mirror of https://github.com/axmolengine/axmol.git
505 lines
14 KiB
C++
505 lines
14 KiB
C++
/****************************************************************************
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Copyright (c) 2010-2011 cocos2d-x.org
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Copyright (c) 2007 Scott Lembcke
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http://www.cocos2d-x.org
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Permission is hereby granted, free of charge, to any person obtaining a copy
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of this software and associated documentation files (the "Software"), to deal
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in the Software without restriction, including without limitation the rights
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to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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copies of the Software, and to permit persons to whom the Software is
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furnished to do so, subject to the following conditions:
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The above copyright notice and this permission notice shall be included in
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all copies or substantial portions of the Software.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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THE SOFTWARE.
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****************************************************************************/
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/**
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@file
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Based on Chipmunk cpArray.
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ccArray is a faster alternative to CCMutableArray, it does pretty much the
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same thing (stores CCObjects and retains/releases them appropriately). It's
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faster because:
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- it uses a plain C interface so it doesn't incur Objective-c messaging overhead
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- it assumes you know what you're doing, so it doesn't spend time on safety checks
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(index out of bounds, required capacity etc.)
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- comparisons are done using pointer equality instead of isEqual
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*/
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#ifndef CC_ARRAY_H
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#define CC_ARRAY_H
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#include <stdlib.h>
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#include <string.h>
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#include "CCObject.h"
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#include "ccMacros.h"
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namespace cocos2d {
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// Easy integration
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#define CCARRAYDATA_FOREACH(__array__, __object__) \
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__object__=__array__->arr[0]; for(unsigned int i=0, num=__array__->num; i<num; i++, __object__=__array__->arr[i]) \
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typedef struct _ccArray
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{
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unsigned int num, max;
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CCObject** arr; //equals CCObject** arr;
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} ccArray;
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/** Allocates and initializes a new array with specified capacity */
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static inline ccArray* ccArrayNew(unsigned int capacity)
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{
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if (capacity == 0)
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{
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capacity = 1;
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}
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ccArray *arr = (ccArray*)malloc( sizeof(ccArray) );
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arr->num = 0;
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arr->arr = (CCObject**)malloc( capacity * sizeof(CCObject*) );
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arr->max = capacity;
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return arr;
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}
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static inline void ccArrayRemoveAllObjects(ccArray *arr);
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/** Frees array after removing all remaining objects. Silently ignores nil arr. */
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static inline void ccArrayFree(ccArray *arr)
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{
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if( arr == NULL )
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{
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return;
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}
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ccArrayRemoveAllObjects(arr);
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//delete arr->m_pObjectArray;
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free(arr->arr);
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free(arr);
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}
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/** Doubles array capacity */
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static inline void ccArrayDoubleCapacity(ccArray *arr)
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{
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arr->max *= 2;
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CCObject** newArr = (CCObject**)realloc( arr->arr, arr->max * sizeof(CCObject*) );
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// will fail when there's not enough memory
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CCAssert(newArr != NULL, "ccArrayDoubleCapacity failed. Not enough memory");
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arr->arr = newArr;
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}
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/** Increases array capacity such that max >= num + extra. */
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static inline void ccArrayEnsureExtraCapacity(ccArray *arr, unsigned int extra)
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{
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while (arr->max < arr->num + extra)
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{
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ccArrayDoubleCapacity(arr);
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}
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}
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/** shrinks the array so the memory footprint corresponds with the number of items */
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static inline void ccArrayShrink(ccArray *arr)
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{
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unsigned int newSize;
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//only resize when necessary
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if (arr->max > arr->num && !(arr->num==0 && arr->max==1))
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{
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if (arr->num!=0)
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{
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newSize=arr->num;
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arr->max=arr->num;
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}
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else
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{//minimum capacity of 1, with 0 elements the array would be free'd by realloc
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newSize=1;
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arr->max=1;
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}
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arr->arr = (CCObject**) realloc(arr->arr,newSize * sizeof(CCObject*) );
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CCAssert(arr->arr != NULL, "could not reallocate the memory");
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}
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}
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/** Returns index of first occurence of object, UXNotFound if object not found. */
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static inline unsigned int ccArrayGetIndexOfObject(ccArray *arr, CCObject* object)
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{
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for ( unsigned int i = 0; i < arr->num; i++)
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{
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if (arr->arr[i] == object)
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{
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return i;
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}
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}
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return UINT_MAX;
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}
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/** Returns a Boolean value that indicates whether object is present in array. */
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static inline bool ccArrayContainsObject(ccArray *arr, CCObject* object)
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{
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return ccArrayGetIndexOfObject(arr, object) != UINT_MAX;
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}
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/** Appends an object. Bahaviour undefined if array doesn't have enough capacity. */
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static inline void ccArrayAppendObject(ccArray *arr, CCObject* object)
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{
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arr->arr[arr->num] = object; object->retain();
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arr->num++;
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}
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/** Appends an object. Capacity of arr is increased if needed. */
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static inline void ccArrayAppendObjectWithResize(ccArray *arr, CCObject* object)
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{
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ccArrayEnsureExtraCapacity(arr, 1);
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ccArrayAppendObject(arr, object);
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}
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/** Appends objects from plusArr to arr. Behaviour undefined if arr doesn't have
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enough capacity. */
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static inline void ccArrayAppendArray(ccArray *arr, ccArray *plusArr)
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{
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for( unsigned int i = 0; i < plusArr->num; i++)
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{
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ccArrayAppendObject(arr, plusArr->arr[i]);
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}
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}
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/** Appends objects from plusArr to arr. Capacity of arr is increased if needed. */
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static inline void ccArrayAppendArrayWithResize(ccArray *arr, ccArray *plusArr)
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{
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ccArrayEnsureExtraCapacity(arr, plusArr->num);
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ccArrayAppendArray(arr, plusArr);
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}
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/** Inserts an object at index */
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static inline void ccArrayInsertObjectAtIndex(ccArray *arr, CCObject* object, unsigned int index)
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{
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CCAssert(index<=arr->num, "Invalid index. Out of bounds");
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ccArrayEnsureExtraCapacity(arr, 1);
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unsigned int remaining = arr->num - index;
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if( remaining > 0)
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memmove(&arr->arr[index+1], &arr->arr[index], sizeof(CCObject*) * remaining );
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object->retain();
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arr->arr[index] = object;
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arr->num++;
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}
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/** Swaps two objects */
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static inline void ccArraySwapObjectsAtIndexes(ccArray *arr, unsigned int index1, unsigned int index2)
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{
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CCAssert(index1 < arr->num, "(1) Invalid index. Out of bounds");
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CCAssert(index2 < arr->num, "(2) Invalid index. Out of bounds");
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CCObject* object1 = arr->arr[index1];
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arr->arr[index1] = arr->arr[index2];
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arr->arr[index2] = object1;
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}
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/** Removes all objects from arr */
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static inline void ccArrayRemoveAllObjects(ccArray *arr)
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{
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while(arr->num > 0)
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{
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arr->arr[--arr->num]->release();
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}
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}
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/** Removes object at specified index and pushes back all subsequent objects.
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Behaviour undefined if index outside [0, num-1]. */
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static inline void ccArrayRemoveObjectAtIndex(ccArray *arr, unsigned int index)
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{
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arr->arr[index]->release();
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arr->num--;
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unsigned int remaining = arr->num - index;
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if (remaining > 0)
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{
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memmove(&arr->arr[index], &arr->arr[index+1], remaining * sizeof(void*));
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}
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}
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/** Removes object at specified index and fills the gap with the last object,
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thereby avoiding the need to push back subsequent objects.
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Behaviour undefined if index outside [0, num-1]. */
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static inline void ccArrayFastRemoveObjectAtIndex(ccArray *arr, unsigned int index)
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{
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arr->arr[index]->release();
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unsigned int last = --arr->num;
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arr->arr[index] = arr->arr[last];
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}
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static inline void ccArrayFastRemoveObject(ccArray *arr, CCObject* object)
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{
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unsigned int index = ccArrayGetIndexOfObject(arr, object);
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if (index != UINT_MAX)
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ccArrayFastRemoveObjectAtIndex(arr, index);
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}
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/** Searches for the first occurance of object and removes it. If object is not
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found the function has no effect. */
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static inline void ccArrayRemoveObject(ccArray *arr, CCObject* object)
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{
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unsigned int index = ccArrayGetIndexOfObject(arr, object);
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if (index != UINT_MAX)
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{
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ccArrayRemoveObjectAtIndex(arr, index);
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}
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}
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/** Removes from arr all objects in minusArr. For each object in minusArr, the
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first matching instance in arr will be removed. */
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static inline void ccArrayRemoveArray(ccArray *arr, ccArray *minusArr)
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{
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for( unsigned int i = 0; i < minusArr->num; i++)
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{
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ccArrayRemoveObject(arr, minusArr->arr[i]);
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}
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}
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/** Removes from arr all objects in minusArr. For each object in minusArr, all
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matching instances in arr will be removed. */
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static inline void ccArrayFullRemoveArray(ccArray *arr, ccArray *minusArr)
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{
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unsigned int back = 0;
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for( unsigned int i = 0; i < arr->num; i++)
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{
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if( ccArrayContainsObject(minusArr, arr->arr[i]) )
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{
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delete arr->arr[i];
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back++;
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}
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else
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{
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arr->arr[i - back] = arr->arr[i];
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}
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}
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arr->num -= back;
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}
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typedef struct _ccCArray
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{
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unsigned int num, max;
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void** arr; //equals CCObject** arr;
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} ccCArray;
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static inline void ccCArrayRemoveAllValues(ccCArray *arr);
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/** Allocates and initializes a new C array with specified capacity */
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static inline ccCArray* ccCArrayNew(unsigned int capacity)
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{
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if (capacity == 0)
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{
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capacity = 1;
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}
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ccCArray *arr = (ccCArray*)malloc( sizeof(ccCArray) );
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arr->num = 0;
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arr->arr = (void**) malloc( capacity * sizeof(void*) );
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arr->max = capacity;
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return arr;
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}
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/** Frees C array after removing all remaining values. Silently ignores nil arr. */
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static inline void ccCArrayFree(ccCArray *arr)
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{
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if( arr == NULL )
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{
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return;
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}
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ccCArrayRemoveAllValues(arr);
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free(arr->arr);
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free(arr);
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}
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/** Doubles C array capacity */
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static inline void ccCArrayDoubleCapacity(ccCArray *arr)
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{
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arr->max *= 2;
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arr->arr = (void**) realloc(arr->arr, arr->max * sizeof(void*));
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}
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/** Increases array capacity such that max >= num + extra. */
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static inline void ccCArrayEnsureExtraCapacity(ccCArray *arr, unsigned int extra)
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{
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while (arr->max < arr->num + extra)
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{
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ccCArrayDoubleCapacity(arr);
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}
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}
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/** Returns index of first occurence of value, NSNotFound if value not found. */
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static inline int ccCArrayGetIndexOfValue(ccCArray *arr, void* value)
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{
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for (unsigned int i = 0; i < arr->num; i++)
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{
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if (arr->arr[i] == value)
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{
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return i;
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}
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}
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return -1;
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}
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/** Returns a Boolean value that indicates whether value is present in the C array. */
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static inline bool ccCArrayContainsValue(ccCArray *arr, void* value)
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{
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return ccCArrayGetIndexOfValue(arr, value) != -1;
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}
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/** Inserts a value at a certain position. The valid index is [0, num] */
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static inline void ccCArrayInsertValueAtIndex( ccCArray *arr, void* value, unsigned int index)
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{
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CCAssert( index < arr->max, "ccCArrayInsertValueAtIndex: invalid index");
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unsigned int remaining = arr->num - index;
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// make sure it has enough capacity
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if (arr->num + 1 == arr->max)
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{
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ccCArrayDoubleCapacity(arr);
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}
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// last Value doesn't need to be moved
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if( remaining > 0)
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{
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// tex coordinates
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memmove( &arr->arr[index+1],&arr->arr[index], sizeof(void*) * remaining );
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}
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arr->num++;
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arr->arr[index] = value;
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}
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/** Appends an value */
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static inline void ccCArrayAppendValue(ccCArray *arr, void* value)
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{
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arr->arr[arr->num] = value;
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arr->num++;
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// double the capacity for the next append action
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// if the num >= max
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if (arr->num >= arr->max)
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{
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ccCArrayDoubleCapacity(arr);
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}
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}
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/** Appends an value. Capacity of arr is increased if needed. */
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static inline void ccCArrayAppendValueWithResize(ccCArray *arr, void* value)
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{
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ccCArrayEnsureExtraCapacity(arr, 1);
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ccCArrayAppendValue(arr, value);
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}
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/** Appends values from plusArr to arr. Behaviour undefined if arr doesn't have
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enough capacity. */
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static inline void ccCArrayAppendArray(ccCArray *arr, ccCArray *plusArr)
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{
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for (unsigned int i = 0; i < plusArr->num; i++)
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{
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ccCArrayAppendValue(arr, plusArr->arr[i]);
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}
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}
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/** Appends values from plusArr to arr. Capacity of arr is increased if needed. */
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static inline void ccCArrayAppendArrayWithResize(ccCArray *arr, ccCArray *plusArr)
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{
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ccCArrayEnsureExtraCapacity(arr, plusArr->num);
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ccCArrayAppendArray(arr, plusArr);
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}
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/** Removes all values from arr */
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static inline void ccCArrayRemoveAllValues(ccCArray *arr)
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{
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arr->num = 0;
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}
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/** Removes value at specified index and pushes back all subsequent values.
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Behaviour undefined if index outside [0, num-1]. */
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static inline void ccCArrayRemoveValueAtIndex(ccCArray *arr, unsigned int index)
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{
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for (unsigned int last = --arr->num; index < last; index++)
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{
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arr->arr[index] = arr->arr[index + 1];
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}
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}
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/** Removes value at specified index and fills the gap with the last value,
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thereby avoiding the need to push back subsequent values.
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Behaviour undefined if index outside [0, num-1]. */
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static inline void ccCArrayFastRemoveValueAtIndex(ccCArray *arr, unsigned int index)
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{
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unsigned int last = --arr->num;
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arr->arr[index] = arr->arr[last];
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}
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/** Searches for the first occurance of value and removes it. If value is not
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found the function has no effect. */
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static inline void ccCArrayRemoveValue(ccCArray *arr, void* value)
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{
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unsigned int index = ccCArrayGetIndexOfValue(arr, value);
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if (index != UINT_MAX)
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{
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ccCArrayRemoveValueAtIndex(arr, index);
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}
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}
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/** Removes from arr all values in minusArr. For each Value in minusArr, the
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first matching instance in arr will be removed. */
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static inline void ccCArrayRemoveArray(ccCArray *arr, ccCArray *minusArr)
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{
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for( unsigned int i = 0; i < minusArr->num; i++)
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{
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ccCArrayRemoveValue(arr, minusArr->arr[i]);
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}
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}
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/** Removes from arr all values in minusArr. For each value in minusArr, all
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matching instances in arr will be removed. */
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static inline void ccCArrayFullRemoveArray(ccCArray *arr, ccCArray *minusArr)
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{
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unsigned int back = 0;
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for (unsigned int i = 0; i < arr->num; i++)
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{
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if( ccCArrayContainsValue(minusArr, arr->arr[i]) )
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{
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back++;
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} else
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{
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arr->arr[i - back] = arr->arr[i];
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}
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}
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arr->num -= back;
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}
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}
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#endif // CC_ARRAY_H
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