406 lines
7.6 KiB
C
406 lines
7.6 KiB
C
/**
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* WinPR: Windows Portable Runtime
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* System.Collections.Queue
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*
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* Copyright 2012 Marc-Andre Moreau <marcandre.moreau@gmail.com>
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include <winpr/config.h>
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#include <winpr/crt.h>
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#include <winpr/assert.h>
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#include <winpr/collections.h>
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struct s_wQueue
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{
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size_t capacity;
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size_t growthFactor;
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BOOL synchronized;
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BYTE padding[4];
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size_t head;
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size_t tail;
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size_t size;
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uintptr_t* array;
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CRITICAL_SECTION lock;
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HANDLE event;
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wObject object;
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BOOL haveLock;
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BYTE padding2[4];
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};
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static inline void* uptr2void(uintptr_t ptr)
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{
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return (void*)ptr;
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}
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static inline uintptr_t void2uptr(const void* ptr)
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{
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return (uintptr_t)ptr;
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}
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/**
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* C equivalent of the C# Queue Class:
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* http://msdn.microsoft.com/en-us/library/system.collections.queue.aspx
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*/
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/**
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* Properties
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*/
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/**
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* Gets the number of elements contained in the Queue.
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*/
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size_t Queue_Count(wQueue* queue)
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{
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size_t ret = 0;
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Queue_Lock(queue);
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ret = queue->size;
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Queue_Unlock(queue);
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return ret;
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}
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size_t Queue_Capacity(wQueue* queue)
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{
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WINPR_ASSERT(queue);
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Queue_Lock(queue);
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const size_t ret = queue->capacity;
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Queue_Unlock(queue);
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return ret;
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}
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/**
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* Lock access to the ArrayList
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*/
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void Queue_Lock(wQueue* queue)
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{
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WINPR_ASSERT(queue);
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if (queue->synchronized)
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EnterCriticalSection(&queue->lock);
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}
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/**
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* Unlock access to the ArrayList
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*/
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void Queue_Unlock(wQueue* queue)
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{
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WINPR_ASSERT(queue);
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if (queue->synchronized)
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LeaveCriticalSection(&queue->lock);
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}
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/**
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* Gets an event which is set when the queue is non-empty
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*/
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HANDLE Queue_Event(wQueue* queue)
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{
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WINPR_ASSERT(queue);
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return queue->event;
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}
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wObject* Queue_Object(wQueue* queue)
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{
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WINPR_ASSERT(queue);
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return &queue->object;
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}
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/**
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* Methods
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*/
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/**
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* Removes all objects from the Queue.
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*/
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void Queue_Clear(wQueue* queue)
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{
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Queue_Lock(queue);
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for (size_t index = queue->head; index != queue->tail; index = (index + 1) % queue->capacity)
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{
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if (queue->object.fnObjectFree)
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{
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void* obj = uptr2void(queue->array[index]);
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queue->object.fnObjectFree(obj);
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}
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queue->array[index] = 0;
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}
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queue->size = 0;
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queue->head = queue->tail = 0;
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(void)ResetEvent(queue->event);
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Queue_Unlock(queue);
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}
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/**
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* Determines whether an element is in the Queue.
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*/
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BOOL Queue_Contains(wQueue* queue, const void* obj)
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{
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BOOL found = FALSE;
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Queue_Lock(queue);
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for (size_t index = 0; index < queue->tail; index++)
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{
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void* ptr = uptr2void(queue->array[index]);
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if (queue->object.fnObjectEquals(ptr, obj))
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{
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found = TRUE;
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break;
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}
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}
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Queue_Unlock(queue);
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return found;
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}
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static BOOL Queue_EnsureCapacity(wQueue* queue, size_t count)
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{
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const size_t blocksize = 32ull;
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WINPR_ASSERT(queue);
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if (queue->growthFactor > SIZE_MAX / blocksize)
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return FALSE;
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const size_t increment = blocksize * queue->growthFactor;
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if (queue->size > SIZE_MAX - count)
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return FALSE;
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const size_t required = queue->size + count;
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if (required > queue->capacity)
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{
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const size_t old_capacity = queue->capacity;
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if (required > SIZE_MAX - increment)
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return FALSE;
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const size_t new_capacity = required + increment - required % increment;
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if (new_capacity > SIZE_MAX / sizeof(BYTE*))
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return FALSE;
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uintptr_t* newArray = (uintptr_t*)realloc(queue->array, sizeof(uintptr_t) * new_capacity);
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if (!newArray)
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return FALSE;
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queue->capacity = new_capacity;
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queue->array = newArray;
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ZeroMemory(&(queue->array[old_capacity]),
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(new_capacity - old_capacity) * sizeof(uintptr_t));
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/* rearrange wrapped entries */
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if (queue->tail <= queue->head)
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{
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const size_t tocopy = queue->tail;
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const size_t slots = new_capacity - old_capacity;
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const size_t batch = (tocopy < slots) ? tocopy : slots;
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CopyMemory(&(queue->array[old_capacity]), queue->array, batch * sizeof(uintptr_t));
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/* Tail is decremented. if the whole thing is appended
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* just move the existing tail by old_capacity */
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if (tocopy < slots)
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{
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ZeroMemory(queue->array, batch * sizeof(uintptr_t));
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queue->tail += old_capacity;
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}
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else
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{
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const size_t remain = queue->tail - batch;
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const size_t movesize = remain * sizeof(uintptr_t);
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memmove_s(queue->array, queue->tail * sizeof(uintptr_t), &queue->array[batch],
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movesize);
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const size_t zerooffset = remain;
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const size_t zerosize = (queue->tail - remain) * sizeof(uintptr_t);
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ZeroMemory(&queue->array[zerooffset], zerosize);
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queue->tail -= batch;
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}
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}
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}
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return TRUE;
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}
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/**
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* Adds an object to the end of the Queue.
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*/
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BOOL Queue_Enqueue(wQueue* queue, const void* obj)
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{
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BOOL ret = TRUE;
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Queue_Lock(queue);
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if (!Queue_EnsureCapacity(queue, 1))
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goto out;
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if (queue->object.fnObjectNew)
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queue->array[queue->tail] = void2uptr(queue->object.fnObjectNew(obj));
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else
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queue->array[queue->tail] = void2uptr(obj);
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queue->tail = (queue->tail + 1) % queue->capacity;
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{
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const BOOL signalSet = queue->size == 0;
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queue->size++;
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if (signalSet)
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(void)SetEvent(queue->event);
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}
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out:
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Queue_Unlock(queue);
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return ret;
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}
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/**
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* Removes and returns the object at the beginning of the Queue.
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*/
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void* Queue_Dequeue(wQueue* queue)
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{
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void* obj = nullptr;
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Queue_Lock(queue);
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if (queue->size > 0)
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{
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obj = uptr2void(queue->array[queue->head]);
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queue->array[queue->head] = 0;
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queue->head = (queue->head + 1) % queue->capacity;
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queue->size--;
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}
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if (queue->size < 1)
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(void)ResetEvent(queue->event);
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Queue_Unlock(queue);
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return obj;
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}
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/**
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* Returns the object at the beginning of the Queue without removing it.
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*/
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void* Queue_Peek(wQueue* queue)
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{
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void* obj = nullptr;
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Queue_Lock(queue);
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if (queue->size > 0)
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obj = uptr2void(queue->array[queue->head]);
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Queue_Unlock(queue);
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return obj;
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}
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void Queue_Discard(wQueue* queue)
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{
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void* obj = nullptr;
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Queue_Lock(queue);
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obj = Queue_Dequeue(queue);
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if (queue->object.fnObjectFree)
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queue->object.fnObjectFree(obj);
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Queue_Unlock(queue);
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}
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static BOOL default_queue_equals(const void* obj1, const void* obj2)
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{
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return (obj1 == obj2);
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}
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/**
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* Construction, Destruction
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*/
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wQueue* Queue_New(BOOL synchronized, SSIZE_T capacity, SSIZE_T growthFactor)
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{
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wQueue* queue = (wQueue*)calloc(1, sizeof(wQueue));
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if (!queue)
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return nullptr;
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queue->synchronized = synchronized;
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queue->growthFactor = 2;
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if (growthFactor > 0)
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queue->growthFactor = (size_t)growthFactor;
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if (capacity <= 0)
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capacity = 32;
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if (!InitializeCriticalSectionAndSpinCount(&queue->lock, 4000))
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goto fail;
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queue->haveLock = TRUE;
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if (!Queue_EnsureCapacity(queue, (size_t)capacity))
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goto fail;
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queue->event = CreateEvent(nullptr, TRUE, FALSE, nullptr);
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if (!queue->event)
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goto fail;
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{
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wObject* obj = Queue_Object(queue);
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obj->fnObjectEquals = default_queue_equals;
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}
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return queue;
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fail:
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WINPR_PRAGMA_DIAG_PUSH
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WINPR_PRAGMA_DIAG_IGNORED_MISMATCHED_DEALLOC
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Queue_Free(queue);
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WINPR_PRAGMA_DIAG_POP
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return nullptr;
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}
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void Queue_Free(wQueue* queue)
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{
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if (!queue)
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return;
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if (queue->haveLock)
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{
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Queue_Clear(queue);
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DeleteCriticalSection(&queue->lock);
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}
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(void)CloseHandle(queue->event);
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free(queue->array);
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free(queue);
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}
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