2 * mmap support for qemu
4 * Copyright (c) 2003 Fabrice Bellard
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.
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.
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., 675 Mass Ave, Cambridge, MA 02139, USA.
33 pthread_mutex_t mmap_mutex
;
34 static int __thread mmap_lock_count
;
38 if (mmap_lock_count
++ == 0) {
39 pthread_mutex_lock(&mmap_mutex
);
43 void mmap_unlock(void)
45 if (--mmap_lock_count
== 0) {
46 pthread_mutex_unlock(&mmap_mutex
);
50 /* Grab lock to make sure things are in a consistent state after fork(). */
51 void mmap_fork_start(void)
55 pthread_mutex_lock(&mmap_mutex
);
58 void mmap_fork_end(int child
)
61 pthread_mutex_init(&mmap_mutex
, NULL
);
63 pthread_mutex_unlock(&mmap_mutex
);
66 /* We aren't threadsafe to start with, so no need to worry about locking. */
71 void mmap_unlock(void)
76 void *qemu_vmalloc(size_t size
)
81 /* Use map and mark the pages as used. */
82 p
= mmap(NULL
, size
, PROT_READ
| PROT_WRITE
,
83 MAP_PRIVATE
| MAP_ANONYMOUS
, -1, 0);
85 addr
= (unsigned long)p
;
86 if (addr
== (target_ulong
) addr
) {
87 /* Allocated region overlaps guest address space.
89 page_set_flags(addr
& TARGET_PAGE_MASK
, TARGET_PAGE_ALIGN(addr
+ size
),
97 void *qemu_malloc(size_t size
)
101 p
= qemu_vmalloc(size
);
106 /* We use map, which is always zero initialized. */
107 void * qemu_mallocz(size_t size
)
109 return qemu_malloc(size
);
112 void qemu_free(void *ptr
)
114 /* FIXME: We should unmark the reserved pages here. However this gets
115 complicated when one target page spans multiple host pages, so we
118 p
= (size_t *)((char *)ptr
- 16);
122 /* NOTE: all the constants are the HOST ones, but addresses are target. */
123 int target_mprotect(abi_ulong start
, abi_ulong len
, int prot
)
125 abi_ulong end
, host_start
, host_end
, addr
;
129 printf("mprotect: start=0x" TARGET_FMT_lx
130 "len=0x" TARGET_FMT_lx
" prot=%c%c%c\n", start
, len
,
131 prot
& PROT_READ
? 'r' : '-',
132 prot
& PROT_WRITE
? 'w' : '-',
133 prot
& PROT_EXEC
? 'x' : '-');
136 if ((start
& ~TARGET_PAGE_MASK
) != 0)
138 len
= TARGET_PAGE_ALIGN(len
);
142 prot
&= PROT_READ
| PROT_WRITE
| PROT_EXEC
;
147 host_start
= start
& qemu_host_page_mask
;
148 host_end
= HOST_PAGE_ALIGN(end
);
149 if (start
> host_start
) {
150 /* handle host page containing start */
152 for(addr
= host_start
; addr
< start
; addr
+= TARGET_PAGE_SIZE
) {
153 prot1
|= page_get_flags(addr
);
155 if (host_end
== host_start
+ qemu_host_page_size
) {
156 for(addr
= end
; addr
< host_end
; addr
+= TARGET_PAGE_SIZE
) {
157 prot1
|= page_get_flags(addr
);
161 ret
= mprotect(g2h(host_start
), qemu_host_page_size
, prot1
& PAGE_BITS
);
164 host_start
+= qemu_host_page_size
;
166 if (end
< host_end
) {
168 for(addr
= end
; addr
< host_end
; addr
+= TARGET_PAGE_SIZE
) {
169 prot1
|= page_get_flags(addr
);
171 ret
= mprotect(g2h(host_end
- qemu_host_page_size
), qemu_host_page_size
,
175 host_end
-= qemu_host_page_size
;
178 /* handle the pages in the middle */
179 if (host_start
< host_end
) {
180 ret
= mprotect(g2h(host_start
), host_end
- host_start
, prot
);
184 page_set_flags(start
, start
+ len
, prot
| PAGE_VALID
);
192 /* map an incomplete host page */
193 static int mmap_frag(abi_ulong real_start
,
194 abi_ulong start
, abi_ulong end
,
195 int prot
, int flags
, int fd
, abi_ulong offset
)
197 abi_ulong real_end
, addr
;
201 real_end
= real_start
+ qemu_host_page_size
;
202 host_start
= g2h(real_start
);
204 /* get the protection of the target pages outside the mapping */
206 for(addr
= real_start
; addr
< real_end
; addr
++) {
207 if (addr
< start
|| addr
>= end
)
208 prot1
|= page_get_flags(addr
);
212 /* no page was there, so we allocate one */
213 void *p
= mmap(host_start
, qemu_host_page_size
, prot
,
214 flags
| MAP_ANONYMOUS
, -1, 0);
221 prot_new
= prot
| prot1
;
222 if (!(flags
& MAP_ANONYMOUS
)) {
223 /* msync() won't work here, so we return an error if write is
224 possible while it is a shared mapping */
225 if ((flags
& MAP_TYPE
) == MAP_SHARED
&&
229 /* adjust protection to be able to read */
230 if (!(prot1
& PROT_WRITE
))
231 mprotect(host_start
, qemu_host_page_size
, prot1
| PROT_WRITE
);
233 /* read the corresponding file data */
234 pread(fd
, g2h(start
), end
- start
, offset
);
236 /* put final protection */
237 if (prot_new
!= (prot1
| PROT_WRITE
))
238 mprotect(host_start
, qemu_host_page_size
, prot_new
);
240 /* just update the protection */
241 if (prot_new
!= prot1
) {
242 mprotect(host_start
, qemu_host_page_size
, prot_new
);
248 #if defined(__CYGWIN__)
249 /* Cygwin doesn't have a whole lot of address space. */
250 static abi_ulong mmap_next_start
= 0x18000000;
252 static abi_ulong mmap_next_start
= 0x40000000;
255 unsigned long last_brk
;
257 /* find a free memory area of size 'size'. The search starts at
258 'start'. If 'start' == 0, then a default start address is used.
261 /* page_init() marks pages used by the host as reserved to be sure not
263 static abi_ulong
mmap_find_vma(abi_ulong start
, abi_ulong size
)
265 abi_ulong addr
, addr1
, addr_start
;
267 unsigned long new_brk
;
269 new_brk
= (unsigned long)sbrk(0);
270 if (last_brk
&& last_brk
< new_brk
&& last_brk
== (target_ulong
)last_brk
) {
271 /* This is a hack to catch the host allocating memory with brk().
272 If it uses mmap then we loose.
273 FIXME: We really want to avoid the host allocating memory in
274 the first place, and maybe leave some slack to avoid switching
276 page_set_flags(last_brk
& TARGET_PAGE_MASK
,
277 TARGET_PAGE_ALIGN(new_brk
),
282 size
= HOST_PAGE_ALIGN(size
);
283 start
= start
& qemu_host_page_mask
;
286 addr
= mmap_next_start
;
290 for(addr1
= addr
; addr1
< (addr
+ size
); addr1
+= TARGET_PAGE_SIZE
) {
291 prot
|= page_get_flags(addr1
);
295 addr
+= qemu_host_page_size
;
296 /* we found nothing */
297 if (addr
== addr_start
)
298 return (abi_ulong
)-1;
301 mmap_next_start
= addr
+ size
;
305 /* NOTE: all the constants are the HOST ones */
306 abi_long
target_mmap(abi_ulong start
, abi_ulong len
, int prot
,
307 int flags
, int fd
, abi_ulong offset
)
309 abi_ulong ret
, end
, real_start
, real_end
, retaddr
, host_offset
, host_len
;
310 unsigned long host_start
;
315 printf("mmap: start=0x" TARGET_FMT_lx
316 " len=0x" TARGET_FMT_lx
" prot=%c%c%c flags=",
318 prot
& PROT_READ
? 'r' : '-',
319 prot
& PROT_WRITE
? 'w' : '-',
320 prot
& PROT_EXEC
? 'x' : '-');
321 if (flags
& MAP_FIXED
)
322 printf("MAP_FIXED ");
323 if (flags
& MAP_ANONYMOUS
)
325 switch(flags
& MAP_TYPE
) {
327 printf("MAP_PRIVATE ");
330 printf("MAP_SHARED ");
333 printf("[MAP_TYPE=0x%x] ", flags
& MAP_TYPE
);
336 printf("fd=%d offset=" TARGET_FMT_lx
"\n", fd
, offset
);
340 if (offset
& ~TARGET_PAGE_MASK
) {
345 len
= TARGET_PAGE_ALIGN(len
);
348 real_start
= start
& qemu_host_page_mask
;
350 if (!(flags
& MAP_FIXED
)) {
351 abi_ulong mmap_start
;
353 host_offset
= offset
& qemu_host_page_mask
;
354 host_len
= len
+ offset
- host_offset
;
355 host_len
= HOST_PAGE_ALIGN(host_len
);
356 mmap_start
= mmap_find_vma(real_start
, host_len
);
357 if (mmap_start
== (abi_ulong
)-1) {
361 /* Note: we prefer to control the mapping address. It is
362 especially important if qemu_host_page_size >
363 qemu_real_host_page_size */
364 p
= mmap(g2h(mmap_start
),
365 host_len
, prot
, flags
| MAP_FIXED
, fd
, host_offset
);
368 /* update start so that it points to the file position at 'offset' */
369 host_start
= (unsigned long)p
;
370 if (!(flags
& MAP_ANONYMOUS
))
371 host_start
+= offset
- host_offset
;
372 start
= h2g(host_start
);
377 if (start
& ~TARGET_PAGE_MASK
) {
382 real_end
= HOST_PAGE_ALIGN(end
);
384 for(addr
= real_start
; addr
< real_end
; addr
+= TARGET_PAGE_SIZE
) {
385 flg
= page_get_flags(addr
);
386 if (flg
& PAGE_RESERVED
) {
392 /* worst case: we cannot map the file because the offset is not
393 aligned, so we read it */
394 if (!(flags
& MAP_ANONYMOUS
) &&
395 (offset
& ~qemu_host_page_mask
) != (start
& ~qemu_host_page_mask
)) {
396 /* msync() won't work here, so we return an error if write is
397 possible while it is a shared mapping */
398 if ((flags
& MAP_TYPE
) == MAP_SHARED
&&
399 (prot
& PROT_WRITE
)) {
403 retaddr
= target_mmap(start
, len
, prot
| PROT_WRITE
,
404 MAP_FIXED
| MAP_PRIVATE
| MAP_ANONYMOUS
,
408 pread(fd
, g2h(start
), len
, offset
);
409 if (!(prot
& PROT_WRITE
)) {
410 ret
= target_mprotect(start
, len
, prot
);
419 /* handle the start of the mapping */
420 if (start
> real_start
) {
421 if (real_end
== real_start
+ qemu_host_page_size
) {
422 /* one single host page */
423 ret
= mmap_frag(real_start
, start
, end
,
424 prot
, flags
, fd
, offset
);
429 ret
= mmap_frag(real_start
, start
, real_start
+ qemu_host_page_size
,
430 prot
, flags
, fd
, offset
);
433 real_start
+= qemu_host_page_size
;
435 /* handle the end of the mapping */
436 if (end
< real_end
) {
437 ret
= mmap_frag(real_end
- qemu_host_page_size
,
438 real_end
- qemu_host_page_size
, real_end
,
440 offset
+ real_end
- qemu_host_page_size
- start
);
443 real_end
-= qemu_host_page_size
;
446 /* map the middle (easier) */
447 if (real_start
< real_end
) {
449 unsigned long offset1
;
450 if (flags
& MAP_ANONYMOUS
)
453 offset1
= offset
+ real_start
- start
;
454 p
= mmap(g2h(real_start
), real_end
- real_start
,
455 prot
, flags
, fd
, offset1
);
461 page_set_flags(start
, start
+ len
, prot
| PAGE_VALID
);
464 printf("ret=0x" TARGET_FMT_lx
"\n", start
);
475 int target_munmap(abi_ulong start
, abi_ulong len
)
477 abi_ulong end
, real_start
, real_end
, addr
;
481 printf("munmap: start=0x%lx len=0x%lx\n", start
, len
);
483 if (start
& ~TARGET_PAGE_MASK
)
485 len
= TARGET_PAGE_ALIGN(len
);
490 real_start
= start
& qemu_host_page_mask
;
491 real_end
= HOST_PAGE_ALIGN(end
);
493 if (start
> real_start
) {
494 /* handle host page containing start */
496 for(addr
= real_start
; addr
< start
; addr
+= TARGET_PAGE_SIZE
) {
497 prot
|= page_get_flags(addr
);
499 if (real_end
== real_start
+ qemu_host_page_size
) {
500 for(addr
= end
; addr
< real_end
; addr
+= TARGET_PAGE_SIZE
) {
501 prot
|= page_get_flags(addr
);
506 real_start
+= qemu_host_page_size
;
508 if (end
< real_end
) {
510 for(addr
= end
; addr
< real_end
; addr
+= TARGET_PAGE_SIZE
) {
511 prot
|= page_get_flags(addr
);
514 real_end
-= qemu_host_page_size
;
518 /* unmap what we can */
519 if (real_start
< real_end
) {
520 ret
= munmap(g2h(real_start
), real_end
- real_start
);
524 page_set_flags(start
, start
+ len
, 0);
529 /* XXX: currently, we only handle MAP_ANONYMOUS and not MAP_FIXED
530 blocks which have been allocated starting on a host page */
531 abi_long
target_mremap(abi_ulong old_addr
, abi_ulong old_size
,
532 abi_ulong new_size
, unsigned long flags
,
536 unsigned long host_addr
;
539 /* XXX: use 5 args syscall */
540 host_addr
= (long)mremap(g2h(old_addr
), old_size
, new_size
, flags
);
541 if (host_addr
== -1) {
544 new_addr
= h2g(host_addr
);
545 prot
= page_get_flags(old_addr
);
546 page_set_flags(old_addr
, old_addr
+ old_size
, 0);
547 page_set_flags(new_addr
, new_addr
+ new_size
, prot
| PAGE_VALID
);
553 int target_msync(abi_ulong start
, abi_ulong len
, int flags
)
557 if (start
& ~TARGET_PAGE_MASK
)
559 len
= TARGET_PAGE_ALIGN(len
);
566 start
&= qemu_host_page_mask
;
567 return msync(g2h(start
), end
- start
, flags
);