author | hgs |
Fri, 23 Apr 2010 21:54:44 +0100 | |
changeset 119 | 6e99f362aa46 |
parent 90 | 947f0dc9f7a8 |
child 134 | 95847726fe57 |
permissions | -rw-r--r-- |
0 | 1 |
// Copyright (c) 1995-2009 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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// f32\sfile\sf_main.cpp |
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// |
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// |
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#include "sf_std.h" |
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#include "sf_plugin.h" |
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#include "sf_file_cache.h" // for TClosedFileUtils |
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#include "sf_memory_man.h" |
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#ifdef __WINS__ |
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#include <emulator.h> |
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#include <e32wins.h> |
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#endif |
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#include "d32btrace.h" |
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||
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// define this macro to enable tracing very early on in the boot sequence |
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//#define __ENABLE_TRACE__ |
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||
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#ifdef __EPOC32__ |
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_LIT(KStartupExeSysBinName,"Z:\\Sys\\Bin\\ESTART.EXE"); |
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#else |
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_LIT(KStartupExeName,"E32STRT.EXE"); |
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_LIT(KStartupExeSysBinName,"E32STRT.EXE"); |
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#endif |
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||
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//const TInt KSessionNotifyListGranularity=16; //-- not used anywhere |
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||
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// patch ldds should specify this as their third uid |
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//const TInt KPatchLddUidValue=0x100000cc; //-- not used anywhere |
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||
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_LIT(KFileServerName,"!FileServer"); |
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||
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void CServerFs::New() |
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// |
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// Create a new CServerFs. |
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// |
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{ |
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TheFileServer=new CServerFs(EPriority); |
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__ASSERT_ALWAYS(TheFileServer!=NULL,Fault(EMainCreateServer)); |
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TInt r = TheFileServer->iSessionQueueLock.CreateLocal(); |
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__ASSERT_ALWAYS(r==KErrNone,Fault(EMainCreateServer)); |
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r=TheFileServer->Start(KFileServerName); |
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__ASSERT_ALWAYS(r==KErrNone,Fault(EMainStartServer)); |
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} |
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CServerFs::CServerFs(TInt aPriority) |
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// |
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//Constructor. |
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// |
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: CServer2(aPriority,EGlobalSharableSessions) |
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{ |
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} |
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CServerFs::~CServerFs() |
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// |
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//Destructor. |
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// |
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{ |
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iSessionQueueLock.Close(); |
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} |
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||
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void CServerFs::RunL() |
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// |
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// calls CServer2::RunL |
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// |
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{ |
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TInt fn = Message().Function(); |
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||
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// CServer2::DoConnectL() manipulates iSessionQ & so does CSession2::~CSession2(). |
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// Unfortunately the session is deleted from a seperate thread (the disconnect |
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// thread) so we need a lock to protect it. |
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if (fn == RMessage2::EConnect) |
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{ |
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SessionQueueLockWait(); // lock |
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CServer2::RunL(); |
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SessionQueueLockSignal(); // unlock |
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} |
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else |
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{ |
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CServer2::RunL(); |
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} |
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} |
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CSessionFs* CServerFs::operator[](TInt anIndex) |
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// |
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// Indexing operator used by DoFsListOpenFiles |
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// |
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{ |
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__ASSERT_DEBUG(anIndex>=0,Fault(ESvrBadSessionIndex)); |
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iSessionIter.SetToFirst(); |
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while (anIndex--) |
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iSessionIter++; |
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CSessionFs* ses=(CSessionFs*)&(*iSessionIter); |
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return(ses); |
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} |
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_LIT(KPrivatePath,"?:\\Private\\"); |
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CSession2* CServerFs::NewSessionL(const TVersion& aVersion,const RMessage2& aMessage) const |
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// |
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// Create a new client session for this server. |
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// |
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{ |
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TVersion v(KF32MajorVersionNumber,KF32MinorVersionNumber,KF32BuildVersionNumber); |
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TBool r=User::QueryVersionSupported(v,aVersion); |
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if (!r) |
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User::Leave(KErrNotSupported); |
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__CALL(if(UserHeapAllocFailCount>=0){__UHEAP_FAILNEXT(10);}); // Create session must succeed |
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CSessionFs* ses=CSessionFs::NewL(); |
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CleanupStack::PushL(ses); |
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TUid aUid = aMessage.SecureId(); |
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TBuf<30> thePath = KPrivatePath(); |
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thePath[0] = (TUint8) RFs::GetSystemDriveChar(); |
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thePath.AppendNumFixedWidth(aUid.iUid, EHex, 8); |
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thePath.Append(KSlash); |
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HBufC* pP=thePath.AllocL(); |
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ses->SetPath(pP); |
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__CALL(if (UserHeapAllocFailCount>=0){__UHEAP_FAILNEXT(UserHeapAllocFailCount);}); |
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RThread idClient; |
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User::LeaveIfError(aMessage.Client(idClient, EOwnerThread)); |
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ses->SetThreadId(idClient.Id()); |
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idClient.Close(); |
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CleanupStack::Pop(); //ses |
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return(ses); |
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} |
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void CSessionFs::ServiceL(const RMessage2& aMessage) |
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// |
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// Service this message for the server |
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// |
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{ |
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__CALL( if (SimulateError(&aMessage)) { aMessage.Complete(ErrorCondition); return; } ); |
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const TInt ipcFunction = aMessage.Function() & KIpcFunctionMask; |
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||
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if((ipcFunction) >= EMaxClientOperations) |
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{ |
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__THRD_PRINT1(_L("CSessionFs::DoServiceL() - func 0x%x KErrNotSupported"), ipcFunction); |
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aMessage.Complete(KErrNotSupported); |
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return; |
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} |
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const TOperation& oP = OperationArray[ipcFunction]; |
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CFsClientMessageRequest* pR = NULL; |
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TInt r = RequestAllocator::GetMessageRequest(oP, aMessage, pR); |
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if(r != KErrNone) |
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{ |
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if(r == KErrBadHandle) |
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{ |
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_LIT(KPanic,"Panic"); |
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aMessage.Panic(KPanic, r); |
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return; |
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} |
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aMessage.Complete(r); |
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return; |
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} |
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pR->Set(aMessage, oP, this); |
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__PRINT4TEMP(_L("***** Received Message sess %08x req %08x func 0x%x - %S"), this, pR, ipcFunction, GetFunctionName(ipcFunction)); |
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pR->Dispatch(); |
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} |
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||
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void CActiveSchedulerFs::New() |
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// |
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// Create and install the active scheduler. |
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// |
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{ |
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CActiveSchedulerFs* pA=new CActiveSchedulerFs; |
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__ASSERT_ALWAYS(pA!=NULL,Fault(EMainCreateScheduler)); |
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CActiveScheduler::Install(pA); |
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} |
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void CActiveSchedulerFs::Error(TInt anError) const |
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// |
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// Called if any Run() method leaves, which should never happen. |
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// |
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{ |
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__PRINT1(_L("FileSystemActiveScheduler Error %d"),anError); |
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User::Panic(_L("FSRV-ERR"),anError); |
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} |
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void createAllL() |
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// |
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// Create the initial objects |
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// |
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{ |
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// |
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// First we need to create all the containers. |
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// |
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TheContainer=CFsObjectConIx::NewL(); |
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FileSystems=TheContainer->CreateL(); |
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Extensions=TheContainer->CreateL(); |
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ProxyDrives=TheContainer->CreateL(); |
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Files=TheContainer->CreateL(); |
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FileShares=TheContainer->CreateL(); |
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Dirs=TheContainer->CreateL(); |
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Formats=TheContainer->CreateL(); |
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RawDisks=TheContainer->CreateL(); |
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TClosedFileUtils::InitL(); |
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// |
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// Initialize the drives |
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// |
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for (TInt i=0;i<KMaxDrives;i++) |
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TheDrives[i].CreateL(i); |
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// |
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// Next we need to create the ROM file system. |
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// |
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#if defined(__EPOC32__) |
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InstallRomFileSystemL(); |
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CFileSystem* romFs=GetFileSystem(_L("Rom")); |
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//#ifndef __DATA_CAGING__ |
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TheDefaultPath=_L("Z:\\"); // Temporarily set the default path to the ROM |
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//#endif |
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TheDrives[EDriveZ].SetAtt(KDriveAttRom|KDriveAttInternal); |
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TheDrives[EDriveZ].GetFSys()=romFs; |
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TInt r=FsThreadManager::InitDrive(EDriveZ,ETrue); |
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User::LeaveIfError(r); |
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#endif |
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} |
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TInt InitializeLocalFileSystem(const TDesC& aName) |
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// |
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// Initialize the local file system |
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// |
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{ |
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__PRINT(_L("InitializeLocalFileSystem")); |
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CFileSystem* localFileSystem=GetFileSystem(aName); |
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__ASSERT_DEBUG(localFileSystem!=NULL,Fault(EMainGetLocalFileSystem)); |
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if(localFileSystem == NULL) |
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return KErrNotFound; |
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#if defined(__WINS__) |
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TheDrives[EDriveZ].GetFSys()=localFileSystem; |
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TheDrives[EDriveZ].SetAtt(KDriveAttRom|KDriveAttInternal); |
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TInt r=FsThreadManager::InitDrive(EDriveZ,ETrue); |
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__ASSERT_ALWAYS(r==KErrNone,Fault(EMainInitialiseRomFs)); |
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#endif |
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// |
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// Initialize the default path |
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// |
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//#ifndef __DATA_CAGING__ |
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#if !defined(__WINS__) |
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TInt r; |
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#endif |
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r=localFileSystem->DefaultPath(TheDefaultPath); |
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__ASSERT_ALWAYS(r==KErrNone,Fault(EMainGetLocalDefaultPath)); |
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//#endif |
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LocalFileSystemInitialized=ETrue; |
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return KErrNone; |
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} |
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_LIT(KMediaLddName, "ELOCD"); |
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TInt StartupThread(TAny*) |
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// |
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// The startup thread. |
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// |
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{ |
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__PRINT(_L("StartupThread")); |
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User::SetCritical(User::ESystemCritical); |
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TInt r; |
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#ifdef SYMBIAN_FTRACE_ENABLE |
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r = User::LoadLogicalDevice(_L("D_FTRACE")); |
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__PRINT1(_L("User::LoadLogicalDevice(D_FTRACE) returns %d"),r); |
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__ASSERT_ALWAYS(r==KErrNone || r==KErrAlreadyExists,Fault(ETraceLddLoadFailure)); |
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r = TheFtrace.Open(EOwnerProcess); |
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__ASSERT_ALWAYS(r==KErrNone || r==KErrAlreadyExists,Fault(ETraceLddLoadFailure)); |
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#endif |
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#if defined (__ENABLE_TRACE__) |
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{ |
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RBTrace trace; |
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trace.Open(); |
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// trace.SetMode(RBTrace::EEnable + RBTrace::EFreeRunning); |
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trace.SetFilter(BTrace::EThreadIdentification,1); |
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trace.SetFilter(UTF::EBorder,1); |
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trace.SetFilter(UTF::EError,1); |
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trace.SetFilter2(EF32TraceUidEfsrv,1); |
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// trace.SetFilter2(EF32TraceUidFileSys,1); |
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// trace.SetFilter2(EF32TraceUidProxyDrive,1); |
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trace.Close(); |
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} |
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#endif |
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// |
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// Load the file system's device driver |
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// |
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r=User::LoadLogicalDevice(KMediaLddName); |
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__PRINT1(_L("User::LoadLogicalDevice(KMediaLddName) returns %d"),r); |
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__ASSERT_ALWAYS(r==KErrNone || r==KErrAlreadyExists || r==KErrNotFound,Fault(EMainCreateResources6)); |
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#ifdef __WINS__ |
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// Load media drivers using Win32 functions. It is not possible to directly |
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// read the \epoc32\release\wins\udeb directory, and ELOCAL must be mounted |
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// to access Win32 anyway. |
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_LIT(KMDW1, "MED*.PDD"); |
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TBuf<9> KMDW(KMDW1); // reserve space for \0 |
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TFileName *pfn = new TFileName; |
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__ASSERT_ALWAYS(pfn != NULL, Fault(EMainScanMediaDriversMem1)); |
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TFileName &fn = *pfn; |
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MapEmulatedFileName(fn, KMDW); |
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__ASSERT_ALWAYS(fn.Length() < KMaxFileName, Fault(EMainScanMediaDriversLocation)); |
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WIN32_FIND_DATA ffd; |
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HANDLE h = Emulator::FindFirstFile(fn.PtrZ(), &ffd); |
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BOOL fF = (h != INVALID_HANDLE_VALUE); |
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while (fF) |
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{ |
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TPtrC mdNm(ffd.cFileName); // null terminated wchar_t array |
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// NB: parse Win32 file path with EPOC32 functionality. |
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TParse *pprs = new TParse; |
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__ASSERT_ALWAYS(pprs != NULL, Fault(EMainScanMediaDriversMem2)); |
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TParse &prs = *pprs; |
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prs.Set(mdNm, NULL, NULL); |
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r = User::LoadPhysicalDevice(prs.NameAndExt()); |
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__ASSERT_ALWAYS(r==KErrNone || r==KErrAlreadyExists || r==KErrNotFound,Fault(EMainLoadMediaDriver)); |
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fF = Emulator::FindNextFile(h, &ffd); |
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delete pprs; |
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} |
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FindClose(h); // Win32 direct |
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delete pfn; |
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#else |
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// Load media drivers for EPOC32 using built-in rom file system. |
|
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{ |
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RFs fsM; |
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r = fsM.Connect(); |
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__ASSERT_ALWAYS(r==KErrNone,Fault(EMainScanMediaDriverConnect)); |
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367 |
||
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//#ifdef __EPOC32__ |
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_LIT(KMDSysBinHome, "Z:\\Sys\\Bin\\med*.pdd"); |
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//#else |
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// _LIT(KMDHome, "med*.pdd"); |
|
372 |
//#endif |
|
373 |
RDir d; |
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374 |
r = d.Open(fsM, KMDSysBinHome, KEntryAttMaskSupported); |
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375 |
__ASSERT_ALWAYS(r==KErrNone,Fault(EMainScanMediaDriverDirOpen)); |
|
376 |
||
377 |
TBool done = EFalse; |
|
378 |
do |
|
379 |
{ |
|
380 |
TEntryArray ea; |
|
381 |
r = d.Read(ea); |
|
382 |
__ASSERT_ALWAYS(r == KErrNone || r == KErrEof, Fault(EMainScanMediaDriverDirRead)); |
|
383 |
done = (r == KErrEof); |
|
384 |
||
385 |
for (TInt i = 0; i < ea.Count(); ++i) |
|
386 |
{ |
|
387 |
const TEntry &e = ea[i]; |
|
388 |
if (!e.IsDir()) |
|
389 |
{ |
|
390 |
TParse *pprs = new TParse; |
|
391 |
__ASSERT_ALWAYS(pprs != NULL, Fault(EMainScanMediaDriversMem1)); |
|
392 |
TParse &prs = *pprs; |
|
393 |
prs.Set(e.iName, NULL, NULL); |
|
394 |
TPtrC mdName(prs.NameAndExt()); |
|
395 |
r = User::LoadPhysicalDevice(mdName); |
|
396 |
__PRINT1(_L("User::LoadPhysicalDevice(mdName) returns %d"),r); |
|
397 |
__ASSERT_ALWAYS(r==KErrNone || r==KErrAlreadyExists || r==KErrNotFound,Fault(EMainLoadMediaDriver)); |
|
398 |
delete pprs; |
|
399 |
} |
|
400 |
} |
|
401 |
} while (! done); |
|
402 |
d.Close(); |
|
403 |
||
404 |
fsM.Close(); |
|
405 |
} |
|
406 |
#endif // else __WINS__ |
|
407 |
||
408 |
#if defined(__WINS__) |
|
409 |
//#ifndef __DATA_CAGING__ |
|
410 |
TheDefaultPath=_L("?:\\"); |
|
411 |
TheDefaultPath[0] = (TUint8) RFs::GetSystemDriveChar(); |
|
412 |
//#endif |
|
413 |
#endif |
|
414 |
||
415 |
#if defined(__EPOC32__) |
|
416 |
TMachineStartupType reason; |
|
417 |
UserHal::StartupReason(reason); |
|
418 |
#if defined(_DEBUG) || defined(_DEBUG_RELEASE) |
|
419 |
PrintStartUpReason(reason); |
|
420 |
#endif |
|
421 |
OpenOnDriveZOnly = (reason==EStartupSafeReset); |
|
422 |
#endif |
|
423 |
||
424 |
// |
|
425 |
// Now we must load estart from z: |
|
426 |
// |
|
427 |
RProcess eStart; |
|
428 |
#if defined(__WINS__) |
|
429 |
const char* eStartPath = NULL; |
|
430 |
UserSvr::HalFunction(EHalGroupEmulator,EEmulatorHalStringProperty,(TAny*)"EStart",&eStartPath); |
|
431 |
if (eStartPath == NULL) |
|
432 |
{ |
|
433 |
r=eStart.Create(KStartupExeSysBinName,KNullDesC); |
|
434 |
} |
|
435 |
else |
|
436 |
{ |
|
437 |
TPtrC8 temp((unsigned char *)eStartPath); |
|
438 |
TBuf16<KMaxFileName> buf; |
|
439 |
buf.Copy(temp); |
|
440 |
r=eStart.Create(buf,KNullDesC); |
|
441 |
} |
|
442 |
#else |
|
443 |
r=eStart.Create(KStartupExeSysBinName,KNullDesC); |
|
444 |
#endif |
|
445 |
||
446 |
if (r!=KErrNone) // Whoops! |
|
447 |
Fault(EMainStartupNoEStart); |
|
448 |
eStart.Resume(); // Start the process going |
|
449 |
eStart.Close(); // Get rid of our handle |
|
450 |
#if defined(_LOCKABLE_MEDIA) |
|
451 |
// Create a global semaphore for the asynchronous WriteToDisk() threads. |
|
452 |
RSemaphore s; |
|
453 |
r = s.CreateGlobal(_L("dwsem"), 1); // only supp 1 thd at a time |
|
454 |
__ASSERT_ALWAYS(r == KErrNone, Fault(EMainStartupWriteToDiskSemaphore)); |
|
455 |
#endif |
|
456 |
||
457 |
// |
|
458 |
// Now we can just exit the startup thread as its no longer needed. |
|
459 |
// |
|
460 |
return(KErrNone); |
|
461 |
} |
|
462 |
||
463 |
void commonInitialize() |
|
464 |
// |
|
465 |
// Initialization common to all platforms. |
|
466 |
// |
|
467 |
{ |
|
468 |
||
469 |
__PRINT(_L("commonInitialize")); |
|
470 |
#if defined(_DEBUG) || defined(_DEBUG_RELEASE) |
|
471 |
ErrorCondition=KErrNone; |
|
472 |
ErrorCount=0; |
|
473 |
UserHeapAllocFailCount=-1; |
|
474 |
KernHeapAllocFailCount=-1; |
|
475 |
#endif |
|
476 |
||
90
947f0dc9f7a8
Revision: 201015
Dremov Kirill (Nokia-D-MSW/Tampere) <kirill.dremov@nokia.com>
parents:
0
diff
changeset
|
477 |
TInt r = RequestAllocator::Initialise(); |
947f0dc9f7a8
Revision: 201015
Dremov Kirill (Nokia-D-MSW/Tampere) <kirill.dremov@nokia.com>
parents:
0
diff
changeset
|
478 |
__ASSERT_ALWAYS(r==KErrNone,Fault(EFsCacheLockFailure)); |
947f0dc9f7a8
Revision: 201015
Dremov Kirill (Nokia-D-MSW/Tampere) <kirill.dremov@nokia.com>
parents:
0
diff
changeset
|
479 |
r = OperationAllocator::Initialise(); |
0 | 480 |
__ASSERT_ALWAYS(r==KErrNone,Fault(EFsCacheLockFailure)); |
481 |
||
482 |
// initialise the TParse pool lock object |
|
483 |
r = TParsePool::Init(); |
|
484 |
__ASSERT_ALWAYS(r==KErrNone,Fault(EFsParsePoolLockFailure)); |
|
485 |
||
486 |
// Get local copies of capability sets |
|
487 |
TCapabilitySet caps; |
|
488 |
caps.SetAllSupported(); |
|
489 |
AllCapabilities=*(SCapabilitySet*)∩︀ |
|
490 |
caps.SetDisabled(); |
|
491 |
DisabledCapabilities=*(SCapabilitySet*)∩︀ |
|
492 |
||
493 |
FsThreadManager::SetMainThreadId(); |
|
494 |
r=FsThreadManager::CreateDisconnectThread(); |
|
495 |
__ASSERT_ALWAYS(r==KErrNone,Fault(EMainDisconnectThread)); |
|
496 |
||
497 |
||
498 |
// |
|
499 |
// Install a trap handler |
|
500 |
// |
|
501 |
CTrapCleanup* trapHandler=CTrapCleanup::New(); |
|
502 |
__ASSERT_ALWAYS(trapHandler!=NULL,Fault(EMainCreateResources1)); |
|
503 |
||
504 |
TRAP(r,createAllL()) |
|
505 |
__ASSERT_ALWAYS(r==KErrNone,Fault(EMainCreateResources1)); |
|
506 |
CActiveSchedulerFs::New(); |
|
507 |
CServerFs::New(); |
|
508 |
TheKernEventNotifier = CKernEventNotifier::New(); |
|
509 |
__ASSERT_ALWAYS(TheKernEventNotifier,Fault(EMainCreateResources5)); |
|
510 |
CActiveSchedulerFs::Add(TheKernEventNotifier); |
|
511 |
TheKernEventNotifier->Start(); |
|
512 |
// |
|
513 |
__ASSERT_ALWAYS(InitLoader()==KErrNone,Fault(ELdrRestartInit)); |
|
514 |
// |
|
515 |
LocalFileSystemInitialized=EFalse; |
|
516 |
StartupInitCompleted=EFalse; |
|
517 |
RefreshZDriveCache=EFalse; |
|
518 |
CompFsMounted=EFalse; |
|
519 |
CompFsSync=ETrue; |
|
520 |
||
521 |
// initialise notification information |
|
522 |
FsNotify::Initialise(); |
|
523 |
// initialise local drive specific information |
|
524 |
LocalDrives::Initialise(); |
|
525 |
||
526 |
TRAP(r, FsPluginManager::InitialiseL()); |
|
527 |
__ASSERT_ALWAYS(r==KErrNone,Fault(EMainCreateStartupThread0)); |
|
528 |
||
529 |
RThread t; |
|
530 |
r=t.Create(_L("StartupThread"),StartupThread,KDefaultStackSize,KHeapMinSize,KHeapMinSize,NULL); |
|
531 |
__ASSERT_ALWAYS(r==KErrNone,Fault(EMainCreateStartupThread1)); |
|
532 |
t.SetPriority(EPriorityLess); |
|
533 |
||
534 |
CLogon* pL=NULL; |
|
535 |
TRAP(r,pL=CLogon::NewL()); |
|
536 |
__ASSERT_ALWAYS(r==KErrNone,Fault(EMainCreateStartupThread2)); |
|
537 |
||
538 |
// NOTE: This function only returns after the startup thread has exited |
|
539 |
r=pL->Logon(t); |
|
540 |
||
541 |
__ASSERT_ALWAYS(r==KErrNone,Fault(EMainCreateStartupThread3)); |
|
542 |
delete pL; |
|
543 |
||
544 |
// Make a proper process relative handle to the server |
|
545 |
r=TheServerThread.Duplicate(TheServerThread); |
|
546 |
__ASSERT_ALWAYS(r==KErrNone,Fault(EMainCreateStartupThread4)); |
|
547 |
ServerThreadAllocator = &User::Heap(); |
|
548 |
} |
|
549 |
||
550 |
TBool ServerIsRunning() |
|
551 |
// |
|
552 |
// Check whether or not the server already exists |
|
553 |
// |
|
554 |
{ |
|
555 |
||
556 |
TFullName serverName; |
|
557 |
TFindServer fileServer(KFileServerName); |
|
558 |
TInt result=fileServer.Next(serverName); |
|
559 |
if (result!=KErrNotFound) |
|
560 |
return(ETrue); |
|
561 |
return(EFalse); |
|
562 |
} |
|
563 |
||
564 |
TInt E32Main() |
|
565 |
// |
|
566 |
// The file server. |
|
567 |
// |
|
568 |
{ |
|
569 |
if (ServerIsRunning()) |
|
570 |
return(KErrNone); |
|
571 |
||
572 |
#if defined(_DEBUG) || defined(_DEBUG_RELEASE) |
|
573 |
if (UserSvr::DebugMask() & 0x402) // KBOOT | KDLL |
|
574 |
//DebugReg=KFLDR; |
|
575 |
//DebugReg=KFSERV|KFLDR; |
|
576 |
DebugReg=KFSERV|KFLDR|KLFFS|KTHRD|KROFS; |
|
577 |
||
578 |
// DebugReg=KFSYS|KFSERV|KFLDR|KLFFS|KTHRD|KCACHE|KROFS|KCOMPFS|KCACHE; |
|
579 |
// User::SetDebugMask(0x80004000); |
|
580 |
||
581 |
#endif |
|
582 |
__PRINT(_L("FileServer E32Main")); |
|
583 |
||
584 |
UserSvr::FsRegisterThread(); |
|
585 |
RThread().SetPriority(EPriorityMore); |
|
586 |
commonInitialize(); |
|
587 |
CActiveSchedulerFs::Start(); |
|
588 |
return(KErrNone); |
|
589 |
} |
|
590 |