Added ENotifyKeypresses and ECaptureCtrlC flags to CCommandBase.
Commands can now get keypresses and handle ctrl-C via callbacks instead of having to implement custom active objects. As part of this extended the CCommandBase extension interface to MCommandExtensionsV2 for the new virtual functions KeyPressed(TUint aKeyCode, TUint aModifiers) and CtrlCPressed(). sudo now cleans up correctly by using ECaptureCtrlC.
// threadListboxdata.cpp
//
// Copyright (c) 2010 Accenture. All rights reserved.
// This component and the accompanying materials are made available
// under the terms of the "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:
// Accenture - Initial contribution
//
#include "KernLbxModel.h"
#include "Utils.h"
#include <fshell/clogger.h>
#include <fshell/memoryaccess.h>
#include <fshell/qr3dll.h>
#include "QResources3.hrh"
#include <fshell/heaputils.h>
CThreadsListBoxData::CThreadsListBoxData(CKernListBoxModel* aModel)
: CKernListBoxData(aModel)
{
}
void CThreadsListBoxData::DoFormatL(TObjectKernelInfo* aInfo, RBuf& name, RBuf& more, TInt& itemId)
{
TThreadKernelInfo& info = *(TThreadKernelInfo*)aInfo;
name.Copy(info.iFullName);
PrettyName(iType, name);
TUint tid = info.iThreadId;
TExitType exitType = EExitPending;
RThread thread;
if (Model().MemAccess().RThreadForceOpen(thread, tid) == KErrNone)
{
exitType = thread.ExitType();
}
if (exitType == EExitPending)
{
more.Format(_L("Tid %i"), tid);
}
else
{
TExitCategoryName cat = thread.ExitCategory();
more.Format(_L("Tid %i %S %i"), tid, &cat, thread.ExitReason());
}
thread.Close();
itemId = tid;
}
void CThreadsListBoxData::DumpToCloggerL(RClogger& clogger, TInt i, TInt /*count*/)
{
_LIT8(KThreadDesc,"Thread;FullName;Tid;Priority;(PriorityHumanReadable);ParentPid;StackSize;(StackSizeHumanReadable);HeapSize;(HeapSizeHumanReadable);MinHeapSize;(MinHumanReadable);UnusedPages;LostBytes;(LostBytesHumanReadable);ExitStatus;ExitCategory;ExitReason;KernObjAddr");
_LIT8(KThreadFmt,"Thread;%S;%i;%i;(%S);%i;%i;(%S);%i;(%S);%i;(%S);%i;%i;(%S);%S;%S;%i;%x");
// ^ HeapSizeHumanReadable
if (i == 0) clogger.Log(KThreadDesc);
TThreadKernelInfo& info = *(TThreadKernelInfo*)iInfo;
TBuf<16> priority16 = ToString((TThreadPriority)info.iThreadPriority);
TPtr8 priority = priority16.Collapse();
LtkUtils::RProxyAllocatorHelper allocHelper;
User::LeaveIfError(allocHelper.Open(Model().MemAccess(), info.iThreadId));
TBuf8<16> heapSize, minHeap, lostBytes, stackSize;
HR(heapSize, allocHelper.CommittedSize());
HR(stackSize, info.iUserStackSize);
HR(minHeap, allocHelper.MinCommittedSize());
TInt lostBytesCount = allocHelper.CommittedFreeSpace();
HR(lostBytes, lostBytesCount);
TInt parentPid = 0; //TODO
TPtrC exitStatus;
TInt exitReason = 0;
TExitCategoryName exitCategory;
RThread handle;
if (Model().MemAccess().RThreadForceOpen(handle, info.iThreadId) == KErrNone)
{
exitStatus.Set(ToString(handle.ExitType()));
exitCategory = handle.ExitCategory();
exitReason = handle.ExitReason();
handle.Close();
}
TBuf8<16> exitStatus8;
exitStatus8.Copy(exitStatus);
TPtrC8 exitCategory8 = exitCategory.Collapse();
clogger.Log(KThreadFmt, &info.iFullName, info.iThreadId, info.iThreadPriority, &priority, parentPid, info.iUserStackSize, &stackSize, allocHelper.CommittedSize(), &heapSize, allocHelper.MinCommittedSize(), &minHeap, allocHelper.CountUnusedPages(), lostBytesCount, &lostBytes, &exitStatus8, &exitCategory8, exitReason, info.iAddressOfKernelObject);
allocHelper.Close();
}
void CThreadsListBoxData::DoInfoForDialogL(RBuf& aTitle, RBuf& inf, TDes* aTemp)
{
TThreadKernelInfo& info = *(TThreadKernelInfo*)iInfo;
RThread thread;
RProcess process;
TInt err = Model().MemAccess().RThreadForceOpen(thread, info.iThreadId);
if (!err)
{
err = thread.Process(process);
}
TUint processId = err;
if (!err)
{
processId = (TUint)process.Id();
}
CleanupClosePushL(thread);
CleanupClosePushL(process);
_LIT(KInfo, "Thread info");
aTitle.Copy(KInfo);
inf.Copy(iInfo->iFullName);
inf.Append(Klflf);
_LIT(KThread, "Tid: %d Pid: %d Kern Priority: %d\nPriority: %d (%S)\nProc Priority: %d (%S)");
_LIT(KCritical, "\n%S");
_LIT(KCreator, "\nCreator thread id: %d (%S)");
_LIT(KKern, "\nKernel object address: 0x%08x");
_LIT(KStack, "\n\nUser stack size: %S");
_LIT(KHeap, "\nAllocator: 0x%08x\nHeap size: %S (%d)\nMin/Max: %S/%S\nUnused: %S Usable: %S");
_LIT(KDied, "\n\nDied with: %S %S %i");
TThreadPriority threadPriority = (TThreadPriority)err;
TProcessPriority processPriority = (TProcessPriority)err;
TPtrC priority = _L("?");
TPtrC priorityP = _L("?");
if (!err)
{
threadPriority = thread.Priority();
priority.Set(ToString(threadPriority));
processPriority = process.Priority();
priorityP.Set(ToString(processPriority));
}
LtkUtils::RProxyAllocatorHelper allocHelper;
User::LeaveIfError(allocHelper.Open(Model().MemAccess(), info.iThreadId));
TBuf<16> heapSize, minHeap, maxHeap, unusedMem, reclaimableMem, stackSize;
HR(heapSize, allocHelper.CommittedSize());
HR(stackSize, info.iUserStackSize);
HR(minHeap, allocHelper.MinCommittedSize());
HR(maxHeap, allocHelper.MaxCommittedSize());
HR(unusedMem, allocHelper.CommittedFreeSpace());
HR(reclaimableMem, allocHelper.CountUnusedPages() * 4096);
inf.AppendFormat(KThread, info.iThreadId, processId, info.iThreadPriority, threadPriority, &priority, processPriority, &priorityP);
TUint creatorTid = Model().MemAccess().GetThreadCreatorId(info.iThreadId);
if (creatorTid != 0)
{
RThread creator;
TInt err = Model().MemAccess().RThreadForceOpen(creator, creatorTid);
*aTemp = _L("?");
if (err == KErrNone)
{
*aTemp = creator.FullName();
PrettyName(iType, *aTemp);
creator.Close();
}
inf.AppendFormat(KCreator, creatorTid, aTemp);
}
User::TCritical crit = User::ENotCritical;
if (!err)
{
crit = User::Critical(thread);
}
if (crit != User::ENotCritical)
{
TPtrC critical = ToString(crit);
inf.AppendFormat(KCritical, &critical);
}
inf.AppendFormat(KKern, info.iAddressOfKernelObject);
inf.AppendFormat(KStack, &stackSize);
inf.AppendFormat(KHeap, allocHelper.AllocatorAddress(), &heapSize, allocHelper.CommittedSize(), &minHeap, &maxHeap, &unusedMem, &reclaimableMem);
allocHelper.Close();
if (err == KErrNone && thread.ExitType() != EExitPending)
{
TPtrC exitStatus;
TInt exitReason = 0;
TExitCategoryName exitCategory;
exitStatus.Set(ToString(thread.ExitType()));
if (thread.ExitType() == EExitPanic)
{
exitCategory = thread.ExitCategory();
}
exitReason = thread.ExitReason();
inf.AppendFormat(KDied, &exitStatus, &exitCategory, exitReason);
}
CleanupStack::PopAndDestroy(2, &thread);
}
TBool CThreadsListBoxData::SupportsCommand(TInt aCommand)
{
switch (aCommand)
{
case ECmdHandleInfo:
case ECmdKill:
case ECmdDumpHeap:
case ECmdSetCritical:
case ECmdSetPriority:
case ECmdPoll:
return ETrue;
default:
return EFalse;
}
}