uvm_aobj.c revision 1.116.2.9 1 1.116.2.9 yamt /* $NetBSD: uvm_aobj.c,v 1.116.2.9 2014/05/22 19:11:57 yamt Exp $ */
2 1.6 mrg
3 1.7 chs /*
4 1.7 chs * Copyright (c) 1998 Chuck Silvers, Charles D. Cranor and
5 1.7 chs * Washington University.
6 1.7 chs * All rights reserved.
7 1.7 chs *
8 1.7 chs * Redistribution and use in source and binary forms, with or without
9 1.7 chs * modification, are permitted provided that the following conditions
10 1.7 chs * are met:
11 1.7 chs * 1. Redistributions of source code must retain the above copyright
12 1.7 chs * notice, this list of conditions and the following disclaimer.
13 1.7 chs * 2. Redistributions in binary form must reproduce the above copyright
14 1.7 chs * notice, this list of conditions and the following disclaimer in the
15 1.7 chs * documentation and/or other materials provided with the distribution.
16 1.7 chs *
17 1.7 chs * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18 1.7 chs * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19 1.7 chs * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20 1.7 chs * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21 1.7 chs * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22 1.7 chs * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23 1.7 chs * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24 1.7 chs * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25 1.7 chs * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26 1.7 chs * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27 1.7 chs *
28 1.4 mrg * from: Id: uvm_aobj.c,v 1.1.2.5 1998/02/06 05:14:38 chs Exp
29 1.4 mrg */
30 1.113 rmind
31 1.7 chs /*
32 1.7 chs * uvm_aobj.c: anonymous memory uvm_object pager
33 1.7 chs *
34 1.7 chs * author: Chuck Silvers <chuq (at) chuq.com>
35 1.7 chs * started: Jan-1998
36 1.7 chs *
37 1.7 chs * - design mostly from Chuck Cranor
38 1.7 chs */
39 1.49 lukem
40 1.49 lukem #include <sys/cdefs.h>
41 1.116.2.9 yamt __KERNEL_RCSID(0, "$NetBSD: uvm_aobj.c,v 1.116.2.9 2014/05/22 19:11:57 yamt Exp $");
42 1.7 chs
43 1.7 chs #include "opt_uvmhist.h"
44 1.1 mrg
45 1.1 mrg #include <sys/param.h>
46 1.1 mrg #include <sys/systm.h>
47 1.37 chs #include <sys/kernel.h>
48 1.104 rmind #include <sys/kmem.h>
49 1.12 thorpej #include <sys/pool.h>
50 1.116.2.7 yamt #include <sys/atomic.h>
51 1.1 mrg
52 1.1 mrg #include <uvm/uvm.h>
53 1.116.2.2 yamt #include <uvm/uvm_page_array.h>
54 1.1 mrg
55 1.1 mrg /*
56 1.116.2.7 yamt * An anonymous UVM object (aobj) manages anonymous-memory. In addition to
57 1.116.2.7 yamt * keeping the list of resident pages, it may also keep a list of allocated
58 1.116.2.7 yamt * swap blocks. Depending on the size of the object, this list is either
59 1.116.2.7 yamt * stored in an array (small objects) or in a hash table (large objects).
60 1.116.2.7 yamt *
61 1.116.2.7 yamt * Lock order
62 1.116.2.7 yamt *
63 1.116.2.7 yamt * uao_list_lock ->
64 1.116.2.7 yamt * uvm_object::vmobjlock
65 1.1 mrg */
66 1.1 mrg
67 1.1 mrg /*
68 1.116.2.7 yamt * Note: for hash tables, we break the address space of the aobj into blocks
69 1.116.2.7 yamt * of UAO_SWHASH_CLUSTER_SIZE pages, which shall be a power of two.
70 1.1 mrg */
71 1.1 mrg
72 1.116.2.7 yamt #define UAO_SWHASH_CLUSTER_SHIFT 4
73 1.116.2.7 yamt #define UAO_SWHASH_CLUSTER_SIZE (1 << UAO_SWHASH_CLUSTER_SHIFT)
74 1.1 mrg
75 1.116.2.7 yamt /* Get the "tag" for this page index. */
76 1.116.2.7 yamt #define UAO_SWHASH_ELT_TAG(idx) ((idx) >> UAO_SWHASH_CLUSTER_SHIFT)
77 1.116.2.7 yamt #define UAO_SWHASH_ELT_PAGESLOT_IDX(idx) \
78 1.116.2.7 yamt ((idx) & (UAO_SWHASH_CLUSTER_SIZE - 1))
79 1.1 mrg
80 1.116.2.7 yamt /* Given an ELT and a page index, find the swap slot. */
81 1.116.2.7 yamt #define UAO_SWHASH_ELT_PAGESLOT(elt, idx) \
82 1.116.2.7 yamt ((elt)->slots[UAO_SWHASH_ELT_PAGESLOT_IDX(idx)])
83 1.75 yamt
84 1.116.2.7 yamt /* Given an ELT, return its pageidx base. */
85 1.116.2.7 yamt #define UAO_SWHASH_ELT_PAGEIDX_BASE(ELT) \
86 1.116.2.7 yamt ((elt)->tag << UAO_SWHASH_CLUSTER_SHIFT)
87 1.46 chs
88 1.116.2.7 yamt /* The hash function. */
89 1.116.2.7 yamt #define UAO_SWHASH_HASH(aobj, idx) \
90 1.116.2.7 yamt (&(aobj)->u_swhash[(((idx) >> UAO_SWHASH_CLUSTER_SHIFT) \
91 1.116.2.7 yamt & (aobj)->u_swhashmask)])
92 1.1 mrg
93 1.1 mrg /*
94 1.116.2.7 yamt * The threshold which determines whether we will use an array or a
95 1.1 mrg * hash table to store the list of allocated swap blocks.
96 1.1 mrg */
97 1.116.2.7 yamt #define UAO_SWHASH_THRESHOLD (UAO_SWHASH_CLUSTER_SIZE * 4)
98 1.116.2.7 yamt #define UAO_USES_SWHASH(aobj) \
99 1.116.2.7 yamt ((aobj)->u_pages > UAO_SWHASH_THRESHOLD)
100 1.116.2.7 yamt
101 1.116.2.7 yamt /* The number of buckets in a hash, with an upper bound. */
102 1.116.2.7 yamt #define UAO_SWHASH_MAXBUCKETS 256
103 1.116.2.7 yamt #define UAO_SWHASH_BUCKETS(aobj) \
104 1.116.2.7 yamt (MIN((aobj)->u_pages >> UAO_SWHASH_CLUSTER_SHIFT, UAO_SWHASH_MAXBUCKETS))
105 1.1 mrg
106 1.1 mrg /*
107 1.1 mrg * uao_swhash_elt: when a hash table is being used, this structure defines
108 1.1 mrg * the format of an entry in the bucket list.
109 1.1 mrg */
110 1.1 mrg
111 1.1 mrg struct uao_swhash_elt {
112 1.5 mrg LIST_ENTRY(uao_swhash_elt) list; /* the hash list */
113 1.28 kleink voff_t tag; /* our 'tag' */
114 1.5 mrg int count; /* our number of active slots */
115 1.5 mrg int slots[UAO_SWHASH_CLUSTER_SIZE]; /* the slots */
116 1.1 mrg };
117 1.1 mrg
118 1.1 mrg /*
119 1.1 mrg * uao_swhash: the swap hash table structure
120 1.1 mrg */
121 1.1 mrg
122 1.1 mrg LIST_HEAD(uao_swhash, uao_swhash_elt);
123 1.1 mrg
124 1.12 thorpej /*
125 1.113 rmind * uao_swhash_elt_pool: pool of uao_swhash_elt structures.
126 1.113 rmind * Note: pages for this pool must not come from a pageable kernel map.
127 1.12 thorpej */
128 1.116.2.7 yamt static struct pool uao_swhash_elt_pool __cacheline_aligned;
129 1.1 mrg
130 1.1 mrg /*
131 1.1 mrg * uvm_aobj: the actual anon-backed uvm_object
132 1.1 mrg *
133 1.1 mrg * => the uvm_object is at the top of the structure, this allows
134 1.46 chs * (struct uvm_aobj *) == (struct uvm_object *)
135 1.1 mrg * => only one of u_swslots and u_swhash is used in any given aobj
136 1.1 mrg */
137 1.1 mrg
138 1.1 mrg struct uvm_aobj {
139 1.116.2.3 yamt struct uvm_object u_obj; /* has: lock, pgops, #pages, #refs */
140 1.79 cherry pgoff_t u_pages; /* number of pages in entire object */
141 1.5 mrg int u_flags; /* the flags (see uvm_aobj.h) */
142 1.5 mrg int *u_swslots; /* array of offset->swapslot mappings */
143 1.5 mrg /*
144 1.5 mrg * hashtable of offset->swapslot mappings
145 1.5 mrg * (u_swhash is an array of bucket heads)
146 1.5 mrg */
147 1.5 mrg struct uao_swhash *u_swhash;
148 1.5 mrg u_long u_swhashmask; /* mask for hashtable */
149 1.5 mrg LIST_ENTRY(uvm_aobj) u_list; /* global list of aobjs */
150 1.1 mrg };
151 1.1 mrg
152 1.62 junyoung static void uao_free(struct uvm_aobj *);
153 1.62 junyoung static int uao_get(struct uvm_object *, voff_t, struct vm_page **,
154 1.62 junyoung int *, int, vm_prot_t, int, int);
155 1.86 matt static int uao_put(struct uvm_object *, voff_t, voff_t, int);
156 1.72 yamt
157 1.72 yamt #if defined(VMSWAP)
158 1.72 yamt static struct uao_swhash_elt *uao_find_swhash_elt
159 1.85 thorpej (struct uvm_aobj *, int, bool);
160 1.72 yamt
161 1.85 thorpej static bool uao_pagein(struct uvm_aobj *, int, int);
162 1.85 thorpej static bool uao_pagein_page(struct uvm_aobj *, int);
163 1.72 yamt #endif /* defined(VMSWAP) */
164 1.1 mrg
165 1.1 mrg /*
166 1.1 mrg * aobj_pager
167 1.41 chs *
168 1.1 mrg * note that some functions (e.g. put) are handled elsewhere
169 1.1 mrg */
170 1.1 mrg
171 1.95 yamt const struct uvm_pagerops aobj_pager = {
172 1.94 yamt .pgo_reference = uao_reference,
173 1.94 yamt .pgo_detach = uao_detach,
174 1.94 yamt .pgo_get = uao_get,
175 1.94 yamt .pgo_put = uao_put,
176 1.1 mrg };
177 1.1 mrg
178 1.1 mrg /*
179 1.1 mrg * uao_list: global list of active aobjs, locked by uao_list_lock
180 1.1 mrg */
181 1.1 mrg
182 1.116.2.7 yamt static LIST_HEAD(aobjlist, uvm_aobj) uao_list __cacheline_aligned;
183 1.116.2.7 yamt static kmutex_t uao_list_lock __cacheline_aligned;
184 1.1 mrg
185 1.1 mrg /*
186 1.1 mrg * hash table/array related functions
187 1.1 mrg */
188 1.1 mrg
189 1.72 yamt #if defined(VMSWAP)
190 1.72 yamt
191 1.1 mrg /*
192 1.1 mrg * uao_find_swhash_elt: find (or create) a hash table entry for a page
193 1.1 mrg * offset.
194 1.1 mrg *
195 1.1 mrg * => the object should be locked by the caller
196 1.1 mrg */
197 1.1 mrg
198 1.5 mrg static struct uao_swhash_elt *
199 1.85 thorpej uao_find_swhash_elt(struct uvm_aobj *aobj, int pageidx, bool create)
200 1.5 mrg {
201 1.5 mrg struct uao_swhash *swhash;
202 1.5 mrg struct uao_swhash_elt *elt;
203 1.28 kleink voff_t page_tag;
204 1.1 mrg
205 1.45 chs swhash = UAO_SWHASH_HASH(aobj, pageidx);
206 1.45 chs page_tag = UAO_SWHASH_ELT_TAG(pageidx);
207 1.1 mrg
208 1.5 mrg /*
209 1.5 mrg * now search the bucket for the requested tag
210 1.5 mrg */
211 1.45 chs
212 1.37 chs LIST_FOREACH(elt, swhash, list) {
213 1.45 chs if (elt->tag == page_tag) {
214 1.45 chs return elt;
215 1.45 chs }
216 1.5 mrg }
217 1.45 chs if (!create) {
218 1.5 mrg return NULL;
219 1.45 chs }
220 1.5 mrg
221 1.5 mrg /*
222 1.12 thorpej * allocate a new entry for the bucket and init/insert it in
223 1.5 mrg */
224 1.45 chs
225 1.45 chs elt = pool_get(&uao_swhash_elt_pool, PR_NOWAIT);
226 1.45 chs if (elt == NULL) {
227 1.45 chs return NULL;
228 1.45 chs }
229 1.5 mrg LIST_INSERT_HEAD(swhash, elt, list);
230 1.5 mrg elt->tag = page_tag;
231 1.5 mrg elt->count = 0;
232 1.9 perry memset(elt->slots, 0, sizeof(elt->slots));
233 1.45 chs return elt;
234 1.1 mrg }
235 1.1 mrg
236 1.1 mrg /*
237 1.1 mrg * uao_find_swslot: find the swap slot number for an aobj/pageidx
238 1.1 mrg *
239 1.41 chs * => object must be locked by caller
240 1.1 mrg */
241 1.46 chs
242 1.46 chs int
243 1.67 thorpej uao_find_swslot(struct uvm_object *uobj, int pageidx)
244 1.1 mrg {
245 1.46 chs struct uvm_aobj *aobj = (struct uvm_aobj *)uobj;
246 1.46 chs struct uao_swhash_elt *elt;
247 1.1 mrg
248 1.5 mrg /*
249 1.5 mrg * if noswap flag is set, then we never return a slot
250 1.5 mrg */
251 1.1 mrg
252 1.5 mrg if (aobj->u_flags & UAO_FLAG_NOSWAP)
253 1.116.2.7 yamt return 0;
254 1.1 mrg
255 1.5 mrg /*
256 1.5 mrg * if hashing, look in hash table.
257 1.5 mrg */
258 1.1 mrg
259 1.5 mrg if (UAO_USES_SWHASH(aobj)) {
260 1.87 thorpej elt = uao_find_swhash_elt(aobj, pageidx, false);
261 1.116.2.7 yamt return elt ? UAO_SWHASH_ELT_PAGESLOT(elt, pageidx) : 0;
262 1.5 mrg }
263 1.1 mrg
264 1.41 chs /*
265 1.5 mrg * otherwise, look in the array
266 1.5 mrg */
267 1.46 chs
268 1.116.2.7 yamt return aobj->u_swslots[pageidx];
269 1.1 mrg }
270 1.1 mrg
271 1.1 mrg /*
272 1.1 mrg * uao_set_swslot: set the swap slot for a page in an aobj.
273 1.1 mrg *
274 1.1 mrg * => setting a slot to zero frees the slot
275 1.1 mrg * => object must be locked by caller
276 1.45 chs * => we return the old slot number, or -1 if we failed to allocate
277 1.45 chs * memory to record the new slot number
278 1.1 mrg */
279 1.46 chs
280 1.5 mrg int
281 1.67 thorpej uao_set_swslot(struct uvm_object *uobj, int pageidx, int slot)
282 1.5 mrg {
283 1.5 mrg struct uvm_aobj *aobj = (struct uvm_aobj *)uobj;
284 1.45 chs struct uao_swhash_elt *elt;
285 1.5 mrg int oldslot;
286 1.5 mrg UVMHIST_FUNC("uao_set_swslot"); UVMHIST_CALLED(pdhist);
287 1.5 mrg UVMHIST_LOG(pdhist, "aobj %p pageidx %d slot %d",
288 1.5 mrg aobj, pageidx, slot, 0);
289 1.1 mrg
290 1.115 rmind KASSERT(mutex_owned(uobj->vmobjlock) || uobj->uo_refs == 0);
291 1.109 rmind
292 1.5 mrg /*
293 1.46 chs * if noswap flag is set, then we can't set a non-zero slot.
294 1.5 mrg */
295 1.1 mrg
296 1.5 mrg if (aobj->u_flags & UAO_FLAG_NOSWAP) {
297 1.116.2.7 yamt KASSERTMSG(slot == 0, "uao_set_swslot: no swap object");
298 1.116.2.7 yamt return 0;
299 1.5 mrg }
300 1.1 mrg
301 1.5 mrg /*
302 1.5 mrg * are we using a hash table? if so, add it in the hash.
303 1.5 mrg */
304 1.1 mrg
305 1.5 mrg if (UAO_USES_SWHASH(aobj)) {
306 1.39 chs
307 1.12 thorpej /*
308 1.12 thorpej * Avoid allocating an entry just to free it again if
309 1.12 thorpej * the page had not swap slot in the first place, and
310 1.12 thorpej * we are freeing.
311 1.12 thorpej */
312 1.39 chs
313 1.46 chs elt = uao_find_swhash_elt(aobj, pageidx, slot != 0);
314 1.12 thorpej if (elt == NULL) {
315 1.45 chs return slot ? -1 : 0;
316 1.12 thorpej }
317 1.5 mrg
318 1.5 mrg oldslot = UAO_SWHASH_ELT_PAGESLOT(elt, pageidx);
319 1.5 mrg UAO_SWHASH_ELT_PAGESLOT(elt, pageidx) = slot;
320 1.5 mrg
321 1.5 mrg /*
322 1.5 mrg * now adjust the elt's reference counter and free it if we've
323 1.5 mrg * dropped it to zero.
324 1.5 mrg */
325 1.5 mrg
326 1.5 mrg if (slot) {
327 1.5 mrg if (oldslot == 0)
328 1.5 mrg elt->count++;
329 1.45 chs } else {
330 1.45 chs if (oldslot)
331 1.5 mrg elt->count--;
332 1.5 mrg
333 1.5 mrg if (elt->count == 0) {
334 1.5 mrg LIST_REMOVE(elt, list);
335 1.12 thorpej pool_put(&uao_swhash_elt_pool, elt);
336 1.5 mrg }
337 1.5 mrg }
338 1.41 chs } else {
339 1.5 mrg /* we are using an array */
340 1.5 mrg oldslot = aobj->u_swslots[pageidx];
341 1.5 mrg aobj->u_swslots[pageidx] = slot;
342 1.5 mrg }
343 1.116.2.7 yamt return oldslot;
344 1.1 mrg }
345 1.1 mrg
346 1.72 yamt #endif /* defined(VMSWAP) */
347 1.72 yamt
348 1.1 mrg /*
349 1.1 mrg * end of hash/array functions
350 1.1 mrg */
351 1.1 mrg
352 1.1 mrg /*
353 1.1 mrg * uao_free: free all resources held by an aobj, and then free the aobj
354 1.1 mrg *
355 1.1 mrg * => the aobj should be dead
356 1.1 mrg */
357 1.46 chs
358 1.1 mrg static void
359 1.67 thorpej uao_free(struct uvm_aobj *aobj)
360 1.1 mrg {
361 1.116.2.7 yamt struct uvm_object *uobj = &aobj->u_obj;
362 1.96 ad
363 1.116.2.7 yamt KASSERT(mutex_owned(uobj->vmobjlock));
364 1.116.2.7 yamt uao_dropswap_range(uobj, 0, 0);
365 1.116.2.7 yamt mutex_exit(uobj->vmobjlock);
366 1.72 yamt
367 1.72 yamt #if defined(VMSWAP)
368 1.5 mrg if (UAO_USES_SWHASH(aobj)) {
369 1.1 mrg
370 1.5 mrg /*
371 1.75 yamt * free the hash table itself.
372 1.5 mrg */
373 1.46 chs
374 1.104 rmind hashdone(aobj->u_swhash, HASH_LIST, aobj->u_swhashmask);
375 1.5 mrg } else {
376 1.5 mrg
377 1.5 mrg /*
378 1.75 yamt * free the array itsself.
379 1.5 mrg */
380 1.5 mrg
381 1.104 rmind kmem_free(aobj->u_swslots, aobj->u_pages * sizeof(int));
382 1.1 mrg }
383 1.72 yamt #endif /* defined(VMSWAP) */
384 1.72 yamt
385 1.5 mrg /*
386 1.5 mrg * finally free the aobj itself
387 1.5 mrg */
388 1.46 chs
389 1.116.2.7 yamt uvm_obj_destroy(uobj, true);
390 1.113 rmind kmem_free(aobj, sizeof(struct uvm_aobj));
391 1.1 mrg }
392 1.1 mrg
393 1.1 mrg /*
394 1.1 mrg * pager functions
395 1.1 mrg */
396 1.1 mrg
397 1.1 mrg /*
398 1.1 mrg * uao_create: create an aobj of the given size and return its uvm_object.
399 1.1 mrg *
400 1.1 mrg * => for normal use, flags are always zero
401 1.1 mrg * => for the kernel object, the flags are:
402 1.1 mrg * UAO_FLAG_KERNOBJ - allocate the kernel object (can only happen once)
403 1.1 mrg * UAO_FLAG_KERNSWAP - enable swapping of kernel object (" ")
404 1.1 mrg */
405 1.46 chs
406 1.5 mrg struct uvm_object *
407 1.67 thorpej uao_create(vsize_t size, int flags)
408 1.5 mrg {
409 1.46 chs static struct uvm_aobj kernel_object_store;
410 1.116.2.8 yamt static int kobj_alloced __diagused = 0;
411 1.79 cherry pgoff_t pages = round_page(size) >> PAGE_SHIFT;
412 1.5 mrg struct uvm_aobj *aobj;
413 1.66 yamt int refs;
414 1.1 mrg
415 1.5 mrg /*
416 1.114 rmind * Allocate a new aobj, unless kernel object is requested.
417 1.27 chs */
418 1.5 mrg
419 1.46 chs if (flags & UAO_FLAG_KERNOBJ) {
420 1.46 chs KASSERT(!kobj_alloced);
421 1.5 mrg aobj = &kernel_object_store;
422 1.5 mrg aobj->u_pages = pages;
423 1.46 chs aobj->u_flags = UAO_FLAG_NOSWAP;
424 1.66 yamt refs = UVM_OBJ_KERN;
425 1.5 mrg kobj_alloced = UAO_FLAG_KERNOBJ;
426 1.5 mrg } else if (flags & UAO_FLAG_KERNSWAP) {
427 1.46 chs KASSERT(kobj_alloced == UAO_FLAG_KERNOBJ);
428 1.5 mrg aobj = &kernel_object_store;
429 1.5 mrg kobj_alloced = UAO_FLAG_KERNSWAP;
430 1.66 yamt refs = 0xdeadbeaf; /* XXX: gcc */
431 1.46 chs } else {
432 1.113 rmind aobj = kmem_alloc(sizeof(struct uvm_aobj), KM_SLEEP);
433 1.5 mrg aobj->u_pages = pages;
434 1.46 chs aobj->u_flags = 0;
435 1.66 yamt refs = 1;
436 1.5 mrg }
437 1.1 mrg
438 1.5 mrg /*
439 1.5 mrg * allocate hash/array if necessary
440 1.5 mrg *
441 1.5 mrg * note: in the KERNSWAP case no need to worry about locking since
442 1.5 mrg * we are still booting we should be the only thread around.
443 1.5 mrg */
444 1.46 chs
445 1.5 mrg if (flags == 0 || (flags & UAO_FLAG_KERNSWAP) != 0) {
446 1.72 yamt #if defined(VMSWAP)
447 1.104 rmind const int kernswap = (flags & UAO_FLAG_KERNSWAP) != 0;
448 1.5 mrg
449 1.5 mrg /* allocate hash table or array depending on object size */
450 1.27 chs if (UAO_USES_SWHASH(aobj)) {
451 1.104 rmind aobj->u_swhash = hashinit(UAO_SWHASH_BUCKETS(aobj),
452 1.104 rmind HASH_LIST, kernswap ? false : true,
453 1.104 rmind &aobj->u_swhashmask);
454 1.5 mrg if (aobj->u_swhash == NULL)
455 1.5 mrg panic("uao_create: hashinit swhash failed");
456 1.5 mrg } else {
457 1.104 rmind aobj->u_swslots = kmem_zalloc(pages * sizeof(int),
458 1.104 rmind kernswap ? KM_NOSLEEP : KM_SLEEP);
459 1.5 mrg if (aobj->u_swslots == NULL)
460 1.114 rmind panic("uao_create: swslots allocation failed");
461 1.5 mrg }
462 1.72 yamt #endif /* defined(VMSWAP) */
463 1.5 mrg
464 1.5 mrg if (flags) {
465 1.5 mrg aobj->u_flags &= ~UAO_FLAG_NOSWAP; /* clear noswap */
466 1.116.2.7 yamt return &aobj->u_obj;
467 1.5 mrg }
468 1.5 mrg }
469 1.5 mrg
470 1.5 mrg /*
471 1.115 rmind * Initialise UVM object.
472 1.115 rmind */
473 1.46 chs
474 1.115 rmind const bool kernobj = (flags & UAO_FLAG_KERNOBJ) != 0;
475 1.115 rmind uvm_obj_init(&aobj->u_obj, &aobj_pager, !kernobj, refs);
476 1.115 rmind if (__predict_false(kernobj)) {
477 1.115 rmind /* Initialisation only once, for UAO_FLAG_KERNOBJ. */
478 1.116.2.5 yamt uvm_obj_setlock(&aobj->u_obj,
479 1.116.2.5 yamt mutex_obj_alloc_kernel_obj_lock(MUTEX_DEFAULT, IPL_NONE));
480 1.115 rmind }
481 1.1 mrg
482 1.5 mrg /*
483 1.5 mrg * now that aobj is ready, add it to the global list
484 1.5 mrg */
485 1.46 chs
486 1.90 ad mutex_enter(&uao_list_lock);
487 1.5 mrg LIST_INSERT_HEAD(&uao_list, aobj, u_list);
488 1.90 ad mutex_exit(&uao_list_lock);
489 1.5 mrg return(&aobj->u_obj);
490 1.1 mrg }
491 1.1 mrg
492 1.1 mrg /*
493 1.1 mrg * uao_init: set up aobj pager subsystem
494 1.1 mrg *
495 1.1 mrg * => called at boot time from uvm_pager_init()
496 1.1 mrg */
497 1.46 chs
498 1.27 chs void
499 1.46 chs uao_init(void)
500 1.5 mrg {
501 1.12 thorpej static int uao_initialized;
502 1.12 thorpej
503 1.12 thorpej if (uao_initialized)
504 1.12 thorpej return;
505 1.87 thorpej uao_initialized = true;
506 1.5 mrg LIST_INIT(&uao_list);
507 1.96 ad mutex_init(&uao_list_lock, MUTEX_DEFAULT, IPL_NONE);
508 1.107 pooka pool_init(&uao_swhash_elt_pool, sizeof(struct uao_swhash_elt),
509 1.107 pooka 0, 0, 0, "uaoeltpl", NULL, IPL_VM);
510 1.1 mrg }
511 1.1 mrg
512 1.1 mrg /*
513 1.116.2.7 yamt * uao_reference: hold a reference to an anonymous UVM object.
514 1.1 mrg */
515 1.5 mrg void
516 1.67 thorpej uao_reference(struct uvm_object *uobj)
517 1.1 mrg {
518 1.116.2.7 yamt /* Kernel object is persistent. */
519 1.116.2.7 yamt if (UVM_OBJ_IS_KERN_OBJECT(uobj)) {
520 1.5 mrg return;
521 1.116.2.7 yamt }
522 1.116.2.7 yamt atomic_inc_uint(&uobj->uo_refs);
523 1.1 mrg }
524 1.1 mrg
525 1.1 mrg /*
526 1.116.2.7 yamt * uao_detach: drop a reference to an anonymous UVM object.
527 1.1 mrg */
528 1.5 mrg void
529 1.67 thorpej uao_detach(struct uvm_object *uobj)
530 1.5 mrg {
531 1.5 mrg struct uvm_aobj *aobj = (struct uvm_aobj *)uobj;
532 1.116.2.2 yamt struct uvm_page_array a;
533 1.46 chs struct vm_page *pg;
534 1.116.2.7 yamt
535 1.5 mrg UVMHIST_FUNC("uao_detach"); UVMHIST_CALLED(maphist);
536 1.1 mrg
537 1.5 mrg /*
538 1.116.2.7 yamt * Detaching from kernel object is a NOP.
539 1.116.2.7 yamt */
540 1.46 chs
541 1.116.2.7 yamt if (UVM_OBJ_IS_KERN_OBJECT(uobj))
542 1.5 mrg return;
543 1.116.2.7 yamt
544 1.116.2.7 yamt /*
545 1.116.2.7 yamt * Drop the reference. If it was the last one, destroy the object.
546 1.116.2.7 yamt */
547 1.5 mrg
548 1.5 mrg UVMHIST_LOG(maphist," (uobj=0x%x) ref=%d", uobj,uobj->uo_refs,0,0);
549 1.116.2.7 yamt if (atomic_dec_uint_nv(&uobj->uo_refs) > 0) {
550 1.5 mrg UVMHIST_LOG(maphist, "<- done (rc>0)", 0,0,0,0);
551 1.5 mrg return;
552 1.5 mrg }
553 1.5 mrg
554 1.5 mrg /*
555 1.116.2.7 yamt * Remove the aobj from the global list.
556 1.116.2.7 yamt */
557 1.46 chs
558 1.92 ad mutex_enter(&uao_list_lock);
559 1.5 mrg LIST_REMOVE(aobj, u_list);
560 1.92 ad mutex_exit(&uao_list_lock);
561 1.5 mrg
562 1.5 mrg /*
563 1.116.2.7 yamt * Free all the pages left in the aobj. For each page, when the
564 1.116.2.7 yamt * page is no longer busy (and thus after any disk I/O that it is
565 1.116.2.7 yamt * involved in is complete), release any swap resources and free
566 1.116.2.7 yamt * the page itself.
567 1.116.2.7 yamt */
568 1.46 chs
569 1.116.2.2 yamt uvm_page_array_init(&a);
570 1.116.2.7 yamt mutex_enter(uobj->vmobjlock);
571 1.96 ad mutex_enter(&uvm_pageqlock);
572 1.116.2.6 yamt while ((pg = uvm_page_array_fill_and_peek(&a, uobj, 0, 0, 0))
573 1.116.2.3 yamt != NULL) {
574 1.116.2.2 yamt uvm_page_array_advance(&a);
575 1.46 chs pmap_page_protect(pg, VM_PROT_NONE);
576 1.5 mrg if (pg->flags & PG_BUSY) {
577 1.46 chs pg->flags |= PG_WANTED;
578 1.96 ad mutex_exit(&uvm_pageqlock);
579 1.115 rmind UVM_UNLOCK_AND_WAIT(pg, uobj->vmobjlock, false,
580 1.46 chs "uao_det", 0);
581 1.116.2.2 yamt uvm_page_array_clear(&a);
582 1.115 rmind mutex_enter(uobj->vmobjlock);
583 1.96 ad mutex_enter(&uvm_pageqlock);
584 1.5 mrg continue;
585 1.5 mrg }
586 1.18 chs uao_dropswap(&aobj->u_obj, pg->offset >> PAGE_SHIFT);
587 1.5 mrg uvm_pagefree(pg);
588 1.5 mrg }
589 1.96 ad mutex_exit(&uvm_pageqlock);
590 1.116.2.2 yamt uvm_page_array_fini(&a);
591 1.1 mrg
592 1.5 mrg /*
593 1.116.2.7 yamt * Finally, free the anonymous UVM object itself.
594 1.116.2.7 yamt */
595 1.1 mrg
596 1.5 mrg uao_free(aobj);
597 1.5 mrg }
598 1.1 mrg
599 1.1 mrg /*
600 1.46 chs * uao_put: flush pages out of a uvm object
601 1.22 thorpej *
602 1.22 thorpej * => object should be locked by caller. we may _unlock_ the object
603 1.22 thorpej * if (and only if) we need to clean a page (PGO_CLEANIT).
604 1.22 thorpej * XXXJRT Currently, however, we don't. In the case of cleaning
605 1.22 thorpej * XXXJRT a page, we simply just deactivate it. Should probably
606 1.22 thorpej * XXXJRT handle this better, in the future (although "flushing"
607 1.22 thorpej * XXXJRT anonymous memory isn't terribly important).
608 1.22 thorpej * => if PGO_CLEANIT is not set, then we will neither unlock the object
609 1.22 thorpej * or block.
610 1.22 thorpej * => if PGO_ALLPAGE is set, then all pages in the object are valid targets
611 1.22 thorpej * for flushing.
612 1.22 thorpej * => NOTE: we are allowed to lock the page queues, so the caller
613 1.22 thorpej * must not be holding the lock on them [e.g. pagedaemon had
614 1.22 thorpej * better not call us with the queues locked]
615 1.86 matt * => we return 0 unless we encountered some sort of I/O error
616 1.22 thorpej * XXXJRT currently never happens, as we never directly initiate
617 1.22 thorpej * XXXJRT I/O
618 1.1 mrg */
619 1.22 thorpej
620 1.68 thorpej static int
621 1.67 thorpej uao_put(struct uvm_object *uobj, voff_t start, voff_t stop, int flags)
622 1.5 mrg {
623 1.46 chs struct uvm_aobj *aobj = (struct uvm_aobj *)uobj;
624 1.116.2.2 yamt struct uvm_page_array a;
625 1.116.2.2 yamt struct vm_page *pg;
626 1.28 kleink voff_t curoff;
627 1.46 chs UVMHIST_FUNC("uao_put"); UVMHIST_CALLED(maphist);
628 1.22 thorpej
629 1.115 rmind KASSERT(mutex_owned(uobj->vmobjlock));
630 1.96 ad
631 1.22 thorpej if (flags & PGO_ALLPAGES) {
632 1.22 thorpej start = 0;
633 1.22 thorpej stop = aobj->u_pages << PAGE_SHIFT;
634 1.22 thorpej } else {
635 1.22 thorpej start = trunc_page(start);
636 1.71 yamt if (stop == 0) {
637 1.71 yamt stop = aobj->u_pages << PAGE_SHIFT;
638 1.71 yamt } else {
639 1.71 yamt stop = round_page(stop);
640 1.71 yamt }
641 1.22 thorpej if (stop > (aobj->u_pages << PAGE_SHIFT)) {
642 1.22 thorpej printf("uao_flush: strange, got an out of range "
643 1.116.2.1 yamt "flush (fixed) %"PRIu64" -> %"PRIu64"\n",
644 1.116.2.1 yamt aobj->u_pages << PAGE_SHIFT, stop);
645 1.22 thorpej stop = aobj->u_pages << PAGE_SHIFT;
646 1.22 thorpej }
647 1.22 thorpej }
648 1.22 thorpej UVMHIST_LOG(maphist,
649 1.116.2.2 yamt " flush start=0x%lx, stop=0x%x, flags=0x%x",
650 1.116.2.2 yamt start, stop, flags, 0);
651 1.1 mrg
652 1.5 mrg /*
653 1.22 thorpej * Don't need to do any work here if we're not freeing
654 1.22 thorpej * or deactivating pages.
655 1.22 thorpej */
656 1.46 chs
657 1.22 thorpej if ((flags & (PGO_DEACTIVATE|PGO_FREE)) == 0) {
658 1.115 rmind mutex_exit(uobj->vmobjlock);
659 1.46 chs return 0;
660 1.22 thorpej }
661 1.22 thorpej
662 1.99 ad /* locked: uobj */
663 1.116.2.2 yamt uvm_page_array_init(&a);
664 1.116.2.2 yamt curoff = start;
665 1.116.2.6 yamt while ((pg = uvm_page_array_fill_and_peek(&a, uobj, curoff, 0, 0)) !=
666 1.116.2.3 yamt NULL) {
667 1.116.2.2 yamt if (pg->offset >= stop) {
668 1.116.2.2 yamt break;
669 1.22 thorpej }
670 1.98 yamt
671 1.98 yamt /*
672 1.98 yamt * wait and try again if the page is busy.
673 1.98 yamt */
674 1.98 yamt
675 1.98 yamt if (pg->flags & PG_BUSY) {
676 1.98 yamt pg->flags |= PG_WANTED;
677 1.115 rmind UVM_UNLOCK_AND_WAIT(pg, uobj->vmobjlock, 0,
678 1.98 yamt "uao_put", 0);
679 1.116.2.2 yamt uvm_page_array_clear(&a);
680 1.115 rmind mutex_enter(uobj->vmobjlock);
681 1.98 yamt continue;
682 1.98 yamt }
683 1.116.2.2 yamt uvm_page_array_advance(&a);
684 1.116.2.2 yamt curoff = pg->offset + PAGE_SIZE;
685 1.98 yamt
686 1.46 chs switch (flags & (PGO_CLEANIT|PGO_FREE|PGO_DEACTIVATE)) {
687 1.41 chs
688 1.22 thorpej /*
689 1.22 thorpej * XXX In these first 3 cases, we always just
690 1.22 thorpej * XXX deactivate the page. We may want to
691 1.22 thorpej * XXX handle the different cases more specifically
692 1.22 thorpej * XXX in the future.
693 1.22 thorpej */
694 1.46 chs
695 1.22 thorpej case PGO_CLEANIT|PGO_FREE:
696 1.22 thorpej case PGO_CLEANIT|PGO_DEACTIVATE:
697 1.22 thorpej case PGO_DEACTIVATE:
698 1.25 thorpej deactivate_it:
699 1.98 yamt mutex_enter(&uvm_pageqlock);
700 1.83 yamt /* skip the page if it's wired */
701 1.98 yamt if (pg->wire_count == 0) {
702 1.98 yamt uvm_pagedeactivate(pg);
703 1.98 yamt }
704 1.98 yamt mutex_exit(&uvm_pageqlock);
705 1.98 yamt break;
706 1.22 thorpej
707 1.22 thorpej case PGO_FREE:
708 1.25 thorpej /*
709 1.25 thorpej * If there are multiple references to
710 1.25 thorpej * the object, just deactivate the page.
711 1.25 thorpej */
712 1.46 chs
713 1.25 thorpej if (uobj->uo_refs > 1)
714 1.25 thorpej goto deactivate_it;
715 1.25 thorpej
716 1.22 thorpej /*
717 1.98 yamt * free the swap slot and the page.
718 1.22 thorpej */
719 1.46 chs
720 1.46 chs pmap_page_protect(pg, VM_PROT_NONE);
721 1.75 yamt
722 1.75 yamt /*
723 1.75 yamt * freeing swapslot here is not strictly necessary.
724 1.75 yamt * however, leaving it here doesn't save much
725 1.75 yamt * because we need to update swap accounting anyway.
726 1.75 yamt */
727 1.75 yamt
728 1.46 chs uao_dropswap(uobj, pg->offset >> PAGE_SHIFT);
729 1.98 yamt mutex_enter(&uvm_pageqlock);
730 1.46 chs uvm_pagefree(pg);
731 1.98 yamt mutex_exit(&uvm_pageqlock);
732 1.98 yamt break;
733 1.98 yamt
734 1.98 yamt default:
735 1.98 yamt panic("%s: impossible", __func__);
736 1.22 thorpej }
737 1.22 thorpej }
738 1.115 rmind mutex_exit(uobj->vmobjlock);
739 1.116.2.2 yamt uvm_page_array_fini(&a);
740 1.46 chs return 0;
741 1.1 mrg }
742 1.1 mrg
743 1.1 mrg /*
744 1.1 mrg * uao_get: fetch me a page
745 1.1 mrg *
746 1.1 mrg * we have three cases:
747 1.1 mrg * 1: page is resident -> just return the page.
748 1.1 mrg * 2: page is zero-fill -> allocate a new page and zero it.
749 1.1 mrg * 3: page is swapped out -> fetch the page from swap.
750 1.1 mrg *
751 1.1 mrg * cases 1 and 2 can be handled with PGO_LOCKED, case 3 cannot.
752 1.1 mrg * so, if the "center" page hits case 3 (or any page, with PGO_ALLPAGES),
753 1.40 chs * then we will need to return EBUSY.
754 1.1 mrg *
755 1.1 mrg * => prefer map unlocked (not required)
756 1.1 mrg * => object must be locked! we will _unlock_ it before starting any I/O.
757 1.1 mrg * => flags: PGO_ALLPAGES: get all of the pages
758 1.1 mrg * PGO_LOCKED: fault data structures are locked
759 1.1 mrg * => NOTE: offset is the offset of pps[0], _NOT_ pps[centeridx]
760 1.1 mrg * => NOTE: caller must check for released pages!!
761 1.1 mrg */
762 1.46 chs
763 1.5 mrg static int
764 1.67 thorpej uao_get(struct uvm_object *uobj, voff_t offset, struct vm_page **pps,
765 1.82 yamt int *npagesp, int centeridx, vm_prot_t access_type, int advice, int flags)
766 1.5 mrg {
767 1.28 kleink voff_t current_offset;
768 1.52 scw struct vm_page *ptmp = NULL; /* Quell compiler warning */
769 1.72 yamt int lcv, gotpages, maxpages, swslot, pageidx;
770 1.85 thorpej bool done;
771 1.5 mrg UVMHIST_FUNC("uao_get"); UVMHIST_CALLED(pdhist);
772 1.5 mrg
773 1.27 chs UVMHIST_LOG(pdhist, "aobj=%p offset=%d, flags=%d",
774 1.74 yamt (struct uvm_aobj *)uobj, offset, flags,0);
775 1.37 chs
776 1.5 mrg /*
777 1.5 mrg * get number of pages
778 1.5 mrg */
779 1.46 chs
780 1.5 mrg maxpages = *npagesp;
781 1.5 mrg
782 1.5 mrg /*
783 1.5 mrg * step 1: handled the case where fault data structures are locked.
784 1.5 mrg */
785 1.1 mrg
786 1.5 mrg if (flags & PGO_LOCKED) {
787 1.46 chs
788 1.5 mrg /*
789 1.5 mrg * step 1a: get pages that are already resident. only do
790 1.5 mrg * this if the data structures are locked (i.e. the first
791 1.5 mrg * time through).
792 1.5 mrg */
793 1.5 mrg
794 1.87 thorpej done = true; /* be optimistic */
795 1.5 mrg gotpages = 0; /* # of pages we got so far */
796 1.5 mrg for (lcv = 0, current_offset = offset ; lcv < maxpages ;
797 1.5 mrg lcv++, current_offset += PAGE_SIZE) {
798 1.5 mrg /* do we care about this page? if not, skip it */
799 1.5 mrg if (pps[lcv] == PGO_DONTCARE)
800 1.5 mrg continue;
801 1.5 mrg ptmp = uvm_pagelookup(uobj, current_offset);
802 1.5 mrg
803 1.5 mrg /*
804 1.30 thorpej * if page is new, attempt to allocate the page,
805 1.30 thorpej * zero-fill'd.
806 1.5 mrg */
807 1.46 chs
808 1.116.2.7 yamt if (ptmp == NULL && uao_find_swslot(uobj,
809 1.15 chs current_offset >> PAGE_SHIFT) == 0) {
810 1.5 mrg ptmp = uvm_pagealloc(uobj, current_offset,
811 1.116 matt NULL, UVM_FLAG_COLORMATCH|UVM_PGA_ZERO);
812 1.5 mrg if (ptmp) {
813 1.5 mrg /* new page */
814 1.116.2.1 yamt ptmp->flags &= ~PG_FAKE;
815 1.116.2.1 yamt uvm_pagemarkdirty(ptmp,
816 1.116.2.1 yamt UVM_PAGE_STATUS_UNKNOWN);
817 1.47 chs goto gotpage;
818 1.5 mrg }
819 1.5 mrg }
820 1.5 mrg
821 1.5 mrg /*
822 1.46 chs * to be useful must get a non-busy page
823 1.5 mrg */
824 1.46 chs
825 1.46 chs if (ptmp == NULL || (ptmp->flags & PG_BUSY) != 0) {
826 1.5 mrg if (lcv == centeridx ||
827 1.5 mrg (flags & PGO_ALLPAGES) != 0)
828 1.5 mrg /* need to do a wait or I/O! */
829 1.87 thorpej done = false;
830 1.5 mrg continue;
831 1.5 mrg }
832 1.5 mrg
833 1.5 mrg /*
834 1.5 mrg * useful page: busy/lock it and plug it in our
835 1.5 mrg * result array
836 1.5 mrg */
837 1.116.2.1 yamt KASSERT(uvm_pagegetdirty(ptmp) !=
838 1.116.2.1 yamt UVM_PAGE_STATUS_CLEAN);
839 1.46 chs
840 1.5 mrg /* caller must un-busy this page */
841 1.41 chs ptmp->flags |= PG_BUSY;
842 1.5 mrg UVM_PAGE_OWN(ptmp, "uao_get1");
843 1.47 chs gotpage:
844 1.5 mrg pps[lcv] = ptmp;
845 1.5 mrg gotpages++;
846 1.46 chs }
847 1.5 mrg
848 1.5 mrg /*
849 1.5 mrg * step 1b: now we've either done everything needed or we
850 1.5 mrg * to unlock and do some waiting or I/O.
851 1.5 mrg */
852 1.5 mrg
853 1.5 mrg UVMHIST_LOG(pdhist, "<- done (done=%d)", done, 0,0,0);
854 1.5 mrg *npagesp = gotpages;
855 1.5 mrg if (done)
856 1.46 chs return 0;
857 1.5 mrg else
858 1.46 chs return EBUSY;
859 1.1 mrg }
860 1.1 mrg
861 1.5 mrg /*
862 1.5 mrg * step 2: get non-resident or busy pages.
863 1.5 mrg * object is locked. data structures are unlocked.
864 1.5 mrg */
865 1.5 mrg
866 1.76 yamt if ((flags & PGO_SYNCIO) == 0) {
867 1.76 yamt goto done;
868 1.76 yamt }
869 1.76 yamt
870 1.5 mrg for (lcv = 0, current_offset = offset ; lcv < maxpages ;
871 1.5 mrg lcv++, current_offset += PAGE_SIZE) {
872 1.27 chs
873 1.5 mrg /*
874 1.5 mrg * - skip over pages we've already gotten or don't want
875 1.5 mrg * - skip over pages we don't _have_ to get
876 1.5 mrg */
877 1.27 chs
878 1.5 mrg if (pps[lcv] != NULL ||
879 1.5 mrg (lcv != centeridx && (flags & PGO_ALLPAGES) == 0))
880 1.5 mrg continue;
881 1.5 mrg
882 1.27 chs pageidx = current_offset >> PAGE_SHIFT;
883 1.27 chs
884 1.5 mrg /*
885 1.5 mrg * we have yet to locate the current page (pps[lcv]). we
886 1.5 mrg * first look for a page that is already at the current offset.
887 1.5 mrg * if we find a page, we check to see if it is busy or
888 1.5 mrg * released. if that is the case, then we sleep on the page
889 1.5 mrg * until it is no longer busy or released and repeat the lookup.
890 1.5 mrg * if the page we found is neither busy nor released, then we
891 1.5 mrg * busy it (so we own it) and plug it into pps[lcv]. this
892 1.5 mrg * 'break's the following while loop and indicates we are
893 1.5 mrg * ready to move on to the next page in the "lcv" loop above.
894 1.5 mrg *
895 1.5 mrg * if we exit the while loop with pps[lcv] still set to NULL,
896 1.5 mrg * then it means that we allocated a new busy/fake/clean page
897 1.5 mrg * ptmp in the object and we need to do I/O to fill in the data.
898 1.5 mrg */
899 1.5 mrg
900 1.5 mrg /* top of "pps" while loop */
901 1.5 mrg while (pps[lcv] == NULL) {
902 1.5 mrg /* look for a resident page */
903 1.5 mrg ptmp = uvm_pagelookup(uobj, current_offset);
904 1.5 mrg
905 1.5 mrg /* not resident? allocate one now (if we can) */
906 1.5 mrg if (ptmp == NULL) {
907 1.5 mrg
908 1.5 mrg ptmp = uvm_pagealloc(uobj, current_offset,
909 1.19 chs NULL, 0);
910 1.5 mrg
911 1.5 mrg /* out of RAM? */
912 1.5 mrg if (ptmp == NULL) {
913 1.115 rmind mutex_exit(uobj->vmobjlock);
914 1.5 mrg UVMHIST_LOG(pdhist,
915 1.5 mrg "sleeping, ptmp == NULL\n",0,0,0,0);
916 1.5 mrg uvm_wait("uao_getpage");
917 1.115 rmind mutex_enter(uobj->vmobjlock);
918 1.41 chs continue;
919 1.5 mrg }
920 1.5 mrg
921 1.5 mrg /*
922 1.5 mrg * got new page ready for I/O. break pps while
923 1.5 mrg * loop. pps[lcv] is still NULL.
924 1.5 mrg */
925 1.46 chs
926 1.5 mrg break;
927 1.5 mrg }
928 1.5 mrg
929 1.5 mrg /* page is there, see if we need to wait on it */
930 1.46 chs if ((ptmp->flags & PG_BUSY) != 0) {
931 1.5 mrg ptmp->flags |= PG_WANTED;
932 1.5 mrg UVMHIST_LOG(pdhist,
933 1.5 mrg "sleeping, ptmp->flags 0x%x\n",
934 1.5 mrg ptmp->flags,0,0,0);
935 1.115 rmind UVM_UNLOCK_AND_WAIT(ptmp, uobj->vmobjlock,
936 1.87 thorpej false, "uao_get", 0);
937 1.115 rmind mutex_enter(uobj->vmobjlock);
938 1.46 chs continue;
939 1.5 mrg }
940 1.41 chs
941 1.41 chs /*
942 1.5 mrg * if we get here then the page has become resident and
943 1.5 mrg * unbusy between steps 1 and 2. we busy it now (so we
944 1.5 mrg * own it) and set pps[lcv] (so that we exit the while
945 1.5 mrg * loop).
946 1.5 mrg */
947 1.46 chs
948 1.116.2.1 yamt KASSERT(uvm_pagegetdirty(ptmp) !=
949 1.116.2.1 yamt UVM_PAGE_STATUS_CLEAN);
950 1.5 mrg /* we own it, caller must un-busy */
951 1.5 mrg ptmp->flags |= PG_BUSY;
952 1.5 mrg UVM_PAGE_OWN(ptmp, "uao_get2");
953 1.5 mrg pps[lcv] = ptmp;
954 1.5 mrg }
955 1.5 mrg
956 1.5 mrg /*
957 1.5 mrg * if we own the valid page at the correct offset, pps[lcv] will
958 1.5 mrg * point to it. nothing more to do except go to the next page.
959 1.5 mrg */
960 1.46 chs
961 1.5 mrg if (pps[lcv])
962 1.5 mrg continue; /* next lcv */
963 1.5 mrg
964 1.5 mrg /*
965 1.41 chs * we have a "fake/busy/clean" page that we just allocated.
966 1.5 mrg * do the needed "i/o", either reading from swap or zeroing.
967 1.5 mrg */
968 1.46 chs
969 1.116.2.7 yamt swslot = uao_find_swslot(uobj, pageidx);
970 1.5 mrg
971 1.5 mrg /*
972 1.5 mrg * just zero the page if there's nothing in swap.
973 1.5 mrg */
974 1.46 chs
975 1.46 chs if (swslot == 0) {
976 1.46 chs
977 1.5 mrg /*
978 1.5 mrg * page hasn't existed before, just zero it.
979 1.5 mrg */
980 1.46 chs
981 1.5 mrg uvm_pagezero(ptmp);
982 1.27 chs } else {
983 1.72 yamt #if defined(VMSWAP)
984 1.72 yamt int error;
985 1.72 yamt
986 1.5 mrg UVMHIST_LOG(pdhist, "pagein from swslot %d",
987 1.5 mrg swslot, 0,0,0);
988 1.5 mrg
989 1.5 mrg /*
990 1.5 mrg * page in the swapped-out page.
991 1.5 mrg * unlock object for i/o, relock when done.
992 1.5 mrg */
993 1.46 chs
994 1.115 rmind mutex_exit(uobj->vmobjlock);
995 1.46 chs error = uvm_swap_get(ptmp, swslot, PGO_SYNCIO);
996 1.115 rmind mutex_enter(uobj->vmobjlock);
997 1.5 mrg
998 1.5 mrg /*
999 1.5 mrg * I/O done. check for errors.
1000 1.5 mrg */
1001 1.46 chs
1002 1.46 chs if (error != 0) {
1003 1.5 mrg UVMHIST_LOG(pdhist, "<- done (error=%d)",
1004 1.46 chs error,0,0,0);
1005 1.5 mrg if (ptmp->flags & PG_WANTED)
1006 1.24 thorpej wakeup(ptmp);
1007 1.27 chs
1008 1.27 chs /*
1009 1.27 chs * remove the swap slot from the aobj
1010 1.27 chs * and mark the aobj as having no real slot.
1011 1.27 chs * don't free the swap slot, thus preventing
1012 1.27 chs * it from being used again.
1013 1.27 chs */
1014 1.46 chs
1015 1.116.2.7 yamt swslot = uao_set_swslot(uobj, pageidx,
1016 1.116.2.7 yamt SWSLOT_BAD);
1017 1.57 pk if (swslot > 0) {
1018 1.45 chs uvm_swap_markbad(swslot, 1);
1019 1.45 chs }
1020 1.27 chs
1021 1.96 ad mutex_enter(&uvm_pageqlock);
1022 1.5 mrg uvm_pagefree(ptmp);
1023 1.96 ad mutex_exit(&uvm_pageqlock);
1024 1.115 rmind mutex_exit(uobj->vmobjlock);
1025 1.46 chs return error;
1026 1.5 mrg }
1027 1.72 yamt #else /* defined(VMSWAP) */
1028 1.72 yamt panic("%s: pagein", __func__);
1029 1.72 yamt #endif /* defined(VMSWAP) */
1030 1.5 mrg }
1031 1.5 mrg
1032 1.116.2.1 yamt /*
1033 1.116.2.1 yamt * note that we will allow the page being writably-mapped
1034 1.116.2.1 yamt * (!PG_RDONLY) regardless of access_type.
1035 1.116.2.1 yamt */
1036 1.116.2.1 yamt uvm_pagemarkdirty(ptmp, UVM_PAGE_STATUS_UNKNOWN);
1037 1.78 yamt
1038 1.41 chs /*
1039 1.5 mrg * we got the page! clear the fake flag (indicates valid
1040 1.5 mrg * data now in page) and plug into our result array. note
1041 1.41 chs * that page is still busy.
1042 1.5 mrg *
1043 1.5 mrg * it is the callers job to:
1044 1.5 mrg * => check if the page is released
1045 1.5 mrg * => unbusy the page
1046 1.5 mrg * => activate the page
1047 1.5 mrg */
1048 1.116.2.1 yamt KASSERT(uvm_pagegetdirty(ptmp) != UVM_PAGE_STATUS_CLEAN);
1049 1.116.2.1 yamt KASSERT((ptmp->flags & PG_FAKE) != 0);
1050 1.46 chs ptmp->flags &= ~PG_FAKE;
1051 1.5 mrg pps[lcv] = ptmp;
1052 1.46 chs }
1053 1.1 mrg
1054 1.1 mrg /*
1055 1.5 mrg * finally, unlock object and return.
1056 1.5 mrg */
1057 1.1 mrg
1058 1.76 yamt done:
1059 1.115 rmind mutex_exit(uobj->vmobjlock);
1060 1.5 mrg UVMHIST_LOG(pdhist, "<- done (OK)",0,0,0,0);
1061 1.46 chs return 0;
1062 1.1 mrg }
1063 1.1 mrg
1064 1.72 yamt #if defined(VMSWAP)
1065 1.72 yamt
1066 1.1 mrg /*
1067 1.18 chs * uao_dropswap: release any swap resources from this aobj page.
1068 1.41 chs *
1069 1.18 chs * => aobj must be locked or have a reference count of 0.
1070 1.18 chs */
1071 1.18 chs
1072 1.18 chs void
1073 1.67 thorpej uao_dropswap(struct uvm_object *uobj, int pageidx)
1074 1.18 chs {
1075 1.18 chs int slot;
1076 1.18 chs
1077 1.18 chs slot = uao_set_swslot(uobj, pageidx, 0);
1078 1.18 chs if (slot) {
1079 1.18 chs uvm_swap_free(slot, 1);
1080 1.18 chs }
1081 1.27 chs }
1082 1.27 chs
1083 1.27 chs /*
1084 1.27 chs * page in every page in every aobj that is paged-out to a range of swslots.
1085 1.41 chs *
1086 1.27 chs * => nothing should be locked.
1087 1.87 thorpej * => returns true if pagein was aborted due to lack of memory.
1088 1.27 chs */
1089 1.46 chs
1090 1.85 thorpej bool
1091 1.67 thorpej uao_swap_off(int startslot, int endslot)
1092 1.27 chs {
1093 1.116.2.7 yamt struct uvm_aobj *aobj;
1094 1.27 chs
1095 1.27 chs /*
1096 1.116.2.7 yamt * Walk the list of all anonymous UVM objects. Grab the first.
1097 1.27 chs */
1098 1.90 ad mutex_enter(&uao_list_lock);
1099 1.116.2.7 yamt if ((aobj = LIST_FIRST(&uao_list)) == NULL) {
1100 1.116.2.7 yamt mutex_exit(&uao_list_lock);
1101 1.116.2.7 yamt return false;
1102 1.116.2.7 yamt }
1103 1.116.2.7 yamt uao_reference(&aobj->u_obj);
1104 1.46 chs
1105 1.116.2.7 yamt do {
1106 1.116.2.7 yamt struct uvm_aobj *nextaobj;
1107 1.116.2.7 yamt bool rv;
1108 1.27 chs
1109 1.27 chs /*
1110 1.116.2.7 yamt * Prefetch the next object and immediately hold a reference
1111 1.116.2.7 yamt * on it, so neither the current nor the next entry could
1112 1.116.2.7 yamt * disappear while we are iterating.
1113 1.27 chs */
1114 1.116.2.7 yamt if ((nextaobj = LIST_NEXT(aobj, u_list)) != NULL) {
1115 1.116.2.7 yamt uao_reference(&nextaobj->u_obj);
1116 1.116.2.7 yamt }
1117 1.90 ad mutex_exit(&uao_list_lock);
1118 1.27 chs
1119 1.27 chs /*
1120 1.116.2.7 yamt * Page in all pages in the swap slot range.
1121 1.27 chs */
1122 1.116.2.7 yamt mutex_enter(aobj->u_obj.vmobjlock);
1123 1.27 chs rv = uao_pagein(aobj, startslot, endslot);
1124 1.116.2.7 yamt mutex_exit(aobj->u_obj.vmobjlock);
1125 1.116.2.7 yamt
1126 1.116.2.7 yamt /* Drop the reference of the current object. */
1127 1.116.2.7 yamt uao_detach(&aobj->u_obj);
1128 1.27 chs if (rv) {
1129 1.116.2.7 yamt if (nextaobj) {
1130 1.116.2.7 yamt uao_detach(&nextaobj->u_obj);
1131 1.116.2.7 yamt }
1132 1.27 chs return rv;
1133 1.27 chs }
1134 1.27 chs
1135 1.116.2.7 yamt aobj = nextaobj;
1136 1.90 ad mutex_enter(&uao_list_lock);
1137 1.116.2.7 yamt } while (aobj);
1138 1.27 chs
1139 1.90 ad mutex_exit(&uao_list_lock);
1140 1.87 thorpej return false;
1141 1.27 chs }
1142 1.27 chs
1143 1.27 chs /*
1144 1.27 chs * page in any pages from aobj in the given range.
1145 1.27 chs *
1146 1.27 chs * => aobj must be locked and is returned locked.
1147 1.87 thorpej * => returns true if pagein was aborted due to lack of memory.
1148 1.27 chs */
1149 1.85 thorpej static bool
1150 1.67 thorpej uao_pagein(struct uvm_aobj *aobj, int startslot, int endslot)
1151 1.27 chs {
1152 1.85 thorpej bool rv;
1153 1.27 chs
1154 1.27 chs if (UAO_USES_SWHASH(aobj)) {
1155 1.27 chs struct uao_swhash_elt *elt;
1156 1.65 christos int buck;
1157 1.27 chs
1158 1.27 chs restart:
1159 1.65 christos for (buck = aobj->u_swhashmask; buck >= 0; buck--) {
1160 1.65 christos for (elt = LIST_FIRST(&aobj->u_swhash[buck]);
1161 1.27 chs elt != NULL;
1162 1.27 chs elt = LIST_NEXT(elt, list)) {
1163 1.27 chs int i;
1164 1.27 chs
1165 1.27 chs for (i = 0; i < UAO_SWHASH_CLUSTER_SIZE; i++) {
1166 1.27 chs int slot = elt->slots[i];
1167 1.27 chs
1168 1.27 chs /*
1169 1.27 chs * if the slot isn't in range, skip it.
1170 1.27 chs */
1171 1.46 chs
1172 1.41 chs if (slot < startslot ||
1173 1.27 chs slot >= endslot) {
1174 1.27 chs continue;
1175 1.27 chs }
1176 1.27 chs
1177 1.27 chs /*
1178 1.27 chs * process the page,
1179 1.27 chs * the start over on this object
1180 1.27 chs * since the swhash elt
1181 1.27 chs * may have been freed.
1182 1.27 chs */
1183 1.46 chs
1184 1.27 chs rv = uao_pagein_page(aobj,
1185 1.27 chs UAO_SWHASH_ELT_PAGEIDX_BASE(elt) + i);
1186 1.27 chs if (rv) {
1187 1.27 chs return rv;
1188 1.27 chs }
1189 1.27 chs goto restart;
1190 1.27 chs }
1191 1.27 chs }
1192 1.27 chs }
1193 1.27 chs } else {
1194 1.27 chs int i;
1195 1.27 chs
1196 1.27 chs for (i = 0; i < aobj->u_pages; i++) {
1197 1.27 chs int slot = aobj->u_swslots[i];
1198 1.27 chs
1199 1.27 chs /*
1200 1.27 chs * if the slot isn't in range, skip it
1201 1.27 chs */
1202 1.46 chs
1203 1.27 chs if (slot < startslot || slot >= endslot) {
1204 1.27 chs continue;
1205 1.27 chs }
1206 1.27 chs
1207 1.27 chs /*
1208 1.27 chs * process the page.
1209 1.27 chs */
1210 1.46 chs
1211 1.27 chs rv = uao_pagein_page(aobj, i);
1212 1.27 chs if (rv) {
1213 1.27 chs return rv;
1214 1.27 chs }
1215 1.27 chs }
1216 1.27 chs }
1217 1.27 chs
1218 1.87 thorpej return false;
1219 1.27 chs }
1220 1.27 chs
1221 1.27 chs /*
1222 1.116.2.7 yamt * uao_pagein_page: page in a single page from an anonymous UVM object.
1223 1.27 chs *
1224 1.116.2.7 yamt * => Returns true if pagein was aborted due to lack of memory.
1225 1.116.2.7 yamt * => Object must be locked and is returned locked.
1226 1.27 chs */
1227 1.46 chs
1228 1.85 thorpej static bool
1229 1.67 thorpej uao_pagein_page(struct uvm_aobj *aobj, int pageidx)
1230 1.27 chs {
1231 1.116.2.7 yamt struct uvm_object *uobj = &aobj->u_obj;
1232 1.27 chs struct vm_page *pg;
1233 1.57 pk int rv, npages;
1234 1.27 chs
1235 1.27 chs pg = NULL;
1236 1.27 chs npages = 1;
1237 1.116.2.7 yamt
1238 1.116.2.7 yamt KASSERT(mutex_owned(uobj->vmobjlock));
1239 1.116.2.7 yamt rv = uao_get(uobj, pageidx << PAGE_SHIFT, &pg, &npages,
1240 1.116.2.7 yamt 0, VM_PROT_READ | VM_PROT_WRITE, 0, PGO_SYNCIO);
1241 1.27 chs
1242 1.27 chs /*
1243 1.27 chs * relock and finish up.
1244 1.27 chs */
1245 1.46 chs
1246 1.116.2.7 yamt mutex_enter(uobj->vmobjlock);
1247 1.27 chs switch (rv) {
1248 1.40 chs case 0:
1249 1.27 chs break;
1250 1.27 chs
1251 1.40 chs case EIO:
1252 1.40 chs case ERESTART:
1253 1.46 chs
1254 1.27 chs /*
1255 1.27 chs * nothing more to do on errors.
1256 1.40 chs * ERESTART can only mean that the anon was freed,
1257 1.27 chs * so again there's nothing to do.
1258 1.27 chs */
1259 1.46 chs
1260 1.87 thorpej return false;
1261 1.59 pk
1262 1.59 pk default:
1263 1.87 thorpej return true;
1264 1.27 chs }
1265 1.27 chs
1266 1.27 chs /*
1267 1.27 chs * ok, we've got the page now.
1268 1.27 chs * mark it as dirty, clear its swslot and un-busy it.
1269 1.27 chs */
1270 1.57 pk uao_dropswap(&aobj->u_obj, pageidx);
1271 1.27 chs
1272 1.27 chs /*
1273 1.80 yamt * make sure it's on a page queue.
1274 1.27 chs */
1275 1.96 ad mutex_enter(&uvm_pageqlock);
1276 1.58 pk if (pg->wire_count == 0)
1277 1.80 yamt uvm_pageenqueue(pg);
1278 1.96 ad mutex_exit(&uvm_pageqlock);
1279 1.56 yamt
1280 1.59 pk if (pg->flags & PG_WANTED) {
1281 1.59 pk wakeup(pg);
1282 1.59 pk }
1283 1.116.2.1 yamt pg->flags &= ~(PG_WANTED|PG_BUSY|PG_FAKE);
1284 1.116.2.1 yamt uvm_pagemarkdirty(pg, UVM_PAGE_STATUS_DIRTY);
1285 1.56 yamt UVM_PAGE_OWN(pg, NULL);
1286 1.56 yamt
1287 1.87 thorpej return false;
1288 1.1 mrg }
1289 1.72 yamt
1290 1.75 yamt /*
1291 1.75 yamt * uao_dropswap_range: drop swapslots in the range.
1292 1.75 yamt *
1293 1.75 yamt * => aobj must be locked and is returned locked.
1294 1.75 yamt * => start is inclusive. end is exclusive.
1295 1.75 yamt */
1296 1.75 yamt
1297 1.75 yamt void
1298 1.75 yamt uao_dropswap_range(struct uvm_object *uobj, voff_t start, voff_t end)
1299 1.75 yamt {
1300 1.75 yamt struct uvm_aobj *aobj = (struct uvm_aobj *)uobj;
1301 1.116.2.7 yamt int swpgonlydelta = 0;
1302 1.75 yamt
1303 1.115 rmind KASSERT(mutex_owned(uobj->vmobjlock));
1304 1.75 yamt
1305 1.75 yamt if (end == 0) {
1306 1.75 yamt end = INT64_MAX;
1307 1.75 yamt }
1308 1.75 yamt
1309 1.75 yamt if (UAO_USES_SWHASH(aobj)) {
1310 1.75 yamt int i, hashbuckets = aobj->u_swhashmask + 1;
1311 1.75 yamt voff_t taghi;
1312 1.75 yamt voff_t taglo;
1313 1.75 yamt
1314 1.75 yamt taglo = UAO_SWHASH_ELT_TAG(start);
1315 1.75 yamt taghi = UAO_SWHASH_ELT_TAG(end);
1316 1.75 yamt
1317 1.75 yamt for (i = 0; i < hashbuckets; i++) {
1318 1.75 yamt struct uao_swhash_elt *elt, *next;
1319 1.75 yamt
1320 1.75 yamt for (elt = LIST_FIRST(&aobj->u_swhash[i]);
1321 1.75 yamt elt != NULL;
1322 1.75 yamt elt = next) {
1323 1.75 yamt int startidx, endidx;
1324 1.75 yamt int j;
1325 1.75 yamt
1326 1.75 yamt next = LIST_NEXT(elt, list);
1327 1.75 yamt
1328 1.75 yamt if (elt->tag < taglo || taghi < elt->tag) {
1329 1.75 yamt continue;
1330 1.75 yamt }
1331 1.75 yamt
1332 1.75 yamt if (elt->tag == taglo) {
1333 1.75 yamt startidx =
1334 1.75 yamt UAO_SWHASH_ELT_PAGESLOT_IDX(start);
1335 1.75 yamt } else {
1336 1.75 yamt startidx = 0;
1337 1.75 yamt }
1338 1.75 yamt
1339 1.75 yamt if (elt->tag == taghi) {
1340 1.75 yamt endidx =
1341 1.75 yamt UAO_SWHASH_ELT_PAGESLOT_IDX(end);
1342 1.75 yamt } else {
1343 1.75 yamt endidx = UAO_SWHASH_CLUSTER_SIZE;
1344 1.75 yamt }
1345 1.75 yamt
1346 1.75 yamt for (j = startidx; j < endidx; j++) {
1347 1.75 yamt int slot = elt->slots[j];
1348 1.75 yamt
1349 1.75 yamt KASSERT(uvm_pagelookup(&aobj->u_obj,
1350 1.75 yamt (UAO_SWHASH_ELT_PAGEIDX_BASE(elt)
1351 1.75 yamt + j) << PAGE_SHIFT) == NULL);
1352 1.75 yamt if (slot > 0) {
1353 1.75 yamt uvm_swap_free(slot, 1);
1354 1.75 yamt swpgonlydelta++;
1355 1.75 yamt KASSERT(elt->count > 0);
1356 1.75 yamt elt->slots[j] = 0;
1357 1.75 yamt elt->count--;
1358 1.75 yamt }
1359 1.75 yamt }
1360 1.75 yamt
1361 1.75 yamt if (elt->count == 0) {
1362 1.75 yamt LIST_REMOVE(elt, list);
1363 1.75 yamt pool_put(&uao_swhash_elt_pool, elt);
1364 1.75 yamt }
1365 1.75 yamt }
1366 1.75 yamt }
1367 1.75 yamt } else {
1368 1.75 yamt int i;
1369 1.75 yamt
1370 1.75 yamt if (aobj->u_pages < end) {
1371 1.75 yamt end = aobj->u_pages;
1372 1.75 yamt }
1373 1.75 yamt for (i = start; i < end; i++) {
1374 1.75 yamt int slot = aobj->u_swslots[i];
1375 1.75 yamt
1376 1.75 yamt if (slot > 0) {
1377 1.75 yamt uvm_swap_free(slot, 1);
1378 1.75 yamt swpgonlydelta++;
1379 1.75 yamt }
1380 1.75 yamt }
1381 1.75 yamt }
1382 1.75 yamt
1383 1.75 yamt /*
1384 1.75 yamt * adjust the counter of pages only in swap for all
1385 1.75 yamt * the swap slots we've freed.
1386 1.75 yamt */
1387 1.75 yamt
1388 1.75 yamt if (swpgonlydelta > 0) {
1389 1.92 ad mutex_enter(&uvm_swap_data_lock);
1390 1.75 yamt KASSERT(uvmexp.swpgonly >= swpgonlydelta);
1391 1.75 yamt uvmexp.swpgonly -= swpgonlydelta;
1392 1.92 ad mutex_exit(&uvm_swap_data_lock);
1393 1.75 yamt }
1394 1.75 yamt }
1395 1.75 yamt
1396 1.72 yamt #endif /* defined(VMSWAP) */
1397