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703 jermar 1
/*
2
 * Copyright (C) 2001-2006 Jakub Jermar
3
 * All rights reserved.
4
 *
5
 * Redistribution and use in source and binary forms, with or without
6
 * modification, are permitted provided that the following conditions
7
 * are met:
8
 *
9
 * - Redistributions of source code must retain the above copyright
10
 *   notice, this list of conditions and the following disclaimer.
11
 * - Redistributions in binary form must reproduce the above copyright
12
 *   notice, this list of conditions and the following disclaimer in the
13
 *   documentation and/or other materials provided with the distribution.
14
 * - The name of the author may not be used to endorse or promote products
15
 *   derived from this software without specific prior written permission.
16
 *
17
 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18
 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19
 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20
 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21
 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22
 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23
 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24
 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25
 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26
 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27
 */
28
 
1248 jermar 29
/**
30
 * @file    as.c
31
 * @brief   Address space related functions.
32
 *
703 jermar 33
 * This file contains address space manipulation functions.
34
 * Roughly speaking, this is a higher-level client of
35
 * Virtual Address Translation (VAT) subsystem.
1248 jermar 36
 *
37
 * Functionality provided by this file allows one to
38
 * create address space and create, resize and share
39
 * address space areas.
40
 *
41
 * @see page.c
42
 *
703 jermar 43
 */
44
 
45
#include <mm/as.h>
756 jermar 46
#include <arch/mm/as.h>
703 jermar 47
#include <mm/page.h>
48
#include <mm/frame.h>
814 palkovsky 49
#include <mm/slab.h>
703 jermar 50
#include <mm/tlb.h>
51
#include <arch/mm/page.h>
52
#include <genarch/mm/page_pt.h>
1108 jermar 53
#include <genarch/mm/page_ht.h>
727 jermar 54
#include <mm/asid.h>
703 jermar 55
#include <arch/mm/asid.h>
56
#include <synch/spinlock.h>
788 jermar 57
#include <adt/list.h>
1147 jermar 58
#include <adt/btree.h>
1235 jermar 59
#include <proc/task.h>
1288 jermar 60
#include <proc/thread.h>
1235 jermar 61
#include <arch/asm.h>
703 jermar 62
#include <panic.h>
63
#include <debug.h>
1235 jermar 64
#include <print.h>
703 jermar 65
#include <memstr.h>
1070 jermar 66
#include <macros.h>
703 jermar 67
#include <arch.h>
1235 jermar 68
#include <errno.h>
69
#include <config.h>
70
#include <arch/types.h>
71
#include <typedefs.h>
1288 jermar 72
#include <syscall/copy.h>
73
#include <arch/interrupt.h>
703 jermar 74
 
756 jermar 75
as_operations_t *as_operations = NULL;
703 jermar 76
 
823 jermar 77
/** Address space lock. It protects inactive_as_with_asid_head. */
78
SPINLOCK_INITIALIZE(as_lock);
79
 
80
/**
81
 * This list contains address spaces that are not active on any
82
 * processor and that have valid ASID.
83
 */
84
LIST_INITIALIZE(inactive_as_with_asid_head);
85
 
757 jermar 86
/** Kernel address space. */
87
as_t *AS_KERNEL = NULL;
88
 
1235 jermar 89
static int area_flags_to_page_flags(int aflags);
754 jermar 90
static int get_area_flags(as_area_t *a);
977 jermar 91
static as_area_t *find_area_and_lock(as_t *as, __address va);
1048 jermar 92
static bool check_area_conflicts(as_t *as, __address va, size_t size, as_area_t *avoid_area);
703 jermar 93
 
756 jermar 94
/** Initialize address space subsystem. */
95
void as_init(void)
96
{
97
    as_arch_init();
789 palkovsky 98
    AS_KERNEL = as_create(FLAG_AS_KERNEL);
756 jermar 99
        if (!AS_KERNEL)
100
                panic("can't create kernel address space\n");
101
}
102
 
757 jermar 103
/** Create address space.
104
 *
105
 * @param flags Flags that influence way in wich the address space is created.
106
 */
756 jermar 107
as_t *as_create(int flags)
703 jermar 108
{
109
    as_t *as;
110
 
822 palkovsky 111
    as = (as_t *) malloc(sizeof(as_t), 0);
823 jermar 112
    link_initialize(&as->inactive_as_with_asid_link);
822 palkovsky 113
    spinlock_initialize(&as->lock, "as_lock");
1147 jermar 114
    btree_create(&as->as_area_btree);
822 palkovsky 115
 
116
    if (flags & FLAG_AS_KERNEL)
117
        as->asid = ASID_KERNEL;
118
    else
119
        as->asid = ASID_INVALID;
120
 
823 jermar 121
    as->refcount = 0;
822 palkovsky 122
    as->page_table = page_table_create(flags);
703 jermar 123
 
124
    return as;
125
}
126
 
973 palkovsky 127
/** Free Adress space */
128
void as_free(as_t *as)
129
{
130
    ASSERT(as->refcount == 0);
131
 
132
    /* TODO: free as_areas and other resources held by as */
133
    /* TODO: free page table */
134
    free(as);
135
}
136
 
703 jermar 137
/** Create address space area of common attributes.
138
 *
139
 * The created address space area is added to the target address space.
140
 *
141
 * @param as Target address space.
1239 jermar 142
 * @param flags Flags of the area memory.
1048 jermar 143
 * @param size Size of area.
703 jermar 144
 * @param base Base address of area.
1239 jermar 145
 * @param attrs Attributes of the area.
703 jermar 146
 *
147
 * @return Address space area on success or NULL on failure.
148
 */
1239 jermar 149
as_area_t *as_area_create(as_t *as, int flags, size_t size, __address base, int attrs)
703 jermar 150
{
151
    ipl_t ipl;
152
    as_area_t *a;
153
 
154
    if (base % PAGE_SIZE)
1048 jermar 155
        return NULL;
156
 
1233 jermar 157
    if (!size)
158
        return NULL;
159
 
1048 jermar 160
    /* Writeable executable areas are not supported. */
161
    if ((flags & AS_AREA_EXEC) && (flags & AS_AREA_WRITE))
162
        return NULL;
703 jermar 163
 
164
    ipl = interrupts_disable();
165
    spinlock_lock(&as->lock);
166
 
1048 jermar 167
    if (!check_area_conflicts(as, base, size, NULL)) {
168
        spinlock_unlock(&as->lock);
169
        interrupts_restore(ipl);
170
        return NULL;
171
    }
703 jermar 172
 
822 palkovsky 173
    a = (as_area_t *) malloc(sizeof(as_area_t), 0);
703 jermar 174
 
822 palkovsky 175
    spinlock_initialize(&a->lock, "as_area_lock");
176
 
1026 jermar 177
    a->flags = flags;
1239 jermar 178
    a->attributes = attrs;
1048 jermar 179
    a->pages = SIZE2FRAMES(size);
822 palkovsky 180
    a->base = base;
181
 
1147 jermar 182
    btree_insert(&as->as_area_btree, base, (void *) a, NULL);
822 palkovsky 183
 
703 jermar 184
    spinlock_unlock(&as->lock);
185
    interrupts_restore(ipl);
704 jermar 186
 
703 jermar 187
    return a;
188
}
189
 
1235 jermar 190
/** Find address space area and change it.
191
 *
192
 * @param as Address space.
193
 * @param address Virtual address belonging to the area to be changed. Must be page-aligned.
194
 * @param size New size of the virtual memory block starting at address.
195
 * @param flags Flags influencing the remap operation. Currently unused.
196
 *
1306 jermar 197
 * @return Zero on success or a value from @ref errno.h otherwise.
1235 jermar 198
 */
1306 jermar 199
int as_area_resize(as_t *as, __address address, size_t size, int flags)
1235 jermar 200
{
1306 jermar 201
    as_area_t *area;
1235 jermar 202
    ipl_t ipl;
203
    size_t pages;
204
 
205
    ipl = interrupts_disable();
206
    spinlock_lock(&as->lock);
207
 
208
    /*
209
     * Locate the area.
210
     */
211
    area = find_area_and_lock(as, address);
212
    if (!area) {
213
        spinlock_unlock(&as->lock);
214
        interrupts_restore(ipl);
1306 jermar 215
        return ENOENT;
1235 jermar 216
    }
217
 
218
    if (area->flags & AS_AREA_DEVICE) {
219
        /*
220
         * Remapping of address space areas associated
221
         * with memory mapped devices is not supported.
222
         */
223
        spinlock_unlock(&area->lock);
224
        spinlock_unlock(&as->lock);
225
        interrupts_restore(ipl);
1306 jermar 226
        return ENOTSUP;
1235 jermar 227
    }
228
 
229
    pages = SIZE2FRAMES((address - area->base) + size);
230
    if (!pages) {
231
        /*
232
         * Zero size address space areas are not allowed.
233
         */
234
        spinlock_unlock(&area->lock);
235
        spinlock_unlock(&as->lock);
236
        interrupts_restore(ipl);
1306 jermar 237
        return EPERM;
1235 jermar 238
    }
239
 
240
    if (pages < area->pages) {
241
        int i;
242
 
243
        /*
244
         * Shrinking the area.
245
         * No need to check for overlaps.
246
         */
247
        for (i = pages; i < area->pages; i++) {
248
            pte_t *pte;
249
 
250
            /*
251
             * Releasing physical memory.
252
             * This depends on the fact that the memory was allocated using frame_alloc().
253
             */
254
            page_table_lock(as, false);
255
            pte = page_mapping_find(as, area->base + i*PAGE_SIZE);
256
            if (pte && PTE_VALID(pte)) {
257
                __address frame;
258
 
259
                ASSERT(PTE_PRESENT(pte));
260
                frame = PTE_GET_FRAME(pte);
261
                page_mapping_remove(as, area->base + i*PAGE_SIZE);
262
                page_table_unlock(as, false);
263
 
264
                frame_free(ADDR2PFN(frame));
265
            } else {
266
                page_table_unlock(as, false);
267
            }
268
        }
269
        /*
270
         * Invalidate TLB's.
271
         */
272
        tlb_shootdown_start(TLB_INVL_PAGES, AS->asid, area->base + pages*PAGE_SIZE, area->pages - pages);
273
        tlb_invalidate_pages(AS->asid, area->base + pages*PAGE_SIZE, area->pages - pages);
274
        tlb_shootdown_finalize();
275
    } else {
276
        /*
277
         * Growing the area.
278
         * Check for overlaps with other address space areas.
279
         */
280
        if (!check_area_conflicts(as, address, pages * PAGE_SIZE, area)) {
281
            spinlock_unlock(&area->lock);
282
            spinlock_unlock(&as->lock);    
283
            interrupts_restore(ipl);
1306 jermar 284
            return EADDRNOTAVAIL;
1235 jermar 285
        }
286
    }
287
 
288
    area->pages = pages;
289
 
290
    spinlock_unlock(&area->lock);
291
    spinlock_unlock(&as->lock);
292
    interrupts_restore(ipl);
293
 
1306 jermar 294
    return 0;
1235 jermar 295
}
296
 
1306 jermar 297
/** Destroy address space area.
298
 *
299
 * @param as Address space.
300
 * @param address Address withing the area to be deleted.
301
 *
302
 * @return Zero on success or a value from @ref errno.h on failure.
303
 */
304
int as_area_destroy(as_t *as, __address address)
305
{
306
    as_area_t *area;
307
    __address base;
308
    ipl_t ipl;
309
    int i;
310
 
311
    ipl = interrupts_disable();
312
    spinlock_lock(&as->lock);
313
 
314
    area = find_area_and_lock(as, address);
315
    if (!area) {
316
        spinlock_unlock(&as->lock);
317
        interrupts_restore(ipl);
318
        return ENOENT;
319
    }
320
 
321
    base = area->base; 
322
    for (i = 0; i < area->pages; i++) {
323
        pte_t *pte;
324
 
325
        /*
326
         * Releasing physical memory.
327
         * Areas mapping memory-mapped devices are treated differently than
328
         * areas backing frame_alloc()'ed memory.
329
         */
330
        page_table_lock(as, false);
331
        pte = page_mapping_find(as, area->base + i*PAGE_SIZE);
332
        if (pte && PTE_VALID(pte)) {
333
            ASSERT(PTE_PRESENT(pte));
334
            page_mapping_remove(as, area->base + i*PAGE_SIZE);
335
            if (area->flags & AS_AREA_DEVICE) {
336
                __address frame;
337
                frame = PTE_GET_FRAME(pte);
338
                frame_free(ADDR2PFN(frame));
339
            }
340
            page_table_unlock(as, false);
341
        } else {
342
            page_table_unlock(as, false);
343
        }
344
    }
345
    /*
346
     * Invalidate TLB's.
347
     */
348
    tlb_shootdown_start(TLB_INVL_PAGES, AS->asid, area->base, area->pages);
349
    tlb_invalidate_pages(AS->asid, area->base, area->pages);
350
    tlb_shootdown_finalize();
351
 
352
    spinlock_unlock(&area->lock);
353
 
354
    /*
355
     * Remove the empty area from address space.
356
     */
357
    btree_remove(&AS->as_area_btree, base, NULL);
358
 
359
    spinlock_unlock(&AS->lock);
360
    interrupts_restore(ipl);
361
    return 0;
362
}
363
 
1235 jermar 364
/** Send address space area to another task.
365
 *
366
 * Address space area is sent to the specified task.
367
 * If the destination task is willing to accept the
368
 * area, a new area is created according to the
369
 * source area. Moreover, any existing mapping
370
 * is copied as well, providing thus a mechanism
371
 * for sharing group of pages. The source address
372
 * space area and any associated mapping is preserved.
373
 *
1239 jermar 374
 * @param dst_id Task ID of the accepting task.
375
 * @param src_base Base address of the source address space area.
1235 jermar 376
 *
1306 jermar 377
 * @return Zero on success or ENOENT if there is no such task or
1235 jermar 378
 *     if there is no such address space area,
379
 *     EPERM if there was a problem in accepting the area or
380
 *     ENOMEM if there was a problem in allocating destination
381
 *     address space area.
382
 */
1239 jermar 383
int as_area_send(task_id_t dst_id, __address src_base)
1235 jermar 384
{
385
    ipl_t ipl;
386
    task_t *t;
387
    count_t i;
1239 jermar 388
    as_t *dst_as;
1235 jermar 389
    __address dst_base;
1239 jermar 390
    int src_flags;
391
    size_t src_size;
392
    as_area_t *src_area, *dst_area;
1235 jermar 393
 
394
    ipl = interrupts_disable();
395
    spinlock_lock(&tasks_lock);
396
 
1239 jermar 397
    t = task_find_by_id(dst_id);
1235 jermar 398
    if (!NULL) {
399
        spinlock_unlock(&tasks_lock);
400
        interrupts_restore(ipl);
401
        return ENOENT;
402
    }
403
 
404
    spinlock_lock(&t->lock);
405
    spinlock_unlock(&tasks_lock);
406
 
1239 jermar 407
    dst_as = t->as;
1235 jermar 408
    dst_base = (__address) t->accept_arg.base;
409
 
1239 jermar 410
    if (dst_as == AS) {
1235 jermar 411
        /*
412
         * The two tasks share the entire address space.
413
         * Return error since there is no point in continuing.
414
         */
415
        spinlock_unlock(&t->lock);
416
        interrupts_restore(ipl);
417
        return EPERM;
418
    }
1238 jermar 419
 
420
    spinlock_lock(&AS->lock);
1239 jermar 421
    src_area = find_area_and_lock(AS, src_base);
422
    if (!src_area) {
1238 jermar 423
        /*
424
         * Could not find the source address space area.
425
         */
426
        spinlock_unlock(&t->lock);
427
        spinlock_unlock(&AS->lock);
428
        interrupts_restore(ipl);
429
        return ENOENT;
430
    }
1239 jermar 431
    src_size = src_area->pages * PAGE_SIZE;
432
    src_flags = src_area->flags;
433
    spinlock_unlock(&src_area->lock);
1238 jermar 434
    spinlock_unlock(&AS->lock);
1235 jermar 435
 
1239 jermar 436
    if ((t->accept_arg.task_id != TASK->taskid) || (t->accept_arg.size != src_size) ||
437
        (t->accept_arg.flags != src_flags)) {
1235 jermar 438
        /*
439
         * Discrepancy in either task ID, size or flags.
440
         */
441
        spinlock_unlock(&t->lock);
442
        interrupts_restore(ipl);
443
        return EPERM;
444
    }
445
 
446
    /*
1239 jermar 447
     * Create copy of the source address space area.
448
     * The destination area is created with AS_AREA_ATTR_PARTIAL
449
     * attribute set which prevents race condition with
450
     * preliminary as_page_fault() calls.
1235 jermar 451
     */
1239 jermar 452
    dst_area = as_area_create(dst_as, src_flags, src_size, dst_base, AS_AREA_ATTR_PARTIAL);
453
    if (!dst_area) {
1235 jermar 454
        /*
455
         * Destination address space area could not be created.
456
         */
457
        spinlock_unlock(&t->lock);
458
        interrupts_restore(ipl);
459
        return ENOMEM;
460
    }
461
 
462
    memsetb((__address) &t->accept_arg, sizeof(as_area_acptsnd_arg_t), 0);
463
    spinlock_unlock(&t->lock);
464
 
465
    /*
466
     * Avoid deadlock by first locking the address space with lower address.
467
     */
1239 jermar 468
    if (dst_as < AS) {
469
        spinlock_lock(&dst_as->lock);
1235 jermar 470
        spinlock_lock(&AS->lock);
471
    } else {
472
        spinlock_lock(&AS->lock);
1239 jermar 473
        spinlock_lock(&dst_as->lock);
1235 jermar 474
    }
475
 
1239 jermar 476
    for (i = 0; i < SIZE2FRAMES(src_size); i++) {
1235 jermar 477
        pte_t *pte;
478
        __address frame;
479
 
480
        page_table_lock(AS, false);
1239 jermar 481
        pte = page_mapping_find(AS, src_base + i*PAGE_SIZE);
1235 jermar 482
        if (pte && PTE_VALID(pte)) {
483
            ASSERT(PTE_PRESENT(pte));
484
            frame = PTE_GET_FRAME(pte);
1239 jermar 485
            if (!(src_flags & AS_AREA_DEVICE))
1236 jermar 486
                frame_reference_add(ADDR2PFN(frame));
1235 jermar 487
            page_table_unlock(AS, false);
488
        } else {
489
            page_table_unlock(AS, false);
490
            continue;
491
        }
492
 
1239 jermar 493
        page_table_lock(dst_as, false);
494
        page_mapping_insert(dst_as, dst_base + i*PAGE_SIZE, frame, area_flags_to_page_flags(src_flags));
495
        page_table_unlock(dst_as, false);
1235 jermar 496
    }
1239 jermar 497
 
498
    /*
499
     * Now the destination address space area has been
500
     * fully initialized. Clear the AS_AREA_ATTR_PARTIAL
501
     * attribute.
502
     */
503
    spinlock_lock(&dst_area->lock);
504
    dst_area->attributes &= ~AS_AREA_ATTR_PARTIAL;
505
    spinlock_unlock(&dst_area->lock);
1235 jermar 506
 
507
    spinlock_unlock(&AS->lock);
1239 jermar 508
    spinlock_unlock(&dst_as->lock);
1235 jermar 509
    interrupts_restore(ipl);
510
 
511
    return 0;
512
}
513
 
754 jermar 514
/** Initialize mapping for one page of address space.
703 jermar 515
 *
754 jermar 516
 * This functions maps 'page' to 'frame' according
517
 * to attributes of the address space area to
518
 * wich 'page' belongs.
703 jermar 519
 *
840 jermar 520
 * @param as Target address space.
754 jermar 521
 * @param page Virtual page within the area.
522
 * @param frame Physical frame to which page will be mapped.
703 jermar 523
 */
754 jermar 524
void as_set_mapping(as_t *as, __address page, __address frame)
703 jermar 525
{
977 jermar 526
    as_area_t *area;
703 jermar 527
    ipl_t ipl;
528
 
529
    ipl = interrupts_disable();
1044 jermar 530
    page_table_lock(as, true);
703 jermar 531
 
977 jermar 532
    area = find_area_and_lock(as, page);
754 jermar 533
    if (!area) {
534
        panic("page not part of any as_area\n");
535
    }
536
 
756 jermar 537
    page_mapping_insert(as, page, frame, get_area_flags(area));
754 jermar 538
 
539
    spinlock_unlock(&area->lock);
1044 jermar 540
    page_table_unlock(as, true);
703 jermar 541
    interrupts_restore(ipl);
542
}
543
 
544
/** Handle page fault within the current address space.
545
 *
546
 * This is the high-level page fault handler.
547
 * Interrupts are assumed disabled.
548
 *
549
 * @param page Faulting page.
1288 jermar 550
 * @param istate Pointer to interrupted state.
703 jermar 551
 *
1288 jermar 552
 * @return 0 on page fault, 1 on success or 2 if the fault was caused by copy_to_uspace() or copy_from_uspace().
703 jermar 553
 */
1288 jermar 554
int as_page_fault(__address page, istate_t *istate)
703 jermar 555
{
1044 jermar 556
    pte_t *pte;
977 jermar 557
    as_area_t *area;
703 jermar 558
    __address frame;
559
 
560
    ASSERT(AS);
1044 jermar 561
 
703 jermar 562
    spinlock_lock(&AS->lock);
977 jermar 563
    area = find_area_and_lock(AS, page);   
703 jermar 564
    if (!area) {
565
        /*
566
         * No area contained mapping for 'page'.
567
         * Signal page fault to low-level handler.
568
         */
569
        spinlock_unlock(&AS->lock);
1288 jermar 570
        goto page_fault;
703 jermar 571
    }
572
 
1239 jermar 573
    if (area->attributes & AS_AREA_ATTR_PARTIAL) {
574
        /*
575
         * The address space area is not fully initialized.
576
         * Avoid possible race by returning error.
577
         */
578
        spinlock_unlock(&area->lock);
579
        spinlock_unlock(&AS->lock);
1288 jermar 580
        goto page_fault;       
1239 jermar 581
    }
582
 
1179 jermar 583
    ASSERT(!(area->flags & AS_AREA_DEVICE));
584
 
1044 jermar 585
    page_table_lock(AS, false);
586
 
703 jermar 587
    /*
1044 jermar 588
     * To avoid race condition between two page faults
589
     * on the same address, we need to make sure
590
     * the mapping has not been already inserted.
591
     */
592
    if ((pte = page_mapping_find(AS, page))) {
593
        if (PTE_PRESENT(pte)) {
594
            page_table_unlock(AS, false);
595
            spinlock_unlock(&area->lock);
596
            spinlock_unlock(&AS->lock);
597
            return 1;
598
        }
599
    }
600
 
601
    /*
754 jermar 602
     * In general, there can be several reasons that
603
     * can have caused this fault.
604
     *
605
     * - non-existent mapping: the area is a scratch
606
     *   area (e.g. stack) and so far has not been
607
     *   allocated a frame for the faulting page
608
     *
609
     * - non-present mapping: another possibility,
610
     *   currently not implemented, would be frame
611
     *   reuse; when this becomes a possibility,
612
     *   do not forget to distinguish between
613
     *   the different causes
703 jermar 614
     */
814 palkovsky 615
    frame = PFN2ADDR(frame_alloc(ONE_FRAME, 0));
754 jermar 616
    memsetb(PA2KA(frame), FRAME_SIZE, 0);
703 jermar 617
 
618
    /*
619
     * Map 'page' to 'frame'.
620
     * Note that TLB shootdown is not attempted as only new information is being
621
     * inserted into page tables.
622
     */
756 jermar 623
    page_mapping_insert(AS, page, frame, get_area_flags(area));
1044 jermar 624
    page_table_unlock(AS, false);
703 jermar 625
 
626
    spinlock_unlock(&area->lock);
627
    spinlock_unlock(&AS->lock);
1288 jermar 628
    return AS_PF_OK;
629
 
630
page_fault:
631
    if (!THREAD)
632
        return AS_PF_FAULT;
633
 
634
    if (THREAD->in_copy_from_uspace) {
635
        THREAD->in_copy_from_uspace = false;
636
        istate_set_retaddr(istate, (__address) &memcpy_from_uspace_failover_address);
637
    } else if (THREAD->in_copy_to_uspace) {
638
        THREAD->in_copy_to_uspace = false;
639
        istate_set_retaddr(istate, (__address) &memcpy_to_uspace_failover_address);
640
    } else {
641
        return AS_PF_FAULT;
642
    }
643
 
644
    return AS_PF_DEFER;
703 jermar 645
}
646
 
823 jermar 647
/** Switch address spaces.
703 jermar 648
 *
823 jermar 649
 * @param old Old address space or NULL.
650
 * @param new New address space.
703 jermar 651
 */
823 jermar 652
void as_switch(as_t *old, as_t *new)
703 jermar 653
{
654
    ipl_t ipl;
823 jermar 655
    bool needs_asid = false;
703 jermar 656
 
657
    ipl = interrupts_disable();
823 jermar 658
    spinlock_lock(&as_lock);
703 jermar 659
 
660
    /*
823 jermar 661
     * First, take care of the old address space.
662
     */
663
    if (old) {
664
        spinlock_lock(&old->lock);
665
        ASSERT(old->refcount);
666
        if((--old->refcount == 0) && (old != AS_KERNEL)) {
667
            /*
668
             * The old address space is no longer active on
669
             * any processor. It can be appended to the
670
             * list of inactive address spaces with assigned
671
             * ASID.
672
             */
673
             ASSERT(old->asid != ASID_INVALID);
674
             list_append(&old->inactive_as_with_asid_link, &inactive_as_with_asid_head);
675
        }
676
        spinlock_unlock(&old->lock);
677
    }
678
 
679
    /*
680
     * Second, prepare the new address space.
681
     */
682
    spinlock_lock(&new->lock);
683
    if ((new->refcount++ == 0) && (new != AS_KERNEL)) {
684
        if (new->asid != ASID_INVALID)
685
            list_remove(&new->inactive_as_with_asid_link);
686
        else
687
            needs_asid = true;  /* defer call to asid_get() until new->lock is released */
688
    }
689
    SET_PTL0_ADDRESS(new->page_table);
690
    spinlock_unlock(&new->lock);
691
 
692
    if (needs_asid) {
693
        /*
694
         * Allocation of new ASID was deferred
695
         * until now in order to avoid deadlock.
696
         */
697
        asid_t asid;
698
 
699
        asid = asid_get();
700
        spinlock_lock(&new->lock);
701
        new->asid = asid;
702
        spinlock_unlock(&new->lock);
703
    }
704
    spinlock_unlock(&as_lock);
705
    interrupts_restore(ipl);
706
 
707
    /*
703 jermar 708
     * Perform architecture-specific steps.
727 jermar 709
     * (e.g. write ASID to hardware register etc.)
703 jermar 710
     */
823 jermar 711
    as_install_arch(new);
703 jermar 712
 
823 jermar 713
    AS = new;
703 jermar 714
}
754 jermar 715
 
1235 jermar 716
/** Convert address space area flags to page flags.
754 jermar 717
 *
1235 jermar 718
 * @param aflags Flags of some address space area.
754 jermar 719
 *
1235 jermar 720
 * @return Flags to be passed to page_mapping_insert().
754 jermar 721
 */
1235 jermar 722
int area_flags_to_page_flags(int aflags)
754 jermar 723
{
724
    int flags;
725
 
1178 jermar 726
    flags = PAGE_USER | PAGE_PRESENT;
754 jermar 727
 
1235 jermar 728
    if (aflags & AS_AREA_READ)
1026 jermar 729
        flags |= PAGE_READ;
730
 
1235 jermar 731
    if (aflags & AS_AREA_WRITE)
1026 jermar 732
        flags |= PAGE_WRITE;
733
 
1235 jermar 734
    if (aflags & AS_AREA_EXEC)
1026 jermar 735
        flags |= PAGE_EXEC;
736
 
1235 jermar 737
    if (!(aflags & AS_AREA_DEVICE))
1178 jermar 738
        flags |= PAGE_CACHEABLE;
739
 
754 jermar 740
    return flags;
741
}
756 jermar 742
 
1235 jermar 743
/** Compute flags for virtual address translation subsytem.
744
 *
745
 * The address space area must be locked.
746
 * Interrupts must be disabled.
747
 *
748
 * @param a Address space area.
749
 *
750
 * @return Flags to be used in page_mapping_insert().
751
 */
752
int get_area_flags(as_area_t *a)
753
{
754
    return area_flags_to_page_flags(a->flags);
755
}
756
 
756 jermar 757
/** Create page table.
758
 *
759
 * Depending on architecture, create either address space
760
 * private or global page table.
761
 *
762
 * @param flags Flags saying whether the page table is for kernel address space.
763
 *
764
 * @return First entry of the page table.
765
 */
766
pte_t *page_table_create(int flags)
767
{
768
        ASSERT(as_operations);
769
        ASSERT(as_operations->page_table_create);
770
 
771
        return as_operations->page_table_create(flags);
772
}
977 jermar 773
 
1044 jermar 774
/** Lock page table.
775
 *
776
 * This function should be called before any page_mapping_insert(),
777
 * page_mapping_remove() and page_mapping_find().
778
 *
779
 * Locking order is such that address space areas must be locked
780
 * prior to this call. Address space can be locked prior to this
781
 * call in which case the lock argument is false.
782
 *
783
 * @param as Address space.
1248 jermar 784
 * @param lock If false, do not attempt to lock as->lock.
1044 jermar 785
 */
786
void page_table_lock(as_t *as, bool lock)
787
{
788
    ASSERT(as_operations);
789
    ASSERT(as_operations->page_table_lock);
790
 
791
    as_operations->page_table_lock(as, lock);
792
}
793
 
794
/** Unlock page table.
795
 *
796
 * @param as Address space.
1248 jermar 797
 * @param unlock If false, do not attempt to unlock as->lock.
1044 jermar 798
 */
799
void page_table_unlock(as_t *as, bool unlock)
800
{
801
    ASSERT(as_operations);
802
    ASSERT(as_operations->page_table_unlock);
803
 
804
    as_operations->page_table_unlock(as, unlock);
805
}
806
 
977 jermar 807
 
808
/** Find address space area and lock it.
809
 *
810
 * The address space must be locked and interrupts must be disabled.
811
 *
812
 * @param as Address space.
813
 * @param va Virtual address.
814
 *
815
 * @return Locked address space area containing va on success or NULL on failure.
816
 */
817
as_area_t *find_area_and_lock(as_t *as, __address va)
818
{
819
    as_area_t *a;
1147 jermar 820
    btree_node_t *leaf, *lnode;
821
    int i;
977 jermar 822
 
1147 jermar 823
    a = (as_area_t *) btree_search(&as->as_area_btree, va, &leaf);
824
    if (a) {
825
        /* va is the base address of an address space area */
977 jermar 826
        spinlock_lock(&a->lock);
1147 jermar 827
        return a;
828
    }
829
 
830
    /*
1150 jermar 831
     * Search the leaf node and the righmost record of its left neighbour
1147 jermar 832
     * to find out whether this is a miss or va belongs to an address
833
     * space area found there.
834
     */
835
 
836
    /* First, search the leaf node itself. */
837
    for (i = 0; i < leaf->keys; i++) {
838
        a = (as_area_t *) leaf->value[i];
839
        spinlock_lock(&a->lock);
840
        if ((a->base <= va) && (va < a->base + a->pages * PAGE_SIZE)) {
841
            return a;
842
        }
843
        spinlock_unlock(&a->lock);
844
    }
977 jermar 845
 
1147 jermar 846
    /*
1150 jermar 847
     * Second, locate the left neighbour and test its last record.
1148 jermar 848
     * Because of its position in the B+tree, it must have base < va.
1147 jermar 849
     */
1150 jermar 850
    if ((lnode = btree_leaf_node_left_neighbour(&as->as_area_btree, leaf))) {
1147 jermar 851
        a = (as_area_t *) lnode->value[lnode->keys - 1];
852
        spinlock_lock(&a->lock);
853
        if (va < a->base + a->pages * PAGE_SIZE) {
1048 jermar 854
            return a;
1147 jermar 855
        }
977 jermar 856
        spinlock_unlock(&a->lock);
857
    }
858
 
859
    return NULL;
860
}
1048 jermar 861
 
862
/** Check area conflicts with other areas.
863
 *
864
 * The address space must be locked and interrupts must be disabled.
865
 *
866
 * @param as Address space.
867
 * @param va Starting virtual address of the area being tested.
868
 * @param size Size of the area being tested.
869
 * @param avoid_area Do not touch this area.
870
 *
871
 * @return True if there is no conflict, false otherwise.
872
 */
873
bool check_area_conflicts(as_t *as, __address va, size_t size, as_area_t *avoid_area)
874
{
875
    as_area_t *a;
1147 jermar 876
    btree_node_t *leaf, *node;
877
    int i;
1048 jermar 878
 
1070 jermar 879
    /*
880
     * We don't want any area to have conflicts with NULL page.
881
     */
882
    if (overlaps(va, size, NULL, PAGE_SIZE))
883
        return false;
884
 
1147 jermar 885
    /*
886
     * The leaf node is found in O(log n), where n is proportional to
887
     * the number of address space areas belonging to as.
888
     * The check for conflicts is then attempted on the rightmost
1150 jermar 889
     * record in the left neighbour, the leftmost record in the right
890
     * neighbour and all records in the leaf node itself.
1147 jermar 891
     */
1048 jermar 892
 
1147 jermar 893
    if ((a = (as_area_t *) btree_search(&as->as_area_btree, va, &leaf))) {
894
        if (a != avoid_area)
895
            return false;
896
    }
897
 
898
    /* First, check the two border cases. */
1150 jermar 899
    if ((node = btree_leaf_node_left_neighbour(&as->as_area_btree, leaf))) {
1147 jermar 900
        a = (as_area_t *) node->value[node->keys - 1];
901
        spinlock_lock(&a->lock);
902
        if (overlaps(va, size, a->base, a->pages * PAGE_SIZE)) {
903
            spinlock_unlock(&a->lock);
904
            return false;
905
        }
906
        spinlock_unlock(&a->lock);
907
    }
1150 jermar 908
    if ((node = btree_leaf_node_right_neighbour(&as->as_area_btree, leaf))) {
1147 jermar 909
        a = (as_area_t *) node->value[0];
910
        spinlock_lock(&a->lock);
911
        if (overlaps(va, size, a->base, a->pages * PAGE_SIZE)) {
912
            spinlock_unlock(&a->lock);
913
            return false;
914
        }
915
        spinlock_unlock(&a->lock);
916
    }
917
 
918
    /* Second, check the leaf node. */
919
    for (i = 0; i < leaf->keys; i++) {
920
        a = (as_area_t *) leaf->value[i];
921
 
1048 jermar 922
        if (a == avoid_area)
923
            continue;
1147 jermar 924
 
1048 jermar 925
        spinlock_lock(&a->lock);
1147 jermar 926
        if (overlaps(va, size, a->base, a->pages * PAGE_SIZE)) {
927
            spinlock_unlock(&a->lock);
928
            return false;
929
        }
1048 jermar 930
        spinlock_unlock(&a->lock);
931
    }
932
 
1070 jermar 933
    /*
934
     * So far, the area does not conflict with other areas.
935
     * Check if it doesn't conflict with kernel address space.
936
     */  
937
    if (!KERNEL_ADDRESS_SPACE_SHADOWED) {
938
        return !overlaps(va, size,
939
            KERNEL_ADDRESS_SPACE_START, KERNEL_ADDRESS_SPACE_END-KERNEL_ADDRESS_SPACE_START);
940
    }
941
 
1048 jermar 942
    return true;
943
}
1235 jermar 944
 
945
/*
946
 * Address space related syscalls.
947
 */
948
 
949
/** Wrapper for as_area_create(). */
950
__native sys_as_area_create(__address address, size_t size, int flags)
951
{
1239 jermar 952
    if (as_area_create(AS, flags, size, address, AS_AREA_ATTR_NONE))
1235 jermar 953
        return (__native) address;
954
    else
955
        return (__native) -1;
956
}
957
 
958
/** Wrapper for as_area_resize. */
959
__native sys_as_area_resize(__address address, size_t size, int flags)
960
{
1306 jermar 961
    return (__native) as_area_resize(AS, address, size, 0);
1235 jermar 962
}
963
 
1306 jermar 964
/** Wrapper for as_area_destroy. */
965
__native sys_as_area_destroy(__address address)
966
{
967
    return (__native) as_area_destroy(AS, address);
968
}
969
 
1235 jermar 970
/** Prepare task for accepting address space area from another task.
971
 *
972
 * @param uspace_accept_arg Accept structure passed from userspace.
973
 *
974
 * @return EPERM if the task ID encapsulated in @uspace_accept_arg references
975
 *     TASK. Otherwise zero is returned.
976
 */
977
__native sys_as_area_accept(as_area_acptsnd_arg_t *uspace_accept_arg)
978
{
979
    as_area_acptsnd_arg_t arg;
1288 jermar 980
    int rc;
1235 jermar 981
 
1288 jermar 982
    rc = copy_from_uspace(&arg, uspace_accept_arg, sizeof(as_area_acptsnd_arg_t));
983
    if (rc != 0)
984
        return rc;
1235 jermar 985
 
986
    if (!arg.size)
987
        return (__native) EPERM;
988
 
989
    if (arg.task_id == TASK->taskid) {
990
        /*
991
         * Accepting from itself is not allowed.
992
         */
993
        return (__native) EPERM;
994
    }
995
 
996
    memcpy(&TASK->accept_arg, &arg, sizeof(as_area_acptsnd_arg_t));
997
 
998
        return 0;
999
}
1000
 
1001
/** Wrapper for as_area_send. */
1002
__native sys_as_area_send(as_area_acptsnd_arg_t *uspace_send_arg)
1003
{
1004
    as_area_acptsnd_arg_t arg;
1288 jermar 1005
    int rc;
1235 jermar 1006
 
1288 jermar 1007
    rc = copy_from_uspace(&arg, uspace_send_arg, sizeof(as_area_acptsnd_arg_t));
1008
    if (rc != 0)
1009
        return rc;
1235 jermar 1010
 
1011
    if (!arg.size)
1012
        return (__native) EPERM;
1013
 
1014
    if (arg.task_id == TASK->taskid) {
1015
        /*
1016
         * Sending to itself is not allowed.
1017
         */
1018
        return (__native) EPERM;
1019
    }
1020
 
1238 jermar 1021
    return (__native) as_area_send(arg.task_id, (__address) arg.base);
1235 jermar 1022
}