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  • DotNet 源码学习——QUEUE

    1、Queue声明创建对象。(Queue为泛型对象。)

    public class Queue<T> :IEnumerable<T>,System.Collections.ICollection,IReadOnlyCollection<T>

     

    本质为Array对象存储数据。

     

    Queue<string> qy = new Queue<string>();
    private T[] _array
    public Queue()
    {
        _array = Array.Empty<T>();
    }
    Queue<int> qy1 = new Queue<int>(12);
    public Queue(int capacity)
    {
        if (capacity < 0)
            throw new ArgumentOutOfRangeException(nameof(capacity), capacity, SR.ArgumentOutOfRange_NeedNonNegNum);
        _array = new T[capacity];
    }
    Queue<int> qy2 = new Queue<int>(new List<int>());
    
    public Queue(IEnumerable<T> collection)
    {
        if (collection == null)
            throw new ArgumentNullException(nameof(collection));
    
        _array = EnumerableHelpers.ToArray(collection, out _size);
        if (_size != _array.Length) _tail = _size;
    }
    
    

     

    2、队列的空间是实际存储值的两倍,如果小于两倍则每次增场4的长度。

     

     

     

    1 if (_size == _array.Length)
    2 {
    3      int newcapacity = (int)((long)_array.Length * (long)GrowFactor / 100);
    4      if (newcapacity < _array.Length + MinimumGrow)
    5      {
    6          newcapacity = _array.Length + MinimumGrow;
    7      }
    8      SetCapacity(newcapacity);
    9 }

     

    3、Queue为先进先出。

     

    进队列在数组末尾赋值

     

            public void Enqueue(T item)
            {
                if (_size == _array.Length)
                {
                    int newcapacity = (int)((long)_array.Length * (long)GrowFactor / 100);
                    if (newcapacity < _array.Length + MinimumGrow)
                    {
                        newcapacity = _array.Length + MinimumGrow;
                    }
                    SetCapacity(newcapacity);
                }
    
                _array[_tail] = item;
                MoveNext(ref _tail);
                _size++;
                _version++;
            }

     

    出队列则从头部取值

     

     

            public T Dequeue()
            {
                int head = _head;
                T[] array = _array;
    
                if (_size == 0)
                {
                    ThrowForEmptyQueue();
                }
    
                T removed = array[head];
                if (RuntimeHelpers.IsReferenceOrContainsReferences<T>())
                {
                    array[head] = default!;
                }
                MoveNext(ref _head);
                _size--;
                _version++;
                return removed;
            }    

     

    4、TryDequeue  Dequeue()区别在于 TryDequeue 判断size为0时,返回false 并out 泛型的默认值

     

     

            public bool TryDequeue([MaybeNullWhen(false)] out T result)
            {
                int head = _head;
                T[] array = _array;
    
                if (_size == 0)
                {
                    result = default!;
                    return false;
                }
    
                result = array[head];
                if (RuntimeHelpers.IsReferenceOrContainsReferences<T>())
                {
                    array[head] = default!;
                }
                MoveNext(ref _head);
                _size--;
                _version++;
                return true;
            }    

     

    注:MaybeNullWhenAttribute(Boolean) 返回值条件。 如果方法返回此值,则关联的参数可能为 null

     

     

    5、Peek 仅仅时查看一下下一个要返回的值,不从数组移除

     

                if (_size == 0)
                {
                    result = default!;
                    return false;
                }
    
                result = _array[_head];
                return true;            

     

    随是拙见,但为原创,转载注明出处,敬谢

    Queue 常用的方法大约就这些。先写道这里,碎觉。

    以下为公众号,一起学起来~

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  • 原文地址:https://www.cnblogs.com/xtt321/p/12293473.html
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