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ee56d8bca5
* lib/gl_array_omap.c (struct gl_omap_impl): Mark the pairs field as counted_by count. Swap these fields (needed for clang). (gl_array_nx_add_at): Increase map->count before writing into map->pairs.
382 lines
10 KiB
C
382 lines
10 KiB
C
/* Ordered map data type implemented by an array.
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Copyright (C) 2006-2007, 2009-2026 Free Software Foundation, Inc.
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Written by Bruno Haible <bruno@clisp.org>, 2018.
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This file is free software: you can redistribute it and/or modify
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it under the terms of the GNU Lesser General Public License as
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published by the Free Software Foundation; either version 2.1 of the
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License, or (at your option) any later version.
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This file is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public License
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along with this program. If not, see <https://www.gnu.org/licenses/>. */
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#include <config.h>
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/* Specification. */
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#include "gl_array_omap.h"
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#include <stdlib.h>
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/* Checked size_t computations. */
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#include "xsize.h"
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/* -------------------------- gl_omap_t Data Type -------------------------- */
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struct pair
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{
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const void *key;
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const void *value;
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};
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/* Concrete gl_omap_impl type, valid for this file only. */
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struct gl_omap_impl
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{
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struct gl_omap_impl_base base;
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size_t count;
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/* An array of ALLOCATED pairs, of which the first COUNT are used.
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0 <= COUNT <= ALLOCATED. */
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struct pair *pairs
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_GL_ATTRIBUTE_COUNTED_BY (count);
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size_t allocated;
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};
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static gl_omap_t
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gl_array_nx_create_empty (gl_omap_implementation_t implementation,
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gl_mapkey_compar_fn compar_fn,
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gl_mapkey_dispose_fn kdispose_fn,
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gl_mapvalue_dispose_fn vdispose_fn)
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{
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struct gl_omap_impl *map =
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(struct gl_omap_impl *) malloc (sizeof (struct gl_omap_impl));
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if (map == NULL)
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return NULL;
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map->base.vtable = implementation;
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map->base.compar_fn = compar_fn;
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map->base.kdispose_fn = kdispose_fn;
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map->base.vdispose_fn = vdispose_fn;
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map->pairs = NULL;
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map->count = 0;
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map->allocated = 0;
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return map;
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}
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static size_t _GL_ATTRIBUTE_PURE
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gl_array_size (gl_omap_t map)
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{
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return map->count;
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}
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static size_t _GL_ATTRIBUTE_PURE
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gl_array_indexof (gl_omap_t map, const void *key)
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{
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size_t count = map->count;
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if (count > 0)
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{
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gl_mapkey_compar_fn compar = map->base.compar_fn;
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size_t low = 0;
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size_t high = count;
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/* At each loop iteration, low < high; for indices < low the values
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are smaller than KEY; for indices >= high the values are greater
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than KEY. So, if the key occurs in the map, it is at
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low <= position < high. */
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do
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{
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size_t mid = low + (high - low) / 2; /* low <= mid < high */
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int cmp = (compar != NULL
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? compar (map->pairs[mid].key, key)
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: (map->pairs[mid].key > key ? 1 :
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map->pairs[mid].key < key ? -1 : 0));
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if (cmp < 0)
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low = mid + 1;
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else if (cmp > 0)
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high = mid;
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else /* cmp == 0 */
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/* We have a key equal to KEY at index MID. */
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return mid;
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}
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while (low < high);
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}
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return (size_t)(-1);
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}
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static bool _GL_ATTRIBUTE_PURE
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gl_array_search (gl_omap_t map, const void *key, const void **valuep)
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{
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size_t index = gl_array_indexof (map, key);
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if (index != (size_t)(-1))
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{
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*valuep = map->pairs[index].value;
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return true;
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}
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else
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return false;
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}
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static bool _GL_ATTRIBUTE_PURE
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gl_array_search_atleast (gl_omap_t map,
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gl_mapkey_threshold_fn threshold_fn,
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const void *threshold,
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const void **keyp, const void **valuep)
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{
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size_t count = map->count;
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if (count > 0)
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{
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size_t low = 0;
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size_t high = count;
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/* At each loop iteration, low < high; for indices < low the values are
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smaller than THRESHOLD; for indices >= high the values are nonexistent.
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So, if a key >= THRESHOLD occurs in the map, it is at
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low <= position < high. */
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do
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{
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size_t mid = low + (high - low) / 2; /* low <= mid < high */
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if (! threshold_fn (map->pairs[mid].key, threshold))
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low = mid + 1;
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else
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{
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/* We have a key >= THRESHOLD at index MID. But we need the
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minimal such index. */
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high = mid;
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/* At each loop iteration, low <= high and
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compar (map->pairs[high].key, value) >= 0,
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and we know that the first occurrence of the key is at
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low <= position <= high. */
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while (low < high)
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{
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size_t mid2 = low + (high - low) / 2; /* low <= mid2 < high */
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if (! threshold_fn (map->pairs[mid2].key, threshold))
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low = mid2 + 1;
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else
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high = mid2;
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}
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*keyp = map->pairs[low].key;
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*valuep = map->pairs[low].value;
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return true;
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}
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}
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while (low < high);
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}
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return false;
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}
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/* Ensure that map->allocated > map->count.
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Return 0 upon success, -1 upon out-of-memory. */
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static int
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grow (gl_omap_t map)
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{
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size_t new_allocated = xtimes (map->allocated, 2);
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new_allocated = xsum (new_allocated, 1);
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size_t memory_size = xtimes (new_allocated, sizeof (struct pair));
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if (size_overflow_p (memory_size))
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/* Overflow, would lead to out of memory. */
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return -1;
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struct pair *memory = (struct pair *) realloc (map->pairs, memory_size);
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if (memory == NULL)
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/* Out of memory. */
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return -1;
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map->pairs = memory;
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map->allocated = new_allocated;
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return 0;
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}
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/* Add the given pair (KEY, VALUE) at the given position,
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0 <= position <= gl_omap_size (map).
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Return 1 upon success, -1 upon out-of-memory. */
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static int
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gl_array_nx_add_at (gl_omap_t map, size_t position,
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const void *key, const void *value)
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{
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size_t count = map->count;
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if (count == map->allocated)
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if (grow (map) < 0)
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return -1;
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struct pair *pairs = map->pairs;
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map->count = count + 1;
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for (size_t i = count; i > position; i--)
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pairs[i] = pairs[i - 1];
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pairs[position].key = key;
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pairs[position].value = value;
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return 1;
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}
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static int
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gl_array_nx_getput (gl_omap_t map, const void *key, const void *value,
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const void **oldvaluep)
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{
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size_t count = map->count;
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size_t low = 0;
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if (count > 0)
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{
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gl_mapkey_compar_fn compar = map->base.compar_fn;
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size_t high = count;
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/* At each loop iteration, low < high; for indices < low the keys
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are smaller than KEY; for indices >= high the keys are greater
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than KEY. So, if the key occurs in the map, it is at
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low <= position < high. */
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do
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{
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size_t mid = low + (high - low) / 2; /* low <= mid < high */
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int cmp = (compar != NULL
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? compar (map->pairs[mid].key, key)
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: (map->pairs[mid].key > key ? 1 :
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map->pairs[mid].key < key ? -1 : 0));
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if (cmp < 0)
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low = mid + 1;
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else if (cmp > 0)
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high = mid;
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else /* cmp == 0 */
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{
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*oldvaluep = map->pairs[mid].value;
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map->pairs[mid].value = value;
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return 0;
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}
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}
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while (low < high);
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}
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return gl_array_nx_add_at (map, low, key, value);
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}
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/* Remove the pair at the given position,
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0 <= position < gl_omap_size (map). */
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static void
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gl_array_remove_at (gl_omap_t map, size_t position)
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{
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size_t count = map->count;
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struct pair *pairs = map->pairs;
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if (map->base.kdispose_fn != NULL)
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map->base.kdispose_fn (pairs[position].key);
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for (size_t i = position + 1; i < count; i++)
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pairs[i - 1] = pairs[i];
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map->count = count - 1;
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}
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static bool
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gl_array_getremove (gl_omap_t map, const void *key, const void **oldvaluep)
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{
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size_t index = gl_array_indexof (map, key);
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if (index != (size_t)(-1))
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{
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*oldvaluep = map->pairs[index].value;
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gl_array_remove_at (map, index);
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return true;
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}
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else
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return false;
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}
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static void
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gl_array_free (gl_omap_t map)
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{
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if (map->pairs != NULL)
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{
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if (map->base.kdispose_fn != NULL || map->base.vdispose_fn != NULL)
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{
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size_t count = map->count;
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if (count > 0)
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{
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gl_mapkey_dispose_fn kdispose = map->base.kdispose_fn;
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gl_mapvalue_dispose_fn vdispose = map->base.vdispose_fn;
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struct pair *pairs = map->pairs;
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do
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{
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if (vdispose)
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vdispose (pairs->value);
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if (kdispose)
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kdispose (pairs->key);
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pairs++;
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}
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while (--count > 0);
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}
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}
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free (map->pairs);
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}
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free (map);
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}
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/* ---------------------- gl_omap_iterator_t Data Type ---------------------- */
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static gl_omap_iterator_t _GL_ATTRIBUTE_PURE
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gl_array_iterator (gl_omap_t map)
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{
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gl_omap_iterator_t result;
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result.vtable = map->base.vtable;
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result.map = map;
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result.count = map->count;
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result.p = map->pairs + 0;
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result.q = map->pairs + map->count;
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#if defined GCC_LINT || defined lint
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result.i = 0;
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result.j = 0;
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#endif
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return result;
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}
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static bool
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gl_array_iterator_next (gl_omap_iterator_t *iterator,
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const void **keyp, const void **valuep)
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{
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gl_omap_t map = iterator->map;
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if (iterator->count != map->count)
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{
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if (iterator->count != map->count + 1)
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/* Concurrent modifications were done on the map. */
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abort ();
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/* The last returned pair was removed. */
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iterator->count--;
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iterator->p = (struct pair *) iterator->p - 1;
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iterator->q = (struct pair *) iterator->q - 1;
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}
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if (iterator->p < iterator->q)
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{
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struct pair *p = (struct pair *) iterator->p;
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*keyp = p->key;
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*valuep = p->value;
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iterator->p = p + 1;
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return true;
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}
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else
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return false;
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}
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static void
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gl_array_iterator_free (gl_omap_iterator_t *_GL_UNNAMED (iterator))
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{
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}
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const struct gl_omap_implementation gl_array_omap_implementation =
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{
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gl_array_nx_create_empty,
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gl_array_size,
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gl_array_search,
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gl_array_search_atleast,
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gl_array_nx_getput,
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gl_array_getremove,
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gl_array_free,
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gl_array_iterator,
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gl_array_iterator_next,
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gl_array_iterator_free
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};
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