Programación asincrónicaAsynchronous Programming

En este tema se describe la compatibilidad con la programación asincrónica en el proveedor de datos de .NET Framework para SQL Server (SqlClient), incluidas las mejoras realizadas para admitir la funcionalidad de programación asincrónica que se presentó en .NET Framework 4,5.This topic discusses support for asynchronous programming in the .NET Framework Data Provider for SQL Server (SqlClient) including enhancements made to support asynchronous programming functionality that was introduced in .NET Framework 4.5.

Programación asincrónica heredadaLegacy Asynchronous Programming

Antes de .NET Framework 4,5, la programación asincrónica con SqlClient se realizaba con los siguientes métodos y Asynchronous Processing=true la propiedad de conexión:Prior to .NET Framework 4.5, asynchronous programming with SqlClient was done with the following methods and the Asynchronous Processing=true connection property:

  1. SqlCommand.BeginExecuteNonQuery

  2. SqlCommand.BeginExecuteReader

  3. SqlCommand.BeginExecuteXmlReader

Esta funcionalidad permanece en SqlClient en .NET Framework 4,5.This functionality remains in SqlClient in .NET Framework 4.5.

Sugerencia

A partir del .NET Framework 4,5, estos métodos heredados ya no Asynchronous Processing=true requieren en la cadena de conexión.Beginning in the .NET Framework 4.5, these legacy methods no longer require Asynchronous Processing=true in the connection string.

Características de programación asincrónica agregadas en .NET Framework 4,5Asynchronous Programming Features Added in .NET Framework 4.5

La nueva característica de programación asincrónica proporciona una técnica sencilla para crear código asincrónico.The new asynchronous programming feature provides a simple technique to make code asynchronous.

Para obtener más información acerca de la característica de programación asincrónica que se presentó en .NET Framework 4,5, consulte:For more information about the asynchronous programming feature that was introduced in .NET Framework 4.5, see:

Cuando la interfaz de usuario no responde o el servidor no escala, es probable que necesite que el código sea más asincrónico.When your user interface is unresponsive or your server does not scale, it is likely that you need your code to be more asynchronous. La escritura de código asincrónico ha implicado tradicionalmente la instalación de una devolución de llamada (también denominada continuación) para expresar la lógica que tiene lugar después de que la operación asincrónica finalice.Writing asynchronous code has traditionally involved installing a callback (also called continuation) to express the logic that occurs after the asynchronous operation finishes. Esto complica la estructura del código asincrónico con respecto al código sincrónico.This complicates the structure of asynchronous code as compared with synchronous code.

Ahora puede llamar a métodos asincrónicos sin usar devoluciones de llamada y sin dividir el código en varios métodos o expresiones lambda.You can now call into asynchronous methods without using callbacks, and without splitting your code across multiple methods or lambda expressions.

El modificador async especifica que un método es asincrónico.The async modifier specifies that a method is asynchronous. Al llamar a un método async, se devuelve una tarea.When calling an async method, a task is returned. Cuando el await operador se aplica a una tarea, el método actual finaliza inmediatamente.When the await operator is applied to a task, the current method exits immediately. Cuando la tarea finaliza, la ejecución se reanuda en el mismo método.When the task finishes, execution resumes in the same method.

Advertencia

Las llamadas asincrónicas no se admiten si una aplicación también usa la palabra clave de cadena de conexión Context Connection.Asynchronous calls are not supported if an application also uses the Context Connection connection string keyword.

Al llamar a un método async no se asigna ningún subproceso adicional.Calling an async method does not allocate any additional threads. Puede usar el subproceso existente de finalización de E/S momentáneamente al final.It may use the existing I/O completion thread briefly at the end.

Los métodos siguientes se agregaron en .NET Framework 4,5 para admitir la programación asincrónica:The following methods were added in .NET Framework 4.5 to support asynchronous programming:

Se agregaron otros miembros asincrónicos para admitir la compatibilidad con el streaming de SqlClient.Other asynchronous members were added to support SqlClient Streaming Support.

Sugerencia

Los nuevos métodos asincrónicos no requieren Asynchronous Processing=true en la cadena de conexión.The new asynchronous methods don't require Asynchronous Processing=true in the connection string.

Apertura de conexiones sincrónicas a asincrónicasSynchronous to Asynchronous Connection Open

Puede actualizar una aplicación existente para usar la nueva característica asincrónica.You can upgrade an existing application to use the new asynchronous feature. Por ejemplo, suponga que una aplicación tiene un algoritmo de conexión sincrónico y bloquea el subproceso de la interfaz de usuario cada vez que se conecta a la base de datos y, una vez que está conectada, la aplicación llama a un procedimiento almacenado que señala otros usuarios en vez de al que acaba de iniciar sesión.For example, assume an application has a synchronous connection algorithm and blocks the UI thread every time it connects to the database and, once connected, the application calls a stored procedure that signals other users of the one who just signed in.

using SqlConnection conn = new SqlConnection("…");
{
   conn.Open();
   using (SqlCommand cmd = new SqlCommand("StoredProcedure_Logon", conn))
   {
      cmd.ExecuteNonQuery();
   }
}

Cuando se convierte para usar la nueva funcionalidad asincrónica, el programa es así:When converted to use the new asynchronous functionality, the program would look like:

using System;
using System.Data.SqlClient;
using System.Threading.Tasks;

class A {

   static async Task<int> Method(SqlConnection conn, SqlCommand cmd) {
      await conn.OpenAsync();
      await cmd.ExecuteNonQueryAsync();
      return 1;
   }

   public static void Main() {
      using (SqlConnection conn = new SqlConnection("Data Source=(local); Initial Catalog=NorthWind; Integrated Security=SSPI")) {
         SqlCommand command = new SqlCommand("select top 2 * from orders", conn);

         int result = A.Method(conn, command).Result;

         SqlDataReader reader = command.ExecuteReader();
         while (reader.Read())
            Console.WriteLine(reader[0]);
      }
   }
}

Agregar la nueva característica asincrónica en una aplicación existente (combinación de patrones antiguos y nuevos)Adding the New Asynchronous Feature in an Existing Application (Mixing Old and New Patterns)

También es posible agregar la nueva función asincrónica (SqlConnection::OpenAsync) sin modificar la lógica asincrónica existente.It is also possible to add new asynchronous capability (SqlConnection::OpenAsync) without changing the existing asynchronous logic. Por ejemplo, si una aplicación usa actualmente:For example, if an application currently uses:

AsyncCallback productList = new AsyncCallback(ProductList);
SqlConnection conn = new SqlConnection("…");
conn.Open();
SqlCommand cmd = new SqlCommand("SELECT * FROM [Current Product List]", conn);
IAsyncResult ia = cmd.BeginExecuteReader(productList, cmd);

Puede empezar a usar el nuevo patrón asincrónico sin cambiar sustancialmente el algoritmo existente.You can begin to use the new asynchronous pattern without substantially changing the existing algorithm.

using System;
using System.Data.SqlClient;
using System.Threading.Tasks;

class A {
   static void ProductList(IAsyncResult result) { }

   public static void Main() {
      // AsyncCallback productList = new AsyncCallback(ProductList);
      // SqlConnection conn = new SqlConnection("Data Source=(local); Initial Catalog=NorthWind; Integrated Security=SSPI");
      // conn.Open();
      // SqlCommand cmd = new SqlCommand("select top 2 * from orders", conn);
      // IAsyncResult ia = cmd.BeginExecuteReader(productList, cmd);

      AsyncCallback productList = new AsyncCallback(ProductList);
      SqlConnection conn = new SqlConnection("Data Source=(local); Initial Catalog=NorthWind; Integrated Security=SSPI");
      conn.OpenAsync().ContinueWith((task) => {
         SqlCommand cmd = new SqlCommand("select top 2 * from orders", conn);
         IAsyncResult ia = cmd.BeginExecuteReader(productList, cmd);
      }, TaskContinuationOptions.OnlyOnRanToCompletion);
   }
}

Usar el modelo de proveedor base y la nueva característica asincrónicaUsing the Base Provider Model and the New Asynchronous Feature

Puede que tenga que crear una herramienta que pueda conectarse a bases de datos diferentes y ejecutar consultas.You may need to create a tool that is able to connect to different databases and execute queries. Puede usar el modelo de proveedor base y la nueva característica asincrónica.You can use the base provider model and the new asynchronous feature.

El Controlador de transacciones distribuidas de Microsoft (MSDTC) debe estar habilitado en el servidor para usar transacciones distribuidas.The Microsoft Distributed Transaction Controller (MSDTC) must be enabled on the server to use distributed transactions. Para obtener información sobre cómo habilitar MSDTC, consulte Cómo habilitar MSDTC en un servidor Web.For information on how to enable MSDTC, see How to Enable MSDTC on a Web Server.

using System;
using System.Data.Common;
using System.Data.SqlClient;
using System.Threading.Tasks;

class A {
   static async Task PerformDBOperationsUsingProviderModel(string connectionString, string providerName) {
      DbProviderFactory factory = DbProviderFactories.GetFactory(providerName);
      using (DbConnection connection = factory.CreateConnection()) {
         connection.ConnectionString = connectionString;
         await connection.OpenAsync();

         DbCommand command = connection.CreateCommand();
         command.CommandText = "SELECT * FROM AUTHORS";

         using (DbDataReader reader = await command.ExecuteReaderAsync()) {
            while (await reader.ReadAsync()) {
               for (int i = 0; i < reader.FieldCount; i++) {
                  // Process each column as appropriate
                  object obj = await reader.GetFieldValueAsync<object>(i);
                  Console.WriteLine(obj);
               }
            }
         }
      }
   }

   public static void Main()
   {
       SqlConnectionStringBuilder builder = new SqlConnectionStringBuilder();
       // replace these with your own values
       builder.DataSource = "your_server";
       builder.InitialCatalog = "pubs";
       builder.IntegratedSecurity = true;
       string provider = "System.Data.SqlClient";

       Task task = PerformDBOperationsUsingProviderModel(builder.ConnectionString, provider);
       task.Wait();
   }
}

Usar transacciones SQL y la nueva característica asincrónicaUsing SQL Transactions and the New Asynchronous Feature

using System;
using System.Data.SqlClient;
using System.Threading.Tasks;

class Program {
   static void Main() {
      string connectionString =
          "Persist Security Info=False;Integrated Security=SSPI;database=Northwind;server=(local)";
      Task task = ExecuteSqlTransaction(connectionString);
      task.Wait();
   }

   static async Task ExecuteSqlTransaction(string connectionString) {
      using (SqlConnection connection = new SqlConnection(connectionString)) {
         await connection.OpenAsync();

         SqlCommand command = connection.CreateCommand();
         SqlTransaction transaction = null;

         // Start a local transaction.
         transaction = await Task.Run<SqlTransaction>(
             () => connection.BeginTransaction("SampleTransaction")
             );

         // Must assign both transaction object and connection
         // to Command object for a pending local transaction
         command.Connection = connection;
         command.Transaction = transaction;

         try {
            command.CommandText =
                "Insert into Region (RegionID, RegionDescription) VALUES (555, 'Description')";
            await command.ExecuteNonQueryAsync();

            command.CommandText =
                "Insert into Region (RegionID, RegionDescription) VALUES (556, 'Description')";
            await command.ExecuteNonQueryAsync();

            // Attempt to commit the transaction.
            await Task.Run(() => transaction.Commit());
            Console.WriteLine("Both records are written to database.");
         }
         catch (Exception ex) {
            Console.WriteLine("Commit Exception Type: {0}", ex.GetType());
            Console.WriteLine("  Message: {0}", ex.Message);

            // Attempt to roll back the transaction.
            try {
               transaction.Rollback();
            }
            catch (Exception ex2) {
               // This catch block will handle any errors that may have occurred
               // on the server that would cause the rollback to fail, such as
               // a closed connection.
               Console.WriteLine("Rollback Exception Type: {0}", ex2.GetType());
               Console.WriteLine("  Message: {0}", ex2.Message);
            }
         }
      }
   }
}

Usar transacciones SQL y la nueva característica asincrónicaUsing SQL Transactions and the New Asynchronous Feature

En una aplicación empresarial, puede que necesite agregar transacciones distribuidas en algunos escenarios, para habilitar transacciones entre varios servidores de bases de datos.In an enterprise application, you may need to add distributed transactions in some scenarios, to enable transactions between multiple database servers. Puede usar el espacio de nombres System.Transactions e inscribir una transacción distribuida, del siguiente modo:You can use the System.Transactions namespace and enlist a distributed transaction, as follows:

using System;
using System.Data.SqlClient;
using System.Threading.Tasks;
using System.Transactions;

class Program {
   public static void Main()
   {
       SqlConnectionStringBuilder builder = new SqlConnectionStringBuilder();
       // replace these with your own values
       builder.DataSource = "your_server";
       builder.InitialCatalog = "your_data_source";
       builder.IntegratedSecurity = true;

       Task task = ExecuteDistributedTransaction(builder.ConnectionString, builder.ConnectionString);
       task.Wait();
   }

   static async Task ExecuteDistributedTransaction(string connectionString1, string connectionString2) {
      using (SqlConnection connection1 = new SqlConnection(connectionString1))
      using (SqlConnection connection2 = new SqlConnection(connectionString2)) {
         using (CommittableTransaction transaction = new CommittableTransaction()) {
            await connection1.OpenAsync();
            connection1.EnlistTransaction(transaction);

            await connection2.OpenAsync();
            connection2.EnlistTransaction(transaction);

            try {
               SqlCommand command1 = connection1.CreateCommand();
               command1.CommandText = "Insert into RegionTable1 (RegionID, RegionDescription) VALUES (100, 'Description')";
               await command1.ExecuteNonQueryAsync();

               SqlCommand command2 = connection2.CreateCommand();
               command2.CommandText = "Insert into RegionTable2 (RegionID, RegionDescription) VALUES (100, 'Description')";
               await command2.ExecuteNonQueryAsync();

               transaction.Commit();
            }
            catch (Exception ex) {
               Console.WriteLine("Exception Type: {0}", ex.GetType());
               Console.WriteLine("  Message: {0}", ex.Message);

               try {
                  transaction.Rollback();
               }
               catch (Exception ex2) {
                  Console.WriteLine("Rollback Exception Type: {0}", ex2.GetType());
                  Console.WriteLine("  Message: {0}", ex2.Message);
               }
            }
         }
      }
   }
}

Cancelar una operación asincrónicaCancelling an Asynchronous Operation

Puede cancelar una solicitud asincrónica mediante CancellationToken.You can cancel an asynchronous request by using the CancellationToken.

using System;
using System.Data.SqlClient;
using System.Threading;
using System.Threading.Tasks;

namespace Samples {
   class CancellationSample {
      public static void Main(string[] args) {
         CancellationTokenSource source = new CancellationTokenSource();
         source.CancelAfter(2000); // give up after 2 seconds
         try {
            Task result = CancellingAsynchronousOperations(source.Token);
            result.Wait();
         }
         catch (AggregateException exception) {
            if (exception.InnerException is SqlException) {
               Console.WriteLine("Operation canceled");
            }
            else {
               throw;
            }
         }
      }

      static async Task CancellingAsynchronousOperations(CancellationToken cancellationToken) {
         using (SqlConnection connection = new SqlConnection("Server=(local);Integrated Security=true")) {
            await connection.OpenAsync(cancellationToken);

            SqlCommand command = new SqlCommand("WAITFOR DELAY '00:10:00'", connection);
            await command.ExecuteNonQueryAsync(cancellationToken);
         }
      }
   }
}

Operaciones asincrónicas con SqlBulkCopyAsynchronous Operations with SqlBulkCopy

Las capacidades asincrónicas también se agregaron a System.Data.SqlClient.SqlBulkCopy con SqlBulkCopy.WriteToServerAsync.Asynchronous capabilities were also added to System.Data.SqlClient.SqlBulkCopy with SqlBulkCopy.WriteToServerAsync.

using System;
using System.Collections.Generic;
using System.Data;
using System.Data.Odbc;
using System.Data.SqlClient;
using System.Linq;
using System.Text;
using System.Threading;
using System.Threading.Tasks;

namespace SqlBulkCopyAsyncCodeSample {
   class Program {
      static string selectStatement = "SELECT * FROM [pubs].[dbo].[titles]";
      static string createDestTableStatement =
          @"CREATE TABLE {0} (
            [title_id] [varchar](6) NOT NULL,
            [title] [varchar](80) NOT NULL,
            [type] [char](12) NOT NULL,
            [pub_id] [char](4) NULL,
            [price] [money] NULL,
            [advance] [money] NULL,
            [royalty] [int] NULL,
            [ytd_sales] [int] NULL,
            [notes] [varchar](200) NULL,
            [pubdate] [datetime] NOT NULL)";

      // Replace the connection string if needed, for instance to connect to SQL Express: @"Server=(local)\SQLEXPRESS;Database=Demo;Integrated Security=true"
      // static string connectionString = @"Server=(localdb)\V11.0;Database=Demo";
      static string connectionString = @"Server=(local);Database=Demo;Integrated Security=true";

      // static string odbcConnectionString = @"Driver={SQL Server};Server=(localdb)\V11.0;UID=oledb;Pwd=1Password!;Database=Demo";
      static string odbcConnectionString = @"Driver={SQL Server};Server=(local);Database=Demo;Integrated Security=true";

      // static string marsConnectionString = @"Server=(localdb)\V11.0;Database=Demo;MultipleActiveResultSets=true;";
      static string marsConnectionString = @"Server=(local);Database=Demo;MultipleActiveResultSets=true;Integrated Security=true";

      // Replace the Server name with your actual sql azure server name and User ID/Password
      static string azureConnectionString = @"Server=SqlAzure;User ID=myUserID;Password=myPassword;Database=Demo";

      static void Main(string[] args) {
         SynchronousSqlBulkCopy();
         AsyncSqlBulkCopy().Wait();
         MixSyncAsyncSqlBulkCopy().Wait();
         AsyncSqlBulkCopyNotifyAfter().Wait();
         AsyncSqlBulkCopyDataRows().Wait();
         // AsyncSqlBulkCopySqlServerToSqlAzure().Wait();
         // AsyncSqlBulkCopyCancel().Wait();
         AsyncSqlBulkCopyMARS().Wait();
      }

      // 3.1.1 Synchronous bulk copy in .NET 4.5
      private static void SynchronousSqlBulkCopy() {
         using (SqlConnection conn = new SqlConnection(connectionString)) {
            conn.Open();
            DataTable dt = new DataTable();
            using (SqlCommand cmd = new SqlCommand(selectStatement, conn)) {
               SqlDataAdapter adapter = new SqlDataAdapter(cmd);
               adapter.Fill(dt);

               string temptable = "[#" + Guid.NewGuid().ToString("N") + "]";
               cmd.CommandText = string.Format(createDestTableStatement, temptable);
               cmd.ExecuteNonQuery();

               using (SqlBulkCopy bcp = new SqlBulkCopy(conn)) {
                  bcp.DestinationTableName = temptable;
                  bcp.WriteToServer(dt);
               }
            }
         }

      }

      // 3.1.2 Asynchronous bulk copy in .NET 4.5
      private static async Task AsyncSqlBulkCopy() {
         using (SqlConnection conn = new SqlConnection(connectionString)) {
            await conn.OpenAsync();
            DataTable dt = new DataTable();
            using (SqlCommand cmd = new SqlCommand(selectStatement, conn)) {
               SqlDataAdapter adapter = new SqlDataAdapter(cmd);
               adapter.Fill(dt);

               string temptable = "[#" + Guid.NewGuid().ToString("N") + "]";
               cmd.CommandText = string.Format(createDestTableStatement, temptable);
               await cmd.ExecuteNonQueryAsync();

               using (SqlBulkCopy bcp = new SqlBulkCopy(conn)) {
                  bcp.DestinationTableName = temptable;
                  await bcp.WriteToServerAsync(dt);
               }
            }
         }
      }

      // 3.2 Add new Async.NET capabilities in an existing application (Mixing synchronous and asynchronous calls)
      private static async Task MixSyncAsyncSqlBulkCopy() {
         using (OdbcConnection odbcconn = new OdbcConnection(odbcConnectionString)) {
            odbcconn.Open();
            using (OdbcCommand odbccmd = new OdbcCommand(selectStatement, odbcconn)) {
               using (OdbcDataReader odbcreader = odbccmd.ExecuteReader()) {
                  using (SqlConnection conn = new SqlConnection(connectionString)) {
                     await conn.OpenAsync();
                     string temptable = "temptable";//"[#" + Guid.NewGuid().ToString("N") + "]";
                     SqlCommand createCmd = new SqlCommand(string.Format(createDestTableStatement, temptable), conn);
                     await createCmd.ExecuteNonQueryAsync();
                     using (SqlBulkCopy bcp = new SqlBulkCopy(conn)) {
                        bcp.DestinationTableName = temptable;
                        await bcp.WriteToServerAsync(odbcreader);
                     }
                  }
               }
            }
         }
      }

      // 3.3 Using the NotifyAfter property
      private static async Task AsyncSqlBulkCopyNotifyAfter() {
         using (SqlConnection conn = new SqlConnection(connectionString)) {
            await conn.OpenAsync();
            DataTable dt = new DataTable();
            using (SqlCommand cmd = new SqlCommand(selectStatement, conn)) {
               SqlDataAdapter adapter = new SqlDataAdapter(cmd);
               adapter.Fill(dt);

               string temptable = "[#" + Guid.NewGuid().ToString("N") + "]";
               cmd.CommandText = string.Format(createDestTableStatement, temptable);
               await cmd.ExecuteNonQueryAsync();

               using (SqlBulkCopy bcp = new SqlBulkCopy(conn)) {
                  bcp.DestinationTableName = temptable;
                  bcp.NotifyAfter = 5;
                  bcp.SqlRowsCopied += new SqlRowsCopiedEventHandler(OnSqlRowsCopied);
                  await bcp.WriteToServerAsync(dt);
               }
            }
         }
      }

      private static void OnSqlRowsCopied(object sender, SqlRowsCopiedEventArgs e) {
         Console.WriteLine("Copied {0} so far...", e.RowsCopied);
      }

      // 3.4 Using the new SqlBulkCopy Async.NET capabilities with DataRow[]
      private static async Task AsyncSqlBulkCopyDataRows() {
         using (SqlConnection conn = new SqlConnection(connectionString)) {
            await conn.OpenAsync();
            DataTable dt = new DataTable();
            using (SqlCommand cmd = new SqlCommand(selectStatement, conn)) {
               SqlDataAdapter adapter = new SqlDataAdapter(cmd);
               adapter.Fill(dt);
               DataRow[] rows = dt.Select();

               string temptable = "[#" + Guid.NewGuid().ToString("N") + "]";
               cmd.CommandText = string.Format(createDestTableStatement, temptable);
               await cmd.ExecuteNonQueryAsync();

               using (SqlBulkCopy bcp = new SqlBulkCopy(conn)) {
                  bcp.DestinationTableName = temptable;
                  await bcp.WriteToServerAsync(rows);
               }
            }
         }
      }

      // 3.5 Copying data from SQL Server to SQL Azure in .NET 4.5
      //private static async Task AsyncSqlBulkCopySqlServerToSqlAzure() {
      //   using (SqlConnection srcConn = new SqlConnection(connectionString))
      //   using (SqlConnection destConn = new SqlConnection(azureConnectionString)) {
      //      await srcConn.OpenAsync();
      //      await destConn.OpenAsync();
      //      using (SqlCommand srcCmd = new SqlCommand(selectStatement, srcConn)) {
      //         using (SqlDataReader reader = await srcCmd.ExecuteReaderAsync()) {
      //            string temptable = "[#" + Guid.NewGuid().ToString("N") + "]";
      //            using (SqlCommand destCmd = new SqlCommand(string.Format(createDestTableStatement, temptable), destConn)) {
      //               await destCmd.ExecuteNonQueryAsync();
      //               using (SqlBulkCopy bcp = new SqlBulkCopy(destConn)) {
      //                  bcp.DestinationTableName = temptable;
      //                  await bcp.WriteToServerAsync(reader);
      //               }
      //            }
      //         }
      //      }
      //   }
      //}

      // 3.6 Cancelling an Asynchronous Operation to SQL Azure
      //private static async Task AsyncSqlBulkCopyCancel() {
      //   CancellationTokenSource cts = new CancellationTokenSource();
      //   using (SqlConnection srcConn = new SqlConnection(connectionString))
      //   using (SqlConnection destConn = new SqlConnection(azureConnectionString)) {
      //      await srcConn.OpenAsync(cts.Token);
      //      await destConn.OpenAsync(cts.Token);
      //      using (SqlCommand srcCmd = new SqlCommand(selectStatement, srcConn)) {
      //         using (SqlDataReader reader = await srcCmd.ExecuteReaderAsync(cts.Token)) {
      //            string temptable = "[#" + Guid.NewGuid().ToString("N") + "]";
      //            using (SqlCommand destCmd = new SqlCommand(string.Format(createDestTableStatement, temptable), destConn)) {
      //               await destCmd.ExecuteNonQueryAsync(cts.Token);
      //               using (SqlBulkCopy bcp = new SqlBulkCopy(destConn)) {
      //                  bcp.DestinationTableName = temptable;
      //                  await bcp.WriteToServerAsync(reader, cts.Token);
      //                  //Cancel Async SqlBulCopy Operation after 200 ms
      //                  cts.CancelAfter(200);
      //               }
      //            }
      //         }
      //      }
      //   }
      //}

      // 3.7 Using Async.Net and MARS
      private static async Task AsyncSqlBulkCopyMARS() {
         using (SqlConnection marsConn = new SqlConnection(marsConnectionString)) {
            await marsConn.OpenAsync();

            SqlCommand titlesCmd = new SqlCommand("SELECT * FROM [pubs].[dbo].[titles]", marsConn);
            SqlCommand authorsCmd = new SqlCommand("SELECT * FROM [pubs].[dbo].[authors]", marsConn);
            //With MARS we can have multiple active results sets on the same connection
            using (SqlDataReader titlesReader = await titlesCmd.ExecuteReaderAsync())
            using (SqlDataReader authorsReader = await authorsCmd.ExecuteReaderAsync()) {
               await authorsReader.ReadAsync();

               string temptable = "[#" + Guid.NewGuid().ToString("N") + "]";
               using (SqlConnection destConn = new SqlConnection(connectionString)) {
                  await destConn.OpenAsync();
                  using (SqlCommand destCmd = new SqlCommand(string.Format(createDestTableStatement, temptable), destConn)) {
                     await destCmd.ExecuteNonQueryAsync();
                     using (SqlBulkCopy bcp = new SqlBulkCopy(destConn)) {
                        bcp.DestinationTableName = temptable;
                        await bcp.WriteToServerAsync(titlesReader);
                     }
                  }
               }
            }
         }
      }
   }
}

Usar varios comandos de forma asincrónica con MARSAsynchronously Using Multiple Commands with MARS

En el ejemplo se abre una única conexión a la base de datos AdventureWorks .The example opens a single connection to the AdventureWorks database. Al utilizar un objeto SqlCommand, se crea un objeto SqlDataReader.Using a SqlCommand object, a SqlDataReader is created. A medida que se utiliza el lector, se abre un segundo SqlDataReader, que utiliza datos del primer SqlDataReader como entrada a la cláusula WHERE del segundo lector.As the reader is used, a second SqlDataReader is opened, using data from the first SqlDataReader as input to the WHERE clause for the second reader.

Nota

En el ejemplo siguiente se usa la base de datos de ejemplo AdventureWorks que se incluye con SQL Server.The following example uses the sample AdventureWorks database included with SQL Server. La cadena de conexión proporcionada en el código de ejemplo asume que la base de datos está instalada y disponible en el equipo local.The connection string provided in the sample code assumes that the database is installed and available on the local computer. Modifique la cadena de conexión según sea necesario para su entorno.Modify the connection string as necessary for your environment.

using System;
using System.Data;
using System.Data.SqlClient;
using System.Threading.Tasks;

class Class1 {
   static void Main() {
      Task task = MultipleCommands();
      task.Wait();
   }

   static async Task MultipleCommands() {
      // By default, MARS is disabled when connecting to a MARS-enabled.
      // It must be enabled in the connection string.
      string connectionString = GetConnectionString();

      int vendorID;
      SqlDataReader productReader = null;
      string vendorSQL =
        "SELECT VendorId, Name FROM Purchasing.Vendor";
      string productSQL =
        "SELECT Production.Product.Name FROM Production.Product " +
        "INNER JOIN Purchasing.ProductVendor " +
        "ON Production.Product.ProductID = " +
        "Purchasing.ProductVendor.ProductID " +
        "WHERE Purchasing.ProductVendor.VendorID = @VendorId";

      using (SqlConnection awConnection =
        new SqlConnection(connectionString)) {
         SqlCommand vendorCmd = new SqlCommand(vendorSQL, awConnection);
         SqlCommand productCmd =
           new SqlCommand(productSQL, awConnection);

         productCmd.Parameters.Add("@VendorId", SqlDbType.Int);

         await awConnection.OpenAsync();
         using (SqlDataReader vendorReader = await vendorCmd.ExecuteReaderAsync()) {
            while (await vendorReader.ReadAsync()) {
               Console.WriteLine(vendorReader["Name"]);

               vendorID = (int)vendorReader["VendorId"];

               productCmd.Parameters["@VendorId"].Value = vendorID;
               // The following line of code requires a MARS-enabled connection.
               productReader = await productCmd.ExecuteReaderAsync();
               using (productReader) {
                  while (await productReader.ReadAsync()) {
                     Console.WriteLine("  " +
                       productReader["Name"].ToString());
                  }
               }
            }
         }
      }
   }

   private static string GetConnectionString() {
      // To avoid storing the connection string in your code, you can retrieve it from a configuration file.
      return "Data Source=(local);Integrated Security=SSPI;Initial Catalog=AdventureWorks;MultipleActiveResultSets=True";
   }
}

Leer y actualizar datos de forma asincrónica con MARSAsynchronously Reading and Updating Data with MARS

MARS permite que se utilice una conexión para las operaciones de lectura y de lenguaje de manipulación de datos (DML) con más de una operación pendiente.MARS allows a connection to be used for both read operations and data manipulation language (DML) operations with more than one pending operation. Esta característica elimina la necesidad de que las aplicaciones solucionen los errores de falta de disponibilidad de las conexiones.This feature eliminates the need for an application to deal with connection-busy errors. Además, MARS puede reemplazar al uso de cursores en el servidor, que generalmente consume más recursos.In addition, MARS can replace the user of server-side cursors, which generally consume more resources. Por último, dado que varias operaciones pueden funcionar en una sola conexión, pueden compartir el mismo contexto de transacción, lo que elimina la necesidad de usar los procedimientos almacenados del sistema sp_getbindtoken y sp_bindsession .Finally, because multiple operations can operate on a single connection, they can share the same transaction context, eliminating the need to use sp_getbindtoken and sp_bindsession system stored procedures.

La siguiente aplicación de consola demuestra cómo utilizar dos objetos SqlDataReader con tres objetos SqlCommand y un solo objeto SqlConnection teniendo MARS habilitado.The following Console application demonstrates how to use two SqlDataReader objects with three SqlCommand objects and a single SqlConnection object with MARS enabled. El primer objeto de comando recupera una lista de proveedores cuya clasificación crediticia es 5.The first command object retrieves a list of vendors whose credit rating is 5. El segundo objeto de comando utiliza el id. de proveedor proporcionado a partir de un SqlDataReader para cargar el segundo SqlDataReader con todos los productos de ese proveedor en particular.The second command object uses the vendor ID provided from a SqlDataReader to load the second SqlDataReader with all of the products for the particular vendor. El segundo SqlDataReader visita cada registro de producto.Each product record is visited by the second SqlDataReader. Se realiza un cálculo para determinar cuál debe ser el nuevo OnOrderQty .A calculation is performed to determine what the new OnOrderQty should be. El tercer objeto de comando se utiliza para actualizar la tabla ProductVendor con el nuevo valor.The third command object is then used to update the ProductVendor table with the new value. Todo este proceso tiene lugar en una única transacción, que al final se revierte.This entire process takes place within a single transaction, which is rolled back at the end.

Nota

En el ejemplo siguiente se usa la base de datos de ejemplo AdventureWorks que se incluye con SQL Server.The following example uses the sample AdventureWorks database included with SQL Server. La cadena de conexión proporcionada en el código de ejemplo asume que la base de datos está instalada y disponible en el equipo local.The connection string provided in the sample code assumes that the database is installed and available on the local computer. Modifique la cadena de conexión según sea necesario para su entorno.Modify the connection string as necessary for your environment.

using System;
using System.Collections.Generic;
using System.Text;
using System.Data;
using System.Data.SqlClient;
using System.Threading.Tasks;

class Program {
   static void Main() {
      Task task = ReadingAndUpdatingData();
      task.Wait();
   }

   static async Task ReadingAndUpdatingData() {
      // By default, MARS is disabled when connecting to a MARS-enabled host.
      // It must be enabled in the connection string.
      string connectionString = GetConnectionString();

      SqlTransaction updateTx = null;
      SqlCommand vendorCmd = null;
      SqlCommand prodVendCmd = null;
      SqlCommand updateCmd = null;

      SqlDataReader prodVendReader = null;

      int vendorID = 0;
      int productID = 0;
      int minOrderQty = 0;
      int maxOrderQty = 0;
      int onOrderQty = 0;
      int recordsUpdated = 0;
      int totalRecordsUpdated = 0;

      string vendorSQL =
          "SELECT VendorID, Name FROM Purchasing.Vendor " +
          "WHERE CreditRating = 5";
      string prodVendSQL =
          "SELECT ProductID, MaxOrderQty, MinOrderQty, OnOrderQty " +
          "FROM Purchasing.ProductVendor " +
          "WHERE VendorID = @VendorID";
      string updateSQL =
          "UPDATE Purchasing.ProductVendor " +
          "SET OnOrderQty = @OrderQty " +
          "WHERE ProductID = @ProductID AND VendorID = @VendorID";

      using (SqlConnection awConnection =
        new SqlConnection(connectionString)) {
         await awConnection.OpenAsync();
         updateTx = await Task.Run(() => awConnection.BeginTransaction());

         vendorCmd = new SqlCommand(vendorSQL, awConnection);
         vendorCmd.Transaction = updateTx;

         prodVendCmd = new SqlCommand(prodVendSQL, awConnection);
         prodVendCmd.Transaction = updateTx;
         prodVendCmd.Parameters.Add("@VendorId", SqlDbType.Int);

         updateCmd = new SqlCommand(updateSQL, awConnection);
         updateCmd.Transaction = updateTx;
         updateCmd.Parameters.Add("@OrderQty", SqlDbType.Int);
         updateCmd.Parameters.Add("@ProductID", SqlDbType.Int);
         updateCmd.Parameters.Add("@VendorID", SqlDbType.Int);

         using (SqlDataReader vendorReader = await vendorCmd.ExecuteReaderAsync()) {
            while (await vendorReader.ReadAsync()) {
               Console.WriteLine(vendorReader["Name"]);

               vendorID = (int)vendorReader["VendorID"];
               prodVendCmd.Parameters["@VendorID"].Value = vendorID;
               prodVendReader = await prodVendCmd.ExecuteReaderAsync();

               using (prodVendReader) {
                  while (await prodVendReader.ReadAsync()) {
                     productID = (int)prodVendReader["ProductID"];

                     if (prodVendReader["OnOrderQty"] == DBNull.Value) {
                        minOrderQty = (int)prodVendReader["MinOrderQty"];
                        onOrderQty = minOrderQty;
                     }
                     else {
                        maxOrderQty = (int)prodVendReader["MaxOrderQty"];
                        onOrderQty = (int)(maxOrderQty / 2);
                     }

                     updateCmd.Parameters["@OrderQty"].Value = onOrderQty;
                     updateCmd.Parameters["@ProductID"].Value = productID;
                     updateCmd.Parameters["@VendorID"].Value = vendorID;

                     recordsUpdated = await updateCmd.ExecuteNonQueryAsync();
                     totalRecordsUpdated += recordsUpdated;
                  }
               }
            }
         }
         Console.WriteLine("Total Records Updated: ", totalRecordsUpdated.ToString());
         await Task.Run(() => updateTx.Rollback());
         Console.WriteLine("Transaction Rolled Back");
      }
   }

   private static string GetConnectionString() {
      // To avoid storing the connection string in your code, you can retrieve it from a configuration file.
      return "Data Source=(local);Integrated Security=SSPI;Initial Catalog=AdventureWorks;MultipleActiveResultSets=True";
   }
}

Vea tambiénSee also