// Copyright (c) 1995-2009 Nokia Corporation and/or its subsidiary(-ies).
// All rights reserved.
// This component and the accompanying materials are made available
// under the terms of the License "Eclipse Public License v1.0"
// which accompanies this distribution, and is available
// at the URL "http://www.eclipse.org/legal/epl-v10.html".
//
// Initial Contributors:
// Nokia Corporation - initial contribution.
//
// Contributors:
//
// Description:
// e32\euser\epoc\x86\uc_exec.cpp
//
//
#include <e32svr.h>
#include <u32exec.h>
/******************************************************************************
* Slow executive calls with preprocessing or extra arguments
******************************************************************************/
EXPORT_C TBool BTrace::Out(TUint32 a0, TUint32 a1, TUint32 a2, TUint32 a3)
{
BTrace::SExecExtension ext;
ext.iA2 = a2;
ext.iA3 = a3;
ext.iPc = (&a0)[-1]; // return address on X86
return Exec::BTraceOut(a0,a1,ext,0);
}
EXPORT_C TBool BTrace::OutX(TUint32 a0, TUint32 a1, TUint32 a2, TUint32 a3)
{
BTrace::SExecExtension ext;
ext.iA2 = a2;
ext.iA3 = a3;
ext.iPc = (&a0)[-1]; // return address on X86
return Exec::BTraceOut(a0,a1,ext,0);
}
EXPORT_C TBool BTrace::OutN(TUint32 a0, TUint32 a1, TUint32 a2, const TAny* aData, TInt aDataSize)
{
BTrace::SExecExtension ext;
ext.iA2 = a2;
ext.iA3 = (TUint32)aData;
ext.iPc = (&a0)[-1]; // return address on X86
return Exec::BTraceOut(a0,a1,ext,aDataSize);
}
EXPORT_C TBool BTrace::OutNX(TUint32 a0, TUint32 a1, TUint32 a2, const TAny* aData, TInt aDataSize)
{
BTrace::SExecExtension ext;
ext.iA2 = a2;
ext.iA3 = (TUint32)aData;
ext.iPc = (&a0)[-1]; // return address on X86
return Exec::BTraceOut(a0,a1,ext,aDataSize);
}
EXPORT_C TBool BTrace::OutBig(TUint32 a0, TUint32 a1, const TAny* aData, TInt aDataSize)
{
BTrace::SExecExtension ext;
ext.iA2 = 0;
ext.iA3 = (TUint32)aData;
ext.iPc = (&a0)[-1]; // return address on X86
if((TUint)aDataSize>8u)
{
if((TUint)aDataSize>KMaxBTraceDataArray+4u)
return Exec::BTraceOutBig(a0,a1,ext,aDataSize);
a0 += 4;
aDataSize -= 4;
ext.iA2 = *((TUint32*&)aData)++;
ext.iA3 = (TUint32)aData;
return Exec::BTraceOut(a0,a1,ext,aDataSize);
}
if((TUint)aDataSize>4u)
ext.iA3 = ((TUint32*)aData)[1];
if(aDataSize)
ext.iA2 = ((TUint32*)aData)[0];
a0 += aDataSize;
aDataSize = 0;
return Exec::BTraceOut(a0,a1,ext,aDataSize);
}
EXPORT_C TBool BTrace::OutFiltered(TUint32 a0, TUint32 a1, TUint32 a2, TUint32 a3)
{
BTrace::SExecExtension ext;
a0 |= EMissingRecord<<BTrace::EFlagsIndex*8; // overload meaning of this flag to indicate filtered trace
ext.iA2 = a2;
ext.iA3 = a3;
ext.iPc = (&a0)[-1]; // return address on X86
return Exec::BTraceOut(a0,a1,ext,0);
}
EXPORT_C TBool BTrace::OutFilteredX(TUint32 a0, TUint32 a1, TUint32 a2, TUint32 a3)
{
BTrace::SExecExtension ext;
a0 |= EMissingRecord<<BTrace::EFlagsIndex*8; // overload meaning of this flag to indicate filtered trace
ext.iA2 = a2;
ext.iA3 = a3;
ext.iPc = (&a0)[-1]; // return address on X86
return Exec::BTraceOut(a0,a1,ext,0);
}
EXPORT_C TBool BTrace::OutFilteredN(TUint32 a0, TUint32 a1, TUint32 a2, const TAny* aData, TInt aDataSize)
{
BTrace::SExecExtension ext;
a0 |= EMissingRecord<<BTrace::EFlagsIndex*8; // overload meaning of this flag to indicate filtered trace
ext.iA2 = a2;
ext.iA3 = (TUint32)aData;
ext.iPc = (&a0)[-1]; // return address on X86
return Exec::BTraceOut(a0,a1,ext,aDataSize);
}
EXPORT_C TBool BTrace::OutFilteredNX(TUint32 a0, TUint32 a1, TUint32 a2, const TAny* aData, TInt aDataSize)
{
BTrace::SExecExtension ext;
a0 |= EMissingRecord<<BTrace::EFlagsIndex*8; // overload meaning of this flag to indicate filtered trace
ext.iA2 = a2;
ext.iA3 = (TUint32)aData;
ext.iPc = (&a0)[-1]; // return address on X86
return Exec::BTraceOut(a0,a1,ext,aDataSize);
}
EXPORT_C TBool BTrace::OutFilteredBig(TUint32 a0, TUint32 a1, const TAny* aData, TInt aDataSize)
{
BTrace::SExecExtension ext;
a0 |= EMissingRecord<<BTrace::EFlagsIndex*8; // overload meaning of this flag to indicate filtered trace
ext.iA2 = 0;
ext.iA3 = (TUint32)aData;
ext.iPc = (&a0)[-1]; // return address on X86
if((TUint)aDataSize>8u)
{
if((TUint)aDataSize>KMaxBTraceDataArray+4u)
return Exec::BTraceOutBig(a0,a1,ext,aDataSize);
a0 += 4;
aDataSize -= 4;
ext.iA2 = *((TUint32*&)aData)++;
ext.iA3 = (TUint32)aData;
return Exec::BTraceOut(a0,a1,ext,aDataSize);
}
if((TUint)aDataSize>4u)
ext.iA3 = ((TUint32*)aData)[1];
if(aDataSize)
ext.iA2 = ((TUint32*)aData)[0];
a0 += aDataSize;
aDataSize = 0;
return Exec::BTraceOut(a0,a1,ext,aDataSize);
}
EXPORT_C TBool BTrace::OutFilteredPcFormatBig(TUint32 aHeader, TUint32 aModuleUid, TUint32 aPc, TUint16 aFormatId, const TAny* aData, TInt aDataSize)
{
BTrace::SExecExtension ext;
aHeader |= EMissingRecord<<BTrace::EFlagsIndex*8; // overload meaning of this flag to indicate filtered trace
ext.iA2 = aFormatId;
ext.iA3 = (TUint32)aData;
ext.iPc = aPc;
if((TUint)aDataSize>KMaxBTraceDataArray)
return Exec::UTraceOut(aHeader,aModuleUid,ext,aDataSize);
aHeader += 4;
return Exec::BTraceOut(aHeader,aModuleUid,ext,aDataSize);
}
/**
Signal this threads request semaphore.
This is similar to RThread::RequestComplete() except that no TRequestStatus object
is modified.
May only be used to signal a thread in the same process as the callers.
@panic KERN-EXEC 46 if the thread is not in the same process as the callers
*/
EXPORT_C void RThread::RequestSignal() const
{
Exec::ThreadRequestSignal(iHandle);
}