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1
/*
2
 *  mmap support for qemu
3
 *
4
 *  Copyright (c) 2003 Fabrice Bellard
5
 *
6
 *  This program is free software; you can redistribute it and/or modify
7
 *  it under the terms of the GNU General Public License as published by
8
 *  the Free Software Foundation; either version 2 of the License, or
9
 *  (at your option) any later version.
10
 *
11
 *  This program is distributed in the hope that it will be useful,
12
 *  but WITHOUT ANY WARRANTY; without even the implied warranty of
13
 *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
14
 *  GNU General Public License for more details.
15
 *
16
 *  You should have received a copy of the GNU General Public License
17
 *  along with this program; if not, write to the Free Software
18
 *  Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
19
 *  MA 02110-1301, USA.
20
 */
21
#include <stdlib.h>
22
#include <stdio.h>
23
#include <stdarg.h>
24
#include <string.h>
25
#include <unistd.h>
26
#include <errno.h>
27
#include <sys/mman.h>
28
#include <linux/mman.h>
29
#include <linux/unistd.h>
30

    
31
#include "qemu.h"
32
#include "qemu-common.h"
33

    
34
//#define DEBUG_MMAP
35

    
36
#if defined(USE_NPTL)
37
pthread_mutex_t mmap_mutex;
38
static int __thread mmap_lock_count;
39

    
40
void mmap_lock(void)
41
{
42
    if (mmap_lock_count++ == 0) {
43
        pthread_mutex_lock(&mmap_mutex);
44
    }
45
}
46

    
47
void mmap_unlock(void)
48
{
49
    if (--mmap_lock_count == 0) {
50
        pthread_mutex_unlock(&mmap_mutex);
51
    }
52
}
53

    
54
/* Grab lock to make sure things are in a consistent state after fork().  */
55
void mmap_fork_start(void)
56
{
57
    if (mmap_lock_count)
58
        abort();
59
    pthread_mutex_lock(&mmap_mutex);
60
}
61

    
62
void mmap_fork_end(int child)
63
{
64
    if (child)
65
        pthread_mutex_init(&mmap_mutex, NULL);
66
    else
67
        pthread_mutex_unlock(&mmap_mutex);
68
}
69
#else
70
/* We aren't threadsafe to start with, so no need to worry about locking.  */
71
void mmap_lock(void)
72
{
73
}
74

    
75
void mmap_unlock(void)
76
{
77
}
78
#endif
79

    
80
void *qemu_vmalloc(size_t size)
81
{
82
    void *p;
83
    unsigned long addr;
84
    mmap_lock();
85
    /* Use map and mark the pages as used.  */
86
    p = mmap(NULL, size, PROT_READ | PROT_WRITE,
87
             MAP_PRIVATE | MAP_ANONYMOUS, -1, 0);
88

    
89
    addr = (unsigned long)p;
90
    if (addr == (target_ulong) addr) {
91
        /* Allocated region overlaps guest address space.
92
           This may recurse.  */
93
        page_set_flags(addr & TARGET_PAGE_MASK, TARGET_PAGE_ALIGN(addr + size),
94
                       PAGE_RESERVED);
95
    }
96

    
97
    mmap_unlock();
98
    return p;
99
}
100

    
101
void *qemu_malloc(size_t size)
102
{
103
    char * p;
104
    size += 16;
105
    p = qemu_vmalloc(size);
106
    *(size_t *)p = size;
107
    return p + 16;
108
}
109

    
110
/* We use map, which is always zero initialized.  */
111
void * qemu_mallocz(size_t size)
112
{
113
    return qemu_malloc(size);
114
}
115

    
116
void qemu_free(void *ptr)
117
{
118
    /* FIXME: We should unmark the reserved pages here.  However this gets
119
       complicated when one target page spans multiple host pages, so we
120
       don't bother.  */
121
    size_t *p;
122
    p = (size_t *)((char *)ptr - 16);
123
    munmap(p, *p);
124
}
125

    
126
void *qemu_realloc(void *ptr, size_t size)
127
{
128
    size_t old_size, copy;
129
    void *new_ptr;
130

    
131
    if (!ptr)
132
        return qemu_malloc(size);
133
    old_size = *(size_t *)((char *)ptr - 16);
134
    copy = old_size < size ? old_size : size;
135
    new_ptr = qemu_malloc(size);
136
    memcpy(new_ptr, ptr, copy);
137
    qemu_free(ptr);
138
    return new_ptr;
139
}
140

    
141
/* NOTE: all the constants are the HOST ones, but addresses are target. */
142
int target_mprotect(abi_ulong start, abi_ulong len, int prot)
143
{
144
    abi_ulong end, host_start, host_end, addr;
145
    int prot1, ret;
146

    
147
#ifdef DEBUG_MMAP
148
    printf("mprotect: start=0x" TARGET_FMT_lx
149
           "len=0x" TARGET_FMT_lx " prot=%c%c%c\n", start, len,
150
           prot & PROT_READ ? 'r' : '-',
151
           prot & PROT_WRITE ? 'w' : '-',
152
           prot & PROT_EXEC ? 'x' : '-');
153
#endif
154

    
155
    if ((start & ~TARGET_PAGE_MASK) != 0)
156
        return -EINVAL;
157
    len = TARGET_PAGE_ALIGN(len);
158
    end = start + len;
159
    if (end < start)
160
        return -EINVAL;
161
    prot &= PROT_READ | PROT_WRITE | PROT_EXEC;
162
    if (len == 0)
163
        return 0;
164

    
165
    mmap_lock();
166
    host_start = start & qemu_host_page_mask;
167
    host_end = HOST_PAGE_ALIGN(end);
168
    if (start > host_start) {
169
        /* handle host page containing start */
170
        prot1 = prot;
171
        for(addr = host_start; addr < start; addr += TARGET_PAGE_SIZE) {
172
            prot1 |= page_get_flags(addr);
173
        }
174
        if (host_end == host_start + qemu_host_page_size) {
175
            for(addr = end; addr < host_end; addr += TARGET_PAGE_SIZE) {
176
                prot1 |= page_get_flags(addr);
177
            }
178
            end = host_end;
179
        }
180
        ret = mprotect(g2h(host_start), qemu_host_page_size, prot1 & PAGE_BITS);
181
        if (ret != 0)
182
            goto error;
183
        host_start += qemu_host_page_size;
184
    }
185
    if (end < host_end) {
186
        prot1 = prot;
187
        for(addr = end; addr < host_end; addr += TARGET_PAGE_SIZE) {
188
            prot1 |= page_get_flags(addr);
189
        }
190
        ret = mprotect(g2h(host_end - qemu_host_page_size), qemu_host_page_size,
191
                       prot1 & PAGE_BITS);
192
        if (ret != 0)
193
            goto error;
194
        host_end -= qemu_host_page_size;
195
    }
196

    
197
    /* handle the pages in the middle */
198
    if (host_start < host_end) {
199
        ret = mprotect(g2h(host_start), host_end - host_start, prot);
200
        if (ret != 0)
201
            goto error;
202
    }
203
    page_set_flags(start, start + len, prot | PAGE_VALID);
204
    mmap_unlock();
205
    return 0;
206
error:
207
    mmap_unlock();
208
    return ret;
209
}
210

    
211
/* map an incomplete host page */
212
static int mmap_frag(abi_ulong real_start,
213
                     abi_ulong start, abi_ulong end,
214
                     int prot, int flags, int fd, abi_ulong offset)
215
{
216
    abi_ulong real_end, addr;
217
    void *host_start;
218
    int prot1, prot_new;
219

    
220
    real_end = real_start + qemu_host_page_size;
221
    host_start = g2h(real_start);
222

    
223
    /* get the protection of the target pages outside the mapping */
224
    prot1 = 0;
225
    for(addr = real_start; addr < real_end; addr++) {
226
        if (addr < start || addr >= end)
227
            prot1 |= page_get_flags(addr);
228
    }
229

    
230
    if (prot1 == 0) {
231
        /* no page was there, so we allocate one */
232
        void *p = mmap(host_start, qemu_host_page_size, prot,
233
                       flags | MAP_ANONYMOUS, -1, 0);
234
        if (p == MAP_FAILED)
235
            return -1;
236
        prot1 = prot;
237
    }
238
    prot1 &= PAGE_BITS;
239

    
240
    prot_new = prot | prot1;
241
    if (!(flags & MAP_ANONYMOUS)) {
242
        /* msync() won't work here, so we return an error if write is
243
           possible while it is a shared mapping */
244
        if ((flags & MAP_TYPE) == MAP_SHARED &&
245
            (prot & PROT_WRITE))
246
            return -EINVAL;
247

    
248
        /* adjust protection to be able to read */
249
        if (!(prot1 & PROT_WRITE))
250
            mprotect(host_start, qemu_host_page_size, prot1 | PROT_WRITE);
251

    
252
        /* read the corresponding file data */
253
        pread(fd, g2h(start), end - start, offset);
254

    
255
        /* put final protection */
256
        if (prot_new != (prot1 | PROT_WRITE))
257
            mprotect(host_start, qemu_host_page_size, prot_new);
258
    } else {
259
        /* just update the protection */
260
        if (prot_new != prot1) {
261
            mprotect(host_start, qemu_host_page_size, prot_new);
262
        }
263
    }
264
    return 0;
265
}
266

    
267
#if defined(__CYGWIN__)
268
/* Cygwin doesn't have a whole lot of address space.  */
269
static abi_ulong mmap_next_start = 0x18000000;
270
#else
271
static abi_ulong mmap_next_start = 0x40000000;
272
#endif
273

    
274
unsigned long last_brk;
275

    
276
/* find a free memory area of size 'size'. The search starts at
277
   'start'. If 'start' == 0, then a default start address is used.
278
   Return -1 if error.
279
*/
280
/* page_init() marks pages used by the host as reserved to be sure not
281
   to use them. */
282
static abi_ulong mmap_find_vma(abi_ulong start, abi_ulong size)
283
{
284
    abi_ulong addr, addr1, addr_start;
285
    int prot;
286
    unsigned long new_brk;
287

    
288
    new_brk = (unsigned long)sbrk(0);
289
    if (last_brk && last_brk < new_brk && last_brk == (target_ulong)last_brk) {
290
        /* This is a hack to catch the host allocating memory with brk().
291
           If it uses mmap then we loose.
292
           FIXME: We really want to avoid the host allocating memory in
293
           the first place, and maybe leave some slack to avoid switching
294
           to mmap.  */
295
        page_set_flags(last_brk & TARGET_PAGE_MASK,
296
                       TARGET_PAGE_ALIGN(new_brk),
297
                       PAGE_RESERVED); 
298
    }
299
    last_brk = new_brk;
300

    
301
    size = HOST_PAGE_ALIGN(size);
302
    start = start & qemu_host_page_mask;
303
    addr = start;
304
    if (addr == 0)
305
        addr = mmap_next_start;
306
    addr_start = addr;
307
    for(;;) {
308
        prot = 0;
309
        for(addr1 = addr; addr1 < (addr + size); addr1 += TARGET_PAGE_SIZE) {
310
            prot |= page_get_flags(addr1);
311
        }
312
        if (prot == 0)
313
            break;
314
        addr += qemu_host_page_size;
315
        /* we found nothing */
316
        if (addr == addr_start)
317
            return (abi_ulong)-1;
318
    }
319
    if (start == 0)
320
        mmap_next_start = addr + size;
321
    return addr;
322
}
323

    
324
/* NOTE: all the constants are the HOST ones */
325
abi_long target_mmap(abi_ulong start, abi_ulong len, int prot,
326
                     int flags, int fd, abi_ulong offset)
327
{
328
    abi_ulong ret, end, real_start, real_end, retaddr, host_offset, host_len;
329
    unsigned long host_start;
330

    
331
    mmap_lock();
332
#ifdef DEBUG_MMAP
333
    {
334
        printf("mmap: start=0x" TARGET_FMT_lx
335
               " len=0x" TARGET_FMT_lx " prot=%c%c%c flags=",
336
               start, len,
337
               prot & PROT_READ ? 'r' : '-',
338
               prot & PROT_WRITE ? 'w' : '-',
339
               prot & PROT_EXEC ? 'x' : '-');
340
        if (flags & MAP_FIXED)
341
            printf("MAP_FIXED ");
342
        if (flags & MAP_ANONYMOUS)
343
            printf("MAP_ANON ");
344
        switch(flags & MAP_TYPE) {
345
        case MAP_PRIVATE:
346
            printf("MAP_PRIVATE ");
347
            break;
348
        case MAP_SHARED:
349
            printf("MAP_SHARED ");
350
            break;
351
        default:
352
            printf("[MAP_TYPE=0x%x] ", flags & MAP_TYPE);
353
            break;
354
        }
355
        printf("fd=%d offset=" TARGET_FMT_lx "\n", fd, offset);
356
    }
357
#endif
358

    
359
    if (offset & ~TARGET_PAGE_MASK) {
360
        errno = EINVAL;
361
        goto fail;
362
    }
363

    
364
    len = TARGET_PAGE_ALIGN(len);
365
    if (len == 0)
366
        goto the_end;
367
    real_start = start & qemu_host_page_mask;
368

    
369
    if (!(flags & MAP_FIXED)) {
370
        abi_ulong mmap_start;
371
        void *p;
372
        host_offset = offset & qemu_host_page_mask;
373
        host_len = len + offset - host_offset;
374
        host_len = HOST_PAGE_ALIGN(host_len);
375
        mmap_start = mmap_find_vma(real_start, host_len);
376
        if (mmap_start == (abi_ulong)-1) {
377
            errno = ENOMEM;
378
            goto fail;
379
        }
380
        /* Note: we prefer to control the mapping address. It is
381
           especially important if qemu_host_page_size >
382
           qemu_real_host_page_size */
383
        p = mmap(g2h(mmap_start),
384
                 host_len, prot, flags | MAP_FIXED, fd, host_offset);
385
        if (p == MAP_FAILED)
386
            goto fail;
387
        /* update start so that it points to the file position at 'offset' */
388
        host_start = (unsigned long)p;
389
        if (!(flags & MAP_ANONYMOUS))
390
            host_start += offset - host_offset;
391
        start = h2g(host_start);
392
    } else {
393
        int flg;
394
        target_ulong addr;
395

    
396
        if (start & ~TARGET_PAGE_MASK) {
397
            errno = EINVAL;
398
            goto fail;
399
        }
400
        end = start + len;
401
        real_end = HOST_PAGE_ALIGN(end);
402

    
403
        /*
404
         * Test if requested memory area fits target address space
405
         * It can fail only on 64-bit host with 32-bit target.
406
         * On any other target/host host mmap() handles this error correctly.
407
         */
408
        if ((unsigned long)start + len - 1 > (abi_ulong) -1) {
409
            errno = EINVAL;
410
            goto fail;
411
        }
412

    
413
        for(addr = real_start; addr < real_end; addr += TARGET_PAGE_SIZE) {
414
            flg = page_get_flags(addr);
415
            if (flg & PAGE_RESERVED) {
416
                errno = ENXIO;
417
                goto fail;
418
            }
419
        }
420

    
421
        /* worst case: we cannot map the file because the offset is not
422
           aligned, so we read it */
423
        if (!(flags & MAP_ANONYMOUS) &&
424
            (offset & ~qemu_host_page_mask) != (start & ~qemu_host_page_mask)) {
425
            /* msync() won't work here, so we return an error if write is
426
               possible while it is a shared mapping */
427
            if ((flags & MAP_TYPE) == MAP_SHARED &&
428
                (prot & PROT_WRITE)) {
429
                errno = EINVAL;
430
                goto fail;
431
            }
432
            retaddr = target_mmap(start, len, prot | PROT_WRITE,
433
                                  MAP_FIXED | MAP_PRIVATE | MAP_ANONYMOUS,
434
                                  -1, 0);
435
            if (retaddr == -1)
436
                goto fail;
437
            pread(fd, g2h(start), len, offset);
438
            if (!(prot & PROT_WRITE)) {
439
                ret = target_mprotect(start, len, prot);
440
                if (ret != 0) {
441
                    start = ret;
442
                    goto the_end;
443
                }
444
            }
445
            goto the_end;
446
        }
447
        
448
        /* handle the start of the mapping */
449
        if (start > real_start) {
450
            if (real_end == real_start + qemu_host_page_size) {
451
                /* one single host page */
452
                ret = mmap_frag(real_start, start, end,
453
                                prot, flags, fd, offset);
454
                if (ret == -1)
455
                    goto fail;
456
                goto the_end1;
457
            }
458
            ret = mmap_frag(real_start, start, real_start + qemu_host_page_size,
459
                            prot, flags, fd, offset);
460
            if (ret == -1)
461
                goto fail;
462
            real_start += qemu_host_page_size;
463
        }
464
        /* handle the end of the mapping */
465
        if (end < real_end) {
466
            ret = mmap_frag(real_end - qemu_host_page_size,
467
                            real_end - qemu_host_page_size, real_end,
468
                            prot, flags, fd,
469
                            offset + real_end - qemu_host_page_size - start);
470
            if (ret == -1)
471
                goto fail;
472
            real_end -= qemu_host_page_size;
473
        }
474

    
475
        /* map the middle (easier) */
476
        if (real_start < real_end) {
477
            void *p;
478
            unsigned long offset1;
479
            if (flags & MAP_ANONYMOUS)
480
                offset1 = 0;
481
            else
482
                offset1 = offset + real_start - start;
483
            p = mmap(g2h(real_start), real_end - real_start,
484
                     prot, flags, fd, offset1);
485
            if (p == MAP_FAILED)
486
                goto fail;
487
        }
488
    }
489
 the_end1:
490
    page_set_flags(start, start + len, prot | PAGE_VALID);
491
 the_end:
492
#ifdef DEBUG_MMAP
493
    printf("ret=0x" TARGET_FMT_lx "\n", start);
494
    page_dump(stdout);
495
    printf("\n");
496
#endif
497
    mmap_unlock();
498
    return start;
499
fail:
500
    mmap_unlock();
501
    return -1;
502
}
503

    
504
int target_munmap(abi_ulong start, abi_ulong len)
505
{
506
    abi_ulong end, real_start, real_end, addr;
507
    int prot, ret;
508

    
509
#ifdef DEBUG_MMAP
510
    printf("munmap: start=0x%lx len=0x%lx\n", start, len);
511
#endif
512
    if (start & ~TARGET_PAGE_MASK)
513
        return -EINVAL;
514
    len = TARGET_PAGE_ALIGN(len);
515
    if (len == 0)
516
        return -EINVAL;
517
    mmap_lock();
518
    end = start + len;
519
    real_start = start & qemu_host_page_mask;
520
    real_end = HOST_PAGE_ALIGN(end);
521

    
522
    if (start > real_start) {
523
        /* handle host page containing start */
524
        prot = 0;
525
        for(addr = real_start; addr < start; addr += TARGET_PAGE_SIZE) {
526
            prot |= page_get_flags(addr);
527
        }
528
        if (real_end == real_start + qemu_host_page_size) {
529
            for(addr = end; addr < real_end; addr += TARGET_PAGE_SIZE) {
530
                prot |= page_get_flags(addr);
531
            }
532
            end = real_end;
533
        }
534
        if (prot != 0)
535
            real_start += qemu_host_page_size;
536
    }
537
    if (end < real_end) {
538
        prot = 0;
539
        for(addr = end; addr < real_end; addr += TARGET_PAGE_SIZE) {
540
            prot |= page_get_flags(addr);
541
        }
542
        if (prot != 0)
543
            real_end -= qemu_host_page_size;
544
    }
545

    
546
    ret = 0;
547
    /* unmap what we can */
548
    if (real_start < real_end) {
549
        ret = munmap(g2h(real_start), real_end - real_start);
550
    }
551

    
552
    if (ret == 0)
553
        page_set_flags(start, start + len, 0);
554
    mmap_unlock();
555
    return ret;
556
}
557

    
558
abi_long target_mremap(abi_ulong old_addr, abi_ulong old_size,
559
                       abi_ulong new_size, unsigned long flags,
560
                       abi_ulong new_addr)
561
{
562
    int prot;
563
    void *host_addr;
564

    
565
    mmap_lock();
566

    
567
    if (flags & MREMAP_FIXED)
568
        host_addr = (void *) syscall(__NR_mremap, g2h(old_addr),
569
                                     old_size, new_size,
570
                                     flags,
571
                                     new_addr);
572
    else if (flags & MREMAP_MAYMOVE) {
573
        abi_ulong mmap_start;
574

    
575
        mmap_start = mmap_find_vma(0, new_size);
576

    
577
        if (mmap_start == -1) {
578
            errno = ENOMEM;
579
            host_addr = MAP_FAILED;
580
        } else
581
            host_addr = (void *) syscall(__NR_mremap, g2h(old_addr),
582
                                         old_size, new_size,
583
                                         flags | MREMAP_FIXED,
584
                                         g2h(mmap_start));
585
    } else {
586
        host_addr = mremap(g2h(old_addr), old_size, new_size, flags);
587
        /* Check if address fits target address space */
588
        if ((unsigned long)host_addr + new_size > (abi_ulong)-1) {
589
            /* Revert mremap() changes */
590
            host_addr = mremap(g2h(old_addr), new_size, old_size, flags);
591
            errno = ENOMEM;
592
            host_addr = MAP_FAILED;
593
        }
594
    }
595

    
596
    if (host_addr == MAP_FAILED) {
597
        new_addr = -1;
598
    } else {
599
        new_addr = h2g(host_addr);
600
        prot = page_get_flags(old_addr);
601
        page_set_flags(old_addr, old_addr + old_size, 0);
602
        page_set_flags(new_addr, new_addr + new_size, prot | PAGE_VALID);
603
    }
604
    mmap_unlock();
605
    return new_addr;
606
}
607

    
608
int target_msync(abi_ulong start, abi_ulong len, int flags)
609
{
610
    abi_ulong end;
611

    
612
    if (start & ~TARGET_PAGE_MASK)
613
        return -EINVAL;
614
    len = TARGET_PAGE_ALIGN(len);
615
    end = start + len;
616
    if (end < start)
617
        return -EINVAL;
618
    if (end == start)
619
        return 0;
620

    
621
    start &= qemu_host_page_mask;
622
    return msync(g2h(start), end - start, flags);
623
}