Stopwatch クラス

定義

経過時間を正確に計測するために使用できる一連のメソッドとプロパティを提供します。Provides a set of methods and properties that you can use to accurately measure elapsed time.

public ref class Stopwatch
public class Stopwatch
type Stopwatch = class
Public Class Stopwatch
継承
Stopwatch

次の例は、 Stopwatchクラスを使用して、アプリケーションの実行時間を決定する方法を示しています。The following example demonstrates how to use the Stopwatch class to determine the execution time for an application.

using System;
using System.Diagnostics;
using System.Threading;
class Program
{
    static void Main(string[] args)
    {
        Stopwatch stopWatch = new Stopwatch();
        stopWatch.Start();
        Thread.Sleep(10000);
        stopWatch.Stop();
        // Get the elapsed time as a TimeSpan value.
        TimeSpan ts = stopWatch.Elapsed;

        // Format and display the TimeSpan value.
        string elapsedTime = String.Format("{0:00}:{1:00}:{2:00}.{3:00}",
            ts.Hours, ts.Minutes, ts.Seconds,
            ts.Milliseconds / 10);
        Console.WriteLine("RunTime " + elapsedTime);
    }
}
Imports System.Diagnostics
Imports System.Threading


Class Program

    Shared Sub Main(ByVal args() As String)
        Dim stopWatch As New Stopwatch()
        stopWatch.Start()
        Thread.Sleep(10000)
        stopWatch.Stop()
        ' Get the elapsed time as a TimeSpan value.
        Dim ts As TimeSpan = stopWatch.Elapsed

        ' Format and display the TimeSpan value.
        Dim elapsedTime As String = String.Format("{0:00}:{1:00}:{2:00}.{3:00}", ts.Hours, ts.Minutes, ts.Seconds, ts.Milliseconds / 10)
        Console.WriteLine( "RunTime " + elapsedTime)

    End Sub
End Class

Stopwatchクラスを使用してパフォーマンスデータを計算する例を次に示します。The following example demonstrates the use of the Stopwatch class to calculate performance data.

#using <System.dll>

using namespace System;
using namespace System::Diagnostics;

void DisplayTimerProperties()
{
   // Display the timer frequency and resolution.
   if ( Stopwatch::IsHighResolution )
   {
      Console::WriteLine( "Operations timed using the system's high-resolution performance counter." );
   }
   else
   {
      Console::WriteLine( "Operations timed using the DateTime class." );
   }

   Int64 frequency = Stopwatch::Frequency;
   Console::WriteLine( "  Timer frequency in ticks per second = {0}", frequency );
   Int64 nanosecPerTick = (1000L * 1000L * 1000L) / frequency;
   Console::WriteLine( "  Timer is accurate within {0} nanoseconds", nanosecPerTick );
}

void TimeOperations()
{
   Int64 nanosecPerTick = (1000L * 1000L * 1000L) / Stopwatch::Frequency;
   const long numIterations = 10000;
   
   // Define the operation title names.
   array<String^>^operationNames = {"Operation: Int32.Parse(\"0\")","Operation: Int32.TryParse(\"0\")","Operation: Int32.Parse(\"a\")","Operation: Int32.TryParse(\"a\")"};
   
   // Time four different implementations for parsing 
   // an integer from a string. 
   for ( int operation = 0; operation <= 3; operation++ )
   {
      // Define variables for operation statistics.
      Int64 numTicks = 0;
      Int64 numRollovers = 0;
      Int64 maxTicks = 0;
      Int64 minTicks = Int64::MaxValue;
      int indexFastest = -1;
      int indexSlowest = -1;
      Int64 milliSec = 0;
      Stopwatch ^ time10kOperations = Stopwatch::StartNew();
      
      // Run the current operation 10001 times.
      // The first execution time will be tossed
      // out, since it can skew the average time.
      for ( int i = 0; i <= numIterations; i++ )
      {
         Int64 ticksThisTime = 0;
         int inputNum;
         Stopwatch ^ timePerParse;
         switch ( operation )
         {
            case 0:
               
               // Parse a valid integer using
               // a try-catch statement.
               // Start a new stopwatch timer.
               timePerParse = Stopwatch::StartNew();
               try
               {
                  inputNum = Int32::Parse( "0" );
               }
               catch ( FormatException^ ) 
               {
                  inputNum = 0;
               }

               // Stop the timer, and save the
               // elapsed ticks for the operation.
               timePerParse->Stop();
               ticksThisTime = timePerParse->ElapsedTicks;
               break;

            case 1:
               
               // Parse a valid integer using
               // the TryParse statement.
               // Start a new stopwatch timer.
               timePerParse = Stopwatch::StartNew();
               if (  !Int32::TryParse( "0", inputNum ) )
               {
                  inputNum = 0;
               }
               
               // Stop the timer, and save the
               // elapsed ticks for the operation.
               timePerParse->Stop();
               ticksThisTime = timePerParse->ElapsedTicks;
               break;

            case 2:
               
               // Parse an invalid value using
               // a try-catch statement.
               // Start a new stopwatch timer.
               timePerParse = Stopwatch::StartNew();
               try
               {
                  inputNum = Int32::Parse( "a" );
               }
               catch ( FormatException^ ) 
               {
                  inputNum = 0;
               }

               // Stop the timer, and save the
               // elapsed ticks for the operation.
               timePerParse->Stop();
               ticksThisTime = timePerParse->ElapsedTicks;
               break;

            case 3:
               
               // Parse an invalid value using
               // the TryParse statement.
               // Start a new stopwatch timer.
               timePerParse = Stopwatch::StartNew();
               if (  !Int32::TryParse( "a", inputNum ) )
               {
                  inputNum = 0;
               }
               
               // Stop the timer, and save the
               // elapsed ticks for the operation.
               timePerParse->Stop();
               ticksThisTime = timePerParse->ElapsedTicks;
               break;

            default:
               break;
         }

         // Skip over the time for the first operation,
         // just in case it caused a one-time
         // performance hit.
         if ( i == 0 )
         {
            time10kOperations->Reset();
            time10kOperations->Start();
         }
         else
         {
            // Update operation statistics
            // for iterations 1-10001.
            if ( maxTicks < ticksThisTime )
            {
               indexSlowest = i;
               maxTicks = ticksThisTime;
            }
            if ( minTicks > ticksThisTime )
            {
               indexFastest = i;
               minTicks = ticksThisTime;
            }
            numTicks += ticksThisTime;
            if ( numTicks < ticksThisTime )
            {
               // Keep track of rollovers.
               numRollovers++;
            }
         }
      }
      
      // Display the statistics for 10000 iterations.
      time10kOperations->Stop();
      milliSec = time10kOperations->ElapsedMilliseconds;
      Console::WriteLine();
      Console::WriteLine( "{0} Summary:", operationNames[ operation ] );
      Console::WriteLine( "  Slowest time:  #{0}/{1} = {2} ticks", indexSlowest, numIterations, maxTicks );
      Console::WriteLine( "  Fastest time:  #{0}/{1} = {2} ticks", indexFastest, numIterations, minTicks );
      Console::WriteLine( "  Average time:  {0} ticks = {1} nanoseconds", numTicks / numIterations, (numTicks * nanosecPerTick) / numIterations );
      Console::WriteLine( "  Total time looping through {0} operations: {1} milliseconds", numIterations, milliSec );

   }
}

int main()
{
   DisplayTimerProperties();
   Console::WriteLine();
   Console::WriteLine( "Press the Enter key to begin:" );
   Console::ReadLine();
   Console::WriteLine();
   TimeOperations();
}
using System;
using System.Diagnostics;

namespace StopWatchSample
{
    class OperationsTimer
    {
        public static void Main()
        {
            DisplayTimerProperties();

            Console.WriteLine();
            Console.WriteLine("Press the Enter key to begin:");
            Console.ReadLine();
            Console.WriteLine();

            TimeOperations();
        }

        public static void DisplayTimerProperties()
        {
            // Display the timer frequency and resolution.
            if (Stopwatch.IsHighResolution)
            {
                Console.WriteLine("Operations timed using the system's high-resolution performance counter.");
            }
            else 
            {
                Console.WriteLine("Operations timed using the DateTime class.");
            }

            long frequency = Stopwatch.Frequency;
            Console.WriteLine("  Timer frequency in ticks per second = {0}",
                frequency);
            long nanosecPerTick = (1000L*1000L*1000L) / frequency;
            Console.WriteLine("  Timer is accurate within {0} nanoseconds", 
                nanosecPerTick);
        }
        
        private static void TimeOperations()
        {
            long nanosecPerTick = (1000L*1000L*1000L) / Stopwatch.Frequency;
            const long numIterations = 10000;

            // Define the operation title names.
            String [] operationNames = {"Operation: Int32.Parse(\"0\")",
                                           "Operation: Int32.TryParse(\"0\")",
                                           "Operation: Int32.Parse(\"a\")",
                                           "Operation: Int32.TryParse(\"a\")"};
         

            // Time four different implementations for parsing 
            // an integer from a string. 

            for (int operation = 0; operation <= 3; operation++)
            {
                // Define variables for operation statistics.
                long numTicks = 0;
                long numRollovers = 0;
                long maxTicks = 0;
                long minTicks = Int64.MaxValue;
                int indexFastest = -1;
                int indexSlowest = -1;
                long milliSec = 0;

                Stopwatch time10kOperations = Stopwatch.StartNew();

                // Run the current operation 10001 times.
                // The first execution time will be tossed
                // out, since it can skew the average time.

                for (int i=0; i<=numIterations; i++) 
                {
                    long ticksThisTime = 0;
                    int inputNum;
                    Stopwatch timePerParse;

                    switch (operation)
                    {
                        case 0:
                            // Parse a valid integer using
                            // a try-catch statement.

                            // Start a new stopwatch timer.
                            timePerParse = Stopwatch.StartNew();

                            try 
                            {
                                inputNum = Int32.Parse("0");
                            }
                            catch (FormatException)
                            {
                                inputNum = 0;
                            }

                            // Stop the timer, and save the
                            // elapsed ticks for the operation.

                            timePerParse.Stop();
                            ticksThisTime = timePerParse.ElapsedTicks;
                            break;
                        case 1:
                            // Parse a valid integer using
                            // the TryParse statement.

                            // Start a new stopwatch timer.
                            timePerParse = Stopwatch.StartNew();

                            if (!Int32.TryParse("0", out inputNum))
                            { 
                                inputNum = 0;
                            }

                            // Stop the timer, and save the
                            // elapsed ticks for the operation.
                            timePerParse.Stop();
                            ticksThisTime = timePerParse.ElapsedTicks;
                            break;
                        case 2:
                            // Parse an invalid value using
                            // a try-catch statement.

                            // Start a new stopwatch timer.
                            timePerParse = Stopwatch.StartNew();

                            try 
                            {
                                inputNum = Int32.Parse("a");
                            }
                            catch (FormatException)
                            {
                                inputNum = 0;
                            }

                            // Stop the timer, and save the
                            // elapsed ticks for the operation.
                            timePerParse.Stop();
                            ticksThisTime = timePerParse.ElapsedTicks;
                            break;
                        case 3:
                            // Parse an invalid value using
                            // the TryParse statement.

                            // Start a new stopwatch timer.
                            timePerParse = Stopwatch.StartNew();

                            if (!Int32.TryParse("a", out inputNum))
                            { 
                                inputNum = 0;
                            }

                            // Stop the timer, and save the
                            // elapsed ticks for the operation.
                            timePerParse.Stop();
                            ticksThisTime = timePerParse.ElapsedTicks;
                            break;

                        default:
                            break;
                    }

                    // Skip over the time for the first operation,
                    // just in case it caused a one-time
                    // performance hit.
                    if (i == 0)
                    {
                        time10kOperations.Reset();
                        time10kOperations.Start();
                    }
                    else 
                    {

                        // Update operation statistics
                        // for iterations 1-10001.
                        if (maxTicks < ticksThisTime)
                        {
                            indexSlowest = i;
                            maxTicks = ticksThisTime;
                        }
                        if (minTicks > ticksThisTime)
                        {
                            indexFastest = i;
                            minTicks = ticksThisTime;
                        }
                        numTicks += ticksThisTime;
                        if (numTicks < ticksThisTime)
                        {
                            // Keep track of rollovers.
                            numRollovers ++;
                        }
                    }
                }  
                
                // Display the statistics for 10000 iterations.

                time10kOperations.Stop();
                milliSec = time10kOperations.ElapsedMilliseconds;

                Console.WriteLine();
                Console.WriteLine("{0} Summary:", operationNames[operation]);
                Console.WriteLine("  Slowest time:  #{0}/{1} = {2} ticks",
                    indexSlowest, numIterations, maxTicks);
                Console.WriteLine("  Fastest time:  #{0}/{1} = {2} ticks",
                    indexFastest, numIterations, minTicks);
                Console.WriteLine("  Average time:  {0} ticks = {1} nanoseconds", 
                    numTicks / numIterations, 
                    (numTicks * nanosecPerTick) / numIterations );
                Console.WriteLine("  Total time looping through {0} operations: {1} milliseconds", 
                    numIterations, milliSec);
            }
        }
     }
}
 
Imports System.Diagnostics

Class OperationsTimer
   
   Public Shared Sub Main()
      DisplayTimerProperties()
      
      Console.WriteLine()
      Console.WriteLine("Press the Enter key to begin:")
      Console.ReadLine()
      Console.WriteLine()
      
      TimeOperations()
   End Sub
   
   
   Public Shared Sub DisplayTimerProperties()

      ' Display the timer frequency and resolution.
      If Stopwatch.IsHighResolution Then
         Console.WriteLine("Operations timed using the system's high-resolution performance counter.")
      Else
         Console.WriteLine("Operations timed using the DateTime class.")
      End If
      
      Dim frequency As Long = Stopwatch.Frequency
      Console.WriteLine("  Timer frequency in ticks per second = {0}", frequency)
      Dim nanosecPerTick As Long = 1000000000 / frequency
      Console.WriteLine("  Timer is accurate within {0} nanoseconds", nanosecPerTick)

   End Sub
   
   Private Shared Sub TimeOperations()

      Dim nanosecPerTick As Long = 1000000000 / Stopwatch.Frequency
      Const numIterations As Long = 10000
      
      ' Define the operation title names.
      Dim operationNames As String() =  _
        {"Operation: Int32.Parse(""0"")", _
         "Operation: Int32.TryParse(""0"")", _
         "Operation: Int32.Parse(""a"")", _
         "Operation: Int32.TryParse(""a"")"}
      
      ' Time four different implementations for parsing 
      ' an integer from a string. 

      Dim operation As Integer
      For operation = 0 To 3
         ' Define variables for operation statistics.
         Dim numTicks As Long = 0
         Dim numRollovers As Long = 0
         Dim maxTicks As Long = 0
         Dim minTicks As Long = Int64.MaxValue
         Dim indexFastest As Integer = - 1
         Dim indexSlowest As Integer = - 1
         Dim milliSec As Long = 0
         
         Dim time10kOperations As Stopwatch = Stopwatch.StartNew()
         
         ' Run the current operation 10001 times.
         ' The first execution time will be tossed
         ' out, since it can skew the average time.
         Dim i As Integer
         For i = 0 To numIterations
            Dim ticksThisTime As Long = 0
            Dim inputNum As Integer
            Dim timePerParse As Stopwatch
            
            Select Case operation
               Case 0
                  ' Parse a valid integer using
                  ' a try-catch statement.
                  ' Start a new stopwatch timer.
                  timePerParse = Stopwatch.StartNew()
                  
                  Try
                     inputNum = Int32.Parse("0")
                  Catch e As FormatException
                     inputNum = 0
                  End Try
                  
                  ' Stop the timer, and save the
                  ' elapsed ticks for the operation.
                  timePerParse.Stop()
                  ticksThisTime = timePerParse.ElapsedTicks
               Case 1
                  ' Parse a valid integer using
                  ' the TryParse statement.
                  ' Start a new stopwatch timer.
                  timePerParse = Stopwatch.StartNew()
                  
                  If Not Int32.TryParse("0", inputNum) Then
                     inputNum = 0
                  End If
                  
                  ' Stop the timer, and save the
                  ' elapsed ticks for the operation.
                  timePerParse.Stop()
                  ticksThisTime = timePerParse.ElapsedTicks
               Case 2
                  ' Parse an invalid value using
                  ' a try-catch statement.
                  ' Start a new stopwatch timer.
                  timePerParse = Stopwatch.StartNew()
                  
                  Try
                     inputNum = Int32.Parse("a")
                  Catch e As FormatException
                     inputNum = 0
                  End Try
                  
                  ' Stop the timer, and save the
                  ' elapsed ticks for the operation.
                  timePerParse.Stop()
                  ticksThisTime = timePerParse.ElapsedTicks
               Case 3
                  ' Parse an invalid value using
                  ' the TryParse statement.
                  ' Start a new stopwatch timer.
                  timePerParse = Stopwatch.StartNew()
                  
                  If Not Int32.TryParse("a", inputNum) Then
                     inputNum = 0
                  End If
                  
                  ' Stop the timer, and save the
                  ' elapsed ticks for the operation.
                  timePerParse.Stop()
                  ticksThisTime = timePerParse.ElapsedTicks
               
               Case Else
            End Select
            
            ' Skip over the time for the first operation,
            ' just in case it caused a one-time
            ' performance hit.
            If i = 0 Then
               time10kOperations.Reset()
               time10kOperations.Start()
            Else
               
               ' Update operation statistics
               ' for iterations 1-10001.
               If maxTicks < ticksThisTime Then
                  indexSlowest = i
                  maxTicks = ticksThisTime
               End If
               If minTicks > ticksThisTime Then
                  indexFastest = i
                  minTicks = ticksThisTime
               End If
               numTicks += ticksThisTime
               If numTicks < ticksThisTime Then
                  ' Keep track of rollovers.
                  numRollovers += 1
               End If
            End If
         Next i
         
         ' Display the statistics for 10000 iterations.
         time10kOperations.Stop()
         milliSec = time10kOperations.ElapsedMilliseconds
         
         Console.WriteLine()
         Console.WriteLine("{0} Summary:", operationNames(operation))
         Console.WriteLine("  Slowest time:  #{0}/{1} = {2} ticks", _
            indexSlowest, numIterations, maxTicks)
         Console.WriteLine("  Fastest time:  #{0}/{1} = {2} ticks", _
            indexFastest, numIterations, minTicks)
         Console.WriteLine("  Average time:  {0} ticks = {1} nanoseconds", _
            numTicks / numIterations, numTicks * nanosecPerTick / numIterations)
         Console.WriteLine("  Total time looping through {0} operations: {1} milliseconds", _
            numIterations, milliSec)
      Next operation

   End Sub
End Class

注釈

インスタンスStopwatchは、1つの間隔の経過時間、または複数の間隔の経過時間の合計を測定できます。A Stopwatch instance can measure elapsed time for one interval, or the total of elapsed time across multiple intervals. 一般的Stopwatchなシナリオでは、 Startメソッドを呼び出した後、 Stopメソッドを呼び出した後、 Elapsedプロパティを使用して経過時間を確認します。In a typical Stopwatch scenario, you call the Start method, then eventually call the Stop method, and then you check elapsed time using the Elapsed property.

インスタンスが実行されているか、 IsRunning停止しています。をStopwatch使用して、の現在の状態を確認してください。 StopwatchA Stopwatch instance is either running or stopped; use IsRunning to determine the current state of a Stopwatch. 経過時間の計測Stop を開始するには、を使用します。経過時間の計測を停止するには、を使用します。StartUse Start to begin measuring elapsed time; use Stop to stop measuring elapsed time. プロパティElapsed ElapsedTicks、、またはを使用して、経過時間の値を照会します。 ElapsedMillisecondsQuery the elapsed time value through the properties Elapsed, ElapsedMilliseconds, or ElapsedTicks. インスタンスの実行中または停止中に、経過時間のプロパティに対してクエリを実行できます。You can query the elapsed time properties while the instance is running or stopped. が実行されている間はStopwatch 、経過時間のプロパティは着実に増加します。インスタンスが停止しても、常に変化します。The elapsed time properties steadily increase while the Stopwatch is running; they remain constant when the instance is stopped.

既定では、 Stopwatchインスタンスの経過時間の値は、測定されたすべての時間間隔の合計と等しくなります。By default, the elapsed time value of a Stopwatch instance equals the total of all measured time intervals. Startの各呼び出しは累積経過時間でカウントを開始しますStop 。の各呼び出しは、現在の間隔の測定値を終了し、累積経過時間の値をフリーズします。Each call to Start begins counting at the cumulative elapsed time; each call to Stop ends the current interval measurement and freezes the cumulative elapsed time value. メソッドを使用して、既存Stopwatchのインスタンスの累積経過時間をクリアします。 ResetUse the Reset method to clear the cumulative elapsed time in an existing Stopwatch instance.

Stopwatchになるタイマー機構のタイマー刻みをカウントすることで、経過時間を計測します。The Stopwatch measures elapsed time by counting timer ticks in the underlying timer mechanism. インストールされているハードウェアとオペレーティングシステムが高解像度のパフォーマンスカウンターをサポートStopwatchしている場合、クラスはそのカウンターを使用して経過時間を計測します。If the installed hardware and operating system support a high-resolution performance counter, then the Stopwatch class uses that counter to measure elapsed time. それ以外のStopwatch場合、クラスはシステムタイマーを使用して経過時間を計測します。Otherwise, the Stopwatch class uses the system timer to measure elapsed time. およびフィールドを使用して、 Stopwatchタイミングの実装の精度と解像度を決定します。 IsHighResolution FrequencyUse the Frequency and IsHighResolution fields to determine the precision and resolution of the Stopwatch timing implementation.

クラスStopwatchは、マネージコード内のタイミングに関連するパフォーマンスカウンターを操作するのに役立ちます。The Stopwatch class assists the manipulation of timing-related performance counters within managed code. 具体的にはFrequency 、フィールドGetTimestampとメソッドは、アンマネージ Windows api QueryPerformanceFrequencyおよびQueryPerformanceCounterの代わりに使用できます。Specifically, the Frequency field and GetTimestamp method can be used in place of the unmanaged Windows APIs QueryPerformanceFrequency and QueryPerformanceCounter.

注意

マルチプロセッサコンピューターでは、スレッドがどのプロセッサで実行されているかは関係ありません。On a multiprocessor computer, it does not matter which processor the thread runs on. ただし、BIOS またはハードウェアアブストラクションレイヤー (HAL) のバグにより、異なるプロセッサでさまざまなタイミングの結果を得ることができます。However, because of bugs in the BIOS or the Hardware Abstraction Layer (HAL), you can get different timing results on different processors. スレッドのプロセッサ関係を指定するには、 ProcessThread.ProcessorAffinityメソッドを使用します。To specify processor affinity for a thread, use the ProcessThread.ProcessorAffinity method.

コンストラクター

Stopwatch()

Stopwatch クラスの新しいインスタンスを初期化します。Initializes a new instance of the Stopwatch class.

フィールド

Frequency

1 秒あたりのタイマー刻みの数として、タイマーの頻度を取得します。Gets the frequency of the timer as the number of ticks per second. このフィールドは読み取り専用です。This field is read-only.

IsHighResolution

タイマーが高解像力のパフォーマンス カウンターに基づいているかどうかを示します。Indicates whether the timer is based on a high-resolution performance counter. このフィールドは読み取り専用です。This field is read-only.

プロパティ

Elapsed

現在のインスタンスで計測された経過時間の合計を取得します。Gets the total elapsed time measured by the current instance.

ElapsedMilliseconds

現在のインスタンスで計測された経過時間の合計を取得します (ミリ秒単位)。Gets the total elapsed time measured by the current instance, in milliseconds.

ElapsedTicks

現在のインスタンスで計測された経過時間の合計を取得します (タイマー刻み)。Gets the total elapsed time measured by the current instance, in timer ticks.

IsRunning

Stopwatch タイマーが実行中かどうかを示す値を取得します。Gets a value indicating whether the Stopwatch timer is running.

メソッド

Equals(Object)

指定されたオブジェクトが現在のオブジェクトと等しいかどうかを判定します。Determines whether the specified object is equal to the current object.

(継承元 Object)
GetHashCode()

既定のハッシュ関数として機能します。Serves as the default hash function.

(継承元 Object)
GetTimestamp()

タイマー機構の現在のタイマー刻み数を取得します。Gets the current number of ticks in the timer mechanism.

GetType()

現在のインスタンスの Type を取得します。Gets the Type of the current instance.

(継承元 Object)
MemberwiseClone()

現在の Object の簡易コピーを作成します。Creates a shallow copy of the current Object.

(継承元 Object)
Reset()

タイマー間隔の計測を停止して、経過時間をゼロにリセットします。Stops time interval measurement and resets the elapsed time to zero.

Restart()

時間間隔の計測を停止し、経過時間をゼロにリセットして、経過時間の計測を開始します。Stops time interval measurement, resets the elapsed time to zero, and starts measuring elapsed time.

Start()

間隔の経過時間の計測を開始または再開します。Starts, or resumes, measuring elapsed time for an interval.

StartNew()

新しい Stopwatch インスタンスを初期化して、経過時間のプロパティをゼロに設定し、経過時間の計測を開始します。Initializes a new Stopwatch instance, sets the elapsed time property to zero, and starts measuring elapsed time.

Stop()

間隔の経過時間の計測を停止します。Stops measuring elapsed time for an interval.

ToString()

現在のオブジェクトを表す string を返します。Returns a string that represents the current object.

(継承元 Object)

適用対象

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