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86525f0f | 1 | // $Id$ |
2 | ||
31a920d3 | 3 | /************************************************************************** |
4 | * This file is property of and copyright by the ALICE HLT Project * | |
5 | * All rights reserved. * | |
6 | * * | |
7 | * Primary Authors: Per Thomas Hille <perthi@fys.uio.no> * | |
86525f0f | 8 | * Oystein Djuvsland <oystein.djuvsland@gmail.com> * |
31a920d3 | 9 | * * |
10 | * Permission to use, copy, modify and distribute this software and its * | |
11 | * documentation strictly for non-commercial purposes is hereby granted * | |
12 | * without fee, provided that the above copyright notice appears in all * | |
13 | * copies and that both the copyright notice and this permission notice * | |
14 | * appear in the supporting documentation. The authors make no claims * | |
15 | * about the suitability of this software for any purpose. It is * | |
16 | * provided "as is" without express or implied warranty. * | |
17 | **************************************************************************/ | |
18 | ||
86525f0f | 19 | /** |
20 | @file AliAltroDocoder.cxx | |
21 | @author Per Thomas Hille, Oystein Djuvsland | |
22 | @date | |
23 | @brief High performance decoder class for the RCU/Altro data format | |
24 | */ | |
25 | ||
26 | #include <cassert> | |
31a920d3 | 27 | #include <Riostream.h> |
28 | #include "AliAltroDecoder.h" | |
29 | #include "AliAltroData.h" | |
86525f0f | 30 | #include "AliLog.h" |
31a920d3 | 31 | |
ac672c4c | 32 | // Class for fast decoding of RCU/Altro raw data format (DDL format) |
33 | // to PC readable form. The decoding is done in 3 steps. | |
86525f0f | 34 | // 1) The RCU payload consist of a variable number of 160 bit words |
35 | // denoted a DDL block. All the DDL blocks of an RCU payload are transformed | |
36 | // into 16 bit integers and stored into a buffer of integers big enought to contain the | |
ac672c4c | 37 | // biggest number of samples possible |
38 | // 2) The decoded buffer is then accesible for the NextChannel functions wich reads | |
39 | // the altro channel data (samples) contained in the payload. The first call to NextChannel gives the | |
86525f0f | 40 | // last altro channel of the back linked list, the next call the second last channel ..etc until |
41 | // all channels are read. | |
ac672c4c | 42 | // 3) (optional) For each Altro channel one chan invoke the member function NextBunch which gives on first call |
43 | // The last bunch (the bunch with the highest timestamp), on next call the second last bunch..etc | |
44 | // untill all bunches are read | |
45 | ||
46 | ||
31a920d3 | 47 | ClassImp(AliAltroDecoder) |
48 | ||
49 | AliAltroDecoder::AliAltroDecoder() : f32DtaPtr(0), | |
ebf7cafe | 50 | f8DtaPtr(0), |
ac672c4c | 51 | fkN32HeaderWords(8), |
ebf7cafe | 52 | fN40AltroWords(0), |
53 | fN40RcuAltroWords(0), | |
54 | fNDDLBlocks(0), | |
55 | f32LastDDLBlockSize(5), | |
86525f0f | 56 | f8PayloadSize(0), |
ebf7cafe | 57 | fOutBufferIndex(0), |
58 | fSize(0), | |
59 | fNAltro10bitWords(0), | |
60 | fComplete(0), | |
61 | fInComplete(0), | |
62 | fDecodeIfCorruptedTrailer(kTRUE), | |
63 | fIsDecoded(kFALSE), | |
64 | fIsFatalCorruptedTrailer(kTRUE) | |
31a920d3 | 65 | { |
ac672c4c | 66 | // Default constructor |
31a920d3 | 67 | } |
68 | ||
69 | ||
70 | AliAltroDecoder::~AliAltroDecoder() | |
71 | { | |
ac672c4c | 72 | // Default destructor |
31a920d3 | 73 | } |
74 | ||
75 | ||
ac672c4c | 76 | Bool_t AliAltroDecoder::CheckPayloadTrailer() const |
31a920d3 | 77 | { |
86525f0f | 78 | //Check consistency between the number of 40 bit altro words given by |
ac672c4c | 79 | //the RCU payload and the number of 40 bit words calculated from the size of the RCU payload. |
80 | ||
31a920d3 | 81 | if(fN40AltroWords != fN40RcuAltroWords) |
82 | { | |
83 | return kFALSE; | |
84 | } | |
85 | else | |
86 | { | |
87 | return kTRUE; | |
88 | } | |
89 | } | |
90 | ||
91 | ||
92 | Bool_t AliAltroDecoder::Decode() | |
ebf7cafe | 93 | { |
86525f0f | 94 | // Decodes the RCU payload (all altro channels in one go) from the DDL/Altro |
95 | // format to PC readable format. | |
96 | // The 10 bit words of the 40/10 bit Altro format are transformed to separated | |
97 | // integers. | |
ac672c4c | 98 | |
ebf7cafe | 99 | if( fIsFatalCorruptedTrailer == kTRUE) |
31a920d3 | 100 | { |
ebf7cafe | 101 | printf("\n AliAltroDecoder::Decode(), WARNING, attempt to decode badly corrupted data\n"); |
102 | printf("\n AliAltroDecoder::Decode(). Please check on the return value (-1 if fataly corrupted) of the SetMemory() function\n"); | |
103 | return kFALSE; | |
104 | } | |
105 | ||
106 | else | |
31a920d3 | 107 | { |
ebf7cafe | 108 | // see header file for class documentation |
109 | fComplete = 0; | |
110 | fInComplete = 0; | |
111 | ||
ac672c4c | 112 | Int_t tmpcnt = CountAAApaddings(); |
31a920d3 | 113 | |
ebf7cafe | 114 | if(tmpcnt == 3) |
115 | { | |
116 | fN40AltroWords = fN40AltroWords -1; | |
117 | } | |
118 | else if(tmpcnt == 5) | |
119 | { | |
120 | fN40AltroWords = fN40AltroWords -2; | |
121 | } | |
122 | else if(tmpcnt == 8) | |
123 | { | |
124 | fN40AltroWords = fN40AltroWords -3; | |
125 | } | |
31a920d3 | 126 | |
ebf7cafe | 127 | if( ((CheckPayloadTrailer() == kTRUE) || fDecodeIfCorruptedTrailer == kTRUE ) && (fSize > 32) ) |
31a920d3 | 128 | { |
ebf7cafe | 129 | // fDDLBlockCnt = 0; |
130 | fOutBufferIndex = 0; | |
131 | ||
132 | for(Int_t i = 0; i < fNDDLBlocks; i++) | |
133 | { | |
134 | DecodeDDLBlock(); | |
135 | } | |
31a920d3 | 136 | |
ebf7cafe | 137 | DecodeLastDDLBlock(); |
138 | fOutBufferIndex = fN40AltroWords*4 - 1; | |
31a920d3 | 139 | |
ebf7cafe | 140 | // DumpData(fOutBuffer, 400,4); |
31a920d3 | 141 | |
ebf7cafe | 142 | fIsDecoded = kTRUE; |
143 | return kTRUE; | |
144 | } | |
145 | ||
146 | else | |
147 | { | |
148 | cout <<" ERROR: data integrity check failed, discarding data" << endl; | |
149 | cout << "Size of datablock is " << fSize << endl; | |
150 | cout << "fN40AltroWords = " << fN40AltroWords << endl; | |
151 | cout << "fN40RcuAltroWords = " << fN40RcuAltroWords << endl; | |
152 | return kFALSE; | |
153 | } | |
31a920d3 | 154 | |
31a920d3 | 155 | } |
156 | } | |
157 | ||
158 | ||
159 | Bool_t AliAltroDecoder::NextChannel(AliAltroData *altroDataPtr) | |
160 | { | |
ac672c4c | 161 | // Reads the next altro channel in the RCU payload after the RCU payload |
86525f0f | 162 | // has been decoded. The channels are read starting from the end (backlinked list) |
163 | // Returns kTRUE as long as ther are unread channels in the payload | |
164 | // Returns kFALSE when all the channels have been read. | |
ac672c4c | 165 | |
ebf7cafe | 166 | if(fIsFatalCorruptedTrailer == kTRUE) |
31a920d3 | 167 | { |
ebf7cafe | 168 | printf("\n AliAltroDecoder::NextChannel(), WARNING, attempt to decode badly corrupted data\n"); |
169 | printf("\n AliAltroDecoder::NextChannel(), Please check on the return value (-1 if fataly corrupted) of the SetMemory() function\n"); | |
170 | return kFALSE; | |
171 | } | |
172 | ||
173 | else | |
31a920d3 | 174 | { |
31a920d3 | 175 | |
ebf7cafe | 176 | if(fIsDecoded != kTRUE) |
177 | { | |
178 | cout <<"AliAltroDecoder::NextChanne, WARNING, buffer was not decoded, decoding now.. "<< endl; | |
179 | Decode(); | |
180 | } | |
31a920d3 | 181 | |
86525f0f | 182 | // an altro block must constist of at least 2 40bit words: |
183 | // - 40bit Altro trailer | |
184 | // - at least 3 10bit words (bunch length, time bin, signal) padded to 40 bit | |
185 | // we are reading backwards, so the index is already 1 inside the block | |
186 | if(fOutBufferIndex >= 7) | |
31a920d3 | 187 | { |
ebf7cafe | 188 | if((fOutBuffer[fOutBufferIndex] << 4 ) | ((fOutBuffer[fOutBufferIndex-1] & 0x3c0) >> 6) == 0x2aaa) |
189 | { | |
190 | altroDataPtr->SetIsComplete(kTRUE); | |
191 | fComplete ++; | |
192 | } | |
193 | else | |
194 | { | |
195 | altroDataPtr->SetIsComplete(kFALSE); | |
196 | fInComplete ++; | |
197 | } | |
198 | ||
199 | fOutBufferIndex --; | |
200 | fNAltro10bitWords = ( (fOutBuffer[fOutBufferIndex] & 0x3f) << 4 ) | ((fOutBuffer[fOutBufferIndex -1] & (0xF << 6)) >> 6) ; | |
201 | fOutBufferIndex --; | |
202 | altroDataPtr->SetHadd( ((fOutBuffer[fOutBufferIndex] & 0x3)) << 10 | ( fOutBuffer[fOutBufferIndex-1] ) ); | |
203 | ||
204 | fOutBufferIndex --; | |
205 | ||
206 | if(fNAltro10bitWords%4 == 0) | |
207 | { | |
208 | fOutBufferIndex = fOutBufferIndex - fNAltro10bitWords; | |
209 | } | |
210 | else | |
211 | { | |
212 | fOutBufferIndex = fOutBufferIndex - fNAltro10bitWords -(4 - fNAltro10bitWords%4); | |
213 | } | |
214 | ||
215 | ||
216 | altroDataPtr->SetData( &fOutBuffer[fOutBufferIndex] ); | |
217 | fOutBufferIndex --; | |
218 | altroDataPtr->SetDataSize( fNAltro10bitWords ); | |
86525f0f | 219 | |
ebf7cafe | 220 | return kTRUE; |
221 | ||
31a920d3 | 222 | } |
223 | else | |
224 | { | |
ebf7cafe | 225 | return kFALSE; |
31a920d3 | 226 | } |
227 | ||
31a920d3 | 228 | } |
229 | } | |
230 | ||
31a920d3 | 231 | |
ac672c4c | 232 | Int_t AliAltroDecoder::CountAAApaddings() const |
31a920d3 | 233 | { |
ac672c4c | 234 | // Use for simulated data only. |
235 | // Patch for incorrectly simulated data. Counts the number of | |
236 | // 2aaa word in the trailer of the payload and tries to figure out | |
237 | // the correct number of 40 bit altro words in the RCU pauload | |
86525f0f | 238 | // |
239 | // The simulated raw data differs from the real data by a number | |
240 | // of additional 0x2aa words between the Altro payload and the | |
241 | // RCU trailer. This is most likely to bring the total number of | |
242 | // bytes to a common multiple of 4 and 5. | |
ac672c4c | 243 | |
86525f0f | 244 | UShort_t *tailPtr= (UShort_t *)((UChar_t*)f32DtaPtr + f8PayloadSize); |
31a920d3 | 245 | Int_t cnt = 0; |
246 | ||
247 | tailPtr --; | |
248 | ||
249 | while(*tailPtr == 0xaaaa) | |
250 | { | |
251 | cnt ++; | |
252 | tailPtr --; | |
253 | } | |
254 | ||
255 | tailPtr = tailPtr + cnt +1; | |
256 | ||
257 | return cnt; | |
258 | } | |
259 | ||
260 | ||
261 | Float_t AliAltroDecoder::GetFailureRate() | |
262 | { | |
ac672c4c | 263 | // Prints to stdout the percent of altroblocks that |
264 | // is missing the 2aaa trailer. | |
265 | ||
31a920d3 | 266 | Float_t tmp = 0; |
267 | cout << "Number of Complete channles = " << fComplete <<endl; | |
268 | cout << "Number of InComplete channles = " << fInComplete <<endl; | |
269 | tmp = (100*(Float_t)fInComplete)/((Float_t)fComplete + (Float_t)fInComplete); | |
270 | cout <<"There are "<< tmp <<"% incomplete channels"<<endl; | |
271 | return tmp; | |
272 | } | |
273 | ||
274 | ||
275 | void AliAltroDecoder::PrintInfo(AliAltroData &altrodata, Int_t n, Int_t nPerLine) | |
276 | { | |
ac672c4c | 277 | // prints data and address information contained in altrodata |
278 | // to the standard output | |
279 | ||
31a920d3 | 280 | cout << "altrodata.fDataSize = " << altrodata.GetDataSize() << endl; |
281 | cout << "altrodata.fHadd = " << altrodata.GetHadd() <<endl; | |
282 | const UInt_t* data = altrodata.GetData(); | |
283 | for(Int_t i= 0; i< n; i++) | |
284 | { | |
285 | if( (i%nPerLine == 0) && (i != 0) ) | |
286 | { | |
287 | printf("\n"); | |
288 | } | |
289 | printf("%d\t", data[i]); | |
290 | } | |
291 | printf("\n"); | |
292 | } | |
293 | ||
294 | ||
ebf7cafe | 295 | int AliAltroDecoder::SetMemory(UChar_t *dtaPtr, UInt_t size) |
31a920d3 | 296 | { |
ac672c4c | 297 | // Sets the pointer to the memory block that should be decoded |
298 | // Returns a negative value if an inconsistency in the data is detected | |
299 | ||
ebf7cafe | 300 | int iRet = 0; |
31a920d3 | 301 | Int_t tmpTrailerSize; |
302 | fIsDecoded = kFALSE; | |
303 | f8DtaPtr =dtaPtr; | |
304 | fSize = size; | |
305 | f8DtaPtr =f8DtaPtr + fSize; | |
306 | f32DtaPtr = (UInt_t *)f8DtaPtr; | |
307 | tmpTrailerSize = *(f32DtaPtr - 1); | |
308 | ||
309 | if(tmpTrailerSize <= MAX_TRAILER_WORDS) | |
310 | { | |
311 | tmpTrailerSize = tmpTrailerSize; //assume that the last word of the buffer gives the number of trailer words | |
312 | } | |
313 | else | |
314 | { | |
315 | tmpTrailerSize = 1; //assume that last word is ONE, and that the this word gives the number of 40 bit altro words | |
316 | } | |
317 | ||
86525f0f | 318 | f8PayloadSize = fSize - (fkN32HeaderWords + tmpTrailerSize)*4; |
319 | fN40AltroWords = f8PayloadSize/5; | |
320 | fNDDLBlocks = fN40AltroWords/4; | |
321 | f32LastDDLBlockSize = ((f8PayloadSize%(4*DDL_32BLOCK_SIZE))+3)/4; | |
ebf7cafe | 322 | |
323 | if(tmpTrailerSize > 0 && tmpTrailerSize < 5) | |
324 | { | |
325 | f32DtaPtr = f32DtaPtr - tmpTrailerSize; | |
326 | fN40RcuAltroWords = *f32DtaPtr; | |
ac672c4c | 327 | f32DtaPtr = (UInt_t *)dtaPtr + fkN32HeaderWords; |
ebf7cafe | 328 | fIsFatalCorruptedTrailer = kFALSE; |
329 | } | |
330 | else | |
331 | { | |
332 | printf("\n AliAltroDecoder::SetMemory, ERROR\n, trailer is corrupted"); | |
333 | fIsFatalCorruptedTrailer = kTRUE; | |
334 | iRet = -1; | |
335 | } | |
ebf7cafe | 336 | |
337 | return iRet; | |
338 | ||
31a920d3 | 339 | } |
340 | ||
341 | ||
342 | void AliAltroDecoder::DecodeDDLBlock() | |
343 | { | |
ac672c4c | 344 | //Decode one 160 bit DDL block into 16 x 16 bit integers (only least significant 10 bits are filled) |
345 | ||
31a920d3 | 346 | fOutBuffer[fOutBufferIndex] = *f32DtaPtr & 0x3ff; //s0 |
347 | fOutBufferIndex ++; | |
348 | fOutBuffer[fOutBufferIndex] = (*f32DtaPtr & 0xffc00) >> 10; //s1 | |
349 | fOutBufferIndex ++; | |
350 | fOutBuffer[fOutBufferIndex] = (*f32DtaPtr & 0x3ff00000) >> 20; //s2 | |
351 | fOutBufferIndex ++; | |
352 | fOutBuffer[fOutBufferIndex] = (*f32DtaPtr & 0xc0000000) >> 30; //s3_1 | |
353 | f32DtaPtr ++; | |
354 | fOutBuffer[fOutBufferIndex] = fOutBuffer[fOutBufferIndex] | ((*f32DtaPtr & 0xff) << 2); //s3_2 | |
355 | fOutBufferIndex ++; | |
356 | fOutBuffer[fOutBufferIndex] = (*f32DtaPtr & 0x3ff00) >> 8; //s4 | |
357 | fOutBufferIndex ++; | |
358 | fOutBuffer[fOutBufferIndex] = (*f32DtaPtr & 0xffc0000) >> 18; //s5 | |
359 | fOutBufferIndex ++; | |
360 | fOutBuffer[fOutBufferIndex] = (*f32DtaPtr & 0xf0000000) >> 28; //s6_1 | |
361 | f32DtaPtr ++; | |
362 | fOutBuffer[fOutBufferIndex] = fOutBuffer[fOutBufferIndex] | ((*f32DtaPtr & 0x3f) << 4); //s6_2 | |
363 | fOutBufferIndex ++; | |
364 | fOutBuffer[fOutBufferIndex] = (*f32DtaPtr & 0xffc0) >> 6; //s7 | |
365 | fOutBufferIndex ++; | |
366 | fOutBuffer[fOutBufferIndex] = (*f32DtaPtr & 0x3ff0000) >> 16; //s8 | |
367 | fOutBufferIndex ++; | |
368 | fOutBuffer[fOutBufferIndex] = (*f32DtaPtr & 0xFC000000) >> 26; //s9_1 | |
369 | f32DtaPtr ++; | |
370 | fOutBuffer[fOutBufferIndex] = fOutBuffer[fOutBufferIndex] | ((*f32DtaPtr & 0xf) << 6); //s9_2 | |
371 | fOutBufferIndex ++; | |
372 | fOutBuffer[fOutBufferIndex] = (*f32DtaPtr & 0x3ff0) >> 4; //s10 | |
373 | fOutBufferIndex ++; | |
374 | fOutBuffer[fOutBufferIndex] = (*f32DtaPtr & 0xffc000) >> 14; //s11 | |
375 | fOutBufferIndex ++; | |
376 | fOutBuffer[fOutBufferIndex] = (*f32DtaPtr & 0xff000000) >> 24; //s12_1 | |
377 | f32DtaPtr ++; | |
378 | fOutBuffer[fOutBufferIndex] = fOutBuffer[fOutBufferIndex] | ((*f32DtaPtr & 0x3) << 8); //s12_2 | |
379 | fOutBufferIndex ++; | |
380 | fOutBuffer[fOutBufferIndex] = (*f32DtaPtr & 0xffc) >> 2; //s13 | |
381 | fOutBufferIndex ++; | |
382 | fOutBuffer[fOutBufferIndex] = (*f32DtaPtr & 0x3ff000) >> 12; //s14 | |
383 | fOutBufferIndex ++; | |
384 | fOutBuffer[fOutBufferIndex] = (*f32DtaPtr & 0xffc00000) >> 22; //s15 | |
385 | f32DtaPtr ++; | |
386 | fOutBufferIndex ++; | |
387 | } | |
388 | ||
389 | ||
390 | void AliAltroDecoder::DecodeLastDDLBlock() | |
391 | { | |
ac672c4c | 392 | // Decode one 160 bit DDL block into 16 integers. |
393 | // In order to use the same decoding function (DecodeDDLBlock()) | |
394 | // a copy of the the last DDL block is made and | |
395 | // if the las block does not align with 160 bits then it is padded with zeroes | |
396 | ||
31a920d3 | 397 | for(Int_t i=0; i < f32LastDDLBlockSize; i++) |
398 | { | |
399 | fDDLBlockDummy[i] = *f32DtaPtr; | |
400 | f32DtaPtr ++; | |
401 | } | |
402 | ||
403 | f32DtaPtr = fDDLBlockDummy; | |
31a920d3 | 404 | DecodeDDLBlock(); |
86525f0f | 405 | f32DtaPtr=(UInt_t*)(f8DtaPtr-fSize+f8PayloadSize+fkN32HeaderWords*4); |
406 | } | |
407 | ||
408 | Int_t AliAltroDecoder::CopyBackward(Byte_t* pBuffer, Int_t bufferSize) | |
409 | { | |
410 | // Copy the original 10/40 bit encecoded data of the current channel. | |
411 | // The funtions copies the data to the end of the provided buffer. | |
412 | // @param pBuffer target buffer | |
413 | // @param bufferSize size of target buffer | |
414 | // @return number of copied bytes, neg. error code if failed | |
415 | Int_t iCopy=0; | |
416 | ||
417 | if(fIsDecoded != kTRUE) { | |
418 | AliWarning("buffer has not been decoded, no channel data available"); | |
419 | return 0; | |
420 | } | |
421 | ||
422 | // This method does not need to be the fastest possible implementation | |
423 | // For the sake of stability, there are a lot of consistency checks. | |
424 | ||
425 | // the fOutBufferIndex always points to the next channel, since we are | |
426 | // reading backwards, this is one byte before the start of the current | |
427 | // channel. | |
428 | Int_t currentIndex=fOutBufferIndex+1; | |
429 | if (fNAltro10bitWords>0 && currentIndex < fN40AltroWords*4 ) { | |
430 | ||
431 | // calculate the position in the encoded data, beginning right | |
432 | // after the CDH. 10 -> 8 bit: needs 5/4 times the index | |
433 | Int_t position=(currentIndex*5)/4; | |
434 | if (position*4==currentIndex*5) { | |
435 | // no of 10 bit words is without the fill words to fill complete 40 bit words | |
436 | // in addition, align to complete 40 bit words (the '+3') | |
437 | iCopy=((fNAltro10bitWords+3)/4)*5; | |
438 | ||
439 | // calculate the source pointer in the encoded data | |
440 | // f8DtaPtr was set to the end of the whole data buffer | |
441 | // f32DtaPtr is behind the payload after decoding | |
442 | Byte_t* pSrc=f8DtaPtr-fSize+(fkN32HeaderWords*4)+position; | |
443 | if (pSrc+5<(Byte_t*)f32DtaPtr) { | |
444 | ||
445 | // check the first byte of the source buffer, has to be consistent | |
446 | // with the 8 LSBs of the decoded 10 bit word at the beginning of | |
447 | // the current channel | |
448 | //assert(*pSrc==fOutBuffer[currentIndex]&0xff); | |
449 | if (*pSrc==fOutBuffer[currentIndex]&0xff) { | |
450 | ||
451 | // try to verfify the length of the channel | |
ecc0795d | 452 | UInt_t lenCheck=*(pSrc+iCopy+2)|(*(pSrc+iCopy+3)&0x3)<<8; |
86525f0f | 453 | if (lenCheck==fNAltro10bitWords) { |
454 | ||
455 | // copy including the 40 bit altro trailer | |
456 | iCopy+=5; | |
457 | if (iCopy<=bufferSize) { | |
458 | ||
459 | // copy to the end of the buffer | |
460 | Byte_t* pTgt=pBuffer+bufferSize-iCopy; | |
461 | memcpy(pTgt, pSrc, iCopy); | |
462 | } else { | |
463 | AliError(Form("target buffer too small: available %d, required %d", bufferSize, iCopy)); | |
464 | iCopy=-1; | |
465 | } | |
466 | } else { | |
ecc0795d | 467 | AliWarning(Form("format error: can not reproduce channel length: expected %d, read %d", fNAltro10bitWords, lenCheck)); |
86525f0f | 468 | iCopy=-1; |
469 | } | |
470 | } else { | |
471 | AliError(Form("first byte of encoded data (%#x at %d) does not match decoded word (%#x at %d)", *pSrc, position, fOutBuffer[currentIndex]&0xff, currentIndex)); | |
472 | iCopy=-1; | |
473 | } | |
474 | } else { | |
475 | AliError(Form("buffer size missmatch: payload ends at %p, but current channel pretends to end at %p", f32DtaPtr, pSrc+5)); | |
476 | iCopy=-1; | |
477 | } | |
478 | } else { | |
479 | AliError(Form("current position does not match a byte: currentIndex=%d", currentIndex)); | |
480 | iCopy=-1; | |
481 | } | |
482 | } | |
483 | return iCopy; | |
484 | } | |
485 | ||
486 | Bool_t AliAltroDecoder::GetRCUTrailerData(UChar_t*& data) const | |
487 | { | |
488 | // Provide a pointer to RCU trailer. | |
489 | // The type of the parameter might not be optimal, but the function has | |
490 | // been chosen that way to be similar to the counterpart in | |
491 | // AliAltroRawStream. | |
492 | // @return kTRUE if trailer available; | |
493 | if (!f8DtaPtr) return kFALSE; | |
494 | data=f8DtaPtr-(fSize-(f8PayloadSize+fkN32HeaderWords*sizeof(UInt_t))); | |
495 | assert((UChar_t*)f32DtaPtr == data); | |
496 | return kTRUE; | |
497 | } | |
498 | ||
499 | Int_t AliAltroDecoder::GetRCUTrailerSize() const | |
500 | { | |
501 | // Provide size of RCU trailer. | |
502 | if (!f8DtaPtr) return 0; | |
503 | assert(fSize>(f8PayloadSize+fkN32HeaderWords*sizeof(UInt_t))); | |
504 | return fSize-(f8PayloadSize+fkN32HeaderWords*sizeof(UInt_t)); | |
31a920d3 | 505 | } |