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// Copyright (c) 2007-2009 Nokia Corporation and/or its subsidiary(-ies).
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// All rights reserved.
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// This component and the accompanying materials are made available
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// under the terms of the License "Eclipse Public License v1.0"
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// which accompanies this distribution, and is available
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// at the URL "http://www.eclipse.org/legal/epl-v10.html".
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//
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// Initial Contributors:
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// Nokia Corporation - initial contribution.
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//
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// Contributors:
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//
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// Description:
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//
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#include <e32base.h>
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#include <e32base_private.h>
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#include <e32cmn.h>
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#include <e32cmn_private.h>
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#include <e32debug.h>
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#include <e32property.h>
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#include "t_rmdebug_app.h"
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IMPORT_C extern void RMDebug_BranchTst2();
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LOCAL_C void ParseCommandLineL(TInt32& aFunctionType, TUint& aDelay, TUint& aExtraThreads)
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{
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// get the length of the command line arguments
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TInt argc = User::CommandLineLength();
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// allocate a buffer for the command line arguments and extract the data to it
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HBufC* commandLine = HBufC::NewLC(argc);
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TPtr commandLineBuffer = commandLine->Des();
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User::CommandLine(commandLineBuffer);
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// create a lexer and read through the command line
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TLex lex(*commandLine);
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while (!lex.Eos())
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{
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// expecting the first character to be a '-'
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if (lex.Get() == '-')
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{
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TChar arg = lex.Get();
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switch (arg)
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{
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case 'f':
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// the digits following '-f' give the function type
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User::LeaveIfError(lex.Val(aFunctionType));
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break;
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case 'd':
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// the digits following '-d' give the delay
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User::LeaveIfError(lex.Val(aDelay));
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break;
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case 'e':
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// the digits following '-e' give the number of extra threads to launch
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User::LeaveIfError(lex.Val(aExtraThreads));
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break;
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default:
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// unknown argument so leave
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User::Leave(KErrArgument);
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}
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lex.SkipSpace();
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}
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else
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{
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// unknown argument so leave
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User::Leave(KErrArgument);
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}
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}
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// do clean up
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CleanupStack::PopAndDestroy(commandLine);
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}
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typedef void (*TPfun)();
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// test function to call corresponding to EPrefetchAbortFunction
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void PrefetchAbort()
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{
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TPfun f = NULL;
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f();
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}
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// test function to call corresponding to EUserPanicFunction
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void UserPanic()
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{
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User::Panic(KUserPanic, KUserPanicCode);
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}
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// calls self repeatedly until stack is used up. Slightly convoluted to prevent UREL optimising this out...
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TUint32 StackOverFlowFunction(TUint32 aInt=0)
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{
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TUint32 unusedArray[150];
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for(TInt i=0; i<150; i++)
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{
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unusedArray[i] = StackOverFlowFunction(i);
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}
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return unusedArray[0];
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}
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void DataAbort()
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{
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TInt* r = (TInt*) 0x1000;
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*r = 0x42;
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}
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void UndefInstruction()
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{
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TUint32 undef = 0xE6000010;
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TPfun f = (TPfun) &undef;
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f();
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}
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TInt DataRead()
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{
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TInt* r = (TInt*) 0x1000;
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TInt rr = (TInt)*r;
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//include the following line to ensure that rr doesn't get optimised out
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RDebug::Printf("Shouldn't see this being printed out: %d", rr);
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// Stop compilation warning. Should not get here anyway.
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rr++;
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return rr;
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}
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void DataWrite()
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{
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TInt* r = (TInt*) 0x1000;
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*r = 0x42;
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}
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void UserException()
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{
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User::RaiseException(EExcGeneral);
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}
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void SpinForeverWithBreakPoint()
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{
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// finding the process t_rmdebug2/t_rmdebug2_oem/t_rmdebug2_oem2
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// we find the process.SID to attach to the property
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_LIT(KThreadWildCard, "t_rmdebug2*");
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TInt err = KErrNone;
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TUid propertySid = KNullUid;
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TFindThread find(KThreadWildCard);
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TFullName name;
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TBool found = EFalse;
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while(find.Next(name)==KErrNone && !found)
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{
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RThread thread;
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err = thread.Open(find);
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if (err == KErrNone)
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{
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RProcess process;
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thread.Process(process);
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TFullName fullname = thread.FullName();
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//RDebug::Printf("SID Search Match Found Name %lS Process ID%ld Thread Id %ld", &fullname, process.Id().Id(), thread.Id().Id());
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found = ETrue;
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//SID saved so that the property can be attached to
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propertySid = process.SecureId();
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process.Close();
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}
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thread.Close();
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}
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//attach to the property to publish the address of the RMDebug_BranchTst2 with the correct SID value
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RProperty integerProperty;
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err = integerProperty.Attach(propertySid, EMyPropertyInteger, EOwnerThread);
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if(KErrNone != err)
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RDebug::Printf("Error Attach to the property %d", err);
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TInt address = (TInt)&RMDebug_BranchTst2;
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// publish the address where the breakpoint would be set
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err = integerProperty.Set(address);
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if(KErrNone != err)
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RDebug::Printf("Error Set of the property %d", err);
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integerProperty.Close();
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//open semaphore to signal the fact we have reached the point where we have to set the property
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RSemaphore globsem;
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globsem.OpenGlobal(_L("RMDebugGlobSem"));
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globsem.Signal();
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globsem.Close();
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RProcess thisProcess;
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TFileName thisProcessName = thisProcess.FileName();
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RDebug::Printf("App Process Name %lS process id %ld thread id %ld", &thisProcessName, thisProcess.Id().Id(), RThread().Id().Id());
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TInt i=0;
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RThread::Rendezvous(KErrNone);
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while(i<0xffffffff)
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{
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RMDebug_BranchTst2();
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User::After(10000);
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}
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}
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void SpinForever()
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{
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TInt i=0;
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RThread::Rendezvous(KErrNone);
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while(i<0xffffffff)
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{
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User::After(10000);
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}
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}
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void LaunchThreads(TUint aNumber)
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{
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_LIT(KDebugThreadName, "DebugThread");
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const TUint KDebugThreadDefaultHeapSize=0x10000;
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for(TInt i=0; i<aNumber; i++)
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{
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RThread thread;
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RBuf threadName;
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threadName.Create(KDebugThreadName().Length()+10); // the 10 is for appending i to the end of the name
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threadName.Append(KDebugThreadName());
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threadName.AppendNum(i);
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TInt err = thread.Create(threadName, (TThreadFunction)SpinForever, KDefaultStackSize, KDebugThreadDefaultHeapSize, KDebugThreadDefaultHeapSize, NULL);
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if(err != KErrNone)
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{
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RDebug::Printf("Couldn't create thread %d", err);
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threadName.Close();
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thread.Close();
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break;
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}
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thread.SetPriority(EPriorityNormal);
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TRequestStatus status;
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thread.Rendezvous(status);
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thread.Resume();
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User::WaitForRequest(status);
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thread.Close();
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threadName.Close();
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}
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}
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void WaitFiveSecondsThenExit(void)
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{
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// wait for 5 seconds
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User::After(5000000);
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}
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// call the function corresponding to aFunctionType
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LOCAL_C void CallFunction(TDebugFunctionType aFunctionType, TUint aDelay, TUint aExtraThreads)
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{
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// pause for aDelay microseconds
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User::After(aDelay);
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// launch the extra threads
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LaunchThreads(aExtraThreads);
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// call appropriate function
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switch( aFunctionType )
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{
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case EPrefetchAbortFunction:
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PrefetchAbort();
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break;
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case EUserPanicFunction:
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UserPanic();
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break;
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case EStackOverflowFunction:
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StackOverFlowFunction();
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break;
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case EDataAbortFunction:
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DataAbort();
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break;
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case EUndefInstructionFunction:
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UndefInstruction();
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break;
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case EDataReadErrorFunction:
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DataRead();
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break;
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case EDataWriteErrorFunction:
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DataWrite();
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break;
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case EUserExceptionFunction:
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UserException();
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break;
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case EWaitFiveSecondsThenExit:
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WaitFiveSecondsThenExit();
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break;
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case ESpinForever:
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SpinForever();
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break;
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case ESpinForeverWithBreakPoint:
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SpinForeverWithBreakPoint();
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break;
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case EDefaultDebugFunction:
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default:
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break;
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}
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}
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void PrintHelp()
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{
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RDebug::Printf("Invoke with arguments:\n");
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RDebug::Printf("\t-d<delay>\n\t: delay in microseconds before calling target function\n");
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RDebug::Printf("\t-f<function-number>\n\t: enumerator from TDebugFunctionType representing function to call\n");
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RDebug::Printf("\t-e<number>\n\t: number of extra threads to launch, these threads run endlessly\n");
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}
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TInt E32Main()
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{
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// setup heap checking and clean up trap
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__UHEAP_MARK;
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CTrapCleanup* cleanup=CTrapCleanup::New();
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RThread().SetPriority(EPriorityNormal);
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RProcess::Rendezvous(KErrNone);
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// read arguments from command line
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TUint delay = 0;
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TInt32 functionTypeAsTInt32 = (TInt32)EDefaultDebugFunction;
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TUint extraThreads = 0;
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TRAPD(err, ParseCommandLineL(functionTypeAsTInt32, delay, extraThreads));
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if(KErrNone == err)
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{
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// if the command line arguments were successfully read then call the appropriate function
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CallFunction((TDebugFunctionType)functionTypeAsTInt32, delay, extraThreads);
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}
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// perform clean up and return any error which was recorded
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delete cleanup;
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__UHEAP_MARKEND;
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return err;
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}
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