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1 // Copyright (c) 1997-2009 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 // Implements the Flogger server side data writing |
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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 @file |
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20 @internalComponent |
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21 */ |
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22 |
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23 #include "comsdbgwriter.h" |
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24 #include "comsdbgmessages.h" |
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25 |
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26 |
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27 const TInt KHeapBufSize = 50000; // Maximum that the file buffer can grow to limit its impact somewhat |
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28 |
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29 |
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30 // RDebug will truncate strings longer than the limit below |
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31 const TInt KRDebugLimit = 0x100; |
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32 |
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33 |
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34 // source strings, lengths and offsets |
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35 _LIT8(KLogStartedString, "#Logging started on dd/mm/yyyy. Output version 2\r\n"); ///< Format specifier for the very first line written. The output version is printed so tools processing the log output can determine the expected format of the output. |
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36 _LIT8(KDateChangedString,"# Date is now: dd/mm/yyyy.\r\n"); ///< Format specifier for subsequent date changes |
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37 const TInt KLogStartedStringLength = 50; |
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38 const TInt KLogStartedDayOffset = 20; |
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39 const TInt KLogStartedMonthOffset = 23; |
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40 const TInt KLogStartedYearOffset = 26; |
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41 |
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42 _LIT8(KUnableToLog, "#Logs lost since log file couldn't be written to"); |
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43 |
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44 _LIT8(KClearLogString, "#Clear Log called by "); |
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45 const TInt KClearLogStringLength = 21; |
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46 |
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47 _LIT8(KEolCharacters, "\r\n"); |
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48 const TInt KEolCharactersLength = 2; |
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49 |
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50 _LIT8(KLogPathTree,"\\"); |
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51 _LIT8(KLogFileExt,"."); |
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52 |
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53 //Below const is... log string + 2 tags + 8 for the thread id + 3 tabs + EOL characters. |
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54 const TInt KMaxFinalLogStringLength = KLogBufferSize+2*KMaxTagLength+8+3+KEolCharactersLength; |
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55 |
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56 _LIT8(KBadMediaString, "#Bad media setting in ini file.\r\n"); |
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57 _LIT8(KUnableToUpdateMedia, "#Unable to update logging media. Err code: %d\r\n"); |
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58 _LIT8(KUnableToLoadSerialDevices, "#Unable to load the LDD or PDD required for serial. Err code: %d\r\n"); |
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59 _LIT8(KUnableToOpenSerial, "#Unable to open the serial port. Err code: %d\r\n"); |
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60 _LIT8(KUnableToSetSerialConfig, "#Could not set serial port configuration after opening port. Err code: %d\r\n"); |
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61 |
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62 // source characters |
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63 _LIT8(KTabCharacter, "\t"); |
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64 _LIT8(KTypeIdentifierAscii, "a"); |
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65 _LIT8(KTypeIdentifierBinary, "b"); |
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66 |
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67 // serial specs |
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68 const TBps KFloggerSerialRate = EBps115200; |
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69 const TInt KSerialRetryCount = 50; |
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70 const TInt KSerialTimeoutInMicroSecs = 100000; |
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71 |
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72 // serial ports |
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73 const TInt KSerialPort1 = 0; |
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74 #if defined (__WINS__) |
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75 const TInt KSerialPort2OnEmulator = 1; |
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76 #else |
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77 const TInt KSerialPort2OnTarget = 2; |
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78 #endif |
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79 |
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80 #if defined (__WINS__) |
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81 #define PDD_NAME _L("ECDRV.PDD") |
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82 #define LDD_NAME _L("ECOMM.LDD") |
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83 #else |
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84 #define PDD_NAME _L("EUART1") |
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85 #define LDD_NAME _L("ECOMM") |
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86 #endif |
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87 |
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88 |
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89 // log file specs |
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90 _LIT(KLogFileName, "log.txt"); |
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91 _LIT(KLogDefaultFilePath, "C:\\logs\\"); |
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92 |
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93 |
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94 const TUint KZeroDate = 0; ///< The day to count forward from when determining date roll. |
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95 const TUint KSecondsToWriteTimestampOnNoActivity = 5; |
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96 |
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97 #if defined (__WINS__) |
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98 const TInt Win32DisplayStringLengthMax = 1024; |
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99 #endif |
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100 |
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101 |
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102 |
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103 |
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104 CLogManager* CLogManager::NewL(MLogArrayAccess& aArrayAccess) |
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105 { |
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106 CLogManager* self = new(ELeave) CLogManager(aArrayAccess); |
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107 CleanupStack::PushL(self); |
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108 self->ConstructL(); |
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109 CleanupStack::Pop(self); |
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110 return self; |
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111 } |
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112 |
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113 |
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114 CLogManager::CLogManager(MLogArrayAccess& aArrayAccess) |
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115 : iArrayAccess(aArrayAccess), iTimeString(KTimeFormat) |
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116 {} |
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117 |
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118 CLogManager::~CLogManager() |
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119 { |
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120 delete iLogger; |
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121 } |
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122 |
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123 void CLogManager::ConstructL() |
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124 /* |
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125 * Set the initial media to file and write there until the server has told us |
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126 * which media is in the ini file. |
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127 * Write the log started and date message. |
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128 */ |
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129 { |
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130 iLogger = CFileWriter::NewL(); //File writer by default |
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131 iCurrentMediaSetting = KFileMedia; |
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132 iLoggingEnabled = EFalse; |
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133 } |
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134 |
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135 TInt CLogManager::ThreadEntryPoint(TAny* aPtr) |
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136 { |
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137 __UHEAP_MARK; |
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138 |
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139 MLogArrayAccess* arrayAccess = static_cast<MLogArrayAccess*> (aPtr); |
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140 |
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141 CTrapCleanup* cleanupStack = CTrapCleanup::New(); |
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142 if (cleanupStack==NULL) |
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143 { |
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144 return KErrNoMemory; |
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145 } |
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146 |
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147 TRAPD(err, CLogManager::DoRunThreadL(*arrayAccess)); |
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148 |
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149 delete cleanupStack; |
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150 |
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151 __UHEAP_MARKEND; |
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152 |
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153 return err; |
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154 } |
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155 |
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156 void CLogManager::DoRunThreadL(MLogArrayAccess& aArrayAccess) |
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157 { |
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158 CLogManager* self = CLogManager::NewL(aArrayAccess); |
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159 self->DoStart(); |
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160 delete self; |
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161 } |
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162 |
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163 void CLogManager::DoStart() |
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164 /** |
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165 * Second/consumer/slave/draining/dequeuer thread main loop. |
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166 * @note Continuously takes the log queue top message and processes it. Blocks on the "Get" if no messages. |
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167 * @note Completes when a shutdown message is processed from the queue. This message sets "iShutDown". |
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168 */ |
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169 { |
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170 CLogMessageBase * message = NULL; |
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171 |
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172 TInt ret = KErrNone; |
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173 RThread::Rendezvous(ret); |
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174 |
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175 FOREVER |
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176 { |
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177 iArrayAccess.GetFirstMessageAndTakeOwnership(message); |
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178 __ASSERT_ALWAYS(message, User::Panic(KFloggerServerPanic, ENullMessageInArray)); |
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179 message->Invoke(*this); |
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180 delete message; |
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181 // GetFirstMessage waits on the request semaphore, so to balance these each |
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182 // time a message is processed we must then signal the completion semaphore |
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183 // when in synchronous mode |
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184 iArrayAccess.SignalCompletionSemaphore(); |
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185 if (iShutDown) |
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186 { |
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187 break; |
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188 } |
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189 } |
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190 } |
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191 |
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192 void CLogManager::WriteDateIntoLog(TBool firstTime) |
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193 /** |
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194 * Write the date straight to the log output |
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195 * @param firstTime If ETrue then write a "log started" otherwise write a "date change" msg |
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196 */ |
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197 { |
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198 if (!iLoggingEnabled) |
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199 { |
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200 return; |
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201 } |
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202 //Put a date stamp for when we've started logging |
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203 //Can't use TTime::FormatL since it gives unicode and we want narrow. |
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204 TTime time; |
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205 TBuf8<KLogStartedStringLength> logDateString; |
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206 time.HomeTime(); |
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207 TDateTime dateTime(time.DateTime()); |
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208 if (firstTime) |
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209 { |
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210 logDateString.Copy(KLogStartedString); |
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211 } |
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212 else |
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213 { |
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214 logDateString.Copy(KDateChangedString); |
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215 } |
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216 TBuf8<2> holdingBuf; |
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217 holdingBuf.NumFixedWidth(dateTime.Day()+1, EDecimal, 2); |
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218 logDateString.Replace(KLogStartedDayOffset,2,holdingBuf); |
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219 holdingBuf.NumFixedWidth(dateTime.Month()+1, EDecimal, 2); |
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220 logDateString.Replace(KLogStartedMonthOffset,2,holdingBuf); |
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221 TBuf8<4> holdingBuf2; |
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222 holdingBuf2.NumFixedWidth(dateTime.Year(), EDecimal, 4); |
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223 logDateString.Replace(KLogStartedYearOffset,4,holdingBuf2); |
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224 iLogger->LogString(logDateString); |
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225 } |
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226 |
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227 void CLogManager::ClearLog(const TFullName& aName) |
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228 { |
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229 if (!iLoggingEnabled) |
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230 { |
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231 return; |
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232 } |
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233 TRAP_IGNORE(iLogger->ClearLogL()); //if there is an error there is nothing we can do. |
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234 TBuf8<KMaxFullName+KClearLogStringLength+KEolCharactersLength> buf(KClearLogString); |
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235 buf.Append(aName); |
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236 buf.Append(KEolCharacters); |
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237 iLogger->LogString(buf); |
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238 WriteDateIntoLog(ETrue); |
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239 iTicksSinceLastLog=0; |
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240 } |
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241 |
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242 void CLogManager::SetTimeL(const TTime& aTime) |
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243 { |
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244 if (!iLoggingEnabled) |
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245 { |
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246 return; |
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247 } |
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248 //check whether date has rolled and write it to log if necessary |
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249 TTime currentMicrosecs; |
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250 TTimeIntervalDays newDate; |
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251 currentMicrosecs.HomeTime(); |
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252 TTime zeroDate = TTime(TInt64(KZeroDate)); |
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253 newDate = currentMicrosecs.DaysFrom(zeroDate); |
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254 if (newDate > iCurrentDate) |
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255 { |
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256 WriteDateIntoLog(EFalse); |
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257 iCurrentDate = newDate; |
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258 } |
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259 |
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260 //Print the time to the log |
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261 //Have to do this stuff manually since TTime only provides Unicode formating |
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262 //which is not what we want. |
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263 // We format this each second regardless of whether it is used so that it is ready for use |
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264 // if a client logs since in normal use it would be rare for flogger not to log something each second. |
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265 TDateTime dateTime(aTime.DateTime()); |
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266 TBuf8<2> holdingBuf; |
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267 holdingBuf.NumFixedWidth(dateTime.Hour(), EDecimal, 2); |
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268 iTimeString.Replace(KHourOffset,2,holdingBuf); |
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269 holdingBuf.NumFixedWidth(dateTime.Minute(), EDecimal, 2); |
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270 iTimeString.Replace(KMinuteOffset,2,holdingBuf); |
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271 holdingBuf.NumFixedWidth(dateTime.Second(), EDecimal, 2); |
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272 iTimeString.Replace(KSecondOffset,2,holdingBuf); |
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273 if (iTicksSinceLastLog++ < KSecondsToWriteTimestampOnNoActivity) |
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274 { |
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275 iLogger->LogString(iTimeString); |
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276 iLogger->FlushLogL(); |
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277 } |
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278 |
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279 } |
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280 |
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281 void CLogManager::LogString(const TDesC8& aLogString, const TDesC8& aSubSystem, const TDesC8& aComponent, const TThreadId& aThreadId) |
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282 { |
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283 if (!iLoggingEnabled) |
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284 { |
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285 return; |
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286 } |
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287 if (iTicksSinceLastLog > KSecondsToWriteTimestampOnNoActivity) |
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288 { |
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289 iLogger->LogString(iTimeString); |
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290 } |
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291 iTicksSinceLastLog=0; |
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292 |
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293 TBuf8<KMaxFinalLogStringLength> buf; |
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294 buf.Append(aSubSystem); |
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295 buf.Append(KTabCharacter); |
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296 buf.Append(aComponent); |
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297 buf.Append(KTabCharacter); |
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298 buf.Append(KTypeIdentifierAscii); |
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299 buf.Append(KTabCharacter); |
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300 buf.AppendNum(aThreadId, EHex); |
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301 buf.Append(KTabCharacter); |
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302 buf.Append(aLogString); |
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303 // check whether last two bytes of string are eol chars, since some lines have cr/lf, some don't |
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304 TPtr8 ptr(&buf[buf.Length()-2], 2, 2); |
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305 if (ptr.Compare(KEolCharacters)!=0) |
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306 { |
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307 buf.Append(KEolCharacters); |
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308 } |
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309 iLogger->LogString(buf); |
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310 } |
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311 |
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312 void CLogManager::LogBinaryDump(const TDesC8& aBinaryString, const TDesC8& aSubSystem, const TDesC8& aComponent) |
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313 { |
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314 iLogger->LogBinaryDump(aBinaryString, aSubSystem, aComponent); |
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315 } |
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316 |
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317 void CLogManager::LogComment(const TDesC8& aComment) |
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318 { |
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319 if (iTicksSinceLastLog > KSecondsToWriteTimestampOnNoActivity) |
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320 { |
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321 iLogger->LogString(iTimeString); |
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322 } |
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323 iTicksSinceLastLog=0; |
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324 |
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325 iLogger->LogString(aComment); |
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326 } |
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327 |
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328 void CLogManager::MediaUpdate(const TDesC8& aMediaSetting, const TBool aForceFlush, const TDesC8& aLogPathSetting) |
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329 { |
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330 TRAPD(err, DoMediaUpdateL(aMediaSetting,aForceFlush, aLogPathSetting)); |
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331 if (err!=KErrNone) |
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332 { |
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333 TBuf8<KMaxFinalLogStringLength> buf; |
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334 buf.Format(KUnableToUpdateMedia,err); |
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335 iLogger->LogString(buf); |
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336 } |
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337 } |
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338 |
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339 void CLogManager::DoMediaUpdateL(const TDesC8& aMediaSetting,const TBool aForceFlush, const TDesC8& aLogPathSetting) |
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340 { |
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341 //We should NEVER have no media selected, media is set on construction |
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342 //and there should always be something set up. |
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343 __ASSERT_ALWAYS(iLogger, User::Panic(KFloggerServerPanic, ENoLoggingMediaSetUp)); |
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344 |
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345 if (aMediaSetting.Length() == 0) |
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346 { |
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347 return; |
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348 } |
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349 |
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350 // if the ini file has been opened, the media setting will be either the default |
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351 // or some other string so we can allow logging. If we are only opening media now, output extra info. |
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352 TTime currentMicrosecs; |
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353 currentMicrosecs.HomeTime(); |
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354 iCurrentDate = currentMicrosecs.DaysFrom(TTime(TInt64(KZeroDate))); |
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355 |
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356 if (!iLoggingEnabled) |
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357 { |
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358 iLoggingEnabled = ETrue; |
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359 WriteDateIntoLog(ETrue); |
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360 } |
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361 |
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362 //Media update is a best effort, if it fails we keep |
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363 //logging to the old media |
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364 //If bad media in ini file, carry on with old media and post message in log |
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365 |
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366 if (aMediaSetting.CompareF(iCurrentMediaSetting)==0 && aLogPathSetting.CompareF(iLogPath) == 0) |
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367 { |
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368 //Media hasn't changed, so update flush status only |
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369 // ForceFlushing as far as media is concerned only applies to file since |
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370 // serial has no such buffer which needs flushing. |
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371 iLogger->SetForceFlush(aForceFlush); |
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372 return; |
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373 } |
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374 if (!aMediaSetting.CompareF(KFileMedia)) |
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375 { |
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376 CLoggerMediaBase* media = CFileWriter::NewL(); |
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377 delete iLogger; |
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378 iLogger = media; |
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379 // ForceFlushing only applies to file since serial has no such buffer |
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380 iLogger->SetForceFlush(aForceFlush); |
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381 if(aLogPathSetting.Length() != 0) |
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382 { |
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383 (static_cast<CFileWriter*>(iLogger))->SetLogPath(aLogPathSetting); |
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384 WriteDateIntoLog(ETrue); |
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385 } |
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386 } |
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387 else if (!aMediaSetting.CompareF(KSerial1Media)) |
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388 { |
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389 // lots of things can go wrong when constructing the serial, so |
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390 // we set it up in stages, and log here if an error |
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391 // If we get an error in NewL - just let generic error given by |
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392 // SetMedia cover it |
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393 //CLoggerMediaBase* media = CSerialWriter::NewL(); |
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394 CSerialWriter* serial = CSerialWriter::NewL(); |
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395 |
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396 TInt res = serial->LoadDevices(); |
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397 if (res != KErrNone) |
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398 { |
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399 TBuf8<KMaxFinalLogStringLength> buf; |
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400 buf.Format(KUnableToLoadSerialDevices,res); |
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401 iLogger->LogString(buf); |
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402 delete serial; |
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403 User::Leave(res); |
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404 } |
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405 res = serial->OpenPort(KSerialPort1); |
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406 if (res != KErrNone) |
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407 { |
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408 TBuf8<KMaxFinalLogStringLength> buf; |
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409 buf.Format(KUnableToOpenSerial,res); |
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410 iLogger->LogString(buf); |
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411 delete serial; |
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412 User::Leave(res); |
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413 } |
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414 |
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415 res = serial->SetPortConfig(); |
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416 if (res != KErrNone) |
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417 { |
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418 TBuf8<KMaxFinalLogStringLength> buf; |
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419 buf.Format(KUnableToSetSerialConfig,res); |
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420 iLogger->LogString(buf); |
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421 delete serial; |
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422 User::Leave(res); |
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423 } |
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424 CLoggerMediaBase* media = serial; |
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425 delete iLogger; |
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426 iLogger = media; |
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427 WriteDateIntoLog(ETrue); |
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428 } |
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429 else if (!aMediaSetting.CompareF(KSerial2Media)) |
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430 { |
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431 // lots of things can go wrong when constructing the serial, so |
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432 // we set it up in stages, and log here if an error. |
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433 // If we get an error in NewL - just let generic error given by |
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434 // SetMedia cover it |
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435 |
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436 CSerialWriter* serial = CSerialWriter::NewL(); |
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437 |
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438 TInt res = serial->LoadDevices(); |
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439 if (res != KErrNone) |
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440 { |
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441 TBuf8<KMaxFinalLogStringLength> buf; |
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442 buf.Format(KUnableToLoadSerialDevices,res); |
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443 iLogger->LogString(buf); |
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444 delete serial; |
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445 User::Leave(res); |
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446 } |
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447 |
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448 #if defined (__WINS__) |
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449 res = serial->OpenPort(KSerialPort2OnEmulator); |
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450 #else |
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451 res = serial->OpenPort(KSerialPort2OnTarget); |
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452 #endif |
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453 |
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454 if (res != KErrNone) |
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455 { |
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456 TBuf8<KMaxFinalLogStringLength> buf; |
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457 buf.Format(KUnableToOpenSerial,res); |
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458 iLogger->LogString(buf); |
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459 delete serial; |
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460 User::Leave(res); |
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461 } |
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462 |
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463 res = serial->SetPortConfig(); |
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464 if (res != KErrNone) |
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465 { |
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466 TBuf8<KMaxFinalLogStringLength> buf; |
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467 buf.Format(KUnableToSetSerialConfig,res); |
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468 iLogger->LogString(buf); |
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469 delete serial; |
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470 User::Leave(res); |
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471 } |
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472 CLoggerMediaBase* media = serial; |
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473 delete iLogger; |
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474 iLogger = media; |
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475 WriteDateIntoLog(ETrue); |
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476 } |
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477 else if (!aMediaSetting.CompareF(KRDebugMedia)) |
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478 { |
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479 CLoggerMediaBase* media = CRDebugWriter::NewL();; |
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480 delete iLogger; |
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481 iLogger = media; |
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482 WriteDateIntoLog(ETrue); |
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483 } |
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484 else if (!aMediaSetting.CompareF(KOSTv2Media)) |
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485 { |
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486 CLoggerMediaBase* media = COstv2Writer::NewL();; |
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487 delete iLogger; |
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488 iLogger = media; |
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489 WriteDateIntoLog(ETrue); |
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490 } |
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491 else //Bad setting in the media file, leave media as is and return. |
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492 { |
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493 iLogger->LogString(KBadMediaString); |
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494 return; |
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495 } |
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496 iCurrentMediaSetting = aMediaSetting; |
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497 iLogPath = aLogPathSetting; |
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498 } |
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499 |
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500 void CLogManager::ShutDown() |
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501 { |
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502 iShutDown = ETrue; |
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503 } |
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504 |
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505 ////////////////////////////////////////////////////////////////////////////// |
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506 |
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507 void CFileWriter::LogString(const TDesC8& aString) |
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508 { |
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509 TPtr8 ptr(iHBuf->Des()); |
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510 if (ptr.Length()+aString.Length() <=KHeapBufSize) |
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511 { |
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512 ptr.Append(aString); |
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513 } |
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514 else |
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515 { |
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516 TRAPD(err, DoFlushBufferToFileL()); |
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517 if (err==KErrNone) |
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518 { |
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519 ptr.Zero(); |
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520 ptr.Append(aString); |
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521 } |
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522 else |
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523 { |
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524 ptr.Zero(); |
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525 ptr.Append(KUnableToLog); |
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526 ptr.Append(aString); |
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527 } |
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528 } |
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529 if (iForceBufferFlushAlways) |
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530 { |
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531 TRAPD(err, DoFlushBufferToFileL()); |
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532 ptr.Zero(); |
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533 if (err!=KErrNone) |
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534 { |
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535 ptr.Append(KUnableToLog); |
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536 } |
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537 } |
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538 |
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539 } |
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540 |
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541 void CFileWriter::LogBinaryDump(const TDesC8& aBinaryString, const TDesC8& aSubSystem, const TDesC8& aComponent) |
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542 { |
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543 TRAPD(err, DoLogBinaryDumpL(aBinaryString, aSubSystem, aComponent)); |
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544 if (err!=KErrNone) |
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545 { |
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546 LogString(KUnableToLog); |
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547 } |
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548 } |
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549 |
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550 void CFileWriter::DoLogBinaryDumpL(const TDesC8& aBinaryString, const TDesC8& aSubSystem, const TDesC8& aComponent) |
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551 /** |
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552 * Place a chunk of raw binary into the log file |
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553 * @post Opens the output file, flushes the write buffer and then places some tags before writing |
|
554 * the binary data. |
|
555 */ |
|
556 { |
|
557 RFile logFile; |
|
558 TInt err = logFile.Open(iFs, iLogFileName, EFileWrite|EFileShareAny); |
|
559 if(err == KErrPathNotFound) |
|
560 { |
|
561 TName filePath; |
|
562 filePath.Copy(iLogPath); |
|
563 User::LeaveIfError(iFs.MkDirAll(filePath)); |
|
564 } |
|
565 if(err == KErrNotFound || err == KErrPathNotFound) |
|
566 { |
|
567 err = logFile.Create(iFs, iLogFileName, EFileWrite|EFileShareAny); |
|
568 } |
|
569 User::LeaveIfError(err); |
|
570 |
|
571 CleanupClosePushL(logFile); |
|
572 TInt filePos = 0; |
|
573 User::LeaveIfError(logFile.Seek(ESeekEnd,filePos)); |
|
574 User::LeaveIfError(logFile.Write(*iHBuf)); |
|
575 TPtr8 ptr(iHBuf->Des()); |
|
576 ptr.Zero(); |
|
577 |
|
578 TUint32 length = static_cast<TUint32>(aBinaryString.Length()); |
|
579 TBuf8<sizeof(TUint32)> lengthString(4); |
|
580 lengthString[0] = static_cast<TUint8>((length & 0x000000ff) >> 0); |
|
581 lengthString[1] = static_cast<TUint8>((length & 0x0000ff00) >> 8); |
|
582 lengthString[2] = static_cast<TUint8>((length & 0x00ff0000) >> 16); |
|
583 lengthString[3] = static_cast<TUint8>((length & 0xff000000) >> 24); |
|
584 |
|
585 User::LeaveIfError(logFile.Write(aSubSystem)); |
|
586 User::LeaveIfError(logFile.Write(KTabCharacter)); |
|
587 User::LeaveIfError(logFile.Write(aComponent)); |
|
588 User::LeaveIfError(logFile.Write(KTabCharacter)); |
|
589 User::LeaveIfError(logFile.Write(KTypeIdentifierBinary)); |
|
590 User::LeaveIfError(logFile.Write(KTabCharacter)); |
|
591 User::LeaveIfError(logFile.Write(lengthString)); |
|
592 User::LeaveIfError(logFile.Write(KTabCharacter)); |
|
593 User::LeaveIfError(logFile.Write(aBinaryString)); |
|
594 User::LeaveIfError(logFile.Write(KEolCharacters)); |
|
595 |
|
596 CleanupStack::PopAndDestroy(); //logFile |
|
597 //LogString(KEolCharacters); |
|
598 } |
|
599 |
|
600 void CFileWriter::ClearLogL() |
|
601 { |
|
602 User::LeaveIfError(iFs.Delete(iLogFileName)); |
|
603 RFile logFile; |
|
604 User::LeaveIfError(logFile.Create(iFs, iLogFileName, EFileWrite|EFileShareAny)); |
|
605 logFile.Close(); |
|
606 TPtr8 ptr(iHBuf->Des()); |
|
607 ptr.Zero(); |
|
608 } |
|
609 |
|
610 void CFileWriter::DoFlushBufferToFileL() |
|
611 { |
|
612 //Check that the log file exists, if not create a blank one. |
|
613 RFile logFile; |
|
614 TBool writePathErrorCode = KErrNone; |
|
615 TInt err = logFile.Open(iFs, iLogFileName, EFileWrite|EFileShareAny); |
|
616 if (err==KErrPathNotFound) |
|
617 { |
|
618 TName filePath; |
|
619 filePath.Copy(iLogPath); |
|
620 User::LeaveIfError(iFs.MkDirAll(filePath)); |
|
621 } |
|
622 else if (err == KErrBadName || err == KErrNotReady) |
|
623 { |
|
624 writePathErrorCode = err; |
|
625 // duff pathspec in ini file |
|
626 TName filePath; |
|
627 filePath.Copy(KLogDefaultFilePath); |
|
628 err = iFs.MkDirAll(filePath); |
|
629 iLogFileName.Copy(KLogDefaultFilePath); |
|
630 iLogFileName.Append(KLogFileName); |
|
631 if (err == KErrAlreadyExists) |
|
632 { |
|
633 err = logFile.Open(iFs, iLogFileName, EFileWrite|EFileShareAny); |
|
634 } |
|
635 } |
|
636 |
|
637 if (err==KErrNotFound||err==KErrPathNotFound||err==KErrBadName||err == KErrNotReady) |
|
638 { |
|
639 err = logFile.Create(iFs, iLogFileName, EFileWrite|EFileShareAny); |
|
640 } |
|
641 User::LeaveIfError(err); |
|
642 CleanupClosePushL(logFile); |
|
643 TInt filePos = 0; |
|
644 User::LeaveIfError(logFile.Seek(ESeekEnd,filePos)); |
|
645 if (writePathErrorCode != KErrNone) |
|
646 { |
|
647 TBuf8<KMaxFinalLogStringLength> tmpBuf; |
|
648 tmpBuf.Format(KUnableToUpdateMedia,writePathErrorCode); |
|
649 User::LeaveIfError(logFile.Write(tmpBuf)); |
|
650 } |
|
651 if (iHBuf) |
|
652 { |
|
653 User::LeaveIfError(logFile.Write(*iHBuf)); |
|
654 } |
|
655 CleanupStack::PopAndDestroy(); //logFile |
|
656 } |
|
657 |
|
658 void CFileWriter::FlushLogL() |
|
659 { |
|
660 DoFlushBufferToFileL(); |
|
661 if (iHBuf) |
|
662 { |
|
663 TPtr8 ptr(iHBuf->Des()); |
|
664 ptr.Zero(); |
|
665 } |
|
666 } |
|
667 |
|
668 void CFileWriter::SetForceFlush(TBool aOn) |
|
669 { |
|
670 iForceBufferFlushAlways = aOn; |
|
671 } |
|
672 |
|
673 void CFileWriter::SetLogPath(const TDesC8& aLogPathSetting) |
|
674 { |
|
675 iLogPath.Copy(aLogPathSetting); |
|
676 |
|
677 //the path may be reconfigured, so check for '\' |
|
678 //as its assumed to be at the end already |
|
679 TPtr8 iTempStr = iLogPath.RightTPtr(1); //get last |
|
680 TPtr8 iTempExt = iLogPath.RightTPtr(4); //get last 4 |
|
681 |
|
682 if( iTempStr == KLogPathTree) |
|
683 { |
|
684 //ends with '\', so ok to copy |
|
685 iLogFileName.Copy(iLogPath); |
|
686 iLogFileName.Append(KLogFileName); |
|
687 } |
|
688 else if(iTempExt.Find(KLogFileExt)==KErrNotFound) |
|
689 { |
|
690 //no file extension already set, so its just path |
|
691 iLogPath.Append(KLogPathTree); |
|
692 iLogFileName.Copy(iLogPath); |
|
693 iLogFileName.Append(KLogFileName); |
|
694 } |
|
695 else |
|
696 { |
|
697 //already has all we need |
|
698 iLogFileName.Copy(iLogPath); |
|
699 } |
|
700 } |
|
701 |
|
702 CFileWriter* CFileWriter::NewL() |
|
703 { |
|
704 CFileWriter* self = new(ELeave) CFileWriter; |
|
705 CleanupStack::PushL(self); |
|
706 self->ConstructL(); |
|
707 CleanupStack::Pop(self); |
|
708 return self; |
|
709 } |
|
710 |
|
711 void CFileWriter::ConstructL() |
|
712 { |
|
713 User::LeaveIfError(iFs.Connect()); |
|
714 //Create our buffer for logging into, at zero length but specify a maximum. |
|
715 iHBuf = HBufC8::NewL(KHeapBufSize); |
|
716 iForceBufferFlushAlways = EFalse; |
|
717 iLogPath.Copy(KLogDefaultFilePath); |
|
718 iLogFileName.Copy(iLogPath); |
|
719 iLogFileName.Append(KLogFileName); |
|
720 } |
|
721 |
|
722 CFileWriter::~CFileWriter() |
|
723 { |
|
724 // Don't attempt flushing when it's an OOM leave from NewL() |
|
725 if (iHBuf) |
|
726 { |
|
727 TRAP_IGNORE(CFileWriter::FlushLogL()); //Ignore error. Nothing we can do now. |
|
728 delete iHBuf; |
|
729 } |
|
730 iFs.Close(); |
|
731 } |
|
732 |
|
733 /////////////////////////////////////////////////////////////////////// |
|
734 |
|
735 CSerialWriter* CSerialWriter::NewL() |
|
736 { |
|
737 CSerialWriter* self = new(ELeave) CSerialWriter; |
|
738 CleanupStack::PushL(self); |
|
739 self->ConstructL(); |
|
740 CleanupStack::Pop(self); |
|
741 return self; |
|
742 } |
|
743 |
|
744 void CSerialWriter::ConstructL() |
|
745 { |
|
746 User::LeaveIfError(iTimeoutTimer.CreateLocal()); |
|
747 } |
|
748 |
|
749 TInt CSerialWriter::LoadDevices() |
|
750 { |
|
751 // load the device drivers |
|
752 TInt result = User::LoadPhysicalDevice(PDD_NAME); |
|
753 if ((result != KErrNone) && (result != KErrAlreadyExists)) |
|
754 { |
|
755 return result; |
|
756 } |
|
757 |
|
758 result = User::LoadLogicalDevice(LDD_NAME); |
|
759 if ((result != KErrNone) && (result != KErrAlreadyExists)) |
|
760 { |
|
761 return result; |
|
762 } |
|
763 |
|
764 return KErrNone; |
|
765 } |
|
766 |
|
767 |
|
768 TInt CSerialWriter::OpenPort(TInt aPort) |
|
769 { |
|
770 return iSerialPort.Open(aPort); |
|
771 } |
|
772 |
|
773 TInt CSerialWriter::SetPortConfig() |
|
774 { |
|
775 TCommConfig tComConfig; |
|
776 TCommConfigV01 &tComConfigV = tComConfig(); |
|
777 iSerialPort.Config(tComConfig); |
|
778 tComConfigV.iRate=KFloggerSerialRate; |
|
779 tComConfigV.iDataBits=EData8; |
|
780 tComConfigV.iStopBits=EStop1; |
|
781 tComConfigV.iParity=EParityNone; |
|
782 tComConfigV.iHandshake=0; |
|
783 tComConfigV.iFifo = EFifoEnable; |
|
784 return iSerialPort.SetConfig(tComConfig); |
|
785 } |
|
786 |
|
787 |
|
788 |
|
789 CSerialWriter::~CSerialWriter() |
|
790 { |
|
791 iTimeoutTimer.Close(); |
|
792 iSerialPort.Close(); |
|
793 } |
|
794 |
|
795 void CSerialWriter::ClearLogL() |
|
796 /** |
|
797 * @note: Nothing to do for serial |
|
798 */ |
|
799 {} |
|
800 |
|
801 void CSerialWriter::FlushLogL() |
|
802 /** |
|
803 * @note: Nothing to do for serial |
|
804 */ |
|
805 {} |
|
806 |
|
807 void CSerialWriter::SetForceFlush(TBool) |
|
808 /** |
|
809 * @note: Nothing to do for serial. |
|
810 */ |
|
811 { |
|
812 } |
|
813 |
|
814 |
|
815 void CSerialWriter::LogString(const TDesC8& aString) |
|
816 { |
|
817 //iInvalidcounter is used to dump packets if we fail to get a write through before the |
|
818 //timer expires. It stops us getting backed up too much if there's a problem. |
|
819 if (iInvalidCounter==0) |
|
820 { |
|
821 TRequestStatus writeStatus(KRequestPending); |
|
822 TRequestStatus timeoutStatus(KRequestPending); |
|
823 iSerialPort.Write(writeStatus, aString, aString.Length()); |
|
824 iTimeoutTimer.After(timeoutStatus, |
|
825 TTimeIntervalMicroSeconds32(KSerialTimeoutInMicroSecs)); |
|
826 User::WaitForRequest(writeStatus, timeoutStatus); |
|
827 if (writeStatus==KRequestPending) |
|
828 {//OK, still not completed, better cancel send. |
|
829 iSerialPort.WriteCancel(); |
|
830 iInvalidCounter=KSerialRetryCount; |
|
831 } |
|
832 else |
|
833 { |
|
834 iTimeoutTimer.Cancel(); |
|
835 } |
|
836 User::WaitForAnyRequest(); |
|
837 } |
|
838 else |
|
839 --iInvalidCounter; |
|
840 } |
|
841 |
|
842 void CSerialWriter::LogBinaryDump(const TDesC8& aBinaryString, const TDesC8& aSubSystem, const TDesC8& aComponent) |
|
843 { |
|
844 TUint32 length = static_cast<TUint32>(aBinaryString.Length()); |
|
845 TBuf8<sizeof(TUint32)> lengthString(4); |
|
846 lengthString[0] = static_cast<TUint8>((length & 0x000000ff) >> 0); |
|
847 lengthString[1] = static_cast<TUint8>((length & 0x0000ff00) >> 8); |
|
848 lengthString[2] = static_cast<TUint8>((length & 0x00ff0000) >> 16); |
|
849 lengthString[3] = static_cast<TUint8>((length & 0xff000000) >> 24); |
|
850 |
|
851 LogString(aSubSystem); |
|
852 LogString(KTabCharacter); |
|
853 LogString(aComponent); |
|
854 LogString(KTabCharacter); |
|
855 LogString(KTypeIdentifierBinary); |
|
856 LogString(KTabCharacter); |
|
857 LogString(lengthString); |
|
858 LogString(KTabCharacter); |
|
859 LogString(aBinaryString); |
|
860 LogString(KEolCharacters); |
|
861 } |
|
862 |
|
863 /////////////////////////////////////////////////////////////////////////////////////////////////// |
|
864 |
|
865 //Don't strictly need a NewL. Doing it for consistency. |
|
866 CRDebugWriter* CRDebugWriter::NewL() |
|
867 { |
|
868 return new(ELeave) CRDebugWriter; |
|
869 } |
|
870 |
|
871 CRDebugWriter::~CRDebugWriter() |
|
872 { |
|
873 } |
|
874 |
|
875 void CRDebugWriter::ClearLogL() |
|
876 /** |
|
877 * @note: Nothing to do for RDebug |
|
878 */ |
|
879 {} |
|
880 |
|
881 void CRDebugWriter::FlushLogL() |
|
882 /** |
|
883 * @note: Nothing to do for RDebug |
|
884 */ |
|
885 {} |
|
886 |
|
887 void CRDebugWriter::SetForceFlush(TBool) |
|
888 /** |
|
889 * @note: Nothing to do for RDebug. |
|
890 */ |
|
891 { |
|
892 } |
|
893 |
|
894 |
|
895 void CRDebugWriter::LogString(const TDesC8& aString) |
|
896 { |
|
897 |
|
898 //RDebug truncates strings longer than a certain size |
|
899 //To work around this we chop our string into palatable chunks |
|
900 //and log those individually |
|
901 |
|
902 const TUint8 *p = aString.Ptr(); |
|
903 TInt bytesSent(0); |
|
904 TInt totalToSend = aString.Length(); |
|
905 TInt length(0); |
|
906 |
|
907 do |
|
908 { |
|
909 bytesSent += KRDebugLimit; |
|
910 if (bytesSent < totalToSend) |
|
911 { |
|
912 length = KRDebugLimit; |
|
913 } |
|
914 else |
|
915 { |
|
916 length = totalToSend - bytesSent + KRDebugLimit; |
|
917 } |
|
918 |
|
919 TPtrC8 ptr(p,length); |
|
920 RDebug::RawPrint(ptr); |
|
921 p += KRDebugLimit; |
|
922 } |
|
923 while(bytesSent < totalToSend); |
|
924 } |
|
925 |
|
926 |
|
927 void CRDebugWriter::LogBinaryDump(const TDesC8& aBinaryString, const TDesC8& aSubSystem, const TDesC8& aComponent) |
|
928 { |
|
929 TUint32 length = static_cast<TUint32>(aBinaryString.Length()); |
|
930 TBuf8<sizeof(TUint32)> lengthString(4); |
|
931 lengthString[0] = static_cast<TUint8>((length & 0x000000ff) >> 0); |
|
932 lengthString[1] = static_cast<TUint8>((length & 0x0000ff00) >> 8); |
|
933 lengthString[2] = static_cast<TUint8>((length & 0x00ff0000) >> 16); |
|
934 lengthString[3] = static_cast<TUint8>((length & 0xff000000) >> 24); |
|
935 |
|
936 RDebug::RawPrint(aSubSystem); |
|
937 RDebug::RawPrint(KTabCharacter); |
|
938 RDebug::RawPrint(aComponent); |
|
939 RDebug::RawPrint(KTabCharacter); |
|
940 RDebug::RawPrint(KTypeIdentifierBinary); |
|
941 RDebug::RawPrint(KTabCharacter); |
|
942 RDebug::RawPrint(lengthString); |
|
943 RDebug::RawPrint(KTabCharacter); |
|
944 LogString(aBinaryString); |
|
945 RDebug::RawPrint(KEolCharacters); |
|
946 |
|
947 } |
|
948 |
|
949 |
|
950 /////////////////////////////////////////////////////////////////////// |
|
951 |
|
952 #if defined (__WINS__) |
|
953 #include <emulator.h> |
|
954 |
|
955 CDebugPortProtocol* CDebugPortProtocol::NewL() |
|
956 { |
|
957 CDebugPortProtocol* protocol = new(ELeave) CDebugPortProtocol; |
|
958 CleanupStack::PushL(protocol); |
|
959 protocol->ConstructL(); |
|
960 CleanupStack::Pop(protocol); |
|
961 return protocol; |
|
962 } |
|
963 |
|
964 void CDebugPortProtocol::ConstructL() |
|
965 { |
|
966 iDebugWriter = CDebugPortWriter::NewL(); |
|
967 } |
|
968 |
|
969 CDebugPortProtocol::~CDebugPortProtocol() |
|
970 { |
|
971 delete iDebugWriter; |
|
972 } |
|
973 void CDebugPortProtocol::ClearLog(const TFullName& /*aName*/) |
|
974 { |
|
975 } |
|
976 void CDebugPortProtocol::SetTimeL(const TTime& /*aTime*/) |
|
977 { |
|
978 } |
|
979 void CDebugPortProtocol::LogString(const TDesC8& aLogString, const TDesC8& aSubSystem, const TDesC8& aComponent, const TThreadId& aThreadId) |
|
980 { |
|
981 TBuf8<KMaxFinalLogStringLength> buf; |
|
982 buf.Append(aSubSystem); |
|
983 buf.Append(KTabCharacter); |
|
984 buf.Append(aComponent); |
|
985 buf.Append(KTabCharacter); |
|
986 buf.Append(KTypeIdentifierAscii); |
|
987 buf.Append(KTabCharacter); |
|
988 buf.AppendNum(aThreadId, EHex); |
|
989 buf.Append(KTabCharacter); |
|
990 buf.Append(aLogString); |
|
991 // check whether last two bytes of string are eol chars, since some lines have cr/lf, some don't |
|
992 TPtr8 ptr(&buf[buf.Length()-2], 2, 2); |
|
993 if (ptr.Compare(KEolCharacters) !=0 ) |
|
994 { |
|
995 buf.Append(KEolCharacters); |
|
996 } |
|
997 iDebugWriter->LogString(buf); |
|
998 } |
|
999 void CDebugPortProtocol::LogBinaryDump(const TDesC8& aBinaryString, const TDesC8& aSubSystem, const TDesC8& aComponent) |
|
1000 { |
|
1001 iDebugWriter->LogBinaryDump(aBinaryString, aSubSystem, aComponent); |
|
1002 } |
|
1003 void CDebugPortProtocol::LogComment(const TDesC8& aComment) |
|
1004 { |
|
1005 iDebugWriter->LogString(aComment); |
|
1006 } |
|
1007 void CDebugPortProtocol::MediaUpdate(const TDesC8& /*aMediaSetting*/, const TBool /*aForceFlushOn*/, const TDesC8& /*aLogPathSetting*/) |
|
1008 { |
|
1009 } |
|
1010 void CDebugPortProtocol::ShutDown() |
|
1011 { |
|
1012 } |
|
1013 |
|
1014 /////////////////////////////////////////////////////////////////////////////////////////////////////// |
|
1015 |
|
1016 CDebugPortWriter* CDebugPortWriter::NewL() |
|
1017 { |
|
1018 return new(ELeave) CDebugPortWriter; |
|
1019 } |
|
1020 |
|
1021 |
|
1022 void CDebugPortWriter::LogString(const TDesC8& aString) |
|
1023 { |
|
1024 char str[Win32DisplayStringLengthMax]; |
|
1025 int len = Min(sizeof(str) - 1, aString.Length()); |
|
1026 Mem::Copy(str, aString.Ptr(), len); |
|
1027 str[len] = '\0'; |
|
1028 Emulator::Lock(); |
|
1029 ::OutputDebugStringA(str); |
|
1030 Emulator::Unlock(); |
|
1031 } |
|
1032 void CDebugPortWriter::ClearLogL() |
|
1033 { |
|
1034 } |
|
1035 void CDebugPortWriter::FlushLogL() |
|
1036 { |
|
1037 } |
|
1038 void CDebugPortWriter::LogBinaryDump(const TDesC8& /*aBinaryString*/, const TDesC8& /*aSubSystem*/, const TDesC8& /*aComponent*/) |
|
1039 { |
|
1040 } |
|
1041 void CDebugPortWriter::SetForceFlush(const TBool /*aOn*/) |
|
1042 { |
|
1043 } |
|
1044 |
|
1045 #endif //(__WINS__) |