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1 // Copyright (c) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). |
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2 // All rights reserved. |
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3 // This component and the accompanying materials are made available |
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4 // under the terms of "Eclipse Public License v1.0" |
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5 // which accompanies this distribution, and is available |
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6 // at the URL "http://www.eclipse.org/legal/epl-v10.html". |
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7 // |
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8 // Initial Contributors: |
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9 // Nokia Corporation - initial contribution. |
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10 // |
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11 // Contributors: |
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12 // |
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13 // Description: |
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14 // |
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15 |
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16 /** |
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17 * @file |
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18 */ |
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19 |
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20 #include <e32std.h> |
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21 #include <imageconversion.h> |
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22 #include "surfaceutility.h" |
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23 #include <BitmapTransforms.h> |
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24 |
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25 //_LIT(KFileName,"surfacemanager"); |
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26 |
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27 CSurfaceUtility::CSurfaceUtility(CSurfaceUtility* aClone/*=NULL*/) |
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28 : iSurfaces(aClone?&(aClone->iSurfaces):NULL) |
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29 { |
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30 } |
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31 |
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32 CSurfaceUtility* CSurfaceUtility::NewL(CSurfaceUtility* aClone/*=NULL*/) |
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33 { |
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34 CSurfaceUtility* utility = new (ELeave)CSurfaceUtility(aClone); |
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35 CleanupStack::PushL(utility); |
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36 utility->ConstructL(); |
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37 CleanupStack::Pop(utility); |
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38 return utility; |
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39 } |
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40 |
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41 void CSurfaceUtility::ConstructL() |
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42 { |
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43 TInt r = iManager.Open(); |
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44 if (r != KErrNone) |
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45 { |
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46 LOG(("Surface manager failed to open: %d", r)); |
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47 User::Leave(r); |
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48 } |
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49 |
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50 r = iSurfaceUpdateSession.Connect(); |
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51 if (r != KErrNone) |
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52 { |
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53 LOG(("Failed to connect to update server: %d", r)); |
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54 User::Leave(r); |
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55 } |
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56 } |
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57 |
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58 CSurfaceUtility::~CSurfaceUtility() |
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59 { |
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60 DestroyAll(); |
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61 |
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62 iSurfaces.Close(); |
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63 |
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64 iManager.Close(); |
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65 |
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66 iSurfaceUpdateSession.Close(); |
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67 |
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68 // the following call is needed because of a bug in CImageDecoder that |
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69 // leaks heap memory |
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70 REComSession::FinalClose(); |
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71 } |
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72 |
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73 TBool CSurfaceUtility::DestroyAll() |
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74 { |
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75 TInt err = KErrNone; |
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76 TInt jj = iSurfaces.Count() - 1; |
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77 if (jj<0) |
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78 return EFalse; |
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79 for (; jj >= 0; jj--) |
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80 { |
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81 err = iManager.CloseSurface(iSurfaces[jj]); |
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82 if (err!=KErrNone) |
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83 { |
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84 LOG(("Error closing surface: 0x%X\n", err)); |
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85 } |
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86 } |
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87 iSurfaces.Reset(); |
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88 return ETrue; |
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89 } |
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90 |
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91 /*************************************** |
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92 * The aim of the THeapSurfaceArray is to locally switch in the specified heap for any array operation |
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93 ***************************************/ |
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94 |
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95 CSurfaceUtility::RHeapSurfaceArray::RHeapSurfaceArray(RHeapSurfaceArray* aUseExternalArray) |
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96 : iUseArray(aUseExternalArray?aUseExternalArray->iUseArray:&this->iLocalArray), |
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97 iExternalHeapRef(aUseExternalArray?aUseExternalArray->iExternalHeapRef:User::Heap()) |
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98 { |
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99 |
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100 } |
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101 /************************************ |
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102 * The following methods have been used by the surfaceutility... some require the heap wrapping, and some don't |
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103 * I actually need three different startegies (count em) for 7 methods... |
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104 * Some methods only read the existing objects, so don't need a heap swap at all |
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105 * Leaving methods have to use PopAndDestroy strategy to restore the heap on leaving or success |
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106 * Non-leaving methods must not call PushL, so directly make SwitchHeap calls! |
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107 ************************************/ |
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108 |
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109 // PopAndDestroy method to restore the heap |
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110 /*static*/ void CSurfaceUtility::RHeapSurfaceArray::PopHeap(void* aHeapPtr) |
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111 { |
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112 RHeap* heapPtr=(RHeap*)aHeapPtr; |
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113 User::SwitchHeap(heapPtr); |
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114 } |
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115 |
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116 // Switches and pushes the previous heap so it can be restored with PopAndDestroy |
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117 /*static*/ void CSurfaceUtility::RHeapSurfaceArray::SwitchHeapLC(RHeap* aNewHeap) |
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118 { |
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119 CleanupStack::PushL(TCleanupItem(PopHeap,NULL)); |
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120 CleanupStack::PushL(TCleanupItem(PopHeap,NULL)); |
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121 CleanupStack::PushL(TCleanupItem(PopHeap,NULL)); |
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122 CleanupStack::Pop(3); |
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123 RHeap* oldHeap=User::SwitchHeap(aNewHeap); |
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124 delete new char; |
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125 CleanupStack::PushL(TCleanupItem(PopHeap,oldHeap)); |
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126 } |
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127 |
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128 |
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129 TSurfaceId& CSurfaceUtility::RHeapSurfaceArray::operator[](TUint aIndex) |
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130 { |
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131 return iUseArray->operator[](aIndex); |
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132 } |
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133 // Close only closes the local array, while Reset resets the active array (may be external) |
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134 void CSurfaceUtility::RHeapSurfaceArray::Close() |
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135 { |
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136 RHeap* oldHeap=User::SwitchHeap(&iExternalHeapRef); |
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137 iLocalArray.Close(); |
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138 User::SwitchHeap(oldHeap); |
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139 } |
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140 TInt CSurfaceUtility::RHeapSurfaceArray::Count() const |
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141 { |
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142 return iUseArray->Count(); |
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143 } |
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144 // Close only closes the local array, while Reset resets the active array (may be external) |
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145 inline void CSurfaceUtility::RHeapSurfaceArray::Reset() |
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146 { |
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147 RHeap* oldHeap=User::SwitchHeap(&iExternalHeapRef); |
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148 iUseArray->Reset(); |
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149 User::SwitchHeap(oldHeap); |
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150 } |
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151 void CSurfaceUtility::RHeapSurfaceArray::AppendL(const TSurfaceId &anEntry) |
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152 { |
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153 SwitchHeapLC(&iExternalHeapRef); |
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154 iUseArray->AppendL(anEntry); |
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155 CleanupStack::PopAndDestroy(); |
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156 } |
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157 TInt CSurfaceUtility::RHeapSurfaceArray::Find(const TSurfaceId &anEntry) const |
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158 { |
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159 return iUseArray->Find(anEntry); |
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160 } |
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161 void CSurfaceUtility::RHeapSurfaceArray::Remove(TInt anIndex) |
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162 { |
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163 RHeap* oldHeap=User::SwitchHeap(&iExternalHeapRef); |
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164 iUseArray->Remove(anIndex); |
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165 User::SwitchHeap(oldHeap); |
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166 } |
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167 |
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168 |
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169 |
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170 |
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171 /** |
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172 Cleanup stack helper object, holding references to both utility and surface, so |
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173 that the standard Close() semantics can be used. |
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174 */ |
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175 class TSurfaceCleanup |
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176 { |
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177 public: |
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178 TSurfaceCleanup(CSurfaceUtility& aUtility, TSurfaceId& aSurface) |
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179 : iUtility(aUtility), iSurface(aSurface) |
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180 {} |
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181 void Close() |
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182 { |
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183 // Removes the surface from the list of surfaces to clean up, and closes |
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184 // the surface reference. |
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185 iUtility.DestroySurface(iSurface); |
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186 } |
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187 private: |
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188 CSurfaceUtility& iUtility; |
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189 TSurfaceId& iSurface; |
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190 }; |
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191 |
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192 /** |
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193 Read the given image file into a new surface. |
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194 |
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195 @param aFileName The name of the image file. |
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196 @param aSurface Filled with the surface ID for the surface containing the pixels. |
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197 */ |
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198 void CSurfaceUtility::CreateSurfaceFromFileL(const TDesC& aFileName, TSurfaceId& aSurface) |
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199 { |
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200 RFs fs; |
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201 |
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202 User::LeaveIfError(fs.Connect()); |
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203 CleanupClosePushL(fs); |
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204 CImageDecoder* decoder = CImageDecoder::FileNewL(fs, aFileName, CImageDecoder::EOptionAlwaysThread); |
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205 CleanupStack::PushL(decoder); |
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206 |
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207 const TFrameInfo& info = decoder->FrameInfo(); |
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208 |
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209 TSize size = info.iOverallSizeInPixels; |
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210 TInt stride = size.iWidth << 2; // Default to four bytes per pixel |
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211 TDisplayMode bmpFormat = info.iFrameDisplayMode; |
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212 TUidPixelFormat pixelFormat = EUidPixelFormatUnknown; |
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213 |
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214 switch (bmpFormat) |
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215 { |
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216 case EGray2: |
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217 case EGray4: |
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218 case EGray16: |
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219 case EGray256: |
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220 case EColor16: |
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221 case EColor256: |
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222 case EColor16M: |
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223 case EColor16MU: |
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224 { |
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225 bmpFormat = EColor16MU; |
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226 pixelFormat = EUidPixelFormatXRGB_8888; |
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227 break; |
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228 } |
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229 case EColor4K: |
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230 { |
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231 stride = size.iWidth << 1; |
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232 pixelFormat = EUidPixelFormatXRGB_4444; |
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233 break; |
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234 } |
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235 case EColor64K: |
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236 { |
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237 stride = size.iWidth << 1; |
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238 pixelFormat = EUidPixelFormatRGB_565; |
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239 break; |
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240 } |
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241 case EColor16MA: |
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242 { |
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243 pixelFormat = EUidPixelFormatARGB_8888; |
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244 break; |
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245 } |
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246 case EColor16MAP: |
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247 { |
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248 pixelFormat = EUidPixelFormatARGB_8888_PRE; |
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249 break; |
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250 } |
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251 default: |
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252 { |
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253 LOG(("Unsupported display mode: %d", bmpFormat)); |
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254 User::Leave(KErrNotSupported); |
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255 break; |
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256 } |
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257 } |
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258 |
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259 // Create an intermediary bitmap for decoding into |
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260 CFbsBitmap* bitmap = new (ELeave) CFbsBitmap(); |
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261 CleanupStack::PushL(bitmap); |
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262 User::LeaveIfError(bitmap->Create(size, info.iFrameDisplayMode)); |
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263 |
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264 // Create the final surface. |
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265 aSurface = CreateSurfaceL(size, pixelFormat, stride); |
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266 TSurfaceCleanup surfaceCleanup(*this, aSurface); |
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267 CleanupClosePushL(surfaceCleanup); |
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268 |
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269 RChunk chunk; |
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270 User::LeaveIfError(iManager.MapSurface(aSurface, chunk)); |
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271 CleanupClosePushL(chunk); |
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272 |
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273 // Convert the image file into a Symbian bitmap |
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274 TRequestStatus status; |
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275 decoder->Convert(&status, *bitmap); |
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276 User::WaitForRequest(status); |
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277 User::LeaveIfError(status.Int()); |
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278 |
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279 // Copy the data from the bitmap into the surface. |
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280 TPoint start; |
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281 for (start.iY = 0; start.iY < size.iHeight; start.iY++) |
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282 { |
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283 // Set up a descriptor for the current line in the surface and get pixels. |
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284 TPtr8 ptr(chunk.Base() + start.iY * stride, stride); |
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285 bitmap->GetScanLine(ptr, start, size.iWidth, bmpFormat); |
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286 } |
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287 |
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288 CleanupStack::PopAndDestroy(/* chunk */); |
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289 CleanupStack::Pop(/* surfaceCleanup */); |
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290 CleanupStack::PopAndDestroy(bitmap); |
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291 CleanupStack::PopAndDestroy(decoder); |
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292 CleanupStack::PopAndDestroy(/* fs */); |
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293 } |
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294 |
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295 void CSurfaceUtility::CopyBitmapSurfaceL(const CFbsBitmap* aBitmap, TSurfaceId& aSurface) |
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296 { |
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297 RChunk chunk; |
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298 User::LeaveIfError(iManager.MapSurface(aSurface, chunk)); |
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299 CleanupClosePushL(chunk); |
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300 TSize bitmapSize = aBitmap->SizeInPixels(); |
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301 TSize size = SurfaceSize(aSurface); |
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302 TInt stride = size.iWidth*4; // Default to four bytes per pixel |
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303 |
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304 // Copy the data from the bitmap into the surface. |
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305 TPoint start; |
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306 for (start.iY = 0; start.iY < bitmapSize.iHeight; start.iY++) |
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307 { |
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308 // Set up a descriptor for the current line in the surface and get pixels. |
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309 TPtr8 ptr(chunk.Base() + start.iY * stride, stride); |
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310 aBitmap->GetScanLine(ptr, start, bitmapSize.iWidth, EColor16MU); |
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311 } |
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312 CleanupStack::PopAndDestroy(/* chunk */); |
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313 |
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314 } |
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315 /** |
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316 Copy the bitmap from a file to a surface. |
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317 |
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318 @param aFileName The name of the image file. |
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319 @param aSurface Filled with the surface ID for the surface containing the pixels. |
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320 */ |
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321 void CSurfaceUtility::CopyBitmapFromFileToSurfaceL(const TDesC& aFileName, const TSurfaceId& aSurface) |
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322 { |
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323 RFs fs; |
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324 |
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325 User::LeaveIfError(fs.Connect()); |
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326 CleanupClosePushL(fs); |
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327 CImageDecoder* decoder = CImageDecoder::FileNewL(fs, aFileName, CImageDecoder::EOptionAlwaysThread); |
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328 CleanupStack::PushL(decoder); |
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329 |
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330 const TFrameInfo& info = decoder->FrameInfo(); |
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331 |
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332 TSize size = SurfaceSize(aSurface); |
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333 TDisplayMode bmpFormat = info.iFrameDisplayMode; |
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334 TInt stride = size.iWidth << 2; // Default to four bytes per pixel |
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335 |
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336 // Create an intermediary bitmap for decoding into |
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337 CFbsBitmap* bitmap = new (ELeave) CFbsBitmap(); |
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338 CleanupStack::PushL(bitmap); |
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339 User::LeaveIfError(bitmap->Create(size, info.iFrameDisplayMode)); |
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340 |
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341 RChunk chunk; |
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342 User::LeaveIfError(iManager.MapSurface(aSurface, chunk)); |
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343 CleanupClosePushL(chunk); |
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344 |
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345 // Convert the image file into a Symbian bitmap |
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346 TRequestStatus status; |
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347 decoder->Convert(&status, *bitmap); |
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348 User::WaitForRequest(status); |
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349 User::LeaveIfError(status.Int()); |
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350 |
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351 // Copy the data from the bitmap into the surface. |
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352 TPoint start; |
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353 for (start.iY = 0; start.iY < size.iHeight; start.iY++) |
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354 { |
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355 // Set up a descriptor for the current line in the surface and get pixels. |
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356 TPtr8 ptr(chunk.Base() + start.iY * stride, stride); |
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357 bitmap->GetScanLine(ptr, start, size.iWidth, bmpFormat); |
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358 } |
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359 |
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360 CleanupStack::PopAndDestroy(/* chunk */); |
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361 CleanupStack::PopAndDestroy(bitmap); |
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362 CleanupStack::PopAndDestroy(decoder); |
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363 CleanupStack::PopAndDestroy(/* fs */); |
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364 } |
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365 |
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366 /** |
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367 Copy the bitmap from a file to a surface scaling the original image to cover the entire surface. |
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368 |
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369 @param aFileName The name of the image file. |
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370 @param aSurface Filled with the surface ID for the surface containing the pixels. |
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371 */ |
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372 void CSurfaceUtility::ScaleBitmapFromFileToSurfaceL(const TDesC& aFileName, const TSurfaceId& aSurface) |
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373 { |
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374 |
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375 RFs fs; |
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376 User::LeaveIfError(fs.Connect()); |
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377 CleanupClosePushL(fs); |
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378 CImageDecoder* decoder = CImageDecoder::FileNewL(fs, aFileName, CImageDecoder::EOptionAlwaysThread); |
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379 CleanupStack::PushL(decoder); |
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380 |
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381 const TFrameInfo& info = decoder->FrameInfo(); |
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382 |
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383 TSize size = SurfaceSize(aSurface); |
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384 TInt stride = size.iWidth << 2; // Default to four bytes per pixel |
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385 |
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386 // Create an intermediary bitmap for decoding into |
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387 CFbsBitmap* bitmap = new (ELeave) CFbsBitmap(); |
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388 CleanupStack::PushL(bitmap); |
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389 User::LeaveIfError(bitmap->Create(info.iOverallSizeInPixels, info.iFrameDisplayMode)); |
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390 |
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391 RChunk chunk; |
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392 User::LeaveIfError(iManager.MapSurface(aSurface, chunk)); |
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393 CleanupClosePushL(chunk); |
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394 TUint8* surfacePixelData = chunk.Base() + PixelDataOffet(aSurface); |
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395 |
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396 // Convert the image file into a Symbian bitmap |
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397 // CImageDecoder::EOptionAlwaysThread setting above avoids need for Active Object |
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398 TRequestStatus status; |
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399 decoder->Convert(&status, *bitmap); |
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400 User::WaitForRequest(status); |
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401 User::LeaveIfError(status.Int()); |
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402 |
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403 // scale to fit surface |
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404 CBitmapScaler* scaler = CBitmapScaler::NewL(); |
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405 CleanupStack::PushL(scaler); |
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406 scaler->SetQualityAlgorithm(CBitmapScaler::EMaximumQuality); |
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407 |
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408 CActiveListener* activeListener = CActiveListener::NewLC(); |
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409 activeListener->Initialize(); |
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410 scaler->Scale(&activeListener->iStatus, *bitmap, size, EFalse); |
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411 CActiveScheduler::Start(); |
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412 |
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413 User::LeaveIfError(activeListener->iStatus.Int()); |
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414 |
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415 // Copy the data from the bitmap into the surface. |
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416 TPoint start; |
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417 for (start.iY = 0; start.iY < size.iHeight; start.iY++) |
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418 { |
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419 // Set up a descriptor for the current line in the surface and get pixels. |
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420 TPtr8 ptr(surfacePixelData + start.iY * stride, stride); |
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421 bitmap->GetScanLine(ptr, start, size.iWidth, EColor16MA); |
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422 } |
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423 CleanupStack::PopAndDestroy(activeListener); |
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424 CleanupStack::PopAndDestroy(scaler); |
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425 CleanupStack::PopAndDestroy(/* chunk */); |
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426 CleanupStack::PopAndDestroy(bitmap); |
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427 CleanupStack::PopAndDestroy(decoder); |
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428 CleanupStack::PopAndDestroy(/* fs */); |
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429 } |
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430 |
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431 /** |
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432 Get the size of a surface. |
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433 |
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434 @param aSurface The surface to get the size for. |
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435 @return The size in pixels, or empty on failure. |
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436 */ |
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437 TSize CSurfaceUtility::SurfaceSize(const TSurfaceId& aSurface) |
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438 { |
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439 RSurfaceManager::TInfoBuf infoBuf; |
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440 RSurfaceManager::TSurfaceInfoV01& info = infoBuf(); |
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441 |
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442 if (iManager.SurfaceInfo(aSurface, infoBuf) == KErrNone) |
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443 { |
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444 return info.iSize; |
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445 } |
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446 |
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447 return TSize(); |
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448 } |
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449 |
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450 /** |
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451 Get the offset into the chunk of the start of pixel data. |
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452 |
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453 @param aSurface The surface to get the size for. |
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454 @return The offset bytes, or empty on failure. |
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455 */ |
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456 TInt CSurfaceUtility::PixelDataOffet(const TSurfaceId& aSurface) |
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457 { |
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458 TInt offsetToFirstBuffer = 0; |
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459 iManager.GetBufferOffset(aSurface, 0, offsetToFirstBuffer); |
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460 |
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461 return offsetToFirstBuffer; |
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462 } |
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463 |
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464 |
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465 /** |
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466 Create a surface using the surface manager. |
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467 |
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468 Stores the ID for tear down, as well as returning it. |
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469 |
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470 @param aSize Dimensions of the surface. |
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471 @param aPixelFormat UID of the pixel format. |
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472 @param aStride Stride value for the surface (usually bytes per pixel * width) |
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473 @leave May leave due to lack of memory. |
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474 @return New surface's ID. |
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475 */ |
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476 TSurfaceId CSurfaceUtility::CreateSurfaceL(const TSize& aSize, TUidPixelFormat aPixelFormat, TInt aStride, TInt aBuffers) |
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477 { |
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478 RSurfaceManager::TSurfaceCreationAttributesBuf bf; |
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479 RSurfaceManager::TSurfaceCreationAttributes& b = bf(); |
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480 |
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481 b.iSize.iWidth = aSize.iWidth; |
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482 b.iSize.iHeight = aSize.iHeight; |
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483 b.iBuffers = aBuffers; // number of buffers in the surface |
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484 b.iPixelFormat = aPixelFormat; |
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485 b.iStride = aStride; // Number of bytes between start of one line and start of next |
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486 b.iOffsetToFirstBuffer = 0; // way of reserving space before the surface pixel data |
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487 b.iAlignment = 4; // alignment, 1,2,4,8 byte aligned |
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488 b.iContiguous=EFalse; |
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489 |
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490 TSurfaceId surface = TSurfaceId::CreateNullId(); |
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491 |
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492 User::LeaveIfError(iManager.CreateSurface(bf, surface)); |
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493 iSurfaces.AppendL(surface); |
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494 return surface; |
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495 } |
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496 |
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497 |
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498 /** |
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499 Fill the given surface with a color. |
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500 |
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501 @param aSurface The surface to be filled. |
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502 @param aColor The color to fill it with. |
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503 */ |
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504 void CSurfaceUtility::FillSurfaceL(TSurfaceId& aSurface, const TRgb& aColor) |
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505 { |
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506 RSurfaceManager::TInfoBuf infoBuf; |
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507 RSurfaceManager::TSurfaceInfoV01& info = infoBuf(); |
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508 |
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509 User::LeaveIfError(iManager.SurfaceInfo(aSurface, infoBuf)); |
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510 TUint32 color = 0; |
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511 TBool use16 = EFalse; |
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512 |
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513 if (info.iSize.iHeight<0 || info.iSize.iWidth<0 || info.iStride<0) |
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514 { |
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515 User::Leave(KErrCorrupt); |
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516 } |
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517 if (info.iSize.iHeight==0 || info.iSize.iWidth==0 || info.iStride==0) |
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518 { |
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519 User::Leave(KErrNotReady); |
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520 } |
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521 |
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522 switch (info.iPixelFormat) |
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523 { |
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524 case EUidPixelFormatXRGB_8888: |
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525 { |
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526 color = aColor.Color16MU(); |
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527 #ifdef ALPHA_FIX_24BIT |
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528 color |= ((ALPHA_FIX_24BIT)&0xff)<<24; |
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529 #endif |
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530 break; |
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531 } |
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532 case EUidPixelFormatARGB_8888: |
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533 { |
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534 color = aColor.Color16MA(); |
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535 break; |
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536 } |
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537 case EUidPixelFormatARGB_8888_PRE: |
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538 { |
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539 color = aColor.Color16MAP(); |
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540 break; |
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541 } |
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542 case EUidPixelFormatXRGB_4444: |
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543 case EUidPixelFormatARGB_4444: |
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544 { |
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545 color = aColor.Color4K(); |
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546 use16 = ETrue; |
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547 break; |
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548 } |
|
549 case EUidPixelFormatRGB_565: |
|
550 { |
|
551 color = aColor.Color64K(); |
|
552 use16 = ETrue; |
|
553 break; |
|
554 } |
|
555 default: |
|
556 { |
|
557 User::Leave(KErrNotSupported); |
|
558 break; |
|
559 } |
|
560 } |
|
561 |
|
562 RChunk chunk; |
|
563 User::LeaveIfError(iManager.MapSurface(aSurface, chunk)); |
|
564 |
|
565 TUint8* surfacePtr = chunk.Base(); |
|
566 TUint8* linePtr = surfacePtr; |
|
567 |
|
568 if (use16) |
|
569 { |
|
570 if ( info.iSize.iWidth*2>info.iStride) |
|
571 { |
|
572 User::Leave(KErrOverflow); |
|
573 } |
|
574 TUint16* ptr = reinterpret_cast<TUint16*>(surfacePtr); |
|
575 |
|
576 // Fill first line |
|
577 for (TInt xx = 0; xx < info.iSize.iWidth; xx++) |
|
578 { |
|
579 ptr[xx] = (TUint16)color; |
|
580 } |
|
581 } |
|
582 else |
|
583 { |
|
584 if ( info.iSize.iWidth*4>info.iStride) |
|
585 { |
|
586 User::Leave(KErrOverflow); |
|
587 } |
|
588 TUint32* ptr = reinterpret_cast<TUint32*>(surfacePtr); |
|
589 |
|
590 // Fill first line |
|
591 for (TInt xx = 0; xx < info.iSize.iWidth; xx++) |
|
592 { |
|
593 ptr[xx] = color; |
|
594 } |
|
595 } |
|
596 |
|
597 // Now copy that to the other lines |
|
598 for (TInt yy = 1; yy < info.iSize.iHeight; yy++) |
|
599 { |
|
600 linePtr += info.iStride; |
|
601 Mem::Move(linePtr, surfacePtr, info.iStride); |
|
602 } |
|
603 |
|
604 chunk.Close(); |
|
605 |
|
606 TInt err = iSurfaceUpdateSession.SubmitUpdate(0, aSurface, 0, NULL); |
|
607 if (err!=KErrNone) |
|
608 LOG(("Error submitting update: 0x%X\n", err)); |
|
609 } |
|
610 |
|
611 /** |
|
612 Fill the given memory chunk with a color. |
|
613 |
|
614 @param aSurface The surface to be filled. |
|
615 @param aChunk The surface to be filled. |
|
616 @param aColor The color to fill it with. |
|
617 */ |
|
618 void CSurfaceUtility::FillChunkL(TSurfaceId& aSurface, RChunk& aChunk, const TRgb& aColor, TInt aBufferNumber) |
|
619 { |
|
620 RSurfaceManager::TInfoBuf infoBuf; |
|
621 RSurfaceManager::TSurfaceInfoV01& info = infoBuf(); |
|
622 |
|
623 User::LeaveIfError(iManager.SurfaceInfo(aSurface, infoBuf)); |
|
624 TUint32 color = 0; |
|
625 TBool use16 = EFalse; |
|
626 |
|
627 if (info.iSize.iHeight<0 || info.iSize.iWidth<0 || info.iStride<0) |
|
628 { |
|
629 User::Leave(KErrCorrupt); |
|
630 } |
|
631 if (info.iSize.iHeight==0 || info.iSize.iWidth==0 || info.iStride==0) |
|
632 { |
|
633 User::Leave(KErrNotReady); |
|
634 } |
|
635 |
|
636 switch (info.iPixelFormat) |
|
637 { |
|
638 case EUidPixelFormatXRGB_8888: |
|
639 { |
|
640 color = aColor.Color16MU(); |
|
641 #ifdef ALPHA_FIX_24BIT |
|
642 color |= ((ALPHA_FIX_24BIT)&0xff)<<24; |
|
643 #endif |
|
644 break; |
|
645 } |
|
646 case EUidPixelFormatARGB_8888: |
|
647 { |
|
648 color = aColor.Color16MA(); |
|
649 break; |
|
650 } |
|
651 case EUidPixelFormatARGB_8888_PRE: |
|
652 { |
|
653 color = aColor.Color16MAP(); |
|
654 break; |
|
655 } |
|
656 case EUidPixelFormatXRGB_4444: |
|
657 case EUidPixelFormatARGB_4444: |
|
658 { |
|
659 color = aColor.Color4K(); |
|
660 use16 = ETrue; |
|
661 break; |
|
662 } |
|
663 case EUidPixelFormatRGB_565: |
|
664 { |
|
665 color = aColor.Color64K(); |
|
666 use16 = ETrue; |
|
667 break; |
|
668 } |
|
669 default: |
|
670 { |
|
671 User::Leave(KErrNotSupported); |
|
672 break; |
|
673 } |
|
674 } |
|
675 |
|
676 User::LeaveIfError(iManager.MapSurface(aSurface, aChunk)); |
|
677 |
|
678 TInt offsetToFirstBuffer; |
|
679 User::LeaveIfError(iManager.GetBufferOffset(aSurface, 0, offsetToFirstBuffer)); |
|
680 TInt offsetToBufferNumber; |
|
681 User::LeaveIfError(iManager.GetBufferOffset(aSurface, aBufferNumber, offsetToBufferNumber)); |
|
682 |
|
683 TUint8* chunkPtr = aChunk.Base() + offsetToFirstBuffer; |
|
684 TUint8* linePtr = aChunk.Base() + offsetToBufferNumber; |
|
685 TUint8* surfPlanePtr = linePtr; |
|
686 |
|
687 if (use16) |
|
688 { |
|
689 if ( info.iSize.iWidth*2>info.iStride) |
|
690 { |
|
691 aChunk.Close(); |
|
692 User::Leave(KErrOverflow); |
|
693 } |
|
694 TUint16* ptr = reinterpret_cast<TUint16*>(surfPlanePtr); |
|
695 |
|
696 // Fill first line |
|
697 for (TInt xx = 0; xx < info.iSize.iWidth; xx++) |
|
698 { |
|
699 ptr[xx] = (TUint16)color; |
|
700 } |
|
701 } |
|
702 else |
|
703 { |
|
704 if ( info.iSize.iWidth*4>info.iStride) |
|
705 { |
|
706 aChunk.Close(); |
|
707 User::Leave(KErrOverflow); |
|
708 } |
|
709 TUint32* ptr = reinterpret_cast<TUint32*>(surfPlanePtr); |
|
710 |
|
711 // Fill first line |
|
712 for (TInt xx = 0; xx < info.iSize.iWidth; xx++) |
|
713 { |
|
714 ptr[xx] = color; |
|
715 } |
|
716 } |
|
717 |
|
718 // Now copy that to the other lines |
|
719 for (TInt yy = 1; yy < info.iSize.iHeight; yy++) |
|
720 { |
|
721 linePtr += info.iStride; |
|
722 Mem::Copy(linePtr, surfPlanePtr, info.iSize.iWidth * BytesPerPixelL(info.iPixelFormat)); |
|
723 } |
|
724 |
|
725 aChunk.Close(); |
|
726 } |
|
727 |
|
728 /** |
|
729 Fill a rectangle on the given surface. |
|
730 |
|
731 @param aSurface The surface to be filled. |
|
732 @param aStartPos Where to place the rectangle. |
|
733 @param aSize Size of the rectangle. |
|
734 @param aColor The colour to fill it with. |
|
735 */ |
|
736 void CSurfaceUtility::FillRectangleL(TSurfaceId& aSurface, TPoint& aStartPos, TSize& aSize, const TRgb& aColor) |
|
737 { |
|
738 RSurfaceManager::TInfoBuf infoBuf; |
|
739 RSurfaceManager::TSurfaceInfoV01& info = infoBuf(); |
|
740 |
|
741 User::LeaveIfError(iManager.SurfaceInfo(aSurface, infoBuf)); |
|
742 TUint32 color = 0; |
|
743 TBool use16 = EFalse; |
|
744 |
|
745 if (info.iSize.iHeight<0 || info.iSize.iWidth<0 || info.iStride<0) |
|
746 { |
|
747 User::Leave(KErrCorrupt); |
|
748 } |
|
749 if (info.iSize.iHeight==0 || info.iSize.iWidth==0 || info.iStride==0) |
|
750 { |
|
751 User::Leave(KErrNotReady); |
|
752 } |
|
753 |
|
754 switch (info.iPixelFormat) |
|
755 { |
|
756 case EUidPixelFormatXRGB_8888: |
|
757 { |
|
758 color = aColor.Color16MU(); |
|
759 #ifdef ALPHA_FIX_24BIT |
|
760 color |= ((ALPHA_FIX_24BIT)&0xff)<<24; |
|
761 #endif |
|
762 break; |
|
763 } |
|
764 case EUidPixelFormatARGB_8888: |
|
765 { |
|
766 color = aColor.Color16MA(); |
|
767 break; |
|
768 } |
|
769 case EUidPixelFormatARGB_8888_PRE: |
|
770 { |
|
771 color = aColor.Color16MAP(); |
|
772 break; |
|
773 } |
|
774 case EUidPixelFormatXRGB_4444: |
|
775 case EUidPixelFormatARGB_4444: |
|
776 { |
|
777 color = aColor.Color4K(); |
|
778 use16 = ETrue; |
|
779 break; |
|
780 } |
|
781 case EUidPixelFormatRGB_565: |
|
782 { |
|
783 color = aColor.Color64K(); |
|
784 use16 = ETrue; |
|
785 break; |
|
786 } |
|
787 default: |
|
788 { |
|
789 User::Leave(KErrNotSupported); |
|
790 break; |
|
791 } |
|
792 } |
|
793 |
|
794 RChunk chunk; |
|
795 User::LeaveIfError(iManager.MapSurface(aSurface, chunk)); |
|
796 |
|
797 TUint8* surfacePtr = chunk.Base(); |
|
798 |
|
799 // Check for out of bounds |
|
800 TBool validRect = ETrue; |
|
801 TInt surfaceWidth = info.iSize.iWidth; |
|
802 TInt surfaceHeight = info.iSize.iHeight; |
|
803 |
|
804 // Width and Height |
|
805 if ((aStartPos.iX + aSize.iWidth) > surfaceWidth) |
|
806 validRect = EFalse; |
|
807 |
|
808 if ((aStartPos.iY + aSize.iHeight) > surfaceHeight) |
|
809 validRect = EFalse; |
|
810 |
|
811 // Starting position |
|
812 if ((aStartPos.iX < 0) || (aStartPos.iY < 0)) |
|
813 validRect = EFalse; |
|
814 |
|
815 if (!validRect) |
|
816 User::Leave(KErrOverflow); |
|
817 |
|
818 if (use16) |
|
819 { |
|
820 if ( info.iSize.iWidth*2>info.iStride) |
|
821 { |
|
822 User::Leave(KErrOverflow); |
|
823 } |
|
824 |
|
825 TUint16* ptr = reinterpret_cast<TUint16*>(surfacePtr); |
|
826 |
|
827 // Fill the rectangle |
|
828 TInt yPos = aStartPos.iY; |
|
829 TInt xPos = aStartPos.iX; |
|
830 for (TInt yy = 0; yy < aSize.iHeight; ++yy) |
|
831 { |
|
832 ptr = reinterpret_cast<TUint16*>(surfacePtr+(yPos*info.iStride)); |
|
833 for (TInt xx = 0; xx < aSize.iWidth; ++xx) |
|
834 { |
|
835 ptr[xPos] = color; |
|
836 xPos++; |
|
837 } |
|
838 xPos = aStartPos.iX; |
|
839 yPos++; |
|
840 } |
|
841 } |
|
842 else |
|
843 { |
|
844 if ( info.iSize.iWidth*4>info.iStride) |
|
845 { |
|
846 User::Leave(KErrOverflow); |
|
847 } |
|
848 |
|
849 TUint32* ptr = reinterpret_cast<TUint32*>(surfacePtr); |
|
850 |
|
851 // Fill the rectangle |
|
852 TInt yPos = aStartPos.iY; |
|
853 TInt xPos = aStartPos.iX; |
|
854 for (TInt yy = 0; yy < aSize.iHeight; ++yy) |
|
855 { |
|
856 ptr = reinterpret_cast<TUint32*>(surfacePtr+(yPos*info.iStride)); |
|
857 for (TInt xx = 0; xx < aSize.iWidth; ++xx) |
|
858 { |
|
859 ptr[xPos] = color; |
|
860 xPos++; |
|
861 } |
|
862 xPos = aStartPos.iX; |
|
863 yPos++; |
|
864 } |
|
865 } |
|
866 |
|
867 chunk.Close(); |
|
868 |
|
869 TInt err = iSurfaceUpdateSession.SubmitUpdate(0, aSurface, 0, NULL); |
|
870 if (err!=KErrNone) |
|
871 LOG(("Error submitting update: 0x%X\n", err)); |
|
872 } |
|
873 |
|
874 /** |
|
875 Fill a rectangle on the given surface - does not submit update. |
|
876 |
|
877 @param aSurface The surface to be filled. |
|
878 @param aStartPos Where to place the rectangle. |
|
879 @param aSize Size of the rectangle. |
|
880 @param aColor The colour to fill it with. |
|
881 */ |
|
882 void CSurfaceUtility::FillRectangleNoUpdateL(TSurfaceId& aSurface, TPoint& aStartPos, TSize& aSize, const TRgb& aColor) |
|
883 { |
|
884 RSurfaceManager::TInfoBuf infoBuf; |
|
885 RSurfaceManager::TSurfaceInfoV01& info = infoBuf(); |
|
886 |
|
887 User::LeaveIfError(iManager.SurfaceInfo(aSurface, infoBuf)); |
|
888 TUint32 color = 0; |
|
889 TBool use16 = EFalse; |
|
890 |
|
891 if (info.iSize.iHeight<0 || info.iSize.iWidth<0 || info.iStride<0) |
|
892 { |
|
893 User::Leave(KErrCorrupt); |
|
894 } |
|
895 if (info.iSize.iHeight==0 || info.iSize.iWidth==0 || info.iStride==0) |
|
896 { |
|
897 User::Leave(KErrNotReady); |
|
898 } |
|
899 |
|
900 switch (info.iPixelFormat) |
|
901 { |
|
902 case EUidPixelFormatXRGB_8888: |
|
903 { |
|
904 color = aColor.Color16MU(); |
|
905 #ifdef ALPHA_FIX_24BIT |
|
906 color |= ((ALPHA_FIX_24BIT)&0xff)<<24; |
|
907 #endif |
|
908 break; |
|
909 } |
|
910 case EUidPixelFormatARGB_8888: |
|
911 { |
|
912 color = aColor.Color16MA(); |
|
913 break; |
|
914 } |
|
915 case EUidPixelFormatARGB_8888_PRE: |
|
916 { |
|
917 color = aColor.Color16MAP(); |
|
918 break; |
|
919 } |
|
920 case EUidPixelFormatXRGB_4444: |
|
921 case EUidPixelFormatARGB_4444: |
|
922 { |
|
923 color = aColor.Color4K(); |
|
924 use16 = ETrue; |
|
925 break; |
|
926 } |
|
927 case EUidPixelFormatRGB_565: |
|
928 { |
|
929 color = aColor.Color64K(); |
|
930 use16 = ETrue; |
|
931 break; |
|
932 } |
|
933 default: |
|
934 { |
|
935 User::Leave(KErrNotSupported); |
|
936 break; |
|
937 } |
|
938 } |
|
939 |
|
940 RChunk chunk; |
|
941 User::LeaveIfError(iManager.MapSurface(aSurface, chunk)); |
|
942 |
|
943 TUint8* surfacePtr = chunk.Base(); |
|
944 |
|
945 // Check for out of bounds |
|
946 TBool validRect = ETrue; |
|
947 TInt surfaceWidth = info.iSize.iWidth; |
|
948 TInt surfaceHeight = info.iSize.iHeight; |
|
949 |
|
950 // Width and Height |
|
951 if ((aStartPos.iX + aSize.iWidth) > surfaceWidth) |
|
952 validRect = EFalse; |
|
953 |
|
954 if ((aStartPos.iY + aSize.iHeight) > surfaceHeight) |
|
955 validRect = EFalse; |
|
956 |
|
957 // Starting position |
|
958 if ((aStartPos.iX < 0) || (aStartPos.iY < 0)) |
|
959 validRect = EFalse; |
|
960 |
|
961 if (!validRect) |
|
962 User::Leave(KErrOverflow); |
|
963 |
|
964 if (use16) |
|
965 { |
|
966 if ( info.iSize.iWidth*2>info.iStride) |
|
967 { |
|
968 User::Leave(KErrOverflow); |
|
969 } |
|
970 |
|
971 TUint16* ptr = reinterpret_cast<TUint16*>(surfacePtr); |
|
972 |
|
973 // Fill the rectangle |
|
974 TInt yPos = aStartPos.iY; |
|
975 TInt xPos = aStartPos.iX; |
|
976 for (TInt yy = 0; yy < aSize.iHeight; ++yy) |
|
977 { |
|
978 ptr = reinterpret_cast<TUint16*>(surfacePtr+(yPos*info.iStride)); |
|
979 for (TInt xx = 0; xx < aSize.iWidth; ++xx) |
|
980 { |
|
981 ptr[xPos] = color; |
|
982 xPos++; |
|
983 } |
|
984 xPos = aStartPos.iX; |
|
985 yPos++; |
|
986 } |
|
987 } |
|
988 else |
|
989 { |
|
990 if ( info.iSize.iWidth*4>info.iStride) |
|
991 { |
|
992 User::Leave(KErrOverflow); |
|
993 } |
|
994 |
|
995 TUint32* ptr = reinterpret_cast<TUint32*>(surfacePtr); |
|
996 |
|
997 // Fill the rectangle |
|
998 TInt yPos = aStartPos.iY; |
|
999 TInt xPos = aStartPos.iX; |
|
1000 for (TInt yy = 0; yy < aSize.iHeight; ++yy) |
|
1001 { |
|
1002 ptr = reinterpret_cast<TUint32*>(surfacePtr+(yPos*info.iStride)); |
|
1003 for (TInt xx = 0; xx < aSize.iWidth; ++xx) |
|
1004 { |
|
1005 ptr[xPos] = color; |
|
1006 xPos++; |
|
1007 } |
|
1008 xPos = aStartPos.iX; |
|
1009 yPos++; |
|
1010 } |
|
1011 } |
|
1012 |
|
1013 chunk.Close(); |
|
1014 |
|
1015 } |
|
1016 |
|
1017 /** |
|
1018 Fill the given surface with a grid over a solid color. |
|
1019 |
|
1020 Similar to FillSurfaceL(), but with a grid overlayed. The pitch of the grid is |
|
1021 eight pixels. |
|
1022 |
|
1023 @param aSurface The surface to be filled. |
|
1024 @param aColor The color to fill it with. |
|
1025 @param aLines The color of the grid lines. |
|
1026 */ |
|
1027 void CSurfaceUtility::GridFillSurfaceL(TSurfaceId& aSurface, const TRgb& aColor, const TRgb& aLines) |
|
1028 { |
|
1029 RSurfaceManager::TInfoBuf infoBuf; |
|
1030 RSurfaceManager::TSurfaceInfoV01& info = infoBuf(); |
|
1031 |
|
1032 User::LeaveIfError(iManager.SurfaceInfo(aSurface, infoBuf)); |
|
1033 TUint32 color = 0; |
|
1034 TUint32 lines = 0; |
|
1035 TBool use16 = EFalse; |
|
1036 |
|
1037 if (info.iSize.iHeight<0 || info.iSize.iWidth<0 || info.iStride<0) |
|
1038 { |
|
1039 User::Leave(KErrCorrupt); |
|
1040 } |
|
1041 if (info.iSize.iHeight==0 || info.iSize.iWidth==0 || info.iStride==0) |
|
1042 { |
|
1043 User::Leave(KErrNotReady); |
|
1044 } |
|
1045 |
|
1046 switch (info.iPixelFormat) |
|
1047 { |
|
1048 case EUidPixelFormatXRGB_8888: |
|
1049 { |
|
1050 color = aColor.Color16MU(); |
|
1051 lines = aLines.Color16MU(); |
|
1052 #ifdef ALPHA_FIX_24BIT |
|
1053 color |= ((ALPHA_FIX_24BIT)&0xff)<<24; |
|
1054 lines |= ((ALPHA_FIX_24BIT)&0xff)<<24; |
|
1055 #endif |
|
1056 break; |
|
1057 } |
|
1058 case EUidPixelFormatARGB_8888: |
|
1059 { |
|
1060 color = aColor.Color16MA(); |
|
1061 lines = aLines.Color16MA(); |
|
1062 break; |
|
1063 } |
|
1064 case EUidPixelFormatARGB_8888_PRE: |
|
1065 { |
|
1066 color = aColor.Color16MAP(); |
|
1067 lines = aLines.Color16MAP(); |
|
1068 break; |
|
1069 } |
|
1070 case EUidPixelFormatXRGB_4444: |
|
1071 case EUidPixelFormatARGB_4444: |
|
1072 { |
|
1073 color = aColor.Color4K(); |
|
1074 lines = aLines.Color4K(); |
|
1075 use16 = ETrue; |
|
1076 break; |
|
1077 } |
|
1078 case EUidPixelFormatRGB_565: |
|
1079 { |
|
1080 color = aColor.Color64K(); |
|
1081 lines = aLines.Color64K(); |
|
1082 use16 = ETrue; |
|
1083 break; |
|
1084 } |
|
1085 default: |
|
1086 { |
|
1087 User::Leave(KErrNotSupported); |
|
1088 break; |
|
1089 } |
|
1090 } |
|
1091 |
|
1092 RChunk chunk; |
|
1093 User::LeaveIfError(iManager.MapSurface(aSurface, chunk)); |
|
1094 |
|
1095 TUint8* surfacePtr = chunk.Base(); |
|
1096 TUint8* linePtr = surfacePtr; |
|
1097 |
|
1098 if (use16) |
|
1099 { |
|
1100 if ( info.iSize.iWidth*2>info.iStride) |
|
1101 { |
|
1102 User::Leave(KErrOverflow); |
|
1103 } |
|
1104 TUint16* ptr = reinterpret_cast<TUint16*>(surfacePtr); |
|
1105 |
|
1106 // Fill first line |
|
1107 for (TInt xx1 = 0; xx1 < info.iSize.iWidth; xx1++) |
|
1108 { |
|
1109 ptr[xx1] = (TUint16)lines; |
|
1110 } |
|
1111 |
|
1112 // Fill second line |
|
1113 ptr = reinterpret_cast<TUint16*>(surfacePtr + info.iStride); |
|
1114 for (TInt xx2 = 0; xx2 < info.iSize.iWidth; xx2++) |
|
1115 { |
|
1116 // Vertical line every 8 pixels across |
|
1117 ptr[xx2] = (TUint16)((xx2 & 7) ? color : lines); |
|
1118 } |
|
1119 } |
|
1120 else |
|
1121 { |
|
1122 if ( info.iSize.iWidth*4>info.iStride) |
|
1123 { |
|
1124 User::Leave(KErrOverflow); |
|
1125 } |
|
1126 TUint32* ptr = reinterpret_cast<TUint32*>(surfacePtr); |
|
1127 |
|
1128 // Fill first line |
|
1129 for (TInt xx3 = 0; xx3 < info.iSize.iWidth; xx3++) |
|
1130 { |
|
1131 ptr[xx3] = lines; |
|
1132 } |
|
1133 |
|
1134 // Fill second line |
|
1135 ptr = reinterpret_cast<TUint32*>(surfacePtr + info.iStride); |
|
1136 for (TInt xx4 = 0; xx4 < info.iSize.iWidth; xx4++) |
|
1137 { |
|
1138 // Vertical line every 8 pixels across |
|
1139 ptr[xx4] = (xx4 & 7) ? color : lines; |
|
1140 } |
|
1141 } |
|
1142 linePtr += info.iStride; |
|
1143 |
|
1144 // Now copy that to the other lines |
|
1145 for (TInt yy = 2; yy < info.iSize.iHeight; yy++) |
|
1146 { |
|
1147 linePtr += info.iStride; |
|
1148 if (yy & 7) |
|
1149 { |
|
1150 // Copy second line |
|
1151 Mem::Move(linePtr, surfacePtr + info.iStride, info.iStride); |
|
1152 } |
|
1153 else |
|
1154 { |
|
1155 // Copy first line |
|
1156 Mem::Move(linePtr, surfacePtr, info.iStride); |
|
1157 } |
|
1158 } |
|
1159 chunk.Close(); |
|
1160 |
|
1161 TInt err =iSurfaceUpdateSession.SubmitUpdate(0, aSurface, 0, NULL); |
|
1162 if (err!=KErrNone) |
|
1163 LOG(("Error submitting update: 0x%X\n", err)); |
|
1164 |
|
1165 } |
|
1166 |
|
1167 |
|
1168 /** |
|
1169 Fill the given surface with a pattern suitable for automated testing. |
|
1170 |
|
1171 @param aSurface The surface to be filled. |
|
1172 */ |
|
1173 void CSurfaceUtility::PatternFillSurfaceL(TSurfaceId& aSurface) |
|
1174 { |
|
1175 RSurfaceManager::TInfoBuf infoBuf; |
|
1176 RSurfaceManager::TSurfaceInfoV01& info = infoBuf(); |
|
1177 |
|
1178 User::LeaveIfError(iManager.SurfaceInfo(aSurface, infoBuf)); |
|
1179 |
|
1180 // Fill the background |
|
1181 FillSurfaceL(aSurface, TRgb(0x00000000)); |
|
1182 |
|
1183 TInt surfaceWidth = info.iSize.iWidth; |
|
1184 TInt surfaceHeight = info.iSize.iHeight; |
|
1185 |
|
1186 // Create the 4 rectangles in the corners |
|
1187 TPoint startPos(0,0); |
|
1188 TSize size(15,15); |
|
1189 TInt rectWidth = size.iWidth; |
|
1190 TInt rectHeight = size.iHeight; |
|
1191 // Top left |
|
1192 FillRectangleL(aSurface, startPos, size, TRgb(0x0000ff)); |
|
1193 |
|
1194 // Top right |
|
1195 startPos.iX = surfaceWidth - rectWidth; |
|
1196 startPos.iY = 0; |
|
1197 FillRectangleL(aSurface, startPos, size, TRgb(0x00ff00)); |
|
1198 |
|
1199 // Bottom left |
|
1200 startPos.iX = 0; |
|
1201 startPos.iY = surfaceHeight - rectHeight; |
|
1202 FillRectangleL(aSurface, startPos, size, TRgb(0x00ffff)); |
|
1203 |
|
1204 // Bottom right |
|
1205 startPos.iX = surfaceWidth - rectWidth; |
|
1206 startPos.iY = surfaceHeight - rectHeight; |
|
1207 FillRectangleL(aSurface, startPos, size, TRgb(0xffffff)); |
|
1208 |
|
1209 // Create the 4 side bars |
|
1210 startPos.iX = 0; |
|
1211 startPos.iY = 6; |
|
1212 size.iWidth = 5; |
|
1213 size.iHeight = surfaceHeight - 12; |
|
1214 // Left |
|
1215 FillRectangleL(aSurface, startPos, size, TRgb(0x808000)); |
|
1216 |
|
1217 startPos.iX = surfaceWidth - size.iWidth; |
|
1218 startPos.iY = 6; |
|
1219 // Right |
|
1220 FillRectangleL(aSurface, startPos, size, TRgb(0xff00ff)); |
|
1221 |
|
1222 startPos.iX = 6; |
|
1223 startPos.iY = surfaceHeight - size.iWidth; |
|
1224 size.iWidth = surfaceWidth - 12; |
|
1225 size.iHeight = 5; |
|
1226 // Top |
|
1227 FillRectangleL(aSurface, startPos, size, TRgb(0xaaaaaa)); |
|
1228 |
|
1229 startPos.iX = 6; |
|
1230 startPos.iY = 0; |
|
1231 // Bottom |
|
1232 FillRectangleL(aSurface, startPos, size, TRgb(0x000080)); |
|
1233 } |
|
1234 |
|
1235 |
|
1236 template <class TIntType> void |
|
1237 DdaLine(TUint aX1, TUint aY1,TUint aX2,TUint aY2, TUint aPixPerScan, TIntType* aBuffer, TIntType aColor) |
|
1238 { |
|
1239 TInt dx=aX2-aX1; |
|
1240 TInt dy=aY2-aY1; |
|
1241 TInt adx=dx,sdx=1; |
|
1242 if (adx<0) |
|
1243 { adx=-adx; sdx=-1; } |
|
1244 TInt ady=dy,sdy=aPixPerScan; |
|
1245 if (ady<0) |
|
1246 { ady=-ady; sdy=-aPixPerScan; } |
|
1247 //This is simplistic integert DDA. |
|
1248 //The vertical cases are handled by this 1/2 accumulator: |
|
1249 // If adx is zero then we step in sdy indefinitely |
|
1250 // If ady is zero then we step in sdx indefinitely |
|
1251 TInt accum=adx/2; |
|
1252 |
|
1253 TIntType* bufferend=aBuffer+aX2+aY2*aPixPerScan; |
|
1254 aBuffer+=aX1+aY1*aPixPerScan; |
|
1255 *aBuffer=aColor; |
|
1256 while (aBuffer!=bufferend) |
|
1257 { |
|
1258 if (accum>0) |
|
1259 { |
|
1260 accum-=ady; |
|
1261 aBuffer+=sdx; |
|
1262 } |
|
1263 else |
|
1264 { |
|
1265 accum+=adx; |
|
1266 aBuffer+=sdy; |
|
1267 } |
|
1268 *aBuffer=aColor; |
|
1269 } |
|
1270 |
|
1271 |
|
1272 } |
|
1273 template <class TIntType> void |
|
1274 FanFill(const TPoint& aInnerXY,TUint aPixPerScan, TIntType* aSurfacePtr, TIntType aLinesTL, |
|
1275 TIntType aLinesBR, TIntType aLinesTR, TIntType aLinesBL) |
|
1276 { |
|
1277 |
|
1278 DdaLine(aInnerXY.iX,0,aInnerXY.iX-aInnerXY.iX*180/1024,aInnerXY.iY,aPixPerScan,aSurfacePtr,aLinesTR); |
|
1279 DdaLine(aInnerXY.iX,0,aInnerXY.iX-aInnerXY.iX*372/1024,aInnerXY.iY,aPixPerScan,aSurfacePtr,aLinesTR); |
|
1280 DdaLine(aInnerXY.iX,0,aInnerXY.iX-aInnerXY.iX*591/1024,aInnerXY.iY,aPixPerScan,aSurfacePtr,aLinesTR); |
|
1281 DdaLine(aInnerXY.iX,0,aInnerXY.iX-aInnerXY.iX*859/1024,aInnerXY.iY,aPixPerScan,aSurfacePtr,aLinesTR); |
|
1282 |
|
1283 DdaLine(aInnerXY.iX,0,0,aInnerXY.iY*180/1024,aPixPerScan,aSurfacePtr,aLinesTR); |
|
1284 DdaLine(aInnerXY.iX,0,0,aInnerXY.iY*372/1024,aPixPerScan,aSurfacePtr,aLinesTR); |
|
1285 DdaLine(aInnerXY.iX,0,0,aInnerXY.iY*591/1024,aPixPerScan,aSurfacePtr,aLinesTR); |
|
1286 DdaLine(aInnerXY.iX,0,0,aInnerXY.iY*859/1024,aPixPerScan,aSurfacePtr,aLinesTR); |
|
1287 |
|
1288 DdaLine(0,aInnerXY.iY,aInnerXY.iX*180/1024,0,aPixPerScan,aSurfacePtr,aLinesBL); |
|
1289 DdaLine(0,aInnerXY.iY,aInnerXY.iX*372/1024,0,aPixPerScan,aSurfacePtr,aLinesBL); |
|
1290 DdaLine(0,aInnerXY.iY,aInnerXY.iX*591/1024,0,aPixPerScan,aSurfacePtr,aLinesBL); |
|
1291 DdaLine(0,aInnerXY.iY,aInnerXY.iX*859/1024,0,aPixPerScan,aSurfacePtr,aLinesBL); |
|
1292 |
|
1293 DdaLine(0,aInnerXY.iY,aInnerXY.iX,aInnerXY.iY-aInnerXY.iY*180/1024,aPixPerScan,aSurfacePtr,aLinesBL); |
|
1294 DdaLine(0,aInnerXY.iY,aInnerXY.iX,aInnerXY.iY-aInnerXY.iY*372/1024,aPixPerScan,aSurfacePtr,aLinesBL); |
|
1295 DdaLine(0,aInnerXY.iY,aInnerXY.iX,aInnerXY.iY-aInnerXY.iY*591/1024,aPixPerScan,aSurfacePtr,aLinesBL); |
|
1296 DdaLine(0,aInnerXY.iY,aInnerXY.iX,aInnerXY.iY-aInnerXY.iY*859/1024,aPixPerScan,aSurfacePtr,aLinesBL); |
|
1297 |
|
1298 DdaLine(0,0,aInnerXY.iX*180/1024,aInnerXY.iY,aPixPerScan,aSurfacePtr,aLinesTL); |
|
1299 DdaLine(0,0,aInnerXY.iX*372/1024,aInnerXY.iY,aPixPerScan,aSurfacePtr,aLinesTL); |
|
1300 DdaLine(0,0,aInnerXY.iX*591/1024,aInnerXY.iY,aPixPerScan,aSurfacePtr,aLinesTL); |
|
1301 DdaLine(0,0,aInnerXY.iX*859/1024,aInnerXY.iY,aPixPerScan,aSurfacePtr,aLinesTL); |
|
1302 |
|
1303 DdaLine(0,0,aInnerXY.iX,aInnerXY.iY*180/1024,aPixPerScan,aSurfacePtr,aLinesTL); |
|
1304 DdaLine(0,0,aInnerXY.iX,aInnerXY.iY*372/1024,aPixPerScan,aSurfacePtr,aLinesTL); |
|
1305 DdaLine(0,0,aInnerXY.iX,aInnerXY.iY*591/1024,aPixPerScan,aSurfacePtr,aLinesTL); |
|
1306 DdaLine(0,0,aInnerXY.iX,aInnerXY.iY*859/1024,aPixPerScan,aSurfacePtr,aLinesTL); |
|
1307 |
|
1308 DdaLine(0,aInnerXY.iY-aInnerXY.iY*180/1024,aInnerXY.iX,aInnerXY.iY,aPixPerScan,aSurfacePtr,aLinesBR); |
|
1309 DdaLine(0,aInnerXY.iY-aInnerXY.iY*372/1024,aInnerXY.iX,aInnerXY.iY,aPixPerScan,aSurfacePtr,aLinesBR); |
|
1310 DdaLine(0,aInnerXY.iY-aInnerXY.iY*591/1024,aInnerXY.iX,aInnerXY.iY,aPixPerScan,aSurfacePtr,aLinesBR); |
|
1311 DdaLine(0,aInnerXY.iY-aInnerXY.iY*859/1024,aInnerXY.iX,aInnerXY.iY,aPixPerScan,aSurfacePtr,aLinesBR); |
|
1312 |
|
1313 DdaLine(aInnerXY.iX-aInnerXY.iX*180/1024,0,aInnerXY.iX,aInnerXY.iY,aPixPerScan,aSurfacePtr,aLinesBR); |
|
1314 DdaLine(aInnerXY.iX-aInnerXY.iX*372/1024,0,aInnerXY.iX,aInnerXY.iY,aPixPerScan,aSurfacePtr,aLinesBR); |
|
1315 DdaLine(aInnerXY.iX-aInnerXY.iX*591/1024,0,aInnerXY.iX,aInnerXY.iY,aPixPerScan,aSurfacePtr,aLinesBR); |
|
1316 DdaLine(aInnerXY.iX-aInnerXY.iX*859/1024,0,aInnerXY.iX,aInnerXY.iY,aPixPerScan,aSurfacePtr,aLinesBR); |
|
1317 |
|
1318 } |
|
1319 /** |
|
1320 Fill the given surface with a fan of lines over a solid color. |
|
1321 |
|
1322 Similar to FillSurfaceL(), but with a fan of lines overlayed. |
|
1323 One fan is drawn about the top-left, and second fan at bottom-right. |
|
1324 The fan contains 8 segments. |
|
1325 |
|
1326 @param aSurface The surface to be filled. |
|
1327 @param aColor The color to fill it with. |
|
1328 @param aLines The color of the grid lines. |
|
1329 */ |
|
1330 void CSurfaceUtility::FanFillSurfaceL(TSurfaceId& aSurface, const TRgb& aColor, const TRgb& aLinesTL, const TRgb& aLinesBR) |
|
1331 { |
|
1332 FillSurfaceL(aSurface,aColor); |
|
1333 RSurfaceManager::TInfoBuf infoBuf; |
|
1334 RSurfaceManager::TSurfaceInfoV01& info = infoBuf(); |
|
1335 |
|
1336 User::LeaveIfError(iManager.SurfaceInfo(aSurface, infoBuf)); |
|
1337 TUint32 linesTL = 0; |
|
1338 TUint32 linesBR = 0; |
|
1339 TUint32 linesTR = 0; |
|
1340 TUint32 linesBL = 0; |
|
1341 TBool use16 = EFalse; |
|
1342 TRgb rgbLinesTR(0,0,0); |
|
1343 TRgb rgbLinesBL(255,255,255); |
|
1344 |
|
1345 switch (info.iPixelFormat) |
|
1346 { |
|
1347 case EUidPixelFormatXRGB_8888: |
|
1348 { |
|
1349 linesBR = aLinesBR.Color16MU(); |
|
1350 linesTL = aLinesTL.Color16MU(); |
|
1351 linesTR = rgbLinesTR.Color16MU(); |
|
1352 linesBL = rgbLinesBL.Color16MU(); |
|
1353 #ifdef ALPHA_FIX_24BIT |
|
1354 linesBR |= ((ALPHA_FIX_24BIT)&0xff)<<24; |
|
1355 linesTL |= ((ALPHA_FIX_24BIT)&0xff)<<24; |
|
1356 linesTR |= ((ALPHA_FIX_24BIT)&0xff)<<24; |
|
1357 linesBL |= ((ALPHA_FIX_24BIT)&0xff)<<24; |
|
1358 #endif |
|
1359 break; |
|
1360 } |
|
1361 case EUidPixelFormatARGB_8888: |
|
1362 { |
|
1363 linesBR = aLinesBR.Color16MA(); |
|
1364 linesTL = aLinesTL.Color16MA(); |
|
1365 linesTR = rgbLinesTR.Color16MA(); |
|
1366 linesBL = rgbLinesBL.Color16MA(); |
|
1367 break; |
|
1368 } |
|
1369 case EUidPixelFormatARGB_8888_PRE: |
|
1370 { |
|
1371 linesBR = aLinesBR.Color16MAP(); |
|
1372 linesTL = aLinesTL.Color16MAP(); |
|
1373 linesTR = rgbLinesTR.Color16MAP(); |
|
1374 linesBL = rgbLinesBL.Color16MAP(); |
|
1375 break; |
|
1376 } |
|
1377 case EUidPixelFormatXRGB_4444: |
|
1378 case EUidPixelFormatARGB_4444: |
|
1379 { |
|
1380 linesBR = aLinesBR.Color4K(); |
|
1381 linesTL = aLinesTL.Color4K(); |
|
1382 linesTR = rgbLinesTR.Color4K(); |
|
1383 linesBL = rgbLinesBL.Color4K(); |
|
1384 use16 = ETrue; |
|
1385 break; |
|
1386 } |
|
1387 case EUidPixelFormatRGB_565: |
|
1388 { |
|
1389 linesBR = aLinesBR.Color64K(); |
|
1390 linesTL = aLinesTL.Color64K(); |
|
1391 linesTR = rgbLinesTR.Color64K(); |
|
1392 linesBL = rgbLinesBL.Color64K(); |
|
1393 use16 = ETrue; |
|
1394 break; |
|
1395 } |
|
1396 default: |
|
1397 { |
|
1398 User::Leave(KErrNotSupported); |
|
1399 break; |
|
1400 } |
|
1401 } |
|
1402 if (info.iSize.iHeight<0 || info.iSize.iWidth<0 || info.iStride<0) |
|
1403 { |
|
1404 User::Leave(KErrCorrupt); |
|
1405 } |
|
1406 if (info.iSize.iHeight==0 || info.iSize.iWidth==0 || info.iStride==0) |
|
1407 { |
|
1408 User::Leave(KErrNotReady); |
|
1409 } |
|
1410 RChunk chunk; |
|
1411 User::LeaveIfError(iManager.MapSurface(aSurface, chunk)); |
|
1412 TUint8* surfacePtr = chunk.Base(); |
|
1413 TPoint innerXY(info.iSize.iWidth-1,info.iSize.iHeight-1); |
|
1414 if (use16) |
|
1415 { |
|
1416 if ( info.iSize.iWidth*2>info.iStride) |
|
1417 { |
|
1418 User::Leave(KErrOverflow); |
|
1419 } |
|
1420 FanFill<TUint16>(innerXY,info.iStride/2,(TUint16*)surfacePtr,linesTL,linesBR,linesBL,linesTR); |
|
1421 } |
|
1422 else |
|
1423 { |
|
1424 if ( info.iSize.iWidth*4>info.iStride) |
|
1425 { |
|
1426 User::Leave(KErrOverflow); |
|
1427 } |
|
1428 FanFill<TUint>(innerXY,info.iStride/4,(TUint*)surfacePtr,linesTL,linesBR,linesBL,linesTR); |
|
1429 } |
|
1430 |
|
1431 chunk.Close(); |
|
1432 |
|
1433 iSurfaceUpdateSession.SubmitUpdate(0, aSurface, 0, NULL); |
|
1434 } |
|
1435 /** |
|
1436 Fill the given surface with vertical line at the given position |
|
1437 |
|
1438 Similar to FillSurfaceL(), but with a vertical line overlayed. |
|
1439 The position along the surface is given as a percentage from the left |
|
1440 |
|
1441 @param aSurface The surface to be filled. |
|
1442 @param aColor The color to fill it with. |
|
1443 @param aLine The color of the line. |
|
1444 @param aPosition Position of the vertical line given as a percentage across the surface from the left edge |
|
1445 */ |
|
1446 void CSurfaceUtility::LineFillSurfaceL(TSurfaceId& aSurface, const TRgb& aBackColor, const TRgb& aLineColor, TInt aPosition) |
|
1447 { |
|
1448 if (aPosition<0 || aPosition>100) |
|
1449 { |
|
1450 aPosition=0; |
|
1451 } |
|
1452 FillSurfaceL(aSurface,aBackColor); |
|
1453 RSurfaceManager::TInfoBuf infoBuf; |
|
1454 RSurfaceManager::TSurfaceInfoV01& info = infoBuf(); |
|
1455 |
|
1456 User::LeaveIfError(iManager.SurfaceInfo(aSurface, infoBuf)); |
|
1457 TUint32 lineColor = 0; |
|
1458 TBool use16 = EFalse; |
|
1459 |
|
1460 switch (info.iPixelFormat) |
|
1461 { |
|
1462 case EUidPixelFormatXRGB_8888: |
|
1463 { |
|
1464 lineColor = aLineColor.Color16MU(); |
|
1465 #ifdef ALPHA_FIX_24BIT |
|
1466 lineColor |= ((ALPHA_FIX_24BIT)&0xff)<<24; |
|
1467 #endif |
|
1468 break; |
|
1469 } |
|
1470 case EUidPixelFormatARGB_8888: |
|
1471 { |
|
1472 lineColor = aLineColor.Color16MA(); |
|
1473 break; |
|
1474 } |
|
1475 case EUidPixelFormatARGB_8888_PRE: |
|
1476 { |
|
1477 lineColor = aLineColor.Color16MAP(); |
|
1478 break; |
|
1479 } |
|
1480 case EUidPixelFormatXRGB_4444: |
|
1481 case EUidPixelFormatARGB_4444: |
|
1482 { |
|
1483 lineColor = aLineColor.Color4K(); |
|
1484 use16 = ETrue; |
|
1485 break; |
|
1486 } |
|
1487 case EUidPixelFormatRGB_565: |
|
1488 { |
|
1489 lineColor = aLineColor.Color64K(); |
|
1490 use16 = ETrue; |
|
1491 break; |
|
1492 } |
|
1493 default: |
|
1494 { |
|
1495 User::Leave(KErrNotSupported); |
|
1496 break; |
|
1497 } |
|
1498 } |
|
1499 RChunk chunk; |
|
1500 User::LeaveIfError(iManager.MapSurface(aSurface, chunk)); |
|
1501 |
|
1502 TUint8* surfacePtr = chunk.Base(); |
|
1503 if (use16) |
|
1504 { |
|
1505 DdaLine<TUint16>((info.iSize.iWidth*aPosition)/100,0,(info.iSize.iWidth*aPosition)/100, |
|
1506 info.iSize.iHeight-1,info.iStride/2,(TUint16*)surfacePtr,lineColor); |
|
1507 } |
|
1508 else |
|
1509 { |
|
1510 DdaLine<TUint>((info.iSize.iWidth*aPosition)/100,0,(info.iSize.iWidth*aPosition)/100, |
|
1511 info.iSize.iHeight-1,info.iStride/4,(TUint*)surfacePtr,lineColor); |
|
1512 } |
|
1513 chunk.Close(); |
|
1514 iSurfaceUpdateSession.SubmitUpdate(0, aSurface, 0, NULL); |
|
1515 } |
|
1516 /** |
|
1517 * Generates a bitmap equivalent to the surface. |
|
1518 * Can reuse an existing bitmap or create a new bitmap. |
|
1519 * The existing bitmap must be an exact match (eg previously generated by this method) |
|
1520 **/ |
|
1521 CFbsBitmap* CSurfaceUtility::EquivalentBitmapL(TSurfaceId& aSurface,CFbsBitmap* aCopyToMayBeNull) |
|
1522 { |
|
1523 RSurfaceManager::TInfoBuf infoBuf; |
|
1524 RSurfaceManager::TSurfaceInfoV01& info = infoBuf(); |
|
1525 |
|
1526 User::LeaveIfError(iManager.SurfaceInfo(aSurface, infoBuf)); |
|
1527 TInt bytesPerPixel=0; |
|
1528 TDisplayMode bitmapMode = ENone; |
|
1529 switch (info.iPixelFormat) |
|
1530 { |
|
1531 case EUidPixelFormatXRGB_8888: |
|
1532 { |
|
1533 bitmapMode = EColor16MU; |
|
1534 bytesPerPixel = 4; |
|
1535 break; |
|
1536 } |
|
1537 case EUidPixelFormatARGB_8888: |
|
1538 { |
|
1539 bitmapMode=EColor16MA; |
|
1540 bytesPerPixel = 4; |
|
1541 break; |
|
1542 } |
|
1543 case EUidPixelFormatARGB_8888_PRE: |
|
1544 { |
|
1545 bitmapMode=EColor16MAP; |
|
1546 bytesPerPixel = 4; |
|
1547 break; |
|
1548 } |
|
1549 case EUidPixelFormatXRGB_4444: |
|
1550 case EUidPixelFormatARGB_4444: |
|
1551 { |
|
1552 bitmapMode=EColor4K; |
|
1553 bytesPerPixel = 2; |
|
1554 break; |
|
1555 } |
|
1556 case EUidPixelFormatRGB_565: |
|
1557 { |
|
1558 bitmapMode=EColor64K; |
|
1559 bytesPerPixel = 2; |
|
1560 break; |
|
1561 } |
|
1562 default: |
|
1563 { |
|
1564 User::Leave(KErrNotSupported); |
|
1565 break; |
|
1566 } |
|
1567 } |
|
1568 CFbsBitmap* retVal=NULL; |
|
1569 if (aCopyToMayBeNull) |
|
1570 { |
|
1571 retVal=aCopyToMayBeNull; |
|
1572 if (retVal->SizeInPixels()!=info.iSize) |
|
1573 User::Leave(KErrCorrupt); |
|
1574 if (retVal->DisplayMode()!=bitmapMode) |
|
1575 User::Leave(KErrCorrupt); |
|
1576 } |
|
1577 else |
|
1578 { |
|
1579 retVal=new CFbsBitmap; |
|
1580 CleanupStack::PushL(retVal); |
|
1581 User::LeaveIfError(retVal->Create(info.iSize,bitmapMode)); |
|
1582 } |
|
1583 RChunk chunk; |
|
1584 CleanupClosePushL(chunk); |
|
1585 User::LeaveIfError(iManager.MapSurface(aSurface, chunk)); |
|
1586 TUint8* surfacePtr = chunk.Base(); |
|
1587 TUint8* bitmapPtr = (TUint8*)retVal->DataAddress(); |
|
1588 TInt copyBytes=info.iSize.iWidth*bytesPerPixel; |
|
1589 for (TInt y=0;y<info.iSize.iHeight;y++) |
|
1590 { |
|
1591 Mem::Copy(bitmapPtr,surfacePtr,copyBytes); |
|
1592 surfacePtr+=info.iStride; |
|
1593 bitmapPtr+=retVal->DataStride(); |
|
1594 } |
|
1595 CleanupStack::PopAndDestroy(&chunk); |
|
1596 if (!aCopyToMayBeNull) |
|
1597 CleanupStack::Pop(retVal); |
|
1598 return retVal; |
|
1599 } |
|
1600 |
|
1601 /** |
|
1602 Destroy a surface. |
|
1603 |
|
1604 As well as destroying the surface, it is removed from the set held for |
|
1605 destruction during tear down. |
|
1606 |
|
1607 @param aSurface The surface to be destroyed. |
|
1608 */ |
|
1609 void CSurfaceUtility::DestroySurface(TSurfaceId& aSurface) |
|
1610 { |
|
1611 TInt index = iSurfaces.Find(aSurface); |
|
1612 |
|
1613 if (index != KErrNotFound) |
|
1614 { |
|
1615 iSurfaces.Remove(index); |
|
1616 } |
|
1617 |
|
1618 TInt err = iManager.CloseSurface(aSurface); |
|
1619 if (err!=KErrNone) |
|
1620 LOG(("Error closing surfaces: 0x%X\n", err)); |
|
1621 } |
|
1622 |
|
1623 |
|
1624 /** |
|
1625 Submit an update to a surface to the update server. |
|
1626 |
|
1627 @param aScreenNumber The screen to be updated where the surface is shown. |
|
1628 @param aSurface The surface which has been updated. |
|
1629 @param aRegion The area of the surface affected, or NULL for all of it.*/ |
|
1630 void CSurfaceUtility::SubmitUpdate(TInt aScreenNumber, const TSurfaceId& aSurface, const TRegion* aRegion,TInt aBufferNumber) |
|
1631 { |
|
1632 TInt err =iSurfaceUpdateSession.SubmitUpdate(aScreenNumber, aSurface, aBufferNumber, aRegion); |
|
1633 if (err!=KErrNone) |
|
1634 LOG(("Error submitting update: 0x%X\n", err)); |
|
1635 } |
|
1636 |
|
1637 /** |
|
1638 Map and submit an update to a surface to the update server. |
|
1639 |
|
1640 @param aChunk The chunk of memory to be mapped |
|
1641 @param aScreenNumber The screen to be updated where the surface is shown. |
|
1642 @param aSurface The surface which has been updated. |
|
1643 @param aRegion The area of the surface affected, or NULL for all of it.*/ |
|
1644 void CSurfaceUtility::MapAndSubmitUpdateL(RChunk& aChunk, |
|
1645 TInt aScreenNumber, |
|
1646 const TSurfaceId& aSurface, |
|
1647 const TRegion* aRegion) |
|
1648 { |
|
1649 User::LeaveIfError(iManager.MapSurface(aSurface, aChunk)); |
|
1650 aChunk.Close(); |
|
1651 TInt err =iSurfaceUpdateSession.SubmitUpdate(aScreenNumber, aSurface, 0, aRegion); |
|
1652 if (err!=KErrNone) |
|
1653 LOG(("Error submitting update: 0x%X\n", err)); |
|
1654 } |
|
1655 |
|
1656 void CSurfaceUtility::MapSurfaceL(const TSurfaceId& aSurface, RChunk& aChunk) |
|
1657 { |
|
1658 User::LeaveIfError(iManager.MapSurface(aSurface, aChunk)); |
|
1659 } |
|
1660 |
|
1661 void CSurfaceUtility::CopyBitmapToSurfaceL(TSurfaceId& aSurface, const CFbsBitmap& aBitmap) |
|
1662 { |
|
1663 TSize size = SurfaceSize(aSurface); |
|
1664 |
|
1665 TDisplayMode bmpFormat = aBitmap.DisplayMode(); |
|
1666 TInt stride = size.iWidth * 4; // Default to four bytes per pixel |
|
1667 |
|
1668 RChunk chunk; |
|
1669 User::LeaveIfError(iManager.MapSurface(aSurface, chunk)); |
|
1670 CleanupClosePushL(chunk); |
|
1671 |
|
1672 // Copy the data from the bitmap into the surface. |
|
1673 TPoint start; |
|
1674 for (start.iY = 0; start.iY < size.iHeight; start.iY++) |
|
1675 { |
|
1676 // Set up a descriptor for the current line in the surface and get pixels. |
|
1677 TPtr8 ptr(chunk.Base() + start.iY * stride, stride); |
|
1678 aBitmap.GetScanLine(ptr, start, size.iWidth, bmpFormat); |
|
1679 } |
|
1680 |
|
1681 TInt err =iSurfaceUpdateSession.SubmitUpdate(0, aSurface, 0, NULL); |
|
1682 if (err!=KErrNone) |
|
1683 { |
|
1684 LOG(("Error submitting update: 0x%X\n", err)); |
|
1685 } |
|
1686 |
|
1687 CleanupStack::PopAndDestroy(/* chunk */); |
|
1688 } |
|
1689 |
|
1690 /** |
|
1691 CActiveListener factory function |
|
1692 @return A CActiveListener object |
|
1693 */ |
|
1694 CActiveListener* CActiveListener::NewLC() |
|
1695 { |
|
1696 CActiveListener* self = new(ELeave) CActiveListener(); |
|
1697 CleanupStack::PushL(self); |
|
1698 return self; |
|
1699 } |
|
1700 |
|
1701 /** |
|
1702 Constructor for class CActiveListener |
|
1703 */ |
|
1704 CActiveListener::CActiveListener() : CActive(EPriorityLow) |
|
1705 { |
|
1706 CActiveScheduler::Add(this); |
|
1707 } |
|
1708 |
|
1709 /** |
|
1710 Destructor |
|
1711 */ |
|
1712 CActiveListener::~CActiveListener() |
|
1713 { |
|
1714 } |
|
1715 |
|
1716 /** |
|
1717 Handles the request. |
|
1718 This function is derived from CActive |
|
1719 */ |
|
1720 void CActiveListener::RunL() |
|
1721 { |
|
1722 CActiveScheduler::Stop(); |
|
1723 } |
|
1724 |
|
1725 /** |
|
1726 Cancels the outstanding request. |
|
1727 This function is derived from CActive |
|
1728 */ |
|
1729 void CActiveListener::DoCancel() |
|
1730 { |
|
1731 } |
|
1732 |
|
1733 /** |
|
1734 Initializes the CActiveListener |
|
1735 */ |
|
1736 void CActiveListener::Initialize() |
|
1737 { |
|
1738 iStatus = KRequestPending; |
|
1739 SetActive(); |
|
1740 } |
|
1741 |
|
1742 /** |
|
1743 Check that the request has been cancelled. |
|
1744 @return A boolean indicating whether the request has been cancelled or not |
|
1745 */ |
|
1746 TBool CActiveListener::IsRequestCancelled() |
|
1747 { |
|
1748 return (iStatus == KErrCancel); |
|
1749 } |
|
1750 |
|
1751 /** |
|
1752 A helper function that returns the bytes per pixel for a given pixel format uid |
|
1753 |
|
1754 @param aPixelFormat Pixel format UID to convert |
|
1755 @return The bytes per pixel |
|
1756 */ |
|
1757 TInt CSurfaceUtility::BytesPerPixelL(TUidPixelFormat aPixelFormat) |
|
1758 { |
|
1759 TInt bytesPerPixel = 0; |
|
1760 switch (aPixelFormat) |
|
1761 { |
|
1762 case EUidPixelFormatXRGB_8888: |
|
1763 case EUidPixelFormatARGB_8888: |
|
1764 case EUidPixelFormatARGB_8888_PRE: |
|
1765 { |
|
1766 bytesPerPixel = 4; |
|
1767 break; |
|
1768 } |
|
1769 case EUidPixelFormatXRGB_4444: |
|
1770 case EUidPixelFormatARGB_4444: |
|
1771 case EUidPixelFormatRGB_565: |
|
1772 { |
|
1773 bytesPerPixel = 2; |
|
1774 break; |
|
1775 } |
|
1776 default: |
|
1777 { |
|
1778 User::Leave(KErrNotSupported); |
|
1779 break; |
|
1780 } |
|
1781 } |
|
1782 return bytesPerPixel; |
|
1783 } |
|
1784 |