73ee7591e8
Former-commit-id: d18deab1b47cfd3ad8cba82b3f37d00eec2170af
197 lines
8.1 KiB
C#
197 lines
8.1 KiB
C#
//
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// System.Threading.Interlocked.cs
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//
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// Author:
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// Patrik Torstensson (patrik.torstensson@labs2.com)
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// Dick Porter (dick@ximian.com)
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//
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// (C) Ximian, Inc. http://www.ximian.com
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//
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//
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// Copyright (C) 2004, 2005 Novell, Inc (http://www.novell.com)
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//
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// Permission is hereby granted, free of charge, to any person obtaining
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// a copy of this software and associated documentation files (the
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// "Software"), to deal in the Software without restriction, including
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// without limitation the rights to use, copy, modify, merge, publish,
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// distribute, sublicense, and/or sell copies of the Software, and to
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// permit persons to whom the Software is furnished to do so, subject to
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// the following conditions:
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//
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// The above copyright notice and this permission notice shall be
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// included in all copies or substantial portions of the Software.
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//
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// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
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// EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
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// MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
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// NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE
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// LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION
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// OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION
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// WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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//
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using System;
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using System.Runtime.CompilerServices;
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using System.Runtime.InteropServices;
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using System.Runtime.ConstrainedExecution;
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namespace System.Threading
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{
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public static partial class Interlocked
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{
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[ReliabilityContractAttribute (Consistency.WillNotCorruptState, Cer.Success)]
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[MethodImplAttribute(MethodImplOptions.InternalCall)]
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public extern static int CompareExchange(ref int location1, int value, int comparand);
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[ReliabilityContractAttribute (Consistency.WillNotCorruptState, Cer.Success)]
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[MethodImplAttribute(MethodImplOptions.InternalCall)]
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internal extern static int CompareExchange(ref int location1, int value, int comparand, ref bool succeeded);
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[ReliabilityContract (Consistency.WillNotCorruptState, Cer.Success)]
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[MethodImplAttribute(MethodImplOptions.InternalCall)]
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extern static void CompareExchange (ref object location1, ref object value, ref object comparand, ref object result);
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[ReliabilityContract (Consistency.WillNotCorruptState, Cer.Success)]
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public static object CompareExchange (ref object location1, object value, object comparand)
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{
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// This avoids coop handles, esp. on the output which would be particularly inefficient.
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// Passing everything by ref is equivalent to coop handles -- ref to locals at least.
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//
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// location1's treatment is unclear. But note that passing it by handle would be incorrect,
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// as it would use a local alias, which the coop marshaling does, to avoid the unclarity here,
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// that of a ref being to a managed frame vs. a native frame. Perhaps that could be revisited.
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//
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// So there a hole here, that of calling this function with location1 being in a native frame.
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// Usually it will be to a field, static or not, and not even to managed stack.
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//
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// This is usually intrinsified. Ideally it is always intrinisified.
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//
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object result = null;
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CompareExchange (ref location1, ref value, ref comparand, ref result);
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return result;
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}
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[MethodImplAttribute(MethodImplOptions.InternalCall)]
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public extern static float CompareExchange(ref float location1, float value, float comparand);
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[ReliabilityContractAttribute (Consistency.WillNotCorruptState, Cer.Success)]
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[MethodImplAttribute(MethodImplOptions.InternalCall)]
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public extern static int Decrement(ref int location);
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[MethodImplAttribute(MethodImplOptions.InternalCall)]
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public extern static long Decrement(ref long location);
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[ReliabilityContractAttribute (Consistency.WillNotCorruptState, Cer.Success)]
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[MethodImplAttribute(MethodImplOptions.InternalCall)]
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public extern static int Increment(ref int location);
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[ReliabilityContractAttribute (Consistency.WillNotCorruptState, Cer.Success)]
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[MethodImplAttribute(MethodImplOptions.InternalCall)]
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public extern static long Increment(ref long location);
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[ReliabilityContractAttribute (Consistency.WillNotCorruptState, Cer.Success)]
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[MethodImplAttribute(MethodImplOptions.InternalCall)]
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public extern static int Exchange(ref int location1, int value);
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[ReliabilityContract (Consistency.WillNotCorruptState, Cer.Success)]
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[MethodImplAttribute(MethodImplOptions.InternalCall)]
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extern static void Exchange (ref object location1, ref object value, ref object result);
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[ReliabilityContract (Consistency.WillNotCorruptState, Cer.Success)]
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public static object Exchange (ref object location1, object value)
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{
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// See CompareExchange(object) for comments.
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//
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object result = null;
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Exchange (ref location1, ref value, ref result);
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return result;
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}
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[MethodImplAttribute(MethodImplOptions.InternalCall)]
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public extern static float Exchange(ref float location1, float value);
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[MethodImplAttribute(MethodImplOptions.InternalCall)]
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public extern static long CompareExchange(ref long location1, long value, long comparand);
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[ReliabilityContractAttribute (Consistency.WillNotCorruptState, Cer.Success)]
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[MethodImplAttribute(MethodImplOptions.InternalCall)]
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public extern static IntPtr CompareExchange(ref IntPtr location1, IntPtr value, IntPtr comparand);
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[MethodImplAttribute(MethodImplOptions.InternalCall)]
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public extern static double CompareExchange(ref double location1, double value, double comparand);
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[ComVisible (false)]
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[ReliabilityContract (Consistency.WillNotCorruptState, Cer.Success)]
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[Intrinsic]
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public static T CompareExchange<T> (ref T location1, T value, T comparand) where T : class
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{
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unsafe {
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if (Unsafe.AsPointer (ref location1) == null)
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throw new NullReferenceException ();
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}
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// Besides avoiding coop handles for efficiency,
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// and correctness, this also appears needed to
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// avoid an assertion failure in the runtime, related to
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// coop handles over generics.
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//
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// See CompareExchange(object) for more comments.
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//
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// This is not entirely convincing due to lack of volatile.
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//
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T result = null;
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// T : class so call the object overload.
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CompareExchange (ref Unsafe.As<T, object> (ref location1), ref Unsafe.As<T, object>(ref value), ref Unsafe.As<T, object>(ref comparand), ref Unsafe.As<T, object>(ref result));
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return result;
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}
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[MethodImplAttribute(MethodImplOptions.InternalCall)]
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public extern static long Exchange(ref long location1, long value);
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[ReliabilityContractAttribute (Consistency.WillNotCorruptState, Cer.Success)]
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[MethodImplAttribute(MethodImplOptions.InternalCall)]
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public extern static IntPtr Exchange(ref IntPtr location1, IntPtr value);
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[MethodImplAttribute(MethodImplOptions.InternalCall)]
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public extern static double Exchange(ref double location1, double value);
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[ComVisible (false)]
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[ReliabilityContract (Consistency.WillNotCorruptState, Cer.Success)]
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[Intrinsic]
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public static T Exchange<T> (ref T location1, T value) where T : class
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{
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unsafe {
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if (Unsafe.AsPointer (ref location1) == null)
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throw new NullReferenceException ();
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}
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// See CompareExchange(T) for comments.
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//
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// This is not entirely convincing due to lack of volatile.
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//
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T result = null;
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// T : class so call the object overload.
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Exchange (ref Unsafe.As<T, object>(ref location1), ref Unsafe.As<T, object>(ref value), ref Unsafe.As<T, object>(ref result));
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return result;
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}
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[MethodImplAttribute(MethodImplOptions.InternalCall)]
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public extern static long Read(ref long location);
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[ReliabilityContractAttribute (Consistency.WillNotCorruptState, Cer.Success)]
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[MethodImplAttribute(MethodImplOptions.InternalCall)]
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public extern static int Add(ref int location1, int value);
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[ReliabilityContractAttribute (Consistency.WillNotCorruptState, Cer.Success)]
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[MethodImplAttribute(MethodImplOptions.InternalCall)]
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public extern static long Add(ref long location1, long value);
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public static void MemoryBarrier () {
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Thread.MemoryBarrier ();
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}
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[MethodImplAttribute(MethodImplOptions.InternalCall)]
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public extern static void MemoryBarrierProcessWide ();
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}
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}
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