70084bd849
Resolves: RHBZ#1986211
454 lines
20 KiB
Diff
454 lines
20 KiB
Diff
Index: tarball.6.0.1-rc2-6.0.100-rc2/src/roslyn.8e1779e16298415843e85029d8b52a1ae9bb4c30/src/Compilers/Core/Portable/InternalUtilities/PlatformInformation.cs
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===================================================================
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--- tarball.6.0.1-rc2-6.0.100-rc2.orig/src/roslyn.8e1779e16298415843e85029d8b52a1ae9bb4c30/src/Compilers/Core/Portable/InternalUtilities/PlatformInformation.cs
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+++ tarball.6.0.1-rc2-6.0.100-rc2/src/roslyn.8e1779e16298415843e85029d8b52a1ae9bb4c30/src/Compilers/Core/Portable/InternalUtilities/PlatformInformation.cs
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@@ -31,5 +31,24 @@ namespace Roslyn.Utilities
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}
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}
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}
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+ /// <summary>
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+ /// Are we running on .NET 5 or later using the Mono runtime?
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+ /// Will also return true when running on Mono itself; if necessary
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+ /// we can use IsRunningOnMono to distinguish.
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+ /// </summary>
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+ public static bool IsUsingMonoRuntime
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+ {
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+ get
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+ {
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+ try
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+ {
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+ return !(Type.GetType("Mono.RuntimeStructs", throwOnError: false) is null);
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+ }
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+ catch
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+ {
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+ return false;
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+ }
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+ }
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+ }
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}
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}
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Index: tarball.6.0.1-rc2-6.0.100-rc2/src/roslyn.8e1779e16298415843e85029d8b52a1ae9bb4c30/src/Compilers/Server/VBCSCompilerTests/BuildClientTests.cs
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===================================================================
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--- tarball.6.0.1-rc2-6.0.100-rc2.orig/src/roslyn.8e1779e16298415843e85029d8b52a1ae9bb4c30/src/Compilers/Server/VBCSCompilerTests/BuildClientTests.cs
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+++ tarball.6.0.1-rc2-6.0.100-rc2/src/roslyn.8e1779e16298415843e85029d8b52a1ae9bb4c30/src/Compilers/Server/VBCSCompilerTests/BuildClientTests.cs
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@@ -79,7 +79,7 @@ namespace Microsoft.CodeAnalysis.Compile
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// to connect. When it fails it should fall back to in-proc
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// compilation.
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bool holdsMutex;
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- using (var serverMutex = new Mutex(initiallyOwned: true,
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+ using (var serverMutex = BuildServerConnection.OpenOrCreateMutex(
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name: BuildServerConnection.GetServerMutexName(_pipeName),
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createdNew: out holdsMutex))
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{
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Index: tarball.6.0.1-rc2-6.0.100-rc2/src/roslyn.8e1779e16298415843e85029d8b52a1ae9bb4c30/src/Compilers/Server/VBCSCompilerTests/CompilerServerApiTest.cs
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===================================================================
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--- tarball.6.0.1-rc2-6.0.100-rc2.orig/src/roslyn.8e1779e16298415843e85029d8b52a1ae9bb4c30/src/Compilers/Server/VBCSCompilerTests/CompilerServerApiTest.cs
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+++ tarball.6.0.1-rc2-6.0.100-rc2/src/roslyn.8e1779e16298415843e85029d8b52a1ae9bb4c30/src/Compilers/Server/VBCSCompilerTests/CompilerServerApiTest.cs
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@@ -103,7 +103,7 @@ class Hello
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var mutexName = BuildServerConnection.GetServerMutexName(pipeName);
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bool holdsMutex;
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- using (var mutex = new Mutex(initiallyOwned: true,
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+ using (var mutex = BuildServerConnection.OpenOrCreateMutex(
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name: mutexName,
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createdNew: out holdsMutex))
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{
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@@ -119,7 +119,7 @@ class Hello
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}
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finally
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{
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- mutex.ReleaseMutex();
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+ mutex.Dispose();
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}
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}
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}
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Index: tarball.6.0.1-rc2-6.0.100-rc2/src/roslyn.8e1779e16298415843e85029d8b52a1ae9bb4c30/src/Compilers/Server/VBCSCompilerTests/CompilerServerTests.cs
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===================================================================
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--- tarball.6.0.1-rc2-6.0.100-rc2.orig/src/roslyn.8e1779e16298415843e85029d8b52a1ae9bb4c30/src/Compilers/Server/VBCSCompilerTests/CompilerServerTests.cs
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+++ tarball.6.0.1-rc2-6.0.100-rc2/src/roslyn.8e1779e16298415843e85029d8b52a1ae9bb4c30/src/Compilers/Server/VBCSCompilerTests/CompilerServerTests.cs
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@@ -304,7 +304,7 @@ End Module")
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var newTempDir = _tempDirectory.CreateDirectory(new string('a', 100 - _tempDirectory.Path.Length));
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await ApplyEnvironmentVariables(
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new[] { new KeyValuePair<string, string>("TMPDIR", newTempDir.Path) },
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- async () =>
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+ async () => await Task.Run(async () =>
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{
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using var serverData = await ServerUtil.CreateServer(_logger);
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var result = RunCommandLineCompiler(
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@@ -317,7 +317,7 @@ End Module")
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var listener = await serverData.Complete();
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Assert.Equal(CompletionData.RequestCompleted, listener.CompletionDataList.Single());
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- });
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+ }));
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}
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[Fact]
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Index: tarball.6.0.1-rc2-6.0.100-rc2/src/roslyn.8e1779e16298415843e85029d8b52a1ae9bb4c30/src/Compilers/Server/VBCSCompilerTests/VBCSCompilerServerTests.cs
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===================================================================
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--- tarball.6.0.1-rc2-6.0.100-rc2.orig/src/roslyn.8e1779e16298415843e85029d8b52a1ae9bb4c30/src/Compilers/Server/VBCSCompilerTests/VBCSCompilerServerTests.cs
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+++ tarball.6.0.1-rc2-6.0.100-rc2/src/roslyn.8e1779e16298415843e85029d8b52a1ae9bb4c30/src/Compilers/Server/VBCSCompilerTests/VBCSCompilerServerTests.cs
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@@ -101,7 +101,7 @@ namespace Microsoft.CodeAnalysis.Compile
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var thread = new Thread(() =>
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{
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- using (var mutex = new Mutex(initiallyOwned: true, name: mutexName, createdNew: out created))
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+ using (var mutex = BuildServerConnection.OpenOrCreateMutex(name: mutexName, createdNew: out created))
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using (var stream = NamedPipeUtil.CreateServer(pipeName))
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{
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readyMre.Set();
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@@ -112,7 +112,7 @@ namespace Microsoft.CodeAnalysis.Compile
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stream.Close();
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doneMre.WaitOne();
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- mutex.ReleaseMutex();
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+ mutex.Dispose();
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}
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});
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@@ -153,7 +153,7 @@ namespace Microsoft.CodeAnalysis.Compile
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{
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using (var stream = NamedPipeUtil.CreateServer(pipeName))
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{
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- var mutex = new Mutex(initiallyOwned: true, name: mutexName, createdNew: out created);
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+ var mutex = BuildServerConnection.OpenOrCreateMutex(name: mutexName, createdNew: out created);
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readyMre.Set();
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stream.WaitForConnection();
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@@ -161,7 +161,6 @@ namespace Microsoft.CodeAnalysis.Compile
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// Client is waiting for a response. Close the mutex now. Then close the connection
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// so the client gets an error.
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- mutex.ReleaseMutex();
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mutex.Dispose();
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stream.Close();
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Index: tarball.6.0.1-rc2-6.0.100-rc2/src/roslyn.8e1779e16298415843e85029d8b52a1ae9bb4c30/src/Compilers/Shared/BuildServerConnection.cs
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===================================================================
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--- tarball.6.0.1-rc2-6.0.100-rc2.orig/src/roslyn.8e1779e16298415843e85029d8b52a1ae9bb4c30/src/Compilers/Shared/BuildServerConnection.cs
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+++ tarball.6.0.1-rc2-6.0.100-rc2/src/roslyn.8e1779e16298415843e85029d8b52a1ae9bb4c30/src/Compilers/Shared/BuildServerConnection.cs
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@@ -543,19 +543,10 @@ namespace Microsoft.CodeAnalysis.Command
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{
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try
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{
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- if (PlatformInformation.IsRunningOnMono)
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+ if (PlatformInformation.IsUsingMonoRuntime)
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{
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- IServerMutex? mutex = null;
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- bool createdNew = false;
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- try
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- {
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- mutex = new ServerFileMutexPair(mutexName, false, out createdNew);
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- return !createdNew;
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- }
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- finally
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- {
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- mutex?.Dispose();
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- }
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+ using var mutex = new ServerFileMutex(mutexName);
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+ return !mutex.CouldLock();
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}
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else
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{
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@@ -572,9 +563,11 @@ namespace Microsoft.CodeAnalysis.Command
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internal static IServerMutex OpenOrCreateMutex(string name, out bool createdNew)
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{
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- if (PlatformInformation.IsRunningOnMono)
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+ if (PlatformInformation.IsUsingMonoRuntime)
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{
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- return new ServerFileMutexPair(name, initiallyOwned: true, out createdNew);
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+ var mutex = new ServerFileMutex(name);
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+ createdNew = mutex.TryLock(0);
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+ return mutex;
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}
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else
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{
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@@ -648,19 +641,22 @@ namespace Microsoft.CodeAnalysis.Command
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}
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/// <summary>
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- /// An interprocess mutex abstraction based on OS advisory locking (FileStream.Lock/Unlock).
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+ /// An interprocess mutex abstraction based on file sharing permission (FileShare.None).
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/// If multiple processes running as the same user create FileMutex instances with the same name,
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/// those instances will all point to the same file somewhere in a selected temporary directory.
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- /// The TryLock method can be used to attempt to acquire the mutex, with Unlock or Dispose used to release.
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+ /// The TryLock method can be used to attempt to acquire the mutex, with Dispose used to release.
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+ /// The CouldLock method can be used to check whether an attempt to acquire the mutex would have
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+ /// succeeded at the current time, without actually acquiring it.
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/// Unlike Win32 named mutexes, there is no mechanism for detecting an abandoned mutex. The file
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/// will simply revert to being unlocked but remain where it is.
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/// </summary>
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- internal sealed class FileMutex : IDisposable
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+ internal sealed class ServerFileMutex : IServerMutex
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{
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- public readonly FileStream Stream;
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+ public FileStream? Stream;
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public readonly string FilePath;
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+ public readonly string GuardPath;
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- public bool IsLocked { get; private set; }
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+ public bool IsDisposed { get; private set; }
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internal static string GetMutexDirectory()
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{
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@@ -670,61 +666,176 @@ namespace Microsoft.CodeAnalysis.Command
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return result;
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}
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- public FileMutex(string name)
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+ public ServerFileMutex(string name)
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{
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- FilePath = Path.Combine(GetMutexDirectory(), name);
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- Stream = new FileStream(FilePath, FileMode.OpenOrCreate, FileAccess.ReadWrite, FileShare.None);
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+ var mutexDirectory = GetMutexDirectory();
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+ FilePath = Path.Combine(mutexDirectory, name);
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+ GuardPath = Path.Combine(mutexDirectory, ".guard");
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}
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- public bool TryLock(int timeoutMs)
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+ /// <summary>
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+ /// Acquire the guard by opening the guard file with FileShare.None. The guard must only ever
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+ /// be held for very brief amounts of time, so we can simply spin until it is acquired. The
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+ /// guard must be released by disposing the FileStream returned from this routine. Note the
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+ /// guard file is never deleted; this is a leak, but only of a single file.
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+ /// </summary>
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+ internal FileStream LockGuard()
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{
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- if (IsLocked)
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- throw new InvalidOperationException("Lock already held");
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-
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- var sw = Stopwatch.StartNew();
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- do
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+ // We should be able to acquire the guard quickly. Limit the number of retries anyway
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+ // by some arbitrary bound to avoid getting hung up in a possibly infinite loop.
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+ for (var i = 0; i < 100; i++)
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{
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try
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{
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- Stream.Lock(0, 0);
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- IsLocked = true;
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- return true;
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+ return new FileStream(GuardPath, FileMode.OpenOrCreate, FileAccess.ReadWrite, FileShare.None);
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}
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catch (IOException)
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{
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- // Lock currently held by someone else.
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+ // Guard currently held by someone else.
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// We want to sleep for a short period of time to ensure that other processes
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// have an opportunity to finish their work and relinquish the lock.
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// Spinning here (via Yield) would work but risks creating a priority
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// inversion if the lock is held by a lower-priority process.
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Thread.Sleep(1);
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}
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+ }
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+ // Handle unexpected failure to acquire guard as error.
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+ throw new InvalidOperationException("Unable to acquire guard");
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+ }
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+
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+ /// <summary>
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+ /// Attempt to acquire the lock by opening the lock file with FileShare.None. Sets "Stream"
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+ /// and returns true if successful, returns false if the lock is already held by another
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+ /// thread or process. Guard must be held when calling this routine.
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+ /// </summary>
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+ internal bool TryLockFile()
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+ {
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+ Debug.Assert(Stream is null);
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+ FileStream? stream = null;
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+ try
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+ {
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+ stream = new FileStream(FilePath, FileMode.OpenOrCreate, FileAccess.ReadWrite, FileShare.None);
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+ // On some targets, the file locking used to implement FileShare.None may not be
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+ // atomic with opening/creating the file. This creates a race window when another
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+ // thread holds the lock and is just about to unlock: we may be able to open the
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+ // file here, then the other thread unlocks and deletes the file, and then we
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+ // acquire the lock on our file handle - but the actual file is already deleted.
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+ // To close this race, we verify that the file does in fact still exist now that
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+ // we have successfull acquired the locked FileStream. (Note that this check is
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+ // safe because we cannot race with an other attempt to create the file since we
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+ // hold the guard, and after the FileStream constructor returned we can no race
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+ // with file deletion because we hold the lock.)
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+ if (!File.Exists(FilePath))
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+ {
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+ // To simplify the logic, we treat this case as "unable to acquire the lock"
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+ // because it we caught another process while it owned the lock and was just
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+ // giving it up. If the caller retries, we'll likely acquire the lock then.
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+ stream.Dispose();
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+ return false;
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+ }
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+ }
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+ catch (Exception)
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+ {
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+ stream?.Dispose();
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+ return false;
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+ }
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+ Stream = stream;
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+ return true;
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+ }
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+
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+ /// <summary>
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+ /// Release the lock by deleting the lock file and disposing "Stream".
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+ /// </summary>
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+ internal void UnlockFile()
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+ {
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+ Debug.Assert(Stream is not null);
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+ try
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+ {
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+ // Delete the lock file while the stream is not yet disposed
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+ // and we therefore still hold the FileShare.None exclusion.
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+ // There may still be a race with another thread attempting a
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+ // TryLockFile in parallel, but that is safely handled there.
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+ File.Delete(FilePath);
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+ }
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+ finally
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+ {
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+ Stream.Dispose();
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+ Stream = null;
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+ }
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+ }
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+
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+ public bool TryLock(int timeoutMs)
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+ {
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+ if (IsDisposed)
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+ throw new ObjectDisposedException("Mutex");
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+ if (Stream is not null)
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+ throw new InvalidOperationException("Lock already held");
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+
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+ var sw = Stopwatch.StartNew();
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+ do
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+ {
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+ try
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+ {
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+ // Attempt to acquire lock while holding guard.
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+ using var guard = LockGuard();
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+ if (TryLockFile())
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+ return true;
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+ }
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catch (Exception)
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{
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- // Something else went wrong.
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return false;
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}
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+
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+ // See comment in LockGuard.
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+ Thread.Sleep(1);
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} while (sw.ElapsedMilliseconds < timeoutMs);
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return false;
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}
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- public void Unlock()
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+ public bool CouldLock()
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{
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- if (!IsLocked)
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- return;
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- Stream.Unlock(0, 0);
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- IsLocked = false;
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+ if (IsDisposed)
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+ return false;
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+ if (Stream is not null)
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+ return false;
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+
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+ try
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+ {
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+ // Attempt to acquire lock while holding guard, and if successful
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+ // immediately unlock again while still holding guard. This ensures
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+ // no other thread will spuriously observe the lock as held due to
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+ // the lock attempt here.
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+ using var guard = LockGuard();
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+ if (TryLockFile())
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+ {
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+ UnlockFile();
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+ return true;
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+ }
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+ }
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+ catch (Exception)
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+ {
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+ return false;
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+ }
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+
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+ return false;
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}
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public void Dispose()
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{
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- var wasLocked = IsLocked;
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- if (wasLocked)
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- Unlock();
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- Stream.Dispose();
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- // We do not delete the lock file here because there is no reliable way to perform a
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- // 'delete if no one has the file open' operation atomically on *nix. This is a leak.
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+ if (IsDisposed)
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+ return;
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+ IsDisposed = true;
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+ if (Stream is not null)
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+ {
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+ try
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+ {
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+ UnlockFile();
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+ }
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+ catch (Exception)
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+ {
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+ }
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+ }
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}
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}
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@@ -792,56 +903,4 @@ namespace Microsoft.CodeAnalysis.Command
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}
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}
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}
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-
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- /// <summary>
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- /// Approximates a named mutex with 'locked', 'unlocked' and 'abandoned' states.
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- /// There is no reliable way to detect whether a mutex has been abandoned on some target platforms,
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- /// so we use the AliveMutex to manually track whether the creator of a mutex is still running,
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- /// while the HeldMutex represents the actual lock state of the mutex.
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- /// </summary>
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- internal sealed class ServerFileMutexPair : IServerMutex
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- {
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- public readonly FileMutex AliveMutex;
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- public readonly FileMutex HeldMutex;
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-
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- public bool IsDisposed { get; private set; }
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-
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- public ServerFileMutexPair(string mutexName, bool initiallyOwned, out bool createdNew)
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- {
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- AliveMutex = new FileMutex(mutexName + "-alive");
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- HeldMutex = new FileMutex(mutexName + "-held");
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- createdNew = AliveMutex.TryLock(0);
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- if (initiallyOwned && createdNew)
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- {
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- if (!TryLock(0))
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- throw new Exception("Failed to lock mutex after creating it");
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- }
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- }
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-
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- public bool TryLock(int timeoutMs)
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- {
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- if (IsDisposed)
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- throw new ObjectDisposedException("Mutex");
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- return HeldMutex.TryLock(timeoutMs);
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- }
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-
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- public void Dispose()
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- {
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- if (IsDisposed)
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- return;
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- IsDisposed = true;
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-
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- try
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- {
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- HeldMutex.Unlock();
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- AliveMutex.Unlock();
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- }
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- finally
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- {
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- AliveMutex.Dispose();
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- HeldMutex.Dispose();
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- }
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- }
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- }
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-
|
|
}
|