uvm_bio.c revision 1.75 1 1.75 hannken /* $NetBSD: uvm_bio.c,v 1.75 2011/06/17 09:50:52 hannken Exp $ */
2 1.2 chs
3 1.13 chs /*
4 1.2 chs * Copyright (c) 1998 Chuck Silvers.
5 1.2 chs * All rights reserved.
6 1.2 chs *
7 1.2 chs * Redistribution and use in source and binary forms, with or without
8 1.2 chs * modification, are permitted provided that the following conditions
9 1.2 chs * are met:
10 1.2 chs * 1. Redistributions of source code must retain the above copyright
11 1.2 chs * notice, this list of conditions and the following disclaimer.
12 1.2 chs * 2. Redistributions in binary form must reproduce the above copyright
13 1.2 chs * notice, this list of conditions and the following disclaimer in the
14 1.2 chs * documentation and/or other materials provided with the distribution.
15 1.2 chs * 3. The name of the author may not be used to endorse or promote products
16 1.2 chs * derived from this software without specific prior written permission.
17 1.2 chs *
18 1.2 chs * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
19 1.2 chs * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
20 1.2 chs * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
21 1.2 chs * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
22 1.2 chs * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
23 1.2 chs * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
24 1.2 chs * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
25 1.2 chs * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
26 1.2 chs * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
27 1.2 chs * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
28 1.2 chs * SUCH DAMAGE.
29 1.2 chs *
30 1.2 chs */
31 1.2 chs
32 1.2 chs /*
33 1.33 chs * uvm_bio.c: buffered i/o object mapping cache
34 1.2 chs */
35 1.2 chs
36 1.21 lukem #include <sys/cdefs.h>
37 1.75 hannken __KERNEL_RCSID(0, "$NetBSD: uvm_bio.c,v 1.75 2011/06/17 09:50:52 hannken Exp $");
38 1.21 lukem
39 1.21 lukem #include "opt_uvmhist.h"
40 1.50 yamt #include "opt_ubc.h"
41 1.2 chs
42 1.2 chs #include <sys/param.h>
43 1.2 chs #include <sys/systm.h>
44 1.65 ad #include <sys/kmem.h>
45 1.2 chs #include <sys/kernel.h>
46 1.60 ad #include <sys/proc.h>
47 1.67 pooka #include <sys/vnode.h>
48 1.2 chs
49 1.2 chs #include <uvm/uvm.h>
50 1.2 chs
51 1.2 chs /*
52 1.2 chs * global data structures
53 1.2 chs */
54 1.2 chs
55 1.2 chs /*
56 1.2 chs * local functions
57 1.2 chs */
58 1.2 chs
59 1.39 thorpej static int ubc_fault(struct uvm_faultinfo *, vaddr_t, struct vm_page **,
60 1.44 drochner int, int, vm_prot_t, int);
61 1.39 thorpej static struct ubc_map *ubc_find_mapping(struct uvm_object *, voff_t);
62 1.2 chs
63 1.2 chs /*
64 1.2 chs * local data structues
65 1.2 chs */
66 1.2 chs
67 1.18 chs #define UBC_HASH(uobj, offset) \
68 1.18 chs (((((u_long)(uobj)) >> 8) + (((u_long)(offset)) >> PAGE_SHIFT)) & \
69 1.2 chs ubc_object.hashmask)
70 1.2 chs
71 1.18 chs #define UBC_QUEUE(offset) \
72 1.18 chs (&ubc_object.inactive[(((u_long)(offset)) >> ubc_winshift) & \
73 1.18 chs (UBC_NQUEUES - 1)])
74 1.18 chs
75 1.18 chs #define UBC_UMAP_ADDR(u) \
76 1.18 chs (vaddr_t)(ubc_object.kva + (((u) - ubc_object.umap) << ubc_winshift))
77 1.18 chs
78 1.18 chs
79 1.18 chs #define UMAP_PAGES_LOCKED 0x0001
80 1.18 chs #define UMAP_MAPPING_CACHED 0x0002
81 1.2 chs
82 1.73 rmind struct ubc_map {
83 1.2 chs struct uvm_object * uobj; /* mapped object */
84 1.2 chs voff_t offset; /* offset into uobj */
85 1.33 chs voff_t writeoff; /* write offset */
86 1.33 chs vsize_t writelen; /* write len */
87 1.18 chs int refcount; /* refcount on mapping */
88 1.18 chs int flags; /* extra state */
89 1.42 yamt int advice;
90 1.2 chs
91 1.2 chs LIST_ENTRY(ubc_map) hash; /* hash table */
92 1.2 chs TAILQ_ENTRY(ubc_map) inactive; /* inactive queue */
93 1.73 rmind LIST_ENTRY(ubc_map) list; /* per-object list */
94 1.2 chs };
95 1.2 chs
96 1.73 rmind static struct ubc_object {
97 1.2 chs struct uvm_object uobj; /* glue for uvm_map() */
98 1.2 chs char *kva; /* where ubc_object is mapped */
99 1.2 chs struct ubc_map *umap; /* array of ubc_map's */
100 1.2 chs
101 1.2 chs LIST_HEAD(, ubc_map) *hash; /* hashtable for cached ubc_map's */
102 1.2 chs u_long hashmask; /* mask for hashtable */
103 1.2 chs
104 1.2 chs TAILQ_HEAD(ubc_inactive_head, ubc_map) *inactive;
105 1.2 chs /* inactive queues for ubc_map's */
106 1.2 chs } ubc_object;
107 1.2 chs
108 1.63 yamt const struct uvm_pagerops ubc_pager = {
109 1.48 christos .pgo_fault = ubc_fault,
110 1.2 chs /* ... rest are NULL */
111 1.2 chs };
112 1.2 chs
113 1.2 chs int ubc_nwins = UBC_NWINS;
114 1.11 chs int ubc_winshift = UBC_WINSHIFT;
115 1.11 chs int ubc_winsize;
116 1.27 thorpej #if defined(PMAP_PREFER)
117 1.2 chs int ubc_nqueues;
118 1.2 chs #define UBC_NQUEUES ubc_nqueues
119 1.2 chs #else
120 1.2 chs #define UBC_NQUEUES 1
121 1.2 chs #endif
122 1.2 chs
123 1.50 yamt #if defined(UBC_STATS)
124 1.50 yamt
125 1.50 yamt #define UBC_EVCNT_DEFINE(name) \
126 1.50 yamt struct evcnt ubc_evcnt_##name = \
127 1.50 yamt EVCNT_INITIALIZER(EVCNT_TYPE_MISC, NULL, "ubc", #name); \
128 1.50 yamt EVCNT_ATTACH_STATIC(ubc_evcnt_##name);
129 1.50 yamt #define UBC_EVCNT_INCR(name) ubc_evcnt_##name.ev_count++
130 1.50 yamt
131 1.50 yamt #else /* defined(UBC_STATS) */
132 1.50 yamt
133 1.50 yamt #define UBC_EVCNT_DEFINE(name) /* nothing */
134 1.50 yamt #define UBC_EVCNT_INCR(name) /* nothing */
135 1.50 yamt
136 1.50 yamt #endif /* defined(UBC_STATS) */
137 1.50 yamt
138 1.50 yamt UBC_EVCNT_DEFINE(wincachehit)
139 1.50 yamt UBC_EVCNT_DEFINE(wincachemiss)
140 1.57 yamt UBC_EVCNT_DEFINE(faultbusy)
141 1.50 yamt
142 1.2 chs /*
143 1.2 chs * ubc_init
144 1.2 chs *
145 1.2 chs * init pager private data structures.
146 1.2 chs */
147 1.2 chs
148 1.2 chs void
149 1.2 chs ubc_init(void)
150 1.2 chs {
151 1.2 chs struct ubc_map *umap;
152 1.2 chs vaddr_t va;
153 1.2 chs int i;
154 1.15 simonb
155 1.15 simonb /*
156 1.15 simonb * Make sure ubc_winshift is sane.
157 1.15 simonb */
158 1.15 simonb if (ubc_winshift < PAGE_SHIFT)
159 1.15 simonb ubc_winshift = PAGE_SHIFT;
160 1.2 chs
161 1.2 chs /*
162 1.2 chs * init ubc_object.
163 1.2 chs * alloc and init ubc_map's.
164 1.2 chs * init inactive queues.
165 1.2 chs * alloc and init hashtable.
166 1.2 chs * map in ubc_object.
167 1.2 chs */
168 1.2 chs
169 1.73 rmind uvm_obj_init(&ubc_object.uobj, &ubc_pager, true, UVM_OBJ_KERN);
170 1.2 chs
171 1.65 ad ubc_object.umap = kmem_zalloc(ubc_nwins * sizeof(struct ubc_map),
172 1.65 ad KM_SLEEP);
173 1.7 enami if (ubc_object.umap == NULL)
174 1.7 enami panic("ubc_init: failed to allocate ubc_map");
175 1.2 chs
176 1.18 chs if (ubc_winshift < PAGE_SHIFT) {
177 1.18 chs ubc_winshift = PAGE_SHIFT;
178 1.18 chs }
179 1.2 chs va = (vaddr_t)1L;
180 1.2 chs #ifdef PMAP_PREFER
181 1.36 atatat PMAP_PREFER(0, &va, 0, 0); /* kernel is never topdown */
182 1.11 chs ubc_nqueues = va >> ubc_winshift;
183 1.11 chs if (ubc_nqueues == 0) {
184 1.11 chs ubc_nqueues = 1;
185 1.2 chs }
186 1.2 chs #endif
187 1.11 chs ubc_winsize = 1 << ubc_winshift;
188 1.65 ad ubc_object.inactive = kmem_alloc(UBC_NQUEUES *
189 1.65 ad sizeof(struct ubc_inactive_head), KM_SLEEP);
190 1.7 enami if (ubc_object.inactive == NULL)
191 1.7 enami panic("ubc_init: failed to allocate inactive queue heads");
192 1.2 chs for (i = 0; i < UBC_NQUEUES; i++) {
193 1.2 chs TAILQ_INIT(&ubc_object.inactive[i]);
194 1.2 chs }
195 1.2 chs for (i = 0; i < ubc_nwins; i++) {
196 1.2 chs umap = &ubc_object.umap[i];
197 1.2 chs TAILQ_INSERT_TAIL(&ubc_object.inactive[i & (UBC_NQUEUES - 1)],
198 1.2 chs umap, inactive);
199 1.2 chs }
200 1.2 chs
201 1.65 ad ubc_object.hash = hashinit(ubc_nwins, HASH_LIST, true,
202 1.65 ad &ubc_object.hashmask);
203 1.2 chs for (i = 0; i <= ubc_object.hashmask; i++) {
204 1.2 chs LIST_INIT(&ubc_object.hash[i]);
205 1.2 chs }
206 1.2 chs
207 1.2 chs if (uvm_map(kernel_map, (vaddr_t *)&ubc_object.kva,
208 1.11 chs ubc_nwins << ubc_winshift, &ubc_object.uobj, 0, (vsize_t)va,
209 1.2 chs UVM_MAPFLAG(UVM_PROT_ALL, UVM_PROT_ALL, UVM_INH_NONE,
210 1.9 chs UVM_ADV_RANDOM, UVM_FLAG_NOMERGE)) != 0) {
211 1.26 provos panic("ubc_init: failed to map ubc_object");
212 1.2 chs }
213 1.2 chs UVMHIST_INIT(ubchist, 300);
214 1.2 chs }
215 1.2 chs
216 1.2 chs /*
217 1.69 rmind * ubc_fault_page: helper of ubc_fault to handle a single page.
218 1.70 rmind *
219 1.70 rmind * => Caller has UVM object locked.
220 1.73 rmind * => Caller will perform pmap_update().
221 1.69 rmind */
222 1.69 rmind
223 1.70 rmind static inline int
224 1.69 rmind ubc_fault_page(const struct uvm_faultinfo *ufi, const struct ubc_map *umap,
225 1.69 rmind struct vm_page *pg, vm_prot_t prot, vm_prot_t access_type, vaddr_t va)
226 1.69 rmind {
227 1.69 rmind struct uvm_object *uobj;
228 1.69 rmind vm_prot_t mask;
229 1.69 rmind int error;
230 1.69 rmind bool rdonly;
231 1.69 rmind
232 1.69 rmind uobj = pg->uobject;
233 1.73 rmind KASSERT(mutex_owned(uobj->vmobjlock));
234 1.70 rmind
235 1.69 rmind if (pg->flags & PG_WANTED) {
236 1.69 rmind wakeup(pg);
237 1.69 rmind }
238 1.69 rmind KASSERT((pg->flags & PG_FAKE) == 0);
239 1.69 rmind if (pg->flags & PG_RELEASED) {
240 1.69 rmind mutex_enter(&uvm_pageqlock);
241 1.69 rmind uvm_pagefree(pg);
242 1.69 rmind mutex_exit(&uvm_pageqlock);
243 1.70 rmind return 0;
244 1.69 rmind }
245 1.69 rmind if (pg->loan_count != 0) {
246 1.69 rmind
247 1.69 rmind /*
248 1.69 rmind * Avoid unneeded loan break, if possible.
249 1.69 rmind */
250 1.69 rmind
251 1.69 rmind if ((access_type & VM_PROT_WRITE) == 0) {
252 1.69 rmind prot &= ~VM_PROT_WRITE;
253 1.69 rmind }
254 1.69 rmind if (prot & VM_PROT_WRITE) {
255 1.69 rmind struct vm_page *newpg;
256 1.69 rmind
257 1.69 rmind newpg = uvm_loanbreak(pg);
258 1.69 rmind if (newpg == NULL) {
259 1.69 rmind uvm_page_unbusy(&pg, 1);
260 1.70 rmind return ENOMEM;
261 1.69 rmind }
262 1.69 rmind pg = newpg;
263 1.69 rmind }
264 1.69 rmind }
265 1.69 rmind
266 1.69 rmind /*
267 1.69 rmind * Note that a page whose backing store is partially allocated
268 1.69 rmind * is marked as PG_RDONLY.
269 1.69 rmind */
270 1.69 rmind
271 1.69 rmind KASSERT((pg->flags & PG_RDONLY) == 0 ||
272 1.69 rmind (access_type & VM_PROT_WRITE) == 0 ||
273 1.69 rmind pg->offset < umap->writeoff ||
274 1.69 rmind pg->offset + PAGE_SIZE > umap->writeoff + umap->writelen);
275 1.69 rmind
276 1.69 rmind rdonly = ((access_type & VM_PROT_WRITE) == 0 &&
277 1.69 rmind (pg->flags & PG_RDONLY) != 0) ||
278 1.69 rmind UVM_OBJ_NEEDS_WRITEFAULT(uobj);
279 1.69 rmind mask = rdonly ? ~VM_PROT_WRITE : VM_PROT_ALL;
280 1.69 rmind
281 1.69 rmind error = pmap_enter(ufi->orig_map->pmap, va, VM_PAGE_TO_PHYS(pg),
282 1.69 rmind prot & mask, PMAP_CANFAIL | (access_type & mask));
283 1.69 rmind
284 1.69 rmind mutex_enter(&uvm_pageqlock);
285 1.69 rmind uvm_pageactivate(pg);
286 1.69 rmind mutex_exit(&uvm_pageqlock);
287 1.69 rmind pg->flags &= ~(PG_BUSY|PG_WANTED);
288 1.69 rmind UVM_PAGE_OWN(pg, NULL);
289 1.69 rmind
290 1.70 rmind return error;
291 1.69 rmind }
292 1.69 rmind
293 1.69 rmind /*
294 1.2 chs * ubc_fault: fault routine for ubc mapping
295 1.2 chs */
296 1.18 chs
297 1.39 thorpej static int
298 1.54 yamt ubc_fault(struct uvm_faultinfo *ufi, vaddr_t ign1, struct vm_page **ign2,
299 1.54 yamt int ign3, int ign4, vm_prot_t access_type, int flags)
300 1.2 chs {
301 1.2 chs struct uvm_object *uobj;
302 1.2 chs struct ubc_map *umap;
303 1.2 chs vaddr_t va, eva, ubc_offset, slot_offset;
304 1.69 rmind struct vm_page *pgs[ubc_winsize >> PAGE_SHIFT];
305 1.18 chs int i, error, npages;
306 1.23 chs vm_prot_t prot;
307 1.69 rmind
308 1.69 rmind UVMHIST_FUNC("ubc_fault"); UVMHIST_CALLED(ubchist);
309 1.2 chs
310 1.2 chs /*
311 1.2 chs * no need to try with PGO_LOCKED...
312 1.2 chs * we don't need to have the map locked since we know that
313 1.2 chs * no one will mess with it until our reference is released.
314 1.2 chs */
315 1.18 chs
316 1.2 chs if (flags & PGO_LOCKED) {
317 1.73 rmind uvmfault_unlockall(ufi, NULL, &ubc_object.uobj);
318 1.2 chs flags &= ~PGO_LOCKED;
319 1.2 chs }
320 1.2 chs
321 1.2 chs va = ufi->orig_rvaddr;
322 1.2 chs ubc_offset = va - (vaddr_t)ubc_object.kva;
323 1.11 chs umap = &ubc_object.umap[ubc_offset >> ubc_winshift];
324 1.2 chs KASSERT(umap->refcount != 0);
325 1.53 yamt KASSERT((umap->flags & UMAP_PAGES_LOCKED) == 0);
326 1.18 chs slot_offset = ubc_offset & (ubc_winsize - 1);
327 1.2 chs
328 1.34 chs /*
329 1.34 chs * some platforms cannot write to individual bytes atomically, so
330 1.34 chs * software has to do read/modify/write of larger quantities instead.
331 1.34 chs * this means that the access_type for "write" operations
332 1.34 chs * can be VM_PROT_READ, which confuses us mightily.
333 1.37 perry *
334 1.34 chs * deal with this by resetting access_type based on the info
335 1.34 chs * that ubc_alloc() stores for us.
336 1.34 chs */
337 1.34 chs
338 1.34 chs access_type = umap->writelen ? VM_PROT_WRITE : VM_PROT_READ;
339 1.34 chs UVMHIST_LOG(ubchist, "va 0x%lx ubc_offset 0x%lx access_type %d",
340 1.34 chs va, ubc_offset, access_type, 0);
341 1.34 chs
342 1.33 chs #ifdef DIAGNOSTIC
343 1.33 chs if ((access_type & VM_PROT_WRITE) != 0) {
344 1.33 chs if (slot_offset < trunc_page(umap->writeoff) ||
345 1.33 chs umap->writeoff + umap->writelen <= slot_offset) {
346 1.33 chs panic("ubc_fault: out of range write");
347 1.33 chs }
348 1.33 chs }
349 1.33 chs #endif
350 1.33 chs
351 1.2 chs /* no umap locking needed since we have a ref on the umap */
352 1.2 chs uobj = umap->uobj;
353 1.2 chs
354 1.33 chs if ((access_type & VM_PROT_WRITE) == 0) {
355 1.33 chs npages = (ubc_winsize - slot_offset) >> PAGE_SHIFT;
356 1.33 chs } else {
357 1.33 chs npages = (round_page(umap->offset + umap->writeoff +
358 1.33 chs umap->writelen) - (umap->offset + slot_offset))
359 1.33 chs >> PAGE_SHIFT;
360 1.33 chs flags |= PGO_PASTEOF;
361 1.33 chs }
362 1.2 chs
363 1.2 chs again:
364 1.2 chs memset(pgs, 0, sizeof (pgs));
365 1.73 rmind mutex_enter(uobj->vmobjlock);
366 1.2 chs
367 1.33 chs UVMHIST_LOG(ubchist, "slot_offset 0x%x writeoff 0x%x writelen 0x%x ",
368 1.33 chs slot_offset, umap->writeoff, umap->writelen, 0);
369 1.33 chs UVMHIST_LOG(ubchist, "getpages uobj %p offset 0x%x npages %d",
370 1.18 chs uobj, umap->offset + slot_offset, npages, 0);
371 1.2 chs
372 1.33 chs error = (*uobj->pgops->pgo_get)(uobj, umap->offset + slot_offset, pgs,
373 1.42 yamt &npages, 0, access_type, umap->advice, flags | PGO_NOBLOCKALLOC |
374 1.41 yamt PGO_NOTIMESTAMP);
375 1.24 simonb UVMHIST_LOG(ubchist, "getpages error %d npages %d", error, npages, 0,
376 1.24 simonb 0);
377 1.2 chs
378 1.5 chs if (error == EAGAIN) {
379 1.70 rmind kpause("ubc_fault", false, hz >> 2, NULL);
380 1.2 chs goto again;
381 1.2 chs }
382 1.5 chs if (error) {
383 1.10 chs return error;
384 1.5 chs }
385 1.2 chs
386 1.69 rmind /*
387 1.69 rmind * For virtually-indexed, virtually-tagged caches we should avoid
388 1.69 rmind * creating writable mappings when we do not absolutely need them,
389 1.69 rmind * since the "compatible alias" trick does not work on such caches.
390 1.69 rmind * Otherwise, we can always map the pages writable.
391 1.69 rmind */
392 1.69 rmind
393 1.69 rmind #ifdef PMAP_CACHE_VIVT
394 1.69 rmind prot = VM_PROT_READ | access_type;
395 1.69 rmind #else
396 1.69 rmind prot = VM_PROT_READ | VM_PROT_WRITE;
397 1.69 rmind #endif
398 1.70 rmind
399 1.2 chs va = ufi->orig_rvaddr;
400 1.2 chs eva = ufi->orig_rvaddr + (npages << PAGE_SHIFT);
401 1.2 chs
402 1.28 yamt UVMHIST_LOG(ubchist, "va 0x%lx eva 0x%lx", va, eva, 0, 0);
403 1.73 rmind
404 1.73 rmind /*
405 1.73 rmind * Note: normally all returned pages would have the same UVM object.
406 1.73 rmind * However, layered file-systems and e.g. tmpfs, may return pages
407 1.73 rmind * which belong to underlying UVM object. In such case, lock is
408 1.73 rmind * shared amongst the objects.
409 1.73 rmind */
410 1.73 rmind mutex_enter(uobj->vmobjlock);
411 1.28 yamt for (i = 0; va < eva; i++, va += PAGE_SIZE) {
412 1.69 rmind struct vm_page *pg;
413 1.34 chs
414 1.24 simonb UVMHIST_LOG(ubchist, "pgs[%d] = %p", i, pgs[i], 0, 0);
415 1.2 chs pg = pgs[i];
416 1.2 chs
417 1.2 chs if (pg == NULL || pg == PGO_DONTCARE) {
418 1.2 chs continue;
419 1.2 chs }
420 1.73 rmind KASSERT(uobj->vmobjlock == pg->uobject->vmobjlock);
421 1.70 rmind error = ubc_fault_page(ufi, umap, pg, prot, access_type, va);
422 1.70 rmind if (error) {
423 1.70 rmind /*
424 1.70 rmind * Flush (there might be pages entered), drop the lock,
425 1.73 rmind * and perform uvm_wait(). Note: page will re-fault.
426 1.70 rmind */
427 1.70 rmind pmap_update(ufi->orig_map->pmap);
428 1.73 rmind mutex_exit(uobj->vmobjlock);
429 1.70 rmind uvm_wait("ubc_fault");
430 1.73 rmind mutex_enter(uobj->vmobjlock);
431 1.70 rmind }
432 1.70 rmind }
433 1.73 rmind /* Must make VA visible before the unlock. */
434 1.73 rmind pmap_update(ufi->orig_map->pmap);
435 1.73 rmind mutex_exit(uobj->vmobjlock);
436 1.73 rmind
437 1.8 chs return 0;
438 1.2 chs }
439 1.2 chs
440 1.2 chs /*
441 1.2 chs * local functions
442 1.2 chs */
443 1.2 chs
444 1.39 thorpej static struct ubc_map *
445 1.39 thorpej ubc_find_mapping(struct uvm_object *uobj, voff_t offset)
446 1.2 chs {
447 1.2 chs struct ubc_map *umap;
448 1.2 chs
449 1.2 chs LIST_FOREACH(umap, &ubc_object.hash[UBC_HASH(uobj, offset)], hash) {
450 1.2 chs if (umap->uobj == uobj && umap->offset == offset) {
451 1.2 chs return umap;
452 1.2 chs }
453 1.2 chs }
454 1.2 chs return NULL;
455 1.2 chs }
456 1.2 chs
457 1.2 chs
458 1.2 chs /*
459 1.2 chs * ubc interface functions
460 1.2 chs */
461 1.2 chs
462 1.2 chs /*
463 1.18 chs * ubc_alloc: allocate a file mapping window
464 1.2 chs */
465 1.18 chs
466 1.2 chs void *
467 1.42 yamt ubc_alloc(struct uvm_object *uobj, voff_t offset, vsize_t *lenp, int advice,
468 1.42 yamt int flags)
469 1.2 chs {
470 1.6 chs vaddr_t slot_offset, va;
471 1.2 chs struct ubc_map *umap;
472 1.6 chs voff_t umap_offset;
473 1.18 chs int error;
474 1.2 chs UVMHIST_FUNC("ubc_alloc"); UVMHIST_CALLED(ubchist);
475 1.2 chs
476 1.33 chs UVMHIST_LOG(ubchist, "uobj %p offset 0x%lx len 0x%lx",
477 1.33 chs uobj, offset, *lenp, 0);
478 1.2 chs
479 1.34 chs KASSERT(*lenp > 0);
480 1.6 chs umap_offset = (offset & ~((voff_t)ubc_winsize - 1));
481 1.4 enami slot_offset = (vaddr_t)(offset & ((voff_t)ubc_winsize - 1));
482 1.18 chs *lenp = MIN(*lenp, ubc_winsize - slot_offset);
483 1.2 chs
484 1.2 chs /*
485 1.73 rmind * The object is already referenced, so we do not need to add a ref.
486 1.73 rmind * Lock order: UBC object -> ubc_map::uobj.
487 1.2 chs */
488 1.73 rmind mutex_enter(ubc_object.uobj.vmobjlock);
489 1.2 chs again:
490 1.2 chs umap = ubc_find_mapping(uobj, umap_offset);
491 1.2 chs if (umap == NULL) {
492 1.73 rmind struct uvm_object *oobj;
493 1.73 rmind
494 1.50 yamt UBC_EVCNT_INCR(wincachemiss);
495 1.2 chs umap = TAILQ_FIRST(UBC_QUEUE(offset));
496 1.2 chs if (umap == NULL) {
497 1.73 rmind kpause("ubc_alloc", false, hz >> 2,
498 1.73 rmind ubc_object.uobj.vmobjlock);
499 1.2 chs goto again;
500 1.2 chs }
501 1.2 chs
502 1.73 rmind va = UBC_UMAP_ADDR(umap);
503 1.73 rmind oobj = umap->uobj;
504 1.73 rmind
505 1.2 chs /*
506 1.18 chs * remove from old hash (if any), add to new hash.
507 1.2 chs */
508 1.2 chs
509 1.73 rmind if (oobj != NULL) {
510 1.73 rmind if (umap->flags & UMAP_MAPPING_CACHED) {
511 1.73 rmind umap->flags &= ~UMAP_MAPPING_CACHED;
512 1.73 rmind mutex_enter(oobj->vmobjlock);
513 1.73 rmind pmap_remove(pmap_kernel(), va,
514 1.73 rmind va + ubc_winsize);
515 1.73 rmind pmap_update(pmap_kernel());
516 1.73 rmind mutex_exit(oobj->vmobjlock);
517 1.73 rmind }
518 1.75 hannken LIST_REMOVE(umap, hash);
519 1.75 hannken LIST_REMOVE(umap, list);
520 1.73 rmind } else {
521 1.73 rmind KASSERT((umap->flags & UMAP_MAPPING_CACHED) == 0);
522 1.2 chs }
523 1.2 chs umap->uobj = uobj;
524 1.2 chs umap->offset = umap_offset;
525 1.2 chs LIST_INSERT_HEAD(&ubc_object.hash[UBC_HASH(uobj, umap_offset)],
526 1.18 chs umap, hash);
527 1.73 rmind LIST_INSERT_HEAD(&uobj->uo_ubc, umap, list);
528 1.18 chs } else {
529 1.50 yamt UBC_EVCNT_INCR(wincachehit);
530 1.18 chs va = UBC_UMAP_ADDR(umap);
531 1.2 chs }
532 1.2 chs
533 1.2 chs if (umap->refcount == 0) {
534 1.2 chs TAILQ_REMOVE(UBC_QUEUE(offset), umap, inactive);
535 1.2 chs }
536 1.2 chs
537 1.2 chs if (flags & UBC_WRITE) {
538 1.73 rmind KASSERTMSG(umap->writeoff == 0 && umap->writelen == 0,
539 1.73 rmind ("ubc_alloc: concurrent writes to uobj %p", uobj)
540 1.73 rmind );
541 1.2 chs umap->writeoff = slot_offset;
542 1.2 chs umap->writelen = *lenp;
543 1.2 chs }
544 1.2 chs
545 1.2 chs umap->refcount++;
546 1.42 yamt umap->advice = advice;
547 1.73 rmind mutex_exit(ubc_object.uobj.vmobjlock);
548 1.18 chs UVMHIST_LOG(ubchist, "umap %p refs %d va %p flags 0x%x",
549 1.18 chs umap, umap->refcount, va, flags);
550 1.18 chs
551 1.18 chs if (flags & UBC_FAULTBUSY) {
552 1.18 chs int npages = (*lenp + PAGE_SIZE - 1) >> PAGE_SHIFT;
553 1.18 chs struct vm_page *pgs[npages];
554 1.40 yamt int gpflags =
555 1.41 yamt PGO_SYNCIO|PGO_OVERWRITE|PGO_PASTEOF|PGO_NOBLOCKALLOC|
556 1.41 yamt PGO_NOTIMESTAMP;
557 1.18 chs int i;
558 1.30 dbj KDASSERT(flags & UBC_WRITE);
559 1.57 yamt KASSERT(umap->refcount == 1);
560 1.2 chs
561 1.57 yamt UBC_EVCNT_INCR(faultbusy);
562 1.73 rmind again_faultbusy:
563 1.73 rmind mutex_enter(uobj->vmobjlock);
564 1.18 chs if (umap->flags & UMAP_MAPPING_CACHED) {
565 1.18 chs umap->flags &= ~UMAP_MAPPING_CACHED;
566 1.18 chs pmap_remove(pmap_kernel(), va, va + ubc_winsize);
567 1.18 chs }
568 1.22 enami memset(pgs, 0, sizeof(pgs));
569 1.73 rmind
570 1.33 chs error = (*uobj->pgops->pgo_get)(uobj, trunc_page(offset), pgs,
571 1.42 yamt &npages, 0, VM_PROT_READ | VM_PROT_WRITE, advice, gpflags);
572 1.24 simonb UVMHIST_LOG(ubchist, "faultbusy getpages %d", error, 0, 0, 0);
573 1.18 chs if (error) {
574 1.18 chs goto out;
575 1.18 chs }
576 1.18 chs for (i = 0; i < npages; i++) {
577 1.59 yamt struct vm_page *pg = pgs[i];
578 1.59 yamt
579 1.59 yamt KASSERT(pg->uobject == uobj);
580 1.59 yamt if (pg->loan_count != 0) {
581 1.73 rmind mutex_enter(uobj->vmobjlock);
582 1.59 yamt if (pg->loan_count != 0) {
583 1.59 yamt pg = uvm_loanbreak(pg);
584 1.59 yamt }
585 1.59 yamt if (pg == NULL) {
586 1.59 yamt pmap_kremove(va, ubc_winsize);
587 1.59 yamt pmap_update(pmap_kernel());
588 1.59 yamt uvm_page_unbusy(pgs, npages);
589 1.73 rmind mutex_exit(uobj->vmobjlock);
590 1.59 yamt uvm_wait("ubc_alloc");
591 1.59 yamt goto again_faultbusy;
592 1.59 yamt }
593 1.73 rmind mutex_exit(uobj->vmobjlock);
594 1.59 yamt pgs[i] = pg;
595 1.59 yamt }
596 1.18 chs pmap_kenter_pa(va + slot_offset + (i << PAGE_SHIFT),
597 1.68 cegger VM_PAGE_TO_PHYS(pg),
598 1.68 cegger VM_PROT_READ | VM_PROT_WRITE, 0);
599 1.18 chs }
600 1.18 chs pmap_update(pmap_kernel());
601 1.18 chs umap->flags |= UMAP_PAGES_LOCKED;
602 1.57 yamt } else {
603 1.57 yamt KASSERT((umap->flags & UMAP_PAGES_LOCKED) == 0);
604 1.18 chs }
605 1.18 chs
606 1.18 chs out:
607 1.18 chs return (void *)(va + slot_offset);
608 1.2 chs }
609 1.2 chs
610 1.18 chs /*
611 1.18 chs * ubc_release: free a file mapping window.
612 1.18 chs */
613 1.2 chs
614 1.2 chs void
615 1.39 thorpej ubc_release(void *va, int flags)
616 1.2 chs {
617 1.2 chs struct ubc_map *umap;
618 1.2 chs struct uvm_object *uobj;
619 1.18 chs vaddr_t umapva;
620 1.55 thorpej bool unmapped;
621 1.2 chs UVMHIST_FUNC("ubc_release"); UVMHIST_CALLED(ubchist);
622 1.2 chs
623 1.24 simonb UVMHIST_LOG(ubchist, "va %p", va, 0, 0, 0);
624 1.11 chs umap = &ubc_object.umap[((char *)va - ubc_object.kva) >> ubc_winshift];
625 1.18 chs umapva = UBC_UMAP_ADDR(umap);
626 1.2 chs uobj = umap->uobj;
627 1.2 chs KASSERT(uobj != NULL);
628 1.2 chs
629 1.18 chs if (umap->flags & UMAP_PAGES_LOCKED) {
630 1.72 rmind const voff_t slot_offset = umap->writeoff;
631 1.72 rmind const voff_t endoff = umap->writeoff + umap->writelen;
632 1.72 rmind const voff_t zerolen = round_page(endoff) - endoff;
633 1.72 rmind const u_int npages = (round_page(endoff) -
634 1.72 rmind trunc_page(slot_offset)) >> PAGE_SHIFT;
635 1.18 chs struct vm_page *pgs[npages];
636 1.18 chs
637 1.57 yamt KASSERT((umap->flags & UMAP_MAPPING_CACHED) == 0);
638 1.18 chs if (zerolen) {
639 1.18 chs memset((char *)umapva + endoff, 0, zerolen);
640 1.18 chs }
641 1.18 chs umap->flags &= ~UMAP_PAGES_LOCKED;
642 1.73 rmind mutex_enter(uobj->vmobjlock);
643 1.64 ad mutex_enter(&uvm_pageqlock);
644 1.72 rmind for (u_int i = 0; i < npages; i++) {
645 1.72 rmind paddr_t pa;
646 1.72 rmind bool rv;
647 1.72 rmind
648 1.18 chs rv = pmap_extract(pmap_kernel(),
649 1.18 chs umapva + slot_offset + (i << PAGE_SHIFT), &pa);
650 1.18 chs KASSERT(rv);
651 1.18 chs pgs[i] = PHYS_TO_VM_PAGE(pa);
652 1.18 chs pgs[i]->flags &= ~(PG_FAKE|PG_CLEAN);
653 1.28 yamt KASSERT(pgs[i]->loan_count == 0);
654 1.18 chs uvm_pageactivate(pgs[i]);
655 1.18 chs }
656 1.64 ad mutex_exit(&uvm_pageqlock);
657 1.18 chs pmap_kremove(umapva, ubc_winsize);
658 1.18 chs pmap_update(pmap_kernel());
659 1.18 chs uvm_page_unbusy(pgs, npages);
660 1.73 rmind mutex_exit(uobj->vmobjlock);
661 1.56 thorpej unmapped = true;
662 1.18 chs } else {
663 1.56 thorpej unmapped = false;
664 1.18 chs }
665 1.18 chs
666 1.73 rmind mutex_enter(ubc_object.uobj.vmobjlock);
667 1.2 chs umap->writeoff = 0;
668 1.2 chs umap->writelen = 0;
669 1.2 chs umap->refcount--;
670 1.2 chs if (umap->refcount == 0) {
671 1.33 chs if (flags & UBC_UNMAP) {
672 1.2 chs /*
673 1.33 chs * Invalidate any cached mappings if requested.
674 1.33 chs * This is typically used to avoid leaving
675 1.33 chs * incompatible cache aliases around indefinitely.
676 1.2 chs */
677 1.73 rmind mutex_enter(uobj->vmobjlock);
678 1.18 chs pmap_remove(pmap_kernel(), umapva,
679 1.18 chs umapva + ubc_winsize);
680 1.73 rmind pmap_update(pmap_kernel());
681 1.73 rmind mutex_exit(uobj->vmobjlock);
682 1.73 rmind
683 1.18 chs umap->flags &= ~UMAP_MAPPING_CACHED;
684 1.2 chs LIST_REMOVE(umap, hash);
685 1.2 chs umap->uobj = NULL;
686 1.2 chs TAILQ_INSERT_HEAD(UBC_QUEUE(umap->offset), umap,
687 1.2 chs inactive);
688 1.2 chs } else {
689 1.18 chs if (!unmapped) {
690 1.18 chs umap->flags |= UMAP_MAPPING_CACHED;
691 1.18 chs }
692 1.2 chs TAILQ_INSERT_TAIL(UBC_QUEUE(umap->offset), umap,
693 1.2 chs inactive);
694 1.2 chs }
695 1.2 chs }
696 1.24 simonb UVMHIST_LOG(ubchist, "umap %p refs %d", umap, umap->refcount, 0, 0);
697 1.73 rmind mutex_exit(ubc_object.uobj.vmobjlock);
698 1.2 chs }
699 1.2 chs
700 1.58 yamt /*
701 1.58 yamt * ubc_uiomove: move data to/from an object.
702 1.58 yamt */
703 1.58 yamt
704 1.58 yamt int
705 1.62 yamt ubc_uiomove(struct uvm_object *uobj, struct uio *uio, vsize_t todo, int advice,
706 1.62 yamt int flags)
707 1.58 yamt {
708 1.72 rmind const bool overwrite = (flags & UBC_FAULTBUSY) != 0;
709 1.58 yamt voff_t off;
710 1.58 yamt int error;
711 1.58 yamt
712 1.58 yamt KASSERT(todo <= uio->uio_resid);
713 1.58 yamt KASSERT(((flags & UBC_WRITE) != 0 && uio->uio_rw == UIO_WRITE) ||
714 1.58 yamt ((flags & UBC_READ) != 0 && uio->uio_rw == UIO_READ));
715 1.58 yamt
716 1.58 yamt off = uio->uio_offset;
717 1.58 yamt error = 0;
718 1.58 yamt while (todo > 0) {
719 1.58 yamt vsize_t bytelen = todo;
720 1.58 yamt void *win;
721 1.58 yamt
722 1.62 yamt win = ubc_alloc(uobj, off, &bytelen, advice, flags);
723 1.58 yamt if (error == 0) {
724 1.58 yamt error = uiomove(win, bytelen, uio);
725 1.58 yamt }
726 1.58 yamt if (error != 0 && overwrite) {
727 1.58 yamt /*
728 1.58 yamt * if we haven't initialized the pages yet,
729 1.58 yamt * do it now. it's safe to use memset here
730 1.58 yamt * because we just mapped the pages above.
731 1.58 yamt */
732 1.64 ad printf("%s: error=%d\n", __func__, error);
733 1.58 yamt memset(win, 0, bytelen);
734 1.58 yamt }
735 1.58 yamt ubc_release(win, flags);
736 1.58 yamt off += bytelen;
737 1.58 yamt todo -= bytelen;
738 1.58 yamt if (error != 0 && (flags & UBC_PARTIALOK) != 0) {
739 1.58 yamt break;
740 1.58 yamt }
741 1.58 yamt }
742 1.58 yamt
743 1.58 yamt return error;
744 1.58 yamt }
745 1.67 pooka
746 1.67 pooka /*
747 1.74 hannken * ubc_zerorange: set a range of bytes in an object to zero.
748 1.67 pooka */
749 1.67 pooka
750 1.67 pooka void
751 1.74 hannken ubc_zerorange(struct uvm_object *uobj, off_t off, size_t len, int flags)
752 1.67 pooka {
753 1.67 pooka void *win;
754 1.67 pooka
755 1.67 pooka /*
756 1.67 pooka * XXXUBC invent kzero() and use it
757 1.67 pooka */
758 1.67 pooka
759 1.67 pooka while (len) {
760 1.67 pooka vsize_t bytelen = len;
761 1.67 pooka
762 1.74 hannken win = ubc_alloc(uobj, off, &bytelen, UVM_ADV_NORMAL, UBC_WRITE);
763 1.67 pooka memset(win, 0, bytelen);
764 1.67 pooka ubc_release(win, flags);
765 1.67 pooka
766 1.67 pooka off += bytelen;
767 1.67 pooka len -= bytelen;
768 1.67 pooka }
769 1.67 pooka }
770 1.73 rmind
771 1.73 rmind /*
772 1.74 hannken * uvm_vnp_zerorange: set a range of bytes in a file to zero.
773 1.74 hannken * WILL BE REMOVED AFTER THE NEXT KERNEL VERSION BUMP (5.99.54)!
774 1.74 hannken */
775 1.74 hannken void uvm_vnp_zerorange(struct vnode *, off_t, size_t);
776 1.74 hannken void
777 1.74 hannken uvm_vnp_zerorange(struct vnode *vp, off_t off, size_t len)
778 1.74 hannken {
779 1.74 hannken
780 1.74 hannken ubc_zerorange(&vp->v_uobj, off, len, UBC_UNMAP_FLAG(vp));
781 1.74 hannken }
782 1.74 hannken
783 1.74 hannken /*
784 1.73 rmind * ubc_purge: disassociate ubc_map structures from an empty uvm_object.
785 1.73 rmind */
786 1.73 rmind
787 1.73 rmind void
788 1.73 rmind ubc_purge(struct uvm_object *uobj)
789 1.73 rmind {
790 1.73 rmind struct ubc_map *umap;
791 1.73 rmind vaddr_t va;
792 1.73 rmind
793 1.73 rmind KASSERT(uobj->uo_npages == 0);
794 1.73 rmind
795 1.73 rmind mutex_enter(ubc_object.uobj.vmobjlock);
796 1.73 rmind while ((umap = LIST_FIRST(&uobj->uo_ubc)) != NULL) {
797 1.73 rmind KASSERT(umap->refcount == 0);
798 1.73 rmind for (va = 0; va < ubc_winsize; va += PAGE_SIZE) {
799 1.73 rmind KASSERT(!pmap_extract(pmap_kernel(),
800 1.73 rmind va + UBC_UMAP_ADDR(umap), NULL));
801 1.73 rmind }
802 1.73 rmind LIST_REMOVE(umap, list);
803 1.73 rmind LIST_REMOVE(umap, hash);
804 1.73 rmind umap->flags &= ~UMAP_MAPPING_CACHED;
805 1.73 rmind umap->uobj = NULL;
806 1.73 rmind }
807 1.73 rmind mutex_exit(ubc_object.uobj.vmobjlock);
808 1.73 rmind }
809