]> git.proxmox.com Git - mirror_ubuntu-artful-kernel.git/blame - kernel/resource.c
drivers: Initialize resource entry to zero
[mirror_ubuntu-artful-kernel.git] / kernel / resource.c
CommitLineData
1da177e4
LT
1/*
2 * linux/kernel/resource.c
3 *
4 * Copyright (C) 1999 Linus Torvalds
5 * Copyright (C) 1999 Martin Mares <mj@ucw.cz>
6 *
7 * Arbitrary resource management.
8 */
9
65fed8f6
OP
10#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
11
9984de1a 12#include <linux/export.h>
1da177e4
LT
13#include <linux/errno.h>
14#include <linux/ioport.h>
15#include <linux/init.h>
16#include <linux/slab.h>
17#include <linux/spinlock.h>
18#include <linux/fs.h>
19#include <linux/proc_fs.h>
8b6d043b 20#include <linux/sched.h>
1da177e4 21#include <linux/seq_file.h>
9ac7849e 22#include <linux/device.h>
d68612b2 23#include <linux/pfn.h>
ebff7d8f 24#include <linux/mm.h>
90e97820 25#include <linux/resource_ext.h>
1da177e4
LT
26#include <asm/io.h>
27
28
29struct resource ioport_resource = {
30 .name = "PCI IO",
6550e07f 31 .start = 0,
1da177e4
LT
32 .end = IO_SPACE_LIMIT,
33 .flags = IORESOURCE_IO,
34};
1da177e4
LT
35EXPORT_SYMBOL(ioport_resource);
36
37struct resource iomem_resource = {
38 .name = "PCI mem",
6550e07f
GKH
39 .start = 0,
40 .end = -1,
1da177e4
LT
41 .flags = IORESOURCE_MEM,
42};
1da177e4
LT
43EXPORT_SYMBOL(iomem_resource);
44
23c570a6
RP
45/* constraints to be met while allocating resources */
46struct resource_constraint {
47 resource_size_t min, max, align;
48 resource_size_t (*alignf)(void *, const struct resource *,
49 resource_size_t, resource_size_t);
50 void *alignf_data;
51};
52
1da177e4
LT
53static DEFINE_RWLOCK(resource_lock);
54
ebff7d8f
YI
55/*
56 * For memory hotplug, there is no way to free resource entries allocated
57 * by boot mem after the system is up. So for reusing the resource entry
58 * we need to remember the resource.
59 */
60static struct resource *bootmem_resource_free;
61static DEFINE_SPINLOCK(bootmem_resource_lock);
62
8c86e70a 63static struct resource *next_resource(struct resource *p, bool sibling_only)
1da177e4 64{
8c86e70a
VG
65 /* Caller wants to traverse through siblings only */
66 if (sibling_only)
67 return p->sibling;
68
1da177e4
LT
69 if (p->child)
70 return p->child;
71 while (!p->sibling && p->parent)
72 p = p->parent;
73 return p->sibling;
74}
75
8c86e70a
VG
76static void *r_next(struct seq_file *m, void *v, loff_t *pos)
77{
78 struct resource *p = v;
79 (*pos)++;
80 return (void *)next_resource(p, false);
81}
82
13eb8375
IM
83#ifdef CONFIG_PROC_FS
84
85enum { MAX_IORES_LEVEL = 5 };
86
1da177e4
LT
87static void *r_start(struct seq_file *m, loff_t *pos)
88 __acquires(resource_lock)
89{
90 struct resource *p = m->private;
91 loff_t l = 0;
92 read_lock(&resource_lock);
93 for (p = p->child; p && l < *pos; p = r_next(m, p, &l))
94 ;
95 return p;
96}
97
98static void r_stop(struct seq_file *m, void *v)
99 __releases(resource_lock)
100{
101 read_unlock(&resource_lock);
102}
103
104static int r_show(struct seq_file *m, void *v)
105{
106 struct resource *root = m->private;
107 struct resource *r = v, *p;
108 int width = root->end < 0x10000 ? 4 : 8;
109 int depth;
110
111 for (depth = 0, p = r; depth < MAX_IORES_LEVEL; depth++, p = p->parent)
112 if (p->parent == root)
113 break;
685143ac 114 seq_printf(m, "%*s%0*llx-%0*llx : %s\n",
1da177e4 115 depth * 2, "",
685143ac
GKH
116 width, (unsigned long long) r->start,
117 width, (unsigned long long) r->end,
1da177e4
LT
118 r->name ? r->name : "<BAD>");
119 return 0;
120}
121
15ad7cdc 122static const struct seq_operations resource_op = {
1da177e4
LT
123 .start = r_start,
124 .next = r_next,
125 .stop = r_stop,
126 .show = r_show,
127};
128
129static int ioports_open(struct inode *inode, struct file *file)
130{
131 int res = seq_open(file, &resource_op);
132 if (!res) {
133 struct seq_file *m = file->private_data;
134 m->private = &ioport_resource;
135 }
136 return res;
137}
138
139static int iomem_open(struct inode *inode, struct file *file)
140{
141 int res = seq_open(file, &resource_op);
142 if (!res) {
143 struct seq_file *m = file->private_data;
144 m->private = &iomem_resource;
145 }
146 return res;
147}
148
15ad7cdc 149static const struct file_operations proc_ioports_operations = {
1da177e4
LT
150 .open = ioports_open,
151 .read = seq_read,
152 .llseek = seq_lseek,
153 .release = seq_release,
154};
155
15ad7cdc 156static const struct file_operations proc_iomem_operations = {
1da177e4
LT
157 .open = iomem_open,
158 .read = seq_read,
159 .llseek = seq_lseek,
160 .release = seq_release,
161};
162
163static int __init ioresources_init(void)
164{
c33fff0a
DL
165 proc_create("ioports", 0, NULL, &proc_ioports_operations);
166 proc_create("iomem", 0, NULL, &proc_iomem_operations);
1da177e4
LT
167 return 0;
168}
169__initcall(ioresources_init);
170
171#endif /* CONFIG_PROC_FS */
172
ebff7d8f
YI
173static void free_resource(struct resource *res)
174{
175 if (!res)
176 return;
177
178 if (!PageSlab(virt_to_head_page(res))) {
179 spin_lock(&bootmem_resource_lock);
180 res->sibling = bootmem_resource_free;
181 bootmem_resource_free = res;
182 spin_unlock(&bootmem_resource_lock);
183 } else {
184 kfree(res);
185 }
186}
187
188static struct resource *alloc_resource(gfp_t flags)
189{
190 struct resource *res = NULL;
191
192 spin_lock(&bootmem_resource_lock);
193 if (bootmem_resource_free) {
194 res = bootmem_resource_free;
195 bootmem_resource_free = res->sibling;
196 }
197 spin_unlock(&bootmem_resource_lock);
198
199 if (res)
200 memset(res, 0, sizeof(struct resource));
201 else
202 res = kzalloc(sizeof(struct resource), flags);
203
204 return res;
205}
206
1da177e4
LT
207/* Return the conflict entry if you can't request it */
208static struct resource * __request_resource(struct resource *root, struct resource *new)
209{
d75fc8bb
GKH
210 resource_size_t start = new->start;
211 resource_size_t end = new->end;
1da177e4
LT
212 struct resource *tmp, **p;
213
214 if (end < start)
215 return root;
216 if (start < root->start)
217 return root;
218 if (end > root->end)
219 return root;
220 p = &root->child;
221 for (;;) {
222 tmp = *p;
223 if (!tmp || tmp->start > end) {
224 new->sibling = tmp;
225 *p = new;
226 new->parent = root;
227 return NULL;
228 }
229 p = &tmp->sibling;
230 if (tmp->end < start)
231 continue;
232 return tmp;
233 }
234}
235
236static int __release_resource(struct resource *old)
237{
238 struct resource *tmp, **p;
239
240 p = &old->parent->child;
241 for (;;) {
242 tmp = *p;
243 if (!tmp)
244 break;
245 if (tmp == old) {
246 *p = tmp->sibling;
247 old->parent = NULL;
248 return 0;
249 }
250 p = &tmp->sibling;
251 }
252 return -EINVAL;
253}
254
5eeec0ec
YL
255static void __release_child_resources(struct resource *r)
256{
257 struct resource *tmp, *p;
258 resource_size_t size;
259
260 p = r->child;
261 r->child = NULL;
262 while (p) {
263 tmp = p;
264 p = p->sibling;
265
266 tmp->parent = NULL;
267 tmp->sibling = NULL;
268 __release_child_resources(tmp);
269
270 printk(KERN_DEBUG "release child resource %pR\n", tmp);
271 /* need to restore size, and keep flags */
272 size = resource_size(tmp);
273 tmp->start = 0;
274 tmp->end = size - 1;
275 }
276}
277
278void release_child_resources(struct resource *r)
279{
280 write_lock(&resource_lock);
281 __release_child_resources(r);
282 write_unlock(&resource_lock);
283}
284
e1ca66d1 285/**
66f1207b 286 * request_resource_conflict - request and reserve an I/O or memory resource
e1ca66d1
RD
287 * @root: root resource descriptor
288 * @new: resource descriptor desired by caller
289 *
66f1207b 290 * Returns 0 for success, conflict resource on error.
e1ca66d1 291 */
66f1207b 292struct resource *request_resource_conflict(struct resource *root, struct resource *new)
1da177e4
LT
293{
294 struct resource *conflict;
295
296 write_lock(&resource_lock);
297 conflict = __request_resource(root, new);
298 write_unlock(&resource_lock);
66f1207b
BH
299 return conflict;
300}
301
302/**
303 * request_resource - request and reserve an I/O or memory resource
304 * @root: root resource descriptor
305 * @new: resource descriptor desired by caller
306 *
307 * Returns 0 for success, negative error code on error.
308 */
309int request_resource(struct resource *root, struct resource *new)
310{
311 struct resource *conflict;
312
313 conflict = request_resource_conflict(root, new);
1da177e4
LT
314 return conflict ? -EBUSY : 0;
315}
316
317EXPORT_SYMBOL(request_resource);
318
e1ca66d1
RD
319/**
320 * release_resource - release a previously reserved resource
321 * @old: resource pointer
322 */
1da177e4
LT
323int release_resource(struct resource *old)
324{
325 int retval;
326
327 write_lock(&resource_lock);
328 retval = __release_resource(old);
329 write_unlock(&resource_lock);
330 return retval;
331}
332
333EXPORT_SYMBOL(release_resource);
334
2842f114 335/*
8c86e70a 336 * Finds the lowest iomem reosurce exists with-in [res->start.res->end)
908eedc6 337 * the caller must specify res->start, res->end, res->flags and "name".
2842f114 338 * If found, returns 0, res is overwritten, if not found, returns -1.
8c86e70a
VG
339 * This walks through whole tree and not just first level children
340 * until and unless first_level_children_only is true.
2842f114 341 */
8c86e70a
VG
342static int find_next_iomem_res(struct resource *res, char *name,
343 bool first_level_children_only)
2842f114
KH
344{
345 resource_size_t start, end;
346 struct resource *p;
8c86e70a 347 bool sibling_only = false;
2842f114
KH
348
349 BUG_ON(!res);
350
351 start = res->start;
352 end = res->end;
58c1b5b0 353 BUG_ON(start >= end);
2842f114 354
800df627 355 if (first_level_children_only)
8c86e70a 356 sibling_only = true;
8c86e70a 357
800df627
VG
358 read_lock(&resource_lock);
359
360 for (p = iomem_resource.child; p; p = next_resource(p, sibling_only)) {
a3650d53 361 if ((p->flags & res->flags) != res->flags)
2842f114 362 continue;
908eedc6
KH
363 if (name && strcmp(p->name, name))
364 continue;
2842f114
KH
365 if (p->start > end) {
366 p = NULL;
367 break;
368 }
58c1b5b0 369 if ((p->end >= start) && (p->start < end))
2842f114
KH
370 break;
371 }
8c86e70a 372
2842f114
KH
373 read_unlock(&resource_lock);
374 if (!p)
375 return -1;
376 /* copy data */
0f04ab5e
KH
377 if (res->start < p->start)
378 res->start = p->start;
379 if (res->end > p->end)
380 res->end = p->end;
2842f114
KH
381 return 0;
382}
908eedc6 383
8c86e70a
VG
384/*
385 * Walks through iomem resources and calls func() with matching resource
386 * ranges. This walks through whole tree and not just first level children.
387 * All the memory ranges which overlap start,end and also match flags and
388 * name are valid candidates.
389 *
390 * @name: name of resource
391 * @flags: resource flags
392 * @start: start addr
393 * @end: end addr
394 */
395int walk_iomem_res(char *name, unsigned long flags, u64 start, u64 end,
396 void *arg, int (*func)(u64, u64, void *))
397{
398 struct resource res;
399 u64 orig_end;
400 int ret = -1;
401
402 res.start = start;
403 res.end = end;
404 res.flags = flags;
405 orig_end = res.end;
406 while ((res.start < res.end) &&
407 (!find_next_iomem_res(&res, name, false))) {
408 ret = (*func)(res.start, res.end, arg);
409 if (ret)
410 break;
411 res.start = res.end + 1;
412 res.end = orig_end;
413 }
414 return ret;
415}
416
417/*
418 * This function calls callback against all memory range of "System RAM"
419 * which are marked as IORESOURCE_MEM and IORESOUCE_BUSY.
420 * Now, this function is only for "System RAM". This function deals with
421 * full ranges and not pfn. If resources are not pfn aligned, dealing
422 * with pfn can truncate ranges.
423 */
424int walk_system_ram_res(u64 start, u64 end, void *arg,
425 int (*func)(u64, u64, void *))
426{
427 struct resource res;
428 u64 orig_end;
429 int ret = -1;
430
431 res.start = start;
432 res.end = end;
433 res.flags = IORESOURCE_MEM | IORESOURCE_BUSY;
434 orig_end = res.end;
435 while ((res.start < res.end) &&
436 (!find_next_iomem_res(&res, "System RAM", true))) {
437 ret = (*func)(res.start, res.end, arg);
438 if (ret)
439 break;
440 res.start = res.end + 1;
441 res.end = orig_end;
442 }
443 return ret;
444}
445
446#if !defined(CONFIG_ARCH_HAS_WALK_MEMORY)
447
908eedc6
KH
448/*
449 * This function calls callback against all memory range of "System RAM"
450 * which are marked as IORESOURCE_MEM and IORESOUCE_BUSY.
451 * Now, this function is only for "System RAM".
452 */
453int walk_system_ram_range(unsigned long start_pfn, unsigned long nr_pages,
454 void *arg, int (*func)(unsigned long, unsigned long, void *))
75884fb1
KH
455{
456 struct resource res;
37b99dd5 457 unsigned long pfn, end_pfn;
75884fb1
KH
458 u64 orig_end;
459 int ret = -1;
908eedc6 460
75884fb1
KH
461 res.start = (u64) start_pfn << PAGE_SHIFT;
462 res.end = ((u64)(start_pfn + nr_pages) << PAGE_SHIFT) - 1;
887c3cb1 463 res.flags = IORESOURCE_MEM | IORESOURCE_BUSY;
75884fb1 464 orig_end = res.end;
908eedc6 465 while ((res.start < res.end) &&
8c86e70a 466 (find_next_iomem_res(&res, "System RAM", true) >= 0)) {
37b99dd5
WF
467 pfn = (res.start + PAGE_SIZE - 1) >> PAGE_SHIFT;
468 end_pfn = (res.end + 1) >> PAGE_SHIFT;
469 if (end_pfn > pfn)
f4149660 470 ret = (*func)(pfn, end_pfn - pfn, arg);
75884fb1
KH
471 if (ret)
472 break;
473 res.start = res.end + 1;
474 res.end = orig_end;
475 }
476 return ret;
477}
478
2842f114
KH
479#endif
480
61ef2489
WF
481static int __is_ram(unsigned long pfn, unsigned long nr_pages, void *arg)
482{
483 return 1;
484}
485/*
486 * This generic page_is_ram() returns true if specified address is
487 * registered as "System RAM" in iomem_resource list.
488 */
e5273007 489int __weak page_is_ram(unsigned long pfn)
61ef2489
WF
490{
491 return walk_system_ram_range(pfn, 1, NULL, __is_ram) == 1;
492}
c5a13032 493EXPORT_SYMBOL_GPL(page_is_ram);
61ef2489 494
124fe20d
DW
495/**
496 * region_intersects() - determine intersection of region with known resources
497 * @start: region start address
498 * @size: size of region
499 * @name: name of resource (in iomem_resource)
67cf13ce 500 *
124fe20d
DW
501 * Check if the specified region partially overlaps or fully eclipses a
502 * resource identified by @name. Return REGION_DISJOINT if the region
503 * does not overlap @name, return REGION_MIXED if the region overlaps
504 * @type and another resource, and return REGION_INTERSECTS if the
505 * region overlaps @type and no other defined resource. Note, that
506 * REGION_INTERSECTS is also returned in the case when the specified
507 * region overlaps RAM and undefined memory holes.
508 *
509 * region_intersect() is used by memory remapping functions to ensure
510 * the user is not remapping RAM and is a vast speed up over walking
511 * through the resource table page by page.
67cf13ce 512 */
124fe20d 513int region_intersects(resource_size_t start, size_t size, const char *name)
67cf13ce 514{
8c38de99 515 unsigned long flags = IORESOURCE_MEM | IORESOURCE_BUSY;
124fe20d
DW
516 resource_size_t end = start + size - 1;
517 int type = 0; int other = 0;
518 struct resource *p;
67cf13ce
MT
519
520 read_lock(&resource_lock);
521 for (p = iomem_resource.child; p ; p = p->sibling) {
a3650d53
TK
522 bool is_type = strcmp(p->name, name) == 0 &&
523 ((p->flags & flags) == flags);
124fe20d
DW
524
525 if (start >= p->start && start <= p->end)
526 is_type ? type++ : other++;
527 if (end >= p->start && end <= p->end)
528 is_type ? type++ : other++;
529 if (p->start >= start && p->end <= end)
530 is_type ? type++ : other++;
67cf13ce
MT
531 }
532 read_unlock(&resource_lock);
124fe20d
DW
533
534 if (other == 0)
535 return type ? REGION_INTERSECTS : REGION_DISJOINT;
536
537 if (type)
538 return REGION_MIXED;
539
540 return REGION_DISJOINT;
67cf13ce
MT
541}
542
fcb11918
BH
543void __weak arch_remove_reservations(struct resource *avail)
544{
545}
546
a9cea017
BH
547static resource_size_t simple_align_resource(void *data,
548 const struct resource *avail,
549 resource_size_t size,
550 resource_size_t align)
551{
552 return avail->start;
553}
554
5d6b1fa3
BH
555static void resource_clip(struct resource *res, resource_size_t min,
556 resource_size_t max)
557{
558 if (res->start < min)
559 res->start = min;
560 if (res->end > max)
561 res->end = max;
562}
563
1da177e4 564/*
23c570a6
RP
565 * Find empty slot in the resource tree with the given range and
566 * alignment constraints
1da177e4 567 */
23c570a6
RP
568static int __find_resource(struct resource *root, struct resource *old,
569 struct resource *new,
570 resource_size_t size,
571 struct resource_constraint *constraint)
1da177e4
LT
572{
573 struct resource *this = root->child;
a1862e31 574 struct resource tmp = *new, avail, alloc;
1da177e4 575
0e2c8b8f 576 tmp.start = root->start;
1da177e4 577 /*
c0f5ac54
BH
578 * Skip past an allocated resource that starts at 0, since the assignment
579 * of this->start - 1 to tmp->end below would cause an underflow.
1da177e4 580 */
23c570a6
RP
581 if (this && this->start == root->start) {
582 tmp.start = (this == old) ? old->start : this->end + 1;
1da177e4
LT
583 this = this->sibling;
584 }
c0f5ac54 585 for(;;) {
1da177e4 586 if (this)
23c570a6 587 tmp.end = (this == old) ? this->end : this->start - 1;
1da177e4 588 else
0e2c8b8f 589 tmp.end = root->end;
5d6b1fa3 590
47ea91b4
RP
591 if (tmp.end < tmp.start)
592 goto next;
593
23c570a6 594 resource_clip(&tmp, constraint->min, constraint->max);
fcb11918 595 arch_remove_reservations(&tmp);
a9cea017 596
a1862e31 597 /* Check for overflow after ALIGN() */
23c570a6 598 avail.start = ALIGN(tmp.start, constraint->align);
a1862e31 599 avail.end = tmp.end;
5edb93b8 600 avail.flags = new->flags & ~IORESOURCE_UNSET;
a1862e31 601 if (avail.start >= tmp.start) {
5edb93b8 602 alloc.flags = avail.flags;
23c570a6
RP
603 alloc.start = constraint->alignf(constraint->alignf_data, &avail,
604 size, constraint->align);
a1862e31
BH
605 alloc.end = alloc.start + size - 1;
606 if (resource_contains(&avail, &alloc)) {
607 new->start = alloc.start;
608 new->end = alloc.end;
609 return 0;
610 }
1da177e4 611 }
47ea91b4
RP
612
613next: if (!this || this->end == root->end)
1da177e4 614 break;
47ea91b4 615
23c570a6
RP
616 if (this != old)
617 tmp.start = this->end + 1;
1da177e4
LT
618 this = this->sibling;
619 }
620 return -EBUSY;
621}
622
23c570a6
RP
623/*
624 * Find empty slot in the resource tree given range and alignment.
625 */
626static int find_resource(struct resource *root, struct resource *new,
627 resource_size_t size,
628 struct resource_constraint *constraint)
629{
630 return __find_resource(root, NULL, new, size, constraint);
631}
632
e1ca66d1 633/**
23c570a6
RP
634 * reallocate_resource - allocate a slot in the resource tree given range & alignment.
635 * The resource will be relocated if the new size cannot be reallocated in the
636 * current location.
637 *
638 * @root: root resource descriptor
639 * @old: resource descriptor desired by caller
640 * @newsize: new size of the resource descriptor
641 * @constraint: the size and alignment constraints to be met.
642 */
28ab49ff 643static int reallocate_resource(struct resource *root, struct resource *old,
23c570a6
RP
644 resource_size_t newsize,
645 struct resource_constraint *constraint)
646{
647 int err=0;
648 struct resource new = *old;
649 struct resource *conflict;
650
651 write_lock(&resource_lock);
652
653 if ((err = __find_resource(root, old, &new, newsize, constraint)))
654 goto out;
655
656 if (resource_contains(&new, old)) {
657 old->start = new.start;
658 old->end = new.end;
659 goto out;
660 }
661
662 if (old->child) {
663 err = -EBUSY;
664 goto out;
665 }
666
667 if (resource_contains(old, &new)) {
668 old->start = new.start;
669 old->end = new.end;
670 } else {
671 __release_resource(old);
672 *old = new;
673 conflict = __request_resource(root, old);
674 BUG_ON(conflict);
675 }
676out:
677 write_unlock(&resource_lock);
678 return err;
679}
680
681
682/**
683 * allocate_resource - allocate empty slot in the resource tree given range & alignment.
684 * The resource will be reallocated with a new size if it was already allocated
e1ca66d1
RD
685 * @root: root resource descriptor
686 * @new: resource descriptor desired by caller
687 * @size: requested resource region size
ee5e5683
WY
688 * @min: minimum boundary to allocate
689 * @max: maximum boundary to allocate
e1ca66d1
RD
690 * @align: alignment requested, in bytes
691 * @alignf: alignment function, optional, called if not NULL
692 * @alignf_data: arbitrary data to pass to the @alignf function
1da177e4
LT
693 */
694int allocate_resource(struct resource *root, struct resource *new,
d75fc8bb
GKH
695 resource_size_t size, resource_size_t min,
696 resource_size_t max, resource_size_t align,
b26b2d49 697 resource_size_t (*alignf)(void *,
3b7a17fc 698 const struct resource *,
b26b2d49
DB
699 resource_size_t,
700 resource_size_t),
1da177e4
LT
701 void *alignf_data)
702{
703 int err;
23c570a6 704 struct resource_constraint constraint;
1da177e4 705
a9cea017
BH
706 if (!alignf)
707 alignf = simple_align_resource;
708
23c570a6
RP
709 constraint.min = min;
710 constraint.max = max;
711 constraint.align = align;
712 constraint.alignf = alignf;
713 constraint.alignf_data = alignf_data;
714
715 if ( new->parent ) {
716 /* resource is already allocated, try reallocating with
717 the new constraints */
718 return reallocate_resource(root, new, size, &constraint);
719 }
720
1da177e4 721 write_lock(&resource_lock);
23c570a6 722 err = find_resource(root, new, size, &constraint);
1da177e4
LT
723 if (err >= 0 && __request_resource(root, new))
724 err = -EBUSY;
725 write_unlock(&resource_lock);
726 return err;
727}
728
729EXPORT_SYMBOL(allocate_resource);
730
1c388919
GU
731/**
732 * lookup_resource - find an existing resource by a resource start address
733 * @root: root resource descriptor
734 * @start: resource start address
735 *
736 * Returns a pointer to the resource if found, NULL otherwise
737 */
738struct resource *lookup_resource(struct resource *root, resource_size_t start)
739{
740 struct resource *res;
741
742 read_lock(&resource_lock);
743 for (res = root->child; res; res = res->sibling) {
744 if (res->start == start)
745 break;
746 }
747 read_unlock(&resource_lock);
748
749 return res;
750}
751
bef69ea0
LT
752/*
753 * Insert a resource into the resource tree. If successful, return NULL,
754 * otherwise return the conflicting resource (compare to __request_resource())
1da177e4 755 */
bef69ea0 756static struct resource * __insert_resource(struct resource *parent, struct resource *new)
1da177e4 757{
1da177e4
LT
758 struct resource *first, *next;
759
d33b6fba 760 for (;; parent = first) {
d33b6fba
MW
761 first = __request_resource(parent, new);
762 if (!first)
bef69ea0 763 return first;
d33b6fba 764
d33b6fba 765 if (first == parent)
bef69ea0 766 return first;
5de1cb2d
HS
767 if (WARN_ON(first == new)) /* duplicated insertion */
768 return first;
d33b6fba
MW
769
770 if ((first->start > new->start) || (first->end < new->end))
771 break;
772 if ((first->start == new->start) && (first->end == new->end))
773 break;
1da177e4
LT
774 }
775
776 for (next = first; ; next = next->sibling) {
777 /* Partial overlap? Bad, and unfixable */
778 if (next->start < new->start || next->end > new->end)
bef69ea0 779 return next;
1da177e4
LT
780 if (!next->sibling)
781 break;
782 if (next->sibling->start > new->end)
783 break;
784 }
785
1da177e4
LT
786 new->parent = parent;
787 new->sibling = next->sibling;
788 new->child = first;
789
790 next->sibling = NULL;
791 for (next = first; next; next = next->sibling)
792 next->parent = new;
793
794 if (parent->child == first) {
795 parent->child = new;
796 } else {
797 next = parent->child;
798 while (next->sibling != first)
799 next = next->sibling;
800 next->sibling = new;
801 }
bef69ea0
LT
802 return NULL;
803}
1da177e4 804
bef69ea0 805/**
66f1207b 806 * insert_resource_conflict - Inserts resource in the resource tree
bef69ea0
LT
807 * @parent: parent of the new resource
808 * @new: new resource to insert
809 *
66f1207b 810 * Returns 0 on success, conflict resource if the resource can't be inserted.
bef69ea0 811 *
66f1207b 812 * This function is equivalent to request_resource_conflict when no conflict
bef69ea0
LT
813 * happens. If a conflict happens, and the conflicting resources
814 * entirely fit within the range of the new resource, then the new
815 * resource is inserted and the conflicting resources become children of
816 * the new resource.
817 */
66f1207b 818struct resource *insert_resource_conflict(struct resource *parent, struct resource *new)
bef69ea0
LT
819{
820 struct resource *conflict;
821
822 write_lock(&resource_lock);
823 conflict = __insert_resource(parent, new);
824 write_unlock(&resource_lock);
66f1207b
BH
825 return conflict;
826}
827
828/**
829 * insert_resource - Inserts a resource in the resource tree
830 * @parent: parent of the new resource
831 * @new: new resource to insert
832 *
833 * Returns 0 on success, -EBUSY if the resource can't be inserted.
834 */
835int insert_resource(struct resource *parent, struct resource *new)
836{
837 struct resource *conflict;
838
839 conflict = insert_resource_conflict(parent, new);
bef69ea0
LT
840 return conflict ? -EBUSY : 0;
841}
842
843/**
844 * insert_resource_expand_to_fit - Insert a resource into the resource tree
6781f4ae 845 * @root: root resource descriptor
bef69ea0
LT
846 * @new: new resource to insert
847 *
848 * Insert a resource into the resource tree, possibly expanding it in order
849 * to make it encompass any conflicting resources.
850 */
851void insert_resource_expand_to_fit(struct resource *root, struct resource *new)
852{
853 if (new->parent)
854 return;
855
856 write_lock(&resource_lock);
857 for (;;) {
858 struct resource *conflict;
859
860 conflict = __insert_resource(root, new);
861 if (!conflict)
862 break;
863 if (conflict == root)
864 break;
865
866 /* Ok, expand resource to cover the conflict, then try again .. */
867 if (conflict->start < new->start)
868 new->start = conflict->start;
869 if (conflict->end > new->end)
870 new->end = conflict->end;
871
872 printk("Expanded resource %s due to conflict with %s\n", new->name, conflict->name);
873 }
1da177e4 874 write_unlock(&resource_lock);
1da177e4
LT
875}
876
ae8e3a91
TK
877static int __adjust_resource(struct resource *res, resource_size_t start,
878 resource_size_t size)
1da177e4
LT
879{
880 struct resource *tmp, *parent = res->parent;
d75fc8bb 881 resource_size_t end = start + size - 1;
1da177e4
LT
882 int result = -EBUSY;
883
82ec90ea
YL
884 if (!parent)
885 goto skip;
886
1da177e4
LT
887 if ((start < parent->start) || (end > parent->end))
888 goto out;
889
1da177e4
LT
890 if (res->sibling && (res->sibling->start <= end))
891 goto out;
892
893 tmp = parent->child;
894 if (tmp != res) {
895 while (tmp->sibling != res)
896 tmp = tmp->sibling;
897 if (start <= tmp->end)
898 goto out;
899 }
900
82ec90ea
YL
901skip:
902 for (tmp = res->child; tmp; tmp = tmp->sibling)
903 if ((tmp->start < start) || (tmp->end > end))
904 goto out;
905
1da177e4
LT
906 res->start = start;
907 res->end = end;
908 result = 0;
909
910 out:
ae8e3a91
TK
911 return result;
912}
913
914/**
915 * adjust_resource - modify a resource's start and size
916 * @res: resource to modify
917 * @start: new start value
918 * @size: new size
919 *
920 * Given an existing resource, change its start and size to match the
921 * arguments. Returns 0 on success, -EBUSY if it can't fit.
922 * Existing children of the resource are assumed to be immutable.
923 */
924int adjust_resource(struct resource *res, resource_size_t start,
925 resource_size_t size)
926{
927 int result;
928
929 write_lock(&resource_lock);
930 result = __adjust_resource(res, start, size);
1da177e4
LT
931 write_unlock(&resource_lock);
932 return result;
933}
24105748 934EXPORT_SYMBOL(adjust_resource);
1da177e4 935
268364a0
YL
936static void __init __reserve_region_with_split(struct resource *root,
937 resource_size_t start, resource_size_t end,
938 const char *name)
939{
940 struct resource *parent = root;
941 struct resource *conflict;
ebff7d8f 942 struct resource *res = alloc_resource(GFP_ATOMIC);
4965f566 943 struct resource *next_res = NULL;
268364a0
YL
944
945 if (!res)
946 return;
947
948 res->name = name;
949 res->start = start;
950 res->end = end;
951 res->flags = IORESOURCE_BUSY;
43ee493b 952 res->desc = IORES_DESC_NONE;
268364a0 953
4965f566 954 while (1) {
268364a0 955
4965f566
M
956 conflict = __request_resource(parent, res);
957 if (!conflict) {
958 if (!next_res)
959 break;
960 res = next_res;
961 next_res = NULL;
962 continue;
963 }
268364a0 964
4965f566
M
965 /* conflict covered whole area */
966 if (conflict->start <= res->start &&
967 conflict->end >= res->end) {
ebff7d8f 968 free_resource(res);
4965f566
M
969 WARN_ON(next_res);
970 break;
971 }
972
973 /* failed, split and try again */
974 if (conflict->start > res->start) {
975 end = res->end;
976 res->end = conflict->start - 1;
977 if (conflict->end < end) {
ebff7d8f 978 next_res = alloc_resource(GFP_ATOMIC);
4965f566 979 if (!next_res) {
ebff7d8f 980 free_resource(res);
4965f566
M
981 break;
982 }
983 next_res->name = name;
984 next_res->start = conflict->end + 1;
985 next_res->end = end;
986 next_res->flags = IORESOURCE_BUSY;
43ee493b 987 next_res->desc = IORES_DESC_NONE;
4965f566
M
988 }
989 } else {
990 res->start = conflict->end + 1;
991 }
992 }
268364a0
YL
993
994}
995
bea92112 996void __init reserve_region_with_split(struct resource *root,
268364a0
YL
997 resource_size_t start, resource_size_t end,
998 const char *name)
999{
65fed8f6
OP
1000 int abort = 0;
1001
268364a0 1002 write_lock(&resource_lock);
65fed8f6
OP
1003 if (root->start > start || root->end < end) {
1004 pr_err("requested range [0x%llx-0x%llx] not in root %pr\n",
1005 (unsigned long long)start, (unsigned long long)end,
1006 root);
1007 if (start > root->end || end < root->start)
1008 abort = 1;
1009 else {
1010 if (end > root->end)
1011 end = root->end;
1012 if (start < root->start)
1013 start = root->start;
1014 pr_err("fixing request to [0x%llx-0x%llx]\n",
1015 (unsigned long long)start,
1016 (unsigned long long)end);
1017 }
1018 dump_stack();
1019 }
1020 if (!abort)
1021 __reserve_region_with_split(root, start, end, name);
268364a0
YL
1022 write_unlock(&resource_lock);
1023}
1024
88452565
IK
1025/**
1026 * resource_alignment - calculate resource's alignment
1027 * @res: resource pointer
1028 *
1029 * Returns alignment on success, 0 (invalid alignment) on failure.
1030 */
1031resource_size_t resource_alignment(struct resource *res)
1032{
1033 switch (res->flags & (IORESOURCE_SIZEALIGN | IORESOURCE_STARTALIGN)) {
1034 case IORESOURCE_SIZEALIGN:
1a4e564b 1035 return resource_size(res);
88452565
IK
1036 case IORESOURCE_STARTALIGN:
1037 return res->start;
1038 default:
1039 return 0;
1040 }
1041}
1042
1da177e4
LT
1043/*
1044 * This is compatibility stuff for IO resources.
1045 *
1046 * Note how this, unlike the above, knows about
1047 * the IO flag meanings (busy etc).
1048 *
e1ca66d1 1049 * request_region creates a new busy region.
1da177e4 1050 *
e1ca66d1
RD
1051 * release_region releases a matching busy region.
1052 */
1053
8b6d043b
AC
1054static DECLARE_WAIT_QUEUE_HEAD(muxed_resource_wait);
1055
e1ca66d1
RD
1056/**
1057 * __request_region - create a new busy resource region
1058 * @parent: parent resource descriptor
1059 * @start: resource start address
1060 * @n: resource region size
1061 * @name: reserving caller's ID string
6ae301e8 1062 * @flags: IO resource flags
1da177e4 1063 */
d75fc8bb
GKH
1064struct resource * __request_region(struct resource *parent,
1065 resource_size_t start, resource_size_t n,
e8de1481 1066 const char *name, int flags)
1da177e4 1067{
8b6d043b 1068 DECLARE_WAITQUEUE(wait, current);
ebff7d8f 1069 struct resource *res = alloc_resource(GFP_KERNEL);
1da177e4 1070
c26ec88e
BH
1071 if (!res)
1072 return NULL;
1073
1074 res->name = name;
1075 res->start = start;
1076 res->end = start + n - 1;
a3650d53 1077 res->flags = resource_type(parent) | resource_ext_type(parent);
6404e88e 1078 res->flags |= IORESOURCE_BUSY | flags;
43ee493b 1079 res->desc = IORES_DESC_NONE;
c26ec88e
BH
1080
1081 write_lock(&resource_lock);
1082
1083 for (;;) {
1084 struct resource *conflict;
1085
1086 conflict = __request_resource(parent, res);
1087 if (!conflict)
1da177e4 1088 break;
c26ec88e
BH
1089 if (conflict != parent) {
1090 parent = conflict;
1091 if (!(conflict->flags & IORESOURCE_BUSY))
1092 continue;
1da177e4 1093 }
8b6d043b
AC
1094 if (conflict->flags & flags & IORESOURCE_MUXED) {
1095 add_wait_queue(&muxed_resource_wait, &wait);
1096 write_unlock(&resource_lock);
1097 set_current_state(TASK_UNINTERRUPTIBLE);
1098 schedule();
1099 remove_wait_queue(&muxed_resource_wait, &wait);
1100 write_lock(&resource_lock);
1101 continue;
1102 }
c26ec88e 1103 /* Uhhuh, that didn't work out.. */
ebff7d8f 1104 free_resource(res);
c26ec88e
BH
1105 res = NULL;
1106 break;
1da177e4 1107 }
c26ec88e 1108 write_unlock(&resource_lock);
1da177e4
LT
1109 return res;
1110}
1da177e4
LT
1111EXPORT_SYMBOL(__request_region);
1112
e1ca66d1
RD
1113/**
1114 * __release_region - release a previously reserved resource region
1115 * @parent: parent resource descriptor
1116 * @start: resource start address
1117 * @n: resource region size
1118 *
1119 * The described resource region must match a currently busy region.
1120 */
d75fc8bb
GKH
1121void __release_region(struct resource *parent, resource_size_t start,
1122 resource_size_t n)
1da177e4
LT
1123{
1124 struct resource **p;
d75fc8bb 1125 resource_size_t end;
1da177e4
LT
1126
1127 p = &parent->child;
1128 end = start + n - 1;
1129
1130 write_lock(&resource_lock);
1131
1132 for (;;) {
1133 struct resource *res = *p;
1134
1135 if (!res)
1136 break;
1137 if (res->start <= start && res->end >= end) {
1138 if (!(res->flags & IORESOURCE_BUSY)) {
1139 p = &res->child;
1140 continue;
1141 }
1142 if (res->start != start || res->end != end)
1143 break;
1144 *p = res->sibling;
1145 write_unlock(&resource_lock);
8b6d043b
AC
1146 if (res->flags & IORESOURCE_MUXED)
1147 wake_up(&muxed_resource_wait);
ebff7d8f 1148 free_resource(res);
1da177e4
LT
1149 return;
1150 }
1151 p = &res->sibling;
1152 }
1153
1154 write_unlock(&resource_lock);
1155
685143ac
GKH
1156 printk(KERN_WARNING "Trying to free nonexistent resource "
1157 "<%016llx-%016llx>\n", (unsigned long long)start,
1158 (unsigned long long)end);
1da177e4 1159}
1da177e4
LT
1160EXPORT_SYMBOL(__release_region);
1161
825f787b
TK
1162#ifdef CONFIG_MEMORY_HOTREMOVE
1163/**
1164 * release_mem_region_adjustable - release a previously reserved memory region
1165 * @parent: parent resource descriptor
1166 * @start: resource start address
1167 * @size: resource region size
1168 *
1169 * This interface is intended for memory hot-delete. The requested region
1170 * is released from a currently busy memory resource. The requested region
1171 * must either match exactly or fit into a single busy resource entry. In
1172 * the latter case, the remaining resource is adjusted accordingly.
1173 * Existing children of the busy memory resource must be immutable in the
1174 * request.
1175 *
1176 * Note:
1177 * - Additional release conditions, such as overlapping region, can be
1178 * supported after they are confirmed as valid cases.
1179 * - When a busy memory resource gets split into two entries, the code
1180 * assumes that all children remain in the lower address entry for
1181 * simplicity. Enhance this logic when necessary.
1182 */
1183int release_mem_region_adjustable(struct resource *parent,
1184 resource_size_t start, resource_size_t size)
1185{
1186 struct resource **p;
1187 struct resource *res;
1188 struct resource *new_res;
1189 resource_size_t end;
1190 int ret = -EINVAL;
1191
1192 end = start + size - 1;
1193 if ((start < parent->start) || (end > parent->end))
1194 return ret;
1195
ebff7d8f
YI
1196 /* The alloc_resource() result gets checked later */
1197 new_res = alloc_resource(GFP_KERNEL);
825f787b
TK
1198
1199 p = &parent->child;
1200 write_lock(&resource_lock);
1201
1202 while ((res = *p)) {
1203 if (res->start >= end)
1204 break;
1205
1206 /* look for the next resource if it does not fit into */
1207 if (res->start > start || res->end < end) {
1208 p = &res->sibling;
1209 continue;
1210 }
1211
1212 if (!(res->flags & IORESOURCE_MEM))
1213 break;
1214
1215 if (!(res->flags & IORESOURCE_BUSY)) {
1216 p = &res->child;
1217 continue;
1218 }
1219
1220 /* found the target resource; let's adjust accordingly */
1221 if (res->start == start && res->end == end) {
1222 /* free the whole entry */
1223 *p = res->sibling;
ebff7d8f 1224 free_resource(res);
825f787b
TK
1225 ret = 0;
1226 } else if (res->start == start && res->end != end) {
1227 /* adjust the start */
1228 ret = __adjust_resource(res, end + 1,
1229 res->end - end);
1230 } else if (res->start != start && res->end == end) {
1231 /* adjust the end */
1232 ret = __adjust_resource(res, res->start,
1233 start - res->start);
1234 } else {
1235 /* split into two entries */
1236 if (!new_res) {
1237 ret = -ENOMEM;
1238 break;
1239 }
1240 new_res->name = res->name;
1241 new_res->start = end + 1;
1242 new_res->end = res->end;
1243 new_res->flags = res->flags;
43ee493b 1244 new_res->desc = res->desc;
825f787b
TK
1245 new_res->parent = res->parent;
1246 new_res->sibling = res->sibling;
1247 new_res->child = NULL;
1248
1249 ret = __adjust_resource(res, res->start,
1250 start - res->start);
1251 if (ret)
1252 break;
1253 res->sibling = new_res;
1254 new_res = NULL;
1255 }
1256
1257 break;
1258 }
1259
1260 write_unlock(&resource_lock);
ebff7d8f 1261 free_resource(new_res);
825f787b
TK
1262 return ret;
1263}
1264#endif /* CONFIG_MEMORY_HOTREMOVE */
1265
9ac7849e
TH
1266/*
1267 * Managed region resource
1268 */
8d38821c
TR
1269static void devm_resource_release(struct device *dev, void *ptr)
1270{
1271 struct resource **r = ptr;
1272
1273 release_resource(*r);
1274}
1275
1276/**
1277 * devm_request_resource() - request and reserve an I/O or memory resource
1278 * @dev: device for which to request the resource
1279 * @root: root of the resource tree from which to request the resource
1280 * @new: descriptor of the resource to request
1281 *
1282 * This is a device-managed version of request_resource(). There is usually
1283 * no need to release resources requested by this function explicitly since
1284 * that will be taken care of when the device is unbound from its driver.
1285 * If for some reason the resource needs to be released explicitly, because
1286 * of ordering issues for example, drivers must call devm_release_resource()
1287 * rather than the regular release_resource().
1288 *
1289 * When a conflict is detected between any existing resources and the newly
1290 * requested resource, an error message will be printed.
1291 *
1292 * Returns 0 on success or a negative error code on failure.
1293 */
1294int devm_request_resource(struct device *dev, struct resource *root,
1295 struct resource *new)
1296{
1297 struct resource *conflict, **ptr;
1298
1299 ptr = devres_alloc(devm_resource_release, sizeof(*ptr), GFP_KERNEL);
1300 if (!ptr)
1301 return -ENOMEM;
1302
1303 *ptr = new;
1304
1305 conflict = request_resource_conflict(root, new);
1306 if (conflict) {
1307 dev_err(dev, "resource collision: %pR conflicts with %s %pR\n",
1308 new, conflict->name, conflict);
1309 devres_free(ptr);
1310 return -EBUSY;
1311 }
1312
1313 devres_add(dev, ptr);
1314 return 0;
1315}
1316EXPORT_SYMBOL(devm_request_resource);
1317
1318static int devm_resource_match(struct device *dev, void *res, void *data)
1319{
1320 struct resource **ptr = res;
1321
1322 return *ptr == data;
1323}
1324
1325/**
1326 * devm_release_resource() - release a previously requested resource
1327 * @dev: device for which to release the resource
1328 * @new: descriptor of the resource to release
1329 *
1330 * Releases a resource previously requested using devm_request_resource().
1331 */
1332void devm_release_resource(struct device *dev, struct resource *new)
1333{
1334 WARN_ON(devres_release(dev, devm_resource_release, devm_resource_match,
1335 new));
1336}
1337EXPORT_SYMBOL(devm_release_resource);
1338
9ac7849e
TH
1339struct region_devres {
1340 struct resource *parent;
1341 resource_size_t start;
1342 resource_size_t n;
1343};
1344
1345static void devm_region_release(struct device *dev, void *res)
1346{
1347 struct region_devres *this = res;
1348
1349 __release_region(this->parent, this->start, this->n);
1350}
1351
1352static int devm_region_match(struct device *dev, void *res, void *match_data)
1353{
1354 struct region_devres *this = res, *match = match_data;
1355
1356 return this->parent == match->parent &&
1357 this->start == match->start && this->n == match->n;
1358}
1359
1360struct resource * __devm_request_region(struct device *dev,
1361 struct resource *parent, resource_size_t start,
1362 resource_size_t n, const char *name)
1363{
1364 struct region_devres *dr = NULL;
1365 struct resource *res;
1366
1367 dr = devres_alloc(devm_region_release, sizeof(struct region_devres),
1368 GFP_KERNEL);
1369 if (!dr)
1370 return NULL;
1371
1372 dr->parent = parent;
1373 dr->start = start;
1374 dr->n = n;
1375
e8de1481 1376 res = __request_region(parent, start, n, name, 0);
9ac7849e
TH
1377 if (res)
1378 devres_add(dev, dr);
1379 else
1380 devres_free(dr);
1381
1382 return res;
1383}
1384EXPORT_SYMBOL(__devm_request_region);
1385
1386void __devm_release_region(struct device *dev, struct resource *parent,
1387 resource_size_t start, resource_size_t n)
1388{
1389 struct region_devres match_data = { parent, start, n };
1390
1391 __release_region(parent, start, n);
1392 WARN_ON(devres_destroy(dev, devm_region_release, devm_region_match,
1393 &match_data));
1394}
1395EXPORT_SYMBOL(__devm_release_region);
1396
1da177e4
LT
1397/*
1398 * Called from init/main.c to reserve IO ports.
1399 */
1400#define MAXRESERVE 4
1401static int __init reserve_setup(char *str)
1402{
1403 static int reserved;
1404 static struct resource reserve[MAXRESERVE];
1405
1406 for (;;) {
8bc1ad7d 1407 unsigned int io_start, io_num;
1da177e4
LT
1408 int x = reserved;
1409
1410 if (get_option (&str, &io_start) != 2)
1411 break;
1412 if (get_option (&str, &io_num) == 0)
1413 break;
1414 if (x < MAXRESERVE) {
1415 struct resource *res = reserve + x;
1416 res->name = "reserved";
1417 res->start = io_start;
1418 res->end = io_start + io_num - 1;
1419 res->flags = IORESOURCE_BUSY;
43ee493b 1420 res->desc = IORES_DESC_NONE;
1da177e4
LT
1421 res->child = NULL;
1422 if (request_resource(res->start >= 0x10000 ? &iomem_resource : &ioport_resource, res) == 0)
1423 reserved = x+1;
1424 }
1425 }
1426 return 1;
1427}
1428
1429__setup("reserve=", reserve_setup);
379daf62
SS
1430
1431/*
1432 * Check if the requested addr and size spans more than any slot in the
1433 * iomem resource tree.
1434 */
1435int iomem_map_sanity_check(resource_size_t addr, unsigned long size)
1436{
1437 struct resource *p = &iomem_resource;
1438 int err = 0;
1439 loff_t l;
1440
1441 read_lock(&resource_lock);
1442 for (p = p->child; p ; p = r_next(NULL, p, &l)) {
1443 /*
1444 * We can probably skip the resources without
1445 * IORESOURCE_IO attribute?
1446 */
1447 if (p->start >= addr + size)
1448 continue;
1449 if (p->end < addr)
1450 continue;
d68612b2
SS
1451 if (PFN_DOWN(p->start) <= PFN_DOWN(addr) &&
1452 PFN_DOWN(p->end) >= PFN_DOWN(addr + size - 1))
379daf62 1453 continue;
3ac52669
AV
1454 /*
1455 * if a resource is "BUSY", it's not a hardware resource
1456 * but a driver mapping of such a resource; we don't want
1457 * to warn for those; some drivers legitimately map only
1458 * partial hardware resources. (example: vesafb)
1459 */
1460 if (p->flags & IORESOURCE_BUSY)
1461 continue;
1462
e4c72966 1463 printk(KERN_WARNING "resource sanity check: requesting [mem %#010llx-%#010llx], which spans more than %s %pR\n",
13eb8375
IM
1464 (unsigned long long)addr,
1465 (unsigned long long)(addr + size - 1),
e4c72966 1466 p->name, p);
379daf62
SS
1467 err = -1;
1468 break;
1469 }
1470 read_unlock(&resource_lock);
1471
1472 return err;
1473}
e8de1481
AV
1474
1475#ifdef CONFIG_STRICT_DEVMEM
1476static int strict_iomem_checks = 1;
1477#else
1478static int strict_iomem_checks;
1479#endif
1480
1481/*
1482 * check if an address is reserved in the iomem resource tree
1483 * returns 1 if reserved, 0 if not reserved.
1484 */
1485int iomem_is_exclusive(u64 addr)
1486{
1487 struct resource *p = &iomem_resource;
1488 int err = 0;
1489 loff_t l;
1490 int size = PAGE_SIZE;
1491
1492 if (!strict_iomem_checks)
1493 return 0;
1494
1495 addr = addr & PAGE_MASK;
1496
1497 read_lock(&resource_lock);
1498 for (p = p->child; p ; p = r_next(NULL, p, &l)) {
1499 /*
1500 * We can probably skip the resources without
1501 * IORESOURCE_IO attribute?
1502 */
1503 if (p->start >= addr + size)
1504 break;
1505 if (p->end < addr)
1506 continue;
90a545e9
DW
1507 /*
1508 * A resource is exclusive if IORESOURCE_EXCLUSIVE is set
1509 * or CONFIG_IO_STRICT_DEVMEM is enabled and the
1510 * resource is busy.
1511 */
1512 if ((p->flags & IORESOURCE_BUSY) == 0)
1513 continue;
1514 if (IS_ENABLED(CONFIG_IO_STRICT_DEVMEM)
1515 || p->flags & IORESOURCE_EXCLUSIVE) {
e8de1481
AV
1516 err = 1;
1517 break;
1518 }
1519 }
1520 read_unlock(&resource_lock);
1521
1522 return err;
1523}
1524
90e97820
JL
1525struct resource_entry *resource_list_create_entry(struct resource *res,
1526 size_t extra_size)
1527{
1528 struct resource_entry *entry;
1529
1530 entry = kzalloc(sizeof(*entry) + extra_size, GFP_KERNEL);
1531 if (entry) {
1532 INIT_LIST_HEAD(&entry->node);
1533 entry->res = res ? res : &entry->__res;
1534 }
1535
1536 return entry;
1537}
1538EXPORT_SYMBOL(resource_list_create_entry);
1539
1540void resource_list_free(struct list_head *head)
1541{
1542 struct resource_entry *entry, *tmp;
1543
1544 list_for_each_entry_safe(entry, tmp, head, node)
1545 resource_list_destroy_entry(entry);
1546}
1547EXPORT_SYMBOL(resource_list_free);
1548
e8de1481
AV
1549static int __init strict_iomem(char *str)
1550{
1551 if (strstr(str, "relaxed"))
1552 strict_iomem_checks = 0;
1553 if (strstr(str, "strict"))
1554 strict_iomem_checks = 1;
1555 return 1;
1556}
1557
1558__setup("iomem=", strict_iomem);