecoderType eDecType)1739 MS_BOOL HAL_MVD_InitHW(VPU_EX_SourceType SourceType,VPU_EX_DecoderType eDecType)
1740 {
1741     //Set MVD Clock @ reg_CHIPTOP
1742     HAL_MVD_PowerCtrl(ENABLE);
1743 #ifdef CONFIG_MSTAR_CLKM
1744     if(eDecType == E_VPU_EX_DECODER_MVD)
1745     {
1746         HAL_VPU_EX_SetClkManagement(E_VPU_EX_CLKPORT_MVD_CORE, ENABLE);
1747     }
1748     if(SourceType == E_VPU_EX_INPUT_TSP)
1749     {
1750         HAL_VPU_EX_SetClkManagement(E_VPU_EX_CLKPORT_MVD_PAS, ENABLE);
1751     }
1752 #endif
1753 
1754 #ifdef CONFIG_MSTAR_SRAMPD
1755     HAL_MVD_RegWriteBit(REG_CODEC_SRAM_SD_EN, ENABLE, SRAM_SD_EN_MVD);
1756     HAL_MVD_Delayms(1);
1757 #endif
1758 
1759     //Set MVD Clock aync
1760     HAL_MVD_SetSyncClk(DISABLE);
1761 
1762     //MVD reset
1763     if(!HAL_MVD_RstHW())
1764     {
1765         MVD_DEBUGERROR(printf("MDrv_MVD_MVDInit:MVD4ResetHW failed\n"));
1766         return FALSE;
1767     }
1768     else
1769     {
1770         MVD_DEBUGINFO(printf("MDrv_MVD_MVDInit:MVD4ResetHW success\n"));
1771     }
1772 
1773     return TRUE;
1774 }
1775 
1776 
1777 //------------------------------------------------------------------------------
1778 /// Get MVD firmware version
1779 /// @return -firmware version
1780 //------------------------------------------------------------------------------
HAL_MVD_GetFWVer(MS_U32 u32VpuSid)1781 MS_U32 HAL_MVD_GetFWVer(MS_U32 u32VpuSid)
1782 {
1783 #if 0
1784     return HAL_VPU_EX_GetFWVer(u32VpuSid, E_VPU_EX_FW_VER_MVD_FW);
1785 #else
1786     //UNUSED(u32VpuSid);
1787     MVD_CmdArg mvdcmd;
1788 
1789     SETUP_CMDARG(mvdcmd);
1790     mvdcmd.Arg5 = HAL_VPU_EX_GetTaskId(u32VpuSid);
1791     if (HAL_MVD_MVDCommand( CMD_GET_FW_VERSION, &mvdcmd ) == FALSE)
1792     {
1793         MVD_ERROR( printf( "Command: 0x%x fail!!\r\n", CMD_GET_FW_VERSION ) );
1794         return 0;
1795     }
1796     return COMBU32(mvdcmd.Arg3,mvdcmd.Arg2,mvdcmd.Arg1,mvdcmd.Arg0);
1797 #endif
1798 }
1799 
1800 //------------------------------------------------------------------------------
1801 /// Get MVD firmware interface version
1802 /// @return -firmware interface version
1803 //------------------------------------------------------------------------------
HAL_MVD_GetFWIfVer(MS_U32 u32VpuSid)1804 MS_U32 HAL_MVD_GetFWIfVer(MS_U32 u32VpuSid)
1805 {
1806 #if 0
1807     return HAL_VPU_EX_GetFWVer(u32VpuSid, E_VPU_EX_FW_VER_MVD_IF);
1808 #else
1809     UNUSED(u32VpuSid);
1810     MVD_CmdArg mvdcmd;
1811 
1812     SETUP_CMDARG(mvdcmd);
1813     if (HAL_MVD_MVDCommand( CMD_INTERFACE_VERSION, &mvdcmd ) == FALSE)
1814     {
1815         MVD_ERROR( printf( "Command: 0x%x fail!!\r\n", CMD_INTERFACE_VERSION ) );
1816         return 0;
1817     }
1818     return COMBU32(mvdcmd.Arg3,mvdcmd.Arg2,mvdcmd.Arg1,mvdcmd.Arg0);
1819 #endif
1820 }
1821 
1822 //------------------------------------------------------------------------------
1823 /// Check MVD firmware status
1824 /// @return -firmware is ready or not
1825 //------------------------------------------------------------------------------
1826 
1827 #ifdef VDEC3
_MVD_Check_FW_Rdy(MS_U32 u32VpuSid)1828 static MS_BOOL _MVD_Check_FW_Rdy(MS_U32 u32VpuSid)
1829 {
1830     MS_U32 u32Id = MVD_GetStreamId(u32VpuSid);
1831     MS_U8 u8VPUIdx = HAL_VPU_EX_GetTaskId(u32Id);
1832     MVD_MEMCfg* pstMemCfg = HAL_MVD_GetMEMCfg(u32VpuSid);
1833     MS_U32 u32TimeOut = MsOS_GetSystemTime() + 500;
1834     unsigned int* pVersion = (unsigned int*)MsOS_PA2KSEG1(pstMemCfg->u32FWCodeAddr + OFFSET_BASE + u8VPUIdx*0x100000);
1835     MS_BOOL ret = FALSE;
1836 
1837     while(MsOS_GetSystemTime() < u32TimeOut)
1838     {
1839         if(((*pVersion) == FW_VERSION) && ((*(pVersion+4)) == INTERFACE_VERSION))
1840         {
1841             ret = TRUE;
1842             break;
1843         }
1844     }
1845 
1846     if (ret == FALSE)
1847     {
1848         MVD_ERROR(printf("MVD f/w header version is wrong,%x,%x,%x,%x\n",(*(pVersion+4)), INTERFACE_VERSION,(*pVersion), FW_VERSION));
1849     }
1850 
1851     return ret;
1852 }
1853 
1854 #else
_MVD_Check_FW_Rdy(MS_U32 u32VpuSid)1855 static MS_BOOL _MVD_Check_FW_Rdy(MS_U32 u32VpuSid)
1856 {
1857     MS_U32 u32TimeOut = 2000;
1858 
1859     //check firmware version consistent with header file
1860     while ((INTERFACE_VERSION != HAL_MVD_GetFWIfVer(u32VpuSid)) && (--u32TimeOut));
1861     if (u32TimeOut == 0)
1862     {
1863         MVD_ERROR(printf("MVD_FW_IF_Version=%lx inconsistent with header file(%x)!\n",
1864             HAL_MVD_GetFWIfVer(u32VpuSid), INTERFACE_VERSION));
1865         return FALSE;
1866     }
1867 
1868     if (FW_VERSION != HAL_MVD_GetFWVer(u32VpuSid))
1869     {
1870         MVD_DEBUGINFO(printf("Warning! FWBinVer(%lx) != FWHdrVer(%x)\n", HAL_MVD_GetFWVer(u32VpuSid), FW_VERSION));
1871     }
1872     MVD_DEBUGINFO(printf("MVD version Interface = %x, FW = %x\n", INTERFACE_VERSION, FW_VERSION));
1873 
1874     return TRUE;
1875 }
1876 #endif
_DumpCtrl(MS_U8 u8Idx)1877 MS_BOOL _DumpCtrl(MS_U8 u8Idx)
1878 {
1879     MVD_MEMCfg* pstMemCfg = HAL_MVD_GetMEMCfg(u8Idx);
1880 
1881     //printf("u32VA=0x%lx, PA=0x%x\n", u32VA, pstMemCfg->u32FWCodeAddr);
1882     struct _ctl_info *ctl_ptr = (struct _ctl_info *)
1883         HAL_MVD_PA2NonCacheSeg(pstMemCfg->u32FWCodeAddr + CTL_INFO_ADDR);
1884     MS_U32 u32timeout = HAL_MVD_GetTime() + 1000;//u32HVDCmdTimeout;
1885 
1886     HAL_MVD_ReadMemory();
1887 
1888     MVD_DEBUGINFO(printf("version=0x%x, statue=0x%x, last_ctl_cmd=0x%x, last_ctl_arg=0x%x\n",
1889         ctl_ptr->verion, ctl_ptr->statue, ctl_ptr->last_ctl_cmd, ctl_ptr->last_ctl_arg));
1890 
1891     while (CTL_TASK_CMDRDY != ctl_ptr->statue)
1892     {
1893         if (HAL_MVD_GetTime() > u32timeout)
1894         {
1895             MVD_DEBUGERROR(printf("CTRL timeout!!! %d\n", __LINE__));
1896             return FALSE;
1897         }
1898     }
1899 
1900     MVD_DEBUGINFO(printf("Version=0x%x, statue=0x%x, last_ctl_cmd=0x%x, last_ctl_arg=0x%x\n",
1901         ctl_ptr->verion, ctl_ptr->statue, ctl_ptr->last_ctl_cmd, ctl_ptr->last_ctl_arg));
1902 
1903     MS_U8 i;
1904 
1905     for (i = 0; i < 4; i++)
1906     {
1907         MVD_DEBUGINFO(printf("%s: Task %d, status=%d\n", __FUNCTION__, i, ctl_ptr->task_statue[i]));
1908     }
1909     return TRUE;
1910 }
1911 
1912 
MVD_MapVpuSrcType(MVD_SrcMode eSrcMode)1913 static VPU_EX_SourceType MVD_MapVpuSrcType(MVD_SrcMode eSrcMode)
1914 {
1915     VPU_EX_SourceType eVpuSrcType = E_VPU_EX_INPUT_NONE;
1916     switch (eSrcMode)
1917     {
1918         case E_MVD_TS_MODE:
1919         case E_MVD_TS_FILE_MODE:
1920             eVpuSrcType = E_VPU_EX_INPUT_TSP;
1921             break;
1922 
1923         case E_MVD_SLQ_TBL_MODE:
1924         case E_MVD_SLQ_MODE:
1925         case E_MVD_FILE_MODE:
1926             eVpuSrcType = E_VPU_EX_INPUT_FILE;
1927             break;
1928 
1929         case E_MVD_SRC_UNKNOWN:
1930         default:
1931             break;
1932     }
1933     return eVpuSrcType;
1934 }
1935 
MVD_GetTaskInfo(VPU_EX_TaskInfo * pstTaskInfo,MS_U8 u8Idx,HAL_VPU_StreamId eVpuId)1936 static void MVD_GetTaskInfo(VPU_EX_TaskInfo* pstTaskInfo, MS_U8 u8Idx, HAL_VPU_StreamId eVpuId)
1937 {
1938     pstTaskInfo->u32Id = (u8Idx << 8 | eVpuId);
1939     pstTaskInfo->eDecType = E_VPU_EX_DECODER_MVD;
1940     pstTaskInfo->eVpuId = eVpuId;
1941     pstTaskInfo->eSrcType = MVD_MapVpuSrcType(HAL_MVD_GetSrcMode(u8Idx));
1942     pstTaskInfo->u32HeapSize = MVD_DRAM_SIZE;
1943 }
1944 
HAL_MVD_CreateTask(MS_U8 u8Idx,HAL_VPU_StreamId eVpuId,MS_BOOL bShareBBU)1945 MS_BOOL HAL_MVD_CreateTask(MS_U8 u8Idx, HAL_VPU_StreamId eVpuId, MS_BOOL bShareBBU)
1946 {
1947     MS_BOOL bRet = FALSE;
1948     MS_BOOL bFWdecideFB = FALSE;
1949     MVD_FWCfg* pstCfg = HAL_MVD_GetFWCfg(u8Idx);
1950     HAL_VPU_EX_SetFWReload(!(pstCfg->bNotReload));
1951 
1952     MVD_DEBUGINFO(printf("\n\n Create Task(%x)!!!\n", u8Idx));
1953     VPU_EX_TaskInfo stTaskInfo;
1954     MVD_GetTaskInfo(&stTaskInfo, u8Idx, eVpuId);
1955 
1956     VPU_EX_FWCodeCfg stVpuFWCfg;
1957     VPU_EX_NDecInitPara stVpuInitPara;
1958     stVpuInitPara.pFWCodeCfg = &stVpuFWCfg;
1959     stVpuInitPara.pTaskInfo = &stTaskInfo;
1960     stVpuInitPara.pVLCCfg   = NULL;
1961 
1962     MVD_MEMCfg* pMemCfg = HAL_MVD_GetMEMCfg(u8Idx);
1963     stVpuFWCfg.u32BinAddr = HAL_MVD_PA2NonCacheSeg(pMemCfg->u32FWBinAddr);
1964     stVpuFWCfg.u32BinSize = pMemCfg->u32FWBinSize;
1965     stVpuFWCfg.u32DstAddr = HAL_MVD_PA2NonCacheSeg(pMemCfg->u32FWCodeAddr);
1966     stVpuFWCfg.u32DstSize = pMemCfg->u32FWCodeSize;
1967     stVpuFWCfg.u8SrcType  = pMemCfg->eFWSrcType;
1968 
1969 #ifdef VDEC3
1970     VPU_EX_FBCfg pFBCfg;
1971     stVpuInitPara.pFBCfg = &pFBCfg;
1972 
1973     if(pMVDHalContext->bCMAUsed == TRUE)
1974     {
1975         stVpuInitPara.pFBCfg->u32FrameBufAddr = (MS_VIRT)pMVDHalContext->cmaInitParam.heap_miu_start_offset;
1976         stVpuInitPara.pFBCfg->u32FrameBufSize = (MS_VIRT)pMVDHalContext->cmaInitParam.heap_length;
1977         bFWdecideFB = TRUE;
1978 
1979     }
1980     stTaskInfo.u8HalId = u8Idx;
1981     pMVDHalContext->_stMVDStream[u8Idx].u32SLQId = HAL_VPU_EX_GetBBUId(stTaskInfo.u32Id, &stTaskInfo, bShareBBU);
1982     if(pMVDHalContext->_stMVDStream[u8Idx].u32SLQId == HAL_VPU_INVALID_BBU_ID)
1983     {
1984         MVD_DEBUGINFO(printf("ERROR!!!MVD GetBBU Id Fail \n"));
1985     }
1986     else
1987     {
1988         bRet = HAL_VPU_EX_TaskCreate((MS_U32)eVpuId, (void*)&stVpuInitPara, bFWdecideFB, pMVDHalContext->_stMVDStream[u8Idx].u32SLQId);
1989     }
1990 
1991     if(bRet == FALSE)
1992     {
1993         if(!HAL_VPU_EX_FreeBBUId(stTaskInfo.u32Id, pMVDHalContext->_stMVDStream[u8Idx].u32SLQId, &stTaskInfo))
1994         {
1995             MVD_DEBUGERROR(printf("[%s][%d]ERROR!!! Free BBU Id Fail !!!\n",__FUNCTION__,__LINE__));
1996         }
1997     }
1998 #else
1999     bRet = HAL_VPU_EX_TaskCreate((MS_U32)eVpuId, (void*)&stVpuInitPara);
2000 #endif
2001     MVD_DEBUGINFO(printf(" Create Task!!! bRet=%x ###\n\n", bRet));
2002     _DumpCtrl(u8Idx);
2003 
2004     return bRet;
2005 }
2006 
HAL_MVD_DeleteTask(MS_U8 u8Idx,HAL_VPU_StreamId eVpuId)2007 MS_BOOL HAL_MVD_DeleteTask(MS_U8 u8Idx, HAL_VPU_StreamId eVpuId)
2008 {
2009     MS_BOOL bRet = FALSE;
2010     MVD_DEBUGINFO(printf("\n\n Delete Task(%x)!!!\n", u8Idx));
2011 
2012     VPU_EX_TaskInfo stTaskInfo;
2013     MVD_GetTaskInfo(&stTaskInfo, u8Idx, eVpuId);
2014 
2015     VPU_EX_FWCodeCfg stVpuFWCfg;
2016     VPU_EX_NDecInitPara stVpuInitPara;
2017     stVpuInitPara.pFWCodeCfg = &stVpuFWCfg;
2018     stVpuInitPara.pTaskInfo = &stTaskInfo;
2019 
2020     MVD_MEMCfg* pMemCfg = HAL_MVD_GetMEMCfg(u8Idx);
2021     stVpuFWCfg.u32BinAddr = HAL_MVD_PA2NonCacheSeg(pMemCfg->u32FWBinAddr);
2022     stVpuFWCfg.u32BinSize = pMemCfg->u32FWBinSize;
2023     stVpuFWCfg.u32DstAddr = HAL_MVD_PA2NonCacheSeg(pMemCfg->u32FWCodeAddr);
2024     stVpuFWCfg.u8SrcType  = pMemCfg->eFWSrcType;
2025 
2026 #ifdef VDEC3
2027     if(!HAL_VPU_EX_FreeBBUId(stTaskInfo.u32Id, pMVDHalContext->_stMVDStream[u8Idx].u32SLQId, &stTaskInfo))
2028     {
2029         MVD_DEBUGINFO(printf("ERROR!!! Free BBU Id Fail !!!\n"));
2030     }
2031 #endif
2032     bRet = HAL_VPU_EX_TaskDelete((MS_U32) eVpuId, &stVpuInitPara);
2033     MVD_DEBUGINFO(printf(" Delete Task!!! ###\n\n"));
2034     _DumpCtrl(u8Idx);
2035     return bRet;
2036 }
2037 
HAL_MVD_InitFW(MS_U32 u32VpuSid)2038 MS_BOOL HAL_MVD_InitFW(MS_U32 u32VpuSid)
2039 {
2040     //to fix the timing issue of getting FWIfVer on Chakra2
2041     HAL_MVD_Delayms(1);
2042 
2043     //check FW ready
2044     if ( !_MVD_Check_FW_Rdy(u32VpuSid))
2045     {
2046         MS_ASSERT(0);
2047         return FALSE;
2048     }
2049 
2050 #if 0
2051     if(pMVDHalContext->_stMVDStream[0].bUsed == FALSE && pMVDHalContext->_stMVDStream[1].bUsed == FALSE)   // no mvd is used
2052     {
2053         MVD_CmdArg mvdcmd;
2054         SETUP_CMDARG(mvdcmd);
2055         mvdcmd.Arg0 = 1; //reset mvd engine,if have only one mvd
2056         SET_DECNUM(mvdcmd, ((MS_U8)u32VpuSid));
2057         if (HAL_MVD_MVDCommand( CMD_SW_RESET, &mvdcmd ) == FALSE)
2058         {
2059             MVD_ERROR( printf( "Command: 0x%x fail!!\r\n", CMD_SW_RESET ) );
2060             return FALSE;
2061         }
2062     }
2063 #endif
2064     return TRUE;
2065 }
2066 
2067 #define _MVD_INIT_FAIL_RET()                                            \
2068             do {                                                        \
2069                 HAL_MVD_SetIsUsed(u8HalIdx, FALSE);                     \
2070                 return FALSE;                                           \
2071             } while (0)
2072 
2073 
HAL_MVD_Init(MS_U8 u8HalIdx,MVD_CodecType eCodecType,MS_U32 u32VpuSid,MS_BOOL bShareBBU)2074 MS_BOOL HAL_MVD_Init(MS_U8 u8HalIdx, MVD_CodecType eCodecType, MS_U32 u32VpuSid, MS_BOOL bShareBBU)
2075 {
2076     //OSAL_MVD_MutexInit();
2077     MS_BOOL no_use = FALSE;
2078     MS_BOOL ret;
2079 
2080     ret = MDrv_MVD_AUTH_IPCheck(eCodecType,&no_use);
2081     if(ret == FALSE)
2082     {
2083         return FALSE;
2084     }
2085 
2086     if (!HAL_MVD_CreateTask(u8HalIdx, (HAL_VPU_StreamId)u32VpuSid, bShareBBU))
2087     {
2088         _MVD_INIT_FAIL_RET();
2089     }
2090 
2091     pMVDHalContext->bStopped[u8HalIdx] = FALSE;
2092 
2093     if (!HAL_MVD_InitFW(u8HalIdx))
2094     {
2095         MVD_DEBUGERROR(printf("%s:HAL_MVD_InitFW(%x) failed\n", __FUNCTION__, u8HalIdx));
2096         if (!HAL_MVD_DeleteTask(u8HalIdx, (HAL_VPU_StreamId)u32VpuSid))
2097         {
2098             MVD_DEBUGERROR(printf("%s:HAL_MVD_DeleteTask failed\n", __FUNCTION__));
2099         }
2100 
2101         _MVD_INIT_FAIL_RET();
2102     }
2103     else
2104     {
2105         MVD_DEBUGINFO(printf("%s:HAL_MVD_InitFW(%x) success\n", __FUNCTION__, u8HalIdx));
2106     }
2107 
2108     HAL_MVD_SetIsUsed(u8HalIdx, TRUE);
2109 
2110     return TRUE;
2111 }
2112 
2113 #define _MVD_CMDRDY ((HAL_MVD_RegReadByte(MVD_STATUS) & MVD_STATUS_READY) == MVD_STATUS_READY)
2114 //------------------------------------------------------------------------------
2115 /// Check if MVD command is ready
2116 /// @return TRUE or FALSE
2117 ///     - TRUE, Success to process the command
2118 ///     - FALSE, Failed due to timeout
2119 //------------------------------------------------------------------------------
HAL_MVD_GetCmdRdy(void)2120 MS_BOOL HAL_MVD_GetCmdRdy(void)
2121 {
2122     MS_U32 timeoutTick = 2000;
2123 
2124     while ((!_MVD_CMDRDY) && ((timeoutTick--)!=0));
2125 
2126     if (0 == timeoutTick)
2127         return FALSE;
2128     else
2129         return TRUE;
2130 }
2131 
HAL_MVD_CheckIdle(void)2132 MS_BOOL HAL_MVD_CheckIdle(void)
2133 {
2134     MS_BOOL bIsIdle = FALSE;
2135     MVD_CmdArg mvdcmd;
2136 
2137     //issue CheckIdle command
2138     SETUP_CMDARG(mvdcmd);
2139     SET_CMD_RET_FALSE(CMD_MVD_IDLE, &mvdcmd);
2140 
2141     bIsIdle = (mvdcmd.Arg0 == 1);
2142     if (HAL_MVD_GetCmdRdy())
2143     {
2144         return bIsIdle;
2145     }
2146     else
2147     {
2148         return FALSE;
2149     }
2150 }
2151 
2152 
_MVD_SoftRstHW(void)2153 static MS_BOOL _MVD_SoftRstHW(void)
2154 {
2155     return FALSE;
2156 }
2157 
2158 //------------------------------------------------------------------------------
2159 /// Soft-reset MVD
2160 /// Ref AP note p.12 HK2MVD Reset Flow
2161 /// @return TRUE or FALSE
2162 ///     - TRUE, Success to soft-reset MVD
2163 ///     - FALSE, Failed. Need init MVD again.
2164 //------------------------------------------------------------------------------
HAL_MVD_SoftRstHW(void)2165 MS_BOOL HAL_MVD_SoftRstHW(void)
2166 {
2167     MS_U32 timetick = 2000;
2168 
2169     if (HAL_MVD_GetCmdRdy())
2170     {
2171         //idle check
2172         while ((!HAL_MVD_CheckIdle()) && ((timetick--)!=0));
2173 
2174         //either MVD is idle or timeout, do ENG/SLQ reset
2175         return _MVD_SoftRstHW(); //Reset HW engine
2176     }
2177     else
2178     {
2179         return FALSE; //here means "CPU hanging"
2180     }
2181 }
2182 
2183 //------------------------------------------------------------------------------
2184 /// Clean the IRQ bit (in interrupt handler should call this function while the
2185 /// interrupt has been triggered.
2186 /// @param none
2187 /// @return none
2188 /// @internal
2189 //------------------------------------------------------------------------------
HAL_MVD_ClearIRQ(void)2190 void HAL_MVD_ClearIRQ(void)
2191 {
2192     //OSAL_MVD_LockHwMutex();
2193     HAL_MVD_RegWriteBit(MVD_CTRL, 1, MVD_CTRL_CLR_INT);
2194     //OSAL_MVD_UnlockHwMutex();
2195     return;
2196 }
2197 
2198 //------------------------------------------------------------------------------
2199 /// Set display speed.
2200 ///FW use (# of B frames) / (# of decode frames) < Ratio this formula to adjustment.
2201 ///Once if the ratio is 1, that means, whenever (#Bframes / #decoded) < 1, then
2202 ///FW would drop the B frame.
2203 ///In other words, once AP need to back to normal mode, AP have to set the arg0 to 0.
2204 //------------------------------------------------------------------------------
HAL_MVD_SetSpeed(MS_U8 u8Idx,MVD_SpeedType eSpeedType,MS_U8 u8Multiple)2205 MS_BOOL HAL_MVD_SetSpeed(MS_U8 u8Idx, MVD_SpeedType eSpeedType, MS_U8 u8Multiple)
2206 {
2207     MVD_CmdArg mvdcmd;
2208 
2209     SETUP_CMDARG(mvdcmd);
2210 
2211     if (E_MVD_SPEED_FAST == eSpeedType)
2212         mvdcmd.Arg0 = 1; //fast forward
2213     else if (E_MVD_SPEED_SLOW == eSpeedType)
2214         mvdcmd.Arg0 = 2; //slow motion
2215     else
2216         mvdcmd.Arg0 = 0; //normal speed
2217 
2218     if (u8Multiple == 1)
2219     {
2220         mvdcmd.Arg0 = 0;
2221         //The only way to be NORMAL speed.
2222     }
2223 
2224     mvdcmd.Arg1 = u8Multiple;
2225 
2226     if(pMVDHalContext->bTrickPlay2xAVSync[u8Idx] == TRUE && eSpeedType == E_MVD_SPEED_FAST && u8Multiple == 2)
2227     {
2228         mvdcmd.Arg2 = 1;
2229     }
2230     else
2231     {
2232         mvdcmd.Arg2 = 0;
2233     }
2234 
2235     SET_DECNUM(mvdcmd, u8Idx);
2236     SET_CMD_RET_FALSE(CMD_DISP_SPEED_CTRL, &mvdcmd);
2237     return TRUE;
2238 }
2239 
2240 //------------------------------------------------------------------------------
2241 /// Set frame buffer address to MVD
2242 /// @param -u32addr \b IN : start address
2243 //------------------------------------------------------------------------------
HAL_MVD_SetFrameBuffAddr(MS_U8 u8Idx,MS_VIRT u32addr,MS_U8 u8fbMode)2244 void HAL_MVD_SetFrameBuffAddr(MS_U8 u8Idx, MS_VIRT u32addr, MS_U8 u8fbMode)
2245 {
2246     MVD_CmdArg mvdcmd;
2247     if(pMVDHalContext->bCMAUsed)
2248     {
2249         u8fbMode = MVD_CMA_MODE;
2250     }
2251 
2252     if ((u32addr>>3) > MAX_ADD_28BIT)// TODO: fixme, in 64bits system, address may be more than 28 bits
2253     {
2254         MVD_DEBUGERROR(printf("MDrv_MVD_SetFrameBuffAddr: only support 28bit add!\n"));
2255         return;
2256     }
2257 
2258     MS_ASSERT((u32addr%8)==0);
2259     u32addr >>= 3;
2260 
2261     SETUP_CMDARG(mvdcmd);
2262     mvdcmd.Arg0 = L_WORD(u32addr);
2263     mvdcmd.Arg1 = H_WORD(u32addr);
2264     mvdcmd.Arg2 = L_DWORD(u32addr);
2265 
2266     //Frame Buffer Mode Setting
2267     mvdcmd.Arg3 = u8fbMode | ((u32addr>>24)&0x0f);
2268     mvdcmd.Arg4 = u8fbMode & 0xff;
2269     MVD_DEBUGINFO(printf("FramebufferAdd 0x%lx, FB Mode 0x%x, arg3=0x%x\n", (unsigned long)u32addr, u8fbMode, mvdcmd.Arg3));
2270     SET_DECNUM(mvdcmd, u8Idx);
2271     if (HAL_MVD_MVDCommand( CMD_FB_BASE, &mvdcmd ) == FALSE)
2272     {
2273         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_FB_BASE ) );
2274         return;
2275     }
2276 
2277     return;
2278 }
2279 
2280 //------------------------------------------------------------------------------
2281 /// Set header buffer address to MVD
2282 /// @param -u32addr \b IN : start address
2283 //------------------------------------------------------------------------------
HAL_MVD_SetHeaderBufferAddr(MS_U8 u8Idx,MS_VIRT u32addr)2284 void HAL_MVD_SetHeaderBufferAddr (MS_U8 u8Idx, MS_VIRT u32addr )
2285 {
2286     MVD_CmdArg mvdcmd;
2287 
2288     MS_ASSERT((u32addr%8)==0);
2289     u32addr >>= 3;
2290 
2291     SET_CMDARG(mvdcmd, u32addr, u8Idx);
2292     if (HAL_MVD_MVDCommand( CMD_HEADER_INFO_BUF, &mvdcmd ) == FALSE)
2293     {
2294         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_HEADER_INFO_BUF ) );
2295     }
2296     return;
2297 }
2298 
2299 //------------------------------------------------------------------------------
2300 /// Set vol info buffer address to MVD
2301 /// @param -u32addr \b IN : start address
2302 //------------------------------------------------------------------------------
HAL_MVD_SetVolInfoBufferAddr(MS_U8 u8Idx,MS_VIRT u32addr)2303 void HAL_MVD_SetVolInfoBufferAddr (MS_U8 u8Idx, MS_VIRT u32addr )
2304 {
2305     MVD_CmdArg mvdcmd;
2306 
2307     MS_ASSERT((u32addr%8)==0);
2308     u32addr >>= 3;
2309 
2310     SET_CMDARG(mvdcmd, u32addr, u8Idx);
2311     if (HAL_MVD_MVDCommand( CMD_VOL_INFO_BUF, &mvdcmd ) == FALSE)
2312     {
2313         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_VOL_INFO_BUF ) );
2314     }
2315     return;
2316 }
2317 
2318 //------------------------------------------------------------------------------
2319 /// Set frame info buffer address to MVD
2320 /// @param -u32addr \b IN : start address
2321 //------------------------------------------------------------------------------
HAL_MVD_SetFrameInfoBufferAddr(MS_U8 u8Idx,MS_VIRT u32addr)2322 void HAL_MVD_SetFrameInfoBufferAddr (MS_U8 u8Idx, MS_VIRT u32addr )
2323 {
2324     MVD_CmdArg mvdcmd;
2325 
2326     MS_ASSERT((u32addr%8)==0);
2327     u32addr >>= 3;
2328 
2329     SET_CMDARG(mvdcmd, u32addr, u8Idx);
2330     if (HAL_MVD_MVDCommand( CMD_FRAME_INFO_BUF, &mvdcmd ) == FALSE)
2331     {
2332         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_FRAME_INFO_BUF ) );
2333     }
2334     return;
2335 }
2336 
2337 //------------------------------------------------------------------------------
2338 /// Set IAP buffer address to MVD
2339 /// @param -u32addr \b IN : start address
2340 //------------------------------------------------------------------------------
HAL_MVD_SetIAPBufferAddr(MS_U8 u8Idx,MS_VIRT u32addr)2341 void HAL_MVD_SetIAPBufferAddr (MS_U8 u8Idx, MS_VIRT u32addr )
2342 {
2343     MVD_MEMCfg* pstMemCfg = HAL_MVD_GetMEMCfg(u8Idx);
2344     MVD_CmdArg mvdcmd;
2345     MS_ASSERT((u32addr%8192)==0);
2346     u32addr >>= 13;
2347 
2348     SET_CMDARG(mvdcmd, u32addr, u8Idx);
2349     mvdcmd.Arg4 = pstMemCfg->u8FBMiuSel;
2350     if (HAL_MVD_MVDCommand( CMD_IAP_BUF_START, &mvdcmd ) == FALSE)
2351     {
2352         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_IAP_BUF_START ) );
2353     }
2354     return;
2355 }
2356 
2357 //------------------------------------------------------------------------------
2358 /// Set Data Partition buffer address to MVD
2359 /// @param -u32addr \b IN : start address
2360 //------------------------------------------------------------------------------
HAL_MVD_SetDPBufferAddr(MS_U8 u8Idx,MS_VIRT u32addr)2361 void HAL_MVD_SetDPBufferAddr (MS_U8 u8Idx, MS_VIRT u32addr )
2362 {
2363     MVD_CmdArg mvdcmd;
2364     MS_ASSERT((u32addr%8)==0);
2365     u32addr >>= 3;
2366 
2367     SET_CMDARG(mvdcmd, u32addr, u8Idx);
2368     if (HAL_MVD_MVDCommand( CMD_DP_BUF_START, &mvdcmd ) == FALSE)
2369     {
2370         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_DP_BUF_START ) );
2371     }
2372     return;
2373 }
2374 
2375 //------------------------------------------------------------------------------
2376 /// Set Motion Vector buffer address to MVD
2377 /// @param -u32addr \b IN : start address
2378 //------------------------------------------------------------------------------
HAL_MVD_SetMVBufferAddr(MS_U8 u8Idx,MS_VIRT u32addr)2379 void HAL_MVD_SetMVBufferAddr (MS_U8 u8Idx, MS_VIRT u32addr )
2380 {
2381     MVD_CmdArg mvdcmd;
2382     MS_ASSERT((u32addr%2048)==0);
2383     u32addr >>= 3;
2384 
2385     SET_CMDARG(mvdcmd, u32addr, u8Idx);
2386     if (HAL_MVD_MVDCommand( CMD_MV_BUF_START, &mvdcmd ) == FALSE)
2387     {
2388         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_MV_BUF_START ) );
2389     }
2390     return;
2391 }
2392 
_MVD_SetUserDataBufStart(MS_U8 u8Idx,MS_VIRT u32addr,MS_U8 u8arg3)2393 static void _MVD_SetUserDataBufStart(MS_U8 u8Idx, MS_VIRT u32addr, MS_U8 u8arg3)
2394 {
2395     MVD_CmdArg mvdcmd;
2396 
2397     MS_ASSERT((u32addr%8)==0);
2398     u32addr >>= 3;
2399     MVD_DEBUGINFO(printf("%s add=0x%lx arg3=0x%x\n", __FUNCTION__, (unsigned long)u32addr, u8arg3));
2400 
2401     SETUP_CMDARG(mvdcmd);
2402     mvdcmd.Arg0 = L_WORD(u32addr);
2403     mvdcmd.Arg1 = H_WORD(u32addr);
2404     mvdcmd.Arg2 = L_DWORD(u32addr);
2405     mvdcmd.Arg4 = H_DWORD(u32addr);
2406     mvdcmd.Arg3 = u8arg3;
2407     SET_DECNUM(mvdcmd, u8Idx);
2408     if (HAL_MVD_MVDCommand( CMD_USER_BUF_START, &mvdcmd ) == FALSE)
2409     {
2410         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_USER_BUF_START ) );
2411         return;
2412     }
2413     return;
2414 }
2415 
_MVD_SetUserDataBufSize(MS_U8 u8Idx,MS_U32 u32size,MS_U8 u8arg3)2416 static void _MVD_SetUserDataBufSize(MS_U8 u8Idx, MS_U32 u32size, MS_U8 u8arg3)
2417 {
2418     MVD_CmdArg mvdcmd;
2419 
2420     MS_ASSERT((u32size%8)==0);
2421     u32size >>= 3;
2422     MVD_DEBUGINFO(printf("%s add=0x%x arg3=0x%x\n", __FUNCTION__, u32size, u8arg3));
2423 
2424     SETUP_CMDARG(mvdcmd);
2425     mvdcmd.Arg0 = L_WORD(u32size);
2426     mvdcmd.Arg1 = H_WORD(u32size);
2427     mvdcmd.Arg2 = L_DWORD(u32size);
2428     mvdcmd.Arg4 = H_DWORD(u32size);
2429     mvdcmd.Arg3 = u8arg3;
2430     if(mvdcmd.Arg3 <= 1) //mean 608 and 708 in MM RVU
2431     {
2432       mvdcmd.Arg2 = 7;//ntsc1+ntsc2+atsc
2433       mvdcmd.Arg4 = 0;
2434     }
2435     SET_DECNUM(mvdcmd, u8Idx);
2436     if (HAL_MVD_MVDCommand( CMD_USER_BUF_SIZE, &mvdcmd ) == FALSE)
2437     {
2438         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_USER_BUF_SIZE ) );
2439         return;
2440     }
2441     return;
2442 }
2443 
2444 //------------------------------------------------------------------------------
2445 /// Set user data buffer address to MVD
2446 /// @param -u32addr \b IN : start address
2447 //------------------------------------------------------------------------------
HAL_MVD_SetUserDataBuf(MS_U8 u8Idx,MS_VIRT u32addr,MS_U32 u32size)2448 void HAL_MVD_SetUserDataBuf(MS_U8 u8Idx, MS_VIRT u32addr, MS_U32 u32size)
2449 {
2450     MS_U8 u8ccType = 0;
2451 
2452     MS_ASSERT((u32addr%8)==0);
2453     MS_ASSERT((u32size%8)==0);
2454 #ifdef REDLION_LINUX_KERNEL_ENVI
2455     u8ccType = 2;
2456 #elif defined(MVD_SUPPORT_X4_CC)
2457     u8ccType = 4;   //display order
2458 #else
2459     u8ccType = 2;// 2 for testing 0;
2460 #endif
2461 
2462 #if defined(MVD_SUPPORT_X4_CC)
2463     //set decoding buffer address
2464     _MVD_SetUserDataBufStart(u8Idx, u32addr+u32size, 3);
2465 #endif
2466 
2467     //set CC output buffer address
2468     _MVD_SetUserDataBufStart(u8Idx, u32addr, u8ccType);
2469 
2470 #if defined(MVD_SUPPORT_X4_CC)
2471     //set decoding buffer size
2472     _MVD_SetUserDataBufSize(u8Idx, u32size, 3);
2473 #endif
2474 
2475     //set CC output buffer size
2476     _MVD_SetUserDataBufSize(u8Idx, u32size, u8ccType);
2477 
2478     return;
2479 }
2480 
HAL_MVD_SetSLQTblBufStartEnd(MS_U8 u8Idx,MS_VIRT u32start,MS_VIRT u32end)2481 void HAL_MVD_SetSLQTblBufStartEnd(MS_U8 u8Idx, MS_VIRT u32start, MS_VIRT u32end)
2482 {
2483     MVD_CmdArg mvdcmd;
2484     MS_U32 u32val = u32end>>3;
2485     MVD_DEBUGINFO(printf("%s st=0x%lx end=0x%lx\n", __FUNCTION__, (unsigned long)u32start, (unsigned long)u32end));
2486 
2487     SET_CMDARG(mvdcmd, u32val, u8Idx);
2488     if (HAL_MVD_MVDCommand( CMD_SLQ_TBL_BUF_END, &mvdcmd ) == FALSE)
2489     {
2490         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_SLQ_TBL_BUF_END ) );
2491         return;
2492     }
2493 
2494     u32val = (u32start)>>3;
2495     SET_CMDARG(mvdcmd, u32val, u8Idx);
2496     if (HAL_MVD_MVDCommand( CMD_SLQ_TBL_BUF_START, &mvdcmd ) == FALSE)
2497     {
2498         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_SLQ_TBL_BUF_START ) );
2499         return;
2500     }
2501 
2502     MVD_DEBUGINFO(printf("%s st=0x%lx end=0x%lx OK!!!\n", __FUNCTION__, (unsigned long)u32start, (unsigned long)u32end));
2503     return;
2504 }
2505 
2506 //------------------------------------------------------------------------------
2507 /// Issue StepDisplay command.
2508 /// @return -TRUE for success; FALSE for failure.
2509 //------------------------------------------------------------------------------
HAL_MVD_StepDisp(MS_U8 u8Idx)2510 MS_BOOL HAL_MVD_StepDisp(MS_U8 u8Idx)
2511 {
2512     MVD_CmdArg mvdcmd;
2513 
2514     MVD_SetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_STEP_DISP_DONE, sizeof(MS_U8), 0);
2515 
2516     SETUP_CMDARG(mvdcmd);
2517     SET_DECNUM(mvdcmd, u8Idx);
2518     SET_CMD_RET_FALSE(CMD_STEP_DISP_DECODE_ONE, &mvdcmd);
2519     if (HAL_MVD_Resume(u8Idx) == FALSE)
2520     {
2521         MVD_DEBUGERROR( printf( "Command: HAL_MVD_Resume fail!!\r\n" ) );
2522         return FALSE;
2523     }
2524 
2525     return TRUE;
2526 }
2527 
2528 //------------------------------------------------------------------------------
2529 /// Get ES read address for TS file mode.
2530 /// @return ES read address
2531 //------------------------------------------------------------------------------
HAL_MVD_GetTsFileESReadPtr(MS_U8 u8Idx)2532 MS_VIRT HAL_MVD_GetTsFileESReadPtr(MS_U8 u8Idx)
2533 {
2534     MS_VIRT u32Add = 0;
2535     MVD_CmdArg mvdcmd;
2536 
2537     SETUP_CMDARG(mvdcmd);
2538     mvdcmd.Arg0 = 2;    //ES diff
2539     SET_DECNUM(mvdcmd, u8Idx);
2540     if (HAL_MVD_MVDCommand( CMD_PARSER_READ_POSITION, &mvdcmd ) == TRUE)
2541     {
2542         //in order to latch the newest parser status
2543         //u32Diff = (((MS_U32)mvdcmd.Arg3) <<24) | (((MS_U32)mvdcmd.Arg2) <<16) |
2544         //          (((MS_U32)mvdcmd.Arg1) << 8) | (((MS_U32)mvdcmd.Arg0));
2545     }
2546     else
2547     {
2548         MVD_DEBUGERROR( printf( "Ctrl: 0x%x fail!!\n", CMD_PARSER_READ_POSITION) );
2549     }
2550 
2551     SETUP_CMDARG(mvdcmd);
2552     mvdcmd.Arg0 = 1;
2553     SET_DECNUM(mvdcmd, u8Idx);
2554     if (HAL_MVD_MVDCommand( CMD_PARSER_READ_POSITION, &mvdcmd ) == TRUE)
2555     {
2556         u32Add = (((MS_U32)mvdcmd.Arg3) <<24) |
2557                  (((MS_U32)mvdcmd.Arg2) <<16) |
2558                  (((MS_U32)mvdcmd.Arg1) << 8) |
2559                  (((MS_U32)mvdcmd.Arg0));
2560     }
2561     else
2562     {
2563         MVD_DEBUGERROR( printf( "Ctrl: 0x%x fail!!\n", CMD_PARSER_READ_POSITION) );
2564     }
2565 
2566     return (u32Add*8);
2567 }
2568 
2569 //------------------------------------------------------------------------------
2570 /// Get ES write address for TS file mode.
2571 /// @return ES write address
2572 //------------------------------------------------------------------------------
HAL_MVD_GetTsFileESWritePtr(MS_U8 u8Idx)2573 MS_VIRT HAL_MVD_GetTsFileESWritePtr(MS_U8 u8Idx)
2574 {
2575     MS_VIRT u32Diff = 0;
2576     MS_VIRT u32WrPtr = 0;
2577     MVD_CmdArg mvdcmd;
2578     MVD_MEMCfg* pstMemCfg = HAL_MVD_GetMEMCfg(u8Idx);
2579     MVD_SLQTBLInfo* pstSlqTblInfo = HAL_MVD_GetSlqTblInfo(u8Idx);
2580 
2581     SETUP_CMDARG(mvdcmd);
2582     mvdcmd.Arg0 = 2;    //ES diff
2583     SET_DECNUM(mvdcmd, u8Idx);
2584     if (HAL_MVD_MVDCommand( CMD_PARSER_READ_POSITION, &mvdcmd ) == TRUE)
2585     {
2586         u32Diff = (((MS_U32)mvdcmd.Arg3) <<24) | (((MS_U32)mvdcmd.Arg2) <<16) |
2587                   (((MS_U32)mvdcmd.Arg1) << 8) | (((MS_U32)mvdcmd.Arg0));
2588     }
2589     else
2590     {
2591         MVD_DEBUGERROR( printf( "Ctrl: 0x%x fail!!\n", CMD_PARSER_READ_POSITION) );
2592     }
2593 
2594     u32WrPtr = u32Diff*8 + HAL_MVD_GetTsFileESReadPtr(u8Idx);
2595     if (u32WrPtr > pstSlqTblInfo->u32ESBuffEnd)
2596     {
2597         MVD_DEBUGINFO(printf("ES wrapping Wr=0x%lx ==> ", (unsigned long)u32WrPtr));
2598         u32WrPtr -= pstMemCfg->u32BSSize;
2599         MVD_DEBUGINFO(printf("0x%lx\n", (unsigned long)u32WrPtr));
2600     }
2601     return u32WrPtr;
2602 }
2603 
2604 //------------------------------------------------------------------------------
2605 /// Enable/Disable firmware to show the last frame.
2606 /// @return -TRUE for success; FALSE for failure.
2607 //------------------------------------------------------------------------------
HAL_MVD_EnableLastFrameShow(MS_U8 u8Idx,MS_BOOL bEnable)2608 MS_BOOL HAL_MVD_EnableLastFrameShow(MS_U8 u8Idx, MS_BOOL bEnable)
2609 {
2610     MVD_CmdArg mvdcmd;
2611     MVD_SrcMode curSrcMode = HAL_MVD_GetSrcMode(u8Idx);
2612     MVD_SLQTBLInfo* pstSlqTblInfo = HAL_MVD_GetSlqTblInfo(u8Idx);
2613     MS_VIRT* pu32FileEndPtr = &pstSlqTblInfo->u32FileEndPtr;
2614 
2615     if (E_MVD_SLQ_TBL_MODE == curSrcMode)
2616     {
2617     #if SLQ_NEW_PUSH
2618         if (pstSlqTblInfo->pSlqStatus->bSlqCtrlBit)
2619         {
2620             pstSlqTblInfo->pDrvSlqTbl->u32WrPtr = pstSlqTblInfo->pSlqStatus->u32VaildWptrAddr + SLQ_ENTRY_LEN;
2621         }
2622     #endif //
2623         //save current writePtr
2624         if (pstSlqTblInfo->pDrvSlqTbl->u32WrPtr != pstSlqTblInfo->pDrvSlqTbl->u32EndAdd)
2625         {
2626             *pu32FileEndPtr = pstSlqTblInfo->pDrvSlqTbl->u32WrPtr;
2627         }
2628         else
2629         {
2630             *pu32FileEndPtr = pstSlqTblInfo->pDrvSlqTbl->u32StAdd;
2631         }
2632         MVD_DEBUGINFO(printf("fe=%lx, rd=%lx, wr=%lx\n", (unsigned long)*pu32FileEndPtr,
2633                         (unsigned long)pstSlqTblInfo->pDrvSlqTbl->u32RdPtr, (unsigned long)pstSlqTblInfo->pDrvSlqTbl->u32WrPtr));
2634     }
2635 
2636     SETUP_CMDARG(mvdcmd);
2637     mvdcmd.Arg0 = bEnable;
2638     SET_DECNUM(mvdcmd, u8Idx);
2639     SET_CMD_RET_FALSE(CMD_ENABLE_LAST_FRAME_SHOW, &mvdcmd);
2640     return TRUE;
2641 }
2642 
2643 
HAL_MVD_SlqTblRst(MS_U8 u8Idx)2644 MS_BOOL HAL_MVD_SlqTblRst(MS_U8 u8Idx)
2645 {
2646     MVD_CmdArg mvdcmd;
2647     MVD_SLQTBLInfo* pstSlqTblInfo = HAL_MVD_GetSlqTblInfo(u8Idx);
2648 
2649     SETUP_CMDARG(mvdcmd);
2650     SET_DECNUM(mvdcmd, u8Idx);
2651     SET_CMD_RET_FALSE(CMD_VC1_HW_SLQ_RESET, &mvdcmd);
2652     pstSlqTblInfo->bEnSlqTblHkCtrl = FALSE;
2653     return TRUE;
2654 }
2655 
HAL_MVD_SeekToPTS(MS_U8 u8Idx,MS_U32 u32Pts)2656 MS_BOOL HAL_MVD_SeekToPTS(MS_U8 u8Idx, MS_U32 u32Pts)
2657 {
2658     MVD_CmdArg mvdcmd;
2659 
2660     SET_CMDARG(mvdcmd, u32Pts, u8Idx);
2661     SET_CMD_RET_FALSE(CMD_STEP_TO_PTS, &mvdcmd);
2662 
2663     if (HAL_MVD_Resume(u8Idx) == FALSE)
2664     {
2665         MVD_DEBUGERROR( printf( "Command: HAL_MVD_Resume fail!!\r\n" ) );
2666         return FALSE;
2667     }
2668     return TRUE;
2669 }
2670 
HAL_MVD_SkipToPTS(MS_U8 u8Idx,MS_U32 u32Pts)2671 MS_BOOL HAL_MVD_SkipToPTS(MS_U8 u8Idx, MS_U32 u32Pts)
2672 {
2673     MVD_CmdArg mvdcmd;
2674 
2675     SET_CMDARG(mvdcmd, u32Pts, u8Idx);
2676     SET_CMD_RET_FALSE(CMD_SKIP_TO_PTS, &mvdcmd);
2677 
2678     if (HAL_MVD_Resume(u8Idx) == FALSE)
2679     {
2680         MVD_DEBUGERROR( printf( "Command: HAL_MVD_Resume fail!!\r\n" ) );
2681         return FALSE;
2682     }
2683     return TRUE;
2684 }
2685 
HAL_MVD_TrickPlay(MS_U8 u8Idx,MVD_TrickDec trickDec,MS_U8 u8DispDuration)2686 MS_BOOL HAL_MVD_TrickPlay(MS_U8 u8Idx, MVD_TrickDec trickDec, MS_U8 u8DispDuration)
2687 {
2688     MVD_CmdArg mvdcmd;
2689     MS_U8 u8DecType;
2690 
2691     switch (trickDec)
2692     {
2693         case E_MVD_TRICK_DEC_ALL:
2694             u8DecType = 0;
2695             break;
2696         case E_MVD_TRICK_DEC_I:
2697             u8DecType = 1;
2698             break;
2699         case E_MVD_TRICK_DEC_IP:
2700             u8DecType = 2;
2701             break;
2702         default:
2703             return FALSE;
2704             break;
2705     }
2706 
2707     SETUP_CMDARG(mvdcmd);
2708     mvdcmd.Arg0 = u8DecType;
2709     mvdcmd.Arg1 = u8DispDuration;
2710     SET_DECNUM(mvdcmd, u8Idx);
2711     SET_CMD_RET_FALSE(CMD_FAST_SLOW, &mvdcmd);
2712 
2713     pMVDHalContext->stCtrlCfg[u8Idx].eTrickMode = trickDec;
2714     return TRUE;
2715 }
2716 
HAL_MVD_FlushDisplayBuf(MS_U8 u8Idx)2717 MS_BOOL HAL_MVD_FlushDisplayBuf(MS_U8 u8Idx)
2718 {
2719     #define STOP_TIMEOUT 500 //ms
2720     MS_U32 u32StartTime = 0;
2721 
2722     HAL_MVD_ResetHandShake(u8Idx, MVD_HANDSHAKE_FLUSHQUEUE_COMMAND);
2723     MVD_CmdArg mvdcmd;
2724     SETUP_CMDARG(mvdcmd);
2725     SET_DECNUM(mvdcmd, u8Idx);
2726     SET_CMD_RET_FALSE(CMD_FLUSH_DISP_QUEUE, &mvdcmd);
2727 
2728     u32StartTime = HAL_MVD_GetTime();
2729 
2730     while(!HAL_MVD_IsCmdFinished(u8Idx, MVD_HANDSHAKE_FLUSHQUEUE_COMMAND))
2731     {
2732         if ((HAL_MVD_GetTime()-u32StartTime)>STOP_TIMEOUT)
2733         {
2734             MVD_DEBUGERROR( printf( "Ctrl: 0x%x fail timeout!!\r\n", CMD_FLUSH_DISP_QUEUE ) );
2735             break;
2736         }
2737     }
2738 
2739     return TRUE;
2740 }
2741 
2742 
HAL_MVD_SetFileModeAVSync(MS_U8 u8Idx,MVD_TIMESTAMP_TYPE eSyncMode)2743 MS_BOOL HAL_MVD_SetFileModeAVSync(MS_U8 u8Idx, MVD_TIMESTAMP_TYPE eSyncMode)
2744 {
2745     MVD_CmdArg mvdcmd;
2746     MVD_CtrlCfg* pstCtrlCfg = HAL_MVD_GetCtrlCfg(u8Idx);
2747 
2748     pstCtrlCfg->eFileSyncMode = eSyncMode;
2749     MVD_DEBUGINFO(printf("%s eSyncMode=%d\n", __FUNCTION__, eSyncMode));
2750     SETUP_CMDARG(mvdcmd);
2751     switch (eSyncMode)
2752     {
2753         case E_MVD_TIMESTAMP_PTS:
2754         case E_MVD_TIMESTAMP_PTS_RVU:
2755             mvdcmd.Arg0 = FILE_PTS_MODE;
2756             break;
2757 
2758         case E_MVD_TIMESTAMP_DTS:
2759         case E_MVD_TIMESTAMP_DTS_RVU:
2760             mvdcmd.Arg0 = FILE_DTS_MODE;
2761             break;
2762         case E_MVD_TIMESTAMP_NEW_STS:
2763             mvdcmd.Arg0 = FILE_STS_MODE;
2764             break;
2765         case E_MVD_TIMESTAMP_FREERUN:
2766         default:
2767             mvdcmd.Arg0 = NONE_FILE_MODE; //Freerun
2768             break;
2769     }
2770     SET_DECNUM(mvdcmd, u8Idx);
2771     SET_CMD_RET_FALSE(CMD_ENABLE_FILE_SYNC, &mvdcmd);
2772 
2773     SETUP_CMDARG(mvdcmd);
2774     switch (eSyncMode) //for set RVU mode
2775     {
2776         case E_MVD_TIMESTAMP_PTS_RVU:
2777              mvdcmd.Arg0 = FILE_PTS_MODE;
2778              break;
2779         case E_MVD_TIMESTAMP_DTS_RVU:
2780              mvdcmd.Arg0 = FILE_DTS_MODE;
2781              break;
2782         case E_MVD_TIMESTAMP_FREERUN:
2783         default:
2784              mvdcmd.Arg0 = 0xFF;
2785              break;
2786     }
2787     SET_DECNUM(mvdcmd, u8Idx);
2788     SET_CMD_RET_FALSE(CMD_RVU_EN, &mvdcmd);
2789     return TRUE;
2790 }
2791 
2792 
2793 
2794 
2795 //------------------------------------------------------------------------------
2796 /// Set the start address of PTS table used for SLQ table link mode.
2797 /// @return -TRUE for success; FALSE for failure.
2798 //------------------------------------------------------------------------------
HAL_MVD_SetPtsTblAddr(MS_U8 u8Idx,MS_VIRT u32addr)2799 MS_BOOL HAL_MVD_SetPtsTblAddr(MS_U8 u8Idx, MS_VIRT u32addr)
2800 {
2801     MVD_CmdArg mvdcmd;
2802 
2803     MS_ASSERT((u32addr%8)==0);
2804     u32addr >>= 3;
2805 
2806     SET_CMDARG(mvdcmd, u32addr, u8Idx);
2807     SET_CMD_RET_FALSE(CMD_PTS_TBL_START, &mvdcmd);
2808     return TRUE;
2809 }
2810 
HAL_MVD_SkipToIFrame(MS_U8 u8Idx)2811 MS_BOOL HAL_MVD_SkipToIFrame(MS_U8 u8Idx)
2812 {
2813     MVD_CmdArg mvdcmd;
2814     SETUP_CMDARG(mvdcmd);
2815     SET_DECNUM(mvdcmd, u8Idx);
2816     SET_CMD_RET_FALSE(CMD_START_DEC_STRICT, &mvdcmd);
2817     return TRUE;
2818 }
2819 
2820 //Map driver FRC (Frame rate conversion) mode to firmware's.
HAL_MVD_MapFrcMode(MVD_FrcMode eFrcMode)2821 MS_U8 HAL_MVD_MapFrcMode(MVD_FrcMode eFrcMode)
2822 {
2823     MS_U8 frcMode = 0xf;
2824     switch (eFrcMode)
2825     {
2826         case E_MVD_FRC_NORMAL:
2827             frcMode = FrcNormal;
2828             break;
2829         case E_MVD_FRC_DISP_TWICE:
2830             frcMode = FrcDisplayTwice;
2831             break;
2832         case E_MVD_FRC_3_2_PULLDOWN:    //film 24 -> 50i
2833             frcMode = Frc32Pulldown;
2834             break;
2835         case E_MVD_FRC_PAL_TO_NTSC:
2836             frcMode = FrcPALtoNTSC;
2837             break;
2838         case E_MVD_FRC_NTSC_TO_PAL:
2839             frcMode = FrcNTSCtoPAL;
2840             break;
2841         case E_MVD_FRC_DISP_ONEFIELD:
2842             frcMode = FrcShowOneFiled;
2843             break;
2844         default:
2845             break;
2846     }
2847     return frcMode;
2848 }
2849 
HAL_MVD_DispCtrl(MS_U8 u8Idx,MS_BOOL bDecOrder,MS_BOOL bDropErr,MS_BOOL bDropDisp,MVD_FrcMode eFrcMode)2850 MS_BOOL HAL_MVD_DispCtrl(MS_U8 u8Idx, MS_BOOL bDecOrder, MS_BOOL bDropErr, MS_BOOL bDropDisp, MVD_FrcMode eFrcMode)
2851 {
2852     MVD_CmdArg mvdcmd;
2853     MVD_CtrlCfg* pstCtrlCfg = HAL_MVD_GetCtrlCfg(u8Idx);
2854     MS_BOOL* pbDropErrFrm = &pstCtrlCfg->bDropErrFrm;
2855 
2856     SETUP_CMDARG(mvdcmd);
2857     mvdcmd.Arg0 = (MS_U8)bDecOrder;
2858     mvdcmd.Arg1 = (MS_U8)bDropErr;
2859     mvdcmd.Arg2 = (MS_U8)bDropDisp;
2860     mvdcmd.Arg3 = HAL_MVD_MapFrcMode(eFrcMode);
2861     SET_DECNUM(mvdcmd, u8Idx);
2862     SET_CMD_RET_FALSE(CMD_DISPLAY_CTL, &mvdcmd);
2863 
2864     pstCtrlCfg->eFrcMode = eFrcMode;
2865 
2866     if (*pbDropErrFrm != bDropErr)
2867     {
2868         MVD_DEBUGINFO( printf("bDropErrFrm(%d) != bDropErr(%d)\n", *pbDropErrFrm, bDropErr));
2869         *pbDropErrFrm = bDropErr;
2870     }
2871     pstCtrlCfg->bDropDispfrm = bDropDisp;
2872 
2873     return TRUE;
2874 }
2875 
2876 
HAL_MVD_SkipData(MS_U8 u8Idx)2877 MS_BOOL HAL_MVD_SkipData(MS_U8 u8Idx)
2878 {
2879     MS_U32 u32TimeCnt = 0;
2880     MVD_CmdArg mvdcmd;
2881 
2882     HAL_MVD_ResetHandShake(u8Idx, MVD_HANDSHAKE_SKIP_DATA);
2883     SETUP_CMDARG(mvdcmd);
2884     SET_DECNUM(mvdcmd, u8Idx);
2885     SET_CMD_RET_FALSE(CMD_SKIP_DATA, &mvdcmd);
2886 
2887     u32TimeCnt = HAL_MVD_GetTime();
2888     while ((HAL_MVD_GetTime() - u32TimeCnt) < SKIP_DATA_TIMEOUT_MS)
2889     {
2890         if (HAL_MVD_IsCmdFinished(u8Idx, MVD_HANDSHAKE_SKIP_DATA))
2891         {
2892             MVD_DEBUGINFO(printf("\nSkip data finished!\n"));
2893             break;
2894         }
2895     }
2896     MVD_DEBUGINFO(printf("====> %s (t1=%u t2=%u diff=%u)\n", __FUNCTION__,
2897         u32TimeCnt, HAL_MVD_GetTime(), (HAL_MVD_GetTime() - u32TimeCnt)));
2898     if (TRUE != HAL_MVD_IsCmdFinished(u8Idx, MVD_HANDSHAKE_SKIP_DATA))
2899     {
2900         MVD_DEBUGINFO(printf("\n***** TS flush timeout *****\n\n"));
2901         return FALSE;
2902     }
2903 
2904         return TRUE;
2905     }
2906 
HAL_MVD_DispRepeatField(MS_U8 u8Idx,MS_BOOL bEnable)2907 MS_BOOL HAL_MVD_DispRepeatField(MS_U8 u8Idx, MS_BOOL bEnable)
2908 {
2909     MVD_CmdArg mvdcmd;
2910     SETUP_CMDARG(mvdcmd);
2911     mvdcmd.Arg0 = bEnable;
2912     SET_DECNUM(mvdcmd, u8Idx);
2913     SET_CMD_RET_FALSE(CMD_REPEAT_MODE, &mvdcmd);
2914     return TRUE;
2915 }
2916 
2917 //------------------------------------------------------------------------------
2918 /// Pause display.
2919 /// @return -TRUE for success; FALSE for failure
2920 //------------------------------------------------------------------------------
HAL_MVD_PauseDisp(MS_U8 u8Idx)2921 MS_BOOL HAL_MVD_PauseDisp(MS_U8 u8Idx)
2922 {
2923     MS_BOOL bRst = TRUE;
2924     MVD_CmdArg mvdcmd;
2925 
2926     SETUP_CMDARG(mvdcmd);
2927     mvdcmd.Arg0 = DISPLAY_PAUSE_ON;
2928     SET_DECNUM(mvdcmd, u8Idx);
2929     if (HAL_MVD_MVDCommand(CMD_DISPLAY_PAUSE, &mvdcmd)== FALSE)
2930     {
2931         MVD_DEBUGERROR( printf( "Command: 0x%x(ON) fail!!\r\n", CMD_DISPLAY_PAUSE) );
2932         bRst = FALSE;
2933     }
2934     return bRst;
2935 }
2936 
2937 //------------------------------------------------------------------------------
2938 /// Issue Pause command.
2939 /// @return -TRUE for success; FALSE for failure
2940 //------------------------------------------------------------------------------
HAL_MVD_Resume(MS_U8 u8Idx)2941 MS_BOOL HAL_MVD_Resume(MS_U8 u8Idx)
2942 {
2943     MS_BOOL bRst = TRUE;
2944     MVD_CmdArg mvdcmd;
2945 
2946     SETUP_CMDARG(mvdcmd);
2947     mvdcmd.Arg0 = DISPLAY_PAUSE_OFF;
2948     SET_DECNUM(mvdcmd, u8Idx);
2949     if (HAL_MVD_MVDCommand(CMD_DISPLAY_PAUSE, &mvdcmd)== FALSE)
2950     {
2951         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_DISPLAY_PAUSE) );
2952         bRst = FALSE;
2953     }
2954     return bRst;
2955 }
2956 
HAL_MVD_Play(MS_U8 u8Idx)2957 MS_BOOL HAL_MVD_Play(MS_U8 u8Idx)
2958 {
2959     MVD_CmdArg mvdcmd;
2960     SETUP_CMDARG(mvdcmd);
2961     mvdcmd.Arg0 = 1;
2962     SET_DECNUM(mvdcmd, u8Idx);
2963     SET_CMD_RET_FALSE(CMD_DIU_WIDTH_ALIGN, &mvdcmd);
2964 
2965     SETUP_CMDARG(mvdcmd);
2966     SET_DECNUM(mvdcmd, u8Idx);
2967     SET_CMD_RET_FALSE(CMD_PLAY, &mvdcmd);
2968 
2969     if (HAL_MVD_Resume(u8Idx) == FALSE)
2970     {
2971         MVD_DEBUGERROR( printf( "Command: HAL_MVD_Resume fail!!\r\n" ) );
2972         return FALSE;
2973     }
2974 
2975     MVD_CtrlCfg* pCtrlCfg = HAL_MVD_GetCtrlCfg(u8Idx);
2976     pCtrlCfg->bDecodeIFrame = FALSE;
2977 
2978     return TRUE;
2979 }
2980 
2981 //------------------------------------------------------------------------------
2982 /// Set base address for ScalerInfo structure to f/w
2983 /// @param -u32addr \b IN : start address (units in byte)
2984 //------------------------------------------------------------------------------
HAL_MVD_SetScalerInfoAddr(MS_U8 u8Idx,MS_VIRT u32addr,MS_U8 u8Arg4)2985 MS_BOOL HAL_MVD_SetScalerInfoAddr(MS_U8 u8Idx, MS_VIRT u32addr,MS_U8 u8Arg4)
2986 {
2987     MVD_CmdArg mvdcmd;
2988 
2989     MS_ASSERT((u32addr%8)==0);
2990     u32addr >>= 3;
2991 
2992     SET_CMDARG(mvdcmd, u32addr, u8Idx);
2993     mvdcmd.Arg4 = u8Arg4;
2994     SET_CMD_RET_FALSE(CMD_SCALER_INFO_BASE, &mvdcmd);
2995     return TRUE;
2996 }
2997 
2998 //------------------------------------------------------------------------------
2999 /// Set the dynamic scale base address
3000 /// @return -TRUE for success; FALSE for failure.
3001 //------------------------------------------------------------------------------
HAL_MVD_SetDynamicScaleAddr(MS_U8 u8Idx,MS_VIRT u32addr)3002 MS_BOOL HAL_MVD_SetDynamicScaleAddr(MS_U8 u8Idx, MS_VIRT u32addr)
3003 {
3004     MVD_CmdArg mvdcmd;
3005 
3006     MS_ASSERT((u32addr%8)==0);
3007     u32addr >>= 3;
3008 
3009     SET_CMDARG(mvdcmd, u32addr, u8Idx);
3010     SET_CMD_RET_FALSE(CMD_DYNAMIC_SCALE_BASE, &mvdcmd);
3011     return TRUE;
3012 }
3013 
3014 //------------------------------------------------------------------------------
3015 /// Set virtual box width/height to F/W.
3016 /// F/W will use the same w/h as scaler to calculate scaling factor.
3017 /// @return -TRUE for success; FALSE for failure.
3018 //------------------------------------------------------------------------------
HAL_MVD_SetVirtualBox(MS_U8 u8Idx,MS_U16 u16Width,MS_U16 u16Height)3019 MS_BOOL HAL_MVD_SetVirtualBox(MS_U8 u8Idx, MS_U16 u16Width, MS_U16 u16Height)
3020 {
3021     MVD_CmdArg mvdcmd;
3022 
3023     SETUP_CMDARG(mvdcmd);
3024     mvdcmd.Arg0 = L_WORD(u16Width);
3025     mvdcmd.Arg1 = H_WORD(u16Width);
3026     mvdcmd.Arg2 = L_WORD(u16Height);
3027     mvdcmd.Arg3 = H_WORD(u16Height);
3028     SET_DECNUM(mvdcmd, u8Idx);
3029     SET_CMD_RET_FALSE(CMD_DS_VIRTUAL_BOX, &mvdcmd);
3030     return TRUE;
3031 }
3032 
3033 //------------------------------------------------------------------------------
3034 /// Enable VC1 dynamic scaling
3035 /// @return -TRUE for success; FALSE for failure.
3036 //------------------------------------------------------------------------------
HAL_MVD_EnableDynamicScale(MS_U8 u8Idx,MS_U8 u8NewDS)3037 MS_BOOL HAL_MVD_EnableDynamicScale(MS_U8 u8Idx,MS_U8 u8NewDS)
3038 {
3039     MVD_CmdArg mvdcmd;
3040 
3041     SETUP_CMDARG(mvdcmd);
3042     mvdcmd.Arg0 = TRUE;
3043     mvdcmd.Arg1 = u8NewDS;
3044     SET_DECNUM(mvdcmd, u8Idx);
3045     SET_CMD_RET_FALSE(CMD_ENABLE_DYNAMIC_SCALE, &mvdcmd);
3046     return TRUE;
3047 }
3048 
3049 
3050 //------------------------------------------------------------------------------
3051 /// Set blue screen
3052 /// @return -TRUE for success; FALSE for failure.
3053 //------------------------------------------------------------------------------
HAL_MVD_SetBlueScreen(MS_U8 u8Idx,MS_BOOL bEn)3054 MS_BOOL HAL_MVD_SetBlueScreen(MS_U8 u8Idx, MS_BOOL bEn)
3055 {
3056     MVD_CmdArg mvdcmd;
3057 
3058     SETUP_CMDARG(mvdcmd);
3059     mvdcmd.Arg0 = bEn; //1 -> show MVOP frame color.  0 -> normal case.
3060     SET_DECNUM(mvdcmd, u8Idx);
3061     SET_CMD_RET_FALSE(CMD_FORCE_BLUE_SCREEN, &mvdcmd);
3062     return TRUE;
3063 }
3064 
3065 
HAL_MVD_SetFreezeDisp(MS_U8 u8Idx,MS_BOOL bEn)3066 MS_BOOL HAL_MVD_SetFreezeDisp(MS_U8 u8Idx, MS_BOOL bEn)
3067 {
3068     MVD_CmdArg mvdcmd;
3069 
3070     SETUP_CMDARG(mvdcmd);
3071     mvdcmd.Arg0 = bEn;
3072     SET_DECNUM(mvdcmd, u8Idx);
3073     SET_CMD_RET_FALSE(CMD_FREEZE_DISP, &mvdcmd);
3074     return TRUE;
3075 }
3076 
3077 
3078 //------------------------------------------------------------------------------
3079 /// Set base address for DecFrameInfo structure to f/w
3080 /// @param -u32addr \b IN : start address (units in byte)
3081 //------------------------------------------------------------------------------
HAL_MVD_SetDecFrmInfoAddr(MS_U8 u8Idx,MS_VIRT u32addr)3082 void HAL_MVD_SetDecFrmInfoAddr(MS_U8 u8Idx, MS_VIRT u32addr)
3083 {
3084     MVD_CmdArg mvdcmd;
3085 
3086     MS_ASSERT((u32addr%8)==0);
3087     u32addr >>= 3;
3088 
3089     SET_CMDARG(mvdcmd, u32addr, u8Idx);
3090     if (HAL_MVD_MVDCommand( CMD_DEC_FRAME_INFO_BUF, &mvdcmd ) == FALSE)
3091     {
3092         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_DEC_FRAME_INFO_BUF ) );
3093     }
3094     return;
3095 }
3096 
3097 //Check if the task has interrupt
HAL_MVD_GetHasInt(MS_U8 u8Idx)3098 MS_BOOL HAL_MVD_GetHasInt(MS_U8 u8Idx)
3099 {
3100     MS_BOOL bHasInt = FALSE;
3101     MS_U32 u32IntCnt = 0;
3102     MVD_CtrlCfg* pCtrlCfg = HAL_MVD_GetCtrlCfg(u8Idx);
3103 
3104     u32IntCnt = MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_INT_CNT, sizeof(MS_U32));
3105     if (u32IntCnt != pCtrlCfg->u32IntCnt)
3106     {
3107         MVD_DEBUGINFO(printf("%s %d--> %d\n", __FUNCTION__, pCtrlCfg->u32IntCnt, u32IntCnt));
3108         bHasInt = TRUE;
3109         pCtrlCfg->u32IntCnt = u32IntCnt;
3110     }
3111     return bHasInt;
3112 }
3113 
3114 #ifdef VDEC3
HAL_MVD_GetIntState(MS_U8 u8Idx)3115 MS_U32 HAL_MVD_GetIntState(MS_U8 u8Idx)
3116 {
3117     MS_U32 u32IntStat;
3118 
3119     u32IntStat = MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_INT_STAT, sizeof(MS_U32));
3120 
3121     MVD_SetFWBuffData(u8Idx,FW_BUFF_FRMINFO,OFFSET_INT_STAT,sizeof(MS_U32),0);
3122 
3123     return u32IntStat;
3124 }
3125 #else
HAL_MVD_GetIntState(MS_U8 u8Idx)3126 MS_U32 HAL_MVD_GetIntState(MS_U8 u8Idx)
3127 {
3128     MS_U32 u32IntStat = 0;
3129     MVD_CmdArg mvdcmd;
3130 
3131     SETUP_CMDARG(mvdcmd);
3132     SET_DECNUM(mvdcmd, u8Idx);
3133     if (HAL_MVD_MVDCommand( CMD_GET_INT_STAT, &mvdcmd ) == TRUE)
3134     {
3135         u32IntStat = (((MS_U32)mvdcmd.Arg4) << 16) |
3136                      (((MS_U32)mvdcmd.Arg3) << 8) |
3137                      (((MS_U32)mvdcmd.Arg2));
3138     }
3139     else
3140     {
3141         if (FALSE == pMVDHalContext->bStopped[u8Idx])
3142         {
3143             MVD_DEBUGERROR(printf("Ctrl: 0x%x fail!!\n", CMD_GET_INT_STAT));
3144         }
3145         else
3146         {
3147             MVD_DEBUGINFO(printf("Cmd 0x%x normal timeout.\n", CMD_GET_INT_STAT));
3148         }
3149     }
3150 
3151     return u32IntStat;
3152 }
3153 
3154 #endif
3155 
3156 ///// functions to check interrupt status /////
MVD_IntHasUsrDataDisp(MS_U32 u32IntStat)3157 MS_BOOL MVD_IntHasUsrDataDisp(MS_U32 u32IntStat)
3158 {
3159     return (((u32IntStat&INT_USER_DATA_DISP)==INT_USER_DATA_DISP) ? TRUE : FALSE);
3160 }
3161 
MVD_IntHasUsrData(MS_U32 u32IntStat)3162 MS_BOOL MVD_IntHasUsrData(MS_U32 u32IntStat)
3163 {
3164     return (((u32IntStat&INT_USER_DATA)==INT_USER_DATA) ? TRUE : FALSE);
3165 }
3166 
MVD_IntIsDispRdy(MS_U32 u32IntStat)3167 MS_BOOL MVD_IntIsDispRdy(MS_U32 u32IntStat)
3168 {
3169     return (((u32IntStat&INT_DISP_RDY)==INT_DISP_RDY) ? TRUE : FALSE);
3170 }
3171 
MVD_IntHasSeqHdr(MS_U32 u32IntStat)3172 MS_BOOL MVD_IntHasSeqHdr(MS_U32 u32IntStat)
3173 {
3174     return (((u32IntStat&INT_SEQ_FOUND)==INT_SEQ_FOUND) ? TRUE : FALSE);
3175 }
3176 
MVD_IntHasESDataInvalid(MS_U32 u32IntStat)3177 MS_BOOL MVD_IntHasESDataInvalid(MS_U32 u32IntStat)
3178 {
3179     return (((u32IntStat&INT_VES_VALID)==INT_VES_VALID) ? TRUE : FALSE);
3180 }
3181 
MVD_IntHasDecodeErr(MS_U32 u32IntStat)3182 MS_BOOL MVD_IntHasDecodeErr(MS_U32 u32IntStat)
3183 {
3184     return (((u32IntStat&INT_DEC_ERR)==INT_DEC_ERR) ? TRUE : FALSE);
3185 }
3186 //INT_FIRST_FRAME means "1st frame be push to display queue & ready for display"
3187 //So, (1) in IPB or IP stream, that's I-frame
3188 //    (2) in PB only stream, that's first P-frame
MVD_IntHas1stFrame(MS_U32 u32IntStat)3189 MS_BOOL MVD_IntHas1stFrame(MS_U32 u32IntStat)
3190 {
3191     return (((u32IntStat&INT_FIRST_FRAME)==INT_FIRST_FRAME) ? TRUE : FALSE);
3192 }
3193 
3194 //INT_XC_LOW_DELAY
MVD_IntHasXcLowDelay(MS_U32 u32IntStat)3195 MS_BOOL MVD_IntHasXcLowDelay(MS_U32 u32IntStat)
3196 {
3197     //printf("MVD_IntHasXcLowDelay=%x \n ", u32IntStat);
3198     return (((u32IntStat&INT_XC_LOW_DELAY)==INT_XC_LOW_DELAY) ? TRUE : FALSE);
3199 }
3200 
MVD_IntHasDecodeIframe(MS_U32 u32IntStat)3201 MS_BOOL MVD_IntHasDecodeIframe(MS_U32 u32IntStat)
3202 {
3203     return (((u32IntStat&INT_DEC_I)==INT_DEC_I) ? TRUE : FALSE);
3204 }
3205 
3206 
MVD_IntVSyncInt(MS_U32 u32IntStat)3207 MS_BOOL MVD_IntVSyncInt(MS_U32 u32IntStat)
3208 {
3209     return (((u32IntStat&INT_DISP_VSYNC)==INT_DISP_VSYNC) ? TRUE : FALSE);
3210 }
3211 
MVD_IntDecOneFrmInt(MS_U32 u32IntStat)3212 MS_BOOL MVD_IntDecOneFrmInt(MS_U32 u32IntStat)
3213 {
3214     return (((u32IntStat&INT_DEC_DONE)==INT_DEC_DONE) ? TRUE : FALSE);
3215 }
3216 
3217 
MVD_GetSyncStat(MS_U8 u8Idx,MS_U8 u8ArgIdx)3218 static MS_U8 MVD_GetSyncStat(MS_U8 u8Idx, MS_U8 u8ArgIdx)
3219 {
3220     MS_U8 u8Val = 0xFF;
3221     MVD_CmdArg mvdcmd;
3222     SETUP_CMDARG(mvdcmd);
3223     SET_DECNUM(mvdcmd, u8Idx);
3224     if (HAL_MVD_MVDCommand( CMD_GET_SYNC_STAT, &mvdcmd ) == FALSE)
3225     {
3226         MVD_DEBUGERROR(printf("Ctrl: 0x%x fail!!\r\n", CMD_GET_SYNC_STAT));
3227         return 0xFF;
3228     }
3229     MVD_DEBUGINFO(printf("Sync On/Off %x, Done %x, Stat %x, diff=%d\n",
3230                   mvdcmd.Arg0, mvdcmd.Arg1, mvdcmd.Arg2, (int)HAL_MVD_GetPtsStcDiff(u8Idx)));
3231 
3232     if (0==u8ArgIdx)
3233     {
3234         u8Val = mvdcmd.Arg0; //On/Off
3235     }
3236     else if (1==u8ArgIdx)
3237     {
3238         u8Val = mvdcmd.Arg1; //Done
3239     }
3240     else if (2==u8ArgIdx)
3241     {
3242         u8Val = mvdcmd.Arg2; //Stat
3243     }
3244     return u8Val;
3245 }
3246 
3247 //------------------------------------------------------------------------------
3248 /// Report avsync status
3249 /// avsync_status=avsync_done|(avsync_skip_picture<<1)|(avsync_repeat_picture<<2),
3250 /// 0 for free run
3251 //------------------------------------------------------------------------------
HAL_MVD_GetAVSyncStatus(MS_U8 u8Idx)3252 MS_U8 HAL_MVD_GetAVSyncStatus(MS_U8 u8Idx)
3253 {
3254     return MVD_GetSyncStat(u8Idx, 2);
3255 }
3256 
HAL_MVD_SlqTblLoadWrPtr(MS_U8 u8Idx,MS_VIRT u32WrPtr)3257 void HAL_MVD_SlqTblLoadWrPtr(MS_U8 u8Idx, MS_VIRT u32WrPtr)
3258 {
3259 #if 1
3260     MVD_SLQTBLInfo* pstSlqTblInfo = HAL_MVD_GetSlqTblInfo(u8Idx);
3261     MVD_CmdArg mvdcmd;
3262     MS_U16 u16Val = 0;
3263 
3264     if (FALSE == pstSlqTblInfo->bEnSlqTblHkCtrl)
3265     {
3266         SETUP_CMDARG(mvdcmd);
3267         mvdcmd.Arg0 = 0x10;
3268         mvdcmd.Arg1 = 0x01;
3269         SET_DECNUM(mvdcmd, u8Idx);
3270         if (HAL_MVD_MVDCommand( CMD_RD_IO, &mvdcmd ) == FALSE)
3271         {
3272             MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_RD_IO ) );
3273             return;
3274         }
3275         u16Val = (((MS_U32)mvdcmd.Arg2)) | ((MS_U32)mvdcmd.Arg3 << 8);
3276 
3277         SETUP_CMDARG(mvdcmd);
3278         mvdcmd.Arg0 = 0x10;
3279         mvdcmd.Arg1 = 0x01;
3280         mvdcmd.Arg2 = u16Val & 0xff;
3281         mvdcmd.Arg3 = ((u16Val>>8 ) & 0xff) | 0x80;
3282         SET_DECNUM(mvdcmd, u8Idx);
3283         if (HAL_MVD_MVDCommand(CMD_WR_IO, &mvdcmd) == FALSE)
3284         {
3285             MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_WR_IO ) );
3286             return;
3287         }
3288 
3289         pstSlqTblInfo->bEnSlqTblHkCtrl = TRUE;
3290         //printf("@@@ OPEN HK.SLQ.CTRL!\n");
3291     }
3292 #endif
3293 #if defined(MSOS_TYPE_ECOS)
3294         if(MsOS_In_Interrupt() != TRUE)
3295         {
3296             OSAL_MVD_IntDisable();
3297             OSAL_MVD_LockHwMutex();
3298         }
3299 #else
3300         OSAL_MVD_LockHwMutex();
3301 #endif
3302 
3303     HAL_MVD_RegWriteByte(MVD_SLQ_WADR0, (u32WrPtr & 0xff));
3304     HAL_MVD_RegWriteByte(MVD_SLQ_WADR1, ((u32WrPtr>>8 ) & 0xff));
3305     HAL_MVD_RegWriteByte(MVD_SLQ_WADR2, ((u32WrPtr>>16) & 0xff));
3306     HAL_MVD_RegWriteByte(MVD_SLQ_WADR3, ((u32WrPtr>>24) & 0x01));
3307     HAL_MVD_RegWriteBit(MVD_SLQCTRL, 1, MVD_SLQCTRL_WADR_RELOAD);
3308     HAL_MVD_RegWriteBit(MVD_SLQCTRL, 0, MVD_SLQCTRL_WADR_RELOAD);
3309 
3310 #if defined(MSOS_TYPE_ECOS)
3311         if(MsOS_In_Interrupt() != TRUE)
3312         {
3313             OSAL_MVD_UnlockHwMutex();
3314             OSAL_MVD_IntEnable();
3315         }
3316 #else
3317         OSAL_MVD_UnlockHwMutex();
3318 #endif
3319 }
3320 
HAL_MVD_SlqTblProbe(MVD_HKSLQ_CMD eCmd)3321 static MS_VIRT HAL_MVD_SlqTblProbe(MVD_HKSLQ_CMD eCmd)
3322 {
3323     MS_VIRT u32Cadr = 0;
3324 #if defined(MSOS_TYPE_ECOS)
3325         if(MsOS_In_Interrupt() != TRUE)
3326         {
3327             OSAL_MVD_IntDisable();
3328             OSAL_MVD_LockHwMutex();
3329         }
3330 #else
3331         OSAL_MVD_LockHwMutex();
3332 #endif
3333 
3334     switch (eCmd)
3335     {
3336         case MVD_HKSLQ_GET_READPTR:
3337             HAL_MVD_RegWriteBit(MVD_SLQCTRL, 1, MVD_SLQCTRL_RADR_PROBE);
3338             HAL_MVD_RegWriteBit(MVD_SLQCTRL, 0, MVD_SLQCTRL_RADR_PROBE);
3339             break;
3340         case MVD_HKSLQ_GET_WRITEPTR:
3341             HAL_MVD_RegWriteBit(MVD_SLQCTRL, 1, MVD_SLQCTRL_WADR_PROBE);
3342             HAL_MVD_RegWriteBit(MVD_SLQCTRL, 0, MVD_SLQCTRL_WADR_PROBE);
3343             break;
3344         default:
3345             break;
3346     }
3347     u32Cadr = HAL_MVD_RegReadByte(MVD_SLQ_CADR0) |
3348              (HAL_MVD_RegReadByte(MVD_SLQ_CADR1) << 8) |
3349              (HAL_MVD_RegReadByte(MVD_SLQ_CADR2) <<16) |
3350              ((HAL_MVD_RegReadByte(MVD_SLQ_CADR3) & 0x01) <<24);
3351 
3352 #if defined(MSOS_TYPE_ECOS)
3353         if(MsOS_In_Interrupt() != TRUE)
3354         {
3355             OSAL_MVD_UnlockHwMutex();
3356             OSAL_MVD_IntEnable();
3357         }
3358 #else
3359         OSAL_MVD_UnlockHwMutex();
3360 #endif
3361     return u32Cadr;
3362 }
3363 
HAL_MVD_SlqTblProbeWrPtr(MS_U8 u8Idx)3364 MS_VIRT HAL_MVD_SlqTblProbeWrPtr(MS_U8 u8Idx)
3365 {
3366     return HAL_MVD_SlqTblProbe(MVD_HKSLQ_GET_WRITEPTR);
3367 }
3368 
HAL_MVD_SlqTblProbeRdPtr(MS_U8 u8Idx)3369 MS_VIRT HAL_MVD_SlqTblProbeRdPtr(MS_U8 u8Idx)
3370 {
3371     return HAL_MVD_SlqTblProbe(MVD_HKSLQ_GET_READPTR);
3372 }
3373 
3374 //------------------------------------------------------------------------------
3375 /// Set firmware as MStreamer mode
3376 /// @return -TRUE for success; FALSE for failure.
3377 //------------------------------------------------------------------------------
HAL_MVD_SetMStreamerMode(MS_U8 u8Idx,MS_U8 u8Mode)3378 MS_BOOL HAL_MVD_SetMStreamerMode(MS_U8 u8Idx, MS_U8 u8Mode)
3379 {
3380     MVD_CmdArg mvdcmd;
3381     MVD_CtrlCfg* pstCtrlCfg = HAL_MVD_GetCtrlCfg(u8Idx);
3382 
3383     SETUP_CMDARG(mvdcmd);
3384     mvdcmd.Arg0 = u8Mode; //1: enable, 0:disable MStreamer mode.
3385     SET_DECNUM(mvdcmd, u8Idx);
3386     SET_CMD_RET_FALSE(CMD_SET_MST_MODE, &mvdcmd);
3387 
3388     pstCtrlCfg->u8MstMode = u8Mode;
3389     return TRUE;
3390 }
3391 
3392 //------------------------------------------------------------------------------
3393 /// Set firmware as MStreamer mode (IP clip mode)
3394 /// @return -TRUE for success; FALSE for failure.
3395 //------------------------------------------------------------------------------
HAL_MVD_ShowDecodeOrder(MS_U8 u8Idx,MS_U8 u8Mode)3396 MS_BOOL HAL_MVD_ShowDecodeOrder(MS_U8 u8Idx, MS_U8 u8Mode)
3397 {
3398     MVD_CmdArg mvdcmd;
3399     MVD_CtrlCfg* pstCtrlCfg = HAL_MVD_GetCtrlCfg(u8Idx);
3400 
3401     SETUP_CMDARG(mvdcmd);
3402     mvdcmd.Arg0 = pstCtrlCfg->u8MstMode;
3403     mvdcmd.Arg1 = u8Mode;//a u8Mode; //1: clip mode, 0:normal mode.
3404     SET_DECNUM(mvdcmd, u8Idx);
3405     SET_CMD_RET_FALSE(CMD_SET_MST_MODE, &mvdcmd);
3406     return TRUE;
3407 
3408 }
3409 
HAL_MVD_IsMStreamerMode(MS_U8 u8Idx)3410 MS_BOOL HAL_MVD_IsMStreamerMode(MS_U8 u8Idx)
3411 {
3412     MVD_CtrlCfg* pstCtrlCfg = HAL_MVD_GetCtrlCfg(u8Idx);
3413     return (MST_MODE_TRUE == pstCtrlCfg->u8MstMode);
3414 }
3415 
HAL_MVD_FrameOpt(MS_U8 u8Idx,MS_U8 u8FrmIdx,MVD_FrmOpt eOpt)3416 MS_BOOL HAL_MVD_FrameOpt(MS_U8 u8Idx, MS_U8 u8FrmIdx, MVD_FrmOpt eOpt)
3417 {
3418     MVD_CmdArg mvdcmd;
3419 
3420     SETUP_CMDARG(mvdcmd);
3421     mvdcmd.Arg0 = u8FrmIdx;
3422     mvdcmd.Arg1 = eOpt; // 0 = Flip,  1 = Release.
3423     MVD_DEBUGINFO(printf("FLIP_RELEASE_FRAME: idx=0x%x, opt=0x%x\n", u8FrmIdx, eOpt));
3424     SET_DECNUM(mvdcmd, u8Idx);
3425     SET_CMD_RET_FALSE(CMD_FLIP_RELEASE_FRAME, &mvdcmd);
3426 
3427     return TRUE;
3428 }
3429 
3430 //------------------------------------------------------------------------------
3431 /// Set firmware dynamic allocate FrameBuffer, now support MCU mode only
3432 /// @return -TRUE for success; FALSE for failure.
3433 //------------------------------------------------------------------------------
_MVD_SetDynamicAllocateFB(MS_U8 u8Idx,MS_BOOL bEnable)3434 MS_BOOL _MVD_SetDynamicAllocateFB(MS_U8 u8Idx,MS_BOOL bEnable)
3435 {
3436     MVD_CmdArg mvdcmd;
3437 
3438     SETUP_CMDARG(mvdcmd);
3439     mvdcmd.Arg0 = 1-bEnable; //Arg0 :  0(enable) , 1(disable)
3440     SET_DECNUM(mvdcmd, u8Idx);
3441     if (HAL_MVD_MVDCommand( CMD_FIXED_FRAME_BUFFER, &mvdcmd ) == FALSE)
3442     {
3443         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_FIXED_FRAME_BUFFER ) );
3444         return FALSE;
3445     }
3446 
3447     return TRUE;
3448 }
3449 
3450 //------------------------------------------------------------------------------
3451 /// Set firmware as MCU mode
3452 /// @return -TRUE for success; FALSE for failure.
3453 //------------------------------------------------------------------------------
HAL_MVD_SetMcuMode(MS_U8 u8Idx,MS_U8 u8Mode)3454 MS_BOOL HAL_MVD_SetMcuMode(MS_U8 u8Idx, MS_U8 u8Mode)
3455 {
3456     MVD_CmdArg mvdcmd;
3457     MVD_CtrlCfg* pstCtrlCfg = HAL_MVD_GetCtrlCfg(u8Idx);
3458 
3459     SETUP_CMDARG(mvdcmd);
3460     mvdcmd.Arg0 = u8Mode; //1: enable, 0:disable MCU
3461     SET_DECNUM(mvdcmd, u8Idx);
3462     SET_CMD_RET_FALSE(CMD_SET_MCU_MODE, &mvdcmd);
3463 
3464     pstCtrlCfg->u8McuMode = u8Mode;
3465 
3466     return TRUE;
3467 }
3468 
HAL_MVD_IsMcuMode(MS_U8 u8Idx)3469 MS_BOOL HAL_MVD_IsMcuMode(MS_U8 u8Idx)
3470 {
3471     MVD_CtrlCfg* pstCtrlCfg = HAL_MVD_GetCtrlCfg(u8Idx);
3472     return (TRUE == pstCtrlCfg->u8McuMode);
3473 }
3474 
3475 //------------------------------------------------------------------------------
3476 /// Set firmware as ForceInterlace mode
3477 /// @return -TRUE for success; FALSE for failure.
3478 //------------------------------------------------------------------------------
HAL_MVD_ForceInterlaceMode(MS_U8 u8Idx,MS_U8 u8Mode)3479 MS_BOOL HAL_MVD_ForceInterlaceMode(MS_U8 u8Idx, MS_U8 u8Mode)
3480 {
3481     MVD_CmdArg mvdcmd;
3482 
3483     SETUP_CMDARG(mvdcmd);
3484     mvdcmd.Arg0 = u8Mode; //1: enable, 0:disable
3485     mvdcmd.Arg1 = 0;
3486     SET_DECNUM(mvdcmd, u8Idx);
3487     SET_CMD_RET_FALSE(CMD_VC1_FORCE_INTLACE_DISP, &mvdcmd);
3488 
3489     return TRUE;
3490 }
3491 
3492 //------------------------------------------------------------------------------
3493 /// Set firmware as Progressive mode
3494 /// @return -TRUE for success; FALSE for failure.
3495 //------------------------------------------------------------------------------
HAL_MVD_ForceProgressiveMode(MS_U8 u8Idx,MS_U8 u8Mode)3496 MS_BOOL HAL_MVD_ForceProgressiveMode(MS_U8 u8Idx, MS_U8 u8Mode)
3497 {
3498     MVD_CmdArg mvdcmd;
3499 
3500     SETUP_CMDARG(mvdcmd);
3501     mvdcmd.Arg0 = 0;
3502     mvdcmd.Arg1 = u8Mode; //1: enable, 0:disable
3503     SET_DECNUM(mvdcmd, u8Idx);
3504     SET_CMD_RET_FALSE(CMD_VC1_FORCE_INTLACE_DISP, &mvdcmd);
3505 
3506     return TRUE;
3507 }
3508 
3509 //------------------------------------------------------------------------------
3510 /// Inform firwmare that PTS is updated.
3511 /// @return -TRUE for success; FALSE for failure.
3512 //------------------------------------------------------------------------------
HAL_MVD_UpdatePts(MS_U8 u8Idx)3513 MS_BOOL HAL_MVD_UpdatePts(MS_U8 u8Idx)
3514 {
3515     MVD_CmdArg mvdcmd;
3516 
3517     SETUP_CMDARG(mvdcmd);
3518     SET_DECNUM(mvdcmd, u8Idx);
3519     SET_CMD_RET_FALSE(CMD_SEND_UNI_PTS, &mvdcmd);
3520 
3521     return TRUE;
3522 }
3523 
3524 
HAL_MVD_FrameCapture(MS_U8 u8Idx,MS_U8 u8FrmIdx,MS_BOOL bEnable)3525 MS_BOOL HAL_MVD_FrameCapture(MS_U8 u8Idx, MS_U8 u8FrmIdx, MS_BOOL bEnable)
3526 {
3527     MVD_CmdArg mvdcmd;
3528 
3529     SETUP_CMDARG(mvdcmd);
3530     mvdcmd.Arg0 = bEnable;  //0 or 1 to enable/disable the freeze function
3531     mvdcmd.Arg2 = u8FrmIdx; //specify the freezed frame index
3532     MVD_DEBUGINFO(printf("CAPTURE_FRAME: idx=0x%x, enable=0x%x\n", u8FrmIdx, bEnable));
3533     SET_DECNUM(mvdcmd, u8Idx);
3534     SET_CMD_RET_FALSE(CMD_ENABLE_FREEZE_PIC, &mvdcmd);
3535 
3536     return TRUE;
3537 }
3538 
3539 //------------------------------------------------------------------------------
3540 /// Set HW buffers' start address to MVD FW
3541 /// Return (the end address - 1)
3542 /// @param -u32Addr \b IN : start address (MIU offset)
3543 //------------------------------------------------------------------------------
HAL_MVD_SetHWBuffer(MS_U8 u8Idx,MS_VIRT u32Add)3544 MS_VIRT HAL_MVD_SetHWBuffer(MS_U8 u8Idx, MS_VIRT u32Add)
3545 {
3546     MS_VIRT tmpAdr;
3547 
3548     MVD_DEBUGINFO(printf("====> %s u32Add = 0x%lx\n", __FUNCTION__, (unsigned long)u32Add));
3549     tmpAdr = (MemAlign(u32Add, MVD_FW_IAP_BUF_ALIGN));
3550     MVD_DEBUGINFO(printf("set MVD3_FW_IAP_BUF_ADR =%lx\n",(unsigned long)tmpAdr));
3551     HAL_MVD_SetIAPBufferAddr(u8Idx, tmpAdr);
3552     tmpAdr += MVD_FW_IAP_BUF_LEN;
3553 
3554     tmpAdr = (MemAlign(tmpAdr, MVD_FW_DP_BUF_ALIGN));
3555     MVD_DEBUGINFO(printf("set MVD3_FW_DP_BUF_ADR=%lx\n",(unsigned long)tmpAdr));
3556     HAL_MVD_SetDPBufferAddr(u8Idx, tmpAdr);
3557     tmpAdr += MVD_FW_DP_BUF_LEN;
3558 
3559     tmpAdr = (MemAlign(tmpAdr, MVD_FW_MV_BUF_ALIGN));
3560     MVD_DEBUGINFO(printf("set MVD3_FW_MV_BUF_ADR=%lx\n",(unsigned long)tmpAdr));
3561     HAL_MVD_SetMVBufferAddr(u8Idx, tmpAdr);
3562     tmpAdr += MVD_FW_MV_BUF_LEN;
3563     MVD_DEBUGINFO(printf("====> %s End of HW buffers = 0x%lx\n", __FUNCTION__, (unsigned long)tmpAdr));
3564 
3565     return tmpAdr;
3566 }
3567 
3568 //------------------------------------------------------------------------------
3569 /// Set the number of framebuffer
3570 /// @param -u8FrmNum \b IN : the number of framebuffer
3571 //------------------------------------------------------------------------------
HAL_MVD_SetFrameBuffNum(MS_U8 u8Idx,MS_U8 u8FrmNum,MS_U32 u32FBUsedSize)3572 void HAL_MVD_SetFrameBuffNum(MS_U8 u8Idx, MS_U8 u8FrmNum,MS_U32 u32FBUsedSize)
3573 {
3574 #define MVD_FBNUM_DEFAULT 4
3575 #define MVD_FBNUM_MIN     MVD_FBNUM_DEFAULT
3576 
3577     MVD_CmdArg mvdcmd;
3578 
3579     MVD_DEBUGINFO(printf("%s u8FrmNum = %d\n", __FUNCTION__, u8FrmNum));
3580     if (u8FrmNum < MVD_FBNUM_MIN)
3581     {
3582         MVD_DEBUGINFO(printf("%s set u8FrmNum as %d instead of %d!\n",
3583             __FUNCTION__, MVD_FBNUM_MIN, u8FrmNum));
3584         u8FrmNum = MVD_FBNUM_MIN;
3585     }
3586     SETUP_CMDARG(mvdcmd);
3587     mvdcmd.Arg0 = u8FrmNum;
3588     mvdcmd.Arg1 = u32FBUsedSize&0xff;
3589     mvdcmd.Arg2 = (u32FBUsedSize>>8)&0xff;
3590     mvdcmd.Arg3 = (u32FBUsedSize>>16)&0xff;
3591     mvdcmd.Arg4 = (u32FBUsedSize>>24)&0xff;
3592     SET_DECNUM(mvdcmd, u8Idx);
3593     if (HAL_MVD_MVDCommand( CMD_FB_NUM, &mvdcmd ) == FALSE)
3594     {
3595         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_FB_NUM ) );
3596         return;
3597     }
3598     return;
3599 }
3600 
MVD_WriteFWBuffData(MS_U8 u8Idx,FW_BUFF_TYPE eBuffType,MS_U16 u16Offset,MS_U8 u8Size,MS_U32 u32Val)3601 static MS_BOOL MVD_WriteFWBuffData(MS_U8 u8Idx, FW_BUFF_TYPE eBuffType, MS_U16 u16Offset, MS_U8 u8Size, MS_U32 u32Val)
3602 {
3603     MS_BOOL bRet = FALSE;
3604     MS_VIRT u32BufStart = NULL;
3605     switch (eBuffType)
3606     {
3607         case FW_BUFF_VOLINFO:    u32BufStart = GET_VOL_BUFFADD(u8Idx);        break;
3608         case FW_BUFF_FRMINFO:    u32BufStart = GET_FRMINFO_BUFFADD(u8Idx);    break;
3609         case FW_BUFF_HDR:        u32BufStart = GET_HDR_BUFFADD(u8Idx);        break;
3610         case FW_BUFF_USRDATA:    u32BufStart = GET_USRDATA_BUFFADD(u8Idx);    break;
3611         case FW_BUFF_FWSLQTAB:   u32BufStart = GET_SLQ_BUFFADD(u8Idx);        break;
3612         case FW_BUFF_PTSTBL:     u32BufStart = GET_PTSTBL_BUFFADD(u8Idx);     break;
3613         case FW_BUFF_DS:         u32BufStart = GET_DS_BUFFADD(u8Idx);         break;
3614         case FW_BUFF_XCINFO:     u32BufStart = GET_XCINFO_BUFFADD(u8Idx);     break;
3615         case FW_BUFF_DECFRMINFO: u32BufStart = GET_DECFRMINFO_BUFFADD(u8Idx); break;
3616         default:
3617             break;
3618     }
3619     if (NULL == u32BufStart)
3620     {
3621         printf("%s err: u8Idx=0x%x, bufType=0x%x, offset=%d, size=%d\n",
3622                __FUNCTION__, u8Idx, eBuffType, u16Offset, u8Size);
3623         return bRet;
3624     }
3625 
3626     if (u8Size == sizeof(MS_U8))
3627     {
3628         bRet = HAL_MVD_MemWriteByte(u32BufStart+u16Offset, (MS_U8)u32Val);
3629     }
3630     else if (u8Size == sizeof(MS_U32))
3631     {
3632         bRet = HAL_MVD_MemWrite4Byte(u32BufStart+u16Offset, u32Val);
3633     }
3634 
3635     MVD_DEBUGINFO(printf("%s: u32Val=%d for u8Idx=0x%x, bufType=0x%x, offset=%d, size=%d\n",
3636                           __FUNCTION__, u32Val, u8Idx, eBuffType, u16Offset, u8Size));
3637     return bRet;
3638 }
3639 
3640 //================== Vol Info ==================//
HAL_MVD_GetBitsRate(MS_U8 u8Idx)3641 MS_U32 HAL_MVD_GetBitsRate(MS_U8 u8Idx)
3642 {
3643     //Ref 13818-2, this flag is unit of 400 bits/sec
3644     return MVD_GetFWBuffData(u8Idx, FW_BUFF_VOLINFO, OFFSET_BIT_RATE, sizeof(MS_U32))*400;
3645 }
3646 
HAL_MVD_GetVideoRange(MS_U8 u8Idx)3647 MS_U8 HAL_MVD_GetVideoRange(MS_U8 u8Idx)
3648 {
3649     return (MS_U8)MVD_GetFWBuffData(u8Idx, FW_BUFF_VOLINFO, OFFSET_VIDEO_RANGE, sizeof(MS_U8));
3650 }
3651 
HAL_MVD_GetLowDelayFlag(MS_U8 u8Idx)3652 MS_BOOL HAL_MVD_GetLowDelayFlag(MS_U8 u8Idx)
3653 {
3654     return (MS_BOOL)MVD_GetFWBuffData(u8Idx, FW_BUFF_VOLINFO, OFFSET_LOW_DELAY, sizeof(MS_U8));
3655 }
3656 
HAL_MVD_GetIs32PullDown(MS_U8 u8Idx)3657 MS_BOOL HAL_MVD_GetIs32PullDown(MS_U8 u8Idx)
3658 {
3659     return (MS_BOOL)MVD_GetFWBuffData(u8Idx, FW_BUFF_VOLINFO, OFFSET_MPEG_FRC_MODE, sizeof(MS_U8));
3660 }
3661 
HAL_MVD_GetIsDynScalingEnabled(MS_U8 u8Idx)3662 MS_BOOL HAL_MVD_GetIsDynScalingEnabled(MS_U8 u8Idx)
3663 {
3664     return (MS_BOOL)MVD_GetFWBuffData(u8Idx, FW_BUFF_VOLINFO, OFFSET_DS_ENABLE, sizeof(MS_U8));
3665 }
3666 
HAL_MVD_Is1stFrmRdy(MS_U8 u8Idx)3667 MS_BOOL HAL_MVD_Is1stFrmRdy(MS_U8 u8Idx)
3668 {
3669     return (MS_BOOL)MVD_GetFWBuffData(u8Idx, FW_BUFF_VOLINFO, OFFSET_FIRST_DISPLAY, sizeof(MS_U8));
3670 }
3671 
3672 
3673 //================== FrameInfo ==================//
HAL_MVD_GetPicCounter(MS_U8 u8Idx)3674 MS_U32 HAL_MVD_GetPicCounter(MS_U8 u8Idx)
3675 {
3676     return MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_FRAME_COUNT, sizeof(MS_U32));
3677 }
3678 
HAL_MVD_IsSeqHeaderFound(MS_U8 u8Idx)3679 MS_U8 HAL_MVD_IsSeqHeaderFound(MS_U8 u8Idx)
3680 {
3681     return MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_SEQ_FOUND, sizeof(MS_U8));
3682 }
3683 
HAL_MVD_GetSkipPicCounter(MS_U8 u8Idx)3684 MS_U32 HAL_MVD_GetSkipPicCounter(MS_U8 u8Idx)
3685 {
3686     return MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_SKIP_FRAME_COUNT, sizeof(MS_U32));
3687 }
3688 
HAL_MVD_GetPicType(MS_U8 u8Idx)3689 MVD_PicType HAL_MVD_GetPicType(MS_U8 u8Idx)
3690 {
3691     MS_U32 picType = 0xff;
3692     MVD_PicType ret = E_MVD_PIC_UNKNOWN;
3693 
3694     if (GET_FRMINFO_BUFFADD(u8Idx)==0)
3695     {
3696         MVD_DEBUGERROR(printf("%s error: pu8MVDGetFrameInfoBufStart=NULL\n", __FUNCTION__));
3697         return E_MVD_PIC_UNKNOWN;
3698     }
3699     picType = MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_PICTURE_TYPE, sizeof(MS_U32));
3700     switch (picType)
3701     {
3702         case 0:
3703             ret = E_MVD_PIC_I;
3704             break;
3705         case 1:
3706             ret = E_MVD_PIC_P;
3707             break;
3708         case 2:
3709             ret = E_MVD_PIC_B;
3710             break;
3711         default:
3712             break;
3713     }
3714     return ret;
3715 }
3716 
HAL_MVD_GetPtsStcDiff(MS_U8 u8Idx)3717 MS_S32 HAL_MVD_GetPtsStcDiff(MS_U8 u8Idx)
3718 {
3719     return (MS_S32)MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_PTS_STC, sizeof(MS_S32));
3720 }
3721 
HAL_MVD_GetDecodedFrameIdx(MS_U8 u8Idx)3722 MS_U8 HAL_MVD_GetDecodedFrameIdx(MS_U8 u8Idx)
3723 {
3724     return (MS_U8)MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_FB_INDEX, sizeof(MS_U8));
3725 }
3726 
HAL_MVD_GetVldErrCount(MS_U8 u8Idx)3727 MS_U32 HAL_MVD_GetVldErrCount(MS_U8 u8Idx)
3728 {
3729     return MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_VLD_ERR_COUNT, sizeof(MS_U32));
3730 }
3731 
HAL_MVD_GetValidStreamFlag(MS_U8 u8Idx)3732 MS_BOOL HAL_MVD_GetValidStreamFlag(MS_U8 u8Idx)
3733 {
3734     return !(MS_BOOL)MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_INVALIDSTREAM, sizeof(MS_U8));
3735 }
3736 
HAL_MVD_GetIsIPicFound(MS_U8 u8Idx)3737 MS_U8 HAL_MVD_GetIsIPicFound(MS_U8 u8Idx)
3738 {
3739     return (MS_U8)MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_FIRST_I_FOUND, sizeof(MS_U8));
3740 }
3741 
3742 //------------------------------------------------------------------------------
3743 /// Set PTS base to MVD F/W
3744 /// @param -u32pts \b IN : pts unit in 90k counter
3745 //------------------------------------------------------------------------------
HAL_MVD_SetPTSBase(MS_U8 u8Idx,MS_U32 u32pts)3746 void HAL_MVD_SetPTSBase(MS_U8 u8Idx, MS_U32 u32pts)
3747 {
3748     MVD_CmdArg mvdcmd;
3749 
3750     SET_CMDARG(mvdcmd, u32pts, u8Idx);
3751     if (HAL_MVD_MVDCommand( CMD_PTS_BASE, &mvdcmd ) == FALSE)
3752     {
3753         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_PTS_BASE ) );
3754     }
3755     return;
3756 }
3757 
HAL_MVD_GetPTS(MS_U8 u8Idx)3758 MS_U32 HAL_MVD_GetPTS(MS_U8 u8Idx)
3759 {
3760     MS_U32 u32PTS = 0;
3761 
3762     u32PTS = (MS_U32)MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_DISP_PTS, sizeof(MS_U32));
3763     u32PTS = _90K_TO_MS(u32PTS);
3764     return u32PTS;
3765 }
3766 
HAL_MVD_GetU64PTS(MS_U8 u8Idx,MVD_PtsType eType)3767 MS_U64 HAL_MVD_GetU64PTS(MS_U8 u8Idx,MVD_PtsType eType)
3768 {
3769     MS_U64 u64PTS = 0;
3770     MS_U64 u32_high32_PTS = 0;
3771     MS_U64 u32_low32_PTS = 0;
3772 
3773     if(eType==E_MVD_PTS_DISP)
3774     {
3775         u32_low32_PTS = (MS_U64)MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_DISP_PTS, sizeof(MS_U32));
3776         u32_high32_PTS = (MS_U64)MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_DISP_PTS_MSB, sizeof(MS_U32));
3777     }
3778     else if(eType==E_MVD_PTS_PRE_PAS)
3779     {
3780         u32_low32_PTS = (MS_U64)MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_WRPTR_PTS_LOW, sizeof(MS_U32));
3781         u32_high32_PTS = (MS_U64)MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_WRPTR_PTS_HIGH, sizeof(MS_U32));
3782     }
3783 
3784     u64PTS = (u32_high32_PTS<<32)|u32_low32_PTS;
3785     _90K_TO_MS_U64(u64PTS);
3786     return u64PTS;
3787 }
3788 
HAL_MVD_GetNextPTS(MS_U8 u8Idx)3789 MS_U32 HAL_MVD_GetNextPTS(MS_U8 u8Idx)
3790 {
3791     return (MS_U32)_90K_TO_MS(MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_NEXT_PTS, sizeof(MS_U32)));
3792 }
3793 
HAL_MVD_GetChromaFormat(MS_U8 u8Idx)3794 MS_U32 HAL_MVD_GetChromaFormat(MS_U8 u8Idx)
3795 {
3796     return MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_CHROMA_FORMAT, sizeof(MS_U8));
3797 }
3798 
HAL_MVD_GetGOPCount(MS_U8 u8Idx)3799 MS_U32 HAL_MVD_GetGOPCount(MS_U8 u8Idx)
3800 {
3801     return MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_GOP_I_FCNT, sizeof(MS_U32))
3802          + MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_GOP_P_FCNT, sizeof(MS_U32))
3803          + MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_GOP_B_FCNT, sizeof(MS_U32));
3804 }
3805 
HAL_MVD_GetColorFormat(MS_U8 u8Idx)3806 MS_U8 HAL_MVD_GetColorFormat(MS_U8 u8Idx)
3807 {
3808     if (GET_FRMINFO_BUFFADD(u8Idx)==0)
3809     {
3810         MVD_DEBUGERROR(printf("%s error: pu8MVDGetFrameInfoBufStart=NULL\n", __FUNCTION__));
3811         return 0xff;
3812     }
3813 
3814     return (MS_U8)MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_VIDEO_FORMAT, sizeof(MS_U8));
3815 }
3816 
HAL_MVD_GetMatrixCoef(MS_U8 u8Idx)3817 MS_U8 HAL_MVD_GetMatrixCoef(MS_U8 u8Idx)
3818 {
3819     if (GET_FRMINFO_BUFFADD(u8Idx)==0)
3820     {
3821         MVD_DEBUGERROR(printf("%s error: pu8MVDGetFrameInfoBufStart=NULL\n", __FUNCTION__));
3822         return 0xff;
3823     }
3824 
3825     return (MS_U8)MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_MATRIX_COEF, sizeof(MS_U8));
3826 }
3827 
HAL_MVD_StepDecode(MS_U8 u8Idx)3828 MS_BOOL HAL_MVD_StepDecode(MS_U8 u8Idx)
3829 {
3830     MVD_CmdArg mvdcmd;
3831     SETUP_CMDARG(mvdcmd);
3832     SET_DECNUM(mvdcmd, u8Idx);
3833     SET_CMD_RET_FALSE(CMD_SINGLE_STEP, &mvdcmd);
3834 
3835     if (HAL_MVD_Resume(u8Idx) == FALSE)
3836     {
3837         MVD_DEBUGERROR(printf("Command: HAL_MVD_Resume fail!!\r\n"));
3838         return FALSE;
3839     }
3840 
3841     MVD_CtrlCfg* pCtrlCfg = HAL_MVD_GetCtrlCfg(u8Idx);
3842     if (pCtrlCfg)
3843     {
3844         pCtrlCfg->bStepDecode = TRUE;
3845     }
3846 
3847     return TRUE;
3848 }
3849 
HAL_MVD_IsStepDispDone(MS_U8 u8Idx)3850 MS_BOOL HAL_MVD_IsStepDispDone(MS_U8 u8Idx)
3851 {
3852     return (MS_BOOL)MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_STEP_DISP_DONE, sizeof(MS_U8));
3853 }
3854 
HAL_MVD_IsStep2PtsDone(MS_U8 u8Idx)3855 MS_BOOL HAL_MVD_IsStep2PtsDone(MS_U8 u8Idx)
3856 {
3857     return (MS_BOOL)MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_STEP_TO_PTS_DONE, sizeof(MS_U8));
3858 }
3859 
3860 //Only for RCV.
HAL_MVD_GetPayloadLen(MS_U8 u8Idx)3861 MS_U32 HAL_MVD_GetPayloadLen(MS_U8 u8Idx)
3862 {
3863     return MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_RCV_PAYLOAD_LENGTH, sizeof(MS_U32));
3864 }
3865 
3866 //Only for RCV.
HAL_MVD_GotFileEndPattern(MS_U8 u8Idx)3867 MS_BOOL HAL_MVD_GotFileEndPattern(MS_U8 u8Idx)
3868 {
3869     return (MS_BOOL)MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_MEET_FILE_END_SC, sizeof(MS_U8));
3870 }
3871 
HAL_MVD_IsCmdFinished(MS_U8 u8Idx,MVD_HANDSHAKE_CMD eCmd)3872 MS_BOOL HAL_MVD_IsCmdFinished(MS_U8 u8Idx, MVD_HANDSHAKE_CMD eCmd)
3873 {
3874     MVD_CMD_HANDSHADE_INDEX u32CmdState;
3875     MS_BOOL bCmdRdy = FALSE;
3876 
3877     HAL_MVD_InvalidBuffRetFalse(GET_FRMINFO_BUFFADD(u8Idx));
3878 
3879     u32CmdState.value = MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_CMD_HANDSHAKE_INDEX, sizeof(MS_U32));
3880     MVD_DEBUGINFO(printf("u32CmdState.value = 0x%x\n", u32CmdState.value));
3881     switch (eCmd)
3882     {
3883         case MVD_HANDSHAKE_PAUSE:
3884             bCmdRdy = (MS_BOOL)(u32CmdState.mvdcmd_handshake_pause);
3885             break;
3886         case MVD_HANDSHAKE_SLQ_RST:
3887             bCmdRdy = (MS_BOOL)(u32CmdState.mvdcmd_handshake_slq_reset);
3888             break;
3889         case MVD_HANDSHAKE_STOP:
3890             bCmdRdy = (MS_BOOL)(u32CmdState.mvdcmd_handshake_stop);
3891             break;
3892         case MVD_HANDSHAKE_SKIP_DATA:
3893             bCmdRdy = (MS_BOOL)(u32CmdState.mvdcmd_handshake_skip_data);
3894             break;
3895         case MVD_HANDSHAKE_SINGLE_STEP:
3896             bCmdRdy = (MS_BOOL)(u32CmdState.mvdcmd_handshake_single_step);
3897             break;
3898         case MVD_HANDSHAKE_SCALER_INFO:
3899             bCmdRdy = (MS_BOOL)(u32CmdState.mvdcmd_handshake_scaler_data_ready);
3900             break;
3901         case MVD_HANDSHAKE_GET_NXTDISPFRM:
3902             bCmdRdy = (MS_BOOL)(u32CmdState.mvdcmd_handshake_get_nextdispfrm_ready);
3903             break;
3904         case MVD_HANDSHAKE_PARSER_RST:
3905             bCmdRdy = (MS_BOOL)(u32CmdState.mvdcmd_handshake_parser_rst);
3906             break;
3907         case MVD_HANDSHAKE_RST_CC608:
3908             bCmdRdy = (MS_BOOL)(u32CmdState.mvdcmd_handshake_cc608_rst);
3909             break;
3910         case MVD_HANDSHAKE_RST_CC708:
3911             bCmdRdy = (MS_BOOL)(u32CmdState.mvdcmd_handshake_cc708_rst);
3912             break;
3913         case MVD_HANDSHAKE_VIRTUAL_COMMAND:
3914             bCmdRdy = (MS_BOOL)(u32CmdState.mvdcmd_handshake_virtualCommand);
3915             break;
3916         case MVD_HANDSHAKE_FLUSHQUEUE_COMMAND:
3917             bCmdRdy = (MS_BOOL)(u32CmdState.mvdcmd_handshake_flush);
3918             break;
3919         case MVD_HANDSHAKE_VSYNC_CONTROL:
3920             bCmdRdy = (MS_BOOL)(u32CmdState.mvdcmd_handshake_vsync_control);
3921             break;
3922         default:
3923             bCmdRdy = FALSE;
3924             break;
3925     }
3926     return bCmdRdy;
3927 }
3928 
HAL_MVD_ClearCmdFinished(MS_U8 u8Idx,MVD_HANDSHAKE_CMD eCmd)3929 MS_BOOL HAL_MVD_ClearCmdFinished(MS_U8 u8Idx, MVD_HANDSHAKE_CMD eCmd)
3930 {
3931     MVD_CMD_HANDSHADE_INDEX u32CmdState;
3932 
3933     HAL_MVD_InvalidBuffRetFalse(GET_FRMINFO_BUFFADD(u8Idx));
3934 
3935     u32CmdState.value = MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_CMD_HANDSHAKE_INDEX, sizeof(MS_U32));
3936     MVD_DEBUGINFO(printf("before CLR u32CmdState.value = 0x%x\n", u32CmdState.value));
3937     switch (eCmd)
3938     {
3939         case MVD_HANDSHAKE_SCALER_INFO:
3940             u32CmdState.mvdcmd_handshake_scaler_data_ready = 0;
3941             break;
3942         default:
3943             break;
3944     }
3945 
3946     //write the value back: may it overwrite the value that f/w is supposed to write?
3947     MVD_WriteFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_CMD_HANDSHAKE_INDEX, sizeof(MS_U32), u32CmdState.value);
3948     MVD_DEBUGINFO(printf("after CLR u32CmdState.value = 0x%x\n",
3949         MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_CMD_HANDSHAKE_INDEX, sizeof(MS_U32))));
3950     return TRUE;
3951 }
3952 
3953 
HAL_MVD_GetTimeCode(MS_U8 u8Idx,MVD_FrmInfoType eType,MVD_TimeCode * pInfo)3954 MS_BOOL HAL_MVD_GetTimeCode(MS_U8 u8Idx, MVD_FrmInfoType eType, MVD_TimeCode* pInfo)
3955 {
3956     MS_BOOL bRet = FALSE;
3957     MS_VIRT pu8MVDGetFrameInfoBufStart = GET_FRMINFO_BUFFADD(u8Idx);
3958     if (NULL == pInfo)
3959     {
3960         return FALSE;
3961     }
3962 
3963     HAL_MVD_InvalidBuffRetFalse(pu8MVDGetFrameInfoBufStart);
3964 
3965     if (E_MVD_FRMINFO_DECODE == eType)
3966     {
3967         pInfo->u8TimeCodeHr  = HAL_MVD_MemReadByte(pu8MVDGetFrameInfoBufStart+OFFSET_TIME_CODE_HOURS);
3968         pInfo->u8TimeCodeMin = HAL_MVD_MemReadByte(pu8MVDGetFrameInfoBufStart+OFFSET_TIME_CODE_MINUTES);
3969         pInfo->u8TimeCodeSec = HAL_MVD_MemReadByte(pu8MVDGetFrameInfoBufStart+OFFSET_TIME_CODE_SECONDS);
3970         pInfo->u8TimeCodePic = HAL_MVD_MemReadByte(pu8MVDGetFrameInfoBufStart+OFFSET_TIME_CODE_PICTURES);
3971         pInfo->u8DropFrmFlag = HAL_MVD_MemReadByte(pu8MVDGetFrameInfoBufStart+OFFSET_DROP_FRAME_FLAG);
3972     }
3973     else if (E_MVD_FRMINFO_DISPLAY == eType)
3974     {
3975         pInfo->u8TimeCodeHr  = HAL_MVD_MemReadByte(pu8MVDGetFrameInfoBufStart+OFFSET_TIME_CODE_HOURS_DISP);
3976         pInfo->u8TimeCodeMin = HAL_MVD_MemReadByte(pu8MVDGetFrameInfoBufStart+OFFSET_TIME_CODE_MINUTES_DISP);
3977         pInfo->u8TimeCodeSec = HAL_MVD_MemReadByte(pu8MVDGetFrameInfoBufStart+OFFSET_TIME_CODE_SECONDS_DISP);
3978         pInfo->u8TimeCodePic = HAL_MVD_MemReadByte(pu8MVDGetFrameInfoBufStart+OFFSET_TIME_CODE_PICTURES_DISP);
3979         pInfo->u8DropFrmFlag = HAL_MVD_MemReadByte(pu8MVDGetFrameInfoBufStart+OFFSET_DROP_FRAME_FLAG_DISP);
3980     }
3981     else
3982     {
3983         bRet = FALSE;
3984     }
3985 
3986     return bRet;
3987 }
3988 
HAL_MVD_GetDispCnt(MS_U8 u8Idx)3989 MS_U32 HAL_MVD_GetDispCnt(MS_U8 u8Idx)
3990 {
3991     return MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_DISPLAYED_CNT, sizeof(MS_U32));
3992 }
3993 
HAL_MVD_GetMinTspDataSize(MS_U8 u8HalIdx)3994 MS_U32 HAL_MVD_GetMinTspDataSize(MS_U8 u8HalIdx)
3995 {
3996 #ifdef OFFSET_CUR_MIN_TSP_DATA_SIZE
3997     return MVD_GetFWBuffData(u8HalIdx, FW_BUFF_FRMINFO, OFFSET_CUR_MIN_TSP_DATA_SIZE, sizeof(MS_U32));
3998 #else
3999     return 0x400;
4000 #endif
4001 }
4002 
HAL_MVD_GetDropCnt(MS_U8 u8Idx)4003 MS_U32 HAL_MVD_GetDropCnt(MS_U8 u8Idx)
4004 {
4005     return MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_DROP_FRAME_COUNT, sizeof(MS_U32));
4006 }
4007 
HAL_MVD_GetXcLowDelayIntState(MS_U8 u8Idx)4008 MS_U32 HAL_MVD_GetXcLowDelayIntState(MS_U8 u8Idx)
4009 {
4010     MS_VIRT pu8MVDGetFrameInfoBufStart = GET_FRMINFO_BUFFADD(u8Idx);
4011 
4012     if(pu8MVDGetFrameInfoBufStart==0)
4013     {
4014         MVD_DEBUGERROR(printf("MDrv_MVD_GetXcLowDelayIntState error: pu8MVDGetFrameInfoBufStart=NULL\n"));
4015         return 0;
4016     }
4017 
4018     MVD_DEBUGINFO(printf("MDrv_MVD_GetXcLowDelayIntState()=%x,%x,%x,%x,%x\n",
4019         (HAL_MVD_MemRead4Byte(pu8MVDGetFrameInfoBufStart+OFFSET_XC_LOW_DELAY_CNT)),
4020         (HAL_MVD_MemRead4Byte(pu8MVDGetFrameInfoBufStart+OFFSET_XC_LOW_DELAY_INT_STATE)),
4021         (HAL_MVD_MemRead4Byte(pu8MVDGetFrameInfoBufStart+OFFSET_XC_DIFF_FIELD_NO)),
4022         (HAL_MVD_MemRead4Byte(pu8MVDGetFrameInfoBufStart+OFFSET_XC_LOW_DELAY_CNT_LATCH)),
4023         (HAL_MVD_MemRead4Byte(pu8MVDGetFrameInfoBufStart+OFFSET_FRAME_COUNT))));
4024 
4025     return HAL_MVD_MemRead4Byte(pu8MVDGetFrameInfoBufStart+OFFSET_XC_LOW_DELAY_INT_STATE);
4026 }
4027 
4028 //Get ErrStatus when ErrCode==ErrShape
MVD_GetErrShapeStat(MS_U32 u32errStat)4029 static MVD_ErrStatus MVD_GetErrShapeStat(MS_U32 u32errStat)
4030 {
4031     MVD_ErrStatus st = E_MVD_ERR_STATUS_UNKOWN;
4032     switch (u32errStat)
4033     {
4034         case 0:
4035             st = E_MVD_ERR_SHAPE_RECTANGULAR;
4036             break;
4037         case 1:
4038             st = E_MVD_ERR_SHAPE_BINARY;
4039             break;
4040         case 2:
4041             st = E_MVD_ERR_SHAPE_BINARY_ONLY;
4042             break;
4043         case 3:
4044             st = E_MVD_ERR_SHAPE_GRAYSCALE;
4045             break;
4046         default:
4047             break;
4048     }
4049     return st;
4050 }
4051 
4052 //Get ErrStatus when ErrCode==ErrSprite
MVD_GetErrSpriteStat(MS_U32 u32errStat)4053 static MVD_ErrStatus MVD_GetErrSpriteStat(MS_U32 u32errStat)
4054 {
4055     MVD_ErrStatus st = E_MVD_ERR_STATUS_UNKOWN;
4056     switch (u32errStat)
4057     {
4058         case 0:
4059             st = E_MVD_ERR_USED_SPRITE_UNUSED;
4060             break;
4061         case 1:
4062             st = E_MVD_ERR_USED_SPRITE_STATIC;
4063             break;
4064         case 2:
4065             st = E_MVD_ERR_USED_SPRITE_GMC;
4066             break;
4067         case 3:
4068             st = E_MVD_ERR_USED_SPRITE_RESERVED;
4069             break;
4070         default:
4071             break;
4072     }
4073     return st;
4074 }
4075 
HAL_MVD_GetErrInfo(MS_U8 u8Idx,MVD_ErrCode * errCode,MVD_ErrStatus * errStatus)4076 void HAL_MVD_GetErrInfo(MS_U8 u8Idx, MVD_ErrCode *errCode, MVD_ErrStatus *errStatus)
4077 {
4078     MS_U32 errorCode = E_MVD_ERR_UNKNOWN;
4079     MS_U32 errorStatus = E_MVD_ERR_STATUS_UNKOWN;
4080     MS_VIRT pu8MVDGetFrameInfoBufStart = GET_FRMINFO_BUFFADD(u8Idx);
4081 
4082     if(pu8MVDGetFrameInfoBufStart==0)
4083     {
4084         MVD_DEBUGERROR(printf("MDrv_MVD_GetErrInfo error!\n"));
4085         return;
4086     }
4087 
4088     errorCode = HAL_MVD_MemRead4Byte(pu8MVDGetFrameInfoBufStart + OFFSET_ERROR_CODE);
4089     errorStatus = HAL_MVD_MemRead4Byte(pu8MVDGetFrameInfoBufStart + OFFSET_ERROR_STATUS);
4090 
4091     switch (errorCode)
4092     {
4093         case VOL_SHAPE:
4094             *errCode = E_MVD_ERR_SHAPE;
4095             *errStatus = MVD_GetErrShapeStat(errorStatus);
4096             break;
4097         case VOL_USED_SPRITE:
4098             *errCode = E_MVD_ERR_USED_SPRITE;
4099             *errStatus = MVD_GetErrSpriteStat(errorStatus);
4100             break;
4101         case VOL_NOT_8_BIT:
4102             *errCode = E_MVD_ERR_NOT_8_BIT;
4103             *errStatus = E_MVD_ERR_STATUS_NONE;
4104             break;
4105         case VOL_NERPRED_ENABLE:
4106             *errCode = E_MVD_ERR_NERPRED_ENABLE;
4107             *errStatus = E_MVD_ERR_STATUS_NONE;
4108             break;
4109         case VOL_REDUCED_RES_ENABLE:
4110             *errCode = E_MVD_ERR_REDUCED_RES_ENABLE;
4111             *errStatus = E_MVD_ERR_STATUS_NONE;
4112             break;
4113         case VOL_SCALABILITY:
4114             *errCode = E_MVD_ERR_SCALABILITY;
4115             *errStatus = E_MVD_ERR_STATUS_NONE;
4116             break;
4117         case VOL_H263_ERROR:
4118             *errCode = E_MVD_ERR_H263_ERROR;
4119             *errStatus = E_MVD_ERR_STATUS_NONE;
4120             break;
4121         case VOL_RES_NOT_SUPPORT:
4122             *errCode = E_MVD_ERR_RES_NOT_SUPPORT;
4123             *errStatus = E_MVD_ERR_STATUS_NONE;
4124             break;
4125         case VOL_MPEG4_NOT_SUPPORT:
4126             *errCode = E_MVD_ERR_MPEG4_NOT_SUPPORT;
4127             *errStatus = E_MVD_ERR_STATUS_NONE;
4128             break;
4129         case VOL_PROFILE_NOT_SUPPORT:
4130             *errCode = E_MVD_ERR_PROFILE_NOT_SUPPORT;
4131             *errStatus = E_MVD_ERR_STATUS_NONE;
4132             break;
4133         case VOL_RCV_ERROR_OCCUR:
4134             *errCode = E_MVD_ERR_RCV_ERROR_OCCUR;
4135             *errStatus = E_MVD_ERR_STATUS_NONE;
4136             break;
4137         case VOL_OTHER:
4138             *errCode = E_MVD_ERR_OTHER;
4139             *errStatus = E_MVD_ERR_STATUS_NONE;
4140             break;
4141         default:
4142             *errCode = E_MVD_ERR_UNKNOWN;
4143             *errStatus = E_MVD_ERR_STATUS_UNKOWN;
4144             break;
4145     }
4146 
4147     return;
4148 }
4149 
4150 //take care MIU1 address
HAL_MVD_GetMemOffset(MS_PHY u32PhyAdd)4151 MS_PHY HAL_MVD_GetMemOffset(MS_PHY u32PhyAdd)
4152 {
4153     if (u32PhyAdd >= pMVDHalContext->stMiuCfg.u32Miu2BaseAddr)
4154     {
4155         return (u32PhyAdd - pMVDHalContext->stMiuCfg.u32Miu2BaseAddr);
4156     }
4157     else if(u32PhyAdd >= pMVDHalContext->stMiuCfg.u32Miu1BaseAddr)
4158     {
4159         return (u32PhyAdd - pMVDHalContext->stMiuCfg.u32Miu1BaseAddr);
4160     }
4161     else
4162     {
4163         return u32PhyAdd;
4164     }
4165 }
4166 
4167 
HAL_MVD_SLQTblSendPacket(MS_U8 u8Idx,MVD_PacketInfo * pstVideoPKT)4168 MS_BOOL HAL_MVD_SLQTblSendPacket(MS_U8 u8Idx, MVD_PacketInfo *pstVideoPKT)
4169 {
4170     MVD_SLQTBLInfo* pstSlqTblInfo = HAL_MVD_GetSlqTblInfo(u8Idx);
4171     MS_VIRT u32EsLast;
4172     MS_VIRT* u32LastEntry = &pstSlqTblInfo->pDrvSlqTbl->u32WrPtr;
4173     MS_VIRT* pu32EsNew = &pstSlqTblInfo->pDrvEsTbl->u32WrPtr;
4174     MS_U32 u32EntryWord = 0;
4175     MS_U32 u32Index = 0;
4176     MS_U32 u32Pts;
4177     MS_VIRT u32MVDFWPtsTblAddr = NULL;
4178     MVD_CtrlCfg* pstCtrlCfg = HAL_MVD_GetCtrlCfg(u8Idx);
4179 
4180     MS_U32 u32ESStart=0;
4181     MS_U32 u32ESEnd=0;
4182     MVD_MEMCfg* pstMemCfg = HAL_MVD_GetMEMCfg(u8Idx);
4183 
4184 
4185 #if _SLQTBL_DUMP_PKT
4186    // static MS_U32 u32SendTimes[MAX_DEC_NUM]= {0, 0};
4187 
4188     printf("Pkt[%x] st=0x%x len=0x%x pts=0x%x id_l=0x%x id_h=0x%x\n", u32SendTimes[u8Idx]++,
4189         pstVideoPKT->u32StAddr, pstVideoPKT->u32Length, pstVideoPKT->u32TimeStamp,
4190         pstVideoPKT->u32ID_L, pstVideoPKT->u32ID_H);
4191 #endif
4192 
4193 #ifdef VDEC3
4194     if(pstCtrlCfg->u8McuMode == FALSE)
4195 #endif
4196     {
4197     u32MVDFWPtsTblAddr = GET_PTSTBL_BUFFADD(u8Idx);
4198     MS_ASSERT(u32MVDFWPtsTblAddr != NULL);
4199     if (u32MVDFWPtsTblAddr)
4200     {
4201         MS_VIRT u32PtsTblEntryAddr = 0;
4202         //so far, this is the only place that driver will write f/w 1M area after init.
4203         u32Index = (pstSlqTblInfo->pDrvSlqTbl->u32WrPtr - pstSlqTblInfo->pDrvSlqTbl->u32StAdd)/8;
4204         if(HAL_MVD_IsMcuMode(u8Idx) == FALSE)
4205         {
4206             if (pstVideoPKT->u32TimeStamp != MVD_NULLPKT_PTS)
4207             {
4208                 u32Pts = _MS_TO_90K(pstVideoPKT->u32TimeStamp);
4209             }
4210             else
4211             {
4212                 u32Pts = MVD_NULLPKT_PTS;
4213             }
4214         }
4215         else
4216         {
4217             u32Pts = pstVideoPKT->u32TimeStamp;
4218         }
4219         u32PtsTblEntryAddr = u32MVDFWPtsTblAddr+u32Index*MVD_FW_SLQTBL_PTS_LEN;
4220         HAL_MVD_MemWrite4Byte(u32PtsTblEntryAddr+4, pstSlqTblInfo->u32DummyPktCnt);   //dummyPktCnt
4221         HAL_MVD_MemWrite4Byte(u32PtsTblEntryAddr+8, pstVideoPKT->u32ID_L);  //idLow
4222         HAL_MVD_MemWrite4Byte(u32PtsTblEntryAddr+12, pstVideoPKT->u32ID_H); //idHigh
4223         HAL_MVD_MemWrite4Byte(u32PtsTblEntryAddr+16, u32Pts);  //PTS
4224         HAL_MVD_MemWrite4Byte(u32PtsTblEntryAddr, (pstSlqTblInfo->u32SlqByteCnt)&0xffffff); //byteCnt
4225         //printf("PTS=0x%x(%x), idx=0x%x add=0x%x\n", pstVideoPKT->u32TimeStamp,
4226         //        HAL_MVD_MemRead4Byte(u32PtsTblEntryAddr+16),
4227         //        u32Index, u32PtsTblEntryAddr+16);
4228 
4229         if ((HAL_MVD_IsMStreamerMode(u8Idx) || HAL_MVD_IsMcuMode(u8Idx))
4230             && (pstCtrlCfg->eFileSyncMode == E_MVD_TIMESTAMP_STS))
4231         {
4232             if(pMVDHalContext->bDropOnePTS[u8Idx] == FALSE)
4233             {
4234                 HAL_MVD_MemWrite4Byte(u32MVDFWPtsTblAddr+MVD_FW_SLQTBL_PTS_LEN+12, pstVideoPKT->u32ID_H); //idHigh
4235                 HAL_MVD_MemWrite4Byte(u32MVDFWPtsTblAddr+MVD_FW_SLQTBL_PTS_LEN+16, pstVideoPKT->u32TimeStamp);  //PTS
4236 
4237                 MVD_DBG_STS(printf(">>> drvMVD pts,idH = %lu, %lu\n", HAL_MVD_MemRead4Byte(u32MVDFWPtsTblAddr+MVD_FW_SLQTBL_PTS_LEN+16),
4238                        HAL_MVD_MemRead4Byte(u32MVDFWPtsTblAddr+MVD_FW_SLQTBL_PTS_LEN+12)));
4239                 if (((MVD_NULLPKT_PTS == pstVideoPKT->u32ID_H) && (MVD_NULLPKT_PTS == pstVideoPKT->u32TimeStamp)) == FALSE)
4240                 {   //Only update PTS to firmware when pts field is valid.
4241                     //Plz refer to MDrv_MVD_PushQueue if (u8MstMode == MST_MODE_TRUE) {}
4242                         HAL_MVD_UpdatePts(u8Idx);    //for uniplayer or MCU mode
4243                 }
4244             }
4245 
4246             pMVDHalContext->bDropOnePTS[u8Idx] = FALSE;
4247         }
4248     }
4249 #if _SLQTBL_DUMP_PTS
4250     if (u32Index == 0x177)
4251     {
4252         _SLQTbl_DumpPtsTbl(u8Idx, 0, 0x179);
4253     }
4254 #endif
4255     }
4256     pstSlqTblInfo->u32SlqByteCnt += pstVideoPKT->u32Length;
4257 
4258     //update SLQ tbl entry
4259     //u32EsLast = (pstVideoPKT->u32StAddr)+pstSlqTblInfo->pDrvSlqTbl->u32StAdd;
4260     u32EsLast = (pstVideoPKT->u32StAddr)+HAL_MVD_GetMemOffset(pstMemCfg->u32BSAddr);
4261     HAL_MVD_MemWrite4Byte(*pu32EsNew, u32EsLast-HAL_MVD_GetMemOffset(pstMemCfg->u32BSAddr));
4262     u32ESStart = (u32EsLast) & SLQ_TBL_ENTRY_LEN;
4263 
4264     u32EsLast += pstVideoPKT->u32Length; //update ES write pointer
4265     //Notice: This is for MVD HW, so no need to minus one.
4266     HAL_MVD_MemWrite4Byte((*pu32EsNew)+4, u32EsLast-HAL_MVD_GetMemOffset(pstMemCfg->u32BSAddr));
4267     u32ESEnd   = (u32EsLast) & SLQ_TBL_ENTRY_LEN;
4268 
4269     *pu32EsNew += 8;
4270     if (*pu32EsNew >= pstSlqTblInfo->pDrvEsTbl->u32EndAdd)
4271     {   //wrap to the beginning of the table
4272         MVD_DEBUGINFO(printf("...ES wrapping to the beginning!\n"));
4273         *pu32EsNew = pstSlqTblInfo->pDrvEsTbl->u32StAdd;
4274     }
4275 
4276     //printf("===>[%x] u32ESStart=0x%x u32ESEnd=0x%x u32EsLast=0x%x\n",
4277     //    pMVDHalContext->u32SendTimes[u8Idx]++, u32ESStart, u32ESEnd, u32EsLast);
4278 
4279     u32EntryWord = u32ESEnd;
4280     HAL_MVD_MemWrite4Byte(*u32LastEntry, u32EntryWord);
4281     //printf("===> u32EntryWord1 addr=0x%x\n", (*u32LastEntry));
4282     //printf("===> u32EntryWord0=0x%x\n", u32EntryWord);
4283 
4284     u32EntryWord = u32ESStart;
4285     HAL_MVD_MemWrite4Byte((*u32LastEntry)+4, u32EntryWord);
4286     //printf("===> u32EntryWord1 addr=0x%x\n", (*u32LastEntry)+4);
4287     //printf("===> u32EntryWord1=0x%x\n", u32EntryWord);
4288 
4289     *u32LastEntry += 8;
4290     if (*u32LastEntry >= pstSlqTblInfo->pDrvSlqTbl->u32EndAdd)
4291     {   //wrap to the beginning of the table
4292         MVD_DEBUGINFO(printf("...wrapping to the beginning!\n"));
4293         *u32LastEntry = pstSlqTblInfo->pDrvSlqTbl->u32StAdd;
4294         //also wrap DivX311 pattern table
4295         pstSlqTblInfo->pDrvDivxTbl->u32WrPtr = pstSlqTblInfo->pDrvDivxTbl->u32StAdd;
4296     }
4297 
4298     if (pstSlqTblInfo->pDrvSlqTbl->u32Empty)
4299     {
4300         pstSlqTblInfo->pDrvSlqTbl->u32Empty -= SLQ_ENTRY_LEN;
4301     }
4302 
4303     return TRUE;
4304 }
4305 
4306 //Table of frame rate code for MPEG-2
4307 #if 0
4308 #define FRM_RATE_CODE_NUM 9
4309 static const MS_U16 stFrameRateCode[FRM_RATE_CODE_NUM]=
4310 {
4311     NULL,23976,24000,25000,29976,30000,50000,59947,60000
4312 };
4313 #endif
MVD_GCD(MS_U32 u32A,MS_U32 u32B)4314 static MS_U32 MVD_GCD(MS_U32 u32A, MS_U32 u32B)
4315 {
4316    MS_S32 i;
4317    MS_U32 x[4]; /* need x[0], x[1], x[i-1] */
4318 
4319    if (u32A > u32B)
4320    {
4321      x[0] = u32A; x[1] = u32B;
4322    }
4323    else
4324    {
4325      x[0] = u32B; x[1] = u32A;
4326    }
4327 
4328    i = 1;
4329 
4330    #define w(x) (((x)<4)?(x):(2+((x)&1)))
4331 
4332    while( x[w(i)] != 0 )
4333    {
4334        x[w(i+1)] = x[w(i-1)] % x[w(i)];
4335        i++;
4336    }
4337 
4338    return x[w(i-1)];
4339 
4340    #undef w
4341 }
HAL_MVD_GetFrameInfo(MS_U8 u8Idx,MVD_FrameInfo * pinfo)4342 void HAL_MVD_GetFrameInfo(MS_U8 u8Idx, MVD_FrameInfo *pinfo)
4343 {
4344     FW_VOL_INFO gvolInfo;
4345     FW_DIVX_INFO* pDivxInfo = &(pMVDHalContext->gdivxInfo[u8Idx]);
4346     MS_VIRT temp = 0;
4347     MS_U32 u32DAR_Width=0,u32DAR_Height=0,u32PAR_Width=0,u32PAR_Height=0,u32GCD=0;
4348     MS_U32 u32Vertical_Size=0, u32Horizontal_Size=0;
4349     //13818-2 page 38 Table 6-3
4350     MS_U8 u8DARTable[5][2] = { {1,1}, {1,1}, {4,3}, {16,9}, {221,100} };
4351     MS_U32 pu8MVDGetVolBufStart = NULL;
4352     MVD_MEMCfg* pstMemCfg = HAL_MVD_GetMEMCfg(u8Idx);
4353 
4354     pu8MVDGetVolBufStart = GET_VOL_BUFFADD(u8Idx);
4355     if (pu8MVDGetVolBufStart == NULL)
4356     {
4357         MVD_DEBUGERROR(printf("MDrv_MVD_GetFrameInfo error: pu8MVDGetVolBufStart=NULL\n"));
4358         return;
4359     }
4360 
4361     HAL_MVD_CPU_Sync();
4362     HAL_MVD_ReadMemory();
4363 
4364     _miu_offset_to_phy(pMVDHalContext->stMiuCfg.u8FWMiuSel,GET_VOL_BUFFADD(u8Idx),temp);
4365 
4366     gvolInfo = (*(volatile FW_VOL_INFO*)(HAL_MVD_PA2NonCacheSeg(temp)));
4367 
4368     pinfo->u16HorSize = (MS_U16) gvolInfo.width;
4369     pinfo->u16VerSize = (MS_U16) gvolInfo.height;
4370     pinfo->u16par_width  = (MS_U16) gvolInfo.par_width;
4371     pinfo->u16par_height = (MS_U16) gvolInfo.par_height;
4372     pinfo->u8AspectRate = gvolInfo.aspect_ratio;
4373 
4374     pinfo->u16CropBottom = gvolInfo.CropBottom;
4375     pinfo->u16CropTop = 0;
4376     pinfo->u16CropLeft = 0;
4377 
4378     if (pinfo->u16HorSize & MVD_WIDTH_ALIGN_MASK)
4379     {
4380         //Notice: Firmware and driver have to be consistent for this part,
4381         // otherwise the pitch will not match and video is noisy.
4382         pinfo->u16CropRight = MVD_WIDTH_ALIGN_BYTE - (pinfo->u16HorSize & MVD_WIDTH_ALIGN_MASK);
4383         pinfo->u16HorSize = ((pinfo->u16HorSize >> MVD_WIDTH_ALIGN_BITS) + 1) << MVD_WIDTH_ALIGN_BITS;
4384     }
4385     else
4386     {
4387         pinfo->u16CropRight = 0;
4388     }
4389 
4390     MVD_CodecType curCodecType = HAL_MVD_GetCodecType(u8Idx);
4391     if ((curCodecType == E_MVD_CODEC_MPEG4_SHORT_VIDEO_HEADER) ||
4392         (curCodecType == E_MVD_CODEC_DIVX311) || (curCodecType == E_MVD_CODEC_FLV))
4393     {
4394         pinfo->u8Interlace= FALSE; //divx311/flv/svh just has progressive mode
4395         MS_ASSERT(gvolInfo.progressive_sequence == 1); //FW will init it as 1
4396     }
4397     else
4398     {
4399         if (gvolInfo.progressive_sequence == 0)
4400         {
4401             pinfo->u8Interlace=1;
4402         }
4403         else
4404         {
4405             pinfo->u8Interlace=0;
4406         }
4407     }
4408 
4409     ///Calculate PAR info
4410     if (pinfo->u16par_width == 0 || pinfo->u16par_height == 0)
4411     {
4412         if ((pinfo->u8AspectRate > 0) && (pinfo->u8AspectRate < 5 ))
4413         {
4414             if (pinfo->u8AspectRate == 1)
4415             {   //SAR=1.0 square sample
4416                 u32DAR_Width = (MS_U32)pinfo->u16HorSize;
4417                 u32DAR_Height = (MS_U32)pinfo->u16VerSize;
4418                 pinfo->u16par_width = 1;
4419                 pinfo->u16par_height = 1;
4420             }
4421             else
4422             {
4423                 u32DAR_Width = (MS_U32)u8DARTable[pinfo->u8AspectRate][0];
4424                 u32DAR_Height = (MS_U32)u8DARTable[pinfo->u8AspectRate][1];
4425                 u32Vertical_Size = (MS_U32)pinfo->u16VerSize;
4426                 u32Horizontal_Size = (MS_U32)(pinfo->u16HorSize - pinfo->u16CropRight);
4427                 u32PAR_Width = u32DAR_Width * u32Vertical_Size;
4428                 u32PAR_Height = u32DAR_Height * u32Horizontal_Size;
4429                 u32GCD = MVD_GCD(u32PAR_Width, u32PAR_Height);
4430                 if (0 == u32GCD)
4431                 {
4432                     pinfo->u16HorSize = 0xFFFF;
4433                     pinfo->u16VerSize = 0xFFFF;
4434 
4435                     return;
4436                 }
4437                 else
4438                 {
4439                     pinfo->u16par_width = (MS_U16) (u32PAR_Width / u32GCD);
4440                     pinfo->u16par_height = (MS_U16) (u32PAR_Height / u32GCD);
4441                     MVD_DEBUGVERBAL(printf("u32PAR_Width:%d,u32PAR_Height:%d,GCD:%d\n",u32PAR_Width,u32PAR_Height,u32GCD));
4442                 }
4443             }
4444         }
4445         else
4446         {
4447             //set to 0 to indicate it's abnormal
4448             u32DAR_Width = 0;
4449             u32DAR_Height = 0;
4450             pinfo->u16par_width = 0;
4451             pinfo->u16par_height = 0;
4452         }
4453         MVD_DEBUGVERBAL(printf("u32DAR_Width:%d,u32DAR_Height%d\n",u32DAR_Width,u32DAR_Height));
4454     }
4455     MVD_DEBUGVERBAL(printf("pinfo->u16par_width:%d, pinfo->u16par_height:%d\n",pinfo->u16par_width, pinfo->u16par_height));
4456 
4457     if (curCodecType == E_MVD_CODEC_MPEG2)
4458     {
4459         if (gvolInfo.frame_rate < FRM_RATE_CODE_NUM)
4460         {
4461             pinfo->u32FrameRate = stFrameRateCode[gvolInfo.frame_rate];
4462         }
4463         else
4464         {
4465             pinfo->u32FrameRate = 0;
4466         }
4467     }
4468     else if ((curCodecType == E_MVD_CODEC_VC1_ADV) || (curCodecType == E_MVD_CODEC_VC1_MAIN))
4469     {
4470         if ((gvolInfo.vc1_frame_rate != 0) && (gvolInfo.vc1_frame_rate != MVD_U32_MAX))
4471         {
4472             pinfo->u32FrameRate = gvolInfo.vc1_frame_rate;
4473         }
4474         else if(pMVDHalContext->u32DmxFrameRate[u8Idx] != 0 && pMVDHalContext->u32DmxFrameRateBase[u8Idx] != 0)
4475         {
4476             pinfo->u32FrameRate = (pMVDHalContext->u32DmxFrameRate[u8Idx] * 1000) / pMVDHalContext->u32DmxFrameRateBase[u8Idx];
4477         }
4478         else
4479         {
4480             pinfo->u32FrameRate = pDivxInfo->frame_rate; //report framerate specified in MDrv_MVD_SetFrameInfo()
4481         }
4482 
4483         MVD_DEBUGVERBAL(printf("MVD: vc1_frameRate=%d\n", pinfo->u32FrameRate));
4484     }
4485     else if (curCodecType == E_MVD_CODEC_MPEG4)
4486     {
4487         if (pDivxInfo->frame_rate != 0)
4488         {
4489             pinfo->u32FrameRate = pDivxInfo->frame_rate;
4490             //report framerate specified in MDrv_MVD_SetFrameInfo(), which is usually obtained from container
4491         }
4492         else if (gvolInfo.frame_rate != 0)
4493         {
4494             pinfo->u32FrameRate = gvolInfo.frame_rate;  //report framerate from f/w
4495         }
4496         else if ((gvolInfo.fixed_vop_time_incr != 0) && (gvolInfo.vol_time_incr_res != 0))
4497         {
4498             pinfo->u32FrameRate = (gvolInfo.vol_time_incr_res * 1000) / gvolInfo.fixed_vop_time_incr;
4499             //calculate framerate according to vol header
4500         }
4501         else if(pMVDHalContext->u32DmxFrameRate[u8Idx] != 0 && pMVDHalContext->u32DmxFrameRateBase[u8Idx] != 0)
4502         {
4503             pinfo->u32FrameRate = (pMVDHalContext->u32DmxFrameRate[u8Idx] * 1000) / pMVDHalContext->u32DmxFrameRateBase[u8Idx];
4504         }
4505         else
4506         {
4507             pinfo->u32FrameRate = 60000; //set default frame rate according to chip capability
4508         }
4509         MVD_DEBUGVERBAL(printf("MVD: vol_time_incr_res=%d, fixed_vop_time_incr=%d\n", gvolInfo.vol_time_incr_res, gvolInfo.fixed_vop_time_incr));
4510     }
4511     else
4512     {
4513         if (gvolInfo.frame_rate != 0)
4514         {
4515             pinfo->u32FrameRate = gvolInfo.frame_rate;
4516         }
4517         else
4518         {
4519             pinfo->u32FrameRate = pDivxInfo->frame_rate; //report framerate specified in MDrv_MVD_SetFrameInfo()
4520         }
4521     }
4522     MVD_DEBUGVERBAL(printf("===> MVD: frameRate=%d  curCodecType=0x%x\n", pinfo->u32FrameRate, curCodecType));
4523 
4524     //for MM
4525     pinfo->u8MPEG1=gvolInfo.mpeg1;
4526     pinfo->u16PTSInterval=gvolInfo.pts_incr;
4527     pinfo->u8PlayMode=gvolInfo.play_mode;
4528     pinfo->u8FrcMode=gvolInfo.mpeg_frc_mode;
4529 
4530     //for dynamic scaling
4531     pinfo->bEnableMIUSel = (MS_BOOL)pMVDHalContext->stMiuCfg.u8FWMiuSel;
4532 
4533     if(pMVDHalContext->stMiuCfg.u8FWMiuSel >= E_CHIP_MIU_2)
4534         {
4535         MVD_DEBUGERROR(printf("u8MiuSel is %d !!, but return type is only Boolean. Please use MDrv_HVD_EX_GetDSBufMiuSelect() to get right miu select of DS buffer!\n",pMVDHalContext->stMiuCfg.u8FWMiuSel));
4536         }
4537 
4538     if (pstMemCfg->bEnableDynScale)
4539         {
4540         _miu_offset_to_phy(pMVDHalContext->stMiuCfg.u8FWMiuSel,GET_DS_BUFFADD(u8Idx),pinfo->u32DynScalingAddr);
4541 
4542         MVD_CtrlCfg* pCtrlCfg = HAL_MVD_GetCtrlCfg(u8Idx);
4543         pinfo->u8DynScalingDepth= pCtrlCfg->u8DynScalingDepth;
4544         pinfo->u32DynScalingBufSize= gvolInfo.DSbufsize;
4545     }
4546     else
4547     {
4548         pinfo->u32DynScalingAddr= NULL;
4549         pinfo->u8DynScalingDepth= 0;
4550         pinfo->u32DynScalingBufSize= 0;
4551     }
4552 
4553     return;
4554 }
4555 
MVD_RstFrmInfo(MS_U8 u8Idx,MVD_FrmInfoType eType)4556 E_MVD_Result MVD_RstFrmInfo(MS_U8 u8Idx, MVD_FrmInfoType eType)
4557 {
4558     E_MVD_Result eRet = E_MVD_RET_OK;
4559     MS_VIRT u32DecFrmInfoAdd = GET_DECFRMINFO_BUFFADD(u8Idx);
4560     if (NULL == u32DecFrmInfoAdd)
4561     {
4562         return E_MVD_RET_FAIL;
4563     }
4564 
4565     //printf("%s u32DecFrmInfoAdd = 0x%x\n", __FUNCTION__, u32DecFrmInfoAdd);
4566     if (E_MVD_FRMINFO_DECODE == eType)
4567     {
4568         HAL_MVD_MemWrite4Byte((u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DEC_LUMAADDR), _INIT_ADDR);
4569         HAL_MVD_MemWrite4Byte((u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DEC_CHROMAADDR), _INIT_ADDR);
4570         HAL_MVD_MemWrite4Byte((u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DEC_TIMESTAMP), _INIT_TIMESTAMP);
4571         HAL_MVD_MemWrite4Byte((u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DEC_ID_L), _INIT_ID);
4572         HAL_MVD_MemWrite4Byte((u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DEC_ID_H), _INIT_ID);
4573         HAL_MVD_MemWrite2Byte((u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DEC_PITCH), _INIT_LEN);
4574         HAL_MVD_MemWrite2Byte((u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DEC_WIDTH), _INIT_LEN);
4575         HAL_MVD_MemWrite2Byte((u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DEC_HEIGHT), _INIT_LEN);
4576         HAL_MVD_MemWrite2Byte((u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DEC_FRAMETYPE), 0xff);
4577     }
4578     else if (E_MVD_FRMINFO_DISPLAY == eType)
4579     {
4580         HAL_MVD_MemWrite4Byte((u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DISP_LUMAADDR), _INIT_ADDR);
4581         HAL_MVD_MemWrite4Byte((u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DISP_CHROMAADDR), _INIT_ADDR);
4582         HAL_MVD_MemWrite4Byte((u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DISP_TIMESTAMP), _INIT_TIMESTAMP);
4583         HAL_MVD_MemWrite4Byte((u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DISP_ID_L), _INIT_ID);
4584         HAL_MVD_MemWrite4Byte((u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DISP_ID_H), _INIT_ID);
4585         HAL_MVD_MemWrite2Byte((u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DISP_PITCH), _INIT_LEN);
4586         HAL_MVD_MemWrite2Byte((u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DISP_WIDTH), _INIT_LEN);
4587         HAL_MVD_MemWrite2Byte((u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DISP_HEIGHT), _INIT_LEN);
4588         HAL_MVD_MemWrite2Byte((u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DISP_FRAMETYPE), 0xff);
4589     }
4590     else
4591     {
4592         eRet = E_MVD_RET_INVALID_PARAM;
4593     }
4594 
4595     return eRet;
4596 }
4597 
4598 //Given the start address & the available size for the FW buffers,
4599 //Calculate the start address of each buffers.
MVD_GetFWBuffAdd(MS_VIRT u32Start,MS_U32 u32AvailLen,MVD_FWBuff * pBuff)4600 static MS_BOOL MVD_GetFWBuffAdd(MS_VIRT u32Start, MS_U32 u32AvailLen, MVD_FWBuff* pBuff)
4601 {
4602     MS_VIRT tmpAdr = u32Start;
4603 
4604     if(pBuff == NULL)
4605     {
4606         MVD_DEBUGERROR(printf("%s err: NULL pBuff\n", __FUNCTION__));
4607         return FALSE;
4608     }
4609     tmpAdr += MVD_FW_CODE_LEN;
4610     GET_FW_BUFFADD_ALIGN(tmpAdr, FW_BUFF_ALIGN, MVD3_FW_VOL_INFO_BUF_LEN, pBuff->pu8MVDGetVolBufStart);
4611     GET_FW_BUFFADD_ALIGN(tmpAdr, FW_BUFF_ALIGN, MVD3_FW_FRAME_INFO_BUF_LEN, pBuff->pu8MVDGetFrameInfoBufStart);
4612     GET_FW_BUFFADD_ALIGN(tmpAdr, FW_BUFF_ALIGN, MVD3_FW_DIVX_INFO_BUF_LEN, pBuff->pu8MVDSetHeaderBufStart);
4613     GET_FW_BUFFADD_ALIGN(tmpAdr, FW_BUFF_ALIGN,
4614         (MVD3_FW_USER_DATA_BUF_LEN+MVD3_FW_USER_DATA_BUF_BACKUP_LEN), pBuff->u32UserDataBuf);
4615     //MVD3_FW_USER_DATA_BUF_BACKUP_LEN is used as CC decoding buffer for MVD_SUPPORT_X4_CC
4616 
4617     GET_FW_BUFFADD_ALIGN(tmpAdr, FW_BUFF_ALIGN, MVD3_FW_SLQ_TAB_TMPBUF_LEN, pBuff->u32MVDFWSLQTABTmpbufAdr);
4618     GET_FW_BUFFADD(tmpAdr, MVD_FW_SLQTBL_PTS_BUF_LEN, pBuff->u32MVDFWPtsTblAddr);
4619     GET_FW_BUFFADD(tmpAdr, MVD_FW_DYN_SCALE_BUF_LEN, pBuff->u32DynScalingAdd);
4620     GET_FW_BUFFADD(tmpAdr, MVD_FW_SCALER_INFO_BUF_LEN, pBuff->u32ScalerInfoAdd);
4621     GET_FW_BUFFADD(tmpAdr, MVD_FW_DECFRM_INFO_BUF_LEN, pBuff->u32DecFrmInfoAdd);
4622     GET_FW_BUFFADD(tmpAdr, MVD_FW_VBBU_TABLE_LEN, pBuff->u32VBBUTableAdd);
4623 
4624 
4625     MVD_DEBUGINFO(printf("set pu8MVDGetVolBufStart=%lx\n", (unsigned long)pBuff->pu8MVDGetVolBufStart));
4626     MVD_DEBUGINFO(printf("set pu8MVDGetFrameInfoBufStart=%lx\n", (unsigned long)pBuff->pu8MVDGetFrameInfoBufStart));
4627     MVD_DEBUGINFO(printf("set pu8MVDSetHeaderBufStart=%lx\n", (unsigned long)pBuff->pu8MVDSetHeaderBufStart));
4628     MVD_DEBUGINFO(printf("u32UserDataBuf start=%lx\n", (unsigned long)pBuff->u32UserDataBuf));
4629     MVD_DEBUGINFO(printf("u32MVDFWSLQTABTmpbufAdr start=%lx\n", (unsigned long)pBuff->u32MVDFWSLQTABTmpbufAdr));
4630     MVD_DEBUGINFO(printf("PtsTblAddr start=%lx\n", (unsigned long)pBuff->u32MVDFWPtsTblAddr));
4631     MVD_DEBUGINFO(printf("u32DynScalingAdd start=%lx\n", (unsigned long)pBuff->u32DynScalingAdd));
4632     MVD_DEBUGINFO(printf("ScalerInfo start=%lx end=%lx\n",
4633            (unsigned long)pBuff->u32ScalerInfoAdd, (pBuff->u32ScalerInfoAdd+MVD_FW_SCALER_INFO_BUF_LEN)));
4634     MVD_DEBUGINFO(printf("DecFrmInfo start=%lx end=%lx\n",
4635            (unsigned long)pBuff->u32DecFrmInfoAdd, (pBuff->u32DecFrmInfoAdd+MVD_FW_DECFRM_INFO_BUF_LEN)));
4636 
4637     MS_U32 u32ShMemBoundary = (MVD_FW_CODE_LEN==MVD_FW_CODE_LEN_V00) ? MVD_FW_MPOOL_START_OFFSET : MVD_FW_TASK_OFFSET;
4638 #if v3_temp
4639 
4640     if ((pBuff->u32VBBUTableAdd+MVD_FW_VBBU_TABLE_LEN-u32Start) > u32ShMemBoundary)
4641     {
4642         //shared memory should not overlap with FW memory pool.
4643         MVD_DEBUGERROR(printf("%s err: 0x%lx out of memory boundary!\n", __FUNCTION__,
4644                        (pBuff->u32VBBUTableAdd+MVD_FW_VBBU_TABLE_LEN-u32Start)));
4645         return FALSE;
4646     }
4647 #else
4648      if ((pBuff->u32DecFrmInfoAdd+MVD_FW_DECFRM_INFO_BUF_LEN-u32Start) > u32ShMemBoundary)
4649     {
4650         //shared memory should not overlap with FW memory pool.
4651         MVD_DEBUGERROR(printf("%s err: 0x%x out of memory boundary!\n", __FUNCTION__,
4652                        (pBuff->u32DecFrmInfoAdd+MVD_FW_DECFRM_INFO_BUF_LEN-u32Start)));
4653         return FALSE;
4654     }
4655 #endif
4656 
4657     return TRUE;
4658 }
4659 
4660 //Set buffer address to f/w
4661 //Init the memory erea if necessary
MVD_SetFWBuffAdd(MS_U8 u8Idx,MVD_FWBuff * pBuff)4662 static MS_BOOL MVD_SetFWBuffAdd(MS_U8 u8Idx, MVD_FWBuff* pBuff)
4663 {
4664     MS_U32 i;
4665     MVD_SrcMode curSrcMode = E_MVD_SRC_UNKNOWN;
4666     MVD_MEMCfg* pstMemCfg = NULL;
4667     MVD_CtrlCfg* pCtrlCfg = NULL;
4668 
4669     if(pBuff == NULL)
4670     {
4671         MVD_DEBUGERROR(printf("%s err: NULL pBuff\n", __FUNCTION__));
4672         return FALSE;
4673     }
4674 
4675     pstMemCfg = HAL_MVD_GetMEMCfg(u8Idx);
4676 
4677     MVD_DEBUGINFO(printf("\nMIU is (shm,hw,fw)=(%x,%x,%x)\n",u8SHMMiuSel,pstMemCfg->u8HWMiuSel,pstMemCfg->u8FWMiuSel));
4678 
4679     curSrcMode = HAL_MVD_GetSrcMode(u8Idx);
4680 
4681     HAL_MVD_SetVolInfoBufferAddr(u8Idx, pBuff->pu8MVDGetVolBufStart);
4682     _MVD_Memset(pBuff->pu8MVDGetVolBufStart, 0, MVD3_FW_VOL_INFO_BUF_LEN);
4683 
4684     pBuff->u32VolAdd = pBuff->pu8MVDGetVolBufStart;
4685 
4686     _miu_offset_to_phy(pMVDHalContext->stMiuCfg.u8FWMiuSel,pBuff->u32VolAdd,pBuff->u32VolAdd);
4687 
4688     pBuff->u32VolAdd = HAL_MVD_PA2NonCacheSeg(pBuff->u32VolAdd);
4689     MVD_DEBUGINFO(printf("gvolInfo = 0x%lx, volBuf=0x%lx\n", (unsigned long)pBuff->u32VolAdd, (unsigned long)pBuff->pu8MVDGetVolBufStart));
4690 
4691     HAL_MVD_SetFrameInfoBufferAddr(u8Idx, pBuff->pu8MVDGetFrameInfoBufStart);
4692     _MVD_Memset(pBuff->pu8MVDGetFrameInfoBufStart, 0, MVD3_FW_FRAME_INFO_BUF_LEN);
4693 
4694     HAL_MVD_SetHeaderBufferAddr(u8Idx, pBuff->pu8MVDSetHeaderBufStart);
4695     HAL_MVD_SetUserDataBuf(u8Idx, pBuff->u32UserDataBuf, MVD3_FW_USER_DATA_BUF_LEN);
4696     pCtrlCfg = HAL_MVD_GetCtrlCfg(u8Idx);
4697     pCtrlCfg->u32UsrDataRd = pBuff->u32UserDataBuf;
4698 
4699 
4700     if((curSrcMode != E_MVD_TS_FILE_MODE)
4701     && (curSrcMode != E_MVD_TS_MODE))
4702     {
4703         _MVD_Memset(pBuff->u32MVDFWSLQTABTmpbufAdr, 0, MVD3_FW_SLQ_TAB_TMPBUF_LEN);
4704         HAL_MVD_MemWrite4Byte(pBuff->u32MVDFWSLQTABTmpbufAdr, 0xBE010000UL);
4705         HAL_MVD_MemWrite4Byte(pBuff->u32MVDFWSLQTABTmpbufAdr+4, 0x000000FAUL);
4706 
4707         HAL_MVD_SetPtsTblAddr(u8Idx, pBuff->u32MVDFWPtsTblAddr);
4708         for (i=0; i<MVD_FW_SLQTBL_PTS_BUF_LEN; i+=MVD_FW_SLQTBL_PTS_LEN)
4709         {
4710             HAL_MVD_MemWrite4Byte(pBuff->u32MVDFWPtsTblAddr+i, 0);     //byteCnt
4711             HAL_MVD_MemWrite4Byte(pBuff->u32MVDFWPtsTblAddr+i+4, 0);   //dummyPktCnt
4712             HAL_MVD_MemWrite4Byte(pBuff->u32MVDFWPtsTblAddr+i+8, 0);   //idLow
4713             HAL_MVD_MemWrite4Byte(pBuff->u32MVDFWPtsTblAddr+i+12, 0);  //idHigh
4714 
4715             HAL_MVD_MemWrite4Byte(pBuff->u32MVDFWPtsTblAddr+i+16, MVD_NULLPKT_PTS);  //PTS
4716             HAL_MVD_MemWrite4Byte(pBuff->u32MVDFWPtsTblAddr+i+20, 0);  //reserved0
4717             HAL_MVD_MemWrite4Byte(pBuff->u32MVDFWPtsTblAddr+i+24, 0);  //reserved1
4718             HAL_MVD_MemWrite4Byte(pBuff->u32MVDFWPtsTblAddr+i+28, 0);  //reserved2
4719         }
4720         //MS_ASSERT((u32MVDFWPtsTblAddr+MVD_FW_SLQTBL_PTS_BUF_LEN)<=(u32start+u32len));
4721         MVD_DEBUGINFO(printf("PTS tbl start=%lx end=%lx\n",
4722                (unsigned long)pBuff->u32MVDFWPtsTblAddr, (unsigned long)(pBuff->u32MVDFWPtsTblAddr+MVD_FW_SLQTBL_PTS_BUF_LEN)));
4723 
4724         pBuff->u32VBBUTableAdd = VBBU_TABLE_START+u8Idx*0x100000;
4725     }
4726 
4727     if (pstMemCfg->bEnableDynScale)
4728     {
4729         HAL_MVD_SetDynamicScaleAddr(u8Idx, pBuff->u32DynScalingAdd);
4730         HAL_MVD_EnableDynamicScale(u8Idx,0); //default old DS style
4731         pCtrlCfg->u8DynScalingDepth = 32; //HAL_MVD_GetDynamicScaleDepth
4732         MVD_DEBUGINFO(printf("u8EnableMIUSel    = 0x%x\n", pMVDHalContext->stMiuCfg.u8FWMiuSel));
4733         MVD_DEBUGINFO(printf("u32DynScalingAddr= 0x%lx\n", (unsigned long)pBuff->u32DynScalingAdd));
4734         MVD_DEBUGINFO(printf("u8DynScalingDepth= 0x%x\n", pCtrlCfg->u8DynScalingDepth));
4735     }
4736     MVD_DEBUGINFO(printf("DynScaling start=%lx end=%lx\n",
4737            (unsigned long)pBuff->u32DynScalingAdd, (unsigned long)(pBuff->u32DynScalingAdd+MVD_FW_DYN_SCALE_BUF_LEN)));
4738 
4739     HAL_MVD_SetDecFrmInfoAddr(u8Idx, pBuff->u32DecFrmInfoAdd);
4740 
4741     MVD_RstFrmInfo(u8Idx, E_MVD_FRMINFO_DECODE);
4742     MVD_RstFrmInfo(u8Idx, E_MVD_FRMINFO_DISPLAY);
4743     MVD_DEBUGINFO(printf("DecFrmInfo start=%lx\n", (unsigned long)pBuff->u32DecFrmInfoAdd));
4744 
4745     if (curSrcMode == E_MVD_SLQ_TBL_MODE)
4746     {
4747         HAL_MVD_SLQTblInit(u8Idx);
4748     }
4749 
4750     return TRUE;
4751 }
4752 
4753 #ifdef VDEC3
4754 #else
MVD_IsNextDispFrmRdy(MS_U8 u8Idx)4755 static MS_BOOL MVD_IsNextDispFrmRdy(MS_U8 u8Idx)
4756 {
4757     #define NXT_DISP_TIMEOUT 20000//0x20
4758     MS_U32 u32TimeOut = 0;
4759     MVD_CmdArg mvdcmd;
4760 
4761     HAL_MVD_ResetHandShake(u8Idx, MVD_HANDSHAKE_GET_NXTDISPFRM);
4762     SETUP_CMDARG(mvdcmd);
4763     SET_DECNUM(mvdcmd, u8Idx);
4764     SET_CMD_RET_FALSE(CMD_GET_NEXTDISPFRM, &mvdcmd);
4765 
4766     while(!HAL_MVD_IsCmdFinished(u8Idx, MVD_HANDSHAKE_GET_NXTDISPFRM) && (u32TimeOut < NXT_DISP_TIMEOUT))
4767     {
4768         u32TimeOut++;
4769     }
4770     if(u32TimeOut >= NXT_DISP_TIMEOUT)
4771     {
4772         MVD_DEBUGERROR( printf( "Ctrl: 0x%x fail!!\r\n", CMD_GET_NEXTDISPFRM ) );
4773         return FALSE;
4774     }
4775     return TRUE;
4776 }
4777 #endif
4778 
HAL_MVD_GetExtDispInfo(MS_U8 u8Idx,MVD_ExtDispInfo * pInfo)4779 void HAL_MVD_GetExtDispInfo(MS_U8 u8Idx, MVD_ExtDispInfo* pInfo)
4780 {
4781     pInfo->u16VSize  = MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_DISP_V_SIZE, sizeof(MS_U16));
4782     pInfo->u16HSize  = MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_DISP_H_SIZE, sizeof(MS_U16));
4783     pInfo->u16VOffset = MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_CENTRE_V_OFFSET, sizeof(MS_U16));
4784     pInfo->u16HOffset = MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_CENTRE_H_OFFSET, sizeof(MS_U16));
4785 }
4786 
HAL_MVD_GetFrmInfo(MS_U8 u8Idx,MVD_FrmInfoType eType,MVD_FrmInfo * pInfo)4787 E_MVD_Result HAL_MVD_GetFrmInfo(MS_U8 u8Idx, MVD_FrmInfoType eType, MVD_FrmInfo* pInfo)
4788 {
4789     MS_U32 u32Id = MVD_GetStreamId(u8Idx);
4790     MS_U8 u8VPUIdx = HAL_VPU_EX_GetTaskId(u32Id);
4791     E_MVD_Result eRet = E_MVD_RET_OK;
4792     MS_VIRT u32DecFrmInfoAdd = GET_DECFRMINFO_BUFFADD(u8Idx);
4793 #if v3_temp
4794     MVD_MEMCfg* pstMemCfg = NULL;
4795     pstMemCfg = HAL_MVD_GetMEMCfg(u8Idx);
4796 #endif
4797     if (NULL == pInfo)
4798     {
4799         MVD_DEBUGERROR(printf("GetFrmInfo NULL pInfo!\n"));
4800         return E_MVD_RET_INVALID_PARAM;
4801     }
4802     if (NULL == u32DecFrmInfoAdd)
4803     {
4804         MVD_DEBUGERROR(printf("GetFrmInfo NULL u32DecFrmInfoAdd!\n"));
4805         return E_MVD_RET_FAIL;
4806     }
4807     //printf("%s u32DecFrmInfoAdd = 0x%x\n", __FUNCTION__, u32DecFrmInfoAdd);
4808 
4809     if (E_MVD_FRMINFO_DECODE == eType)
4810     {
4811         pInfo->u32LumaAddr  = HAL_MVD_MemRead4Byte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DEC_LUMAADDR);
4812         pInfo->u32ChromaAddr= HAL_MVD_MemRead4Byte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DEC_CHROMAADDR);
4813         pInfo->u32TimeStamp = _90K_TO_MS(HAL_MVD_MemRead4Byte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DEC_TIMESTAMP));
4814         pInfo->u32ID_L  = HAL_MVD_MemRead4Byte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DEC_ID_L);
4815         pInfo->u32ID_H  = HAL_MVD_MemRead4Byte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DEC_ID_H);
4816         pInfo->u16Pitch = HAL_MVD_MemRead2Byte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DEC_PITCH);
4817         pInfo->u16Width = HAL_MVD_MemRead2Byte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DEC_WIDTH);
4818         pInfo->u16Height= HAL_MVD_MemRead2Byte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DEC_HEIGHT);
4819         pInfo->eFrmType = (MVD_PicType)HAL_MVD_MemRead2Byte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DEC_FRAMETYPE);
4820     }
4821     else if (E_MVD_FRMINFO_DISPLAY == eType)
4822     {
4823         pInfo->u32LumaAddr  = HAL_MVD_MemRead4Byte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DISP_LUMAADDR);
4824         pInfo->u32ChromaAddr= HAL_MVD_MemRead4Byte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DISP_CHROMAADDR);
4825         pInfo->u32TimeStamp = _90K_TO_MS(HAL_MVD_MemRead4Byte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DISP_TIMESTAMP));
4826         pInfo->u32ID_L  = HAL_MVD_MemRead4Byte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DISP_ID_L);
4827         pInfo->u32ID_H  = HAL_MVD_MemRead4Byte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DISP_ID_H);
4828         pInfo->u16Pitch = HAL_MVD_MemRead2Byte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DISP_PITCH);
4829         pInfo->u16Width = HAL_MVD_MemRead2Byte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DISP_WIDTH);
4830         pInfo->u16Height= HAL_MVD_MemRead2Byte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DISP_HEIGHT);
4831         pInfo->eFrmType = (MVD_PicType)HAL_MVD_MemRead2Byte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_DISP_FRAMETYPE);
4832     }
4833 
4834     else if (E_MVD_FRMINFO_NEXT_DISPLAY == eType)
4835     {
4836 #if v3_temp
4837         DISPQ_IN_DRAM* pTemp = (DISPQ_IN_DRAM*)(MS_PA2KSEG1(pstMemCfg->u32FWCodeAddr+DISP_QUEUE_START+ u8VPUIdx*0x100000));
4838         if (pTemp->dispQ_rd == pTemp->dispQ_wr)
4839         {
4840             MVD_DEBUGINFO(printf("NextDispFrm not ready!\n"));
4841             return E_MVD_RET_FAIL;
4842         }
4843         pInfo->u16FrmIdx = pTemp->disp_info[pTemp->dispQ_rd].u16NextDispFrameIdx;
4844 
4845         pInfo->u32LumaAddr  = pTemp->disp_info[pTemp->dispQ_rd].u32NextDispLumaAddr;
4846 
4847         pInfo->u32ChromaAddr= pTemp->disp_info[pTemp->dispQ_rd].u32NextDispChromaAddr;
4848         // 64BIT_PTS = (TimeStamp | (ID_H<<32)) , unit: 90K
4849         pInfo->u32TimeStamp = pTemp->disp_info[pTemp->dispQ_rd].u32NextDispTimeStamp;
4850 
4851         pInfo->u32ID_H  = pTemp->disp_info[pTemp->dispQ_rd].u32NextDispID_H;
4852 
4853         pInfo->u16Width = pTemp->disp_info[pTemp->dispQ_rd].u16NextDispWidth;
4854 
4855         if(HAL_MVD_IsMcuMode(u8Idx))
4856         {
4857             //bit[19-20] Picture format,
4858             //bit[18-17] Disp times, 1~3
4859             //bit[16] Top field first , 0-> bottom first, 1-> top first
4860             //bit[15:8] Range reduction of luma data
4861             //bit[7:0] Range reduction of chroma data
4862             pInfo->u32ID_L = (MS_U32)pTemp->disp_info[pTemp->dispQ_rd].u8NextDispRangeRed_UV
4863                                              | (MS_U32)(pTemp->disp_info[pTemp->dispQ_rd].u8NextDispRangeRed_Y << 8)
4864                                              | (MS_U32)(pTemp->disp_info[pTemp->dispQ_rd].u16ExtData << 16)
4865                                              | (MS_U32)(pTemp->disp_info[pTemp->dispQ_rd].u8Progressive << 19);
4866 
4867             if (pInfo->u16Width & MVD_WIDTH_ALIGN_MASK)
4868             {
4869                 pInfo->u16Width = ((pInfo->u16Width >> MVD_WIDTH_ALIGN_BITS) + 1) << MVD_WIDTH_ALIGN_BITS;
4870             }
4871         }
4872         else
4873         {
4874             pInfo->u32ID_L  = pTemp->disp_info[pTemp->dispQ_rd].u32DispID_L;
4875         }
4876         pInfo->u16Pitch = pTemp->disp_info[pTemp->dispQ_rd].u16NextDispPitch;
4877         pInfo->u16Height= pTemp->disp_info[pTemp->dispQ_rd].u16NextDispHeight;
4878         pInfo->eFrmType = pTemp->disp_info[pTemp->dispQ_rd].u16NextDispeFrameType;
4879 
4880         pTemp->bUsedByOutside[pInfo->u16FrmIdx]++;
4881 
4882         pTemp->dispQ_rd = (pTemp->dispQ_rd+1)%DISPQ_SIZE;
4883         MsOS_FlushMemory();
4884 #else
4885         if (!MVD_IsNextDispFrmRdy(u8Idx))
4886         {
4887             MVD_DEBUGINFO(printf("NextDispFrm not ready!\n"));
4888             return E_MVD_RET_FAIL;
4889         }
4890         pInfo->u16FrmIdx= HAL_MVD_MemRead2Byte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_NEXTDISP_FRAMEIDX);
4891         if (pInfo->u16FrmIdx  == 0xFFFF)
4892         {
4893             MVD_DEBUGINFO(printf("GetFrmInfo no available frame!\n"));
4894             return E_MVD_RET_FAIL;
4895         }
4896         pInfo->u32LumaAddr  = HAL_MVD_MemRead4Byte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_NEXTDISP_LUMAADDR);
4897         pInfo->u32ChromaAddr= HAL_MVD_MemRead4Byte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_NEXTDISP_CHROMAADDR);
4898         // 64BIT_PTS = (TimeStamp | (ID_H<<32)) , unit: 90K
4899         pInfo->u32TimeStamp = (HAL_MVD_MemRead4Byte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_NEXTDISP_TIMESTAMP));
4900         pInfo->u32ID_H  = HAL_MVD_MemRead4Byte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_NEXTDISP_ID_H);
4901         pInfo->u16Width = HAL_MVD_MemRead2Byte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_NEXTDISP_WIDTH);
4902         if(HAL_MVD_IsMcuMode(u8Idx))
4903         {
4904             //bit[18-17] Disp times, 1~3
4905             //bit[16] Top field first , 0-> bottom first, 1-> top first
4906             //bit[15:8] Range reduction of luma data
4907             //bit[7:0] Range reduction of chroma data
4908             pInfo->u32ID_L = (MS_U32)HAL_MVD_MemReadByte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_NEXTDISP_RANGERED_UV)
4909                                              | (MS_U32)(HAL_MVD_MemReadByte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_NEXTDISP_RANGERED_Y) << 8)
4910                                              | (MS_U32)(HAL_MVD_MemReadByte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_NEXTDISP_EXT_DATA) << 16);
4911             if (pInfo->u16Width & MVD_WIDTH_ALIGN_MASK)
4912             {
4913                 pInfo->u16Width = ((pInfo->u16Width >> MVD_WIDTH_ALIGN_BITS) + 1) << MVD_WIDTH_ALIGN_BITS;
4914             }
4915         }
4916         else
4917         {
4918             pInfo->u32ID_L  = HAL_MVD_MemRead4Byte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_NEXTDISP_ID_L);
4919         }
4920         pInfo->u16Pitch = HAL_MVD_MemRead2Byte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_NEXTDISP_PITCH);
4921         pInfo->u16Height= HAL_MVD_MemRead2Byte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_NEXTDISP_HEIGHT);
4922         pInfo->eFrmType = (MVD_PicType)HAL_MVD_MemRead2Byte(u32DecFrmInfoAdd + OFFSET_DECFRAMEINFO_NEXTDISP_FRAMETYPE);
4923 #endif
4924 #if 0
4925     printf("NxtFrm:: Idx=0x%x, ", pInfo->u16FrmIdx);
4926     printf("Type=0x%x, ", pInfo->eFrmType      );
4927     printf("Luma=0x%x, ", pInfo->u32LumaAddr  );
4928     printf("Chroma=0x%x, ", pInfo->u32ChromaAddr);
4929     printf("Pts=%lu, ", pInfo->u32TimeStamp );
4930     printf("ID_H=%lu, ", pInfo->u32ID_H      );
4931     printf("ID_L=0x%x\n", pInfo->u32ID_L      );
4932 #endif
4933         MVD_DBG_STS(printf("<<< drvMVD pts,idH = %lu, %lu\n", pInfo->u32TimeStamp, pInfo->u32ID_H));
4934     }
4935     else
4936     {
4937         eRet = E_MVD_RET_INVALID_PARAM;
4938     }
4939 
4940     if ((pInfo->u32LumaAddr  == _INIT_ADDR) || (pInfo->u32ChromaAddr== _INIT_ADDR) ||
4941         (pInfo->u16Pitch == _INIT_LEN) || (pInfo->u16Width == _INIT_LEN) ||
4942         (pInfo->u16Height== _INIT_LEN))
4943     {
4944         MVD_DEBUGINFO(printf("GetFrmInfo not ready!\n"));
4945         return E_MVD_RET_FAIL;
4946     }
4947 
4948     _miu_offset_to_phy(pMVDHalContext->stMiuCfg.u8FWMiuSel,(pInfo->u32LumaAddr * 8),pInfo->u32LumaAddr);
4949     _miu_offset_to_phy(pMVDHalContext->stMiuCfg.u8FWMiuSel,(pInfo->u32ChromaAddr * 8),pInfo->u32ChromaAddr);
4950 
4951     //printf("===> Luma=0x%x, Chroma=0x%x\n", pInfo->u32LumaAddr, pInfo->u32ChromaAddr);
4952     return eRet;
4953 }
4954 
4955 
4956 
HAL_MVD_SetDynScalingParam(MS_U8 u8Idx,MS_PHY u32StAddr,MS_SIZE u32Size)4957 E_MVD_Result HAL_MVD_SetDynScalingParam(MS_U8 u8Idx, MS_PHY u32StAddr, MS_SIZE u32Size)
4958 {
4959     #define SCALER_INFO_TIMEOUT 0x1000
4960     MS_U32 u32TimeOut = 0;
4961     MS_VIRT u32SrcAdd = NULL;
4962     MS_U32 i;
4963     MS_VIRT u32ScalerInfoAdd = GET_XCINFO_BUFFADD(u8Idx);
4964     MVD_MEMCfg* pstMemCfg = HAL_MVD_GetMEMCfg(u8Idx);
4965 
4966     if ((u32StAddr==NULL) || (u32Size==0) || (u32Size>MVD_FW_SCALER_INFO_BUF_LEN))
4967     {
4968         MVD_DEBUGERROR(printf("%s invalid para u32StAddr=0x%lx, u32Size=0x%lx\n",
4969                        __FUNCTION__, (unsigned long)u32StAddr, (unsigned long)u32Size));
4970         return E_MVD_RET_INVALID_PARAM;
4971     }
4972     if (TRUE != pstMemCfg->bEnableDynScale)
4973     {
4974         MVD_DEBUGERROR(printf("%s !bEnableDynScale\n", __FUNCTION__));
4975         return E_MVD_RET_FAIL;
4976     }
4977 
4978     //copy data
4979     u32SrcAdd = HAL_MVD_PA2NonCacheSeg(u32StAddr);
4980     u32Size = ((u32Size+3)>>2)<<2;
4981     MVD_DEBUGINFO(printf("u32Size= 0x%lx, u32SrcAdd= 0x%lx\n", (unsigned long)u32Size, (unsigned long)u32SrcAdd));
4982     for (i=0; i<u32Size; i=i+4)
4983     {
4984         HAL_MVD_MemWrite4Byte(u32ScalerInfoAdd+i, *(volatile MS_U32*)(u32SrcAdd+i));
4985         MVD_DEBUGINFO(printf("0x%lx = 0x%x\n", (unsigned long)(u32ScalerInfoAdd+i), HAL_MVD_MemRead4Byte(u32ScalerInfoAdd+i)));
4986     }
4987 
4988     //notify f/w
4989     HAL_MVD_ResetHandShake(u8Idx, MVD_HANDSHAKE_SCALER_INFO);
4990     if (TRUE!=HAL_MVD_SetScalerInfoAddr(u8Idx, u32ScalerInfoAdd,((MS_U8*)u32SrcAdd)[0])) //Set the buffer address (MIU offset) to f/w
4991     {
4992         MVD_DEBUGERROR(printf("%s fail to set ScalerInfoAdd\n", __FUNCTION__));
4993         return E_MVD_RET_FAIL;
4994     }
4995 
4996     //check f/w already handle the data
4997     while((TRUE!=HAL_MVD_IsCmdFinished(u8Idx, MVD_HANDSHAKE_SCALER_INFO)) && (u32TimeOut < SCALER_INFO_TIMEOUT))
4998     {
4999         u32TimeOut++;
5000     }
5001     if(u32TimeOut >= SCALER_INFO_TIMEOUT)
5002     {
5003         MVD_DEBUGERROR(printf("%s timeout!!!\n", __FUNCTION__));
5004         return E_MVD_RET_FAIL;
5005     }
5006 
5007     //clear ack bit
5008     HAL_MVD_ClearCmdFinished(u8Idx, MVD_HANDSHAKE_SCALER_INFO);
5009 
5010     MVD_DEBUGINFO(printf("=====> %s u32TimeOut = 0x%x\n", __FUNCTION__, u32TimeOut));
5011     return E_MVD_RET_OK;
5012 }
5013 
5014 //Map driver CodecType to firmware CodecType
MVD_MapCodecType(MVD_CodecType type)5015 static MS_U8 MVD_MapCodecType(MVD_CodecType type)
5016 {
5017     MS_U8 u8type = 0xff;
5018     switch (type)
5019     {
5020         case E_MVD_CODEC_MPEG2:
5021             u8type = CODEC_MPEG2;
5022             break;
5023         case E_MVD_CODEC_MPEG4:
5024             u8type = CODEC_MPEG4;
5025             break;
5026         case E_MVD_CODEC_MPEG4_SHORT_VIDEO_HEADER:
5027             u8type = CODEC_MPEG4_SHORT_VIDEO_HEADER;
5028             break;
5029         case E_MVD_CODEC_DIVX311:
5030             u8type = CODEC_DIVX311;
5031             break;
5032 
5033         case E_MVD_CODEC_FLV:
5034             u8type = 0x03;
5035             break;
5036 
5037         case E_MVD_CODEC_VC1_MAIN: //RCV
5038             u8type = 0x05;
5039             break;
5040 
5041         case E_MVD_CODEC_VC1_ADV:  //VC1
5042             u8type = 0x04;
5043             break;
5044 
5045         default:
5046             break;
5047     }
5048 
5049     return u8type;
5050 }
5051 
5052 //Map driver SrcType to firmware SrcType
MVD_MapSrcMode(MVD_SrcMode mode)5053 static MS_U8 MVD_MapSrcMode(MVD_SrcMode mode)
5054 {
5055     MS_U8 u8mode = 0xff;
5056     switch (mode)
5057     {
5058         case E_MVD_TS_MODE:
5059             u8mode = STREAM_MODE;
5060             break;
5061         case E_MVD_FILE_MODE:
5062             u8mode = FILE_MODE;
5063             break;
5064         case E_MVD_SLQ_MODE:
5065             u8mode = SLQ_MODE;
5066             break;
5067         case E_MVD_SLQ_TBL_MODE:
5068             u8mode = SLQ_TBL_MODE;
5069             break;
5070         case E_MVD_TS_FILE_MODE:
5071             u8mode = TS_FILE_MODE;
5072             break;
5073 
5074         default:
5075             break;
5076     }
5077 
5078     return u8mode;
5079 }
5080 
5081 
MVD_CheckFrmBuffSizeMin(MVD_FWCfg * fwCfg,MVD_MEMCfg * memCfg)5082 static MS_BOOL MVD_CheckFrmBuffSizeMin(MVD_FWCfg* fwCfg, MVD_MEMCfg* memCfg)
5083 {
5084     MS_BOOL ret = TRUE;
5085 
5086     if (_IS_VC1(fwCfg->eCodecType))
5087     {
5088         MVD_DEBUGERROR(printf("Framebuffer size(0x%lx) < (0x%x+0x%lx)!\n",
5089             (unsigned long)memCfg->u32FBSize, (MVD_HD_FBSIZE*MVD_FBNUM_MIN), MVD_HW_BUF_TOTAL_LEN));
5090         ret = FALSE;
5091     }
5092     else if (memCfg->u32FBSize < (MVD4_MPEG_FBSIZE_SDMIN+MVD_HW_BUF_TOTAL_LEN))
5093     {
5094         MVD_DEBUGERROR(printf("Framebuffer size(0x%lx) < (0x%x+0x%lx)\n",
5095             (unsigned long)memCfg->u32FBSize, MVD4_MPEG_FBSIZE_SDMIN, MVD_HW_BUF_TOTAL_LEN));
5096         ret = FALSE;
5097     }
5098     return ret;
5099 }
5100 
MVD_GetUsedFrmBuffSize(MS_U8 u8FBMode,MS_U8 u8FBNum)5101 MS_U32 MVD_GetUsedFrmBuffSize(MS_U8 u8FBMode, MS_U8 u8FBNum)
5102 {
5103     MS_U32 u32Size = 0;
5104     if (MVD3_DHD_MODE == u8FBMode)
5105     {
5106         u32Size = MVD_DHD_FBSIZE;
5107         if (MVD_FBNUM_MAX == u8FBNum)
5108         {
5109             u32Size *= MVD_FBNUM_MAX;
5110         }
5111         else if (MVD_FBNUM_MIN == u8FBNum)
5112         {
5113             u32Size *= MVD_FBNUM_MIN;
5114         }
5115     }
5116     else if (MVD3_HD_MODE == u8FBMode)
5117     {
5118         u32Size = MVD_HD_FBSIZE;
5119         if (MVD_FBNUM_MAX == u8FBNum)
5120         {
5121             u32Size *= MVD_FBNUM_MAX;
5122         }
5123         else if (MVD_FBNUM_MIN == u8FBNum)
5124         {
5125             u32Size *= MVD_FBNUM_MIN;
5126         }
5127     }
5128     else if (MVD3_SD_MODE == u8FBMode)
5129     {
5130         u32Size = MVD4_MPEG_FBSIZE_SDMIN;
5131     }
5132     return u32Size;
5133 }
5134 
5135 //------------------------------------------------------------------------------
5136 /// Determine u8FBMode & u8FBNum according to the assigned FBSize
5137 //------------------------------------------------------------------------------
HAL_MVD_CheckFrmBuffSize(MS_U8 u8Idx,MVD_FWCfg * fwCfg,MVD_MEMCfg * memCfg)5138 MS_BOOL HAL_MVD_CheckFrmBuffSize(MS_U8 u8Idx, MVD_FWCfg* fwCfg, MVD_MEMCfg* memCfg)
5139 {
5140     MS_BOOL ret = TRUE;
5141     MS_U8* pu8FBMode = &(fwCfg->u8FBMode);
5142     MS_U8* pu8FBNum  = &(fwCfg->u8FBNum);
5143     MS_U32 u32AvailFrmBuffSize = memCfg->u32FBSize - MVD_HW_BUF_TOTAL_LEN;
5144 
5145     ret = MDrv_MVD_AUTH_IPCheck(fwCfg->eCodecType,&(memCfg->bSupportSDModeOnly));
5146     if(ret == FALSE)
5147     {
5148         return FALSE;
5149     }
5150 
5151     *pu8FBMode = 0xff;
5152 
5153 #if defined(MVD_SUPPORT_SD_ONLY)
5154     *pu8FBMode = MVD3_SD_MODE;
5155 #else
5156     if(memCfg->bSupportSDModeOnly)
5157     {
5158         *pu8FBMode = MVD3_SD_MODE;
5159     }
5160 #endif //MVD_SUPPORT_SD_ONLY
5161 
5162     //For SD only cases: defined(MVD_SUPPORT_SD_ONLY) and bSupportSDModeOnly
5163     if (MVD3_SD_MODE == *pu8FBMode)
5164     {
5165         ret = MVD_CheckFrmBuffSizeMin(fwCfg, memCfg);
5166 
5167         //set frmBuffNum as 4
5168         *pu8FBNum = MVD_FBNUM_MIN;
5169         MVD_DEBUGINFO(printf("[MVD_SD_MODE] u8FBNum=%d, FBSize=0x%lx\n", *pu8FBNum, (unsigned long)memCfg->u32FBSize));
5170         goto _GET_USED_SIZE;
5171     }
5172 
5173     if (u32AvailFrmBuffSize >= (MVD_DHD_FBSIZE*MVD_FBNUM_MAX))
5174     {
5175         MVD_DEBUGINFO(printf("%s(%d) DHD*5\n", __FUNCTION__, __LINE__));
5176         //Dual HD: (1920*2)*1088 or 1920*(1088*2)
5177         if (!_IS_VC1(fwCfg->eCodecType)) //mpeg2/4
5178         {
5179             *pu8FBMode = MVD3_DHD_MODE;
5180         }
5181         else
5182         {
5183             *pu8FBMode = MVD3_DHD_MODE_MIN;
5184         }
5185         *pu8FBNum = MVD_FBNUM_MAX;
5186     }
5187     else if (u32AvailFrmBuffSize >= (MVD_DHD_FBSIZE*MVD_FBNUM_MIN))
5188     {
5189         MVD_DEBUGINFO(printf("%s(%d) DHD*4\n", __FUNCTION__, __LINE__));
5190         //Dual HD: (1920*2)*1088 or 1920*(1088*2)
5191         if (!_IS_VC1(fwCfg->eCodecType)) //mpeg2/4
5192         {
5193             *pu8FBMode = MVD3_DHD_MODE;
5194         }
5195         else
5196         {
5197             *pu8FBMode = MVD3_DHD_MODE_MIN;
5198         }
5199         *pu8FBNum = MVD_FBNUM_MIN;
5200     }
5201     else if (u32AvailFrmBuffSize >= (MVD_HD_FBSIZE*MVD_FBNUM_MAX))
5202     {
5203         MVD_DEBUGINFO(printf("%s(%d) HD*5\n", __FUNCTION__, __LINE__));
5204         *pu8FBMode = MVD3_HD_MODE;
5205         *pu8FBNum = MVD_FBNUM_MAX;
5206     }
5207     else if (u32AvailFrmBuffSize >= (MVD_HD_FBSIZE*MVD_FBNUM_MIN))
5208     {
5209         MVD_DEBUGINFO(printf("%s(%d) HD*4\n", __FUNCTION__, __LINE__));
5210         *pu8FBMode = MVD3_HD_MODE;
5211         *pu8FBNum = MVD_FBNUM_MIN;
5212     }
5213     else
5214     {
5215         MVD_DEBUGINFO(printf("%s(%d) SD\n", __FUNCTION__, __LINE__));
5216         ret = MVD_CheckFrmBuffSizeMin(fwCfg, memCfg);
5217         if (TRUE == ret)
5218         {
5219             *pu8FBMode = MVD3_SD_MODE;
5220             *pu8FBNum = MVD_FBNUM_MIN;
5221             MVD_DEBUGINFO(printf("Framebuffer [SD] mode\n"));
5222         }
5223     }
5224 
5225 
5226     //Keep FBNum=4 for mpeg2/4, not-mstreamer/uniplayer/mcu mode.
5227     if (!_IS_VC1(fwCfg->eCodecType)) //mpeg2/4
5228     {
5229         if (*pu8FBNum != MVD_FBNUM_DEFAULT)
5230         {
5231             *pu8FBNum = MVD_FBNUM_DEFAULT;
5232         }
5233     }
5234 
5235 _GET_USED_SIZE:
5236     fwCfg->u32FBUsedSize = u32AvailFrmBuffSize;
5237 
5238     MVD_DEBUGINFO(printf("%s u8FBMode=0x%x, u8FBNum=%d, FBSize=0x%lx, used=0x%lx\n",
5239                   __FUNCTION__, fwCfg->u8FBMode, fwCfg->u8FBNum, (unsigned long)memCfg->u32FBSize, (unsigned long)fwCfg->u32FBUsedSize));
5240     return ret;
5241 }
5242 
HAL_MVD_SetCodecInfo(MS_U8 u8Idx,MVD_CodecType eCodecType,MVD_SrcMode eSrcMode,MS_U8 bDisablePESParsing)5243 MS_BOOL HAL_MVD_SetCodecInfo(MS_U8 u8Idx, MVD_CodecType eCodecType, MVD_SrcMode eSrcMode, MS_U8 bDisablePESParsing)
5244 {
5245     MVD_CmdArg stCmdArg;
5246     //printf("u8CodecType=0x%x\n", u8CodecType);
5247     //printf("eSrcMode=0x%x\n", eSrcMode);
5248     SETUP_CMDARG(stCmdArg);
5249     stCmdArg.Arg0 = MVD_MapCodecType(eCodecType);
5250     stCmdArg.Arg1 = MVD_MapSrcMode(eSrcMode);
5251     stCmdArg.Arg2 = bDisablePESParsing;
5252     //arg2 is only valid for STREAM_MODE and TS_FILE_MODE
5253     //set as 0 to enable MVD parser and parser interrupt
5254     stCmdArg.Arg3 = 0;
5255     MVD_DEBUGINFO(printf("MDrv_MVD_SetCodecInfo: Cmd: %x, Arg0: %x, Arg1: %x. Arg2: %x\n",
5256                   CMD_CODEC_INFO, stCmdArg.Arg0, stCmdArg.Arg1, stCmdArg.Arg2));
5257     SET_DECNUM(stCmdArg, u8Idx);
5258     SET_CMD_RET_FALSE(CMD_CODEC_INFO, &stCmdArg);
5259 
5260     HAL_MVD_SetSrcMode(u8Idx,eSrcMode);
5261 
5262     //set code offset to MVD
5263     MS_VIRT u32Addr, u32Len;
5264     HAL_MVD_MemGetMap(u8Idx, E_MVD_MMAP_FW, &u32Addr, &u32Len);
5265 
5266     if (u32Len==0) printf("%s err: u32Len=0!\n", __FUNCTION__);
5267     MS_U32 i=0;
5268     i = u32Addr >> 3;
5269     SET_CMDARG(stCmdArg, i, u8Idx);
5270     SET_CMD_RET_FALSE(CMD_CODE_OFFSET, &stCmdArg);
5271 
5272     #define _mvdAssert(x) if(!x) printf("%s(%d) inconsistent cfg!\n", __FUNCTION__, __LINE__);
5273     MVD_FWCfg* pCurFwCfg = HAL_MVD_GetFWCfg(u8Idx);
5274     _mvdAssert(pCurFwCfg->eCodecType == eCodecType);
5275     _mvdAssert(pCurFwCfg->eSrcMode == eSrcMode);
5276     _mvdAssert(pCurFwCfg->bDisablePESParsing == bDisablePESParsing);
5277 
5278     //Refer to msAPI_VDPlayer_DecodeMPEG4.c (core\kernel\api\videoplayer)
5279     if (eSrcMode == E_MVD_SLQ_TBL_MODE)
5280     {
5281         if ((eCodecType == E_MVD_CODEC_MPEG4) ||
5282             (eCodecType == E_MVD_CODEC_DIVX311) ||
5283             (eCodecType == E_MVD_CODEC_MPEG4_SHORT_VIDEO_HEADER))
5284         {
5285             // Enable PackMode
5286             SETUP_CMDARG(stCmdArg);
5287             stCmdArg.Arg0 = 3;
5288             SET_DECNUM(stCmdArg, u8Idx);
5289             if (HAL_MVD_MVDCommand( CMD_PARSE_M4V_PACKMD, &stCmdArg ) == FALSE)
5290             {
5291                 MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_PARSE_M4V_PACKMD ) );
5292                 return FALSE;
5293             }
5294 
5295             // Set DIU width of rounding mode (align to 8byte)
5296             SETUP_CMDARG(stCmdArg);
5297             stCmdArg.Arg0 = 1;
5298             SET_DECNUM(stCmdArg, u8Idx);
5299             if (HAL_MVD_MVDCommand(CMD_DIU_WIDTH_ALIGN, &stCmdArg) == FALSE)
5300             {
5301                 MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_DIU_WIDTH_ALIGN ) );
5302                 return FALSE;
5303             }
5304         }
5305     }
5306 
5307     //set internal buffers after setting codecinfo for V3
5308     if (!HAL_MVD_SetInternalBuffAddr(u8Idx, u32Addr, u32Len))
5309     {
5310         MVD_DEBUGERROR(printf("MDrv_MVD_Init:_MVD_MVDSetInternalBuffAddr failed\n"));
5311         return FALSE;
5312     }
5313     else
5314     {
5315         MVD_DEBUGINFO(printf("MDrv_MVD_Init:_MVD_MVDSetInternalBuffAddr success\n"));
5316     }
5317 
5318     return TRUE;
5319 }
5320 
MVD_GetBDMAType(void)5321 BDMA_CpyType MVD_GetBDMAType(void)
5322 {
5323     BDMA_CpyType bdmaCpyType = E_BDMA_CPYTYPE_MAX;
5324 
5325     if (pMVDHalContext->stMiuCfg.u8HWMiuSel == MIU_SEL_0)
5326     {
5327         if (pMVDHalContext->stMiuCfg.u8FWMiuSel == MIU_SEL_0)
5328         {
5329             bdmaCpyType = E_BDMA_SDRAM2SDRAM;
5330         }
5331         else if (pMVDHalContext->stMiuCfg.u8FWMiuSel == MIU_SEL_1)
5332         {
5333             bdmaCpyType = E_BDMA_SDRAM2SDRAM1;
5334         }
5335         else if (pMVDHalContext->stMiuCfg.u8FWMiuSel == MIU_SEL_2)
5336         {
5337             bdmaCpyType = E_BDMA_SDRAM2SDRAM2;
5338         }
5339         else if (pMVDHalContext->stMiuCfg.u8FWMiuSel == MIU_SEL_3)
5340         {
5341             bdmaCpyType = E_BDMA_SDRAM2SDRAM3;
5342         }
5343         else
5344         {
5345             MS_ASSERT(0);
5346         }
5347     }
5348     else if (pMVDHalContext->stMiuCfg.u8HWMiuSel == MIU_SEL_1)
5349     {
5350         if (pMVDHalContext->stMiuCfg.u8FWMiuSel == MIU_SEL_0)
5351         {
5352             bdmaCpyType = E_BDMA_SDRAM12SDRAM;
5353         }
5354         else if (pMVDHalContext->stMiuCfg.u8FWMiuSel == MIU_SEL_1)
5355         {
5356             bdmaCpyType = E_BDMA_SDRAM12SDRAM1;
5357         }
5358         else if (pMVDHalContext->stMiuCfg.u8FWMiuSel == MIU_SEL_2)
5359         {
5360             bdmaCpyType = E_BDMA_SDRAM12SDRAM2;
5361         }
5362         else if (pMVDHalContext->stMiuCfg.u8FWMiuSel == MIU_SEL_3)
5363         {
5364             bdmaCpyType = E_BDMA_SDRAM12SDRAM3;
5365         }
5366         else
5367         {
5368             MS_ASSERT(0);
5369         }
5370     }
5371     else if (pMVDHalContext->stMiuCfg.u8HWMiuSel == MIU_SEL_2)
5372     {
5373         if (pMVDHalContext->stMiuCfg.u8FWMiuSel == MIU_SEL_0)
5374         {
5375             bdmaCpyType = E_BDMA_SDRAM22SDRAM;
5376         }
5377         else if (pMVDHalContext->stMiuCfg.u8FWMiuSel == MIU_SEL_1)
5378         {
5379             bdmaCpyType = E_BDMA_SDRAM22SDRAM1;
5380         }
5381         else if (pMVDHalContext->stMiuCfg.u8FWMiuSel == MIU_SEL_2)
5382         {
5383             bdmaCpyType = E_BDMA_SDRAM22SDRAM2;
5384         }
5385         else if (pMVDHalContext->stMiuCfg.u8FWMiuSel == MIU_SEL_3)
5386         {
5387             bdmaCpyType = E_BDMA_SDRAM22SDRAM3;
5388         }
5389         else
5390         {
5391             MS_ASSERT(0);
5392         }
5393     }
5394     else if (pMVDHalContext->stMiuCfg.u8HWMiuSel == MIU_SEL_3)
5395     {
5396         if (pMVDHalContext->stMiuCfg.u8FWMiuSel == MIU_SEL_0)
5397     {
5398             bdmaCpyType = E_BDMA_SDRAM32SDRAM;
5399         }
5400         else if (pMVDHalContext->stMiuCfg.u8FWMiuSel == MIU_SEL_1)
5401         {
5402             bdmaCpyType = E_BDMA_SDRAM32SDRAM1;
5403         }
5404         else if (pMVDHalContext->stMiuCfg.u8FWMiuSel == MIU_SEL_2)
5405         {
5406             bdmaCpyType = E_BDMA_SDRAM32SDRAM2;
5407         }
5408         else if (pMVDHalContext->stMiuCfg.u8FWMiuSel == MIU_SEL_3)
5409         {
5410             bdmaCpyType = E_BDMA_SDRAM32SDRAM3;
5411         }
5412         else
5413         {
5414             MS_ASSERT(0);
5415         }
5416     }
5417     else
5418     {
5419         MS_ASSERT(0);
5420     }
5421 
5422     return bdmaCpyType;
5423 }
5424 
5425 //Init static variables.
5426 //Exception: stMemCfg & stMiuCfg since they are set before calling this function.
HAL_MVD_InitVar(MS_U8 u8Idx)5427 void HAL_MVD_InitVar(MS_U8 u8Idx)
5428 {
5429     MVD_CtrlCfg* pstCtrlCfg = HAL_MVD_GetCtrlCfg(u8Idx);
5430     MVD_SLQTBLInfo* pstSlqTblInfo = HAL_MVD_GetSlqTblInfo(u8Idx);
5431 
5432     memset(pstCtrlCfg, 0, sizeof(MVD_CtrlCfg));
5433     pstCtrlCfg->eTrickMode = E_MVD_TRICK_DEC_ALL;
5434     pstCtrlCfg->eFrcMode = E_MVD_FRC_NORMAL;
5435     pstCtrlCfg->ePreSpeedType = E_MVD_SPEED_DEFAULT;
5436     pstCtrlCfg->eFileSyncMode = E_MVD_TIMESTAMP_FREERUN;
5437 
5438     //determine if we need to BDMA SLQ table from DrvProcBuff to BitstreamBuff
5439 #ifndef MSOS_TYPE_LINUX_KERNEL//BDMA
5440     MVD_MEMCfg*  pstMemCfg = HAL_MVD_GetMEMCfg(u8Idx);
5441     pstCtrlCfg->bSlqTblSync = ((pstMemCfg->u32DrvBufAddr < pstMemCfg->u32BSAddr) ||
5442                    ((pstMemCfg->u32DrvBufAddr+pstMemCfg->u32DrvBufSize) > (pstMemCfg->u32BSAddr+pstMemCfg->u32BSSize)));
5443     MVD_DEBUGINFO(printf("bSlqTblSync = %x\n", pstCtrlCfg->bSlqTblSync));
5444     if (pstCtrlCfg->bSlqTblSync)
5445     {
5446         const BDMA_Info* pBDMA;
5447         pBDMA = MDrv_BDMA_GetInfo();
5448         if ((pBDMA == NULL) || (pBDMA->bInit != TRUE))
5449         {
5450             if (E_BDMA_OK != MDrv_BDMA_Init(pstMemCfg->u32Miu1BaseAddr))
5451             {
5452                 printf("%s fail at MDrv_BDMA_Init!!!\n", __FUNCTION__);
5453             }
5454         }
5455         pstSlqTblInfo->bdmaCpyType = MVD_GetBDMAType();
5456     }
5457 #else
5458     pstCtrlCfg->bSlqTblSync = 0;
5459 #endif
5460     memset(pstSlqTblInfo, 0, sizeof(MVD_SLQTBLInfo));
5461     pstSlqTblInfo->u32LastPts = MVD_NULLPKT_PTS;
5462     pstSlqTblInfo->u32PreEsRd = MVD_U32_MAX;
5463     pstSlqTblInfo->u32PreEsWr = 0;
5464     pstSlqTblInfo->pSlqStatus = &(pMVDHalContext->_SlqStatus[u8Idx]);
5465     pstSlqTblInfo->pDrvSlqTbl = &(pMVDHalContext->_drvSlqTbl[u8Idx]);
5466     pstSlqTblInfo->pDrvEsTbl = &(pMVDHalContext->_drvEsTbl[u8Idx]);
5467     pstSlqTblInfo->pDrvDivxTbl = &(pMVDHalContext->_drvDivxTbl[u8Idx]);
5468 #if SLQ_NEW_PUSH
5469     pstSlqTblInfo->pSlqStatus->u32SlqPatternAddr = 0;
5470     pstSlqTblInfo->pSlqStatus->u32SlqPushLength = 0;
5471     pstSlqTblInfo->pSlqStatus->bSlqPicStart = FALSE;
5472     pstSlqTblInfo->pSlqStatus->bSlqPicCollect = FALSE;
5473     pstSlqTblInfo->pSlqStatus->bSlqPicWaitNextStart = FALSE;
5474     pstSlqTblInfo->pSlqStatus->bSlqEnLastFrameShow =FALSE;
5475     pstSlqTblInfo->pSlqStatus->bSlqFireRdy = FALSE;
5476     pstSlqTblInfo->pSlqStatus->bSlqCtrlBit =FALSE;
5477 #endif
5478 }
5479 
5480 //------------------------------------------------------------------------------
5481 /// Issue Stop command.
5482 //------------------------------------------------------------------------------
HAL_MVD_Stop(MS_U8 u8Idx)5483 MS_BOOL HAL_MVD_Stop(MS_U8 u8Idx)
5484 {
5485     MVD_CmdArg mvdcmd;
5486     MS_BOOL bRet = TRUE;
5487 
5488     #define STOP_TIMEOUT 500 //ms
5489     MS_U32 u32StartTime = 0;
5490     u32StartTime = HAL_MVD_GetTime();
5491 
5492     SETUP_CMDARG(mvdcmd);
5493     SET_DECNUM(mvdcmd, u8Idx);
5494     HAL_MVD_ResetHandShake(u8Idx, MVD_HANDSHAKE_STOP);
5495 
5496     if (HAL_MVD_MVDCommand(CMD_STOP, &mvdcmd) == FALSE)
5497     {
5498         MVD_DEBUGERROR(printf("Command: 0x%x fail!!\r\n", CMD_STOP));
5499         HAL_MVD_Delayms(1);
5500         if ( HAL_MVD_TimeOut(u8Idx) == TRUE )
5501         {
5502             MVD_DEBUGERROR(printf("*** MVD ERR: STOP TIMEOUT!!! ***\n"));
5503         }
5504     }
5505 
5506     while(!HAL_MVD_IsCmdFinished(u8Idx, MVD_HANDSHAKE_STOP))
5507     {
5508         if ((HAL_MVD_GetTime()-u32StartTime)>STOP_TIMEOUT)
5509         {
5510             MVD_DEBUGERROR( printf( "Ctrl: 0x%x fail timeout!!\r\n", CMD_STOP ) );
5511             break;
5512         }
5513     }
5514 
5515     pMVDHalContext->bStopped[u8Idx] = TRUE;
5516     return bRet;
5517 }
5518 
HAL_MVD_DeinitHW(VPU_EX_SourceType SourceType,VPU_EX_DecoderType eDecType)5519 MS_BOOL HAL_MVD_DeinitHW(VPU_EX_SourceType SourceType, VPU_EX_DecoderType eDecType)
5520 {
5521     //MVD HW reset
5522     if (!HAL_MVD_RstHW())
5523     {
5524         MVD_DEBUGERROR(printf("MDrv_MVD_Exit:MVD4ResetHW failed\n"));
5525     }
5526     else
5527     {
5528         MVD_DEBUGINFO(printf("MDrv_MVD_Exit:MVD4ResetHW success\n"));
5529     }
5530     HAL_MVD_PowerCtrl(DISABLE);
5531 #ifdef CONFIG_MSTAR_CLKM
5532     if(eDecType == E_VPU_EX_DECODER_MVD)
5533     {
5534         HAL_VPU_EX_SetClkManagement(E_VPU_EX_CLKPORT_MVD_CORE, DISABLE);
5535     }
5536     if(SourceType == E_VPU_EX_INPUT_TSP)
5537     {
5538         HAL_VPU_EX_SetClkManagement(E_VPU_EX_CLKPORT_MVD_PAS, DISABLE);
5539     }
5540 #endif
5541 
5542 #ifdef CONFIG_MSTAR_SRAMPD
5543     HAL_MVD_RegWriteBit(REG_CODEC_SRAM_SD_EN, DISABLE, SRAM_SD_EN_MVD);
5544     HAL_MVD_Delayms(1);
5545 #endif
5546     return TRUE;
5547 }
5548 
HAL_MVD_Exit(MS_U8 u8Idx)5549 MS_BOOL HAL_MVD_Exit(MS_U8 u8Idx)
5550 {
5551     MVD_DEBUGINFO(printf("MDrv_MVD_Exit:start\n"));
5552 
5553     HAL_MVD_SetIsUsed(u8Idx, FALSE);
5554     pMVDHalContext->bAutoInsertDummyPattern[u8Idx] = FALSE;
5555     pMVDHalContext->bDropOnePTS[u8Idx] = FALSE;
5556     pMVDHalContext->u32DmxFrameRate[u8Idx] = 0;
5557     pMVDHalContext->u32DmxFrameRateBase[u8Idx] = 0;
5558     pMVDHalContext->bTrickPlay2xAVSync[u8Idx] = FALSE;
5559 
5560     return TRUE;
5561 }
5562 
5563 
5564 //------------------------------------------------------------------------------
5565 /// Set DivX311 stream info.
5566 /// @param divxInfo \b IN : DivX311 stream info.
5567 //------------------------------------------------------------------------------
MVD_WriteDivx311Data(MS_U8 u8Idx,FW_DIVX_INFO * divxInfo)5568 static void MVD_WriteDivx311Data(MS_U8 u8Idx, FW_DIVX_INFO *divxInfo)
5569 {
5570     MS_VIRT pu8MVDSetHeaderBufStart = GET_HDR_BUFFADD(u8Idx);
5571     HAL_MVD_MemWrite4Byte(pu8MVDSetHeaderBufStart+OFFSET_DIVX_VOL_HANDLE_DONE,divxInfo->vol_handle_done);
5572     HAL_MVD_MemWrite4Byte(pu8MVDSetHeaderBufStart+OFFSET_DIVX_WIDTH,divxInfo->width);
5573     HAL_MVD_MemWrite4Byte(pu8MVDSetHeaderBufStart+OFFSET_DIVX_HEIGHT,divxInfo->height);
5574     HAL_MVD_MemWrite4Byte(pu8MVDSetHeaderBufStart+OFFSET_DIVX_FRAME_COUNT,divxInfo->frame_count);
5575     HAL_MVD_MemWrite4Byte(pu8MVDSetHeaderBufStart+OFFSET_DIVX_FRAME_TIME,divxInfo->frame_time);
5576     HAL_MVD_MemWrite2Byte(pu8MVDSetHeaderBufStart+OFFSET_DIVX_PTS_INCR,divxInfo->pts_incr);
5577     HAL_MVD_MemWrite4Byte(pu8MVDSetHeaderBufStart+OFFSET_DIVX_FRAME_RATE,divxInfo->frame_rate);
5578     HAL_MVD_MemWriteByte(pu8MVDSetHeaderBufStart+OFFSET_DIVX_ASPECT_RATIO,divxInfo->aspect_ratio);
5579     HAL_MVD_MemWriteByte(pu8MVDSetHeaderBufStart+OFFSET_DIVX_PROGRESSIVE_SEQUENCE,divxInfo->progressive_sequence);
5580     HAL_MVD_MemWriteByte(pu8MVDSetHeaderBufStart+OFFSET_DIVX_MPEG1,divxInfo->mpeg1);
5581     HAL_MVD_MemWriteByte(pu8MVDSetHeaderBufStart+OFFSET_DIVX_PLAY_MODE,divxInfo->play_mode);
5582     HAL_MVD_MemWriteByte(pu8MVDSetHeaderBufStart+OFFSET_DIVX_MPEG_FRC_MODE,divxInfo->mpeg_frc_mode);
5583     return;
5584 }
5585 
HAL_MVD_SetFrameInfo(MS_U8 u8Idx,MVD_FrameInfo * pinfo)5586 void HAL_MVD_SetFrameInfo(MS_U8 u8Idx, MVD_FrameInfo *pinfo )
5587 {
5588     if (GET_HDR_BUFFADD(u8Idx)==0)
5589     {
5590         MVD_DEBUGERROR(printf("MDrv_MVD_SetFrameInfo error: pu8MVDSetHeaderBufStart=NULL\n"));
5591         return;
5592     }
5593 
5594     FW_DIVX_INFO* pDivxInfo = &(pMVDHalContext->gdivxInfo[u8Idx]);
5595     pDivxInfo->width=pinfo->u16HorSize;
5596     pDivxInfo->height=pinfo->u16VerSize;
5597     pDivxInfo->aspect_ratio=pinfo->u8AspectRate;
5598     pDivxInfo->frame_rate = pinfo->u32FrameRate;
5599 
5600     //for MM
5601     pDivxInfo->mpeg1=pinfo->u8MPEG1;
5602     pDivxInfo->pts_incr=pinfo->u16PTSInterval;
5603     pDivxInfo->play_mode=pinfo->u8PlayMode;
5604     pDivxInfo->mpeg_frc_mode=pinfo->u8FrcMode;
5605 
5606     if(pinfo->u8Interlace==0)
5607         pDivxInfo->progressive_sequence=1;
5608     else
5609         pDivxInfo->progressive_sequence=0;
5610 
5611     pDivxInfo->frame_count=0;
5612     pDivxInfo->frame_time=0;
5613     pDivxInfo->vol_handle_done=0;
5614 //    pDivxInfo->invalidstream=0;
5615     MVD_DEBUGINFO(printf("set vol info,pts_incr=%d,\n",pDivxInfo->pts_incr));
5616     MVD_DEBUGINFO(printf("set vol info,width=%x,height=%x,frame_rate=%d,aspect_ratio=%x,\n",
5617                   (unsigned int)pDivxInfo->width,(unsigned int)pDivxInfo->height,pDivxInfo->frame_rate,pDivxInfo->aspect_ratio));
5618     MVD_DEBUGINFO(printf("set vol info,progressive_sequence=%x,mpeg1=%x,play_mode=%x,\n",
5619                   pDivxInfo->progressive_sequence,pDivxInfo->mpeg1,pDivxInfo->play_mode));
5620 
5621     MVD_WriteDivx311Data(u8Idx, pDivxInfo);
5622     return;
5623 }
5624 
5625 
5626 
5627 ///////////////////////////////////////////////////////////////////////////////
5628 /// Get Hardware Pointer of MVD CC Ring Buffer
5629 /// Return value:: The HW Pointer Address of MVD CC Ring Buffer
5630 /// @param u8CC608 \b IN
5631 ///   - # TRUE for CC608 parser
5632 ///   - # FALSE for CC708 parser
5633 ///////////////////////////////////////////////////////////////////////////////
HAL_CC_CM_GetMVDRB_HWAddr(MS_U8 u8CC608)5634 MS_VIRT HAL_CC_CM_GetMVDRB_HWAddr(MS_U8 u8CC608)
5635 {
5636 #if 1
5637     MVD_CmdArg mvdcmd;
5638     MS_VIRT u32CCWrPtr = 0;
5639 
5640     SETUP_CMDARG(mvdcmd);
5641     mvdcmd.Arg3 = u8CC608;
5642     if (HAL_MVD_MVDCommand( CMD_RD_USER_WP, &mvdcmd ) == FALSE)
5643     {
5644         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_RD_USER_WP ) );
5645         return MVD_U32_MAX;
5646     }
5647     u32CCWrPtr = COMBU32(mvdcmd.Arg3, mvdcmd.Arg2, mvdcmd.Arg1, mvdcmd.Arg0);
5648     return u32CCWrPtr;
5649 #else
5650     MS_U32 u32MVDCC_Temp1 = 0;
5651     if (HAL_MVD_TimeOut(pstCmdArg->Arg5) == FALSE)
5652     {
5653         //HAL_MVD_ARGINIT();
5654         HAL_MVD_RegWriteByte(MVD_ARG5, 0);
5655         HAL_MVD_RegWriteByte(MVD_ARG4, 0);
5656         HAL_MVD_RegWriteByte(MVD_ARG3, (MS_U8)u8CC608);
5657         HAL_MVD_RegWriteByte(MVD_COMMAND, (MS_U8)(CMD_RD_USER_WP));//CMD_GET_CCBUF_HWADDR
5658 
5659         if (HAL_MVD_TimeOut(pstCmdArg->Arg5) == FALSE)
5660         {
5661             u32MVDCC_Temp1 = 0;
5662             u32MVDCC_Temp1 = (((MS_U32)HAL_MVD_RegReadByte(MVD_ARG0)) & 0x000000FF);
5663             u32MVDCC_Temp1 += ((((MS_U32)HAL_MVD_RegReadByte(MVD_ARG1)) & 0x000000FF) << 8);
5664             u32MVDCC_Temp1 += ((((MS_U32)HAL_MVD_RegReadByte(MVD_ARG2)) & 0x000000FF) << 16);
5665             u32MVDCC_Temp1 = (u32MVDCC_Temp1 << 3);
5666             return (u32MVDCC_Temp1);
5667         }
5668         else
5669         {
5670             MVD_DEBUGINFO(printf("\nF:GHAV"));
5671         }
5672     }
5673     else
5674     {
5675         MVD_DEBUGINFO(printf("\nF:GHA"));
5676     }
5677 
5678     return 0xffffffff;
5679 #endif
5680 }
5681 
HAL_MVD_GetUsrDataIsAvailable(MS_U8 u8Idx)5682 MS_BOOL HAL_MVD_GetUsrDataIsAvailable(MS_U8 u8Idx)
5683 {
5684     volatile MVD_CtrlCfg* pCtrlCfg = (volatile MVD_CtrlCfg*)HAL_MVD_GetCtrlCfg(u8Idx);
5685     MS_VIRT u32UsrDataWr = 0;
5686     MS_BOOL bIsAvail = FALSE;
5687 
5688 #if defined(MVD_SUPPORT_X4_CC)
5689     u32UsrDataWr = HAL_CC_CM_GetMVDRB_HWAddr(4);
5690 #else
5691     u32UsrDataWr = HAL_CC_CM_GetMVDRB_HWAddr(2);
5692 #endif
5693     bIsAvail = !(pCtrlCfg->u32UsrDataRd == u32UsrDataWr);
5694     MVD_DEBUGINFO(printf("IsAvail:%x rd=%lx wr=%lx\n", bIsAvail,
5695                          (unsigned long)pCtrlCfg->u32UsrDataRd, (unsigned long)u32UsrDataWr));
5696     return bIsAvail;
5697 }
5698 
5699 //------------------------------------------------------------------------------
5700 /// Get info of user data
5701 //------------------------------------------------------------------------------
HAL_MVD_GetUsrDataInfo(MS_U8 u8Idx,MVD_UsrDataInfo * pUsrInfo)5702 MS_BOOL HAL_MVD_GetUsrDataInfo(MS_U8 u8Idx, MVD_UsrDataInfo* pUsrInfo)
5703 {
5704     MS_VIRT u32UsrData = NULL;
5705     MS_VIRT u32UsrDataWr = 0;
5706 #if defined(MVD_SUPPORT_X4_CC)
5707     FW_USER_DATA_BUF_EXT stUsrDataExt;
5708 #else
5709     FW_USER_DATA_BUF stUsrDataInfo;
5710 #endif
5711     volatile MVD_CtrlCfg* pCtrlCfg = (volatile MVD_CtrlCfg*)HAL_MVD_GetCtrlCfg(u8Idx);
5712 
5713     if ((!pUsrInfo) || (GET_FRMINFO_BUFFADD(u8Idx)==0))
5714     {
5715         MVD_DEBUGERROR(printf("%s: NULL ptr.\n", __FUNCTION__));
5716         return FALSE;
5717     }
5718 
5719     //get write pointer
5720 #if defined(MVD_SUPPORT_X4_CC)
5721     u32UsrDataWr = HAL_CC_CM_GetMVDRB_HWAddr(4);
5722 #else
5723     u32UsrDataWr = HAL_CC_CM_GetMVDRB_HWAddr(2);
5724 #endif
5725     if (pCtrlCfg->u32UsrDataRd == (GET_USRDATA_BUFFADD(u8Idx)+MVD3_FW_USER_DATA_BUF_LEN))
5726     {
5727         pCtrlCfg->u32UsrDataRd = GET_USRDATA_BUFFADD(u8Idx); //wrap to BufStart
5728     }
5729     MVD_DEBUGINFO(printf("CC Rd=0x%lx Wr=0x%lx\n", (unsigned long)pCtrlCfg->u32UsrDataRd, (unsigned long)u32UsrDataWr));
5730 
5731     if (pCtrlCfg->u32UsrDataRd == u32UsrDataWr)
5732     {
5733         MVD_DEBUGERROR(printf("%s: no data? Rd=0x%lx Wr=0x%lx\n", __FUNCTION__, (unsigned long)pCtrlCfg->u32UsrDataRd, (unsigned long)u32UsrDataWr));
5734         return FALSE;
5735     }
5736 
5737     _miu_offset_to_phy(pMVDHalContext->stMiuCfg.u8FWMiuSel,pCtrlCfg->u32UsrDataRd,u32UsrData);
5738 
5739     u32UsrData = HAL_MVD_PA2NonCacheSeg(u32UsrData);
5740 
5741     HAL_MVD_CPU_Sync();
5742     HAL_MVD_ReadMemory();
5743 
5744 #if defined(MVD_SUPPORT_X4_CC)
5745     stUsrDataExt = *(volatile FW_USER_DATA_BUF_EXT*)u32UsrData;
5746 
5747     pUsrInfo->u32Pts = stUsrDataExt.pts;
5748     pUsrInfo->u8PicStruct = stUsrDataExt.PicStruct;
5749     pUsrInfo->u8PicType   = stUsrDataExt.picType;
5750     pUsrInfo->u8TopFieldFirst = stUsrDataExt.top_ff;
5751     pUsrInfo->u8RptFirstField = stUsrDataExt.rpt_ff;
5752     pUsrInfo->u16TmpRef = stUsrDataExt.tmpRef;
5753     pUsrInfo->u8ByteCnt = stUsrDataExt.userdatabytecnt;
5754     pUsrInfo->u32DataBuf = u32UsrData + MVD_FW_USER_DATA_EXT_HDR_LEN;
5755 #else
5756     stUsrDataInfo = *(volatile FW_USER_DATA_BUF*)u32UsrData;
5757 
5758     pUsrInfo->u8PicType   = stUsrDataInfo.picType;
5759     pUsrInfo->u8TopFieldFirst = stUsrDataInfo.top_ff;
5760     pUsrInfo->u8RptFirstField = stUsrDataInfo.rpt_ff;
5761     pUsrInfo->u16TmpRef = stUsrDataInfo.tmpRef;
5762     pUsrInfo->u8ByteCnt = stUsrDataInfo.userdatabytecnt;
5763     pUsrInfo->u32DataBuf = u32UsrData + MVD_FW_USER_DATA_HDR_LEN;
5764 #endif
5765     //update read pointer
5766     pCtrlCfg->u32UsrDataRd += MVD_FW_USER_DATA_PKT_LEN;
5767 #if 0
5768     printf("xxInfo: ");
5769     printf("%02d, ", pUsrInfo->u16TmpRef);
5770     printf("%d, ", pUsrInfo->u8PicStruct);
5771     printf("%d, ", pUsrInfo->u8TopFieldFirst);
5772     printf("0x%x, ", pUsrInfo->u32DataBuf);
5773     printf("%d, ", pUsrInfo->u8ByteCnt);
5774     printf("%ld, ", pUsrInfo->u32Pts);
5775     printf("%d\n", pUsrInfo->u8PicType);
5776 #endif
5777     return TRUE;
5778 }
5779 
5780 
HAL_MVD_Map2DrvSlqTbl(MS_U8 u8Idx,MS_VIRT u32HWPtr)5781 MS_VIRT HAL_MVD_Map2DrvSlqTbl(MS_U8 u8Idx, MS_VIRT u32HWPtr)
5782 {
5783     MVD_MEMCfg* pstMemCfg = HAL_MVD_GetMEMCfg(u8Idx);
5784     MVD_CtrlCfg* pstCtrlCfg = HAL_MVD_GetCtrlCfg(u8Idx);
5785     MVD_SLQTBLInfo* pstSlqTblInfo = HAL_MVD_GetSlqTblInfo(u8Idx);
5786     MS_VIRT u32HWSt = HAL_MVD_GetMemOffset(pstMemCfg->u32BSAddr);
5787     MS_VIRT u32DrvPtr;
5788 
5789     if ((u32HWPtr<u32HWSt) && (u32HWPtr!=0))
5790     {
5791         MVD_DEBUGERROR(printf("Invalid u32HWPtr=0x%lx\n", (unsigned long)u32HWPtr));
5792         return 0;
5793     }
5794     if ((pstCtrlCfg->bSlqTblSync) && (u32HWPtr!=0))
5795     {
5796         u32DrvPtr = pstSlqTblInfo->pDrvSlqTbl->u32StAdd + (u32HWPtr - u32HWSt);
5797         return u32DrvPtr;
5798     }
5799     return u32HWPtr;
5800 }
5801 
5802 
MVD_SLQTblGetFileEndPkt(MS_U8 u8Idx,MVD_PacketInfo * pFileEnd)5803 static void MVD_SLQTblGetFileEndPkt(MS_U8 u8Idx, MVD_PacketInfo* pFileEnd)
5804 {
5805     MVD_MEMCfg* pstMemCfg = HAL_MVD_GetMEMCfg(u8Idx);
5806     MS_VIRT u32EndPattern = HAL_MVD_GetMemOffset(pstMemCfg->u32DrvBufAddr+SLQ_TBL_SIZE*3);
5807 
5808     pFileEnd->u32StAddr = SLQ_TBL_SIZE*3;//u32EndPattern - HAL_MVD_GetMemOffset(pstMemCfg->u32DrvBufAddr);
5809     pFileEnd->u32Length = END_PATTERN_SIZE;
5810     pFileEnd->u32TimeStamp = MVD_NULLPKT_PTS;
5811     pFileEnd->u32ID_L = MVD_U32_MAX;
5812     pFileEnd->u32ID_H = MVD_U32_MAX;
5813     MVD_DEBUGINFO(printf("u32EndPattern(0x%lx)=0x%x 0x%x 0x%x 0x%x\n", (unsigned long)pFileEnd->u32StAddr,
5814             HAL_MVD_MemRead4Byte(u32EndPattern), HAL_MVD_MemRead4Byte(u32EndPattern+4),
5815             HAL_MVD_MemRead4Byte(u32EndPattern+8), HAL_MVD_MemRead4Byte(u32EndPattern+12)));
5816 }
5817 
5818 
MVD_SLQTblGetDummyPkt(MVD_PacketInfo * pDummy)5819 static void MVD_SLQTblGetDummyPkt(MVD_PacketInfo* pDummy)
5820 {
5821     //MS_U32 u32DummyES = HAL_MVD_GetMemOffset(pstMemCfg->u32DrvBufAddr+SLQ_TBL_SIZE*2);
5822 
5823     pDummy->u32StAddr = SLQ_TBL_SIZE*2;//u32DummyES - HAL_MVD_GetMemOffset(pstMemCfg->u32DrvBufAddr);
5824     pDummy->u32Length = DUMMY_SIZE;
5825     pDummy->u32TimeStamp = MVD_NULLPKT_PTS;
5826     pDummy->u32ID_L = MVD_U32_MAX;
5827     pDummy->u32ID_H = MVD_U32_MAX;
5828 #if 0
5829     printf("u32DummyES(0x%x-->0x%x, size=0x%x)=0x%08lx 0x%08lx 0x%08lx 0x%08lx\n", u32DummyES,
5830             pDummy->u32StAddr, pDummy->u32Length, HAL_MVD_MemRead4Byte(u32DummyES),
5831             HAL_MVD_MemRead4Byte(u32DummyES+4),HAL_MVD_MemRead4Byte(u32DummyES+8),HAL_MVD_MemRead4Byte(u32DummyES+12));
5832 #endif
5833 
5834 }
5835 
5836 
HAL_MVD_SLQTblInsertPattern(MS_U8 u8Idx,MVD_PatternType ePattern)5837 MS_BOOL HAL_MVD_SLQTblInsertPattern(MS_U8 u8Idx, MVD_PatternType ePattern)
5838 {
5839     MS_U32 i;
5840     MVD_SLQTBLInfo* pstSlqTblInfo = HAL_MVD_GetSlqTblInfo(u8Idx);
5841 
5842     if (pstSlqTblInfo->pDrvSlqTbl->u32Empty < SLQ_TBL_SAFERANGE)
5843     {
5844         MVD_DEBUGINFO(printf("SLQTbl full!(0x%lx) Cannot insert pattern any more!\n", (unsigned long)pstSlqTblInfo->pDrvSlqTbl->u32Empty));
5845         return FALSE;
5846     }
5847 
5848 #if SLQ_NEW_PUSH
5849     if(pstSlqTblInfo->pSlqStatus->bSlqCtrlBit)
5850     {
5851         if(pstSlqTblInfo->pSlqStatus->bSlqPicWaitNextStart)
5852         {
5853             pstSlqTblInfo->pDrvSlqTbl->u32WrPtr = pstSlqTblInfo->pSlqStatus->u32VaildWptrAddr;
5854         }
5855         pstSlqTblInfo->pSlqStatus->bSlqCtrlBit = FALSE;
5856     }
5857 #endif // #if SLQ_NEW_PUSH
5858     for (i =0; i<2; i++)
5859     {   //insert dummy pattern
5860         MVD_PacketInfo stDummyPkt;
5861 
5862         if (E_MVD_PATTERN_FLUSH == ePattern)
5863         {
5864             MVD_SLQTblGetDummyPkt(&stDummyPkt);
5865         }
5866         else if (E_MVD_PATTERN_FILEEND == ePattern)
5867         {
5868             MVD_SLQTblGetFileEndPkt(u8Idx, &stDummyPkt);
5869         }
5870         else
5871         {
5872             MVD_DEBUGERROR(printf("Invalid MVD_PatternType! Won't insert pattern!\n"));
5873             return FALSE;
5874         }
5875         #if SLQ_NEW_PUSH
5876         pstSlqTblInfo->pSlqStatus->bSlqFireRdy = TRUE;
5877         #endif
5878         //printf("WrPtr 0x%x ", pstSlqTblInfo->pDrvSlqTbl->u32WrPtr);
5879         HAL_MVD_SLQTblSendPacket(u8Idx, &stDummyPkt);
5880         //printf("==> 0x%x\n", pstSlqTblInfo->pDrvSlqTbl->u32WrPtr);
5881         HAL_MVD_SetSLQWritePtr(u8Idx, FALSE);
5882     }
5883     return TRUE;
5884 }
5885 
5886 
5887 #define FLAG_LAST_FRM_SHOW (MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_CMD_LAST_FRAME_SHOW, sizeof(MS_U32)))
HAL_MVD_IsDispFinish(MS_U8 u8Idx)5888 E_MVD_Result HAL_MVD_IsDispFinish(MS_U8 u8Idx)
5889 {
5890     MS_U32 u32TimeCnt;
5891     MVD_SrcMode curSrcMode = HAL_MVD_GetSrcMode(u8Idx);
5892     MS_U32 u32FeByteCnt = 0;
5893     MVD_SLQTBLInfo* pstSlqTblInfo = HAL_MVD_GetSlqTblInfo(u8Idx);
5894     MS_VIRT u32FileEndPtr = pstSlqTblInfo->u32FileEndPtr;
5895     MS_U32 u32Id = MVD_GetStreamId(u8Idx);
5896     MS_U8 u8VPUIdx = HAL_VPU_EX_GetTaskId(u32Id);
5897 #ifdef VDEC3
5898     MS_VIRT u32VBBUAddr = HAL_MVD_GetVBBUTableAddr(u8VPUIdx);
5899     MVD_CtrlCfg* pstCtrlCfg = HAL_MVD_GetCtrlCfg(u8Idx);
5900     #endif
5901 
5902     //printf("MDrv_MVD_IsDispFinish::");
5903     if (GET_FRMINFO_BUFFADD(u8Idx)==0)
5904     {
5905         MVD_DEBUGERROR(printf("%s err: pu8MVDGetFrameInfoBufStart=NULL\n", __FUNCTION__));
5906         return E_MVD_RET_FAIL;
5907     }
5908 
5909     //printf("0x%x\n", FLAG_LAST_FRM_SHOW);
5910     if ((E_MVD_SLQ_TBL_MODE == curSrcMode) && (TRUE != FLAG_LAST_FRM_SHOW))
5911     {
5912         //insert pattern when each time checking IsDispFinish
5913 #ifdef VDEC3
5914         if(pstCtrlCfg->u8McuMode == TRUE)
5915         {
5916             u32TimeCnt= HAL_MVD_GetTime();
5917             while ((HAL_MVD_GetTime() - u32TimeCnt) < 20)  // timeout 20 ms
5918             {
5919                 if(HAL_VPU_EX_GetVBBUVacancy(u32VBBUAddr) > 0)
5920                 {
5921                     HAL_VPU_EX_PacketInfo stVpuPkt;
5922                     MVD_PacketInfo stDummyPkt;
5923                     MVD_SLQTblGetFileEndPkt(u8Idx,&stDummyPkt);
5924 
5925                     stVpuPkt.u32Offset = stDummyPkt.u32StAddr;
5926                     stVpuPkt.u32Length = stDummyPkt.u32Length;
5927                     stVpuPkt.u64TimeStamp = (MS_U64)stDummyPkt.u32TimeStamp;
5928                     //If in display queue mode
5929                     stVpuPkt.u64TimeStamp |= ((MS_U64)stDummyPkt.u32ID_H << 32);
5930                     stVpuPkt.u32ID_H = stDummyPkt.u32ID_H;
5931                     stVpuPkt.u32ID_L = stDummyPkt.u32ID_L;
5932 
5933                     HAL_VPU_EX_Push2VBBU(u32Id, &stVpuPkt,u32VBBUAddr);
5934                 }
5935 
5936                 if (TRUE == FLAG_LAST_FRM_SHOW)
5937                 {
5938                     break;
5939                 }
5940             }
5941 
5942             if (TRUE != FLAG_LAST_FRM_SHOW)
5943             {
5944                 MVD_DEBUGERROR(printf("MDrv_MVD_IsDispFinish TIMEOUT\n"));
5945                 return E_MVD_RET_TIME_OUT;
5946             }
5947             else
5948             {
5949                 return E_MVD_RET_OK;
5950             }
5951         }
5952         else
5953 #endif
5954         {
5955         //insert pattern when each time checking IsDispFinish
5956         if (HAL_MVD_SLQTblInsertPattern(u8Idx, E_MVD_PATTERN_FILEEND))
5957         {
5958             u32FeByteCnt += END_PATTERN_SIZE;
5959         }
5960 
5961         if ((u32FileEndPtr == HAL_MVD_Map2DrvSlqTbl(u8Idx, HAL_MVD_GetSLQReadPtr(u8Idx))) &&
5962             (HAL_MVD_IsMcuMode(u8Idx) == FALSE) &&
5963             (HAL_MVD_IsMStreamerMode(u8Idx) == FALSE))
5964         {
5965             //insert padding pattern until timeout
5966             u32TimeCnt= HAL_MVD_GetTime();
5967             while ((HAL_MVD_GetTime() - u32TimeCnt) < CMD_TIMEOUT_MS)
5968             {
5969                 if (TRUE == FLAG_LAST_FRM_SHOW)
5970                 {
5971                     //printf("\nDisp finished!\n");
5972                     break;
5973                 }
5974                 //insert file-end pattern again
5975                 if (HAL_MVD_SLQTblInsertPattern(u8Idx, E_MVD_PATTERN_FILEEND))
5976                 {
5977                     u32FeByteCnt += END_PATTERN_SIZE;
5978                 }
5979             }
5980             if ((HAL_MVD_GetTime() - u32TimeCnt) >= CMD_TIMEOUT_MS)
5981             {
5982                 MVD_DEBUGERROR(printf("\n***** MDrv_MVD_IsDispFinish TIMEOUT!!! *****\n\n"));
5983                 if (E_MVD_CODEC_VC1_MAIN == HAL_MVD_GetCodecType(u8Idx))
5984                 {
5985                     if ((HAL_MVD_GetPayloadLen(u8Idx) > 0x200000)
5986                         && (TRUE != HAL_MVD_GotFileEndPattern(u8Idx)))
5987                     {
5988                         MVD_DEBUGERROR(printf("RCV payloadLen(0x%x) invalid!\n",
5989                             HAL_MVD_GetPayloadLen(u8Idx)));
5990                     }
5991                 }
5992                 MVD_DEBUGERROR(printf("***** fe=%lx, rd=%lx(%lx,%lx), wr=%lx, empty=%lx, u32FeByteCnt=%x\n",
5993                     (unsigned long)u32FileEndPtr, (unsigned long)pstSlqTblInfo->pDrvSlqTbl->u32RdPtr, (unsigned long)HAL_MVD_Map2DrvSlqTbl(u8Idx, HAL_MVD_GetSLQReadPtr(u8Idx)),
5994                     (unsigned long)HAL_MVD_GetSLQReadPtr(u8Idx), (unsigned long)pstSlqTblInfo->pDrvSlqTbl->u32WrPtr, (unsigned long)pstSlqTblInfo->pDrvSlqTbl->u32Empty, u32FeByteCnt));
5995                 return E_MVD_RET_TIME_OUT;
5996             }
5997             else
5998             {
5999                 return E_MVD_RET_OK;
6000             }
6001         }
6002         else
6003         {
6004             //just return fail if readPtr is not closed to file-end ptr
6005             MVD_DEBUGINFO(printf("fe=%lx, rd=%lx(%lx), wr=%lx, empty=%lx\n", (unsigned long)u32FileEndPtr, (unsigned long)pstSlqTblInfo->pDrvSlqTbl->u32RdPtr,
6006                             (unsigned long)HAL_MVD_Map2DrvSlqTbl(u8Idx, (unsigned long)HAL_MVD_GetSLQReadPtr(u8Idx)), (unsigned long)pstSlqTblInfo->pDrvSlqTbl->u32WrPtr, (unsigned long)pstSlqTblInfo->pDrvSlqTbl->u32Empty));
6007             return E_MVD_RET_FAIL;
6008         }
6009         }
6010     }
6011 
6012     if (FLAG_LAST_FRM_SHOW)
6013     {
6014         return E_MVD_RET_OK;
6015     }
6016     else
6017     {
6018         return E_MVD_RET_FAIL;
6019     }
6020 }
6021 
6022 //------------------------------------------------------------------------------
6023 /// Set MVD SLQ start & end address
6024 /// @param -u32start \b IN : start address
6025 /// @param -u32end \b IN : end address
6026 //------------------------------------------------------------------------------
HAL_MVD_SetSLQStartEnd(MS_U8 u8Idx,MS_U32 u32start,MS_U32 u32end)6027 static void HAL_MVD_SetSLQStartEnd(MS_U8 u8Idx, MS_U32 u32start, MS_U32 u32end)
6028 {
6029     MVD_CmdArg mvdcmd;
6030 
6031     if ((u32start > SLQ_ADDR_LEN) || ((u32end+1) > SLQ_ADDR_LEN))
6032     {
6033         MVD_DEBUGERROR(printf("MDrv_MVD_SetSLQStartEnd: only support 27bit add!\n"));
6034     }
6035 
6036     SET_CMDARG(mvdcmd, (u32end+1), u8Idx);
6037     if (HAL_MVD_MVDCommand( CMD_SLQ_END, &mvdcmd ) == FALSE)
6038     {
6039         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_SLQ_END ) );
6040         return;
6041     }
6042 
6043     SET_CMDARG(mvdcmd, u32start, u8Idx);
6044     if (HAL_MVD_MVDCommand( CMD_SLQ_START, &mvdcmd ) == FALSE)
6045     {
6046         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_SLQ_START ) );
6047         return;
6048     }
6049 
6050     return;
6051 }
6052 
HAL_MVD_DecodeIFrame(MS_U8 u8Idx,MS_PHY u32FrameBufAddr,MS_PHY u32StreamBufAddr,MS_PHY u32StreamBufEndAddr)6053 MS_BOOL HAL_MVD_DecodeIFrame(MS_U8 u8Idx, MS_PHY u32FrameBufAddr, MS_PHY u32StreamBufAddr, MS_PHY u32StreamBufEndAddr )
6054 {
6055     MS_U32 u32deley = 0;
6056     MS_U32 u32time = 0;
6057     MVD_CmdArg mvdcmd;
6058     MS_VIRT u32MVDFWSLQTABTmpbufAdr = GET_SLQ_BUFFADD(u8Idx);
6059 
6060     MVD_DEBUGINFO(printf("%s offset FBAdd=0x%lx streamStart=0x%lx streamEnd=0x%lx\n",
6061             __FUNCTION__, (unsigned long)u32FrameBufAddr, (unsigned long)u32StreamBufAddr, (unsigned long)u32StreamBufEndAddr));
6062 
6063     HAL_MVD_SetCodecInfo(u8Idx, E_MVD_CODEC_MPEG2, E_MVD_SLQ_MODE, DISABLE_PARSER);
6064     HAL_MVD_SetFrameBuffAddr(u8Idx, u32FrameBufAddr, HAL_MVD_GetFBMode(u8Idx));
6065 
6066     SETUP_CMDARG(mvdcmd);
6067     mvdcmd.Arg0 = 1;
6068     SET_DECNUM(mvdcmd, u8Idx);
6069     SET_CMD_RET_FALSE(CMD_DISPLAY_CTL, &mvdcmd);
6070 
6071     if (HAL_MVD_StepDecode(u8Idx) == FALSE)
6072     {
6073         MVD_DEBUGERROR( printf( "HAL_MVD_StepDecode fail!!\r\n") );
6074         return FALSE;
6075     }
6076 
6077     SETUP_CMDARG(mvdcmd);
6078     mvdcmd.Arg0 = 1;
6079     mvdcmd.Arg1 = 1;
6080     SET_DECNUM(mvdcmd, u8Idx);
6081     SET_CMD_RET_FALSE(CMD_FAST_SLOW, &mvdcmd);
6082 
6083     //set data
6084     HAL_MVD_Delayms(2);
6085 
6086     HAL_MVD_CPU_Sync();
6087     HAL_MVD_FlushMemory();
6088 
6089     //wait vld init success or data may lost!
6090 #define WAIT_INIT_SUCCESS_TIME 100 //100ms
6091     u32deley = HAL_MVD_GetTime();
6092     while ((HAL_MVD_GetDecodeStatus(u8Idx)==DEC_STAT_IDLE) && (u32time<WAIT_INIT_SUCCESS_TIME))
6093     {
6094         u32time = HAL_MVD_GetTime()-u32deley;
6095     }
6096     if (u32time>=WAIT_INIT_SUCCESS_TIME)
6097     {
6098         MVD_DEBUGERROR(printf("%s: wait init_success timeout!!!\n", __FUNCTION__));
6099     }
6100     HAL_MVD_SetSLQStartEnd(u8Idx, u32StreamBufAddr, u32StreamBufEndAddr);
6101     MVD_DEBUGINFO(printf("set MVD3_FW_SLQ_TAB_TMPBUF_ADR=%lx\n",(unsigned long)u32MVDFWSLQTABTmpbufAdr));
6102 
6103     HAL_MVD_CPU_Sync();
6104     HAL_MVD_FlushMemory();
6105     HAL_MVD_SetSLQStartEnd(u8Idx, u32MVDFWSLQTABTmpbufAdr, u32MVDFWSLQTABTmpbufAdr+MVD3_FW_SLQ_TAB_TMPBUF_LEN);
6106 
6107     HAL_MVD_CPU_Sync();
6108     HAL_MVD_ReadMemory();
6109 
6110     // wait decode complete
6111 #define WAIT_DECODE_DONE_TIME 33 //To decode 1 frame should take less than 33ms
6112     u32deley = HAL_MVD_GetTime();
6113     u32time = 0;
6114     while (HAL_MVD_GetPicCounter(u8Idx)<1 && (u32time<WAIT_DECODE_DONE_TIME))
6115     {
6116         u32time = HAL_MVD_GetTime()-u32deley;
6117     }
6118     if (u32time >= WAIT_DECODE_DONE_TIME)
6119     {
6120         MVD_DEBUGERROR(printf ("MDrv_MVD_DecodeIFrame time out(du=%d, st=%d, now=%d)\n", u32time, u32deley, HAL_MVD_GetTime()));
6121         MVD_DEBUGERROR(printf("frmCnt=%d state=0x%x lastCmd=0x%x\n", HAL_MVD_GetPicCounter(u8Idx), HAL_MVD_GetDecodeStatus(u8Idx), HAL_MVD_GetLastCmd(u8Idx)));
6122         return FALSE;
6123     }
6124     MVD_DEBUGINFO(printf ("MDrv_MVD_DecodeIFrame time (%d, %d)\n", u32time, u32deley));
6125     //printf("frmCnt=%ld state=0x%x lastCmd=0x%x\n", HAL_MVD_GetPicCounter(u8Idx), HAL_MVD_GetDecodeStatus(u8Idx), HAL_MVD_GetLastCmd(u8Idx));
6126 
6127     MVD_CtrlCfg* pCtrlCfg = HAL_MVD_GetCtrlCfg(u8Idx);
6128     pCtrlCfg->bDecodeIFrame = TRUE;
6129 
6130     return TRUE;
6131 }
6132 
6133 
6134 //------------------------------------------------------------------------------
6135 /// Set bit stream buffer address to MVD
6136 /// @param -u32start \b IN : start address
6137 /// @param -u32end \b IN : end address
6138 //------------------------------------------------------------------------------
MVD_SetBitStreamAddr(MS_U8 u8Idx,MS_VIRT u32start,MS_VIRT u32end)6139 static void MVD_SetBitStreamAddr(MS_U8 u8Idx, MS_VIRT u32start, MS_VIRT u32end)
6140 {
6141     MVD_CmdArg mvdcmd;
6142     MS_ASSERT((u32start%8)==0);
6143     u32start >>= 3;
6144     SET_CMDARG(mvdcmd, u32start, u8Idx);
6145     if (HAL_MVD_MVDCommand( CMD_STREAM_BUF_START, &mvdcmd ) == FALSE)
6146     {
6147         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_STREAM_BUF_START ) );
6148         return;
6149     }
6150 
6151     MS_ASSERT((u32end%8)==0);
6152     u32end >>= 3;
6153     SET_CMDARG(mvdcmd, u32end, u8Idx);
6154     if (HAL_MVD_MVDCommand( CMD_STREAM_BUF_END, &mvdcmd ) == FALSE)
6155     {
6156         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_STREAM_BUF_END ) );
6157         return;
6158     }
6159     return;
6160 }
6161 
HAL_MVD_SetInternalBuffAddr(MS_U8 u8Idx,MS_VIRT u32start,MS_U32 u32len)6162 MS_BOOL HAL_MVD_SetInternalBuffAddr(MS_U8 u8Idx, MS_VIRT u32start, MS_U32 u32len)
6163 {
6164     MS_VIRT tmpAdr, tmpLen;
6165     MVD_FWCfg* pFwCfg = NULL;
6166     MVD_FWBuff* pBuff = &(pMVDHalContext->stFWBuff[u8Idx]);
6167     MVD_MEMCfg* pstMemCfg = NULL;
6168     MVD_SLQTBLInfo* pstSlqTblInfo = NULL;
6169     MS_U32 u32Id = MVD_GetStreamId(u8Idx);
6170     MS_U8 u8VPUIdx = HAL_VPU_EX_GetTaskId(u32Id);
6171     MS_VIRT u32BuffStart = u32start+(MVD_FW_TASK_OFFSET*u8VPUIdx);
6172     MS_VIRT VPUSHMAddr = HAL_VPU_EX_GetSHMAddr();
6173     MS_VIRT u32StartOffset;
6174     MS_U8  u8MiuSel;
6175 
6176     if(VPUSHMAddr != 0)
6177     {
6178         _phy_to_miu_offset(u8MiuSel, u32StartOffset, VPUSHMAddr);
6179 
6180         u32StartOffset -= MVD_FW_CODE_LEN;
6181 
6182         if(u8Idx == 0)
6183         {
6184             u32BuffStart = u32StartOffset; // for main decoder
6185         }
6186         else if(u8Idx == 1)
6187         {
6188             u32BuffStart = u32StartOffset + 0x20000; // VPUSHMAddr+128K bytes
6189         }
6190     }
6191 
6192     MVD_DEBUGINFO(printf("MVD FW shared mem start = 0x%lx\n", (unsigned long)u32BuffStart));
6193     MVD_GetFWBuffAdd(u32BuffStart, u32len, pBuff);
6194     MVD_SetFWBuffAdd(u8Idx, pBuff);
6195 
6196     tmpAdr = pBuff->u32DecFrmInfoAdd + MVD_FW_DECFRM_INFO_BUF_LEN;
6197 
6198     HAL_MVD_MemGetMap(u8Idx, E_MVD_MMAP_FB, &tmpAdr, &tmpLen);
6199     MVD_DEBUGINFO(printf("set MVD_FRAMEBUFFER_ADR=%lx\n",(unsigned long)tmpAdr));
6200     HAL_MVD_SetFrameBuffAddr(u8Idx, tmpAdr, HAL_MVD_GetFBMode(u8Idx));
6201     pFwCfg = HAL_MVD_GetFWCfg(u8Idx);
6202     HAL_MVD_SetFrameBuffNum(u8Idx, pFwCfg->u8FBNum,pFwCfg->u32FBUsedSize);
6203 
6204 //  If VD_MHEG5(CPU) and MVD HW engine are run on different MIU,
6205 // IAP, DP, and MV buffers are allocated after FB.
6206 // The reason is that these 3 buffers are used by MVD HW engine.
6207     if(pMVDHalContext->bCMAUsed == FALSE)
6208     {
6209         tmpAdr += pFwCfg->u32FBUsedSize;
6210         pstMemCfg = HAL_MVD_GetMEMCfg(u8Idx);
6211         if (pstMemCfg->u32FBSize < (pFwCfg->u32FBUsedSize + MVD_HW_BUF_TOTAL_LEN))
6212         {
6213             MVD_DEBUGERROR(printf("MVD HW buffers larger than FB size!!!\n"));
6214         }
6215         MVD_DEBUGINFO(printf("MVD FB boundary =0x%lx\n",(unsigned long)tmpAdr));
6216         tmpAdr = HAL_MVD_SetHWBuffer(u8Idx, tmpAdr);
6217     }
6218 
6219     HAL_MVD_MemGetMap(u8Idx, E_MVD_MMAP_BS, &tmpAdr, &tmpLen);
6220     MVD_DEBUGINFO(printf("set MVD_BITSTREAM_ADR=%lx\n",(unsigned long)tmpAdr));
6221     MVD_SetBitStreamAddr(u8Idx, tmpAdr,tmpAdr+tmpLen);
6222     pstSlqTblInfo = HAL_MVD_GetSlqTblInfo(u8Idx);
6223     pstSlqTblInfo->u32ESBuffEnd = tmpAdr+tmpLen;
6224 
6225     if((pFwCfg->stFBReduction.LumaFBReductionMode != E_MVD_FB_REDUCTION_NONE)
6226     || (pFwCfg->stFBReduction.ChromaFBReductionMode  != E_MVD_FB_REDUCTION_NONE))
6227     {
6228         //for chips not support reduction mode, just ignore related config.
6229         MVD_DEBUGERROR(printf("MVD Err: Not support FB reduction mode!!\n"));
6230     }
6231 
6232     return TRUE;
6233 }
6234 
6235 //------------------------------------------------------------------------------
6236 /// Issue "Decode Pause" command.
6237 //------------------------------------------------------------------------------
HAL_MVD_DecodePause(MS_U8 u8Idx)6238 void HAL_MVD_DecodePause(MS_U8 u8Idx)
6239 {
6240     MVD_CmdArg mvdcmd;
6241     SETUP_CMDARG(mvdcmd);
6242     SET_DECNUM(mvdcmd, u8Idx);
6243     if (HAL_MVD_MVDCommand(CMD_PAUSE, &mvdcmd)== FALSE)
6244     {
6245         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_PAUSE) );
6246         return;
6247     }
6248 
6249     return;
6250 }
6251 
6252 
6253 //------------- Below functions are for MediaCodec SLQ Table --------------------
6254 #if _SLQTBL_DUMP_PTS
_SLQTbl_DumpPtsTbl(MS_U8 u8Idx,MS_U32 u32EntryStart,MS_U32 u32EntryEnd)6255 static void _SLQTbl_DumpPtsTbl(MS_U8 u8Idx, MS_U32 u32EntryStart, MS_U32 u32EntryEnd)
6256 {
6257     MS_U32 i;
6258     MS_VIRT u32EsRp, u32EsStart, u32EsEnd;
6259     MS_VIRT u32MVDFWPtsTblAddr = GET_PTSTBL_BUFFADD(u8Idx);
6260 
6261     for (i=u32EntryStart; i<u32EntryEnd; i++)
6262     {
6263         u32EsRp = pstSlqTblInfo->pDrvEsTbl->u32StAdd + i*8;
6264 
6265         u32EsEnd = HAL_MVD_MemRead4Byte(u32EsRp+4);
6266         u32EsStart = HAL_MVD_MemRead4Byte(u32EsRp); //report StartAdd as read_pointer
6267         printf("ES[%x] Start=0x%x End=0x%x u32EsRp=%x\n",
6268             i, u32EsStart, u32EsEnd, u32EsRp);
6269     }
6270 
6271     printf("\n=======Dump PTS table========\n");
6272     printf("addr\t byte_cnt\t dummy_cnt\t id_low\t id_high\t time_stamp\n");
6273     for (i=u32EntryStart; i<u32EntryEnd; i++)
6274     {
6275         printf("0x%x\t 0x%08lx\t 0x%08lx\t 0x%08lx\t 0x%08lx\t 0x%08lx\n", u32MVDFWPtsTblAddr+i*MVD_FW_SLQTBL_PTS_LEN,
6276                HAL_MVD_MemRead4Byte(u32MVDFWPtsTblAddr+i*MVD_FW_SLQTBL_PTS_LEN),   //byteCnt
6277                HAL_MVD_MemRead4Byte(u32MVDFWPtsTblAddr+i*MVD_FW_SLQTBL_PTS_LEN+4), //dummyPktCnt
6278                HAL_MVD_MemRead4Byte(u32MVDFWPtsTblAddr+i*MVD_FW_SLQTBL_PTS_LEN+8), //idLow
6279                HAL_MVD_MemRead4Byte(u32MVDFWPtsTblAddr+i*MVD_FW_SLQTBL_PTS_LEN+12),//idHigh
6280                HAL_MVD_MemRead4Byte(u32MVDFWPtsTblAddr+i*MVD_FW_SLQTBL_PTS_LEN+16) //pts
6281                );
6282     }
6283     printf("=====================================\n");
6284 }
6285 #endif
6286 
6287 
6288 #if SLQ_NEW_PUSH
MVD_SLQTblGetHdrPkt(MS_U8 u8Idx,MVD_PacketInfo * pDivxHdr,MVD_PacketInfo * pDivxData)6289 void MVD_SLQTblGetHdrPkt(MS_U8 u8Idx, MVD_PacketInfo* pDivxHdr, MVD_PacketInfo* pDivxData)
6290 #else
6291 static void MVD_SLQTblGetDivxHdrPkt(MS_U8 u8Idx, MVD_PacketInfo* pDivxHdr, MVD_PacketInfo* pDivxData)
6292 #endif
6293 {
6294     MVD_SLQTBLInfo* pstSlqTblInfo = HAL_MVD_GetSlqTblInfo(u8Idx);
6295     MS_VIRT u32DivXPattern = pstSlqTblInfo->pDrvDivxTbl->u32WrPtr;
6296     MS_U32 u32FrmSize = pDivxData->u32Length;
6297     MVD_CodecType curCodecType = HAL_MVD_GetCodecType(u8Idx);
6298     MVD_MEMCfg* pstMemCfg = HAL_MVD_GetMEMCfg(u8Idx);
6299 #ifdef VDEC3
6300     MVD_CtrlCfg* pstCtrlCfg = HAL_MVD_GetCtrlCfg(u8Idx);
6301 #endif
6302 #if SLQ_NEW_PUSH
6303     if(pstSlqTblInfo->pSlqStatus->bSlqCtrlBit && pstCtrlCfg->u8McuMode == FALSE)
6304     {
6305         if(pstSlqTblInfo->pSlqStatus->bSlqPicWaitNextStart && pstSlqTblInfo->pSlqStatus->bSlqPicStart)
6306         {
6307              //printf("Show KC the SlqPushLength = 0x%x\n",pstSlqTblInfo->pSlqStatus->u32SlqPushLength);
6308             if (E_MVD_CODEC_DIVX311 == curCodecType)
6309             {
6310                 HAL_MVD_MemWrite4Byte(pstSlqTblInfo->pSlqStatus->u32SlqPatternAddr +4, pstSlqTblInfo->pSlqStatus->u32SlqPushLength);
6311                 HAL_MVD_MemWrite4Byte(pstSlqTblInfo->pSlqStatus->u32SlqPatternAddr , DIVX_PATTERN);
6312             }
6313             else if(E_MVD_CODEC_VC1_MAIN == curCodecType)
6314             {//rcv
6315                 HAL_MVD_MemWrite4Byte(pstSlqTblInfo->pSlqStatus->u32SlqPatternAddr +4, RCV_PATTERN);
6316                 HAL_MVD_MemWrite4Byte(pstSlqTblInfo->pSlqStatus->u32SlqPatternAddr , pstSlqTblInfo->pSlqStatus->u32SlqPushLength);
6317             }
6318             else if (E_MVD_CODEC_VC1_ADV == curCodecType)
6319             {
6320                 HAL_MVD_MemWrite4Byte(pstSlqTblInfo->pSlqStatus->u32SlqPatternAddr , VC1_PATTERN);
6321             }
6322             pstSlqTblInfo->pSlqStatus->u32SlqPushLength = 0;
6323             pstSlqTblInfo->pSlqStatus->u32SlqPatternAddr  = 0;
6324             pstSlqTblInfo->pSlqStatus->bSlqFireRdy =TRUE;
6325             pstSlqTblInfo->pSlqStatus->u32VaildWptrAddr = pstSlqTblInfo->pDrvSlqTbl->u32WrPtr;// - 16;
6326             pstSlqTblInfo->pSlqStatus->bSlqPicWaitNextStart = FALSE;
6327             pstSlqTblInfo->pSlqStatus->bSlqPicCollect = FALSE;
6328         }
6329 
6330         if(pstSlqTblInfo->pSlqStatus->bSlqPicStart)
6331         {
6332             pstSlqTblInfo->pSlqStatus->u32SlqPatternAddr = u32DivXPattern;
6333             pstSlqTblInfo->pSlqStatus->u32SlqPushLength += u32FrmSize;
6334             pstSlqTblInfo->pSlqStatus->bSlqPicCollect = TRUE;
6335             pstSlqTblInfo->pSlqStatus->bSlqPicWaitNextStart =TRUE;
6336         }
6337         else if(pstSlqTblInfo->pSlqStatus->bSlqPicCollect)
6338         {
6339             pstSlqTblInfo->pSlqStatus->u32SlqPushLength += u32FrmSize;
6340             pstSlqTblInfo->pSlqStatus->bSlqPicWaitNextStart =TRUE;
6341         }
6342     }
6343     else
6344     {
6345         HAL_MVD_MemWrite4Byte(u32DivXPattern, DIVX_PATTERN);
6346         HAL_MVD_MemWrite4Byte(u32DivXPattern +4,u32FrmSize);
6347     }
6348 #else
6349     HAL_MVD_MemWrite4Byte(u32DivXPattern, DIVX_PATTERN);
6350     HAL_MVD_MemWrite4Byte(u32DivXPattern+4, u32FrmSize);
6351 #endif
6352     pDivxHdr->u32StAddr = u32DivXPattern - HAL_MVD_GetMemOffset(pstMemCfg->u32DrvBufAddr);
6353     pDivxHdr->u32TimeStamp = pDivxData->u32TimeStamp; //unit: ms
6354     pDivxHdr->u32ID_L = pDivxData->u32ID_L;
6355     pDivxHdr->u32ID_H = pDivxData->u32ID_H;
6356     //printf("u32DivXPattern(0x%x==>0x%x)=0x%x 0x%x\n", u32DivXPattern, pDivxHdr->u32StAddr,
6357     //        HAL_MVD_MemRead4Byte(u32DivXPattern), HAL_MVD_MemRead4Byte(u32DivXPattern+4));
6358     if (E_MVD_CODEC_VC1_ADV == curCodecType)
6359     {
6360         pstSlqTblInfo->pDrvDivxTbl->u32WrPtr += 4;
6361         pDivxHdr->u32Length = 4;
6362     }
6363     else
6364     {
6365         pstSlqTblInfo->pDrvDivxTbl->u32WrPtr += 8;
6366         if(pstCtrlCfg->u8McuMode == TRUE)
6367         {
6368             pDivxHdr->u32Length = 64;
6369             if (pstSlqTblInfo->pDrvDivxTbl->u32WrPtr >= pstSlqTblInfo->pDrvDivxTbl->u32EndAdd)
6370             {
6371                 pstSlqTblInfo->pDrvDivxTbl->u32WrPtr = pstSlqTblInfo->pDrvDivxTbl->u32StAdd;
6372             }
6373         }
6374         else
6375         {
6376             pDivxHdr->u32Length = 8;
6377         }
6378     }
6379 
6380 #if SLQ_NEW_PUSH
6381     if(pstSlqTblInfo->pSlqStatus->bSlqPicStart && pstCtrlCfg->u8McuMode == FALSE)
6382     {
6383         if (E_MVD_CODEC_VC1_ADV == curCodecType)
6384         {
6385             pstSlqTblInfo->pDrvDivxTbl->u32WrPtr += 4;
6386             pDivxHdr->u32Length = 4;
6387         }
6388         else
6389         {
6390             pstSlqTblInfo->pDrvDivxTbl->u32WrPtr += 8;
6391             pDivxHdr->u32Length = 8;
6392         }
6393     }
6394 #endif
6395 }
6396 
MVD_SLQTblInitFileEndPkt(MS_U8 u8Idx,MVD_CodecType eType)6397 static void MVD_SLQTblInitFileEndPkt(MS_U8 u8Idx, MVD_CodecType eType)
6398 {
6399     MVD_MEMCfg* pstMemCfg = HAL_MVD_GetMEMCfg(u8Idx);
6400     MS_PHY u32EndPattern = HAL_MVD_GetMemOffset(pstMemCfg->u32DrvBufAddr+SLQ_TBL_SIZE*3);
6401     MS_PHY temp = 0;
6402 
6403 #if 0
6404     _MVD_Memset(u32EndPattern, 0xff, END_PATTERN_SIZE);
6405 #else
6406     //_miu_offset_to_phy(pMVDHalContext->stMiuCfg.u8FWMiuSel,u32EndPattern,temp);
6407     temp = u32EndPattern+pMVDHalContext->stMiuCfg.u8FWMiuSel*HAL_MIU1_BASE;
6408     memset((void*)(MS_PA2KSEG1(temp)),0xff,END_PATTERN_SIZE);
6409     MsOS_FlushMemory();
6410     MsOS_ReadMemory();
6411 #endif
6412 
6413     if ((E_MVD_CODEC_FLV == eType)||(E_MVD_CODEC_MPEG4_SHORT_VIDEO_HEADER == eType))
6414     {
6415         HAL_MVD_MemWrite4Byte(u32EndPattern, FLV_PATTERN);
6416         HAL_MVD_MemWrite4Byte(u32EndPattern+4, 0xffffffff);
6417         HAL_MVD_MemWrite4Byte(u32EndPattern+8, END_PATTERN_1); //scw
6418         HAL_MVD_MemWrite4Byte(u32EndPattern+12,END_PATTERN_2); //scw
6419         HAL_MVD_MemWrite4Byte(u32EndPattern+16,END_PATTERN_3); //scw
6420         //printf("##########FileEnd for FLV/SVH!, u32EndPattern=%x\n",u32EndPattern);
6421     }
6422     else if (E_MVD_CODEC_DIVX311 == eType)
6423     {
6424         HAL_MVD_MemWrite4Byte(u32EndPattern, DIVX_PATTERN);
6425         HAL_MVD_MemWrite4Byte(u32EndPattern+4, 0xffffffff);
6426         HAL_MVD_MemWrite4Byte(u32EndPattern+8, END_PATTERN_1); //scw
6427         HAL_MVD_MemWrite4Byte(u32EndPattern+12,END_PATTERN_2); //scw
6428         HAL_MVD_MemWrite4Byte(u32EndPattern+16,END_PATTERN_3); //scw
6429         //printf("##########FileEnd for DIVX311!, u32EndPattern=%x\n",u32EndPattern);
6430     }
6431     else if ((E_MVD_CODEC_MPEG2 == eType)||(E_MVD_CODEC_MPEG4 == eType))
6432     {
6433         HAL_MVD_MemWrite4Byte(u32EndPattern, MPEG_PATTERN_0);
6434         HAL_MVD_MemWrite4Byte(u32EndPattern+4, END_PATTERN_1);
6435         HAL_MVD_MemWrite4Byte(u32EndPattern+8, END_PATTERN_2);
6436         HAL_MVD_MemWrite4Byte(u32EndPattern+12,END_PATTERN_3);
6437         //printf("##########FileEnd for MPEG2/4!, u32EndPattern=%x\n",u32EndPattern);
6438     }
6439     else
6440     {
6441         HAL_MVD_MemWrite4Byte(u32EndPattern, END_PATTERN_0);
6442         HAL_MVD_MemWrite4Byte(u32EndPattern+4, END_PATTERN_1);
6443         HAL_MVD_MemWrite4Byte(u32EndPattern+8, END_PATTERN_2); //scw
6444         HAL_MVD_MemWrite4Byte(u32EndPattern+12,END_PATTERN_3); //scw
6445         //printf("##########FileEnd for VC1!, u32EndPattern=%x\n",u32EndPattern);
6446     }
6447 
6448     MVD_DEBUGINFO(printf("u32EndPattern(0x%lx)=0x%x 0x%x\n", (unsigned long)u32EndPattern,
6449             HAL_MVD_MemRead4Byte(u32EndPattern), HAL_MVD_MemRead4Byte(u32EndPattern+4)));
6450 }
6451 
6452 
MVD_SLQTblInitDummyPkt(MS_U8 u8Idx,MVD_CodecType eType)6453 static void MVD_SLQTblInitDummyPkt(MS_U8 u8Idx, MVD_CodecType eType)
6454 {
6455     MVD_MEMCfg* pstMemCfg = HAL_MVD_GetMEMCfg(u8Idx);
6456     MS_PHY u32DummyES = HAL_MVD_GetMemOffset(pstMemCfg->u32DrvBufAddr+SLQ_TBL_SIZE*2);
6457     MS_U32 u32DummyPattern[3];
6458     MS_U32 u32PatternSize;
6459     MS_U32 i;
6460     MS_PHY temp = 0;
6461 
6462     //printf("eType = 0x%x\n", eType);
6463     //initial content for dummy packet
6464     #if 0
6465     _MVD_Memset(u32DummyES, 0xff, DUMMY_SIZE);
6466     #else
6467     temp = u32DummyES+pMVDHalContext->stMiuCfg.u8FWMiuSel*HAL_MIU1_BASE;
6468     memset((void*)(MS_PA2KSEG1(temp)),0xff,DUMMY_SIZE);
6469     MsOS_FlushMemory();
6470     MsOS_ReadMemory();
6471     #endif
6472 
6473     switch (eType)
6474     {
6475         case E_MVD_CODEC_FLV:
6476         case E_MVD_CODEC_MPEG4_SHORT_VIDEO_HEADER:
6477             u32DummyPattern[0] = FLV_PATTERN;
6478             u32PatternSize = 1;
6479             break;
6480 
6481         case E_MVD_CODEC_DIVX311:
6482             u32DummyPattern[0] = DIVX_PATTERN;
6483             u32PatternSize = 1;
6484             break;
6485 
6486         case E_MVD_CODEC_VC1_ADV: //vc1
6487             u32DummyPattern[0] = VC1_PATTERN_0;
6488             u32DummyPattern[1] = VC1_PATTERN_1;
6489             u32DummyPattern[2] = VC1_PATTERN_2;
6490             u32PatternSize = 3;
6491             break;
6492 
6493         case E_MVD_CODEC_VC1_MAIN: //rcv
6494             u32DummyPattern[0] = RCV_PATTERN_0;
6495             u32DummyPattern[1] = RCV_PATTERN_1;
6496             u32DummyPattern[2] = RCV_PATTERN_2;
6497             u32PatternSize = 3;
6498             break;
6499 
6500         default:
6501             u32DummyPattern[0] = DUMMY_PATTERN;
6502             u32PatternSize = 1;
6503             break;
6504     }
6505     for (i=0; i<u32PatternSize; i++)
6506     {
6507         HAL_MVD_MemWrite4Byte(u32DummyES+i*4, u32DummyPattern[i]);
6508     }
6509 #if 0
6510     printf("u32DummyES(0x%x)=0x%08lx 0x%08lx 0x%08lx 0x%08lx\n", u32DummyES, HAL_MVD_MemRead4Byte(u32DummyES),
6511             HAL_MVD_MemRead4Byte(u32DummyES+4),HAL_MVD_MemRead4Byte(u32DummyES+8),HAL_MVD_MemRead4Byte(u32DummyES+12));
6512 #endif
6513 
6514 }
6515 
MVD_SLQTblInitDrvSlqTbl(MVD_SLQ_TBL_ST * pDrvSlqTbl,MS_U32 u32Addr)6516 static void MVD_SLQTblInitDrvSlqTbl(MVD_SLQ_TBL_ST* pDrvSlqTbl, MS_U32 u32Addr)
6517 {
6518     MS_PHY temp = 0;
6519     pDrvSlqTbl->u32StAdd  = u32Addr;
6520     pDrvSlqTbl->u32EndAdd = u32Addr + SLQ_TBL_SIZE;
6521     pDrvSlqTbl->u32EntryCntMax = SLQ_ENTRY_MAX;
6522 
6523     //reset SLQ table read/write pointers
6524     pDrvSlqTbl->u32RdPtr = pDrvSlqTbl->u32StAdd;
6525     pDrvSlqTbl->u32WrPtr = pDrvSlqTbl->u32StAdd;
6526     pDrvSlqTbl->pu32LastEntry = &pDrvSlqTbl->u32WrPtr;
6527 
6528 #if (!MVD_TURBO_INIT)
6529     //reset SLQ table
6530 #if 0
6531     _MVD_Memset(pDrvSlqTbl->u32StAdd, 0, SLQ_TBL_SIZE);
6532 #else
6533     temp = pDrvSlqTbl->u32StAdd+pMVDHalContext->stMiuCfg.u8FWMiuSel*HAL_MIU1_BASE;
6534     memset((void*)(MS_PA2KSEG1(temp)),0,SLQ_TBL_SIZE);
6535     MsOS_FlushMemory();
6536     MsOS_ReadMemory();
6537 #endif
6538 #endif
6539     pDrvSlqTbl->u32Empty = SLQ_TBL_SIZE;
6540     //_SLQTbl_DumpInfo(pDrvSlqTbl);
6541 }
6542 
MVD_SLQTblInitSlqStatus(MVD_SLQ_STATUS * pSlqStatus,MS_VIRT u32WrPtr)6543 static void MVD_SLQTblInitSlqStatus(MVD_SLQ_STATUS* pSlqStatus, MS_VIRT u32WrPtr)
6544 {
6545 #if SLQ_NEW_PUSH
6546     pSlqStatus->u32VaildWptrAddr = u32WrPtr ;
6547     pSlqStatus->bSlqPicWaitNextStart = FALSE;
6548     pSlqStatus->bSlqCtrlBit = FALSE;
6549     pSlqStatus->u32SlqPushLength = 0;
6550     pSlqStatus->bSlqPicStart = FALSE;
6551     pSlqStatus->bSlqPicCollect = FALSE;
6552     pSlqStatus->bSlqEnLastFrameShow =FALSE;
6553     pSlqStatus->bSlqFireRdy = FALSE;
6554 #endif
6555 }
6556 
MVD_SLQTblInitDrvDivxTbl(MVD_SLQ_ES_ST * pDrvDivxTbl,MS_U32 u32StAdd,MS_U32 u32Val)6557 static void MVD_SLQTblInitDrvDivxTbl(MVD_SLQ_ES_ST* pDrvDivxTbl, MS_U32 u32StAdd, MS_U32 u32Val)
6558 {
6559     MS_PHY temp = 0;
6560     ///// init SLQ entries for DivX311
6561     pDrvDivxTbl->u32StAdd = u32StAdd;
6562     pDrvDivxTbl->u32EndAdd= pDrvDivxTbl->u32StAdd + SLQ_TBL_SIZE;
6563     pDrvDivxTbl->u32WrPtr = pDrvDivxTbl->u32StAdd;
6564     //pDrvDivxTbl->u32RdPtr = pDrvDivxTbl->u32StAdd;
6565 #if (!MVD_TURBO_INIT)
6566     //reset DivX311 pattern table
6567 #if 0
6568     _MVD_Memset(pDrvDivxTbl->u32StAdd, 0, u32Val);
6569 #else
6570     temp = pDrvDivxTbl->u32StAdd+pMVDHalContext->stMiuCfg.u8FWMiuSel*HAL_MIU1_BASE;
6571     memset((void*)(MS_PA2KSEG1(temp)),0,u32Val);
6572     MsOS_FlushMemory();
6573     MsOS_ReadMemory();
6574 #endif
6575 #endif
6576 }
6577 
MVD_SLQTblInitDrvEsTbl(MVD_SLQ_ES_ST * pDrvEsTbl,MS_U32 u32StAdd,MS_U32 u32Val)6578 static void MVD_SLQTblInitDrvEsTbl(MVD_SLQ_ES_ST* pDrvEsTbl, MS_U32 u32StAdd, MS_U32 u32Val)
6579 {
6580     UNUSED(u32Val);
6581     MS_PHY temp = 0;
6582     ///// init ES table
6583     pDrvEsTbl->u32StAdd = u32StAdd;
6584     pDrvEsTbl->u32EndAdd= pDrvEsTbl->u32StAdd + ES_TBL_SIZE;
6585     pDrvEsTbl->u32WrPtr = pDrvEsTbl->u32StAdd;
6586     //reset ES table
6587 #if 0
6588     _MVD_Memset(pDrvEsTbl->u32StAdd, 0, ES_TBL_SIZE);
6589 #else
6590     temp = pDrvEsTbl->u32StAdd+pMVDHalContext->stMiuCfg.u8FWMiuSel*HAL_MIU1_BASE;
6591     memset((void*)(MS_PA2KSEG1(temp)),0,ES_TBL_SIZE);
6592     MsOS_FlushMemory();
6593     MsOS_ReadMemory();
6594 #endif
6595 }
6596 
6597 //------------------------------------------------------------------------------------------------------------
6598 // Layout of drvProcBuffer
6599 //              -----------------
6600 // drvProcBuff | SlqTbl entries  | <- pstSlqTblInfo->pDrvSlqTbl->u32StAdd
6601 //             |     8K bytes    |
6602 //             | (1024 entries)  |
6603 //             |                 |
6604 //             |-----------------|
6605 //             | DivX311         | <- pstSlqTblInfo->pDrvSlqTbl->u32EndAdd   <- pstSlqTblInfo->pDrvDivxTbl->u32StAdd
6606 //             |     8K bytes    |
6607 //             | (1024 entries)  |
6608 //             |                 |
6609 //             |-----------------|
6610 //             | Flush Patterns  |... <- pstSlqTblInfo->pDrvDivxTbl->u32EndAdd   <- _drvDummy.u32StAdd
6611 //             |     8K bytes    |
6612 //             | (1024 entries)  |
6613 //             |                 |
6614 //             |-----------------|
6615 //             | FileEnd Pattern |... <- _drvDummy.u32EndAdd   <- _drvFileEnd.u32StAdd
6616 //             |     8K bytes    |
6617 //             | (1024 entries)  |
6618 //             |                 |
6619 //             |-----------------|
6620 //             |  ES table       |... <- _drvFileEnd.u32EndAdd   <- pstSlqTblInfo->pDrvEsTbl->u32StAdd
6621 //             |     8K bytes    |
6622 //             | (1024 entries)  |
6623 //             |                 |
6624 //             |-----------------|
6625 //             |                 |........ End of drvProcBuff
6626 //
6627 //------------------------------------------------------------------------------------------------------------
HAL_MVD_SLQTblInit(MS_U8 u8Idx)6628 MS_BOOL HAL_MVD_SLQTblInit(MS_U8 u8Idx)
6629 {
6630     MS_VIRT u32Addr, u32Len;
6631     MVD_CodecType curCodecType = HAL_MVD_GetCodecType(u8Idx);
6632     MVD_MEMCfg* pstMemCfg = HAL_MVD_GetMEMCfg(u8Idx);
6633     MVD_SLQTBLInfo* pstSlqTblInfo = HAL_MVD_GetSlqTblInfo(u8Idx);
6634 
6635     if(curCodecType == E_MVD_CODEC_UNKNOWN)
6636     {
6637         MVD_DEBUGERROR(printf("%s: unknow codec type!\n", __FUNCTION__));
6638         return FALSE;
6639     }
6640     pstSlqTblInfo->u32DummyPktCnt = 0;//reset dummy packet counter
6641     pstSlqTblInfo->u32SlqByteCnt = 0; //reset SLQ table byte counter
6642     pstSlqTblInfo->bSlqTblHasValidData = FALSE;
6643 
6644     HAL_MVD_MemGetMap(u8Idx, E_MVD_MMAP_DRV, &u32Addr, &u32Len);
6645 
6646     //init SLQ table attributes & reset SLQ table read/write pointers
6647     MVD_SLQTblInitDrvSlqTbl(pstSlqTblInfo->pDrvSlqTbl, u32Addr);
6648     pstSlqTblInfo->u32FileEndPtr = pstSlqTblInfo->pDrvSlqTbl->u32StAdd;
6649 
6650     MVD_SLQTblInitSlqStatus(pstSlqTblInfo->pSlqStatus, pstSlqTblInfo->pDrvSlqTbl->u32WrPtr);
6651 
6652     //set SLQ table start/end to F/W
6653     HAL_MVD_SetSLQTblBufStartEnd(u8Idx, HAL_MVD_GetMemOffset(pstMemCfg->u32BSAddr), HAL_MVD_GetMemOffset(pstMemCfg->u32BSAddr+SLQ_TBL_SIZE));
6654 
6655     ///// init SLQ entries for DivX311
6656     MVD_SLQTblInitDrvDivxTbl(pstSlqTblInfo->pDrvDivxTbl, pstSlqTblInfo->pDrvSlqTbl->u32EndAdd, SLQ_TBL_SIZE);
6657 
6658     ///// init flush pattern
6659     MVD_SLQTblInitDummyPkt(u8Idx, curCodecType);
6660 
6661     ///// init file-end pattern
6662     MVD_SLQTblInitFileEndPkt(u8Idx, curCodecType);
6663 
6664     MVD_SLQTblInitDrvEsTbl(pstSlqTblInfo->pDrvEsTbl, (pstSlqTblInfo->pDrvDivxTbl->u32EndAdd + DUMMY_SIZE*2), pstMemCfg->u32DrvBufSize);
6665 
6666     pstSlqTblInfo->u32PreEsRd = MVD_U32_MAX;    //reset ES read pointer
6667     pstSlqTblInfo->u32PreEsWr = 0;              //reset ES write pointer
6668 
6669     return TRUE;
6670 }
6671 
6672 
6673 #if 0
6674 static void _SLQTbl_DumpInfo(MVD_SLQ_TBL_ST* pInfo)
6675 {
6676     printf("str=0x%x\n", pInfo->u32StAdd);
6677     printf("end=0x%x\n", pInfo->u32EndAdd);
6678     printf("cnt=0x%x\n", pInfo->u32EntryCntMax);
6679     printf("rd =0x%x\n", pInfo->u32RdPtr);
6680     printf("wr =0x%x\n", pInfo->u32WrPtr);
6681     return;
6682 }
6683 #endif
6684 
6685 
HAL_MVD_GetQueueVacancy(MS_U8 u8Idx,MS_BOOL bCached)6686 MS_U32 HAL_MVD_GetQueueVacancy(MS_U8 u8Idx, MS_BOOL bCached)
6687 {
6688     MS_U32 u32Empty;
6689     MVD_SLQTBLInfo* pstSlqTblInfo = HAL_MVD_GetSlqTblInfo(u8Idx);
6690 
6691 #if 0
6692     if (MDrv_MVD_GetVldErrCount()!=0)
6693     {
6694         printf("QQQ wPtr= 0x%x(0x%x) rPtr=0x%x(0x%x) vldErr=0x%x\n", writePtrLast[u8Idx], pstSlqTblInfo->pDrvSlqTbl->u32WrPtr,
6695         HAL_MVD_GetSLQReadPtr(u8Idx), pstSlqTblInfo->pDrvSlqTbl->u32RdPtr, MDrv_MVD_GetVldErrCount(u8Idx));
6696         printf("Previous EsRead=0x%x EsWrite=0x%x\n", pstSlqTblInfo->u32PreEsRd, pstSlqTblInfo->u32PreEsWr);
6697         _SLQTbl_DumpPtsTbl(u8Idx, 0x0, 0x620);
6698         while(1);
6699     }
6700 #endif
6701 
6702     u32Empty = pstSlqTblInfo->pDrvSlqTbl->u32Empty;
6703     if ((TRUE == bCached) && (u32Empty > SLQTBL_CHECKVACANCY_WATERLEVEL))
6704     {
6705         //To have better performance, we only query F/W read pointer
6706         //when queue_vacancy is lower than water_level
6707         if (pstSlqTblInfo->pDrvSlqTbl->u32WrPtr > pstSlqTblInfo->pDrvSlqTbl->u32RdPtr)
6708         {
6709             u32Empty = SLQ_TBL_SIZE - (pstSlqTblInfo->pDrvSlqTbl->u32WrPtr - pstSlqTblInfo->pDrvSlqTbl->u32RdPtr);
6710         }
6711         else
6712         {
6713             u32Empty = pstSlqTblInfo->pDrvSlqTbl->u32RdPtr - pstSlqTblInfo->pDrvSlqTbl->u32WrPtr;
6714         }
6715 
6716         if (u32Empty == 0)// && (pstSlqTblInfo->pDrvSlqTbl->u32WrPtr == pstSlqTblInfo->pDrvSlqTbl->u32StAdd))
6717         {
6718             u32Empty = SLQ_TBL_SIZE;
6719         }
6720         u32Empty -= SLQ_TBL_SAFERANGE;
6721         return (u32Empty / SLQ_ENTRY_LEN);
6722     }
6723 
6724     pstSlqTblInfo->pDrvSlqTbl->u32RdPtr = HAL_MVD_Map2DrvSlqTbl(u8Idx, HAL_MVD_GetSLQReadPtr(u8Idx));
6725     //printf("QV=0x%x rd=0x%x==>", u32Empty, pstSlqTblInfo->pDrvSlqTbl->u32RdPtr);
6726     if (pstSlqTblInfo->pDrvSlqTbl->u32RdPtr >= (pstSlqTblInfo->pDrvSlqTbl->u32StAdd+SLQ_ENTRY_LEN))
6727     {
6728         if (pstSlqTblInfo->pDrvSlqTbl->u32RdPtr >= pstSlqTblInfo->pDrvSlqTbl->u32EndAdd)
6729         {
6730             MVD_DEBUGERROR(printf("%s: readPtr 0x%lx out of range: too large!\n",
6731                            __FUNCTION__, (unsigned long)pstSlqTblInfo->pDrvSlqTbl->u32RdPtr));
6732         }
6733         pstSlqTblInfo->pDrvSlqTbl->u32RdPtr -= SLQ_ENTRY_LEN;
6734     }
6735     else if (pstSlqTblInfo->pDrvSlqTbl->u32RdPtr == pstSlqTblInfo->pDrvSlqTbl->u32StAdd)
6736     {
6737         pstSlqTblInfo->pDrvSlqTbl->u32RdPtr = pstSlqTblInfo->pDrvSlqTbl->u32EndAdd - SLQ_ENTRY_LEN;
6738     }
6739     else
6740     {
6741         MVD_DEBUGERROR(printf("%s: readPtr 0x%lx out of range: too small!\n",
6742                        __FUNCTION__, (unsigned long)pstSlqTblInfo->pDrvSlqTbl->u32RdPtr));
6743         pstSlqTblInfo->pDrvSlqTbl->u32RdPtr = pstSlqTblInfo->pDrvSlqTbl->u32StAdd;
6744     }
6745     //printf("0x%x\n", pstSlqTblInfo->pDrvSlqTbl->u32RdPtr);
6746 
6747     if (pstSlqTblInfo->pDrvSlqTbl->u32WrPtr > pstSlqTblInfo->pDrvSlqTbl->u32RdPtr)
6748     {
6749         u32Empty = SLQ_TBL_SIZE - (pstSlqTblInfo->pDrvSlqTbl->u32WrPtr - pstSlqTblInfo->pDrvSlqTbl->u32RdPtr);
6750     }
6751     else
6752     {
6753         u32Empty = pstSlqTblInfo->pDrvSlqTbl->u32RdPtr - pstSlqTblInfo->pDrvSlqTbl->u32WrPtr;
6754     }
6755 
6756     if (u32Empty == 0)// && (pstSlqTblInfo->pDrvSlqTbl->u32WrPtr == pstSlqTblInfo->pDrvSlqTbl->u32StAdd))
6757     {
6758         u32Empty = SLQ_TBL_SIZE;
6759     }
6760 
6761     pstSlqTblInfo->pDrvSlqTbl->u32Empty = u32Empty;
6762 
6763     if (u32Empty < SLQ_TBL_SAFERANGE)
6764     {//to avoid write_pointer catch up to read_pointer
6765         u32Empty= 0;
6766     }
6767     else
6768     {
6769         u32Empty -= SLQ_TBL_SAFERANGE;
6770     }
6771 
6772     //printf("%s r=0x%x w=0x%x u32Empty=0x%x\n", __FUNCTION__,
6773     //        pstSlqTblInfo->pDrvSlqTbl->u32RdPtr, pstSlqTblInfo->pDrvSlqTbl->u32WrPtr, u32Empty);
6774     return (u32Empty / SLQ_ENTRY_LEN);
6775 }
6776 
HAL_MVD_PushQueue(MS_U8 u8Idx,MVD_PacketInfo * pInfo)6777 E_MVD_Result HAL_MVD_PushQueue(MS_U8 u8Idx, MVD_PacketInfo* pInfo)
6778 {
6779     E_MVD_Result eRet=E_MVD_RET_INVALID_PARAM;
6780     MVD_CodecType curCodecType = HAL_MVD_GetCodecType(u8Idx);
6781     MVD_MEMCfg* pstMemCfg = HAL_MVD_GetMEMCfg(u8Idx);
6782     MVD_SLQTBLInfo* pstSlqTblInfo = HAL_MVD_GetSlqTblInfo(u8Idx);
6783     MS_U32 u32Id = MVD_GetStreamId(u8Idx);
6784     MS_U8 u8VPUIdx = HAL_VPU_EX_GetTaskId(u32Id);
6785 #ifdef VDEC3
6786     MS_VIRT u32VBBUAddr = HAL_MVD_GetVBBUTableAddr(u8VPUIdx);
6787     MVD_CtrlCfg* pstCtrlCfg = HAL_MVD_GetCtrlCfg(u8Idx);
6788 #endif
6789     if (pInfo == NULL)
6790     {
6791         MVD_DEBUGERROR(printf("PushQueue NULL pInfo\n"));
6792         return E_MVD_RET_INVALID_PARAM;
6793     }
6794 
6795 #ifndef VDEC3
6796     if(pMVDHalContext->bAutoInsertDummyPattern[u8Idx] == TRUE)
6797 #else
6798     if(pstCtrlCfg->u8McuMode == TRUE)
6799 #endif
6800     {
6801         MS_U8* temp = (MS_U8*)(MS_PA2KSEG1( (MS_PHY)(pInfo->u32StAddr)+pstMemCfg->u32BSAddr));
6802         MS_U32 i;
6803         MS_U32 u32DummyPattern[3];
6804         MS_U32 u32PatternSize;
6805 
6806         switch (curCodecType)
6807         {
6808             case E_MVD_CODEC_FLV:
6809             case E_MVD_CODEC_MPEG4_SHORT_VIDEO_HEADER:
6810                 u32DummyPattern[0] = FLV_PATTERN;
6811                 u32PatternSize = 1;
6812                 break;
6813 
6814             case E_MVD_CODEC_DIVX311:
6815                 u32DummyPattern[0] = DIVX_PATTERN;
6816                 u32PatternSize = 1;
6817                 break;
6818 
6819             case E_MVD_CODEC_VC1_ADV: //vc1
6820                 u32DummyPattern[0] = VC1_PATTERN_0;
6821                 u32DummyPattern[1] = VC1_PATTERN_3;
6822                 u32PatternSize = 2;
6823                 break;
6824             case E_MVD_CODEC_VC1_MAIN: //rcv
6825                 u32DummyPattern[0] = RCV_PATTERN_3;
6826                  u32DummyPattern[1] = RCV_PATTERN_1;
6827                  u32DummyPattern[2] = RCV_PATTERN_3;
6828                 u32PatternSize = 3;
6829                 break;
6830 
6831             default:
6832                 u32DummyPattern[0] = DUMMY_PATTERN;
6833                 u32DummyPattern[1] = DUMMY_PATTERN;
6834                 u32PatternSize = 2;
6835                 break;
6836         }
6837 
6838 
6839         for (i=0; i<u32PatternSize; i++)
6840         {
6841             temp[4*i+pInfo->u32Length] = ((u32DummyPattern[i])&0xff);
6842             temp[4*i+pInfo->u32Length+1] = ((u32DummyPattern[i]>>8)&0xff);
6843             temp[4*i+pInfo->u32Length+2] = ((u32DummyPattern[i]>>16)&0xff);
6844             temp[4*i+pInfo->u32Length+3] = ((u32DummyPattern[i]>>24)&0xff);
6845         }
6846 
6847         for(i=u32PatternSize*4;i<256;i++)
6848         {
6849             temp[pInfo->u32Length+i] = 0xFF;
6850         }
6851 
6852         pInfo->u32Length += 256;
6853     }
6854 
6855 
6856 #if _SLQTBL_DUMP_PUSHQ
6857     {
6858         //static MS_U32 u32pqTimes[MAX_DEC_NUM]= {0, 0};
6859 
6860         printf("Push[%x] st=0x%x len=0x%x pts=0x%x\n", pMVDHalContext->u32pqTimes[u8Idx]++,
6861                 pInfo->u32StAddr, pInfo->u32Length, pInfo->u32TimeStamp);
6862     }
6863 #endif
6864 
6865 #if SLQ_NEW_PUSH
6866     if((pInfo->u32StAddr & SLQ_PIC_START_FLAG) == SLQ_PIC_START_FLAG)
6867     {
6868         pInfo->u32StAddr = pInfo->u32StAddr&~SLQ_PIC_START_FLAG;
6869         pstSlqTblInfo->pSlqStatus->bSlqPicStart =TRUE;
6870         pstSlqTblInfo->pSlqStatus->bSlqCtrlBit = TRUE;
6871     }
6872     else
6873     {
6874         pstSlqTblInfo->pSlqStatus->bSlqPicStart = FALSE;
6875     }
6876 #endif
6877     //check input parameters
6878     if (pInfo->u32StAddr >= pstMemCfg->u32BSSize)
6879     {
6880         //since u32StAddr is offset, it shouldn't be larger than size.
6881         MVD_DEBUGERROR(printf("PushQueue invalid u32StAddr=0x%lx, bsSize=0x%lx\n", (unsigned long)pInfo->u32StAddr, (unsigned long)pstMemCfg->u32BSSize));
6882         return E_MVD_RET_INVALID_PARAM;
6883     }
6884     else if ((pInfo->u32TimeStamp == MVD_NULLPKT_PTS) && (pInfo->u32Length==0))
6885     {
6886         // AVI NULL packet.
6887         pstSlqTblInfo->u32DummyPktCnt++;
6888         //printf("Pos:0x%x%08x; PTS:%08d; NullPKT:%d\n", pInfo->u32ID_H, pInfo->u32ID_L, pInfo->u32TimeStamp, pstSlqTblInfo->u32DummyPktCnt);
6889         return E_MVD_RET_OK;
6890     }
6891 
6892     if (FALSE == (HAL_MVD_IsMStreamerMode(u8Idx) ||HAL_MVD_IsMcuMode(u8Idx)))
6893     {   //Check repeat PTS for non-MStreamer/Mcu mode.
6894         //printf(".Pos:0x%x%08x; PTS:%08d; NullPKT:%d\n", pInfo->u32ID_H, pInfo->u32ID_L, pInfo->u32TimeStamp, pstSlqTblInfo->u32DummyPktCnt);
6895         if (pInfo->u32TimeStamp == pstSlqTblInfo->u32LastPts)
6896         {
6897             //printf("Repeat PTS!\n");
6898             if (pInfo->u32TimeStamp != MVD_NULLPKT_PTS)
6899                 pInfo->u32TimeStamp = MVD_NULLPKT_PTS; //repeat PTS
6900         }
6901         else
6902         {
6903             pstSlqTblInfo->u32LastPts = pInfo->u32TimeStamp;
6904         }
6905     }
6906 
6907     //check queue vacancy
6908     if (pstSlqTblInfo->pDrvSlqTbl->u32Empty >= SLQ_TBL_SAFERANGE)
6909     {   //put packets
6910 #if SLQ_NEW_PUSH
6911         if (E_MVD_CODEC_DIVX311 == curCodecType
6912             ||E_MVD_CODEC_VC1_MAIN == curCodecType //rcv
6913             ||E_MVD_CODEC_VC1_ADV == curCodecType)
6914         {
6915             MVD_PacketInfo stHdr;
6916             if((pstSlqTblInfo->pSlqStatus->bSlqCtrlBit) || (E_MVD_CODEC_DIVX311 == curCodecType))
6917             {
6918                 MVD_SLQTblGetHdrPkt(u8Idx, &stHdr, pInfo);
6919 
6920                 if(pstSlqTblInfo->pSlqStatus->bSlqPicStart||(!pstSlqTblInfo->pSlqStatus->bSlqCtrlBit))
6921                 {
6922                     if (HAL_MVD_IsMStreamerMode(u8Idx) || HAL_MVD_IsMcuMode(u8Idx))
6923                     {   //to mark this packet's pts as unused.
6924                         stHdr.u32TimeStamp = MVD_NULLPKT_PTS;
6925                         stHdr.u32ID_H = MVD_NULLPKT_PTS;
6926                     }
6927 #ifdef VDEC3
6928                     if(pstCtrlCfg->u8McuMode == TRUE)
6929                     {
6930                         if(HAL_VPU_EX_GetVBBUVacancy(u32VBBUAddr) > 1)
6931                         {
6932                             HAL_VPU_EX_PacketInfo stVpuPkt;
6933 
6934                             stVpuPkt.u32Offset = stHdr.u32StAddr;
6935                             stVpuPkt.u32Length = stHdr.u32Length;
6936                             stVpuPkt.u64TimeStamp = (MS_U64)stHdr.u32TimeStamp;
6937                             //If in display queue mode
6938                             stVpuPkt.u64TimeStamp |= ((MS_U64)stHdr.u32ID_H << 32);
6939                             stVpuPkt.u32ID_H = stHdr.u32ID_H;
6940                             stVpuPkt.u32ID_L = stHdr.u32ID_L;
6941 
6942                             pstSlqTblInfo->bSlqTblHasValidData = TRUE;
6943                             eRet = (E_MVD_Result)HAL_VPU_EX_Push2VBBU(u32Id, &stVpuPkt, u32VBBUAddr);
6944                         }
6945                         else
6946                         {
6947                             return E_MVD_RET_FAIL;
6948                         }
6949                     }
6950                     else
6951 #endif
6952                     {
6953                         HAL_MVD_SLQTblSendPacket(u8Idx, &stHdr);
6954                     }
6955                 }
6956             }
6957         }
6958  #else
6959         if (E_MVD_CODEC_DIVX311 == curCodecType)
6960         {
6961             MVD_PacketInfo stDivxHdr;
6962             MVD_SLQTblGetDivxHdrPkt(u8Idx, &stDivxHdr, pInfo);
6963             if (HAL_MVD_IsMStreamerMode(u8Idx) || HAL_MVD_IsMcuMode(u8Idx))
6964             {   //to mark this packet's pts as unused.
6965                 stDivxHdr.u32TimeStamp = MVD_NULLPKT_PTS;
6966                 stDivxHdr.u32ID_H = MVD_NULLPKT_PTS;
6967             }
6968             HAL_MVD_SLQTblSendPacket(u8Idx, &stDivxHdr);
6969         }
6970 #endif
6971 
6972 #ifdef VDEC3
6973         if(pstCtrlCfg->u8McuMode == TRUE)
6974         {
6975             if(HAL_VPU_EX_GetVBBUVacancy(u32VBBUAddr) > 0)
6976             {
6977                 HAL_VPU_EX_PacketInfo stVpuPkt;
6978 
6979                 stVpuPkt.u32Offset = pInfo->u32StAddr;
6980                 stVpuPkt.u32Length = pInfo->u32Length;
6981                 stVpuPkt.u64TimeStamp = (MS_U64)pInfo->u32TimeStamp;
6982                  //If in display queue mode
6983                 stVpuPkt.u64TimeStamp |= ((MS_U64)pInfo->u32ID_H << 32);
6984                 stVpuPkt.u32ID_H = pInfo->u32ID_H;
6985                 stVpuPkt.u32ID_L = pInfo->u32ID_L;
6986 
6987                 pstSlqTblInfo->bSlqTblHasValidData = TRUE;
6988                 eRet = (E_MVD_Result)HAL_VPU_EX_Push2VBBU(u32Id, &stVpuPkt, u32VBBUAddr);
6989                 //VPRINTF("[%d]%s[%d],ret=%d,u32StAddr %x,u32Length %d,u32TimeStamp %d\n",u8Idx,__FUNCTION__,__LINE__,eRet,(unsigned int)pInfo->u32StAddr,(unsigned int)pInfo->u32Length,(unsigned int)pInfo->u32TimeStamp);
6990                 return eRet;
6991             }
6992             else
6993             {
6994                 return E_MVD_RET_FAIL;
6995             }
6996         }
6997         else
6998 #endif
6999         {
7000              HAL_MVD_SLQTblSendPacket(u8Idx, pInfo);
7001              eRet=E_MVD_RET_OK;
7002              pstSlqTblInfo->bSlqTblHasValidData = TRUE;
7003         }
7004     }
7005     else
7006     {
7007         MS_ASSERT(0); //shouldn't be here!
7008         MVD_DEBUGERROR(printf("PushQueue FULL!!! empty=0x%lx\n", (unsigned long)pstSlqTblInfo->pDrvSlqTbl->u32Empty));
7009         //Player will only push queue when queue vacancy != 0
7010         eRet=E_MVD_RET_QUEUE_FULL;
7011     }
7012 
7013     if (E_MVD_RET_OK != eRet)
7014     {
7015         MVD_DEBUGERROR(printf("%s ret = %d\n", __FUNCTION__, eRet));
7016     }
7017     return eRet;
7018 }
7019 
7020 
MVD_FlushTSQueue(MS_U8 u8Idx)7021 static E_MVD_Result MVD_FlushTSQueue(MS_U8 u8Idx)
7022 {
7023     if (HAL_MVD_GetLastCmd(u8Idx)!=CMD_PAUSE)
7024     {
7025         HAL_MVD_PauseDisp(u8Idx);
7026         HAL_MVD_DecodePause(u8Idx);
7027         HAL_MVD_FlushDisplayBuf(u8Idx);
7028     }
7029 
7030     if(HAL_MVD_SkipData(u8Idx) == FALSE)
7031     {
7032         return E_MVD_RET_FAIL;
7033     }
7034     else
7035     {
7036         return E_MVD_RET_OK;
7037     }
7038 }
7039 
7040 
MVD_PatternLenIsValid(MS_U8 u8Idx,MS_U32 u32Len)7041 static MS_BOOL MVD_PatternLenIsValid(MS_U8 u8Idx, MS_U32 u32Len)
7042 {
7043     MS_U32 u32ValidLen = 0;
7044     MVD_CodecType curCodecType = HAL_MVD_GetCodecType(u8Idx);
7045 #define MAX_VALIDLEN    0x200000    //2M
7046 
7047     if (E_MVD_CODEC_VC1_MAIN != curCodecType)
7048     {
7049         return TRUE;
7050     }
7051     else
7052     {
7053         //only RCV has to check this
7054         u32ValidLen = HAL_MVD_GetPayloadLen(u8Idx);
7055         if (u32ValidLen > MAX_VALIDLEN)
7056         {   //avoid the extreme large value due to error bitstream
7057             u32ValidLen = MAX_VALIDLEN;
7058         }
7059         MVD_DEBUGINFO(printf("(%x) ValidLen=0x%x CurLen=0x%x\n",
7060                        (u32Len > u32ValidLen), u32ValidLen, u32Len));
7061         return (u32Len > u32ValidLen);
7062     }
7063 }
7064 
MVD_FlushSlqTblQueue(MS_U8 u8Idx)7065 static E_MVD_Result MVD_FlushSlqTblQueue(MS_U8 u8Idx)
7066 {
7067     MS_U32 u32TimeCnt;
7068     MS_U32 u32PatternByteCnt = 0;
7069     MVD_SLQTBLInfo* pstSlqTblInfo = HAL_MVD_GetSlqTblInfo(u8Idx);
7070     MS_U32 u32Id = MVD_GetStreamId(u8Idx);
7071     MS_U8 u8VPUIdx = HAL_VPU_EX_GetTaskId(u32Id);
7072 #ifdef VDEC3
7073     MVD_CtrlCfg* pstCtrlCfg = HAL_MVD_GetCtrlCfg(u8Idx);
7074     MS_VIRT u32VBBUAddr = HAL_MVD_GetVBBUTableAddr(u8VPUIdx);
7075 #endif
7076     HAL_MVD_ResetHandShake(u8Idx,MVD_HANDSHAKE_PAUSE);
7077     HAL_MVD_PauseDisp(u8Idx);
7078     HAL_MVD_DecodePause(u8Idx);
7079     HAL_MVD_FlushDisplayBuf(u8Idx);
7080 
7081     u32TimeCnt = HAL_MVD_GetTime();
7082     while (((HAL_MVD_GetTime() - u32TimeCnt) < CMD_TIMEOUT_MS) ||
7083            (TRUE != MVD_PatternLenIsValid(u8Idx, u32PatternByteCnt)))
7084     {
7085         if (HAL_MVD_IsCmdFinished(u8Idx, MVD_HANDSHAKE_PAUSE))
7086         {
7087             MVD_DEBUGINFO(printf("\nPause finished!\n"));
7088             break;
7089         }
7090 
7091 #ifdef VDEC3
7092         if(pstCtrlCfg->u8McuMode == TRUE)
7093         {
7094             if(HAL_VPU_EX_GetVBBUVacancy(u32VBBUAddr) > 0)
7095             {
7096                 HAL_VPU_EX_PacketInfo stVpuPkt;
7097                 MVD_PacketInfo stDummyPkt;
7098                 MVD_SLQTblGetDummyPkt(&stDummyPkt);
7099 
7100                 stVpuPkt.u32Offset = stDummyPkt.u32StAddr;
7101                 stVpuPkt.u32Length = stDummyPkt.u32Length;
7102                 stVpuPkt.u64TimeStamp = (MS_U64)stDummyPkt.u32TimeStamp;
7103                 //If in display queue mode
7104                 stVpuPkt.u64TimeStamp |= ((MS_U64)stDummyPkt.u32ID_H << 32);
7105                 stVpuPkt.u32ID_H = stDummyPkt.u32ID_H;
7106                 stVpuPkt.u32ID_L = stDummyPkt.u32ID_L;
7107 
7108                 HAL_VPU_EX_Push2VBBU(u32Id, &stVpuPkt,u32VBBUAddr);
7109             }
7110         }
7111         else
7112 #endif
7113         {
7114             if (pstSlqTblInfo->pDrvSlqTbl->u32Empty < SLQ_TBL_SAFERANGE)
7115             {
7116                 HAL_MVD_GetQueueVacancy(u8Idx, FALSE); //update pstSlqTblInfo->pDrvSlqTbl->u32Empty
7117                 HAL_MVD_Delayms(1);  //avoid busy query
7118             }
7119             //insert dummy pattern
7120             if (TRUE == HAL_MVD_SLQTblInsertPattern(u8Idx, E_MVD_PATTERN_FLUSH))
7121             {
7122                 u32PatternByteCnt += DUMMY_SIZE*2; //2 dummy were inserted
7123             }
7124         }
7125 
7126 
7127         //Timeout for RCV
7128         if ((HAL_MVD_GetTime() - u32TimeCnt) > (CMD_TIMEOUT_MS*10))
7129         {
7130             MVD_DEBUGERROR(printf("RCV timeout!!! pl=%d, pbc=%d, emp=%ld\n",
7131                            HAL_MVD_GetPayloadLen(u8Idx), u32PatternByteCnt,
7132                            (unsigned long)pstSlqTblInfo->pDrvSlqTbl->u32Empty));
7133             break;
7134         }
7135     }
7136     MVD_DEBUGINFO(printf("====> %s (t1=%u t2=%u diff=%u)\n", __FUNCTION__,
7137             u32TimeCnt, HAL_MVD_GetTime(), (HAL_MVD_GetTime() - u32TimeCnt)));
7138     //if ((HAL_MVD_GetTime() - u32TimeCnt) >= CMD_TIMEOUT_MS)
7139     if (TRUE != HAL_MVD_IsCmdFinished(u8Idx, MVD_HANDSHAKE_PAUSE))
7140     {
7141         MVD_DEBUGERROR(printf("\n***** MDrv_MVD_FlushQueue PAUSE TIMEOUT!!! *****\n\n"));
7142         MVD_DEBUGERROR(printf("ValidLen=0x%x CurPatternLen=0x%x\n",
7143                       HAL_MVD_GetPayloadLen(u8Idx), u32PatternByteCnt));
7144 
7145         return E_MVD_RET_FAIL;
7146     }
7147 
7148     //flush ES buffer & reset SLQ tbl
7149     HAL_MVD_ResetHandShake(u8Idx, MVD_HANDSHAKE_SLQ_RST);
7150     if (HAL_MVD_SlqTblRst(u8Idx) == TRUE)
7151     {
7152         //return E_MVD_RET_OK;
7153     }
7154 
7155     u32TimeCnt = HAL_MVD_GetTime();
7156     while (((HAL_MVD_GetTime() - u32TimeCnt) < CMD_TIMEOUT_MS))
7157     {
7158         if (HAL_MVD_IsCmdFinished(u8Idx, MVD_HANDSHAKE_SLQ_RST))
7159         {
7160             MVD_DEBUGINFO(printf("\nSlqRst finished!\n"));
7161             break;
7162         }
7163     }
7164     MVD_DEBUGINFO(printf("====> %s (t1=%u t2=%u diff=%u)\n", __FUNCTION__,
7165             u32TimeCnt, HAL_MVD_GetTime(), (HAL_MVD_GetTime() - u32TimeCnt)));
7166     if (TRUE != HAL_MVD_IsCmdFinished(u8Idx, MVD_HANDSHAKE_SLQ_RST))
7167     {
7168         MVD_DEBUGERROR(printf("\n***** MDrv_MVD_FlushQueue SlqRst TIMEOUT!!! *****\n\n"));
7169         return E_MVD_RET_FAIL;
7170     }
7171 
7172     HAL_MVD_SLQTblInit(u8Idx); //reset related buffers
7173 
7174     return E_MVD_RET_OK;
7175 }
7176 
HAL_MVD_FlushQueue(MS_U8 u8Idx)7177 E_MVD_Result HAL_MVD_FlushQueue(MS_U8 u8Idx)
7178 {
7179     E_MVD_Result eRet = E_MVD_RET_OK;
7180     MVD_SrcMode curSrcMode = HAL_MVD_GetSrcMode(u8Idx);
7181 
7182     if (HAL_MVD_GetDecodeStatus(u8Idx) == E_MVD_STAT_IDLE)
7183     {
7184         return eRet;
7185     }
7186 
7187     //flush ES buffer (and cmd queue if used)
7188     if (E_MVD_SLQ_TBL_MODE == curSrcMode)
7189     {
7190         eRet = MVD_FlushSlqTblQueue(u8Idx);
7191     }
7192     else if (E_MVD_TS_FILE_MODE == curSrcMode)
7193     {
7194         eRet = MVD_FlushTSQueue(u8Idx);
7195     }
7196     if (E_MVD_RET_OK != eRet)
7197     {
7198         return eRet;
7199     }
7200 
7201     MVD_RstFrmInfo(u8Idx, E_MVD_FRMINFO_DECODE);
7202     //flush display buffer
7203 
7204     if (HAL_MVD_FlushDisplayBuf(u8Idx) != TRUE)
7205     {
7206         return E_MVD_RET_FAIL;
7207     }
7208 
7209     if (TRUE == HAL_MVD_SkipToIFrame(u8Idx))
7210     {
7211         return E_MVD_RET_OK;
7212     }
7213     else
7214     {
7215         return E_MVD_RET_FAIL;
7216     }
7217 }
7218 
HAL_MVD_IsAllBufferEmpty(MS_U8 u8Idx)7219 MS_BOOL HAL_MVD_IsAllBufferEmpty(MS_U8 u8Idx)
7220 {
7221     return HAL_MVD_IsCmdFinished(u8Idx, MVD_HANDSHAKE_SKIP_DATA);
7222 }
7223 
HAL_MVD_EnableInt(MS_U8 u8Idx,MS_U32 bEn)7224 MS_BOOL HAL_MVD_EnableInt(MS_U8 u8Idx, MS_U32 bEn)
7225 {
7226     MVD_CmdArg mvdcmd;
7227     MS_U32 u32IntFlag = 0;
7228 
7229     u32IntFlag = (((bEn & E_MVD_EVENT_USER_DATA) == E_MVD_EVENT_USER_DATA) ? INT_USER_DATA : 0) |
7230                  (((bEn & E_MVD_EVENT_USER_DATA_DISP) == E_MVD_EVENT_USER_DATA_DISP) ? INT_USER_DATA_DISP : 0) |
7231                  (((bEn & E_MVD_EVENT_PIC_FOUND) == E_MVD_EVENT_PIC_FOUND) ? INT_PIC_FOUND : 0) |
7232                  (((bEn & E_MVD_EVENT_FIRST_FRAME) == E_MVD_EVENT_FIRST_FRAME) ? INT_FIRST_FRAME : 0) |
7233                  (((bEn & E_MVD_EVENT_DISP_RDY) == E_MVD_EVENT_DISP_RDY) ? INT_DISP_RDY : 0) |
7234                  (((bEn & E_MVD_EVENT_SEQ_FOUND) == E_MVD_EVENT_SEQ_FOUND) ? INT_SEQ_FOUND : 0)|
7235                  (((bEn & E_MVD_EVENT_DEC_ONE_FRAME) == E_MVD_EVENT_DEC_ONE_FRAME) ? INT_DEC_DONE : 0)|
7236                  (((bEn & E_MVD_EVENT_DEC_ERR) == E_MVD_EVENT_DEC_ERR) ? INT_DEC_ERR : 0)|
7237                  (((bEn & E_MVD_EVENT_DEC_DATA_ERR) == E_MVD_EVENT_DEC_DATA_ERR) ? INT_VES_INVALID : 0)|
7238                  (((bEn & E_MVD_EVENT_XC_LOW_DEALY) == E_MVD_EVENT_XC_LOW_DEALY) ? INT_XC_LOW_DELAY : 0)|
7239                  (((bEn & E_MVD_EVENT_DEC_I) == E_MVD_EVENT_DEC_I) ? INT_DEC_I : 0);
7240     if (((bEn & E_MVD_EVENT_DISP_VSYNC) == E_MVD_EVENT_DISP_VSYNC) ||
7241         ((bEn & E_MVD_EVENT_UNMUTE) == E_MVD_EVENT_UNMUTE))
7242     {
7243         u32IntFlag |= INT_DISP_VSYNC;
7244     }
7245 
7246     MVD_DEBUGINFO(printf("u32IntFlag = 0x%x\n", u32IntFlag));
7247     SETUP_CMDARG(mvdcmd);
7248     mvdcmd.Arg0 = u32IntFlag & 0xff;
7249     mvdcmd.Arg1 = (u32IntFlag>>8) & 0xff;
7250     mvdcmd.Arg2 = (u32IntFlag>>16) & 0xff;
7251     SET_DECNUM(mvdcmd, u8Idx);
7252     SET_CMD_RET_FALSE(CMD_ENABLE_INT_STAT, &mvdcmd);
7253 
7254     return TRUE;
7255 }
7256 
HAL_MVD_EnablePTSDetector(MS_U8 u8Idx,MS_BOOL bEn)7257 E_MVD_Result HAL_MVD_EnablePTSDetector(MS_U8 u8Idx, MS_BOOL bEn)
7258 {
7259     MVD_CmdArg stCmdArg;
7260 
7261     SETUP_CMDARG(stCmdArg);
7262     if(TRUE == bEn)
7263     {
7264         stCmdArg.Arg0 = 1;
7265     }
7266     SET_DECNUM(stCmdArg, u8Idx);
7267     if (HAL_MVD_MVDCommand(CMD_PTS_DETECTOR_EN, &stCmdArg) == FALSE)
7268     {
7269         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_PTS_DETECTOR_EN ) );
7270         return E_MVD_RET_FAIL;
7271     }
7272     return E_MVD_RET_OK;
7273 }
7274 
HAL_MVD_DisablePBFrameMode(MS_U8 u8Idx,MS_BOOL bEn)7275 E_MVD_Result HAL_MVD_DisablePBFrameMode(MS_U8 u8Idx, MS_BOOL bEn)
7276 {
7277     MVD_CmdArg stCmdArg;
7278 
7279     SETUP_CMDARG(stCmdArg);
7280     if(TRUE == bEn)
7281     {
7282         stCmdArg.Arg0 = 1;
7283     }
7284     SET_DECNUM(stCmdArg, u8Idx);
7285     if (HAL_MVD_MVDCommand(CMD_DISABLE_PATCH_PBFRAME, &stCmdArg) == FALSE)
7286     {
7287         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_PTS_DETECTOR_EN ) );
7288         return E_MVD_RET_FAIL;
7289     }
7290     return E_MVD_RET_OK;
7291 }
7292 
HAL_MVD_EnableDispOneField(MS_U8 u8Idx,MS_BOOL bEn)7293 E_MVD_Result HAL_MVD_EnableDispOneField(MS_U8 u8Idx, MS_BOOL bEn)
7294 {
7295     MVD_CmdArg stCmdArg;
7296 
7297     SETUP_CMDARG(stCmdArg);
7298     if(TRUE == bEn)
7299     {
7300         stCmdArg.Arg0 = 1;
7301     }
7302     SET_DECNUM(stCmdArg, u8Idx);
7303     if (HAL_MVD_MVDCommand(CMD_SHOW_ONE_FIELD, &stCmdArg) == FALSE)
7304     {
7305         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_SHOW_ONE_FIELD ) );
7306         return E_MVD_RET_FAIL;
7307     }
7308     return E_MVD_RET_OK;
7309 }
7310 
HAL_MVD_SetFdMaskDelayCount(MS_U8 u8Idx,MS_U16 u16Cnt)7311 E_MVD_Result HAL_MVD_SetFdMaskDelayCount(MS_U8 u8Idx, MS_U16 u16Cnt)
7312 {
7313     MVD_CmdArg stCmdArg;
7314 
7315     SETUP_CMDARG(stCmdArg);
7316     //16bits and unit in vsync for mute the fd_mask
7317     stCmdArg.Arg0 = u16Cnt & 0xff;
7318     stCmdArg.Arg1 = (u16Cnt>>8) & 0xff;
7319     SET_DECNUM(stCmdArg, u8Idx);
7320     if (HAL_MVD_MVDCommand(CMD_FD_MASK_DELAY_CNT, &stCmdArg) == FALSE)
7321     {
7322         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_FD_MASK_DELAY_CNT ) );
7323         return E_MVD_RET_FAIL;
7324     }
7325     return E_MVD_RET_OK;
7326 }
7327 
HAL_MVD_SetOutputFRCMode(MS_U8 u8Idx,MS_U8 u8FrameRate,MS_U8 u8Interlace)7328 E_MVD_Result HAL_MVD_SetOutputFRCMode(MS_U8 u8Idx, MS_U8 u8FrameRate, MS_U8 u8Interlace)
7329 {
7330     MVD_CmdArg stCmdArg;
7331     if((u8Interlace != 0) && (u8Interlace != 1))
7332     {
7333         return E_MVD_RET_FAIL;
7334     }
7335     SETUP_CMDARG(stCmdArg);
7336     stCmdArg.Arg0 = u8FrameRate;
7337     stCmdArg.Arg1 = u8Interlace;
7338     SET_DECNUM(stCmdArg, u8Idx);
7339     if (HAL_MVD_MVDCommand(CMD_FRC_OUPUT, &stCmdArg) == FALSE)
7340     {
7341         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_FRC_OUPUT ) );
7342         return E_MVD_RET_FAIL;
7343     }
7344     return E_MVD_RET_OK;
7345 }
7346 
7347 
HAL_MVD_SetFRCDropType(MS_U8 u8Idx,MS_U8 u8DropType)7348 E_MVD_Result HAL_MVD_SetFRCDropType(MS_U8 u8Idx, MS_U8 u8DropType)
7349 {
7350     MVD_CmdArg stCmdArg;
7351 
7352     if((u8DropType != FRC_DROP_FRAME)
7353     && (u8DropType != FRC_DROP_FIELD))
7354     {
7355         return E_MVD_RET_FAIL;
7356     }
7357 
7358     SETUP_CMDARG(stCmdArg);
7359     stCmdArg.Arg0 = u8DropType;
7360     SET_DECNUM(stCmdArg, u8Idx);
7361     if (HAL_MVD_MVDCommand(CMD_FRC_DROP_BEHAVIOR, &stCmdArg) == FALSE)
7362     {
7363         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_FRC_DROP_BEHAVIOR ) );
7364         return E_MVD_RET_FAIL;
7365     }
7366     return E_MVD_RET_OK;
7367 }
7368 
HAL_MVD_SetDisableSeqChange(MS_U8 u8Idx,MS_BOOL bEnable)7369 E_MVD_Result HAL_MVD_SetDisableSeqChange(MS_U8 u8Idx, MS_BOOL bEnable)
7370 {
7371     MVD_CmdArg stCmdArg;
7372 
7373     SETUP_CMDARG(stCmdArg);
7374     stCmdArg.Arg0 = bEnable;
7375     SET_DECNUM(stCmdArg, u8Idx);
7376     if (HAL_MVD_MVDCommand(CMD_FORBID_RESOLUTION_CHANGE, &stCmdArg) == FALSE)
7377     {
7378         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_FORBID_RESOLUTION_CHANGE ) );
7379         return E_MVD_RET_FAIL;
7380     }
7381     MVD_DEBUGINFO(printf("MVD CMD_FORBID_RESOLUTION_CHANGE(0x%x) OK\n", bEnable));
7382 
7383     return E_MVD_RET_OK;
7384 }
7385 
HAL_MVD_DbgGetData(MS_VIRT u32Addr,MS_U32 * u32Data)7386 E_MVD_Result HAL_MVD_DbgGetData(MS_VIRT u32Addr, MS_U32* u32Data)
7387 {
7388     MVD_CmdArg mvdcmd;
7389     MS_U32 u32Val;
7390 
7391     if (!u32Data)
7392     {
7393         return E_MVD_RET_INVALID_PARAM;
7394     }
7395 
7396     SET_CMDARG(mvdcmd, u32Addr, 0);  //FIXME
7397     if (HAL_MVD_MVDCommand( CMD_RD_IO, &mvdcmd ) == FALSE)
7398     {
7399         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_RD_IO ) );
7400         return E_MVD_RET_FAIL;
7401     }
7402 
7403     u32Val = (((MS_U32)mvdcmd.Arg2)) | ((MS_U32)mvdcmd.Arg3 << 8) |
7404              (((MS_U32)mvdcmd.Arg4) << 16) | (((MS_U32)mvdcmd.Arg5) << 24);
7405     *u32Data = u32Val;
7406 
7407     return E_MVD_RET_OK;
7408 }
7409 
7410 
HAL_MVD_DbgDumpBits(MS_U8 u8Idx,MS_PHY u32base,MS_U32 u32size)7411 void HAL_MVD_DbgDumpBits(MS_U8 u8Idx, MS_PHY u32base, MS_U32 u32size)
7412 {
7413     MVD_CmdArg mvdcmd;
7414 
7415     u32base = HAL_MVD_GetMemOffset(u32base);
7416     printf("%s base=0x%lx size=0x%x\n", __FUNCTION__, (unsigned long)u32base, u32size);
7417     MS_ASSERT((u32base%8)==0);
7418     u32base >>= 3;
7419     SET_CMDARG(mvdcmd, u32base, u8Idx);
7420     if (HAL_MVD_MVDCommand( CMD_DUMP_BITSTREAM_BASE, &mvdcmd ) == FALSE)
7421     {
7422         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\n", CMD_DUMP_BITSTREAM_BASE ) );
7423         return;
7424     }
7425 
7426     MS_ASSERT((u32size%8)==0);
7427     u32size >>= 3;
7428     SET_CMDARG(mvdcmd, u32size, u8Idx);
7429     if (HAL_MVD_MVDCommand( CMD_DUMP_BITSTREAM_LENGTH, &mvdcmd ) == FALSE)
7430     {
7431         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\n", CMD_DUMP_BITSTREAM_LENGTH ) );
7432         return;
7433     }
7434     return;
7435 }
7436 
7437 
HAL_MVD_GetActiveFormat(MS_U8 u8Idx)7438 MS_U8 HAL_MVD_GetActiveFormat(MS_U8 u8Idx)
7439 {
7440     MVD_CmdArg mvdcmd;
7441     MS_U8 u8Afd = 0;
7442 
7443     SETUP_CMDARG(mvdcmd);
7444     SET_DECNUM(mvdcmd, u8Idx);
7445     if (HAL_MVD_MVDCommand( CMD_GET_AFD, &mvdcmd ) == FALSE)
7446     {
7447         MVD_DEBUGERROR( printf( "Ctrl: 0x%x fail!!\r\n", CMD_GET_AFD  ) );
7448         return 0xff;
7449     }
7450     u8Afd = mvdcmd.Arg0;
7451     return u8Afd;
7452 }
7453 
HAL_MVD_EnableAVSync(MS_U8 u8Idx,MS_BOOL bEnable)7454 MS_BOOL HAL_MVD_EnableAVSync(MS_U8 u8Idx, MS_BOOL bEnable)
7455 {
7456     MVD_CmdArg mvdcmd;
7457     SETUP_CMDARG(mvdcmd);
7458     mvdcmd.Arg0 = bEnable;
7459     SET_DECNUM(mvdcmd, u8Idx);
7460     SET_CMD_RET_FALSE(CMD_SYNC_ON, &mvdcmd);
7461 
7462     MVD_CtrlCfg* pCtrlCfg = HAL_MVD_GetCtrlCfg(u8Idx);
7463     pCtrlCfg->bAVSyncOn = bEnable;
7464 
7465     return TRUE;
7466 }
7467 
HAL_MVD_SetAVSyncDelay(MS_U8 u8Idx,MS_U32 u32Delay)7468 MS_BOOL HAL_MVD_SetAVSyncDelay(MS_U8 u8Idx, MS_U32 u32Delay)
7469 {
7470     MVD_CmdArg mvdcmd;
7471     SET_CMDARG(mvdcmd, _MS_TO_90K(u32Delay), u8Idx); //u32Delay ms ==> 90k counter
7472     SET_CMD_RET_FALSE(CMD_SYNC_OFFSET, &mvdcmd);
7473     return TRUE;
7474 }
7475 
HAL_MVD_SetAVSyncThreshold(MS_U8 u8Idx,MS_U32 u32Th)7476 MS_BOOL HAL_MVD_SetAVSyncThreshold(MS_U8 u8Idx, MS_U32 u32Th)
7477 {
7478     MVD_CmdArg mvdcmd;
7479 
7480     if (u32Th == 0x00)
7481     {
7482         return FALSE; //invalid parameter, do nothing
7483     }
7484     if (u32Th > 0xff)
7485     {
7486         u32Th = 0xff; //set to maximum
7487     }
7488 
7489     SETUP_CMDARG(mvdcmd);
7490     mvdcmd.Arg3 = u32Th;
7491     SET_DECNUM(mvdcmd, u8Idx);
7492     SET_CMD_RET_FALSE(CMD_SYN_THRESHOLD, &mvdcmd);
7493     return TRUE;
7494 }
7495 
HAL_MVD_SetAVSyncFreerunThreshold(MS_U8 u8Idx,MS_U32 u32Th)7496 MS_BOOL HAL_MVD_SetAVSyncFreerunThreshold(MS_U8 u8Idx, MS_U32 u32Th)
7497 {
7498     MVD_CmdArg mvdcmd;
7499     SET_CMDARG(mvdcmd, u32Th, u8Idx);
7500     SET_CMD_RET_FALSE(CMD_AVSYNC_FREERUN_THRESHOLD, &mvdcmd);
7501     return TRUE;
7502 }
7503 
HAL_MVD_ChangeAVsync(MS_U8 u8Idx,MS_BOOL bEnable,MS_U16 u16PTS)7504 MS_BOOL HAL_MVD_ChangeAVsync(MS_U8 u8Idx, MS_BOOL bEnable, MS_U16 u16PTS)
7505 {
7506     MVD_CmdArg mvdcmd;
7507 
7508     u16PTS = _MS_TO_90K(u16PTS); //u16PTS ms ==> 90k counter
7509     SETUP_CMDARG(mvdcmd);
7510     mvdcmd.Arg0 = (MS_U8)bEnable;
7511     mvdcmd.Arg1 = 0;
7512     mvdcmd.Arg2 = (MS_U8)(u16PTS&0xff);
7513     mvdcmd.Arg3 = (MS_U8)((u16PTS&0xff00)>>8);
7514     SET_DECNUM(mvdcmd, u8Idx);
7515     SET_CMD_RET_FALSE(CMD_MVD_FAST_INT, &mvdcmd);
7516     return TRUE;
7517 }
7518 
HAL_MVD_GetIsSyncRep(MS_U8 u8Idx)7519 MS_BOOL HAL_MVD_GetIsSyncRep(MS_U8 u8Idx)
7520 {
7521     MS_U32 u32IntStat = 0;
7522     MS_BOOL bRet = FALSE;
7523 
7524     u32IntStat = HAL_MVD_GetIntState(u8Idx);
7525     if (u32IntStat != 0)
7526     {
7527         bRet = ((u32IntStat&INT_SYN_REP)==INT_SYN_REP) ? TRUE : FALSE;
7528     }
7529     return bRet;
7530 }
7531 
HAL_MVD_GetIsSyncSkip(MS_U8 u8Idx)7532 MS_BOOL HAL_MVD_GetIsSyncSkip(MS_U8 u8Idx)
7533 {
7534     MS_U32 u32IntStat = 0;
7535     MS_BOOL bRet = FALSE;
7536 
7537     u32IntStat = HAL_MVD_GetIntState(u8Idx);
7538     if (u32IntStat != 0)
7539     {
7540         bRet = ((u32IntStat&INT_SYN_SKIP)==INT_SYN_SKIP) ? TRUE : FALSE;
7541     }
7542 
7543     return bRet;
7544 }
7545 
HAL_MVD_GetIsSyncReach(MS_U8 u8Idx)7546 MS_U8 HAL_MVD_GetIsSyncReach(MS_U8 u8Idx)
7547 {
7548 #define MVD_SYNC_DONE    1
7549     if(MVD_GetSyncStat(u8Idx, 1) == MVD_SYNC_DONE)
7550         return 1;
7551     else
7552         return 0xFF;
7553 }
7554 
HAL_MVD_GetDispRdy(MS_U8 u8Idx)7555 MS_U8 HAL_MVD_GetDispRdy(MS_U8 u8Idx)
7556 {
7557     //if (HAL_MVD_GetPicCounter(u8Idx) > 0)
7558     if(HAL_MVD_IsSeqHeaderFound(u8Idx))
7559     {
7560         return 1;
7561     }
7562     else
7563     {
7564         return 0;
7565     }
7566 }
7567 
HAL_MVD_GetDecodeStatus(MS_U8 u8Idx)7568 MVD_DecStat HAL_MVD_GetDecodeStatus(MS_U8 u8Idx)
7569 {
7570     MVD_CmdArg mvdcmd;
7571     MVD_DecStat stat = E_MVD_STAT_UNKNOWN;
7572 
7573     SETUP_CMDARG(mvdcmd);
7574     SET_DECNUM(mvdcmd, u8Idx);
7575     if (HAL_MVD_MVDCommand(CMD_DECODE_STATUS, &mvdcmd) == FALSE)
7576     {
7577         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_DECODE_STATUS ) );
7578         return E_MVD_STAT_UNKNOWN;
7579     }
7580 
7581     switch(mvdcmd.Arg1)
7582     {
7583         case DEC_STAT_IDLE:
7584             stat = E_MVD_STAT_IDLE;
7585             break;
7586         case DEC_STAT_FIND_SC:
7587             stat = E_MVD_STAT_FIND_STARTCODE;
7588             break;
7589         case DEC_STAT_FIND_SPE_SC:
7590             stat = E_MVD_STAT_FIND_SPECIALCODE;
7591             break;
7592         case DEC_STAT_FIND_FRAMEBUFFER:
7593             stat = E_MVD_STAT_FIND_FRAMEBUFFER;
7594             break;
7595         case DEC_STAT_WAIT_DECODE_DONE:
7596             stat = E_MVD_STAT_WAIT_DECODEDONE;
7597             break;
7598         case DEC_STAT_DECODE_DONE:
7599             stat = E_MVD_STAT_DECODE_DONE;
7600             break;
7601         case DEC_STAT_WAIT_VDFIFO:
7602             stat = E_MVD_STAT_WAIT_VDFIFO;
7603             break;
7604         case DEC_STAT_INIT_SUCCESS:
7605             stat = E_MVD_STAT_INIT_SUCCESS;
7606             break;
7607         default:
7608             break;
7609     }
7610 
7611     return stat;
7612 }
7613 
HAL_MVD_GetLastCmd(MS_U8 u8Idx)7614 MS_U8 HAL_MVD_GetLastCmd(MS_U8 u8Idx)
7615 {
7616     MVD_CmdArg mvdcmd;
7617     SETUP_CMDARG(mvdcmd);
7618     SET_DECNUM(mvdcmd, u8Idx);
7619     if (HAL_MVD_MVDCommand( CMD_DECODE_STATUS, &mvdcmd ) == FALSE)
7620     {
7621         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_DECODE_STATUS ) );
7622         return 0xff;
7623     }
7624 
7625     return (mvdcmd.Arg0);
7626 }
7627 
HAL_MVD_GetParserByteCnt(MS_U8 u8Idx)7628 MS_U32 HAL_MVD_GetParserByteCnt(MS_U8 u8Idx)
7629 {
7630     MVD_CmdArg mvdcmd;
7631     MS_U32 u32Cnt = 0;
7632 
7633     SETUP_CMDARG(mvdcmd);
7634 
7635     //To be accurate, it's "VLD byte count", instead of "parser byte count".
7636     mvdcmd.Arg0 = 0x34;
7637     mvdcmd.Arg1 = 0x2;
7638     SET_DECNUM(mvdcmd, u8Idx);
7639     if (HAL_MVD_MVDCommand( CMD_RD_IO, &mvdcmd ) == FALSE)
7640     {
7641         MVD_DEBUGERROR( printf( "Ctrl: 0x%x fail!!\r\n", CMD_RD_IO  ) );
7642         return 0;
7643     }
7644     u32Cnt = (((MS_U32)mvdcmd.Arg2)) | ((MS_U32)mvdcmd.Arg3 << 8) |
7645              (((MS_U32)mvdcmd.Arg4) << 16) | (((MS_U32)mvdcmd.Arg5) << 24);
7646 
7647     //printf("  parser byte count = %lu byte \n", u32Cnt);
7648     return u32Cnt;
7649 }
7650 
HAL_MVD_DropErrorFrame(MS_U8 u8Idx,MS_BOOL bDrop)7651 MS_BOOL HAL_MVD_DropErrorFrame(MS_U8 u8Idx, MS_BOOL bDrop)
7652 {
7653     MVD_CmdArg mvdcmd;
7654     MVD_CtrlCfg* pstCtrlCfg = HAL_MVD_GetCtrlCfg(u8Idx);
7655 
7656     SETUP_CMDARG(mvdcmd);
7657     mvdcmd.Arg1 = (MS_U8)bDrop;
7658     mvdcmd.Arg2 = (MS_U8)pstCtrlCfg->bDropDispfrm;
7659     mvdcmd.Arg3 = (MS_U8)pstCtrlCfg->eFrcMode;
7660     SET_DECNUM(mvdcmd, u8Idx);
7661     SET_CMD_RET_FALSE(CMD_DISPLAY_CTL, &mvdcmd);
7662     return TRUE;
7663 }
7664 
HAL_MVD_SetDivXCfg(MS_U8 u8Idx,MS_U8 u8MvAdjust,MS_U8 u8IdctSel)7665 void HAL_MVD_SetDivXCfg(MS_U8 u8Idx, MS_U8 u8MvAdjust, MS_U8 u8IdctSel)
7666 {
7667     MVD_CmdArg stCmdArg;
7668 
7669     SETUP_CMDARG(stCmdArg);
7670     stCmdArg.Arg0 = u8MvAdjust;
7671     SET_DECNUM(stCmdArg, u8Idx);
7672     if (HAL_MVD_MVDCommand(CMD_DIVX_PATCH, &stCmdArg) == FALSE)
7673     {
7674         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_DIVX_PATCH ) );
7675         return;
7676     }
7677 
7678     SETUP_CMDARG(stCmdArg);
7679     stCmdArg.Arg0 = u8IdctSel;
7680     SET_DECNUM(stCmdArg, u8Idx);
7681     if (HAL_MVD_MVDCommand(CMD_IDCT_SEL, &stCmdArg) == FALSE)
7682     {
7683         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_IDCT_SEL ) );
7684         return;
7685     }
7686 
7687     return;
7688 }
7689 
7690 #define _IsNotInStreamBuff(x)                                       \
7691         (((x) < pstMemCfg->u32DrvBufSize) ||   \
7692          ((x) > pstMemCfg->u32BSSize) )
7693 
7694 //------------------------------------------------------------------------------
7695 /// Get read pointer in ElementaryStream buffer for SLQ table mode
7696 /// @return -the read pointer
7697 //------------------------------------------------------------------------------
MVD_GetSlqTblESReadPtr(MS_U8 u8Idx)7698 MS_VIRT MVD_GetSlqTblESReadPtr(MS_U8 u8Idx)
7699 {
7700     MS_U32 u32Idx;
7701     MS_U32 u32SlqRp = 0, u32SlqRp1 = 0;
7702     MS_VIRT u32EsRp;
7703     MS_VIRT u32EsStart;
7704     MVD_MEMCfg* pstMemCfg = HAL_MVD_GetMEMCfg(u8Idx);
7705     MVD_SLQTBLInfo* pstSlqTblInfo = HAL_MVD_GetSlqTblInfo(u8Idx);
7706     MVD_CodecType curCodecType = HAL_MVD_GetCodecType(u8Idx);
7707 
7708     u32SlqRp1 = HAL_MVD_GetSLQReadPtr(u8Idx);
7709 
7710     if (u32SlqRp1 == 0)
7711     {
7712         return MVD_U32_MAX;
7713     }
7714     else
7715     {
7716         u32SlqRp = HAL_MVD_Map2DrvSlqTbl(u8Idx, u32SlqRp1);
7717     }
7718 
7719     pstSlqTblInfo->pDrvSlqTbl->u32RdPtr = u32SlqRp; //update pstSlqTblInfo->pDrvSlqTbl->u32RdPtr
7720 
7721     //report (readPtr-1) for HW may still use (readPtr)
7722     if (u32SlqRp > (pstSlqTblInfo->pDrvSlqTbl->u32StAdd))
7723     {
7724         u32Idx = ((u32SlqRp - pstSlqTblInfo->pDrvSlqTbl->u32StAdd)/SLQ_ENTRY_LEN) - 1;
7725     }
7726     else
7727     {
7728         u32Idx = SLQ_ENTRY_MAX - 1;
7729     }
7730     u32EsRp = pstSlqTblInfo->pDrvEsTbl->u32StAdd + u32Idx*8;
7731 
7732     u32EsStart = HAL_MVD_MemRead4Byte(u32EsRp); //report StartAdd as read_pointer
7733 #if 0
7734     MS_U32 u32EsEnd;
7735     u32EsEnd = HAL_MVD_MemRead4Byte(u32EsRp+4);
7736     printf("GetESReadPtr ES[%x] Start=0x%x End=0x%x u32EsRp=%x u32SlqRp=%x\n",
7737             u32Idx, HAL_MVD_MemRead4Byte(u32EsRp), u32EsEnd, u32EsRp, u32SlqRp);
7738 #endif
7739 
7740     if ((_IsNotInStreamBuff(u32EsStart)) && (u32EsStart != 0))
7741     {   //ESRead is not in BS buffer, so this entry is a divx or dummy pattern.
7742         //Report the last ESRead, instead of this one.
7743         if(curCodecType == E_MVD_CODEC_DIVX311)
7744         {
7745             //update last slq index es end address
7746             if(u32Idx == 0)
7747             {
7748                 u32Idx = SLQ_ENTRY_MAX-1;
7749             }
7750             else
7751             {
7752                 u32Idx = u32Idx-1;
7753             }
7754             u32EsRp = pstSlqTblInfo->pDrvEsTbl->u32StAdd + u32Idx*8;
7755             u32EsStart = HAL_MVD_MemRead4Byte(u32EsRp); //report StartAdd as read_pointer
7756             if(_IsNotInStreamBuff(u32EsStart))
7757             {
7758                 return (pstSlqTblInfo->u32PreEsRd);
7759             }
7760         }
7761         else
7762         {
7763             MVD_DEBUGINFO(printf("0x%lx Not in BS, report u32PreEsRd=0x%lx\n", (unsigned long)u32EsStart, (unsigned long)pstSlqTblInfo->u32PreEsRd));
7764             return (pstSlqTblInfo->u32PreEsRd);
7765         }
7766     }
7767     pstSlqTblInfo->u32PreEsRd = u32EsStart;
7768 
7769     return u32EsStart;
7770 }
7771 
7772 //------------------------------------------------------------------------------
7773 /// Get write pointer in ElementaryStream buffer for SLQ table mode
7774 /// @return -the read pointer
7775 //------------------------------------------------------------------------------
MVD_GetSlqTblESWritePtr(MS_U8 u8Idx)7776 MS_VIRT MVD_GetSlqTblESWritePtr(MS_U8 u8Idx)
7777 {
7778     MS_VIRT u32EsWp;
7779     MS_VIRT u32EsEnd;
7780     MS_U32 u32Idx;
7781     MVD_MEMCfg* pstMemCfg = HAL_MVD_GetMEMCfg(u8Idx);
7782     MVD_SLQTBLInfo* pstSlqTblInfo = HAL_MVD_GetSlqTblInfo(u8Idx);
7783 
7784     if (pstSlqTblInfo->pDrvSlqTbl->u32WrPtr > (pstSlqTblInfo->pDrvSlqTbl->u32StAdd))
7785     {
7786         u32Idx = ((pstSlqTblInfo->pDrvSlqTbl->u32WrPtr - pstSlqTblInfo->pDrvSlqTbl->u32StAdd)/SLQ_ENTRY_LEN) - 1;
7787     }
7788     else
7789     {
7790         u32Idx = SLQ_ENTRY_MAX - 1;
7791     }
7792     u32EsWp = pstSlqTblInfo->pDrvEsTbl->u32StAdd + u32Idx*8;
7793 
7794     u32EsEnd = HAL_MVD_MemRead4Byte(u32EsWp+4);
7795 #if 0
7796     printf("GetESWritePtr[%x] ES Start=0x%x End=0x%x u32EsWp=%x\n",
7797         (u32EsWp - pstSlqTblInfo->pDrvEsTbl->u32StAdd)/8,
7798         HAL_MVD_MemRead4Byte(u32EsWp), u32EsEnd, u32EsWp);
7799 #endif
7800 
7801     if ((_IsNotInStreamBuff(u32EsEnd)) && (u32EsEnd != 0))
7802     {   //ESRead is not in BS buffer, so this entry is a divx pattern.
7803         //Report the last ESRead, instead of this one.
7804         MVD_DEBUGINFO(printf("0x%lx Not in BS, report u32PreEsWr=0x%lx\n", (unsigned long)u32EsEnd, (unsigned long)pstSlqTblInfo->u32PreEsWr));
7805         return (pstSlqTblInfo->u32PreEsWr);
7806     }
7807     pstSlqTblInfo->u32PreEsWr = u32EsEnd;
7808 
7809     return u32EsEnd;
7810 }
7811 
7812 
HAL_MVD_GetSLQReadPtr(MS_U8 u8Idx)7813 MS_VIRT HAL_MVD_GetSLQReadPtr(MS_U8 u8Idx)
7814 {
7815     MS_VIRT u32RdPtr = 0;
7816 
7817     if (!(pMVDHalContext->bSlqTblHKCtrl[u8Idx]))
7818     {
7819         #ifndef VDEC3
7820         MVD_CmdArg mvdcmd;
7821         SETUP_CMDARG(mvdcmd);
7822         SET_DECNUM(mvdcmd, u8Idx);
7823         if (HAL_MVD_MVDCommand( CMD_SLQ_GET_TBL_RPTR, &mvdcmd ) == FALSE)
7824         {
7825             MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_SLQ_GET_TBL_RPTR ) );
7826             return 0;
7827         }
7828         u32RdPtr = mvdcmd.Arg0 | (mvdcmd.Arg1<<8) | (mvdcmd.Arg2<<16) | (mvdcmd.Arg3<<24);
7829         #else
7830         u32RdPtr = MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_SLQ_TBL_RPTR, sizeof(MS_U32));
7831         #endif
7832     }
7833     else
7834     {
7835         u32RdPtr = HAL_MVD_SlqTblProbeRdPtr(u8Idx);
7836     }
7837 
7838     //printf("##### HAL_MVD_GetSLQReadPtr 0x%x\n", readPtr);
7839 
7840     if(u32RdPtr == 0)//not start decode yet,MVD return 0
7841     {
7842         u32RdPtr = 0;
7843     }
7844     else
7845     {
7846         u32RdPtr = u32RdPtr << 3;
7847     }
7848 
7849     return u32RdPtr;
7850 }
7851 
7852 
HAL_MVD_SetSLQWritePtr(MS_U8 u8Idx,MS_BOOL bCheckData)7853 MS_BOOL HAL_MVD_SetSLQWritePtr(MS_U8 u8Idx, MS_BOOL bCheckData)
7854 {
7855     MVD_CmdArg mvdcmd;
7856     MS_VIRT u32WrPtr;
7857     MVD_MEMCfg* pstMemCfg = HAL_MVD_GetMEMCfg(u8Idx);
7858     MVD_CtrlCfg* pstCtrlCfg = HAL_MVD_GetCtrlCfg(u8Idx);
7859     MVD_SLQTBLInfo* pstSlqTblInfo = HAL_MVD_GetSlqTblInfo(u8Idx);
7860 
7861     if (FALSE == pstSlqTblInfo->bRdyToFireCmd)
7862     {
7863         //check FW is init success and thus ready to update write pointer
7864         MS_U32 u32TimeCnt;
7865 
7866         u32TimeCnt = HAL_MVD_GetTime();
7867         while ((HAL_MVD_GetTime() - u32TimeCnt) < CMD_TIMEOUT_MS)
7868         {
7869             if (HAL_MVD_GetDecodeStatus(u8Idx) != E_MVD_STAT_IDLE)
7870             {
7871                 pstSlqTblInfo->bRdyToFireCmd = TRUE;
7872                 MVD_DEBUGVERBAL(printf("time=0x%x ms, ", (HAL_MVD_GetTime() - u32TimeCnt)));
7873                 break;
7874             }
7875         }
7876         if (FALSE == pstSlqTblInfo->bRdyToFireCmd)
7877         {
7878             MVD_DEBUGERROR(printf("%s: err timeout(%d)! stat=0x%x\n", __FUNCTION__,
7879                     HAL_MVD_GetTime() - u32TimeCnt, HAL_MVD_GetDecodeStatus(u8Idx)));
7880             return FALSE;
7881         }
7882         else
7883         {
7884             MVD_DEBUGVERBAL(printf("%s: ready to update WrPtr.\n", __FUNCTION__));
7885         }
7886     }
7887 
7888 
7889     MS_ASSERT(pstSlqTblInfo->pDrvSlqTbl->u32WrPtr < pstSlqTblInfo->pDrvSlqTbl->u32EndAdd);
7890     MS_ASSERT(pstSlqTblInfo->pDrvSlqTbl->u32WrPtr >= pstSlqTblInfo->pDrvSlqTbl->u32StAdd);
7891 #if SLQ_NEW_PUSH
7892     if((!pstSlqTblInfo->pSlqStatus->bSlqFireRdy)&&pstSlqTblInfo->pSlqStatus->bSlqCtrlBit)
7893     {
7894         MVD_DEBUGINFO(printf("**** pstSlqTblInfo->pSlqStatus->bSlqFireRdy is not Ready ** \n"));
7895         return FALSE;
7896     }
7897     pstSlqTblInfo->pSlqStatus->bSlqFireRdy = FALSE;
7898 #endif
7899     if ((bCheckData==TRUE) && (FALSE==pstSlqTblInfo->bSlqTblHasValidData))
7900     {
7901         MVD_DEBUGINFO(printf("**** SlqWrPtr(0x%lx) is not update!(%x, %x) ****\n",
7902             (unsigned long)pstSlqTblInfo->pDrvSlqTbl->u32WrPtr, bCheckData, pstSlqTblInfo->bSlqTblHasValidData));
7903         return FALSE;
7904     }
7905     pstSlqTblInfo->bSlqTblHasValidData = FALSE;
7906 
7907     if (pstSlqTblInfo->pDrvSlqTbl->u32WrPtr != pstSlqTblInfo->pDrvSlqTbl->u32EndAdd)
7908     {
7909         u32WrPtr = pstSlqTblInfo->pDrvSlqTbl->u32WrPtr;
7910     }
7911     else
7912     {
7913         u32WrPtr = pstSlqTblInfo->pDrvSlqTbl->u32StAdd;
7914     }
7915 
7916     if (pstCtrlCfg->bSlqTblSync)
7917     {
7918         //Update SLQ table, DivX311 patterns, and dummy patterns to bitstream buffer
7919         MS_VIRT u32SrcOffset = pstSlqTblInfo->pDrvSlqTbl->u32StAdd;
7920         MS_VIRT u32SrcAdd = u32SrcOffset;
7921         MS_VIRT u32DstAdd = pstMemCfg->u32BSAddr;
7922         MS_VIRT u32DstOffset = HAL_MVD_GetMemOffset(pstMemCfg->u32BSAddr);
7923         MS_VIRT u32TblWr;
7924 
7925         _miu_offset_to_phy(pMVDHalContext->stMiuCfg.u8FWMiuSel,u32SrcOffset,u32SrcAdd);
7926 
7927 
7928         HAL_MVD_CPU_Sync();
7929 
7930 #ifndef MSOS_TYPE_LINUX_KERNEL//BDMA
7931         BDMA_Result bdmaRlt;
7932 
7933         bdmaRlt = MDrv_BDMA_CopyHnd(u32SrcAdd, u32DstAdd, pstMemCfg->u32DrvBufSize, pstSlqTblInfo->bdmaCpyType, BDMA_OPCFG_DEF);
7934 
7935         if (E_BDMA_OK != bdmaRlt)
7936         {
7937             MVD_DEBUGERROR(printf("%s MDrv_BDMA_MemCopy fail ret=%x!\n", __FUNCTION__, bdmaRlt));
7938         }
7939 #endif
7940         MVD_DEBUGINFO(printf("SlqWrPtr_BDMA src=0x%lx dst=0x%lx size=0x%lx cpyType=0x%x\n",
7941             (unsigned long)u32SrcAdd, (unsigned long)u32DstAdd, (unsigned long)pstMemCfg->u32DrvBufSize, pstSlqTblInfo->bdmaCpyType));
7942 
7943         u32TblWr = u32DstOffset + (u32WrPtr - pstSlqTblInfo->pDrvSlqTbl->u32StAdd);
7944 
7945         u32WrPtr = u32TblWr;
7946     }
7947     //printf("wPtr= 0x%x(0x%x) rPtr=0x%x(0x%x)\n", writePtr, pstSlqTblInfo->pDrvSlqTbl->u32WrPtr,
7948     //    HAL_MVD_GetSLQReadPtr(u8Idx), pstSlqTblInfo->pDrvSlqTbl->u32RdPtr);
7949 
7950 
7951     //writePtrLast[u8Idx] = u32WrPtr;
7952     #if SLQ_NEW_PUSH
7953     if(!pstSlqTblInfo->pSlqStatus->bSlqEnLastFrameShow && pstSlqTblInfo->pSlqStatus->bSlqCtrlBit)
7954     {
7955         u32WrPtr = pstSlqTblInfo->pSlqStatus->u32VaildWptrAddr;
7956     }
7957     #endif
7958     MS_ASSERT((u32WrPtr%8)==0);
7959     u32WrPtr >>= 3;
7960 
7961     if (!(pMVDHalContext->bSlqTblHKCtrl[u8Idx]))
7962     {
7963         SET_CMDARG(mvdcmd, u32WrPtr, u8Idx);
7964         HAL_MVD_CPU_Sync();
7965         SET_CMD_RET_FALSE(CMD_SLQ_UPDATE_TBL_WPTR, &mvdcmd);
7966     }
7967     else
7968     {
7969         HAL_MVD_SlqTblLoadWrPtr(u8Idx, u32WrPtr);
7970         if (HAL_MVD_SlqTblProbeWrPtr(u8Idx) != u32WrPtr)
7971         {
7972             MVD_DEBUGERROR(printf("Ooops! SlqWrPtr update fail!!! 0x%lx != 0x%lx\n", (unsigned long)HAL_MVD_SlqTblProbeWrPtr(u8Idx), (unsigned long)u32WrPtr));
7973             return FALSE;
7974         }
7975     }
7976 
7977     return TRUE;
7978 }
7979 
HAL_MVD_SetOverflowTH(MS_U8 u8Idx,MS_U32 u32Threshold)7980 void HAL_MVD_SetOverflowTH(MS_U8 u8Idx, MS_U32 u32Threshold)
7981 {
7982     MVD_CmdArg mvdcmd;
7983 
7984     MS_ASSERT((u32Threshold%8)==0);
7985     u32Threshold >>= 3;
7986     SET_CMDARG(mvdcmd, u32Threshold, u8Idx);
7987     if (HAL_MVD_MVDCommand( CMD_DMA_OVFTH, &mvdcmd ) == FALSE)
7988     {
7989         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_DMA_OVFTH ) );
7990         return;
7991     }
7992     return;
7993 }
7994 
7995 //------------------------------------------------------------------------------
7996 /// Set bitstream buffer underflow threshold
7997 /// @return -none
7998 //------------------------------------------------------------------------------
HAL_MVD_SetUnderflowTH(MS_U8 u8Idx,MS_U32 u32Threshold)7999 void HAL_MVD_SetUnderflowTH(MS_U8 u8Idx, MS_U32 u32Threshold)
8000 {
8001     MVD_CmdArg mvdcmd;
8002 
8003     MS_ASSERT((u32Threshold%8)==0);
8004     u32Threshold >>= 3;
8005     SET_CMDARG(mvdcmd, u32Threshold, u8Idx);
8006     if (HAL_MVD_MVDCommand( CMD_DMA_UNFTH, &mvdcmd ) == FALSE)
8007     {
8008         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_DMA_UNFTH ) );
8009         return;
8010     }
8011     return;
8012 }
8013 
HAL_MVD_GenPattern(MS_U8 u8Idx,MVD_PatternType ePattern,MS_PHY u32PAddr,MS_U32 * pu32Size)8014 MS_BOOL HAL_MVD_GenPattern(MS_U8 u8Idx, MVD_PatternType ePattern, MS_PHY u32PAddr, MS_U32* pu32Size)
8015 {
8016     MS_U8* pu8DummyData = NULL;
8017     MVD_CodecType curCodecType = HAL_MVD_GetCodecType(u8Idx);
8018 
8019     if ((!pu32Size) || (*pu32Size < SKIP_PATTERN_SIZE))
8020     {
8021         return FALSE;
8022     }
8023 
8024     pu8DummyData = (MS_U8*) HAL_MVD_PA2NonCacheSeg(u32PAddr);
8025 
8026     if(pu8DummyData == NULL)
8027     {
8028         printf("%s  %d  NULL Address\n",__FILE__,__LINE__);
8029         return FALSE;
8030     }
8031 
8032     switch (ePattern)
8033     {
8034         case E_MVD_PATTERN_FLUSH:
8035             #if 0
8036             *pu8DummyData = SKIP_PATTERN_0;
8037             pu8DummyData++;
8038             *pu8DummyData = SKIP_PATTERN_1;
8039             *pu32Size = SKIP_PATTERN_SIZE;
8040             #else
8041             pu8DummyData[0] =    SKIP_PATTERN_0&0xff;
8042             pu8DummyData[1] = (SKIP_PATTERN_0>>8)&0xff;
8043             pu8DummyData[2] = (SKIP_PATTERN_0>>16)&0xff;
8044             pu8DummyData[3] = (SKIP_PATTERN_0>>24)&0xff;
8045 
8046             pu8DummyData[4] = SKIP_PATTERN_1&0xff;
8047             pu8DummyData[5] = (SKIP_PATTERN_1>>8)&0xff;
8048             pu8DummyData[6] = (SKIP_PATTERN_1>>16)&0xff;
8049             pu8DummyData[7] = (SKIP_PATTERN_1>>24)&0xff;
8050 
8051             *pu32Size = SKIP_PATTERN_SIZE;
8052             #endif
8053             break;
8054         case E_MVD_PATTERN_FILEEND:
8055             if ((E_MVD_CODEC_FLV == curCodecType)||(E_MVD_CODEC_MPEG4_SHORT_VIDEO_HEADER == curCodecType))
8056             {
8057                 #if 0
8058                 *pu8DummyData = FLV_PATTERN;
8059                 pu8DummyData++;
8060                 *pu8DummyData = 0xffffffff;
8061                 pu8DummyData++;
8062                 *pu8DummyData = END_PATTERN_1;
8063                 pu8DummyData++;
8064                 *pu8DummyData = END_PATTERN_2;
8065                 pu8DummyData++;
8066                 *pu8DummyData = END_PATTERN_3;
8067                 #else
8068                 pu8DummyData[0] = FLV_PATTERN&0xff;
8069                 pu8DummyData[1] = (FLV_PATTERN>>8)&0xff;
8070                 pu8DummyData[2] = (FLV_PATTERN>>16)&0xff;
8071                 pu8DummyData[3] = (FLV_PATTERN>>24)&0xff;
8072 
8073                 pu8DummyData[4] = 0xffffffff&0xff;
8074                 pu8DummyData[5] = (0xffffffff>>8)&0xff;
8075                 pu8DummyData[6] = (0xffffffff>>16)&0xff;
8076                 pu8DummyData[7] = (0xffffffff>>24)&0xff;
8077 
8078                 pu8DummyData[8] = END_PATTERN_1&0xff;
8079                 pu8DummyData[9] = (END_PATTERN_1>>8)&0xff;
8080                 pu8DummyData[10] = (END_PATTERN_1>>16)&0xff;
8081                 pu8DummyData[11] = (END_PATTERN_1>>24)&0xff;
8082 
8083                 pu8DummyData[12] = END_PATTERN_2&0xff;
8084                 pu8DummyData[13] = (END_PATTERN_2>>8)&0xff;
8085                 pu8DummyData[14] = (END_PATTERN_2>>16)&0xff;
8086                 pu8DummyData[15] = (END_PATTERN_2>>24)&0xff;
8087 
8088                 pu8DummyData[16] = END_PATTERN_3&0xff;
8089                 pu8DummyData[17] = (END_PATTERN_3>>8)&0xff;
8090                 pu8DummyData[18] = (END_PATTERN_3>>16)&0xff;
8091                 pu8DummyData[19] = (END_PATTERN_3>>24)&0xff;
8092 
8093                 #endif
8094 
8095             }
8096             else if (E_MVD_CODEC_DIVX311 == curCodecType)
8097             {
8098                 #if 0
8099                 *pu8DummyData = DIVX_PATTERN;
8100                 pu8DummyData++;
8101                 *pu8DummyData = 0xffffffff;
8102                 pu8DummyData++;
8103                 *pu8DummyData = END_PATTERN_1;
8104                 pu8DummyData++;
8105                 *pu8DummyData = END_PATTERN_2;
8106                 pu8DummyData++;
8107                 *pu8DummyData = END_PATTERN_3;
8108                 #else
8109                 pu8DummyData[0] = DIVX_PATTERN&0xff;
8110                 pu8DummyData[1] = (DIVX_PATTERN>>8)&0xff;
8111                 pu8DummyData[2] = (DIVX_PATTERN>>16)&0xff;
8112                 pu8DummyData[3] = (DIVX_PATTERN>>24)&0xff;
8113 
8114                 pu8DummyData[4] = 0xffffffff&0xff;
8115                 pu8DummyData[5] = (0xffffffff>>8)&0xff;
8116                 pu8DummyData[6] = (0xffffffff>>16)&0xff;
8117                 pu8DummyData[7] = (0xffffffff>>24)&0xff;
8118 
8119                 pu8DummyData[8] = END_PATTERN_1&0xff;
8120                 pu8DummyData[9] = (END_PATTERN_1>>8)&0xff;
8121                 pu8DummyData[10] = (END_PATTERN_1>>16)&0xff;
8122                 pu8DummyData[11] = (END_PATTERN_1>>24)&0xff;
8123 
8124                 pu8DummyData[12] = END_PATTERN_2&0xff;
8125                 pu8DummyData[13] = (END_PATTERN_2>>8)&0xff;
8126                 pu8DummyData[14] = (END_PATTERN_2>>16)&0xff;
8127                 pu8DummyData[15] = (END_PATTERN_2>>24)&0xff;
8128 
8129                 pu8DummyData[16] = END_PATTERN_3&0xff;
8130                 pu8DummyData[17] = (END_PATTERN_3>>8)&0xff;
8131                 pu8DummyData[18] = (END_PATTERN_3>>16)&0xff;
8132                 pu8DummyData[19] = (END_PATTERN_3>>24)&0xff;
8133                 #endif
8134             }
8135             else if ((E_MVD_CODEC_MPEG2 == curCodecType)||(E_MVD_CODEC_MPEG4 == curCodecType))
8136             {
8137                 #if 0
8138                 *pu8DummyData = MPEG_PATTERN_0;
8139                 pu8DummyData++;
8140                 *pu8DummyData = END_PATTERN_1;
8141                 pu8DummyData++;
8142                 *pu8DummyData = END_PATTERN_2;
8143                 pu8DummyData++;
8144                 *pu8DummyData = END_PATTERN_3;
8145                 #else
8146                 pu8DummyData[0] = MPEG_PATTERN_0&0xff;
8147                 pu8DummyData[1] = (MPEG_PATTERN_0>>8)&0xff;
8148                 pu8DummyData[2] = (MPEG_PATTERN_0>>16)&0xff;
8149                 pu8DummyData[3] = (MPEG_PATTERN_0>>24)&0xff;
8150 
8151                 pu8DummyData[4] = END_PATTERN_1&0xff;
8152                 pu8DummyData[5] = (END_PATTERN_1>>8)&0xff;
8153                 pu8DummyData[6] = (END_PATTERN_1>>16)&0xff;
8154                 pu8DummyData[7] = (END_PATTERN_1>>24)&0xff;
8155 
8156                 pu8DummyData[8] = END_PATTERN_2&0xff;
8157                 pu8DummyData[9] = (END_PATTERN_2>>8)&0xff;
8158                 pu8DummyData[10] = (END_PATTERN_2>>16)&0xff;
8159                 pu8DummyData[11] = (END_PATTERN_2>>24)&0xff;
8160 
8161                 pu8DummyData[12] = END_PATTERN_3&0xff;
8162                 pu8DummyData[13] = (END_PATTERN_3>>8)&0xff;
8163                 pu8DummyData[14] = (END_PATTERN_3>>16)&0xff;
8164                 pu8DummyData[15] = (END_PATTERN_3>>24)&0xff;
8165                 #endif
8166             }
8167             else
8168             {
8169                 #if 0
8170                 *pu8DummyData = END_PATTERN_0;
8171                 pu8DummyData++;
8172                 *pu8DummyData = END_PATTERN_1;
8173                 pu8DummyData++;
8174                 *pu8DummyData = END_PATTERN_2;
8175                 pu8DummyData++;
8176                 *pu8DummyData = END_PATTERN_3;
8177                 #else
8178                 pu8DummyData[0] = END_PATTERN_0&0xff;
8179                 pu8DummyData[1] = (END_PATTERN_0>>8)&0xff;
8180                 pu8DummyData[2] = (END_PATTERN_0>>16)&0xff;
8181                 pu8DummyData[3] = (END_PATTERN_0>>24)&0xff;
8182 
8183                 pu8DummyData[4] = END_PATTERN_1&0xff;
8184                 pu8DummyData[5] = (END_PATTERN_1>>8)&0xff;
8185                 pu8DummyData[6] = (END_PATTERN_1>>16)&0xff;
8186                 pu8DummyData[7] = (END_PATTERN_1>>24)&0xff;
8187 
8188                 pu8DummyData[8] = END_PATTERN_2&0xff;
8189                 pu8DummyData[9] = (END_PATTERN_2>>8)&0xff;
8190                 pu8DummyData[10] = (END_PATTERN_2>>16)&0xff;
8191                 pu8DummyData[11] = (END_PATTERN_2>>24)&0xff;
8192 
8193                 pu8DummyData[12] = END_PATTERN_3&0xff;
8194                 pu8DummyData[13] = (END_PATTERN_3>>8)&0xff;
8195                 pu8DummyData[14] = (END_PATTERN_3>>16)&0xff;
8196                 pu8DummyData[15] = (END_PATTERN_3>>24)&0xff;
8197                 #endif
8198             }
8199             *pu32Size = 16;
8200             break;
8201         default:
8202             break;
8203     }
8204 
8205     return TRUE;
8206 }
8207 
8208 
8209 
HAL_MVD_DbgDump(MS_U8 u8Idx)8210 void HAL_MVD_DbgDump(MS_U8 u8Idx)
8211 {
8212     MS_U32 u32VdCnt=0;
8213     //static MS_U32 u32PreVdCnt[MAX_DEC_NUM]= {0, 0};
8214     MS_U32 u32ErrCnt=0;
8215     //static MS_U32 u32PreErrCnt[MAX_DEC_NUM]= {0, 0};
8216     //static MS_BOOL b1stDump[MAX_DEC_NUM]= {TRUE, TRUE};
8217     MVD_FrmInfo stFrm = {_INIT_ADDR, _INIT_ADDR, _INIT_TIMESTAMP, _INIT_ID,
8218                          _INIT_ID, _INIT_LEN, _INIT_LEN, _INIT_LEN, 0xff, E_MVD_PIC_UNKNOWN};
8219     MVD_SrcMode curSrcMode = HAL_MVD_GetSrcMode(u8Idx);
8220     #ifndef VDEC3
8221     MVD_SLQTBLInfo* pstSlqTblInfo = HAL_MVD_GetSlqTblInfo(u8Idx);
8222     #endif
8223     if (pMVDHalContext->b1stDump[u8Idx])
8224     {
8225         MVD_FWCfg* pFwCfg = NULL;
8226         pFwCfg = HAL_MVD_GetFWCfg(u8Idx);
8227         printf("curDisablePESParsing = %d\n", pFwCfg->bDisablePESParsing);
8228         pMVDHalContext->b1stDump[u8Idx] = FALSE;
8229     }
8230 
8231     u32VdCnt = HAL_MVD_GetParserByteCnt(u8Idx);
8232     u32ErrCnt= HAL_MVD_GetVldErrCount(u8Idx);
8233     printf("input: vfifo=%d(full=%d,empty=%d), vdCnt=%d(%d), vldErr=%d(%d); ",
8234             HAL_MVD_RegReadByte(0x1564)>>6, HAL_MVD_RegReadByte(0x1564)&0x20,
8235             HAL_MVD_RegReadByte(0x1564)&0x10, u32VdCnt, (u32VdCnt-pMVDHalContext->u32PreVdCnt[u8Idx]),
8236             u32ErrCnt, (u32ErrCnt-pMVDHalContext->u32PreErrCnt[u8Idx]));
8237     pMVDHalContext->u32PreVdCnt[u8Idx] = u32VdCnt;
8238     pMVDHalContext->u32PreErrCnt[u8Idx] = u32ErrCnt;
8239 
8240     printf("state: fw=0x%x, lastCmd=0x%x, pc=0x%x\n",
8241             HAL_MVD_GetDecodeStatus(u8Idx), HAL_MVD_GetLastCmd(u8Idx), HAL_VPU_EX_GetProgCnt());
8242     printf("cnt: dec=%d, skip=%d, drop=%ld\n", HAL_MVD_GetPicCounter(u8Idx), HAL_MVD_GetSkipPicCounter(u8Idx), 0x0UL);
8243     HAL_MVD_GetFrmInfo(u8Idx, E_MVD_FRMINFO_DECODE, &stFrm);
8244     printf("frm Dec Y=%lx UV=%lx Pitch=%x; ", (unsigned long)stFrm.u32LumaAddr, (unsigned long)stFrm.u32ChromaAddr, stFrm.u16Pitch);
8245     HAL_MVD_GetFrmInfo(u8Idx, E_MVD_FRMINFO_DISPLAY, &stFrm);
8246     printf("Disp Y=%lx UV=%lx Pitch=%x\n", (unsigned long)stFrm.u32LumaAddr, (unsigned long)stFrm.u32ChromaAddr, stFrm.u16Pitch);
8247     if (curSrcMode == E_MVD_SLQ_TBL_MODE)
8248     {
8249         #ifndef VDEC3
8250         printf("fe=%x, rd=%x(%x), wr=%x, empty=%x; ", pstSlqTblInfo->u32FileEndPtr, pstSlqTblInfo->pDrvSlqTbl->u32RdPtr,
8251                 HAL_MVD_Map2DrvSlqTbl(u8Idx, HAL_MVD_GetSLQReadPtr(u8Idx)), pstSlqTblInfo->pDrvSlqTbl->u32WrPtr, pstSlqTblInfo->pDrvSlqTbl->u32Empty);
8252 
8253         printf("es rd=0x%lx, wr=0x%lx\n", (unsigned long)MVD_GetSlqTblESReadPtr(u8Idx), (unsigned long)MVD_GetSlqTblESWritePtr(u8Idx));
8254          #endif
8255     }
8256     else if (curSrcMode == E_MVD_TS_FILE_MODE)
8257     {
8258         printf("es rd=0x%lx, wr=0x%lx\n", (unsigned long)HAL_MVD_GetTsFileESReadPtr(u8Idx), (unsigned long)HAL_MVD_GetTsFileESWritePtr(u8Idx));
8259     }
8260 }
8261 
8262 #ifdef MS_DEBUG
8263 #define _STRINGIFY_HAL_SID(x)   \
8264     (x==E_HAL_MVD_MAIN_STREAM0)?"E_HAL_MVD_MAIN_STREAM0": \
8265     ((x==E_HAL_MVD_SUB_STREAM0)?"E_HAL_MVD_SUB_STREAM0":"E_HAL_MVD_STREAM_NONE")
MVD_DumpMVDStream(void)8266 void MVD_DumpMVDStream(void)
8267 {
8268     //if (_u8HalDbgLevel == 0) return;
8269     MS_U8 i = 0;
8270     for (i=0; i< MAX_DEC_NUM; i++)
8271     {
8272         MVD_DEBUGINFO(printf("[%d] eStreamId=0x%x(%s) bUsed=0x%x\n", i, pMVDHalContext->_stMVDStream[i].eStreamId,
8273                 _STRINGIFY_HAL_SID(pMVDHalContext->_stMVDStream[i].eStreamId), pMVDHalContext->_stMVDStream[i].bUsed));
8274     }
8275 }
8276 #endif
HAL_MVD_Init_Share_Mem(void)8277 MS_BOOL HAL_MVD_Init_Share_Mem(void)
8278 {
8279 #if (defined(MSOS_TYPE_LINUX) || defined(MSOS_TYPE_ECOS) || defined(MSOS_TYPE_LINUX_KERNEL))
8280 #if !defined(SUPPORT_X_MODEL_FEATURE)
8281     MS_U32 u32ShmId;
8282     MS_VIRT u32Addr;
8283     MS_U32 u32BufSize;
8284 
8285 
8286     if (FALSE == MsOS_SHM_GetId( (MS_U8*)"Linux MVD HAL",
8287                                           sizeof(MVD_Hal_CTX),
8288                                           &u32ShmId,
8289                                           &u32Addr,
8290                                           &u32BufSize,
8291                                           MSOS_SHM_QUERY))
8292     {
8293         if (FALSE == MsOS_SHM_GetId((MS_U8*)"Linux MVD HAL",
8294                                              sizeof(MVD_Hal_CTX),
8295                                              &u32ShmId,
8296                                              &u32Addr,
8297                                              &u32BufSize,
8298                                              MSOS_SHM_CREATE))
8299         {
8300             printf("[%s]SHM allocation failed!!! use global structure instead!!!\n",__FUNCTION__);
8301             if(pMVDHalContext == NULL)
8302             {
8303                 pMVDHalContext = &gMVDHalContext;
8304                 memset(pMVDHalContext,0,sizeof(MVD_Hal_CTX));
8305                 HAL_MVD_Context_Init();
8306                 printf("[%s]Global structure init Success!!!\n",__FUNCTION__);
8307             }
8308             else
8309             {
8310                 printf("[%s]Global structure exists!!!\n",__FUNCTION__);
8311             }
8312             //return FALSE;
8313         }
8314         else
8315         {
8316             memset((MS_U8*)u32Addr,0,sizeof(MVD_Hal_CTX));
8317             pMVDHalContext = (MVD_Hal_CTX*)u32Addr; // for one process
8318             HAL_MVD_Context_Init();
8319         }
8320     }
8321     else
8322     {
8323         pMVDHalContext = (MVD_Hal_CTX*)u32Addr; // for another process
8324     }
8325 #else
8326     if(pMVDHalContext == NULL)
8327     {
8328         pMVDHalContext = &gMVDHalContext;
8329         memset(pMVDHalContext,0,sizeof(MVD_Hal_CTX));
8330         HAL_MVD_Context_Init();
8331     }
8332 #endif
8333     OSAL_MVD_MutexInit();
8334 #else
8335     if(pMVDHalContext == NULL)
8336     {
8337         pMVDHalContext = &gMVDHalContext;
8338         memset(pMVDHalContext,0,sizeof(MVD_Hal_CTX));
8339         HAL_MVD_Context_Init();
8340 }
8341 #endif
8342 
8343 
8344     return TRUE;
8345 
8346 }
8347 
8348 //------------------------------------------------------------------------------
HAL_MVD_GetFreeStream(HAL_MVD_StreamType eStreamType)8349 HAL_MVD_StreamId HAL_MVD_GetFreeStream(HAL_MVD_StreamType eStreamType)
8350 {
8351     MS_U32 i = 0;
8352 
8353 #ifdef MS_DEBUG
8354     MVD_DumpMVDStream();
8355 #endif
8356     if (eStreamType == E_HAL_MVD_MAIN_STREAM)
8357     {
8358         for (i = 0;
8359              i <
8360              ((E_HAL_MVD_MAIN_STREAM_MAX - E_HAL_MVD_MAIN_STREAM_BASE) +
8361               (E_HAL_MVD_SUB_STREAM_MAX - E_HAL_MVD_SUB_STREAM_BASE)); i++)
8362         {
8363             if ((E_HAL_MVD_MAIN_STREAM_BASE & pMVDHalContext->_stMVDStream[i].eStreamId) && (FALSE == pMVDHalContext->_stMVDStream[i].bUsed))
8364             {
8365                 return pMVDHalContext->_stMVDStream[i].eStreamId;
8366             }
8367         }
8368     }
8369     else if (eStreamType == E_HAL_MVD_SUB_STREAM)
8370     {
8371         for (i = 0;
8372              i <
8373              ((E_HAL_MVD_MAIN_STREAM_MAX - E_HAL_MVD_MAIN_STREAM_BASE) +
8374               (E_HAL_MVD_SUB_STREAM_MAX - E_HAL_MVD_SUB_STREAM_BASE)); i++)
8375         {
8376             if ((E_HAL_MVD_SUB_STREAM_BASE & pMVDHalContext->_stMVDStream[i].eStreamId) && (FALSE == pMVDHalContext->_stMVDStream[i].bUsed))
8377             {
8378                 return pMVDHalContext->_stMVDStream[i].eStreamId;
8379             }
8380         }
8381     }
8382 #ifdef VDEC3
8383     else if ((eStreamType >= E_HAL_MVD_N_STREAM) && (eStreamType < E_HAL_MVD_N_STREAM + MAX_DEC_NUM))
8384     {
8385         i = eStreamType - E_HAL_MVD_N_STREAM;
8386         if (!pMVDHalContext->_stMVDStream[i].bUsed)
8387         {
8388             return pMVDHalContext->_stMVDStream[i].eStreamId;
8389          }
8390     }
8391 #endif
8392 
8393     return E_HAL_MVD_STREAM_NONE;
8394 }
8395 
HAL_MVD_SidToIdx(HAL_MVD_StreamId eSID)8396 MS_U8 HAL_MVD_SidToIdx(HAL_MVD_StreamId eSID)
8397 {
8398 #ifdef VDEC3
8399     return eSID - E_HAL_MVD_N_STREAM_BASE;
8400 #else
8401     MS_U8 u8Idx = 0;
8402     switch (eSID)
8403     {
8404         case E_HAL_MVD_MAIN_STREAM0:
8405           u8Idx = 0;
8406           break;
8407         case E_HAL_MVD_SUB_STREAM0:
8408           u8Idx = 1;
8409           break;
8410 #if 0
8411         case E_HAL_MVD_SUB_STREAM1:
8412           u8Idx = 2;
8413           break;
8414 #endif
8415         default:
8416           u8Idx = 0;
8417           break;
8418     }
8419     return u8Idx;
8420 #endif
8421 }
8422 
HAL_MVD_ReleaseFdMask(MS_U8 u8Idx,MS_BOOL bRls)8423 MS_BOOL HAL_MVD_ReleaseFdMask(MS_U8 u8Idx, MS_BOOL bRls)
8424 {
8425     MVD_CmdArg mvdcmd;
8426 
8427     SETUP_CMDARG(mvdcmd);
8428     mvdcmd.Arg0 = bRls;  //1 to release the fd mask
8429     MVD_DEBUGINFO(printf("%s: release=0x%x\n", __FUNCTION__, bRls));
8430     SET_DECNUM(mvdcmd, u8Idx);
8431     SET_CMD_RET_FALSE(CMD_UPDATE_FRAME, &mvdcmd);
8432 
8433     return TRUE;
8434 }
8435 
HAL_MVD_ParserRstDone(MS_U8 u8Idx,MS_BOOL bEnable)8436 MS_BOOL HAL_MVD_ParserRstDone(MS_U8 u8Idx, MS_BOOL bEnable)
8437 {
8438     #define PARSER_RST_TIMEOUT 0x40000
8439     MS_U32 u32TimeOut = 0;
8440     MVD_CmdArg mvdcmd;
8441 
8442     HAL_MVD_ResetHandShake(u8Idx, MVD_HANDSHAKE_PARSER_RST);
8443     SETUP_CMDARG(mvdcmd);
8444     mvdcmd.Arg1 = bEnable;
8445     SET_DECNUM(mvdcmd, u8Idx);
8446     SET_CMD_RET_FALSE(CMD_PTS_TBL_RESET, &mvdcmd);
8447 
8448     while ((TRUE != HAL_MVD_IsCmdFinished(u8Idx, MVD_HANDSHAKE_PARSER_RST)) && (u32TimeOut < PARSER_RST_TIMEOUT))
8449     {
8450         u32TimeOut++;
8451     }
8452     if (u32TimeOut >= PARSER_RST_TIMEOUT)
8453     {
8454         MVD_DEBUGERROR( printf( "Ctrl: 0x%x fail timeout!!\r\n", CMD_PTS_TBL_RESET ) );
8455         return FALSE;
8456     }
8457     return TRUE;
8458 }
8459 
HAL_MVD_FlushPTSBuf(MS_U8 u8Idx,MS_BOOL bEnable)8460 MS_BOOL HAL_MVD_FlushPTSBuf(MS_U8 u8Idx, MS_BOOL bEnable)
8461 {
8462 #ifdef VDEC3
8463     MVD_CtrlCfg* pstCtrlCfg = HAL_MVD_GetCtrlCfg(u8Idx);
8464 
8465     if(pstCtrlCfg->u8McuMode == FALSE)
8466 #endif
8467     {
8468     MVD_CmdArg mvdcmd;
8469     SETUP_CMDARG(mvdcmd);
8470     mvdcmd.Arg0 = bEnable;
8471     if (HAL_MVD_MVDCommand( CMD_SEND_UNI_PTS, &mvdcmd ) == FALSE)
8472     {
8473         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_SEND_UNI_PTS ) );
8474         return FALSE;
8475     }
8476     }
8477     return TRUE;
8478 }
8479 
8480 
HAL_MVD_GetSLQNum(MS_U8 u8Idx)8481 MS_U32 HAL_MVD_GetSLQNum(MS_U8 u8Idx)
8482 {
8483     MVD_SLQTBLInfo* pstSlqTblInfo = HAL_MVD_GetSlqTblInfo(u8Idx);
8484     MS_VIRT u32RdPtr = HAL_MVD_GetSLQReadPtr(u8Idx);
8485     MS_VIRT u32Diff = 0;
8486 
8487     if (pstSlqTblInfo->pDrvSlqTbl->u32WrPtr >= u32RdPtr)
8488     {
8489         u32Diff = pstSlqTblInfo->pDrvSlqTbl->u32WrPtr - u32RdPtr;
8490     }
8491     else
8492     {
8493         u32Diff = SLQ_TBL_SIZE - (u32RdPtr - pstSlqTblInfo->pDrvSlqTbl->u32WrPtr);
8494     }
8495 
8496 //    printf("slq wptr = 0x%x, rptr = 0x%x\n", pstSlqTblInfo->pDrvSlqTbl->u32WrPtr, u32RdPtr);
8497 
8498     return (u32Diff/SLQ_ENTRY_LEN);
8499 }
8500 
8501 
HAL_MVD_GetDispQNum(MS_U8 u8Idx)8502 MS_U32 HAL_MVD_GetDispQNum(MS_U8 u8Idx)
8503 {
8504     return MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_DISPQ_NUM, sizeof(MS_U8));
8505 }
HAL_MVD_SetAutoMute(MS_U8 u8Idx,MS_BOOL bEn)8506 MS_BOOL HAL_MVD_SetAutoMute(MS_U8 u8Idx, MS_BOOL bEn)
8507 {
8508     MVD_CmdArg mvdcmd;
8509 
8510     SETUP_CMDARG(mvdcmd);
8511     mvdcmd.Arg0 = bEn;  //1 to enable
8512     MVD_DEBUGINFO(printf("%s: bEn=%x\n", __FUNCTION__, bEn));
8513     SET_DECNUM(mvdcmd, u8Idx);
8514     SET_CMD_RET_FALSE(CMD_ENABLE_AUTO_MUTE, &mvdcmd);
8515 
8516     return TRUE;
8517 }
8518 
HAL_MVD_SetVSizeAlign(MS_U8 u8Idx,MS_BOOL bEn)8519 MS_BOOL HAL_MVD_SetVSizeAlign(MS_U8 u8Idx, MS_BOOL bEn)
8520 {
8521     MVD_CmdArg mvdcmd;
8522 
8523     SETUP_CMDARG(mvdcmd);
8524     mvdcmd.Arg0 = bEn;  //1 to enable VSize alignment to 4x
8525     MVD_DEBUGINFO(printf("%s: bEn=%x\n", __FUNCTION__, bEn));
8526     SET_DECNUM(mvdcmd, u8Idx);
8527     SET_CMD_RET_FALSE(CMD_FORCE_ALIGN_VSIZE, &mvdcmd);
8528 
8529     return TRUE;
8530 }
8531 
HAL_MVD_GetFrmRateIsSupported(MS_U16 u16HSize,MS_U16 u16VSize,MS_U32 u32FrmRate)8532 MS_BOOL HAL_MVD_GetFrmRateIsSupported(MS_U16 u16HSize, MS_U16 u16VSize, MS_U32 u32FrmRate)
8533 {
8534     MVD_DEBUGINFO(printf("%s w:%d, h:%d, fr:%d, MAX:%lld\n", __FUNCTION__, u16HSize, u16VSize, u32FrmRate, MVD_HW_MAX_PIXEL));
8535     return (((MS_U64)u16HSize*(MS_U64)u16VSize*(MS_U64)u32FrmRate) <= MVD_HW_MAX_PIXEL);
8536 }
8537 
HAL_MVD_GetColorInfo(MS_U8 u8Idx,MVD_Color_Info * pstColorInfo)8538 MS_BOOL HAL_MVD_GetColorInfo(MS_U8 u8Idx, MVD_Color_Info* pstColorInfo)
8539 {
8540     MS_VIRT pu8MVDGetFrameInfoBufStart = GET_FRMINFO_BUFFADD(u8Idx);
8541 
8542     if((pu8MVDGetFrameInfoBufStart==0) || (pstColorInfo==0))
8543     {
8544         MVD_DEBUGERROR(printf("HAL_MVD_GetColorInfo error: pu8MVDGetFrameInfoBufStart=NULL\n"));
8545         return FALSE;
8546     }
8547 
8548     pstColorInfo->bColor_Descript = (MS_BOOL)(HAL_MVD_MemReadByte(pu8MVDGetFrameInfoBufStart+OFFSET_COLOR_DESCRIPT));
8549 
8550     if(pstColorInfo->bColor_Descript)
8551     {
8552         pstColorInfo->u8Color_Primaries = HAL_MVD_MemReadByte(pu8MVDGetFrameInfoBufStart+OFFSET_COLOR_PRIMARIES);
8553         pstColorInfo->u8Transfer_Char = HAL_MVD_MemReadByte(pu8MVDGetFrameInfoBufStart+OFFSET_TRANSFER_CHAR);
8554         pstColorInfo->u8Matrix_Coef = HAL_MVD_MemReadByte(pu8MVDGetFrameInfoBufStart+OFFSET_MATRIX_COEF);
8555     }
8556     return TRUE;
8557 
8558 }
8559 
8560 
8561 //------------------------------------------------------------------------------
8562 /// Wait MVD generate CRC done or timeout
8563 /// @return -MVD generate CRC done or timeout
8564 //------------------------------------------------------------------------------
_HAL_MVD_CrcTimeOut(MS_U8 u8Idx)8565 MS_BOOL _HAL_MVD_CrcTimeOut(MS_U8 u8Idx)
8566 {
8567     MS_U32 i;
8568     MS_U32 u32StartTime = MsOS_GetSystemTime();
8569 
8570     for ( i = 0; i < MVD_PollingTimes; i++ )
8571     {
8572         ///- wait until MVD generate CRC done or timeout
8573         if ( ( HAL_MVD_RegReadByte(MVD_CRC_CTL) & MVD_CRC_CTL_DONE ) == MVD_CRC_CTL_DONE )
8574         {
8575             return FALSE;
8576         }
8577 
8578         if ((TRUE == pMVDHalContext->bStopped[u8Idx]) || ((MsOS_GetSystemTime()-u32StartTime)>1300))
8579         {
8580             MVD_DEBUGINFO(printf("%s: bStopped(%x) or timeout(%d)\n", __FUNCTION__, pMVDHalContext->bStopped[u8Idx], MsOS_GetSystemTime()-u32StartTime));
8581             return TRUE;
8582         }
8583 
8584     }
8585     MVD_DEBUGERROR( printf("_HAL_MVD_CrcTimeOut=%x\n", i) );
8586     return TRUE;
8587 }
8588 
HAL_MVD_GetCrcValue(MS_U8 u8Idx,MVD_CrcIn * pCrcIn,MVD_CrcOut * pCrcOut)8589 E_MVD_Result HAL_MVD_GetCrcValue(MS_U8 u8Idx, MVD_CrcIn *pCrcIn, MVD_CrcOut *pCrcOut)
8590 {
8591     E_MVD_Result eRet = E_MVD_RET_OK;
8592     MS_U32 u32tmp = 0;
8593 
8594 #if defined(MSOS_TYPE_ECOS)
8595         if(MsOS_In_Interrupt() != TRUE)
8596         {
8597             OSAL_MVD_IntDisable();
8598             OSAL_MVD_LockHwMutex();
8599         }
8600 #else
8601         OSAL_MVD_LockHwMutex();
8602 #endif
8603 
8604     MVD_DEBUGINFO(printf("%s width=0x%x, height=0x%x, pitch=0x%x, luma=0x%lx, chroma=0x%lx\n",
8605                                     __FUNCTION__, pCrcIn->u32HSize, pCrcIn->u32VSize, pCrcIn->u32Strip, (unsigned long)pCrcIn->u32YStartAddr, (unsigned long)pCrcIn->u32UVStartAddr));
8606 
8607     //Set generate CRC value
8608     u32tmp = ((pCrcIn->u32HSize + MVD_WIDTH_ALIGN_MASK) >> MVD_WIDTH_ALIGN_BITS) << MVD_WIDTH_ALIGN_BITS;
8609     HAL_MVD_RegWriteByte(MVD_CRC_HSIZE, u32tmp & 0xf0);
8610     HAL_MVD_RegWriteByte(MVD_CRC_HSIZE+1, (u32tmp >> 8) & 0x3f);
8611 
8612     u32tmp = ((pCrcIn->u32VSize + MVD_WIDTH_ALIGN_MASK) >> MVD_WIDTH_ALIGN_BITS) << MVD_WIDTH_ALIGN_BITS;
8613     HAL_MVD_RegWriteByte(MVD_CRC_VSIZE, u32tmp & 0xff);
8614     HAL_MVD_RegWriteByte(MVD_CRC_VSIZE+1, (u32tmp >> 8) & 0xff);
8615 
8616     u32tmp = (pCrcIn->u32Strip) >> 3;
8617     HAL_MVD_RegWriteByte(MVD_CRC_STRIP, u32tmp & 0xff);
8618     HAL_MVD_RegWriteByte((MVD_CRC_STRIP+1), (u32tmp >> 8) & 0xff);
8619 
8620     u32tmp = (pCrcIn->u32YStartAddr) >> 3;
8621     HAL_MVD_RegWrite4Byte(MVD_CRC_Y_START, u32tmp & MVD_CRC_Y_START_LEN);
8622 
8623     u32tmp = (pCrcIn->u32UVStartAddr) >> 3;
8624     HAL_MVD_RegWrite4Byte(MVD_CRC_UV_START, u32tmp & MVD_CRC_UV_START_LEN);
8625 
8626     //Fire
8627     HAL_MVD_RegWriteBit(MVD_CRC_CTL, 1, MVD_CRC_CTL_FIRE);
8628 
8629     //Check CRC done
8630     if ( _HAL_MVD_CrcTimeOut(u8Idx) == TRUE )
8631     {
8632         eRet = E_MVD_RET_TIME_OUT;
8633         goto _CRC_DONE;
8634     }
8635 
8636     //Get CRC value
8637     pCrcOut->u32YCrc = HAL_MVD_RegReadByte(MVD_CRC_Y_L) |
8638              (HAL_MVD_RegReadByte(MVD_CRC_Y_L+1) << 8) |
8639              (HAL_MVD_RegReadByte(MVD_CRC_Y_H) <<16) |
8640              (HAL_MVD_RegReadByte(MVD_CRC_Y_H+1) <<24);
8641 
8642     pCrcOut->u32UVCrc = HAL_MVD_RegReadByte(MVD_CRC_UV_L) |
8643              (HAL_MVD_RegReadByte(MVD_CRC_UV_L+1) << 8) |
8644              (HAL_MVD_RegReadByte(MVD_CRC_UV_H) <<16) |
8645              (HAL_MVD_RegReadByte(MVD_CRC_UV_H+1) <<24);
8646 
8647     MVD_DEBUGINFO(printf("%s Y=0x%x, UV=0x%x\n", __FUNCTION__, pCrcOut->u32YCrc, pCrcOut->u32UVCrc));
8648 
8649 _CRC_DONE:
8650 #if defined(MSOS_TYPE_ECOS)
8651         if(MsOS_In_Interrupt() != TRUE)
8652         {
8653             OSAL_MVD_UnlockHwMutex();
8654             OSAL_MVD_IntEnable();
8655         }
8656 #else
8657         OSAL_MVD_UnlockHwMutex();
8658 #endif
8659     return eRet;
8660 }
8661 
8662 
HAL_MVD_SuspendDynamicScale(MS_U8 u8Idx,MS_BOOL bEn)8663 MS_BOOL HAL_MVD_SuspendDynamicScale(MS_U8 u8Idx, MS_BOOL bEn)
8664 {
8665     MVD_CmdArg mvdcmd;
8666 
8667     SETUP_CMDARG(mvdcmd);
8668     mvdcmd.Arg0 = bEn;
8669     MVD_DEBUGINFO(printf("%s: bEn=%x\n", __FUNCTION__, bEn));
8670     SET_DECNUM(mvdcmd, u8Idx);
8671     SET_CMD_RET_FALSE(CMD_SUSPEND_DS, &mvdcmd);
8672 
8673     return TRUE;
8674 }
8675 
HAL_MVD_GetSuspendDynamicScale(MS_U8 u8Idx)8676 MS_U8 HAL_MVD_GetSuspendDynamicScale(MS_U8 u8Idx)
8677 {
8678     return (MS_U8)MVD_GetFWBuffData(u8Idx, FW_BUFF_VOLINFO, OFFSET_SUSPEND_DS, sizeof(MS_U8));
8679 }
8680 
HAL_MVD_GetStereoType(MS_U8 u8Idx)8681 MS_U8 HAL_MVD_GetStereoType(MS_U8 u8Idx)
8682 {
8683     return (MS_U8)MVD_GetFWBuffData(u8Idx, FW_BUFF_VOLINFO, OFFSET_STEREO_TYPE, sizeof(MS_U8));
8684 }
8685 
HAL_MVD_GetDivxVer(MS_U8 u8Idx)8686 MS_U32 HAL_MVD_GetDivxVer(MS_U8 u8Idx)
8687 {
8688     return MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_DIVX_VER_5X, sizeof(MS_U32));
8689 }
8690 
HAL_MVD_SetIdctMode(MS_U8 u8Idx,MS_U8 u8Mode)8691 MS_BOOL HAL_MVD_SetIdctMode(MS_U8 u8Idx, MS_U8 u8Mode)
8692 {
8693     MVD_CmdArg mvdcmd;
8694 
8695     SETUP_CMDARG(mvdcmd);
8696     mvdcmd.Arg0 = u8Mode;
8697     SET_DECNUM(mvdcmd, u8Idx);
8698 
8699     MVD_DEBUGINFO(printf("%s CMD_IDCT_SEL arg0=%x)\n", __FUNCTION__, u8Mode));
8700     SET_CMD_RET_FALSE(CMD_IDCT_SEL, &mvdcmd);
8701 
8702     return TRUE;
8703 }
8704 
HAL_MVD_EX_SetClockSpeed(HAL_MVD_EX_ClockSpeed eClockSpeed)8705 E_MVD_Result HAL_MVD_EX_SetClockSpeed(HAL_MVD_EX_ClockSpeed eClockSpeed)
8706 {
8707     UNUSED(eClockSpeed);
8708     printf("This chip does not support mvd clock presetting~\n");
8709     return E_MVD_RET_FAIL;
8710 }
8711 
HAL_MVD_GetIsAVSyncOn(MS_U8 u8Idx)8712 MS_BOOL HAL_MVD_GetIsAVSyncOn(MS_U8 u8Idx)
8713 {
8714     MS_BOOL bAVSyncOn = FALSE;
8715     MVD_CtrlCfg* pCtrlCfg = HAL_MVD_GetCtrlCfg(u8Idx);
8716     if (pCtrlCfg)
8717     {
8718         bAVSyncOn = pCtrlCfg->bAVSyncOn;
8719     }
8720 
8721     return bAVSyncOn;
8722 }
8723 
HAL_MVD_SetExternalDSBuff(MS_U8 u8Idx,MS_VIRT u32VPUAddr,MS_VIRT u32DrvAddr)8724 MS_BOOL HAL_MVD_SetExternalDSBuff(MS_U8 u8Idx, MS_VIRT u32VPUAddr, MS_VIRT u32DrvAddr)
8725 {
8726     MS_BOOL bRet = TRUE;
8727     MVD_FWBuff* pBuff = &(pMVDHalContext->stFWBuff[u8Idx]);
8728 
8729     pBuff->u32DynScalingAdd = u32DrvAddr;
8730     bRet = HAL_MVD_SetDynamicScaleAddr(u8Idx, u32VPUAddr);
8731     return bRet;
8732 }
8733 
HAL_MVD_ShowFirstFrameDirect(MS_U8 u8Idx,MS_U8 bEnable)8734 MS_BOOL HAL_MVD_ShowFirstFrameDirect(MS_U8 u8Idx, MS_U8 bEnable)
8735 {
8736     MVD_CmdArg mvdcmd;
8737 
8738     SETUP_CMDARG(mvdcmd);
8739     mvdcmd.Arg0 = bEnable;
8740     SET_DECNUM(mvdcmd, u8Idx);
8741 
8742     MVD_DEBUGINFO(printf("%s CMD_PUSH_FIRST_FRAME_DISP arg0=%x)\n", __FUNCTION__, bEnable));
8743     SET_CMD_RET_FALSE(CMD_PUSH_FIRST_FRAME_DISP, &mvdcmd);
8744 
8745     return TRUE;
8746 }
8747 
HAL_MVD_SetXCLowDelayPara(MS_U8 u8Idx,MS_U32 u32Para)8748 E_MVD_Result HAL_MVD_SetXCLowDelayPara(MS_U8 u8Idx,MS_U32 u32Para)
8749 {
8750     MVD_CmdArg mvdcmd;
8751 
8752     SETUP_CMDARG(mvdcmd);
8753     mvdcmd.Arg0 = L_WORD(u32Para); // for set the XC diff_field_number
8754     mvdcmd.Arg1 = H_WORD(u32Para); // for set XC UCNR diff field no
8755     SET_DECNUM(mvdcmd, u8Idx);
8756 
8757     SET_CMD_RET_FALSE(CMD_XC_LOW_DELAY_PARA, &mvdcmd);
8758 
8759     return TRUE;
8760 }
8761 
HAL_MVD_GetESBufferStatus(MS_U8 u8Idx)8762 MS_U8 HAL_MVD_GetESBufferStatus(MS_U8 u8Idx)
8763 {
8764     return (MS_U8)(MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_CURRENT_ES_BUFFER_STATUS, sizeof(MS_U8)));
8765 }
8766 
HAL_MVD_Field_Polarity_Display_One_field(MS_U8 u8Idx,MS_BOOL bEn,MS_U8 top_bottom)8767 MS_BOOL HAL_MVD_Field_Polarity_Display_One_field(MS_U8 u8Idx, MS_BOOL bEn,MS_U8 top_bottom)
8768 {
8769     MVD_CmdArg mvdcmd;
8770 
8771     SETUP_CMDARG(mvdcmd);
8772     mvdcmd.Arg2 = bEn;
8773     mvdcmd.Arg3 = top_bottom;
8774     MVD_DEBUGINFO(printf("%s: bEn=%x,top_bottom=%x\n", __FUNCTION__, bEn,top_bottom));
8775     SET_DECNUM(mvdcmd, u8Idx);
8776     SET_CMD_RET_FALSE(CMD_FP_FILTER, &mvdcmd);
8777 
8778     return TRUE;
8779 }
8780 
8781 
HAL_MVD_SetShareMemoryBase(MS_U8 u8Idx,MS_VIRT u32base,MS_U8 u8sel)8782 MS_BOOL HAL_MVD_SetShareMemoryBase(MS_U8 u8Idx, MS_VIRT u32base, MS_U8 u8sel)
8783 {
8784     u8SHMMiuSel = u8sel;
8785     u32SharememoryBase[u8Idx] = u32base - MVD_FW_CODE_LEN;
8786     return TRUE;
8787 }
8788 
HAL_MVD_GetShareMemoryOffset(MS_U8 u8Idx,MS_VIRT * u32base)8789 MS_BOOL HAL_MVD_GetShareMemoryOffset(MS_U8 u8Idx, MS_VIRT *u32base)
8790 {
8791     *u32base=u32SharememoryBase[u8Idx];
8792     return  TRUE;
8793 }
8794 
HAL_MVD_Support2ndMVOPInterface(void)8795 MS_BOOL HAL_MVD_Support2ndMVOPInterface(void)
8796 {
8797     return TRUE;
8798 }
8799 
HAL_MVD_SetExternal_CC_Buffer(MS_U8 u8Idx,MS_VIRT u32base,MS_U8 u8size,MS_U8 cc_type)8800 MS_BOOL HAL_MVD_SetExternal_CC_Buffer(MS_U8 u8Idx, MS_VIRT u32base, MS_U8 u8size, MS_U8 cc_type)
8801 {
8802     MVD_CmdArg mvdcmd;
8803     MS_U32 u32cc_size=0;
8804     MS_VIRT u32StartOffset;
8805     MS_U8  u8MiuSel;
8806 
8807     SETUP_CMDARG(mvdcmd);
8808     if (u8size !=0)
8809     {
8810         mvdcmd.Arg0 = TRUE; //enable
8811     }
8812     else
8813     {
8814         mvdcmd.Arg0 = FALSE; //disable
8815     }
8816     mvdcmd.Arg1 = cc_type; //608->1,708->0
8817 
8818     SET_DECNUM(mvdcmd, u8Idx);
8819     SET_CMD_RET_FALSE(CMD_CC_ENABLE_EXTERNAL_BUFFER, &mvdcmd);
8820 
8821     if (u8size ==0)
8822     {
8823         SET_CMD_RET_FALSE(CMD_CLOSE_CC, &mvdcmd);
8824         return E_MVD_RET_OK;
8825     }
8826 
8827     u32base *= (1<<10); //unit is bytes
8828     u32cc_size = u8size * (1<<10); //unit is bytes
8829 
8830 
8831     MS_U32 *pu32ReadPtr = (MS_U32 *)(HAL_MVD_PA2NonCacheSeg(u32base));
8832     MS_U32 *pu32WritePtr = (MS_U32 *)(HAL_MVD_PA2NonCacheSeg(u32base+sizeof(MS_U32)));
8833     MS_U32 *pu32LatchOverflow = (MS_U32 *)(HAL_MVD_PA2NonCacheSeg(u32base+sizeof(MS_U32)*2));
8834     MS_U32 *pu32CpuBaseAddr = (MS_U32 *)(HAL_MVD_PA2NonCacheSeg(u32base+sizeof(MS_U32)*3));
8835 
8836     //rptr,wptr,overflow,latch 16 bytes
8837     if(cc_type==1)
8838     {
8839         u32base += (4*sizeof(MS_U32));
8840         u32cc_size -= (4*sizeof(MS_U32));
8841     }
8842 
8843     if(cc_type==0) // 708: start from 128 bytes
8844     {
8845         u32base += 128;
8846         u32cc_size -= 128;
8847     }
8848 
8849     *pu32ReadPtr = *pu32WritePtr = u32base;
8850     *pu32LatchOverflow = 0;
8851     *pu32CpuBaseAddr = HAL_MVD_GetMEMCfg(u8Idx)->u32FWBinAddr;
8852 
8853     _phy_to_miu_offset(u8MiuSel, u32StartOffset, u32base);
8854     _MVD_SetUserDataBufStart(u8Idx,u32StartOffset,cc_type);
8855     _MVD_SetUserDataBufSize(u8Idx,u32cc_size,cc_type);
8856     //MVD_DEBUGINFO(printf("%s: u32base=%x,u32size=%x,cc_type=%x\n", __FUNCTION__,u32base,u32cc_size,cc_type));
8857 
8858     return E_MVD_RET_OK;
8859 }
8860 
HAL_MVD_GetPVRSeamlessInfo(MS_U8 u8Idx,void * param)8861 MS_BOOL HAL_MVD_GetPVRSeamlessInfo(MS_U8 u8Idx,void* param)
8862 {
8863 
8864     MVD_PVR_Seamless_Info* temp = (MVD_PVR_Seamless_Info*)param;
8865 
8866     temp->u64PTS = ((MS_U64)MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_PVRSEAMLESSTARGETPTS, sizeof(MS_U32))) |
8867                    (((MS_U64)MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_PVRSEAMLESSTARGETPTSHIGH, sizeof(MS_U8)))<<32);
8868 
8869     temp->u32POC = 0xFF; // not support in mvd
8870     temp->u8FrameType = MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_PVRSEAMLESSTARGETFRAMETYPE, sizeof(MS_U8));
8871 
8872     return TRUE;
8873 }
8874 
HAL_MVD_HWBuffer_ReMappingMode(MS_U8 u8Idx,MS_BOOL bEnable)8875 E_MVD_Result HAL_MVD_HWBuffer_ReMappingMode(MS_U8 u8Idx,MS_BOOL bEnable)
8876 {
8877    pMVDHalContext->gMVDPreCtrl[u8Idx].bHWBufferReMapping = bEnable;
8878     return E_MVD_RET_OK;
8879 }
8880 
HAL_MVD_SetPrebufferSize(MS_U8 u8Idx,MS_U32 size)8881 MS_BOOL HAL_MVD_SetPrebufferSize(MS_U8 u8Idx, MS_U32 size)
8882 {
8883     MVD_CmdArg mvdcmd;
8884 
8885     SETUP_CMDARG(mvdcmd);
8886     mvdcmd.Arg0 = size&0xff;
8887     mvdcmd.Arg1 = (size>>8)&0xff;
8888     mvdcmd.Arg2 = (size>>16)&0xff;
8889     mvdcmd.Arg3 = (size>>24)&0xff;
8890     SET_DECNUM(mvdcmd, u8Idx);
8891     if (HAL_MVD_MVDCommand( CMD_PREBUFFER_SIZE, &mvdcmd ) == FALSE)
8892     {
8893         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_PREBUFFER_SIZE ) );
8894         return FALSE;
8895     }
8896     return TRUE;
8897 }
8898 
HAL_MVD_GetVsyncAddrOffset(void)8899 MS_VIRT HAL_MVD_GetVsyncAddrOffset(void)
8900 {
8901     MS_VIRT VPUSHMAddr = HAL_VPU_EX_GetSHMAddr();
8902     MS_VIRT VsyncBridgeOffset = 0;
8903 
8904     if(VPUSHMAddr != 0)  // TEE project
8905     {
8906         VsyncBridgeOffset = VSYNC_BRIDGE_OFFSET;
8907     }
8908     else  // normal project
8909     {
8910         VsyncBridgeOffset = COMMON_AREA_START + VSYNC_BRIDGE_OFFSET;
8911     }
8912 
8913     return VsyncBridgeOffset;
8914 }
8915 
HAL_MVD_GetVsyncExtAddrOffset(void)8916 MS_VIRT HAL_MVD_GetVsyncExtAddrOffset(void)
8917 {
8918     MS_VIRT VsyncBridgeExtOffset = 0;
8919     MS_VIRT VPUSHMAddr = HAL_VPU_EX_GetSHMAddr();
8920 
8921     if(VPUSHMAddr != 0)  // TEE project
8922     {
8923         VsyncBridgeExtOffset = VSYNC_BRIDGE_EXT_OFFSET;
8924     }
8925     else  // normal project
8926     {
8927         VsyncBridgeExtOffset = COMMON_AREA_START + VSYNC_BRIDGE_EXT_OFFSET;
8928     }
8929 
8930     return VsyncBridgeExtOffset;
8931 }
8932 
HAL_MVD_SetTimeIncPredictParam(MS_U8 u8Idx,MS_U32 u32time)8933 E_MVD_Result HAL_MVD_SetTimeIncPredictParam(MS_U8 u8Idx, MS_U32 u32time)
8934 {
8935     MVD_CmdArg mvdcmd;
8936     SETUP_CMDARG(mvdcmd);
8937 
8938     mvdcmd.Arg0 = L_WORD(u32time); // Arg0(enable), 1 for enable, default is 0...
8939     mvdcmd.Arg1 = H_WORD(u32time); // Arg1(vop_time_incr_predict_count), 1 for predict once, 2 for twice...0xff for always guess the vop_time_incr even with the vol_header, default is 0...
8940     mvdcmd.Arg2 = L_DWORD(u32time);// Arg2(vop_time_incr_follow_vol_header), // 0 for follow vol_header...1 for bypass vol_header, default is 0...
8941     mvdcmd.Arg3 = H_DWORD(u32time);// Arg3, reserve...
8942     MVD_DEBUGINFO(printf("CMD_TIME_INCR_PREDICT=%x\n",u32time));
8943     if (HAL_MVD_MVDCommand(CMD_TIME_INCR_PREDICT, &mvdcmd) == FALSE)
8944     {
8945         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_TIME_INCR_PREDICT ) );
8946         return E_MVD_RET_FAIL;
8947     }
8948     return E_MVD_RET_OK;
8949 
8950 }
8951 
HAL_MVD_SetDecodeTimeoutParam(MS_U8 u8Idx,MS_BOOL enable,MS_U32 u32timeout)8952 MS_BOOL HAL_MVD_SetDecodeTimeoutParam(MS_U8 u8Idx, MS_BOOL enable,MS_U32 u32timeout)
8953 {
8954     MVD_CmdArg mvdcmd;
8955 
8956     SETUP_CMDARG(mvdcmd);
8957 
8958     if(enable == TRUE)
8959     {
8960         mvdcmd.Arg0 = 2; //0:disable, 2: enable decode timeout
8961         mvdcmd.Arg1 = u32timeout&0xff;
8962         mvdcmd.Arg2 = (u32timeout>>8)&0xff;
8963         mvdcmd.Arg3 = (u32timeout>>16)&0xff;
8964     }
8965     else
8966     {
8967         mvdcmd.Arg0 = 0; //0:disable, 2: enable decode timeout
8968     }
8969 
8970     SET_DECNUM(mvdcmd, u8Idx);
8971 
8972     if (HAL_MVD_MVDCommand( CMD_ENABLE_VLD_TIMEOUT, &mvdcmd ) == FALSE)
8973     {
8974         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_ENABLE_VLD_TIMEOUT ) );
8975         return FALSE;
8976     }
8977 
8978     return TRUE;
8979 }
8980 
HAL_MVD_Set_Smooth_Rewind(MS_U8 u8Idx,MS_U8 btype)8981 E_MVD_Result HAL_MVD_Set_Smooth_Rewind(MS_U8 u8Idx, MS_U8 btype)
8982 {
8983     MVD_CmdArg mvdcmd;
8984     SETUP_CMDARG(mvdcmd);
8985     mvdcmd.Arg0 = btype;
8986     MVD_DEBUGINFO(printf("%s: btype=%x\n", __FUNCTION__, btype));
8987     SET_DECNUM(mvdcmd, u8Idx);
8988     if (HAL_MVD_MVDCommand(CMD_SMOOTH_REWIND, &mvdcmd) == FALSE)
8989     {
8990         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_SMOOTH_REWIND ) );
8991         return E_MVD_RET_FAIL;
8992     }
8993     return E_MVD_RET_OK;
8994 }
8995 
HAL_MVD_IsAlive(MS_U8 u8Idx)8996 E_MVD_Result HAL_MVD_IsAlive(MS_U8 u8Idx)
8997 {
8998     MVD_ALIVEInfo* pAliveInfo = &(pMVDHalContext->aliveInfo[u8Idx]);
8999     MVD_SrcMode curSrcMode = HAL_MVD_GetSrcMode(u8Idx);
9000 
9001     if (E_MVD_SLQ_TBL_MODE == curSrcMode || E_MVD_TS_FILE_MODE == curSrcMode)
9002     {
9003         if(pMVDHalContext->u32LastAliveTime[u8Idx] == 0 || ((MsOS_GetSystemTime()-pMVDHalContext->u32LastAliveTime[u8Idx]) < 500))
9004         {
9005 
9006             if(pMVDHalContext->u32LastAliveTime[u8Idx] == 0 )
9007             {
9008                 pMVDHalContext->u32LastAliveTime[u8Idx] = MsOS_GetSystemTime();
9009             }
9010             return E_MVD_RET_OK;
9011         }
9012     }
9013 
9014     #if 0
9015     printf("[%d]%d,%d,%d,%d,%d,%d,%d,%d\n",__FUNCTION__,
9016                                         (MS_U32)MsOS_GetSystemTime(),
9017                                         (MS_U32)(MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_DECODEDONE_COUNT, sizeof(MS_U32))),
9018                                         (MS_U32)(MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_SEARCHBUF_COUNT, sizeof(MS_U32))),
9019                                         (MS_U32)(MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_SEARCHCODE_COUNT, sizeof(MS_U32))),
9020                                         (MS_U32)(MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_PREBUF_COUNT, sizeof(MS_U32))),
9021                                         (MS_U32)(MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_VFIFOBUF_COUNT, sizeof(MS_U32))),
9022                                         (MS_U32)(MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_SEARCHHEADER_COUNT, sizeof(MS_U32))),
9023                                         (MS_U32)(MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_FLASHPATTERN_COUNT, sizeof(MS_U32))));
9024     #endif
9025 
9026         //check count to vertify alive
9027     if((pAliveInfo->u32decode_count!=(MS_U32)(MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_DECODEDONE_COUNT, sizeof(MS_U32))))||
9028        (pAliveInfo->u32searchbuf_count!=(MS_U32)(MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_SEARCHBUF_COUNT, sizeof(MS_U32))))||
9029        (pAliveInfo->u32searchcode_count!=(MS_U32)(MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_SEARCHCODE_COUNT, sizeof(MS_U32))))||
9030        (pAliveInfo->u32prebuf_count!=(MS_U32)(MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_PREBUF_COUNT, sizeof(MS_U32))))||
9031        (pAliveInfo->u32vfifobuf_count!=(MS_U32)(MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_VFIFOBUF_COUNT, sizeof(MS_U32))))||
9032        (pAliveInfo->u32searchheader_count!=(MS_U32)(MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_SEARCHHEADER_COUNT, sizeof(MS_U32))))||
9033        (pAliveInfo->u32flashpattern_count!=(MS_U32)(MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_FLASHPATTERN_COUNT, sizeof(MS_U32))))||
9034        (pAliveInfo->u32IdleCount!=(MS_U32)(MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_IDLE_COUNT, sizeof(MS_U32)))))
9035     {
9036         pAliveInfo->u32decode_count=(MS_U32)(MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_DECODEDONE_COUNT, sizeof(MS_U32)));
9037         pAliveInfo->u32searchbuf_count=(MS_U32)(MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_SEARCHBUF_COUNT, sizeof(MS_U32)));
9038         pAliveInfo->u32searchcode_count=(MS_U32)(MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_SEARCHCODE_COUNT, sizeof(MS_U32)));
9039         pAliveInfo->u32prebuf_count=(MS_U32)(MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_PREBUF_COUNT, sizeof(MS_U32)));
9040         pAliveInfo->u32vfifobuf_count=(MS_U32)(MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_VFIFOBUF_COUNT, sizeof(MS_U32)));
9041         pAliveInfo->u32searchheader_count=(MS_U32)(MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_SEARCHHEADER_COUNT, sizeof(MS_U32)));
9042         pAliveInfo->u32flashpattern_count=(MS_U32)(MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_FLASHPATTERN_COUNT, sizeof(MS_U32)));
9043         pAliveInfo->u32IdleCount=(MS_U32)(MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_IDLE_COUNT, sizeof(MS_U32)));
9044         pMVDHalContext->u32LastAliveTime[u8Idx] = MsOS_GetSystemTime();
9045         return E_MVD_RET_OK;
9046     }
9047     else
9048     {
9049         pMVDHalContext->u32LastAliveTime[u8Idx] = MsOS_GetSystemTime();
9050         return E_MVD_RET_FAIL;
9051     }
9052 
9053 }
9054 
HAL_MVD_Set_Err_Tolerance(MS_U8 u8Idx,MS_U16 u16Para)9055 E_MVD_Result HAL_MVD_Set_Err_Tolerance(MS_U8 u8Idx, MS_U16 u16Para)
9056 {
9057     MVD_CmdArg mvdcmd;
9058     SETUP_CMDARG(mvdcmd);
9059     mvdcmd.Arg0 = u16Para & 0xFF; //enable or disable
9060     mvdcmd.Arg1 = u16Para >> 8; // err rate 0~100%
9061     if(mvdcmd.Arg1 >= 100)
9062         mvdcmd.Arg1 = 100;
9063 
9064     SET_DECNUM(mvdcmd, u8Idx);
9065     if (HAL_MVD_MVDCommand(CMD_DECODE_ERROR_TOLERANCE, &mvdcmd) == FALSE)
9066     {
9067         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_DECODE_ERROR_TOLERANCE ) );
9068         return E_MVD_RET_FAIL;
9069     }
9070     return E_MVD_RET_OK;
9071 
9072 }
9073 
HAL_MVD_EnableAutoInsertDummyPattern(MS_U8 u8Idx,MS_BOOL bEnable)9074 void HAL_MVD_EnableAutoInsertDummyPattern(MS_U8 u8Idx, MS_BOOL bEnable)
9075 {
9076     pMVDHalContext->bAutoInsertDummyPattern[u8Idx] = bEnable;
9077 }
9078 
HAL_MVD_Drop_One_PTS(MS_U8 u8Idx)9079 void HAL_MVD_Drop_One_PTS(MS_U8 u8Idx)
9080 {
9081     pMVDHalContext->bDropOnePTS[u8Idx] = TRUE;
9082 }
9083 
HAL_MVD_PVR_Seamless_mode(MS_U8 u8Idx,MS_U8 u8Arg)9084 E_MVD_Result HAL_MVD_PVR_Seamless_mode(MS_U8 u8Idx, MS_U8 u8Arg)
9085 {
9086     #define STOP_TIMEOUT 500 //ms
9087     MVD_CmdArg mvdcmd;
9088     E_MVD_Result ret = E_MVD_RET_OK;
9089     MS_U32 u32StartTime;
9090     MS_U32 u32SeamlessStatus = 0;
9091     MS_U32 u32BufStart = 0;
9092     MS_U32* temp = 0;
9093 
9094     if(u8Arg != 2)
9095     {
9096         // clear handshake dram
9097         u32BufStart = GET_FRMINFO_BUFFADD(u8Idx);
9098         _miu_offset_to_phy(pMVDHalContext->stMiuCfg.u8FWMiuSel,u32BufStart,u32BufStart);
9099         temp = (MS_U32*)MsOS_PA2KSEG1(u32BufStart+OFFSET_PVR_SEAMLESS_STATUS);
9100         *temp = 0;
9101         MsOS_FlushMemory();
9102     }
9103 
9104     SETUP_CMDARG(mvdcmd);
9105     mvdcmd.Arg0 = u8Arg;
9106     MVD_DEBUGINFO(printf("%s: arg=%d\n", __FUNCTION__, (unsigned int)u8Arg));
9107     SET_DECNUM(mvdcmd, u8Idx);
9108 
9109     if (HAL_MVD_MVDCommand(CMD_PVR_SEAMLESS_MODE, &mvdcmd) == FALSE)
9110     {
9111         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_PVR_SEAMLESS_MODE ) );
9112         return E_MVD_RET_FAIL;
9113     }
9114 
9115 
9116     u32StartTime = HAL_MVD_GetTime();
9117 
9118     if(u8Arg == 1)
9119     {
9120          pMVDHalContext->stFwCfg[u8Idx].eSrcMode = E_MVD_TS_FILE_MODE;
9121         while(1)
9122         {
9123             u32SeamlessStatus = MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_PVR_SEAMLESS_STATUS, sizeof(MS_U32));
9124             if(u32SeamlessStatus&1) // bit0 , pause done
9125             {
9126                 break;
9127             }
9128 
9129             if((HAL_MVD_GetTime()-u32StartTime)>STOP_TIMEOUT)
9130             {
9131                 MVD_DEBUGERROR(printf("PVR seamless pause timeout\n" ) );
9132                 ret = E_MVD_RET_FAIL;
9133                 break;
9134             }
9135         }
9136     }
9137     else if(u8Arg == 2)
9138     {
9139         while(1)
9140         {
9141             u32SeamlessStatus = MVD_GetFWBuffData(u8Idx, FW_BUFF_FRMINFO, OFFSET_PVR_SEAMLESS_STATUS, sizeof(MS_U32));
9142             if(u32SeamlessStatus&4) // bit2, hw reset done
9143             {
9144                 break;
9145             }
9146 
9147             if((HAL_MVD_GetTime()-u32StartTime)>STOP_TIMEOUT)
9148             {
9149                 MVD_DEBUGERROR(printf("PVR seamless hw reset timeout\n" ) );
9150                 ret = E_MVD_RET_FAIL;
9151                 break;
9152             }
9153         }
9154     }
9155 
9156     return ret;
9157 }
9158 
HAL_MVD_SetDVXCShmAddr(MS_U8 u8Idx,MS_PHY u32FWBaseAddr,MS_PHY u32DVXCShmAddr)9159 E_MVD_Result HAL_MVD_SetDVXCShmAddr(MS_U8 u8Idx, MS_PHY u32FWBaseAddr, MS_PHY u32DVXCShmAddr)
9160 {
9161     E_MVD_Result ret = E_MVD_RET_OK;
9162 
9163     MS_U8 u8XCShmMiuSel;
9164     MS_U32 u32XCShmStartOffset;
9165     MS_U8 u8FWBaseMiuSel;
9166     MS_U32 u32FWBaseOffset;
9167     MVD_CmdArg mvdcmd;
9168     MS_U32 u32temp = 0;
9169 
9170     _phy_to_miu_offset(u8FWBaseMiuSel, u32FWBaseOffset, u32FWBaseAddr);
9171     _phy_to_miu_offset(u8XCShmMiuSel, u32XCShmStartOffset, u32DVXCShmAddr);
9172 
9173     if (u8FWBaseMiuSel != u8XCShmMiuSel)
9174     {
9175         MVD_DEBUGERROR(printf("[ERROR] XC share memory and VDEC Code base MIU selections are different\n"));
9176         return E_MVD_RET_FAIL;
9177     }
9178 
9179     u32temp = u32XCShmStartOffset - u32FWBaseOffset;
9180 
9181     SETUP_CMDARG(mvdcmd);
9182 
9183     mvdcmd.Arg0 = L_WORD(u32temp);
9184     mvdcmd.Arg1 = H_WORD(u32temp);
9185     mvdcmd.Arg2 = L_DWORD(u32temp);
9186     mvdcmd.Arg3 = H_DWORD(u32temp);
9187 
9188     MVD_DEBUGINFO(printf("%s: arg=%x\n", __FUNCTION__, (unsigned int)u32temp));
9189 
9190     SET_DECNUM(mvdcmd, u8Idx);
9191 
9192     if (HAL_MVD_MVDCommand(CMD_SET_DV_XC_SHM_ADDR, &mvdcmd) == FALSE)
9193     {
9194         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_SET_DV_XC_SHM_ADDR ) );
9195         return E_MVD_RET_FAIL;
9196     }
9197 
9198     return ret;
9199 }
9200 
9201 
HAL_MVD_SetDisplayFinishMode(MS_U8 u8Idx,MS_U8 u8Mode)9202 E_MVD_Result HAL_MVD_SetDisplayFinishMode(MS_U8 u8Idx, MS_U8 u8Mode)
9203 {
9204     MVD_CmdArg mvdcmd;
9205 
9206     SETUP_CMDARG(mvdcmd);
9207     mvdcmd.Arg0 = u8Mode;
9208 
9209     SET_DECNUM(mvdcmd, u8Idx);
9210 
9211     MVD_DEBUGINFO(printf("%s CMD_ENABLE_LAST_FRAME_QUALIFIER arg0=%x\n", __FUNCTION__, u8Mode));
9212     if (HAL_MVD_MVDCommand(CMD_ENABLE_LAST_FRAME_QUALIFIER, &mvdcmd)== FALSE)
9213     {
9214         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_ENABLE_LAST_FRAME_QUALIFIER) );
9215         return E_MVD_RET_FAIL;
9216     }
9217 
9218     return E_MVD_RET_OK;
9219 }
HAL_MVD_Set_SlowSyncParam(MS_U8 u8Idx,MS_U8 u8RepeatPeriod,MS_U8 u8DropPeriod)9220 E_MVD_Result HAL_MVD_Set_SlowSyncParam(MS_U8 u8Idx, MS_U8 u8RepeatPeriod,MS_U8 u8DropPeriod)
9221 {
9222     MVD_CmdArg mvdcmd;
9223     SETUP_CMDARG(mvdcmd);
9224 
9225     mvdcmd.Arg0 = u8RepeatPeriod;
9226 
9227     SET_DECNUM(mvdcmd, u8Idx);
9228     if (HAL_MVD_MVDCommand(CMD_SLOW_SYNC_REPEAT, &mvdcmd) == FALSE)
9229     {
9230         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_SLOW_SYNC_REPEAT ) );
9231         return E_MVD_RET_FAIL;
9232     }
9233 
9234 
9235     mvdcmd.Arg0 = u8DropPeriod;
9236 
9237     SET_DECNUM(mvdcmd, u8Idx);
9238     if (HAL_MVD_MVDCommand(CMD_SLOW_SYNC_SKIP, &mvdcmd) == FALSE)
9239     {
9240         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_SLOW_SYNC_SKIP ) );
9241         return E_MVD_RET_FAIL;
9242     }
9243 
9244 
9245     return E_MVD_RET_OK;
9246 
9247 }
9248 
HAL_MVD_VariableFrameRate(MS_U8 u8Idx)9249 MS_BOOL HAL_MVD_VariableFrameRate(MS_U8 u8Idx)
9250 {
9251     MVD_CmdArg mvdcmd;
9252     SETUP_CMDARG(mvdcmd);
9253     mvdcmd.Arg0 = 1;
9254     SET_DECNUM(mvdcmd, u8Idx);
9255     if (HAL_MVD_MVDCommand(CMD_VARIABLE_FRAMERATE, &mvdcmd)== FALSE)
9256     {
9257         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_VARIABLE_FRAMERATE) );
9258         return FALSE;
9259     }
9260     return TRUE;
9261 }
9262 
9263 //------------------------------------------------------------------------------
9264 /// Set FRC Only Show TopField
9265 /// @return -TRUE for success; FALSE for failure.
9266 //------------------------------------------------------------------------------
HAL_MVD_FRC_OnlyShowTopField(MS_U8 u8Idx,MS_BOOL bEnable)9267 MS_BOOL HAL_MVD_FRC_OnlyShowTopField(MS_U8 u8Idx, MS_BOOL bEnable)
9268 {
9269     MVD_CmdArg mvdcmd;
9270 
9271     SETUP_CMDARG(mvdcmd);
9272     mvdcmd.Arg0 = bEnable; //1 -> show Only Show TopField.  0 -> normal case.
9273     SET_DECNUM(mvdcmd, u8Idx);
9274     SET_CMD_RET_FALSE(CMD_FRC_ONLY_SHOW_TOP_FIELD, &mvdcmd);
9275     return TRUE;
9276 }
9277 
HAL_MVD_DisableESFullStop(MS_U8 u8Idx,MS_BOOL bDisable)9278 MS_BOOL HAL_MVD_DisableESFullStop(MS_U8 u8Idx, MS_BOOL bDisable)
9279 {
9280     MVD_CmdArg mvdcmd;
9281     SETUP_CMDARG(mvdcmd);
9282     mvdcmd.Arg0 = bDisable;
9283     SET_DECNUM(mvdcmd, u8Idx);
9284     if (HAL_MVD_MVDCommand( CMD_ES_FULL_STOP, &mvdcmd ) == FALSE)
9285     {
9286         printf( "Command: 0x%x fail!!\r\n", CMD_ES_FULL_STOP);
9287         return FALSE;
9288     }
9289     return TRUE;
9290 }
9291 
HAL_MVD_PUSI_Control(MS_U8 u8Idx,MS_BOOL bEnable)9292 MS_BOOL HAL_MVD_PUSI_Control(MS_U8 u8Idx, MS_BOOL bEnable)
9293 {
9294     MVD_CmdArg mvdcmd;
9295     SETUP_CMDARG(mvdcmd);
9296     mvdcmd.Arg0 = bEnable;
9297     SET_DECNUM(mvdcmd, u8Idx);
9298     if (HAL_MVD_MVDCommand( CMD_PUSI_CONTROL, &mvdcmd ) == FALSE)
9299     {
9300         MVD_PRINT( "Command: 0x%x fail!!\r\n", CMD_PUSI_CONTROL);
9301         return FALSE;
9302     }
9303     return TRUE;
9304 }
9305 
9306 
HAL_MVD_GetVBBUTableAddr(MS_U8 u8Idx)9307 MS_VIRT HAL_MVD_GetVBBUTableAddr(MS_U8 u8Idx)
9308 {
9309     return pMVDHalContext->stFWBuff[(u8Idx)].u32VBBUTableAdd;
9310 }
9311 
HAL_MVD_SetDmxFrameRate(MS_U8 u8HalIdx,MS_U32 u32Value)9312 void HAL_MVD_SetDmxFrameRate(MS_U8 u8HalIdx,MS_U32 u32Value)
9313 {
9314     pMVDHalContext->u32DmxFrameRate[u8HalIdx] = u32Value;
9315 }
9316 
HAL_MVD_SetDmxFrameRateBase(MS_U8 u8HalIdx,MS_U32 u32Value)9317 void HAL_MVD_SetDmxFrameRateBase(MS_U8 u8HalIdx,MS_U32 u32Value)
9318 {
9319     pMVDHalContext->u32DmxFrameRateBase[u8HalIdx] = u32Value;
9320 }
9321 
HAL_MVD_TrickPlay2xAVSync(MS_U8 u8Idx,MS_BOOL bEnable)9322 void HAL_MVD_TrickPlay2xAVSync(MS_U8 u8Idx,MS_BOOL bEnable)
9323 {
9324     pMVDHalContext->bTrickPlay2xAVSync[u8Idx] = bEnable;
9325 }
9326 
HAL_MVD_SetAVSyncDispAutoDrop(MS_U8 u8Idx,MS_BOOL bEnable)9327 MS_BOOL HAL_MVD_SetAVSyncDispAutoDrop(MS_U8 u8Idx, MS_BOOL bEnable)
9328 {
9329     MVD_CmdArg mvdcmd;
9330 
9331     SETUP_CMDARG(mvdcmd);
9332     mvdcmd.Arg0 = bEnable;
9333 
9334     SET_DECNUM(mvdcmd, u8Idx);
9335 
9336     MVD_DEBUGINFO(printf("%s CMD_AUTO_DROP_FRAME_IN_DECODE arg0=%x\n", __FUNCTION__, bEnable));
9337     if (HAL_MVD_MVDCommand(CMD_AUTO_DROP_FRAME_IN_DECODE, &mvdcmd)== FALSE)
9338     {
9339         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_AUTO_DROP_FRAME_IN_DECODE) );
9340         return FALSE;
9341     }
9342 
9343     return TRUE;
9344 }
9345 
HAL_MVD_SetDynmcDispPath(MS_U8 u8Idx,MS_BOOL bConnect,MVD_DISPLAY_PATH eValue,MS_BOOL bPreSet)9346 MS_BOOL HAL_MVD_SetDynmcDispPath(MS_U8 u8Idx,MS_BOOL bConnect,MVD_DISPLAY_PATH eValue,MS_BOOL bPreSet)
9347 {
9348     MS_U32 u32TimeCnt = 0;
9349     MVD_CmdArg mvdcmd;
9350 
9351     HAL_MVD_ResetHandShake(u8Idx, MVD_HANDSHAKE_VSYNC_CONTROL);
9352 
9353     SETUP_CMDARG(mvdcmd);
9354     mvdcmd.Arg0 = bConnect;
9355     mvdcmd.Arg1 = eValue;
9356     mvdcmd.Arg2 = bPreSet;
9357 
9358     SET_DECNUM(mvdcmd, u8Idx);
9359 
9360     MVD_DEBUGINFO(printf("%s CMD_DYNAMIC_MVOP_CONNECT arg0=%x, arg1=%x\n", __FUNCTION__, bConnect,eValue));
9361     if (HAL_MVD_MVDCommand(CMD_DYNAMIC_MVOP_CONNECT, &mvdcmd)== FALSE)
9362     {
9363         MVD_DEBUGERROR( printf( "Command: 0x%x fail!!\r\n", CMD_DYNAMIC_MVOP_CONNECT) );
9364         return FALSE;
9365     }
9366 
9367     if(bConnect == FALSE) // disconnect, need to do handshake with fw
9368     {
9369         u32TimeCnt = HAL_MVD_GetTime();
9370         while ((HAL_MVD_GetTime() - u32TimeCnt) < CMD_TIMEOUT_MS)
9371         {
9372             if (HAL_MVD_IsCmdFinished(u8Idx, MVD_HANDSHAKE_VSYNC_CONTROL))
9373             {
9374                 MVD_DEBUGINFO(printf("\n vsync control finished!\n"));
9375                 break;
9376             }
9377         }
9378 
9379         MVD_DEBUGINFO(printf("====> %s (t1=%u t2=%u diff=%u)\n", __FUNCTION__,u32TimeCnt, HAL_MVD_GetTime(), (HAL_MVD_GetTime() - u32TimeCnt)));
9380 
9381         if (TRUE != HAL_MVD_IsCmdFinished(u8Idx, MVD_HANDSHAKE_VSYNC_CONTROL))
9382         {
9383             MVD_DEBUGINFO(printf("\n***** vsync control timeout *****\n\n"));
9384             return FALSE;
9385         }
9386     }
9387 
9388     return TRUE;
9389 }
9390 
HAL_MVD_PreConnectInputTsp(MS_U8 u8Idx,MS_BOOL bEnable,MVD_INPUT_TSP eInputTsp,MVD_Original_Stream eStream)9391 MS_BOOL HAL_MVD_PreConnectInputTsp(MS_U8 u8Idx, MS_BOOL bEnable, MVD_INPUT_TSP eInputTsp, MVD_Original_Stream eStream)
9392 {
9393 #ifdef CMD_PRESET_CONNET_INPUT_TSP
9394 
9395     MVD_SrcMode curSrcMode = HAL_MVD_GetSrcMode(u8Idx);
9396 
9397     if (curSrcMode == E_MVD_TS_MODE)
9398     {
9399         MVD_CmdArg mvdcmd;
9400         MS_U8 u8Input = E_CTL_INPUT_TSP_NONE;
9401 
9402         if (bEnable)
9403         {
9404             u8Input = (MS_U8)eInputTsp;
9405             VPRINTF("[NDec][%d] MVD preset tsp, eInputTsp %d\n", u8Idx, eInputTsp);
9406         }
9407         else
9408         {
9409             switch (eStream)
9410             {
9411                 case E_MVD_ORIGINAL_MAIN_STREAM:
9412                     u8Input = E_CTL_INPUT_TSP_0;
9413                     break;
9414                 case E_MVD_ORIGINAL_SUB_STREAM:
9415                     u8Input = E_CTL_INPUT_TSP_1;
9416                     break;
9417                 case E_MVD_ORIGINAL_N_STREAM:
9418                 default:
9419                     u8Input = E_CTL_INPUT_TSP_NONE;
9420                     break;
9421             }
9422             VPRINTF("[NDec][%d] MVD no preset tsp, input %d\n", u8Idx, u8Input);
9423         }
9424 
9425         SETUP_CMDARG(mvdcmd);
9426         mvdcmd.Arg0 = u8Input;
9427         SET_DECNUM(mvdcmd, u8Idx);
9428 
9429         MVD_DEBUGINFO(printf("%s CMD_PRESET_CONNET_INPUT_TSP arg0=%x\n", __FUNCTION__, u8Input));
9430         if (HAL_MVD_MVDCommand(CMD_PRESET_CONNET_INPUT_TSP, &mvdcmd)== FALSE)
9431         {
9432             MVD_DEBUGERROR(printf("Command: 0x%x fail!!\r\n", CMD_PRESET_CONNET_INPUT_TSP));
9433             return FALSE;
9434         }
9435     }
9436     else
9437     {
9438         VPRINTF("[NDec][%d] MVD not TSP input, ignore PRESET_CONNECT_INPUT_TSP\n", u8Idx);
9439     }
9440 
9441     return TRUE;
9442 
9443 #else
9444 
9445     return FALSE;
9446 
9447 #endif
9448 }
9449 
HAL_MVD_SetCMAInformation(void * cmaInitParam)9450 void HAL_MVD_SetCMAInformation(void* cmaInitParam)
9451 {
9452     pMVDHalContext->bCMAUsed = TRUE;
9453     memcpy((void*)(&pMVDHalContext->cmaInitParam),cmaInitParam,sizeof(struct CMA_Pool_Init_Param));
9454 }
9455 
HAL_MVD_GetCMAInformation(MS_U8 u8HalIdx,MS_U64 * u64Addr,MS_SIZE * u64Size,MS_BOOL * bAllocDone)9456 void HAL_MVD_GetCMAInformation(MS_U8 u8HalIdx,MS_U64* u64Addr,MS_SIZE* u64Size,MS_BOOL* bAllocDone)
9457 {
9458     FW_VOL_INFO gvolInfo;
9459     MS_U32 u32VolAddr;
9460 
9461     _miu_offset_to_phy(pMVDHalContext->stMiuCfg.u8FWMiuSel,GET_VOL_BUFFADD(u8HalIdx),u32VolAddr);
9462 
9463     gvolInfo = (*(volatile FW_VOL_INFO*)(MsOS_PA2KSEG1(u32VolAddr)));
9464 
9465     *u64Addr = (MS_U64)gvolInfo.CMA_FB_Address;
9466     *u64Size = (MS_SIZE)gvolInfo.CMA_FB_Size;
9467     *bAllocDone = gvolInfo.CMA_AllocDone;
9468 
9469     MsOS_ReadMemory();
9470     MsOS_FlushMemory();
9471 }
9472 
HAL_MVD_SetCMAAllocateDone(MS_U8 u8HalIdx)9473 void HAL_MVD_SetCMAAllocateDone(MS_U8 u8HalIdx)
9474 {
9475     MS_U8* temp;
9476     MS_VIRT u32VolAddr;
9477 
9478     _miu_offset_to_phy(pMVDHalContext->stMiuCfg.u8FWMiuSel,GET_VOL_BUFFADD(u8HalIdx),u32VolAddr);
9479 
9480     temp = (MS_U8*)(MsOS_PA2KSEG1(u32VolAddr+OFFSET_CMA_ALLOCDONE));
9481 
9482     *temp = 1;
9483 
9484     MsOS_ReadMemory();
9485     MsOS_FlushMemory();
9486 }
9487 
HAL_MVD_SetFrameBufferMiu(MS_U8 u8HalIdx,MS_U8 u8MiuIdx)9488 void HAL_MVD_SetFrameBufferMiu(MS_U8 u8HalIdx,MS_U8 u8MiuIdx)
9489 {
9490     //to do....
9491 }
9492 
9493 
9494 #ifdef VDEC3
HAL_MVD_IsDisplayCommand(MS_U8 u8Cmd)9495 MS_BOOL HAL_MVD_IsDisplayCommand(MS_U8 u8Cmd)
9496 {
9497 
9498 #if 1 // to do.
9499     UNUSED(u8Cmd);
9500     return TRUE;
9501 #else
9502     MS_BOOL ret;
9503     switch(u8Cmd)
9504     {
9505         case CMD_PLAY:
9506         case CMD_STOP:
9507         case CMD_DISPLAY_PAUSE:
9508         case CMD_PAUSE:
9509         case CMD_FLUSH_DISP_QUEUE:
9510         case CMD_VC1_HW_SLQ_RESET:
9511         case CMD_FAST_SLOW:
9512         case CMD_FLIP_RELEASE_FRAME:
9513         case CMD_FD_MASK_DELAY_CNT:
9514         case CMD_PVR_SEAMLESS_MODE:
9515         case CMD_SW_RESET:
9516         case CMD_CODEC_INFO:
9517         case CMD_CODE_OFFSET:
9518         case CMD_VOL_INFO_BUF:
9519         case CMD_FRAME_INFO_BUF:
9520         case CMD_HEADER_INFO_BUF:
9521         case CMD_USER_BUF_START:
9522         case CMD_USER_BUF_SIZE:
9523         case CMD_PTS_TBL_START:
9524         case CMD_DEC_FRAME_INFO_BUF:
9525         case CMD_SLQ_TBL_BUF_END:
9526         case CMD_SLQ_TBL_BUF_START:
9527         case CMD_STREAM_BUF_START:
9528         case CMD_STREAM_BUF_END:
9529         case CMD_FB_BASE:
9530         case CMD_IAP_BUF_START:
9531         case CMD_DP_BUF_START:
9532         case CMD_MV_BUF_START:
9533         case CMD_FB_NUM:
9534         case CMD_DISPLAY_CTL:
9535         case CMD_REPEAT_MODE:
9536         case CMD_DS_VIRTUAL_BOX:
9537         case CMD_ENABLE_FILE_SYNC:
9538         case CMD_RVU_EN:
9539         case CMD_START_DEC_STRICT:
9540         case CMD_SYNC_ON:
9541         case CMD_SET_MST_MODE:
9542         case CMD_SET_MCU_MODE:
9543             ret = TRUE;
9544             break;
9545         default:
9546             ret = FALSE;
9547             break;
9548     }
9549 
9550     return ret;
9551 #endif
9552 }
9553 
HAL_MVD_IsNormalCommand(MS_U8 u8Cmd)9554 MS_BOOL HAL_MVD_IsNormalCommand(MS_U8 u8Cmd)
9555 {
9556     MS_BOOL ret;
9557 
9558     switch(u8Cmd)
9559     {
9560 
9561         case CMD_DISP_SPEED_CTRL:
9562         case CMD_STEP_DISP_DECODE_ONE:
9563         case CMD_ENABLE_LAST_FRAME_SHOW:
9564         case CMD_STEP_TO_PTS:
9565         case CMD_SKIP_DATA:
9566         case CMD_DIU_WIDTH_ALIGN:
9567         case CMD_SCALER_INFO_BASE:
9568         case CMD_DYNAMIC_SCALE_BASE:
9569         case CMD_ENABLE_DYNAMIC_SCALE:
9570         case CMD_FORCE_BLUE_SCREEN:
9571         case CMD_FREEZE_DISP:
9572         case CMD_FIXED_FRAME_BUFFER:
9573         case CMD_SEND_UNI_PTS:
9574         case CMD_ENABLE_FREEZE_PIC:
9575         case CMD_PTS_BASE:
9576         case CMD_SINGLE_STEP:
9577         case CMD_PARSE_M4V_PACKMD:
9578         case CMD_SLQ_END:
9579         case CMD_SLQ_START:
9580         case CMD_ENABLE_INT_STAT:
9581         case CMD_SHOW_ONE_FIELD:
9582         case CMD_FRC_OUPUT:
9583         case CMD_FRC_DROP_BEHAVIOR:
9584         case CMD_FORBID_RESOLUTION_CHANGE:
9585         case CMD_DUMP_BITSTREAM_BASE:
9586         case CMD_DUMP_BITSTREAM_LENGTH:
9587         case CMD_SYNC_OFFSET:
9588         case CMD_SYN_THRESHOLD:
9589         case CMD_AVSYNC_FREERUN_THRESHOLD:
9590         case CMD_MVD_FAST_INT:
9591         case CMD_DIVX_PATCH:
9592         case CMD_IDCT_SEL:
9593         case CMD_SLQ_UPDATE_TBL_WPTR:
9594         case CMD_DMA_OVFTH:
9595         case CMD_DMA_UNFTH:
9596         case CMD_UPDATE_FRAME:
9597         case CMD_PTS_TBL_RESET:
9598         case CMD_ENABLE_AUTO_MUTE:
9599         case CMD_FORCE_ALIGN_VSIZE:
9600         case CMD_SUSPEND_DS:
9601         case CMD_PUSH_FIRST_FRAME_DISP:
9602         case CMD_XC_LOW_DELAY_PARA:
9603         case CMD_FP_FILTER:
9604         case CMD_CC_ENABLE_EXTERNAL_BUFFER:
9605         case CMD_CLOSE_CC:
9606         case CMD_PREBUFFER_SIZE:
9607         case CMD_TIME_INCR_PREDICT:
9608         case CMD_ENABLE_VLD_TIMEOUT:
9609         case CMD_SMOOTH_REWIND:
9610         case CMD_DECODE_ERROR_TOLERANCE:
9611         case CMD_MVD_IDLE:
9612         case CMD_PARSER_READ_POSITION:
9613         case CMD_SLQ_GET_TBL_RPTR:
9614         case CMD_DECODE_STATUS:
9615         case CMD_GET_AFD:
9616         case CMD_GET_SYNC_STAT:
9617         case CMD_RD_USER_WP:
9618         case CMD_ENABLE_LAST_FRAME_QUALIFIER:
9619         //case CMD_RD_IO: // no need in V3
9620         //case CMD_WR_IO: // no need in V3
9621             ret = TRUE;
9622             break;
9623         default:
9624             ret = FALSE;
9625             break;
9626     }
9627 
9628     return ret;
9629 }
9630 
HAL_MVD_IsNeedResponseCommand(MS_U8 u8Cmd)9631 MS_BOOL HAL_MVD_IsNeedResponseCommand(MS_U8 u8Cmd)
9632 {
9633     MS_BOOL ret;
9634 
9635     switch(u8Cmd)
9636     {
9637         case CMD_GET_AFD:
9638         case CMD_GET_SYNC_STAT:
9639         case CMD_RD_USER_WP:
9640         case CMD_DECODE_STATUS:
9641         case CMD_PARSER_READ_POSITION:
9642         case CMD_MVD_IDLE:
9643             ret = TRUE;
9644             break;
9645         default:
9646             ret = FALSE;
9647             break;
9648     }
9649 
9650     return ret;
9651 }
9652 #endif
9653 #endif
9654