uvm_pglist.c revision 1.73 1 1.73 ad /* $NetBSD: uvm_pglist.c,v 1.73 2019/12/13 20:10:22 ad Exp $ */
2 1.45 nonaka
3 1.1 mrg /*-
4 1.1 mrg * Copyright (c) 1997 The NetBSD Foundation, Inc.
5 1.1 mrg * All rights reserved.
6 1.15 chs *
7 1.1 mrg * This code is derived from software contributed to The NetBSD Foundation
8 1.1 mrg * by Jason R. Thorpe of the Numerical Aerospace Simulation Facility,
9 1.15 chs * NASA Ames Research Center.
10 1.1 mrg *
11 1.1 mrg * Redistribution and use in source and binary forms, with or without
12 1.1 mrg * modification, are permitted provided that the following conditions
13 1.1 mrg * are met:
14 1.1 mrg * 1. Redistributions of source code must retain the above copyright
15 1.1 mrg * notice, this list of conditions and the following disclaimer.
16 1.15 chs * 2. Redistributions in binary form must reproduce the above copyright
17 1.1 mrg * notice, this list of conditions and the following disclaimer in the
18 1.1 mrg * documentation and/or other materials provided with the distribution.
19 1.15 chs *
20 1.1 mrg * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
21 1.1 mrg * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
22 1.1 mrg * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
23 1.1 mrg * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
24 1.1 mrg * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
25 1.1 mrg * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
26 1.1 mrg * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
27 1.1 mrg * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
28 1.1 mrg * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
29 1.1 mrg * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
30 1.1 mrg * POSSIBILITY OF SUCH DAMAGE.
31 1.1 mrg */
32 1.1 mrg
33 1.1 mrg /*
34 1.1 mrg * uvm_pglist.c: pglist functions
35 1.1 mrg */
36 1.19 lukem
37 1.19 lukem #include <sys/cdefs.h>
38 1.73 ad __KERNEL_RCSID(0, "$NetBSD: uvm_pglist.c,v 1.73 2019/12/13 20:10:22 ad Exp $");
39 1.1 mrg
40 1.1 mrg #include <sys/param.h>
41 1.1 mrg #include <sys/systm.h>
42 1.1 mrg
43 1.1 mrg #include <uvm/uvm.h>
44 1.36 yamt #include <uvm/uvm_pdpolicy.h>
45 1.1 mrg
46 1.1 mrg #ifdef VM_PAGE_ALLOC_MEMORY_STATS
47 1.1 mrg #define STAT_INCR(v) (v)++
48 1.1 mrg #define STAT_DECR(v) do { \
49 1.1 mrg if ((v) == 0) \
50 1.1 mrg printf("%s:%d -- Already 0!\n", __FILE__, __LINE__); \
51 1.1 mrg else \
52 1.1 mrg (v)--; \
53 1.25 perry } while (/*CONSTCOND*/ 0)
54 1.1 mrg u_long uvm_pglistalloc_npages;
55 1.1 mrg #else
56 1.1 mrg #define STAT_INCR(v)
57 1.1 mrg #define STAT_DECR(v)
58 1.1 mrg #endif
59 1.1 mrg
60 1.1 mrg /*
61 1.1 mrg * uvm_pglistalloc: allocate a list of pages
62 1.1 mrg *
63 1.27 drochner * => allocated pages are placed onto an rlist. rlist is
64 1.27 drochner * initialized by uvm_pglistalloc.
65 1.1 mrg * => returns 0 on success or errno on failure
66 1.27 drochner * => implementation allocates a single segment if any constraints are
67 1.27 drochner * imposed by call arguments.
68 1.1 mrg * => doesn't take into account clean non-busy pages on inactive list
69 1.1 mrg * that could be used(?)
70 1.1 mrg * => params:
71 1.1 mrg * size the size of the allocation, rounded to page size.
72 1.1 mrg * low the low address of the allowed allocation range.
73 1.1 mrg * high the high address of the allowed allocation range.
74 1.1 mrg * alignment memory must be aligned to this power-of-two boundary.
75 1.15 chs * boundary no segment in the allocation may cross this
76 1.1 mrg * power-of-two boundary (relative to zero).
77 1.1 mrg */
78 1.1 mrg
79 1.20 drochner static void
80 1.33 thorpej uvm_pglist_add(struct vm_page *pg, struct pglist *rlist)
81 1.20 drochner {
82 1.63 martin int free_list __unused, color __unused, pgflidx;
83 1.20 drochner
84 1.39 ad KASSERT(mutex_owned(&uvm_fpageqlock));
85 1.39 ad
86 1.20 drochner #if PGFL_NQUEUES != 2
87 1.20 drochner #error uvm_pglistalloc needs to be updated
88 1.20 drochner #endif
89 1.20 drochner
90 1.20 drochner free_list = uvm_page_lookup_freelist(pg);
91 1.20 drochner color = VM_PGCOLOR_BUCKET(pg);
92 1.20 drochner pgflidx = (pg->flags & PG_ZERO) ? PGFL_ZEROS : PGFL_UNKNOWN;
93 1.67 christos #ifdef UVMDEBUG
94 1.52 matt struct vm_page *tp;
95 1.52 matt LIST_FOREACH(tp,
96 1.52 matt &uvm.page_free[free_list].pgfl_buckets[color].pgfl_queues[pgflidx],
97 1.52 matt pageq.list) {
98 1.20 drochner if (tp == pg)
99 1.20 drochner break;
100 1.20 drochner }
101 1.20 drochner if (tp == NULL)
102 1.20 drochner panic("uvm_pglistalloc: page not on freelist");
103 1.20 drochner #endif
104 1.42 ad LIST_REMOVE(pg, pageq.list); /* global */
105 1.42 ad LIST_REMOVE(pg, listq.list); /* cpu */
106 1.20 drochner uvmexp.free--;
107 1.20 drochner if (pg->flags & PG_ZERO)
108 1.20 drochner uvmexp.zeropages--;
109 1.42 ad VM_FREE_PAGE_TO_CPU(pg)->pages[pgflidx]--;
110 1.20 drochner pg->flags = PG_CLEAN;
111 1.20 drochner pg->uobject = NULL;
112 1.20 drochner pg->uanon = NULL;
113 1.42 ad TAILQ_INSERT_TAIL(rlist, pg, pageq.queue);
114 1.20 drochner STAT_INCR(uvm_pglistalloc_npages);
115 1.20 drochner }
116 1.20 drochner
117 1.20 drochner static int
118 1.68 cherry uvm_pglistalloc_c_ps(uvm_physseg_t psi, int num, paddr_t low, paddr_t high,
119 1.33 thorpej paddr_t alignment, paddr_t boundary, struct pglist *rlist)
120 1.1 mrg {
121 1.66 matt signed int candidate, limit, candidateidx, end, idx, skip;
122 1.24 drochner int pagemask;
123 1.52 matt bool second_pass;
124 1.24 drochner #ifdef DEBUG
125 1.22 drochner paddr_t idxpa, lastidxpa;
126 1.68 cherry paddr_t cidx = 0; /* XXX: GCC */
127 1.22 drochner #endif
128 1.24 drochner #ifdef PGALLOC_VERBOSE
129 1.57 matt printf("pgalloc: contig %d pgs from psi %zd\n", num, ps - vm_physmem);
130 1.24 drochner #endif
131 1.1 mrg
132 1.39 ad KASSERT(mutex_owned(&uvm_fpageqlock));
133 1.39 ad
134 1.52 matt low = atop(low);
135 1.52 matt high = atop(high);
136 1.52 matt alignment = atop(alignment);
137 1.52 matt
138 1.52 matt /*
139 1.57 matt * Make sure that physseg falls within with range to be allocated from.
140 1.57 matt */
141 1.68 cherry if (high <= uvm_physseg_get_avail_start(psi) || low >= uvm_physseg_get_avail_end(psi))
142 1.57 matt return 0;
143 1.57 matt
144 1.57 matt /*
145 1.52 matt * We start our search at the just after where the last allocation
146 1.52 matt * succeeded.
147 1.52 matt */
148 1.71 riastrad candidate = roundup2(uimax(low, uvm_physseg_get_avail_start(psi) +
149 1.68 cherry uvm_physseg_get_start_hint(psi)), alignment);
150 1.71 riastrad limit = uimin(high, uvm_physseg_get_avail_end(psi));
151 1.24 drochner pagemask = ~((boundary >> PAGE_SHIFT) - 1);
152 1.52 matt skip = 0;
153 1.52 matt second_pass = false;
154 1.12 chs
155 1.24 drochner for (;;) {
156 1.52 matt bool ok = true;
157 1.52 matt signed int cnt;
158 1.52 matt
159 1.66 matt if (candidate + num > limit) {
160 1.68 cherry if (uvm_physseg_get_start_hint(psi) == 0 || second_pass) {
161 1.52 matt /*
162 1.52 matt * We've run past the allowable range.
163 1.52 matt */
164 1.52 matt return 0; /* FAIL = 0 pages*/
165 1.52 matt }
166 1.3 mrg /*
167 1.52 matt * We've wrapped around the end of this segment
168 1.52 matt * so restart at the beginning but now our limit
169 1.52 matt * is were we started.
170 1.3 mrg */
171 1.52 matt second_pass = true;
172 1.71 riastrad candidate = roundup2(uimax(low, uvm_physseg_get_avail_start(psi)), alignment);
173 1.71 riastrad limit = uimin(limit, uvm_physseg_get_avail_start(psi) +
174 1.68 cherry uvm_physseg_get_start_hint(psi));
175 1.52 matt skip = 0;
176 1.52 matt continue;
177 1.3 mrg }
178 1.24 drochner if (boundary != 0 &&
179 1.66 matt ((candidate ^ (candidate + num - 1)) & pagemask) != 0) {
180 1.24 drochner /*
181 1.24 drochner * Region crosses boundary. Jump to the boundary
182 1.24 drochner * just crossed and ensure alignment.
183 1.24 drochner */
184 1.66 matt candidate = (candidate + num - 1) & pagemask;
185 1.66 matt candidate = roundup2(candidate, alignment);
186 1.52 matt skip = 0;
187 1.24 drochner continue;
188 1.24 drochner }
189 1.22 drochner #ifdef DEBUG
190 1.3 mrg /*
191 1.3 mrg * Make sure this is a managed physical page.
192 1.3 mrg */
193 1.3 mrg
194 1.68 cherry if (uvm_physseg_find(candidate, &cidx) != psi)
195 1.22 drochner panic("pgalloc contig: botch1");
196 1.68 cherry if (cidx != candidate - uvm_physseg_get_start(psi))
197 1.22 drochner panic("pgalloc contig: botch2");
198 1.68 cherry if (uvm_physseg_find(candidate + num - 1, &cidx) != psi)
199 1.22 drochner panic("pgalloc contig: botch3");
200 1.68 cherry if (cidx != candidate - uvm_physseg_get_start(psi) + num - 1)
201 1.31 junyoung panic("pgalloc contig: botch4");
202 1.22 drochner #endif
203 1.68 cherry candidateidx = candidate - uvm_physseg_get_start(psi);
204 1.66 matt end = candidateidx + num;
205 1.3 mrg
206 1.3 mrg /*
207 1.24 drochner * Found a suitable starting page. See if the range is free.
208 1.3 mrg */
209 1.52 matt #ifdef PGALLOC_VERBOSE
210 1.66 matt printf("%s: ps=%p candidate=%#x end=%#x skip=%#x, align=%#"PRIxPADDR,
211 1.66 matt __func__, ps, candidateidx, end, skip, alignment);
212 1.52 matt #endif
213 1.52 matt /*
214 1.52 matt * We start at the end and work backwards since if we find a
215 1.52 matt * non-free page, it makes no sense to continue.
216 1.52 matt *
217 1.52 matt * But on the plus size we have "vetted" some number of free
218 1.52 matt * pages. If this iteration fails, we may be able to skip
219 1.52 matt * testing most of those pages again in the next pass.
220 1.52 matt */
221 1.66 matt for (idx = end - 1; idx >= candidateidx + skip; idx--) {
222 1.68 cherry if (VM_PAGE_IS_FREE(uvm_physseg_get_pg(psi, idx)) == 0) {
223 1.52 matt ok = false;
224 1.3 mrg break;
225 1.52 matt }
226 1.24 drochner
227 1.24 drochner #ifdef DEBUG
228 1.66 matt if (idx > candidateidx) {
229 1.68 cherry idxpa = VM_PAGE_TO_PHYS(uvm_physseg_get_pg(psi, idx));
230 1.68 cherry lastidxpa = VM_PAGE_TO_PHYS(uvm_physseg_get_pg(psi, idx - 1));
231 1.12 chs if ((lastidxpa + PAGE_SIZE) != idxpa) {
232 1.3 mrg /*
233 1.3 mrg * Region not contiguous.
234 1.3 mrg */
235 1.22 drochner panic("pgalloc contig: botch5");
236 1.3 mrg }
237 1.3 mrg if (boundary != 0 &&
238 1.24 drochner ((lastidxpa ^ idxpa) & ~(boundary - 1))
239 1.24 drochner != 0) {
240 1.3 mrg /*
241 1.3 mrg * Region crosses boundary.
242 1.3 mrg */
243 1.24 drochner panic("pgalloc contig: botch6");
244 1.3 mrg }
245 1.3 mrg }
246 1.24 drochner #endif
247 1.3 mrg }
248 1.52 matt
249 1.52 matt if (ok) {
250 1.52 matt while (skip-- > 0) {
251 1.68 cherry KDASSERT(VM_PAGE_IS_FREE(uvm_physseg_get_pg(psi, candidateidx + skip)));
252 1.52 matt }
253 1.52 matt #ifdef PGALLOC_VERBOSE
254 1.52 matt printf(": ok\n");
255 1.52 matt #endif
256 1.3 mrg break;
257 1.52 matt }
258 1.24 drochner
259 1.52 matt #ifdef PGALLOC_VERBOSE
260 1.66 matt printf(": non-free at %#x\n", idx - candidateidx);
261 1.52 matt #endif
262 1.52 matt /*
263 1.52 matt * count the number of pages we can advance
264 1.52 matt * since we know they aren't all free.
265 1.52 matt */
266 1.66 matt cnt = idx + 1 - candidateidx;
267 1.52 matt /*
268 1.52 matt * now round up that to the needed alignment.
269 1.52 matt */
270 1.52 matt cnt = roundup2(cnt, alignment);
271 1.52 matt /*
272 1.52 matt * The number of pages we can skip checking
273 1.52 matt * (might be 0 if cnt > num).
274 1.52 matt */
275 1.71 riastrad skip = uimax(num - cnt, 0);
276 1.66 matt candidate += cnt;
277 1.1 mrg }
278 1.1 mrg
279 1.3 mrg /*
280 1.3 mrg * we have a chunk of memory that conforms to the requested constraints.
281 1.3 mrg */
282 1.68 cherry for (idx = candidateidx; idx < end; idx++)
283 1.68 cherry uvm_pglist_add(uvm_physseg_get_pg(psi, idx), rlist);
284 1.52 matt
285 1.52 matt /*
286 1.52 matt * the next time we need to search this segment, start after this
287 1.52 matt * chunk of pages we just allocated.
288 1.52 matt */
289 1.68 cherry uvm_physseg_set_start_hint(psi, candidate + num -
290 1.68 cherry uvm_physseg_get_avail_start(psi));
291 1.68 cherry KASSERTMSG(uvm_physseg_get_start_hint(psi) <=
292 1.68 cherry uvm_physseg_get_avail_end(psi) - uvm_physseg_get_avail_start(psi),
293 1.62 jym "%x %u (%#x) <= %#"PRIxPADDR" - %#"PRIxPADDR" (%#"PRIxPADDR")",
294 1.66 matt candidate + num,
295 1.68 cherry uvm_physseg_get_start_hint(psi), uvm_physseg_get_start_hint(psi),
296 1.68 cherry uvm_physseg_get_avail_end(psi), uvm_physseg_get_avail_start(psi),
297 1.68 cherry uvm_physseg_get_avail_end(psi) - uvm_physseg_get_avail_start(psi));
298 1.24 drochner
299 1.24 drochner #ifdef PGALLOC_VERBOSE
300 1.24 drochner printf("got %d pgs\n", num);
301 1.24 drochner #endif
302 1.52 matt return num; /* number of pages allocated */
303 1.22 drochner }
304 1.22 drochner
305 1.22 drochner static int
306 1.33 thorpej uvm_pglistalloc_contig(int num, paddr_t low, paddr_t high, paddr_t alignment,
307 1.33 thorpej paddr_t boundary, struct pglist *rlist)
308 1.22 drochner {
309 1.68 cherry int fl;
310 1.38 ad int error;
311 1.22 drochner
312 1.68 cherry uvm_physseg_t psi;
313 1.22 drochner /* Default to "lose". */
314 1.22 drochner error = ENOMEM;
315 1.22 drochner
316 1.22 drochner /*
317 1.22 drochner * Block all memory allocation and lock the free list.
318 1.22 drochner */
319 1.38 ad mutex_spin_enter(&uvm_fpageqlock);
320 1.22 drochner
321 1.22 drochner /* Are there even any free pages? */
322 1.22 drochner if (uvmexp.free <= (uvmexp.reserve_pagedaemon + uvmexp.reserve_kernel))
323 1.22 drochner goto out;
324 1.22 drochner
325 1.22 drochner for (fl = 0; fl < VM_NFREELIST; fl++) {
326 1.22 drochner #if (VM_PHYSSEG_STRAT == VM_PSTRAT_BIGFIRST)
327 1.68 cherry for (psi = uvm_physseg_get_last(); uvm_physseg_valid_p(psi); psi = uvm_physseg_get_prev(psi))
328 1.22 drochner #else
329 1.68 cherry for (psi = uvm_physseg_get_first(); uvm_physseg_valid_p(psi); psi = uvm_physseg_get_next(psi))
330 1.22 drochner #endif
331 1.22 drochner {
332 1.68 cherry if (uvm_physseg_get_free_list(psi) != fl)
333 1.22 drochner continue;
334 1.22 drochner
335 1.68 cherry num -= uvm_pglistalloc_c_ps(psi, num, low, high,
336 1.24 drochner alignment, boundary, rlist);
337 1.24 drochner if (num == 0) {
338 1.24 drochner #ifdef PGALLOC_VERBOSE
339 1.44 reinoud printf("pgalloc: %"PRIxMAX"-%"PRIxMAX"\n",
340 1.44 reinoud (uintmax_t) VM_PAGE_TO_PHYS(TAILQ_FIRST(rlist)),
341 1.44 reinoud (uintmax_t) VM_PAGE_TO_PHYS(TAILQ_LAST(rlist, pglist)));
342 1.22 drochner #endif
343 1.22 drochner error = 0;
344 1.22 drochner goto out;
345 1.22 drochner }
346 1.22 drochner }
347 1.22 drochner }
348 1.20 drochner
349 1.20 drochner out:
350 1.20 drochner /*
351 1.20 drochner * check to see if we need to generate some free pages waking
352 1.20 drochner * the pagedaemon.
353 1.20 drochner */
354 1.20 drochner
355 1.36 yamt uvm_kick_pdaemon();
356 1.38 ad mutex_spin_exit(&uvm_fpageqlock);
357 1.20 drochner return (error);
358 1.20 drochner }
359 1.20 drochner
360 1.24 drochner static int
361 1.68 cherry uvm_pglistalloc_s_ps(uvm_physseg_t psi, int num, paddr_t low, paddr_t high,
362 1.33 thorpej struct pglist *rlist)
363 1.22 drochner {
364 1.66 matt int todo, limit, candidate;
365 1.22 drochner struct vm_page *pg;
366 1.52 matt bool second_pass;
367 1.24 drochner #ifdef PGALLOC_VERBOSE
368 1.68 cherry printf("pgalloc: simple %d pgs from psi %zd\n", num, psi);
369 1.24 drochner #endif
370 1.22 drochner
371 1.39 ad KASSERT(mutex_owned(&uvm_fpageqlock));
372 1.68 cherry KASSERT(uvm_physseg_get_start(psi) <= uvm_physseg_get_avail_start(psi));
373 1.68 cherry KASSERT(uvm_physseg_get_start(psi) <= uvm_physseg_get_avail_end(psi));
374 1.68 cherry KASSERT(uvm_physseg_get_avail_start(psi) <= uvm_physseg_get_end(psi));
375 1.68 cherry KASSERT(uvm_physseg_get_avail_end(psi) <= uvm_physseg_get_end(psi));
376 1.39 ad
377 1.52 matt low = atop(low);
378 1.52 matt high = atop(high);
379 1.24 drochner todo = num;
380 1.71 riastrad candidate = uimax(low, uvm_physseg_get_avail_start(psi) +
381 1.68 cherry uvm_physseg_get_start_hint(psi));
382 1.71 riastrad limit = uimin(high, uvm_physseg_get_avail_end(psi));
383 1.68 cherry pg = uvm_physseg_get_pg(psi, candidate - uvm_physseg_get_start(psi));
384 1.52 matt second_pass = false;
385 1.52 matt
386 1.57 matt /*
387 1.57 matt * Make sure that physseg falls within with range to be allocated from.
388 1.57 matt */
389 1.68 cherry if (high <= uvm_physseg_get_avail_start(psi) ||
390 1.68 cherry low >= uvm_physseg_get_avail_end(psi))
391 1.57 matt return 0;
392 1.57 matt
393 1.60 enami again:
394 1.66 matt for (;; candidate++, pg++) {
395 1.66 matt if (candidate >= limit) {
396 1.68 cherry if (uvm_physseg_get_start_hint(psi) == 0 || second_pass) {
397 1.66 matt candidate = limit - 1;
398 1.52 matt break;
399 1.57 matt }
400 1.52 matt second_pass = true;
401 1.71 riastrad candidate = uimax(low, uvm_physseg_get_avail_start(psi));
402 1.71 riastrad limit = uimin(limit, uvm_physseg_get_avail_start(psi) +
403 1.68 cherry uvm_physseg_get_start_hint(psi));
404 1.68 cherry pg = uvm_physseg_get_pg(psi, candidate - uvm_physseg_get_start(psi));
405 1.60 enami goto again;
406 1.52 matt }
407 1.58 matt #if defined(DEBUG)
408 1.54 matt {
409 1.68 cherry paddr_t cidx = 0;
410 1.68 cherry const uvm_physseg_t bank = uvm_physseg_find(candidate, &cidx);
411 1.68 cherry KDASSERTMSG(bank == psi,
412 1.70 skrll "uvm_physseg_find(%#x) (%"PRIxPHYSSEG ") != psi %"PRIxPHYSSEG,
413 1.68 cherry candidate, bank, psi);
414 1.68 cherry KDASSERTMSG(cidx == candidate - uvm_physseg_get_start(psi),
415 1.68 cherry "uvm_physseg_find(%#x): %#"PRIxPADDR" != off %"PRIxPADDR,
416 1.68 cherry candidate, cidx, candidate - uvm_physseg_get_start(psi));
417 1.54 matt }
418 1.22 drochner #endif
419 1.22 drochner if (VM_PAGE_IS_FREE(pg) == 0)
420 1.22 drochner continue;
421 1.22 drochner
422 1.22 drochner uvm_pglist_add(pg, rlist);
423 1.52 matt if (--todo == 0) {
424 1.22 drochner break;
425 1.52 matt }
426 1.22 drochner }
427 1.24 drochner
428 1.52 matt /*
429 1.52 matt * The next time we need to search this segment,
430 1.52 matt * start just after the pages we just allocated.
431 1.52 matt */
432 1.68 cherry uvm_physseg_set_start_hint(psi, candidate + 1 - uvm_physseg_get_avail_start(psi));
433 1.68 cherry KASSERTMSG(uvm_physseg_get_start_hint(psi) <= uvm_physseg_get_avail_end(psi) -
434 1.68 cherry uvm_physseg_get_avail_start(psi),
435 1.62 jym "%#x %u (%#x) <= %#"PRIxPADDR" - %#"PRIxPADDR" (%#"PRIxPADDR")",
436 1.66 matt candidate + 1,
437 1.68 cherry uvm_physseg_get_start_hint(psi),
438 1.68 cherry uvm_physseg_get_start_hint(psi),
439 1.68 cherry uvm_physseg_get_avail_end(psi),
440 1.68 cherry uvm_physseg_get_avail_start(psi),
441 1.68 cherry uvm_physseg_get_avail_end(psi) - uvm_physseg_get_avail_start(psi));
442 1.52 matt
443 1.24 drochner #ifdef PGALLOC_VERBOSE
444 1.24 drochner printf("got %d pgs\n", num - todo);
445 1.24 drochner #endif
446 1.24 drochner return (num - todo); /* number of pages allocated */
447 1.22 drochner }
448 1.22 drochner
449 1.20 drochner static int
450 1.33 thorpej uvm_pglistalloc_simple(int num, paddr_t low, paddr_t high,
451 1.33 thorpej struct pglist *rlist, int waitok)
452 1.20 drochner {
453 1.68 cherry int fl, error;
454 1.68 cherry uvm_physseg_t psi;
455 1.72 mrg int count = 0;
456 1.20 drochner
457 1.20 drochner /* Default to "lose". */
458 1.20 drochner error = ENOMEM;
459 1.20 drochner
460 1.20 drochner again:
461 1.20 drochner /*
462 1.20 drochner * Block all memory allocation and lock the free list.
463 1.20 drochner */
464 1.38 ad mutex_spin_enter(&uvm_fpageqlock);
465 1.72 mrg count++;
466 1.20 drochner
467 1.20 drochner /* Are there even any free pages? */
468 1.20 drochner if (uvmexp.free <= (uvmexp.reserve_pagedaemon + uvmexp.reserve_kernel))
469 1.20 drochner goto out;
470 1.20 drochner
471 1.22 drochner for (fl = 0; fl < VM_NFREELIST; fl++) {
472 1.22 drochner #if (VM_PHYSSEG_STRAT == VM_PSTRAT_BIGFIRST)
473 1.68 cherry for (psi = uvm_physseg_get_last(); uvm_physseg_valid_p(psi); psi = uvm_physseg_get_prev(psi))
474 1.22 drochner #else
475 1.68 cherry for (psi = uvm_physseg_get_first(); uvm_physseg_valid_p(psi); psi = uvm_physseg_get_next(psi))
476 1.22 drochner #endif
477 1.22 drochner {
478 1.68 cherry if (uvm_physseg_get_free_list(psi) != fl)
479 1.22 drochner continue;
480 1.22 drochner
481 1.68 cherry num -= uvm_pglistalloc_s_ps(psi, num, low, high, rlist);
482 1.24 drochner if (num == 0) {
483 1.22 drochner error = 0;
484 1.22 drochner goto out;
485 1.22 drochner }
486 1.22 drochner }
487 1.20 drochner
488 1.3 mrg }
489 1.1 mrg
490 1.1 mrg out:
491 1.3 mrg /*
492 1.3 mrg * check to see if we need to generate some free pages waking
493 1.3 mrg * the pagedaemon.
494 1.3 mrg */
495 1.15 chs
496 1.36 yamt uvm_kick_pdaemon();
497 1.38 ad mutex_spin_exit(&uvm_fpageqlock);
498 1.38 ad
499 1.20 drochner if (error) {
500 1.20 drochner if (waitok) {
501 1.20 drochner /* XXX perhaps some time limitation? */
502 1.20 drochner #ifdef DEBUG
503 1.72 mrg if (count == 1)
504 1.72 mrg printf("pglistalloc waiting\n");
505 1.20 drochner #endif
506 1.20 drochner uvm_wait("pglalloc");
507 1.20 drochner goto again;
508 1.20 drochner } else
509 1.20 drochner uvm_pglistfree(rlist);
510 1.20 drochner }
511 1.24 drochner #ifdef PGALLOC_VERBOSE
512 1.22 drochner if (!error)
513 1.44 reinoud printf("pgalloc: %"PRIxMAX"..%"PRIxMAX"\n",
514 1.44 reinoud (uintmax_t) VM_PAGE_TO_PHYS(TAILQ_FIRST(rlist)),
515 1.44 reinoud (uintmax_t) VM_PAGE_TO_PHYS(TAILQ_LAST(rlist, pglist)));
516 1.22 drochner #endif
517 1.3 mrg return (error);
518 1.20 drochner }
519 1.20 drochner
520 1.20 drochner int
521 1.33 thorpej uvm_pglistalloc(psize_t size, paddr_t low, paddr_t high, paddr_t alignment,
522 1.33 thorpej paddr_t boundary, struct pglist *rlist, int nsegs, int waitok)
523 1.20 drochner {
524 1.24 drochner int num, res;
525 1.20 drochner
526 1.20 drochner KASSERT((alignment & (alignment - 1)) == 0);
527 1.20 drochner KASSERT((boundary & (boundary - 1)) == 0);
528 1.20 drochner
529 1.20 drochner /*
530 1.20 drochner * Our allocations are always page granularity, so our alignment
531 1.20 drochner * must be, too.
532 1.20 drochner */
533 1.20 drochner if (alignment < PAGE_SIZE)
534 1.20 drochner alignment = PAGE_SIZE;
535 1.24 drochner if (boundary != 0 && boundary < size)
536 1.24 drochner return (EINVAL);
537 1.24 drochner num = atop(round_page(size));
538 1.52 matt low = roundup2(low, alignment);
539 1.21 drochner
540 1.21 drochner TAILQ_INIT(rlist);
541 1.20 drochner
542 1.23 enami if ((nsegs < size >> PAGE_SHIFT) || (alignment != PAGE_SIZE) ||
543 1.23 enami (boundary != 0))
544 1.24 drochner res = uvm_pglistalloc_contig(num, low, high, alignment,
545 1.24 drochner boundary, rlist);
546 1.20 drochner else
547 1.24 drochner res = uvm_pglistalloc_simple(num, low, high, rlist, waitok);
548 1.20 drochner
549 1.20 drochner return (res);
550 1.1 mrg }
551 1.1 mrg
552 1.1 mrg /*
553 1.1 mrg * uvm_pglistfree: free a list of pages
554 1.1 mrg *
555 1.1 mrg * => pages should already be unmapped
556 1.1 mrg */
557 1.1 mrg
558 1.3 mrg void
559 1.33 thorpej uvm_pglistfree(struct pglist *list)
560 1.1 mrg {
561 1.42 ad struct uvm_cpu *ucpu;
562 1.18 chs struct vm_page *pg;
563 1.42 ad int index, color, queue;
564 1.42 ad bool iszero;
565 1.1 mrg
566 1.3 mrg /*
567 1.18 chs * Lock the free list and free each page.
568 1.3 mrg */
569 1.18 chs
570 1.38 ad mutex_spin_enter(&uvm_fpageqlock);
571 1.42 ad ucpu = curcpu()->ci_data.cpu_uvm;
572 1.18 chs while ((pg = TAILQ_FIRST(list)) != NULL) {
573 1.36 yamt KASSERT(!uvmpdpol_pageisqueued_p(pg));
574 1.42 ad TAILQ_REMOVE(list, pg, pageq.queue);
575 1.29 yamt iszero = (pg->flags & PG_ZERO);
576 1.73 ad pg->flags = (pg->flags & PG_ZERO) | PG_FREE;
577 1.29 yamt #ifdef DEBUG
578 1.29 yamt pg->uobject = (void *)0xdeadbeef;
579 1.29 yamt pg->uanon = (void *)0xdeadbeef;
580 1.30 yamt #endif /* DEBUG */
581 1.30 yamt #ifdef DEBUG
582 1.30 yamt if (iszero)
583 1.30 yamt uvm_pagezerocheck(pg);
584 1.30 yamt #endif /* DEBUG */
585 1.42 ad index = uvm_page_lookup_freelist(pg);
586 1.42 ad color = VM_PGCOLOR_BUCKET(pg);
587 1.42 ad queue = iszero ? PGFL_ZEROS : PGFL_UNKNOWN;
588 1.42 ad pg->offset = (uintptr_t)ucpu;
589 1.42 ad LIST_INSERT_HEAD(&uvm.page_free[index].pgfl_buckets[color].
590 1.42 ad pgfl_queues[queue], pg, pageq.list);
591 1.42 ad LIST_INSERT_HEAD(&ucpu->page_free[index].pgfl_buckets[color].
592 1.42 ad pgfl_queues[queue], pg, listq.list);
593 1.3 mrg uvmexp.free++;
594 1.29 yamt if (iszero)
595 1.29 yamt uvmexp.zeropages++;
596 1.42 ad ucpu->pages[queue]++;
597 1.3 mrg STAT_DECR(uvm_pglistalloc_npages);
598 1.3 mrg }
599 1.42 ad if (ucpu->pages[PGFL_ZEROS] < ucpu->pages[PGFL_UNKNOWN])
600 1.42 ad ucpu->page_idle_zero = vm_page_zero_enable;
601 1.38 ad mutex_spin_exit(&uvm_fpageqlock);
602 1.1 mrg }
603