source: mainline/kernel/generic/src/mm/frame.c

Last change on this file was c626117, checked in by Jiří Zárevúcky <zarevucky.jiri@…>, 3 months ago

Replace uses of MUTEX_ACTIVE with irq_spinlock_t

  • Property mode set to 100644
File size: 36.6 KB
RevLine 
[f761f1eb]1/*
[df4ed85]2 * Copyright (c) 2001-2005 Jakub Jermar
3 * Copyright (c) 2005 Sergey Bondari
[5f0f29ce]4 * Copyright (c) 2009 Martin Decky
[f761f1eb]5 * All rights reserved.
6 *
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that the following conditions
9 * are met:
10 *
11 * - Redistributions of source code must retain the above copyright
12 * notice, this list of conditions and the following disclaimer.
13 * - Redistributions in binary form must reproduce the above copyright
14 * notice, this list of conditions and the following disclaimer in the
15 * documentation and/or other materials provided with the distribution.
16 * - The name of the author may not be used to endorse or promote products
17 * derived from this software without specific prior written permission.
18 *
19 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
20 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
21 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
22 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
23 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
24 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
25 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
26 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
27 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
28 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
29 */
30
[174156fd]31/** @addtogroup kernel_generic_mm
[b45c443]32 * @{
33 */
34
[9179d0a]35/**
[b45c443]36 * @file
[5f0f29ce]37 * @brief Physical frame allocator.
[9179d0a]38 *
39 * This file contains the physical frame allocator and memory zone management.
[b0c2075]40 * The frame allocator is built on top of the two-level bitmap structure.
[9179d0a]41 *
42 */
43
[d99c1d2]44#include <typedefs.h>
[f761f1eb]45#include <mm/frame.h>
[89bcb520]46#include <mm/reserve.h>
[20d50a1]47#include <mm/as.h>
[f761f1eb]48#include <panic.h>
[63e27ef]49#include <assert.h>
[5c9a08b]50#include <adt/list.h>
[1a1744e]51#include <synch/mutex.h>
52#include <synch/condvar.h>
[18e0a6c]53#include <arch/asm.h>
[9c0a9b3]54#include <arch.h>
[bab75df6]55#include <stdio.h>
[b2fa1204]56#include <log.h>
[9ebc238]57#include <align.h>
[085d973]58#include <mm/slab.h>
[bb68433]59#include <bitops.h>
[93165be]60#include <macros.h>
[d630139]61#include <config.h>
[933cadf]62#include <str.h>
[1066041]63#include <proc/thread.h> /* THREAD */
[18e0a6c]64
[597fa24]65zones_t zones = {
66 .count = 0,
67 .lock = IRQ_SPINLOCK_INITIALIZER("frame.zones.lock"),
68};
[f761f1eb]69
[1a1744e]70/*
71 * Synchronization primitives used to sleep when there is no memory
72 * available.
73 */
[c626117]74static IRQ_SPINLOCK_INITIALIZE(mem_avail_lock);
[597fa24]75static CONDVAR_INITIALIZE(mem_avail_cv);
[da1bafb]76static size_t mem_avail_req = 0; /**< Number of frames requested. */
77static size_t mem_avail_gen = 0; /**< Generation counter. */
[a294ad0]78
[deaf8d5]79/** Initialize frame structure.
[84dd253]80 *
[5f0f29ce]81 * @param frame Frame structure to be initialized.
82 *
[f761f1eb]83 */
[8df5f20]84_NO_TRACE static void frame_initialize(frame_t *frame)
[f761f1eb]85{
[b0c2075]86 frame->refcount = 0;
87 frame->parent = NULL;
[f761f1eb]88}
89
[d1582b50]90/*
91 * Zones functions
92 */
[085d973]93
[deaf8d5]94/** Insert-sort zone into zones list.
[bb68433]95 *
[5f0f29ce]96 * Assume interrupts are disabled and zones lock is
97 * locked.
98 *
99 * @param base Base frame of the newly inserted zone.
100 * @param count Number of frames of the newly inserted zone.
101 *
102 * @return Zone number on success, -1 on error.
103 *
[84dd253]104 */
[8df5f20]105_NO_TRACE static size_t zones_insert_zone(pfn_t base, size_t count,
[e2650d3]106 zone_flags_t flags)
[f761f1eb]107{
[71eef11]108 if (zones.count + 1 == ZONES_MAX) {
[b2fa1204]109 log(LF_OTHER, LVL_ERROR, "Maximum zone count %u exceeded!",
110 ZONES_MAX);
[98000fb]111 return (size_t) -1;
[71eef11]112 }
[a35b458]113
[98000fb]114 size_t i;
[b6b576c]115 for (i = 0; i < zones.count; i++) {
[5f0f29ce]116 /* Check for overlap */
[e2650d3]117 if (overlaps(zones.info[i].base, zones.info[i].count,
118 base, count)) {
[a35b458]119
[e2650d3]120 /*
121 * If the overlaping zones are of the same type
122 * and the new zone is completely within the previous
123 * one, then quietly ignore the new zone.
124 *
125 */
[a35b458]126
[e2650d3]127 if ((zones.info[i].flags != flags) ||
128 (!iswithin(zones.info[i].base, zones.info[i].count,
129 base, count))) {
[b2fa1204]130 log(LF_OTHER, LVL_WARN,
131 "Zone (%p, %p) overlaps "
132 "with previous zone (%p %p)!",
[7e752b2]133 (void *) PFN2ADDR(base), (void *) PFN2ADDR(count),
134 (void *) PFN2ADDR(zones.info[i].base),
135 (void *) PFN2ADDR(zones.info[i].count));
[e2650d3]136 }
[a35b458]137
[98000fb]138 return (size_t) -1;
[085d973]139 }
[5f0f29ce]140 if (base < zones.info[i].base)
[bb68433]141 break;
[085d973]142 }
[a35b458]143
[bb68433]144 /* Move other zones up */
[b0c2075]145 for (size_t j = zones.count; j > i; j--)
[e49e234]146 zones.info[j] = zones.info[j - 1];
[a35b458]147
[bb68433]148 zones.count++;
[a35b458]149
[bb68433]150 return i;
[f761f1eb]151}
[fcacfb7]152
[5f0f29ce]153/** Get total available frames.
154 *
155 * Assume interrupts are disabled and zones lock is
156 * locked.
[71eef11]157 *
[5f0f29ce]158 * @return Total number of available frames.
[71eef11]159 *
[eef75f6]160 */
[8df5f20]161_NO_TRACE static size_t frame_total_free_get_internal(void)
[085d973]162{
[98000fb]163 size_t total = 0;
164 size_t i;
[8d308b9]165
[5f0f29ce]166 for (i = 0; i < zones.count; i++)
167 total += zones.info[i].free_count;
[a35b458]168
[5f0f29ce]169 return total;
170}
[8d308b9]171
[8df5f20]172_NO_TRACE size_t frame_total_free_get(void)
[8d308b9]173{
174 size_t total;
175
176 irq_spinlock_lock(&zones.lock, true);
177 total = frame_total_free_get_internal();
178 irq_spinlock_unlock(&zones.lock, true);
179
180 return total;
181}
182
[e49e234]183/** Find a zone with a given frames.
[5f0f29ce]184 *
185 * Assume interrupts are disabled and zones lock is
186 * locked.
187 *
188 * @param frame Frame number contained in zone.
[e49e234]189 * @param count Number of frames to look for.
[5f0f29ce]190 * @param hint Used as zone hint.
191 *
192 * @return Zone index or -1 if not found.
193 *
194 */
[8df5f20]195_NO_TRACE size_t find_zone(pfn_t frame, size_t count, size_t hint)
[5f0f29ce]196{
[6c441cf8]197 if (hint >= zones.count)
[085d973]198 hint = 0;
[a35b458]199
[98000fb]200 size_t i = hint;
[085d973]201 do {
[3bacee1]202 if ((zones.info[i].base <= frame) &&
203 (zones.info[i].base + zones.info[i].count >= frame + count))
[5f0f29ce]204 return i;
[a35b458]205
[085d973]206 i++;
207 if (i >= zones.count)
208 i = 0;
[a35b458]209
[5f7a0ef]210 } while (i != hint);
[a35b458]211
[98000fb]212 return (size_t) -1;
[085d973]213}
[328f2934]214
[b0c2075]215/** @return True if zone can allocate specified number of frames */
[8df5f20]216_NO_TRACE static bool zone_can_alloc(zone_t *zone, size_t count,
[b0c2075]217 pfn_t constraint)
[bb68433]218{
[b0c2075]219 /*
220 * The function bitmap_allocate_range() does not modify
221 * the bitmap if the last argument is NULL.
222 */
[a35b458]223
[e6c4b94]224 return ((zone->flags & ZONE_AVAILABLE) &&
[b0c2075]225 bitmap_allocate_range(&zone->bitmap, count, zone->base,
[f72906c]226 FRAME_LOWPRIO, constraint, NULL));
227}
228
229/** Find a zone that can allocate specified number of frames
230 *
231 * This function searches among all zones. Assume interrupts are
232 * disabled and zones lock is locked.
233 *
234 * @param count Number of free frames we are trying to find.
235 * @param flags Required flags of the zone.
236 * @param constraint Indication of bits that cannot be set in the
237 * physical frame number of the first allocated frame.
238 * @param hint Preferred zone.
239 *
240 * @return Zone that can allocate specified number of frames.
241 * @return -1 if no zone can satisfy the request.
242 *
243 */
[8df5f20]244_NO_TRACE static size_t find_free_zone_all(size_t count, zone_flags_t flags,
[f72906c]245 pfn_t constraint, size_t hint)
246{
247 for (size_t pos = 0; pos < zones.count; pos++) {
248 size_t i = (pos + hint) % zones.count;
[a35b458]249
[f72906c]250 /* Check whether the zone meets the search criteria. */
251 if (!ZONE_FLAGS_MATCH(zones.info[i].flags, flags))
252 continue;
[a35b458]253
[f72906c]254 /* Check if the zone can satisfy the allocation request. */
255 if (zone_can_alloc(&zones.info[i], count, constraint))
256 return i;
257 }
[a35b458]258
[f72906c]259 return (size_t) -1;
260}
261
262/** Check if frame range priority memory
263 *
264 * @param pfn Starting frame.
265 * @param count Number of frames.
266 *
267 * @return True if the range contains only priority memory.
268 *
269 */
[8df5f20]270_NO_TRACE static bool is_high_priority(pfn_t base, size_t count)
[f72906c]271{
272 return (base + count <= FRAME_LOWPRIO);
273}
274
275/** Find a zone that can allocate specified number of frames
276 *
277 * This function ignores zones that contain only high-priority
278 * memory. Assume interrupts are disabled and zones lock is locked.
279 *
280 * @param count Number of free frames we are trying to find.
281 * @param flags Required flags of the zone.
282 * @param constraint Indication of bits that cannot be set in the
283 * physical frame number of the first allocated frame.
284 * @param hint Preferred zone.
285 *
286 * @return Zone that can allocate specified number of frames.
287 * @return -1 if no low-priority zone can satisfy the request.
288 *
289 */
[8df5f20]290_NO_TRACE static size_t find_free_zone_lowprio(size_t count, zone_flags_t flags,
[f72906c]291 pfn_t constraint, size_t hint)
[1b20da0]292{
[f72906c]293 for (size_t pos = 0; pos < zones.count; pos++) {
294 size_t i = (pos + hint) % zones.count;
[a35b458]295
[f72906c]296 /* Skip zones containing only high-priority memory. */
297 if (is_high_priority(zones.info[i].base, zones.info[i].count))
298 continue;
[a35b458]299
[f72906c]300 /* Check whether the zone meets the search criteria. */
301 if (!ZONE_FLAGS_MATCH(zones.info[i].flags, flags))
302 continue;
[a35b458]303
[f72906c]304 /* Check if the zone can satisfy the allocation request. */
305 if (zone_can_alloc(&zones.info[i], count, constraint))
306 return i;
307 }
[a35b458]308
[f72906c]309 return (size_t) -1;
[bb68433]310}
311
[b0c2075]312/** Find a zone that can allocate specified number of frames
[5f0f29ce]313 *
314 * Assume interrupts are disabled and zones lock is
315 * locked.
[fcacfb7]316 *
[b0c2075]317 * @param count Number of free frames we are trying to find.
318 * @param flags Required flags of the target zone.
319 * @param constraint Indication of bits that cannot be set in the
320 * physical frame number of the first allocated frame.
[f72906c]321 * @param hint Preferred zone.
322 *
323 * @return Zone that can allocate specified number of frames.
324 * @return -1 if no zone can satisfy the request.
[fcacfb7]325 *
326 */
[8df5f20]327_NO_TRACE static size_t find_free_zone(size_t count, zone_flags_t flags,
[b0c2075]328 pfn_t constraint, size_t hint)
[fcacfb7]329{
[085d973]330 if (hint >= zones.count)
331 hint = 0;
[a35b458]332
[f72906c]333 /*
334 * Prefer zones with low-priority memory over
335 * zones with high-priority memory.
336 */
[a35b458]337
[f72906c]338 size_t znum = find_free_zone_lowprio(count, flags, constraint, hint);
339 if (znum != (size_t) -1)
340 return znum;
[a35b458]341
[f72906c]342 /* Take all zones into account */
343 return find_free_zone_all(count, flags, constraint, hint);
[fcacfb7]344}
345
[d1582b50]346/*
347 * Zone functions
348 */
[6e8b3c8]349
[b0c2075]350/** Return frame from zone. */
[8df5f20]351_NO_TRACE static frame_t *zone_get_frame(zone_t *zone, size_t index)
[bb68433]352{
[63e27ef]353 assert(index < zone->count);
[a35b458]354
[b0c2075]355 return &zone->frames[index];
[6e8b3c8]356}
357
[deaf8d5]358/** Allocate frame in particular zone.
[085d973]359 *
[5f0f29ce]360 * Assume zone is locked and is available for allocation.
[9a68b34d]361 * Panics if allocation is impossible.
362 *
[b0c2075]363 * @param zone Zone to allocate from.
364 * @param count Number of frames to allocate
365 * @param constraint Indication of bits that cannot be set in the
366 * physical frame number of the first allocated frame.
[085d973]367 *
[5f0f29ce]368 * @return Frame index in zone.
[9a68b34d]369 *
[085d973]370 */
[8df5f20]371_NO_TRACE static size_t zone_frame_alloc(zone_t *zone, size_t count,
[b0c2075]372 pfn_t constraint)
[085d973]373{
[63e27ef]374 assert(zone->flags & ZONE_AVAILABLE);
[81d3612]375 assert(zone->free_count >= count);
[a35b458]376
[b0c2075]377 /* Allocate frames from zone */
[566da7f8]378 size_t index = (size_t) -1;
[b0c2075]379 int avail = bitmap_allocate_range(&zone->bitmap, count, zone->base,
[f72906c]380 FRAME_LOWPRIO, constraint, &index);
[a35b458]381
[0705fc5]382 (void) avail;
[63e27ef]383 assert(avail);
384 assert(index != (size_t) -1);
[a35b458]385
[b0c2075]386 /* Update frame reference count */
387 for (size_t i = 0; i < count; i++) {
388 frame_t *frame = zone_get_frame(zone, index + i);
[a35b458]389
[63e27ef]390 assert(frame->refcount == 0);
[b0c2075]391 frame->refcount = 1;
392 }
[a35b458]393
[085d973]394 /* Update zone information. */
[b0c2075]395 zone->free_count -= count;
396 zone->busy_count += count;
[a35b458]397
[b0c2075]398 return index;
[085d973]399}
400
[deaf8d5]401/** Free frame from zone.
[085d973]402 *
[5f0f29ce]403 * Assume zone is locked and is available for deallocation.
404 *
[b0c2075]405 * @param zone Pointer to zone from which the frame is to be freed.
406 * @param index Frame index relative to zone.
[eb3d379]407 *
[b0c2075]408 * @return Number of freed frames.
[89bcb520]409 *
[085d973]410 */
[8df5f20]411_NO_TRACE static size_t zone_frame_free(zone_t *zone, size_t index)
[085d973]412{
[63e27ef]413 assert(zone->flags & ZONE_AVAILABLE);
[a35b458]414
[b0c2075]415 frame_t *frame = zone_get_frame(zone, index);
[63e27ef]416 assert(frame->refcount > 0);
[a35b458]417
[085d973]418 if (!--frame->refcount) {
[81d3612]419 assert(zone->busy_count > 0);
420
[64f3d3b]421 bitmap_set(&zone->bitmap, index, 0);
[a35b458]422
[d3dfa42]423 /* Update zone information. */
[b0c2075]424 zone->free_count++;
425 zone->busy_count--;
[a35b458]426
[5df1963]427 return 1;
[085d973]428 }
[a35b458]429
[5df1963]430 return 0;
[085d973]431}
432
[deaf8d5]433/** Mark frame in zone unavailable to allocation. */
[8df5f20]434_NO_TRACE static void zone_mark_unavailable(zone_t *zone, size_t index)
[085d973]435{
[63e27ef]436 assert(zone->flags & ZONE_AVAILABLE);
[a35b458]437
[b0c2075]438 frame_t *frame = zone_get_frame(zone, index);
[81d3612]439 assert(frame->refcount <= 1);
440
[b0c2075]441 if (frame->refcount > 0)
[bb68433]442 return;
[a35b458]443
[81d3612]444 assert(zone->free_count > 0);
445
[cd3b380]446 frame->refcount = 1;
[b0c2075]447 bitmap_set_range(&zone->bitmap, index, 1);
[a35b458]448
[085d973]449 zone->free_count--;
[d060900]450 reserve_force_alloc(1);
[085d973]451}
452
[81d3612]453/** Mark frame in zone available to allocation. */
454_NO_TRACE static void zone_mark_available(zone_t *zone, size_t index)
455{
456 assert(zone->flags & ZONE_AVAILABLE);
457
458 frame_t *frame = zone_get_frame(zone, index);
459 assert(frame->refcount == 1);
460
461 frame->refcount = 0;
462 bitmap_set_range(&zone->bitmap, index, 0);
463
464 zone->free_count++;
465}
466
[5f0f29ce]467/** Merge two zones.
[bb68433]468 *
[5f0f29ce]469 * Assume z1 & z2 are locked and compatible and zones lock is
470 * locked.
[bb68433]471 *
[b0c2075]472 * @param z1 First zone to merge.
473 * @param z2 Second zone to merge.
474 * @param old_z1 Original data of the first zone.
475 * @param confdata Merged zone configuration data.
[eb3d379]476 *
[bb68433]477 */
[8df5f20]478_NO_TRACE static void zone_merge_internal(size_t z1, size_t z2, zone_t *old_z1,
[b0c2075]479 void *confdata)
[bb68433]480{
[63e27ef]481 assert(zones.info[z1].flags & ZONE_AVAILABLE);
482 assert(zones.info[z2].flags & ZONE_AVAILABLE);
483 assert(zones.info[z1].flags == zones.info[z2].flags);
484 assert(zones.info[z1].base < zones.info[z2].base);
485 assert(!overlaps(zones.info[z1].base, zones.info[z1].count,
[5f0f29ce]486 zones.info[z2].base, zones.info[z2].count));
[a35b458]487
[5f0f29ce]488 /* Difference between zone bases */
489 pfn_t base_diff = zones.info[z2].base - zones.info[z1].base;
[81d3612]490 pfn_t gap = base_diff - zones.info[z1].count;
[a35b458]491
[5f0f29ce]492 zones.info[z1].count = base_diff + zones.info[z2].count;
493 zones.info[z1].free_count += zones.info[z2].free_count;
494 zones.info[z1].busy_count += zones.info[z2].busy_count;
[a35b458]495
[b0c2075]496 bitmap_initialize(&zones.info[z1].bitmap, zones.info[z1].count,
[c5396c1]497 confdata + (sizeof(frame_t) * zones.info[z1].count));
[adb252c0]498 bitmap_clear_range(&zones.info[z1].bitmap, 0, zones.info[z1].count);
[a35b458]499
[b0c2075]500 zones.info[z1].frames = (frame_t *) confdata;
[a35b458]501
[b0c2075]502 /*
503 * Copy frames and bits from both zones to preserve parents, etc.
[bb68433]504 */
[a35b458]505
[b0c2075]506 for (size_t i = 0; i < old_z1->count; i++) {
507 bitmap_set(&zones.info[z1].bitmap, i,
508 bitmap_get(&old_z1->bitmap, i));
509 zones.info[z1].frames[i] = old_z1->frames[i];
[bb68433]510 }
[a35b458]511
[b0c2075]512 for (size_t i = 0; i < zones.info[z2].count; i++) {
513 bitmap_set(&zones.info[z1].bitmap, base_diff + i,
514 bitmap_get(&zones.info[z2].bitmap, i));
515 zones.info[z1].frames[base_diff + i] =
516 zones.info[z2].frames[i];
[bb68433]517 }
[81d3612]518
519 /*
520 * Mark the gap between the original zones as unavailable.
521 */
522
523 for (size_t i = 0; i < gap; i++) {
[5ecac7e]524 frame_initialize(&zones.info[z1].frames[old_z1->count + i]);
[81d3612]525 zone_mark_unavailable(&zones.info[z1], old_z1->count + i);
526 }
[bb68433]527}
528
[deaf8d5]529/** Return old configuration frames into the zone.
[bb68433]530 *
[5f0f29ce]531 * We have two cases:
532 * - The configuration data is outside the zone
533 * -> do nothing (perhaps call frame_free?)
534 * - The configuration data was created by zone_create
535 * or updated by reduce_region -> free every frame
536 *
537 * @param znum The actual zone where freeing should occur.
538 * @param pfn Old zone configuration frame.
539 * @param count Old zone frame count.
[874878a]540 *
[bb68433]541 */
[8df5f20]542_NO_TRACE static void return_config_frames(size_t znum, pfn_t pfn, size_t count)
[bb68433]543{
[63e27ef]544 assert(zones.info[znum].flags & ZONE_AVAILABLE);
[a35b458]545
[98000fb]546 size_t cframes = SIZE2FRAMES(zone_conf_size(count));
[a35b458]547
[b0c2075]548 if ((pfn < zones.info[znum].base) ||
549 (pfn >= zones.info[znum].base + zones.info[znum].count))
[bb68433]550 return;
[a35b458]551
[b0c2075]552 for (size_t i = 0; i < cframes; i++)
[81d3612]553 zone_mark_available(&zones.info[znum],
[5f0f29ce]554 pfn - zones.info[znum].base + i);
[874878a]555}
556
[deaf8d5]557/** Merge zones z1 and z2.
[bb68433]558 *
[5f0f29ce]559 * The merged zones must be 2 zones with no zone existing in between
560 * (which means that z2 = z1 + 1). Both zones must be available zones
561 * with the same flags.
562 *
563 * When you create a new zone, the frame allocator configuration does
564 * not to be 2^order size. Once the allocator is running it is no longer
565 * possible, merged configuration data occupies more space :-/
566 *
[bb68433]567 */
[98000fb]568bool zone_merge(size_t z1, size_t z2)
[bb68433]569{
[da1bafb]570 irq_spinlock_lock(&zones.lock, true);
[a35b458]571
[5f0f29ce]572 bool ret = true;
[a35b458]573
[b0c2075]574 /*
575 * We can join only 2 zones with none existing inbetween,
[5f0f29ce]576 * the zones have to be available and with the same
577 * set of flags
578 */
[e6c4b94]579 if ((z1 >= zones.count) || (z2 >= zones.count) || (z2 - z1 != 1) ||
580 (zones.info[z1].flags != zones.info[z2].flags)) {
[5f0f29ce]581 ret = false;
[bb68433]582 goto errout;
[5f0f29ce]583 }
[a35b458]584
[5f0f29ce]585 pfn_t cframes = SIZE2FRAMES(zone_conf_size(
[3bacee1]586 zones.info[z2].base - zones.info[z1].base +
587 zones.info[z2].count));
[a35b458]588
[5f0f29ce]589 /* Allocate merged zone data inside one of the zones */
590 pfn_t pfn;
[b0c2075]591 if (zone_can_alloc(&zones.info[z1], cframes, 0)) {
592 pfn = zones.info[z1].base +
593 zone_frame_alloc(&zones.info[z1], cframes, 0);
594 } else if (zone_can_alloc(&zones.info[z2], cframes, 0)) {
595 pfn = zones.info[z2].base +
596 zone_frame_alloc(&zones.info[z2], cframes, 0);
[5f0f29ce]597 } else {
598 ret = false;
599 goto errout;
600 }
[a35b458]601
[5f0f29ce]602 /* Preserve original data from z1 */
603 zone_t old_z1 = zones.info[z1];
[a35b458]604
[5f0f29ce]605 /* Do zone merging */
[b0c2075]606 zone_merge_internal(z1, z2, &old_z1, (void *) PA2KA(PFN2ADDR(pfn)));
[a35b458]607
[bb68433]608 /* Subtract zone information from busy frames */
[5f0f29ce]609 zones.info[z1].busy_count -= cframes;
[a35b458]610
[5f0f29ce]611 /* Free old zone information */
612 return_config_frames(z1,
613 ADDR2PFN(KA2PA((uintptr_t) old_z1.frames)), old_z1.count);
614 return_config_frames(z1,
615 ADDR2PFN(KA2PA((uintptr_t) zones.info[z2].frames)),
616 zones.info[z2].count);
[a35b458]617
[e49e234]618 /* Move zones down */
[b0c2075]619 for (size_t i = z2 + 1; i < zones.count; i++)
[b6b576c]620 zones.info[i - 1] = zones.info[i];
[a35b458]621
[bb68433]622 zones.count--;
[a35b458]623
[bb68433]624errout:
[da1bafb]625 irq_spinlock_unlock(&zones.lock, true);
[a35b458]626
[5f0f29ce]627 return ret;
[bb68433]628}
629
[5f0f29ce]630/** Merge all mergeable zones into one big zone.
631 *
632 * It is reasonable to do this on systems where
633 * BIOS reports parts in chunks, so that we could
634 * have 1 zone (it's faster).
[bb68433]635 *
636 */
637void zone_merge_all(void)
638{
[b0c2075]639 size_t i = 1;
[a35b458]640
[5f0f29ce]641 while (i < zones.count) {
[b0c2075]642 if (!zone_merge(i - 1, i))
[5f0f29ce]643 i++;
[bb68433]644 }
645}
646
[deaf8d5]647/** Create new frame zone.
[085d973]648 *
[b0c2075]649 * @param zone Zone to construct.
650 * @param start Physical address of the first frame within the zone.
651 * @param count Count of frames in zone.
652 * @param flags Zone flags.
653 * @param confdata Configuration data of the zone.
[5f0f29ce]654 *
655 * @return Initialized zone.
[085d973]656 *
657 */
[8df5f20]658_NO_TRACE static void zone_construct(zone_t *zone, pfn_t start, size_t count,
[b0c2075]659 zone_flags_t flags, void *confdata)
[085d973]660{
[5f0f29ce]661 zone->base = start;
662 zone->count = count;
663 zone->flags = flags;
664 zone->free_count = count;
665 zone->busy_count = 0;
[a35b458]666
[e6c4b94]667 if (flags & ZONE_AVAILABLE) {
[5f0f29ce]668 /*
[b0c2075]669 * Initialize frame bitmap (located after the array of
670 * frame_t structures in the configuration space).
[5f0f29ce]671 */
[a35b458]672
[c5396c1]673 bitmap_initialize(&zone->bitmap, count, confdata +
674 (sizeof(frame_t) * count));
[adb252c0]675 bitmap_clear_range(&zone->bitmap, 0, count);
[a35b458]676
[b0c2075]677 /*
678 * Initialize the array of frame_t structures.
679 */
[a35b458]680
[b0c2075]681 zone->frames = (frame_t *) confdata;
[a35b458]682
[b0c2075]683 for (size_t i = 0; i < count; i++)
684 frame_initialize(&zone->frames[i]);
685 } else {
[c5396c1]686 bitmap_initialize(&zone->bitmap, 0, NULL);
[5f0f29ce]687 zone->frames = NULL;
[b0c2075]688 }
[085d973]689}
690
[deaf8d5]691/** Compute configuration data size for zone.
[eb3d379]692 *
[5f0f29ce]693 * @param count Size of zone in frames.
694 *
695 * @return Size of zone configuration info (in bytes).
696 *
[eb3d379]697 */
[bbfdf62]698size_t zone_conf_size(size_t count)
[085d973]699{
[c5396c1]700 return (count * sizeof(frame_t) + bitmap_size(count));
[085d973]701}
702
[8bdcffa]703/** Allocate external configuration frames from low memory. */
704pfn_t zone_external_conf_alloc(size_t count)
705{
[b0c2075]706 size_t frames = SIZE2FRAMES(zone_conf_size(count));
[a35b458]707
[b0c2075]708 return ADDR2PFN((uintptr_t)
709 frame_alloc(frames, FRAME_LOWMEM | FRAME_ATOMIC, 0));
[8bdcffa]710}
711
[deaf8d5]712/** Create and add zone to system.
[085d973]713 *
[5f0f29ce]714 * @param start First frame number (absolute).
715 * @param count Size of zone in frames.
716 * @param confframe Where configuration frames are supposed to be.
[b0c2075]717 * Automatically checks that we will not disturb the
[5f0f29ce]718 * kernel and possibly init. If confframe is given
719 * _outside_ this zone, it is expected, that the area is
720 * already marked BUSY and big enough to contain
721 * zone_conf_size() amount of data. If the confframe is
722 * inside the area, the zone free frame information is
723 * modified not to include it.
724 *
725 * @return Zone number or -1 on error.
726 *
[085d973]727 */
[da1bafb]728size_t zone_create(pfn_t start, size_t count, pfn_t confframe,
729 zone_flags_t flags)
[085d973]730{
[da1bafb]731 irq_spinlock_lock(&zones.lock, true);
[a35b458]732
[e6c4b94]733 if (flags & ZONE_AVAILABLE) { /* Create available zone */
[b0c2075]734 /*
735 * Theoretically we could have NULL here, practically make sure
[5f0f29ce]736 * nobody tries to do that. If some platform requires, remove
737 * the assert
738 */
[3bacee1]739 assert(confframe != ADDR2PFN((uintptr_t) NULL));
[a35b458]740
[40c8c17]741 /* Update the known end of physical memory. */
742 config.physmem_end = max(config.physmem_end, PFN2ADDR(start + count));
[a35b458]743
[b0c2075]744 /*
745 * If confframe is supposed to be inside our zone, then make sure
[5f0f29ce]746 * it does not span kernel & init
747 */
[98000fb]748 size_t confcount = SIZE2FRAMES(zone_conf_size(count));
[a35b458]749
[5f0f29ce]750 if ((confframe >= start) && (confframe < start + count)) {
751 for (; confframe < start + count; confframe++) {
752 uintptr_t addr = PFN2ADDR(confframe);
753 if (overlaps(addr, PFN2ADDR(confcount),
754 KA2PA(config.base), config.kernel_size))
755 continue;
[a35b458]756
[6188fee]757 if (overlaps(addr, PFN2ADDR(confcount),
758 KA2PA(ballocs.base), ballocs.size))
759 continue;
760
[5f0f29ce]761 bool overlap = false;
[b0c2075]762 for (size_t i = 0; i < init.cnt; i++) {
[5f0f29ce]763 if (overlaps(addr, PFN2ADDR(confcount),
[32817cc]764 init.tasks[i].paddr,
[5f0f29ce]765 init.tasks[i].size)) {
766 overlap = true;
767 break;
768 }
[b0c2075]769 }
[a35b458]770
[5f0f29ce]771 if (overlap)
772 continue;
[a35b458]773
[5f0f29ce]774 break;
775 }
[a35b458]776
[b0c2075]777 if (confframe >= start + count)
778 panic("Cannot find configuration data for zone.");
[085d973]779 }
[a35b458]780
[e2650d3]781 size_t znum = zones_insert_zone(start, count, flags);
[98000fb]782 if (znum == (size_t) -1) {
[da1bafb]783 irq_spinlock_unlock(&zones.lock, true);
[98000fb]784 return (size_t) -1;
[5f0f29ce]785 }
[a35b458]786
[b0c2075]787 void *confdata = (void *) PA2KA(PFN2ADDR(confframe));
788 zone_construct(&zones.info[znum], start, count, flags, confdata);
[a35b458]789
[5f0f29ce]790 /* If confdata in zone, mark as unavailable */
791 if ((confframe >= start) && (confframe < start + count)) {
[b0c2075]792 for (size_t i = confframe; i < confframe + confcount; i++)
[5f0f29ce]793 zone_mark_unavailable(&zones.info[znum],
794 i - zones.info[znum].base);
[085d973]795 }
[a35b458]796
[da1bafb]797 irq_spinlock_unlock(&zones.lock, true);
[a35b458]798
[5f0f29ce]799 return znum;
800 }
[a35b458]801
[5f0f29ce]802 /* Non-available zone */
[e2650d3]803 size_t znum = zones_insert_zone(start, count, flags);
[98000fb]804 if (znum == (size_t) -1) {
[da1bafb]805 irq_spinlock_unlock(&zones.lock, true);
[98000fb]806 return (size_t) -1;
[5f0f29ce]807 }
[a35b458]808
[b0c2075]809 zone_construct(&zones.info[znum], start, count, flags, NULL);
[a35b458]810
[da1bafb]811 irq_spinlock_unlock(&zones.lock, true);
[a35b458]812
[bb68433]813 return znum;
[085d973]814}
815
[d1582b50]816/*
817 * Frame functions
818 */
[085d973]819
[deaf8d5]820/** Set parent of frame. */
[98000fb]821void frame_set_parent(pfn_t pfn, void *data, size_t hint)
[085d973]822{
[da1bafb]823 irq_spinlock_lock(&zones.lock, true);
[a35b458]824
[98000fb]825 size_t znum = find_zone(pfn, 1, hint);
[a35b458]826
[63e27ef]827 assert(znum != (size_t) -1);
[a35b458]828
[5f0f29ce]829 zone_get_frame(&zones.info[znum],
830 pfn - zones.info[znum].base)->parent = data;
[a35b458]831
[da1bafb]832 irq_spinlock_unlock(&zones.lock, true);
[085d973]833}
834
[98000fb]835void *frame_get_parent(pfn_t pfn, size_t hint)
[085d973]836{
[da1bafb]837 irq_spinlock_lock(&zones.lock, true);
[a35b458]838
[98000fb]839 size_t znum = find_zone(pfn, 1, hint);
[a35b458]840
[63e27ef]841 assert(znum != (size_t) -1);
[a35b458]842
[5f0f29ce]843 void *res = zone_get_frame(&zones.info[znum],
844 pfn - zones.info[znum].base)->parent;
[a35b458]845
[da1bafb]846 irq_spinlock_unlock(&zones.lock, true);
[a35b458]847
[085d973]848 return res;
849}
850
[482f968]851static size_t try_find_zone(size_t count, bool lowmem,
852 pfn_t frame_constraint, size_t hint)
853{
854 if (!lowmem) {
855 size_t znum = find_free_zone(count,
856 ZONE_HIGHMEM | ZONE_AVAILABLE, frame_constraint, hint);
857 if (znum != (size_t) -1)
858 return znum;
859 }
860
861 return find_free_zone(count, ZONE_LOWMEM | ZONE_AVAILABLE,
862 frame_constraint, hint);
863}
864
[b0c2075]865/** Allocate frames of physical memory.
[085d973]866 *
[b0c2075]867 * @param count Number of continuous frames to allocate.
868 * @param flags Flags for host zone selection and address processing.
869 * @param constraint Indication of physical address bits that cannot be
870 * set in the address of the first allocated frame.
871 * @param pzone Preferred zone.
[085d973]872 *
[5f0f29ce]873 * @return Physical address of the allocated frame.
[9a68b34d]874 *
[085d973]875 */
[b0c2075]876uintptr_t frame_alloc_generic(size_t count, frame_flags_t flags,
[8cbf1c3]877 uintptr_t constraint, size_t *pzone)
[085d973]878{
[63e27ef]879 assert(count > 0);
[a35b458]880
[98000fb]881 size_t hint = pzone ? (*pzone) : 0;
[b0c2075]882 pfn_t frame_constraint = ADDR2PFN(constraint);
[a35b458]883
[89bcb520]884 /*
885 * If not told otherwise, we must first reserve the memory.
886 */
[b0c2075]887 if (!(flags & FRAME_NO_RESERVE))
888 reserve_force_alloc(count);
[a35b458]889
[085d973]890loop:
[da1bafb]891 irq_spinlock_lock(&zones.lock, true);
[a35b458]892
[482f968]893 // TODO: Print diagnostic if neither is explicitly specified.
894 bool lowmem = (flags & FRAME_LOWMEM) || !(flags & FRAME_HIGHMEM);
895
[085d973]896 /*
897 * First, find suitable frame zone.
898 */
[482f968]899 size_t znum = try_find_zone(count, lowmem, frame_constraint, hint);
[a35b458]900
[b0c2075]901 /*
902 * If no memory, reclaim some slab memory,
903 * if it does not help, reclaim all.
904 */
[98000fb]905 if ((znum == (size_t) -1) && (!(flags & FRAME_NO_RECLAIM))) {
[da1bafb]906 irq_spinlock_unlock(&zones.lock, true);
[98000fb]907 size_t freed = slab_reclaim(0);
[da1bafb]908 irq_spinlock_lock(&zones.lock, true);
[a35b458]909
[5f0f29ce]910 if (freed > 0)
[482f968]911 znum = try_find_zone(count, lowmem,
[b0c2075]912 frame_constraint, hint);
[a35b458]913
[98000fb]914 if (znum == (size_t) -1) {
[da1bafb]915 irq_spinlock_unlock(&zones.lock, true);
[085d973]916 freed = slab_reclaim(SLAB_RECLAIM_ALL);
[da1bafb]917 irq_spinlock_lock(&zones.lock, true);
[a35b458]918
[5f0f29ce]919 if (freed > 0)
[482f968]920 znum = try_find_zone(count, lowmem,
[b0c2075]921 frame_constraint, hint);
[085d973]922 }
923 }
[a35b458]924
[98000fb]925 if (znum == (size_t) -1) {
[1a1744e]926 if (flags & FRAME_ATOMIC) {
[da1bafb]927 irq_spinlock_unlock(&zones.lock, true);
[a35b458]928
[89bcb520]929 if (!(flags & FRAME_NO_RESERVE))
[b0c2075]930 reserve_free(count);
[a35b458]931
[8cbf1c3]932 return 0;
[1a1744e]933 }
[a35b458]934
[8d308b9]935 size_t avail = frame_total_free_get_internal();
[a35b458]936
[da1bafb]937 irq_spinlock_unlock(&zones.lock, true);
[a35b458]938
[05411e8]939 if (!THREAD)
[adb252c0]940 panic("Cannot wait for %zu frames to become available "
941 "(%zu available).", count, avail);
[a35b458]942
[5f0f29ce]943 /*
944 * Sleep until some frames are available again.
945 */
[a35b458]946
[5f0f29ce]947#ifdef CONFIG_DEBUG
[b2fa1204]948 log(LF_OTHER, LVL_DEBUG,
949 "Thread %" PRIu64 " waiting for %zu frames "
950 "%zu available.", THREAD->tid, count, avail);
[5f0f29ce]951#endif
[a35b458]952
[c626117]953 /* Disabled interrupts needed to prevent deadlock with TLB shootdown. */
954 irq_spinlock_lock(&mem_avail_lock, true);
[a35b458]955
[5f0f29ce]956 if (mem_avail_req > 0)
[b0c2075]957 mem_avail_req = min(mem_avail_req, count);
[5f0f29ce]958 else
[b0c2075]959 mem_avail_req = count;
[a35b458]960
[98000fb]961 size_t gen = mem_avail_gen;
[a35b458]962
[5f0f29ce]963 while (gen == mem_avail_gen)
[c626117]964 condvar_wait(&mem_avail_cv, &mem_avail_lock);
[a35b458]965
[c626117]966 irq_spinlock_unlock(&mem_avail_lock, true);
[a35b458]967
[1a1744e]968#ifdef CONFIG_DEBUG
[b2fa1204]969 log(LF_OTHER, LVL_DEBUG, "Thread %" PRIu64 " woken up.",
970 THREAD->tid);
[1a1744e]971#endif
[a35b458]972
[085d973]973 goto loop;
974 }
[a35b458]975
[b0c2075]976 pfn_t pfn = zone_frame_alloc(&zones.info[znum], count,
977 frame_constraint) + zones.info[znum].base;
[a35b458]978
[da1bafb]979 irq_spinlock_unlock(&zones.lock, true);
[a35b458]980
[5f0f29ce]981 if (pzone)
982 *pzone = znum;
[a35b458]983
[8cbf1c3]984 return PFN2ADDR(pfn);
[085d973]985}
986
[b0c2075]987uintptr_t frame_alloc(size_t count, frame_flags_t flags, uintptr_t constraint)
[0139747]988{
[b0c2075]989 return frame_alloc_generic(count, flags, constraint, NULL);
[0139747]990}
991
[5df1963]992/** Free frames of physical memory.
[085d973]993 *
[5df1963]994 * Find respective frame structures for supplied physical frames.
995 * Decrement each frame reference count. If it drops to zero, mark
996 * the frames as available.
[5f0f29ce]997 *
[5df1963]998 * @param start Physical Address of the first frame to be freed.
999 * @param count Number of frames to free.
[c32e6bc]1000 * @param flags Flags to control memory reservation.
[085d973]1001 *
1002 */
[5df1963]1003void frame_free_generic(uintptr_t start, size_t count, frame_flags_t flags)
[085d973]1004{
[5df1963]1005 size_t freed = 0;
[a35b458]1006
[5df1963]1007 irq_spinlock_lock(&zones.lock, true);
[a35b458]1008
[5df1963]1009 for (size_t i = 0; i < count; i++) {
1010 /*
1011 * First, find host frame zone for addr.
1012 */
1013 pfn_t pfn = ADDR2PFN(start) + i;
1014 size_t znum = find_zone(pfn, 1, 0);
[a35b458]1015
[63e27ef]1016 assert(znum != (size_t) -1);
[a35b458]1017
[5df1963]1018 freed += zone_frame_free(&zones.info[znum],
1019 pfn - zones.info[znum].base);
1020 }
[a35b458]1021
[da1bafb]1022 irq_spinlock_unlock(&zones.lock, true);
[a35b458]1023
[c626117]1024 /* Signal that some memory has been freed. */
[a35b458]1025
[c626117]1026 /* Disabled interrupts needed to prevent deadlock with TLB shootdown. */
1027 irq_spinlock_lock(&mem_avail_lock, true);
[a35b458]1028
[5f0f29ce]1029 if (mem_avail_req > 0)
[5df1963]1030 mem_avail_req -= min(mem_avail_req, freed);
[a35b458]1031
[5f0f29ce]1032 if (mem_avail_req == 0) {
1033 mem_avail_gen++;
1034 condvar_broadcast(&mem_avail_cv);
1035 }
[a35b458]1036
[c626117]1037 irq_spinlock_unlock(&mem_avail_lock, true);
[a35b458]1038
[89bcb520]1039 if (!(flags & FRAME_NO_RESERVE))
[5df1963]1040 reserve_free(freed);
[085d973]1041}
1042
[5df1963]1043void frame_free(uintptr_t frame, size_t count)
[c32e6bc]1044{
[5df1963]1045 frame_free_generic(frame, count, 0);
[c32e6bc]1046}
1047
[5df1963]1048void frame_free_noreserve(uintptr_t frame, size_t count)
[e608cbe]1049{
[5df1963]1050 frame_free_generic(frame, count, FRAME_NO_RESERVE);
[e608cbe]1051}
1052
[f3ac636]1053/** Add reference to frame.
1054 *
1055 * Find respective frame structure for supplied PFN and
1056 * increment frame reference count.
1057 *
[5f0f29ce]1058 * @param pfn Frame number of the frame to be freed.
1059 *
[f3ac636]1060 */
[8df5f20]1061_NO_TRACE void frame_reference_add(pfn_t pfn)
[f3ac636]1062{
[da1bafb]1063 irq_spinlock_lock(&zones.lock, true);
[a35b458]1064
[f3ac636]1065 /*
1066 * First, find host frame zone for addr.
1067 */
[0b4a67a]1068 size_t znum = find_zone(pfn, 1, 0);
[a35b458]1069
[63e27ef]1070 assert(znum != (size_t) -1);
[a35b458]1071
[5f0f29ce]1072 zones.info[znum].frames[pfn - zones.info[znum].base].refcount++;
[a35b458]1073
[da1bafb]1074 irq_spinlock_unlock(&zones.lock, true);
[f3ac636]1075}
[085d973]1076
[da1bafb]1077/** Mark given range unavailable in frame zones.
1078 *
1079 */
[8df5f20]1080_NO_TRACE void frame_mark_unavailable(pfn_t start, size_t count)
[085d973]1081{
[da1bafb]1082 irq_spinlock_lock(&zones.lock, true);
[a35b458]1083
[b0c2075]1084 for (size_t i = 0; i < count; i++) {
[98000fb]1085 size_t znum = find_zone(start + i, 1, 0);
[a35b458]1086
[98000fb]1087 if (znum == (size_t) -1) /* PFN not found */
[085d973]1088 continue;
[a35b458]1089
[5f0f29ce]1090 zone_mark_unavailable(&zones.info[znum],
1091 start + i - zones.info[znum].base);
[085d973]1092 }
[a35b458]1093
[da1bafb]1094 irq_spinlock_unlock(&zones.lock, true);
[085d973]1095}
1096
[da1bafb]1097/** Initialize physical memory management.
1098 *
1099 */
[085d973]1100void frame_init(void)
1101{
1102 /* Tell the architecture to create some memory */
[ddcc8a0]1103 frame_low_arch_init();
[a35b458]1104
[085d973]1105 if (config.cpu_active == 1) {
[4638401]1106 frame_mark_unavailable(ADDR2PFN(KA2PA(config.base)),
1107 SIZE2FRAMES(config.kernel_size));
[a35b458]1108
[b0c2075]1109 for (size_t i = 0; i < init.cnt; i++)
1110 frame_mark_unavailable(ADDR2PFN(init.tasks[i].paddr),
[4638401]1111 SIZE2FRAMES(init.tasks[i].size));
[a35b458]1112
[61e90dd]1113 if (ballocs.size)
[4638401]1114 frame_mark_unavailable(ADDR2PFN(KA2PA(ballocs.base)),
1115 SIZE2FRAMES(ballocs.size));
[a35b458]1116
[b0c2075]1117 /*
1118 * Blacklist first frame, as allocating NULL would
[5f0f29ce]1119 * fail in some places
1120 */
[bffa0b06]1121 frame_mark_unavailable(0, 1);
[085d973]1122 }
[a35b458]1123
[ddcc8a0]1124 frame_high_arch_init();
[085d973]1125}
1126
[ad12b5ea]1127/** Adjust bounds of physical memory region according to low/high memory split.
1128 *
[b0c2075]1129 * @param low[in] If true, the adjustment is performed to make the region
1130 * fit in the low memory. Otherwise the adjustment is
1131 * performed to make the region fit in the high memory.
1132 * @param basep[inout] Pointer to a variable which contains the region's base
1133 * address and which may receive the adjusted base address.
1134 * @param sizep[inout] Pointer to a variable which contains the region's size
1135 * and which may receive the adjusted size.
1136 *
1137 * @return True if the region still exists even after the adjustment.
1138 * @return False otherwise.
1139 *
[ad12b5ea]1140 */
1141bool frame_adjust_zone_bounds(bool low, uintptr_t *basep, size_t *sizep)
1142{
[2cc7f16]1143 uintptr_t limit = KA2PA(config.identity_base) + config.identity_size;
[a35b458]1144
[ad12b5ea]1145 if (low) {
1146 if (*basep > limit)
1147 return false;
[a35b458]1148
[ad12b5ea]1149 if (*basep + *sizep > limit)
1150 *sizep = limit - *basep;
1151 } else {
1152 if (*basep + *sizep <= limit)
1153 return false;
[a35b458]1154
[ad12b5ea]1155 if (*basep <= limit) {
1156 *sizep -= limit - *basep;
1157 *basep = limit;
1158 }
1159 }
[a35b458]1160
[ad12b5ea]1161 return true;
1162}
1163
[da1bafb]1164/** Return total size of all zones.
1165 *
1166 */
[9dae191e]1167uint64_t zones_total_size(void)
[deaf8d5]1168{
[da1bafb]1169 irq_spinlock_lock(&zones.lock, true);
[a35b458]1170
[5f0f29ce]1171 uint64_t total = 0;
[a35b458]1172
[b0c2075]1173 for (size_t i = 0; i < zones.count; i++)
[5f0f29ce]1174 total += (uint64_t) FRAMES2SIZE(zones.info[i].count);
[a35b458]1175
[da1bafb]1176 irq_spinlock_unlock(&zones.lock, true);
[a35b458]1177
[71eef11]1178 return total;
1179}
1180
[9dae191e]1181void zones_stats(uint64_t *total, uint64_t *unavail, uint64_t *busy,
1182 uint64_t *free)
[516adce]1183{
[63e27ef]1184 assert(total != NULL);
1185 assert(unavail != NULL);
1186 assert(busy != NULL);
1187 assert(free != NULL);
[a35b458]1188
[da1bafb]1189 irq_spinlock_lock(&zones.lock, true);
[a35b458]1190
[9dae191e]1191 *total = 0;
1192 *unavail = 0;
1193 *busy = 0;
1194 *free = 0;
[a35b458]1195
[b0c2075]1196 for (size_t i = 0; i < zones.count; i++) {
[9dae191e]1197 *total += (uint64_t) FRAMES2SIZE(zones.info[i].count);
[a35b458]1198
[e6c4b94]1199 if (zones.info[i].flags & ZONE_AVAILABLE) {
[9dae191e]1200 *busy += (uint64_t) FRAMES2SIZE(zones.info[i].busy_count);
1201 *free += (uint64_t) FRAMES2SIZE(zones.info[i].free_count);
1202 } else
1203 *unavail += (uint64_t) FRAMES2SIZE(zones.info[i].count);
[516adce]1204 }
[a35b458]1205
[da1bafb]1206 irq_spinlock_unlock(&zones.lock, true);
[516adce]1207}
1208
[da1bafb]1209/** Prints list of zones.
1210 *
1211 */
[9dae191e]1212void zones_print_list(void)
[deaf8d5]1213{
[5f0f29ce]1214#ifdef __32_BITS__
[74c5a1ca]1215 printf("[nr] [base addr] [frames ] [flags ] [free frames ] [busy frames ]\n");
[2b8b0ca]1216#endif
1217
1218#ifdef __64_BITS__
[74c5a1ca]1219 printf("[nr] [base address ] [frames ] [flags ] [free frames ] [busy frames ]\n");
[2b8b0ca]1220#endif
[a35b458]1221
[000350f8]1222 /*
1223 * Because printing may require allocation of memory, we may not hold
[f72906c]1224 * the frame allocator locks when printing zone statistics. Therefore,
[000350f8]1225 * we simply gather the statistics under the protection of the locks and
1226 * print the statistics when the locks have been released.
1227 *
1228 * When someone adds/removes zones while we are printing the statistics,
1229 * we may end up with inaccurate output (e.g. a zone being skipped from
1230 * the listing).
1231 */
[a35b458]1232
[f72906c]1233 size_t free_lowmem = 0;
1234 size_t free_highmem = 0;
1235 size_t free_highprio = 0;
[a35b458]1236
[3bacee1]1237 for (size_t i = 0; ; i++) {
[da1bafb]1238 irq_spinlock_lock(&zones.lock, true);
[a35b458]1239
[000350f8]1240 if (i >= zones.count) {
[da1bafb]1241 irq_spinlock_unlock(&zones.lock, true);
[000350f8]1242 break;
1243 }
[a35b458]1244
[f72906c]1245 pfn_t fbase = zones.info[i].base;
1246 uintptr_t base = PFN2ADDR(fbase);
[98000fb]1247 size_t count = zones.info[i].count;
[5f0f29ce]1248 zone_flags_t flags = zones.info[i].flags;
[98000fb]1249 size_t free_count = zones.info[i].free_count;
1250 size_t busy_count = zones.info[i].busy_count;
[a35b458]1251
[e6c4b94]1252 bool available = ((flags & ZONE_AVAILABLE) != 0);
[f72906c]1253 bool lowmem = ((flags & ZONE_LOWMEM) != 0);
1254 bool highmem = ((flags & ZONE_HIGHMEM) != 0);
1255 bool highprio = is_high_priority(fbase, count);
[a35b458]1256
[f72906c]1257 if (available) {
1258 if (lowmem)
1259 free_lowmem += free_count;
[a35b458]1260
[f72906c]1261 if (highmem)
1262 free_highmem += free_count;
[a35b458]1263
[f72906c]1264 if (highprio) {
1265 free_highprio += free_count;
1266 } else {
1267 /*
1268 * Walk all frames of the zone and examine
1269 * all high priority memory to get accurate
1270 * statistics.
1271 */
[a35b458]1272
[f72906c]1273 for (size_t index = 0; index < count; index++) {
1274 if (is_high_priority(fbase + index, 0)) {
1275 if (!bitmap_get(&zones.info[i].bitmap, index))
1276 free_highprio++;
1277 } else
1278 break;
1279 }
1280 }
1281 }
[a35b458]1282
[f72906c]1283 irq_spinlock_unlock(&zones.lock, true);
[a35b458]1284
[7e752b2]1285 printf("%-4zu", i);
[a35b458]1286
[2b8b0ca]1287#ifdef __32_BITS__
[7e752b2]1288 printf(" %p", (void *) base);
[2b8b0ca]1289#endif
[a35b458]1290
[2b8b0ca]1291#ifdef __64_BITS__
[7e752b2]1292 printf(" %p", (void *) base);
[e49e234]1293#endif
[a35b458]1294
[e6c4b94]1295 printf(" %12zu %c%c%c%c%c ", count,
1296 available ? 'A' : '-',
1297 (flags & ZONE_RESERVED) ? 'R' : '-',
1298 (flags & ZONE_FIRMWARE) ? 'F' : '-',
1299 (flags & ZONE_LOWMEM) ? 'L' : '-',
1300 (flags & ZONE_HIGHMEM) ? 'H' : '-');
[a35b458]1301
[5f0f29ce]1302 if (available)
[7e752b2]1303 printf("%14zu %14zu",
[5f0f29ce]1304 free_count, busy_count);
[a35b458]1305
[5f0f29ce]1306 printf("\n");
[dfd9186]1307 }
[a35b458]1308
[f72906c]1309 printf("\n");
[a35b458]1310
[f72906c]1311 uint64_t size;
1312 const char *size_suffix;
[a35b458]1313
[f72906c]1314 bin_order_suffix(FRAMES2SIZE(free_lowmem), &size, &size_suffix,
1315 false);
1316 printf("Available low memory: %zu frames (%" PRIu64 " %s)\n",
1317 free_lowmem, size, size_suffix);
[a35b458]1318
[f72906c]1319 bin_order_suffix(FRAMES2SIZE(free_highmem), &size, &size_suffix,
1320 false);
1321 printf("Available high memory: %zu frames (%" PRIu64 " %s)\n",
1322 free_highmem, size, size_suffix);
[a35b458]1323
[f72906c]1324 bin_order_suffix(FRAMES2SIZE(free_highprio), &size, &size_suffix,
1325 false);
1326 printf("Available high priority: %zu frames (%" PRIu64 " %s)\n",
1327 free_highprio, size, size_suffix);
[dfd9186]1328}
1329
[abbc16e]1330/** Prints zone details.
[96cacc1]1331 *
[5f0f29ce]1332 * @param num Zone base address or zone number.
1333 *
[96cacc1]1334 */
[98000fb]1335void zone_print_one(size_t num)
[deaf8d5]1336{
[da1bafb]1337 irq_spinlock_lock(&zones.lock, true);
[98000fb]1338 size_t znum = (size_t) -1;
[a35b458]1339
[b0c2075]1340 for (size_t i = 0; i < zones.count; i++) {
[5f0f29ce]1341 if ((i == num) || (PFN2ADDR(zones.info[i].base) == num)) {
1342 znum = i;
[bb68433]1343 break;
1344 }
1345 }
[a35b458]1346
[98000fb]1347 if (znum == (size_t) -1) {
[da1bafb]1348 irq_spinlock_unlock(&zones.lock, true);
[bb68433]1349 printf("Zone not found.\n");
[2ec725f]1350 return;
[dfd9186]1351 }
[a35b458]1352
[f72906c]1353 size_t free_lowmem = 0;
1354 size_t free_highmem = 0;
1355 size_t free_highprio = 0;
[a35b458]1356
[f72906c]1357 pfn_t fbase = zones.info[znum].base;
1358 uintptr_t base = PFN2ADDR(fbase);
[b0c2075]1359 zone_flags_t flags = zones.info[znum].flags;
1360 size_t count = zones.info[znum].count;
1361 size_t free_count = zones.info[znum].free_count;
1362 size_t busy_count = zones.info[znum].busy_count;
[a35b458]1363
[e6c4b94]1364 bool available = ((flags & ZONE_AVAILABLE) != 0);
[f72906c]1365 bool lowmem = ((flags & ZONE_LOWMEM) != 0);
1366 bool highmem = ((flags & ZONE_HIGHMEM) != 0);
1367 bool highprio = is_high_priority(fbase, count);
[a35b458]1368
[f72906c]1369 if (available) {
1370 if (lowmem)
1371 free_lowmem = free_count;
[a35b458]1372
[f72906c]1373 if (highmem)
1374 free_highmem = free_count;
[a35b458]1375
[f72906c]1376 if (highprio) {
1377 free_highprio = free_count;
1378 } else {
1379 /*
1380 * Walk all frames of the zone and examine
1381 * all high priority memory to get accurate
1382 * statistics.
1383 */
[a35b458]1384
[f72906c]1385 for (size_t index = 0; index < count; index++) {
1386 if (is_high_priority(fbase + index, 0)) {
1387 if (!bitmap_get(&zones.info[znum].bitmap, index))
1388 free_highprio++;
1389 } else
1390 break;
1391 }
1392 }
1393 }
[a35b458]1394
[f72906c]1395 irq_spinlock_unlock(&zones.lock, true);
[a35b458]1396
[933cadf]1397 uint64_t size;
1398 const char *size_suffix;
[a35b458]1399
[933cadf]1400 bin_order_suffix(FRAMES2SIZE(count), &size, &size_suffix, false);
[a35b458]1401
[f72906c]1402 printf("Zone number: %zu\n", znum);
1403 printf("Zone base address: %p\n", (void *) base);
1404 printf("Zone size: %zu frames (%" PRIu64 " %s)\n", count,
[933cadf]1405 size, size_suffix);
[f72906c]1406 printf("Zone flags: %c%c%c%c%c\n",
[e6c4b94]1407 available ? 'A' : '-',
1408 (flags & ZONE_RESERVED) ? 'R' : '-',
1409 (flags & ZONE_FIRMWARE) ? 'F' : '-',
1410 (flags & ZONE_LOWMEM) ? 'L' : '-',
1411 (flags & ZONE_HIGHMEM) ? 'H' : '-');
[a35b458]1412
[5f0f29ce]1413 if (available) {
[933cadf]1414 bin_order_suffix(FRAMES2SIZE(busy_count), &size, &size_suffix,
1415 false);
[f72906c]1416 printf("Allocated space: %zu frames (%" PRIu64 " %s)\n",
[933cadf]1417 busy_count, size, size_suffix);
[a35b458]1418
[933cadf]1419 bin_order_suffix(FRAMES2SIZE(free_count), &size, &size_suffix,
1420 false);
[f72906c]1421 printf("Available space: %zu frames (%" PRIu64 " %s)\n",
[933cadf]1422 free_count, size, size_suffix);
[a35b458]1423
[f72906c]1424 bin_order_suffix(FRAMES2SIZE(free_lowmem), &size, &size_suffix,
1425 false);
1426 printf("Available low memory: %zu frames (%" PRIu64 " %s)\n",
1427 free_lowmem, size, size_suffix);
[a35b458]1428
[f72906c]1429 bin_order_suffix(FRAMES2SIZE(free_highmem), &size, &size_suffix,
1430 false);
1431 printf("Available high memory: %zu frames (%" PRIu64 " %s)\n",
1432 free_highmem, size, size_suffix);
[a35b458]1433
[f72906c]1434 bin_order_suffix(FRAMES2SIZE(free_highprio), &size, &size_suffix,
1435 false);
1436 printf("Available high priority: %zu frames (%" PRIu64 " %s)\n",
1437 free_highprio, size, size_suffix);
[5f0f29ce]1438 }
[dfd9186]1439}
1440
[cc73a8a1]1441/** @}
[b45c443]1442 */
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