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