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1 // Copyright (c) 2002-2009 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 // @file CEchoSocket.cpp |
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15 // This contains the CEchoSocket class implementation and its saftey timer, CSafety |
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16 // |
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17 // |
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18 |
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19 /** |
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20 @file |
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21 */ |
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22 |
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23 #include "CEchoSocket.h" |
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24 |
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25 CEchoSocket::CEchoSocket() : CActive(EPriorityNormal), |
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26 iSockErr(KErrNone), |
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27 iPacketSize(CTS_MultiHomingStep::PACKET_SIZE), |
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28 iPacketsToSend(CTS_MultiHomingStep::NUM_OF_PACKETS), |
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29 iRecvdGood(0), |
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30 iProtocol(KProtocolInetUdp), |
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31 iUDPTolerance(CTS_MultiHomingStep::UDP_TOLERANCE), |
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32 iPtrRecvd(0,0), |
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33 iPtrRecvdThisRead(0,0), |
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34 iPtrWritn(0,0), |
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35 iConsecRecvTimeOuts(0), |
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36 iIsListener(EFalse) |
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37 { |
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38 } |
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39 |
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40 CEchoSocket::~CEchoSocket() |
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41 { |
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42 Cancel(); |
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43 delete iWritebuf; |
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44 delete iReadbufThisRead; |
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45 delete iReadbuf; |
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46 delete iSafety; |
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47 |
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48 } |
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49 |
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50 CEchoSocket* CEchoSocket::NewL() |
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51 { |
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52 |
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53 CEchoSocket* self = new(ELeave) CEchoSocket; |
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54 CleanupStack::PushL(self); |
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55 self->ConstructL(); |
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56 CleanupStack::Pop(); |
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57 CEnhancedScheduler::Add(self); |
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58 return self; |
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59 } |
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60 |
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61 |
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62 void CEchoSocket::ConstructL() |
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63 { |
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64 iSafety = CSafety::NewL(this); |
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65 |
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66 iWritebuf = HBufC8::NewMaxL(CTS_MultiHomingStep::MAX_PACKET_SIZE); |
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67 iPtrWritn.Set(iWritebuf->Des()); |
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68 iReadbuf = HBufC8::NewMaxL(CTS_MultiHomingStep::MAX_PACKET_SIZE); |
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69 iPtrRecvd.Set(iReadbuf->Des()); |
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70 iReadbufThisRead = HBufC8::NewMaxL(CTS_MultiHomingStep::MAX_PACKET_SIZE); |
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71 iPtrRecvdThisRead.Set(iReadbufThisRead->Des()); |
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72 } |
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73 |
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74 void CEchoSocket::RunL() |
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75 { |
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76 |
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77 switch (iState) |
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78 { |
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79 case EInitialised: |
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80 if(iIsListener) |
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81 { |
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82 iAcceptedConnection.Open( (iTConnection->iSocketServ)); |
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83 |
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84 iSocket.Accept(iAcceptedConnection, iStatus); |
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85 iState = EReady; |
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86 SetActive(); |
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87 } |
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88 else |
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89 { |
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90 if (KProtocolInetTcp == iProtocol) |
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91 { |
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92 ConnectTcp(); |
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93 iOwnerStep->StepLog(_L("Connecting TCP %S:%i"),&iName, iSockNum); |
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94 } |
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95 else if (KProtocolInetUdp == iProtocol) |
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96 { |
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97 BindUdp(); |
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98 iOwnerStep->StepLog(_L("Binding UDP %S:%i"), &iName, iSockNum); |
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99 } |
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100 } |
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101 break; |
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102 |
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103 case EReady: |
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104 iSafety->Cancel(); |
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105 |
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106 if (iStatus == KErrNone) |
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107 { |
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108 if(iIsListener) |
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109 { |
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110 RecvDataTcpListen(); |
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111 } |
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112 else |
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113 { |
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114 SendData(); |
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115 } |
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116 } |
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117 else |
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118 { |
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119 iOwnerStep->StepLog(KErrConnectFailed,&iName,iSockNum, iStatus.Int()); |
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120 SetComplete(); |
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121 } |
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122 break; |
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123 |
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124 case ESentData: |
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125 if (iStatus == KErrNone) |
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126 { |
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127 if(iIsListener) |
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128 { |
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129 RecvDataTcpListen(); |
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130 } |
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131 else |
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132 { |
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133 RecvData(); |
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134 } |
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135 } |
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136 else |
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137 { |
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138 iOwnerStep->StepLog(KErrSendFailed, &iName, iSockNum, iStatus.Int()); |
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139 SetComplete(); // Couldn't send, so bit of a problem... |
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140 } |
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141 break; |
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142 |
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143 case ERecvdData: |
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144 iSafety->Cancel(); |
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145 if(iIsListener && iStatus == KErrEof) |
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146 { |
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147 SetComplete(); |
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148 } |
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149 else if(iStatus == KErrNone) |
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150 { |
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151 TInt err = KErrNone; |
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152 // Reset our consecutive count |
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153 iConsecRecvTimeOuts = 0; |
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154 // Compare sent and received |
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155 err = iPtrWritn.Compare(iPtrRecvd); |
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156 if (err == KErrNone || iIsListener) |
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157 { |
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158 iRecvdGood++; |
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159 if (iPacketsToSend>0) |
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160 if(iIsListener) |
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161 SendDataToClient(); |
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162 else |
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163 SendData(); |
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164 else |
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165 SetComplete(); |
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166 } |
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167 else |
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168 { |
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169 // Try reading again, usualy happens because of a timeout |
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170 iOwnerStep->StepLog(KErrPacketsDiff, &iName, iSockNum); |
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171 RecvData(); |
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172 } |
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173 } |
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174 else if (KErrCancel == iStatus.Int()) // We cancelled our receive |
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175 { |
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176 iConsecRecvTimeOuts++; |
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177 iOwnerStep->StepLog(_L("Receive timeout on %S:%i,%d"),&iName, iSockNum, |
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178 iConsecRecvTimeOuts); |
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179 |
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180 if (iPacketsToSend > 0 && iConsecRecvTimeOuts < MAX_CONSEC_TIMEOUT) |
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181 SendData(); |
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182 else |
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183 SetComplete(); |
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184 } |
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185 else |
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186 { |
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187 TPtrC errorText = CLog::EpocErrorToText(iStatus.Int()); |
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188 iOwnerStep->StepLog(KErrRecvFailed, &iName, iSockNum, &errorText); |
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189 SetComplete(); |
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190 } |
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191 break; |
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192 |
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193 |
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194 case EComplete: |
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195 iOwnerStep->iOwnerSuite->iScheduler->DecCount(); |
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196 if(0 == iOwnerStep->iOwnerSuite->iScheduler->GetCount()) |
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197 CEnhancedScheduler::Stop(); |
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198 break; |
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199 |
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200 default: |
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201 iOwnerStep->StepLog(KTxtWhatHappened); |
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202 break; |
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203 |
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204 } |
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205 // Error handling of iStatus... |
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206 |
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207 |
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208 } |
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209 |
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210 |
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211 |
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212 |
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213 void CEchoSocket::DoCancel() |
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214 { |
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215 iSocket.CancelAll(); |
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216 // Close is handles in set complete |
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217 //iSocket.Close(); |
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218 } |
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219 |
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220 TInt CEchoSocket::Echo(const TInetAddr& aDest, const TInetAddr& aSrc, |
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221 const TInt& aSize, const TInt& aPackets, |
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222 const TUint& aProto, const TInt& aTol, |
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223 TConnDetails* aConn, const TInt& aSockNum, |
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224 const TBool aIsListener, CTS_MultiHomingStep* aStep) |
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225 /** |
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226 * Creates an Echo socket and runs it to completion or error |
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227 * @param aSockServ The socket server to attach to |
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228 * @param aDest The destination IP address |
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229 * @param aSize The packet size to use in bytes |
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230 * @param aPackets The number of packets to send |
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231 * @param aProto The protocol to use |
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232 * @param aTol The UDP data tolerance level |
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233 * @return Error value for initialisation stage |
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234 */ |
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235 { |
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236 __ASSERT_ALWAYS(!IsActive(), User::Panic(KTxtCEchoSocket,KErrAlreadyExists)); |
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237 __ASSERT_ALWAYS(aSize <= CTS_MultiHomingStep::MAX_PACKET_SIZE, User::Panic(KTxtCEchoSocket,KErrOverflow)); |
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238 |
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239 // Remember the config |
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240 iDestAddr = aDest; |
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241 iSrcAddr = aSrc; |
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242 iPacketSize = aSize; |
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243 iPacketsToSend = aPackets; |
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244 iPackets = aPackets; |
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245 iProtocol = aProto; |
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246 iUDPTolerance = aTol; |
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247 iOwnerStep = aStep; |
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248 iTConnection = aConn; |
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249 iSockNum = aSockNum; |
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250 |
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251 iIsListener = aIsListener; |
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252 |
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253 TInt err = KErrNone; |
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254 |
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255 iPtrWritn.SetLength(aSize); |
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256 iPtrRecvd.SetLength(aSize); |
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257 |
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258 |
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259 if(iTConnection == 0) |
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260 return KErrGeneral; |
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261 // Open the socket for implicit or explicit case |
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262 if(iTConnection->iConnectionType != TConnDetails::implicitConn) |
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263 { |
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264 err = iSocket.Open( (iTConnection->iSocketServ), KAfInet, |
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265 iProtocol == KProtocolInetTcp ? KSockStream : KSockDatagram, iProtocol, |
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266 (iTConnection->iConnection)); |
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267 } |
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268 else |
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269 { |
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270 err = iSocket.Open( (iTConnection->iSocketServ), KAfInet, |
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271 iProtocol == KProtocolInetTcp ? KSockStream : KSockDatagram, iProtocol); |
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272 } |
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273 if (err != KErrNone) |
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274 return err; // No point going any further... |
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275 |
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276 iSocket.Name(iName); |
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277 |
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278 err = iSocket.SetOpt(KSolInetIp, KSoReuseAddr, 1); |
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279 // Ignore this error for unbound sockets |
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280 err = iSocket.Bind(iSrcAddr); |
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281 if(err != KErrNone) |
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282 return err; |
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283 |
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284 if(iProtocol == KProtocolInetTcp) |
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285 { |
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286 // Disable the nagle algorithm. |
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287 iSocket.SetOpt(KSoTcpNoDelay, KSolInetTcp, 1); |
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288 } |
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289 if(iIsListener) |
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290 { |
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291 // Accept a single connection |
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292 iSocket.Listen(1); |
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293 } |
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294 |
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295 iState = EInitialised; |
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296 |
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297 iStatus = KRequestPending; |
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298 SetActive(); |
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299 |
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300 // Increment the echosocket counter and client |
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301 iOwnerStep->iOwnerSuite->iScheduler->IncCount(); |
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302 |
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303 TName addrBuf; |
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304 iDestAddr.Output(addrBuf); |
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305 iOwnerStep->StepLog(KSockDetails,&iName,iSockNum,&addrBuf,iDestAddr.Port(),iPacketsToSend,iPacketSize); |
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306 |
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307 TRequestStatus* pS = &iStatus; |
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308 User::RequestComplete(pS,KErrNone); |
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309 |
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310 return KErrNone; |
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311 } |
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312 |
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313 |
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314 |
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315 void CEchoSocket::ConnectTcp() |
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316 /** |
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317 * Connects a TCP socket to the remote host. |
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318 */ |
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319 { |
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320 __ASSERT_ALWAYS(iProtocol==KProtocolInetTcp, User::Panic(KTxtCEchoSocket,KErrArgument)); |
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321 iSocket.Connect(iDestAddr,iStatus); |
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322 iSafety->SetSafety(); |
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323 iState = EReady; |
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324 SetActive(); |
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325 } |
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326 |
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327 void CEchoSocket::BindUdp() |
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328 /** |
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329 * Binds a socket to its address |
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330 */ |
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331 { |
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332 __ASSERT_ALWAYS(KProtocolInetUdp == iProtocol, User::Panic(KTxtCEchoSocket,KErrArgument)); |
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333 |
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334 iSocket.Connect(iDestAddr,iStatus); |
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335 iSafety->SetSafety(); |
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336 iState = EReady; |
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337 SetActive(); |
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338 } |
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339 |
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340 |
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341 |
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342 void CEchoSocket::SendData() |
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343 /** |
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344 * Sends a packet on the socket and updates state information |
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345 */ |
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346 { |
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347 // Packet data |
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348 TBuf8<100> data; |
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349 // Write data to socket |
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350 if (iProtocol == KProtocolInetTcp) |
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351 { |
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352 data.Format(_L8("TCP-packet[%S:%d] MultiHoming"), &iName, iPacketsToSend--); |
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353 } |
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354 else if (iProtocol == KProtocolInetUdp) |
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355 { |
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356 data.Format(_L8("UDP-packet[%S:%d] MultiHoming"), &iName, iPacketsToSend--); |
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357 } |
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358 iPtrWritn.Repeat( data ); |
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359 |
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360 iPtrRecvd.SetLength( iPtrWritn.Length() ); |
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361 |
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362 iSocket.Send(iPtrWritn,0,iStatus); |
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363 |
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364 iState = ESentData; |
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365 SetActive(); |
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366 } |
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367 |
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368 void CEchoSocket::SendDataToClient() |
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369 { |
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370 iAcceptedConnection.Send(iPtrRecvd,0,iStatus); |
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371 |
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372 iState = ESentData; |
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373 SetActive(); |
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374 } |
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375 void CEchoSocket::RecvDataTcpListen() |
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376 /** |
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377 * Receives data on socket |
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378 * |
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379 */ |
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380 { |
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381 // Receive data |
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382 iSafety->SetSafety(); |
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383 TInt expected = iPtrRecvd.Length(); |
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384 iAcceptedConnection.Read(iPtrRecvd, iStatus); |
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385 iOwnerStep->StepLog(_L("Receiving Data TCP Listen %S:%i"),&iName, iSockNum); |
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386 iState = ERecvdData; |
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387 SetActive(); |
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388 } |
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389 |
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390 |
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391 |
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392 void CEchoSocket::RecvData() |
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393 /** |
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394 * Receives data on socket |
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395 * |
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396 */ |
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397 { |
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398 // Receive data |
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399 iSafety->SetSafety(); |
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400 TInt expected = iPtrRecvd.Length(); |
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401 if(iProtocol == KProtocolInetTcp) |
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402 { |
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403 iSocket.Read(iPtrRecvd, iStatus); |
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404 } |
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405 else if(iProtocol == KProtocolInetUdp) |
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406 { |
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407 iSocket.Recv(iPtrRecvd, 0, iStatus); |
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408 } |
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409 if(expected != iPtrRecvd.Length()) |
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410 { |
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411 _LIT(KErrMsg, "%S: Expected to Recv %i octets, actual is %i"); |
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412 iOwnerStep->StepLog(KErrMsg, &iName, expected, iPtrRecvd.Length()); |
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413 } |
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414 iState = ERecvdData; |
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415 SetActive(); |
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416 } |
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417 |
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418 TInt CEchoSocket::LogReport(TBool& aPassed, TInt& aNumSent, TInt& aUdpRate) |
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419 /** |
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420 * Allows a CEchoSocket to pass back its outcome |
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421 * @param aPassed Did the test pass? |
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422 * @param aUdpRate Percentage of UDP packets dropped |
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423 * @return The last error state of the socket |
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424 */ |
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425 { |
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426 __ASSERT_ALWAYS(iState==EComplete,User::Panic(KTxtCEchoSocket,KErrNotReady)); |
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427 |
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428 aPassed=EFalse; |
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429 aNumSent = iPackets; |
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430 if (KProtocolInetTcp == iProtocol && iRecvdGood == iPackets) |
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431 { |
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432 aPassed=ETrue; |
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433 aUdpRate=0; |
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434 } |
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435 else |
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436 { |
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437 TInt dropped = 100; |
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438 if (iPackets != 0) // No div/0 errs thanks... |
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439 // nL = nS - nR |
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440 // nL/nS = 1 - nR/nS |
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441 dropped = 100 - ((100*iRecvdGood) / iPackets); |
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442 |
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443 if (dropped <= iUDPTolerance) |
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444 aPassed=ETrue; |
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445 aUdpRate= dropped; |
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446 } |
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447 return iSockErr; |
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448 } |
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449 |
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450 |
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451 void CEchoSocket::SafetyCall() |
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452 /** |
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453 * Allows the safety timer access, without becoming a friend class. |
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454 */ |
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455 { |
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456 if (iIsListener && (KProtocolInetTcp == iProtocol)) |
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457 { |
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458 iAcceptedConnection.CancelAll(); |
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459 } |
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460 |
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461 iSocket.CancelAll(); |
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462 } |
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463 void CEchoSocket::SetComplete() |
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464 /** |
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465 * Sets the socket to completion status. |
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466 */ |
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467 { |
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468 iSafety->Cancel(); |
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469 iSocket.CancelAll(); |
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470 iSocket.Close(); |
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471 if(iIsListener && (KProtocolInetTcp == iProtocol)) |
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472 { |
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473 iAcceptedConnection.CancelAll(); |
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474 iAcceptedConnection.Close(); |
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475 } |
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476 |
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477 |
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478 |
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479 |
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480 iSockErr = iStatus.Int(); // Record the last error for use by caller. |
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481 iStatus = KRequestPending; |
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482 iState = EComplete; |
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483 if(!IsActive() ) |
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484 SetActive(); |
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485 TRequestStatus* pS = &iStatus; |
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486 User::RequestComplete(pS,KErrNone); |
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487 |
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488 } |
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489 |
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490 |
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491 |
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492 |
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493 |
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494 CSafety::CSafety() : CActive(EPriorityNormal), iTime(CEchoSocket::SAFETY_TIMEOUT) |
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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 CSafety::~CSafety() |
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500 { |
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501 Cancel(); |
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502 iSafety.Close(); |
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503 } |
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504 |
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505 CSafety* CSafety::NewL(CEchoSocket* aOwner) |
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506 { |
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507 CSafety* self = new(ELeave) CSafety; |
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508 CleanupStack::PushL(self); |
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509 self->ConstructL(aOwner); |
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510 CleanupStack::Pop(); |
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511 return self; |
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512 } |
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513 |
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514 |
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515 void CSafety::ConstructL(CEchoSocket* aOwner) |
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516 { |
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517 myOwner=aOwner; |
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518 iSafety.CreateLocal(); |
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519 CEnhancedScheduler::Add(this); |
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520 } |
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521 |
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522 void CSafety::RunL() |
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523 { |
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524 myOwner->SafetyCall(); |
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525 } |
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526 |
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527 |
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528 void CSafety::DoCancel() |
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529 { |
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530 iSafety.Cancel(); |
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531 } |
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532 |
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533 void CSafety::SetSafety() |
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534 { |
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535 __ASSERT_ALWAYS(!IsActive(), User::Panic(KTxtCEchoSocket, KErrAlreadyExists)); |
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536 iSafety.After(iStatus, iTime); |
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537 SetActive(); |
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538 } |
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539 CSplitEchoSocket* CSplitEchoSocket::NewL() |
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540 { |
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541 CSplitEchoSocket* self = new (ELeave)CSplitEchoSocket(); |
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542 CleanupStack::PushL(self); |
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543 self->ConstructL(); |
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544 CEnhancedScheduler::Add(self); |
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545 CleanupStack::Pop(self); |
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546 return self; |
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547 } |
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548 |
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549 CSplitEchoSocket::CSplitEchoSocket() : CEchoSocket() |
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550 { |
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551 } |
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552 |
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553 CSplitEchoSocket::~CSplitEchoSocket() |
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554 { |
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555 } |
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556 |
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557 TInt CSplitEchoSocket::Echo(const TInetAddr& aDest, const TInetAddr& aSrc, |
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558 const TInt& aSize, const TInt& aPackets, |
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559 const TUint& aProto, const TInt& aTol, |
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560 TConnDetails* aConn, const TInt& aSockNum, |
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561 const TBool aIsListener, CTS_MultiHomingStep* aStep) |
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562 /** |
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563 * Creates an Echo socket and runs it to completion or error |
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564 * @param aSockServ The socket server to attach to |
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565 * @param aDest The destination IP address |
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566 * @param aSize The packet size to use in bytes |
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567 * @param aPackets The number of packets to send |
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568 * @param aProto The protocol to use |
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569 * @param aTol The UDP data tolerance level |
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570 * @return Error value for initialisation stage |
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571 */ |
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572 { |
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573 __ASSERT_ALWAYS(!IsActive(), User::Panic(KTxtCEchoSocket,KErrAlreadyExists)); |
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574 __ASSERT_ALWAYS(aSize <= CTS_MultiHomingStep::MAX_PACKET_SIZE, User::Panic(KTxtCEchoSocket,KErrOverflow)); |
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575 |
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576 // Remember the config |
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577 iDestAddr = aDest; |
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578 iSrcAddr = aSrc; |
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579 iPacketSize = aSize; |
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580 iPacketsToSend = aPackets; |
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581 iPackets = aPackets; |
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582 iProtocol = aProto; |
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583 iUDPTolerance = aTol; |
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584 iOwnerStep = aStep; |
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585 iTConnection = aConn; |
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586 iSockNum = aSockNum; |
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587 |
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588 iIsListener = aIsListener; |
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589 |
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590 TInt err = KErrNone; |
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591 |
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592 iPtrWritn.SetLength(aSize); |
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593 iPtrRecvd.SetLength(aSize); |
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594 |
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595 |
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596 if(iTConnection == 0) |
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597 return KErrGeneral; |
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598 // Open the socket for implicit or explicit case |
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599 if(iTConnection->iConnectionType != TConnDetails::implicitConn) |
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600 { |
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601 err = iSocket.Open( (iTConnection->iSocketServ), KAfInet, |
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602 iProtocol == KProtocolInetTcp ? KSockStream : KSockDatagram, iProtocol, |
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603 (iTConnection->iConnection)); |
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604 } |
|
605 else |
|
606 { |
|
607 err = iSocket.Open( (iTConnection->iSocketServ), KAfInet, |
|
608 iProtocol == KProtocolInetTcp ? KSockStream : KSockDatagram, iProtocol); |
|
609 } |
|
610 if (err != KErrNone) |
|
611 return err; // No point going any further... |
|
612 |
|
613 iSocket.Name(iName); |
|
614 |
|
615 if(iIsListener) // Don't bind if we are only sending |
|
616 { |
|
617 err = iSocket.Bind(iSrcAddr); |
|
618 iOwnerStep->StepLog(_L("Binding %S:%i"),&iName, iSockNum); |
|
619 if(err != KErrNone) |
|
620 return err; |
|
621 |
|
622 // Accept a single connection |
|
623 if (iProtocol == KProtocolInetTcp) |
|
624 { |
|
625 iSocket.Listen(1); |
|
626 iOwnerStep->StepLog(_L("Listening %S:%i"),&iName, iSockNum); |
|
627 } |
|
628 } |
|
629 |
|
630 iState = EInitialised; |
|
631 iStatus = KRequestPending; |
|
632 SetActive(); |
|
633 |
|
634 // Increment the echosocket counter and client |
|
635 iOwnerStep->iOwnerSuite->iScheduler->IncCount(); |
|
636 |
|
637 TName addrBuf; |
|
638 iDestAddr.Output(addrBuf); |
|
639 iOwnerStep->StepLog(KSockDetails,&iName,iSockNum,&addrBuf,iDestAddr.Port(),iPacketsToSend,iPacketSize); |
|
640 |
|
641 TRequestStatus* pS = &iStatus; |
|
642 User::RequestComplete(pS,KErrNone); |
|
643 |
|
644 return KErrNone; |
|
645 } |
|
646 |
|
647 |
|
648 void CSplitEchoSocket::RunL() |
|
649 { |
|
650 switch (iState) |
|
651 { |
|
652 case EInitialised: |
|
653 if (KProtocolInetTcp == iProtocol) |
|
654 { |
|
655 if(iIsListener) |
|
656 { |
|
657 iAcceptedConnection.Open( (iTConnection->iSocketServ)); |
|
658 iSocket.Accept(iAcceptedConnection, iStatus); |
|
659 iOwnerStep->StepLog(_L("Waiting for TCP accept on %S:%i"),&iName, iSockNum); |
|
660 iSafety->SetSafety(); |
|
661 iState = EReady; |
|
662 SetActive(); |
|
663 } |
|
664 else |
|
665 { |
|
666 ConnectTcp(); |
|
667 iOwnerStep->StepLog(_L("Connecting TCP %S:%i"),&iName, iSockNum); |
|
668 } |
|
669 } |
|
670 else if (KProtocolInetUdp == iProtocol) |
|
671 { |
|
672 if(iIsListener) |
|
673 { |
|
674 RecvData(); |
|
675 } |
|
676 else |
|
677 { |
|
678 BindUdp(); |
|
679 iOwnerStep->StepLog(_L("Binding UDP %S:%i"), &iName, iSockNum); |
|
680 } |
|
681 } |
|
682 break; |
|
683 |
|
684 case EReady: |
|
685 iSafety->Cancel(); |
|
686 if (iStatus.Int() == KErrNone) |
|
687 { |
|
688 if(iIsListener) |
|
689 { |
|
690 if (KProtocolInetTcp == iProtocol) |
|
691 { |
|
692 RecvDataTcpListen(); |
|
693 } |
|
694 else |
|
695 { |
|
696 RecvData(); |
|
697 } |
|
698 } |
|
699 else |
|
700 { |
|
701 SendData(); |
|
702 } |
|
703 } |
|
704 else |
|
705 { |
|
706 iOwnerStep->StepLog(KErrConnectFailed,&iName,iSockNum, iStatus.Int()); |
|
707 SetComplete(); |
|
708 } |
|
709 break; |
|
710 |
|
711 case ESentData: |
|
712 iSafety->Cancel(); |
|
713 if (iStatus == KErrNone) |
|
714 { |
|
715 if(iIsListener) |
|
716 { |
|
717 if (KProtocolInetTcp == iProtocol) |
|
718 { |
|
719 RecvDataTcpListen(); |
|
720 } |
|
721 else |
|
722 { |
|
723 RecvData(); |
|
724 } |
|
725 } |
|
726 else |
|
727 { |
|
728 iRecvdGood++; // Fake that we've received all we should (sending socket doesn't receive) |
|
729 // Blindly send, no receiving |
|
730 if (iPacketsToSend>0) |
|
731 { |
|
732 SendData(); |
|
733 } |
|
734 else |
|
735 { |
|
736 SetComplete(); |
|
737 } |
|
738 } |
|
739 } |
|
740 else |
|
741 { |
|
742 iOwnerStep->StepLog(KErrSendFailed, &iName, iSockNum, iStatus.Int()); |
|
743 SetComplete(); // Couldn't send, so bit of a problem... |
|
744 } |
|
745 break; |
|
746 |
|
747 case ERecvdData: |
|
748 iSafety->Cancel(); |
|
749 if(iIsListener && (iStatus.Int() == KErrEof) ) |
|
750 { |
|
751 iRecvdGood++; |
|
752 iStatus = KErrNone; |
|
753 SetComplete(); |
|
754 } |
|
755 else if(iStatus.Int() == KErrNone) |
|
756 { |
|
757 // Reset our consecutive count |
|
758 iConsecRecvTimeOuts = 0; |
|
759 if (iIsListener) |
|
760 { |
|
761 iRecvdGood++; |
|
762 |
|
763 if (iPacketsToSend > 0) |
|
764 { |
|
765 if(iIsListener) |
|
766 { |
|
767 if (KProtocolInetUdp == iProtocol) |
|
768 { |
|
769 RecvData(); |
|
770 } |
|
771 else |
|
772 { |
|
773 RecvDataTcpListen(); |
|
774 } |
|
775 } |
|
776 else |
|
777 { |
|
778 SendData(); |
|
779 } |
|
780 } |
|
781 else |
|
782 { |
|
783 SetComplete(); |
|
784 } |
|
785 } |
|
786 else |
|
787 { |
|
788 // Try reading again, usualy happens because of a timeout |
|
789 iOwnerStep->StepLog(KErrPacketsDiff, &iName, iSockNum); |
|
790 RecvData(); |
|
791 } |
|
792 } |
|
793 else if (KErrCancel == iStatus.Int()) // We cancelled our receive |
|
794 { |
|
795 iConsecRecvTimeOuts++; |
|
796 iOwnerStep->StepLog(_L("Receive timeout on %S:%i,%d"),&iName, iSockNum, |
|
797 iConsecRecvTimeOuts); |
|
798 |
|
799 iOwnerStep->StepLog(_L("%d received packets, %d still to send"),iRecvdGood, iPacketsToSend); |
|
800 |
|
801 if ( (iPacketsToSend - iUDPTolerance) > 0 && iConsecRecvTimeOuts < MAX_CONSEC_TIMEOUT) |
|
802 { |
|
803 if (iIsListener) |
|
804 { |
|
805 if (KProtocolInetUdp == iProtocol) |
|
806 { |
|
807 RecvData(); |
|
808 } |
|
809 else |
|
810 { |
|
811 RecvDataTcpListen(); |
|
812 } |
|
813 } |
|
814 else |
|
815 { |
|
816 if (KProtocolInetTcp == iProtocol) |
|
817 SendData(); |
|
818 } |
|
819 } |
|
820 else |
|
821 { |
|
822 SetComplete(); |
|
823 } |
|
824 } |
|
825 else |
|
826 { |
|
827 TPtrC errorText = CLog::EpocErrorToText(iStatus.Int()); |
|
828 iOwnerStep->StepLog(KErrRecvFailed, &iName, iSockNum, &errorText); |
|
829 SetComplete(); |
|
830 } |
|
831 break; |
|
832 |
|
833 |
|
834 case EComplete: |
|
835 iOwnerStep->iOwnerSuite->iScheduler->DecCount(); |
|
836 if(0 == iOwnerStep->iOwnerSuite->iScheduler->GetCount()) |
|
837 CEnhancedScheduler::Stop(); |
|
838 break; |
|
839 |
|
840 default: |
|
841 iOwnerStep->StepLog(KTxtWhatHappened); |
|
842 break; |
|
843 |
|
844 } |
|
845 } |
|
846 |
|
847 void CSplitEchoSocket::RecvData() |
|
848 /** |
|
849 * Receives data on socket |
|
850 * |
|
851 */ |
|
852 { |
|
853 // Receive data |
|
854 iSafety->SetSafety(); |
|
855 TInt expected = iPtrRecvd.Length(); |
|
856 if(iProtocol == KProtocolInetTcp) |
|
857 { |
|
858 iSocket.Read(iPtrRecvd, iStatus); |
|
859 } |
|
860 else if(iProtocol == KProtocolInetUdp) |
|
861 { |
|
862 if (iIsListener) |
|
863 { |
|
864 //iSocket.RecvFrom(iPtrRecvd, iSrcAddr, 0, iStatus); |
|
865 iSocket.Recv(iPtrRecvd, 0, iStatus); |
|
866 iOwnerStep->StepLog(_L("Receiving UDP Packet...")); |
|
867 } |
|
868 else |
|
869 { |
|
870 iSocket.Recv(iPtrRecvd, 0, iStatus); |
|
871 } |
|
872 } |
|
873 if (iIsListener) |
|
874 iPacketsToSend--; // Decrement this |
|
875 |
|
876 iState = ERecvdData; |
|
877 SetActive(); |
|
878 } |
|
879 |