Stack<T>.Pop Metode
Definisi
Penting
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Menghapus dan mengembalikan objek di bagian Stack<T>atas .
public:
T Pop();
public T Pop ();
member this.Pop : unit -> 'T
Public Function Pop () As T
Mengembalikan
Objek dihapus dari bagian Stack<T>atas .
Pengecualian
Kosong Stack<T> .
Contoh
Contoh kode berikut menunjukkan beberapa metode Stack<T> kelas generik, termasuk Pop metode .
Contoh kode membuat tumpukan string dengan kapasitas default dan menggunakan Push metode untuk mendorong lima string ke tumpukan. Elemen tumpukan dijumlahkan, yang tidak mengubah status tumpukan. Metode Pop ini digunakan untuk memunculkan string pertama dari tumpukan. Metode Peek ini digunakan untuk melihat item berikutnya pada tumpukan, dan kemudian Pop metode digunakan untuk memunculkannya.
Metode ToArray ini digunakan untuk membuat array dan menyalin elemen tumpukan ke dalamnya, kemudian array diteruskan ke Stack<T> konstruktor yang mengambil IEnumerable<T>, membuat salinan tumpukan dengan urutan elemen dibalik. Elemen salinan ditampilkan.
Array dua kali ukuran tumpukan dibuat, dan CopyTo metode digunakan untuk menyalin elemen array yang dimulai di tengah array. Stack<T> Konstruktor digunakan lagi untuk membuat salinan tumpukan dengan urutan elemen terbalik; dengan demikian, tiga elemen null berada di akhir.
Metode Contains ini digunakan untuk menunjukkan bahwa string "empat" berada di salinan pertama tumpukan, setelah itu Clear metode menghapus salinan dan Count properti menunjukkan bahwa tumpukan kosong.
using System;
using System.Collections.Generic;
class Example
{
public static void Main()
{
Stack<string> numbers = new Stack<string>();
numbers.Push("one");
numbers.Push("two");
numbers.Push("three");
numbers.Push("four");
numbers.Push("five");
// A stack can be enumerated without disturbing its contents.
foreach( string number in numbers )
{
Console.WriteLine(number);
}
Console.WriteLine("\nPopping '{0}'", numbers.Pop());
Console.WriteLine("Peek at next item to destack: {0}",
numbers.Peek());
Console.WriteLine("Popping '{0}'", numbers.Pop());
// Create a copy of the stack, using the ToArray method and the
// constructor that accepts an IEnumerable<T>.
Stack<string> stack2 = new Stack<string>(numbers.ToArray());
Console.WriteLine("\nContents of the first copy:");
foreach( string number in stack2 )
{
Console.WriteLine(number);
}
// Create an array twice the size of the stack and copy the
// elements of the stack, starting at the middle of the
// array.
string[] array2 = new string[numbers.Count * 2];
numbers.CopyTo(array2, numbers.Count);
// Create a second stack, using the constructor that accepts an
// IEnumerable(Of T).
Stack<string> stack3 = new Stack<string>(array2);
Console.WriteLine("\nContents of the second copy, with duplicates and nulls:");
foreach( string number in stack3 )
{
Console.WriteLine(number);
}
Console.WriteLine("\nstack2.Contains(\"four\") = {0}",
stack2.Contains("four"));
Console.WriteLine("\nstack2.Clear()");
stack2.Clear();
Console.WriteLine("\nstack2.Count = {0}", stack2.Count);
}
}
/* This code example produces the following output:
five
four
three
two
one
Popping 'five'
Peek at next item to destack: four
Popping 'four'
Contents of the first copy:
one
two
three
Contents of the second copy, with duplicates and nulls:
one
two
three
stack2.Contains("four") = False
stack2.Clear()
stack2.Count = 0
*/
open System
open System.Collections.Generic
let numbers = Stack()
numbers.Push "one"
numbers.Push "two"
numbers.Push "three"
numbers.Push "four"
numbers.Push "five"
// A stack can be enumerated without disturbing its contents.
for number in numbers do
printfn $"{number}"
printfn $"\nPopping '{numbers.Pop()}'"
printfn $"Peek at next item to destack: {numbers.Peek()}"
numbers.Peek() |> ignore
printfn $"Popping '{numbers.Pop()}'"
// Create a copy of the stack, using the ToArray method and the
// constructor that accepts an IEnumerable<T>.
let stack2 = numbers.ToArray() |> Stack
printfn "\nContents of the first copy:"
for number in stack2 do
printfn $"{number}"
// Create an array twice the size of the stack and copy the
// elements of the stack, starting at the middle of the
// array.
let array2 = numbers.Count * 2 |> Array.zeroCreate
numbers.CopyTo(array2, numbers.Count)
// Create a second stack, using the constructor that accepts an
// IEnumerable(Of T).
let stack3 = Stack array2
printfn "\nContents of the second copy, with duplicates and nulls:"
for number in stack3 do
printfn $"{number}"
printfn
$"""
stack2.Contains "four" = {stack2.Contains "four"}"""
printfn "\nstack2.Clear()"
stack2.Clear()
printfn $"\nstack2.Count = {stack2.Count}"
// This code example produces the following output:
// five
// four
// three
// two
// one
//
// Popping 'five'
// Peek at next item to destack: four
// Popping 'four'
//
// Contents of the first copy:
// one
// two
// three
//
// Contents of the second copy, with duplicates and nulls:
// one
// two
// three
//
// stack2.Contains("four") = False
//
// stack2.Clear()
//
// stack2.Count = 0
Imports System.Collections.Generic
Module Example
Sub Main
Dim numbers As New Stack(Of String)
numbers.Push("one")
numbers.Push("two")
numbers.Push("three")
numbers.Push("four")
numbers.Push("five")
' A stack can be enumerated without disturbing its contents.
For Each number As String In numbers
Console.WriteLine(number)
Next
Console.WriteLine(vbLf & "Popping '{0}'", numbers.Pop())
Console.WriteLine("Peek at next item to pop: {0}", _
numbers.Peek())
Console.WriteLine("Popping '{0}'", numbers.Pop())
' Create another stack, using the ToArray method and the
' constructor that accepts an IEnumerable(Of T). Note that
' the order of items on the new stack is reversed.
Dim stack2 As New Stack(Of String)(numbers.ToArray())
Console.WriteLine(vbLf & "Contents of the first copy:")
For Each number As String In stack2
Console.WriteLine(number)
Next
' Create an array twice the size of the stack, compensating
' for the fact that Visual Basic allocates an extra array
' element. Copy the elements of the stack, starting at the
' middle of the array.
Dim array2((numbers.Count * 2) - 1) As String
numbers.CopyTo(array2, numbers.Count)
' Create a second stack, using the constructor that accepts an
' IEnumerable(Of T). The elements are reversed, with the null
' elements appearing at the end of the stack when enumerated.
Dim stack3 As New Stack(Of String)(array2)
Console.WriteLine(vbLf & _
"Contents of the second copy, with duplicates and nulls:")
For Each number As String In stack3
Console.WriteLine(number)
Next
Console.WriteLine(vbLf & "stack2.Contains(""four"") = {0}", _
stack2.Contains("four"))
Console.WriteLine(vbLf & "stack2.Clear()")
stack2.Clear()
Console.WriteLine(vbLf & "stack2.Count = {0}", _
stack2.Count)
End Sub
End Module
' This code example produces the following output:
'
'five
'four
'three
'two
'one
'
'Popping 'five'
'Peek at next item to pop: four
'Popping 'four'
'
'Contents of the first copy:
'one
'two
'three
'
'Contents of the second copy, with duplicates and nulls:
'one
'two
'three
'
'
'
'
'stack2.Contains("four") = False
'
'stack2.Clear()
'
'stack2.Count = 0
Keterangan
Metode ini mirip Peek dengan metode , tetapi Peek tidak memodifikasi Stack<T>.
Jika jenis T
adalah jenis referensi, null
dapat didorong ke Stack<T> sebagai tempat penampung, jika diperlukan.
Stack<T> diimplementasikan sebagai array. Metode ini adalah operasi O(1).