vm.c revision 1.77 1 1.77 pooka /* $NetBSD: vm.c,v 1.77 2010/06/01 19:18:20 pooka Exp $ */
2 1.1 pooka
3 1.1 pooka /*
4 1.76 pooka * Copyright (c) 2007-2010 Antti Kantee. All Rights Reserved.
5 1.1 pooka *
6 1.76 pooka * Development of this software was supported by
7 1.76 pooka * The Finnish Cultural Foundation and the Research Foundation of
8 1.76 pooka * The Helsinki University of Technology.
9 1.1 pooka *
10 1.1 pooka * Redistribution and use in source and binary forms, with or without
11 1.1 pooka * modification, are permitted provided that the following conditions
12 1.1 pooka * are met:
13 1.1 pooka * 1. Redistributions of source code must retain the above copyright
14 1.1 pooka * notice, this list of conditions and the following disclaimer.
15 1.1 pooka * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 pooka * notice, this list of conditions and the following disclaimer in the
17 1.1 pooka * documentation and/or other materials provided with the distribution.
18 1.1 pooka *
19 1.1 pooka * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS
20 1.1 pooka * OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
21 1.1 pooka * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
22 1.1 pooka * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
23 1.1 pooka * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
24 1.1 pooka * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
25 1.1 pooka * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
26 1.1 pooka * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
27 1.1 pooka * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
28 1.1 pooka * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
29 1.1 pooka * SUCH DAMAGE.
30 1.1 pooka */
31 1.1 pooka
32 1.1 pooka /*
33 1.1 pooka * Virtual memory emulation routines. Contents:
34 1.1 pooka * + anon objects & pager
35 1.1 pooka * + misc support routines
36 1.1 pooka */
37 1.1 pooka
38 1.1 pooka /*
39 1.5 pooka * XXX: we abuse pg->uanon for the virtual address of the storage
40 1.1 pooka * for each page. phys_addr would fit the job description better,
41 1.1 pooka * except that it will create unnecessary lossage on some platforms
42 1.1 pooka * due to not being a pointer type.
43 1.1 pooka */
44 1.1 pooka
45 1.48 pooka #include <sys/cdefs.h>
46 1.77 pooka __KERNEL_RCSID(0, "$NetBSD: vm.c,v 1.77 2010/06/01 19:18:20 pooka Exp $");
47 1.48 pooka
48 1.1 pooka #include <sys/param.h>
49 1.40 pooka #include <sys/atomic.h>
50 1.67 pooka #include <sys/kmem.h>
51 1.69 pooka #include <sys/mman.h>
52 1.1 pooka #include <sys/null.h>
53 1.1 pooka #include <sys/vnode.h>
54 1.1 pooka #include <sys/buf.h>
55 1.1 pooka
56 1.34 pooka #include <machine/pmap.h>
57 1.34 pooka
58 1.34 pooka #include <rump/rumpuser.h>
59 1.34 pooka
60 1.1 pooka #include <uvm/uvm.h>
61 1.56 pooka #include <uvm/uvm_ddb.h>
62 1.1 pooka #include <uvm/uvm_prot.h>
63 1.58 he #include <uvm/uvm_readahead.h>
64 1.1 pooka
65 1.13 pooka #include "rump_private.h"
66 1.1 pooka
67 1.24 yamt static int ao_get(struct uvm_object *, voff_t, struct vm_page **,
68 1.24 yamt int *, int, vm_prot_t, int, int);
69 1.24 yamt static int ao_put(struct uvm_object *, voff_t, voff_t, int);
70 1.24 yamt
71 1.24 yamt const struct uvm_pagerops aobj_pager = {
72 1.24 yamt .pgo_get = ao_get,
73 1.24 yamt .pgo_put = ao_put,
74 1.24 yamt };
75 1.24 yamt
76 1.25 ad kmutex_t uvm_pageqlock;
77 1.25 ad
78 1.1 pooka struct uvmexp uvmexp;
79 1.7 pooka struct uvm uvm;
80 1.1 pooka
81 1.1 pooka struct vmspace rump_vmspace;
82 1.1 pooka struct vm_map rump_vmmap;
83 1.50 pooka static struct vm_map_kernel kmem_map_store;
84 1.50 pooka struct vm_map *kmem_map = &kmem_map_store.vmk_map;
85 1.32 ad const struct rb_tree_ops uvm_page_tree_ops;
86 1.1 pooka
87 1.35 pooka static struct vm_map_kernel kernel_map_store;
88 1.35 pooka struct vm_map *kernel_map = &kernel_map_store.vmk_map;
89 1.35 pooka
90 1.1 pooka /*
91 1.1 pooka * vm pages
92 1.1 pooka */
93 1.1 pooka
94 1.22 pooka /* called with the object locked */
95 1.1 pooka struct vm_page *
96 1.76 pooka uvm_pagealloc_strat(struct uvm_object *uobj, voff_t off, struct vm_anon *anon,
97 1.76 pooka int flags, int strat, int free_list)
98 1.1 pooka {
99 1.1 pooka struct vm_page *pg;
100 1.1 pooka
101 1.27 pooka pg = kmem_zalloc(sizeof(struct vm_page), KM_SLEEP);
102 1.1 pooka pg->offset = off;
103 1.5 pooka pg->uobject = uobj;
104 1.1 pooka
105 1.76 pooka pg->uanon = (void *)kmem_alloc(PAGE_SIZE, KM_SLEEP);
106 1.76 pooka if (flags & UVM_PGA_ZERO)
107 1.76 pooka memset(pg->uanon, 0, PAGE_SIZE);
108 1.22 pooka pg->flags = PG_CLEAN|PG_BUSY|PG_FAKE;
109 1.1 pooka
110 1.31 ad TAILQ_INSERT_TAIL(&uobj->memq, pg, listq.queue);
111 1.59 pooka uobj->uo_npages++;
112 1.21 pooka
113 1.1 pooka return pg;
114 1.1 pooka }
115 1.1 pooka
116 1.21 pooka /*
117 1.21 pooka * Release a page.
118 1.21 pooka *
119 1.22 pooka * Called with the vm object locked.
120 1.21 pooka */
121 1.1 pooka void
122 1.22 pooka uvm_pagefree(struct vm_page *pg)
123 1.1 pooka {
124 1.5 pooka struct uvm_object *uobj = pg->uobject;
125 1.1 pooka
126 1.22 pooka if (pg->flags & PG_WANTED)
127 1.22 pooka wakeup(pg);
128 1.22 pooka
129 1.59 pooka uobj->uo_npages--;
130 1.31 ad TAILQ_REMOVE(&uobj->memq, pg, listq.queue);
131 1.27 pooka kmem_free((void *)pg->uanon, PAGE_SIZE);
132 1.27 pooka kmem_free(pg, sizeof(*pg));
133 1.1 pooka }
134 1.1 pooka
135 1.15 pooka void
136 1.61 pooka uvm_pagezero(struct vm_page *pg)
137 1.15 pooka {
138 1.15 pooka
139 1.61 pooka pg->flags &= ~PG_CLEAN;
140 1.61 pooka memset((void *)pg->uanon, 0, PAGE_SIZE);
141 1.15 pooka }
142 1.15 pooka
143 1.1 pooka /*
144 1.1 pooka * Anon object stuff
145 1.1 pooka */
146 1.1 pooka
147 1.1 pooka static int
148 1.1 pooka ao_get(struct uvm_object *uobj, voff_t off, struct vm_page **pgs,
149 1.1 pooka int *npages, int centeridx, vm_prot_t access_type,
150 1.1 pooka int advice, int flags)
151 1.1 pooka {
152 1.1 pooka struct vm_page *pg;
153 1.1 pooka int i;
154 1.1 pooka
155 1.1 pooka if (centeridx)
156 1.1 pooka panic("%s: centeridx != 0 not supported", __func__);
157 1.1 pooka
158 1.1 pooka /* loop over pages */
159 1.1 pooka off = trunc_page(off);
160 1.1 pooka for (i = 0; i < *npages; i++) {
161 1.23 pooka retrylookup:
162 1.10 pooka pg = uvm_pagelookup(uobj, off + (i << PAGE_SHIFT));
163 1.1 pooka if (pg) {
164 1.23 pooka if (pg->flags & PG_BUSY) {
165 1.23 pooka pg->flags |= PG_WANTED;
166 1.23 pooka UVM_UNLOCK_AND_WAIT(pg, &uobj->vmobjlock, 0,
167 1.23 pooka "aogetpg", 0);
168 1.23 pooka goto retrylookup;
169 1.23 pooka }
170 1.23 pooka pg->flags |= PG_BUSY;
171 1.1 pooka pgs[i] = pg;
172 1.1 pooka } else {
173 1.76 pooka pg = uvm_pagealloc(uobj,
174 1.76 pooka off + (i << PAGE_SHIFT), NULL, UVM_PGA_ZERO);
175 1.1 pooka pgs[i] = pg;
176 1.1 pooka }
177 1.1 pooka }
178 1.26 pooka mutex_exit(&uobj->vmobjlock);
179 1.1 pooka
180 1.1 pooka return 0;
181 1.1 pooka
182 1.1 pooka }
183 1.1 pooka
184 1.1 pooka static int
185 1.1 pooka ao_put(struct uvm_object *uobj, voff_t start, voff_t stop, int flags)
186 1.1 pooka {
187 1.1 pooka struct vm_page *pg;
188 1.1 pooka
189 1.1 pooka /* we only free all pages for now */
190 1.23 pooka if ((flags & PGO_FREE) == 0 || (flags & PGO_ALLPAGES) == 0) {
191 1.26 pooka mutex_exit(&uobj->vmobjlock);
192 1.1 pooka return 0;
193 1.23 pooka }
194 1.1 pooka
195 1.1 pooka while ((pg = TAILQ_FIRST(&uobj->memq)) != NULL)
196 1.22 pooka uvm_pagefree(pg);
197 1.26 pooka mutex_exit(&uobj->vmobjlock);
198 1.1 pooka
199 1.1 pooka return 0;
200 1.1 pooka }
201 1.1 pooka
202 1.1 pooka struct uvm_object *
203 1.1 pooka uao_create(vsize_t size, int flags)
204 1.1 pooka {
205 1.1 pooka struct uvm_object *uobj;
206 1.1 pooka
207 1.27 pooka uobj = kmem_zalloc(sizeof(struct uvm_object), KM_SLEEP);
208 1.1 pooka uobj->pgops = &aobj_pager;
209 1.1 pooka TAILQ_INIT(&uobj->memq);
210 1.26 pooka mutex_init(&uobj->vmobjlock, MUTEX_DEFAULT, IPL_NONE);
211 1.1 pooka
212 1.1 pooka return uobj;
213 1.1 pooka }
214 1.1 pooka
215 1.1 pooka void
216 1.1 pooka uao_detach(struct uvm_object *uobj)
217 1.1 pooka {
218 1.1 pooka
219 1.29 pooka mutex_enter(&uobj->vmobjlock);
220 1.1 pooka ao_put(uobj, 0, 0, PGO_ALLPAGES | PGO_FREE);
221 1.55 pooka mutex_destroy(&uobj->vmobjlock);
222 1.27 pooka kmem_free(uobj, sizeof(*uobj));
223 1.1 pooka }
224 1.1 pooka
225 1.1 pooka /*
226 1.1 pooka * Misc routines
227 1.1 pooka */
228 1.1 pooka
229 1.61 pooka static kmutex_t pagermtx;
230 1.61 pooka
231 1.1 pooka void
232 1.53 cegger rumpvm_init(void)
233 1.1 pooka {
234 1.1 pooka
235 1.1 pooka uvmexp.free = 1024*1024; /* XXX */
236 1.7 pooka uvm.pagedaemon_lwp = NULL; /* doesn't match curlwp */
237 1.38 pooka rump_vmspace.vm_map.pmap = pmap_kernel();
238 1.21 pooka
239 1.61 pooka mutex_init(&pagermtx, MUTEX_DEFAULT, 0);
240 1.25 ad mutex_init(&uvm_pageqlock, MUTEX_DEFAULT, 0);
241 1.35 pooka
242 1.50 pooka kernel_map->pmap = pmap_kernel();
243 1.35 pooka callback_head_init(&kernel_map_store.vmk_reclaim_callback, IPL_VM);
244 1.50 pooka kmem_map->pmap = pmap_kernel();
245 1.50 pooka callback_head_init(&kmem_map_store.vmk_reclaim_callback, IPL_VM);
246 1.1 pooka }
247 1.1 pooka
248 1.1 pooka
249 1.1 pooka void
250 1.7 pooka uvm_pagewire(struct vm_page *pg)
251 1.7 pooka {
252 1.7 pooka
253 1.7 pooka /* nada */
254 1.7 pooka }
255 1.7 pooka
256 1.7 pooka void
257 1.7 pooka uvm_pageunwire(struct vm_page *pg)
258 1.7 pooka {
259 1.7 pooka
260 1.7 pooka /* nada */
261 1.7 pooka }
262 1.7 pooka
263 1.69 pooka /*
264 1.69 pooka * This satisfies the "disgusting mmap hack" used by proplib.
265 1.69 pooka * We probably should grow some more assertables to make sure we're
266 1.69 pooka * not satisfying anything we shouldn't be satisfying. At least we
267 1.69 pooka * should make sure it's the local machine we're mmapping ...
268 1.69 pooka */
269 1.49 pooka int
270 1.49 pooka uvm_mmap(struct vm_map *map, vaddr_t *addr, vsize_t size, vm_prot_t prot,
271 1.49 pooka vm_prot_t maxprot, int flags, void *handle, voff_t off, vsize_t locklim)
272 1.49 pooka {
273 1.69 pooka void *uaddr;
274 1.69 pooka int error;
275 1.49 pooka
276 1.69 pooka if (prot != (VM_PROT_READ | VM_PROT_WRITE))
277 1.69 pooka panic("uvm_mmap() variant unsupported");
278 1.69 pooka if (flags != (MAP_PRIVATE | MAP_ANON))
279 1.69 pooka panic("uvm_mmap() variant unsupported");
280 1.69 pooka /* no reason in particular, but cf. uvm_default_mapaddr() */
281 1.69 pooka if (*addr != 0)
282 1.69 pooka panic("uvm_mmap() variant unsupported");
283 1.69 pooka
284 1.69 pooka uaddr = rumpuser_anonmmap(size, 0, 0, &error);
285 1.69 pooka if (uaddr == NULL)
286 1.69 pooka return error;
287 1.69 pooka
288 1.69 pooka *addr = (vaddr_t)uaddr;
289 1.69 pooka return 0;
290 1.49 pooka }
291 1.49 pooka
292 1.61 pooka struct pagerinfo {
293 1.61 pooka vaddr_t pgr_kva;
294 1.61 pooka int pgr_npages;
295 1.61 pooka struct vm_page **pgr_pgs;
296 1.61 pooka bool pgr_read;
297 1.61 pooka
298 1.61 pooka LIST_ENTRY(pagerinfo) pgr_entries;
299 1.61 pooka };
300 1.61 pooka static LIST_HEAD(, pagerinfo) pagerlist = LIST_HEAD_INITIALIZER(pagerlist);
301 1.61 pooka
302 1.61 pooka /*
303 1.61 pooka * Pager "map" in routine. Instead of mapping, we allocate memory
304 1.61 pooka * and copy page contents there. Not optimal or even strictly
305 1.61 pooka * correct (the caller might modify the page contents after mapping
306 1.61 pooka * them in), but what the heck. Assumes UVMPAGER_MAPIN_WAITOK.
307 1.61 pooka */
308 1.7 pooka vaddr_t
309 1.61 pooka uvm_pagermapin(struct vm_page **pgs, int npages, int flags)
310 1.7 pooka {
311 1.61 pooka struct pagerinfo *pgri;
312 1.61 pooka vaddr_t curkva;
313 1.61 pooka int i;
314 1.61 pooka
315 1.61 pooka /* allocate structures */
316 1.61 pooka pgri = kmem_alloc(sizeof(*pgri), KM_SLEEP);
317 1.61 pooka pgri->pgr_kva = (vaddr_t)kmem_alloc(npages * PAGE_SIZE, KM_SLEEP);
318 1.61 pooka pgri->pgr_npages = npages;
319 1.61 pooka pgri->pgr_pgs = kmem_alloc(sizeof(struct vm_page *) * npages, KM_SLEEP);
320 1.61 pooka pgri->pgr_read = (flags & UVMPAGER_MAPIN_READ) != 0;
321 1.61 pooka
322 1.61 pooka /* copy contents to "mapped" memory */
323 1.61 pooka for (i = 0, curkva = pgri->pgr_kva;
324 1.61 pooka i < npages;
325 1.61 pooka i++, curkva += PAGE_SIZE) {
326 1.61 pooka /*
327 1.61 pooka * We need to copy the previous contents of the pages to
328 1.61 pooka * the window even if we are reading from the
329 1.61 pooka * device, since the device might not fill the contents of
330 1.61 pooka * the full mapped range and we will end up corrupting
331 1.61 pooka * data when we unmap the window.
332 1.61 pooka */
333 1.61 pooka memcpy((void*)curkva, pgs[i]->uanon, PAGE_SIZE);
334 1.61 pooka pgri->pgr_pgs[i] = pgs[i];
335 1.61 pooka }
336 1.61 pooka
337 1.61 pooka mutex_enter(&pagermtx);
338 1.61 pooka LIST_INSERT_HEAD(&pagerlist, pgri, pgr_entries);
339 1.61 pooka mutex_exit(&pagermtx);
340 1.7 pooka
341 1.61 pooka return pgri->pgr_kva;
342 1.7 pooka }
343 1.7 pooka
344 1.61 pooka /*
345 1.61 pooka * map out the pager window. return contents from VA to page storage
346 1.61 pooka * and free structures.
347 1.61 pooka *
348 1.61 pooka * Note: does not currently support partial frees
349 1.61 pooka */
350 1.61 pooka void
351 1.61 pooka uvm_pagermapout(vaddr_t kva, int npages)
352 1.7 pooka {
353 1.61 pooka struct pagerinfo *pgri;
354 1.61 pooka vaddr_t curkva;
355 1.61 pooka int i;
356 1.7 pooka
357 1.61 pooka mutex_enter(&pagermtx);
358 1.61 pooka LIST_FOREACH(pgri, &pagerlist, pgr_entries) {
359 1.61 pooka if (pgri->pgr_kva == kva)
360 1.61 pooka break;
361 1.61 pooka }
362 1.61 pooka KASSERT(pgri);
363 1.61 pooka if (pgri->pgr_npages != npages)
364 1.61 pooka panic("uvm_pagermapout: partial unmapping not supported");
365 1.61 pooka LIST_REMOVE(pgri, pgr_entries);
366 1.61 pooka mutex_exit(&pagermtx);
367 1.61 pooka
368 1.61 pooka if (pgri->pgr_read) {
369 1.61 pooka for (i = 0, curkva = pgri->pgr_kva;
370 1.61 pooka i < pgri->pgr_npages;
371 1.61 pooka i++, curkva += PAGE_SIZE) {
372 1.61 pooka memcpy(pgri->pgr_pgs[i]->uanon,(void*)curkva,PAGE_SIZE);
373 1.21 pooka }
374 1.21 pooka }
375 1.10 pooka
376 1.61 pooka kmem_free(pgri->pgr_pgs, npages * sizeof(struct vm_page *));
377 1.61 pooka kmem_free((void*)pgri->pgr_kva, npages * PAGE_SIZE);
378 1.61 pooka kmem_free(pgri, sizeof(*pgri));
379 1.7 pooka }
380 1.7 pooka
381 1.61 pooka /*
382 1.61 pooka * convert va in pager window to page structure.
383 1.61 pooka * XXX: how expensive is this (global lock, list traversal)?
384 1.61 pooka */
385 1.14 pooka struct vm_page *
386 1.14 pooka uvm_pageratop(vaddr_t va)
387 1.14 pooka {
388 1.61 pooka struct pagerinfo *pgri;
389 1.61 pooka struct vm_page *pg = NULL;
390 1.61 pooka int i;
391 1.14 pooka
392 1.61 pooka mutex_enter(&pagermtx);
393 1.61 pooka LIST_FOREACH(pgri, &pagerlist, pgr_entries) {
394 1.61 pooka if (pgri->pgr_kva <= va
395 1.61 pooka && va < pgri->pgr_kva + pgri->pgr_npages*PAGE_SIZE)
396 1.21 pooka break;
397 1.61 pooka }
398 1.61 pooka if (pgri) {
399 1.61 pooka i = (va - pgri->pgr_kva) >> PAGE_SHIFT;
400 1.61 pooka pg = pgri->pgr_pgs[i];
401 1.61 pooka }
402 1.61 pooka mutex_exit(&pagermtx);
403 1.21 pooka
404 1.61 pooka return pg;
405 1.61 pooka }
406 1.15 pooka
407 1.61 pooka /* Called with the vm object locked */
408 1.61 pooka struct vm_page *
409 1.61 pooka uvm_pagelookup(struct uvm_object *uobj, voff_t off)
410 1.61 pooka {
411 1.61 pooka struct vm_page *pg;
412 1.61 pooka
413 1.61 pooka TAILQ_FOREACH(pg, &uobj->memq, listq.queue) {
414 1.61 pooka if (pg->offset == off) {
415 1.61 pooka return pg;
416 1.61 pooka }
417 1.61 pooka }
418 1.61 pooka
419 1.61 pooka return NULL;
420 1.14 pooka }
421 1.14 pooka
422 1.7 pooka void
423 1.22 pooka uvm_page_unbusy(struct vm_page **pgs, int npgs)
424 1.22 pooka {
425 1.22 pooka struct vm_page *pg;
426 1.22 pooka int i;
427 1.22 pooka
428 1.22 pooka for (i = 0; i < npgs; i++) {
429 1.22 pooka pg = pgs[i];
430 1.22 pooka if (pg == NULL)
431 1.22 pooka continue;
432 1.22 pooka
433 1.22 pooka KASSERT(pg->flags & PG_BUSY);
434 1.22 pooka if (pg->flags & PG_WANTED)
435 1.22 pooka wakeup(pg);
436 1.36 pooka if (pg->flags & PG_RELEASED)
437 1.36 pooka uvm_pagefree(pg);
438 1.36 pooka else
439 1.36 pooka pg->flags &= ~(PG_WANTED|PG_BUSY);
440 1.22 pooka }
441 1.22 pooka }
442 1.22 pooka
443 1.22 pooka void
444 1.7 pooka uvm_estimatepageable(int *active, int *inactive)
445 1.7 pooka {
446 1.7 pooka
447 1.19 pooka /* XXX: guessing game */
448 1.19 pooka *active = 1024;
449 1.19 pooka *inactive = 1024;
450 1.7 pooka }
451 1.7 pooka
452 1.39 pooka struct vm_map_kernel *
453 1.39 pooka vm_map_to_kernel(struct vm_map *map)
454 1.39 pooka {
455 1.39 pooka
456 1.39 pooka return (struct vm_map_kernel *)map;
457 1.39 pooka }
458 1.39 pooka
459 1.41 pooka bool
460 1.41 pooka vm_map_starved_p(struct vm_map *map)
461 1.41 pooka {
462 1.41 pooka
463 1.41 pooka return false;
464 1.41 pooka }
465 1.41 pooka
466 1.39 pooka void
467 1.39 pooka uvm_pageout_start(int npages)
468 1.39 pooka {
469 1.39 pooka
470 1.39 pooka uvmexp.paging += npages;
471 1.39 pooka }
472 1.39 pooka
473 1.39 pooka void
474 1.39 pooka uvm_pageout_done(int npages)
475 1.39 pooka {
476 1.39 pooka
477 1.39 pooka uvmexp.paging -= npages;
478 1.39 pooka
479 1.39 pooka /*
480 1.39 pooka * wake up either of pagedaemon or LWPs waiting for it.
481 1.39 pooka */
482 1.39 pooka
483 1.39 pooka if (uvmexp.free <= uvmexp.reserve_kernel) {
484 1.39 pooka wakeup(&uvm.pagedaemon);
485 1.39 pooka } else {
486 1.39 pooka wakeup(&uvmexp.free);
487 1.39 pooka }
488 1.39 pooka }
489 1.39 pooka
490 1.41 pooka int
491 1.41 pooka uvm_loan(struct vm_map *map, vaddr_t start, vsize_t len, void *v, int flags)
492 1.41 pooka {
493 1.41 pooka
494 1.41 pooka panic("%s: unimplemented", __func__);
495 1.41 pooka }
496 1.41 pooka
497 1.41 pooka void
498 1.41 pooka uvm_unloan(void *v, int npages, int flags)
499 1.41 pooka {
500 1.41 pooka
501 1.41 pooka panic("%s: unimplemented", __func__);
502 1.41 pooka }
503 1.41 pooka
504 1.43 pooka int
505 1.43 pooka uvm_loanuobjpages(struct uvm_object *uobj, voff_t pgoff, int orignpages,
506 1.43 pooka struct vm_page **opp)
507 1.43 pooka {
508 1.43 pooka
509 1.72 pooka return EBUSY;
510 1.43 pooka }
511 1.43 pooka
512 1.73 pooka #ifdef DEBUGPRINT
513 1.56 pooka void
514 1.56 pooka uvm_object_printit(struct uvm_object *uobj, bool full,
515 1.56 pooka void (*pr)(const char *, ...))
516 1.56 pooka {
517 1.56 pooka
518 1.75 pooka pr("VM OBJECT at %p, refs %d", uobj, uobj->uo_refs);
519 1.56 pooka }
520 1.73 pooka #endif
521 1.56 pooka
522 1.68 pooka vaddr_t
523 1.68 pooka uvm_default_mapaddr(struct proc *p, vaddr_t base, vsize_t sz)
524 1.68 pooka {
525 1.68 pooka
526 1.68 pooka return 0;
527 1.68 pooka }
528 1.68 pooka
529 1.71 pooka int
530 1.71 pooka uvm_map_protect(struct vm_map *map, vaddr_t start, vaddr_t end,
531 1.71 pooka vm_prot_t prot, bool set_max)
532 1.71 pooka {
533 1.71 pooka
534 1.71 pooka return EOPNOTSUPP;
535 1.71 pooka }
536 1.71 pooka
537 1.9 pooka /*
538 1.12 pooka * UVM km
539 1.12 pooka */
540 1.12 pooka
541 1.12 pooka vaddr_t
542 1.12 pooka uvm_km_alloc(struct vm_map *map, vsize_t size, vsize_t align, uvm_flag_t flags)
543 1.12 pooka {
544 1.12 pooka void *rv;
545 1.50 pooka int alignbit, error;
546 1.50 pooka
547 1.50 pooka alignbit = 0;
548 1.50 pooka if (align) {
549 1.50 pooka alignbit = ffs(align)-1;
550 1.50 pooka }
551 1.50 pooka
552 1.50 pooka rv = rumpuser_anonmmap(size, alignbit, flags & UVM_KMF_EXEC, &error);
553 1.50 pooka if (rv == NULL) {
554 1.50 pooka if (flags & (UVM_KMF_CANFAIL | UVM_KMF_NOWAIT))
555 1.50 pooka return 0;
556 1.50 pooka else
557 1.50 pooka panic("uvm_km_alloc failed");
558 1.50 pooka }
559 1.12 pooka
560 1.50 pooka if (flags & UVM_KMF_ZERO)
561 1.12 pooka memset(rv, 0, size);
562 1.12 pooka
563 1.12 pooka return (vaddr_t)rv;
564 1.12 pooka }
565 1.12 pooka
566 1.12 pooka void
567 1.12 pooka uvm_km_free(struct vm_map *map, vaddr_t vaddr, vsize_t size, uvm_flag_t flags)
568 1.12 pooka {
569 1.12 pooka
570 1.50 pooka rumpuser_unmap((void *)vaddr, size);
571 1.12 pooka }
572 1.12 pooka
573 1.12 pooka struct vm_map *
574 1.12 pooka uvm_km_suballoc(struct vm_map *map, vaddr_t *minaddr, vaddr_t *maxaddr,
575 1.12 pooka vsize_t size, int pageable, bool fixed, struct vm_map_kernel *submap)
576 1.12 pooka {
577 1.12 pooka
578 1.12 pooka return (struct vm_map *)417416;
579 1.12 pooka }
580 1.40 pooka
581 1.40 pooka vaddr_t
582 1.40 pooka uvm_km_alloc_poolpage(struct vm_map *map, bool waitok)
583 1.40 pooka {
584 1.40 pooka
585 1.40 pooka return (vaddr_t)rumpuser_malloc(PAGE_SIZE, !waitok);
586 1.40 pooka }
587 1.40 pooka
588 1.40 pooka void
589 1.40 pooka uvm_km_free_poolpage(struct vm_map *map, vaddr_t addr)
590 1.40 pooka {
591 1.40 pooka
592 1.50 pooka rumpuser_unmap((void *)addr, PAGE_SIZE);
593 1.50 pooka }
594 1.50 pooka
595 1.50 pooka vaddr_t
596 1.50 pooka uvm_km_alloc_poolpage_cache(struct vm_map *map, bool waitok)
597 1.50 pooka {
598 1.50 pooka
599 1.77 pooka return uvm_km_alloc_poolpage(map, waitok);
600 1.50 pooka }
601 1.50 pooka
602 1.50 pooka void
603 1.50 pooka uvm_km_free_poolpage_cache(struct vm_map *map, vaddr_t vaddr)
604 1.50 pooka {
605 1.50 pooka
606 1.77 pooka uvm_km_free_poolpage(map, vaddr);
607 1.40 pooka }
608 1.57 pooka
609 1.74 pooka void
610 1.74 pooka uvm_km_va_drain(struct vm_map *map, uvm_flag_t flags)
611 1.74 pooka {
612 1.74 pooka
613 1.74 pooka /* we eventually maybe want some model for available memory */
614 1.74 pooka }
615 1.74 pooka
616 1.57 pooka /*
617 1.57 pooka * Mapping and vm space locking routines.
618 1.57 pooka * XXX: these don't work for non-local vmspaces
619 1.57 pooka */
620 1.57 pooka int
621 1.57 pooka uvm_vslock(struct vmspace *vs, void *addr, size_t len, vm_prot_t access)
622 1.57 pooka {
623 1.57 pooka
624 1.57 pooka KASSERT(vs == &rump_vmspace);
625 1.57 pooka return 0;
626 1.57 pooka }
627 1.57 pooka
628 1.57 pooka void
629 1.57 pooka uvm_vsunlock(struct vmspace *vs, void *addr, size_t len)
630 1.57 pooka {
631 1.57 pooka
632 1.57 pooka KASSERT(vs == &rump_vmspace);
633 1.57 pooka }
634 1.57 pooka
635 1.57 pooka void
636 1.57 pooka vmapbuf(struct buf *bp, vsize_t len)
637 1.57 pooka {
638 1.57 pooka
639 1.57 pooka bp->b_saveaddr = bp->b_data;
640 1.57 pooka }
641 1.57 pooka
642 1.57 pooka void
643 1.57 pooka vunmapbuf(struct buf *bp, vsize_t len)
644 1.57 pooka {
645 1.57 pooka
646 1.57 pooka bp->b_data = bp->b_saveaddr;
647 1.57 pooka bp->b_saveaddr = 0;
648 1.57 pooka }
649 1.61 pooka
650 1.61 pooka void
651 1.61 pooka uvm_wait(const char *msg)
652 1.61 pooka {
653 1.61 pooka
654 1.61 pooka /* nothing to wait for */
655 1.61 pooka }
656 1.61 pooka
657 1.66 pooka void
658 1.66 pooka uvmspace_free(struct vmspace *vm)
659 1.66 pooka {
660 1.66 pooka
661 1.66 pooka /* nothing for now */
662 1.66 pooka }
663 1.66 pooka
664 1.66 pooka int
665 1.66 pooka uvm_io(struct vm_map *map, struct uio *uio)
666 1.66 pooka {
667 1.66 pooka
668 1.66 pooka /*
669 1.66 pooka * just do direct uio for now. but this needs some vmspace
670 1.66 pooka * olympics for rump_sysproxy.
671 1.66 pooka */
672 1.66 pooka return uiomove((void *)(vaddr_t)uio->uio_offset, uio->uio_resid, uio);
673 1.66 pooka }
674 1.66 pooka
675 1.61 pooka /*
676 1.61 pooka * page life cycle stuff. it really doesn't exist, so just stubs.
677 1.61 pooka */
678 1.61 pooka
679 1.61 pooka void
680 1.61 pooka uvm_pageactivate(struct vm_page *pg)
681 1.61 pooka {
682 1.61 pooka
683 1.61 pooka /* nada */
684 1.61 pooka }
685 1.61 pooka
686 1.61 pooka void
687 1.61 pooka uvm_pagedeactivate(struct vm_page *pg)
688 1.61 pooka {
689 1.61 pooka
690 1.61 pooka /* nada */
691 1.61 pooka }
692 1.61 pooka
693 1.61 pooka void
694 1.61 pooka uvm_pagedequeue(struct vm_page *pg)
695 1.61 pooka {
696 1.61 pooka
697 1.61 pooka /* nada*/
698 1.61 pooka }
699 1.61 pooka
700 1.61 pooka void
701 1.61 pooka uvm_pageenqueue(struct vm_page *pg)
702 1.61 pooka {
703 1.61 pooka
704 1.61 pooka /* nada */
705 1.61 pooka }
706