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393 lines
17 KiB
C
393 lines
17 KiB
C
/*
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+----------------------------------------------------------------------+
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| Zend Engine |
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+----------------------------------------------------------------------+
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| Copyright (c) 1998-2010 Zend Technologies Ltd. (http://www.zend.com) |
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+----------------------------------------------------------------------+
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| This source file is subject to version 2.00 of the Zend license, |
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| that is bundled with this package in the file LICENSE, and is |
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| available through the world-wide-web at the following url: |
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| http://www.zend.com/license/2_00.txt. |
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| If you did not receive a copy of the Zend license and are unable to |
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| obtain it through the world-wide-web, please send a note to |
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| license@zend.com so we can mail you a copy immediately. |
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+----------------------------------------------------------------------+
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| Authors: Andi Gutmans <andi@zend.com> |
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| Zeev Suraski <zeev@zend.com> |
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+----------------------------------------------------------------------+
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*/
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/* $Id$ */
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#ifndef ZEND_HASH_H
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#define ZEND_HASH_H
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#include <sys/types.h>
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#include "zend.h"
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#define HASH_KEY_IS_STRING 1
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#define HASH_KEY_IS_LONG 2
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#define HASH_KEY_NON_EXISTANT 3
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#define HASH_UPDATE (1<<0)
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#define HASH_ADD (1<<1)
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#define HASH_NEXT_INSERT (1<<2)
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#define HASH_DEL_KEY 0
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#define HASH_DEL_INDEX 1
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#define HASH_DEL_KEY_QUICK 2
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#define HASH_UPDATE_KEY_IF_NONE 0
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#define HASH_UPDATE_KEY_IF_BEFORE 1
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#define HASH_UPDATE_KEY_IF_AFTER 2
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#define HASH_UPDATE_KEY_ANYWAY 3
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typedef ulong (*hash_func_t)(const char *arKey, uint nKeyLength);
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typedef int (*compare_func_t)(const void *, const void * TSRMLS_DC);
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typedef void (*sort_func_t)(void *, size_t, register size_t, compare_func_t TSRMLS_DC);
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typedef void (*dtor_func_t)(void *pDest);
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typedef void (*copy_ctor_func_t)(void *pElement);
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typedef void (*copy_ctor_param_func_t)(void *pElement, void *pParam);
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struct _hashtable;
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typedef struct bucket {
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ulong h; /* Used for numeric indexing */
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uint nKeyLength;
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void *pData;
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void *pDataPtr;
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struct bucket *pListNext;
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struct bucket *pListLast;
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struct bucket *pNext;
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struct bucket *pLast;
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char *arKey;
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} Bucket;
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typedef struct _hashtable {
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uint nTableSize;
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uint nTableMask;
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uint nNumOfElements;
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ulong nNextFreeElement;
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Bucket *pInternalPointer; /* Used for element traversal */
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Bucket *pListHead;
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Bucket *pListTail;
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Bucket **arBuckets;
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dtor_func_t pDestructor;
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zend_bool persistent;
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unsigned char nApplyCount;
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zend_bool bApplyProtection;
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#if ZEND_DEBUG
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int inconsistent;
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#endif
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} HashTable;
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typedef struct _zend_hash_key {
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char *arKey;
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uint nKeyLength;
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ulong h;
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} zend_hash_key;
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typedef zend_bool (*merge_checker_func_t)(HashTable *target_ht, void *source_data, zend_hash_key *hash_key, void *pParam);
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typedef Bucket* HashPosition;
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BEGIN_EXTERN_C()
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/* startup/shutdown */
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ZEND_API int _zend_hash_init(HashTable *ht, uint nSize, hash_func_t pHashFunction, dtor_func_t pDestructor, zend_bool persistent ZEND_FILE_LINE_DC);
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ZEND_API int _zend_hash_init_ex(HashTable *ht, uint nSize, hash_func_t pHashFunction, dtor_func_t pDestructor, zend_bool persistent, zend_bool bApplyProtection ZEND_FILE_LINE_DC);
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ZEND_API void zend_hash_destroy(HashTable *ht);
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ZEND_API void zend_hash_clean(HashTable *ht);
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#define zend_hash_init(ht, nSize, pHashFunction, pDestructor, persistent) _zend_hash_init((ht), (nSize), (pHashFunction), (pDestructor), (persistent) ZEND_FILE_LINE_CC)
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#define zend_hash_init_ex(ht, nSize, pHashFunction, pDestructor, persistent, bApplyProtection) _zend_hash_init_ex((ht), (nSize), (pHashFunction), (pDestructor), (persistent), (bApplyProtection) ZEND_FILE_LINE_CC)
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/* additions/updates/changes */
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ZEND_API int _zend_hash_add_or_update(HashTable *ht, const char *arKey, uint nKeyLength, void *pData, uint nDataSize, void **pDest, int flag ZEND_FILE_LINE_DC);
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#define zend_hash_update(ht, arKey, nKeyLength, pData, nDataSize, pDest) \
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_zend_hash_add_or_update(ht, arKey, nKeyLength, pData, nDataSize, pDest, HASH_UPDATE ZEND_FILE_LINE_CC)
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#define zend_hash_add(ht, arKey, nKeyLength, pData, nDataSize, pDest) \
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_zend_hash_add_or_update(ht, arKey, nKeyLength, pData, nDataSize, pDest, HASH_ADD ZEND_FILE_LINE_CC)
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ZEND_API int _zend_hash_quick_add_or_update(HashTable *ht, const char *arKey, uint nKeyLength, ulong h, void *pData, uint nDataSize, void **pDest, int flag ZEND_FILE_LINE_DC);
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#define zend_hash_quick_update(ht, arKey, nKeyLength, h, pData, nDataSize, pDest) \
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_zend_hash_quick_add_or_update(ht, arKey, nKeyLength, h, pData, nDataSize, pDest, HASH_UPDATE ZEND_FILE_LINE_CC)
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#define zend_hash_quick_add(ht, arKey, nKeyLength, h, pData, nDataSize, pDest) \
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_zend_hash_quick_add_or_update(ht, arKey, nKeyLength, h, pData, nDataSize, pDest, HASH_ADD ZEND_FILE_LINE_CC)
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ZEND_API int _zend_hash_index_update_or_next_insert(HashTable *ht, ulong h, void *pData, uint nDataSize, void **pDest, int flag ZEND_FILE_LINE_DC);
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#define zend_hash_index_update(ht, h, pData, nDataSize, pDest) \
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_zend_hash_index_update_or_next_insert(ht, h, pData, nDataSize, pDest, HASH_UPDATE ZEND_FILE_LINE_CC)
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#define zend_hash_next_index_insert(ht, pData, nDataSize, pDest) \
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_zend_hash_index_update_or_next_insert(ht, 0, pData, nDataSize, pDest, HASH_NEXT_INSERT ZEND_FILE_LINE_CC)
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ZEND_API int zend_hash_add_empty_element(HashTable *ht, const char *arKey, uint nKeyLength);
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#define ZEND_HASH_APPLY_KEEP 0
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#define ZEND_HASH_APPLY_REMOVE 1<<0
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#define ZEND_HASH_APPLY_STOP 1<<1
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typedef int (*apply_func_t)(void *pDest TSRMLS_DC);
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typedef int (*apply_func_arg_t)(void *pDest, void *argument TSRMLS_DC);
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typedef int (*apply_func_args_t)(void *pDest TSRMLS_DC, int num_args, va_list args, zend_hash_key *hash_key);
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ZEND_API void zend_hash_graceful_destroy(HashTable *ht);
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ZEND_API void zend_hash_graceful_reverse_destroy(HashTable *ht);
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ZEND_API void zend_hash_apply(HashTable *ht, apply_func_t apply_func TSRMLS_DC);
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ZEND_API void zend_hash_apply_with_argument(HashTable *ht, apply_func_arg_t apply_func, void * TSRMLS_DC);
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ZEND_API void zend_hash_apply_with_arguments(HashTable *ht TSRMLS_DC, apply_func_args_t apply_func, int, ...);
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/* This function should be used with special care (in other words,
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* it should usually not be used). When used with the ZEND_HASH_APPLY_STOP
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* return value, it assumes things about the order of the elements in the hash.
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* Also, it does not provide the same kind of reentrancy protection that
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* the standard apply functions do.
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*/
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ZEND_API void zend_hash_reverse_apply(HashTable *ht, apply_func_t apply_func TSRMLS_DC);
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/* Deletes */
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ZEND_API int zend_hash_del_key_or_index(HashTable *ht, const char *arKey, uint nKeyLength, ulong h, int flag);
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#define zend_hash_del(ht, arKey, nKeyLength) \
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zend_hash_del_key_or_index(ht, arKey, nKeyLength, 0, HASH_DEL_KEY)
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#define zend_hash_quick_del(ht, arKey, nKeyLength, h) \
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zend_hash_del_key_or_index(ht, arKey, nKeyLength, h, HASH_DEL_KEY_QUICK)
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#define zend_hash_index_del(ht, h) \
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zend_hash_del_key_or_index(ht, NULL, 0, h, HASH_DEL_INDEX)
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ZEND_API ulong zend_get_hash_value(const char *arKey, uint nKeyLength);
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/* Data retreival */
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ZEND_API int zend_hash_find(const HashTable *ht, const char *arKey, uint nKeyLength, void **pData);
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ZEND_API int zend_hash_quick_find(const HashTable *ht, const char *arKey, uint nKeyLength, ulong h, void **pData);
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ZEND_API int zend_hash_index_find(const HashTable *ht, ulong h, void **pData);
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/* Misc */
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ZEND_API int zend_hash_exists(const HashTable *ht, const char *arKey, uint nKeyLength);
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ZEND_API int zend_hash_quick_exists(const HashTable *ht, const char *arKey, uint nKeyLength, ulong h);
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ZEND_API int zend_hash_index_exists(const HashTable *ht, ulong h);
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ZEND_API ulong zend_hash_next_free_element(const HashTable *ht);
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/* traversing */
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#define zend_hash_has_more_elements_ex(ht, pos) \
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(zend_hash_get_current_key_type_ex(ht, pos) == HASH_KEY_NON_EXISTANT ? FAILURE : SUCCESS)
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ZEND_API int zend_hash_move_forward_ex(HashTable *ht, HashPosition *pos);
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ZEND_API int zend_hash_move_backwards_ex(HashTable *ht, HashPosition *pos);
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ZEND_API int zend_hash_get_current_key_ex(const HashTable *ht, char **str_index, uint *str_length, ulong *num_index, zend_bool duplicate, HashPosition *pos);
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ZEND_API int zend_hash_get_current_key_type_ex(HashTable *ht, HashPosition *pos);
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ZEND_API int zend_hash_get_current_data_ex(HashTable *ht, void **pData, HashPosition *pos);
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ZEND_API void zend_hash_internal_pointer_reset_ex(HashTable *ht, HashPosition *pos);
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ZEND_API void zend_hash_internal_pointer_end_ex(HashTable *ht, HashPosition *pos);
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ZEND_API int zend_hash_update_current_key_ex(HashTable *ht, int key_type, const char *str_index, uint str_length, ulong num_index, int mode, HashPosition *pos);
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typedef struct _HashPointer {
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HashPosition pos;
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ulong h;
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} HashPointer;
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ZEND_API int zend_hash_get_pointer(const HashTable *ht, HashPointer *ptr);
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ZEND_API int zend_hash_set_pointer(HashTable *ht, const HashPointer *ptr);
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#define zend_hash_has_more_elements(ht) \
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zend_hash_has_more_elements_ex(ht, NULL)
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#define zend_hash_move_forward(ht) \
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zend_hash_move_forward_ex(ht, NULL)
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#define zend_hash_move_backwards(ht) \
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zend_hash_move_backwards_ex(ht, NULL)
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#define zend_hash_get_current_key(ht, str_index, num_index, duplicate) \
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zend_hash_get_current_key_ex(ht, str_index, NULL, num_index, duplicate, NULL)
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#define zend_hash_get_current_key_type(ht) \
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zend_hash_get_current_key_type_ex(ht, NULL)
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#define zend_hash_get_current_data(ht, pData) \
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zend_hash_get_current_data_ex(ht, pData, NULL)
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#define zend_hash_internal_pointer_reset(ht) \
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zend_hash_internal_pointer_reset_ex(ht, NULL)
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#define zend_hash_internal_pointer_end(ht) \
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zend_hash_internal_pointer_end_ex(ht, NULL)
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#define zend_hash_update_current_key(ht, key_type, str_index, str_length, num_index) \
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zend_hash_update_current_key_ex(ht, key_type, str_index, str_length, num_index, HASH_UPDATE_KEY_ANYWAY, NULL)
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/* Copying, merging and sorting */
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ZEND_API void zend_hash_copy(HashTable *target, HashTable *source, copy_ctor_func_t pCopyConstructor, void *tmp, uint size);
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ZEND_API void _zend_hash_merge(HashTable *target, HashTable *source, copy_ctor_func_t pCopyConstructor, void *tmp, uint size, int overwrite ZEND_FILE_LINE_DC);
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ZEND_API void zend_hash_merge_ex(HashTable *target, HashTable *source, copy_ctor_func_t pCopyConstructor, uint size, merge_checker_func_t pMergeSource, void *pParam);
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ZEND_API int zend_hash_sort(HashTable *ht, sort_func_t sort_func, compare_func_t compare_func, int renumber TSRMLS_DC);
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ZEND_API int zend_hash_compare(HashTable *ht1, HashTable *ht2, compare_func_t compar, zend_bool ordered TSRMLS_DC);
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ZEND_API int zend_hash_minmax(const HashTable *ht, compare_func_t compar, int flag, void **pData TSRMLS_DC);
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#define zend_hash_merge(target, source, pCopyConstructor, tmp, size, overwrite) \
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_zend_hash_merge(target, source, pCopyConstructor, tmp, size, overwrite ZEND_FILE_LINE_CC)
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ZEND_API int zend_hash_num_elements(const HashTable *ht);
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ZEND_API int zend_hash_rehash(HashTable *ht);
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/*
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* DJBX33A (Daniel J. Bernstein, Times 33 with Addition)
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*
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* This is Daniel J. Bernstein's popular `times 33' hash function as
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* posted by him years ago on comp.lang.c. It basically uses a function
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* like ``hash(i) = hash(i-1) * 33 + str[i]''. This is one of the best
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* known hash functions for strings. Because it is both computed very
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* fast and distributes very well.
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*
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* The magic of number 33, i.e. why it works better than many other
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* constants, prime or not, has never been adequately explained by
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* anyone. So I try an explanation: if one experimentally tests all
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* multipliers between 1 and 256 (as RSE did now) one detects that even
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* numbers are not useable at all. The remaining 128 odd numbers
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* (except for the number 1) work more or less all equally well. They
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* all distribute in an acceptable way and this way fill a hash table
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* with an average percent of approx. 86%.
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*
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* If one compares the Chi^2 values of the variants, the number 33 not
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* even has the best value. But the number 33 and a few other equally
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* good numbers like 17, 31, 63, 127 and 129 have nevertheless a great
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* advantage to the remaining numbers in the large set of possible
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* multipliers: their multiply operation can be replaced by a faster
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* operation based on just one shift plus either a single addition
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* or subtraction operation. And because a hash function has to both
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* distribute good _and_ has to be very fast to compute, those few
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* numbers should be preferred and seems to be the reason why Daniel J.
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* Bernstein also preferred it.
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*
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*
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* -- Ralf S. Engelschall <rse@engelschall.com>
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*/
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static inline ulong zend_inline_hash_func(const char *arKey, uint nKeyLength)
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{
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register ulong hash = 5381;
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/* variant with the hash unrolled eight times */
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for (; nKeyLength >= 8; nKeyLength -= 8) {
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hash = ((hash << 5) + hash) + *arKey++;
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hash = ((hash << 5) + hash) + *arKey++;
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hash = ((hash << 5) + hash) + *arKey++;
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hash = ((hash << 5) + hash) + *arKey++;
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hash = ((hash << 5) + hash) + *arKey++;
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hash = ((hash << 5) + hash) + *arKey++;
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hash = ((hash << 5) + hash) + *arKey++;
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hash = ((hash << 5) + hash) + *arKey++;
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}
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switch (nKeyLength) {
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case 7: hash = ((hash << 5) + hash) + *arKey++; /* fallthrough... */
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case 6: hash = ((hash << 5) + hash) + *arKey++; /* fallthrough... */
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case 5: hash = ((hash << 5) + hash) + *arKey++; /* fallthrough... */
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case 4: hash = ((hash << 5) + hash) + *arKey++; /* fallthrough... */
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case 3: hash = ((hash << 5) + hash) + *arKey++; /* fallthrough... */
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case 2: hash = ((hash << 5) + hash) + *arKey++; /* fallthrough... */
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case 1: hash = ((hash << 5) + hash) + *arKey++; break;
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case 0: break;
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EMPTY_SWITCH_DEFAULT_CASE()
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}
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return hash;
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}
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ZEND_API ulong zend_hash_func(const char *arKey, uint nKeyLength);
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#if ZEND_DEBUG
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/* debug */
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void zend_hash_display_pListTail(const HashTable *ht);
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void zend_hash_display(const HashTable *ht);
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#endif
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END_EXTERN_C()
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#define ZEND_INIT_SYMTABLE(ht) \
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ZEND_INIT_SYMTABLE_EX(ht, 2, 0)
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#define ZEND_INIT_SYMTABLE_EX(ht, n, persistent) \
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zend_hash_init(ht, n, NULL, ZVAL_PTR_DTOR, persistent)
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#define ZEND_HANDLE_NUMERIC_EX(key, length, idx, func) do { \
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register const char *tmp = key; \
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\
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if (*tmp == '-') { \
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tmp++; \
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} \
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if (*tmp >= '0' && *tmp <= '9') { /* possibly a numeric index */ \
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const char *end = key + length - 1; \
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\
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if ((*end != '\0') /* not a null terminated string */ \
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|| (*tmp == '0' && length > 2) /* numbers with leading zeros */ \
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|| (end - tmp > MAX_LENGTH_OF_LONG - 1) /* number too long */ \
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|| (SIZEOF_LONG == 4 && \
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end - tmp == MAX_LENGTH_OF_LONG - 1 && \
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*tmp > '2')) { /* overflow */ \
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break; \
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} \
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idx = (*tmp - '0'); \
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while (++tmp != end && *tmp >= '0' && *tmp <= '9') { \
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idx = (idx * 10) + (*tmp - '0'); \
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} \
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if (tmp == end) { \
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if (*key == '-') { \
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idx = -idx; \
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if (idx > 0) { /* overflow */ \
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break; \
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} \
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} else if (idx < 0) { /* overflow */ \
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break; \
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} \
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func; \
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} \
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} \
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} while (0)
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#define ZEND_HANDLE_NUMERIC(key, length, func) do { \
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long idx; \
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\
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ZEND_HANDLE_NUMERIC_EX(key, length, idx, return func); \
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} while (0)
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static inline int zend_symtable_update(HashTable *ht, const char *arKey, uint nKeyLength, void *pData, uint nDataSize, void **pDest) \
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{
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ZEND_HANDLE_NUMERIC(arKey, nKeyLength, zend_hash_index_update(ht, idx, pData, nDataSize, pDest));
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return zend_hash_update(ht, arKey, nKeyLength, pData, nDataSize, pDest);
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}
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static inline int zend_symtable_del(HashTable *ht, const char *arKey, uint nKeyLength)
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{
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ZEND_HANDLE_NUMERIC(arKey, nKeyLength, zend_hash_index_del(ht, idx));
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return zend_hash_del(ht, arKey, nKeyLength);
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}
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static inline int zend_symtable_find(HashTable *ht, const char *arKey, uint nKeyLength, void **pData)
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{
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ZEND_HANDLE_NUMERIC(arKey, nKeyLength, zend_hash_index_find(ht, idx, pData));
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return zend_hash_find(ht, arKey, nKeyLength, pData);
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}
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static inline int zend_symtable_exists(HashTable *ht, const char *arKey, uint nKeyLength)
|
|
{
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ZEND_HANDLE_NUMERIC(arKey, nKeyLength, zend_hash_index_exists(ht, idx));
|
|
return zend_hash_exists(ht, arKey, nKeyLength);
|
|
}
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|
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static inline int zend_symtable_update_current_key_ex(HashTable *ht, const char *arKey, uint nKeyLength, int mode, HashPosition *pos)
|
|
{
|
|
ZEND_HANDLE_NUMERIC(arKey, nKeyLength, zend_hash_update_current_key_ex(ht, HASH_KEY_IS_LONG, NULL, 0, idx, mode, pos));
|
|
return zend_hash_update_current_key_ex(ht, HASH_KEY_IS_STRING, arKey, nKeyLength, 0, mode, pos);
|
|
}
|
|
#define zend_symtable_update_current_key(ht,arKey,nKeyLength,mode) \
|
|
zend_symtable_update_current_key_ex(ht, arKey, nKeyLength, mode, NULL)
|
|
|
|
|
|
#endif /* ZEND_HASH_H */
|
|
|
|
/*
|
|
* Local variables:
|
|
* tab-width: 4
|
|
* c-basic-offset: 4
|
|
* indent-tabs-mode: t
|
|
* End:
|
|
*/
|