kernel/eka/memmodel/epoc/multiple/minit.cpp
author Slion
Tue, 08 Dec 2009 08:11:42 +0100
branchanywhere
changeset 19 f6d3d9676ee4
parent 0 a41df078684a
child 62 4a8fed1c0ef6
permissions -rw-r--r--
Trying to figure out how to implement my WINC like compatibility layer. Going the emulation way is probably not so smart. We should not use the kernel but rather hook native functions in the Exec calls.

// Copyright (c) 1996-2009 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\memmodel\epoc\multiple\minit.cpp
// 
//

#include "memmodel.h"
#include "cache_maintenance.h"

_LIT(KLitSvStack,"SvStack");

const TInt KMaxThreads=1024;

void M::Init1()
	{
	// Memory model dependent CPU stuff
	MM::Init1();

	// Set up cache info
	CacheMaintenance::Init1();

	// First phase MMU initialisation
	Mmu& m=Mmu::Get();
	m.Init1();
	}

void M::Init2()
	{
	// Second phase MMU initialisation
	Mmu& m=Mmu::Get();
	m.Init2();
	}

void M::Init3()
	{
	// Third phase MMU initialisation
	Mmu& m=Mmu::Get();
	m.Init3();
	}

TInt M::InitSvHeapChunk(DChunk* aChunk, TInt aSize)
	{
	TInt r;
	TLinAddr base = TheRomHeader().iKernDataAddress;
	DMemModelChunk* pC = (DMemModelChunk*)aChunk;
	K::HeapInfo.iChunk = aChunk;
	K::HeapInfo.iBase = (TUint8*)base;
	K::HeapInfo.iMaxSize = pC->MaxSize();
	pC->SetFixedAddress(base, aSize);
	__KTRACE_OPT(KBOOT,Kern::Printf("Created SvHeap chunk, addr %08X, init size %08X max size %08X",pC->Base(),aSize,pC->MaxSize()));
	TLinAddr dataSectionBase=0;
	r=((DMemModelProcess*)K::TheKernelProcess)->AddChunk(pC,dataSectionBase,EFalse);
 	__KTRACE_OPT(KBOOT,Kern::Printf("Added kernel heap chunk to current process, %d",r));
	return r;
	}

TInt M::InitSvStackChunk()
	{
	// create a chunk to hold supervisor-mode stacks
	Mmu& m=Mmu::Get();
	TInt alias_space=m.iAliasSize+m.iPageSize;
	TInt total=alias_space+K::SupervisorThreadStackSize+PP::SupervisorThreadStackGuard;
	total=(total+m.iAliasMask)&~m.iAliasMask;
	DMemModelChunk* pC=NULL;
	DMemModelProcess* pP=(DMemModelProcess*)K::TheKernelProcess;
	TInt maxsize=total*KMaxThreads;
	TLinAddr dataSectionBase=0;
	SChunkCreateInfo cinfo;
	cinfo.iGlobal=EFalse;
	cinfo.iAtt=TChunkCreate::EDisconnected;
	cinfo.iForceFixed=EFalse;
	cinfo.iOperations=0;
	cinfo.iType=EKernelStack;
	cinfo.iMaxSize=maxsize;
	cinfo.iPreallocated=0;
	cinfo.iName.Set(KLitSvStack);
	cinfo.iOwner=K::TheKernelProcess;
	TInt r=pP->NewChunk((DChunk*&)pC,cinfo,dataSectionBase);
	__KTRACE_OPT(KBOOT,Kern::Printf("Created SvStack, %d",r));
	if (r!=KErrNone)
		return r;
	r=pC->Reserve(0);
	if (r!=KErrNone)
		return r;
	__KTRACE_OPT(KBOOT,Kern::Printf("Created SvStack chunk, addr %08X, max size %08X",pC->Base(),maxsize));
	MM::SvStackChunk=pC;
	r=pP->AddChunk(pC,dataSectionBase,EFalse);
 	__KTRACE_OPT(KBOOT,Kern::Printf("Added SvStack chunk to current process, %d",r));
	return r;
	}