479 lines
11 KiB
C
479 lines
11 KiB
C
/*
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* Copyright (c) 2010 Kungliga Tekniska Högskolan
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* (Royal Institute of Technology, Stockholm, Sweden).
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* All rights reserved.
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*
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* Portions Copyright (c) 2010 Apple Inc. All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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*
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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*
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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*
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* 3. Neither the name of the Institute nor the names of its contributors
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* may be used to endorse or promote products derived from this software
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* without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE INSTITUTE AND CONTRIBUTORS ``AS IS'' AND
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* ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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* ARE DISCLAIMED. IN NO EVENT SHALL THE INSTITUTE OR CONTRIBUTORS BE LIABLE
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* FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
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* OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
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* HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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* LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
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* OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
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* SUCH DAMAGE.
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*/
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#include "baselocl.h"
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/*
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*
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*/
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struct heim_array_data {
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size_t len;
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heim_object_t *val;
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size_t allocated_len;
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heim_object_t *allocated;
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};
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static void HEIM_CALLCONV
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array_dealloc(heim_object_t ptr)
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{
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heim_array_t array = ptr;
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size_t n;
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for (n = 0; n < array->len; n++)
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heim_release(array->val[n]);
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free(array->allocated);
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}
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struct heim_type_data array_object = {
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HEIM_TID_ARRAY,
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"array-object",
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NULL,
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array_dealloc,
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NULL,
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NULL,
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NULL,
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NULL
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};
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/**
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* Allocate an array
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*
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* @return A new allocated array, free with heim_release()
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*/
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heim_array_t
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heim_array_create(void)
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{
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heim_array_t array;
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array = _heim_alloc_object(&array_object, sizeof(*array));
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if (array == NULL)
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return NULL;
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array->allocated = NULL;
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array->allocated_len = 0;
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array->val = NULL;
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array->len = 0;
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return array;
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}
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/**
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* Get type id of an dict
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*
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* @return the type id
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*/
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heim_tid_t
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heim_array_get_type_id(void)
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{
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return HEIM_TID_ARRAY;
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}
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/**
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* Append object to array
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*
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* @param array array to add too
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* @param object the object to add
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*
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* @return zero if added, errno otherwise
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*/
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int
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heim_array_append_value(heim_array_t array, heim_object_t object)
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{
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heim_object_t *ptr;
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size_t leading = array->val - array->allocated; /* unused leading slots */
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size_t trailing = array->allocated_len - array->len - leading;
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size_t new_len;
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if (trailing > 0) {
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/* We have pre-allocated space; use it */
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array->val[array->len++] = heim_retain(object);
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return 0;
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}
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if (leading > (array->len + 1)) {
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/*
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* We must have appending to, and deleting at index 0 from this
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* array a lot; don't want to grow forever!
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*/
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(void) memmove(&array->allocated[0], &array->val[0],
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array->len * sizeof(array->val[0]));
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array->val = array->allocated;
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/* We have pre-allocated space; use it */
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array->val[array->len++] = heim_retain(object);
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return 0;
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}
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/* Pre-allocate extra .5 times number of used slots */
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new_len = leading + array->len + 1 + (array->len >> 1);
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ptr = realloc(array->allocated, new_len * sizeof(array->val[0]));
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if (ptr == NULL)
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return ENOMEM;
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array->allocated = ptr;
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array->allocated_len = new_len;
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array->val = &ptr[leading];
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array->val[array->len++] = heim_retain(object);
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return 0;
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}
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/*
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* Internal function to insert at index 0, taking care to optimize the
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* case where we're always inserting at index 0, particularly the case
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* where we insert at index 0 and delete from the right end.
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*/
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static int
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heim_array_prepend_value(heim_array_t array, heim_object_t object)
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{
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heim_object_t *ptr;
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size_t leading = array->val - array->allocated; /* unused leading slots */
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size_t trailing = array->allocated_len - array->len - leading;
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size_t new_len;
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if (leading > 0) {
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/* We have pre-allocated space; use it */
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array->val--;
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array->val[0] = heim_retain(object);
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array->len++;
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return 0;
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}
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if (trailing > (array->len + 1)) {
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/*
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* We must have prepending to, and deleting at index
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* array->len - 1 from this array a lot; don't want to grow
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* forever!
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*/
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(void) memmove(&array->allocated[array->len], &array->val[0],
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array->len * sizeof(array->val[0]));
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array->val = &array->allocated[array->len];
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/* We have pre-allocated space; use it */
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array->val--;
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array->val[0] = heim_retain(object);
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array->len++;
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return 0;
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}
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/* Pre-allocate extra .5 times number of used slots */
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new_len = array->len + 1 + trailing + (array->len >> 1);
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ptr = realloc(array->allocated, new_len * sizeof(array->val[0]));
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if (ptr == NULL)
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return ENOMEM;
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(void) memmove(&ptr[1], &ptr[0], array->len * sizeof (array->val[0]));
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array->allocated = ptr;
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array->allocated_len = new_len;
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array->val = &ptr[0];
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array->val[0] = heim_retain(object);
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array->len++;
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return 0;
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}
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/**
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* Insert an object at a given index in an array
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*
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* @param array array to add too
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* @param idx index where to add element (-1 == append, -2 next to last, ...)
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* @param object the object to add
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*
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* @return zero if added, errno otherwise
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*/
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int
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heim_array_insert_value(heim_array_t array, size_t idx, heim_object_t object)
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{
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int ret;
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if (idx == 0)
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return heim_array_prepend_value(array, object);
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else if (idx > array->len)
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heim_abort("index too large");
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/*
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* We cheat: append this element then rotate elements around so we
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* have this new element at the desired location, unless we're truly
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* appending the new element. This means reusing array growth in
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* heim_array_append_value() instead of duplicating that here.
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*/
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ret = heim_array_append_value(array, object);
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if (ret != 0 || idx == (array->len - 1))
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return ret;
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/*
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* Shift to the right by one all the elements after idx, then set
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* [idx] to the new object.
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*/
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(void) memmove(&array->val[idx + 1], &array->val[idx],
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(array->len - idx - 1) * sizeof(array->val[0]));
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array->val[idx] = heim_retain(object);
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return 0;
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}
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/**
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* Iterate over all objects in array
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*
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* @param array array to iterate over
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* @param ctx context passed to fn
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* @param fn function to call on each object
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*/
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void
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heim_array_iterate_f(heim_array_t array, void *ctx, heim_array_iterator_f_t fn)
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{
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size_t n;
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int stop = 0;
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for (n = 0; n < array->len; n++) {
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fn(array->val[n], ctx, &stop);
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if (stop)
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return;
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}
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}
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#ifdef __BLOCKS__
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/**
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* Iterate over all objects in array
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*
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* @param array array to iterate over
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* @param fn block to call on each object
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*/
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void
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heim_array_iterate(heim_array_t array, void (^fn)(heim_object_t, int *))
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{
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size_t n;
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int stop = 0;
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for (n = 0; n < array->len; n++) {
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fn(array->val[n], &stop);
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if (stop)
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return;
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}
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}
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#endif
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/**
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* Iterate over all objects in array, backwards
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*
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* @param array array to iterate over
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* @param ctx context passed to fn
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* @param fn function to call on each object
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*/
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void
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heim_array_iterate_reverse_f(heim_array_t array, void *ctx, heim_array_iterator_f_t fn)
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{
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size_t n;
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int stop = 0;
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for (n = array->len; n > 0; n--) {
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fn(array->val[n - 1], ctx, &stop);
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if (stop)
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return;
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}
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}
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#ifdef __BLOCKS__
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/**
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* Iterate over all objects in array, backwards
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*
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* @param array array to iterate over
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* @param fn block to call on each object
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*/
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void
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heim_array_iterate_reverse(heim_array_t array, void (^fn)(heim_object_t, int *))
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{
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size_t n;
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int stop = 0;
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for (n = array->len; n > 0; n--) {
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fn(array->val[n - 1], &stop);
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if (stop)
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return;
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}
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}
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#endif
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/**
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* Get length of array
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*
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* @param array array to get length of
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*
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* @return length of array
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*/
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size_t
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heim_array_get_length(heim_array_t array)
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{
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return array->len;
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}
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/**
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* Get value of element at array index
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*
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* @param array array copy object from
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* @param idx index of object, 0 based, must be smaller then
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* heim_array_get_length()
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*
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* @return a not-retained copy of the object
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*/
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heim_object_t
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heim_array_get_value(heim_array_t array, size_t idx)
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{
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if (idx >= array->len)
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heim_abort("index too large");
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return array->val[idx];
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}
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/**
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* Get value of element at array index
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*
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* @param array array copy object from
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* @param idx index of object, 0 based, must be smaller then
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* heim_array_get_length()
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*
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* @return a retained copy of the object
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*/
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heim_object_t
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heim_array_copy_value(heim_array_t array, size_t idx)
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{
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if (idx >= array->len)
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heim_abort("index too large");
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return heim_retain(array->val[idx]);
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}
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/**
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* Set value at array index
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*
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* @param array array copy object from
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* @param idx index of object, 0 based, must be smaller then
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* heim_array_get_length()
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* @param value value to set
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*
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*/
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void
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heim_array_set_value(heim_array_t array, size_t idx, heim_object_t value)
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{
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if (idx >= array->len)
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heim_abort("index too large");
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heim_release(array->val[idx]);
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array->val[idx] = heim_retain(value);
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}
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/**
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* Delete value at idx
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*
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* @param array the array to modify
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* @param idx the key to delete
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*/
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void
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heim_array_delete_value(heim_array_t array, size_t idx)
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{
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heim_object_t obj;
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if (idx >= array->len)
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heim_abort("index too large");
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obj = array->val[idx];
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array->len--;
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/*
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* Deleting the first or last elements is cheap, as we leave
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* allocated space for opportunistic reuse later; no realloc(), no
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* memmove(). All others require a memmove().
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*
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* If we ever need to optimize deletion of non-last/ non-first
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* element we can use a tagged object type to signify "deleted
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* value" so we can leave holes in the array, avoid memmove()s on
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* delete, and opportunistically re-use those holes on insert.
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*/
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if (idx == 0)
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array->val++;
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else if (idx < array->len)
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(void) memmove(&array->val[idx], &array->val[idx + 1],
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(array->len - idx) * sizeof(array->val[0]));
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heim_release(obj);
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}
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/**
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* Filter out entres of array when function return true
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*
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* @param array the array to modify
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* @param fn filter function
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*/
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void
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heim_array_filter_f(heim_array_t array, void *ctx, heim_array_filter_f_t fn)
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{
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size_t n = 0;
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while (n < array->len) {
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if (fn(array->val[n], ctx)) {
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heim_array_delete_value(array, n);
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} else {
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n++;
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}
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}
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}
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#ifdef __BLOCKS__
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/**
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* Filter out entres of array when block return true
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*
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* @param array the array to modify
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* @param block filter block
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*/
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void
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heim_array_filter(heim_array_t array, int (^block)(heim_object_t))
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{
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size_t n = 0;
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while (n < array->len) {
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if (block(array->val[n])) {
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heim_array_delete_value(array, n);
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} else {
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n++;
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}
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}
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}
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#endif /* __BLOCKS__ */
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