mirror of
https://github.com/Ryujinx/Ryujinx.git
synced 2024-11-30 19:42:05 +00:00
521751795a
* Some style fixes and nits on ITimeZoneService * Remove some unneeded usings * Remove the Ryujinx.HLE.OsHle.Handles namespace * Remove hbmenu automatic load on process exit * Rename Ns to Device, rename Os to System, rename SystemState to State * Move Exceptions and Utilities out of OsHle * Rename OsHle to HOS * Rename OsHle folder to HOS * IManagerDisplayService and ISystemDisplayService style fixes * BsdError shouldn't be public * Add a empty new line before using static * Remove unused file * Some style fixes on NPDM * Exit gracefully when the application is closed * Code style fixes on IGeneralService * Add 0x prefix on values printed as hex * Small improvements on finalization code * Move ProcessId and ThreadId out of AThreadState * Rename VFs to FileSystem * FsAccessHeader shouldn't be public. Also fix file names casing * More case changes on NPDM * Remove unused files * Move using to the correct place on NPDM * Use properties on KernelAccessControlMmio * Address PR feedback
370 lines
No EOL
9.9 KiB
C#
370 lines
No EOL
9.9 KiB
C#
using Ryujinx.HLE.Logging;
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using System;
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using System.Collections.Concurrent;
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using System.Threading;
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namespace Ryujinx.HLE.HOS.Kernel
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{
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class KProcessScheduler : IDisposable
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{
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private ConcurrentDictionary<KThread, SchedulerThread> AllThreads;
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private ThreadQueue WaitingToRun;
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private KThread[] CoreThreads;
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private bool[] CoreReschedule;
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private object SchedLock;
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private Logger Log;
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public KProcessScheduler(Logger Log)
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{
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this.Log = Log;
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AllThreads = new ConcurrentDictionary<KThread, SchedulerThread>();
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WaitingToRun = new ThreadQueue();
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CoreThreads = new KThread[4];
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CoreReschedule = new bool[4];
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SchedLock = new object();
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}
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public void StartThread(KThread Thread)
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{
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lock (SchedLock)
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{
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SchedulerThread SchedThread = new SchedulerThread(Thread);
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if (!AllThreads.TryAdd(Thread, SchedThread))
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{
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return;
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}
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if (TryAddToCore(Thread))
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{
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Thread.Thread.Execute();
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PrintDbgThreadInfo(Thread, "running.");
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}
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else
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{
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WaitingToRun.Push(SchedThread);
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PrintDbgThreadInfo(Thread, "waiting to run.");
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}
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}
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}
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public void RemoveThread(KThread Thread)
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{
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PrintDbgThreadInfo(Thread, "exited.");
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lock (SchedLock)
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{
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if (AllThreads.TryRemove(Thread, out SchedulerThread SchedThread))
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{
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WaitingToRun.Remove(SchedThread);
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SchedThread.Dispose();
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}
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int ActualCore = Thread.ActualCore;
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SchedulerThread NewThread = WaitingToRun.Pop(ActualCore);
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if (NewThread == null)
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{
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Log.PrintDebug(LogClass.KernelScheduler, $"Nothing to run on core {ActualCore}!");
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CoreThreads[ActualCore] = null;
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return;
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}
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NewThread.Thread.ActualCore = ActualCore;
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RunThread(NewThread);
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}
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}
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public void SetThreadActivity(KThread Thread, bool Active)
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{
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SchedulerThread SchedThread = AllThreads[Thread];
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SchedThread.IsActive = Active;
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if (Active)
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{
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SchedThread.WaitActivity.Set();
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}
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else
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{
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SchedThread.WaitActivity.Reset();
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}
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}
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public void EnterWait(KThread Thread, int TimeoutMs = Timeout.Infinite)
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{
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SchedulerThread SchedThread = AllThreads[Thread];
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Suspend(Thread);
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SchedThread.WaitSync.WaitOne(TimeoutMs);
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TryResumingExecution(SchedThread);
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}
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public void WakeUp(KThread Thread)
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{
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AllThreads[Thread].WaitSync.Set();
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}
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public void ForceWakeUp(KThread Thread)
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{
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if (AllThreads.TryGetValue(Thread, out SchedulerThread SchedThread))
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{
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SchedThread.WaitSync.Set();
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SchedThread.WaitActivity.Set();
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SchedThread.WaitSched.Set();
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}
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}
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public void ChangeCore(KThread Thread, int IdealCore, int CoreMask)
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{
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lock (SchedLock)
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{
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if (IdealCore != -3)
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{
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Thread.IdealCore = IdealCore;
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}
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Thread.CoreMask = CoreMask;
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if (AllThreads.ContainsKey(Thread))
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{
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SetReschedule(Thread.ActualCore);
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SchedulerThread SchedThread = AllThreads[Thread];
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//Note: Aways if the thread is on the queue first, and try
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//adding to a new core later, to ensure that a thread that
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//is already running won't be added to another core.
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if (WaitingToRun.HasThread(SchedThread) && TryAddToCore(Thread))
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{
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WaitingToRun.Remove(SchedThread);
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RunThread(SchedThread);
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}
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}
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}
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}
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public void Suspend(KThread Thread)
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{
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lock (SchedLock)
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{
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PrintDbgThreadInfo(Thread, "suspended.");
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int ActualCore = Thread.ActualCore;
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CoreReschedule[ActualCore] = false;
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SchedulerThread SchedThread = WaitingToRun.Pop(ActualCore);
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if (SchedThread != null)
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{
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SchedThread.Thread.ActualCore = ActualCore;
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CoreThreads[ActualCore] = SchedThread.Thread;
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RunThread(SchedThread);
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}
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else
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{
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Log.PrintDebug(LogClass.KernelScheduler, $"Nothing to run on core {Thread.ActualCore}!");
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CoreThreads[ActualCore] = null;
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}
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}
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}
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public void SetReschedule(int Core)
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{
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lock (SchedLock)
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{
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CoreReschedule[Core] = true;
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}
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}
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public void Reschedule(KThread Thread)
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{
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bool NeedsReschedule;
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lock (SchedLock)
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{
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int ActualCore = Thread.ActualCore;
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NeedsReschedule = CoreReschedule[ActualCore];
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CoreReschedule[ActualCore] = false;
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}
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if (NeedsReschedule)
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{
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Yield(Thread, Thread.ActualPriority - 1);
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}
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}
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public void Yield(KThread Thread)
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{
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Yield(Thread, Thread.ActualPriority);
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}
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private void Yield(KThread Thread, int MinPriority)
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{
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PrintDbgThreadInfo(Thread, "yielded execution.");
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lock (SchedLock)
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{
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int ActualCore = Thread.ActualCore;
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SchedulerThread NewThread = WaitingToRun.Pop(ActualCore, MinPriority);
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if (NewThread != null)
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{
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NewThread.Thread.ActualCore = ActualCore;
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CoreThreads[ActualCore] = NewThread.Thread;
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RunThread(NewThread);
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}
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else
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{
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CoreThreads[ActualCore] = null;
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}
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}
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Resume(Thread);
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}
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public void Resume(KThread Thread)
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{
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TryResumingExecution(AllThreads[Thread]);
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}
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private void TryResumingExecution(SchedulerThread SchedThread)
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{
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KThread Thread = SchedThread.Thread;
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PrintDbgThreadInfo(Thread, "trying to resume...");
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SchedThread.WaitActivity.WaitOne();
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lock (SchedLock)
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{
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if (TryAddToCore(Thread))
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{
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PrintDbgThreadInfo(Thread, "resuming execution...");
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return;
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}
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WaitingToRun.Push(SchedThread);
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SetReschedule(Thread.ProcessorId);
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PrintDbgThreadInfo(Thread, "entering wait state...");
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}
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SchedThread.WaitSched.WaitOne();
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PrintDbgThreadInfo(Thread, "resuming execution...");
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}
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private void RunThread(SchedulerThread SchedThread)
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{
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if (!SchedThread.Thread.Thread.Execute())
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{
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PrintDbgThreadInfo(SchedThread.Thread, "waked.");
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SchedThread.WaitSched.Set();
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}
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else
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{
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PrintDbgThreadInfo(SchedThread.Thread, "running.");
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}
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}
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public void Resort(KThread Thread)
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{
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if (AllThreads.TryGetValue(Thread, out SchedulerThread SchedThread))
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{
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WaitingToRun.Resort(SchedThread);
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}
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}
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private bool TryAddToCore(KThread Thread)
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{
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//First, try running it on Ideal Core.
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int IdealCore = Thread.IdealCore;
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if (IdealCore != -1 && CoreThreads[IdealCore] == null)
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{
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Thread.ActualCore = IdealCore;
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CoreThreads[IdealCore] = Thread;
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return true;
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}
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//If that fails, then try running on any core allowed by Core Mask.
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int CoreMask = Thread.CoreMask;
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for (int Core = 0; Core < CoreThreads.Length; Core++, CoreMask >>= 1)
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{
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if ((CoreMask & 1) != 0 && CoreThreads[Core] == null)
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{
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Thread.ActualCore = Core;
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CoreThreads[Core] = Thread;
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return true;
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}
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}
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return false;
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}
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private void PrintDbgThreadInfo(KThread Thread, string Message)
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{
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Log.PrintDebug(LogClass.KernelScheduler, "(" +
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"ThreadId = " + Thread.ThreadId + ", " +
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"CoreMask = 0x" + Thread.CoreMask.ToString("x1") + ", " +
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"ActualCore = " + Thread.ActualCore + ", " +
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"IdealCore = " + Thread.IdealCore + ", " +
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"ActualPriority = " + Thread.ActualPriority + ", " +
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"WantedPriority = " + Thread.WantedPriority + ") " + Message);
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}
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public void Dispose()
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{
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Dispose(true);
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}
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protected virtual void Dispose(bool Disposing)
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{
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if (Disposing)
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{
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foreach (SchedulerThread SchedThread in AllThreads.Values)
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{
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SchedThread.Dispose();
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}
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}
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}
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}
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} |