os/kernelhwsrv/kernel/eka/nkern/x86/ncthrd.cpp
author sl
Tue, 10 Jun 2014 14:32:02 +0200
changeset 1 260cb5ec6c19
permissions -rw-r--r--
Update contrib.
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// Copyright (c) 1994-2009 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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// e32\nkern\x86\ncthrd.cpp
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// 
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//
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#include <x86.h>
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// Called by a thread when it first runs
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void __StartThread();
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void __DoForcedExit();
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void NThreadBase::OnKill()
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	{
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	}
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void NThreadBase::OnExit()
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	{
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	}
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void NThreadBase::SetEntry(NThreadFunction aFunc)
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	{
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	SThreadStack* stack=(SThreadStack*)iSavedSP;
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	stack->iEdi=(TUint32)aFunc;
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	}
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TInt NThread::Create(SNThreadCreateInfo& anInfo, TBool aInitial)
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	{
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	if (!anInfo.iStackBase || anInfo.iStackSize<0x100)
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		return KErrArgument;
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	TInt r=NThreadBase::Create(anInfo,aInitial);
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	if (r!=KErrNone)
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		return r;
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	if (!aInitial)
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		{
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		TUint32* sp=(TUint32*)(iStackBase+iStackSize-anInfo.iParameterBlockSize);
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		TUint32 esi=(TUint32)anInfo.iParameterBlock;
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		if (anInfo.iParameterBlockSize)
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			{
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			wordmove(sp,anInfo.iParameterBlock,anInfo.iParameterBlockSize);
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			esi=(TUint32)sp;
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			}
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		SThreadStack* stack=((SThreadStack*)sp)-1;
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		stack->iCR0=X86::DefaultCR0 | KX86CR0_TS;
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		stack->iEbx=0;
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		stack->iEsi=esi;					// parameter block pointer
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		stack->iEdi=(TUint32)anInfo.iFunction;
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		stack->iEbp=0;
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		stack->iGs=KRing0DS;
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		stack->iFs=0;
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		stack->iReschedFlag=1;
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		stack->iEip=(TUint32)__StartThread;
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		iSavedSP=(TLinAddr)stack;
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		wordmove(&iCoprocessorState, DefaultCoprocessorState, sizeof(iCoprocessorState));
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		}
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	else
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		{
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#ifdef MONITOR_THREAD_CPU_TIME
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		iLastStartTime = NKern::FastCounter();
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#endif
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		NKern::EnableAllInterrupts();
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		}
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#ifdef BTRACE_THREAD_IDENTIFICATION
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	BTrace4(BTrace::EThreadIdentification,BTrace::ENanoThreadCreate,this);
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#endif
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	return KErrNone;
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	}
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void NThreadBase::ForceExit()
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	{
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	SThreadStack* stack=(SThreadStack*)iSavedSP;
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	stack->iEip=(TUint32)__DoForcedExit;
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	}
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void DumpExcInfo(TX86ExcInfo& a)
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	{
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	DEBUGPRINT("Exc %02x EFLAGS=%08x FAR=%08x ErrCode=%08x",a.iExcId,a.iEflags,a.iFaultAddress,a.iExcErrorCode);
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	DEBUGPRINT("EAX=%08x EBX=%08x ECX=%08x EDX=%08x",a.iEax,a.iEbx,a.iEcx,a.iEdx);
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	DEBUGPRINT("ESP=%08x EBP=%08x ESI=%08x EDI=%08x",a.iEsp,a.iEbp,a.iEsi,a.iEdi);
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	DEBUGPRINT(" CS=%08x EIP=%08x  DS=%08x  SS=%08x",a.iCs,a.iEip,a.iDs,a.iSs);
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	DEBUGPRINT(" ES=%08x  FS=%08x  GS=%08x",a.iEs,a.iFs,a.iGs);
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	if (a.iCs&3)
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		{
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		DEBUGPRINT("SS3=%08x ESP3=%08x",a.iSs3,a.iEsp3);
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		}
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	DEBUGPRINT("Thread %T, KernCSLocked=%d, IrqNest=%d",TheScheduler.iCurrentThread,TheScheduler.iKernCSLocked,X86_IrqNestCount);
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	}
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EXPORT_C void NKern::ThreadGetUserContext(NThread* aThread, TAny* aContext, TUint32& aAvailMask)
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	{
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	CHECK_PRECONDITIONS(MASK_INTERRUPTS_ENABLED|MASK_NOT_ISR|MASK_NOT_IDFC, "NKern::ThreadGetUserContext");
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	TUint32* sp;
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	TUint32* stackTop;
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	TX86RegSet* regSet = (TX86RegSet*)aContext;
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	TInt delta;
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	NKern::Lock();
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	NThread* currentThread = NCurrentThread();
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	DEBUGPRINT(" NCurrentThread()=0x%x, aThread=0x%x", currentThread, aThread);
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	switch (NKern::CurrentContext())
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		{
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		case NKern::EThread: DEBUGPRINT(" CurrentContext=NKern::EThread"); break;
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		case NKern::EIDFC: DEBUGPRINT(" CurrentContext=NKern::EIDFC"); break;
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		case NKern::EInterrupt: DEBUGPRINT(" CurrentContext=NKern::EInterrupt"); break;
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		default: DEBUGPRINT(" CurrentContext= Unknown"); break;
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		}
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	DEBUGPRINT(" Attributes (iSpare2)=0x%x", aThread->iSpare2);
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	DEBUGPRINT(" iExtraContext=0x%x, iExtraContextSize=0x%x", aThread->iExtraContext, aThread->iExtraContextSize);
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	DEBUGPRINT(" iSuspendCount=%d", aThread->iSuspendCount);
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	DEBUGPRINT(" X86_IrqStack=%x", X86_IrqStack);
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	TBool isCurrentThread = (currentThread == aThread);
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	sp = (TUint32*)aThread->iSavedSP;
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	stackTop = (TUint32*)((TUint32)aThread->iStackBase+(TUint32)aThread->iStackSize);
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	delta = stackTop - sp;	// number of words on the supervisor stack
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	DEBUGPRINT(" Stack Top=iStackBase+iStackSize=0x%x iSavedSP=0x%x, delta=0x%x", stackTop, sp, delta);
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	DEBUGPRINT(" iUserContextType (iSpare3)=0x%x", aThread->iSpare3);
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	DEBUGPRINT(" NThreadState:");
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	switch(aThread->iSpare1)
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		{
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		case NThreadBase::EReady:
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			DEBUGPRINT(" EReady");
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			break;
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		case NThreadBase::ESuspended:
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			DEBUGPRINT(" ESuspended");
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			break;
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		case NThreadBase::EWaitFastSemaphore:
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			DEBUGPRINT(" EWaitFastSemaphore");
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			break;
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		case NThreadBase::ESleep:
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			DEBUGPRINT(" ESleep");
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			break;
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		case NThreadBase::EBlocked:
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			DEBUGPRINT(" EBlocked");
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			break;
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		case NThreadBase::EDead:
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			DEBUGPRINT(" EDead");
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			break;
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		case NThreadBase::EWaitDfc:
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			DEBUGPRINT(" EWaitDfc");
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			break;
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		default:
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			DEBUGPRINT(" *Unknown");
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		}
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	if (aAvailMask)
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		{
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		DEBUGPRINT(" Setting Stack-Saved Registers");
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		// Hack while ThreadSetUserContext is not implemented
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		if (0 == aThread->iSpare3)
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			{
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			// Context when interrupted by user
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			if (aAvailMask & 1<<13)
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				stackTop[-1] = regSet->iSs;
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			if (aAvailMask & 1<<4)
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				stackTop[-2] = regSet->iEsp;
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			if (aAvailMask & 1<<14)
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				{
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				DEBUGPRINT(" Setting EFLAGS to %x", regSet->iEflags);
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				stackTop[-3] = regSet->iEflags;
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				}
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			if (aAvailMask & 1<<8)
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				stackTop[-4] = regSet->iCs;
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			if (aAvailMask & 1<<15)
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				stackTop[-5] = regSet->iEip;
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			if (aAvailMask & 1<<9)
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				stackTop[-8] = regSet->iDs;
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			if (aAvailMask & 1<<0)
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				stackTop[-9] = regSet->iEax;
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			if (aAvailMask & 1<<2)
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				stackTop[-10] = regSet->iEcx;
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			if (aAvailMask & 1<<5)
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				stackTop[-16] = regSet->iEbp;
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			if (aAvailMask & 1<<7)
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				stackTop[-17] = regSet->iEdi;
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			if (aAvailMask & 1<<6)
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				stackTop[-18] = regSet->iEsi;
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			}
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		else
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			{
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			if (aAvailMask & 1<<13)
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				stackTop[-1] = regSet->iSs;
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			if (aAvailMask & 1<<4)
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				stackTop[-2] = regSet->iEsp;
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			if (aAvailMask & 1<<14)
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				{
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				stackTop[-3] = regSet->iEflags;
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				DEBUGPRINT(" Setting EFLAGS to %x", regSet->iEflags);
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				}
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			if (aAvailMask & 1<<8)
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				stackTop[-4] = regSet->iCs;
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			if (aAvailMask & 1<<15)
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				stackTop[-5] = regSet->iEip;
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			/* -6 and -7 are not used since they are the vector number and the error code,
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			 * which are 3 and 0 resp. for breakpoints.
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			 */
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			/* The following are from the push instructions in __X86VectorExc */
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			if (aAvailMask & 1<<9)
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				stackTop[-8] = regSet->iDs;
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			if (aAvailMask & 1<<10)
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				stackTop[-9] = regSet->iEs;
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			if (aAvailMask & 1<<11)
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				stackTop[-10] = regSet->iFs;
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			if (aAvailMask & 1<<12)
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				stackTop[-11] = regSet->iGs;
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			if (aAvailMask & 1<<5)
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				stackTop[-12] = regSet->iEbp;
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			if (aAvailMask & 1<<7)
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				stackTop[-13] = regSet->iEdi;
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			if (aAvailMask & 1<<6)
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				stackTop[-14] = regSet->iEsi;
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			if (aAvailMask & 1<<1)
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				stackTop[-15] = regSet->iEbx;
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			if (aAvailMask & 1<<2)
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				stackTop[-16] = regSet->iEcx;
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			if (aAvailMask & 1<<3)
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				stackTop[-17] = regSet->iEdx;
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			if (aAvailMask & 1<<0)
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				stackTop[-18] = regSet->iEax;
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			}
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		DEBUGPRINT("stack from stack top, after changes " );
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		if (delta < 128)
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			{
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			delta = -delta;
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			}
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		else
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			{
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			delta = -128;
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			}
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		for ( ; delta < 0; delta++)
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			{
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			DEBUGPRINT("stackTop[%d]=%x", delta, stackTop[delta]);
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			}
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		}
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	else
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		{
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 		memclr(aContext, sizeof(TX86RegSet));
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		if (isCurrentThread)
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			{
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			// Not yet supported
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			DEBUGPRINT(" NThread::GetContext() : Don't know how to obtain context for current thread\n Use TSS?");
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			}
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		else
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			{
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			DEBUGPRINT("stack from stack top " );
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			if (delta < 128)
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				{
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				delta = -delta;
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				}
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			else
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				{
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				delta = -128;
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				}
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			for( ; delta < 0; delta++)
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				{
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				DEBUGPRINT("stackTop[%d]=%x", delta, stackTop[delta]);
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				}
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			if (0 == aThread->iSpare3)
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				{
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				// Context when interrupted by user
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				regSet->iSs		= stackTop[-1];
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				aAvailMask |= 1<<13;
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				regSet->iEsp	= stackTop[-2];
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				aAvailMask |= 1<<4;
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				regSet->iEflags = stackTop[-3];
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				aAvailMask |= 1<<14;
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				regSet->iCs		= stackTop[-4];
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				aAvailMask |= 1<<8;
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				regSet->iEip	= stackTop[-5];
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				aAvailMask |= 1<<15;
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				regSet->iDs		= stackTop[-8];
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				aAvailMask |= 1<<9;
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				regSet->iEax	= stackTop[-9];
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				aAvailMask |= 1<<0;
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				regSet->iEcx	= stackTop[-10];
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				aAvailMask |= 1<<2;
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				regSet->iEbp	= stackTop[-16];
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				aAvailMask |= 1<<5;
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				regSet->iEdi	= stackTop[-17];
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				aAvailMask |= 1<<7;
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				regSet->iEsi	= stackTop[-18];
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				aAvailMask |= 1<<6;
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				}
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			else
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				{
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				// Now populate the TX86RegSet with the contents of the stack
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				/*
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				 * The first 5 are from the comments at the start of __X86VectorExc :
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				 * [ESP+0] = vector number
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				 * [ESP+4] = error code (filled with 0 for exceptions without error codes)
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				 * [ESP+8] = return EIP
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				 * [ESP+12] = return CS
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				 * [ESP+16] = return EFLAGS
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				 * [ESP+20] = return ESP if privilege change occurred
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				 * [ESP+24] = return SS if privilege change occurred
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				 */
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				regSet->iSs		= stackTop[-1];
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				aAvailMask |= 1<<13;
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				regSet->iEsp	= stackTop[-2];
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				aAvailMask |= 1<<4;
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				regSet->iEflags = stackTop[-3];
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				aAvailMask |= 1<<14;
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				regSet->iCs		= stackTop[-4];
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				aAvailMask |= 1<<8;
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				regSet->iEip	= stackTop[-5];
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				aAvailMask |= 1<<15;
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				/* -6 and -7 are not used since they are the vector number and the error code,
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				 * which for a breakpoint are 3 and 0 resp.
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				 */
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				/* The following are from the push instructions in __X86VectorExc */
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				regSet->iDs		= stackTop[-8];
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				aAvailMask |= 1<<9;
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				regSet->iEs		= stackTop[-9];
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				aAvailMask |= 1<<10;
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				regSet->iFs		= stackTop[-10];
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				aAvailMask |= 1<<11;
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				regSet->iGs		= stackTop[-11];
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				aAvailMask |= 1<<12;
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				regSet->iEbp	= stackTop[-12];
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				aAvailMask |= 1<<5;
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				regSet->iEdi	= stackTop[-13];
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				aAvailMask |= 1<<7;
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				regSet->iEsi	= stackTop[-14];
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				aAvailMask |= 1<<6;
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				regSet->iEbx	= stackTop[-15];
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				aAvailMask |= 1<<1;
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   409
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				regSet->iEcx	= stackTop[-16];
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				aAvailMask |= 1<<2;
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   412
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   413
				regSet->iEdx	= stackTop[-17];
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				aAvailMask |= 1<<3;
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   415
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				regSet->iEax = stackTop[-18];
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				aAvailMask |= 1<<0;
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   418
				} // else if (0 == aThread->iSpare3)
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   419
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   420
			} // else if (isCurrentThread)
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   421
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   422
		} // else if (aAvailMask)
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   423
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   424
	NKern::Unlock();
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   425
	}
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   426
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   427
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   428
void NKern::ThreadModifyUsp(NThread* aThread, TLinAddr aUsp)
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   429
	{
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   430
	}