ublk: remove check IO_URING_F_SQE128 in ublk_ch_uring_cmd
[linux-block.git] / mm / pagewalk.c
CommitLineData
b2441318 1// SPDX-License-Identifier: GPL-2.0
a520110e 2#include <linux/pagewalk.h>
e6473092
MM
3#include <linux/highmem.h>
4#include <linux/sched.h>
d33b9f45 5#include <linux/hugetlb.h>
e6473092 6
b7a16c7a
SP
7/*
8 * We want to know the real level where a entry is located ignoring any
9 * folding of levels which may be happening. For example if p4d is folded then
10 * a missing entry found at level 1 (p4d) is actually at level 0 (pgd).
11 */
12static int real_depth(int depth)
13{
14 if (depth == 3 && PTRS_PER_PMD == 1)
15 depth = 2;
16 if (depth == 2 && PTRS_PER_PUD == 1)
17 depth = 1;
18 if (depth == 1 && PTRS_PER_P4D == 1)
19 depth = 0;
20 return depth;
21}
22
fbf56346
SP
23static int walk_pte_range_inner(pte_t *pte, unsigned long addr,
24 unsigned long end, struct mm_walk *walk)
e6473092 25{
7b86ac33 26 const struct mm_walk_ops *ops = walk->ops;
fbf56346 27 int err = 0;
e6473092 28
556637cd 29 for (;;) {
7b86ac33 30 err = ops->pte_entry(pte, addr, addr + PAGE_SIZE, walk);
e6473092
MM
31 if (err)
32 break;
c02a9875 33 if (addr >= end - PAGE_SIZE)
556637cd 34 break;
c02a9875 35 addr += PAGE_SIZE;
556637cd
JW
36 pte++;
37 }
fbf56346
SP
38 return err;
39}
40
41static int walk_pte_range(pmd_t *pmd, unsigned long addr, unsigned long end,
42 struct mm_walk *walk)
43{
44 pte_t *pte;
45 int err = 0;
46 spinlock_t *ptl;
47
48 if (walk->no_vma) {
49 pte = pte_offset_map(pmd, addr);
50 err = walk_pte_range_inner(pte, addr, end, walk);
51 pte_unmap(pte);
52 } else {
53 pte = pte_offset_map_lock(walk->mm, pmd, addr, &ptl);
54 err = walk_pte_range_inner(pte, addr, end, walk);
55 pte_unmap_unlock(pte, ptl);
56 }
e6473092 57
e6473092
MM
58 return err;
59}
60
e17eae2b
CL
61#ifdef CONFIG_ARCH_HAS_HUGEPD
62static int walk_hugepd_range(hugepd_t *phpd, unsigned long addr,
63 unsigned long end, struct mm_walk *walk, int pdshift)
64{
65 int err = 0;
66 const struct mm_walk_ops *ops = walk->ops;
67 int shift = hugepd_shift(*phpd);
68 int page_size = 1 << shift;
69
70 if (!ops->pte_entry)
71 return 0;
72
73 if (addr & (page_size - 1))
74 return 0;
75
76 for (;;) {
77 pte_t *pte;
78
79 spin_lock(&walk->mm->page_table_lock);
80 pte = hugepte_offset(*phpd, addr, pdshift);
81 err = ops->pte_entry(pte, addr, addr + page_size, walk);
82 spin_unlock(&walk->mm->page_table_lock);
83
84 if (err)
85 break;
86 if (addr >= end - page_size)
87 break;
88 addr += page_size;
89 }
90 return err;
91}
92#else
93static int walk_hugepd_range(hugepd_t *phpd, unsigned long addr,
94 unsigned long end, struct mm_walk *walk, int pdshift)
95{
96 return 0;
97}
98#endif
99
e6473092 100static int walk_pmd_range(pud_t *pud, unsigned long addr, unsigned long end,
2165009b 101 struct mm_walk *walk)
e6473092
MM
102{
103 pmd_t *pmd;
104 unsigned long next;
7b86ac33 105 const struct mm_walk_ops *ops = walk->ops;
e6473092 106 int err = 0;
b7a16c7a 107 int depth = real_depth(3);
e6473092
MM
108
109 pmd = pmd_offset(pud, addr);
110 do {
03319327 111again:
e6473092 112 next = pmd_addr_end(addr, end);
8782fb61 113 if (pmd_none(*pmd)) {
7b86ac33 114 if (ops->pte_hole)
b7a16c7a 115 err = ops->pte_hole(addr, next, depth, walk);
e6473092
MM
116 if (err)
117 break;
118 continue;
119 }
3afc4236
SP
120
121 walk->action = ACTION_SUBTREE;
122
03319327
DH
123 /*
124 * This implies that each ->pmd_entry() handler
125 * needs to know about pmd_trans_huge() pmds
126 */
7b86ac33
CH
127 if (ops->pmd_entry)
128 err = ops->pmd_entry(pmd, addr, next, walk);
03319327
DH
129 if (err)
130 break;
131
3afc4236
SP
132 if (walk->action == ACTION_AGAIN)
133 goto again;
134
03319327
DH
135 /*
136 * Check this here so we only break down trans_huge
137 * pages when we _need_ to
138 */
488ae6a2
SP
139 if ((!walk->vma && (pmd_leaf(*pmd) || !pmd_present(*pmd))) ||
140 walk->action == ACTION_CONTINUE ||
3afc4236 141 !(ops->pte_entry))
03319327
DH
142 continue;
143
488ae6a2
SP
144 if (walk->vma) {
145 split_huge_pmd(walk->vma, pmd, addr);
146 if (pmd_trans_unstable(pmd))
147 goto again;
148 }
3afc4236 149
e17eae2b
CL
150 if (is_hugepd(__hugepd(pmd_val(*pmd))))
151 err = walk_hugepd_range((hugepd_t *)pmd, addr, next, walk, PMD_SHIFT);
152 else
153 err = walk_pte_range(pmd, addr, next, walk);
e6473092
MM
154 if (err)
155 break;
156 } while (pmd++, addr = next, addr != end);
157
158 return err;
159}
160
c2febafc 161static int walk_pud_range(p4d_t *p4d, unsigned long addr, unsigned long end,
2165009b 162 struct mm_walk *walk)
e6473092
MM
163{
164 pud_t *pud;
165 unsigned long next;
7b86ac33 166 const struct mm_walk_ops *ops = walk->ops;
e6473092 167 int err = 0;
b7a16c7a 168 int depth = real_depth(2);
e6473092 169
c2febafc 170 pud = pud_offset(p4d, addr);
e6473092 171 do {
a00cc7d9 172 again:
e6473092 173 next = pud_addr_end(addr, end);
8782fb61 174 if (pud_none(*pud)) {
7b86ac33 175 if (ops->pte_hole)
b7a16c7a 176 err = ops->pte_hole(addr, next, depth, walk);
e6473092
MM
177 if (err)
178 break;
179 continue;
180 }
a00cc7d9 181
3afc4236 182 walk->action = ACTION_SUBTREE;
a00cc7d9 183
3afc4236
SP
184 if (ops->pud_entry)
185 err = ops->pud_entry(pud, addr, next, walk);
186 if (err)
187 break;
188
189 if (walk->action == ACTION_AGAIN)
190 goto again;
191
488ae6a2
SP
192 if ((!walk->vma && (pud_leaf(*pud) || !pud_present(*pud))) ||
193 walk->action == ACTION_CONTINUE ||
3afc4236
SP
194 !(ops->pmd_entry || ops->pte_entry))
195 continue;
a00cc7d9 196
488ae6a2
SP
197 if (walk->vma)
198 split_huge_pud(walk->vma, pud, addr);
a00cc7d9
MW
199 if (pud_none(*pud))
200 goto again;
201
e17eae2b
CL
202 if (is_hugepd(__hugepd(pud_val(*pud))))
203 err = walk_hugepd_range((hugepd_t *)pud, addr, next, walk, PUD_SHIFT);
204 else
205 err = walk_pmd_range(pud, addr, next, walk);
e6473092
MM
206 if (err)
207 break;
208 } while (pud++, addr = next, addr != end);
209
210 return err;
211}
212
c2febafc
KS
213static int walk_p4d_range(pgd_t *pgd, unsigned long addr, unsigned long end,
214 struct mm_walk *walk)
215{
216 p4d_t *p4d;
217 unsigned long next;
7b86ac33 218 const struct mm_walk_ops *ops = walk->ops;
c2febafc 219 int err = 0;
b7a16c7a 220 int depth = real_depth(1);
c2febafc
KS
221
222 p4d = p4d_offset(pgd, addr);
223 do {
224 next = p4d_addr_end(addr, end);
225 if (p4d_none_or_clear_bad(p4d)) {
7b86ac33 226 if (ops->pte_hole)
b7a16c7a 227 err = ops->pte_hole(addr, next, depth, walk);
c2febafc
KS
228 if (err)
229 break;
230 continue;
231 }
3afc4236
SP
232 if (ops->p4d_entry) {
233 err = ops->p4d_entry(p4d, addr, next, walk);
234 if (err)
235 break;
236 }
e17eae2b
CL
237 if (is_hugepd(__hugepd(p4d_val(*p4d))))
238 err = walk_hugepd_range((hugepd_t *)p4d, addr, next, walk, P4D_SHIFT);
239 else if (ops->pud_entry || ops->pmd_entry || ops->pte_entry)
c2febafc
KS
240 err = walk_pud_range(p4d, addr, next, walk);
241 if (err)
242 break;
243 } while (p4d++, addr = next, addr != end);
244
245 return err;
246}
247
fafaa426
NH
248static int walk_pgd_range(unsigned long addr, unsigned long end,
249 struct mm_walk *walk)
250{
251 pgd_t *pgd;
252 unsigned long next;
7b86ac33 253 const struct mm_walk_ops *ops = walk->ops;
fafaa426
NH
254 int err = 0;
255
e47690d7
SP
256 if (walk->pgd)
257 pgd = walk->pgd + pgd_index(addr);
258 else
259 pgd = pgd_offset(walk->mm, addr);
fafaa426
NH
260 do {
261 next = pgd_addr_end(addr, end);
262 if (pgd_none_or_clear_bad(pgd)) {
7b86ac33 263 if (ops->pte_hole)
b7a16c7a 264 err = ops->pte_hole(addr, next, 0, walk);
fafaa426
NH
265 if (err)
266 break;
267 continue;
268 }
3afc4236
SP
269 if (ops->pgd_entry) {
270 err = ops->pgd_entry(pgd, addr, next, walk);
271 if (err)
272 break;
273 }
e17eae2b
CL
274 if (is_hugepd(__hugepd(pgd_val(*pgd))))
275 err = walk_hugepd_range((hugepd_t *)pgd, addr, next, walk, PGDIR_SHIFT);
276 else if (ops->p4d_entry || ops->pud_entry || ops->pmd_entry || ops->pte_entry)
c2febafc 277 err = walk_p4d_range(pgd, addr, next, walk);
fafaa426
NH
278 if (err)
279 break;
280 } while (pgd++, addr = next, addr != end);
281
282 return err;
283}
284
116354d1
NH
285#ifdef CONFIG_HUGETLB_PAGE
286static unsigned long hugetlb_entry_end(struct hstate *h, unsigned long addr,
287 unsigned long end)
288{
289 unsigned long boundary = (addr & huge_page_mask(h)) + huge_page_size(h);
290 return boundary < end ? boundary : end;
291}
292
fafaa426 293static int walk_hugetlb_range(unsigned long addr, unsigned long end,
116354d1
NH
294 struct mm_walk *walk)
295{
fafaa426 296 struct vm_area_struct *vma = walk->vma;
116354d1
NH
297 struct hstate *h = hstate_vma(vma);
298 unsigned long next;
299 unsigned long hmask = huge_page_mask(h);
7868a208 300 unsigned long sz = huge_page_size(h);
116354d1 301 pte_t *pte;
7b86ac33 302 const struct mm_walk_ops *ops = walk->ops;
116354d1
NH
303 int err = 0;
304
305 do {
306 next = hugetlb_entry_end(h, addr, end);
7868a208 307 pte = huge_pte_offset(walk->mm, addr & hmask, sz);
373c4557
JH
308
309 if (pte)
7b86ac33
CH
310 err = ops->hugetlb_entry(pte, hmask, addr, next, walk);
311 else if (ops->pte_hole)
b7a16c7a 312 err = ops->pte_hole(addr, next, -1, walk);
373c4557 313
116354d1 314 if (err)
fafaa426 315 break;
116354d1
NH
316 } while (addr = next, addr != end);
317
fafaa426 318 return err;
116354d1 319}
6c6d5280 320
6c6d5280 321#else /* CONFIG_HUGETLB_PAGE */
fafaa426 322static int walk_hugetlb_range(unsigned long addr, unsigned long end,
6c6d5280
KM
323 struct mm_walk *walk)
324{
325 return 0;
326}
327
328#endif /* CONFIG_HUGETLB_PAGE */
329
fafaa426
NH
330/*
331 * Decide whether we really walk over the current vma on [@start, @end)
332 * or skip it via the returned value. Return 0 if we do walk over the
333 * current vma, and return 1 if we skip the vma. Negative values means
334 * error, where we abort the current walk.
fafaa426
NH
335 */
336static int walk_page_test(unsigned long start, unsigned long end,
337 struct mm_walk *walk)
338{
339 struct vm_area_struct *vma = walk->vma;
7b86ac33 340 const struct mm_walk_ops *ops = walk->ops;
6c6d5280 341
7b86ac33
CH
342 if (ops->test_walk)
343 return ops->test_walk(start, end, walk);
fafaa426
NH
344
345 /*
48684a65
NH
346 * vma(VM_PFNMAP) doesn't have any valid struct pages behind VM_PFNMAP
347 * range, so we don't walk over it as we do for normal vmas. However,
348 * Some callers are interested in handling hole range and they don't
349 * want to just ignore any single address range. Such users certainly
350 * define their ->pte_hole() callbacks, so let's delegate them to handle
351 * vma(VM_PFNMAP).
fafaa426 352 */
48684a65
NH
353 if (vma->vm_flags & VM_PFNMAP) {
354 int err = 1;
7b86ac33 355 if (ops->pte_hole)
b7a16c7a 356 err = ops->pte_hole(start, end, -1, walk);
48684a65
NH
357 return err ? err : 1;
358 }
fafaa426
NH
359 return 0;
360}
361
362static int __walk_page_range(unsigned long start, unsigned long end,
363 struct mm_walk *walk)
364{
365 int err = 0;
366 struct vm_area_struct *vma = walk->vma;
ecaad8ac
TH
367 const struct mm_walk_ops *ops = walk->ops;
368
8782fb61 369 if (ops->pre_vma) {
ecaad8ac
TH
370 err = ops->pre_vma(start, end, walk);
371 if (err)
372 return err;
373 }
fafaa426 374
8782fb61 375 if (is_vm_hugetlb_page(vma)) {
ecaad8ac 376 if (ops->hugetlb_entry)
fafaa426
NH
377 err = walk_hugetlb_range(start, end, walk);
378 } else
379 err = walk_pgd_range(start, end, walk);
380
8782fb61 381 if (ops->post_vma)
ecaad8ac
TH
382 ops->post_vma(walk);
383
fafaa426
NH
384 return err;
385}
116354d1 386
e6473092 387/**
fafaa426 388 * walk_page_range - walk page table with caller specific callbacks
7b86ac33
CH
389 * @mm: mm_struct representing the target process of page table walk
390 * @start: start address of the virtual address range
391 * @end: end address of the virtual address range
392 * @ops: operation to call during the walk
393 * @private: private data for callbacks' usage
e6473092 394 *
7b86ac33 395 * Recursively walk the page table tree of the process represented by @mm
fafaa426
NH
396 * within the virtual address range [@start, @end). During walking, we can do
397 * some caller-specific works for each entry, by setting up pmd_entry(),
398 * pte_entry(), and/or hugetlb_entry(). If you don't set up for some of these
399 * callbacks, the associated entries/pages are just ignored.
400 * The return values of these callbacks are commonly defined like below:
a5d09bed 401 *
fafaa426
NH
402 * - 0 : succeeded to handle the current entry, and if you don't reach the
403 * end address yet, continue to walk.
404 * - >0 : succeeded to handle the current entry, and return to the caller
405 * with caller specific value.
406 * - <0 : failed to handle the current entry, and return to the caller
407 * with error code.
e6473092 408 *
fafaa426
NH
409 * Before starting to walk page table, some callers want to check whether
410 * they really want to walk over the current vma, typically by checking
7b86ac33 411 * its vm_flags. walk_page_test() and @ops->test_walk() are used for this
fafaa426 412 * purpose.
e6473092 413 *
ecaad8ac
TH
414 * If operations need to be staged before and committed after a vma is walked,
415 * there are two callbacks, pre_vma() and post_vma(). Note that post_vma(),
416 * since it is intended to handle commit-type operations, can't return any
417 * errors.
418 *
fafaa426
NH
419 * struct mm_walk keeps current values of some common data like vma and pmd,
420 * which are useful for the access from callbacks. If you want to pass some
7b86ac33 421 * caller-specific data to callbacks, @private should be helpful.
c27fe4c8 422 *
fafaa426 423 * Locking:
c1e8d7c6 424 * Callers of walk_page_range() and walk_page_vma() should hold @mm->mmap_lock,
7b86ac33 425 * because these function traverse vma list and/or access to vma's data.
e6473092 426 */
7b86ac33
CH
427int walk_page_range(struct mm_struct *mm, unsigned long start,
428 unsigned long end, const struct mm_walk_ops *ops,
429 void *private)
e6473092 430{
e6473092 431 int err = 0;
fafaa426
NH
432 unsigned long next;
433 struct vm_area_struct *vma;
7b86ac33
CH
434 struct mm_walk walk = {
435 .ops = ops,
436 .mm = mm,
437 .private = private,
438 };
e6473092 439
fafaa426
NH
440 if (start >= end)
441 return -EINVAL;
e6473092 442
7b86ac33 443 if (!walk.mm)
2165009b
DH
444 return -EINVAL;
445
42fc5414 446 mmap_assert_locked(walk.mm);
a9ff785e 447
7b86ac33 448 vma = find_vma(walk.mm, start);
e6473092 449 do {
fafaa426 450 if (!vma) { /* after the last vma */
7b86ac33 451 walk.vma = NULL;
fafaa426 452 next = end;
8782fb61
SP
453 if (ops->pte_hole)
454 err = ops->pte_hole(start, next, -1, &walk);
fafaa426 455 } else if (start < vma->vm_start) { /* outside vma */
7b86ac33 456 walk.vma = NULL;
fafaa426 457 next = min(end, vma->vm_start);
8782fb61
SP
458 if (ops->pte_hole)
459 err = ops->pte_hole(start, next, -1, &walk);
fafaa426 460 } else { /* inside vma */
7b86ac33 461 walk.vma = vma;
fafaa426 462 next = min(end, vma->vm_end);
9ec08f30 463 vma = find_vma(mm, vma->vm_end);
5f0af70a 464
7b86ac33 465 err = walk_page_test(start, next, &walk);
f6837395
NH
466 if (err > 0) {
467 /*
468 * positive return values are purely for
469 * controlling the pagewalk, so should never
470 * be passed to the callers.
471 */
472 err = 0;
a9ff785e 473 continue;
f6837395 474 }
fafaa426 475 if (err < 0)
e6473092 476 break;
7b86ac33 477 err = __walk_page_range(start, next, &walk);
8782fb61 478 }
e6473092
MM
479 if (err)
480 break;
fafaa426 481 } while (start = next, start < end);
e6473092
MM
482 return err;
483}
900fc5f1 484
8bd3873d
REB
485/**
486 * walk_page_range_novma - walk a range of pagetables not backed by a vma
487 * @mm: mm_struct representing the target process of page table walk
488 * @start: start address of the virtual address range
489 * @end: end address of the virtual address range
490 * @ops: operation to call during the walk
491 * @pgd: pgd to walk if different from mm->pgd
492 * @private: private data for callbacks' usage
493 *
fbf56346
SP
494 * Similar to walk_page_range() but can walk any page tables even if they are
495 * not backed by VMAs. Because 'unusual' entries may be walked this function
496 * will also not lock the PTEs for the pte_entry() callback. This is useful for
497 * walking the kernel pages tables or page tables for firmware.
498 */
488ae6a2
SP
499int walk_page_range_novma(struct mm_struct *mm, unsigned long start,
500 unsigned long end, const struct mm_walk_ops *ops,
e47690d7 501 pgd_t *pgd,
488ae6a2
SP
502 void *private)
503{
504 struct mm_walk walk = {
505 .ops = ops,
506 .mm = mm,
e47690d7 507 .pgd = pgd,
488ae6a2
SP
508 .private = private,
509 .no_vma = true
510 };
511
512 if (start >= end || !walk.mm)
513 return -EINVAL;
514
8782fb61 515 mmap_assert_write_locked(walk.mm);
488ae6a2 516
8782fb61 517 return walk_pgd_range(start, end, &walk);
488ae6a2
SP
518}
519
e07cda5f
DH
520int walk_page_range_vma(struct vm_area_struct *vma, unsigned long start,
521 unsigned long end, const struct mm_walk_ops *ops,
522 void *private)
523{
524 struct mm_walk walk = {
525 .ops = ops,
526 .mm = vma->vm_mm,
527 .vma = vma,
528 .private = private,
529 };
530
531 if (start >= end || !walk.mm)
532 return -EINVAL;
533 if (start < vma->vm_start || end > vma->vm_end)
534 return -EINVAL;
535
536 mmap_assert_locked(walk.mm);
537 return __walk_page_range(start, end, &walk);
538}
539
7b86ac33
CH
540int walk_page_vma(struct vm_area_struct *vma, const struct mm_walk_ops *ops,
541 void *private)
900fc5f1 542{
7b86ac33
CH
543 struct mm_walk walk = {
544 .ops = ops,
545 .mm = vma->vm_mm,
546 .vma = vma,
547 .private = private,
548 };
900fc5f1 549
7b86ac33 550 if (!walk.mm)
900fc5f1
NH
551 return -EINVAL;
552
42fc5414 553 mmap_assert_locked(walk.mm);
7b86ac33 554 return __walk_page_range(vma->vm_start, vma->vm_end, &walk);
900fc5f1 555}
ecaad8ac
TH
556
557/**
558 * walk_page_mapping - walk all memory areas mapped into a struct address_space.
559 * @mapping: Pointer to the struct address_space
560 * @first_index: First page offset in the address_space
561 * @nr: Number of incremental page offsets to cover
562 * @ops: operation to call during the walk
563 * @private: private data for callbacks' usage
564 *
565 * This function walks all memory areas mapped into a struct address_space.
566 * The walk is limited to only the given page-size index range, but if
567 * the index boundaries cross a huge page-table entry, that entry will be
568 * included.
569 *
570 * Also see walk_page_range() for additional information.
571 *
572 * Locking:
c1e8d7c6 573 * This function can't require that the struct mm_struct::mmap_lock is held,
ecaad8ac
TH
574 * since @mapping may be mapped by multiple processes. Instead
575 * @mapping->i_mmap_rwsem must be held. This might have implications in the
576 * callbacks, and it's up tho the caller to ensure that the
c1e8d7c6 577 * struct mm_struct::mmap_lock is not needed.
ecaad8ac
TH
578 *
579 * Also this means that a caller can't rely on the struct
580 * vm_area_struct::vm_flags to be constant across a call,
581 * except for immutable flags. Callers requiring this shouldn't use
582 * this function.
583 *
584 * Return: 0 on success, negative error code on failure, positive number on
585 * caller defined premature termination.
586 */
587int walk_page_mapping(struct address_space *mapping, pgoff_t first_index,
588 pgoff_t nr, const struct mm_walk_ops *ops,
589 void *private)
590{
591 struct mm_walk walk = {
592 .ops = ops,
593 .private = private,
594 };
595 struct vm_area_struct *vma;
596 pgoff_t vba, vea, cba, cea;
597 unsigned long start_addr, end_addr;
598 int err = 0;
599
600 lockdep_assert_held(&mapping->i_mmap_rwsem);
601 vma_interval_tree_foreach(vma, &mapping->i_mmap, first_index,
602 first_index + nr - 1) {
603 /* Clip to the vma */
604 vba = vma->vm_pgoff;
605 vea = vba + vma_pages(vma);
606 cba = first_index;
607 cba = max(cba, vba);
608 cea = first_index + nr;
609 cea = min(cea, vea);
610
611 start_addr = ((cba - vba) << PAGE_SHIFT) + vma->vm_start;
612 end_addr = ((cea - vba) << PAGE_SHIFT) + vma->vm_start;
613 if (start_addr >= end_addr)
614 continue;
615
616 walk.vma = vma;
617 walk.mm = vma->vm_mm;
618
619 err = walk_page_test(vma->vm_start, vma->vm_end, &walk);
620 if (err > 0) {
621 err = 0;
622 break;
623 } else if (err < 0)
624 break;
625
626 err = __walk_page_range(start_addr, end_addr, &walk);
627 if (err)
628 break;
629 }
630
631 return err;
632}