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System.Object.Finalize method

This article provides supplementary remarks to the reference documentation for this API.

The Finalize method is used to perform cleanup operations on unmanaged resources held by the current object before the object is destroyed. The method is protected and therefore is accessible only through this class or through a derived class.

How finalization works

The Object class provides no implementation for the Finalize method, and the garbage collector does not mark types derived from Object for finalization unless they override the Finalize method.

If a type does override the Finalize method, the garbage collector adds an entry for each instance of the type to an internal structure called the finalization queue. The finalization queue contains entries for all the objects in the managed heap whose finalization code must run before the garbage collector can reclaim their memory. The garbage collector then calls the Finalize method automatically under the following conditions:

  • After the garbage collector has discovered that an object is inaccessible, unless the object has been exempted from finalization by a call to the GC.SuppressFinalize method.
  • On .NET Framework only, during shutdown of an application domain, unless the object is exempt from finalization. During shutdown, even objects that are still accessible are finalized.

Finalize is automatically called only once on a given instance, unless the object is re-registered by using a mechanism such as GC.ReRegisterForFinalize and the GC.SuppressFinalize method has not been subsequently called.

Finalize operations have the following limitations:

  • The exact time when the finalizer executes is undefined. To ensure deterministic release of resources for instances of your class, implement a Close method or provide a IDisposable.Dispose implementation.
  • The finalizers of two objects are not guaranteed to run in any specific order, even if one object refers to the other. That is, if Object A has a reference to Object B and both have finalizers, Object B might have already been finalized when the finalizer of Object A starts.
  • The thread on which the finalizer runs is unspecified.

The Finalize method might not run to completion or might not run at all under the following exceptional circumstances:

  • If another finalizer blocks indefinitely (goes into an infinite loop, tries to obtain a lock it can never obtain, and so on). Because the runtime tries to run finalizers to completion, other finalizers might not be called if a finalizer blocks indefinitely.
  • If the process terminates without giving the runtime a chance to clean up. In this case, the runtime's first notification of process termination is a DLL_PROCESS_DETACH notification.

The runtime continues to finalize objects during shutdown only while the number of finalizable objects continues to decrease.

If Finalize or an override of Finalize throws an exception, and the runtime is not hosted by an application that overrides the default policy, the runtime terminates the process and no active try/finally blocks or finalizers are executed. This behavior ensures process integrity if the finalizer cannot free or destroy resources.

Overriding the Finalize method

You should override Finalize for a class that uses unmanaged resources, such as file handles or database connections that must be released when the managed object that uses them is discarded during garbage collection. You shouldn't implement a Finalize method for managed objects because the garbage collector releases managed resources automatically.

Important

If a SafeHandle object is available that wraps your unmanaged resource, the recommended alternative is to implement the dispose pattern with a safe handle and not override Finalize. For more information, see The SafeHandle alternative section.

The Object.Finalize method does nothing by default, but you should override Finalize only if necessary, and only to release unmanaged resources. Reclaiming memory tends to take much longer if a finalization operation runs, because it requires at least two garbage collections. In addition, you should override the Finalize method for reference types only. The common language runtime only finalizes reference types. It ignores finalizers on value types.

The scope of the Object.Finalize method is protected. You should maintain this limited scope when you override the method in your class. By keeping a Finalize method protected, you prevent users of your application from calling an object's Finalize method directly.

Every implementation of Finalize in a derived type must call its base type's implementation of Finalize. This is the only case in which application code is allowed to call Finalize. An object's Finalize method shouldn't call a method on any objects other than that of its base class. This is because the other objects being called could be collected at the same time as the calling object, such as in the case of a common language runtime shutdown.

Note

The C# compiler does not allow you to override the Finalize method. Instead, you provide a finalizer by implementing a destructor for your class. A C# destructor automatically calls the destructor of its base class.

Visual C++ also provides its own syntax for implementing the Finalize method. For more information, see the "Destructors and finalizers" section of How to: Define and Consume Classes and Structs (C++/CLI).

Because garbage collection is non-deterministic, you do not know precisely when the garbage collector performs finalization. To release resources immediately, you can also choose to implement the dispose pattern and the IDisposable interface. The IDisposable.Dispose implementation can be called by consumers of your class to free unmanaged resources, and you can use the Finalize method to free unmanaged resources in the event that the Dispose method is not called.

Finalize can take almost any action, including resurrecting an object (that is, making the object accessible again) after it has been cleaned up during garbage collection. However, the object can only be resurrected once; Finalize cannot be called on resurrected objects during garbage collection.

The SafeHandle alternative

Creating reliable finalizers is often difficult, because you cannot make assumptions about the state of your application, and because unhandled system exceptions such as OutOfMemoryException and StackOverflowException terminate the finalizer. Instead of implementing a finalizer for your class to release unmanaged resources, you can use an object that is derived from the System.Runtime.InteropServices.SafeHandle class to wrap your unmanaged resources, and then implement the dispose pattern without a finalizer. The .NET Framework provides the following classes in the Microsoft.Win32 namespace that are derived from System.Runtime.InteropServices.SafeHandle:

The following example uses the dispose pattern with safe handles instead of overriding the Finalize method. It defines a FileAssociation class that wraps registry information about the application that handles files with a particular file extension. The two registry handles returned as out parameters by Windows RegOpenKeyEx function calls are passed to the SafeRegistryHandle constructor. The type's protected Dispose method then calls the SafeRegistryHandle.Dispose method to free these two handles.

using Microsoft.Win32.SafeHandles;
using System;
using System.ComponentModel;
using System.IO;
using System.Runtime.InteropServices;

public class FileAssociationInfo : IDisposable
{
   // Private variables.
   private String ext;
   private String openCmd;
   private String args;
   private SafeRegistryHandle hExtHandle, hAppIdHandle;

   // Windows API calls.
   [DllImport("advapi32.dll", CharSet= CharSet.Auto, SetLastError=true)]
   private static extern int RegOpenKeyEx(IntPtr hKey,
                  String lpSubKey, int ulOptions, int samDesired,
                  out IntPtr phkResult);
   [DllImport("advapi32.dll", CharSet= CharSet.Unicode, EntryPoint = "RegQueryValueExW",
              SetLastError=true)]
   private static extern int RegQueryValueEx(IntPtr hKey,
                  string lpValueName, int lpReserved, out uint lpType,
                  string lpData, ref uint lpcbData);
   [DllImport("advapi32.dll", SetLastError = true)]
   private static extern int RegSetValueEx(IntPtr hKey, [MarshalAs(UnmanagedType.LPStr)] string lpValueName,
                  int Reserved, uint dwType, [MarshalAs(UnmanagedType.LPStr)] string lpData,
                  int cpData);
   [DllImport("advapi32.dll", SetLastError=true)]
   private static extern int RegCloseKey(UIntPtr hKey);

   // Windows API constants.
   private const int HKEY_CLASSES_ROOT = unchecked((int) 0x80000000);
   private const int ERROR_SUCCESS = 0;

    private const int KEY_QUERY_VALUE = 1;
    private const int KEY_SET_VALUE = 0x2;

   private const uint REG_SZ = 1;

   private const int MAX_PATH = 260;

   public FileAssociationInfo(String fileExtension)
   {
      int retVal = 0;
      uint lpType = 0;

      if (!fileExtension.StartsWith("."))
             fileExtension = "." + fileExtension;
      ext = fileExtension;

      IntPtr hExtension = IntPtr.Zero;
      // Get the file extension value.
      retVal = RegOpenKeyEx(new IntPtr(HKEY_CLASSES_ROOT), fileExtension, 0, KEY_QUERY_VALUE, out hExtension);
      if (retVal != ERROR_SUCCESS)
         throw new Win32Exception(retVal);
      // Instantiate the first SafeRegistryHandle.
      hExtHandle = new SafeRegistryHandle(hExtension, true);

      string appId = new string(' ', MAX_PATH);
      uint appIdLength = (uint) appId.Length;
      retVal = RegQueryValueEx(hExtHandle.DangerousGetHandle(), String.Empty, 0, out lpType, appId, ref appIdLength);
      if (retVal != ERROR_SUCCESS)
         throw new Win32Exception(retVal);
      // We no longer need the hExtension handle.
      hExtHandle.Dispose();

      // Determine the number of characters without the terminating null.
      appId = appId.Substring(0, (int) appIdLength / 2 - 1) + @"\shell\open\Command";

      // Open the application identifier key.
      string exeName = new string(' ', MAX_PATH);
      uint exeNameLength = (uint) exeName.Length;
      IntPtr hAppId;
      retVal = RegOpenKeyEx(new IntPtr(HKEY_CLASSES_ROOT), appId, 0, KEY_QUERY_VALUE | KEY_SET_VALUE,
                            out hAppId);
       if (retVal != ERROR_SUCCESS)
         throw new Win32Exception(retVal);

      // Instantiate the second SafeRegistryHandle.
      hAppIdHandle = new SafeRegistryHandle(hAppId, true);

      // Get the executable name for this file type.
      string exePath = new string(' ', MAX_PATH);
      uint exePathLength = (uint) exePath.Length;
      retVal = RegQueryValueEx(hAppIdHandle.DangerousGetHandle(), String.Empty, 0, out lpType, exePath, ref exePathLength);
      if (retVal != ERROR_SUCCESS)
         throw new Win32Exception(retVal);

      // Determine the number of characters without the terminating null.
      exePath = exePath.Substring(0, (int) exePathLength / 2 - 1);
      // Remove any environment strings.
      exePath = Environment.ExpandEnvironmentVariables(exePath);

      int position = exePath.IndexOf('%');
      if (position >= 0) {
         args = exePath.Substring(position);
         // Remove command line parameters ('%0', etc.).
         exePath = exePath.Substring(0, position).Trim();
      }
      openCmd = exePath;
   }

   public String Extension
   { get { return ext; } }

   public String Open
   { get { return openCmd; }
     set {
        if (hAppIdHandle.IsInvalid | hAppIdHandle.IsClosed)
           throw new InvalidOperationException("Cannot write to registry key.");
        if (! File.Exists(value)) {
           string message = String.Format("'{0}' does not exist", value);
           throw new FileNotFoundException(message);
        }
        string cmd = value + " %1";
        int retVal = RegSetValueEx(hAppIdHandle.DangerousGetHandle(), String.Empty, 0,
                                   REG_SZ, value, value.Length + 1);
        if (retVal != ERROR_SUCCESS)
           throw new Win32Exception(retVal);
     } }

   public void Dispose()
   {
      Dispose(disposing: true);
      GC.SuppressFinalize(this);
   }

   protected void Dispose(bool disposing)
   {
      // Ordinarily, we release unmanaged resources here;
      // but all are wrapped by safe handles.

      // Release disposable objects.
      if (disposing) {
         if (hExtHandle != null) hExtHandle.Dispose();
         if (hAppIdHandle != null) hAppIdHandle.Dispose();
      }
   }
}
open Microsoft.Win32.SafeHandles
open System
open System.ComponentModel
open System.IO
open System.Runtime.InteropServices

// Windows API constants.
let HKEY_CLASSES_ROOT = 0x80000000
let ERROR_SUCCESS = 0
let KEY_QUERY_VALUE = 1
let KEY_SET_VALUE = 0x2
let REG_SZ = 1u
let MAX_PATH = 260

// Windows API calls.
[<DllImport("advapi32.dll", CharSet= CharSet.Auto, SetLastError=true)>]
extern int RegOpenKeyEx(nativeint hKey, string lpSubKey, int ulOptions, int samDesired, nativeint& phkResult)
[<DllImport("advapi32.dll", CharSet= CharSet.Unicode, EntryPoint = "RegQueryValueExW", SetLastError=true)>]
extern int RegQueryValueEx(nativeint hKey, string lpValueName, int lpReserved, uint& lpType, string lpData, uint& lpcbData)
[<DllImport("advapi32.dll", SetLastError = true)>]
extern int RegSetValueEx(nativeint hKey, [<MarshalAs(UnmanagedType.LPStr)>] string lpValueName, int Reserved, uint dwType, [<MarshalAs(UnmanagedType.LPStr)>] string lpData, int cpData)
[<DllImport("advapi32.dll", SetLastError=true)>]
extern int RegCloseKey(unativeint hKey)

type FileAssociationInfo(fileExtension: string) =
    // Private values.
    let ext =
        if fileExtension.StartsWith "." |> not then
            "." + fileExtension
        else
            fileExtension
    let mutable args = ""
    let mutable hAppIdHandle = Unchecked.defaultof<SafeRegistryHandle>
    let mutable hExtHandle = Unchecked.defaultof<SafeRegistryHandle>
    let openCmd = 
        let mutable lpType = 0u
        let mutable hExtension = 0n
        // Get the file extension value.
        let retVal = RegOpenKeyEx(nativeint HKEY_CLASSES_ROOT, fileExtension, 0, KEY_QUERY_VALUE, &hExtension)
        if retVal <> ERROR_SUCCESS then
            raise (Win32Exception retVal)
        // Instantiate the first SafeRegistryHandle.
        hExtHandle <- new SafeRegistryHandle(hExtension, true)

        let appId = String(' ', MAX_PATH)
        let mutable appIdLength = uint appId.Length
        let retVal = RegQueryValueEx(hExtHandle.DangerousGetHandle(), String.Empty, 0, &lpType, appId, &appIdLength)
        if retVal <> ERROR_SUCCESS then
            raise (Win32Exception retVal)
        // We no longer need the hExtension handle.
        hExtHandle.Dispose()

        // Determine the number of characters without the terminating null.
        let appId = appId.Substring(0, int appIdLength / 2 - 1) + @"\shell\open\Command"

        // Open the application identifier key.
        let exeName = String(' ', MAX_PATH)
        let exeNameLength = uint exeName.Length
        let mutable hAppId = 0n
        let retVal = RegOpenKeyEx(nativeint HKEY_CLASSES_ROOT, appId, 0, KEY_QUERY_VALUE ||| KEY_SET_VALUE, &hAppId)
        if retVal <> ERROR_SUCCESS then
            raise (Win32Exception retVal)

        // Instantiate the second SafeRegistryHandle.
        hAppIdHandle <- new SafeRegistryHandle(hAppId, true)

        // Get the executable name for this file type.
        let exePath = String(' ', MAX_PATH)
        let mutable exePathLength = uint exePath.Length
        let retVal = RegQueryValueEx(hAppIdHandle.DangerousGetHandle(), String.Empty, 0, &lpType, exePath, &exePathLength)
        if retVal <> ERROR_SUCCESS then
            raise (Win32Exception retVal)

        // Determine the number of characters without the terminating null.
        let exePath = 
            exePath.Substring(0, int exePathLength / 2 - 1)
            // Remove any environment strings.
            |> Environment.ExpandEnvironmentVariables

        let position = exePath.IndexOf '%'
        if position >= 0 then
            args <- exePath.Substring position
            // Remove command line parameters ('%0', etc.).
            exePath.Substring(0, position).Trim()
        else
            exePath

    member _.Extension =
        ext

    member _.Open
        with get () = openCmd
        and set (value) =
            if hAppIdHandle.IsInvalid || hAppIdHandle.IsClosed then
                raise (InvalidOperationException "Cannot write to registry key.")
            if not (File.Exists value) then
                raise (FileNotFoundException $"'{value}' does not exist")
            
            let cmd = value + " %1"
            let retVal = RegSetValueEx(hAppIdHandle.DangerousGetHandle(), String.Empty, 0, REG_SZ, value, value.Length + 1)
            if retVal <> ERROR_SUCCESS then
                raise (Win32Exception retVal)

    member this.Dispose() =
        this.Dispose true
        GC.SuppressFinalize this

    member _.Dispose(disposing) =
        // Ordinarily, we release unmanaged resources here
        // but all are wrapped by safe handles.

        // Release disposable objects.
        if disposing then
           if hExtHandle <> null then hExtHandle.Dispose()
           if hAppIdHandle <> null then hAppIdHandle.Dispose()

    interface IDisposable with
        member this.Dispose() =
            this.Dispose()
Imports Microsoft.Win32.SafeHandles
Imports System.ComponentModel
Imports System.IO
Imports System.Runtime.InteropServices
Imports System.Text

Public Class FileAssociationInfo : Implements IDisposable
   ' Private variables.
   Private ext As String
   Private openCmd As String
   Private args As String
   Private hExtHandle, hAppIdHandle As SafeRegistryHandle

   ' Windows API calls.
   Private Declare Unicode Function RegOpenKeyEx Lib"advapi32.dll" _
                   Alias "RegOpenKeyExW" (hKey As IntPtr, lpSubKey As String, _
                   ulOptions As Integer, samDesired As Integer, _
                   ByRef phkResult As IntPtr) As Integer
   Private Declare Unicode Function RegQueryValueEx Lib "advapi32.dll" _
                   Alias "RegQueryValueExW" (hKey As IntPtr, _
                   lpValueName As String, lpReserved As Integer, _
                   ByRef lpType As UInteger, lpData As String, _
                   ByRef lpcbData As UInteger) As Integer
   Private Declare Function RegSetValueEx Lib "advapi32.dll" _
                  (hKey As IntPtr, _
                  <MarshalAs(UnmanagedType.LPStr)> lpValueName As String, _
                  reserved As Integer, dwType As UInteger, _
                  <MarshalAs(UnmanagedType.LPStr)> lpData As String, _
                  cpData As Integer) As Integer
   Private Declare Function RegCloseKey Lib "advapi32.dll" _
                  (hKey As IntPtr) As Integer

   ' Windows API constants.
   Private Const HKEY_CLASSES_ROOT As Integer = &h80000000
   Private Const ERROR_SUCCESS As Integer = 0

   Private Const KEY_QUERY_VALUE As Integer = 1
   Private Const KEY_SET_VALUE As Integer = &h2

   Private REG_SZ As UInteger = 1

   Private Const MAX_PATH As Integer  = 260

   Public Sub New(fileExtension As String)
      Dim retVal As Integer = 0
      Dim lpType As UInteger = 0

      If Not fileExtension.StartsWith(".") Then
         fileExtension = "." + fileExtension
      End If
      ext = fileExtension

      Dim hExtension As IntPtr = IntPtr.Zero
      ' Get the file extension value.
      retVal = RegOpenKeyEx(New IntPtr(HKEY_CLASSES_ROOT), fileExtension, 0,
                            KEY_QUERY_VALUE, hExtension)
      if retVal <> ERROR_SUCCESS Then
         Throw New Win32Exception(retVal)
      End If
      ' Instantiate the first SafeRegistryHandle.
      hExtHandle = New SafeRegistryHandle(hExtension, True)

      Dim appId As New String(" "c, MAX_PATH)
      Dim appIdLength As UInteger = CUInt(appId.Length)
      retVal = RegQueryValueEx(hExtHandle.DangerousGetHandle(), String.Empty, _
                               0, lpType, appId, appIdLength)
      if retVal <> ERROR_SUCCESS Then
         Throw New Win32Exception(retVal)
      End If
      ' We no longer need the hExtension handle.
      hExtHandle.Dispose()

      ' Determine the number of characters without the terminating null.
      appId = appId.Substring(0, CInt(appIdLength) \ 2 - 1) + "\shell\open\Command"

      ' Open the application identifier key.
      Dim exeName As New string(" "c, MAX_PATH)
      Dim exeNameLength As UInteger = CUInt(exeName.Length)
      Dim hAppId As IntPtr
      retVal = RegOpenKeyEx(New IntPtr(HKEY_CLASSES_ROOT), appId, 0,
                            KEY_QUERY_VALUE Or KEY_SET_VALUE, hAppId)
      If retVal <> ERROR_SUCCESS Then
         Throw New Win32Exception(retVal)
      End If

      ' Instantiate the second SafeRegistryHandle.
      hAppIdHandle = New SafeRegistryHandle(hAppId, True)

      ' Get the executable name for this file type.
      Dim exePath As New string(" "c, MAX_PATH)
      Dim exePathLength As UInteger = CUInt(exePath.Length)
      retVal = RegQueryValueEx(hAppIdHandle.DangerousGetHandle(), _
                               String.Empty, 0, lpType, exePath, exePathLength)
      If retVal <> ERROR_SUCCESS Then
         Throw New Win32Exception(retVal)
      End If
      ' Determine the number of characters without the terminating null.
      exePath = exePath.Substring(0, CInt(exePathLength) \ 2 - 1)

      exePath = Environment.ExpandEnvironmentVariables(exePath)
      Dim position As Integer = exePath.IndexOf("%"c)
      If position >= 0 Then
         args = exePath.Substring(position)
         ' Remove command line parameters ('%0', etc.).
         exePath = exePath.Substring(0, position).Trim()
      End If
      openCmd = exePath
   End Sub

   Public ReadOnly Property Extension As String
      Get
         Return ext
      End Get
   End Property

   Public Property Open As String
      Get
         Return openCmd
      End Get
      Set
        If hAppIdHandle.IsInvalid Or hAppIdHandle.IsClosed Then
           Throw New InvalidOperationException("Cannot write to registry key.")
        End If
        If Not File.Exists(value) Then
           Dim message As String = String.Format("'{0}' does not exist", value)
           Throw New FileNotFoundException(message)
        End If
        Dim cmd As String = value + " %1"
        Dim retVal As Integer = RegSetValueEx(hAppIdHandle.DangerousGetHandle(), String.Empty, 0,
                                              REG_SZ, value, value.Length + 1)
        If retVal <> ERROR_SUCCESS Then
           Throw New Win32Exception(retVal)
        End If
      End Set
   End Property

   Public Sub Dispose() _
      Implements IDisposable.Dispose
      Dispose(disposing:=True)
      GC.SuppressFinalize(Me)
   End Sub

   Protected Sub Dispose(disposing As Boolean)
      ' Ordinarily, we release unmanaged resources here
      ' but all are wrapped by safe handles.

      ' Release disposable objects.
      If disposing Then
         If hExtHandle IsNot Nothing Then hExtHandle.Dispose()
         If hAppIdHandle IsNot Nothing Then hAppIdHandle.Dispose()
      End If
   End Sub
End Class