source: mainline/generic/src/mm/frame.c@ 4a5b2b0e

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since 4a5b2b0e was bc504ef2, checked in by Ondrej Palkovsky <ondrap@…>, 19 years ago

Tested basic non-cached slab allocation.

  • Property mode set to 100644
File size: 15.4 KB
RevLine 
[f761f1eb]1/*
[b87f418]2 * Copyright (C) 2001-2005 Jakub Jermar
3 * Copyright (C) 2005 Sergey Bondari
[f761f1eb]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
[84dd253]30#include <typedefs.h>
[f761f1eb]31#include <arch/types.h>
32#include <mm/heap.h>
33#include <mm/frame.h>
[20d50a1]34#include <mm/as.h>
[f761f1eb]35#include <panic.h>
[fcacfb7]36#include <debug.h>
[84dd253]37#include <list.h>
[f761f1eb]38#include <synch/spinlock.h>
[18e0a6c]39#include <arch/asm.h>
[9c0a9b3]40#include <arch.h>
[328f2934]41#include <print.h>
[9ebc238]42#include <align.h>
[18e0a6c]43
[dc747e3]44SPINLOCK_INITIALIZE(zone_head_lock); /**< this lock protects zone_head list */
[7dd2561]45LIST_INITIALIZE(zone_head); /**< list of all zones in the system */
[fcacfb7]46
[eef75f6]47/** Blacklist containing non-available areas of memory.
48 *
49 * This blacklist is used to exclude frames that cannot be allocated
50 * (e.g. kernel memory) from available memory map.
51 */
[328f2934]52region_t zone_blacklist[ZONE_BLACKLIST_SIZE];
53count_t zone_blacklist_count = 0;
54
[6e8b3c8]55static struct buddy_system_operations zone_buddy_system_operations = {
56 .find_buddy = zone_buddy_find_buddy,
57 .bisect = zone_buddy_bisect,
58 .coalesce = zone_buddy_coalesce,
59 .set_order = zone_buddy_set_order,
60 .get_order = zone_buddy_get_order,
[328f2934]61 .mark_busy = zone_buddy_mark_busy,
[6e8b3c8]62};
63
[84dd253]64/** Initialize physical memory management
65 *
66 * Initialize physical memory managemnt.
67 */
[f761f1eb]68void frame_init(void)
69{
[76cec1e]70 if (config.cpu_active == 1) {
[4457455]71 frame_region_not_free(KA2PA(config.base), config.kernel_size);
[961b5f0]72 if (config.init_size > 0)
73 frame_region_not_free(KA2PA(config.init_addr), config.init_size);
[f761f1eb]74 }
75
76 frame_arch_init();
77}
78
[a294ad0]79/**
80 * Find AND LOCK zone that can allocate order frames
81 *
82 * Assume zone_head_lock is locked.
83 */
84static zone_t * find_free_zone(__u8 order)
85{
86 link_t *cur;
87 zone_t *z;
88
89 for (cur = zone_head.next; cur != &zone_head;cur = cur->next) {
90 z = list_get_instance(cur, zone_t, link);
91
92 spinlock_lock(&z->lock);
93
94 /* Check if the zone has 2^order frames area available */
95 if (buddy_system_can_alloc(z->buddy_system, order))
96 return z;
97
98 spinlock_unlock(&z->lock);
99 }
100 return NULL;
101}
102
[4457455]103/** Allocate power-of-two frames of physical memory.
[84dd253]104 *
105 * @param flags Flags for host zone selection and address processing.
[4457455]106 * @param order Allocate exactly 2^order frames.
[a294ad0]107 * @param pzone Pointer to preferred zone pointer, on output it changes
108 * to the zone that the frame was really allocated to
[84dd253]109 *
110 * @return Allocated frame.
[f761f1eb]111 */
[a294ad0]112__address frame_alloc(int flags, __u8 order, int * status, zone_t **pzone)
[f761f1eb]113{
[22f7769]114 ipl_t ipl;
[a294ad0]115 link_t *tmp;
[84dd253]116 zone_t *zone = NULL;
117 frame_t *frame = NULL;
118 __address v;
[f761f1eb]119
120loop:
[22f7769]121 ipl = interrupts_disable();
[84dd253]122 spinlock_lock(&zone_head_lock);
[328f2934]123
[84dd253]124 /*
125 * First, find suitable frame zone.
126 */
[a294ad0]127 if (pzone && *pzone) {
128 spinlock_lock(&(*pzone)->lock);
129 if (!buddy_system_can_alloc((*pzone)->buddy_system, order))
130 spinlock_unlock(&(*pzone)->lock);
131 else
132 zone = *pzone;
[f761f1eb]133 }
[a294ad0]134 if (!zone) {
135 zone = find_free_zone(order);
136 /* If no memory, reclaim some slab memory,
137 if it does not help, reclaim all */
138 if (!zone && !(flags & FRAME_NO_RECLAIM))
139 if (slab_reclaim(0) || slab_reclaim(SLAB_RECLAIM_ALL))
140 zone = find_free_zone(order);
141 }
142
[84dd253]143 if (!zone) {
144 if (flags & FRAME_PANIC)
145 panic("Can't allocate frame.\n");
146
147 /*
148 * TODO: Sleep until frames are available again.
149 */
150 spinlock_unlock(&zone_head_lock);
[22f7769]151 interrupts_restore(ipl);
[f761f1eb]152
[4e147a6]153 if (flags & FRAME_ATOMIC) {
[f275cb3]154 ASSERT(status != NULL);
155 *status = FRAME_NO_MEMORY;
156 return NULL;
157 }
158
[84dd253]159 panic("Sleep not implemented.\n");
160 goto loop;
161 }
[f761f1eb]162
[328f2934]163 /* Allocate frames from zone buddy system */
[eef75f6]164 tmp = buddy_system_alloc(zone->buddy_system, order);
165
166 ASSERT(tmp);
[84dd253]167
[eef75f6]168 /* Update zone information. */
169 zone->free_count -= (1 << order);
170 zone->busy_count += (1 << order);
171
172 /* Frame will be actually a first frame of the block. */
173 frame = list_get_instance(tmp, frame_t, buddy_link);
[84dd253]174
[328f2934]175 /* get frame address */
176 v = FRAME2ADDR(zone, frame);
177
[84dd253]178 spinlock_unlock(&zone->lock);
179 spinlock_unlock(&zone_head_lock);
[22f7769]180 interrupts_restore(ipl);
[328f2934]181
[1093620]182 ASSERT(v == ALIGN_UP(v, FRAME_SIZE << order));
183
[eef75f6]184 if (flags & FRAME_KA)
185 v = PA2KA(v);
186
[bc504ef2]187 if (status)
[f275cb3]188 *status = FRAME_OK;
[bc504ef2]189
[a294ad0]190 if (pzone)
191 *pzone = zone;
[eef75f6]192 return v;
[f761f1eb]193}
194
[a294ad0]195/** Convert address to zone pointer
196 *
197 * Assume zone_head_lock is held
198 *
199 * @param addr Physical address
200 * @param lock If true, lock the zone
201 */
202static zone_t * addr2zone(__address addr, int lock)
203{
204 link_t *cur;
205 zone_t *z = NULL;
206
207 for (cur = zone_head.next; cur != &zone_head; cur = cur->next) {
208 z = list_get_instance(cur, zone_t, link);
209
210 spinlock_lock(&z->lock);
211
212 /*
213 * Check if addr belongs to z.
214 */
215 if ((addr >= z->base) && (addr <= z->base + (z->free_count + z->busy_count) * FRAME_SIZE)) {
216 if (!lock)
217 spinlock_unlock(&z->lock);
218 return z;
219 }
220
221 spinlock_unlock(&z->lock);
222 }
223
224 panic("Cannot find addr2zone: 0x%X", addr);
225}
226
227/** Return frame_t structure corresponding to address
228 *
229 *
230 */
231frame_t * frame_addr2frame(__address addr)
232{
233 ipl_t ipl;
234 frame_t *frame;
235 zone_t *zone;
236
237 if (IS_KA(addr))
238 addr = KA2PA(addr);
239
240 /* Disable interrupts to avoid deadlocks with interrupt handlers */
241 ipl = interrupts_disable();
242 spinlock_lock(&zone_head_lock);
243
244 zone = addr2zone(addr,0);
245 frame = ADDR2FRAME(zone, addr);
246
247 spinlock_unlock(&zone_head_lock);
248 interrupts_restore(ipl);
249
250 return frame;
251}
252
253
[84dd253]254/** Free a frame.
255 *
256 * Find respective frame structrue for supplied addr.
257 * Decrement frame reference count.
258 * If it drops to zero, move the frame structure to free list.
259 *
260 * @param addr Address of the frame to be freed. It must be a multiple of FRAME_SIZE.
[f761f1eb]261 */
262void frame_free(__address addr)
263{
[22f7769]264 ipl_t ipl;
[a294ad0]265 zone_t *zone;
[84dd253]266 frame_t *frame;
[5d2ab23]267 int order;
268
[84dd253]269 ASSERT(addr % FRAME_SIZE == 0);
[f761f1eb]270
[a294ad0]271 if (IS_KA(addr))
272 addr = KA2PA(addr);
273
[22f7769]274 ipl = interrupts_disable();
[84dd253]275 spinlock_lock(&zone_head_lock);
[f761f1eb]276
[84dd253]277 /*
278 * First, find host frame zone for addr.
279 */
[a294ad0]280 zone = addr2zone(addr, 1); /* This locks the zone automatically */
[84dd253]281
[6e8b3c8]282 frame = ADDR2FRAME(zone, addr);
[5d2ab23]283
284 /* remember frame order */
285 order = frame->buddy_order;
[328f2934]286
[84dd253]287 ASSERT(frame->refcount);
288
289 if (!--frame->refcount) {
[328f2934]290 buddy_system_free(zone->buddy_system, &frame->buddy_link);
[f761f1eb]291 }
[eef75f6]292
293 /* Update zone information. */
[5d2ab23]294 zone->free_count += (1 << order);
295 zone->busy_count -= (1 << order);
[84dd253]296
[eef75f6]297 spinlock_unlock(&zone->lock);
[84dd253]298 spinlock_unlock(&zone_head_lock);
[22f7769]299 interrupts_restore(ipl);
[f761f1eb]300}
301
[84dd253]302/** Mark frame region not free.
303 *
304 * Mark frame region not free.
305 *
[4457455]306 * @param base Base address of non-available region.
307 * @param size Size of non-available region.
[84dd253]308 */
[328f2934]309void frame_region_not_free(__address base, size_t size)
[f761f1eb]310{
[4457455]311 index_t index;
[328f2934]312 index = zone_blacklist_count++;
[4457455]313
314 /* Force base to the nearest lower address frame boundary. */
[b87f418]315 base = ALIGN_DOWN(base, FRAME_SIZE);
[4457455]316 /* Align size to frame boundary. */
[b87f418]317 size = ALIGN_UP(size, FRAME_SIZE);
[4457455]318
[b87f418]319 ASSERT(index < ZONE_BLACKLIST_SIZE);
[328f2934]320 zone_blacklist[index].base = base;
321 zone_blacklist[index].size = size;
[f761f1eb]322}
[fcacfb7]323
[eef75f6]324/** Create frame zones in region of available memory.
325 *
326 * Avoid any black listed areas of non-available memory.
327 * Assume that the black listed areas cannot overlap
328 * one another or cross available memory region boundaries.
329 *
330 * @param base Base address of available memory region.
331 * @param size Size of the region.
332 */
[328f2934]333void zone_create_in_region(__address base, size_t size) {
334 int i;
335 zone_t * z;
[4457455]336 __address s;
337 size_t sz;
[328f2934]338
339 ASSERT(base % FRAME_SIZE == 0);
340 ASSERT(size % FRAME_SIZE == 0);
341
[4457455]342 if (!size)
343 return;
344
[328f2934]345 for (i = 0; i < zone_blacklist_count; i++) {
346 if (zone_blacklist[i].base >= base && zone_blacklist[i].base < base + size) {
347 s = base; sz = zone_blacklist[i].base - base;
348 ASSERT(base != s || sz != size);
349 zone_create_in_region(s, sz);
350
351 s = zone_blacklist[i].base + zone_blacklist[i].size;
352 sz = (base + size) - (zone_blacklist[i].base + zone_blacklist[i].size);
353 ASSERT(base != s || sz != size);
354 zone_create_in_region(s, sz);
355 return;
356
357 }
358 }
359
360 z = zone_create(base, size, 0);
361
362 if (!z) {
[b87f418]363 panic("Cannot allocate zone (base=%P, size=%d).\n", base, size);
[328f2934]364 }
365
366 zone_attach(z);
367}
368
369
[fcacfb7]370/** Create frame zone
371 *
372 * Create new frame zone.
373 *
374 * @param start Physical address of the first frame within the zone.
375 * @param size Size of the zone. Must be a multiple of FRAME_SIZE.
376 * @param flags Zone flags.
377 *
378 * @return Initialized zone.
379 */
[328f2934]380zone_t * zone_create(__address start, size_t size, int flags)
[fcacfb7]381{
382 zone_t *z;
383 count_t cnt;
384 int i;
[6e8b3c8]385 __u8 max_order;
[328f2934]386
[fcacfb7]387 ASSERT(start % FRAME_SIZE == 0);
388 ASSERT(size % FRAME_SIZE == 0);
389
390 cnt = size / FRAME_SIZE;
391
[adecf496]392 z = (zone_t *) early_malloc(sizeof(zone_t));
[fcacfb7]393 if (z) {
394 link_initialize(&z->link);
[2d93f1f9]395 spinlock_initialize(&z->lock, "zone_lock");
[fcacfb7]396
397 z->base = start;
[5d2ab23]398 z->base_index = start / FRAME_SIZE;
399
[fcacfb7]400 z->flags = flags;
401
402 z->free_count = cnt;
403 z->busy_count = 0;
404
[adecf496]405 z->frames = (frame_t *) early_malloc(cnt * sizeof(frame_t));
[fcacfb7]406 if (!z->frames) {
[48a02ef]407 early_free(z);
[fcacfb7]408 return NULL;
409 }
410
411 for (i = 0; i<cnt; i++) {
412 frame_initialize(&z->frames[i], z);
413 }
414
[6e8b3c8]415 /*
416 * Create buddy system for the zone
417 */
[4457455]418 for (max_order = 0; cnt >> max_order; max_order++)
419 ;
[594a468]420 z->buddy_system = buddy_system_create(max_order, &zone_buddy_system_operations, (void *) z);
[328f2934]421
422 /* Stuffing frames */
423 for (i = 0; i<cnt; i++) {
424 z->frames[i].refcount = 0;
425 buddy_system_free(z->buddy_system, &z->frames[i].buddy_link);
426 }
[5d2ab23]427
[fcacfb7]428 }
429 return z;
430}
431
432/** Attach frame zone
433 *
434 * Attach frame zone to zone list.
435 *
436 * @param zone Zone to be attached.
437 */
438void zone_attach(zone_t *zone)
439{
[22f7769]440 ipl_t ipl;
[fcacfb7]441
[22f7769]442 ipl = interrupts_disable();
[fcacfb7]443 spinlock_lock(&zone_head_lock);
444
445 list_append(&zone->link, &zone_head);
446
447 spinlock_unlock(&zone_head_lock);
[22f7769]448 interrupts_restore(ipl);
[fcacfb7]449}
450
451/** Initialize frame structure
452 *
453 * Initialize frame structure.
454 *
455 * @param frame Frame structure to be initialized.
456 * @param zone Host frame zone.
457 */
458void frame_initialize(frame_t *frame, zone_t *zone)
459{
[328f2934]460 frame->refcount = 1;
461 frame->buddy_order = 0;
[fcacfb7]462}
[6e8b3c8]463
464
465/** Buddy system find_buddy implementation
[594a468]466 *
467 * @param b Buddy system.
[30187eb]468 * @param block Block for which buddy should be found
[6e8b3c8]469 *
[30187eb]470 * @return Buddy for given block if found
[6e8b3c8]471 */
[594a468]472link_t * zone_buddy_find_buddy(buddy_system_t *b, link_t * block) {
[eef75f6]473 frame_t * frame;
[30187eb]474 zone_t * zone;
[b87f418]475 index_t index;
[30187eb]476 bool is_left, is_right;
[6e8b3c8]477
[30187eb]478 frame = list_get_instance(block, frame_t, buddy_link);
[328f2934]479 zone = (zone_t *) b->data;
[5d2ab23]480 ASSERT(IS_BUDDY_ORDER_OK(FRAME_INDEX_ABS(zone, frame), frame->buddy_order));
[30187eb]481
[b87f418]482
[5d2ab23]483 is_left = IS_BUDDY_LEFT_BLOCK_ABS(zone, frame);
484 is_right = IS_BUDDY_RIGHT_BLOCK_ABS(zone, frame);
[b87f418]485
486 ASSERT(is_left ^ is_right);
[30187eb]487
[328f2934]488 if (is_left) {
489 index = (FRAME_INDEX(zone, frame)) + (1 << frame->buddy_order);
[5a95b25]490 } else { // if (is_right)
[328f2934]491 index = (FRAME_INDEX(zone, frame)) - (1 << frame->buddy_order);
492 }
493
494 if (FRAME_INDEX_VALID(zone, index)) {
495 if ( zone->frames[index].buddy_order == frame->buddy_order &&
496 zone->frames[index].refcount == 0) {
497 return &zone->frames[index].buddy_link;
[30187eb]498 }
499 }
500
[eef75f6]501 return NULL;
[6e8b3c8]502}
503
504/** Buddy system bisect implementation
505 *
[594a468]506 * @param b Buddy system.
[30187eb]507 * @param block Block to bisect
508 *
509 * @return right block
[6e8b3c8]510 */
[594a468]511link_t * zone_buddy_bisect(buddy_system_t *b, link_t * block) {
[30187eb]512 frame_t * frame_l, * frame_r;
[b87f418]513
[30187eb]514 frame_l = list_get_instance(block, frame_t, buddy_link);
[328f2934]515 frame_r = (frame_l + (1 << (frame_l->buddy_order - 1)));
[b87f418]516
[30187eb]517 return &frame_r->buddy_link;
[6e8b3c8]518}
519
520/** Buddy system coalesce implementation
521 *
[594a468]522 * @param b Buddy system.
[30187eb]523 * @param block_1 First block
524 * @param block_2 First block's buddy
525 *
526 * @return Coalesced block (actually block that represents lower address)
[6e8b3c8]527 */
[594a468]528link_t * zone_buddy_coalesce(buddy_system_t *b, link_t * block_1, link_t * block_2) {
[30187eb]529 frame_t * frame1, * frame2;
[b87f418]530
[30187eb]531 frame1 = list_get_instance(block_1, frame_t, buddy_link);
532 frame2 = list_get_instance(block_2, frame_t, buddy_link);
[b87f418]533
[328f2934]534 return frame1 < frame2 ? block_1 : block_2;
[6e8b3c8]535}
536
537/** Buddy system set_order implementation
[594a468]538 *
539 * @param b Buddy system.
[30187eb]540 * @param block Buddy system block
541 * @param order Order to set
[6e8b3c8]542 */
[594a468]543void zone_buddy_set_order(buddy_system_t *b, link_t * block, __u8 order) {
[30187eb]544 frame_t * frame;
545 frame = list_get_instance(block, frame_t, buddy_link);
546 frame->buddy_order = order;
[6e8b3c8]547}
548
549/** Buddy system get_order implementation
[594a468]550 *
551 * @param b Buddy system.
[30187eb]552 * @param block Buddy system block
[6e8b3c8]553 *
[30187eb]554 * @return Order of block
[6e8b3c8]555 */
[594a468]556__u8 zone_buddy_get_order(buddy_system_t *b, link_t * block) {
[30187eb]557 frame_t * frame;
558 frame = list_get_instance(block, frame_t, buddy_link);
559 return frame->buddy_order;
[6e8b3c8]560}
[328f2934]561
562/** Buddy system mark_busy implementation
563 *
564 * @param b Buddy system
565 * @param block Buddy system block
566 *
567 */
568void zone_buddy_mark_busy(buddy_system_t *b, link_t * block) {
569 frame_t * frame;
570 frame = list_get_instance(block, frame_t, buddy_link);
571 frame->refcount = 1;
572}
[dfd9186]573
[96cacc1]574/** Prints list of zones
575 *
576 */
[dfd9186]577void zone_print_list(void) {
578 zone_t *zone = NULL;
579 link_t *cur;
[263104b]580 ipl_t ipl;
581
582 ipl = interrupts_disable();
[566ba81]583 spinlock_lock(&zone_head_lock);
[59adc2b]584 printf("Base address\tFree Frames\tBusy Frames\n");
585 printf("------------\t-----------\t-----------\n");
[dfd9186]586 for (cur = zone_head.next; cur != &zone_head; cur = cur->next) {
587 zone = list_get_instance(cur, zone_t, link);
[566ba81]588 spinlock_lock(&zone->lock);
[59adc2b]589 printf("%L\t%d\t\t%d\n",zone->base, zone->free_count, zone->busy_count);
[263104b]590 spinlock_unlock(&zone->lock);
[dfd9186]591 }
[566ba81]592 spinlock_unlock(&zone_head_lock);
[263104b]593 interrupts_restore(ipl);
[dfd9186]594}
595
[96cacc1]596/** Prints zone details
597 *
[566ba81]598 * @param base Zone base address
[96cacc1]599 */
[566ba81]600void zone_print_one(__address base) {
601 zone_t *zone = NULL, *z ;
[dfd9186]602 link_t *cur;
[263104b]603 ipl_t ipl;
604
605 ipl = interrupts_disable();
[566ba81]606 spinlock_lock(&zone_head_lock);
607
[dfd9186]608 for (cur = zone_head.next; cur != &zone_head; cur = cur->next) {
[566ba81]609 z = list_get_instance(cur, zone_t, link);
610 if (base == z->base) {
611 zone = z;
[dfd9186]612 break;
613 }
614 }
615
616 if (!zone) {
[263104b]617 spinlock_unlock(&zone_head_lock);
618 interrupts_restore(ipl);
[566ba81]619 printf("No zone with address %X\n", base);
[dfd9186]620 return;
621 }
622
[566ba81]623 spinlock_lock(&zone->lock);
624 printf("Memory zone information\n\n");
[dfd9186]625 printf("Zone base address: %P\n", zone->base);
[263104b]626 printf("Zone size: %d frames (%dK)\n", zone->free_count + zone->busy_count, ((zone->free_count + zone->busy_count) * FRAME_SIZE) >> 10);
627 printf("Allocated space: %d frames (%dK)\n", zone->busy_count, (zone->busy_count * FRAME_SIZE) >> 10);
628 printf("Available space: %d (%dK)\n", zone->free_count, (zone->free_count * FRAME_SIZE) >> 10);
[566ba81]629
630 printf("\nBuddy allocator structures:\n\n");
[59adc2b]631 buddy_system_structure_print(zone->buddy_system, FRAME_SIZE);
[566ba81]632
633 spinlock_unlock(&zone->lock);
634 spinlock_unlock(&zone_head_lock);
[263104b]635 interrupts_restore(ipl);
[dfd9186]636}
637
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