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1 /* |
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2 * Copyright (c) 2009 Nokia Corporation and/or its subsidiary(-ies). |
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3 * All rights reserved. |
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4 * This component and the accompanying materials are made available |
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5 * under the terms of "Eclipse Public License v1.0" |
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6 * which accompanies this distribution, and is available |
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7 * at the URL "http://www.eclipse.org/legal/epl-v10.html". |
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8 * |
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9 * Initial Contributors: |
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10 * Nokia Corporation - initial contribution. |
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11 * |
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12 * Contributors: |
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13 * |
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14 * Description: |
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15 * |
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16 */ |
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17 |
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18 #include <memspy/engine/memspyenginehelperfbserv.h> |
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19 |
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20 // System includes |
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21 #include <s32mem.h> |
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22 #include <f32file.h> |
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23 #include <e32rom.h> |
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24 |
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25 // Driver includes |
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26 #include <memspy/driver/memspydriverclient.h> |
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27 |
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28 // User includes |
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29 #include <memspy/engine/memspyengine.h> |
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30 #include <memspy/engine/memspyengineutils.h> |
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31 #include <memspy/engine/memspyengineoutputsink.h> |
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32 #include <memspy/engine/memspyengineobjectprocess.h> |
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33 #include <memspy/engine/memspyengineobjectthread.h> |
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34 #include <memspy/engine/memspyengineobjectcontainer.h> |
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35 |
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36 // Literal constants |
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37 _LIT( KMemSpyEngineFBServComma, ", " ); |
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38 _LIT( KMemSpyEngineFBServExportFileName, "Image_%08x_%02d_bpp_(%d x %d).bmp"); |
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39 _LIT( KMemSpyEngineFBSLargeChunkName, "FbsLargeChunk" ); |
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40 _LIT( KMemSpyEngineFBSSharedChunkName, "FbsSharedChunk" ); |
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41 |
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42 |
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43 CMemSpyEngineHelperFbServ::CMemSpyEngineHelperFbServ( CMemSpyEngine& aEngine ) |
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44 : iEngine( aEngine ) |
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45 { |
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46 } |
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47 |
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48 |
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49 CMemSpyEngineHelperFbServ::~CMemSpyEngineHelperFbServ() |
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50 { |
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51 iEngine.Driver().WalkHeapClose(); |
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52 } |
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53 |
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54 |
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55 void CMemSpyEngineHelperFbServ::ConstructL() |
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56 { |
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57 } |
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58 |
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59 |
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60 CMemSpyEngineHelperFbServ* CMemSpyEngineHelperFbServ::NewL( CMemSpyEngine& aEngine ) |
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61 { |
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62 CMemSpyEngineHelperFbServ* self = new(ELeave) CMemSpyEngineHelperFbServ( aEngine ); |
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63 CleanupStack::PushL( self ); |
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64 self->ConstructL(); |
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65 CleanupStack::Pop( self ); |
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66 return self; |
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67 } |
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68 |
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69 |
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70 TBool CMemSpyEngineHelperFbServ::IsLargeBitmapChunk( const TMemSpyDriverChunkInfo& aChunkInfo ) |
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71 { |
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72 TBool ret = EFalse; |
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73 // |
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74 if ( aChunkInfo.iType == EMemSpyDriverChunkTypeGlobal ) |
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75 { |
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76 ret = ( aChunkInfo.iName.FindF( KMemSpyEngineFBSLargeChunkName ) >= 0 ); |
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77 } |
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78 // |
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79 return ret; |
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80 } |
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81 |
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82 |
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83 TBool CMemSpyEngineHelperFbServ::IsSharedBitmapChunk( const TMemSpyDriverChunkInfo& aChunkInfo ) |
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84 { |
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85 TBool ret = EFalse; |
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86 // |
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87 if ( aChunkInfo.iType == EMemSpyDriverChunkTypeGlobal ) |
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88 { |
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89 ret = ( aChunkInfo.iName.FindF( KMemSpyEngineFBSSharedChunkName ) >= 0 ); |
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90 } |
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91 // |
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92 return ret; |
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93 } |
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94 |
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95 |
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96 EXPORT_C void CMemSpyEngineHelperFbServ::GetArrayOfBitmapHandlesL( RArray<TInt>& aHandles ) |
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97 { |
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98 TInt fontConCount = 0; |
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99 TInt bitmapConCount =0; |
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100 //RArray<TInt> dirtyHandles; |
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101 //CleanupClosePushL( dirtyHandles ); |
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102 GetArrayOfBitmapHandlesL( aHandles, bitmapConCount, fontConCount ); |
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103 //CleanupStack::PopAndDestroy( &dirtyHandles ); |
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104 } |
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105 |
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106 |
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107 void CMemSpyEngineHelperFbServ::GetArrayOfBitmapHandlesL( RArray<TInt>& aHandles, TInt& aBitmapConCount, TInt& aFontConCount ) |
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108 { |
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109 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetArrayOfBitmapHandlesL() - START") ); |
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110 CMemSpyThread& fbServThread = IdentifyFbServThreadL(); |
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111 |
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112 // Suspend the process |
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113 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetArrayOfBitmapHandlesL() - got FBServ thread, suspending it...")); |
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114 iEngine.ProcessSuspendLC( fbServThread.Process().Id() ); |
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115 |
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116 // Get the heap cell data for the correct object (CFbTop) |
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117 TAny* cellAddress = NULL; |
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118 HBufC8* cellData = LocateCFbTopHeapCellDataLC( fbServThread, cellAddress ); |
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119 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetArrayOfBitmapHandlesL() - got CFbTop cell data: %d bytes", cellData->Length())); |
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120 |
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121 // Work out the offset to the bitmap address handles array |
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122 const TUint offsetBitmapCon = OffsetToCObjectConBitmapCon(); |
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123 const TUint offsetFontCon = OffsetToCObjectConFontCon(); |
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124 const TUint offsetHandleArray = OffsetToBitmapHandleArray(); |
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125 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetArrayOfBitmapHandlesL() - offsetBitmapCon: %d", offsetBitmapCon )); |
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126 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetArrayOfBitmapHandlesL() - offsetFontCon: %d", offsetFontCon )); |
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127 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetArrayOfBitmapHandlesL() - offsetHandleArray: %d", offsetHandleArray )); |
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128 |
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129 // Create stream for reading heap data (makes life a bit easier). |
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130 RDesReadStream stream( *cellData ); |
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131 CleanupClosePushL( stream ); |
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132 |
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133 // We need to skip over the preamble to the start of the actual data. |
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134 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetArrayOfBitmapHandlesL() - skipping %d bytes [to start of bitmap con]...", offsetBitmapCon )); |
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135 (void) stream.ReadL( offsetBitmapCon ); // skip this much |
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136 |
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137 // Read CFbTop::iBitmapCon cell address |
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138 TAny* cellAddresBitmapCon = reinterpret_cast<TAny*>( stream.ReadUint32L() ); |
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139 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetArrayOfBitmapHandlesL() - cellAddresBitmapCon: 0x%08x", cellAddresBitmapCon )); |
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140 TInt bitmapConAllocated = 0; |
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141 RArray<TAny*> bitmapConAddresses; |
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142 CleanupClosePushL( bitmapConAddresses ); |
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143 ReadCObjectConInfoL( cellAddresBitmapCon, bitmapConAddresses, aBitmapConCount, bitmapConAllocated ); |
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144 CleanupStack::PopAndDestroy( &bitmapConAddresses ); |
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145 |
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146 // Read CFbTop::iFontCon cell address |
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147 TAny* cellAddresFontCon = reinterpret_cast<TAny*>( stream.ReadUint32L() ); |
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148 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetArrayOfBitmapHandlesL() - cellAddresFontCon: 0x%08x", cellAddresFontCon )); |
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149 TInt fontConAllocated = 0; |
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150 RArray<TAny*> fontConAddresses; |
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151 CleanupClosePushL( fontConAddresses ); |
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152 ReadCObjectConInfoL( cellAddresFontCon, fontConAddresses, aFontConCount, fontConAllocated ); |
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153 CleanupStack::PopAndDestroy( &fontConAddresses ); |
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154 |
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155 // Skip forwards to the bitmap handle array info |
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156 const TUint skipRemaining = ( offsetHandleArray - offsetFontCon ); |
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157 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetArrayOfBitmapHandlesL() - skipRemaining: %d", skipRemaining )); |
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158 (void) stream.ReadL( skipRemaining ); // skip this much |
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159 |
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160 // The layout of RPointerArrayBase is as follows: |
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161 // |
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162 // TInt iCount; |
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163 // TAny** iEntries; |
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164 // TInt iAllocated; |
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165 // TInt iGranularity; |
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166 // TInt iSpare1; |
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167 // TInt iSpare2; |
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168 |
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169 // Now read the next 4 bytes. This is the number of allocated array entries. |
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170 const TInt arrayEntryCount = stream.ReadInt32L(); |
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171 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetArrayOfBitmapHandlesL() - arrayEntryCount: %d", arrayEntryCount )); |
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172 |
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173 // The next four bytes are the address of the cell we are interested in. |
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174 cellAddress = reinterpret_cast<TAny*>( stream.ReadUint32L() ); |
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175 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetArrayOfBitmapHandlesL() - cellAddress: 0x%08x", cellAddress )); |
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176 |
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177 // The next four bytes are the allocated count |
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178 const TInt arrayAlloctedCount = stream.ReadInt32L(); |
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179 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetArrayOfBitmapHandlesL() - arrayAlloctedCount: %d", arrayAlloctedCount )); |
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180 |
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181 // Validate |
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182 if ( arrayEntryCount > arrayAlloctedCount || arrayEntryCount < 0 || arrayAlloctedCount < 0 ) |
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183 { |
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184 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetArrayOfBitmapHandlesL() - invalid array details => Leave with KErrCorrupt")); |
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185 User::Leave( KErrCorrupt ); |
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186 } |
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187 |
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188 // Clean up - don't need this data anymore. Real data is in another cell |
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189 CleanupStack::PopAndDestroy( 2, cellData ); // stream & cellData |
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190 |
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191 // Now obtain the heap cell data for the actual array itself. |
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192 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetArrayOfBitmapHandlesL() - trying to find bitmap array data...")); |
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193 cellData = LocateBitmapArrayHeapCellDataLC( cellAddress, arrayAlloctedCount ); |
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194 |
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195 // Parse the cell data in order to obtain the bitmap handles. |
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196 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetArrayOfBitmapHandlesL() - trying to extract bitmap handles...")); |
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197 ParseCellDataAndExtractHandlesL( *cellData, aHandles, arrayEntryCount ); |
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198 |
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199 // Tidy up |
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200 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetArrayOfBitmapHandlesL() - resuming process...")); |
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201 CleanupStack::PopAndDestroy( cellData ); |
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202 |
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203 // Close heap walker & resume process |
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204 iEngine.Driver().WalkHeapClose(); |
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205 CleanupStack::PopAndDestroy(); |
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206 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetArrayOfBitmapHandlesL() - END")); |
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207 } |
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208 |
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209 |
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210 void CMemSpyEngineHelperFbServ::GetBitmapInfoL( TInt aHandle, TMemSpyEngineFBServBitmapInfo& aInfo ) |
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211 { |
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212 CFbsBitmap* bitmap = GetBitmapInfoLC( aHandle, aInfo ); |
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213 CleanupStack::PopAndDestroy( bitmap ); |
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214 } |
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215 |
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216 |
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217 CFbsBitmap* CMemSpyEngineHelperFbServ::GetBitmapInfoLC( TInt aHandle, TMemSpyEngineFBServBitmapInfo& aInfo ) |
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218 { |
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219 CFbsBitmap* bitmap = new(ELeave) CFbsBitmap(); |
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220 CleanupStack::PushL( bitmap ); |
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221 const TInt error = bitmap->Duplicate( aHandle ); |
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222 User::LeaveIfError( error ); |
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223 |
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224 // Basic info from bitmap itself |
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225 aInfo.iHandle = aHandle; |
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226 aInfo.iDisplayMode = bitmap->DisplayMode(); |
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227 |
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228 // Extended info comes from header |
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229 const SEpocBitmapHeader header( bitmap->Header() ); |
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230 |
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231 aInfo.iSizeInPixels = header.iSizeInPixels; |
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232 aInfo.iCompressionType = header.iCompression; |
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233 aInfo.iColor = header.iColor; |
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234 aInfo.iBitsPerPixel = header.iBitsPerPixel; |
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235 aInfo.iSizeInBytes = header.iBitmapSize; |
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236 |
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237 // Flags |
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238 aInfo.iFlags = TMemSpyEngineFBServBitmapInfo::EFlagsNone; |
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239 if ( bitmap->IsRomBitmap() ) |
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240 { |
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241 aInfo.iFlags |= TMemSpyEngineFBServBitmapInfo::EFlagsIsRomBitmap; |
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242 } |
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243 if ( bitmap->IsLargeBitmap() ) |
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244 { |
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245 aInfo.iFlags |= TMemSpyEngineFBServBitmapInfo::EFlagsIsLarge; |
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246 } |
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247 if ( bitmap->IsCompressedInRAM() ) |
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248 { |
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249 aInfo.iFlags |= TMemSpyEngineFBServBitmapInfo::EFlagsIsCompressedInRam; |
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250 } |
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251 else |
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252 { |
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253 // Can only do this if not compressed |
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254 if ( bitmap->IsMonochrome() ) |
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255 { |
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256 aInfo.iFlags |= TMemSpyEngineFBServBitmapInfo::EFlagsIsMonochrome; |
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257 } |
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258 } |
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259 |
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260 return bitmap; |
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261 } |
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262 |
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263 |
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264 CMemSpyThread& CMemSpyEngineHelperFbServ::IdentifyFbServThreadL() |
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265 { |
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266 _LIT(KFbServThreadName, "FbServ::!Fontbitmapserver"); |
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267 // |
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268 CMemSpyThread* thread = NULL; |
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269 CMemSpyProcess* process = NULL; |
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270 |
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271 // Get the fbserv thread object |
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272 CMemSpyEngineObjectContainer& container = iEngine.Container(); |
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273 User::LeaveIfError( container.ProcessAndThreadByFullName( KFbServThreadName, process, thread ) ); |
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274 // |
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275 return *thread; |
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276 } |
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277 |
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278 |
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279 HBufC8* CMemSpyEngineHelperFbServ::LocateCFbTopHeapCellDataLC( CMemSpyThread& aFbServThread, TAny*& aCellAddress ) |
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280 { |
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281 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::LocateCFbTopHeapCellDataLC() - START")); |
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282 |
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283 // We'll start looking for the CFbTop object at cell index 0, then we'll |
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284 // continue to a maximum of cell index 10. These are not actual allocation |
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285 // numbers, they are just cell indicies within FBServ's heap. |
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286 // Realistically, the cell should be the 7th. |
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287 const TInt KFbServWillingToStartAtCellIndex = 0; |
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288 const TInt KFbServWillingToSearchUntilCellIndex = 10; |
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289 |
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290 // We know the size of the cell is pretty big, since it contains a large |
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291 // hash-map object (4096 elements by default, 4 bytes big => 16k). We'll |
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292 // not try to retrieve more than 18k of data. |
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293 const TInt KFbServExpectedMinimumCellSize = 14*1024; |
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294 const TInt KFbServExpectedMaximumCellSize = 18*1024; |
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295 |
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296 // This is what we'll return, if we find it... |
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297 aCellAddress = NULL; |
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298 HBufC8* heapCellData = NULL; |
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299 |
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300 // Get the heap info - we need this for verification purposes |
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301 TMemSpyHeapInfo info; |
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302 TInt err = iEngine.Driver().GetHeapInfoUser( info, aFbServThread.Id() ); |
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303 if ( err == KErrNone && info.Type() != TMemSpyHeapInfo::ETypeRHeap ) |
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304 { |
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305 err = KErrNotSupported; |
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306 } |
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307 User::LeaveIfError( err ); |
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308 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::LocateCFbTopHeapCellDataLC() - allocated cell header length is: %d", info.AsRHeap().MetaData().HeaderSizeAllocated() )); |
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309 |
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310 // Now walk the heap! |
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311 err = iEngine.Driver().WalkHeapInit( aFbServThread.Id() ); |
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312 if ( err == KErrNone ) |
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313 { |
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314 TMemSpyDriverCellType cellType; |
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315 TAny* cellAddress; |
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316 TInt cellLength; |
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317 TInt cellNestingLevel; |
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318 TInt cellAllocationNumber; |
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319 TInt cellHeaderSize; |
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320 TAny* cellPayloadAddress; |
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321 // |
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322 for( TInt cellIndex = KFbServWillingToStartAtCellIndex; err == KErrNone && cellIndex < KFbServWillingToSearchUntilCellIndex; cellIndex++ ) |
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323 { |
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324 err = iEngine.Driver().WalkHeapNextCell( aFbServThread.Id(), cellType, cellAddress, cellLength, cellNestingLevel, cellAllocationNumber, cellHeaderSize, cellPayloadAddress ); |
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325 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::LocateCFbTopHeapCellDataLC() - cellIndex[%d] err: %d, cellLength: %d, cellAllocationNumber: %d, cellType: %d", cellIndex, err, cellLength, cellAllocationNumber, cellType)); |
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326 |
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327 if ( err == KErrNone && cellType == EMemSpyDriverGoodAllocatedCell ) |
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328 { |
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329 // We know we are looking for a relatively large *allocated* cell. |
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330 if ( cellLength >= KFbServExpectedMinimumCellSize && cellLength <= KFbServExpectedMaximumCellSize && cellType == EMemSpyDriverGoodAllocatedCell ) |
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331 { |
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332 const TInt payloadLength = cellLength - info.AsRHeap().MetaData().HeaderSizeAllocated(); |
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333 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::LocateCFbTopHeapCellDataLC() - cell was long enough. Full cell len: %d, header: %d, therefore dataLen: %d", cellLength, info.AsRHeap().MetaData().HeaderSizeAllocated(), payloadLength)); |
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334 |
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335 // This is *probably* the right cell. Let's get the data and check. |
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336 HBufC8* data = HBufC8::NewLC( payloadLength ); |
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337 TPtr8 pData( data->Des() ); |
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338 // |
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339 err = iEngine.Driver().WalkHeapReadCellData( cellAddress, pData, payloadLength ); |
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340 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::LocateCFbTopHeapCellDataLC() - data fetch returned error: %d", err)); |
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341 |
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342 if ( err == KErrNone ) |
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343 { |
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344 //_LIT(KHeapDumpDataFormat, "%S"); |
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345 //iEngine.Sink().OutputBinaryDataL( KHeapDumpDataFormat, pData.Ptr(), (const TUint8*) cellAddress, pData.Length() ); |
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346 |
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347 // Check the data |
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348 const TUint heapSize = info.AsRHeap().ObjectData().Size(); |
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349 const TUint heapBaseAddress = (TUint) info.AsRHeap().ObjectData().Base(); |
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350 const TBool correctHeapCellLocated = VerifyCorrectHeapCellL( *data, cellAddress, cellPayloadAddress, heapBaseAddress, heapSize ); |
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351 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::LocateCFbTopHeapCellDataLC() - verified: %d", correctHeapCellLocated)); |
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352 |
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353 if ( correctHeapCellLocated ) |
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354 { |
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355 aCellAddress = cellAddress; |
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356 heapCellData = data; |
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357 CleanupStack::Pop( data ); |
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358 break; |
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359 } |
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360 else |
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361 { |
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362 // Not the right cell. Keep going... |
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363 CleanupStack::PopAndDestroy( data ); |
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364 } |
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365 } |
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366 } |
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367 } |
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368 } |
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369 |
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370 // NB: don't do this here - |
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371 // iEngine.Driver().WalkHeapClose(); |
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372 // It gets done after all reading is complete |
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373 } |
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374 |
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375 if ( heapCellData == NULL ) |
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376 { |
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377 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::LocateCFbTopHeapCellDataLC() - END - didn't find the right cell => KErrNotFound")); |
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378 User::Leave( KErrNotFound ); |
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379 } |
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380 // |
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381 CleanupStack::PushL( heapCellData ); |
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382 |
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383 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::LocateCFbTopHeapCellDataLC() - END - everything okay, cell is: 0x%08x", aCellAddress)); |
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384 return heapCellData; |
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385 } |
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386 |
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387 |
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388 void CMemSpyEngineHelperFbServ::ReadCObjectConInfoL( TAny* aCellAddress, RArray<TAny*>& aContainerObjects, TInt& aCount, TInt& aAllocated ) |
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389 { |
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390 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::ReadCObjectConInfoL() - START - trying cell: 0x%08x", aCellAddress )); |
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391 |
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392 // What we will return |
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393 HBufC8* cellData = NULL; |
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394 |
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395 // Try to get info about real cell |
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396 TMemSpyDriverCellType cellType; |
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397 TInt cellLength; |
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398 TInt cellNestingLevel; |
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399 TInt cellAllocationNumber; |
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400 TInt cellHeaderSize; |
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401 TAny* cellPayloadAddress; |
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402 |
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403 // NOTE: this call may change the value of 'cellAddress' |
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404 TInt err = iEngine.Driver().WalkHeapGetCellInfo( aCellAddress, cellType, cellLength, cellNestingLevel, cellAllocationNumber, cellHeaderSize, cellPayloadAddress ); |
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405 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::ReadCObjectConInfoL() - err: %d, cellAddress: 0x%08x, cellLength: %d, cellAllocationNumber: %d, cellType: %d", err, aCellAddress, cellLength, cellAllocationNumber, cellType)); |
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406 |
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407 if ( err == KErrNone && cellType == EMemSpyDriverGoodAllocatedCell ) |
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408 { |
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409 // Check that the cell size meets our expectations - it should be a CObjectCon cell. |
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410 const TInt expectedCellSize = sizeof(CObjectCon*) + cellHeaderSize; |
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411 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::ReadCObjectConInfoL() - expectedCellSize: %d, actual: %d, address: 0x%08x", expectedCellSize, cellLength, aCellAddress)); |
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412 |
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413 if ( expectedCellSize <= cellLength ) |
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414 { |
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415 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::ReadCObjectConInfoL() - cell lengths are good, trying to get cell data...")); |
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416 |
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417 // Try to get real cell data |
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418 cellData = HBufC8::NewLC( cellLength ); |
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419 TPtr8 pData( cellData->Des() ); |
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420 // |
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421 err = iEngine.Driver().WalkHeapReadCellData( aCellAddress, pData, cellLength ); |
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422 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::ReadCObjectConInfoL() - reading cell data returned error: %d", err)); |
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423 } |
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424 else |
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425 { |
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426 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::ReadCObjectConInfoL() - not enough data -> KErrCorrupt")); |
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427 err = KErrCorrupt; |
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428 } |
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429 } |
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430 else |
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431 { |
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432 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::ReadCObjectConInfoL() - END - didn't find cell data => KErrNotFound")); |
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433 User::Leave( KErrNotFound ); |
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434 } |
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435 |
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436 CObjectCon* con = CObjectCon::NewL(); |
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437 const TUint32 KExpectedObjectConVTable = *((TUint32*) con); |
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438 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::ReadCObjectConInfoL() - KExpectedObjectConVTable: 0x%08x", KExpectedObjectConVTable )); |
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439 delete con; |
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440 |
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441 // We should have the valid CObjectCon data now. |
|
442 RDesReadStream stream( *cellData ); |
|
443 CleanupClosePushL( stream ); |
|
444 |
|
445 // Read vtable |
|
446 const TUint32 vTable = stream.ReadUint32L(); |
|
447 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::ReadCObjectConInfoL() - actual vTable: 0x%08x", vTable )); |
|
448 if ( vTable != KExpectedObjectConVTable ) |
|
449 { |
|
450 User::Leave( KErrNotFound ); |
|
451 } |
|
452 |
|
453 const TInt uniqueId = stream.ReadInt32L(); |
|
454 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::ReadCObjectConInfoL() - uniqueId: %d", uniqueId )); |
|
455 |
|
456 aCount = stream.ReadInt32L(); |
|
457 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::ReadCObjectConInfoL() - aCount: %d", aCount )); |
|
458 |
|
459 aAllocated = stream.ReadInt32L(); |
|
460 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::ReadCObjectConInfoL() - aAllocated: %d", aAllocated )); |
|
461 |
|
462 // This is actually CObject's iObject, i.e. CObject** iObjects. |
|
463 TAny* pObjects = reinterpret_cast< TAny*>( stream.ReadUint32L() ); |
|
464 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::ReadCObjectConInfoL() - pObjects: 0x%08x", pObjects )); |
|
465 |
|
466 CleanupStack::PopAndDestroy( 2, cellData ); // cellData & stream |
|
467 |
|
468 // Now fetch the cell containing the CObject pointers... |
|
469 err = iEngine.Driver().WalkHeapGetCellInfo( pObjects, cellType, cellLength, cellNestingLevel, cellAllocationNumber, cellHeaderSize, cellPayloadAddress ); |
|
470 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::ReadCObjectConInfoL() - array of CObject* cell fetch err: %d, cellAddress: 0x%08x, cellLength: %d, cellAllocationNumber: %d, cellType: %d", err, aCellAddress, cellLength, cellAllocationNumber, cellType)); |
|
471 User::LeaveIfError( err ); |
|
472 |
|
473 const TInt expectedSize = ( aAllocated * sizeof(CObject*) ) + cellHeaderSize; |
|
474 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::ReadCObjectConInfoL() - expectedSize: %d, actual size: %d", expectedSize, cellLength )); |
|
475 if ( cellLength < expectedSize ) |
|
476 { |
|
477 User::Leave( KErrUnderflow ); |
|
478 } |
|
479 |
|
480 // Get the data |
|
481 cellData = HBufC8::NewLC( cellLength ); |
|
482 TPtr8 pData( cellData->Des() ); |
|
483 err = iEngine.Driver().WalkHeapReadCellData( pObjects, pData, cellLength ); |
|
484 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::ReadCObjectConInfoL() - reading cell data returned error: %d", err)); |
|
485 User::LeaveIfError( err ); |
|
486 |
|
487 // Open stream |
|
488 stream.Open( *cellData ); |
|
489 CleanupClosePushL( stream ); |
|
490 |
|
491 // Extract array of pointers |
|
492 for( TInt i=0; i<aCount; i++ ) |
|
493 { |
|
494 TAny* objectAddress = reinterpret_cast< TAny*>( stream.ReadUint32L() ); |
|
495 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::ReadCObjectConInfoL() - object[%04d]: 0x%08x", i, objectAddress )); |
|
496 aContainerObjects.AppendL( objectAddress ); |
|
497 } |
|
498 CleanupStack::PopAndDestroy( 2, cellData ); // cellData & stream |
|
499 |
|
500 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::ReadCObjectConInfoL() - END" )); |
|
501 } |
|
502 |
|
503 |
|
504 HBufC8* CMemSpyEngineHelperFbServ::LocateBitmapArrayHeapCellDataLC( TAny*& aArrayCellAddress, TInt aArrayAllocCount ) |
|
505 { |
|
506 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::LocateBitmapArrayHeapCellDataLC() - START - trying cell: 0x%08x, aArrayAllocCount: %d", aArrayCellAddress, aArrayAllocCount)); |
|
507 |
|
508 // What we will return |
|
509 HBufC8* cellData = NULL; |
|
510 |
|
511 // Try to get info about real cell |
|
512 TMemSpyDriverCellType cellType; |
|
513 TInt cellLength; |
|
514 TInt cellNestingLevel; |
|
515 TInt cellAllocationNumber; |
|
516 TInt cellHeaderSize; |
|
517 TAny* cellPayloadAddress; |
|
518 |
|
519 // NOTE: this call may change the value of 'cellAddress' |
|
520 TInt err = iEngine.Driver().WalkHeapGetCellInfo( aArrayCellAddress, cellType, cellLength, cellNestingLevel, cellAllocationNumber, cellHeaderSize, cellPayloadAddress ); |
|
521 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::LocateCFbTopHeapCellDataLC() - err: %d, cellAddress: 0x%08x, cellLength: %d, cellAllocationNumber: %d, cellType: %d", err, aArrayCellAddress, cellLength, cellAllocationNumber, cellType)); |
|
522 |
|
523 if ( err == KErrNone && cellType == EMemSpyDriverGoodAllocatedCell ) |
|
524 { |
|
525 // Check that the cell size meets our expectations. |
|
526 // The cell should be a very specific length |
|
527 const TInt expectedCellSize = (sizeof(CBase*) * aArrayAllocCount) + cellHeaderSize; |
|
528 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::LocateBitmapArrayHeapCellDataLC() - expectedCellSize: %d, actual: %d, address: 0x%08x", expectedCellSize, cellLength, aArrayCellAddress)); |
|
529 |
|
530 if ( expectedCellSize <= cellLength ) |
|
531 { |
|
532 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::LocateBitmapArrayHeapCellDataLC() - cell lengths are good, trying to get cell data...")); |
|
533 |
|
534 // Try to get real cell data |
|
535 cellData = HBufC8::NewLC( cellLength ); |
|
536 TPtr8 pData( cellData->Des() ); |
|
537 // |
|
538 err = iEngine.Driver().WalkHeapReadCellData( aArrayCellAddress, pData, cellLength ); |
|
539 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::LocateBitmapArrayHeapCellDataLC() - reading cell data returned error: %d", err)); |
|
540 } |
|
541 else |
|
542 { |
|
543 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::LocateBitmapArrayHeapCellDataLC() - not enough data -> KErrCorrupt")); |
|
544 err = KErrCorrupt; |
|
545 } |
|
546 } |
|
547 // |
|
548 if ( cellData == NULL ) |
|
549 { |
|
550 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::LocateBitmapArrayHeapCellDataLC() - END - didn't find cell data => KErrNotFound")); |
|
551 err = KErrNotFound; |
|
552 } |
|
553 User::LeaveIfError( err ); |
|
554 // |
|
555 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::LocateBitmapArrayHeapCellDataLC() - END - ok! - got %d bytes", cellData->Length() ) ); |
|
556 return cellData; |
|
557 } |
|
558 |
|
559 |
|
560 void CMemSpyEngineHelperFbServ::ParseCellDataAndExtractHandlesL( const TDesC8& aData, RArray<TInt>& aHandles, TInt aArrayEntryCount ) |
|
561 { |
|
562 aHandles.Reset(); |
|
563 |
|
564 // Create read stream |
|
565 RDesReadStream stream( aData ); |
|
566 CleanupClosePushL( stream ); |
|
567 |
|
568 for( TInt i=0; i<aArrayEntryCount; i++ ) |
|
569 { |
|
570 const TInt handle = stream.ReadInt32L(); |
|
571 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::ParseCellDataAndExtractHandlesL() - handle[%4d] = 0x%08x", i, handle)); |
|
572 aHandles.AppendL( handle ); |
|
573 } |
|
574 |
|
575 // Tidy up |
|
576 CleanupStack::PopAndDestroy( &stream ); |
|
577 } |
|
578 |
|
579 |
|
580 TBool CMemSpyEngineHelperFbServ::VerifyCorrectHeapCellL( const TDesC8& aData, TAny* aCellAddress, TAny* aPayloadAddress, TUint aHeapStartingAddress, TUint aHeapSize ) |
|
581 { |
|
582 (void) aPayloadAddress; |
|
583 (void) aCellAddress; |
|
584 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::VerifyCorrectHeapCellL() - START - aDataLen: %d, aCellAddress: 0x%08x, aPayloadAddress: 0x%08x, aHeapStartingAddress: 0x%08x, aHeapSize: %d", aData.Length(), aCellAddress, aPayloadAddress, aHeapStartingAddress, aHeapSize )); |
|
585 |
|
586 const TUint KFbServHeapCeilingAddress = aHeapStartingAddress + aHeapSize; |
|
587 |
|
588 // Whether we can use this cell's data... |
|
589 TBool correctCell = EFalse; |
|
590 |
|
591 // We can use certain knowledge of the layout of the cell to work out |
|
592 // if we've found the right one. |
|
593 // |
|
594 // This is fragile because of the font and bitmap server heap layout changes |
|
595 // significantly, then this can break. |
|
596 RDesReadStream reader( aData ); |
|
597 CleanupClosePushL( reader ); |
|
598 |
|
599 // Get vtable address |
|
600 TUint address = reader.ReadUint32L(); |
|
601 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::VerifyCorrectHeapCellL() - suspected vtable: 0x%08x", address)); |
|
602 |
|
603 #ifdef __EPOC32__ |
|
604 TBool isROMAddress = EFalse; |
|
605 TInt err = User::IsRomAddress( isROMAddress, (TAny*) address ); |
|
606 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::VerifyCorrectHeapCellL() - vtable (0x%08x) is in ROM: %d (error: %d)", address, isROMAddress, err)); |
|
607 User::LeaveIfError( err ); |
|
608 |
|
609 if ( !isROMAddress ) |
|
610 { |
|
611 // Close stream |
|
612 CleanupStack::PopAndDestroy( &reader ); |
|
613 |
|
614 // VTable value should be in the ROM range. |
|
615 correctCell = EFalse; |
|
616 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::VerifyCorrectHeapCellL() - END - suspected CFbTop vTable isn't in ROM address range! - correctCell: %d", correctCell)); |
|
617 return correctCell; |
|
618 } |
|
619 #else |
|
620 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::VerifyCorrectHeapCellL() - skipping vtable: 0x%08x", address)); |
|
621 #endif |
|
622 |
|
623 // First real item is an RFs object instance. We can't check this |
|
624 // very easily because its an embedded object-> We must skip it |
|
625 __ASSERT_ALWAYS( sizeof(RFs) == 4, User::Invariant() ); |
|
626 address = reader.ReadUint32L(); |
|
627 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::VerifyCorrectHeapCellL() - skipping RFs: 0x%08x", address)); |
|
628 |
|
629 // Next object is an address (CFontStore* iFontStore). We can validate this against |
|
630 // the method arguments. |
|
631 address = reader.ReadUint32L(); |
|
632 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::VerifyCorrectHeapCellL() - iFontStore: 0x%08x", address)); |
|
633 |
|
634 if ( address > aHeapStartingAddress && address < KFbServHeapCeilingAddress ) |
|
635 { |
|
636 // Next comes another pointer (CObjectCon* iBitmapCon) |
|
637 address = reader.ReadUint32L(); |
|
638 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::VerifyCorrectHeapCellL() - iBitmapCon: 0x%08x", address)); |
|
639 |
|
640 if ( address > aHeapStartingAddress && address < KFbServHeapCeilingAddress ) |
|
641 { |
|
642 // Next another pointer (CObjectCon* iFontCon) |
|
643 address = reader.ReadUint32L(); |
|
644 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::VerifyCorrectHeapCellL() - iFontCon: 0x%08x", address)); |
|
645 |
|
646 if ( address > aHeapStartingAddress && address < KFbServHeapCeilingAddress ) |
|
647 { |
|
648 // And finally, yet another pointer (RHeap* iHeap) |
|
649 address = reader.ReadUint32L(); |
|
650 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::VerifyCorrectHeapCellL() - iHeap: 0x%08x", address)); |
|
651 |
|
652 if ( address > aHeapStartingAddress && address < KFbServHeapCeilingAddress ) |
|
653 { |
|
654 // That'll do. |
|
655 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::VerifyCorrectHeapCellL() - data seems okay!")); |
|
656 correctCell = ETrue; |
|
657 } |
|
658 } |
|
659 } |
|
660 } |
|
661 |
|
662 CleanupStack::PopAndDestroy( &reader ); |
|
663 // |
|
664 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::VerifyCorrectHeapCellL() - END - correctCell: %d", correctCell)); |
|
665 return correctCell; |
|
666 } |
|
667 |
|
668 |
|
669 TUint CMemSpyEngineHelperFbServ::OffsetToCObjectConBitmapCon() |
|
670 { |
|
671 TUint ret = 0; |
|
672 |
|
673 // VTable |
|
674 ret += 4; |
|
675 |
|
676 // RFs |
|
677 ret += sizeof(RFs); |
|
678 |
|
679 // CFontStore* iFontStore; |
|
680 ret += sizeof(CBase*); // best effort |
|
681 |
|
682 return ret; |
|
683 } |
|
684 |
|
685 |
|
686 TUint CMemSpyEngineHelperFbServ::OffsetToCObjectConFontCon() |
|
687 { |
|
688 TUint ret = OffsetToCObjectConBitmapCon(); |
|
689 |
|
690 // CObjectCon* iBitmapCon; |
|
691 ret += sizeof(CObjectCon*); |
|
692 |
|
693 return ret; |
|
694 } |
|
695 |
|
696 |
|
697 TUint CMemSpyEngineHelperFbServ::OffsetToBitmapHandleArray() |
|
698 { |
|
699 TUint ret = OffsetToCObjectConFontCon(); |
|
700 |
|
701 // CObjectConIx* iConIx; |
|
702 ret += sizeof(CObjectConIx*); |
|
703 |
|
704 // RHeap* iHeap; |
|
705 ret += sizeof(RHeap*); |
|
706 |
|
707 // RChunk iChunk |
|
708 ret += sizeof(RChunk); |
|
709 |
|
710 // RChunk iLargeBitmapChunk |
|
711 ret += sizeof(RChunk); |
|
712 |
|
713 // RMutex iLargeBitmapAccess |
|
714 ret += sizeof(RMutex); |
|
715 |
|
716 // CChunkPile* iPile; |
|
717 ret += sizeof(CBase*); // best effort |
|
718 |
|
719 // RPointerArray<HBufC> iFontNameAlias; |
|
720 ret += sizeof(RPointerArray<HBufC>); |
|
721 |
|
722 return ret; |
|
723 } |
|
724 |
|
725 |
|
726 CMemSpyEngineHelperFbServ::CBitmapObject* CMemSpyEngineHelperFbServ::GetBitmapObjectLC( TAny* aCellAddress ) |
|
727 { |
|
728 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetBitmapObjectLC() - START - aCellAddress: 0x%08x", aCellAddress )); |
|
729 |
|
730 // What we will return |
|
731 CBitmapObject* object = new(ELeave) CBitmapObject(); |
|
732 CleanupStack::PushL( object ); |
|
733 |
|
734 // The data we will read |
|
735 HBufC8* cellData = NULL; |
|
736 |
|
737 // Try to get info about real cell |
|
738 TMemSpyDriverCellType cellType; |
|
739 TInt cellLength; |
|
740 TInt cellNestingLevel; |
|
741 TInt cellAllocationNumber; |
|
742 TInt cellHeaderSize; |
|
743 TAny* cellPayloadAddress; |
|
744 |
|
745 // NOTE: this call may change the value of 'cellAddress' |
|
746 TInt err = iEngine.Driver().WalkHeapGetCellInfo( aCellAddress, cellType, cellLength, cellNestingLevel, cellAllocationNumber, cellHeaderSize, cellPayloadAddress ); |
|
747 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetBitmapObjectLC() - err: %d, cellAddress: 0x%08x, cellLength: %d, cellAllocationNumber: %d, cellType: %d", err, aCellAddress, cellLength, cellAllocationNumber, cellType)); |
|
748 |
|
749 if ( err == KErrNone && cellType == EMemSpyDriverGoodAllocatedCell ) |
|
750 { |
|
751 // Check that the cell size meets our expectations - it should be a CBitmapObject, but without the additional "this" pointer |
|
752 // which we have tacked onto the object. |
|
753 const TInt expectedCellSize = sizeof( CBitmapObject ) + cellHeaderSize - sizeof( CBitmapObject* ); |
|
754 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetBitmapObjectLC() - expectedCellSize: %d, actual: %d, address: 0x%08x", expectedCellSize, cellLength, aCellAddress)); |
|
755 |
|
756 if ( expectedCellSize <= cellLength ) |
|
757 { |
|
758 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetBitmapObjectLC() - cell lengths are good, trying to get cell data...")); |
|
759 |
|
760 // Try to get real cell data |
|
761 cellData = HBufC8::NewLC( cellLength ); |
|
762 TPtr8 pData( cellData->Des() ); |
|
763 // |
|
764 err = iEngine.Driver().WalkHeapReadCellData( aCellAddress, pData, cellLength ); |
|
765 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetBitmapObjectLC() - reading cell data returned error: %d", err)); |
|
766 } |
|
767 else |
|
768 { |
|
769 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetBitmapObjectLC() - not enough data -> KErrCorrupt")); |
|
770 err = KErrCorrupt; |
|
771 } |
|
772 } |
|
773 else |
|
774 { |
|
775 User::Leave( KErrNotFound ); |
|
776 } |
|
777 |
|
778 RDesReadStream stream( *cellData ); |
|
779 CleanupClosePushL( stream ); |
|
780 |
|
781 // Read vtable |
|
782 const TUint32 vTable = stream.ReadUint32L(); |
|
783 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetBitmapObjectLC() - actual vTable: 0x%08x", vTable )); |
|
784 TBool isROMAddress = EFalse; |
|
785 err = User::IsRomAddress( isROMAddress, (TAny*) vTable ); |
|
786 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetBitmapObjectLC() - vtable (0x%08x) is in ROM: %d (error: %d)", vTable, isROMAddress, err)); |
|
787 User::LeaveIfError( err ); |
|
788 |
|
789 // Skip CObject members |
|
790 (void) stream.ReadL( sizeof( CObject ) ); // skip this much |
|
791 object->iThisPointer = reinterpret_cast< CBitmapObject* >( cellPayloadAddress );; |
|
792 object->iTop = reinterpret_cast< CBase* >( stream.ReadUint32L() ); |
|
793 object->iAddressPointer = reinterpret_cast< CBitwiseBitmap* >( stream.ReadUint32L() ); |
|
794 object->iHandle = stream.ReadInt32L(); |
|
795 object->iCleanBitmap = reinterpret_cast< CBitmapObject* >( stream.ReadUint32L() ); |
|
796 |
|
797 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetBitmapObjectLC() - object->iThisPointer: 0x%08x", object->iThisPointer )); |
|
798 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetBitmapObjectLC() - object->iTop: 0x%08x", object->iTop )); |
|
799 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetBitmapObjectLC() - object->iAddressPointer: 0x%08x", object->iAddressPointer )); |
|
800 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetBitmapObjectLC() - object->iHandle: 0x%08x", object->iHandle )); |
|
801 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetBitmapObjectLC() - object->iCleanBitmap: 0x%08x", object->iCleanBitmap )); |
|
802 |
|
803 // Clean up - don't need this data anymore. Real data is in another cell |
|
804 CleanupStack::PopAndDestroy( 2, cellData ); // stream & cellData |
|
805 |
|
806 TRACE( RDebug::Printf("CMemSpyEngineHelperFbServ::GetBitmapObjectLC() - END - aCellAddress: 0x%08x", aCellAddress )); |
|
807 return object; |
|
808 } |
|
809 |
|
810 |
|
811 |
|
812 |
|
813 |
|
814 |
|
815 |
|
816 |
|
817 |
|
818 |
|
819 |
|
820 |
|
821 |
|
822 |
|
823 |
|
824 |
|
825 |
|
826 |
|
827 |
|
828 |
|
829 |
|
830 |
|
831 |
|
832 |
|
833 |
|
834 |
|
835 |
|
836 CMemSpyEngineFbServBitmapArray::CMemSpyEngineFbServBitmapArray( const RArray<TInt>& aBitmapHandles ) |
|
837 : CActive( CActive::EPriorityIdle ), iBitmapHandles( aBitmapHandles ), iGranularity( 0 ) |
|
838 { |
|
839 CActiveScheduler::Add( this ); |
|
840 } |
|
841 |
|
842 |
|
843 CMemSpyEngineFbServBitmapArray::CMemSpyEngineFbServBitmapArray( TInt aPriority, const RArray<TInt>& aBitmapHandles, MMemSpyEngineFbSerbBitmapArrayObserver& aObserver, TInt aGranularity ) |
|
844 : CActive( aPriority ), iBitmapHandles( aBitmapHandles ), iObserver( &aObserver ), iGranularity( aGranularity ) |
|
845 { |
|
846 CActiveScheduler::Add( this ); |
|
847 CompleteSelf(); |
|
848 } |
|
849 |
|
850 |
|
851 EXPORT_C CMemSpyEngineFbServBitmapArray::~CMemSpyEngineFbServBitmapArray() |
|
852 { |
|
853 Cancel(); |
|
854 // |
|
855 iBitmaps.ResetAndDestroy(); |
|
856 iBitmaps.Close(); |
|
857 } |
|
858 |
|
859 |
|
860 void CMemSpyEngineFbServBitmapArray::ConstructL() |
|
861 { |
|
862 if ( !IsActive() ) |
|
863 { |
|
864 // Sync construction... |
|
865 const TInt count = iBitmapHandles.Count(); |
|
866 for(TInt i=0; i<count; i++ ) |
|
867 { |
|
868 const TInt handle = iBitmapHandles[ i ]; |
|
869 // |
|
870 TRAP_IGNORE( CreateBitmapL( handle ) ); |
|
871 } |
|
872 |
|
873 SortBySizeL(); |
|
874 } |
|
875 } |
|
876 |
|
877 |
|
878 EXPORT_C CMemSpyEngineFbServBitmapArray* CMemSpyEngineFbServBitmapArray::NewL( const RArray<TInt>& aBitmapHandles ) |
|
879 { |
|
880 CMemSpyEngineFbServBitmapArray* self = new(ELeave) CMemSpyEngineFbServBitmapArray( aBitmapHandles ); |
|
881 CleanupStack::PushL( self ); |
|
882 self->ConstructL(); |
|
883 CleanupStack::Pop( self ); |
|
884 return self; |
|
885 } |
|
886 |
|
887 |
|
888 EXPORT_C CMemSpyEngineFbServBitmapArray* CMemSpyEngineFbServBitmapArray::NewL( TInt aPriority, const RArray<TInt>& aBitmapHandles, MMemSpyEngineFbSerbBitmapArrayObserver& aObserver, TInt aGranularity ) |
|
889 { |
|
890 CMemSpyEngineFbServBitmapArray* self = new(ELeave) CMemSpyEngineFbServBitmapArray( aPriority, aBitmapHandles, aObserver, aGranularity ); |
|
891 CleanupStack::PushL( self ); |
|
892 self->ConstructL(); |
|
893 CleanupStack::Pop( self ); |
|
894 return self; |
|
895 } |
|
896 |
|
897 |
|
898 EXPORT_C TInt CMemSpyEngineFbServBitmapArray::Count() const |
|
899 { |
|
900 return iBitmaps.Count(); |
|
901 } |
|
902 |
|
903 |
|
904 EXPORT_C CMemSpyEngineFbServBitmap& CMemSpyEngineFbServBitmapArray::At( TInt aIndex ) |
|
905 { |
|
906 return *iBitmaps[ aIndex ]; |
|
907 } |
|
908 |
|
909 |
|
910 EXPORT_C const CMemSpyEngineFbServBitmap& CMemSpyEngineFbServBitmapArray::At( TInt aIndex ) const |
|
911 { |
|
912 return *iBitmaps[ aIndex ]; |
|
913 } |
|
914 |
|
915 |
|
916 EXPORT_C CMemSpyEngineFbServBitmap& CMemSpyEngineFbServBitmapArray::BitmapByHandleL( TInt aHandle ) |
|
917 { |
|
918 const TInt index = BitmapIndexByHandle( aHandle ); |
|
919 User::LeaveIfError( index ); |
|
920 CMemSpyEngineFbServBitmap& ret = At( index ); |
|
921 return ret; |
|
922 } |
|
923 |
|
924 |
|
925 EXPORT_C TInt CMemSpyEngineFbServBitmapArray::BitmapIndexByHandle( TInt aHandle ) const |
|
926 { |
|
927 TInt ret = KErrNotFound; |
|
928 // |
|
929 const TInt count = Count(); |
|
930 for( TInt i=0; i<count; i++ ) |
|
931 { |
|
932 const CMemSpyEngineFbServBitmap& bitmap = At( i ); |
|
933 // |
|
934 if ( bitmap.Handle() == aHandle ) |
|
935 { |
|
936 ret = i; |
|
937 break; |
|
938 } |
|
939 } |
|
940 // |
|
941 return ret; |
|
942 } |
|
943 |
|
944 |
|
945 EXPORT_C TInt CMemSpyEngineFbServBitmapArray::MdcaCount() const |
|
946 { |
|
947 return Count(); |
|
948 } |
|
949 |
|
950 |
|
951 EXPORT_C TPtrC CMemSpyEngineFbServBitmapArray::MdcaPoint( TInt aIndex ) const |
|
952 { |
|
953 const CMemSpyEngineFbServBitmap& bitmap = At( aIndex ); |
|
954 return TPtrC( bitmap.Caption() ); |
|
955 } |
|
956 |
|
957 |
|
958 void CMemSpyEngineFbServBitmapArray::RunL() |
|
959 { |
|
960 const TInt bitmapHandleCount = iBitmapHandles.Count(); |
|
961 const TInt endIndex = Min( iIndex + iGranularity, bitmapHandleCount ); |
|
962 // |
|
963 for( ; iIndex < endIndex; iIndex++ ) |
|
964 { |
|
965 const TInt handle = iBitmapHandles[ iIndex ]; |
|
966 // |
|
967 TRAP_IGNORE( CreateBitmapL( handle ) ); |
|
968 } |
|
969 |
|
970 // Report progress & queue for next iteration |
|
971 MMemSpyEngineFbSerbBitmapArrayObserver::TEvent event = MMemSpyEngineFbSerbBitmapArrayObserver::EBitmapArrayConstructionComplete; |
|
972 if ( endIndex < bitmapHandleCount ) |
|
973 { |
|
974 CompleteSelf(); |
|
975 event = MMemSpyEngineFbSerbBitmapArrayObserver::EBitmapItemsCreated; |
|
976 } |
|
977 else |
|
978 { |
|
979 SortBySizeL(); |
|
980 } |
|
981 |
|
982 if ( iObserver ) |
|
983 { |
|
984 iObserver->HandleFbServBitmapArrayEventL( event ); |
|
985 } |
|
986 } |
|
987 |
|
988 |
|
989 void CMemSpyEngineFbServBitmapArray::DoCancel() |
|
990 { |
|
991 // Nothing to do |
|
992 } |
|
993 |
|
994 |
|
995 TInt CMemSpyEngineFbServBitmapArray::RunError( TInt /*aError*/ ) |
|
996 { |
|
997 return KErrNone; |
|
998 } |
|
999 |
|
1000 |
|
1001 void CMemSpyEngineFbServBitmapArray::CompleteSelf() |
|
1002 { |
|
1003 TRequestStatus* status = &iStatus; |
|
1004 User::RequestComplete( status, KErrNone ); |
|
1005 SetActive(); |
|
1006 } |
|
1007 |
|
1008 |
|
1009 void CMemSpyEngineFbServBitmapArray::CreateBitmapL( TInt aHandle ) |
|
1010 { |
|
1011 CMemSpyEngineFbServBitmap* bitmap = CMemSpyEngineFbServBitmap::NewLC( aHandle ); |
|
1012 iBitmaps.AppendL( bitmap ); |
|
1013 CleanupStack::Pop( bitmap ); |
|
1014 } |
|
1015 |
|
1016 |
|
1017 void CMemSpyEngineFbServBitmapArray::SortBySizeL() |
|
1018 { |
|
1019 TLinearOrder< CMemSpyEngineFbServBitmap > comparer( CompareBySize ); |
|
1020 iBitmaps.Sort( comparer ); |
|
1021 } |
|
1022 |
|
1023 |
|
1024 TInt CMemSpyEngineFbServBitmapArray::CompareBySize( const CMemSpyEngineFbServBitmap& aLeft, const CMemSpyEngineFbServBitmap& aRight ) |
|
1025 { |
|
1026 TInt ret = 1; |
|
1027 // |
|
1028 if ( aLeft.BitmapSizeInBytes() > aRight.BitmapSizeInBytes() ) |
|
1029 { |
|
1030 ret = -1; |
|
1031 } |
|
1032 else if ( aLeft.BitmapSizeInBytes() == aRight.BitmapSizeInBytes() ) |
|
1033 { |
|
1034 ret = 0; |
|
1035 } |
|
1036 // |
|
1037 return ret; |
|
1038 } |
|
1039 |
|
1040 |
|
1041 |
|
1042 |
|
1043 |
|
1044 |
|
1045 |
|
1046 |
|
1047 |
|
1048 |
|
1049 |
|
1050 |
|
1051 |
|
1052 |
|
1053 |
|
1054 |
|
1055 |
|
1056 |
|
1057 |
|
1058 |
|
1059 |
|
1060 |
|
1061 CMemSpyEngineFbServBitmap::CMemSpyEngineFbServBitmap() |
|
1062 : CDesCArrayFlat( 5 ) |
|
1063 { |
|
1064 } |
|
1065 |
|
1066 |
|
1067 EXPORT_C CMemSpyEngineFbServBitmap::~CMemSpyEngineFbServBitmap() |
|
1068 { |
|
1069 delete iBitmap; |
|
1070 delete iCaption; |
|
1071 } |
|
1072 |
|
1073 |
|
1074 void CMemSpyEngineFbServBitmap::ConstructL( TInt aHandle ) |
|
1075 { |
|
1076 iBitmap = new(ELeave) CFbsBitmap(); |
|
1077 const TInt error = iBitmap->Duplicate( aHandle ); |
|
1078 User::LeaveIfError( error ); |
|
1079 const SEpocBitmapHeader header( iBitmap->Header() ); |
|
1080 |
|
1081 // Prepare caption |
|
1082 _LIT( KCaptionFormat, "\t%2d bpp, %S\t\t%4d x %4d pixels" ); |
|
1083 iCaption = HBufC::NewL( 128 ); |
|
1084 TPtr pCaption( iCaption->Des() ); |
|
1085 |
|
1086 // Create size string |
|
1087 const TMemSpySizeText size( MemSpyEngineUtils::FormatSizeText( header.iBitmapSize ) ); |
|
1088 pCaption.AppendFormat( KCaptionFormat, header.iBitsPerPixel, &size, header.iSizeInPixels.iWidth, header.iSizeInPixels.iHeight ); |
|
1089 |
|
1090 // Prepare items |
|
1091 PrepareItemsL(); |
|
1092 } |
|
1093 |
|
1094 |
|
1095 EXPORT_C CMemSpyEngineFbServBitmap* CMemSpyEngineFbServBitmap::NewLC( TInt aHandle ) |
|
1096 { |
|
1097 CMemSpyEngineFbServBitmap* self = new(ELeave) CMemSpyEngineFbServBitmap(); |
|
1098 CleanupStack::PushL( self ); |
|
1099 self->ConstructL( aHandle ); |
|
1100 return self; |
|
1101 } |
|
1102 |
|
1103 |
|
1104 TInt CMemSpyEngineFbServBitmap::BitmapSizeInBytes() const |
|
1105 { |
|
1106 const SEpocBitmapHeader header( iBitmap->Header() ); |
|
1107 return header.iBitmapSize; |
|
1108 } |
|
1109 |
|
1110 |
|
1111 EXPORT_C const TDesC& CMemSpyEngineFbServBitmap::Caption() const |
|
1112 { |
|
1113 return *iCaption; |
|
1114 } |
|
1115 |
|
1116 |
|
1117 EXPORT_C CFbsBitmap& CMemSpyEngineFbServBitmap::Bitmap() |
|
1118 { |
|
1119 return *iBitmap; |
|
1120 } |
|
1121 |
|
1122 |
|
1123 EXPORT_C const CFbsBitmap& CMemSpyEngineFbServBitmap::Bitmap() const |
|
1124 { |
|
1125 return *iBitmap; |
|
1126 } |
|
1127 |
|
1128 |
|
1129 EXPORT_C TInt CMemSpyEngineFbServBitmap::Handle() const |
|
1130 { |
|
1131 return iBitmap->Handle(); |
|
1132 } |
|
1133 |
|
1134 |
|
1135 EXPORT_C void CMemSpyEngineFbServBitmap::OutputDataL( CMemSpyEngine& aEngine ) const |
|
1136 { |
|
1137 const SEpocBitmapHeader header( iBitmap->Header() ); |
|
1138 // |
|
1139 _LIT(KMemSpyFBServHex, "0x%08x"); |
|
1140 _LIT(KMemSpyFBServDecimal, "%d"); |
|
1141 // |
|
1142 HBufC* columns = HBufC::NewLC( 1024 ); |
|
1143 TPtr pColumns( columns->Des() ); |
|
1144 // |
|
1145 pColumns.AppendFormat( KMemSpyFBServHex, Handle() ); |
|
1146 pColumns.Append( KMemSpyEngineFBServComma ); |
|
1147 // |
|
1148 pColumns.AppendFormat( KMemSpyFBServDecimal, header.iBitmapSize ); |
|
1149 pColumns.Append( KMemSpyEngineFBServComma ); |
|
1150 // |
|
1151 pColumns.AppendFormat( KMemSpyFBServDecimal, header.iSizeInPixels.iWidth ); |
|
1152 pColumns.Append( KMemSpyEngineFBServComma ); |
|
1153 // |
|
1154 pColumns.AppendFormat( KMemSpyFBServDecimal, header.iSizeInPixels.iHeight ); |
|
1155 pColumns.Append( KMemSpyEngineFBServComma ); |
|
1156 // |
|
1157 pColumns.AppendFormat( KMemSpyFBServDecimal, header.iBitsPerPixel ); |
|
1158 pColumns.Append( KMemSpyEngineFBServComma ); |
|
1159 // |
|
1160 pColumns.AppendFormat( KMemSpyFBServDecimal, header.iColor ); |
|
1161 pColumns.Append( KMemSpyEngineFBServComma ); |
|
1162 // |
|
1163 TBuf<24> fileCompressionType; |
|
1164 GetFileCompressionTypeAsString( header.iCompression, fileCompressionType ); |
|
1165 pColumns.Append( fileCompressionType ); |
|
1166 pColumns.Append( KMemSpyEngineFBServComma ); |
|
1167 // |
|
1168 GetExportableFileNameL( pColumns ); |
|
1169 // |
|
1170 aEngine.Sink().OutputLineL( pColumns ); |
|
1171 CleanupStack::PopAndDestroy( columns ); |
|
1172 } |
|
1173 |
|
1174 |
|
1175 EXPORT_C void CMemSpyEngineFbServBitmap::OutputDataColumnsL( CMemSpyEngine& aEngine ) |
|
1176 { |
|
1177 HBufC* columns = HBufC::NewLC( 1024 ); |
|
1178 TPtr pColumns( columns->Des() ); |
|
1179 // |
|
1180 _LIT(KCol1, "Handle"); |
|
1181 pColumns.Append( KCol1 ); |
|
1182 pColumns.Append( KMemSpyEngineFBServComma ); |
|
1183 // |
|
1184 _LIT(KCol2, "Uncompressed Size (Bytes)"); |
|
1185 pColumns.Append( KCol2 ); |
|
1186 pColumns.Append( KMemSpyEngineFBServComma ); |
|
1187 // |
|
1188 _LIT(KCol3, "Width"); |
|
1189 pColumns.Append( KCol3 ); |
|
1190 pColumns.Append( KMemSpyEngineFBServComma ); |
|
1191 // |
|
1192 _LIT(KCol4, "Height"); |
|
1193 pColumns.Append( KCol4 ); |
|
1194 pColumns.Append( KMemSpyEngineFBServComma ); |
|
1195 // |
|
1196 _LIT(KCol5, "BPP"); |
|
1197 pColumns.Append( KCol5 ); |
|
1198 pColumns.Append( KMemSpyEngineFBServComma ); |
|
1199 // |
|
1200 _LIT(KCol6, "Color"); |
|
1201 pColumns.Append( KCol6 ); |
|
1202 pColumns.Append( KMemSpyEngineFBServComma ); |
|
1203 // |
|
1204 _LIT(KCol7, "Compression"); |
|
1205 pColumns.Append( KCol7 ); |
|
1206 pColumns.Append( KMemSpyEngineFBServComma ); |
|
1207 // |
|
1208 _LIT(KCol8, "File Name"); |
|
1209 pColumns.Append( KCol8 ); |
|
1210 // |
|
1211 aEngine.Sink().OutputLineL( pColumns ); |
|
1212 CleanupStack::PopAndDestroy( columns ); |
|
1213 } |
|
1214 |
|
1215 |
|
1216 EXPORT_C void CMemSpyEngineFbServBitmap::GetExportableFileNameL( TDes& aAppendName ) const |
|
1217 { |
|
1218 const SEpocBitmapHeader header( iBitmap->Header() ); |
|
1219 |
|
1220 // Create a filename |
|
1221 aAppendName.AppendFormat( KMemSpyEngineFBServExportFileName, Handle(), header.iBitsPerPixel, header.iSizeInPixels.iWidth, header.iSizeInPixels.iHeight ); |
|
1222 } |
|
1223 |
|
1224 |
|
1225 void CMemSpyEngineFbServBitmap::GetExportableFileNameL( const TMemSpyEngineFBServBitmapInfo& aInfo, TDes& aAppendName ) |
|
1226 { |
|
1227 aAppendName.AppendFormat( KMemSpyEngineFBServExportFileName, aInfo.iHandle, aInfo.iBitsPerPixel, aInfo.iSizeInPixels.iWidth, aInfo.iSizeInPixels.iHeight ); |
|
1228 } |
|
1229 |
|
1230 |
|
1231 void CMemSpyEngineFbServBitmap::PrepareItemsL() |
|
1232 { |
|
1233 const SEpocBitmapHeader header( iBitmap->Header() ); |
|
1234 TBuf<256> item; |
|
1235 |
|
1236 // View bitmap (ugly, but needed by UI) |
|
1237 _LIT(KCaptionMinus2, "\tView Bitmap\t\t"); |
|
1238 AppendL( KCaptionMinus2 ); |
|
1239 |
|
1240 // Dimensions |
|
1241 _LIT(KCaptionMinus1, "\tDimensions\t\t%5d x %5d"); |
|
1242 item.Format( KCaptionMinus1, header.iSizeInPixels.iWidth, header.iSizeInPixels.iHeight ); |
|
1243 AppendL( item ); |
|
1244 |
|
1245 // Handle |
|
1246 _LIT(KCaption0, "\tHandle\t\t0x%08x"); |
|
1247 item.Format( KCaption0, iBitmap->Handle() ); |
|
1248 AppendL( item ); |
|
1249 |
|
1250 // In Rom? |
|
1251 _LIT(KCaption1, "\tIn ROM?\t\t%S"); |
|
1252 _LIT(KIsRomBitmap, "Yes"); |
|
1253 _LIT(KNotRomBitmap, "No"); |
|
1254 if ( iBitmap->IsRomBitmap() ) |
|
1255 { |
|
1256 item.Format( KCaption1, &KIsRomBitmap ); |
|
1257 } |
|
1258 else |
|
1259 { |
|
1260 item.Format( KCaption1, &KNotRomBitmap ); |
|
1261 } |
|
1262 AppendL( item ); |
|
1263 |
|
1264 // Bits per pixel |
|
1265 _LIT(KCaption2, "\tBits Per Pixel\t\t%2d"); |
|
1266 item.Format( KCaption2, header.iBitsPerPixel ); |
|
1267 AppendL( item ); |
|
1268 |
|
1269 // Size of uncompressed bitmap data |
|
1270 _LIT(KCaption3, "\tUncompressed data size\t\t%S"); |
|
1271 const TMemSpySizeText sizeStringUncompressed( MemSpyEngineUtils::FormatSizeText( header.iBitmapSize ) ); |
|
1272 item.Format( KCaption3, &sizeStringUncompressed ); |
|
1273 AppendL( item ); |
|
1274 |
|
1275 // Palette entry count |
|
1276 _LIT(KCaption4, "\tNumber of palette entries\t\t%d"); |
|
1277 item.Format( KCaption4, header.iPaletteEntries ); |
|
1278 AppendL( item ); |
|
1279 |
|
1280 // Colour |
|
1281 _LIT(KCaption5, "\tColour\t\t%d"); |
|
1282 item.Format( KCaption5, header.iColor); |
|
1283 AppendL( item ); |
|
1284 |
|
1285 // Palette entry count |
|
1286 _LIT(KCaption6, "\tFile compression type\t\t%S"); |
|
1287 TBuf<24> fileCompressionType; |
|
1288 GetFileCompressionTypeAsString( header.iCompression, fileCompressionType ); |
|
1289 item.Format( KCaption6, &fileCompressionType ); |
|
1290 AppendL( item ); |
|
1291 } |
|
1292 |
|
1293 |
|
1294 void CMemSpyEngineFbServBitmap::GetFileCompressionTypeAsString( TBitmapfileCompression aType, TDes& aString ) |
|
1295 { |
|
1296 _LIT(KUnknown, "Unknown"); |
|
1297 _LIT(KNoCompression, "None"); |
|
1298 _LIT(KRLE, "RLE"); |
|
1299 _LIT(KTwelveBitRLE, "12-bit RLE"); |
|
1300 _LIT(KSixteenBitRLE, "16-bit RLE"); |
|
1301 _LIT(KTwentyFourBitRLE, "24-bit RLE"); |
|
1302 _LIT(KThirtyTwoBitRLE, "32-bit RLE"); |
|
1303 // |
|
1304 switch( aType ) |
|
1305 { |
|
1306 case ENoBitmapCompression: |
|
1307 aString = KNoCompression; |
|
1308 break; |
|
1309 case EByteRLECompression: |
|
1310 aString = KRLE; |
|
1311 break; |
|
1312 case ETwelveBitRLECompression: |
|
1313 aString = KTwelveBitRLE; |
|
1314 break; |
|
1315 case ESixteenBitRLECompression: |
|
1316 aString = KSixteenBitRLE; |
|
1317 break; |
|
1318 case ETwentyFourBitRLECompression: |
|
1319 aString = KTwentyFourBitRLE; |
|
1320 break; |
|
1321 case EThirtyTwoUBitRLECompression: |
|
1322 aString = KThirtyTwoBitRLE; |
|
1323 break; |
|
1324 default: |
|
1325 case ERLECompressionLast: |
|
1326 aString = KUnknown; |
|
1327 break; |
|
1328 } |
|
1329 } |
|
1330 |
|
1331 |
|
1332 |
|
1333 |
|
1334 |
|
1335 |
|
1336 |
|
1337 |