uvm_mmap.c revision 1.35 1 1.35 thorpej /* $NetBSD: uvm_mmap.c,v 1.35 1999/07/17 21:35:50 thorpej Exp $ */
2 1.1 mrg
3 1.1 mrg /*
4 1.1 mrg * Copyright (c) 1997 Charles D. Cranor and Washington University.
5 1.1 mrg * Copyright (c) 1991, 1993 The Regents of the University of California.
6 1.1 mrg * Copyright (c) 1988 University of Utah.
7 1.1 mrg *
8 1.1 mrg * All rights reserved.
9 1.1 mrg *
10 1.1 mrg * This code is derived from software contributed to Berkeley by
11 1.1 mrg * the Systems Programming Group of the University of Utah Computer
12 1.1 mrg * Science Department.
13 1.1 mrg *
14 1.1 mrg * Redistribution and use in source and binary forms, with or without
15 1.1 mrg * modification, are permitted provided that the following conditions
16 1.1 mrg * are met:
17 1.1 mrg * 1. Redistributions of source code must retain the above copyright
18 1.1 mrg * notice, this list of conditions and the following disclaimer.
19 1.1 mrg * 2. Redistributions in binary form must reproduce the above copyright
20 1.1 mrg * notice, this list of conditions and the following disclaimer in the
21 1.1 mrg * documentation and/or other materials provided with the distribution.
22 1.1 mrg * 3. All advertising materials mentioning features or use of this software
23 1.1 mrg * must display the following acknowledgement:
24 1.1 mrg * This product includes software developed by the Charles D. Cranor,
25 1.1 mrg * Washington University, University of California, Berkeley and
26 1.1 mrg * its contributors.
27 1.1 mrg * 4. Neither the name of the University nor the names of its contributors
28 1.1 mrg * may be used to endorse or promote products derived from this software
29 1.1 mrg * without specific prior written permission.
30 1.1 mrg *
31 1.1 mrg * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
32 1.1 mrg * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
33 1.1 mrg * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
34 1.1 mrg * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
35 1.1 mrg * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
36 1.1 mrg * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
37 1.1 mrg * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
38 1.1 mrg * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
39 1.1 mrg * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
40 1.1 mrg * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
41 1.1 mrg * SUCH DAMAGE.
42 1.1 mrg *
43 1.1 mrg * from: Utah $Hdr: vm_mmap.c 1.6 91/10/21$
44 1.1 mrg * @(#)vm_mmap.c 8.5 (Berkeley) 5/19/94
45 1.3 mrg * from: Id: uvm_mmap.c,v 1.1.2.14 1998/01/05 21:04:26 chuck Exp
46 1.1 mrg */
47 1.1 mrg
48 1.1 mrg /*
49 1.1 mrg * uvm_mmap.c: system call interface into VM system, plus kernel vm_mmap
50 1.1 mrg * function.
51 1.1 mrg */
52 1.1 mrg #include <sys/param.h>
53 1.1 mrg #include <sys/systm.h>
54 1.1 mrg #include <sys/file.h>
55 1.1 mrg #include <sys/filedesc.h>
56 1.1 mrg #include <sys/resourcevar.h>
57 1.1 mrg #include <sys/mman.h>
58 1.1 mrg #include <sys/mount.h>
59 1.1 mrg #include <sys/proc.h>
60 1.1 mrg #include <sys/malloc.h>
61 1.1 mrg #include <sys/vnode.h>
62 1.1 mrg #include <sys/conf.h>
63 1.9 mrg #include <sys/stat.h>
64 1.1 mrg
65 1.1 mrg #include <miscfs/specfs/specdev.h>
66 1.1 mrg
67 1.1 mrg #include <vm/vm.h>
68 1.1 mrg #include <vm/vm_page.h>
69 1.1 mrg #include <vm/vm_kern.h>
70 1.1 mrg
71 1.1 mrg #include <sys/syscallargs.h>
72 1.1 mrg
73 1.1 mrg #include <uvm/uvm.h>
74 1.1 mrg #include <uvm/uvm_device.h>
75 1.1 mrg #include <uvm/uvm_vnode.h>
76 1.1 mrg
77 1.1 mrg
78 1.1 mrg /*
79 1.1 mrg * unimplemented VM system calls:
80 1.1 mrg */
81 1.1 mrg
82 1.1 mrg /*
83 1.1 mrg * sys_sbrk: sbrk system call.
84 1.1 mrg */
85 1.1 mrg
86 1.1 mrg /* ARGSUSED */
87 1.6 mrg int
88 1.6 mrg sys_sbrk(p, v, retval)
89 1.6 mrg struct proc *p;
90 1.6 mrg void *v;
91 1.6 mrg register_t *retval;
92 1.1 mrg {
93 1.1 mrg #if 0
94 1.6 mrg struct sys_sbrk_args /* {
95 1.33 kleink syscallarg(intptr_t) incr;
96 1.20 mrg } */ *uap = v;
97 1.1 mrg #endif
98 1.6 mrg
99 1.17 kleink return (ENOSYS);
100 1.1 mrg }
101 1.1 mrg
102 1.1 mrg /*
103 1.1 mrg * sys_sstk: sstk system call.
104 1.1 mrg */
105 1.1 mrg
106 1.1 mrg /* ARGSUSED */
107 1.6 mrg int
108 1.6 mrg sys_sstk(p, v, retval)
109 1.6 mrg struct proc *p;
110 1.6 mrg void *v;
111 1.6 mrg register_t *retval;
112 1.1 mrg {
113 1.1 mrg #if 0
114 1.6 mrg struct sys_sstk_args /* {
115 1.20 mrg syscallarg(int) incr;
116 1.20 mrg } */ *uap = v;
117 1.1 mrg #endif
118 1.6 mrg
119 1.17 kleink return (ENOSYS);
120 1.1 mrg }
121 1.1 mrg
122 1.1 mrg /*
123 1.1 mrg * sys_mincore: determine if pages are in core or not.
124 1.1 mrg */
125 1.1 mrg
126 1.1 mrg /* ARGSUSED */
127 1.6 mrg int
128 1.6 mrg sys_mincore(p, v, retval)
129 1.6 mrg struct proc *p;
130 1.6 mrg void *v;
131 1.6 mrg register_t *retval;
132 1.1 mrg {
133 1.6 mrg struct sys_mincore_args /* {
134 1.22 thorpej syscallarg(void *) addr;
135 1.20 mrg syscallarg(size_t) len;
136 1.20 mrg syscallarg(char *) vec;
137 1.20 mrg } */ *uap = v;
138 1.22 thorpej vm_page_t m;
139 1.22 thorpej char *vec, pgi;
140 1.22 thorpej struct uvm_object *uobj;
141 1.22 thorpej struct vm_amap *amap;
142 1.22 thorpej struct vm_anon *anon;
143 1.22 thorpej vm_map_entry_t entry;
144 1.22 thorpej vaddr_t start, end, lim;
145 1.22 thorpej vm_map_t map;
146 1.22 thorpej vsize_t len;
147 1.22 thorpej int error = 0, npgs;
148 1.22 thorpej
149 1.22 thorpej map = &p->p_vmspace->vm_map;
150 1.22 thorpej
151 1.22 thorpej start = (vaddr_t)SCARG(uap, addr);
152 1.22 thorpej len = SCARG(uap, len);
153 1.22 thorpej vec = SCARG(uap, vec);
154 1.22 thorpej
155 1.22 thorpej if (start & PAGE_MASK)
156 1.22 thorpej return (EINVAL);
157 1.22 thorpej len = round_page(len);
158 1.22 thorpej end = start + len;
159 1.22 thorpej if (end <= start)
160 1.22 thorpej return (EINVAL);
161 1.22 thorpej
162 1.22 thorpej npgs = len >> PAGE_SHIFT;
163 1.22 thorpej
164 1.22 thorpej if (uvm_useracc(vec, npgs, B_WRITE) == FALSE)
165 1.22 thorpej return (EFAULT);
166 1.22 thorpej
167 1.22 thorpej /*
168 1.22 thorpej * Lock down vec, so our returned status isn't outdated by
169 1.22 thorpej * storing the status byte for a page.
170 1.22 thorpej */
171 1.22 thorpej uvm_vslock(p, vec, npgs, VM_PROT_WRITE);
172 1.22 thorpej
173 1.22 thorpej vm_map_lock_read(map);
174 1.22 thorpej
175 1.22 thorpej if (uvm_map_lookup_entry(map, start, &entry) == FALSE) {
176 1.22 thorpej error = ENOMEM;
177 1.22 thorpej goto out;
178 1.22 thorpej }
179 1.22 thorpej
180 1.22 thorpej for (/* nothing */;
181 1.22 thorpej entry != &map->header && entry->start < end;
182 1.22 thorpej entry = entry->next) {
183 1.22 thorpej #ifdef DIAGNOSTIC
184 1.22 thorpej if (UVM_ET_ISSUBMAP(entry))
185 1.22 thorpej panic("mincore: user map has submap");
186 1.22 thorpej if (start < entry->start)
187 1.22 thorpej panic("mincore: hole");
188 1.1 mrg #endif
189 1.22 thorpej /* Make sure there are no holes. */
190 1.22 thorpej if (entry->end < end &&
191 1.22 thorpej (entry->next == &map->header ||
192 1.22 thorpej entry->next->start > entry->end)) {
193 1.22 thorpej error = ENOMEM;
194 1.22 thorpej goto out;
195 1.22 thorpej }
196 1.6 mrg
197 1.22 thorpej lim = end < entry->end ? end : entry->end;
198 1.22 thorpej
199 1.22 thorpej /*
200 1.31 thorpej * Special case for objects with no "real" pages. Those
201 1.31 thorpej * are always considered resident (mapped devices).
202 1.22 thorpej */
203 1.22 thorpej if (UVM_ET_ISOBJ(entry)) {
204 1.22 thorpej #ifdef DIAGNOSTIC
205 1.22 thorpej if (UVM_OBJ_IS_KERN_OBJECT(entry->object.uvm_obj))
206 1.22 thorpej panic("mincore: user map has kernel object");
207 1.22 thorpej #endif
208 1.31 thorpej if (entry->object.uvm_obj->pgops->pgo_releasepg
209 1.31 thorpej == NULL) {
210 1.22 thorpej for (/* nothing */; start < lim;
211 1.22 thorpej start += PAGE_SIZE, vec++)
212 1.22 thorpej subyte(vec, 1);
213 1.22 thorpej continue;
214 1.22 thorpej }
215 1.22 thorpej }
216 1.22 thorpej
217 1.32 thorpej amap = entry->aref.ar_amap; /* top layer */
218 1.32 thorpej uobj = entry->object.uvm_obj; /* bottom layer */
219 1.22 thorpej
220 1.22 thorpej if (amap != NULL)
221 1.22 thorpej amap_lock(amap);
222 1.22 thorpej if (uobj != NULL)
223 1.22 thorpej simple_lock(&uobj->vmobjlock);
224 1.22 thorpej
225 1.22 thorpej for (/* nothing */; start < lim; start += PAGE_SIZE, vec++) {
226 1.22 thorpej pgi = 0;
227 1.22 thorpej if (amap != NULL) {
228 1.22 thorpej /* Check the top layer first. */
229 1.22 thorpej anon = amap_lookup(&entry->aref,
230 1.22 thorpej start - entry->start);
231 1.22 thorpej /* Don't need to lock anon here. */
232 1.22 thorpej if (anon != NULL && anon->u.an_page != NULL) {
233 1.22 thorpej /*
234 1.22 thorpej * Anon has the page for this entry
235 1.22 thorpej * offset.
236 1.22 thorpej */
237 1.22 thorpej pgi = 1;
238 1.22 thorpej }
239 1.22 thorpej }
240 1.22 thorpej
241 1.22 thorpej if (uobj != NULL && pgi == 0) {
242 1.22 thorpej /* Check the bottom layer. */
243 1.22 thorpej m = uvm_pagelookup(uobj,
244 1.22 thorpej entry->offset + (start - entry->start));
245 1.22 thorpej if (m != NULL) {
246 1.22 thorpej /*
247 1.22 thorpej * Object has the page for this entry
248 1.22 thorpej * offset.
249 1.22 thorpej */
250 1.22 thorpej pgi = 1;
251 1.22 thorpej }
252 1.22 thorpej }
253 1.22 thorpej
254 1.22 thorpej (void) subyte(vec, pgi);
255 1.22 thorpej }
256 1.22 thorpej
257 1.22 thorpej if (uobj != NULL)
258 1.27 thorpej simple_unlock(&uobj->vmobjlock);
259 1.22 thorpej if (amap != NULL)
260 1.22 thorpej amap_unlock(amap);
261 1.22 thorpej }
262 1.22 thorpej
263 1.22 thorpej out:
264 1.22 thorpej vm_map_unlock_read(map);
265 1.22 thorpej uvm_vsunlock(p, SCARG(uap, vec), npgs);
266 1.22 thorpej return (error);
267 1.1 mrg }
268 1.1 mrg
269 1.1 mrg #if 0
270 1.1 mrg /*
271 1.1 mrg * munmapfd: unmap file descriptor
272 1.1 mrg *
273 1.1 mrg * XXX: is this acutally a useful function? could it be useful?
274 1.1 mrg */
275 1.1 mrg
276 1.6 mrg void
277 1.6 mrg munmapfd(p, fd)
278 1.6 mrg struct proc *p;
279 1.6 mrg int fd;
280 1.6 mrg {
281 1.1 mrg
282 1.6 mrg /*
283 1.6 mrg * XXX should vm_deallocate any regions mapped to this file
284 1.6 mrg */
285 1.6 mrg p->p_fd->fd_ofileflags[fd] &= ~UF_MAPPED;
286 1.1 mrg }
287 1.1 mrg #endif
288 1.1 mrg
289 1.1 mrg /*
290 1.1 mrg * sys_mmap: mmap system call.
291 1.1 mrg *
292 1.1 mrg * => file offest and address may not be page aligned
293 1.1 mrg * - if MAP_FIXED, offset and address must have remainder mod PAGE_SIZE
294 1.1 mrg * - if address isn't page aligned the mapping starts at trunc_page(addr)
295 1.1 mrg * and the return value is adjusted up by the page offset.
296 1.1 mrg */
297 1.1 mrg
298 1.6 mrg int
299 1.6 mrg sys_mmap(p, v, retval)
300 1.6 mrg struct proc *p;
301 1.6 mrg void *v;
302 1.6 mrg register_t *retval;
303 1.6 mrg {
304 1.6 mrg register struct sys_mmap_args /* {
305 1.6 mrg syscallarg(caddr_t) addr;
306 1.6 mrg syscallarg(size_t) len;
307 1.6 mrg syscallarg(int) prot;
308 1.6 mrg syscallarg(int) flags;
309 1.6 mrg syscallarg(int) fd;
310 1.6 mrg syscallarg(long) pad;
311 1.6 mrg syscallarg(off_t) pos;
312 1.6 mrg } */ *uap = v;
313 1.12 eeh vaddr_t addr;
314 1.9 mrg struct vattr va;
315 1.6 mrg off_t pos;
316 1.12 eeh vsize_t size, pageoff;
317 1.6 mrg vm_prot_t prot, maxprot;
318 1.6 mrg int flags, fd;
319 1.12 eeh vaddr_t vm_min_address = VM_MIN_ADDRESS;
320 1.6 mrg register struct filedesc *fdp = p->p_fd;
321 1.6 mrg register struct file *fp;
322 1.6 mrg struct vnode *vp;
323 1.6 mrg caddr_t handle;
324 1.6 mrg int error;
325 1.6 mrg
326 1.6 mrg /*
327 1.6 mrg * first, extract syscall args from the uap.
328 1.6 mrg */
329 1.6 mrg
330 1.12 eeh addr = (vaddr_t) SCARG(uap, addr);
331 1.12 eeh size = (vsize_t) SCARG(uap, len);
332 1.6 mrg prot = SCARG(uap, prot) & VM_PROT_ALL;
333 1.6 mrg flags = SCARG(uap, flags);
334 1.6 mrg fd = SCARG(uap, fd);
335 1.6 mrg pos = SCARG(uap, pos);
336 1.6 mrg
337 1.6 mrg /*
338 1.24 thorpej * Fixup the old deprecated MAP_COPY into MAP_PRIVATE, and
339 1.24 thorpej * validate the flags.
340 1.24 thorpej */
341 1.24 thorpej if (flags & MAP_COPY)
342 1.24 thorpej flags = (flags & ~MAP_COPY) | MAP_PRIVATE;
343 1.24 thorpej if ((flags & (MAP_SHARED|MAP_PRIVATE)) == (MAP_SHARED|MAP_PRIVATE))
344 1.24 thorpej return (EINVAL);
345 1.24 thorpej
346 1.24 thorpej /*
347 1.12 eeh * make sure that the newsize fits within a vaddr_t
348 1.6 mrg * XXX: need to revise addressing data types
349 1.6 mrg */
350 1.12 eeh if (pos + size > (vaddr_t)-PAGE_SIZE) {
351 1.1 mrg #ifdef DEBUG
352 1.16 chs printf("mmap: pos=%qx, size=%lx too big\n", (long long)pos,
353 1.16 chs (long)size);
354 1.1 mrg #endif
355 1.6 mrg return (EINVAL);
356 1.6 mrg }
357 1.1 mrg
358 1.6 mrg /*
359 1.6 mrg * align file position and save offset. adjust size.
360 1.6 mrg */
361 1.6 mrg
362 1.6 mrg pageoff = (pos & PAGE_MASK);
363 1.6 mrg pos -= pageoff;
364 1.6 mrg size += pageoff; /* add offset */
365 1.12 eeh size = (vsize_t) round_page(size); /* round up */
366 1.6 mrg if ((ssize_t) size < 0)
367 1.6 mrg return (EINVAL); /* don't allow wrap */
368 1.6 mrg
369 1.6 mrg /*
370 1.6 mrg * now check (MAP_FIXED) or get (!MAP_FIXED) the "addr"
371 1.6 mrg */
372 1.6 mrg
373 1.6 mrg if (flags & MAP_FIXED) {
374 1.6 mrg
375 1.6 mrg /* ensure address and file offset are aligned properly */
376 1.6 mrg addr -= pageoff;
377 1.6 mrg if (addr & PAGE_MASK)
378 1.6 mrg return (EINVAL);
379 1.6 mrg
380 1.6 mrg if (VM_MAXUSER_ADDRESS > 0 &&
381 1.6 mrg (addr + size) > VM_MAXUSER_ADDRESS)
382 1.6 mrg return (EINVAL);
383 1.6 mrg if (vm_min_address > 0 && addr < vm_min_address)
384 1.6 mrg return (EINVAL);
385 1.6 mrg if (addr > addr + size)
386 1.6 mrg return (EINVAL); /* no wrapping! */
387 1.6 mrg
388 1.6 mrg } else {
389 1.6 mrg
390 1.6 mrg /*
391 1.6 mrg * not fixed: make sure we skip over the largest possible heap.
392 1.6 mrg * we will refine our guess later (e.g. to account for VAC, etc)
393 1.6 mrg */
394 1.6 mrg if (addr < round_page(p->p_vmspace->vm_daddr + MAXDSIZ))
395 1.6 mrg addr = round_page(p->p_vmspace->vm_daddr + MAXDSIZ);
396 1.6 mrg }
397 1.6 mrg
398 1.6 mrg /*
399 1.6 mrg * check for file mappings (i.e. not anonymous) and verify file.
400 1.6 mrg */
401 1.6 mrg
402 1.6 mrg if ((flags & MAP_ANON) == 0) {
403 1.6 mrg
404 1.6 mrg if (fd < 0 || fd >= fdp->fd_nfiles)
405 1.6 mrg return(EBADF); /* failed range check? */
406 1.6 mrg fp = fdp->fd_ofiles[fd]; /* convert to file pointer */
407 1.6 mrg if (fp == NULL)
408 1.6 mrg return(EBADF);
409 1.6 mrg
410 1.6 mrg if (fp->f_type != DTYPE_VNODE)
411 1.7 kleink return (ENODEV); /* only mmap vnodes! */
412 1.6 mrg vp = (struct vnode *)fp->f_data; /* convert to vnode */
413 1.6 mrg
414 1.11 thorpej if (vp->v_type != VREG && vp->v_type != VCHR &&
415 1.11 thorpej vp->v_type != VBLK)
416 1.11 thorpej return (ENODEV); /* only REG/CHR/BLK support mmap */
417 1.6 mrg
418 1.6 mrg /* special case: catch SunOS style /dev/zero */
419 1.6 mrg if (vp->v_type == VCHR && iszerodev(vp->v_rdev)) {
420 1.6 mrg flags |= MAP_ANON;
421 1.6 mrg goto is_anon;
422 1.6 mrg }
423 1.6 mrg
424 1.6 mrg /*
425 1.6 mrg * Old programs may not select a specific sharing type, so
426 1.6 mrg * default to an appropriate one.
427 1.6 mrg *
428 1.6 mrg * XXX: how does MAP_ANON fit in the picture?
429 1.6 mrg */
430 1.24 thorpej if ((flags & (MAP_SHARED|MAP_PRIVATE)) == 0) {
431 1.8 tv #if defined(DEBUG)
432 1.6 mrg printf("WARNING: defaulted mmap() share type to "
433 1.6 mrg "%s (pid %d comm %s)\n", vp->v_type == VCHR ?
434 1.6 mrg "MAP_SHARED" : "MAP_PRIVATE", p->p_pid,
435 1.6 mrg p->p_comm);
436 1.1 mrg #endif
437 1.6 mrg if (vp->v_type == VCHR)
438 1.6 mrg flags |= MAP_SHARED; /* for a device */
439 1.6 mrg else
440 1.6 mrg flags |= MAP_PRIVATE; /* for a file */
441 1.6 mrg }
442 1.6 mrg
443 1.6 mrg /*
444 1.6 mrg * MAP_PRIVATE device mappings don't make sense (and aren't
445 1.6 mrg * supported anyway). However, some programs rely on this,
446 1.6 mrg * so just change it to MAP_SHARED.
447 1.6 mrg */
448 1.6 mrg if (vp->v_type == VCHR && (flags & MAP_PRIVATE) != 0) {
449 1.1 mrg #if defined(DIAGNOSTIC)
450 1.6 mrg printf("WARNING: converted MAP_PRIVATE device mapping "
451 1.6 mrg "to MAP_SHARED (pid %d comm %s)\n", p->p_pid,
452 1.6 mrg p->p_comm);
453 1.1 mrg #endif
454 1.6 mrg flags = (flags & ~MAP_PRIVATE) | MAP_SHARED;
455 1.6 mrg }
456 1.1 mrg
457 1.6 mrg /*
458 1.6 mrg * now check protection
459 1.6 mrg */
460 1.6 mrg
461 1.6 mrg maxprot = VM_PROT_EXECUTE;
462 1.6 mrg
463 1.6 mrg /* check read access */
464 1.6 mrg if (fp->f_flag & FREAD)
465 1.6 mrg maxprot |= VM_PROT_READ;
466 1.6 mrg else if (prot & PROT_READ)
467 1.6 mrg return (EACCES);
468 1.6 mrg
469 1.9 mrg /* check write access, shared case first */
470 1.6 mrg if (flags & MAP_SHARED) {
471 1.9 mrg /*
472 1.9 mrg * if the file is writable, only add PROT_WRITE to
473 1.9 mrg * maxprot if the file is not immutable, append-only.
474 1.9 mrg * otherwise, if we have asked for PROT_WRITE, return
475 1.9 mrg * EPERM.
476 1.9 mrg */
477 1.9 mrg if (fp->f_flag & FWRITE) {
478 1.9 mrg if ((error =
479 1.9 mrg VOP_GETATTR(vp, &va, p->p_ucred, p)))
480 1.9 mrg return (error);
481 1.9 mrg if ((va.va_flags & (IMMUTABLE|APPEND)) == 0)
482 1.9 mrg maxprot |= VM_PROT_WRITE;
483 1.9 mrg else if (prot & PROT_WRITE)
484 1.9 mrg return (EPERM);
485 1.9 mrg }
486 1.6 mrg else if (prot & PROT_WRITE)
487 1.6 mrg return (EACCES);
488 1.6 mrg } else {
489 1.6 mrg /* MAP_PRIVATE mappings can always write to */
490 1.6 mrg maxprot |= VM_PROT_WRITE;
491 1.6 mrg }
492 1.6 mrg
493 1.6 mrg /*
494 1.6 mrg * set handle to vnode
495 1.6 mrg */
496 1.1 mrg
497 1.6 mrg handle = (caddr_t)vp;
498 1.1 mrg
499 1.6 mrg } else { /* MAP_ANON case */
500 1.24 thorpej /*
501 1.24 thorpej * XXX What do we do about (MAP_SHARED|MAP_PRIVATE) == 0?
502 1.24 thorpej */
503 1.6 mrg if (fd != -1)
504 1.6 mrg return (EINVAL);
505 1.1 mrg
506 1.24 thorpej is_anon: /* label for SunOS style /dev/zero */
507 1.6 mrg handle = NULL;
508 1.6 mrg maxprot = VM_PROT_ALL;
509 1.6 mrg pos = 0;
510 1.28 cgd }
511 1.28 cgd
512 1.28 cgd /*
513 1.28 cgd * XXX (in)sanity check. We don't do proper datasize checking
514 1.28 cgd * XXX for anonymous (or private writable) mmap(). However,
515 1.28 cgd * XXX know that if we're trying to allocate more than the amount
516 1.28 cgd * XXX remaining under our current data size limit, _that_ should
517 1.28 cgd * XXX be disallowed.
518 1.28 cgd */
519 1.28 cgd if ((flags & MAP_ANON) != 0 ||
520 1.28 cgd ((flags & MAP_PRIVATE) != 0 && (prot & PROT_WRITE) != 0)) {
521 1.28 cgd if (size >
522 1.28 cgd (p->p_rlimit[RLIMIT_DATA].rlim_cur - ctob(p->p_vmspace->vm_dsize))) {
523 1.28 cgd return (ENOMEM);
524 1.28 cgd }
525 1.6 mrg }
526 1.6 mrg
527 1.6 mrg /*
528 1.6 mrg * now let kernel internal function uvm_mmap do the work.
529 1.6 mrg */
530 1.6 mrg
531 1.6 mrg error = uvm_mmap(&p->p_vmspace->vm_map, &addr, size, prot, maxprot,
532 1.25 thorpej flags, handle, pos, p->p_rlimit[RLIMIT_MEMLOCK].rlim_cur);
533 1.6 mrg
534 1.6 mrg if (error == 0)
535 1.6 mrg /* remember to add offset */
536 1.6 mrg *retval = (register_t)(addr + pageoff);
537 1.1 mrg
538 1.6 mrg return (error);
539 1.1 mrg }
540 1.1 mrg
541 1.1 mrg /*
542 1.1 mrg * sys___msync13: the msync system call (a front-end for flush)
543 1.1 mrg */
544 1.1 mrg
545 1.6 mrg int
546 1.6 mrg sys___msync13(p, v, retval)
547 1.6 mrg struct proc *p;
548 1.6 mrg void *v;
549 1.6 mrg register_t *retval;
550 1.6 mrg {
551 1.6 mrg struct sys___msync13_args /* {
552 1.6 mrg syscallarg(caddr_t) addr;
553 1.6 mrg syscallarg(size_t) len;
554 1.6 mrg syscallarg(int) flags;
555 1.6 mrg } */ *uap = v;
556 1.12 eeh vaddr_t addr;
557 1.12 eeh vsize_t size, pageoff;
558 1.6 mrg vm_map_t map;
559 1.6 mrg int rv, flags, uvmflags;
560 1.6 mrg
561 1.6 mrg /*
562 1.6 mrg * extract syscall args from the uap
563 1.6 mrg */
564 1.6 mrg
565 1.12 eeh addr = (vaddr_t)SCARG(uap, addr);
566 1.12 eeh size = (vsize_t)SCARG(uap, len);
567 1.6 mrg flags = SCARG(uap, flags);
568 1.6 mrg
569 1.6 mrg /* sanity check flags */
570 1.6 mrg if ((flags & ~(MS_ASYNC | MS_SYNC | MS_INVALIDATE)) != 0 ||
571 1.6 mrg (flags & (MS_ASYNC | MS_SYNC | MS_INVALIDATE)) == 0 ||
572 1.6 mrg (flags & (MS_ASYNC | MS_SYNC)) == (MS_ASYNC | MS_SYNC))
573 1.1 mrg return (EINVAL);
574 1.6 mrg if ((flags & (MS_ASYNC | MS_SYNC)) == 0)
575 1.1 mrg flags |= MS_SYNC;
576 1.1 mrg
577 1.6 mrg /*
578 1.6 mrg * align the address to a page boundary, and adjust the size accordingly
579 1.6 mrg */
580 1.6 mrg
581 1.6 mrg pageoff = (addr & PAGE_MASK);
582 1.6 mrg addr -= pageoff;
583 1.6 mrg size += pageoff;
584 1.12 eeh size = (vsize_t) round_page(size);
585 1.6 mrg
586 1.6 mrg /* disallow wrap-around. */
587 1.6 mrg if (addr + size < addr)
588 1.6 mrg return (EINVAL);
589 1.6 mrg
590 1.6 mrg /*
591 1.6 mrg * get map
592 1.6 mrg */
593 1.6 mrg
594 1.6 mrg map = &p->p_vmspace->vm_map;
595 1.6 mrg
596 1.6 mrg /*
597 1.6 mrg * XXXCDC: do we really need this semantic?
598 1.6 mrg *
599 1.6 mrg * XXX Gak! If size is zero we are supposed to sync "all modified
600 1.6 mrg * pages with the region containing addr". Unfortunately, we
601 1.6 mrg * don't really keep track of individual mmaps so we approximate
602 1.6 mrg * by flushing the range of the map entry containing addr.
603 1.6 mrg * This can be incorrect if the region splits or is coalesced
604 1.6 mrg * with a neighbor.
605 1.6 mrg */
606 1.6 mrg if (size == 0) {
607 1.6 mrg vm_map_entry_t entry;
608 1.6 mrg
609 1.6 mrg vm_map_lock_read(map);
610 1.6 mrg rv = uvm_map_lookup_entry(map, addr, &entry);
611 1.6 mrg if (rv == TRUE) {
612 1.6 mrg addr = entry->start;
613 1.6 mrg size = entry->end - entry->start;
614 1.6 mrg }
615 1.6 mrg vm_map_unlock_read(map);
616 1.6 mrg if (rv == FALSE)
617 1.6 mrg return (EINVAL);
618 1.6 mrg }
619 1.6 mrg
620 1.6 mrg /*
621 1.6 mrg * translate MS_ flags into PGO_ flags
622 1.6 mrg */
623 1.34 thorpej uvmflags = PGO_CLEANIT;
624 1.34 thorpej if (flags & MS_INVALIDATE)
625 1.34 thorpej uvmflags |= PGO_FREE;
626 1.6 mrg if (flags & MS_SYNC)
627 1.6 mrg uvmflags |= PGO_SYNCIO;
628 1.6 mrg else
629 1.6 mrg uvmflags |= PGO_SYNCIO; /* XXXCDC: force sync for now! */
630 1.6 mrg
631 1.6 mrg /*
632 1.6 mrg * doit!
633 1.6 mrg */
634 1.6 mrg rv = uvm_map_clean(map, addr, addr+size, uvmflags);
635 1.6 mrg
636 1.6 mrg /*
637 1.6 mrg * and return...
638 1.6 mrg */
639 1.6 mrg switch (rv) {
640 1.6 mrg case KERN_SUCCESS:
641 1.6 mrg return(0);
642 1.6 mrg case KERN_INVALID_ADDRESS:
643 1.6 mrg return (ENOMEM);
644 1.6 mrg case KERN_FAILURE:
645 1.6 mrg return (EIO);
646 1.6 mrg case KERN_PAGES_LOCKED: /* XXXCDC: uvm doesn't return this */
647 1.6 mrg return (EBUSY);
648 1.6 mrg default:
649 1.6 mrg return (EINVAL);
650 1.6 mrg }
651 1.6 mrg /*NOTREACHED*/
652 1.1 mrg }
653 1.1 mrg
654 1.1 mrg /*
655 1.1 mrg * sys_munmap: unmap a users memory
656 1.1 mrg */
657 1.1 mrg
658 1.6 mrg int
659 1.6 mrg sys_munmap(p, v, retval)
660 1.6 mrg register struct proc *p;
661 1.6 mrg void *v;
662 1.6 mrg register_t *retval;
663 1.6 mrg {
664 1.6 mrg register struct sys_munmap_args /* {
665 1.6 mrg syscallarg(caddr_t) addr;
666 1.6 mrg syscallarg(size_t) len;
667 1.6 mrg } */ *uap = v;
668 1.12 eeh vaddr_t addr;
669 1.12 eeh vsize_t size, pageoff;
670 1.6 mrg vm_map_t map;
671 1.12 eeh vaddr_t vm_min_address = VM_MIN_ADDRESS;
672 1.6 mrg struct vm_map_entry *dead_entries;
673 1.6 mrg
674 1.6 mrg /*
675 1.6 mrg * get syscall args...
676 1.6 mrg */
677 1.6 mrg
678 1.12 eeh addr = (vaddr_t) SCARG(uap, addr);
679 1.12 eeh size = (vsize_t) SCARG(uap, len);
680 1.6 mrg
681 1.6 mrg /*
682 1.6 mrg * align the address to a page boundary, and adjust the size accordingly
683 1.6 mrg */
684 1.6 mrg
685 1.6 mrg pageoff = (addr & PAGE_MASK);
686 1.6 mrg addr -= pageoff;
687 1.6 mrg size += pageoff;
688 1.12 eeh size = (vsize_t) round_page(size);
689 1.6 mrg
690 1.6 mrg if ((int)size < 0)
691 1.6 mrg return (EINVAL);
692 1.6 mrg if (size == 0)
693 1.6 mrg return (0);
694 1.6 mrg
695 1.6 mrg /*
696 1.6 mrg * Check for illegal addresses. Watch out for address wrap...
697 1.6 mrg * Note that VM_*_ADDRESS are not constants due to casts (argh).
698 1.6 mrg */
699 1.6 mrg if (VM_MAXUSER_ADDRESS > 0 && addr + size > VM_MAXUSER_ADDRESS)
700 1.6 mrg return (EINVAL);
701 1.6 mrg if (vm_min_address > 0 && addr < vm_min_address)
702 1.6 mrg return (EINVAL);
703 1.6 mrg if (addr > addr + size)
704 1.6 mrg return (EINVAL);
705 1.6 mrg map = &p->p_vmspace->vm_map;
706 1.6 mrg
707 1.6 mrg
708 1.6 mrg vm_map_lock(map); /* lock map so we can checkprot */
709 1.6 mrg
710 1.6 mrg /*
711 1.6 mrg * interesting system call semantic: make sure entire range is
712 1.6 mrg * allocated before allowing an unmap.
713 1.6 mrg */
714 1.6 mrg
715 1.6 mrg if (!uvm_map_checkprot(map, addr, addr + size, VM_PROT_NONE)) {
716 1.6 mrg vm_map_unlock(map);
717 1.6 mrg return (EINVAL);
718 1.6 mrg }
719 1.6 mrg
720 1.6 mrg /*
721 1.6 mrg * doit!
722 1.6 mrg */
723 1.15 chuck (void) uvm_unmap_remove(map, addr, addr + size, &dead_entries);
724 1.1 mrg
725 1.6 mrg vm_map_unlock(map); /* and unlock */
726 1.1 mrg
727 1.6 mrg if (dead_entries != NULL)
728 1.6 mrg uvm_unmap_detach(dead_entries, 0);
729 1.1 mrg
730 1.6 mrg return (0);
731 1.1 mrg }
732 1.1 mrg
733 1.1 mrg /*
734 1.1 mrg * sys_mprotect: the mprotect system call
735 1.1 mrg */
736 1.1 mrg
737 1.6 mrg int
738 1.6 mrg sys_mprotect(p, v, retval)
739 1.6 mrg struct proc *p;
740 1.6 mrg void *v;
741 1.6 mrg register_t *retval;
742 1.6 mrg {
743 1.6 mrg struct sys_mprotect_args /* {
744 1.6 mrg syscallarg(caddr_t) addr;
745 1.6 mrg syscallarg(int) len;
746 1.6 mrg syscallarg(int) prot;
747 1.6 mrg } */ *uap = v;
748 1.12 eeh vaddr_t addr;
749 1.12 eeh vsize_t size, pageoff;
750 1.6 mrg vm_prot_t prot;
751 1.6 mrg int rv;
752 1.6 mrg
753 1.6 mrg /*
754 1.6 mrg * extract syscall args from uap
755 1.6 mrg */
756 1.6 mrg
757 1.12 eeh addr = (vaddr_t)SCARG(uap, addr);
758 1.12 eeh size = (vsize_t)SCARG(uap, len);
759 1.6 mrg prot = SCARG(uap, prot) & VM_PROT_ALL;
760 1.6 mrg
761 1.6 mrg /*
762 1.6 mrg * align the address to a page boundary, and adjust the size accordingly
763 1.6 mrg */
764 1.6 mrg pageoff = (addr & PAGE_MASK);
765 1.6 mrg addr -= pageoff;
766 1.6 mrg size += pageoff;
767 1.12 eeh size = (vsize_t) round_page(size);
768 1.6 mrg if ((int)size < 0)
769 1.6 mrg return (EINVAL);
770 1.6 mrg
771 1.6 mrg /*
772 1.6 mrg * doit
773 1.6 mrg */
774 1.1 mrg
775 1.6 mrg rv = uvm_map_protect(&p->p_vmspace->vm_map,
776 1.1 mrg addr, addr+size, prot, FALSE);
777 1.1 mrg
778 1.6 mrg if (rv == KERN_SUCCESS)
779 1.6 mrg return (0);
780 1.6 mrg if (rv == KERN_PROTECTION_FAILURE)
781 1.6 mrg return (EACCES);
782 1.6 mrg return (EINVAL);
783 1.1 mrg }
784 1.1 mrg
785 1.1 mrg /*
786 1.1 mrg * sys_minherit: the minherit system call
787 1.1 mrg */
788 1.1 mrg
789 1.6 mrg int
790 1.6 mrg sys_minherit(p, v, retval)
791 1.6 mrg struct proc *p;
792 1.6 mrg void *v;
793 1.6 mrg register_t *retval;
794 1.6 mrg {
795 1.6 mrg struct sys_minherit_args /* {
796 1.6 mrg syscallarg(caddr_t) addr;
797 1.6 mrg syscallarg(int) len;
798 1.6 mrg syscallarg(int) inherit;
799 1.6 mrg } */ *uap = v;
800 1.12 eeh vaddr_t addr;
801 1.12 eeh vsize_t size, pageoff;
802 1.6 mrg register vm_inherit_t inherit;
803 1.6 mrg
804 1.12 eeh addr = (vaddr_t)SCARG(uap, addr);
805 1.12 eeh size = (vsize_t)SCARG(uap, len);
806 1.6 mrg inherit = SCARG(uap, inherit);
807 1.6 mrg /*
808 1.6 mrg * align the address to a page boundary, and adjust the size accordingly
809 1.6 mrg */
810 1.6 mrg
811 1.6 mrg pageoff = (addr & PAGE_MASK);
812 1.6 mrg addr -= pageoff;
813 1.6 mrg size += pageoff;
814 1.12 eeh size = (vsize_t) round_page(size);
815 1.6 mrg
816 1.6 mrg if ((int)size < 0)
817 1.6 mrg return (EINVAL);
818 1.6 mrg
819 1.6 mrg switch (uvm_map_inherit(&p->p_vmspace->vm_map, addr, addr+size,
820 1.1 mrg inherit)) {
821 1.21 mrg case KERN_SUCCESS:
822 1.21 mrg return (0);
823 1.21 mrg case KERN_PROTECTION_FAILURE:
824 1.21 mrg return (EACCES);
825 1.21 mrg }
826 1.21 mrg return (EINVAL);
827 1.21 mrg }
828 1.21 mrg
829 1.21 mrg /*
830 1.21 mrg * sys_madvise: give advice about memory usage.
831 1.21 mrg */
832 1.21 mrg
833 1.21 mrg /* ARGSUSED */
834 1.21 mrg int
835 1.21 mrg sys_madvise(p, v, retval)
836 1.21 mrg struct proc *p;
837 1.21 mrg void *v;
838 1.21 mrg register_t *retval;
839 1.21 mrg {
840 1.21 mrg struct sys_madvise_args /* {
841 1.21 mrg syscallarg(caddr_t) addr;
842 1.21 mrg syscallarg(size_t) len;
843 1.21 mrg syscallarg(int) behav;
844 1.21 mrg } */ *uap = v;
845 1.21 mrg vaddr_t addr;
846 1.21 mrg vsize_t size, pageoff;
847 1.29 thorpej int advice, rv;;
848 1.21 mrg
849 1.21 mrg addr = (vaddr_t)SCARG(uap, addr);
850 1.21 mrg size = (vsize_t)SCARG(uap, len);
851 1.21 mrg advice = SCARG(uap, behav);
852 1.21 mrg
853 1.21 mrg /*
854 1.21 mrg * align the address to a page boundary, and adjust the size accordingly
855 1.21 mrg */
856 1.21 mrg pageoff = (addr & PAGE_MASK);
857 1.21 mrg addr -= pageoff;
858 1.21 mrg size += pageoff;
859 1.21 mrg size = (vsize_t) round_page(size);
860 1.21 mrg
861 1.29 thorpej if ((ssize_t)size <= 0)
862 1.29 thorpej return (EINVAL);
863 1.29 thorpej
864 1.29 thorpej switch (advice) {
865 1.29 thorpej case MADV_NORMAL:
866 1.29 thorpej case MADV_RANDOM:
867 1.29 thorpej case MADV_SEQUENTIAL:
868 1.29 thorpej rv = uvm_map_advice(&p->p_vmspace->vm_map, addr, addr + size,
869 1.29 thorpej advice);
870 1.29 thorpej break;
871 1.29 thorpej
872 1.29 thorpej case MADV_WILLNEED:
873 1.29 thorpej /*
874 1.29 thorpej * Activate all these pages, pre-faulting them in if
875 1.29 thorpej * necessary.
876 1.29 thorpej */
877 1.29 thorpej /*
878 1.29 thorpej * XXX IMPLEMENT ME.
879 1.29 thorpej * Should invent a "weak" mode for uvm_fault()
880 1.29 thorpej * which would only do the PGO_LOCKED pgo_get().
881 1.29 thorpej */
882 1.29 thorpej return (0);
883 1.29 thorpej
884 1.29 thorpej case MADV_DONTNEED:
885 1.29 thorpej /*
886 1.29 thorpej * Deactivate all these pages. We don't need them
887 1.29 thorpej * any more. We don't, however, toss the data in
888 1.29 thorpej * the pages.
889 1.29 thorpej */
890 1.29 thorpej rv = uvm_map_clean(&p->p_vmspace->vm_map, addr, addr + size,
891 1.29 thorpej PGO_DEACTIVATE);
892 1.29 thorpej break;
893 1.29 thorpej
894 1.29 thorpej case MADV_FREE:
895 1.29 thorpej /*
896 1.29 thorpej * These pages contain no valid data, and may be
897 1.29 thorpej * grbage-collected. Toss all resources, including
898 1.30 thorpej * any swap space in use.
899 1.29 thorpej */
900 1.29 thorpej rv = uvm_map_clean(&p->p_vmspace->vm_map, addr, addr + size,
901 1.29 thorpej PGO_FREE);
902 1.29 thorpej break;
903 1.29 thorpej
904 1.29 thorpej case MADV_SPACEAVAIL:
905 1.29 thorpej /*
906 1.29 thorpej * XXXMRG What is this? I think it's:
907 1.29 thorpej *
908 1.29 thorpej * Ensure that we have allocated backing-store
909 1.29 thorpej * for these pages.
910 1.29 thorpej *
911 1.29 thorpej * This is going to require changes to the page daemon,
912 1.29 thorpej * as it will free swap space allocated to pages in core.
913 1.29 thorpej * There's also what to do for device/file/anonymous memory.
914 1.29 thorpej */
915 1.29 thorpej return (EINVAL);
916 1.29 thorpej
917 1.29 thorpej default:
918 1.21 mrg return (EINVAL);
919 1.29 thorpej }
920 1.29 thorpej
921 1.29 thorpej switch (rv) {
922 1.6 mrg case KERN_SUCCESS:
923 1.6 mrg return (0);
924 1.29 thorpej case KERN_NO_SPACE:
925 1.29 thorpej return (EAGAIN);
926 1.29 thorpej case KERN_INVALID_ADDRESS:
927 1.29 thorpej return (ENOMEM);
928 1.29 thorpej case KERN_FAILURE:
929 1.29 thorpej return (EIO);
930 1.6 mrg }
931 1.29 thorpej
932 1.6 mrg return (EINVAL);
933 1.1 mrg }
934 1.1 mrg
935 1.1 mrg /*
936 1.1 mrg * sys_mlock: memory lock
937 1.1 mrg */
938 1.1 mrg
939 1.6 mrg int
940 1.6 mrg sys_mlock(p, v, retval)
941 1.6 mrg struct proc *p;
942 1.6 mrg void *v;
943 1.6 mrg register_t *retval;
944 1.6 mrg {
945 1.6 mrg struct sys_mlock_args /* {
946 1.10 kleink syscallarg(const void *) addr;
947 1.6 mrg syscallarg(size_t) len;
948 1.6 mrg } */ *uap = v;
949 1.12 eeh vaddr_t addr;
950 1.12 eeh vsize_t size, pageoff;
951 1.6 mrg int error;
952 1.6 mrg
953 1.6 mrg /*
954 1.6 mrg * extract syscall args from uap
955 1.6 mrg */
956 1.12 eeh addr = (vaddr_t)SCARG(uap, addr);
957 1.12 eeh size = (vsize_t)SCARG(uap, len);
958 1.6 mrg
959 1.6 mrg /*
960 1.6 mrg * align the address to a page boundary and adjust the size accordingly
961 1.6 mrg */
962 1.6 mrg pageoff = (addr & PAGE_MASK);
963 1.6 mrg addr -= pageoff;
964 1.6 mrg size += pageoff;
965 1.12 eeh size = (vsize_t) round_page(size);
966 1.6 mrg
967 1.6 mrg /* disallow wrap-around. */
968 1.6 mrg if (addr + (int)size < addr)
969 1.6 mrg return (EINVAL);
970 1.1 mrg
971 1.6 mrg if (atop(size) + uvmexp.wired > uvmexp.wiredmax)
972 1.6 mrg return (EAGAIN);
973 1.1 mrg
974 1.1 mrg #ifdef pmap_wired_count
975 1.6 mrg if (size + ptoa(pmap_wired_count(vm_map_pmap(&p->p_vmspace->vm_map))) >
976 1.6 mrg p->p_rlimit[RLIMIT_MEMLOCK].rlim_cur)
977 1.6 mrg return (EAGAIN);
978 1.1 mrg #else
979 1.6 mrg if ((error = suser(p->p_ucred, &p->p_acflag)) != 0)
980 1.6 mrg return (error);
981 1.1 mrg #endif
982 1.1 mrg
983 1.25 thorpej error = uvm_map_pageable(&p->p_vmspace->vm_map, addr, addr+size, FALSE,
984 1.35 thorpej 0);
985 1.6 mrg return (error == KERN_SUCCESS ? 0 : ENOMEM);
986 1.1 mrg }
987 1.1 mrg
988 1.1 mrg /*
989 1.1 mrg * sys_munlock: unlock wired pages
990 1.1 mrg */
991 1.1 mrg
992 1.6 mrg int
993 1.6 mrg sys_munlock(p, v, retval)
994 1.6 mrg struct proc *p;
995 1.6 mrg void *v;
996 1.6 mrg register_t *retval;
997 1.6 mrg {
998 1.6 mrg struct sys_munlock_args /* {
999 1.10 kleink syscallarg(const void *) addr;
1000 1.6 mrg syscallarg(size_t) len;
1001 1.6 mrg } */ *uap = v;
1002 1.12 eeh vaddr_t addr;
1003 1.12 eeh vsize_t size, pageoff;
1004 1.6 mrg int error;
1005 1.6 mrg
1006 1.6 mrg /*
1007 1.6 mrg * extract syscall args from uap
1008 1.6 mrg */
1009 1.6 mrg
1010 1.12 eeh addr = (vaddr_t)SCARG(uap, addr);
1011 1.12 eeh size = (vsize_t)SCARG(uap, len);
1012 1.6 mrg
1013 1.6 mrg /*
1014 1.6 mrg * align the address to a page boundary, and adjust the size accordingly
1015 1.6 mrg */
1016 1.6 mrg pageoff = (addr & PAGE_MASK);
1017 1.6 mrg addr -= pageoff;
1018 1.6 mrg size += pageoff;
1019 1.12 eeh size = (vsize_t) round_page(size);
1020 1.6 mrg
1021 1.6 mrg /* disallow wrap-around. */
1022 1.6 mrg if (addr + (int)size < addr)
1023 1.6 mrg return (EINVAL);
1024 1.1 mrg
1025 1.1 mrg #ifndef pmap_wired_count
1026 1.6 mrg if ((error = suser(p->p_ucred, &p->p_acflag)) != 0)
1027 1.6 mrg return (error);
1028 1.1 mrg #endif
1029 1.1 mrg
1030 1.25 thorpej error = uvm_map_pageable(&p->p_vmspace->vm_map, addr, addr+size, TRUE,
1031 1.35 thorpej 0);
1032 1.6 mrg return (error == KERN_SUCCESS ? 0 : ENOMEM);
1033 1.22 thorpej }
1034 1.22 thorpej
1035 1.22 thorpej /*
1036 1.22 thorpej * sys_mlockall: lock all pages mapped into an address space.
1037 1.22 thorpej */
1038 1.22 thorpej
1039 1.22 thorpej int
1040 1.22 thorpej sys_mlockall(p, v, retval)
1041 1.22 thorpej struct proc *p;
1042 1.22 thorpej void *v;
1043 1.22 thorpej register_t *retval;
1044 1.22 thorpej {
1045 1.22 thorpej struct sys_mlockall_args /* {
1046 1.22 thorpej syscallarg(int) flags;
1047 1.22 thorpej } */ *uap = v;
1048 1.22 thorpej int error, flags;
1049 1.22 thorpej
1050 1.22 thorpej flags = SCARG(uap, flags);
1051 1.22 thorpej
1052 1.22 thorpej if (flags == 0 ||
1053 1.22 thorpej (flags & ~(MCL_CURRENT|MCL_FUTURE)) != 0)
1054 1.22 thorpej return (EINVAL);
1055 1.22 thorpej
1056 1.25 thorpej #ifndef pmap_wired_count
1057 1.22 thorpej if ((error = suser(p->p_ucred, &p->p_acflag)) != 0)
1058 1.22 thorpej return (error);
1059 1.22 thorpej #endif
1060 1.22 thorpej
1061 1.25 thorpej error = uvm_map_pageable_all(&p->p_vmspace->vm_map, flags,
1062 1.25 thorpej p->p_rlimit[RLIMIT_MEMLOCK].rlim_cur);
1063 1.22 thorpej switch (error) {
1064 1.22 thorpej case KERN_SUCCESS:
1065 1.22 thorpej error = 0;
1066 1.22 thorpej break;
1067 1.22 thorpej
1068 1.22 thorpej case KERN_NO_SPACE: /* XXX overloaded */
1069 1.22 thorpej error = ENOMEM;
1070 1.22 thorpej break;
1071 1.22 thorpej
1072 1.22 thorpej default:
1073 1.22 thorpej /*
1074 1.22 thorpej * "Some or all of the memory could not be locked when
1075 1.22 thorpej * the call was made."
1076 1.22 thorpej */
1077 1.22 thorpej error = EAGAIN;
1078 1.22 thorpej }
1079 1.22 thorpej
1080 1.22 thorpej return (error);
1081 1.22 thorpej }
1082 1.22 thorpej
1083 1.22 thorpej /*
1084 1.22 thorpej * sys_munlockall: unlock all pages mapped into an address space.
1085 1.22 thorpej */
1086 1.22 thorpej
1087 1.22 thorpej int
1088 1.22 thorpej sys_munlockall(p, v, retval)
1089 1.22 thorpej struct proc *p;
1090 1.22 thorpej void *v;
1091 1.22 thorpej register_t *retval;
1092 1.22 thorpej {
1093 1.22 thorpej
1094 1.22 thorpej (void) uvm_map_pageable_all(&p->p_vmspace->vm_map, 0, 0);
1095 1.22 thorpej return (0);
1096 1.1 mrg }
1097 1.1 mrg
1098 1.1 mrg /*
1099 1.1 mrg * uvm_mmap: internal version of mmap
1100 1.1 mrg *
1101 1.1 mrg * - used by sys_mmap, exec, and sysv shm
1102 1.1 mrg * - handle is a vnode pointer or NULL for MAP_ANON (XXX: not true,
1103 1.1 mrg * sysv shm uses "named anonymous memory")
1104 1.1 mrg * - caller must page-align the file offset
1105 1.1 mrg */
1106 1.1 mrg
1107 1.6 mrg int
1108 1.25 thorpej uvm_mmap(map, addr, size, prot, maxprot, flags, handle, foff, locklimit)
1109 1.6 mrg vm_map_t map;
1110 1.12 eeh vaddr_t *addr;
1111 1.12 eeh vsize_t size;
1112 1.6 mrg vm_prot_t prot, maxprot;
1113 1.6 mrg int flags;
1114 1.6 mrg caddr_t handle; /* XXX: VNODE? */
1115 1.12 eeh vaddr_t foff;
1116 1.25 thorpej vsize_t locklimit;
1117 1.6 mrg {
1118 1.6 mrg struct uvm_object *uobj;
1119 1.6 mrg struct vnode *vp;
1120 1.6 mrg int retval;
1121 1.6 mrg int advice = UVM_ADV_NORMAL;
1122 1.6 mrg uvm_flag_t uvmflag = 0;
1123 1.6 mrg
1124 1.6 mrg /*
1125 1.6 mrg * check params
1126 1.6 mrg */
1127 1.6 mrg
1128 1.6 mrg if (size == 0)
1129 1.6 mrg return(0);
1130 1.6 mrg if (foff & PAGE_MASK)
1131 1.6 mrg return(EINVAL);
1132 1.6 mrg if ((prot & maxprot) != prot)
1133 1.6 mrg return(EINVAL);
1134 1.6 mrg
1135 1.6 mrg /*
1136 1.6 mrg * for non-fixed mappings, round off the suggested address.
1137 1.6 mrg * for fixed mappings, check alignment and zap old mappings.
1138 1.6 mrg */
1139 1.6 mrg
1140 1.6 mrg if ((flags & MAP_FIXED) == 0) {
1141 1.6 mrg *addr = round_page(*addr); /* round */
1142 1.6 mrg } else {
1143 1.6 mrg
1144 1.6 mrg if (*addr & PAGE_MASK)
1145 1.6 mrg return(EINVAL);
1146 1.6 mrg uvmflag |= UVM_FLAG_FIXED;
1147 1.15 chuck (void) uvm_unmap(map, *addr, *addr + size); /* zap! */
1148 1.6 mrg }
1149 1.6 mrg
1150 1.6 mrg /*
1151 1.6 mrg * handle anon vs. non-anon mappings. for non-anon mappings attach
1152 1.6 mrg * to underlying vm object.
1153 1.6 mrg */
1154 1.6 mrg
1155 1.6 mrg if (flags & MAP_ANON) {
1156 1.6 mrg
1157 1.6 mrg foff = UVM_UNKNOWN_OFFSET;
1158 1.6 mrg uobj = NULL;
1159 1.6 mrg if ((flags & MAP_SHARED) == 0)
1160 1.6 mrg /* XXX: defer amap create */
1161 1.6 mrg uvmflag |= UVM_FLAG_COPYONW;
1162 1.6 mrg else
1163 1.6 mrg /* shared: create amap now */
1164 1.6 mrg uvmflag |= UVM_FLAG_OVERLAY;
1165 1.6 mrg
1166 1.6 mrg } else {
1167 1.6 mrg
1168 1.6 mrg vp = (struct vnode *) handle; /* get vnode */
1169 1.6 mrg if (vp->v_type != VCHR) {
1170 1.6 mrg uobj = uvn_attach((void *) vp, (flags & MAP_SHARED) ?
1171 1.6 mrg maxprot : (maxprot & ~VM_PROT_WRITE));
1172 1.6 mrg
1173 1.6 mrg /*
1174 1.6 mrg * XXXCDC: hack from old code
1175 1.6 mrg * don't allow vnodes which have been mapped
1176 1.6 mrg * shared-writeable to persist [forces them to be
1177 1.6 mrg * flushed out when last reference goes].
1178 1.6 mrg * XXXCDC: interesting side effect: avoids a bug.
1179 1.6 mrg * note that in WRITE [ufs_readwrite.c] that we
1180 1.6 mrg * allocate buffer, uncache, and then do the write.
1181 1.6 mrg * the problem with this is that if the uncache causes
1182 1.6 mrg * VM data to be flushed to the same area of the file
1183 1.6 mrg * we are writing to... in that case we've got the
1184 1.6 mrg * buffer locked and our process goes to sleep forever.
1185 1.6 mrg *
1186 1.6 mrg * XXXCDC: checking maxprot protects us from the
1187 1.6 mrg * "persistbug" program but this is not a long term
1188 1.6 mrg * solution.
1189 1.6 mrg *
1190 1.6 mrg * XXXCDC: we don't bother calling uncache with the vp
1191 1.6 mrg * VOP_LOCKed since we know that we are already
1192 1.6 mrg * holding a valid reference to the uvn (from the
1193 1.6 mrg * uvn_attach above), and thus it is impossible for
1194 1.6 mrg * the uncache to kill the uvn and trigger I/O.
1195 1.6 mrg */
1196 1.6 mrg if (flags & MAP_SHARED) {
1197 1.6 mrg if ((prot & VM_PROT_WRITE) ||
1198 1.6 mrg (maxprot & VM_PROT_WRITE)) {
1199 1.6 mrg uvm_vnp_uncache(vp);
1200 1.6 mrg }
1201 1.6 mrg }
1202 1.6 mrg
1203 1.6 mrg } else {
1204 1.6 mrg uobj = udv_attach((void *) &vp->v_rdev,
1205 1.6 mrg (flags & MAP_SHARED) ?
1206 1.18 cgd maxprot : (maxprot & ~VM_PROT_WRITE), foff, size);
1207 1.6 mrg advice = UVM_ADV_RANDOM;
1208 1.6 mrg }
1209 1.6 mrg
1210 1.6 mrg if (uobj == NULL)
1211 1.11 thorpej return((vp->v_type == VREG) ? ENOMEM : EINVAL);
1212 1.6 mrg
1213 1.6 mrg if ((flags & MAP_SHARED) == 0)
1214 1.6 mrg uvmflag |= UVM_FLAG_COPYONW;
1215 1.6 mrg }
1216 1.6 mrg
1217 1.6 mrg /*
1218 1.6 mrg * set up mapping flags
1219 1.6 mrg */
1220 1.1 mrg
1221 1.6 mrg uvmflag = UVM_MAPFLAG(prot, maxprot,
1222 1.1 mrg (flags & MAP_SHARED) ? UVM_INH_SHARE : UVM_INH_COPY,
1223 1.1 mrg advice, uvmflag);
1224 1.1 mrg
1225 1.6 mrg /*
1226 1.6 mrg * do it!
1227 1.6 mrg */
1228 1.6 mrg
1229 1.6 mrg retval = uvm_map(map, addr, size, uobj, foff, uvmflag);
1230 1.6 mrg
1231 1.25 thorpej if (retval == KERN_SUCCESS) {
1232 1.25 thorpej /*
1233 1.25 thorpej * POSIX 1003.1b -- if our address space was configured
1234 1.25 thorpej * to lock all future mappings, wire the one we just made.
1235 1.25 thorpej */
1236 1.25 thorpej if (prot == VM_PROT_NONE) {
1237 1.25 thorpej /*
1238 1.25 thorpej * No more work to do in this case.
1239 1.25 thorpej */
1240 1.25 thorpej return (0);
1241 1.25 thorpej }
1242 1.25 thorpej
1243 1.25 thorpej vm_map_lock(map);
1244 1.25 thorpej
1245 1.25 thorpej if (map->flags & VM_MAP_WIREFUTURE) {
1246 1.25 thorpej /*
1247 1.25 thorpej * uvm_map_pageable() always returns the map
1248 1.25 thorpej * unlocked.
1249 1.25 thorpej */
1250 1.25 thorpej if ((atop(size) + uvmexp.wired) > uvmexp.wiredmax
1251 1.25 thorpej #ifdef pmap_wired_count
1252 1.26 thorpej || (locklimit != 0 && (size +
1253 1.25 thorpej ptoa(pmap_wired_count(vm_map_pmap(map)))) >
1254 1.26 thorpej locklimit)
1255 1.25 thorpej #endif
1256 1.25 thorpej ) {
1257 1.25 thorpej retval = KERN_RESOURCE_SHORTAGE;
1258 1.25 thorpej /* unmap the region! */
1259 1.25 thorpej (void) uvm_unmap(map, *addr, *addr + size);
1260 1.25 thorpej goto bad;
1261 1.25 thorpej }
1262 1.25 thorpej retval = uvm_map_pageable(map, *addr, *addr + size,
1263 1.35 thorpej FALSE, UVM_LK_ENTER);
1264 1.25 thorpej if (retval != KERN_SUCCESS) {
1265 1.25 thorpej /* unmap the region! */
1266 1.25 thorpej (void) uvm_unmap(map, *addr, *addr + size);
1267 1.25 thorpej goto bad;
1268 1.25 thorpej }
1269 1.25 thorpej return (0);
1270 1.25 thorpej }
1271 1.25 thorpej
1272 1.25 thorpej vm_map_unlock(map);
1273 1.25 thorpej
1274 1.25 thorpej return (0);
1275 1.25 thorpej }
1276 1.6 mrg
1277 1.6 mrg /*
1278 1.6 mrg * errors: first detach from the uobj, if any.
1279 1.6 mrg */
1280 1.6 mrg
1281 1.6 mrg if (uobj)
1282 1.6 mrg uobj->pgops->pgo_detach(uobj);
1283 1.6 mrg
1284 1.25 thorpej bad:
1285 1.6 mrg switch (retval) {
1286 1.6 mrg case KERN_INVALID_ADDRESS:
1287 1.6 mrg case KERN_NO_SPACE:
1288 1.6 mrg return(ENOMEM);
1289 1.25 thorpej case KERN_RESOURCE_SHORTAGE:
1290 1.25 thorpej return (EAGAIN);
1291 1.6 mrg case KERN_PROTECTION_FAILURE:
1292 1.6 mrg return(EACCES);
1293 1.6 mrg }
1294 1.6 mrg return(EINVAL);
1295 1.1 mrg }
1296