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1 // Copyright (c) 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\euser\us_rwlock.cpp |
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15 // |
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16 // |
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17 |
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18 |
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19 #include "us_std.h" |
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20 #include <e32atomics.h> |
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21 |
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22 const TInt KReadersIndex = 0; |
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23 const TInt KWriterIndex = 1; |
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24 const TInt KReadersPendingIndex = 2; |
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25 const TInt KWritersPendingIndex = 3; |
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26 const TUint64 KReaderValue = UI64LIT(0x0000000000000001); |
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27 const TUint64 KWriterValue = UI64LIT(0x0000000000010000); |
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28 const TUint64 KReaderPendingValue = UI64LIT(0x0000000100000000); |
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29 const TUint64 KWriterPendingValue = UI64LIT(0x0001000000000000); |
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30 const TUint64 KReadersMask = UI64LIT(0x000000000000ffff); |
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31 const TUint64 KWriterMask = KWriterValue; |
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32 const TUint64 KReadersOrWritersMask = KReadersMask | KWriterMask; |
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33 const TUint64 KReadersPendingClearMask = UI64LIT(0xffff0000ffffffff); |
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34 |
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35 /** |
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36 Initialise a read-write lock object. |
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37 @param aPriority Type of priority to use - see RReadWriteLockPriority::TReadWriteLockPriority |
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38 @return KErrNone Instance successfully created |
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39 Otherwise an error returned by RSemaphore::CreateLocal |
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40 @panic EReadWriteLockInvalidPriority if aPriority is not valid. |
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41 */ |
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42 EXPORT_C TInt RReadWriteLock::CreateLocal(TReadWriteLockPriority aPriority) |
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43 { |
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44 __ASSERT_ALWAYS(aPriority >= EWriterPriority && aPriority <= EReaderPriority, Panic(EReadWriteLockInvalidPriority)); |
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45 |
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46 iPriority = aPriority; |
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47 iValues = 0; |
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48 #ifdef _DEBUG |
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49 iSpare[0] = 0; // Keep a rough track of writer starvation |
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50 #endif |
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51 |
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52 TInt ret = iReaderSem.CreateLocal(0, EOwnerProcess); |
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53 if (ret == KErrNone) |
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54 ret = iWriterSem.CreateLocal(0, EOwnerProcess); |
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55 if (ret != KErrNone) |
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56 iReaderSem.Close(); |
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57 |
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58 return ret; |
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59 } |
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60 |
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61 /** |
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62 Close a read-write lock object, releasing the associated semaphores. |
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63 @panic EReadWriteLockStillPending if there are any outstanding clients or pending clients |
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64 */ |
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65 EXPORT_C void RReadWriteLock::Close() |
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66 { |
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67 __ASSERT_ALWAYS(iValues == 0, Panic(EReadWriteLockStillPending)); |
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68 |
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69 iReaderSem.Close(); |
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70 iWriterSem.Close(); |
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71 } |
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72 |
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73 /** |
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74 Ask for a read lock. Will be granted if: |
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75 1) No-one else currently holds the lock or |
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76 2) Only readers hold the lock and: |
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77 a) There are no pending writers or |
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78 b) The priority is for readers. |
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79 Otherwise this function blocks until the lock becomes available to it. |
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80 Please note that ReadLock() is not re-entrant - calling it a second time without releasing the first lock |
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81 runs the risk of being blocked and risking a deadlock situation. |
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82 @panic EReadWriteLockTooManyClients if the resulting number of readers or pending readers exceeds EReadWriteLockClientCategoryLimit |
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83 */ |
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84 EXPORT_C void RReadWriteLock::ReadLock() |
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85 { |
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86 TBool blocked; |
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87 TUint64 initialValues; |
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88 TUint16* indexedValues = (TUint16*)&initialValues; |
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89 |
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90 do { |
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91 initialValues = iValues; |
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92 |
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93 if (indexedValues[KWriterIndex] > 0 || |
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94 (iPriority != EReaderPriority && indexedValues[KWritersPendingIndex] > 0)) |
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95 { |
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96 __ASSERT_ALWAYS(indexedValues[KReadersPendingIndex] < KMaxTUint16, Panic(EReadWriteLockTooManyClients)); |
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97 blocked = ETrue; |
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98 } |
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99 else |
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100 { |
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101 __ASSERT_ALWAYS(indexedValues[KReadersIndex] < KMaxTUint16, Panic(EReadWriteLockTooManyClients)); |
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102 blocked = EFalse; |
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103 } |
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104 } |
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105 while (!__e32_atomic_cas_rel64(&iValues, &initialValues, initialValues + (blocked ? KReaderPendingValue : KReaderValue))); |
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106 |
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107 if (blocked) |
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108 iReaderSem.Wait(); |
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109 } |
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110 |
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111 /** |
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112 Ask for a write lock. Will be granted if no-one else currently holds the lock. |
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113 Otherwise this function blocks until the lock becomes available to it. |
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114 Only one writer can hold the lock at one time. No readers can hold the lock while a writer has it. |
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115 Please note that WriteLock() is not re-entrant - calling it a second time without releasing the first lock |
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116 will block and cause a deadlock situation. |
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117 @panic EReadWriteLockTooManyClients if the resulting number of pending writers exceeds EReadWriteLockClientCategoryLimit |
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118 */ |
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119 EXPORT_C void RReadWriteLock::WriteLock() |
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120 { |
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121 TBool blocked; |
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122 TUint64 initialValues; |
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123 TUint16* indexedValues = (TUint16*)&initialValues; |
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124 |
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125 do { |
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126 initialValues = iValues; |
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127 |
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128 if (initialValues & KReadersOrWritersMask) |
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129 { |
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130 __ASSERT_ALWAYS(indexedValues[KWritersPendingIndex] < KMaxTUint16, Panic(EReadWriteLockTooManyClients)); |
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131 blocked = ETrue; |
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132 } |
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133 else |
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134 { |
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135 blocked = EFalse; |
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136 } |
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137 } |
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138 while (!__e32_atomic_cas_rel64(&iValues, &initialValues, initialValues + (blocked ? KWriterPendingValue : KWriterValue))); |
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139 |
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140 if (blocked) |
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141 iWriterSem.Wait(); |
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142 } |
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143 |
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144 /** |
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145 Ask for a read lock without blocking. |
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146 @return ETrue - lock granted |
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147 EFalse - failed to obtain the lock |
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148 @panic EReadWriteLockTooManyClients if the resulting number of readers exceeds EReadWriteLockClientCategoryLimit |
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149 @see ReadLock() |
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150 */ |
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151 EXPORT_C TBool RReadWriteLock::TryReadLock() |
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152 { |
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153 TUint64 initialValues; |
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154 TUint16* indexedValues = (TUint16*)&initialValues; |
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155 |
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156 do { |
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157 initialValues = iValues; |
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158 |
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159 if (indexedValues[KWriterIndex] > 0 || |
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160 (iPriority != EReaderPriority && indexedValues[KWritersPendingIndex] > 0)) |
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161 return EFalse; |
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162 |
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163 __ASSERT_ALWAYS(indexedValues[KReadersIndex] < KMaxTUint16, Panic(EReadWriteLockTooManyClients)); |
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164 } |
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165 while (!__e32_atomic_cas_rel64(&iValues, &initialValues, initialValues + KReaderValue)); |
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166 |
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167 return ETrue; |
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168 } |
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169 |
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170 /** |
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171 Ask for a write lock without blocking. |
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172 @return ETrue - lock granted |
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173 EFalse - failed to obtain the lock |
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174 @see WriteLock() |
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175 */ |
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176 EXPORT_C TBool RReadWriteLock::TryWriteLock() |
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177 { |
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178 TUint64 initialValues; |
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179 |
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180 do { |
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181 initialValues = iValues; |
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182 |
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183 if (initialValues & KReadersOrWritersMask) |
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184 return EFalse; |
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185 } |
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186 while (!__e32_atomic_cas_rel64(&iValues, &initialValues, initialValues + KWriterValue)); |
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187 |
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188 return ETrue; |
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189 } |
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190 |
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191 /** |
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192 Tries to atomically release a read lock and gain a write lock. |
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193 This function will succeed if: |
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194 - This is the only reader and |
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195 - There are no pending writers or |
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196 - The priority is reader |
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197 @return ETrue - write lock granted |
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198 EFalse - failed to obtain a write lock, read lock retained |
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199 @panic EReadWriteLockBadLockState if the read lock is not currently held |
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200 */ |
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201 EXPORT_C TBool RReadWriteLock::TryUpgradeReadLock() |
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202 { |
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203 __ASSERT_ALWAYS((iValues & KReadersMask) != 0, Panic(EReadWriteLockBadLockState)); // Check we actually hold a read lock |
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204 __ASSERT_DEBUG((iValues & KWriterMask) == 0, Panic(EReadWriteLockBadLockState)); // Check we don't hold a write lock - shouldn't be possible |
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205 |
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206 TUint64 initialValues; |
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207 TUint16* indexedValues = (TUint16*)&initialValues; |
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208 |
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209 do { |
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210 initialValues = iValues; |
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211 |
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212 if (indexedValues[KReadersIndex] > 1 || |
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213 (iPriority != EReaderPriority && indexedValues[KWritersPendingIndex] > 0)) |
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214 return EFalse; |
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215 } |
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216 while (!__e32_atomic_cas_acq64(&iValues, &initialValues, initialValues - KReaderValue + KWriterValue)); |
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217 |
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218 return ETrue; |
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219 } |
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220 |
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221 /** |
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222 Atomically releases a held write lock and gains a read lock. Also unblocks any |
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223 pending readers if: |
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224 - Priority is EPriorityReader or |
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225 - There are no pending writers |
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226 This function can not fail, so it does not return anything. |
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227 @panic EReadWriteLockBadLockState if the lock is not currently held |
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228 */ |
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229 EXPORT_C void RReadWriteLock::DowngradeWriteLock() |
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230 { |
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231 __ASSERT_ALWAYS((iValues & KWriterMask) == KWriterValue, Panic(EReadWriteLockBadLockState)); // Check we actually hold a write lock |
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232 __ASSERT_DEBUG((iValues & KReadersMask) == 0, Panic(EReadWriteLockBadLockState)); // Check we don't hold a read lock - shouldn't be possible |
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233 |
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234 TUint unlockReaders; |
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235 TUint64 initialValues; |
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236 TUint16* indexedValues = (TUint16*)&initialValues; |
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237 TUint64 newValues; |
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238 |
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239 do { |
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240 unlockReaders = 0; |
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241 initialValues = iValues; |
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242 newValues = initialValues - KWriterValue + KReaderValue; // Clear current write lock flag and add a read lock |
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243 |
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244 if (indexedValues[KReadersPendingIndex] > 0 && |
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245 (indexedValues[KWritersPendingIndex] == 0 || iPriority == EReaderPriority)) // Release any other pending readers |
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246 { |
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247 unlockReaders = indexedValues[KReadersPendingIndex]; |
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248 newValues &= KReadersPendingClearMask; // Clear pending readers |
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249 |
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250 if (unlockReaders == KMaxTUint16) // Put a pending reader back to avoid overflow in the readers field |
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251 { |
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252 unlockReaders--; |
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253 newValues += KReaderPendingValue; |
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254 } |
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255 |
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256 newValues += unlockReaders; |
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257 } |
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258 } |
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259 while (!__e32_atomic_cas_acq64(&iValues, &initialValues, newValues)); |
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260 |
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261 if (unlockReaders > 0) |
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262 iReaderSem.Signal(unlockReaders); |
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263 } |
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264 |
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265 /** |
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266 Releases a held read or write lock. If no-one else holds this lock (ie other |
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267 readers) then this will unblock one or more pending clients based on the priority: |
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268 EAlternatePriority - If a read lock is being released then: |
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269 - Give the lock to the first pending writer, if there is one |
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270 - Else give the lock to all pending readers, if there are any |
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271 - If a write lock is being released then: |
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272 - If there are pending readers: |
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273 - If there are pending writers then unblock one pending reader |
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274 - Else if there are no pending writers then unblock all pending readers |
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275 - Else unblock one pending writer, if there is one |
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276 EReaderPriority - Unblock all pending readers. If none then unblock one pending writer, if there is one |
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277 EWriterPriority - Unblock one pending writer, if there is one. If none then unblock any and all pending readers |
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278 @panic EReadWriteLockBadLockState if the lock is not currently held |
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279 */ |
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280 EXPORT_C void RReadWriteLock::Unlock() |
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281 { |
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282 __ASSERT_ALWAYS((iValues & KReadersOrWritersMask) != 0, Panic(EReadWriteLockBadLockState)); // Check we actually hold a lock |
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283 __ASSERT_DEBUG((iValues & KReadersOrWritersMask) <= KWriterValue, Panic(EReadWriteLockBadLockState)); // Check we don't hold a read lock and a write lock at the same time - shouldn't be possible |
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284 |
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285 TInt unlockClients = 0; |
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286 |
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287 switch (iPriority) |
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288 { |
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289 case EWriterPriority: |
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290 unlockClients = UnlockWriter(); break; |
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291 case EAlternatePriority: |
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292 unlockClients = UnlockAlternate(); break; |
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293 default: // EReaderPriority: |
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294 unlockClients = UnlockReader(); break; |
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295 }; |
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296 |
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297 if (unlockClients == -1) |
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298 { |
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299 #ifdef _DEBUG |
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300 iSpare[0] = 0; // Keep a rough track of writer starvation |
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301 #endif |
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302 iWriterSem.Signal(); |
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303 } |
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304 else if (unlockClients > 0) |
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305 { |
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306 #ifdef _DEBUG |
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307 const TUint64 KWritersPendingMask = UI64LIT(0xffff000000000000); |
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308 if (iValues & KWritersPendingMask) |
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309 iSpare[0]++; // Keep a rough track of writer starvation |
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310 if (iSpare[0] > 1000) |
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311 Panic(EReadWriteLockWriterStarvation); |
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312 #endif |
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313 iReaderSem.Signal(unlockClients); |
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314 } |
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315 } |
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316 |
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317 TInt RReadWriteLock::UnlockWriter() |
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318 { |
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319 TUint64 initialValues; |
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320 TUint16* indexedValues = (TUint16*)&initialValues; |
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321 TUint64 newValues; |
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322 TInt unlockClients; |
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323 |
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324 do { |
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325 unlockClients = 0; |
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326 initialValues = iValues; |
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327 newValues = initialValues - (indexedValues[KReadersIndex] > 0 ? KReaderValue : KWriterValue); // Clear current lock flag |
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328 |
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329 if ((newValues & KReadersOrWritersMask) == 0) // No longer locked - release someone else |
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330 { |
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331 if (indexedValues[KWritersPendingIndex] > 0) // Release a writer |
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332 { |
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333 unlockClients = -1; |
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334 newValues -= KWriterPendingValue; |
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335 newValues += KWriterValue; |
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336 } |
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337 else if (indexedValues[KReadersPendingIndex] > 0) // Release all pending readers |
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338 { |
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339 unlockClients = indexedValues[KReadersPendingIndex]; |
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340 newValues &= KReadersPendingClearMask; // Clear pending readers |
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341 newValues += unlockClients; |
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342 } |
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343 } |
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344 } |
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345 while (!__e32_atomic_cas_acq64(&iValues, &initialValues, newValues)); |
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346 |
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347 return unlockClients; |
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348 } |
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349 |
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350 TInt RReadWriteLock::UnlockAlternate() |
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351 { |
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352 TUint64 initialValues; |
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353 TUint16* indexedValues = (TUint16*)&initialValues; |
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354 TUint64 newValues; |
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355 TInt unlockClients; |
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356 |
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357 do { |
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358 unlockClients = 0; |
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359 initialValues = iValues; |
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360 newValues = initialValues - (indexedValues[KReadersIndex] > 0 ? KReaderValue : KWriterValue); // Clear current lock flag |
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361 |
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362 if ((newValues & KReadersOrWritersMask) == 0) // No longer locked - release someone else |
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363 { |
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364 if (indexedValues[KWritersPendingIndex] > 0 && |
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365 (indexedValues[KReadersIndex] > 0 || indexedValues[KReadersPendingIndex] == 0)) // Release a writer if there is one and either this is a read unlock or there are no readers pending |
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366 { |
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367 unlockClients = -1; |
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368 newValues -= KWriterPendingValue; |
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369 newValues += KWriterValue; |
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370 } |
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371 else if (indexedValues[KReadersPendingIndex] > 0) // Release one or more readers |
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372 { |
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373 if (indexedValues[KWritersPendingIndex] > 0) // Just one because there are pending writers |
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374 { |
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375 unlockClients = 1; |
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376 newValues -= KReaderPendingValue; |
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377 newValues += KReaderValue; |
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378 } |
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379 else // All of them |
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380 { |
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381 unlockClients = indexedValues[KReadersPendingIndex]; |
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382 newValues &= KReadersPendingClearMask; // Clear pending readers |
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383 newValues += unlockClients; |
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384 } |
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385 } |
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386 |
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387 } |
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388 } |
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389 while (!__e32_atomic_cas_acq64(&iValues, &initialValues, newValues)); |
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390 |
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391 return unlockClients; |
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392 } |
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393 |
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394 TInt RReadWriteLock::UnlockReader() |
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395 { |
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396 TUint64 initialValues; |
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397 TUint16* indexedValues = (TUint16*)&initialValues; |
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398 TUint64 newValues; |
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399 TInt unlockClients; |
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400 |
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401 do { |
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402 unlockClients = 0; |
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403 initialValues = iValues; |
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404 newValues = initialValues - (indexedValues[KReadersIndex] > 0 ? KReaderValue : KWriterValue); // Clear current lock flag |
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405 |
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406 if ((newValues & KReadersOrWritersMask) == 0) // No longer locked - release someone else |
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407 { |
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408 if (indexedValues[KReadersPendingIndex] > 0) // Release all pending readers |
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409 { |
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410 unlockClients = indexedValues[KReadersPendingIndex]; |
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411 newValues &= KReadersPendingClearMask; // Clear pending readers |
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412 newValues += unlockClients; |
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413 } |
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414 else if (indexedValues[KWritersPendingIndex] > 0) // Release a writer |
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415 { |
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416 unlockClients = -1; |
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417 newValues -= KWriterPendingValue; |
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418 newValues += KWriterValue; |
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419 } |
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420 } |
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421 } |
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422 while (!__e32_atomic_cas_acq64(&iValues, &initialValues, newValues)); |
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423 |
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424 return unlockClients; |
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425 } |
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426 |