source: mainline/kernel/generic/src/sysinfo/sysinfo.c@ dd20cbb

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since dd20cbb was dd20cbb, checked in by Jakub Jermar <jakub@…>, 8 years ago

Do not return undefined value

  • Property mode set to 100644
File size: 26.6 KB
Line 
1/*
2 * Copyright (c) 2006 Jakub Vana
3 * Copyright (c) 2012 Martin Decky
4 * All rights reserved.
5 *
6 * Redistribution and use in source and binary forms, with or without
7 * modification, are permitted provided that the following conditions
8 * are met:
9 *
10 * - Redistributions of source code must retain the above copyright
11 * notice, this list of conditions and the following disclaimer.
12 * - Redistributions in binary form must reproduce the above copyright
13 * notice, this list of conditions and the following disclaimer in the
14 * documentation and/or other materials provided with the distribution.
15 * - The name of the author may not be used to endorse or promote products
16 * derived from this software without specific prior written permission.
17 *
18 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
19 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
20 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
21 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
22 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
23 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
24 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
25 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
26 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
27 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
28 */
29
30/** @addtogroup generic
31 * @{
32 */
33/** @file
34 */
35
36#include <assert.h>
37#include <sysinfo/sysinfo.h>
38#include <mm/slab.h>
39#include <print.h>
40#include <syscall/copy.h>
41#include <synch/mutex.h>
42#include <arch/asm.h>
43#include <errno.h>
44#include <macros.h>
45
46/** Maximal sysinfo path length */
47#define SYSINFO_MAX_PATH 2048
48
49bool fb_exported = false;
50
51/** Global sysinfo tree root item */
52static sysinfo_item_t *global_root = NULL;
53
54/** Sysinfo SLAB cache */
55static slab_cache_t *sysinfo_item_slab;
56
57/** Sysinfo lock */
58static mutex_t sysinfo_lock;
59
60/** Sysinfo item constructor
61 *
62 */
63NO_TRACE static int sysinfo_item_constructor(void *obj, unsigned int kmflag)
64{
65 sysinfo_item_t *item = (sysinfo_item_t *) obj;
66
67 item->name = NULL;
68 item->val_type = SYSINFO_VAL_UNDEFINED;
69 item->subtree_type = SYSINFO_SUBTREE_NONE;
70 item->subtree.table = NULL;
71 item->next = NULL;
72
73 return 0;
74}
75
76/** Sysinfo item destructor
77 *
78 * Note that the return value is not perfectly correct
79 * since more space might get actually freed thanks
80 * to the disposal of item->name
81 *
82 */
83NO_TRACE static size_t sysinfo_item_destructor(void *obj)
84{
85 sysinfo_item_t *item = (sysinfo_item_t *) obj;
86
87 if (item->name != NULL)
88 free(item->name);
89
90 return 0;
91}
92
93/** Initialize sysinfo subsystem
94 *
95 * Create SLAB cache for sysinfo items.
96 *
97 */
98void sysinfo_init(void)
99{
100 sysinfo_item_slab = slab_cache_create("sysinfo_item_t",
101 sizeof(sysinfo_item_t), 0, sysinfo_item_constructor,
102 sysinfo_item_destructor, SLAB_CACHE_MAGDEFERRED);
103
104 mutex_initialize(&sysinfo_lock, MUTEX_ACTIVE);
105}
106
107/** Recursively find an item in sysinfo tree
108 *
109 * Should be called with sysinfo_lock held.
110 *
111 * @param name Current sysinfo path suffix.
112 * @param subtree Current sysinfo (sub)tree root item.
113 * @param ret If the return value is NULL, this argument
114 * can be set either to NULL (i.e. no item was
115 * found and no data was generated) or the
116 * original pointer is used to store the value
117 * generated by a generated subtree function.
118 * @param dry_run Do not actually get any generated
119 * binary data, just calculate the size.
120 *
121 * @return Found item or NULL if no item in the fixed tree
122 * was found (N.B. ret).
123 *
124 */
125NO_TRACE static sysinfo_item_t *sysinfo_find_item(const char *name,
126 sysinfo_item_t *subtree, sysinfo_return_t **ret, bool dry_run)
127{
128 assert(subtree != NULL);
129
130 sysinfo_item_t *cur = subtree;
131
132 /* Walk all siblings */
133 while (cur != NULL) {
134 size_t i = 0;
135
136 /* Compare name with path */
137 while ((cur->name[i] != 0) && (name[i] == cur->name[i]))
138 i++;
139
140 /* Check for perfect name and path match */
141 if ((name[i] == 0) && (cur->name[i] == 0))
142 return cur;
143
144 /* Partial match up to the delimiter */
145 if ((name[i] == '.') && (cur->name[i] == 0)) {
146 /* Look into the subtree */
147 switch (cur->subtree_type) {
148 case SYSINFO_SUBTREE_TABLE:
149 /* Recursively find in subtree */
150 return sysinfo_find_item(name + i + 1,
151 cur->subtree.table, ret, dry_run);
152 case SYSINFO_SUBTREE_FUNCTION:
153 /* Get generated data */
154 if (ret != NULL)
155 **ret = cur->subtree.generator.fn(name + i + 1,
156 dry_run, cur->subtree.generator.data);
157
158 return NULL;
159 default:
160 /* Not found, no data generated */
161 if (ret != NULL)
162 *ret = NULL;
163
164 return NULL;
165 }
166 }
167
168 cur = cur->next;
169 }
170
171 /* Not found, no data generated */
172 if (ret != NULL)
173 *ret = NULL;
174
175 return NULL;
176}
177
178/** Recursively create items in sysinfo tree
179 *
180 * Should be called with sysinfo_lock held.
181 *
182 * @param name Current sysinfo path suffix.
183 * @param psubtree Pointer to an already existing (sub)tree root
184 * item or where to store a new tree root item.
185 *
186 * @return Existing or newly allocated sysinfo item or NULL
187 * if the current tree configuration does not allow to
188 * create a new item.
189 *
190 */
191NO_TRACE static sysinfo_item_t *sysinfo_create_path(const char *name,
192 sysinfo_item_t **psubtree)
193{
194 assert(psubtree != NULL);
195
196 if (*psubtree == NULL) {
197 /* No parent */
198
199 size_t i = 0;
200
201 /* Find the first delimiter in name */
202 while ((name[i] != 0) && (name[i] != '.'))
203 i++;
204
205 *psubtree =
206 (sysinfo_item_t *) slab_alloc(sysinfo_item_slab, 0);
207 assert(*psubtree);
208
209 /* Fill in item name up to the delimiter */
210 (*psubtree)->name = str_ndup(name, i);
211 assert((*psubtree)->name);
212
213 /* Create subtree items */
214 if (name[i] == '.') {
215 (*psubtree)->subtree_type = SYSINFO_SUBTREE_TABLE;
216 return sysinfo_create_path(name + i + 1,
217 &((*psubtree)->subtree.table));
218 }
219
220 /* No subtree needs to be created */
221 return *psubtree;
222 }
223
224 sysinfo_item_t *cur = *psubtree;
225
226 /* Walk all siblings */
227 while (cur != NULL) {
228 size_t i = 0;
229
230 /* Compare name with path */
231 while ((cur->name[i] != 0) && (name[i] == cur->name[i]))
232 i++;
233
234 /* Check for perfect name and path match
235 * -> item is already present.
236 */
237 if ((name[i] == 0) && (cur->name[i] == 0))
238 return cur;
239
240 /* Partial match up to the delimiter */
241 if ((name[i] == '.') && (cur->name[i] == 0)) {
242 switch (cur->subtree_type) {
243 case SYSINFO_SUBTREE_NONE:
244 /* No subtree yet, create one */
245 cur->subtree_type = SYSINFO_SUBTREE_TABLE;
246 return sysinfo_create_path(name + i + 1,
247 &(cur->subtree.table));
248 case SYSINFO_SUBTREE_TABLE:
249 /* Subtree already created, add new sibling */
250 return sysinfo_create_path(name + i + 1,
251 &(cur->subtree.table));
252 default:
253 /* Subtree items handled by a function, this
254 * cannot be overriden by a constant item.
255 */
256 return NULL;
257 }
258 }
259
260 /* No match and no more siblings to check
261 * -> create a new sibling item.
262 */
263 if (cur->next == NULL) {
264 /* Find the first delimiter in name */
265 i = 0;
266 while ((name[i] != 0) && (name[i] != '.'))
267 i++;
268
269 sysinfo_item_t *item =
270 (sysinfo_item_t *) slab_alloc(sysinfo_item_slab, 0);
271 assert(item);
272
273 cur->next = item;
274
275 /* Fill in item name up to the delimiter */
276 item->name = str_ndup(name, i);
277 assert(item->name);
278
279 /* Create subtree items */
280 if (name[i] == '.') {
281 item->subtree_type = SYSINFO_SUBTREE_TABLE;
282 return sysinfo_create_path(name + i + 1,
283 &(item->subtree.table));
284 }
285
286 /* No subtree needs to be created */
287 return item;
288 }
289
290 cur = cur->next;
291 }
292
293 /* Unreachable */
294 assert(false);
295 return NULL;
296}
297
298/** Set sysinfo item with a constant numeric value
299 *
300 * @param name Sysinfo path.
301 * @param root Pointer to the root item or where to store
302 * a new root item (NULL for global sysinfo root).
303 * @param val Value to store in the item.
304 *
305 */
306void sysinfo_set_item_val(const char *name, sysinfo_item_t **root,
307 sysarg_t val)
308{
309 /* Protect sysinfo tree consistency */
310 mutex_lock(&sysinfo_lock);
311
312 if (root == NULL)
313 root = &global_root;
314
315 sysinfo_item_t *item = sysinfo_create_path(name, root);
316 if (item != NULL) {
317 item->val_type = SYSINFO_VAL_VAL;
318 item->val.val = val;
319 }
320
321 mutex_unlock(&sysinfo_lock);
322}
323
324/** Set sysinfo item with a constant binary data
325 *
326 * Note that sysinfo only stores the pointer to the
327 * binary data and does not touch it in any way. The
328 * data should be static and immortal.
329 *
330 * @param name Sysinfo path.
331 * @param root Pointer to the root item or where to store
332 * a new root item (NULL for global sysinfo root).
333 * @param data Binary data.
334 * @param size Size of the binary data.
335 *
336 */
337void sysinfo_set_item_data(const char *name, sysinfo_item_t **root,
338 void *data, size_t size)
339{
340 /* Protect sysinfo tree consistency */
341 mutex_lock(&sysinfo_lock);
342
343 if (root == NULL)
344 root = &global_root;
345
346 sysinfo_item_t *item = sysinfo_create_path(name, root);
347 if (item != NULL) {
348 item->val_type = SYSINFO_VAL_DATA;
349 item->val.data.data = data;
350 item->val.data.size = size;
351 }
352
353 mutex_unlock(&sysinfo_lock);
354}
355
356/** Set sysinfo item with a generated numeric value
357 *
358 * @param name Sysinfo path.
359 * @param root Pointer to the root item or where to store
360 * a new root item (NULL for global sysinfo root).
361 * @param fn Numeric value generator function.
362 * @param data Private data.
363 *
364 */
365void sysinfo_set_item_gen_val(const char *name, sysinfo_item_t **root,
366 sysinfo_fn_val_t fn, void *data)
367{
368 /* Protect sysinfo tree consistency */
369 mutex_lock(&sysinfo_lock);
370
371 if (root == NULL)
372 root = &global_root;
373
374 sysinfo_item_t *item = sysinfo_create_path(name, root);
375 if (item != NULL) {
376 item->val_type = SYSINFO_VAL_FUNCTION_VAL;
377 item->val.gen_val.fn = fn;
378 item->val.gen_val.data = data;
379 }
380
381 mutex_unlock(&sysinfo_lock);
382}
383
384/** Set sysinfo item with a generated binary data
385 *
386 * Note that each time the generator function is called
387 * it is supposed to return a new dynamically allocated
388 * data. This data is then freed by sysinfo in the context
389 * of the current sysinfo request.
390 *
391 * @param name Sysinfo path.
392 * @param root Pointer to the root item or where to store
393 * a new root item (NULL for global sysinfo root).
394 * @param fn Binary data generator function.
395 * @param data Private data.
396 *
397 */
398void sysinfo_set_item_gen_data(const char *name, sysinfo_item_t **root,
399 sysinfo_fn_data_t fn, void *data)
400{
401 /* Protect sysinfo tree consistency */
402 mutex_lock(&sysinfo_lock);
403
404 if (root == NULL)
405 root = &global_root;
406
407 sysinfo_item_t *item = sysinfo_create_path(name, root);
408 if (item != NULL) {
409 item->val_type = SYSINFO_VAL_FUNCTION_DATA;
410 item->val.gen_data.fn = fn;
411 item->val.gen_data.data = data;
412 }
413
414 mutex_unlock(&sysinfo_lock);
415}
416
417/** Set sysinfo item with an undefined value
418 *
419 * @param name Sysinfo path.
420 * @param root Pointer to the root item or where to store
421 * a new root item (NULL for global sysinfo root).
422 *
423 */
424void sysinfo_set_item_undefined(const char *name, sysinfo_item_t **root)
425{
426 /* Protect sysinfo tree consistency */
427 mutex_lock(&sysinfo_lock);
428
429 if (root == NULL)
430 root = &global_root;
431
432 sysinfo_item_t *item = sysinfo_create_path(name, root);
433 if (item != NULL)
434 item->val_type = SYSINFO_VAL_UNDEFINED;
435
436 mutex_unlock(&sysinfo_lock);
437}
438
439/** Set sysinfo item with a generated subtree
440 *
441 * @param name Sysinfo path.
442 * @param root Pointer to the root item or where to store
443 * a new root item (NULL for global sysinfo root).
444 * @param fn Subtree generator function.
445 * @param data Private data to be passed to the generator.
446 *
447 */
448void sysinfo_set_subtree_fn(const char *name, sysinfo_item_t **root,
449 sysinfo_fn_subtree_t fn, void *data)
450{
451 /* Protect sysinfo tree consistency */
452 mutex_lock(&sysinfo_lock);
453
454 if (root == NULL)
455 root = &global_root;
456
457 sysinfo_item_t *item = sysinfo_create_path(name, root);
458
459 /* Change the type of the subtree only if it is not already
460 a fixed subtree */
461 if ((item != NULL) && (item->subtree_type != SYSINFO_SUBTREE_TABLE)) {
462 item->subtree_type = SYSINFO_SUBTREE_FUNCTION;
463 item->subtree.generator.fn = fn;
464 item->subtree.generator.data = data;
465 }
466
467 mutex_unlock(&sysinfo_lock);
468}
469
470/** Sysinfo dump indentation helper routine
471 *
472 * @param depth Number of spaces to print.
473 *
474 */
475NO_TRACE static void sysinfo_indent(size_t spaces)
476{
477 for (size_t i = 0; i < spaces; i++)
478 printf(" ");
479}
480
481/** Dump the structure of sysinfo tree
482 *
483 * Should be called with sysinfo_lock held.
484 *
485 * @param root Root item of the current (sub)tree.
486 * @param spaces Current indentation level.
487 *
488 */
489NO_TRACE static void sysinfo_dump_internal(sysinfo_item_t *root, size_t spaces)
490{
491 /* Walk all siblings */
492 for (sysinfo_item_t *cur = root; cur; cur = cur->next) {
493 size_t length;
494
495 if (spaces == 0) {
496 printf("%s", cur->name);
497 length = str_length(cur->name);
498 } else {
499 sysinfo_indent(spaces);
500 printf(".%s", cur->name);
501 length = str_length(cur->name) + 1;
502 }
503
504 sysarg_t val;
505 size_t size;
506
507 /* Display node value and type */
508 switch (cur->val_type) {
509 case SYSINFO_VAL_UNDEFINED:
510 printf(" [undefined]\n");
511 break;
512 case SYSINFO_VAL_VAL:
513 printf(" -> %" PRIun" (%#" PRIxn ")\n", cur->val.val,
514 cur->val.val);
515 break;
516 case SYSINFO_VAL_DATA:
517 printf(" (%zu bytes)\n", cur->val.data.size);
518 break;
519 case SYSINFO_VAL_FUNCTION_VAL:
520 val = cur->val.gen_val.fn(cur, cur->val.gen_val.data);
521 printf(" -> %" PRIun" (%#" PRIxn ") [generated]\n", val,
522 val);
523 break;
524 case SYSINFO_VAL_FUNCTION_DATA:
525 /* N.B.: No data was actually returned (only a dry run) */
526 (void) cur->val.gen_data.fn(cur, &size, true,
527 cur->val.gen_data.data);
528 printf(" (%zu bytes) [generated]\n", size);
529 break;
530 default:
531 printf("+ %s [unknown]\n", cur->name);
532 }
533
534 /* Recursivelly nest into the subtree */
535 switch (cur->subtree_type) {
536 case SYSINFO_SUBTREE_NONE:
537 break;
538 case SYSINFO_SUBTREE_TABLE:
539 sysinfo_dump_internal(cur->subtree.table, spaces + length);
540 break;
541 case SYSINFO_SUBTREE_FUNCTION:
542 sysinfo_indent(spaces + length);
543 printf("<generated subtree>\n");
544 break;
545 default:
546 sysinfo_indent(spaces + length);
547 printf("<unknown subtree>\n");
548 }
549 }
550}
551
552/** Dump the structure of sysinfo tree
553 *
554 * @param root Root item of the sysinfo (sub)tree.
555 * If it is NULL then consider the global
556 * sysinfo tree.
557 *
558 */
559void sysinfo_dump(sysinfo_item_t *root)
560{
561 /* Avoid other functions to mess with sysinfo
562 while we are dumping it */
563 mutex_lock(&sysinfo_lock);
564
565 if (root == NULL)
566 sysinfo_dump_internal(global_root, 0);
567 else
568 sysinfo_dump_internal(root, 0);
569
570 mutex_unlock(&sysinfo_lock);
571}
572
573/** Return sysinfo item value determined by name
574 *
575 * Should be called with sysinfo_lock held.
576 *
577 * @param name Sysinfo path.
578 * @param root Root item of the sysinfo (sub)tree.
579 * If it is NULL then consider the global
580 * sysinfo tree.
581 * @param dry_run Do not actually get any generated
582 * binary data, just calculate the size.
583 *
584 * @return Item value (constant or generated).
585 *
586 */
587NO_TRACE static sysinfo_return_t sysinfo_get_item(const char *name,
588 sysinfo_item_t **root, bool dry_run)
589{
590 if (root == NULL)
591 root = &global_root;
592
593 /* Try to find the item or generate data */
594 sysinfo_return_t ret;
595 sysinfo_return_t *ret_ptr = &ret;
596 sysinfo_item_t *item = sysinfo_find_item(name, *root, &ret_ptr,
597 dry_run);
598
599 if (item != NULL) {
600 /* Item found in the fixed sysinfo tree */
601
602 ret.tag = item->val_type;
603 switch (item->val_type) {
604 case SYSINFO_VAL_UNDEFINED:
605 break;
606 case SYSINFO_VAL_VAL:
607 ret.val = item->val.val;
608 break;
609 case SYSINFO_VAL_DATA:
610 ret.data = item->val.data;
611 break;
612 case SYSINFO_VAL_FUNCTION_VAL:
613 ret.val = item->val.gen_val.fn(item, item->val.gen_val.data);
614 break;
615 case SYSINFO_VAL_FUNCTION_DATA:
616 ret.data.data = item->val.gen_data.fn(item, &ret.data.size,
617 dry_run, item->val.gen_data.data);
618 break;
619 }
620 } else {
621 /* No item in the fixed sysinfo tree */
622 if (ret_ptr == NULL) {
623 /* Even no data was generated */
624 ret.tag = SYSINFO_VAL_UNDEFINED;
625 }
626 }
627
628 return ret;
629}
630
631/** Return sysinfo item determined by name from user space
632 *
633 * The path string passed from the user space has to be properly null-terminated
634 * (the last passed character must be null).
635 *
636 * @param ptr Sysinfo path in the user address space.
637 * @param size Size of the path string.
638 * @param dry_run Do not actually get any generated
639 * binary data, just calculate the size.
640 *
641 */
642NO_TRACE static sysinfo_return_t sysinfo_get_item_uspace(void *ptr, size_t size,
643 bool dry_run)
644{
645 sysinfo_return_t ret;
646 ret.tag = SYSINFO_VAL_UNDEFINED;
647
648 if (size > SYSINFO_MAX_PATH)
649 return ret;
650
651 char *path = (char *) malloc(size + 1, 0);
652 assert(path);
653
654 if ((copy_from_uspace(path, ptr, size + 1) == 0) &&
655 (path[size] == 0)) {
656 /*
657 * Prevent other functions from messing with sysinfo while we
658 * are reading it.
659 */
660 mutex_lock(&sysinfo_lock);
661 ret = sysinfo_get_item(path, NULL, dry_run);
662 mutex_unlock(&sysinfo_lock);
663 }
664
665 free(path);
666 return ret;
667}
668
669/** Return sysinfo keys determined by name
670 *
671 * Should be called with sysinfo_lock held.
672 *
673 * @param name Sysinfo path.
674 * @param root Root item of the sysinfo (sub)tree.
675 * If it is NULL then consider the global
676 * sysinfo tree.
677 * @param dry_run Do not actually get any generated
678 * binary data, just calculate the size.
679 *
680 * @return Item value (constant or generated).
681 *
682 */
683NO_TRACE static sysinfo_return_t sysinfo_get_keys(const char *name,
684 sysinfo_item_t **root, bool dry_run)
685{
686 if (root == NULL)
687 root = &global_root;
688
689 sysinfo_item_t *subtree = NULL;
690
691 if (name[0] != 0) {
692 /* Try to find the item */
693 sysinfo_item_t *item =
694 sysinfo_find_item(name, *root, NULL, dry_run);
695 if ((item != NULL) &&
696 (item->subtree_type == SYSINFO_SUBTREE_TABLE))
697 subtree = item->subtree.table;
698 } else
699 subtree = *root;
700
701 sysinfo_return_t ret;
702 ret.tag = SYSINFO_VAL_UNDEFINED;
703
704 if (subtree != NULL) {
705 /*
706 * Calculate the size of subkeys.
707 */
708 size_t size = 0;
709 for (sysinfo_item_t *cur = subtree; cur; cur = cur->next)
710 size += str_size(cur->name) + 1;
711
712 if (dry_run) {
713 ret.tag = SYSINFO_VAL_DATA;
714 ret.data.data = NULL;
715 ret.data.size = size;
716 } else {
717 /* Allocate buffer for subkeys */
718 char *names = (char *) malloc(size, FRAME_ATOMIC);
719 if (names == NULL)
720 return ret;
721
722 size_t pos = 0;
723 for (sysinfo_item_t *cur = subtree; cur; cur = cur->next) {
724 str_cpy(names + pos, size - pos, cur->name);
725 pos += str_size(cur->name) + 1;
726 }
727
728 /* Correct return value */
729 ret.tag = SYSINFO_VAL_DATA;
730 ret.data.data = (void *) names;
731 ret.data.size = size;
732 }
733 }
734
735 return ret;
736}
737
738/** Return sysinfo keys determined by name from user space
739 *
740 * The path string passed from the user space has to be properly
741 * null-terminated (the last passed character must be null).
742 *
743 * @param ptr Sysinfo path in the user address space.
744 * @param size Size of the path string.
745 * @param dry_run Do not actually get any generated
746 * binary data, just calculate the size.
747 *
748 */
749NO_TRACE static sysinfo_return_t sysinfo_get_keys_uspace(void *ptr, size_t size,
750 bool dry_run)
751{
752 sysinfo_return_t ret;
753 ret.tag = SYSINFO_VAL_UNDEFINED;
754 ret.data.data = NULL;
755 ret.data.size = 0;
756
757 if (size > SYSINFO_MAX_PATH)
758 return ret;
759
760 char *path = (char *) malloc(size + 1, 0);
761 assert(path);
762
763 if ((copy_from_uspace(path, ptr, size + 1) == 0) &&
764 (path[size] == 0)) {
765 /*
766 * Prevent other functions from messing with sysinfo while we
767 * are reading it.
768 */
769 mutex_lock(&sysinfo_lock);
770 ret = sysinfo_get_keys(path, NULL, dry_run);
771 mutex_unlock(&sysinfo_lock);
772 }
773
774 free(path);
775 return ret;
776}
777
778/** Get the sysinfo keys size (syscall)
779 *
780 * The path string passed from the user space has
781 * to be properly null-terminated (the last passed
782 * character must be null).
783 *
784 * @param path_ptr Sysinfo path in the user address space.
785 * @param path_size Size of the path string.
786 * @param size_ptr User space pointer where to store the
787 * keys size.
788 *
789 * @return Error code (EOK in case of no error).
790 *
791 */
792sysarg_t sys_sysinfo_get_keys_size(void *path_ptr, size_t path_size,
793 void *size_ptr)
794{
795 int rc;
796
797 /*
798 * Get the keys.
799 *
800 * N.B.: There is no need to free any potential keys
801 * since we request a dry run.
802 */
803 sysinfo_return_t ret =
804 sysinfo_get_keys_uspace(path_ptr, path_size, true);
805
806 /* Check return data tag */
807 if (ret.tag == SYSINFO_VAL_DATA)
808 rc = copy_to_uspace(size_ptr, &ret.data.size,
809 sizeof(ret.data.size));
810 else
811 rc = EINVAL;
812
813 return (sysarg_t) rc;
814}
815
816/** Get the sysinfo keys (syscall)
817 *
818 * The path string passed from the user space has
819 * to be properly null-terminated (the last passed
820 * character must be null).
821 *
822 * If the user space buffer size does not equal
823 * the actual size of the returned data, the data
824 * is truncated.
825 *
826 * The actual size of data returned is stored to
827 * size_ptr.
828 *
829 * @param path_ptr Sysinfo path in the user address space.
830 * @param path_size Size of the path string.
831 * @param buffer_ptr User space pointer to the buffer where
832 * to store the binary data.
833 * @param buffer_size User space buffer size.
834 * @param size_ptr User space pointer where to store the
835 * binary data size.
836 *
837 * @return Error code (EOK in case of no error).
838 *
839 */
840sysarg_t sys_sysinfo_get_keys(void *path_ptr, size_t path_size,
841 void *buffer_ptr, size_t buffer_size, size_t *size_ptr)
842{
843 int rc;
844
845 /* Get the keys */
846 sysinfo_return_t ret = sysinfo_get_keys_uspace(path_ptr, path_size,
847 false);
848
849 /* Check return data tag */
850 if (ret.tag == SYSINFO_VAL_DATA) {
851 size_t size = min(ret.data.size, buffer_size);
852 rc = copy_to_uspace(buffer_ptr, ret.data.data, size);
853 if (rc == EOK)
854 rc = copy_to_uspace(size_ptr, &size, sizeof(size));
855
856 free(ret.data.data);
857 } else
858 rc = EINVAL;
859
860 return (sysarg_t) rc;
861}
862
863/** Get the sysinfo value type (syscall)
864 *
865 * The path string passed from the user space has
866 * to be properly null-terminated (the last passed
867 * character must be null).
868 *
869 * @param path_ptr Sysinfo path in the user address space.
870 * @param path_size Size of the path string.
871 *
872 * @return Item value type.
873 *
874 */
875sysarg_t sys_sysinfo_get_val_type(void *path_ptr, size_t path_size)
876{
877 /*
878 * Get the item.
879 *
880 * N.B.: There is no need to free any potential generated
881 * binary data since we request a dry run.
882 */
883 sysinfo_return_t ret = sysinfo_get_item_uspace(path_ptr, path_size, true);
884
885 /*
886 * Map generated value types to constant types (user space does
887 * not care whether the value is constant or generated).
888 */
889 if (ret.tag == SYSINFO_VAL_FUNCTION_VAL)
890 ret.tag = SYSINFO_VAL_VAL;
891 else if (ret.tag == SYSINFO_VAL_FUNCTION_DATA)
892 ret.tag = SYSINFO_VAL_DATA;
893
894 return (sysarg_t) ret.tag;
895}
896
897/** Get the sysinfo numerical value (syscall)
898 *
899 * The path string passed from the user space has
900 * to be properly null-terminated (the last passed
901 * character must be null).
902 *
903 * @param path_ptr Sysinfo path in the user address space.
904 * @param path_size Size of the path string.
905 * @param value_ptr User space pointer where to store the
906 * numberical value.
907 *
908 * @return Error code (EOK in case of no error).
909 *
910 */
911sysarg_t sys_sysinfo_get_value(void *path_ptr, size_t path_size,
912 void *value_ptr)
913{
914 int rc;
915
916 /*
917 * Get the item.
918 *
919 * N.B.: There is no need to free any potential generated binary
920 * data since we request a dry run.
921 */
922 sysinfo_return_t ret = sysinfo_get_item_uspace(path_ptr, path_size, true);
923
924 /* Only constant or generated numerical value is returned */
925 if ((ret.tag == SYSINFO_VAL_VAL) || (ret.tag == SYSINFO_VAL_FUNCTION_VAL))
926 rc = copy_to_uspace(value_ptr, &ret.val, sizeof(ret.val));
927 else
928 rc = EINVAL;
929
930 return (sysarg_t) rc;
931}
932
933/** Get the sysinfo binary data size (syscall)
934 *
935 * The path string passed from the user space has
936 * to be properly null-terminated (the last passed
937 * character must be null).
938 *
939 * @param path_ptr Sysinfo path in the user address space.
940 * @param path_size Size of the path string.
941 * @param size_ptr User space pointer where to store the
942 * binary data size.
943 *
944 * @return Error code (EOK in case of no error).
945 *
946 */
947sysarg_t sys_sysinfo_get_data_size(void *path_ptr, size_t path_size,
948 void *size_ptr)
949{
950 int rc;
951
952 /*
953 * Get the item.
954 *
955 * N.B.: There is no need to free any potential generated binary
956 * data since we request a dry run.
957 */
958 sysinfo_return_t ret = sysinfo_get_item_uspace(path_ptr, path_size, true);
959
960 /* Only the size of constant or generated binary data is considered */
961 if ((ret.tag == SYSINFO_VAL_DATA) || (ret.tag == SYSINFO_VAL_FUNCTION_DATA))
962 rc = copy_to_uspace(size_ptr, &ret.data.size,
963 sizeof(ret.data.size));
964 else
965 rc = EINVAL;
966
967 return (sysarg_t) rc;
968}
969
970/** Get the sysinfo binary data (syscall)
971 *
972 * The path string passed from the user space has
973 * to be properly null-terminated (the last passed
974 * character must be null).
975 *
976 * If the user space buffer size does not equal
977 * the actual size of the returned data, the data
978 * is truncated. Whether this is actually a fatal
979 * error or the data can be still interpreted as valid
980 * depends on the nature of the data and has to be
981 * decided by the user space.
982 *
983 * The actual size of data returned is stored to
984 * size_ptr.
985 *
986 * @param path_ptr Sysinfo path in the user address space.
987 * @param path_size Size of the path string.
988 * @param buffer_ptr User space pointer to the buffer where
989 * to store the binary data.
990 * @param buffer_size User space buffer size.
991 * @param size_ptr User space pointer where to store the
992 * binary data size.
993 *
994 * @return Error code (EOK in case of no error).
995 *
996 */
997sysarg_t sys_sysinfo_get_data(void *path_ptr, size_t path_size,
998 void *buffer_ptr, size_t buffer_size, size_t *size_ptr)
999{
1000 int rc;
1001
1002 /* Get the item */
1003 sysinfo_return_t ret = sysinfo_get_item_uspace(path_ptr, path_size,
1004 false);
1005
1006 /* Only constant or generated binary data is considered */
1007 if ((ret.tag == SYSINFO_VAL_DATA) ||
1008 (ret.tag == SYSINFO_VAL_FUNCTION_DATA)) {
1009 size_t size = min(ret.data.size, buffer_size);
1010 rc = copy_to_uspace(buffer_ptr, ret.data.data, size);
1011 if (rc == EOK)
1012 rc = copy_to_uspace(size_ptr, &size, sizeof(size));
1013 } else
1014 rc = EINVAL;
1015
1016 /* N.B.: The generated binary data should be freed */
1017 if ((ret.tag == SYSINFO_VAL_FUNCTION_DATA) && (ret.data.data != NULL))
1018 free(ret.data.data);
1019
1020 return (sysarg_t) rc;
1021}
1022
1023/** @}
1024 */
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