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prop_dictionary.c revision 1.17
      1 /*	$NetBSD: prop_dictionary.c,v 1.17 2007/07/16 19:20:17 joerg Exp $	*/
      2 
      3 /*-
      4  * Copyright (c) 2006 The NetBSD Foundation, Inc.
      5  * All rights reserved.
      6  *
      7  * This code is derived from software contributed to The NetBSD Foundation
      8  * by Jason R. Thorpe.
      9  *
     10  * Redistribution and use in source and binary forms, with or without
     11  * modification, are permitted provided that the following conditions
     12  * are met:
     13  * 1. Redistributions of source code must retain the above copyright
     14  *    notice, this list of conditions and the following disclaimer.
     15  * 2. Redistributions in binary form must reproduce the above copyright
     16  *    notice, this list of conditions and the following disclaimer in the
     17  *    documentation and/or other materials provided with the distribution.
     18  * 3. All advertising materials mentioning features or use of this software
     19  *    must display the following acknowledgement:
     20  *      This product includes software developed by the NetBSD
     21  *      Foundation, Inc. and its contributors.
     22  * 4. Neither the name of The NetBSD Foundation nor the names of its
     23  *    contributors may be used to endorse or promote products derived
     24  *    from this software without specific prior written permission.
     25  *
     26  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     27  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     28  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     29  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     30  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     31  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     32  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     33  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     34  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     35  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     36  * POSSIBILITY OF SUCH DAMAGE.
     37  */
     38 
     39 #include <prop/prop_array.h>
     40 #include <prop/prop_dictionary.h>
     41 #include <prop/prop_string.h>
     42 #include "prop_object_impl.h"
     43 #include "prop_rb_impl.h"
     44 
     45 #if !defined(_KERNEL) && !defined(_STANDALONE)
     46 #include <errno.h>
     47 #endif
     48 
     49 /*
     50  * We implement these like arrays, but we keep them sorted by key.
     51  * This allows us to binary-search as well as keep externalized output
     52  * sane-looking for human eyes.
     53  */
     54 
     55 #define	EXPAND_STEP		16
     56 
     57 /*
     58  * prop_dictionary_keysym_t is allocated with space at the end to hold the
     59  * key.  This must be a regular object so that we can maintain sane iterator
     60  * semantics -- we don't want to require that the caller release the result
     61  * of prop_object_iterator_next().
     62  *
     63  * We'd like to have some small'ish keysym objects for up-to-16 characters
     64  * in a key, some for up-to-32 characters in a key, and then a final bucket
     65  * for up-to-128 characters in a key (not including NUL).  Keys longer than
     66  * 128 characters are not allowed.
     67  */
     68 struct _prop_dictionary_keysym {
     69 	struct _prop_object		pdk_obj;
     70 	size_t				pdk_size;
     71 	struct rb_node			pdk_link;
     72 	char 				pdk_key[1];
     73 	/* actually variable length */
     74 };
     75 
     76 #define	RBNODE_TO_PDK(n)						\
     77 	((struct _prop_dictionary_keysym *)				\
     78 	 ((uintptr_t)n - offsetof(struct _prop_dictionary_keysym, pdk_link)))
     79 
     80 	/* pdk_key[1] takes care of the NUL */
     81 #define	PDK_SIZE_16		(sizeof(struct _prop_dictionary_keysym) + 16)
     82 #define	PDK_SIZE_32		(sizeof(struct _prop_dictionary_keysym) + 32)
     83 #define	PDK_SIZE_128		(sizeof(struct _prop_dictionary_keysym) + 128)
     84 
     85 #define	PDK_MAXKEY		128
     86 
     87 _PROP_POOL_INIT(_prop_dictionary_keysym16_pool, PDK_SIZE_16, "pdict16")
     88 _PROP_POOL_INIT(_prop_dictionary_keysym32_pool, PDK_SIZE_32, "pdict32")
     89 _PROP_POOL_INIT(_prop_dictionary_keysym128_pool, PDK_SIZE_128, "pdict128")
     90 
     91 struct _prop_dict_entry {
     92 	prop_dictionary_keysym_t	pde_key;
     93 	prop_object_t			pde_objref;
     94 };
     95 
     96 struct _prop_dictionary {
     97 	struct _prop_object	pd_obj;
     98 	_PROP_RWLOCK_DECL(pd_rwlock)
     99 	struct _prop_dict_entry	*pd_array;
    100 	unsigned int		pd_capacity;
    101 	unsigned int		pd_count;
    102 	int			pd_flags;
    103 
    104 	uint32_t		pd_version;
    105 };
    106 
    107 #define	PD_F_IMMUTABLE		0x01	/* dictionary is immutable */
    108 
    109 _PROP_POOL_INIT(_prop_dictionary_pool, sizeof(struct _prop_dictionary),
    110 		"propdict")
    111 _PROP_MALLOC_DEFINE(M_PROP_DICT, "prop dictionary",
    112 		    "property dictionary container object")
    113 
    114 static void		_prop_dictionary_free(void *);
    115 static boolean_t	_prop_dictionary_externalize(
    116 				struct _prop_object_externalize_context *,
    117 				void *);
    118 static boolean_t	_prop_dictionary_equals(void *, void *);
    119 
    120 static const struct _prop_object_type _prop_object_type_dictionary = {
    121 	.pot_type	=	PROP_TYPE_DICTIONARY,
    122 	.pot_free	=	_prop_dictionary_free,
    123 	.pot_extern	=	_prop_dictionary_externalize,
    124 	.pot_equals	=	_prop_dictionary_equals,
    125 };
    126 
    127 static void		_prop_dict_keysym_free(void *);
    128 static boolean_t	_prop_dict_keysym_externalize(
    129 				struct _prop_object_externalize_context *,
    130 				void *);
    131 static boolean_t	_prop_dict_keysym_equals(void *, void *);
    132 
    133 static const struct _prop_object_type _prop_object_type_dict_keysym = {
    134 	.pot_type	=	PROP_TYPE_DICT_KEYSYM,
    135 	.pot_free	=	_prop_dict_keysym_free,
    136 	.pot_extern	=	_prop_dict_keysym_externalize,
    137 	.pot_equals	=	_prop_dict_keysym_equals,
    138 };
    139 
    140 #define	prop_object_is_dictionary(x)		\
    141 	((x) != NULL && (x)->pd_obj.po_type == &_prop_object_type_dictionary)
    142 #define	prop_object_is_dictionary_keysym(x)	\
    143 	((x) != NULL && (x)->pdk_obj.po_type == &_prop_object_type_dict_keysym)
    144 
    145 #define	prop_dictionary_is_immutable(x)		\
    146 				(((x)->pd_flags & PD_F_IMMUTABLE) != 0)
    147 
    148 struct _prop_dictionary_iterator {
    149 	struct _prop_object_iterator pdi_base;
    150 	unsigned int		pdi_index;
    151 };
    152 
    153 /*
    154  * Dictionary key symbols are immutable, and we are likely to have many
    155  * duplicated key symbols.  So, to save memory, we unique'ify key symbols
    156  * so we only have to have one copy of each string.
    157  */
    158 
    159 static int
    160 _prop_dict_keysym_rb_compare_nodes(const struct rb_node *n1,
    161 				   const struct rb_node *n2)
    162 {
    163 	const prop_dictionary_keysym_t pdk1 = RBNODE_TO_PDK(n1);
    164 	const prop_dictionary_keysym_t pdk2 = RBNODE_TO_PDK(n2);
    165 
    166 	return (strcmp(pdk1->pdk_key, pdk2->pdk_key));
    167 }
    168 
    169 static int
    170 _prop_dict_keysym_rb_compare_key(const struct rb_node *n,
    171 				 const void *v)
    172 {
    173 	const prop_dictionary_keysym_t pdk = RBNODE_TO_PDK(n);
    174 	const char *cp = v;
    175 
    176 	return (strcmp(pdk->pdk_key, cp));
    177 }
    178 
    179 static const struct rb_tree_ops _prop_dict_keysym_rb_tree_ops = {
    180 	.rbto_compare_nodes = _prop_dict_keysym_rb_compare_nodes,
    181 	.rbto_compare_key   = _prop_dict_keysym_rb_compare_key,
    182 };
    183 
    184 static struct rb_tree _prop_dict_keysym_tree;
    185 static boolean_t _prop_dict_keysym_tree_initialized;
    186 
    187 _PROP_MUTEX_DECL_STATIC(_prop_dict_keysym_tree_mutex)
    188 
    189 static void
    190 _prop_dict_keysym_put(prop_dictionary_keysym_t pdk)
    191 {
    192 
    193 	if (pdk->pdk_size <= PDK_SIZE_16)
    194 		_PROP_POOL_PUT(_prop_dictionary_keysym16_pool, pdk);
    195 	else if (pdk->pdk_size <= PDK_SIZE_32)
    196 		_PROP_POOL_PUT(_prop_dictionary_keysym32_pool, pdk);
    197 	else {
    198 		_PROP_ASSERT(pdk->pdk_size <= PDK_SIZE_128);
    199 		_PROP_POOL_PUT(_prop_dictionary_keysym128_pool, pdk);
    200 	}
    201 }
    202 
    203 static void
    204 _prop_dict_keysym_free(void *v)
    205 {
    206 	prop_dictionary_keysym_t pdk = v;
    207 
    208 	_PROP_MUTEX_LOCK(_prop_dict_keysym_tree_mutex);
    209 	_prop_rb_tree_remove_node(&_prop_dict_keysym_tree, &pdk->pdk_link);
    210 	_PROP_MUTEX_UNLOCK(_prop_dict_keysym_tree_mutex);
    211 
    212 	_prop_dict_keysym_put(pdk);
    213 }
    214 
    215 static boolean_t
    216 _prop_dict_keysym_externalize(struct _prop_object_externalize_context *ctx,
    217 			     void *v)
    218 {
    219 	prop_dictionary_keysym_t pdk = v;
    220 
    221 	/* We externalize these as strings, and they're never empty. */
    222 
    223 	_PROP_ASSERT(pdk->pdk_key[0] != '\0');
    224 
    225 	if (_prop_object_externalize_start_tag(ctx, "string") == FALSE ||
    226 	    _prop_object_externalize_append_encoded_cstring(ctx,
    227 						pdk->pdk_key) == FALSE ||
    228 	    _prop_object_externalize_end_tag(ctx, "string") == FALSE)
    229 		return (FALSE);
    230 
    231 	return (TRUE);
    232 }
    233 
    234 static boolean_t
    235 _prop_dict_keysym_equals(void *v1, void *v2)
    236 {
    237 	prop_dictionary_keysym_t pdk1 = v1;
    238 	prop_dictionary_keysym_t pdk2 = v2;
    239 
    240 	if (! (prop_object_is_dictionary_keysym(pdk1) &&
    241 	       prop_object_is_dictionary_keysym(pdk2)))
    242 		return (FALSE);
    243 
    244 	/*
    245 	 * There is only ever one copy of a keysym at any given time,
    246 	 * so we can reduce this to a simple pointer equality check.
    247 	 */
    248 	return (pdk1 == pdk2);
    249 }
    250 
    251 static prop_dictionary_keysym_t
    252 _prop_dict_keysym_alloc(const char *key)
    253 {
    254 	prop_dictionary_keysym_t opdk, pdk;
    255 	const struct rb_node *n;
    256 	size_t size;
    257 
    258 	/*
    259 	 * Check to see if this already exists in the tree.  If it does,
    260 	 * we just retain it and return it.
    261 	 */
    262 	_PROP_MUTEX_LOCK(_prop_dict_keysym_tree_mutex);
    263 	if (! _prop_dict_keysym_tree_initialized) {
    264 		_prop_rb_tree_init(&_prop_dict_keysym_tree,
    265 				   &_prop_dict_keysym_rb_tree_ops);
    266 		_prop_dict_keysym_tree_initialized = TRUE;
    267 	} else {
    268 		n = _prop_rb_tree_find(&_prop_dict_keysym_tree, key);
    269 		if (n != NULL) {
    270 			opdk = RBNODE_TO_PDK(n);
    271 			prop_object_retain(opdk);
    272 			_PROP_MUTEX_UNLOCK(_prop_dict_keysym_tree_mutex);
    273 			return (opdk);
    274 		}
    275 	}
    276 	_PROP_MUTEX_UNLOCK(_prop_dict_keysym_tree_mutex);
    277 
    278 	/*
    279 	 * Not in the tree.  Create it now.
    280 	 */
    281 
    282 	size = sizeof(*pdk) + strlen(key) /* pdk_key[1] covers the NUL */;
    283 
    284 	if (size <= PDK_SIZE_16)
    285 		pdk = _PROP_POOL_GET(_prop_dictionary_keysym16_pool);
    286 	else if (size <= PDK_SIZE_32)
    287 		pdk = _PROP_POOL_GET(_prop_dictionary_keysym32_pool);
    288 	else if (size <= PDK_SIZE_128)
    289 		pdk = _PROP_POOL_GET(_prop_dictionary_keysym128_pool);
    290 	else
    291 		pdk = NULL;	/* key too long */
    292 
    293 	if (pdk == NULL)
    294 		return (NULL);
    295 
    296 	_prop_object_init(&pdk->pdk_obj, &_prop_object_type_dict_keysym);
    297 
    298 	strcpy(pdk->pdk_key, key);
    299 	pdk->pdk_size = size;
    300 
    301 	/*
    302 	 * We dropped the mutex when we allocated the new object, so
    303 	 * we have to check again if it is in the tree.
    304 	 */
    305 	_PROP_MUTEX_LOCK(_prop_dict_keysym_tree_mutex);
    306 	n = _prop_rb_tree_find(&_prop_dict_keysym_tree, key);
    307 	if (n != NULL) {
    308 		opdk = RBNODE_TO_PDK(n);
    309 		prop_object_retain(opdk);
    310 		_PROP_MUTEX_UNLOCK(_prop_dict_keysym_tree_mutex);
    311 		_prop_dict_keysym_put(pdk);
    312 		return (opdk);
    313 	}
    314 	_prop_rb_tree_insert_node(&_prop_dict_keysym_tree, &pdk->pdk_link);
    315 	_PROP_MUTEX_UNLOCK(_prop_dict_keysym_tree_mutex);
    316 	return (pdk);
    317 }
    318 
    319 static void
    320 _prop_dictionary_free(void *v)
    321 {
    322 	prop_dictionary_t pd = v;
    323 	prop_dictionary_keysym_t pdk;
    324 	prop_object_t po;
    325 	unsigned int idx;
    326 
    327 	_PROP_ASSERT(pd->pd_count <= pd->pd_capacity);
    328 	_PROP_ASSERT((pd->pd_capacity == 0 && pd->pd_array == NULL) ||
    329 		     (pd->pd_capacity != 0 && pd->pd_array != NULL));
    330 
    331 	for (idx = 0; idx < pd->pd_count; idx++) {
    332 		pdk = pd->pd_array[idx].pde_key;
    333 		_PROP_ASSERT(pdk != NULL);
    334 		prop_object_release(pdk);
    335 		po = pd->pd_array[idx].pde_objref;
    336 		_PROP_ASSERT(po != NULL);
    337 		prop_object_release(po);
    338 	}
    339 
    340 	if (pd->pd_array != NULL)
    341 		_PROP_FREE(pd->pd_array, M_PROP_DICT);
    342 
    343 	_PROP_RWLOCK_DESTROY(pd->pd_rwlock);
    344 
    345 	_PROP_POOL_PUT(_prop_dictionary_pool, pd);
    346 }
    347 
    348 static boolean_t
    349 _prop_dictionary_externalize(struct _prop_object_externalize_context *ctx,
    350 			     void *v)
    351 {
    352 	prop_dictionary_t pd = v;
    353 	prop_dictionary_keysym_t pdk;
    354 	struct _prop_object *po;
    355 	prop_object_iterator_t pi;
    356 	unsigned int i;
    357 	boolean_t rv = FALSE;
    358 
    359 	_PROP_RWLOCK_RDLOCK(pd->pd_rwlock);
    360 
    361 	if (pd->pd_count == 0) {
    362 		_PROP_RWLOCK_UNLOCK(pd->pd_rwlock);
    363 		return (_prop_object_externalize_empty_tag(ctx, "dict"));
    364 	}
    365 
    366 	if (_prop_object_externalize_start_tag(ctx, "dict") == FALSE ||
    367 	    _prop_object_externalize_append_char(ctx, '\n') == FALSE)
    368 		goto out;
    369 
    370 	pi = prop_dictionary_iterator(pd);
    371 	if (pi == NULL)
    372 		goto out;
    373 
    374 	ctx->poec_depth++;
    375 	_PROP_ASSERT(ctx->poec_depth != 0);
    376 
    377 	while ((pdk = prop_object_iterator_next(pi)) != NULL) {
    378 		po = prop_dictionary_get_keysym(pd, pdk);
    379 		if (po == NULL ||
    380 		    _prop_object_externalize_start_tag(ctx, "key") == FALSE ||
    381 		    _prop_object_externalize_append_encoded_cstring(ctx,
    382 						   pdk->pdk_key) == FALSE ||
    383 		    _prop_object_externalize_end_tag(ctx, "key") == FALSE ||
    384 		    (*po->po_type->pot_extern)(ctx, po) == FALSE) {
    385 			prop_object_iterator_release(pi);
    386 			goto out;
    387 		}
    388 	}
    389 
    390 	prop_object_iterator_release(pi);
    391 
    392 	ctx->poec_depth--;
    393 	for (i = 0; i < ctx->poec_depth; i++) {
    394 		if (_prop_object_externalize_append_char(ctx, '\t') == FALSE)
    395 			goto out;
    396 	}
    397 	if (_prop_object_externalize_end_tag(ctx, "dict") == FALSE)
    398 		goto out;
    399 
    400 	rv = TRUE;
    401 
    402  out:
    403 	_PROP_RWLOCK_UNLOCK(pd->pd_rwlock);
    404 	return (rv);
    405 }
    406 
    407 static boolean_t
    408 _prop_dictionary_equals(void *v1, void *v2)
    409 {
    410 	prop_dictionary_t dict1 = v1;
    411 	prop_dictionary_t dict2 = v2;
    412 	const struct _prop_dict_entry *pde1, *pde2;
    413 	unsigned int idx;
    414 	boolean_t rv = FALSE;
    415 
    416 	if (! (prop_object_is_dictionary(dict1) &&
    417 	       prop_object_is_dictionary(dict2)))
    418 		return (FALSE);
    419 
    420 	if (dict1 == dict2)
    421 		return (TRUE);
    422 
    423 	if ((uintptr_t)dict1 < (uintptr_t)dict2) {
    424 		_PROP_RWLOCK_RDLOCK(dict1->pd_rwlock);
    425 		_PROP_RWLOCK_RDLOCK(dict2->pd_rwlock);
    426 	} else {
    427 		_PROP_RWLOCK_RDLOCK(dict2->pd_rwlock);
    428 		_PROP_RWLOCK_RDLOCK(dict1->pd_rwlock);
    429 	}
    430 
    431 	if (dict1->pd_count != dict2->pd_count)
    432 		goto out;
    433 
    434 	for (idx = 0; idx < dict1->pd_count; idx++) {
    435 		pde1 = &dict1->pd_array[idx];
    436 		pde2 = &dict2->pd_array[idx];
    437 
    438 		if (prop_dictionary_keysym_equals(pde1->pde_key,
    439 						  pde2->pde_key) == FALSE)
    440 			goto out;
    441 		if (prop_object_equals(pde1->pde_objref,
    442 				       pde2->pde_objref) == FALSE)
    443 			goto out;
    444 	}
    445 
    446 	rv = TRUE;
    447 
    448  out:
    449  	_PROP_RWLOCK_UNLOCK(dict1->pd_rwlock);
    450 	_PROP_RWLOCK_UNLOCK(dict2->pd_rwlock);
    451 	return (rv);
    452 }
    453 
    454 static prop_dictionary_t
    455 _prop_dictionary_alloc(unsigned int capacity)
    456 {
    457 	prop_dictionary_t pd;
    458 	struct _prop_dict_entry *array;
    459 
    460 	if (capacity != 0) {
    461 		array = _PROP_CALLOC(capacity * sizeof(*array), M_PROP_DICT);
    462 		if (array == NULL)
    463 			return (NULL);
    464 	} else
    465 		array = NULL;
    466 
    467 	pd = _PROP_POOL_GET(_prop_dictionary_pool);
    468 	if (pd != NULL) {
    469 		_prop_object_init(&pd->pd_obj, &_prop_object_type_dictionary);
    470 
    471 		_PROP_RWLOCK_INIT(pd->pd_rwlock);
    472 		pd->pd_array = array;
    473 		pd->pd_capacity = capacity;
    474 		pd->pd_count = 0;
    475 		pd->pd_flags = 0;
    476 
    477 		pd->pd_version = 0;
    478 	} else if (array != NULL)
    479 		_PROP_FREE(array, M_PROP_DICT);
    480 
    481 	return (pd);
    482 }
    483 
    484 static boolean_t
    485 _prop_dictionary_expand(prop_dictionary_t pd, unsigned int capacity)
    486 {
    487 	struct _prop_dict_entry *array, *oarray;
    488 
    489 	/*
    490 	 * Dictionary must be WRITE-LOCKED.
    491 	 */
    492 
    493 	oarray = pd->pd_array;
    494 
    495 	array = _PROP_CALLOC(capacity * sizeof(*array), M_PROP_DICT);
    496 	if (array == NULL)
    497 		return (FALSE);
    498 	if (oarray != NULL)
    499 		memcpy(array, oarray, pd->pd_capacity * sizeof(*array));
    500 	pd->pd_array = array;
    501 	pd->pd_capacity = capacity;
    502 
    503 	if (oarray != NULL)
    504 		_PROP_FREE(oarray, M_PROP_DICT);
    505 
    506 	return (TRUE);
    507 }
    508 
    509 static prop_object_t
    510 _prop_dictionary_iterator_next_object(void *v)
    511 {
    512 	struct _prop_dictionary_iterator *pdi = v;
    513 	prop_dictionary_t pd = pdi->pdi_base.pi_obj;
    514 	prop_dictionary_keysym_t pdk = NULL;
    515 
    516 	_PROP_ASSERT(prop_object_is_dictionary(pd));
    517 
    518 	_PROP_RWLOCK_RDLOCK(pd->pd_rwlock);
    519 
    520 	if (pd->pd_version != pdi->pdi_base.pi_version)
    521 		goto out;	/* dictionary changed during iteration */
    522 
    523 	_PROP_ASSERT(pdi->pdi_index <= pd->pd_count);
    524 
    525 	if (pdi->pdi_index == pd->pd_count)
    526 		goto out;	/* we've iterated all objects */
    527 
    528 	pdk = pd->pd_array[pdi->pdi_index].pde_key;
    529 	pdi->pdi_index++;
    530 
    531  out:
    532 	_PROP_RWLOCK_UNLOCK(pd->pd_rwlock);
    533 	return (pdk);
    534 }
    535 
    536 static void
    537 _prop_dictionary_iterator_reset(void *v)
    538 {
    539 	struct _prop_dictionary_iterator *pdi = v;
    540 	prop_dictionary_t pd = pdi->pdi_base.pi_obj;
    541 
    542 	_PROP_ASSERT(prop_object_is_dictionary(pd));
    543 
    544 	_PROP_RWLOCK_RDLOCK(pd->pd_rwlock);
    545 
    546 	pdi->pdi_index = 0;
    547 	pdi->pdi_base.pi_version = pd->pd_version;
    548 
    549 	_PROP_RWLOCK_UNLOCK(pd->pd_rwlock);
    550 }
    551 
    552 /*
    553  * prop_dictionary_create --
    554  *	Create a dictionary.
    555  */
    556 prop_dictionary_t
    557 prop_dictionary_create(void)
    558 {
    559 
    560 	return (_prop_dictionary_alloc(0));
    561 }
    562 
    563 /*
    564  * prop_dictionary_create_with_capacity --
    565  *	Create a dictionary with the capacity to store N objects.
    566  */
    567 prop_dictionary_t
    568 prop_dictionary_create_with_capacity(unsigned int capacity)
    569 {
    570 
    571 	return (_prop_dictionary_alloc(capacity));
    572 }
    573 
    574 /*
    575  * prop_dictionary_copy --
    576  *	Copy a dictionary.  The new dictionary has an initial capacity equal
    577  *	to the number of objects stored int the original dictionary.  The new
    578  *	dictionary contains refrences to the original dictionary's objects,
    579  *	not copies of those objects (i.e. a shallow copy).
    580  */
    581 prop_dictionary_t
    582 prop_dictionary_copy(prop_dictionary_t opd)
    583 {
    584 	prop_dictionary_t pd;
    585 	prop_dictionary_keysym_t pdk;
    586 	prop_object_t po;
    587 	unsigned int idx;
    588 
    589 	if (! prop_object_is_dictionary(opd))
    590 		return (NULL);
    591 
    592 	_PROP_RWLOCK_RDLOCK(opd->pd_rwlock);
    593 
    594 	pd = _prop_dictionary_alloc(opd->pd_count);
    595 	if (pd != NULL) {
    596 		for (idx = 0; idx < opd->pd_count; idx++) {
    597 			pdk = opd->pd_array[idx].pde_key;
    598 			po = opd->pd_array[idx].pde_objref;
    599 
    600 			prop_object_retain(pdk);
    601 			prop_object_retain(po);
    602 
    603 			pd->pd_array[idx].pde_key = pdk;
    604 			pd->pd_array[idx].pde_objref = po;
    605 		}
    606 		pd->pd_count = opd->pd_count;
    607 		pd->pd_flags = opd->pd_flags;
    608 	}
    609 	_PROP_RWLOCK_UNLOCK(opd->pd_rwlock);
    610 	return (pd);
    611 }
    612 
    613 /*
    614  * prop_dictionary_copy_mutable --
    615  *	Like prop_dictionary_copy(), but the resulting dictionary is
    616  *	mutable.
    617  */
    618 prop_dictionary_t
    619 prop_dictionary_copy_mutable(prop_dictionary_t opd)
    620 {
    621 	prop_dictionary_t pd;
    622 
    623 	if (! prop_object_is_dictionary(opd))
    624 		return (NULL);
    625 
    626 	pd = prop_dictionary_copy(opd);
    627 	if (pd != NULL)
    628 		pd->pd_flags &= ~PD_F_IMMUTABLE;
    629 
    630 	return (pd);
    631 }
    632 
    633 /*
    634  * prop_dictionary_count --
    635  *	Return the number of objects stored in the dictionary.
    636  */
    637 unsigned int
    638 prop_dictionary_count(prop_dictionary_t pd)
    639 {
    640 	unsigned int rv;
    641 
    642 	if (! prop_object_is_dictionary(pd))
    643 		return (0);
    644 
    645 	_PROP_RWLOCK_RDLOCK(pd->pd_rwlock);
    646 	rv = pd->pd_count;
    647 	_PROP_RWLOCK_UNLOCK(pd->pd_rwlock);
    648 
    649 	return (rv);
    650 }
    651 
    652 /*
    653  * prop_dictionary_ensure_capacity --
    654  *	Ensure that the dictionary has the capacity to store the specified
    655  *	total number of objects (including the objects already stored in
    656  *	the dictionary).
    657  */
    658 boolean_t
    659 prop_dictionary_ensure_capacity(prop_dictionary_t pd, unsigned int capacity)
    660 {
    661 	boolean_t rv;
    662 
    663 	if (! prop_object_is_dictionary(pd))
    664 		return (FALSE);
    665 
    666 	_PROP_RWLOCK_WRLOCK(pd->pd_rwlock);
    667 	if (capacity > pd->pd_capacity)
    668 		rv = _prop_dictionary_expand(pd, capacity);
    669 	else
    670 		rv = TRUE;
    671 	_PROP_RWLOCK_UNLOCK(pd->pd_rwlock);
    672 	return (rv);
    673 }
    674 
    675 /*
    676  * prop_dictionary_iterator --
    677  *	Return an iterator for the dictionary.  The dictionary is retained by
    678  *	the iterator.
    679  */
    680 prop_object_iterator_t
    681 prop_dictionary_iterator(prop_dictionary_t pd)
    682 {
    683 	struct _prop_dictionary_iterator *pdi;
    684 
    685 	if (! prop_object_is_dictionary(pd))
    686 		return (NULL);
    687 
    688 	pdi = _PROP_CALLOC(sizeof(*pdi), M_TEMP);
    689 	if (pdi == NULL)
    690 		return (NULL);
    691 	pdi->pdi_base.pi_next_object = _prop_dictionary_iterator_next_object;
    692 	pdi->pdi_base.pi_reset = _prop_dictionary_iterator_reset;
    693 	prop_object_retain(pd);
    694 	pdi->pdi_base.pi_obj = pd;
    695 	_prop_dictionary_iterator_reset(pdi);
    696 
    697 	return (&pdi->pdi_base);
    698 }
    699 
    700 /*
    701  * prop_dictionary_all_keys --
    702  *	Return an array containing a snapshot of all of the keys
    703  *	in the dictionary.
    704  */
    705 prop_array_t
    706 prop_dictionary_all_keys(prop_dictionary_t pd)
    707 {
    708 	prop_array_t array;
    709 	unsigned int idx;
    710 	boolean_t rv = TRUE;
    711 
    712 	if (! prop_object_is_dictionary(pd))
    713 		return (NULL);
    714 
    715 	/* There is no pressing need to lock the dictionary for this. */
    716 	array = prop_array_create_with_capacity(pd->pd_count);
    717 
    718 	_PROP_RWLOCK_RDLOCK(pd->pd_rwlock);
    719 
    720 	for (idx = 0; idx < pd->pd_count; idx++) {
    721 		rv = prop_array_add(array, pd->pd_array[idx].pde_key);
    722 		if (rv == FALSE)
    723 			break;
    724 	}
    725 
    726 	_PROP_RWLOCK_UNLOCK(pd->pd_rwlock);
    727 
    728 	if (rv == FALSE) {
    729 		prop_object_release(array);
    730 		array = NULL;
    731 	}
    732 	return (array);
    733 }
    734 
    735 static struct _prop_dict_entry *
    736 _prop_dict_lookup(prop_dictionary_t pd, const char *key,
    737 		  unsigned int *idxp)
    738 {
    739 	struct _prop_dict_entry *pde;
    740 	unsigned int base, idx, distance;
    741 	int res;
    742 
    743 	/*
    744 	 * Dictionary must be READ-LOCKED or WRITE-LOCKED.
    745 	 */
    746 
    747 	for (idx = 0, base = 0, distance = pd->pd_count; distance != 0;
    748 	     distance >>= 1) {
    749 		idx = base + (distance >> 1);
    750 		pde = &pd->pd_array[idx];
    751 		_PROP_ASSERT(pde->pde_key != NULL);
    752 		res = strcmp(key, pde->pde_key->pdk_key);
    753 		if (res == 0) {
    754 			if (idxp != NULL)
    755 				*idxp = idx;
    756 			return (pde);
    757 		}
    758 		if (res > 0) {	/* key > pdk_key: move right */
    759 			base = idx + 1;
    760 			distance--;
    761 		}		/* else move left */
    762 	}
    763 
    764 	/* idx points to the slot we looked at last. */
    765 	if (idxp != NULL)
    766 		*idxp = idx;
    767 	return (NULL);
    768 }
    769 
    770 /*
    771  * prop_dictionary_get --
    772  *	Return the object stored with specified key.
    773  */
    774 prop_object_t
    775 prop_dictionary_get(prop_dictionary_t pd, const char *key)
    776 {
    777 	const struct _prop_dict_entry *pde;
    778 	prop_object_t po = NULL;
    779 
    780 	if (! prop_object_is_dictionary(pd))
    781 		return (NULL);
    782 
    783 	_PROP_RWLOCK_RDLOCK(pd->pd_rwlock);
    784 	pde = _prop_dict_lookup(pd, key, NULL);
    785 	if (pde != NULL) {
    786 		_PROP_ASSERT(pde->pde_objref != NULL);
    787 		po = pde->pde_objref;
    788 	}
    789 	_PROP_RWLOCK_UNLOCK(pd->pd_rwlock);
    790 	return (po);
    791 }
    792 
    793 /*
    794  * prop_dictionary_get_keysym --
    795  *	Return the object stored at the location encoded by the keysym.
    796  */
    797 prop_object_t
    798 prop_dictionary_get_keysym(prop_dictionary_t pd, prop_dictionary_keysym_t pdk)
    799 {
    800 
    801 	if (! (prop_object_is_dictionary(pd) &&
    802 	       prop_object_is_dictionary_keysym(pdk)))
    803 		return (NULL);
    804 
    805 	return (prop_dictionary_get(pd, pdk->pdk_key));
    806 }
    807 
    808 /*
    809  * prop_dictionary_set --
    810  *	Store a reference to an object at with the specified key.
    811  *	If the key already exisit, the original object is released.
    812  */
    813 boolean_t
    814 prop_dictionary_set(prop_dictionary_t pd, const char *key, prop_object_t po)
    815 {
    816 	struct _prop_dict_entry *pde;
    817 	prop_dictionary_keysym_t pdk;
    818 	unsigned int idx;
    819 	boolean_t rv = FALSE;
    820 
    821 	if (! prop_object_is_dictionary(pd))
    822 		return (FALSE);
    823 
    824 	_PROP_ASSERT(pd->pd_count <= pd->pd_capacity);
    825 
    826 	if (prop_dictionary_is_immutable(pd))
    827 		return (FALSE);
    828 
    829 	_PROP_RWLOCK_WRLOCK(pd->pd_rwlock);
    830 
    831 	pde = _prop_dict_lookup(pd, key, &idx);
    832 	if (pde != NULL) {
    833 		prop_object_t opo = pde->pde_objref;
    834 		prop_object_retain(po);
    835 		pde->pde_objref = po;
    836 		prop_object_release(opo);
    837 		rv = TRUE;
    838 		goto out;
    839 	}
    840 
    841 	pdk = _prop_dict_keysym_alloc(key);
    842 	if (pdk == NULL)
    843 		goto out;
    844 
    845 	if (pd->pd_count == pd->pd_capacity &&
    846 	    _prop_dictionary_expand(pd,
    847 	    			    pd->pd_capacity + EXPAND_STEP) == FALSE) {
    848 		prop_object_release(pdk);
    849 	    	goto out;
    850 	}
    851 
    852 	/* At this point, the store will succeed. */
    853 	prop_object_retain(po);
    854 
    855 	if (pd->pd_count == 0) {
    856 		pd->pd_array[0].pde_key = pdk;
    857 		pd->pd_array[0].pde_objref = po;
    858 		pd->pd_count++;
    859 		pd->pd_version++;
    860 		rv = TRUE;
    861 		goto out;
    862 	}
    863 
    864 	pde = &pd->pd_array[idx];
    865 	_PROP_ASSERT(pde->pde_key != NULL);
    866 
    867 	if (strcmp(key, pde->pde_key->pdk_key) < 0) {
    868 		/*
    869 		 * key < pdk_key: insert to the left.  This is the same as
    870 		 * inserting to the right, except we decrement the current
    871 		 * index first.
    872 		 *
    873 		 * Because we're unsigned, we have to special case 0
    874 		 * (grumble).
    875 		 */
    876 		if (idx == 0) {
    877 			memmove(&pd->pd_array[1], &pd->pd_array[0],
    878 				pd->pd_count * sizeof(*pde));
    879 			pd->pd_array[0].pde_key = pdk;
    880 			pd->pd_array[0].pde_objref = po;
    881 			pd->pd_count++;
    882 			pd->pd_version++;
    883 			rv = TRUE;
    884 			goto out;
    885 		}
    886 		idx--;
    887 	}
    888 
    889 	memmove(&pd->pd_array[idx + 2], &pd->pd_array[idx + 1],
    890 		(pd->pd_count - (idx + 1)) * sizeof(*pde));
    891 	pd->pd_array[idx + 1].pde_key = pdk;
    892 	pd->pd_array[idx + 1].pde_objref = po;
    893 	pd->pd_count++;
    894 
    895 	pd->pd_version++;
    896 
    897 	rv = TRUE;
    898 
    899  out:
    900 	_PROP_RWLOCK_UNLOCK(pd->pd_rwlock);
    901 	return (rv);
    902 }
    903 
    904 /*
    905  * prop_dictionary_set_keysym --
    906  *	Replace the object in the dictionary at the location encoded by
    907  *	the keysym.
    908  */
    909 boolean_t
    910 prop_dictionary_set_keysym(prop_dictionary_t pd, prop_dictionary_keysym_t pdk,
    911 			   prop_object_t po)
    912 {
    913 
    914 	if (! (prop_object_is_dictionary(pd) &&
    915 	       prop_object_is_dictionary_keysym(pdk)))
    916 		return (FALSE);
    917 
    918 	return (prop_dictionary_set(pd, pdk->pdk_key, po));
    919 }
    920 
    921 static void
    922 _prop_dictionary_remove(prop_dictionary_t pd, struct _prop_dict_entry *pde,
    923     unsigned int idx)
    924 {
    925 	prop_dictionary_keysym_t pdk = pde->pde_key;
    926 	prop_object_t po = pde->pde_objref;
    927 
    928 	/*
    929 	 * Dictionary must be WRITE-LOCKED.
    930 	 */
    931 
    932 	_PROP_ASSERT(pd->pd_count != 0);
    933 	_PROP_ASSERT(idx < pd->pd_count);
    934 	_PROP_ASSERT(pde == &pd->pd_array[idx]);
    935 
    936 	idx++;
    937 	memmove(&pd->pd_array[idx - 1], &pd->pd_array[idx],
    938 		(pd->pd_count - idx) * sizeof(*pde));
    939 	pd->pd_count--;
    940 	pd->pd_version++;
    941 
    942 	prop_object_release(pdk);
    943 	prop_object_release(po);
    944 }
    945 
    946 /*
    947  * prop_dictionary_remove --
    948  *	Remove the reference to an object with the specified key from
    949  *	the dictionary.
    950  */
    951 void
    952 prop_dictionary_remove(prop_dictionary_t pd, const char *key)
    953 {
    954 	struct _prop_dict_entry *pde;
    955 	unsigned int idx;
    956 
    957 	if (! prop_object_is_dictionary(pd))
    958 		return;
    959 
    960 	_PROP_RWLOCK_WRLOCK(pd->pd_rwlock);
    961 
    962 	/* XXX Should this be a _PROP_ASSERT()? */
    963 	if (prop_dictionary_is_immutable(pd))
    964 		goto out;
    965 
    966 	pde = _prop_dict_lookup(pd, key, &idx);
    967 	/* XXX Should this be a _PROP_ASSERT()? */
    968 	if (pde == NULL)
    969 		goto out;
    970 
    971 	_prop_dictionary_remove(pd, pde, idx);
    972  out:
    973 	_PROP_RWLOCK_UNLOCK(pd->pd_rwlock);
    974 }
    975 
    976 /*
    977  * prop_dictionary_remove_keysym --
    978  *	Remove a reference to an object stored in the dictionary at the
    979  *	location encoded by the keysym.
    980  */
    981 void
    982 prop_dictionary_remove_keysym(prop_dictionary_t pd,
    983 			      prop_dictionary_keysym_t pdk)
    984 {
    985 
    986 	if (! (prop_object_is_dictionary(pd) &&
    987 	       prop_object_is_dictionary_keysym(pdk)))
    988 		return;
    989 
    990 	prop_dictionary_remove(pd, pdk->pdk_key);
    991 }
    992 
    993 /*
    994  * prop_dictionary_equals --
    995  *	Return TRUE if the two dictionaries are equivalent.  Note we do a
    996  *	by-value comparison of the objects in the dictionary.
    997  */
    998 boolean_t
    999 prop_dictionary_equals(prop_dictionary_t dict1, prop_dictionary_t dict2)
   1000 {
   1001 
   1002 	return (_prop_dictionary_equals(dict1, dict2));
   1003 }
   1004 
   1005 /*
   1006  * prop_dictionary_keysym_cstring_nocopy --
   1007  *	Return an immutable reference to the keysym's value.
   1008  */
   1009 const char *
   1010 prop_dictionary_keysym_cstring_nocopy(prop_dictionary_keysym_t pdk)
   1011 {
   1012 
   1013 	if (! prop_object_is_dictionary_keysym(pdk))
   1014 		return (NULL);
   1015 
   1016 	return (pdk->pdk_key);
   1017 }
   1018 
   1019 /*
   1020  * prop_dictionary_keysym_equals --
   1021  *	Return TRUE if the two dictionary key symbols are equivalent.
   1022  *	Note: We do not compare the object references.
   1023  */
   1024 boolean_t
   1025 prop_dictionary_keysym_equals(prop_dictionary_keysym_t pdk1,
   1026 			      prop_dictionary_keysym_t pdk2)
   1027 {
   1028 
   1029 	return (_prop_dict_keysym_equals(pdk1, pdk2));
   1030 }
   1031 
   1032 /*
   1033  * prop_dictionary_externalize --
   1034  *	Externalize a dictionary, returning a NUL-terminated buffer
   1035  *	containing the XML-style representation.  The buffer is allocated
   1036  *	with the M_TEMP memory type.
   1037  */
   1038 char *
   1039 prop_dictionary_externalize(prop_dictionary_t pd)
   1040 {
   1041 	struct _prop_object_externalize_context *ctx;
   1042 	char *cp;
   1043 
   1044 	ctx = _prop_object_externalize_context_alloc();
   1045 	if (ctx == NULL)
   1046 		return (NULL);
   1047 
   1048 	if (_prop_object_externalize_header(ctx) == FALSE ||
   1049 	    (*pd->pd_obj.po_type->pot_extern)(ctx, pd) == FALSE ||
   1050 	    _prop_object_externalize_footer(ctx) == FALSE) {
   1051 		/* We are responsible for releasing the buffer. */
   1052 		_PROP_FREE(ctx->poec_buf, M_TEMP);
   1053 		_prop_object_externalize_context_free(ctx);
   1054 		return (NULL);
   1055 	}
   1056 
   1057 	cp = ctx->poec_buf;
   1058 	_prop_object_externalize_context_free(ctx);
   1059 
   1060 	return (cp);
   1061 }
   1062 
   1063 /*
   1064  * _prop_dictionary_internalize --
   1065  *	Parse a <dict>...</dict> and return the object created from the
   1066  *	external representation.
   1067  */
   1068 prop_object_t
   1069 _prop_dictionary_internalize(struct _prop_object_internalize_context *ctx)
   1070 {
   1071 	prop_dictionary_t dict;
   1072 	prop_object_t val;
   1073 	size_t keylen;
   1074 	char *tmpkey;
   1075 
   1076 	/* We don't currently understand any attributes. */
   1077 	if (ctx->poic_tagattr != NULL)
   1078 		return (NULL);
   1079 
   1080 	dict = prop_dictionary_create();
   1081 	if (dict == NULL)
   1082 		return (NULL);
   1083 
   1084 	if (ctx->poic_is_empty_element)
   1085 		return (dict);
   1086 
   1087 	tmpkey = _PROP_MALLOC(PDK_MAXKEY + 1, M_TEMP);
   1088 	if (tmpkey == NULL)
   1089 		goto bad;
   1090 
   1091 	for (;;) {
   1092 		/* Fetch the next tag. */
   1093 		if (_prop_object_internalize_find_tag(ctx, NULL,
   1094 					_PROP_TAG_TYPE_EITHER) == FALSE)
   1095 			goto bad;
   1096 
   1097 		/* Check to see if this is the end of the dictionary. */
   1098 		if (_PROP_TAG_MATCH(ctx, "dict") &&
   1099 		    ctx->poic_tag_type == _PROP_TAG_TYPE_END)
   1100 			break;
   1101 
   1102 		/* Ok, it must be a non-empty key start tag. */
   1103 		if (!_PROP_TAG_MATCH(ctx, "key") ||
   1104 		    ctx->poic_tag_type != _PROP_TAG_TYPE_START ||
   1105 		    ctx->poic_is_empty_element)
   1106 		    	goto bad;
   1107 
   1108 		if (_prop_object_internalize_decode_string(ctx,
   1109 						tmpkey, PDK_MAXKEY, &keylen,
   1110 						&ctx->poic_cp) == FALSE)
   1111 			goto bad;
   1112 
   1113 		_PROP_ASSERT(keylen <= PDK_MAXKEY);
   1114 		tmpkey[keylen] = '\0';
   1115 
   1116 		if (_prop_object_internalize_find_tag(ctx, "key",
   1117 					_PROP_TAG_TYPE_END) == FALSE)
   1118 			goto bad;
   1119 
   1120 		/* ..and now the beginning of the value. */
   1121 		if (_prop_object_internalize_find_tag(ctx, NULL,
   1122 					_PROP_TAG_TYPE_START) == FALSE)
   1123 			goto bad;
   1124 
   1125 		val = _prop_object_internalize_by_tag(ctx);
   1126 		if (val == NULL)
   1127 			goto bad;
   1128 
   1129 		if (prop_dictionary_set(dict, tmpkey, val) == FALSE) {
   1130 			prop_object_release(val);
   1131 			goto bad;
   1132 		}
   1133 		prop_object_release(val);
   1134 	}
   1135 
   1136 	_PROP_FREE(tmpkey, M_TEMP);
   1137 	return (dict);
   1138 
   1139  bad:
   1140 	if (tmpkey != NULL)
   1141 		_PROP_FREE(tmpkey, M_TEMP);
   1142 	prop_object_release(dict);
   1143 	return (NULL);
   1144 }
   1145 
   1146 /*
   1147  * prop_dictionary_internalize --
   1148  *	Create a dictionary by parsing the NUL-terminated XML-style
   1149  *	representation.
   1150  */
   1151 prop_dictionary_t
   1152 prop_dictionary_internalize(const char *xml)
   1153 {
   1154 	return _prop_generic_internalize(xml, "dict");
   1155 }
   1156 
   1157 #if !defined(_KERNEL) && !defined(_STANDALONE)
   1158 /*
   1159  * prop_dictionary_externalize_to_file --
   1160  *	Externalize a dictionary to the specified file.
   1161  */
   1162 boolean_t
   1163 prop_dictionary_externalize_to_file(prop_dictionary_t dict, const char *fname)
   1164 {
   1165 	char *xml;
   1166 	boolean_t rv;
   1167 	int save_errno = 0;	/* XXXGCC -Wuninitialized [mips, ...] */
   1168 
   1169 	xml = prop_dictionary_externalize(dict);
   1170 	if (xml == NULL)
   1171 		return (FALSE);
   1172 	rv = _prop_object_externalize_write_file(fname, xml, strlen(xml));
   1173 	if (rv == FALSE)
   1174 		save_errno = errno;
   1175 	_PROP_FREE(xml, M_TEMP);
   1176 	if (rv == FALSE)
   1177 		errno = save_errno;
   1178 
   1179 	return (rv);
   1180 }
   1181 
   1182 /*
   1183  * prop_dictionary_internalize_from_file --
   1184  *	Internalize a dictionary from a file.
   1185  */
   1186 prop_dictionary_t
   1187 prop_dictionary_internalize_from_file(const char *fname)
   1188 {
   1189 	struct _prop_object_internalize_mapped_file *mf;
   1190 	prop_dictionary_t dict;
   1191 
   1192 	mf = _prop_object_internalize_map_file(fname);
   1193 	if (mf == NULL)
   1194 		return (NULL);
   1195 	dict = prop_dictionary_internalize(mf->poimf_xml);
   1196 	_prop_object_internalize_unmap_file(mf);
   1197 
   1198 	return (dict);
   1199 }
   1200 #endif /* !_KERNEL && !_STANDALONE */
   1201