WeakReference 类
定义
重要
一些信息与预发行产品相关,相应产品在发行之前可能会进行重大修改。 对于此处提供的信息,Microsoft 不作任何明示或暗示的担保。
表示弱引用,即在引用对象的同时仍然允许通过垃圾回收来回收该对象。
public ref class WeakReference
public ref class WeakReference : System::Runtime::Serialization::ISerializable
public class WeakReference
public class WeakReference : System.Runtime.Serialization.ISerializable
[System.Serializable]
public class WeakReference : System.Runtime.Serialization.ISerializable
[System.Serializable]
[System.Runtime.InteropServices.ComVisible(true)]
public class WeakReference : System.Runtime.Serialization.ISerializable
type WeakReference = class
type WeakReference = class
interface ISerializable
[<System.Serializable>]
type WeakReference = class
interface ISerializable
[<System.Serializable>]
[<System.Runtime.InteropServices.ComVisible(true)>]
type WeakReference = class
interface ISerializable
Public Class WeakReference
Public Class WeakReference
Implements ISerializable
- 继承
-
WeakReference
- 属性
- 实现
示例
以下示例演示如何使用弱引用来维护对象缓存作为应用程序的资源。 缓存是使用IDictionary<TKey,TValue>WeakReference索引值键键的对象构造的。 对象的 Target 属性 WeakReference 是表示数据的字节数组中的对象。
此示例随机访问缓存中的对象。 如果回收对象进行垃圾回收,则会重新生成一个新的数据对象;否则,由于引用薄弱,对象可供访问。
using System;
using System.Collections.Generic;
public class Program
{
public static void Main()
{
// Create the cache.
int cacheSize = 50;
Random r = new Random();
Cache c = new Cache(cacheSize);
string DataName = "";
GC.Collect(0);
// Randomly access objects in the cache.
for (int i = 0; i < c.Count; i++) {
int index = r.Next(c.Count);
// Access the object by getting a property value.
DataName = c[index].Name;
}
// Show results.
double regenPercent = c.RegenerationCount/(double)c.Count;
Console.WriteLine("Cache size: {0}, Regenerated: {1:P2}%", c.Count, regenPercent);
}
}
public class Cache
{
// Dictionary to contain the cache.
static Dictionary<int, WeakReference> _cache;
// Track the number of times an object is regenerated.
int regenCount = 0;
public Cache(int count)
{
_cache = new Dictionary<int, WeakReference>();
// Add objects with a short weak reference to the cache.
for (int i = 0; i < count; i++) {
_cache.Add(i, new WeakReference(new Data(i), false));
}
}
// Number of items in the cache.
public int Count
{
get { return _cache.Count; }
}
// Number of times an object needs to be regenerated.
public int RegenerationCount
{
get { return regenCount; }
}
// Retrieve a data object from the cache.
public Data this[int index]
{
get {
Data d = _cache[index].Target as Data;
if (d == null) {
// If the object was reclaimed, generate a new one.
Console.WriteLine("Regenerate object at {0}: Yes", index);
d = new Data(index);
_cache[index].Target = d;
regenCount++;
}
else {
// Object was obtained with the weak reference.
Console.WriteLine("Regenerate object at {0}: No", index);
}
return d;
}
}
}
// This class creates byte arrays to simulate data.
public class Data
{
private byte[] _data;
private string _name;
public Data(int size)
{
_data = new byte[size * 1024];
_name = size.ToString();
}
// Simple property.
public string Name
{
get { return _name; }
}
}
// Example of the last lines of the output:
//
// ...
// Regenerate object at 36: Yes
// Regenerate object at 8: Yes
// Regenerate object at 21: Yes
// Regenerate object at 4: Yes
// Regenerate object at 38: No
// Regenerate object at 7: Yes
// Regenerate object at 2: Yes
// Regenerate object at 43: Yes
// Regenerate object at 38: No
// Cache size: 50, Regenerated: 94%
open System
open System.Collections.Generic
// This class creates byte arrays to simulate data.
type Data(size) =
let _data = Array.zeroCreate<byte> (size * 1024)
// Simple property.
member _.Name =
string size
type Cache(count) =
// Dictionary to contain the cache.
static let mutable _cache = Dictionary<int, WeakReference>()
// Track the number of times an object is regenerated.
let mutable regenCount = 0
do
_cache <- Dictionary<int, WeakReference>()
// Add objects with a short weak reference to the cache.
for i = 0 to count - 1 do
_cache.Add(i, WeakReference(Data i, false))
// Number of items in the cache.
member _.Count =
_cache.Count
// Number of times an object needs to be regenerated.
member _.RegenerationCount =
regenCount
// Retrieve a data object from the cache.
member _.Item
with get (index) =
match _cache[index].Target with
| :? Data as d->
// Object was obtained with the weak reference.
printfn $"Regenerate object at {index}: No"
d
| _ ->
// If the object was reclaimed, generate a new one.
printfn $"Regenerate object at {index}: Yes"
let d = Data index
_cache[index].Target <- d
regenCount <- regenCount + 1
d
// Create the cache.
let cacheSize = 50
let r = Random()
let c = Cache cacheSize
let mutable dataName = ""
GC.Collect 0
// Randomly access objects in the cache.
for _ = 0 to c.Count - 1 do
let index = r.Next c.Count
// Access the object by getting a property value.
dataName <- c[index].Name
// Show results.
let regenPercent = double c.RegenerationCount / double c.Count
printfn $"Cache size: {c.Count}, Regenerated: {regenPercent:P2}%%"
// Example of the last lines of the output:
//
// ...
// Regenerate object at 36: Yes
// Regenerate object at 8: Yes
// Regenerate object at 21: Yes
// Regenerate object at 4: Yes
// Regenerate object at 38: No
// Regenerate object at 7: Yes
// Regenerate object at 2: Yes
// Regenerate object at 43: Yes
// Regenerate object at 38: No
// Cache size: 50, Regenerated: 94%
Imports System.Collections.Generic
Public Class Example
Public Shared Sub Main()
' Create the cache.
Dim cacheSize As Integer = 50
Dim r As Random = New Random()
Dim c As Cache = New Cache(cacheSize)
Dim DataName As String = ""
GC.Collect(0)
' Randomly access objects in the cache.
For ctr As Integer = 0 To C.Count - 1
Dim index As Integer = r.Next(c.Count)
' Access the object by getting a property value.
DataName = c(index).Name
Next
' Show results.
Dim regenPercent As Double = c.RegenerationCount * 100 / c.Count
Console.WriteLine("Cache size: {0}, Regenerated: {1}%", c.Count, regenPercent)
End Sub
End Class
Public Class Cache
' Dictionary to contain the cache.
Private Shared _cache As Dictionary(Of Integer, WeakReference)
' Track the number of times an object is regenerated.
Dim regenCount As Integer = 0
Public Sub New(ByVal count As Integer)
_cache = New Dictionary(Of Integer, WeakReference)
' Add data objects with a short weak reference to the cache.
For ctr = 0 To count - 1
_cache.Add(ctr, New WeakReference(New Data(ctr)))
Next
End Sub
' Number of items in the cache.
Public ReadOnly Property Count() As Integer
Get
Return _cache.Count
End Get
End Property
' Number of times an object needs to be regenerated.
Public ReadOnly Property RegenerationCount() As Integer
Get
Return regenCount
End Get
End Property
' Retrieve a data object from the cache.
Default Public ReadOnly Property Item(ByVal index As Integer) As Data
Get
Dim d As Data = TryCast(_cache(index).Target, Data)
' If the object was reclaimed, generate a new one.
If d Is Nothing Then
Console.WriteLine("Regenerate object at {0}: Yes", index)
d = New Data(index)
_cache(index).Target = d
regenCount += 1
Else
' Object was obtained with the weak reference.
Console.WriteLine("Regenerate object at {0}: No", index.ToString())
End If
Return d
End Get
End Property
End Class
' Class that creates byte arrays to simulate data.
Public Class Data
Private _data() As Byte
Private _name As String
Public Sub New(ByVal size As Integer)
_data = New Byte(((size * 1024)) - 1) {}
_name = size.ToString
End Sub
' Simple property for accessing the object.
Public ReadOnly Property Name() As String
Get
Return _name
End Get
End Property
End Class
' Example of the last lines of the output:
' ...
' Regenerate object at 36: Yes
' Regenerate object at 8: Yes
' Regenerate object at 21: Yes
' Regenerate object at 4: Yes
' Regenerate object at 38: No
' Regenerate object at 7: Yes
' Regenerate object at 2: Yes
' Regenerate object at 43: Yes
' Regenerate object at 38: No
' Cache size: 50, Regenerated: 94%
注解
弱引用允许垃圾回收器收集对象,同时仍允许应用程序访问该对象。 如果需要该对象,仍可以获取对对象的强引用,并阻止收集该对象。 有关如何使用短和长弱引用的详细信息,请参阅 弱引用。
构造函数
WeakReference() | |
WeakReference(Object) |
引用指定的对象初始化 WeakReference 类的新实例。 |
WeakReference(Object, Boolean) |
通过引用指定对象并使用指定的复活跟踪,初始化 WeakReference 类的新实例。 |
WeakReference(SerializationInfo, StreamingContext) |
使用从指定的序列化和流对象反序列化的数据,初始化 WeakReference 类的新实例。 |
属性
IsAlive |
获取当前 WeakReference 对象引用的对象是否已被垃圾回收的指示。 |
Target |
获取或设置当前 WeakReference 对象引用的对象(目标)。 |
TrackResurrection |
获取当前 WeakReference 对象引用的对象在终止后是否会被跟踪的指示。 |
方法
Equals(Object) |
确定指定对象是否等于当前对象。 (继承自 Object) |
Finalize() |
丢弃对当前 WeakReference 对象表示的目标的引用。 |
GetHashCode() |
作为默认哈希函数。 (继承自 Object) |
GetObjectData(SerializationInfo, StreamingContext) |
使用序列化当前的 SerializationInfo 对象所需的所有数据填充 WeakReference 对象。 |
GetType() |
获取当前实例的 Type。 (继承自 Object) |
MemberwiseClone() |
创建当前 Object 的浅表副本。 (继承自 Object) |
ToString() |
返回表示当前对象的字符串。 (继承自 Object) |