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| 1 // Copyright (c) 2016, the Dart project authors. Please see the AUTHORS file | 1 // Copyright (c) 2016, the Dart project authors. Please see the AUTHORS file |
| 2 // for details. All rights reserved. Use of this source code is governed by a | 2 // for details. All rights reserved. Use of this source code is governed by a |
| 3 // BSD-style license that can be found in the LICENSE file. | 3 // BSD-style license that can be found in the LICENSE file. |
| 4 | 4 |
| 5 #include "vm/safepoint.h" | 5 #include "vm/safepoint.h" |
| 6 | 6 |
| 7 #include "vm/thread.h" | 7 #include "vm/thread.h" |
| 8 #include "vm/thread_registry.h" | 8 #include "vm/thread_registry.h" |
| 9 | 9 |
| 10 namespace dart { | 10 namespace dart { |
| (...skipping 23 matching lines...) Expand all Loading... |
| 34 SafepointHandler* handler = I->safepoint_handler(); | 34 SafepointHandler* handler = I->safepoint_handler(); |
| 35 ASSERT(handler != NULL); | 35 ASSERT(handler != NULL); |
| 36 handler->ResumeThreads(T); | 36 handler->ResumeThreads(T); |
| 37 } | 37 } |
| 38 | 38 |
| 39 | 39 |
| 40 SafepointHandler::SafepointHandler(Isolate* isolate) | 40 SafepointHandler::SafepointHandler(Isolate* isolate) |
| 41 : isolate_(isolate), | 41 : isolate_(isolate), |
| 42 safepoint_lock_(new Monitor()), | 42 safepoint_lock_(new Monitor()), |
| 43 number_threads_not_at_safepoint_(0), | 43 number_threads_not_at_safepoint_(0), |
| 44 safepoint_in_progress_(false) { | 44 safepoint_operation_count_(0), |
| 45 owner_(NULL) { |
| 45 } | 46 } |
| 46 | 47 |
| 47 | 48 |
| 48 SafepointHandler::~SafepointHandler() { | 49 SafepointHandler::~SafepointHandler() { |
| 49 ASSERT(safepoint_in_progress_ == false); | 50 ASSERT(owner_ == NULL); |
| 51 ASSERT(safepoint_operation_count_ == 0); |
| 50 delete safepoint_lock_; | 52 delete safepoint_lock_; |
| 51 safepoint_lock_ = NULL; | 53 safepoint_lock_ = NULL; |
| 52 isolate_ = NULL; | 54 isolate_ = NULL; |
| 53 } | 55 } |
| 54 | 56 |
| 55 | 57 |
| 56 void SafepointHandler::SafepointThreads(Thread* T) { | 58 void SafepointHandler::SafepointThreads(Thread* T) { |
| 57 { | 59 { |
| 58 // First grab the threads list lock for this isolate | 60 // First grab the threads list lock for this isolate |
| 59 // and check if a safepoint is already in progress. This | 61 // and check if a safepoint is already in progress. This |
| 60 // ensures that two threads do not start a safepoint operation | 62 // ensures that two threads do not start a safepoint operation |
| 61 // at the same time. | 63 // at the same time. |
| 62 MonitorLocker sl(threads_lock()); | 64 MonitorLocker sl(threads_lock()); |
| 63 | 65 |
| 64 // Now check to see if a safepoint operation is already in progress | 66 // Now check to see if a safepoint operation is already in progress |
| 65 // for this isolate, block if an operation is in progress. | 67 // for this isolate, block if an operation is in progress. |
| 66 while (safepoint_in_progress()) { | 68 while (SafepointInProgress()) { |
| 69 // If we are recursively invoking a Safepoint operation then we |
| 70 // just increment the count and return, otherwise we wait for the |
| 71 // safepoint operation to be done. |
| 72 if (owner_ == T) { |
| 73 increment_safepoint_operation_count(); |
| 74 return; |
| 75 } |
| 67 sl.WaitWithSafepointCheck(T); | 76 sl.WaitWithSafepointCheck(T); |
| 68 } | 77 } |
| 69 | 78 |
| 70 // Set safepoint in progress by this thread. | 79 // Set safepoint in progress state by this thread. |
| 71 set_safepoint_in_progress(true); | 80 SetSafepointInProgress(T); |
| 72 | 81 |
| 73 // Go over the active thread list and ensure that all threads active | 82 // Go over the active thread list and ensure that all threads active |
| 74 // in the isolate reach a safepoint. | 83 // in the isolate reach a safepoint. |
| 75 Thread* current = isolate()->thread_registry()->active_list(); | 84 Thread* current = isolate()->thread_registry()->active_list(); |
| 76 while (current != NULL) { | 85 while (current != NULL) { |
| 77 MonitorLocker tl(current->thread_lock()); | 86 MonitorLocker tl(current->thread_lock()); |
| 78 if (current != T) { | 87 if (current != T) { |
| 79 uint32_t state = current->SetSafepointRequested(true); | 88 uint32_t state = current->SetSafepointRequested(true); |
| 80 if (!Thread::IsAtSafepoint(state)) { | 89 if (!Thread::IsAtSafepoint(state)) { |
| 81 // Thread is not already at a safepoint so try to | 90 // Thread is not already at a safepoint so try to |
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| 107 } | 116 } |
| 108 } | 117 } |
| 109 } | 118 } |
| 110 } | 119 } |
| 111 | 120 |
| 112 | 121 |
| 113 void SafepointHandler::ResumeThreads(Thread* T) { | 122 void SafepointHandler::ResumeThreads(Thread* T) { |
| 114 // First resume all the threads which are blocked for the safepoint | 123 // First resume all the threads which are blocked for the safepoint |
| 115 // operation. | 124 // operation. |
| 116 MonitorLocker sl(threads_lock()); | 125 MonitorLocker sl(threads_lock()); |
| 126 |
| 127 // First check if we are in a recursive safepoint operation, in that case |
| 128 // we just decrement safepoint_operation_count and return. |
| 129 ASSERT(SafepointInProgress()); |
| 130 if (safepoint_operation_count() > 1) { |
| 131 decrement_safepoint_operation_count(); |
| 132 return; |
| 133 } |
| 117 Thread* current = isolate()->thread_registry()->active_list(); | 134 Thread* current = isolate()->thread_registry()->active_list(); |
| 118 while (current != NULL) { | 135 while (current != NULL) { |
| 119 MonitorLocker tl(current->thread_lock()); | 136 MonitorLocker tl(current->thread_lock()); |
| 120 if (current != T) { | 137 if (current != T) { |
| 121 uint32_t state = current->SetSafepointRequested(false); | 138 uint32_t state = current->SetSafepointRequested(false); |
| 122 if (Thread::IsBlockedForSafepoint(state)) { | 139 if (Thread::IsBlockedForSafepoint(state)) { |
| 123 tl.Notify(); | 140 tl.Notify(); |
| 124 } | 141 } |
| 125 } else { | 142 } else { |
| 126 current->SetAtSafepoint(false); | 143 current->SetAtSafepoint(false); |
| 127 } | 144 } |
| 128 current = current->next(); | 145 current = current->next(); |
| 129 } | 146 } |
| 130 // Now set the safepoint_in_progress_ flag to false and notify all threads | 147 // Now reset the safepoint_in_progress_ state and notify all threads |
| 131 // that are waiting to enter the isolate or waiting to start another | 148 // that are waiting to enter the isolate or waiting to start another |
| 132 // safepoint operation. | 149 // safepoint operation. |
| 133 set_safepoint_in_progress(false); | 150 ResetSafepointInProgress(T); |
| 134 sl.NotifyAll(); | 151 sl.NotifyAll(); |
| 135 } | 152 } |
| 136 | 153 |
| 137 | 154 |
| 138 void SafepointHandler::EnterSafepointUsingLock(Thread* T) { | 155 void SafepointHandler::EnterSafepointUsingLock(Thread* T) { |
| 139 MonitorLocker tl(T->thread_lock()); | 156 MonitorLocker tl(T->thread_lock()); |
| 140 T->SetAtSafepoint(true); | 157 T->SetAtSafepoint(true); |
| 141 if (T->IsSafepointRequested()) { | 158 if (T->IsSafepointRequested()) { |
| 142 MonitorLocker sl(safepoint_lock_); | 159 MonitorLocker sl(safepoint_lock_); |
| 143 ASSERT(number_threads_not_at_safepoint_ > 0); | 160 ASSERT(number_threads_not_at_safepoint_ > 0); |
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| 172 while (T->IsSafepointRequested()) { | 189 while (T->IsSafepointRequested()) { |
| 173 T->SetBlockedForSafepoint(true); | 190 T->SetBlockedForSafepoint(true); |
| 174 tl.Wait(); | 191 tl.Wait(); |
| 175 T->SetBlockedForSafepoint(false); | 192 T->SetBlockedForSafepoint(false); |
| 176 } | 193 } |
| 177 T->SetAtSafepoint(false); | 194 T->SetAtSafepoint(false); |
| 178 } | 195 } |
| 179 } | 196 } |
| 180 | 197 |
| 181 } // namespace dart | 198 } // namespace dart |
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