ReaderWriterLockSlim Konstruktorer

Definition

Initierar en ny instans av ReaderWriterLockSlim klassen.

Överlagringar

Name Description
ReaderWriterLockSlim()

Initierar en ny instans av ReaderWriterLockSlim klassen med standardegenskapsvärden.

ReaderWriterLockSlim(LockRecursionPolicy)

Initierar en ny instans av ReaderWriterLockSlim klassen och anger principen för låsrekursion.

ReaderWriterLockSlim()

Källa:
ReaderWriterLockSlim.cs
Källa:
ReaderWriterLockSlim.cs
Källa:
ReaderWriterLockSlim.cs
Källa:
ReaderWriterLockSlim.cs
Källa:
ReaderWriterLockSlim.cs

Initierar en ny instans av ReaderWriterLockSlim klassen med standardegenskapsvärden.

public:
 ReaderWriterLockSlim();
public ReaderWriterLockSlim();
Public Sub New ()

Exempel

I följande exempel visas en enkel synkroniserad cache som innehåller strängar med heltalsnycklar. En instans av ReaderWriterLockSlim används för att synkronisera åtkomsten till Dictionary<TKey,TValue> som fungerar som det inre cacheminnet. Den parameterlösa konstruktorn används för att skapa låset.

Exemplet innehåller enkla metoder för att lägga till i cacheminnet, ta bort från cacheminnet och läsa från cacheminnet. För att demonstrera tidsgränser innehåller exemplet en metod som bara lägger till i cacheminnet om den kan göra det inom en angiven tidsgräns.

För att demonstrera uppgraderingsbart läge innehåller exemplet en metod som hämtar värdet som är associerat med en nyckel och jämför det med ett nytt värde. Om värdet är oförändrat returnerar metoden en status som anger ingen ändring. Om inget värde hittas för nyckeln infogas nyckel/värde-paret. Om värdet har ändrats uppdateras det. Med uppgraderingsbart läge kan tråden uppgradera från läsåtkomst till skrivåtkomst efter behov, utan risk för dödlägen.

Exemplet innehåller en kapslad uppräkning som anger returvärdena för metoden som visar uppgraderingsbart läge.

I exemplet används den parameterlösa konstruktorn för att skapa låset, så rekursion tillåts inte. Programmering är ReaderWriterLockSlim enklare och mindre felbenäget när låset inte tillåter rekursion.

using System;
using System.Threading;
using System.Threading.Tasks;
using System.Collections.Generic;
Imports System.Collections.Generic
Imports System.Threading
Imports System.Threading.Tasks
public class SynchronizedCache 
{
    private ReaderWriterLockSlim cacheLock = new ReaderWriterLockSlim();
    private Dictionary<int, string> innerCache = new Dictionary<int, string>();

    public int Count
    { get { return innerCache.Count; } }

    public string Read(int key)
    {
        cacheLock.EnterReadLock();
        try
        {
            return innerCache[key];
        }
        finally
        {
            cacheLock.ExitReadLock();
        }
    }

    public void Add(int key, string value)
    {
        cacheLock.EnterWriteLock();
        try
        {
            innerCache.Add(key, value);
        }
        finally
        {
            cacheLock.ExitWriteLock();
        }
    }

    public bool AddWithTimeout(int key, string value, int timeout)
    {
        if (cacheLock.TryEnterWriteLock(timeout))
        {
            try
            {
                innerCache.Add(key, value);
            }
            finally
            {
                cacheLock.ExitWriteLock();
            }
            return true;
        }
        else
        {
            return false;
        }
    }

    public AddOrUpdateStatus AddOrUpdate(int key, string value)
    {
        cacheLock.EnterUpgradeableReadLock();
        try
        {
            string result = null;
            if (innerCache.TryGetValue(key, out result))
            {
                if (result == value)
                {
                    return AddOrUpdateStatus.Unchanged;
                }
                else
                {
                    cacheLock.EnterWriteLock();
                    try
                    {
                        innerCache[key] = value;
                    }
                    finally
                    {
                        cacheLock.ExitWriteLock();
                    }
                    return AddOrUpdateStatus.Updated;
                }
            }
            else
            {
                cacheLock.EnterWriteLock();
                try
                {
                    innerCache.Add(key, value);
                }
                finally
                {
                    cacheLock.ExitWriteLock();
                }
                return AddOrUpdateStatus.Added;
            }
        }
        finally
        {
            cacheLock.ExitUpgradeableReadLock();
        }
    }

    public void Delete(int key)
    {
        cacheLock.EnterWriteLock();
        try
        {
            innerCache.Remove(key);
        }
        finally
        {
            cacheLock.ExitWriteLock();
        }
    }

    public enum AddOrUpdateStatus
    {
        Added,
        Updated,
        Unchanged
    };

    ~SynchronizedCache()
    {
       if (cacheLock != null) cacheLock.Dispose();
    }
}
Public Class SynchronizedCache
    Private cacheLock As New ReaderWriterLockSlim()
    Private innerCache As New Dictionary(Of Integer, String)

    Public ReadOnly Property Count As Integer
       Get
          Return innerCache.Count
       End Get
    End Property
    
    Public Function Read(ByVal key As Integer) As String
        cacheLock.EnterReadLock()
        Try
            Return innerCache(key)
        Finally
            cacheLock.ExitReadLock()
        End Try
    End Function

    Public Sub Add(ByVal key As Integer, ByVal value As String)
        cacheLock.EnterWriteLock()
        Try
            innerCache.Add(key, value)
        Finally
            cacheLock.ExitWriteLock()
        End Try
    End Sub

    Public Function AddWithTimeout(ByVal key As Integer, ByVal value As String, _
                                   ByVal timeout As Integer) As Boolean
        If cacheLock.TryEnterWriteLock(timeout) Then
            Try
                innerCache.Add(key, value)
            Finally
                cacheLock.ExitWriteLock()
            End Try
            Return True
        Else
            Return False
        End If
    End Function

    Public Function AddOrUpdate(ByVal key As Integer, _
                                ByVal value As String) As AddOrUpdateStatus
        cacheLock.EnterUpgradeableReadLock()
        Try
            Dim result As String = Nothing
            If innerCache.TryGetValue(key, result) Then
                If result = value Then
                    Return AddOrUpdateStatus.Unchanged
                Else
                    cacheLock.EnterWriteLock()
                    Try
                        innerCache.Item(key) = value
                    Finally
                        cacheLock.ExitWriteLock()
                    End Try
                    Return AddOrUpdateStatus.Updated
                End If
            Else
                cacheLock.EnterWriteLock()
                Try
                    innerCache.Add(key, value)
                Finally
                    cacheLock.ExitWriteLock()
                End Try
                Return AddOrUpdateStatus.Added
            End If
        Finally
            cacheLock.ExitUpgradeableReadLock()
        End Try
    End Function

    Public Sub Delete(ByVal key As Integer)
        cacheLock.EnterWriteLock()
        Try
            innerCache.Remove(key)
        Finally
            cacheLock.ExitWriteLock()
        End Try
    End Sub

    Public Enum AddOrUpdateStatus
        Added
        Updated
        Unchanged
    End Enum

    Protected Overrides Sub Finalize()
       If cacheLock IsNot Nothing Then cacheLock.Dispose()
    End Sub
End Class

Följande kod använder sedan objektet SynchronizedCache för att lagra en ordlista med grönsaksnamn. Den skapar tre uppgifter. Den första skriver namnen på grönsaker som lagras i en matris till en SynchronizedCache instans. Den andra och tredje aktiviteten visar namnen på grönsakerna, den första i stigande ordning (från lågt index till högt index), den andra i fallande ordning. Den sista uppgiften söker efter strängen "gurka" och, när den EnterUpgradeableReadLock hittar den, anropar metoden för att ersätta strängen "grön böna".

using System;
using System.Threading;
using System.Threading.Tasks;
using System.Collections.Generic;
Imports System.Collections.Generic
Imports System.Threading
Imports System.Threading.Tasks
public class Example
{
   public static void Main()
   {
      var sc = new SynchronizedCache();
      var tasks = new List<Task>();
      int itemsWritten = 0;

      // Execute a writer.
      tasks.Add(Task.Run( () => { String[] vegetables = { "broccoli", "cauliflower",
                                                          "carrot", "sorrel", "baby turnip",
                                                          "beet", "brussel sprout",
                                                          "cabbage", "plantain",
                                                          "spinach", "grape leaves",
                                                          "lime leaves", "corn",
                                                          "radish", "cucumber",
                                                          "raddichio", "lima beans" };
                                  for (int ctr = 1; ctr <= vegetables.Length; ctr++)
                                     sc.Add(ctr, vegetables[ctr - 1]);

                                  itemsWritten = vegetables.Length;
                                  Console.WriteLine("Task {0} wrote {1} items\n",
                                                    Task.CurrentId, itemsWritten);
                                } ));
      // Execute two readers, one to read from first to last and the second from last to first.
      for (int ctr = 0; ctr <= 1; ctr++) {
         bool desc = ctr == 1;
         tasks.Add(Task.Run( () => { int start, last, step;
                                     int items;
                                     do {
                                        String output = String.Empty;
                                        items = sc.Count;
                                        if (!desc) {
                                           start = 1;
                                           step = 1;
                                           last = items;
                                        }
                                        else {
                                           start = items;
                                           step = -1;
                                           last = 1;
                                        }

                                        for (int index = start; desc ? index >= last : index <= last; index += step)
                                           output += String.Format("[{0}] ", sc.Read(index));

                                        Console.WriteLine("Task {0} read {1} items: {2}\n",
                                                          Task.CurrentId, items, output);
                                     } while (items < itemsWritten | itemsWritten == 0);
                             } ));
      }
      // Execute a red/update task.
      tasks.Add(Task.Run( () => { Thread.Sleep(100);
                                  for (int ctr = 1; ctr <= sc.Count; ctr++) {
                                     String value = sc.Read(ctr);
                                     if (value == "cucumber")
                                        if (sc.AddOrUpdate(ctr, "green bean") != SynchronizedCache.AddOrUpdateStatus.Unchanged)
                                           Console.WriteLine("Changed 'cucumber' to 'green bean'");
                                  }
                                } ));

      // Wait for all three tasks to complete.
      Task.WaitAll(tasks.ToArray());

      // Display the final contents of the cache.
      Console.WriteLine();
      Console.WriteLine("Values in synchronized cache: ");
      for (int ctr = 1; ctr <= sc.Count; ctr++)
         Console.WriteLine("   {0}: {1}", ctr, sc.Read(ctr));
   }
}
// The example displays the following output:
//    Task 1 read 0 items:
//
//    Task 3 wrote 17 items
//
//
//    Task 1 read 17 items: [broccoli] [cauliflower] [carrot] [sorrel] [baby turnip] [
//    beet] [brussel sprout] [cabbage] [plantain] [spinach] [grape leaves] [lime leave
//    s] [corn] [radish] [cucumber] [raddichio] [lima beans]
//
//    Task 2 read 0 items:
//
//    Task 2 read 17 items: [lima beans] [raddichio] [cucumber] [radish] [corn] [lime
//    leaves] [grape leaves] [spinach] [plantain] [cabbage] [brussel sprout] [beet] [b
//    aby turnip] [sorrel] [carrot] [cauliflower] [broccoli]
//
//    Changed 'cucumber' to 'green bean'
//
//    Values in synchronized cache:
//       1: broccoli
//       2: cauliflower
//       3: carrot
//       4: sorrel
//       5: baby turnip
//       6: beet
//       7: brussel sprout
//       8: cabbage
//       9: plantain
//       10: spinach
//       11: grape leaves
//       12: lime leaves
//       13: corn
//       14: radish
//       15: green bean
//       16: raddichio
//       17: lima beans
Public Module Example
   Public Sub Main()
      Dim sc As New SynchronizedCache()
      Dim tasks As New List(Of Task)
      Dim itemsWritten As Integer
      
      ' Execute a writer.
      tasks.Add(Task.Run( Sub()
                             Dim vegetables() As String = { "broccoli", "cauliflower",
                                                            "carrot", "sorrel", "baby turnip",
                                                            "beet", "brussel sprout",
                                                            "cabbage", "plantain",
                                                            "spinach", "grape leaves",
                                                            "lime leaves", "corn",
                                                            "radish", "cucumber",
                                                            "raddichio", "lima beans" }
                             For ctr As Integer = 1 to vegetables.Length
                                sc.Add(ctr, vegetables(ctr - 1))
                             Next
                             itemsWritten = vegetables.Length
                             Console.WriteLine("Task {0} wrote {1} items{2}",
                                               Task.CurrentId, itemsWritten, vbCrLf)
                          End Sub))
      ' Execute two readers, one to read from first to last and the second from last to first.
      For ctr As Integer = 0 To 1
         Dim flag As Integer = ctr
         tasks.Add(Task.Run( Sub()
                                Dim start, last, stp As Integer
                                Dim items As Integer
                                Do
                                   Dim output As String = String.Empty
                                   items = sc.Count
                                   If flag = 0 Then
                                      start = 1 : stp = 1 : last = items
                                   Else
                                      start = items : stp = -1 : last = 1
                                   End If
                                   For index As Integer = start To last Step stp
                                      output += String.Format("[{0}] ", sc.Read(index))
                                   Next
                                   Console.WriteLine("Task {0} read {1} items: {2}{3}",
                                                           Task.CurrentId, items, output,
                                                           vbCrLf)
                                Loop While items < itemsWritten Or itemsWritten = 0
                             End Sub))
      Next
      ' Execute a red/update task.
      tasks.Add(Task.Run( Sub()
                             For ctr As Integer = 1 To sc.Count
                                Dim value As String = sc.Read(ctr)
                                If value = "cucumber" Then
                                   If sc.AddOrUpdate(ctr, "green bean") <> SynchronizedCache.AddOrUpdateStatus.Unchanged Then
                                      Console.WriteLine("Changed 'cucumber' to 'green bean'")
                                   End If
                                End If
                             Next
                          End Sub ))

      ' Wait for all three tasks to complete.
      Task.WaitAll(tasks.ToArray())

      ' Display the final contents of the cache.
      Console.WriteLine()
      Console.WriteLine("Values in synchronized cache: ")
      For ctr As Integer = 1 To sc.Count
         Console.WriteLine("   {0}: {1}", ctr, sc.Read(ctr))
      Next
   End Sub
End Module
' The example displays output like the following:
'    Task 1 read 0 items:
'
'    Task 3 wrote 17 items
'
'    Task 1 read 17 items: [broccoli] [cauliflower] [carrot] [sorrel] [baby turnip] [
'    beet] [brussel sprout] [cabbage] [plantain] [spinach] [grape leaves] [lime leave
'    s] [corn] [radish] [cucumber] [raddichio] [lima beans]
'
'    Task 2 read 0 items:
'
'    Task 2 read 17 items: [lima beans] [raddichio] [cucumber] [radish] [corn] [lime
'    leaves] [grape leaves] [spinach] [plantain] [cabbage] [brussel sprout] [beet] [b
'    aby turnip] [sorrel] [carrot] [cauliflower] [broccoli]
'
'    Changed 'cucumber' to 'green bean'
'
'    Values in synchronized cache:
'       1: broccoli
'       2: cauliflower
'       3: carrot
'       4: sorrel
'       5: baby turnip
'       6: beet
'       7: brussel sprout
'       8: cabbage
'       9: plantain
'       10: spinach
'       11: grape leaves
'       12: lime leaves
'       13: corn
'       14: radish
'       15: green bean
'       16: raddichio
'       17: lima beans

Kommentarer

En ReaderWriterLockSlim som initieras med den här konstruktorn tillåter inte rekursion. Egenskapen returnerar RecursionPolicyalltså LockRecursionPolicy.NoRecursion .

Mer information om rekursionsprincip och dess effekter finns i LockRecursionPolicy uppräkningen och ReaderWriterLockSlim klassen.

Se även

Gäller för

ReaderWriterLockSlim(LockRecursionPolicy)

Källa:
ReaderWriterLockSlim.cs
Källa:
ReaderWriterLockSlim.cs
Källa:
ReaderWriterLockSlim.cs
Källa:
ReaderWriterLockSlim.cs
Källa:
ReaderWriterLockSlim.cs

Initierar en ny instans av ReaderWriterLockSlim klassen och anger principen för låsrekursion.

public:
 ReaderWriterLockSlim(System::Threading::LockRecursionPolicy recursionPolicy);
public ReaderWriterLockSlim(System.Threading.LockRecursionPolicy recursionPolicy);
new System.Threading.ReaderWriterLockSlim : System.Threading.LockRecursionPolicy -> System.Threading.ReaderWriterLockSlim
Public Sub New (recursionPolicy As LockRecursionPolicy)

Parametrar

recursionPolicy
LockRecursionPolicy

Ett av uppräkningsvärdena som anger låsrekursionsprincipen.

Exempel

I följande exempel visas två undantagsscenarier, ett som är beroende av inställningen LockRecursionPolicy och ett som inte gör det.

I det första scenariot går tråden in i läsläge och försöker sedan ange läsläget rekursivt. ReaderWriterLockSlim Om skapas med hjälp av den parameterlösa konstruktorn, som anger rekursionsprincipen till LockRecursionPolicy.NoRecursion, genereras ett undantag. Om LockRecursionPolicy.SupportsRecursion används för att skapa ReaderWriterLockSlimgenereras inget undantag.

I det andra scenariot går tråden in i läsläge och försöker sedan ange skrivläge. LockRecursionException genereras oavsett principen för låsrekursion.

using System;
using System.Threading;
using System.Threading.Tasks;
using System.Collections.Generic;
Imports System.Collections.Generic
Imports System.Threading
Imports System.Threading.Tasks
public class SynchronizedCache 
{
    private ReaderWriterLockSlim cacheLock = new ReaderWriterLockSlim();
    private Dictionary<int, string> innerCache = new Dictionary<int, string>();

    public int Count
    { get { return innerCache.Count; } }

    public string Read(int key)
    {
        cacheLock.EnterReadLock();
        try
        {
            return innerCache[key];
        }
        finally
        {
            cacheLock.ExitReadLock();
        }
    }

    public void Add(int key, string value)
    {
        cacheLock.EnterWriteLock();
        try
        {
            innerCache.Add(key, value);
        }
        finally
        {
            cacheLock.ExitWriteLock();
        }
    }

    public bool AddWithTimeout(int key, string value, int timeout)
    {
        if (cacheLock.TryEnterWriteLock(timeout))
        {
            try
            {
                innerCache.Add(key, value);
            }
            finally
            {
                cacheLock.ExitWriteLock();
            }
            return true;
        }
        else
        {
            return false;
        }
    }

    public AddOrUpdateStatus AddOrUpdate(int key, string value)
    {
        cacheLock.EnterUpgradeableReadLock();
        try
        {
            string result = null;
            if (innerCache.TryGetValue(key, out result))
            {
                if (result == value)
                {
                    return AddOrUpdateStatus.Unchanged;
                }
                else
                {
                    cacheLock.EnterWriteLock();
                    try
                    {
                        innerCache[key] = value;
                    }
                    finally
                    {
                        cacheLock.ExitWriteLock();
                    }
                    return AddOrUpdateStatus.Updated;
                }
            }
            else
            {
                cacheLock.EnterWriteLock();
                try
                {
                    innerCache.Add(key, value);
                }
                finally
                {
                    cacheLock.ExitWriteLock();
                }
                return AddOrUpdateStatus.Added;
            }
        }
        finally
        {
            cacheLock.ExitUpgradeableReadLock();
        }
    }

    public void Delete(int key)
    {
        cacheLock.EnterWriteLock();
        try
        {
            innerCache.Remove(key);
        }
        finally
        {
            cacheLock.ExitWriteLock();
        }
    }

    public enum AddOrUpdateStatus
    {
        Added,
        Updated,
        Unchanged
    };

    ~SynchronizedCache()
    {
       if (cacheLock != null) cacheLock.Dispose();
    }
}
Public Class SynchronizedCache
    Private cacheLock As New ReaderWriterLockSlim()
    Private innerCache As New Dictionary(Of Integer, String)

    Public ReadOnly Property Count As Integer
       Get
          Return innerCache.Count
       End Get
    End Property
    
    Public Function Read(ByVal key As Integer) As String
        cacheLock.EnterReadLock()
        Try
            Return innerCache(key)
        Finally
            cacheLock.ExitReadLock()
        End Try
    End Function

    Public Sub Add(ByVal key As Integer, ByVal value As String)
        cacheLock.EnterWriteLock()
        Try
            innerCache.Add(key, value)
        Finally
            cacheLock.ExitWriteLock()
        End Try
    End Sub

    Public Function AddWithTimeout(ByVal key As Integer, ByVal value As String, _
                                   ByVal timeout As Integer) As Boolean
        If cacheLock.TryEnterWriteLock(timeout) Then
            Try
                innerCache.Add(key, value)
            Finally
                cacheLock.ExitWriteLock()
            End Try
            Return True
        Else
            Return False
        End If
    End Function

    Public Function AddOrUpdate(ByVal key As Integer, _
                                ByVal value As String) As AddOrUpdateStatus
        cacheLock.EnterUpgradeableReadLock()
        Try
            Dim result As String = Nothing
            If innerCache.TryGetValue(key, result) Then
                If result = value Then
                    Return AddOrUpdateStatus.Unchanged
                Else
                    cacheLock.EnterWriteLock()
                    Try
                        innerCache.Item(key) = value
                    Finally
                        cacheLock.ExitWriteLock()
                    End Try
                    Return AddOrUpdateStatus.Updated
                End If
            Else
                cacheLock.EnterWriteLock()
                Try
                    innerCache.Add(key, value)
                Finally
                    cacheLock.ExitWriteLock()
                End Try
                Return AddOrUpdateStatus.Added
            End If
        Finally
            cacheLock.ExitUpgradeableReadLock()
        End Try
    End Function

    Public Sub Delete(ByVal key As Integer)
        cacheLock.EnterWriteLock()
        Try
            innerCache.Remove(key)
        Finally
            cacheLock.ExitWriteLock()
        End Try
    End Sub

    Public Enum AddOrUpdateStatus
        Added
        Updated
        Unchanged
    End Enum

    Protected Overrides Sub Finalize()
       If cacheLock IsNot Nothing Then cacheLock.Dispose()
    End Sub
End Class

Följande kod använder sedan objektet SynchronizedCache för att lagra en ordlista med grönsaksnamn. Den skapar tre uppgifter. Den första skriver namnen på grönsaker som lagras i en matris till en SynchronizedCache instans. Den andra och tredje aktiviteten visar namnen på grönsakerna, den första i stigande ordning (från lågt index till högt index), den andra i fallande ordning. Den sista uppgiften söker efter strängen "gurka" och, när den EnterUpgradeableReadLock hittar den, anropar metoden för att ersätta strängen "grön böna".

using System;
using System.Threading;
using System.Threading.Tasks;
using System.Collections.Generic;
Imports System.Collections.Generic
Imports System.Threading
Imports System.Threading.Tasks
public class Example
{
   public static void Main()
   {
      var sc = new SynchronizedCache();
      var tasks = new List<Task>();
      int itemsWritten = 0;

      // Execute a writer.
      tasks.Add(Task.Run( () => { String[] vegetables = { "broccoli", "cauliflower",
                                                          "carrot", "sorrel", "baby turnip",
                                                          "beet", "brussel sprout",
                                                          "cabbage", "plantain",
                                                          "spinach", "grape leaves",
                                                          "lime leaves", "corn",
                                                          "radish", "cucumber",
                                                          "raddichio", "lima beans" };
                                  for (int ctr = 1; ctr <= vegetables.Length; ctr++)
                                     sc.Add(ctr, vegetables[ctr - 1]);

                                  itemsWritten = vegetables.Length;
                                  Console.WriteLine("Task {0} wrote {1} items\n",
                                                    Task.CurrentId, itemsWritten);
                                } ));
      // Execute two readers, one to read from first to last and the second from last to first.
      for (int ctr = 0; ctr <= 1; ctr++) {
         bool desc = ctr == 1;
         tasks.Add(Task.Run( () => { int start, last, step;
                                     int items;
                                     do {
                                        String output = String.Empty;
                                        items = sc.Count;
                                        if (!desc) {
                                           start = 1;
                                           step = 1;
                                           last = items;
                                        }
                                        else {
                                           start = items;
                                           step = -1;
                                           last = 1;
                                        }

                                        for (int index = start; desc ? index >= last : index <= last; index += step)
                                           output += String.Format("[{0}] ", sc.Read(index));

                                        Console.WriteLine("Task {0} read {1} items: {2}\n",
                                                          Task.CurrentId, items, output);
                                     } while (items < itemsWritten | itemsWritten == 0);
                             } ));
      }
      // Execute a red/update task.
      tasks.Add(Task.Run( () => { Thread.Sleep(100);
                                  for (int ctr = 1; ctr <= sc.Count; ctr++) {
                                     String value = sc.Read(ctr);
                                     if (value == "cucumber")
                                        if (sc.AddOrUpdate(ctr, "green bean") != SynchronizedCache.AddOrUpdateStatus.Unchanged)
                                           Console.WriteLine("Changed 'cucumber' to 'green bean'");
                                  }
                                } ));

      // Wait for all three tasks to complete.
      Task.WaitAll(tasks.ToArray());

      // Display the final contents of the cache.
      Console.WriteLine();
      Console.WriteLine("Values in synchronized cache: ");
      for (int ctr = 1; ctr <= sc.Count; ctr++)
         Console.WriteLine("   {0}: {1}", ctr, sc.Read(ctr));
   }
}
// The example displays the following output:
//    Task 1 read 0 items:
//
//    Task 3 wrote 17 items
//
//
//    Task 1 read 17 items: [broccoli] [cauliflower] [carrot] [sorrel] [baby turnip] [
//    beet] [brussel sprout] [cabbage] [plantain] [spinach] [grape leaves] [lime leave
//    s] [corn] [radish] [cucumber] [raddichio] [lima beans]
//
//    Task 2 read 0 items:
//
//    Task 2 read 17 items: [lima beans] [raddichio] [cucumber] [radish] [corn] [lime
//    leaves] [grape leaves] [spinach] [plantain] [cabbage] [brussel sprout] [beet] [b
//    aby turnip] [sorrel] [carrot] [cauliflower] [broccoli]
//
//    Changed 'cucumber' to 'green bean'
//
//    Values in synchronized cache:
//       1: broccoli
//       2: cauliflower
//       3: carrot
//       4: sorrel
//       5: baby turnip
//       6: beet
//       7: brussel sprout
//       8: cabbage
//       9: plantain
//       10: spinach
//       11: grape leaves
//       12: lime leaves
//       13: corn
//       14: radish
//       15: green bean
//       16: raddichio
//       17: lima beans
Public Module Example
   Public Sub Main()
      Dim sc As New SynchronizedCache()
      Dim tasks As New List(Of Task)
      Dim itemsWritten As Integer
      
      ' Execute a writer.
      tasks.Add(Task.Run( Sub()
                             Dim vegetables() As String = { "broccoli", "cauliflower",
                                                            "carrot", "sorrel", "baby turnip",
                                                            "beet", "brussel sprout",
                                                            "cabbage", "plantain",
                                                            "spinach", "grape leaves",
                                                            "lime leaves", "corn",
                                                            "radish", "cucumber",
                                                            "raddichio", "lima beans" }
                             For ctr As Integer = 1 to vegetables.Length
                                sc.Add(ctr, vegetables(ctr - 1))
                             Next
                             itemsWritten = vegetables.Length
                             Console.WriteLine("Task {0} wrote {1} items{2}",
                                               Task.CurrentId, itemsWritten, vbCrLf)
                          End Sub))
      ' Execute two readers, one to read from first to last and the second from last to first.
      For ctr As Integer = 0 To 1
         Dim flag As Integer = ctr
         tasks.Add(Task.Run( Sub()
                                Dim start, last, stp As Integer
                                Dim items As Integer
                                Do
                                   Dim output As String = String.Empty
                                   items = sc.Count
                                   If flag = 0 Then
                                      start = 1 : stp = 1 : last = items
                                   Else
                                      start = items : stp = -1 : last = 1
                                   End If
                                   For index As Integer = start To last Step stp
                                      output += String.Format("[{0}] ", sc.Read(index))
                                   Next
                                   Console.WriteLine("Task {0} read {1} items: {2}{3}",
                                                           Task.CurrentId, items, output,
                                                           vbCrLf)
                                Loop While items < itemsWritten Or itemsWritten = 0
                             End Sub))
      Next
      ' Execute a red/update task.
      tasks.Add(Task.Run( Sub()
                             For ctr As Integer = 1 To sc.Count
                                Dim value As String = sc.Read(ctr)
                                If value = "cucumber" Then
                                   If sc.AddOrUpdate(ctr, "green bean") <> SynchronizedCache.AddOrUpdateStatus.Unchanged Then
                                      Console.WriteLine("Changed 'cucumber' to 'green bean'")
                                   End If
                                End If
                             Next
                          End Sub ))

      ' Wait for all three tasks to complete.
      Task.WaitAll(tasks.ToArray())

      ' Display the final contents of the cache.
      Console.WriteLine()
      Console.WriteLine("Values in synchronized cache: ")
      For ctr As Integer = 1 To sc.Count
         Console.WriteLine("   {0}: {1}", ctr, sc.Read(ctr))
      Next
   End Sub
End Module
' The example displays output like the following:
'    Task 1 read 0 items:
'
'    Task 3 wrote 17 items
'
'    Task 1 read 17 items: [broccoli] [cauliflower] [carrot] [sorrel] [baby turnip] [
'    beet] [brussel sprout] [cabbage] [plantain] [spinach] [grape leaves] [lime leave
'    s] [corn] [radish] [cucumber] [raddichio] [lima beans]
'
'    Task 2 read 0 items:
'
'    Task 2 read 17 items: [lima beans] [raddichio] [cucumber] [radish] [corn] [lime
'    leaves] [grape leaves] [spinach] [plantain] [cabbage] [brussel sprout] [beet] [b
'    aby turnip] [sorrel] [carrot] [cauliflower] [broccoli]
'
'    Changed 'cucumber' to 'green bean'
'
'    Values in synchronized cache:
'       1: broccoli
'       2: cauliflower
'       3: carrot
'       4: sorrel
'       5: baby turnip
'       6: beet
'       7: brussel sprout
'       8: cabbage
'       9: plantain
'       10: spinach
'       11: grape leaves
'       12: lime leaves
'       13: corn
'       14: radish
'       15: green bean
'       16: raddichio
'       17: lima beans

Kommentarer

Rekursionsprincip avgör begränsningarna för trådar som anger låset mer än en gång. Om till exempel ett lås har skapats med LockRecursionPolicy.NoRecursion och en tråd har gått in i låset i läsläge, LockRecursionException utlöses om tråden försöker ange låset igen i läsläge. På samma sätt, om en tråd har gått in i låset i skrivläge, LockRecursionException utlöses om tråden försöker att igen låset i något läge.

Note

En tråd i uppgraderingsbart läge kan uppgraderas till skrivläge eller nedgraderas till läsläge oavsett principinställningen för låsrekursion.

Oavsett rekursionsprincip tillåts inte en tråd som ursprungligen gick in i läsläge att uppgradera till uppgraderingsbart läge eller skrivläge, eftersom det mönstret skapar en stark sannolikhet för dödlägen.

Mer information om rekursionsprincip och dess effekter finns i LockRecursionPolicy uppräkningen och ReaderWriterLockSlim klassen.

Se även

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