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Commit | Line | Data |
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54936004 FB |
1 | /* |
2 | * mmap support for qemu | |
5fafdf24 | 3 | * |
54936004 FB |
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 | |
8167ee88 | 17 | * along with this program; if not, see <http://www.gnu.org/licenses/>. |
54936004 | 18 | */ |
d39594e9 | 19 | #include "qemu/osdep.h" |
54936004 FB |
20 | |
21 | #include "qemu.h" | |
78f5bf1e | 22 | #include "qemu-common.h" |
54936004 FB |
23 | |
24 | //#define DEBUG_MMAP | |
25 | ||
1e6eec8b | 26 | static pthread_mutex_t mmap_mutex = PTHREAD_MUTEX_INITIALIZER; |
dfd3f85c | 27 | static __thread int mmap_lock_count; |
c8a706fe PB |
28 | |
29 | void mmap_lock(void) | |
30 | { | |
31 | if (mmap_lock_count++ == 0) { | |
32 | pthread_mutex_lock(&mmap_mutex); | |
33 | } | |
34 | } | |
35 | ||
36 | void mmap_unlock(void) | |
37 | { | |
38 | if (--mmap_lock_count == 0) { | |
39 | pthread_mutex_unlock(&mmap_mutex); | |
40 | } | |
41 | } | |
d5975363 | 42 | |
301e40ed AB |
43 | bool have_mmap_lock(void) |
44 | { | |
45 | return mmap_lock_count > 0 ? true : false; | |
46 | } | |
47 | ||
d5975363 PB |
48 | /* Grab lock to make sure things are in a consistent state after fork(). */ |
49 | void mmap_fork_start(void) | |
50 | { | |
51 | if (mmap_lock_count) | |
52 | abort(); | |
53 | pthread_mutex_lock(&mmap_mutex); | |
54 | } | |
55 | ||
56 | void mmap_fork_end(int child) | |
57 | { | |
58 | if (child) | |
59 | pthread_mutex_init(&mmap_mutex, NULL); | |
60 | else | |
61 | pthread_mutex_unlock(&mmap_mutex); | |
62 | } | |
c8a706fe | 63 | |
53a5960a | 64 | /* NOTE: all the constants are the HOST ones, but addresses are target. */ |
992f48a0 | 65 | int target_mprotect(abi_ulong start, abi_ulong len, int prot) |
54936004 | 66 | { |
992f48a0 | 67 | abi_ulong end, host_start, host_end, addr; |
54936004 FB |
68 | int prot1, ret; |
69 | ||
70 | #ifdef DEBUG_MMAP | |
0bf9e31a BS |
71 | printf("mprotect: start=0x" TARGET_ABI_FMT_lx |
72 | "len=0x" TARGET_ABI_FMT_lx " prot=%c%c%c\n", start, len, | |
54936004 FB |
73 | prot & PROT_READ ? 'r' : '-', |
74 | prot & PROT_WRITE ? 'w' : '-', | |
75 | prot & PROT_EXEC ? 'x' : '-'); | |
76 | #endif | |
77 | ||
78 | if ((start & ~TARGET_PAGE_MASK) != 0) | |
78cf3390 | 79 | return -TARGET_EINVAL; |
54936004 FB |
80 | len = TARGET_PAGE_ALIGN(len); |
81 | end = start + len; | |
ebf9a363 | 82 | if (!guest_range_valid(start, len)) { |
78cf3390 | 83 | return -TARGET_ENOMEM; |
ebf9a363 | 84 | } |
171cd1cd | 85 | prot &= PROT_READ | PROT_WRITE | PROT_EXEC; |
54936004 FB |
86 | if (len == 0) |
87 | return 0; | |
3b46e624 | 88 | |
c8a706fe | 89 | mmap_lock(); |
83fb7adf | 90 | host_start = start & qemu_host_page_mask; |
54936004 FB |
91 | host_end = HOST_PAGE_ALIGN(end); |
92 | if (start > host_start) { | |
93 | /* handle host page containing start */ | |
94 | prot1 = prot; | |
95 | for(addr = host_start; addr < start; addr += TARGET_PAGE_SIZE) { | |
96 | prot1 |= page_get_flags(addr); | |
97 | } | |
83fb7adf | 98 | if (host_end == host_start + qemu_host_page_size) { |
d418c81e FB |
99 | for(addr = end; addr < host_end; addr += TARGET_PAGE_SIZE) { |
100 | prot1 |= page_get_flags(addr); | |
101 | } | |
102 | end = host_end; | |
103 | } | |
53a5960a | 104 | ret = mprotect(g2h(host_start), qemu_host_page_size, prot1 & PAGE_BITS); |
54936004 | 105 | if (ret != 0) |
c8a706fe | 106 | goto error; |
83fb7adf | 107 | host_start += qemu_host_page_size; |
54936004 FB |
108 | } |
109 | if (end < host_end) { | |
54936004 FB |
110 | prot1 = prot; |
111 | for(addr = end; addr < host_end; addr += TARGET_PAGE_SIZE) { | |
112 | prot1 |= page_get_flags(addr); | |
113 | } | |
5fafdf24 | 114 | ret = mprotect(g2h(host_end - qemu_host_page_size), qemu_host_page_size, |
54936004 FB |
115 | prot1 & PAGE_BITS); |
116 | if (ret != 0) | |
c8a706fe | 117 | goto error; |
83fb7adf | 118 | host_end -= qemu_host_page_size; |
54936004 | 119 | } |
3b46e624 | 120 | |
54936004 FB |
121 | /* handle the pages in the middle */ |
122 | if (host_start < host_end) { | |
53a5960a | 123 | ret = mprotect(g2h(host_start), host_end - host_start, prot); |
54936004 | 124 | if (ret != 0) |
c8a706fe | 125 | goto error; |
54936004 | 126 | } |
54936004 | 127 | page_set_flags(start, start + len, prot | PAGE_VALID); |
c8a706fe | 128 | mmap_unlock(); |
54936004 | 129 | return 0; |
c8a706fe PB |
130 | error: |
131 | mmap_unlock(); | |
132 | return ret; | |
54936004 FB |
133 | } |
134 | ||
135 | /* map an incomplete host page */ | |
992f48a0 BS |
136 | static int mmap_frag(abi_ulong real_start, |
137 | abi_ulong start, abi_ulong end, | |
138 | int prot, int flags, int fd, abi_ulong offset) | |
54936004 | 139 | { |
80210bcd | 140 | abi_ulong real_end, addr; |
53a5960a | 141 | void *host_start; |
54936004 FB |
142 | int prot1, prot_new; |
143 | ||
53a5960a PB |
144 | real_end = real_start + qemu_host_page_size; |
145 | host_start = g2h(real_start); | |
54936004 FB |
146 | |
147 | /* get the protection of the target pages outside the mapping */ | |
148 | prot1 = 0; | |
53a5960a | 149 | for(addr = real_start; addr < real_end; addr++) { |
54936004 FB |
150 | if (addr < start || addr >= end) |
151 | prot1 |= page_get_flags(addr); | |
152 | } | |
3b46e624 | 153 | |
54936004 FB |
154 | if (prot1 == 0) { |
155 | /* no page was there, so we allocate one */ | |
80210bcd TS |
156 | void *p = mmap(host_start, qemu_host_page_size, prot, |
157 | flags | MAP_ANONYMOUS, -1, 0); | |
158 | if (p == MAP_FAILED) | |
159 | return -1; | |
53a5960a | 160 | prot1 = prot; |
54936004 FB |
161 | } |
162 | prot1 &= PAGE_BITS; | |
163 | ||
164 | prot_new = prot | prot1; | |
165 | if (!(flags & MAP_ANONYMOUS)) { | |
166 | /* msync() won't work here, so we return an error if write is | |
167 | possible while it is a shared mapping */ | |
168 | if ((flags & MAP_TYPE) == MAP_SHARED && | |
169 | (prot & PROT_WRITE)) | |
ee636500 | 170 | return -1; |
54936004 FB |
171 | |
172 | /* adjust protection to be able to read */ | |
173 | if (!(prot1 & PROT_WRITE)) | |
53a5960a | 174 | mprotect(host_start, qemu_host_page_size, prot1 | PROT_WRITE); |
3b46e624 | 175 | |
54936004 | 176 | /* read the corresponding file data */ |
fb7e378c KS |
177 | if (pread(fd, g2h(start), end - start, offset) == -1) |
178 | return -1; | |
3b46e624 | 179 | |
54936004 FB |
180 | /* put final protection */ |
181 | if (prot_new != (prot1 | PROT_WRITE)) | |
53a5960a | 182 | mprotect(host_start, qemu_host_page_size, prot_new); |
54936004 | 183 | } else { |
54936004 | 184 | if (prot_new != prot1) { |
53a5960a | 185 | mprotect(host_start, qemu_host_page_size, prot_new); |
54936004 | 186 | } |
e6deac9c CG |
187 | if (prot_new & PROT_WRITE) { |
188 | memset(g2h(start), 0, end - start); | |
189 | } | |
54936004 FB |
190 | } |
191 | return 0; | |
192 | } | |
193 | ||
14f24e14 RH |
194 | #if HOST_LONG_BITS == 64 && TARGET_ABI_BITS == 64 |
195 | # define TASK_UNMAPPED_BASE (1ul << 38) | |
a03e2d42 | 196 | #else |
14f24e14 | 197 | # define TASK_UNMAPPED_BASE 0x40000000 |
a03e2d42 | 198 | #endif |
59e9d91c | 199 | abi_ulong mmap_next_start = TASK_UNMAPPED_BASE; |
a03e2d42 | 200 | |
0776590d PB |
201 | unsigned long last_brk; |
202 | ||
68a1c816 PB |
203 | /* Subroutine of mmap_find_vma, used when we have pre-allocated a chunk |
204 | of guest address space. */ | |
205 | static abi_ulong mmap_find_vma_reserved(abi_ulong start, abi_ulong size) | |
206 | { | |
207 | abi_ulong addr; | |
59e9d91c | 208 | abi_ulong end_addr; |
68a1c816 PB |
209 | int prot; |
210 | int looped = 0; | |
211 | ||
b76f21a7 | 212 | if (size > reserved_va) { |
68a1c816 PB |
213 | return (abi_ulong)-1; |
214 | } | |
215 | ||
59e9d91c PM |
216 | size = HOST_PAGE_ALIGN(size); |
217 | end_addr = start + size; | |
b76f21a7 LV |
218 | if (end_addr > reserved_va) { |
219 | end_addr = reserved_va; | |
59e9d91c PM |
220 | } |
221 | addr = end_addr - qemu_host_page_size; | |
222 | ||
223 | while (1) { | |
224 | if (addr > end_addr) { | |
68a1c816 PB |
225 | if (looped) { |
226 | return (abi_ulong)-1; | |
227 | } | |
b76f21a7 | 228 | end_addr = reserved_va; |
59e9d91c | 229 | addr = end_addr - qemu_host_page_size; |
68a1c816 PB |
230 | looped = 1; |
231 | continue; | |
232 | } | |
233 | prot = page_get_flags(addr); | |
234 | if (prot) { | |
59e9d91c PM |
235 | end_addr = addr; |
236 | } | |
95e6d430 | 237 | if (addr && addr + size == end_addr) { |
59e9d91c | 238 | break; |
68a1c816 | 239 | } |
59e9d91c | 240 | addr -= qemu_host_page_size; |
68a1c816 | 241 | } |
59e9d91c PM |
242 | |
243 | if (start == mmap_next_start) { | |
244 | mmap_next_start = addr; | |
245 | } | |
246 | ||
247 | return addr; | |
68a1c816 PB |
248 | } |
249 | ||
fe3b4152 KS |
250 | /* |
251 | * Find and reserve a free memory area of size 'size'. The search | |
252 | * starts at 'start'. | |
253 | * It must be called with mmap_lock() held. | |
254 | * Return -1 if error. | |
255 | */ | |
9ad197d9 | 256 | abi_ulong mmap_find_vma(abi_ulong start, abi_ulong size) |
a03e2d42 | 257 | { |
14f24e14 | 258 | void *ptr, *prev; |
fe3b4152 | 259 | abi_ulong addr; |
14f24e14 | 260 | int wrapped, repeat; |
fe3b4152 KS |
261 | |
262 | /* If 'start' == 0, then a default start address is used. */ | |
14f24e14 | 263 | if (start == 0) { |
fe3b4152 | 264 | start = mmap_next_start; |
14f24e14 RH |
265 | } else { |
266 | start &= qemu_host_page_mask; | |
267 | } | |
268 | ||
269 | size = HOST_PAGE_ALIGN(size); | |
fe3b4152 | 270 | |
b76f21a7 | 271 | if (reserved_va) { |
68a1c816 PB |
272 | return mmap_find_vma_reserved(start, size); |
273 | } | |
274 | ||
a03e2d42 | 275 | addr = start; |
14f24e14 RH |
276 | wrapped = repeat = 0; |
277 | prev = 0; | |
fe3b4152 | 278 | |
14f24e14 | 279 | for (;; prev = ptr) { |
fe3b4152 KS |
280 | /* |
281 | * Reserve needed memory area to avoid a race. | |
282 | * It should be discarded using: | |
283 | * - mmap() with MAP_FIXED flag | |
284 | * - mremap() with MREMAP_FIXED flag | |
285 | * - shmat() with SHM_REMAP flag | |
286 | */ | |
14f24e14 | 287 | ptr = mmap(g2h(addr), size, PROT_NONE, |
fe3b4152 KS |
288 | MAP_ANONYMOUS|MAP_PRIVATE|MAP_NORESERVE, -1, 0); |
289 | ||
290 | /* ENOMEM, if host address space has no memory */ | |
14f24e14 | 291 | if (ptr == MAP_FAILED) { |
fe3b4152 | 292 | return (abi_ulong)-1; |
14f24e14 RH |
293 | } |
294 | ||
295 | /* Count the number of sequential returns of the same address. | |
296 | This is used to modify the search algorithm below. */ | |
297 | repeat = (ptr == prev ? repeat + 1 : 0); | |
298 | ||
299 | if (h2g_valid(ptr + size - 1)) { | |
300 | addr = h2g(ptr); | |
fe3b4152 | 301 | |
14f24e14 RH |
302 | if ((addr & ~TARGET_PAGE_MASK) == 0) { |
303 | /* Success. */ | |
304 | if (start == mmap_next_start && addr >= TASK_UNMAPPED_BASE) { | |
305 | mmap_next_start = addr + size; | |
306 | } | |
307 | return addr; | |
308 | } | |
fe3b4152 | 309 | |
14f24e14 RH |
310 | /* The address is not properly aligned for the target. */ |
311 | switch (repeat) { | |
312 | case 0: | |
313 | /* Assume the result that the kernel gave us is the | |
314 | first with enough free space, so start again at the | |
315 | next higher target page. */ | |
316 | addr = TARGET_PAGE_ALIGN(addr); | |
317 | break; | |
318 | case 1: | |
319 | /* Sometimes the kernel decides to perform the allocation | |
320 | at the top end of memory instead. */ | |
321 | addr &= TARGET_PAGE_MASK; | |
322 | break; | |
323 | case 2: | |
324 | /* Start over at low memory. */ | |
325 | addr = 0; | |
326 | break; | |
327 | default: | |
328 | /* Fail. This unaligned block must the last. */ | |
329 | addr = -1; | |
330 | break; | |
331 | } | |
332 | } else { | |
333 | /* Since the result the kernel gave didn't fit, start | |
334 | again at low memory. If any repetition, fail. */ | |
335 | addr = (repeat ? -1 : 0); | |
336 | } | |
337 | ||
338 | /* Unmap and try again. */ | |
fe3b4152 | 339 | munmap(ptr, size); |
fe3b4152 | 340 | |
14f24e14 | 341 | /* ENOMEM if we checked the whole of the target address space. */ |
d0b3e4f5 | 342 | if (addr == (abi_ulong)-1) { |
a03e2d42 | 343 | return (abi_ulong)-1; |
14f24e14 RH |
344 | } else if (addr == 0) { |
345 | if (wrapped) { | |
346 | return (abi_ulong)-1; | |
347 | } | |
348 | wrapped = 1; | |
349 | /* Don't actually use 0 when wrapping, instead indicate | |
8186e783 | 350 | that we'd truly like an allocation in low memory. */ |
14f24e14 RH |
351 | addr = (mmap_min_addr > TARGET_PAGE_SIZE |
352 | ? TARGET_PAGE_ALIGN(mmap_min_addr) | |
353 | : TARGET_PAGE_SIZE); | |
354 | } else if (wrapped && addr >= start) { | |
355 | return (abi_ulong)-1; | |
356 | } | |
a03e2d42 | 357 | } |
a03e2d42 FB |
358 | } |
359 | ||
54936004 | 360 | /* NOTE: all the constants are the HOST ones */ |
992f48a0 BS |
361 | abi_long target_mmap(abi_ulong start, abi_ulong len, int prot, |
362 | int flags, int fd, abi_ulong offset) | |
54936004 | 363 | { |
992f48a0 | 364 | abi_ulong ret, end, real_start, real_end, retaddr, host_offset, host_len; |
54936004 | 365 | |
c8a706fe | 366 | mmap_lock(); |
54936004 FB |
367 | #ifdef DEBUG_MMAP |
368 | { | |
0bf9e31a BS |
369 | printf("mmap: start=0x" TARGET_ABI_FMT_lx |
370 | " len=0x" TARGET_ABI_FMT_lx " prot=%c%c%c flags=", | |
5fafdf24 | 371 | start, len, |
54936004 FB |
372 | prot & PROT_READ ? 'r' : '-', |
373 | prot & PROT_WRITE ? 'w' : '-', | |
374 | prot & PROT_EXEC ? 'x' : '-'); | |
375 | if (flags & MAP_FIXED) | |
376 | printf("MAP_FIXED "); | |
377 | if (flags & MAP_ANONYMOUS) | |
378 | printf("MAP_ANON "); | |
379 | switch(flags & MAP_TYPE) { | |
380 | case MAP_PRIVATE: | |
381 | printf("MAP_PRIVATE "); | |
382 | break; | |
383 | case MAP_SHARED: | |
384 | printf("MAP_SHARED "); | |
385 | break; | |
386 | default: | |
387 | printf("[MAP_TYPE=0x%x] ", flags & MAP_TYPE); | |
388 | break; | |
389 | } | |
0bf9e31a | 390 | printf("fd=%d offset=" TARGET_ABI_FMT_lx "\n", fd, offset); |
54936004 FB |
391 | } |
392 | #endif | |
393 | ||
38138fab | 394 | if (!len) { |
e89f07d3 | 395 | errno = EINVAL; |
c8a706fe | 396 | goto fail; |
e89f07d3 | 397 | } |
54936004 | 398 | |
38138fab | 399 | /* Also check for overflows... */ |
54936004 | 400 | len = TARGET_PAGE_ALIGN(len); |
38138fab AB |
401 | if (!len) { |
402 | errno = ENOMEM; | |
403 | goto fail; | |
404 | } | |
405 | ||
406 | if (offset & ~TARGET_PAGE_MASK) { | |
407 | errno = EINVAL; | |
408 | goto fail; | |
409 | } | |
410 | ||
53a5960a | 411 | real_start = start & qemu_host_page_mask; |
a5e7ee46 RH |
412 | host_offset = offset & qemu_host_page_mask; |
413 | ||
414 | /* If the user is asking for the kernel to find a location, do that | |
415 | before we truncate the length for mapping files below. */ | |
416 | if (!(flags & MAP_FIXED)) { | |
417 | host_len = len + offset - host_offset; | |
418 | host_len = HOST_PAGE_ALIGN(host_len); | |
419 | start = mmap_find_vma(real_start, host_len); | |
420 | if (start == (abi_ulong)-1) { | |
421 | errno = ENOMEM; | |
422 | goto fail; | |
423 | } | |
424 | } | |
54936004 | 425 | |
54c5a2ae EI |
426 | /* When mapping files into a memory area larger than the file, accesses |
427 | to pages beyond the file size will cause a SIGBUS. | |
428 | ||
429 | For example, if mmaping a file of 100 bytes on a host with 4K pages | |
430 | emulating a target with 8K pages, the target expects to be able to | |
431 | access the first 8K. But the host will trap us on any access beyond | |
432 | 4K. | |
433 | ||
434 | When emulating a target with a larger page-size than the hosts, we | |
435 | may need to truncate file maps at EOF and add extra anonymous pages | |
436 | up to the targets page boundary. */ | |
437 | ||
35f2fd04 MAL |
438 | if ((qemu_real_host_page_size < qemu_host_page_size) && |
439 | !(flags & MAP_ANONYMOUS)) { | |
440 | struct stat sb; | |
54c5a2ae EI |
441 | |
442 | if (fstat (fd, &sb) == -1) | |
443 | goto fail; | |
444 | ||
445 | /* Are we trying to create a map beyond EOF?. */ | |
446 | if (offset + len > sb.st_size) { | |
447 | /* If so, truncate the file map at eof aligned with | |
448 | the hosts real pagesize. Additional anonymous maps | |
449 | will be created beyond EOF. */ | |
0c2d70c4 | 450 | len = REAL_HOST_PAGE_ALIGN(sb.st_size - offset); |
54c5a2ae EI |
451 | } |
452 | } | |
453 | ||
54936004 | 454 | if (!(flags & MAP_FIXED)) { |
a5e7ee46 | 455 | unsigned long host_start; |
a03e2d42 | 456 | void *p; |
a5e7ee46 | 457 | |
a03e2d42 FB |
458 | host_len = len + offset - host_offset; |
459 | host_len = HOST_PAGE_ALIGN(host_len); | |
a5e7ee46 | 460 | |
a03e2d42 FB |
461 | /* Note: we prefer to control the mapping address. It is |
462 | especially important if qemu_host_page_size > | |
463 | qemu_real_host_page_size */ | |
a5e7ee46 RH |
464 | p = mmap(g2h(start), host_len, prot, |
465 | flags | MAP_FIXED | MAP_ANONYMOUS, -1, 0); | |
a03e2d42 | 466 | if (p == MAP_FAILED) |
c8a706fe | 467 | goto fail; |
a03e2d42 FB |
468 | /* update start so that it points to the file position at 'offset' */ |
469 | host_start = (unsigned long)p; | |
54c5a2ae | 470 | if (!(flags & MAP_ANONYMOUS)) { |
a5e7ee46 | 471 | p = mmap(g2h(start), len, prot, |
54c5a2ae | 472 | flags | MAP_FIXED, fd, host_offset); |
8384274e JB |
473 | if (p == MAP_FAILED) { |
474 | munmap(g2h(start), host_len); | |
475 | goto fail; | |
476 | } | |
a03e2d42 | 477 | host_start += offset - host_offset; |
54c5a2ae | 478 | } |
a03e2d42 FB |
479 | start = h2g(host_start); |
480 | } else { | |
481 | if (start & ~TARGET_PAGE_MASK) { | |
e89f07d3 | 482 | errno = EINVAL; |
c8a706fe | 483 | goto fail; |
e89f07d3 | 484 | } |
a03e2d42 FB |
485 | end = start + len; |
486 | real_end = HOST_PAGE_ALIGN(end); | |
7ab240ad | 487 | |
45bc1f52 AJ |
488 | /* |
489 | * Test if requested memory area fits target address space | |
490 | * It can fail only on 64-bit host with 32-bit target. | |
491 | * On any other target/host host mmap() handles this error correctly. | |
492 | */ | |
ebf9a363 MF |
493 | if (!guest_range_valid(start, len)) { |
494 | errno = ENOMEM; | |
45bc1f52 AJ |
495 | goto fail; |
496 | } | |
497 | ||
a03e2d42 FB |
498 | /* worst case: we cannot map the file because the offset is not |
499 | aligned, so we read it */ | |
500 | if (!(flags & MAP_ANONYMOUS) && | |
501 | (offset & ~qemu_host_page_mask) != (start & ~qemu_host_page_mask)) { | |
502 | /* msync() won't work here, so we return an error if write is | |
503 | possible while it is a shared mapping */ | |
504 | if ((flags & MAP_TYPE) == MAP_SHARED && | |
505 | (prot & PROT_WRITE)) { | |
506 | errno = EINVAL; | |
c8a706fe | 507 | goto fail; |
a03e2d42 FB |
508 | } |
509 | retaddr = target_mmap(start, len, prot | PROT_WRITE, | |
510 | MAP_FIXED | MAP_PRIVATE | MAP_ANONYMOUS, | |
511 | -1, 0); | |
512 | if (retaddr == -1) | |
c8a706fe | 513 | goto fail; |
fb7e378c KS |
514 | if (pread(fd, g2h(start), len, offset) == -1) |
515 | goto fail; | |
a03e2d42 FB |
516 | if (!(prot & PROT_WRITE)) { |
517 | ret = target_mprotect(start, len, prot); | |
86abac06 | 518 | assert(ret == 0); |
a03e2d42 FB |
519 | } |
520 | goto the_end; | |
54936004 | 521 | } |
a03e2d42 FB |
522 | |
523 | /* handle the start of the mapping */ | |
524 | if (start > real_start) { | |
525 | if (real_end == real_start + qemu_host_page_size) { | |
526 | /* one single host page */ | |
527 | ret = mmap_frag(real_start, start, end, | |
528 | prot, flags, fd, offset); | |
529 | if (ret == -1) | |
c8a706fe | 530 | goto fail; |
a03e2d42 FB |
531 | goto the_end1; |
532 | } | |
533 | ret = mmap_frag(real_start, start, real_start + qemu_host_page_size, | |
54936004 FB |
534 | prot, flags, fd, offset); |
535 | if (ret == -1) | |
c8a706fe | 536 | goto fail; |
a03e2d42 FB |
537 | real_start += qemu_host_page_size; |
538 | } | |
539 | /* handle the end of the mapping */ | |
540 | if (end < real_end) { | |
541 | ret = mmap_frag(real_end - qemu_host_page_size, | |
530c0032 | 542 | real_end - qemu_host_page_size, end, |
a03e2d42 FB |
543 | prot, flags, fd, |
544 | offset + real_end - qemu_host_page_size - start); | |
545 | if (ret == -1) | |
c8a706fe | 546 | goto fail; |
a03e2d42 | 547 | real_end -= qemu_host_page_size; |
54936004 | 548 | } |
3b46e624 | 549 | |
a03e2d42 FB |
550 | /* map the middle (easier) */ |
551 | if (real_start < real_end) { | |
552 | void *p; | |
553 | unsigned long offset1; | |
554 | if (flags & MAP_ANONYMOUS) | |
555 | offset1 = 0; | |
556 | else | |
557 | offset1 = offset + real_start - start; | |
558 | p = mmap(g2h(real_start), real_end - real_start, | |
559 | prot, flags, fd, offset1); | |
560 | if (p == MAP_FAILED) | |
c8a706fe | 561 | goto fail; |
a03e2d42 | 562 | } |
54936004 FB |
563 | } |
564 | the_end1: | |
565 | page_set_flags(start, start + len, prot | PAGE_VALID); | |
566 | the_end: | |
567 | #ifdef DEBUG_MMAP | |
0bf9e31a | 568 | printf("ret=0x" TARGET_ABI_FMT_lx "\n", start); |
54936004 FB |
569 | page_dump(stdout); |
570 | printf("\n"); | |
571 | #endif | |
35865339 | 572 | tb_invalidate_phys_range(start, start + len); |
c8a706fe | 573 | mmap_unlock(); |
54936004 | 574 | return start; |
c8a706fe PB |
575 | fail: |
576 | mmap_unlock(); | |
577 | return -1; | |
54936004 FB |
578 | } |
579 | ||
68a1c816 PB |
580 | static void mmap_reserve(abi_ulong start, abi_ulong size) |
581 | { | |
582 | abi_ulong real_start; | |
583 | abi_ulong real_end; | |
584 | abi_ulong addr; | |
585 | abi_ulong end; | |
586 | int prot; | |
587 | ||
588 | real_start = start & qemu_host_page_mask; | |
589 | real_end = HOST_PAGE_ALIGN(start + size); | |
590 | end = start + size; | |
591 | if (start > real_start) { | |
592 | /* handle host page containing start */ | |
593 | prot = 0; | |
594 | for (addr = real_start; addr < start; addr += TARGET_PAGE_SIZE) { | |
595 | prot |= page_get_flags(addr); | |
596 | } | |
597 | if (real_end == real_start + qemu_host_page_size) { | |
598 | for (addr = end; addr < real_end; addr += TARGET_PAGE_SIZE) { | |
599 | prot |= page_get_flags(addr); | |
600 | } | |
601 | end = real_end; | |
602 | } | |
603 | if (prot != 0) | |
604 | real_start += qemu_host_page_size; | |
605 | } | |
606 | if (end < real_end) { | |
607 | prot = 0; | |
608 | for (addr = end; addr < real_end; addr += TARGET_PAGE_SIZE) { | |
609 | prot |= page_get_flags(addr); | |
610 | } | |
611 | if (prot != 0) | |
612 | real_end -= qemu_host_page_size; | |
613 | } | |
614 | if (real_start != real_end) { | |
615 | mmap(g2h(real_start), real_end - real_start, PROT_NONE, | |
616 | MAP_FIXED | MAP_ANONYMOUS | MAP_PRIVATE | MAP_NORESERVE, | |
617 | -1, 0); | |
618 | } | |
619 | } | |
620 | ||
992f48a0 | 621 | int target_munmap(abi_ulong start, abi_ulong len) |
54936004 | 622 | { |
992f48a0 | 623 | abi_ulong end, real_start, real_end, addr; |
54936004 FB |
624 | int prot, ret; |
625 | ||
626 | #ifdef DEBUG_MMAP | |
0bf9e31a BS |
627 | printf("munmap: start=0x" TARGET_ABI_FMT_lx " len=0x" |
628 | TARGET_ABI_FMT_lx "\n", | |
629 | start, len); | |
54936004 FB |
630 | #endif |
631 | if (start & ~TARGET_PAGE_MASK) | |
78cf3390 | 632 | return -TARGET_EINVAL; |
54936004 | 633 | len = TARGET_PAGE_ALIGN(len); |
ebf9a363 | 634 | if (len == 0 || !guest_range_valid(start, len)) { |
78cf3390 | 635 | return -TARGET_EINVAL; |
ebf9a363 MF |
636 | } |
637 | ||
c8a706fe | 638 | mmap_lock(); |
54936004 | 639 | end = start + len; |
53a5960a PB |
640 | real_start = start & qemu_host_page_mask; |
641 | real_end = HOST_PAGE_ALIGN(end); | |
54936004 | 642 | |
53a5960a | 643 | if (start > real_start) { |
54936004 FB |
644 | /* handle host page containing start */ |
645 | prot = 0; | |
53a5960a | 646 | for(addr = real_start; addr < start; addr += TARGET_PAGE_SIZE) { |
54936004 FB |
647 | prot |= page_get_flags(addr); |
648 | } | |
53a5960a PB |
649 | if (real_end == real_start + qemu_host_page_size) { |
650 | for(addr = end; addr < real_end; addr += TARGET_PAGE_SIZE) { | |
d418c81e FB |
651 | prot |= page_get_flags(addr); |
652 | } | |
53a5960a | 653 | end = real_end; |
d418c81e | 654 | } |
54936004 | 655 | if (prot != 0) |
53a5960a | 656 | real_start += qemu_host_page_size; |
54936004 | 657 | } |
53a5960a | 658 | if (end < real_end) { |
54936004 | 659 | prot = 0; |
53a5960a | 660 | for(addr = end; addr < real_end; addr += TARGET_PAGE_SIZE) { |
54936004 FB |
661 | prot |= page_get_flags(addr); |
662 | } | |
663 | if (prot != 0) | |
53a5960a | 664 | real_end -= qemu_host_page_size; |
54936004 | 665 | } |
3b46e624 | 666 | |
c8a706fe | 667 | ret = 0; |
54936004 | 668 | /* unmap what we can */ |
53a5960a | 669 | if (real_start < real_end) { |
b76f21a7 | 670 | if (reserved_va) { |
68a1c816 PB |
671 | mmap_reserve(real_start, real_end - real_start); |
672 | } else { | |
673 | ret = munmap(g2h(real_start), real_end - real_start); | |
674 | } | |
54936004 FB |
675 | } |
676 | ||
77a8f1a5 | 677 | if (ret == 0) { |
c8a706fe | 678 | page_set_flags(start, start + len, 0); |
35865339 | 679 | tb_invalidate_phys_range(start, start + len); |
77a8f1a5 | 680 | } |
c8a706fe PB |
681 | mmap_unlock(); |
682 | return ret; | |
54936004 FB |
683 | } |
684 | ||
992f48a0 BS |
685 | abi_long target_mremap(abi_ulong old_addr, abi_ulong old_size, |
686 | abi_ulong new_size, unsigned long flags, | |
687 | abi_ulong new_addr) | |
54936004 FB |
688 | { |
689 | int prot; | |
f19412a2 | 690 | void *host_addr; |
54936004 | 691 | |
ebf9a363 MF |
692 | if (!guest_range_valid(old_addr, old_size) || |
693 | ((flags & MREMAP_FIXED) && | |
694 | !guest_range_valid(new_addr, new_size))) { | |
695 | errno = ENOMEM; | |
696 | return -1; | |
697 | } | |
698 | ||
c8a706fe | 699 | mmap_lock(); |
f19412a2 | 700 | |
68a1c816 | 701 | if (flags & MREMAP_FIXED) { |
52956a9b FJ |
702 | host_addr = mremap(g2h(old_addr), old_size, new_size, |
703 | flags, g2h(new_addr)); | |
68a1c816 | 704 | |
b76f21a7 | 705 | if (reserved_va && host_addr != MAP_FAILED) { |
68a1c816 PB |
706 | /* If new and old addresses overlap then the above mremap will |
707 | already have failed with EINVAL. */ | |
708 | mmap_reserve(old_addr, old_size); | |
709 | } | |
710 | } else if (flags & MREMAP_MAYMOVE) { | |
f19412a2 AJ |
711 | abi_ulong mmap_start; |
712 | ||
713 | mmap_start = mmap_find_vma(0, new_size); | |
714 | ||
715 | if (mmap_start == -1) { | |
716 | errno = ENOMEM; | |
717 | host_addr = MAP_FAILED; | |
68a1c816 | 718 | } else { |
52956a9b FJ |
719 | host_addr = mremap(g2h(old_addr), old_size, new_size, |
720 | flags | MREMAP_FIXED, g2h(mmap_start)); | |
b76f21a7 | 721 | if (reserved_va) { |
c65ffe6d | 722 | mmap_reserve(old_addr, old_size); |
723 | } | |
68a1c816 | 724 | } |
3af72a4d | 725 | } else { |
68a1c816 | 726 | int prot = 0; |
b76f21a7 | 727 | if (reserved_va && old_size < new_size) { |
68a1c816 PB |
728 | abi_ulong addr; |
729 | for (addr = old_addr + old_size; | |
730 | addr < old_addr + new_size; | |
731 | addr++) { | |
732 | prot |= page_get_flags(addr); | |
733 | } | |
734 | } | |
735 | if (prot == 0) { | |
736 | host_addr = mremap(g2h(old_addr), old_size, new_size, flags); | |
b76f21a7 | 737 | if (host_addr != MAP_FAILED && reserved_va && old_size > new_size) { |
68a1c816 PB |
738 | mmap_reserve(old_addr + old_size, new_size - old_size); |
739 | } | |
740 | } else { | |
741 | errno = ENOMEM; | |
742 | host_addr = MAP_FAILED; | |
743 | } | |
f19412a2 AJ |
744 | /* Check if address fits target address space */ |
745 | if ((unsigned long)host_addr + new_size > (abi_ulong)-1) { | |
746 | /* Revert mremap() changes */ | |
747 | host_addr = mremap(g2h(old_addr), new_size, old_size, flags); | |
748 | errno = ENOMEM; | |
749 | host_addr = MAP_FAILED; | |
750 | } | |
751 | } | |
752 | ||
753 | if (host_addr == MAP_FAILED) { | |
c8a706fe PB |
754 | new_addr = -1; |
755 | } else { | |
756 | new_addr = h2g(host_addr); | |
757 | prot = page_get_flags(old_addr); | |
758 | page_set_flags(old_addr, old_addr + old_size, 0); | |
759 | page_set_flags(new_addr, new_addr + new_size, prot | PAGE_VALID); | |
760 | } | |
35865339 | 761 | tb_invalidate_phys_range(new_addr, new_addr + new_size); |
c8a706fe | 762 | mmap_unlock(); |
54936004 FB |
763 | return new_addr; |
764 | } |