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1 // Copyright (c) 2005-2009 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 the License "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 // e32\drivers\trace\btracec.cpp |
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15 // |
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16 // |
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17 |
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18 #include <e32std.h> |
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19 #include <e32std_private.h> |
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20 #include "d32btrace.h" |
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21 #include <e32svr.h> |
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22 #include <e32atomics.h> |
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23 |
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24 |
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25 void Panic(TInt aPanicNum) |
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26 { |
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27 _LIT(KRBTracePanic,"RBTrace"); |
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28 User::Panic(KRBTracePanic,aPanicNum); |
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29 } |
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30 |
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31 EXPORT_C TInt RBTrace::Open() |
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32 { |
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33 _LIT(KBTraceLddName,"btracex"); |
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34 TInt r = User::LoadLogicalDevice(KBTraceLddName); |
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35 if(r!=KErrNone && r!=KErrAlreadyExists) |
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36 return r; |
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37 r = DoCreate( Name(), TVersion(), KNullUnit, NULL, NULL, EOwnerThread); |
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38 if(r==KErrNone) |
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39 { |
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40 r = OpenChunk(); |
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41 if(r!=KErrNone) |
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42 Close(); |
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43 } |
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44 return r; |
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45 }; |
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46 |
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47 |
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48 TInt RBTrace::OpenChunk() |
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49 { |
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50 TInt r = iDataChunk.SetReturnedHandle(DoControl(EOpenBuffer)); |
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51 if(r==KErrNone) |
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52 iBuffer = (TBTraceBuffer*)iDataChunk.Base(); |
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53 iLastGetDataSize = 0; |
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54 return r; |
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55 } |
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56 |
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57 |
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58 void RBTrace::CloseChunk() |
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59 { |
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60 iLastGetDataSize = 0; |
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61 iBuffer = NULL; |
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62 iDataChunk.Close(); |
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63 } |
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64 |
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65 |
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66 EXPORT_C void RBTrace::Close() |
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67 { |
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68 CloseChunk(); |
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69 RBusLogicalChannel::Close(); |
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70 } |
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71 |
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72 |
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73 EXPORT_C TInt RBTrace::BufferSize() |
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74 { |
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75 if(!iDataChunk.Handle()) |
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76 return 0; |
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77 return iBuffer->iEnd; |
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78 } |
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79 |
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80 |
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81 EXPORT_C TInt RBTrace::ResizeBuffer(TInt aSize) |
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82 { |
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83 CloseChunk(); |
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84 TInt r = DoControl(EResizeBuffer,(TAny*)aSize); |
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85 if(r==KErrNone) |
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86 r = OpenChunk(); |
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87 return r; |
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88 } |
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89 |
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90 |
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91 EXPORT_C void RBTrace::Empty() |
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92 { |
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93 TBTraceBuffer* buffer = iBuffer; |
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94 TUint32 mode = __e32_atomic_swp_acq32(&buffer->iMode, 0); /* read original mode and disable trace */ |
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95 while(__e32_atomic_load_acq32(&buffer->iGeneration) & 1) /* wait for trace handler to complete */ |
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96 { /* should really __chill() but not available user side */ } |
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97 buffer->iTail = buffer->iHead; |
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98 __e32_atomic_store_ord32(&buffer->iMode, mode); |
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99 } |
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100 |
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101 |
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102 EXPORT_C TUint RBTrace::Mode() |
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103 { |
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104 return iBuffer->iMode; |
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105 } |
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106 |
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107 |
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108 EXPORT_C void RBTrace::SetMode(TUint aMode) |
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109 { |
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110 iLastGetDataSize = 0; |
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111 __e32_atomic_store_ord32(&iBuffer->iMode, aMode); |
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112 } |
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113 |
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114 |
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115 EXPORT_C TInt RBTrace::SetFilter(TUint aCategory, TInt aValue) |
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116 { |
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117 return (TInt)DoControl(ESetFilter,(TAny*)aCategory,(TAny*)aValue); |
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118 } |
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119 |
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120 |
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121 EXPORT_C TInt RBTrace::SetFilter2(TUint32 aUid, TBool aValue) |
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122 { |
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123 return (TInt)DoControl(ESetFilter2,(TAny*)aUid,(TAny*)aValue); |
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124 } |
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125 |
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126 |
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127 EXPORT_C TInt RBTrace::SetFilter2(const TUint32* aUids, TInt aNumUids) |
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128 { |
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129 return (TInt)DoControl(ESetFilter2Array,(TAny*)aUids,(TAny*)aNumUids); |
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130 } |
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131 |
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132 |
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133 EXPORT_C TInt RBTrace::SetFilter2(TInt aGlobalFilter) |
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134 { |
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135 return DoControl(ESetFilter2Global,(TAny*)aGlobalFilter); |
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136 } |
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137 |
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138 |
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139 EXPORT_C TInt RBTrace::Filter2(TUint32*& aUids, TInt& aGlobalFilter) |
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140 { |
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141 TInt count = (TInt)DoControl(EGetFilter2Part1,&aUids,&aGlobalFilter); |
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142 if(count<=0) |
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143 { |
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144 aUids = 0; |
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145 return count; |
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146 } |
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147 aUids = (TUint32*)User::Alloc(count*sizeof(TUint32)); |
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148 if(!aUids) |
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149 return KErrNoMemory; |
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150 DoControl(EGetFilter2Part2,aUids,(TAny*)count); |
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151 return count; |
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152 } |
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153 |
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154 |
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155 EXPORT_C TInt RBTrace::GetData(TUint8*& aData) |
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156 { |
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157 TInt size = iBuffer->GetData(aData); |
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158 iLastGetDataSize = size; |
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159 return size; |
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160 } |
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161 |
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162 EXPORT_C void RBTrace::DataUsed() |
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163 { |
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164 TBTraceBuffer* buffer = iBuffer; |
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165 if(!(buffer->iMode&RBTrace::EFreeRunning)) |
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166 { |
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167 /* Make sure change to iTail is not observed before the trace data reads |
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168 which preceded the call to this function. */ |
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169 __e32_memory_barrier(); |
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170 buffer->iTail += iLastGetDataSize; |
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171 } |
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172 iLastGetDataSize = 0; |
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173 } |
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174 |
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175 |
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176 EXPORT_C void RBTrace::RequestData(TRequestStatus& aStatus, TInt aSize) |
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177 { |
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178 if(aSize<0) |
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179 aSize = 0; |
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180 aStatus = KRequestPending; |
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181 if(aSize || iBuffer->iHead==iBuffer->iTail) |
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182 DoControl(ERequestData,&aStatus,(TAny*)aSize); |
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183 else |
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184 { |
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185 TRequestStatus* s = &aStatus; |
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186 User::RequestComplete(s,KErrNone); |
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187 } |
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188 } |
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189 |
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190 |
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191 EXPORT_C void RBTrace::CancelRequestData() |
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192 { |
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193 DoControl(ECancelRequestData); |
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194 } |
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195 |
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196 EXPORT_C TBool RBTrace::SetTimestamp2Enabled(TBool aEnable) |
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197 { |
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198 return (TBool)DoControl(ESetTimestamp2Enabled, (TAny*)aEnable); |
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199 } |
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200 |
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201 /** |
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202 Find out how much data is available. |
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203 @param aData Set to the buffer offset where the available trace data is located. |
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204 @param aTail Set to the the original value of the iTail pointer |
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205 @return Number of bytes of trace data, or an error. |
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206 */ |
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207 TInt TBTraceBuffer::Data(TUint& aData, TUint& aTail) |
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208 { |
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209 TUint head, tail, wrap; |
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210 TUint32 g0; |
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211 TInt retries=64; |
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212 do { |
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213 if (--retries<0) |
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214 return KErrInUse; |
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215 // sleep every 8 tries to give the write a chance |
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216 if (retries&7==0) |
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217 User::AfterHighRes(1); |
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218 g0 = iGeneration; |
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219 __e32_memory_barrier(); |
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220 head = iHead; |
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221 wrap = iWrap; |
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222 tail = __e32_atomic_and_rlx32(&iTail, ~TUint32(1)); |
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223 __e32_memory_barrier(); |
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224 } while(iGeneration!=g0 || (g0&1)); // repeat until we get a consistent set |
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225 tail &= ~1; |
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226 aTail = tail; |
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227 TUint end = head; |
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228 if (head<tail) |
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229 { |
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230 end = wrap; |
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231 if (tail>=end) |
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232 { |
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233 tail = iStart; |
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234 end = head; |
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235 } |
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236 } |
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237 aData = tail; |
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238 return end - tail; |
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239 } |
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240 |
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241 |
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242 /** |
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243 Adjust trace data size so it represents a whole number of trace records. |
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244 @param aData The buffer offset where the available trace data is located. |
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245 @param aSize The size of data at aTail. Must be >= KMaxBTraceRecordSize. |
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246 @return An adjusted value for aSize. |
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247 */ |
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248 TInt TBTraceBuffer::Adjust(TUint aData, TInt aSize) |
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249 { |
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250 TInt adjustedSize = (aSize&~3) - KMaxBTraceRecordSize; |
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251 if (adjustedSize<0) |
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252 Panic(0); |
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253 volatile TUint8* recordOffsets = (volatile TUint8*)this + iRecordOffsets; |
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254 adjustedSize += recordOffsets[(aData+adjustedSize)>>2]<<2; |
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255 if (adjustedSize>aSize) |
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256 Panic(1); |
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257 return adjustedSize; |
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258 } |
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259 |
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260 |
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261 /** |
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262 Update the stored tail offset. |
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263 @param aOld The value which iTail is expected to have if no more overwrites have occurred |
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264 @param aNew The new value for iTail |
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265 @return aNew on success, 0 if the previous tail value had changed before we could update it. |
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266 */ |
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267 TUint TBTraceBuffer::UpdateTail(TUint32 aOld, TUint32 aNew) |
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268 { |
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269 if (__e32_atomic_cas_rel32(&iTail, &aOld, aNew)) |
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270 return aNew; // if iTail==aOld, set iTail=aNew and return aNew |
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271 return 0; // else return 0 |
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272 } |
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273 |
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274 |
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275 /** |
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276 Copy data out of the main trace buffer into the 'copy buffer'. |
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277 This may fail if the data is overwritten before it hase been successfully copied. |
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278 @param aData The buffer offset where the available trace data is located. |
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279 @param aTail The value which iTail is expected to have if no more overwrites have occurred |
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280 @param aSize The size of data at aTail |
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281 @return The number of bytes successfully copied. |
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282 @post iBuffer.iTail has been updated to point to the trace record following those copied. |
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283 */ |
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284 TInt TBTraceBuffer::CopyData(TUint aData, TUint aTail, TInt aSize) |
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285 { |
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286 // clip size to copy buffer |
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287 TInt maxSize = iCopyBufferSize; |
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288 if (aSize>maxSize) |
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289 aSize = Adjust(aData,maxSize); |
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290 |
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291 if (iTail & 1) |
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292 return 0; // give up if data we're about to copy has been overwritten |
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293 |
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294 memcpy((TUint8*)this+iCopyBuffer, (TUint8*)this+aData, aSize); |
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295 |
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296 if (!UpdateTail(aTail, aData+aSize)) |
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297 return 0; |
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298 |
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299 return aSize; |
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300 } |
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301 |
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302 |
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303 /** |
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304 Get pointer to as much contiguous trace data as is available. |
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305 @param aData Pointer to the first byte of trace data. |
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306 @return The number of bytes of trace data available at aData. |
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307 */ |
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308 TInt TBTraceBuffer::GetData(TUint8*& aData) |
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309 { |
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310 TInt retries = 4; |
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311 |
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312 // get availabe data... |
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313 TUint data, tail; |
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314 TInt size = Data(data, tail); |
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315 if (!size) |
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316 return size; // no data available |
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317 |
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318 if (!(iMode & RBTrace::EFreeRunning)) |
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319 { |
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320 // if we got an error from Data but aren't in free-running mode, something has |
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321 // been interrupting the writing thread for some time while it has interrupts |
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322 // turned off. give up. |
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323 if (size<0) |
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324 return 0; |
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325 // were not in free-running mode, so we can leave the data where it is... |
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326 aData = (TUint8*)this + data; |
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327 iTail = data; // OK since iTail never updated by kernel in this mode |
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328 return size; |
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329 } |
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330 |
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331 // if we couldn't get a consistent snapshot of the pointers, we need to disable |
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332 // free running, otherwise we will stall for a very long time. |
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333 if (size==KErrInUse) |
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334 goto giveup; |
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335 |
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336 // copy data to the copy buffer... |
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337 aData = (TUint8*)this + iCopyBuffer; |
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338 size = CopyData(data, tail, size); |
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339 if (size) |
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340 return size; // success |
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341 |
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342 // data copy failed because new data was added during copy; this happens when the buffer |
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343 // is full, so now we'll attempt to discard data to give us some breathing space... |
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344 while(retries) |
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345 { |
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346 // see what data is available... |
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347 size = Data(data, tail); |
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348 if (!size) |
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349 return size; // no data in buffer (shouldn't happen because buffer was full to start with) |
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350 if (size==KErrInUse) |
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351 goto giveup; |
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352 |
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353 // discard a proportion of the data... |
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354 TInt discard = iCopyBufferSize>>retries; |
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355 if (discard>=size) |
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356 discard = size; |
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357 else |
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358 discard = Adjust(data, discard); // make sure we only discard a whole number of trace records |
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359 size -= discard; |
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360 data = UpdateTail(tail, data+discard); |
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361 if (!data) |
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362 continue; // tail was updated before we could discard, so try again |
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363 if (!size) |
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364 continue; // we discarded everything - make sure and then exit |
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365 |
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366 // try and copy remaining data... |
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367 size = CopyData(data, data, size); |
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368 if (size) |
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369 break; // success! |
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370 |
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371 // loop around for another go, discard more this time |
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372 --retries; |
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373 } |
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374 |
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375 if (!size) |
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376 { |
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377 giveup: |
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378 // we haven't managed to copy data, so give up and do it with free-running mode off... |
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379 TUint32 mode = __e32_atomic_and_acq32(&iMode, ~(TUint32)RBTrace::EFreeRunning); /* read original mode and disable free running */ |
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380 size = Data(data, tail); |
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381 // as above: if we get an error here then something has been interrupting the writer |
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382 // for an unreasonable time, give up. |
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383 if (size<0) |
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384 return 0; |
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385 size = CopyData(data, tail, size); |
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386 __e32_atomic_store_ord32(&iMode, mode); /* restore original mode */ |
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387 } |
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388 |
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389 // we discarded some data, so mark first trace record to indicate that some records are missing... |
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390 aData[BTrace::EFlagsIndex] |= BTrace::EMissingRecord; |
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391 |
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392 return size; |
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393 } |
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394 |
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395 |