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Line 56... Line 56...
56
#include <mm/as.h>
56
#include <mm/as.h>
57
#include <panic.h>
57
#include <panic.h>
58
#include <debug.h>
58
#include <debug.h>
59
#include <adt/list.h>
59
#include <adt/list.h>
60
#include <synch/spinlock.h>
60
#include <synch/spinlock.h>
-
 
61
#include <synch/mutex.h>
-
 
62
#include <synch/condvar.h>
61
#include <arch/asm.h>
63
#include <arch/asm.h>
62
#include <arch.h>
64
#include <arch.h>
63
#include <print.h>
65
#include <print.h>
64
#include <align.h>
66
#include <align.h>
65
#include <mm/slab.h>
67
#include <mm/slab.h>
Line 101... Line 103...
101
    zone_t *info[ZONES_MAX];
103
    zone_t *info[ZONES_MAX];
102
} zones_t;
104
} zones_t;
103
 
105
 
104
static zones_t zones;
106
static zones_t zones;
105
 
107
 
-
 
108
/*
-
 
109
 * Synchronization primitives used to sleep when there is no memory
-
 
110
 * available.
-
 
111
 */
-
 
112
mutex_t mem_avail_mtx;
-
 
113
condvar_t mem_avail_cv;
-
 
114
unsigned long mem_avail_frames = 0; /**< Number of available frames. */
-
 
115
unsigned long mem_avail_gen = 0;    /**< Generation counter. */
106
 
116
 
107
/********************/
117
/********************/
108
/* Helper functions */
118
/* Helper functions */
109
/********************/
119
/********************/
110
 
120
 
Line 127... Line 137...
127
static index_t make_frame_index(zone_t *zone, frame_t *frame)
137
static index_t make_frame_index(zone_t *zone, frame_t *frame)
128
{
138
{
129
    return (frame - zone->frames);
139
    return (frame - zone->frames);
130
}
140
}
131
 
141
 
132
/** Initialize frame structure
142
/** Initialize frame structure.
133
 *
-
 
134
 * Initialize frame structure.
-
 
135
 *
143
 *
136
 * @param frame Frame structure to be initialized.
144
 * @param frame     Frame structure to be initialized.
137
 */
145
 */
138
static void frame_initialize(frame_t *frame)
146
static void frame_initialize(frame_t *frame)
139
{
147
{
140
    frame->refcount = 1;
148
    frame->refcount = 1;
141
    frame->buddy_order = 0;
149
    frame->buddy_order = 0;
Line 143... Line 151...
143
 
151
 
144
/**********************/
152
/**********************/
145
/* Zoneinfo functions */
153
/* Zoneinfo functions */
146
/**********************/
154
/**********************/
147
 
155
 
148
/**
-
 
149
 * Insert-sort zone into zones list
156
/** Insert-sort zone into zones list.
150
 *
157
 *
151
 * @param newzone New zone to be inserted into zone list
158
 * @param newzone   New zone to be inserted into zone list.
152
 * @return zone number on success, -1 on error
159
 * @return      Zone number on success, -1 on error.
153
 */
160
 */
154
static int zones_add_zone(zone_t *newzone)
161
static int zones_add_zone(zone_t *newzone)
155
{
162
{
156
    unsigned int i, j;
163
    unsigned int i, j;
157
    ipl_t ipl;
164
    ipl_t ipl;
Line 169... Line 176...
169
    }
176
    }
170
   
177
   
171
    for (i = 0; i < zones.count; i++) {
178
    for (i = 0; i < zones.count; i++) {
172
        /* Check for overflow */
179
        /* Check for overflow */
173
        z = zones.info[i];
180
        z = zones.info[i];
174
        if (overlaps(newzone->base, newzone->count, z->base, z->count)) {
181
        if (overlaps(newzone->base, newzone->count, z->base,
-
 
182
            z->count)) {
175
            printf("Zones overlap!\n");
183
            printf("Zones overlap!\n");
176
            return -1;
184
            return -1;
177
        }
185
        }
178
        if (newzone->base < z->base)
186
        if (newzone->base < z->base)
179
            break;
187
            break;
Line 190... Line 198...
190
    interrupts_restore(ipl);
198
    interrupts_restore(ipl);
191
 
199
 
192
    return i;
200
    return i;
193
}
201
}
194
 
202
 
195
/**
-
 
196
 * Try to find a zone where can we find the frame
203
/** Try to find a zone where can we find the frame.
197
 *
204
 *
198
 * Assume interrupts are disabled.
205
 * Assume interrupts are disabled.
199
 *
206
 *
200
 * @param frame Frame number contained in zone
207
 * @param frame     Frame number contained in zone.
201
 * @param pzone If not null, it is used as zone hint. Zone index
208
 * @param pzone     If not null, it is used as zone hint. Zone index is
202
 *              is filled into the variable on success.
209
 *          filled into the variable on success.
203
 * @return Pointer to locked zone containing frame
210
 * @return      Pointer to locked zone containing frame.
204
 */
211
 */
205
static zone_t * find_zone_and_lock(pfn_t frame, unsigned int *pzone)
212
static zone_t *find_zone_and_lock(pfn_t frame, unsigned int *pzone)
206
{
213
{
207
    unsigned int i;
214
    unsigned int i;
208
    unsigned int hint = pzone ? *pzone : 0;
215
    unsigned int hint = pzone ? *pzone : 0;
209
    zone_t *z;
216
    zone_t *z;
210
   
217
   
Line 227... Line 234...
227
        spinlock_unlock(&z->lock);
234
        spinlock_unlock(&z->lock);
228
 
235
 
229
        i++;
236
        i++;
230
        if (i >= zones.count)
237
        if (i >= zones.count)
231
            i = 0;
238
            i = 0;
232
    } while(i != hint);
239
    } while (i != hint);
233
 
240
 
234
    spinlock_unlock(&zones.lock);
241
    spinlock_unlock(&zones.lock);
235
    return NULL;
242
    return NULL;
236
}
243
}
237
 
244
 
Line 243... Line 250...
243
 
250
 
244
/** Find and lock zone that can allocate order frames.
251
/** Find and lock zone that can allocate order frames.
245
 *
252
 *
246
 * Assume interrupts are disabled.
253
 * Assume interrupts are disabled.
247
 *
254
 *
248
 * @param order Size (2^order) of free space we are trying to find
255
 * @param order     Size (2^order) of free space we are trying to find.
-
 
256
 * @param flags     Required flags of the target zone.
249
 * @param pzone Pointer to preferred zone or NULL, on return contains zone
257
 * @param pzone     Pointer to preferred zone or NULL, on return contains
250
 *      number
258
 *          zone number.
251
 */
259
 */
-
 
260
static zone_t *
252
static zone_t * find_free_zone_and_lock(uint8_t order, unsigned int *pzone)
261
find_free_zone_and_lock(uint8_t order, int flags, unsigned int *pzone)
253
{
262
{
254
    unsigned int i;
263
    unsigned int i;
255
    zone_t *z;
264
    zone_t *z;
256
    unsigned int hint = pzone ? *pzone : 0;
265
    unsigned int hint = pzone ? *pzone : 0;
257
   
266
   
-
 
267
    /* Mask off flags that are not applicable. */
-
 
268
    flags &= FRAME_LOW_4_GiB;
-
 
269
 
258
    spinlock_lock(&zones.lock);
270
    spinlock_lock(&zones.lock);
259
    if (hint >= zones.count)
271
    if (hint >= zones.count)
260
        hint = 0;
272
        hint = 0;
261
    i = hint;
273
    i = hint;
262
    do {
274
    do {
263
        z = zones.info[i];
275
        z = zones.info[i];
264
       
276
       
265
        spinlock_lock(&z->lock);
277
        spinlock_lock(&z->lock);
266
 
278
 
-
 
279
        /*
-
 
280
         * Check whether the zone meets the search criteria.
-
 
281
         */
-
 
282
        if ((z->flags & flags) == flags) {
-
 
283
            /*
267
        /* Check if the zone has 2^order frames area available  */
284
             * Check if the zone has 2^order frames area available.
-
 
285
             */
268
        if (zone_can_alloc(z, order)) {
286
            if (zone_can_alloc(z, order)) {
269
            spinlock_unlock(&zones.lock);
287
                spinlock_unlock(&zones.lock);
270
            if (pzone)
288
                if (pzone)
271
                *pzone = i;
289
                    *pzone = i;
272
            return z;
290
                return z;
-
 
291
            }
273
        }
292
        }
274
        spinlock_unlock(&z->lock);
293
        spinlock_unlock(&z->lock);
275
        if (++i >= zones.count)
294
        if (++i >= zones.count)
276
            i = 0;
295
            i = 0;
277
    } while(i != hint);
296
    } while (i != hint);
278
    spinlock_unlock(&zones.lock);
297
    spinlock_unlock(&zones.lock);
279
    return NULL;
298
    return NULL;
280
}
299
}
281
 
300
 
282
/**************************/
301
/**************************/
283
/* Buddy system functions */
302
/* Buddy system functions */
284
/**************************/
303
/**************************/
285
 
304
 
286
/** Buddy system find_block implementation
305
/** Buddy system find_block implementation.
287
 *
306
 *
288
 * Find block that is parent of current list.
307
 * Find block that is parent of current list.
289
 * That means go to lower addresses, until such block is found
308
 * That means go to lower addresses, until such block is found
290
 *
309
 *
291
 * @param order - Order of parent must be different then this parameter!!
310
 * @param order     Order of parent must be different then this
-
 
311
 *          parameter!!
292
 */
312
 */
293
static link_t *zone_buddy_find_block(buddy_system_t *b, link_t *child,
313
static link_t *zone_buddy_find_block(buddy_system_t *b, link_t *child,
294
    uint8_t order)
314
    uint8_t order)
295
{
315
{
296
    frame_t *frame;
316
    frame_t *frame;
Line 307... Line 327...
307
        }
327
        }
308
    } while(index-- > 0);
328
    } while(index-- > 0);
309
    return NULL;
329
    return NULL;
310
}
330
}
311
 
331
 
312
static void zone_buddy_print_id(buddy_system_t *b, link_t *block)
-
 
313
{
-
 
314
    frame_t *frame;
-
 
315
    zone_t *zone;
-
 
316
    index_t index;
-
 
317
 
-
 
318
    frame = list_get_instance(block, frame_t, buddy_link);
-
 
319
    zone = (zone_t *) b->data;
-
 
320
    index = frame_index(zone, frame);
-
 
321
    printf("%" PRIi, index);
-
 
322
}                    
-
 
323
 
-
 
324
/** Buddy system find_buddy implementation
332
/** Buddy system find_buddy implementation.
325
 *
333
 *
326
 * @param b Buddy system.
334
 * @param b     Buddy system.
327
 * @param block Block for which buddy should be found
335
 * @param block     Block for which buddy should be found.
328
 *
336
 *
329
 * @return Buddy for given block if found
337
 * @return      Buddy for given block if found.
330
 */
338
 */
331
static link_t *zone_buddy_find_buddy(buddy_system_t *b, link_t *block)
339
static link_t *zone_buddy_find_buddy(buddy_system_t *b, link_t *block)
332
{
340
{
333
    frame_t *frame;
341
    frame_t *frame;
334
    zone_t *zone;
342
    zone_t *zone;
Line 343... Line 351...
343
    is_left = IS_BUDDY_LEFT_BLOCK_ABS(zone, frame);
351
    is_left = IS_BUDDY_LEFT_BLOCK_ABS(zone, frame);
344
    is_right = IS_BUDDY_RIGHT_BLOCK_ABS(zone, frame);
352
    is_right = IS_BUDDY_RIGHT_BLOCK_ABS(zone, frame);
345
 
353
 
346
    ASSERT(is_left ^ is_right);
354
    ASSERT(is_left ^ is_right);
347
    if (is_left) {
355
    if (is_left) {
348
        index = (frame_index(zone, frame)) + (1 << frame->buddy_order);
356
        index = (frame_index(zone, frame)) +
-
 
357
            (1 << frame->buddy_order);
349
    } else {    /* if (is_right) */
358
    } else {    /* if (is_right) */
350
        index = (frame_index(zone, frame)) - (1 << frame->buddy_order);
359
        index = (frame_index(zone, frame)) -
-
 
360
            (1 << frame->buddy_order);
351
    }
361
    }
352
   
362
   
353
    if (frame_index_valid(zone, index)) {
363
    if (frame_index_valid(zone, index)) {
354
        if (zone->frames[index].buddy_order == frame->buddy_order &&
364
        if (zone->frames[index].buddy_order == frame->buddy_order &&
355
            zone->frames[index].refcount == 0) {
365
            zone->frames[index].refcount == 0) {
Line 358... Line 368...
358
    }
368
    }
359
 
369
 
360
    return NULL;   
370
    return NULL;   
361
}
371
}
362
 
372
 
363
/** Buddy system bisect implementation
373
/** Buddy system bisect implementation.
364
 *
374
 *
365
 * @param b Buddy system.
375
 * @param b     Buddy system.
366
 * @param block Block to bisect
376
 * @param block     Block to bisect.
367
 *
377
 *
368
 * @return right block
378
 * @return      Right block.
369
 */
379
 */
370
static link_t * zone_buddy_bisect(buddy_system_t *b, link_t *block) {
380
static link_t *zone_buddy_bisect(buddy_system_t *b, link_t *block)
-
 
381
{
371
    frame_t *frame_l, *frame_r;
382
    frame_t *frame_l, *frame_r;
372
 
383
 
373
    frame_l = list_get_instance(block, frame_t, buddy_link);
384
    frame_l = list_get_instance(block, frame_t, buddy_link);
374
    frame_r = (frame_l + (1 << (frame_l->buddy_order - 1)));
385
    frame_r = (frame_l + (1 << (frame_l->buddy_order - 1)));
375
   
386
   
376
    return &frame_r->buddy_link;
387
    return &frame_r->buddy_link;
377
}
388
}
378
 
389
 
379
/** Buddy system coalesce implementation
390
/** Buddy system coalesce implementation.
380
 *
391
 *
381
 * @param b Buddy system.
392
 * @param b     Buddy system.
382
 * @param block_1 First block
393
 * @param block_1   First block.
383
 * @param block_2 First block's buddy
394
 * @param block_2   First block's buddy.
384
 *
395
 *
385
 * @return Coalesced block (actually block that represents lower address)
396
 * @return      Coalesced block (actually block that represents lower
-
 
397
 *          address).
386
 */
398
 */
387
static link_t *zone_buddy_coalesce(buddy_system_t *b, link_t *block_1,
399
static link_t *zone_buddy_coalesce(buddy_system_t *b, link_t *block_1,
388
    link_t *block_2)
400
    link_t *block_2)
389
{
401
{
390
    frame_t *frame1, *frame2;
402
    frame_t *frame1, *frame2;
Line 393... Line 405...
393
    frame2 = list_get_instance(block_2, frame_t, buddy_link);
405
    frame2 = list_get_instance(block_2, frame_t, buddy_link);
394
   
406
   
395
    return frame1 < frame2 ? block_1 : block_2;
407
    return frame1 < frame2 ? block_1 : block_2;
396
}
408
}
397
 
409
 
398
/** Buddy system set_order implementation
410
/** Buddy system set_order implementation.
399
 *
411
 *
400
 * @param b Buddy system.
412
 * @param b     Buddy system.
401
 * @param block Buddy system block
413
 * @param block     Buddy system block.
402
 * @param order Order to set
414
 * @param order     Order to set.
403
 */
415
 */
404
static void zone_buddy_set_order(buddy_system_t *b, link_t *block,
416
static void zone_buddy_set_order(buddy_system_t *b, link_t *block,
405
    uint8_t order) {
417
    uint8_t order)
-
 
418
{
406
    frame_t *frame;
419
    frame_t *frame;
407
    frame = list_get_instance(block, frame_t, buddy_link);
420
    frame = list_get_instance(block, frame_t, buddy_link);
408
    frame->buddy_order = order;
421
    frame->buddy_order = order;
409
}
422
}
410
 
423
 
411
/** Buddy system get_order implementation
424
/** Buddy system get_order implementation.
412
 *
425
 *
413
 * @param b Buddy system.
426
 * @param b     Buddy system.
414
 * @param block Buddy system block
427
 * @param block     Buddy system block.
415
 *
428
 *
416
 * @return Order of block
429
 * @return      Order of block.
417
 */
430
 */
418
static uint8_t zone_buddy_get_order(buddy_system_t *b, link_t *block) {
431
static uint8_t zone_buddy_get_order(buddy_system_t *b, link_t *block)
-
 
432
{
419
    frame_t *frame;
433
    frame_t *frame;
420
    frame = list_get_instance(block, frame_t, buddy_link);
434
    frame = list_get_instance(block, frame_t, buddy_link);
421
    return frame->buddy_order;
435
    return frame->buddy_order;
422
}
436
}
423
 
437
 
424
/** Buddy system mark_busy implementation
438
/** Buddy system mark_busy implementation.
425
 *
-
 
426
 * @param b Buddy system
-
 
427
 * @param block Buddy system block
-
 
428
 *
439
 *
-
 
440
 * @param b     Buddy system.
-
 
441
 * @param block     Buddy system block.
429
 */
442
 */
430
static void zone_buddy_mark_busy(buddy_system_t *b, link_t * block) {
443
static void zone_buddy_mark_busy(buddy_system_t *b, link_t * block)
-
 
444
{
431
    frame_t * frame;
445
    frame_t * frame;
432
 
446
 
433
    frame = list_get_instance(block, frame_t, buddy_link);
447
    frame = list_get_instance(block, frame_t, buddy_link);
434
    frame->refcount = 1;
448
    frame->refcount = 1;
435
}
449
}
436
 
450
 
437
/** Buddy system mark_available implementation
451
/** Buddy system mark_available implementation.
438
 *
-
 
439
 * @param b Buddy system
-
 
440
 * @param block Buddy system block
-
 
441
 *
452
 *
-
 
453
 * @param b     Buddy system.
-
 
454
 * @param block     Buddy system block.
442
 */
455
 */
443
static void zone_buddy_mark_available(buddy_system_t *b, link_t *block) {
456
static void zone_buddy_mark_available(buddy_system_t *b, link_t *block)
-
 
457
{
444
    frame_t *frame;
458
    frame_t *frame;
445
    frame = list_get_instance(block, frame_t, buddy_link);
459
    frame = list_get_instance(block, frame_t, buddy_link);
446
    frame->refcount = 0;
460
    frame->refcount = 0;
447
}
461
}
448
 
462
 
Line 452... Line 466...
452
    .coalesce = zone_buddy_coalesce,
466
    .coalesce = zone_buddy_coalesce,
453
    .set_order = zone_buddy_set_order,
467
    .set_order = zone_buddy_set_order,
454
    .get_order = zone_buddy_get_order,
468
    .get_order = zone_buddy_get_order,
455
    .mark_busy = zone_buddy_mark_busy,
469
    .mark_busy = zone_buddy_mark_busy,
456
    .mark_available = zone_buddy_mark_available,
470
    .mark_available = zone_buddy_mark_available,
457
    .find_block = zone_buddy_find_block,
471
    .find_block = zone_buddy_find_block
458
    .print_id = zone_buddy_print_id
-
 
459
};
472
};
460
 
473
 
461
/******************/
474
/******************/
462
/* Zone functions */
475
/* Zone functions */
463
/******************/
476
/******************/
464
 
477
 
465
/** Allocate frame in particular zone
478
/** Allocate frame in particular zone.
466
 *
479
 *
467
 * Assume zone is locked
480
 * Assume zone is locked.
468
 * Panics if allocation is impossible.
481
 * Panics if allocation is impossible.
469
 *
482
 *
470
 * @param zone  Zone to allocate from.
483
 * @param zone      Zone to allocate from.
471
 * @param order Allocate exactly 2^order frames.
484
 * @param order     Allocate exactly 2^order frames.
472
 *
485
 *
473
 * @return Frame index in zone
486
 * @return      Frame index in zone.
474
 *
487
 *
475
 */
488
 */
476
static pfn_t zone_frame_alloc(zone_t *zone, uint8_t order)
489
static pfn_t zone_frame_alloc(zone_t *zone, uint8_t order)
477
{
490
{
478
    pfn_t v;
491
    pfn_t v;
Line 494... Line 507...
494
    /* get frame address */
507
    /* get frame address */
495
    v = make_frame_index(zone, frame);
508
    v = make_frame_index(zone, frame);
496
    return v;
509
    return v;
497
}
510
}
498
 
511
 
499
/** Free frame from zone
512
/** Free frame from zone.
500
 *
513
 *
501
 * Assume zone is locked
514
 * Assume zone is locked.
502
 *
515
 *
503
 * @param zone Pointer to zone from which the frame is to be freed
516
 * @param zone      Pointer to zone from which the frame is to be freed.
504
 * @param frame_idx Frame index relative to zone
517
 * @param frame_idx Frame index relative to zone.
505
 */
518
 */
506
static void zone_frame_free(zone_t *zone, index_t frame_idx)
519
static void zone_frame_free(zone_t *zone, index_t frame_idx)
507
{
520
{
508
    frame_t *frame;
521
    frame_t *frame;
509
    uint8_t order;
522
    uint8_t order;
Line 522... Line 535...
522
        zone->free_count += (1 << order);
535
        zone->free_count += (1 << order);
523
        zone->busy_count -= (1 << order);
536
        zone->busy_count -= (1 << order);
524
    }
537
    }
525
}
538
}
526
 
539
 
527
/** Return frame from zone */
540
/** Return frame from zone. */
528
static frame_t * zone_get_frame(zone_t *zone, index_t frame_idx)
541
static frame_t *zone_get_frame(zone_t *zone, index_t frame_idx)
529
{
542
{
530
    ASSERT(frame_idx < zone->count);
543
    ASSERT(frame_idx < zone->count);
531
    return &zone->frames[frame_idx];
544
    return &zone->frames[frame_idx];
532
}
545
}
533
 
546
 
534
/** Mark frame in zone unavailable to allocation */
547
/** Mark frame in zone unavailable to allocation. */
535
static void zone_mark_unavailable(zone_t *zone, index_t frame_idx)
548
static void zone_mark_unavailable(zone_t *zone, index_t frame_idx)
536
{
549
{
537
    frame_t *frame;
550
    frame_t *frame;
538
    link_t *link;
551
    link_t *link;
539
 
552
 
Line 542... Line 555...
542
        return;
555
        return;
543
    link = buddy_system_alloc_block(zone->buddy_system,
556
    link = buddy_system_alloc_block(zone->buddy_system,
544
        &frame->buddy_link);
557
        &frame->buddy_link);
545
    ASSERT(link);
558
    ASSERT(link);
546
    zone->free_count--;
559
    zone->free_count--;
-
 
560
 
-
 
561
    mutex_lock(&mem_avail_mtx);
-
 
562
    mem_avail_frames--;
-
 
563
    mutex_unlock(&mem_avail_mtx);
547
}
564
}
548
 
565
 
549
/**
-
 
550
 * Join 2 zones
566
/** Join two zones.
551
 *
567
 *
552
 * Expect zone_t *z to point to space at least zone_conf_size large
568
 * Expect zone_t *z to point to space at least zone_conf_size large.
553
 *
569
 *
554
 * Assume z1 & z2 are locked
570
 * Assume z1 & z2 are locked.
555
 *
571
 *
556
 * @param z Target zone structure pointer
572
 * @param z     Target zone structure pointer.
557
 * @param z1 Zone to merge
573
 * @param z1        Zone to merge.
558
 * @param z2 Zone to merge
574
 * @param z2        Zone to merge.
559
 */
575
 */
560
static void _zone_merge(zone_t *z, zone_t *z1, zone_t *z2)
576
static void _zone_merge(zone_t *z, zone_t *z1, zone_t *z2)
561
{
577
{
562
    uint8_t max_order;
578
    uint8_t max_order;
563
    unsigned int i;
579
    unsigned int i;
Line 627... Line 643...
627
        frame->refcount = 0;
643
        frame->refcount = 0;
628
        buddy_system_free(z->buddy_system, &frame->buddy_link);
644
        buddy_system_free(z->buddy_system, &frame->buddy_link);
629
    }
645
    }
630
}
646
}
631
 
647
 
632
/** Return old configuration frames into the zone
648
/** Return old configuration frames into the zone.
633
 *
649
 *
634
 * We have several cases
650
 * We have several cases
635
 * - the conf. data is outside of zone -> exit, shall we call frame_free??
651
 * - the conf. data is outside of zone -> exit, shall we call frame_free??
636
 * - the conf. data was created by zone_create or
652
 * - the conf. data was created by zone_create or
637
 *   updated with reduce_region -> free every frame
653
 *   updated with reduce_region -> free every frame
638
 *
654
 *
639
 * @param newzone The actual zone where freeing should occur
655
 * @param newzone   The actual zone where freeing should occur.
640
 * @param oldzone Pointer to old zone configuration data that should
656
 * @param oldzone   Pointer to old zone configuration data that should
641
 *                be freed from new zone
657
 *          be freed from new zone.
642
 */
658
 */
643
static void return_config_frames(zone_t *newzone, zone_t *oldzone)
659
static void return_config_frames(zone_t *newzone, zone_t *oldzone)
644
{
660
{
645
    pfn_t pfn;
661
    pfn_t pfn;
646
    frame_t *frame;
662
    frame_t *frame;
Line 660... Line 676...
660
        newzone->busy_count++;
676
        newzone->busy_count++;
661
        zone_frame_free(newzone, pfn+i-newzone->base);
677
        zone_frame_free(newzone, pfn+i-newzone->base);
662
    }
678
    }
663
}
679
}
664
 
680
 
665
/** Reduce allocated block to count of order 0 frames
681
/** Reduce allocated block to count of order 0 frames.
666
 *
682
 *
667
 * The allocated block need 2^order frames of space. Reduce all frames
683
 * The allocated block need 2^order frames of space. Reduce all frames
668
 * in block to order 0 and free the unneeded frames. This means, that
684
 * in block to order 0 and free the unneeded frames. This means, that
669
 * when freeing the previously allocated block starting with frame_idx,
685
 * when freeing the previously allocated block starting with frame_idx,
670
 * you have to free every frame.
686
 * you have to free every frame.
671
 *
687
 *
672
 * @param zone
688
 * @param zone
673
 * @param frame_idx Index to block
689
 * @param frame_idx     Index to block.
674
 * @param count Allocated space in block
690
 * @param count         Allocated space in block.
675
 */
691
 */
676
static void zone_reduce_region(zone_t *zone, pfn_t frame_idx, count_t count)
692
static void zone_reduce_region(zone_t *zone, pfn_t frame_idx, count_t count)
677
{
693
{
678
    count_t i;
694
    count_t i;
679
    uint8_t order;
695
    uint8_t order;
Line 696... Line 712...
696
    for (i = count; i < (count_t) (1 << order); i++) {
712
    for (i = count; i < (count_t) (1 << order); i++) {
697
        zone_frame_free(zone, i + frame_idx);
713
        zone_frame_free(zone, i + frame_idx);
698
    }
714
    }
699
}
715
}
700
 
716
 
701
/** Merge zones z1 and z2
717
/** Merge zones z1 and z2.
702
 *
718
 *
703
 * - the zones must be 2 zones with no zone existing in between,
719
 * - the zones must be 2 zones with no zone existing in between,
704
 *   which means that z2 = z1+1
720
 *   which means that z2 = z1+1
705
 *
721
 *
706
 * - When you create a new zone, the frame allocator configuration does
722
 * - When you create a new zone, the frame allocator configuration does
Line 720... Line 736...
720
    spinlock_lock(&zones.lock);
736
    spinlock_lock(&zones.lock);
721
 
737
 
722
    if ((z1 >= zones.count) || (z2 >= zones.count))
738
    if ((z1 >= zones.count) || (z2 >= zones.count))
723
        goto errout;
739
        goto errout;
724
    /* We can join only 2 zones with none existing inbetween */
740
    /* We can join only 2 zones with none existing inbetween */
725
    if (z2-z1 != 1)
741
    if (z2 - z1 != 1)
726
        goto errout;
742
        goto errout;
727
 
743
 
728
    zone1 = zones.info[z1];
744
    zone1 = zones.info[z1];
729
    zone2 = zones.info[z2];
745
    zone2 = zones.info[z2];
730
    spinlock_lock(&zone1->lock);
746
    spinlock_lock(&zone1->lock);
Line 771... Line 787...
771
errout:
787
errout:
772
    spinlock_unlock(&zones.lock);
788
    spinlock_unlock(&zones.lock);
773
    interrupts_restore(ipl);
789
    interrupts_restore(ipl);
774
}
790
}
775
 
791
 
776
/**
-
 
777
 * Merge all zones into one big zone
792
/** Merge all zones into one big zone.
778
 *
793
 *
779
 * It is reasonable to do this on systems whose bios reports parts in chunks,
794
 * It is reasonable to do this on systems whose bios reports parts in chunks,
780
 * so that we could have 1 zone (it's faster).
795
 * so that we could have 1 zone (it's faster).
781
 */
796
 */
782
void zone_merge_all(void)
797
void zone_merge_all(void)
783
{
798
{
784
    int count = zones.count;
799
    int count = zones.count;
785
 
800
 
786
    while (zones.count > 1 && --count) {
801
    while (zones.count > 1 && --count) {
787
        zone_merge(0,1);
802
        zone_merge(0, 1);
788
        break;
803
        break;
789
    }
804
    }
790
}
805
}
791
 
806
 
792
/** Create frame zone
-
 
793
 *
-
 
794
 * Create new frame zone.
807
/** Create new frame zone.
795
 *
808
 *
796
 * @param start Physical address of the first frame within the zone.
809
 * @param start     Physical address of the first frame within the zone.
797
 * @param count Count of frames in zone
810
 * @param count     Count of frames in zone.
798
 * @param z Address of configuration information of zone
811
 * @param z     Address of configuration information of zone.
799
 * @param flags Zone flags.
812
 * @param flags     Zone flags.
800
 *
813
 *
801
 * @return Initialized zone.
814
 * @return      Initialized zone.
802
 */
815
 */
803
static void zone_construct(pfn_t start, count_t count, zone_t *z, int flags)
816
static void zone_construct(pfn_t start, count_t count, zone_t *z, int flags)
804
{
817
{
805
    unsigned int i;
818
    unsigned int i;
806
    uint8_t max_order;
819
    uint8_t max_order;
807
 
820
 
808
    spinlock_initialize(&z->lock, "zone_lock");
821
    spinlock_initialize(&z->lock, "zone_lock");
809
    z->base = start;
822
    z->base = start;
810
    z->count = count;
823
    z->count = count;
-
 
824
 
-
 
825
    /* Mask off flags that are calculated automatically. */
-
 
826
    flags &= ~FRAME_LOW_4_GiB;
-
 
827
    /* Determine calculated flags. */
-
 
828
    if (z->base + count < (1ULL << (32 - FRAME_WIDTH))) /* 4 GiB */
-
 
829
        flags |= FRAME_LOW_4_GiB;
-
 
830
 
811
    z->flags = flags;
831
    z->flags = flags;
-
 
832
 
812
    z->free_count = count;
833
    z->free_count = count;
813
    z->busy_count = 0;
834
    z->busy_count = 0;
814
 
835
 
815
    /*
836
    /*
816
     * Compute order for buddy system, initialize
837
     * Compute order for buddy system, initialize
817
     */
838
     */
818
    max_order = fnzb(count);
839
    max_order = fnzb(count);
819
    z->buddy_system = (buddy_system_t *)&z[1];
840
    z->buddy_system = (buddy_system_t *)&z[1];
820
   
841
   
821
    buddy_system_create(z->buddy_system, max_order,
842
    buddy_system_create(z->buddy_system, max_order,
822
                &zone_buddy_system_operations,
843
        &zone_buddy_system_operations, (void *) z);
823
                (void *) z);
-
 
824
   
844
   
825
    /* Allocate frames _after_ the conframe */
845
    /* Allocate frames _after_ the conframe */
826
    /* Check sizes */
846
    /* Check sizes */
827
    z->frames = (frame_t *)((uint8_t *) z->buddy_system +
847
    z->frames = (frame_t *)((uint8_t *) z->buddy_system +
828
        buddy_conf_size(max_order));
848
        buddy_conf_size(max_order));
Line 835... Line 855...
835
        z->frames[i].refcount = 0;
855
        z->frames[i].refcount = 0;
836
        buddy_system_free(z->buddy_system, &z->frames[i].buddy_link);
856
        buddy_system_free(z->buddy_system, &z->frames[i].buddy_link);
837
    }
857
    }
838
}
858
}
839
 
859
 
840
/** Compute configuration data size for zone
860
/** Compute configuration data size for zone.
841
 *
861
 *
842
 * @param count Size of zone in frames
862
 * @param count     Size of zone in frames.
843
 * @return Size of zone configuration info (in bytes)
863
 * @return      Size of zone configuration info (in bytes).
844
 */
864
 */
845
uintptr_t zone_conf_size(count_t count)
865
uintptr_t zone_conf_size(count_t count)
846
{
866
{
847
    int size = sizeof(zone_t) + count * sizeof(frame_t);
867
    int size = sizeof(zone_t) + count * sizeof(frame_t);
848
    int max_order;
868
    int max_order;
Line 850... Line 870...
850
    max_order = fnzb(count);
870
    max_order = fnzb(count);
851
    size += buddy_conf_size(max_order);
871
    size += buddy_conf_size(max_order);
852
    return size;
872
    return size;
853
}
873
}
854
 
874
 
855
/** Create and add zone to system
875
/** Create and add zone to system.
856
 *
876
 *
857
 * @param start First frame number (absolute)
877
 * @param start     First frame number (absolute).
858
 * @param count Size of zone in frames
878
 * @param count     Size of zone in frames.
859
 * @param confframe Where configuration frames are supposed to be.
879
 * @param confframe Where configuration frames are supposed to be.
860
 *                  Automatically checks, that we will not disturb the
880
 *          Automatically checks, that we will not disturb the
861
 *                  kernel and possibly init.
881
 *          kernel and possibly init.  If confframe is given
862
 *                  If confframe is given _outside_ this zone, it is expected,
882
 *          _outside_ this zone, it is expected, that the area is
863
 *                  that the area is already marked BUSY and big enough
883
 *          already marked BUSY and big enough to contain
864
 *                  to contain zone_conf_size() amount of data.
884
 *          zone_conf_size() amount of data.  If the confframe is
865
 *                  If the confframe is inside the area, the zone free frame
885
 *          inside the area, the zone free frame information is
866
 *                  information is modified not to include it.
886
 *          modified not to include it.
867
 *
887
 *
868
 * @return Zone number or -1 on error
888
 * @return      Zone number or -1 on error.
869
 */
889
 */
870
int zone_create(pfn_t start, count_t count, pfn_t confframe, int flags)
890
int zone_create(pfn_t start, count_t count, pfn_t confframe, int flags)
871
{
891
{
872
    zone_t *z;
892
    zone_t *z;
873
    uintptr_t addr;
893
    uintptr_t addr;
Line 882... Line 902...
882
    ASSERT(confframe);
902
    ASSERT(confframe);
883
    /* If conframe is supposed to be inside our zone, then make sure
903
    /* If conframe is supposed to be inside our zone, then make sure
884
     * it does not span kernel & init
904
     * it does not span kernel & init
885
     */
905
     */
886
    confcount = SIZE2FRAMES(zone_conf_size(count));
906
    confcount = SIZE2FRAMES(zone_conf_size(count));
887
    if (confframe >= start && confframe < start+count) {
907
    if (confframe >= start && confframe < start + count) {
888
        for (;confframe < start + count; confframe++) {
908
        for (; confframe < start + count; confframe++) {
889
            addr = PFN2ADDR(confframe);
909
            addr = PFN2ADDR(confframe);
890
            if (overlaps(addr, PFN2ADDR(confcount),
910
            if (overlaps(addr, PFN2ADDR(confcount),
891
                KA2PA(config.base), config.kernel_size))
911
                KA2PA(config.base), config.kernel_size))
892
                continue;
912
                continue;
893
           
913
           
Line 917... Line 937...
917
    zone_construct(start, count, z, flags);
937
    zone_construct(start, count, z, flags);
918
    znum = zones_add_zone(z);
938
    znum = zones_add_zone(z);
919
    if (znum == -1)
939
    if (znum == -1)
920
        return -1;
940
        return -1;
921
 
941
 
-
 
942
    mutex_lock(&mem_avail_mtx);
-
 
943
    mem_avail_frames += count;
-
 
944
    mutex_unlock(&mem_avail_mtx);
-
 
945
 
922
    /* If confdata in zone, mark as unavailable */
946
    /* If confdata in zone, mark as unavailable */
923
    if (confframe >= start && confframe < start + count)
947
    if (confframe >= start && confframe < start + count)
924
        for (i = confframe; i < confframe + confcount; i++) {
948
        for (i = confframe; i < confframe + confcount; i++) {
925
            zone_mark_unavailable(z, i - z->base);
949
            zone_mark_unavailable(z, i - z->base);
926
        }
950
        }
-
 
951
   
927
    return znum;
952
    return znum;
928
}
953
}
929
 
954
 
930
/***************************************/
955
/***************************************/
931
/* Frame functions */
956
/* Frame functions */
932
 
957
 
933
/** Set parent of frame */
958
/** Set parent of frame. */
934
void frame_set_parent(pfn_t pfn, void *data, unsigned int hint)
959
void frame_set_parent(pfn_t pfn, void *data, unsigned int hint)
935
{
960
{
936
    zone_t *zone = find_zone_and_lock(pfn, &hint);
961
    zone_t *zone = find_zone_and_lock(pfn, &hint);
937
 
962
 
938
    ASSERT(zone);
963
    ASSERT(zone);
939
 
964
 
940
    zone_get_frame(zone, pfn-zone->base)->parent = data;
965
    zone_get_frame(zone, pfn - zone->base)->parent = data;
941
    spinlock_unlock(&zone->lock);
966
    spinlock_unlock(&zone->lock);
942
}
967
}
943
 
968
 
944
void *frame_get_parent(pfn_t pfn, unsigned int hint)
969
void *frame_get_parent(pfn_t pfn, unsigned int hint)
945
{
970
{
Line 953... Line 978...
953
    return res;
978
    return res;
954
}
979
}
955
 
980
 
956
/** Allocate power-of-two frames of physical memory.
981
/** Allocate power-of-two frames of physical memory.
957
 *
982
 *
958
 * @param order  Allocate exactly 2^order frames.
983
 * @param order     Allocate exactly 2^order frames.
959
 * @param flags  Flags for host zone selection and address processing.
984
 * @param flags     Flags for host zone selection and address processing.
960
 * @param pzone  Preferred zone
985
 * @param pzone     Preferred zone.
961
 *
986
 *
962
 * @return Physical address of the allocated frame.
987
 * @return      Physical address of the allocated frame.
963
 *
988
 *
964
 */
989
 */
965
void * frame_alloc_generic(uint8_t order, int flags, unsigned int *pzone)
990
void *frame_alloc_generic(uint8_t order, int flags, unsigned int *pzone)
966
{
991
{
967
    ipl_t ipl;
992
    ipl_t ipl;
968
    int freed;
993
    int freed;
969
    pfn_t v;
994
    pfn_t v;
970
    zone_t *zone;
995
    zone_t *zone;
-
 
996
    unsigned long gen = 0;
971
   
997
   
972
loop:
998
loop:
973
    ipl = interrupts_disable();
999
    ipl = interrupts_disable();
974
   
1000
   
975
    /*
1001
    /*
976
     * First, find suitable frame zone.
1002
     * First, find suitable frame zone.
977
     */
1003
     */
978
    zone = find_free_zone_and_lock(order, pzone);
1004
    zone = find_free_zone_and_lock(order, flags, pzone);
979
   
1005
   
980
    /* If no memory, reclaim some slab memory,
1006
    /* If no memory, reclaim some slab memory,
981
       if it does not help, reclaim all */
1007
       if it does not help, reclaim all */
982
    if (!zone && !(flags & FRAME_NO_RECLAIM)) {
1008
    if (!zone && !(flags & FRAME_NO_RECLAIM)) {
983
        freed = slab_reclaim(0);
1009
        freed = slab_reclaim(0);
984
        if (freed)
1010
        if (freed)
985
            zone = find_free_zone_and_lock(order, pzone);
1011
            zone = find_free_zone_and_lock(order, flags, pzone);
986
        if (!zone) {
1012
        if (!zone) {
987
            freed = slab_reclaim(SLAB_RECLAIM_ALL);
1013
            freed = slab_reclaim(SLAB_RECLAIM_ALL);
988
            if (freed)
1014
            if (freed)
989
                zone = find_free_zone_and_lock(order, pzone);
1015
                zone = find_free_zone_and_lock(order, flags,
-
 
1016
                    pzone);
990
        }
1017
        }
991
    }
1018
    }
992
    if (!zone) {
1019
    if (!zone) {
993
        /*
1020
        /*
994
         * TODO: Sleep until frames are available again.
1021
         * Sleep until some frames are available again.
995
         */
1022
         */
-
 
1023
        if (flags & FRAME_ATOMIC) {
996
        interrupts_restore(ipl);
1024
            interrupts_restore(ipl);
997
 
-
 
998
        if (flags & FRAME_ATOMIC)
-
 
999
            return 0;
1025
            return 0;
-
 
1026
        }
1000
       
1027
       
-
 
1028
#ifdef CONFIG_DEBUG
-
 
1029
        unsigned long avail;
-
 
1030
 
-
 
1031
        mutex_lock(&mem_avail_mtx);
-
 
1032
        avail = mem_avail_frames;
1001
        panic("Sleep not implemented.\n");
1033
        mutex_unlock(&mem_avail_mtx);
-
 
1034
 
-
 
1035
        printf("Thread %" PRIu64 " waiting for %u frames, "
-
 
1036
            "%u available.\n", THREAD->tid, 1ULL << order, avail);
-
 
1037
#endif
-
 
1038
 
-
 
1039
        mutex_lock(&mem_avail_mtx);
-
 
1040
        while ((mem_avail_frames < (1ULL << order)) ||
-
 
1041
            gen == mem_avail_gen)
-
 
1042
            condvar_wait(&mem_avail_cv, &mem_avail_mtx);
-
 
1043
        gen = mem_avail_gen;
-
 
1044
        mutex_unlock(&mem_avail_mtx);
-
 
1045
 
-
 
1046
#ifdef CONFIG_DEBUG
-
 
1047
        mutex_lock(&mem_avail_mtx);
-
 
1048
        avail = mem_avail_frames;
-
 
1049
        mutex_unlock(&mem_avail_mtx);
-
 
1050
 
-
 
1051
        printf("Thread %" PRIu64 " woken up, %u frames available.\n",
-
 
1052
            THREAD->tid, avail);
-
 
1053
#endif
-
 
1054
 
-
 
1055
        interrupts_restore(ipl);
1002
        goto loop;
1056
        goto loop;
1003
    }
1057
    }
1004
   
1058
   
1005
    v = zone_frame_alloc(zone, order);
1059
    v = zone_frame_alloc(zone, order);
1006
    v += zone->base;
1060
    v += zone->base;
1007
 
1061
 
1008
    spinlock_unlock(&zone->lock);
1062
    spinlock_unlock(&zone->lock);
-
 
1063
   
-
 
1064
    mutex_lock(&mem_avail_mtx);
-
 
1065
    mem_avail_frames -= (1ULL << order);
-
 
1066
    mutex_unlock(&mem_avail_mtx);
-
 
1067
 
1009
    interrupts_restore(ipl);
1068
    interrupts_restore(ipl);
1010
 
1069
 
1011
    if (flags & FRAME_KA)
1070
    if (flags & FRAME_KA)
1012
        return (void *)PA2KA(PFN2ADDR(v));
1071
        return (void *)PA2KA(PFN2ADDR(v));
1013
    return (void *)PFN2ADDR(v);
1072
    return (void *)PFN2ADDR(v);
Line 1017... Line 1076...
1017
 *
1076
 *
1018
 * Find respective frame structure for supplied physical frame address.
1077
 * Find respective frame structure for supplied physical frame address.
1019
 * Decrement frame reference count.
1078
 * Decrement frame reference count.
1020
 * If it drops to zero, move the frame structure to free list.
1079
 * If it drops to zero, move the frame structure to free list.
1021
 *
1080
 *
1022
 * @param Frame Physical Address of of the frame to be freed.
1081
 * @param frame     Physical Address of of the frame to be freed.
1023
 */
1082
 */
1024
void frame_free(uintptr_t frame)
1083
void frame_free(uintptr_t frame)
1025
{
1084
{
1026
    ipl_t ipl;
1085
    ipl_t ipl;
1027
    zone_t *zone;
1086
    zone_t *zone;
1028
    pfn_t pfn = ADDR2PFN(frame);
1087
    pfn_t pfn = ADDR2PFN(frame);
1029
 
1088
 
1030
    ipl = interrupts_disable();
1089
    ipl = interrupts_disable();
1031
   
1090
 
1032
    /*
1091
    /*
1033
     * First, find host frame zone for addr.
1092
     * First, find host frame zone for addr.
1034
     */
1093
     */
1035
    zone = find_zone_and_lock(pfn,NULL);
1094
    zone = find_zone_and_lock(pfn, NULL);
1036
    ASSERT(zone);
1095
    ASSERT(zone);
1037
   
1096
   
1038
    zone_frame_free(zone, pfn-zone->base);
1097
    zone_frame_free(zone, pfn - zone->base);
1039
   
1098
   
1040
    spinlock_unlock(&zone->lock);
1099
    spinlock_unlock(&zone->lock);
-
 
1100
   
-
 
1101
    /*
-
 
1102
     * Signal that some memory has been freed.
-
 
1103
     */
-
 
1104
    mutex_lock(&mem_avail_mtx);
-
 
1105
    mem_avail_frames++;
-
 
1106
    mem_avail_gen++;
-
 
1107
    condvar_broadcast(&mem_avail_cv);
-
 
1108
    mutex_unlock(&mem_avail_mtx);
-
 
1109
 
1041
    interrupts_restore(ipl);
1110
    interrupts_restore(ipl);
1042
}
1111
}
1043
 
1112
 
1044
/** Add reference to frame.
1113
/** Add reference to frame.
1045
 *
1114
 *
1046
 * Find respective frame structure for supplied PFN and
1115
 * Find respective frame structure for supplied PFN and
1047
 * increment frame reference count.
1116
 * increment frame reference count.
1048
 *
1117
 *
1049
 * @param pfn Frame number of the frame to be freed.
1118
 * @param pfn       Frame number of the frame to be freed.
1050
 */
1119
 */
1051
void frame_reference_add(pfn_t pfn)
1120
void frame_reference_add(pfn_t pfn)
1052
{
1121
{
1053
    ipl_t ipl;
1122
    ipl_t ipl;
1054
    zone_t *zone;
1123
    zone_t *zone;
Line 1057... Line 1126...
1057
    ipl = interrupts_disable();
1126
    ipl = interrupts_disable();
1058
   
1127
   
1059
    /*
1128
    /*
1060
     * First, find host frame zone for addr.
1129
     * First, find host frame zone for addr.
1061
     */
1130
     */
1062
    zone = find_zone_and_lock(pfn,NULL);
1131
    zone = find_zone_and_lock(pfn, NULL);
1063
    ASSERT(zone);
1132
    ASSERT(zone);
1064
   
1133
   
1065
    frame = &zone->frames[pfn-zone->base];
1134
    frame = &zone->frames[pfn - zone->base];
1066
    frame->refcount++;
1135
    frame->refcount++;
1067
   
1136
   
1068
    spinlock_unlock(&zone->lock);
1137
    spinlock_unlock(&zone->lock);
1069
    interrupts_restore(ipl);
1138
    interrupts_restore(ipl);
1070
}
1139
}
1071
 
1140
 
1072
/** Mark given range unavailable in frame zones */
1141
/** Mark given range unavailable in frame zones. */
1073
void frame_mark_unavailable(pfn_t start, count_t count)
1142
void frame_mark_unavailable(pfn_t start, count_t count)
1074
{
1143
{
1075
    unsigned int i;
1144
    unsigned int i;
1076
    zone_t *zone;
1145
    zone_t *zone;
1077
    unsigned int prefzone = 0;
1146
    unsigned int prefzone = 0;
Line 1084... Line 1153...
1084
 
1153
 
1085
        spinlock_unlock(&zone->lock);
1154
        spinlock_unlock(&zone->lock);
1086
    }
1155
    }
1087
}
1156
}
1088
 
1157
 
1089
/** Initialize physical memory management
1158
/** Initialize physical memory management. */
1090
 *
-
 
1091
 * Initialize physical memory managemnt.
-
 
1092
 */
-
 
1093
void frame_init(void)
1159
void frame_init(void)
1094
{
1160
{
1095
    if (config.cpu_active == 1) {
1161
    if (config.cpu_active == 1) {
1096
        zones.count = 0;
1162
        zones.count = 0;
1097
        spinlock_initialize(&zones.lock, "zones.lock");
1163
        spinlock_initialize(&zones.lock, "zones.lock");
-
 
1164
        mutex_initialize(&mem_avail_mtx, MUTEX_ACTIVE);
-
 
1165
        condvar_initialize(&mem_avail_cv);
1098
    }
1166
    }
1099
    /* Tell the architecture to create some memory */
1167
    /* Tell the architecture to create some memory */
1100
    frame_arch_init();
1168
    frame_arch_init();
1101
    if (config.cpu_active == 1) {
1169
    if (config.cpu_active == 1) {
1102
        frame_mark_unavailable(ADDR2PFN(KA2PA(config.base)),
1170
        frame_mark_unavailable(ADDR2PFN(KA2PA(config.base)),
Line 1120... Line 1188...
1120
        frame_mark_unavailable(0, 1);
1188
        frame_mark_unavailable(0, 1);
1121
    }
1189
    }
1122
}
1190
}
1123
 
1191
 
1124
 
1192
 
1125
/** Return total size of all zones
1193
/** Return total size of all zones. */
1126
 *
-
 
1127
 */
-
 
1128
uint64_t zone_total_size(void) {
1194
uint64_t zone_total_size(void)
-
 
1195
{
1129
    zone_t *zone = NULL;
1196
    zone_t *zone = NULL;
1130
    unsigned int i;
1197
    unsigned int i;
1131
    ipl_t ipl;
1198
    ipl_t ipl;
1132
    uint64_t total = 0;
1199
    uint64_t total = 0;
1133
 
1200
 
Line 1145... Line 1212...
1145
    interrupts_restore(ipl);
1212
    interrupts_restore(ipl);
1146
   
1213
   
1147
    return total;
1214
    return total;
1148
}
1215
}
1149
 
1216
 
1150
 
-
 
1151
 
-
 
1152
/** Prints list of zones
1217
/** Prints list of zones. */
1153
 *
-
 
1154
 */
-
 
1155
void zone_print_list(void) {
1218
void zone_print_list(void)
-
 
1219
{
1156
    zone_t *zone = NULL;
1220
    zone_t *zone = NULL;
1157
    unsigned int i;
1221
    unsigned int i;
1158
    ipl_t ipl;
1222
    ipl_t ipl;
1159
 
1223
 
1160
    ipl = interrupts_disable();
-
 
1161
    spinlock_lock(&zones.lock);
-
 
1162
 
-
 
1163
#ifdef __32_BITS__  
1224
#ifdef __32_BITS__  
1164
    printf("#  base address free frames  busy frames\n");
1225
    printf("#  base address free frames  busy frames\n");
1165
    printf("-- ------------ ------------ ------------\n");
1226
    printf("-- ------------ ------------ ------------\n");
1166
#endif
1227
#endif
1167
 
1228
 
1168
#ifdef __64_BITS__
1229
#ifdef __64_BITS__
1169
    printf("#  base address         free frames  busy frames\n");
1230
    printf("#  base address         free frames  busy frames\n");
1170
    printf("-- -------------------- ------------ ------------\n");
1231
    printf("-- -------------------- ------------ ------------\n");
1171
#endif
1232
#endif
1172
   
1233
   
-
 
1234
    /*
-
 
1235
     * Because printing may require allocation of memory, we may not hold
-
 
1236
     * the frame allocator locks when printing zone statistics.  Therefore,
-
 
1237
     * we simply gather the statistics under the protection of the locks and
-
 
1238
     * print the statistics when the locks have been released.
-
 
1239
     *
-
 
1240
     * When someone adds/removes zones while we are printing the statistics,
-
 
1241
     * we may end up with inaccurate output (e.g. a zone being skipped from
-
 
1242
     * the listing).
-
 
1243
     */
-
 
1244
 
1173
    for (i = 0; i < zones.count; i++) {
1245
    for (i = 0; ; i++) {
-
 
1246
        uintptr_t base;
-
 
1247
        count_t free_count;
-
 
1248
        count_t busy_count;
-
 
1249
 
-
 
1250
        ipl = interrupts_disable();
-
 
1251
        spinlock_lock(&zones.lock);
-
 
1252
       
-
 
1253
        if (i >= zones.count) {
-
 
1254
            spinlock_unlock(&zones.lock);
-
 
1255
            interrupts_restore(ipl);
-
 
1256
            break;
-
 
1257
        }
-
 
1258
 
1174
        zone = zones.info[i];
1259
        zone = zones.info[i];
1175
        spinlock_lock(&zone->lock);
1260
        spinlock_lock(&zone->lock);
1176
 
1261
 
-
 
1262
        base = PFN2ADDR(zone->base);
-
 
1263
        free_count = zone->free_count;
-
 
1264
        busy_count = zone->busy_count;
-
 
1265
 
-
 
1266
        spinlock_unlock(&zone->lock);
-
 
1267
       
-
 
1268
        spinlock_unlock(&zones.lock);
-
 
1269
        interrupts_restore(ipl);
-
 
1270
 
1177
#ifdef __32_BITS__
1271
#ifdef __32_BITS__
1178
        printf("%-2u   %10p %12" PRIc " %12" PRIc "\n", i, PFN2ADDR(zone->base),
1272
        printf("%-2u   %10p %12" PRIc " %12" PRIc "\n", i, base,
1179
            zone->free_count, zone->busy_count);
1273
            free_count, busy_count);
1180
#endif
1274
#endif
1181
 
1275
 
1182
#ifdef __64_BITS__
1276
#ifdef __64_BITS__
1183
        printf("%-2u   %18p %12" PRIc " %12" PRIc "\n", i, PFN2ADDR(zone->base),
1277
        printf("%-2u   %18p %12" PRIc " %12" PRIc "\n", i, base,
1184
            zone->free_count, zone->busy_count);
1278
            free_count, busy_count);
1185
#endif
1279
#endif
1186
       
1280
       
1187
        spinlock_unlock(&zone->lock);
-
 
1188
    }
1281
    }
1189
   
-
 
1190
    spinlock_unlock(&zones.lock);
-
 
1191
    interrupts_restore(ipl);
-
 
1192
}
1282
}
1193
 
1283
 
1194
/** Prints zone details.
1284
/** Prints zone details.
1195
 *
1285
 *
1196
 * @param num Zone base address or zone number.
1286
 * @param num       Zone base address or zone number.
1197
 */
1287
 */
1198
void zone_print_one(unsigned int num) {
1288
void zone_print_one(unsigned int num)
-
 
1289
{
1199
    zone_t *zone = NULL;
1290
    zone_t *zone = NULL;
1200
    ipl_t ipl;
1291
    ipl_t ipl;
1201
    unsigned int i;
1292
    unsigned int i;
-
 
1293
    uintptr_t base;
-
 
1294
    count_t count;
-
 
1295
    count_t busy_count;
-
 
1296
    count_t free_count;
1202
 
1297
 
1203
    ipl = interrupts_disable();
1298
    ipl = interrupts_disable();
1204
    spinlock_lock(&zones.lock);
1299
    spinlock_lock(&zones.lock);
1205
 
1300
 
1206
    for (i = 0; i < zones.count; i++) {
1301
    for (i = 0; i < zones.count; i++) {
Line 1208... Line 1303...
1208
            zone = zones.info[i];
1303
            zone = zones.info[i];
1209
            break;
1304
            break;
1210
        }
1305
        }
1211
    }
1306
    }
1212
    if (!zone) {
1307
    if (!zone) {
-
 
1308
        spinlock_unlock(&zones.lock);
-
 
1309
        interrupts_restore(ipl);
1213
        printf("Zone not found.\n");
1310
        printf("Zone not found.\n");
1214
        goto out;
1311
        return;
1215
    }
1312
    }
1216
   
1313
   
1217
    spinlock_lock(&zone->lock);
1314
    spinlock_lock(&zone->lock);
1218
    printf("Memory zone information\n");
-
 
1219
    printf("Zone base address: %p\n", PFN2ADDR(zone->base));
1315
    base = PFN2ADDR(zone->base);
1220
    printf("Zone size: %" PRIc " frames (%" PRIs " KB)\n", zone->count,
-
 
1221
        SIZE2KB(FRAMES2SIZE(zone->count)));
1316
    count = zone->count;
1222
    printf("Allocated space: %" PRIc " frames (%" PRIs " KB)\n", zone->busy_count,
-
 
1223
        SIZE2KB(FRAMES2SIZE(zone->busy_count)));
1317
    busy_count = zone->busy_count;
1224
    printf("Available space: %" PRIc " frames (%" PRIs " KB)\n", zone->free_count,
-
 
1225
        SIZE2KB(FRAMES2SIZE(zone->free_count)));
1318
    free_count = zone->free_count;
1226
    buddy_system_structure_print(zone->buddy_system, FRAME_SIZE);
-
 
1227
    spinlock_unlock(&zone->lock);
1319
    spinlock_unlock(&zone->lock);
1228
   
-
 
1229
out:
-
 
1230
    spinlock_unlock(&zones.lock);
1320
    spinlock_unlock(&zones.lock);
1231
    interrupts_restore(ipl);
1321
    interrupts_restore(ipl);
-
 
1322
 
-
 
1323
    printf("Zone base address: %p\n", base);
-
 
1324
    printf("Zone size: %" PRIc " frames (%" PRIs " KiB)\n", count,
-
 
1325
        SIZE2KB(FRAMES2SIZE(count)));
-
 
1326
    printf("Allocated space: %" PRIc " frames (%" PRIs " KiB)\n",
-
 
1327
        busy_count, SIZE2KB(FRAMES2SIZE(busy_count)));
-
 
1328
    printf("Available space: %" PRIc " frames (%" PRIs " KiB)\n",
-
 
1329
        free_count, SIZE2KB(FRAMES2SIZE(free_count)));
1232
}
1330
}
1233
 
1331
 
1234
/** @}
1332
/** @}
1235
 */
1333
 */
1236
 
1334