// $Id$ /************************************************************************** * This file is property of and copyright by the ALICE HLT Project * * ALICE Experiment at CERN, All rights reserved. * * * * Primary Authors: Matthias Richter * * for The ALICE HLT Project. * * * * Permission to use, copy, modify and distribute this software and its * * documentation strictly for non-commercial purposes is hereby granted * * without fee, provided that the above copyright notice appears in all * * copies and that both the copyright notice and this permission notice * * appear in the supporting documentation. The authors make no claims * * about the suitability of this software for any purpose. It is * * provided "as is" without express or implied warranty. * **************************************************************************/ /** @file testAliRawReader.C @author Matthias Richter @date @brief Test macro/program for the AliRawReaderMemory */ #ifndef __CINT__ #include "TFile.h" #include "TDatime.h" #include "TRandom.h" #include "TArrayI.h" #include "TArrayC.h" #include "TSystem.h" #include "AliRawDataHeader.h" #include "AliRawReaderFile.h" #include "AliRawReaderMemory.h" #include "AliRawHLTManager.h" #include "AliDAQ.h" #include "AliHLTSystem.h" #include #endif //__CINT__ #ifndef __CINT__ const int sizeofAliRawDataHeader=sizeof(AliRawDataHeader); #else // cint does not handle sizeof correctly const int sizeofAliRawDataHeader=32; #endif ///////////////////////////////////////////////////////////////// ///////////////////////////////////////////////////////////////// ///////////////////////////////////////////////////////////////// // // configuration of the test program // const char* tmpdir="/tmp/testAliRawReaderMemory"; bool gbVerbose=false; ///////////////////////////////////////////////////////////////// ///////////////////////////////////////////////////////////////// ///////////////////////////////////////////////////////////////// int GetRandom(int min, int max); int FillRandomDDL(TArrayC& target); int WriteDDL(TArrayC& ddl, int ddlid); int CheckRawReader(AliRawReader* pRawReader, TArrayC* ddls, int* ddlids, int nofDDLs); int CheckRawReaderMemory(TArrayC* ddlArray, int* ddlidArray, int nofDDLs); int CheckRawReaderHLT(AliRawReader* pParent, TArrayC* ddls, int* ddlids, int nofDDLs); int CheckDDL_ReadNext(AliRawReader* pRawReader, TArrayC& ddl, int ddlid); int CheckDDL_ReadNextData(AliRawReader* pRawReader, TArrayC& ddl, int ddlid); int CheckDDL_ReadNextChar(AliRawReader* pRawReader, TArrayC& ddl, int ddlid); int CheckDDL_ReadMixed(AliRawReader* pRawReader, TArrayC& ddl, int ddlid); int testAliRawReaderFile() { int iResult=0; // cleanup old raw folders TString command; command.Form("rm -r %s 2> /dev/null", tmpdir); gSystem->Exec(command); gSystem->mkdir(tmpdir); // variable number of DDLs int nofDDLs=0; do { nofDDLs=GetRandom(2,10); } while (nofDDLs<2); // allocate buffers TArrayC* ddlArray=new TArrayC[nofDDLs]; int* ddlidArray=new int[nofDDLs]; // create DDL ids and content int i=0; do { int detectorId=GetRandom(0,5); ddlidArray[i]=GetRandom(0,AliDAQ::NumberOfDdls(detectorId)-1)+AliDAQ::DdlIDOffset(detectorId); // check for duplicate id int j=0; for (; jNextEvent()) { cerr << "error: getting event from RawReaderFile failed" << endl; return -1; } if ((iResult=CheckRawReader(pRawReader, ddlArray, ddlidArray, nofDDLs))<0) { return iResult; } ///////////////////////////////////////////////////////////////////////////////////////// // check AliRawReaderMemory if ((iResult=CheckRawReaderMemory(ddlArray, ddlidArray, nofDDLs))<0) { return iResult; } ///////////////////////////////////////////////////////////////////////////////////////// // Matthias 2009-01-24 // disable check of RawReaderHLT for the moment due to problems with loeding libHLTrec // from AliRAWHLTManager // if ((iResult=CheckRawReaderHLT(pRawReader, ddlArray, ddlidArray, nofDDLs))<0) { // return iResult; // } delete pRawReader; gSystem->Exec(command); return 0; } Bool_t seedSet=kFALSE; /** * Get a random number in the given range. */ int GetRandom(int min, int max) { if (max-min<2) return min; static TRandom rand; if (!seedSet) { TDatime dt; rand.SetSeed(dt.Get()); seedSet=kTRUE; } return rand.Integer(max-min); } /** * Fill the array with random DDL data. * The function leaves space for the CDH, sets the size member of the * CDH either to the buffer size or 0xffffffff by a random decision. */ int FillRandomDDL(TArrayC& target) { int size=0; do size=GetRandom(100, 10000); while (size<100); target.Set(size); // decide randomly whether to set size of 0xffffffff if (GetRandom(0,40)%4) { *((Int_t*)target.GetArray())=size; } else { *((UInt_t*)target.GetArray())=0xffffffff; } for (int i=sizeofAliRawDataHeader; imkdir(filename); filename.Form("%s/%s_%d.ddl", filename.Data(), AliDAQ::DetectorNameFromDdlID(ddlid, dummy), ddlid); FILE* fp=fopen(filename.Data(), "w"); if (!fp) return -1; fwrite(ddl.GetArray(), 1, ddl.GetSize(), fp); fclose(fp); return 0; } /** * Check the AliRawReaderMemory * * Check consists of 3 steps: * - check with one ddl per cycle: SetMemory/SetEquipmentID method * - check with multiple buffers: AddBuffer method * - check with one ddl as constructor parameter and AddBuffer for the * subsequent ddls * * @return -1 if check failed */ int CheckRawReaderMemory(TArrayC* ddlArray, int* ddlidArray, int nofDDLs) { int iResult=0; int i=0; ///////////////////////////////////////////////////////////////////////////////////////// if (gbVerbose) cout << "checking AliRawReaderMemory ..." << endl; AliRawReaderMemory* pRawReaderMemory=new AliRawReaderMemory; for (i=0; iSetMemory((UChar_t*)ddlArray[i].GetArray(), ddlArray[i].GetSize())) { cerr << "AliRawReaderMemory::SetMemory failed for block " << i << endl; return -1; } pRawReaderMemory->SetEquipmentID(ddlidArray[i]); if (i==0 && !pRawReaderMemory->NextEvent()) { cerr << "error: getting event from RawReaderMemory failed" << endl; return -1; } if ((iResult=CheckRawReader(pRawReaderMemory, ddlArray+i, ddlidArray+i, 1))<0) { return iResult; } } if (pRawReaderMemory->NextEvent()) { cerr << "error: RawReaderMemory::NextEvent returns true, while no more events should be there" << endl; return -1; } #ifndef HAVE_NOT_ALIRAWREADERMEMORY_ADDBUFFER ///////////////////////////////////////////////////////////////////////////////////////// if (gbVerbose) cout << "checking AliRawReaderMemory with multiple buffers ..." << endl; pRawReaderMemory->RewindEvents(); pRawReaderMemory->ClearBuffers(); for (i=0; iAddBuffer((UChar_t*)ddlArray[i].GetArray(), ddlArray[i].GetSize(), ddlidArray[i])) { cerr << "AliRawReaderMemory::AddBuffer failed for block " << i << endl; return -1; } } if (!pRawReaderMemory->NextEvent()) { cerr << "error: getting event from RawReaderMemory failed" << endl; return -1; } if ((iResult=CheckRawReader(pRawReaderMemory, ddlArray, ddlidArray, nofDDLs))<0) { return iResult; } if (pRawReaderMemory->NextEvent()) { cerr << "error: RawReaderMemory::NextEvent returns true, while no more events should be there" << endl; return -1; } delete pRawReaderMemory; pRawReaderMemory=NULL; ///////////////////////////////////////////////////////////////////////////////////////// if (gbVerbose) cout << "checking AliRawReaderMemory constructor ..." << endl; for (i=0; iSetEquipmentID(ddlidArray[i]); } else { cerr << "can not create AliRawReaderMemory with parameters" << endl; return -1; } }else if (!pRawReaderMemory->AddBuffer((UChar_t*)ddlArray[i].GetArray(), ddlArray[i].GetSize(), ddlidArray[i])) { cerr << "AliRawReaderMemory::AddBuffer failed for block " << i << endl; return -1; } } if (!pRawReaderMemory->NextEvent()) { cerr << "error: getting event from RawReaderMemory failed" << endl; return -1; } if ((iResult=CheckRawReader(pRawReaderMemory, ddlArray, ddlidArray, nofDDLs))<0) { return iResult; } if (pRawReaderMemory->NextEvent()) { cerr << "error: RawReaderMemory::NextEvent returns true, while no more events should be there" << endl; return -1; } #endif //HAVE_NOT_ALIRAWREADERMEMORY_ADDBUFFER delete pRawReaderMemory; pRawReaderMemory=NULL; return iResult; } /** * Check the AliRawReaderHLT * * Open the AliRawReaderHLT from the parent reader without any HLTOUT * options, i.e. all requests are just forwarded. * * @return -1 if check failed */ int CheckRawReaderHLT(AliRawReader* pParent, TArrayC* ddls, int* ddlids, int nofDDLs) { if (gbVerbose) cout << "checking AliRawReaderHLT ..." << endl; int iResult=0; pParent->RewindEvents(); pParent->Reset(); TString arg; // Int_t dummy=0; // for (i=0; iNextEvent()) { cerr << "error: getting event from HLT RawReader failed" << endl; return -1; } if ((iResult=CheckRawReader(pRawReaderHLT, ddls, ddlids, nofDDLs))<0) { return iResult; } delete pRawReaderHLT; return iResult; } /** * Check a RawReader, compare with the corresponding simulated data. * The corresponding simulated data is searched from the array via the current * equipment id. The check consists of 4 steps: * - data comparison by ReadNext * - data comparison by ReadNextData * - data comparison by ReadNextChar * - data comparison by mixed reading: ReadNextInt/Short/Char/Data * * @return -1 if failed */ int CheckRawReader(AliRawReader* pRawReader, TArrayC* ddls, int* ddlids, int nofDDLs) { int iResult=0; int count=0; // 1st pass: check AliRawReader::ReadNext() while (pRawReader->ReadHeader()) { int id=pRawReader->GetEquipmentId(); int i=0; for (i=0; iReset(); while (pRawReader->ReadHeader()) { int id=pRawReader->GetEquipmentId(); int i=0; for (i=0; iReset(); while (pRawReader->ReadHeader()) { int i=0; do { int id=pRawReader->GetEquipmentId(); for (i=0; i