prop_number.c revision 1.39 1 /* $NetBSD: prop_number.c,v 1.39 2025/05/14 03:25:46 thorpej Exp $ */
2
3 /*-
4 * Copyright (c) 2006, 2020, 2025 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 *
19 * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 * POSSIBILITY OF SUCH DAMAGE.
30 */
31
32 #include "prop_object_impl.h"
33 #include <prop/prop_number.h>
34 #include <sys/rbtree.h>
35
36 #if defined(_KERNEL)
37 #include <sys/systm.h>
38 #elif defined(_STANDALONE)
39 #include <sys/param.h>
40 #include <lib/libkern/libkern.h>
41 #else
42 #include <errno.h>
43 #include <limits.h>
44 #include <stdlib.h>
45 #endif
46
47 struct _prop_number_value {
48 union {
49 int64_t pnu_signed;
50 uint64_t pnu_unsigned;
51 } pnv_un;
52 #define pnv_signed pnv_un.pnu_signed
53 #define pnv_unsigned pnv_un.pnu_unsigned
54 unsigned int pnv_is_unsigned :1,
55 :31;
56 };
57
58 struct _prop_number {
59 struct _prop_object pn_obj;
60 struct rb_node pn_link;
61 struct _prop_number_value pn_value;
62 };
63
64 _PROP_POOL_INIT(_prop_number_pool, sizeof(struct _prop_number), "propnmbr")
65
66 static const struct _prop_object_type_tags _prop_number_type_tags = {
67 .xml_tag = "integer",
68 };
69
70 static _prop_object_free_rv_t
71 _prop_number_free(prop_stack_t, prop_object_t *);
72 static bool _prop_number_externalize(
73 struct _prop_object_externalize_context *,
74 void *);
75 static _prop_object_equals_rv_t
76 _prop_number_equals(prop_object_t, prop_object_t,
77 void **, void **,
78 prop_object_t *, prop_object_t *);
79
80 static void _prop_number_lock(void);
81 static void _prop_number_unlock(void);
82
83 static const struct _prop_object_type _prop_object_type_number = {
84 .pot_type = PROP_TYPE_NUMBER,
85 .pot_free = _prop_number_free,
86 .pot_extern = _prop_number_externalize,
87 .pot_equals = _prop_number_equals,
88 .pot_lock = _prop_number_lock,
89 .pot_unlock = _prop_number_unlock,
90 };
91
92 #define prop_object_is_number(x) \
93 ((x) != NULL && (x)->pn_obj.po_type == &_prop_object_type_number)
94
95 /*
96 * Number objects are immutable, and we are likely to have many number
97 * objects that have the same value. So, to save memory, we unique'ify
98 * numbers so we only have one copy of each.
99 */
100
101 static int
102 _prop_number_compare_values(const struct _prop_number_value *pnv1,
103 const struct _prop_number_value *pnv2)
104 {
105
106 /* Signed numbers are sorted before unsigned numbers. */
107
108 if (pnv1->pnv_is_unsigned) {
109 if (! pnv2->pnv_is_unsigned)
110 return (1);
111 if (pnv1->pnv_unsigned < pnv2->pnv_unsigned)
112 return (-1);
113 if (pnv1->pnv_unsigned > pnv2->pnv_unsigned)
114 return (1);
115 return (0);
116 }
117
118 if (pnv2->pnv_is_unsigned)
119 return (-1);
120 if (pnv1->pnv_signed < pnv2->pnv_signed)
121 return (-1);
122 if (pnv1->pnv_signed > pnv2->pnv_signed)
123 return (1);
124 return (0);
125 }
126
127 static int
128 /*ARGSUSED*/
129 _prop_number_rb_compare_nodes(void *ctx _PROP_ARG_UNUSED,
130 const void *n1, const void *n2)
131 {
132 const struct _prop_number *pn1 = n1;
133 const struct _prop_number *pn2 = n2;
134
135 return _prop_number_compare_values(&pn1->pn_value, &pn2->pn_value);
136 }
137
138 static int
139 /*ARGSUSED*/
140 _prop_number_rb_compare_key(void *ctx _PROP_ARG_UNUSED,
141 const void *n, const void *v)
142 {
143 const struct _prop_number *pn = n;
144 const struct _prop_number_value *pnv = v;
145
146 return _prop_number_compare_values(&pn->pn_value, pnv);
147 }
148
149 static const rb_tree_ops_t _prop_number_rb_tree_ops = {
150 .rbto_compare_nodes = _prop_number_rb_compare_nodes,
151 .rbto_compare_key = _prop_number_rb_compare_key,
152 .rbto_node_offset = offsetof(struct _prop_number, pn_link),
153 .rbto_context = NULL
154 };
155
156 static struct rb_tree _prop_number_tree;
157 _PROP_MUTEX_DECL_STATIC(_prop_number_tree_mutex)
158
159 /* ARGSUSED */
160 static _prop_object_free_rv_t
161 _prop_number_free(prop_stack_t stack, prop_object_t *obj)
162 {
163 prop_number_t pn = *obj;
164
165 rb_tree_remove_node(&_prop_number_tree, pn);
166
167 _PROP_POOL_PUT(_prop_number_pool, pn);
168
169 return (_PROP_OBJECT_FREE_DONE);
170 }
171
172 _PROP_ONCE_DECL(_prop_number_init_once)
173
174 static int
175 _prop_number_init(void)
176 {
177
178 _PROP_MUTEX_INIT(_prop_number_tree_mutex);
179 rb_tree_init(&_prop_number_tree, &_prop_number_rb_tree_ops);
180 return 0;
181 }
182
183 static void
184 _prop_number_lock(void)
185 {
186 /* XXX: init necessary? */
187 _PROP_ONCE_RUN(_prop_number_init_once, _prop_number_init);
188 _PROP_MUTEX_LOCK(_prop_number_tree_mutex);
189 }
190
191 static void
192 _prop_number_unlock(void)
193 {
194 _PROP_MUTEX_UNLOCK(_prop_number_tree_mutex);
195 }
196
197 static bool
198 _prop_number_externalize(struct _prop_object_externalize_context *ctx,
199 void *v)
200 {
201 prop_number_t pn = v;
202 char tmpstr[32];
203 const bool json = ctx->poec_format == PROP_FORMAT_JSON;
204
205 _PROP_ASSERT(ctx->poec_format == PROP_FORMAT_XML ||
206 ctx->poec_format == PROP_FORMAT_JSON);
207
208 /*
209 * For unsigned numbers, we output in hex for XML, decimal for JSON.
210 * For signed numbers, we output in decimal for both.
211 */
212 if (pn->pn_value.pnv_is_unsigned) {
213 snprintf(tmpstr, sizeof(tmpstr),
214 json ? "%" PRIu64 : "0x%" PRIx64,
215 pn->pn_value.pnv_unsigned);
216 } else {
217 snprintf(tmpstr, sizeof(tmpstr), "%" PRIi64,
218 pn->pn_value.pnv_signed);
219 }
220
221 if (_prop_extern_append_start_tag(ctx,
222 &_prop_number_type_tags, NULL) == false ||
223 _prop_extern_append_cstring(ctx, tmpstr) == false ||
224 _prop_extern_append_end_tag(ctx,
225 &_prop_number_type_tags) == false) {
226 return false;
227 }
228
229 return true;
230 }
231
232 /* ARGSUSED */
233 static _prop_object_equals_rv_t
234 _prop_number_equals(prop_object_t v1, prop_object_t v2,
235 void **stored_pointer1, void **stored_pointer2,
236 prop_object_t *next_obj1, prop_object_t *next_obj2)
237 {
238 prop_number_t num1 = v1;
239 prop_number_t num2 = v2;
240
241 /*
242 * There is only ever one copy of a number object at any given
243 * time, so we can reduce this to a simple pointer equality check
244 * in the common case.
245 */
246 if (num1 == num2)
247 return (_PROP_OBJECT_EQUALS_TRUE);
248
249 /*
250 * If the numbers are the same signed-ness, then we know they
251 * cannot be equal because they would have had pointer equality.
252 */
253 if (num1->pn_value.pnv_is_unsigned == num2->pn_value.pnv_is_unsigned)
254 return (_PROP_OBJECT_EQUALS_FALSE);
255
256 /*
257 * We now have one signed value and one unsigned value. We can
258 * compare them iff:
259 * - The unsigned value is not larger than the signed value
260 * can represent.
261 * - The signed value is not smaller than the unsigned value
262 * can represent.
263 */
264 if (num1->pn_value.pnv_is_unsigned) {
265 /*
266 * num1 is unsigned and num2 is signed.
267 */
268 if (num1->pn_value.pnv_unsigned > INTMAX_MAX)
269 return (_PROP_OBJECT_EQUALS_FALSE);
270 if (num2->pn_value.pnv_signed < 0)
271 return (_PROP_OBJECT_EQUALS_FALSE);
272 } else {
273 /*
274 * num1 is signed and num2 is unsigned.
275 */
276 if (num1->pn_value.pnv_signed < 0)
277 return (_PROP_OBJECT_EQUALS_FALSE);
278 if (num2->pn_value.pnv_unsigned > INTMAX_MAX)
279 return (_PROP_OBJECT_EQUALS_FALSE);
280 }
281
282 if (num1->pn_value.pnv_signed == num2->pn_value.pnv_signed)
283 return _PROP_OBJECT_EQUALS_TRUE;
284 else
285 return _PROP_OBJECT_EQUALS_FALSE;
286 }
287
288 static prop_number_t
289 _prop_number_alloc(const struct _prop_number_value *pnv)
290 {
291 prop_number_t opn, pn, rpn;
292
293 _PROP_ONCE_RUN(_prop_number_init_once, _prop_number_init);
294
295 /*
296 * Check to see if this already exists in the tree. If it does,
297 * we just retain it and return it.
298 */
299 _PROP_MUTEX_LOCK(_prop_number_tree_mutex);
300 opn = rb_tree_find_node(&_prop_number_tree, pnv);
301 if (opn != NULL) {
302 prop_object_retain(opn);
303 _PROP_MUTEX_UNLOCK(_prop_number_tree_mutex);
304 return (opn);
305 }
306 _PROP_MUTEX_UNLOCK(_prop_number_tree_mutex);
307
308 /*
309 * Not in the tree. Create it now.
310 */
311
312 pn = _PROP_POOL_GET(_prop_number_pool);
313 if (pn == NULL)
314 return (NULL);
315
316 _prop_object_init(&pn->pn_obj, &_prop_object_type_number);
317
318 pn->pn_value = *pnv;
319
320 /*
321 * We dropped the mutex when we allocated the new object, so
322 * we have to check again if it is in the tree.
323 */
324 _PROP_MUTEX_LOCK(_prop_number_tree_mutex);
325 opn = rb_tree_find_node(&_prop_number_tree, pnv);
326 if (opn != NULL) {
327 prop_object_retain(opn);
328 _PROP_MUTEX_UNLOCK(_prop_number_tree_mutex);
329 _PROP_POOL_PUT(_prop_number_pool, pn);
330 return (opn);
331 }
332 rpn = rb_tree_insert_node(&_prop_number_tree, pn);
333 _PROP_ASSERT(rpn == pn);
334 _PROP_MUTEX_UNLOCK(_prop_number_tree_mutex);
335 return (rpn);
336 }
337
338 /*
339 * prop_number_create_signed --
340 * Create a prop_number_t and initialize it with the
341 * provided signed value.
342 */
343 _PROP_EXPORT prop_number_t
344 prop_number_create_signed(intmax_t val)
345 {
346 struct _prop_number_value pnv;
347
348 memset(&pnv, 0, sizeof(pnv));
349 pnv.pnv_signed = val;
350 pnv.pnv_is_unsigned = false;
351
352 return (_prop_number_alloc(&pnv));
353 }
354
355 _PROP_DEPRECATED(prop_number_create_integer,
356 "this program uses prop_number_create_integer(), "
357 "which is deprecated; use prop_number_create_signed() instead.")
358 _PROP_EXPORT prop_number_t
359 prop_number_create_integer(int64_t val)
360 {
361 return prop_number_create_signed(val);
362 }
363
364 /*
365 * prop_number_create_unsigned --
366 * Create a prop_number_t and initialize it with the
367 * provided unsigned value.
368 */
369 _PROP_EXPORT prop_number_t
370 prop_number_create_unsigned(uintmax_t val)
371 {
372 struct _prop_number_value pnv;
373
374 memset(&pnv, 0, sizeof(pnv));
375 pnv.pnv_unsigned = val;
376 pnv.pnv_is_unsigned = true;
377
378 return (_prop_number_alloc(&pnv));
379 }
380
381 _PROP_DEPRECATED(prop_number_create_unsigned_integer,
382 "this program uses prop_number_create_unsigned_integer(), "
383 "which is deprecated; use prop_number_create_unsigned() instead.")
384 _PROP_EXPORT prop_number_t
385 prop_number_create_unsigned_integer(uint64_t val)
386 {
387 return prop_number_create_unsigned(val);
388 }
389
390 /*
391 * prop_number_copy --
392 * Copy a prop_number_t.
393 */
394 _PROP_EXPORT prop_number_t
395 prop_number_copy(prop_number_t opn)
396 {
397
398 if (! prop_object_is_number(opn))
399 return (NULL);
400
401 /*
402 * Because we only ever allocate one object for any given
403 * value, this can be reduced to a simple retain operation.
404 */
405 prop_object_retain(opn);
406 return (opn);
407 }
408
409 /*
410 * prop_number_unsigned --
411 * Returns true if the prop_number_t has an unsigned value.
412 */
413 _PROP_EXPORT bool
414 prop_number_unsigned(prop_number_t pn)
415 {
416
417 return (pn->pn_value.pnv_is_unsigned);
418 }
419
420 /*
421 * prop_number_size --
422 * Return the size, in bits, required to hold the value of
423 * the specified number.
424 */
425 _PROP_EXPORT int
426 prop_number_size(prop_number_t pn)
427 {
428 struct _prop_number_value *pnv;
429
430 if (! prop_object_is_number(pn))
431 return (0);
432
433 pnv = &pn->pn_value;
434
435 if (pnv->pnv_is_unsigned) {
436 if (pnv->pnv_unsigned > UINT32_MAX)
437 return (64);
438 if (pnv->pnv_unsigned > UINT16_MAX)
439 return (32);
440 if (pnv->pnv_unsigned > UINT8_MAX)
441 return (16);
442 return (8);
443 }
444
445 if (pnv->pnv_signed > INT32_MAX || pnv->pnv_signed < INT32_MIN)
446 return (64);
447 if (pnv->pnv_signed > INT16_MAX || pnv->pnv_signed < INT16_MIN)
448 return (32);
449 if (pnv->pnv_signed > INT8_MAX || pnv->pnv_signed < INT8_MIN)
450 return (16);
451 return (8);
452 }
453
454 /*
455 * prop_number_signed_value --
456 * Get the signed value of a prop_number_t.
457 */
458 _PROP_EXPORT intmax_t
459 prop_number_signed_value(prop_number_t pn)
460 {
461
462 /*
463 * XXX Impossible to distinguish between "not a prop_number_t"
464 * XXX and "prop_number_t has a value of 0".
465 */
466 if (! prop_object_is_number(pn))
467 return (0);
468
469 return (pn->pn_value.pnv_signed);
470 }
471
472 _PROP_DEPRECATED(prop_number_integer_value,
473 "this program uses prop_number_integer_value(), "
474 "which is deprecated; use prop_number_signed_value() instead.")
475 _PROP_EXPORT int64_t
476 prop_number_integer_value(prop_number_t pn)
477 {
478 return prop_number_signed_value(pn);
479 }
480
481 /*
482 * prop_number_unsigned_value --
483 * Get the unsigned value of a prop_number_t.
484 */
485 _PROP_EXPORT uintmax_t
486 prop_number_unsigned_value(prop_number_t pn)
487 {
488
489 /*
490 * XXX Impossible to distinguish between "not a prop_number_t"
491 * XXX and "prop_number_t has a value of 0".
492 */
493 if (! prop_object_is_number(pn))
494 return (0);
495
496 return (pn->pn_value.pnv_unsigned);
497 }
498
499 _PROP_DEPRECATED(prop_number_unsigned_integer_value,
500 "this program uses prop_number_unsigned_integer_value(), "
501 "which is deprecated; use prop_number_unsigned_value() instead.")
502 _PROP_EXPORT uint64_t
503 prop_number_unsigned_integer_value(prop_number_t pn)
504 {
505 return prop_number_unsigned_value(pn);
506 }
507
508 /*
509 * prop_number_[...]_value --
510 * Retrieve the bounds-checked value as the specified type.
511 * Returns true if successful.
512 */
513 #define TEMPLATE(name, typ, minv, maxv) \
514 _PROP_EXPORT bool \
515 prop_number_ ## name ## _value(prop_number_t pn, typ * const valp) \
516 { \
517 \
518 if (! prop_object_is_number(pn)) \
519 return (false); \
520 \
521 if (pn->pn_value.pnv_is_unsigned) { \
522 if (pn->pn_value.pnv_unsigned > (maxv)) \
523 return (false); \
524 *valp = (typ) pn->pn_value.pnv_unsigned; \
525 } else { \
526 if ((pn->pn_value.pnv_signed > 0 && \
527 (uintmax_t)pn->pn_value.pnv_signed > (maxv)) || \
528 pn->pn_value.pnv_signed < (minv)) \
529 return (false); \
530 *valp = (typ) pn->pn_value.pnv_signed; \
531 } \
532 \
533 return (true); \
534 }
535 TEMPLATE(schar, signed char, SCHAR_MIN, SCHAR_MAX)
536 TEMPLATE(short, short, SHRT_MIN, SHRT_MAX)
537 TEMPLATE(int, int, INT_MIN, INT_MAX)
538 TEMPLATE(long, long, LONG_MIN, LONG_MAX)
539 TEMPLATE(longlong, long long, LLONG_MIN, LLONG_MAX)
540 TEMPLATE(intptr, intptr_t, INTPTR_MIN, INTPTR_MAX)
541 TEMPLATE(int8, int8_t, INT8_MIN, INT8_MAX)
542 TEMPLATE(int16, int16_t, INT16_MIN, INT16_MAX)
543 TEMPLATE(int32, int32_t, INT32_MIN, INT32_MAX)
544 TEMPLATE(int64, int64_t, INT64_MIN, INT64_MAX)
545
546 TEMPLATE(uchar, unsigned char, 0, UCHAR_MAX)
547 TEMPLATE(ushort, unsigned short, 0, USHRT_MAX)
548 TEMPLATE(uint, unsigned int, 0, UINT_MAX)
549 TEMPLATE(ulong, unsigned long, 0, ULONG_MAX)
550 TEMPLATE(ulonglong, unsigned long long, 0, ULLONG_MAX)
551 TEMPLATE(uintptr, uintptr_t, 0, UINTPTR_MAX)
552 TEMPLATE(uint8, uint8_t, 0, UINT8_MAX)
553 TEMPLATE(uint16, uint16_t, 0, UINT16_MAX)
554 TEMPLATE(uint32, uint32_t, 0, UINT32_MAX)
555 TEMPLATE(uint64, uint64_t, 0, UINT64_MAX)
556
557 #undef TEMPLATE
558
559 /*
560 * prop_number_equals --
561 * Return true if two numbers are equivalent.
562 */
563 _PROP_EXPORT bool
564 prop_number_equals(prop_number_t num1, prop_number_t num2)
565 {
566 if (!prop_object_is_number(num1) || !prop_object_is_number(num2))
567 return (false);
568
569 return (prop_object_equals(num1, num2));
570 }
571
572 /*
573 * prop_number_equals_signed --
574 * Return true if the number is equivalent to the specified signed
575 * value.
576 */
577 _PROP_EXPORT bool
578 prop_number_equals_signed(prop_number_t pn, intmax_t val)
579 {
580
581 if (! prop_object_is_number(pn))
582 return (false);
583
584 if (pn->pn_value.pnv_is_unsigned &&
585 (pn->pn_value.pnv_unsigned > INTMAX_MAX || val < 0))
586 return (false);
587
588 return (pn->pn_value.pnv_signed == val);
589 }
590
591 _PROP_DEPRECATED(prop_number_equals_integer,
592 "this program uses prop_number_equals_integer(), "
593 "which is deprecated; use prop_number_equals_signed() instead.")
594 _PROP_EXPORT bool
595 prop_number_equals_integer(prop_number_t pn, int64_t val)
596 {
597 return prop_number_equals_signed(pn, val);
598 }
599
600 /*
601 * prop_number_equals_unsigned --
602 * Return true if the number is equivalent to the specified
603 * unsigned value.
604 */
605 _PROP_EXPORT bool
606 prop_number_equals_unsigned(prop_number_t pn, uintmax_t val)
607 {
608
609 if (! prop_object_is_number(pn))
610 return (false);
611
612 if (! pn->pn_value.pnv_is_unsigned &&
613 (pn->pn_value.pnv_signed < 0 || val > INT64_MAX))
614 return (false);
615
616 return (pn->pn_value.pnv_unsigned == val);
617 }
618
619 _PROP_DEPRECATED(prop_number_equals_unsigned_integer,
620 "this program uses prop_number_equals_unsigned_integer(), "
621 "which is deprecated; use prop_number_equals_unsigned() instead.")
622 _PROP_EXPORT bool
623 prop_number_equals_unsigned_integer(prop_number_t pn, uint64_t val)
624 {
625 return prop_number_equals_unsigned(pn, val);
626 }
627
628 static bool
629 _prop_number_internalize_unsigned(struct _prop_object_internalize_context *ctx,
630 struct _prop_number_value *pnv, int base)
631 {
632 char *cp;
633
634 _PROP_ASSERT(/*CONSTCOND*/sizeof(unsigned long long) ==
635 sizeof(uint64_t));
636
637 #ifndef _KERNEL
638 errno = 0;
639 #endif
640 pnv->pnv_unsigned = (uint64_t) strtoull(ctx->poic_cp, &cp, base);
641 #ifndef _KERNEL /* XXX can't check for ERANGE in the kernel */
642 if (pnv->pnv_unsigned == UINT64_MAX && errno == ERANGE)
643 return (false);
644 #endif
645 pnv->pnv_is_unsigned = true;
646 ctx->poic_cp = cp;
647
648 return (true);
649 }
650
651 static bool
652 _prop_number_internalize_signed(struct _prop_object_internalize_context *ctx,
653 struct _prop_number_value *pnv, int base)
654 {
655 char *cp;
656
657 _PROP_ASSERT(/*CONSTCOND*/sizeof(long long) == sizeof(int64_t));
658
659 #ifndef _KERNEL
660 errno = 0;
661 #endif
662 pnv->pnv_signed = (int64_t) strtoll(ctx->poic_cp, &cp, base);
663 #ifndef _KERNEL /* XXX can't check for ERANGE in the kernel */
664 if ((pnv->pnv_signed == INT64_MAX || pnv->pnv_signed == INT64_MIN) &&
665 errno == ERANGE)
666 return (false);
667 #endif
668 pnv->pnv_is_unsigned = false;
669 ctx->poic_cp = cp;
670
671 return (true);
672 }
673
674 /*
675 * _prop_number_internalize --
676 * Parse a <number>...</number> and return the object created from
677 * the external representation.
678 */
679 /* ARGSUSED */
680 bool
681 _prop_number_internalize(prop_stack_t stack, prop_object_t *obj,
682 struct _prop_object_internalize_context *ctx)
683 {
684 struct _prop_number_value pnv;
685
686 /* JSON numbers are always base-10. */
687 const int base = ctx->poic_format == PROP_FORMAT_JSON ? 10 : 0;
688
689 memset(&pnv, 0, sizeof(pnv));
690
691 /* No attributes, no empty elements. */
692 if (ctx->poic_tagattr != NULL || ctx->poic_is_empty_element)
693 return (true);
694
695 /*
696 * If the first character is a '+' or '-', then we treat as signed.
697 * If the first two characters are "0x" (i.e. the number is
698 * in hex), then we treat as unsigned. Otherwise, we try
699 * signed first, and if that fails (presumably due to ERANGE),
700 * then we switch to unsigned.
701 */
702 if (ctx->poic_cp[0] == '-' || ctx->poic_cp[0] == '+') {
703 if (_prop_number_internalize_signed(ctx, &pnv, base) == false)
704 return (true);
705 } else if (ctx->poic_cp[0] == '0' && ctx->poic_cp[1] == 'x') {
706 /* No hex numbers in JSON. */
707 if (ctx->poic_format == PROP_FORMAT_JSON ||
708 _prop_number_internalize_unsigned(ctx, &pnv, 16) == false)
709 return (true);
710 } else {
711 if (_prop_number_internalize_signed(ctx, &pnv, base) == false &&
712 _prop_number_internalize_unsigned(ctx, &pnv, base) == false)
713 return (true);
714 }
715
716 /* No end tag to advance over in JSON. */
717 if (ctx->poic_format != PROP_FORMAT_JSON &&
718 _prop_xml_intern_find_tag(ctx, "integer",
719 _PROP_TAG_TYPE_END) == false)
720 return (true);
721
722 *obj = _prop_number_alloc(&pnv);
723 return (true);
724 }
725