1 // The MIT License (MIT) 2 // 3 // Copyright (c) 2015 Sergey Makeev, Vadim Slyusarev 4 // 5 // Permission is hereby granted, free of charge, to any person obtaining a copy 6 // of this software and associated documentation files (the "Software"), to deal 7 // in the Software without restriction, including without limitation the rights 8 // to use, copy, modify, merge, publish, distribute, sublicense, and/or sell 9 // copies of the Software, and to permit persons to whom the Software is 10 // furnished to do so, subject to the following conditions: 11 // 12 // The above copyright notice and this permission notice shall be included in 13 // all copies or substantial portions of the Software. 14 // 15 // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR 16 // IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, 17 // FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE 18 // AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER 19 // LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, 20 // OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN 21 // THE SOFTWARE. 22 23 #pragma once 24 25 #include <MTTools.h> 26 #include <MTPlatform.h> 27 #include <MTConcurrentQueueLIFO.h> 28 #include <MTStackArray.h> 29 #include <MTArrayView.h> 30 #include <MTThreadContext.h> 31 #include <MTFiberContext.h> 32 #include <MTTaskBase.h> 33 #include <MTAllocator.h> 34 #include <MTTaskPool.h> 35 36 #ifdef MT_INSTRUMENTED_BUILD 37 #include <MTMicroWebSrv.h> 38 #endif 39 40 namespace MT 41 { 42 const uint32 MT_MAX_THREAD_COUNT = 64; 43 const uint32 MT_MAX_FIBERS_COUNT = 256; 44 const uint32 MT_SCHEDULER_STACK_SIZE = 1048576; 45 const uint32 MT_FIBER_STACK_SIZE = 65536; 46 47 namespace internal 48 { 49 struct ThreadContext; 50 } 51 52 //////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////// 53 // Task scheduler 54 //////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////// 55 class TaskScheduler 56 { 57 friend class FiberContext; 58 friend struct internal::ThreadContext; 59 60 61 62 //////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////// 63 // Task group description 64 //////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////// 65 // Application can assign task group to task and later wait until group was finished. 66 class TaskGroupDescription 67 { 68 AtomicInt inProgressTaskCount; 69 Event allDoneEvent; 70 71 //Tasks awaiting group through FiberContext::WaitGroupAndYield call 72 ConcurrentQueueLIFO<FiberContext*> waitTasksQueue; 73 74 public: 75 76 bool debugIsFree; 77 78 79 private: 80 81 TaskGroupDescription(TaskGroupDescription& ) {} 82 void operator=(const TaskGroupDescription&) {} 83 84 public: 85 86 TaskGroupDescription() 87 { 88 inProgressTaskCount.Set(0); 89 allDoneEvent.Create( EventReset::MANUAL, true ); 90 debugIsFree = true; 91 } 92 93 int GetTaskCount() const { return inProgressTaskCount.Get(); } 94 ConcurrentQueueLIFO<FiberContext*> & GetWaitQueue() { return waitTasksQueue; } 95 int Dec() { return inProgressTaskCount.Dec(); } 96 int Inc() { return inProgressTaskCount.Inc(); } 97 int Add(int sum) { return inProgressTaskCount.Add(sum); } 98 void Signal() { allDoneEvent.Signal(); } 99 void Reset() { allDoneEvent.Reset(); } 100 bool Wait(uint32 milliseconds) { return allDoneEvent.Wait(milliseconds); } 101 }; 102 103 104 // Thread index for new task 105 AtomicInt roundRobinThreadIndex; 106 107 // Started threads count 108 AtomicInt startedThreadsCount; 109 110 // Threads created by task manager 111 volatile uint32 threadsCount; 112 internal::ThreadContext threadContext[MT_MAX_THREAD_COUNT]; 113 114 // All groups task statistic 115 TaskGroupDescription allGroups; 116 117 // Groups pool 118 ConcurrentQueueLIFO<TaskGroup> availableGroups; 119 120 // 121 TaskGroupDescription groupStats[TaskGroup::MT_MAX_GROUPS_COUNT]; 122 123 // Fibers pool 124 ConcurrentQueueLIFO<FiberContext*> availableFibers; 125 126 // Fibers context 127 FiberContext fiberContext[MT_MAX_FIBERS_COUNT]; 128 129 #ifdef MT_INSTRUMENTED_BUILD 130 int32 webServerPort; 131 profile::MicroWebServer profilerWebServer; 132 int64 startTime; 133 #endif 134 135 FiberContext* RequestFiberContext(internal::GroupedTask& task); 136 void ReleaseFiberContext(FiberContext* fiberExecutionContext); 137 void RunTasksImpl(ArrayView<internal::TaskBucket>& buckets, FiberContext * parentFiber, bool restoredFromAwaitState); 138 TaskGroupDescription & GetGroupDesc(TaskGroup group); 139 140 static void ThreadMain( void* userData ); 141 static void FiberMain( void* userData ); 142 static bool TryStealTask(internal::ThreadContext& threadContext, internal::GroupedTask & task, uint32 workersCount); 143 144 static FiberContext* ExecuteTask (internal::ThreadContext& threadContext, FiberContext* fiberContext); 145 146 public: 147 148 /// \brief Initializes a new instance of the TaskScheduler class. 149 /// \param workerThreadsCount Worker threads count. Automatically determines the required number of threads if workerThreadsCount set to 0 150 TaskScheduler(uint32 workerThreadsCount = 0); 151 ~TaskScheduler(); 152 153 template<class TTask> 154 void RunAsync(TaskGroup group, TTask* taskArray, uint32 taskCount); 155 156 void RunAsync(TaskGroup group, TaskHandle* taskHandleArray, uint32 taskHandleCount); 157 158 159 bool WaitGroup(TaskGroup group, uint32 milliseconds); 160 bool WaitAll(uint32 milliseconds); 161 162 TaskGroup CreateGroup(); 163 void ReleaseGroup(TaskGroup group); 164 165 bool IsEmpty(); 166 167 uint32 GetWorkerCount() const; 168 169 bool IsWorkerThread() const; 170 171 #ifdef MT_INSTRUMENTED_BUILD 172 173 size_t GetProfilerEvents(uint32 workerIndex, MT::ProfileEventDesc * dstBuffer, size_t dstBufferSize); 174 void UpdateProfiler(); 175 int32 GetWebServerPort() const; 176 177 inline int64 GetStartTime() const 178 { 179 return startTime; 180 } 181 182 #endif 183 }; 184 } 185 186 #include "MTScheduler.inl" 187 #include "MTFiberContext.inl" 188