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1 /* |
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2 * Copyright (c) 1998-2009 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 the License "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 |
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19 #include "tactionincremental.h" |
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20 #include "symmetric.h" |
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21 #include "des.h" |
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22 #include "securityerr.h" |
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23 |
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24 CTestAction* CActionIncremental::NewL(RFs& aFs, |
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25 CConsoleBase& aConsole, |
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26 Output& aOut, |
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27 const TTestActionSpec& aTestActionSpec) |
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28 { |
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29 CTestAction* self = CActionIncremental::NewLC(aFs, aConsole, |
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30 aOut, aTestActionSpec); |
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31 CleanupStack::Pop(); |
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32 return self; |
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33 } |
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34 |
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35 CTestAction* CActionIncremental::NewLC(RFs& aFs, |
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36 CConsoleBase& aConsole, |
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37 Output& aOut, |
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38 const TTestActionSpec& aTestActionSpec) |
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39 { |
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40 CActionIncremental* self = new(ELeave) CActionIncremental(aFs, aConsole, aOut); |
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41 CleanupStack::PushL(self); |
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42 self->ConstructL(aTestActionSpec); |
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43 return self; |
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44 } |
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45 |
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46 CActionIncremental::~CActionIncremental() |
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47 { |
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48 } |
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49 |
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50 CActionIncremental::CActionIncremental(RFs& aFs, |
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51 CConsoleBase& aConsole, |
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52 Output& aOut) |
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53 : CCryptoTestAction(aFs, aConsole, aOut) |
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54 {} |
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55 |
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56 void CActionIncremental::DoPerformPostrequisiteL() |
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57 { |
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58 if (iEncryptor) |
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59 { |
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60 iEncryptor->Reset(); |
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61 delete iEncryptor; |
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62 } |
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63 |
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64 if (iDecryptor) |
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65 { |
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66 iDecryptor->Reset(); |
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67 delete iDecryptor; |
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68 } |
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69 } |
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70 |
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71 void CActionIncremental::DoPerformPrerequisiteL() |
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72 { |
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73 iResult = ETrue; |
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74 TInt err = KErrNone; |
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75 TInt pos = 0; |
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76 TPtrC8 incremental = Input::ParseElement(*iBody, KIncrementalStart, KIncrementalEnd, pos, err); |
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77 |
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78 DoInputParseL(incremental); |
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79 |
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80 CBlockTransformation* encryptor = NULL; |
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81 CBlockTransformation* decryptor = NULL; |
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82 |
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83 iEncryptor =0; |
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84 iDecryptor =0; |
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85 |
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86 switch (iCipherType) |
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87 { |
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88 case (EDESECB): |
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89 { |
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90 //If the test is weak key test |
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91 if(iExpectedWeakResult == KErrWeakKey) |
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92 { |
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93 //we expect to leave with KErrWeakKey reason |
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94 if(CDES::IsWeakKey(iKey->Des())) |
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95 { |
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96 User::Leave(KErrWeakKey); |
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97 } |
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98 else //test is unsuccessful, leave with a different reason |
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99 { |
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100 User::Leave(KErrGeneral); |
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101 } |
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102 } |
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103 encryptor = CDESEncryptor::NewLC(iKey->Des()); |
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104 decryptor = CDESDecryptor::NewL(iKey->Des()); |
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105 CleanupStack::Pop(encryptor); |
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106 } |
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107 break; |
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108 case (EDESCBC): |
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109 { |
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110 CBlockTransformation* desEncryptor = NULL; |
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111 CBlockTransformation* desDecryptor = NULL; |
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112 |
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113 if(iExpectedWeakResult == KErrWeakKey) |
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114 { |
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115 if(CDES::IsWeakKey(iKey->Des())) |
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116 { |
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117 User::Leave(KErrWeakKey); |
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118 } |
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119 else |
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120 { |
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121 User::Leave(KErrGeneral); |
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122 } |
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123 } |
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124 |
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125 desEncryptor = CDESEncryptor::NewLC(iKey->Des()); |
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126 desDecryptor = CDESDecryptor::NewLC(iKey->Des()); |
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127 |
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128 encryptor = CModeCBCEncryptor::NewL(desEncryptor, iIV->Des()); |
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129 CleanupStack::PushL(encryptor); |
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130 decryptor = CModeCBCDecryptor::NewL(desDecryptor, iIV->Des()); |
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131 CleanupStack::Pop(3); |
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132 } |
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133 break; |
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134 case (E3DESECB): |
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135 { |
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136 encryptor = C3DESEncryptor::NewLC(iKey->Des()); |
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137 decryptor = C3DESDecryptor::NewL(iKey->Des()); |
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138 CleanupStack::Pop(encryptor); |
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139 } |
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140 break; |
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141 case (E3DESCBC): |
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142 { |
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143 CBlockTransformation* the3DESencryptor = NULL; |
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144 CBlockTransformation* the3DESdecryptor = NULL; |
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145 |
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146 the3DESencryptor = C3DESEncryptor::NewLC(iKey->Des()); |
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147 the3DESdecryptor = C3DESDecryptor::NewLC(iKey->Des()); |
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148 |
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149 encryptor = CModeCBCEncryptor::NewL(the3DESencryptor, iIV->Des()); |
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150 CleanupStack::PushL(encryptor); |
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151 decryptor = CModeCBCDecryptor::NewL(the3DESdecryptor, iIV->Des()); |
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152 CleanupStack::Pop(3); |
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153 } |
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154 break; |
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155 case (EAESECB): |
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156 { |
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157 encryptor = CAESEncryptor::NewLC(iKey->Des()); |
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158 decryptor = CAESDecryptor::NewL(iKey->Des()); |
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159 CleanupStack::Pop(encryptor); |
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160 } |
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161 break; |
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162 case (ERC2ECB): |
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163 { |
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164 encryptor = CRC2Encryptor::NewLC(iKey->Des(), iEffectiveKeyLen); |
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165 decryptor = CRC2Decryptor::NewL(iKey->Des(), iEffectiveKeyLen); |
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166 CleanupStack::Pop(encryptor); |
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167 } |
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168 break; |
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169 case (ERC2CBC): |
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170 { |
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171 encryptor = CRC2Encryptor::NewLC(iKey->Des(), iEffectiveKeyLen); |
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172 decryptor = CRC2Decryptor::NewL(iKey->Des(), iEffectiveKeyLen); |
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173 CleanupStack::Pop(encryptor); |
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174 } |
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175 break; |
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176 case (ERC4): |
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177 { |
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178 iEncryptor = CARC4::NewL(*iKey, 0); |
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179 iDecryptor = CARC4::NewL(*iKey, 0); |
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180 } |
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181 break; |
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182 case (ECipherNull): |
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183 { |
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184 iEncryptor = CNullCipher::NewL(); |
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185 iDecryptor = CNullCipher::NewL(); |
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186 } |
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187 break; |
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188 default: |
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189 ASSERT(0); |
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190 User::Leave(KErrNotSupported); |
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191 } |
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192 |
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193 CleanupStack::PushL(encryptor); |
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194 CleanupStack::PushL(decryptor); |
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195 if(!iEncryptor && !iDecryptor) |
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196 { |
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197 CPaddingSSLv3* dPadding = CPaddingSSLv3::NewLC(decryptor->BlockSize()); |
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198 CPaddingSSLv3* ePadding = CPaddingSSLv3::NewLC(encryptor->BlockSize()); |
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199 iEncryptor = CBufferedEncryptor::NewL(encryptor, ePadding); |
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200 CleanupStack::Pop(ePadding); |
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201 iDecryptor = CBufferedDecryptor::NewL(decryptor, dPadding); |
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202 CleanupStack::Pop(dPadding); |
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203 |
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204 TInt desEBlockSize = encryptor->BlockSize(); |
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205 TInt desDBlockSize = decryptor->BlockSize(); |
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206 TInt bufEBlockSize = iEncryptor->BlockSize(); |
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207 TInt bufDBlockSize = iDecryptor->BlockSize(); |
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208 if ((desEBlockSize/desDBlockSize) != (bufEBlockSize/bufDBlockSize)) |
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209 { |
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210 iResult = EFalse; |
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211 } |
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212 |
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213 TInt desEKeySize = encryptor->KeySize(); |
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214 TInt desDKeySize = decryptor->KeySize(); |
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215 if (desEKeySize != desDKeySize) |
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216 { |
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217 iResult = EFalse; |
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218 } |
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219 |
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220 encryptor->Reset(); |
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221 decryptor->Reset(); |
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222 } |
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223 |
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224 TInt encryptorKeySize = iEncryptor->KeySize(); |
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225 TInt decryptorKeySize = iDecryptor->KeySize(); |
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226 if (encryptorKeySize != decryptorKeySize) |
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227 { |
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228 iResult = EFalse; |
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229 } |
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230 |
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231 CleanupStack::Pop(2, encryptor); |
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232 |
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233 iEResult = HBufC8::NewMaxL(iEncryptor->MaxFinalOutputLength(iInput->Length())); |
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234 iDResult = HBufC8::NewMaxL(iDecryptor->MaxFinalOutputLength(iEResult->Size())); |
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235 } |
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236 |
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237 void CActionIncremental::DoPerformActionL() |
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238 { |
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239 TRAPD(res, DoDoPerformActionL()) |
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240 if(res == KErrNoMemory) |
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241 { |
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242 iEncryptor->Reset(); |
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243 iDecryptor->Reset(); |
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244 } |
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245 } |
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246 |
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247 void CActionIncremental::DoDoPerformActionL() |
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248 { |
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249 __UHEAP_MARK; |
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250 TPtr8 eResultActual = iEResult->Des(); |
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251 eResultActual.FillZ(eResultActual.MaxLength()); |
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252 eResultActual.SetLength(0); |
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253 |
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254 TPtr8 dResultActual = iDResult->Des(); |
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255 dResultActual.FillZ(dResultActual.MaxLength()); |
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256 dResultActual.SetLength(0); |
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257 |
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258 TInt len = iInput->Length(); |
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259 for(TInt i=1; i<len; i++) |
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260 { |
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261 TInt j = 0; |
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262 for(; j+i<len; j+=i) |
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263 {// encryption in blocks of size i |
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264 iEncryptor->Process(iInput->Mid(j,i), eResultActual); |
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265 } |
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266 |
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267 iEncryptor->ProcessFinalL(iInput->Mid(j), eResultActual); |
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268 |
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269 j=0; |
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270 for(; (j+(len-i))<len; j+=(len-i)) |
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271 {// Decryption in blocks of size (len - i) |
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272 iDecryptor->Process(eResultActual.Mid(j, len-i), dResultActual); |
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273 } |
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274 |
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275 iDecryptor->ProcessFinalL(eResultActual.Mid(j), dResultActual); |
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276 |
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277 if(dResultActual != *iInput) |
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278 { |
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279 iResult = EFalse; |
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280 } |
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281 |
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282 eResultActual.FillZ(eResultActual.MaxLength()); |
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283 dResultActual.FillZ(dResultActual.MaxLength()); |
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284 eResultActual.SetLength(0); |
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285 dResultActual.SetLength(0); |
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286 } |
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287 __UHEAP_MARKEND; |
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288 |
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289 } |
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290 |