uvm_pdpolicy_clockpro.c revision 1.19 1 1.19 ad /* $NetBSD: uvm_pdpolicy_clockpro.c,v 1.19 2019/12/27 13:13:17 ad Exp $ */
2 1.2 yamt
3 1.2 yamt /*-
4 1.2 yamt * Copyright (c)2005, 2006 YAMAMOTO Takashi,
5 1.2 yamt * All rights reserved.
6 1.2 yamt *
7 1.2 yamt * Redistribution and use in source and binary forms, with or without
8 1.2 yamt * modification, are permitted provided that the following conditions
9 1.2 yamt * are met:
10 1.2 yamt * 1. Redistributions of source code must retain the above copyright
11 1.2 yamt * notice, this list of conditions and the following disclaimer.
12 1.2 yamt * 2. Redistributions in binary form must reproduce the above copyright
13 1.2 yamt * notice, this list of conditions and the following disclaimer in the
14 1.2 yamt * documentation and/or other materials provided with the distribution.
15 1.2 yamt *
16 1.2 yamt * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
17 1.2 yamt * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18 1.2 yamt * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19 1.2 yamt * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
20 1.2 yamt * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
21 1.2 yamt * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
22 1.2 yamt * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
23 1.2 yamt * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
24 1.2 yamt * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25 1.2 yamt * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26 1.2 yamt * SUCH DAMAGE.
27 1.2 yamt */
28 1.2 yamt
29 1.2 yamt /*
30 1.2 yamt * CLOCK-Pro replacement policy:
31 1.2 yamt * http://www.cs.wm.edu/hpcs/WWW/HTML/publications/abs05-3.html
32 1.2 yamt *
33 1.2 yamt * approximation of the list of non-resident pages using hash:
34 1.2 yamt * http://linux-mm.org/ClockProApproximation
35 1.2 yamt */
36 1.2 yamt
37 1.2 yamt /* #define CLOCKPRO_DEBUG */
38 1.2 yamt
39 1.2 yamt #if defined(PDSIM)
40 1.2 yamt
41 1.2 yamt #include "pdsim.h"
42 1.2 yamt
43 1.2 yamt #else /* defined(PDSIM) */
44 1.2 yamt
45 1.2 yamt #include <sys/cdefs.h>
46 1.19 ad __KERNEL_RCSID(0, "$NetBSD: uvm_pdpolicy_clockpro.c,v 1.19 2019/12/27 13:13:17 ad Exp $");
47 1.2 yamt
48 1.2 yamt #include "opt_ddb.h"
49 1.2 yamt
50 1.2 yamt #include <sys/param.h>
51 1.2 yamt #include <sys/proc.h>
52 1.2 yamt #include <sys/systm.h>
53 1.2 yamt #include <sys/kernel.h>
54 1.2 yamt #include <sys/hash.h>
55 1.2 yamt
56 1.2 yamt #include <uvm/uvm.h>
57 1.17 yamt #include <uvm/uvm_pdaemon.h> /* for uvmpd_trylockowner */
58 1.2 yamt #include <uvm/uvm_pdpolicy.h>
59 1.2 yamt #include <uvm/uvm_pdpolicy_impl.h>
60 1.2 yamt
61 1.2 yamt #if ((__STDC_VERSION__ - 0) >= 199901L)
62 1.2 yamt #define DPRINTF(...) /* nothing */
63 1.2 yamt #define WARN(...) printf(__VA_ARGS__)
64 1.2 yamt #else /* ((__STDC_VERSION__ - 0) >= 199901L) */
65 1.2 yamt #define DPRINTF(a...) /* nothing */ /* GCC */
66 1.2 yamt #define WARN(a...) printf(a)
67 1.2 yamt #endif /* ((__STDC_VERSION__ - 0) >= 199901L) */
68 1.2 yamt
69 1.2 yamt #define dump(a) /* nothing */
70 1.2 yamt
71 1.2 yamt #undef USEONCE2
72 1.2 yamt #define LISTQ
73 1.2 yamt #undef ADAPTIVE
74 1.2 yamt
75 1.2 yamt #endif /* defined(PDSIM) */
76 1.2 yamt
77 1.2 yamt #if !defined(CLOCKPRO_COLDPCT)
78 1.2 yamt #define CLOCKPRO_COLDPCT 10
79 1.2 yamt #endif /* !defined(CLOCKPRO_COLDPCT) */
80 1.2 yamt
81 1.2 yamt #define CLOCKPRO_COLDPCTMAX 90
82 1.2 yamt
83 1.2 yamt #if !defined(CLOCKPRO_HASHFACTOR)
84 1.2 yamt #define CLOCKPRO_HASHFACTOR 2
85 1.2 yamt #endif /* !defined(CLOCKPRO_HASHFACTOR) */
86 1.2 yamt
87 1.2 yamt #define CLOCKPRO_NEWQMIN ((1024 * 1024) >> PAGE_SHIFT) /* XXX */
88 1.2 yamt
89 1.2 yamt int clockpro_hashfactor = CLOCKPRO_HASHFACTOR;
90 1.2 yamt
91 1.2 yamt PDPOL_EVCNT_DEFINE(nresrecordobj)
92 1.2 yamt PDPOL_EVCNT_DEFINE(nresrecordanon)
93 1.9 yamt PDPOL_EVCNT_DEFINE(nreslookupobj)
94 1.9 yamt PDPOL_EVCNT_DEFINE(nreslookupanon)
95 1.2 yamt PDPOL_EVCNT_DEFINE(nresfoundobj)
96 1.2 yamt PDPOL_EVCNT_DEFINE(nresfoundanon)
97 1.2 yamt PDPOL_EVCNT_DEFINE(nresanonfree)
98 1.2 yamt PDPOL_EVCNT_DEFINE(nresconflict)
99 1.2 yamt PDPOL_EVCNT_DEFINE(nresoverwritten)
100 1.2 yamt PDPOL_EVCNT_DEFINE(nreshandhot)
101 1.2 yamt
102 1.2 yamt PDPOL_EVCNT_DEFINE(hhottakeover)
103 1.2 yamt PDPOL_EVCNT_DEFINE(hhotref)
104 1.2 yamt PDPOL_EVCNT_DEFINE(hhotunref)
105 1.2 yamt PDPOL_EVCNT_DEFINE(hhotcold)
106 1.2 yamt PDPOL_EVCNT_DEFINE(hhotcoldtest)
107 1.2 yamt
108 1.2 yamt PDPOL_EVCNT_DEFINE(hcoldtakeover)
109 1.2 yamt PDPOL_EVCNT_DEFINE(hcoldref)
110 1.2 yamt PDPOL_EVCNT_DEFINE(hcoldunref)
111 1.2 yamt PDPOL_EVCNT_DEFINE(hcoldreftest)
112 1.2 yamt PDPOL_EVCNT_DEFINE(hcoldunreftest)
113 1.2 yamt PDPOL_EVCNT_DEFINE(hcoldunreftestspeculative)
114 1.2 yamt PDPOL_EVCNT_DEFINE(hcoldhot)
115 1.2 yamt
116 1.2 yamt PDPOL_EVCNT_DEFINE(speculativeenqueue)
117 1.2 yamt PDPOL_EVCNT_DEFINE(speculativehit1)
118 1.2 yamt PDPOL_EVCNT_DEFINE(speculativehit2)
119 1.2 yamt PDPOL_EVCNT_DEFINE(speculativemiss)
120 1.2 yamt
121 1.17 yamt PDPOL_EVCNT_DEFINE(locksuccess)
122 1.17 yamt PDPOL_EVCNT_DEFINE(lockfail)
123 1.17 yamt
124 1.18 ad #define PQ_REFERENCED 0x000000001
125 1.18 ad #define PQ_HOT 0x000000002
126 1.18 ad #define PQ_TEST 0x000000004
127 1.18 ad #define PQ_INITIALREF 0x000000008
128 1.18 ad #define PQ_QMASK 0x000000070
129 1.18 ad #define PQ_QFACTOR 0x000000010
130 1.18 ad #define PQ_SPECULATIVE 0x000000080
131 1.2 yamt
132 1.2 yamt #define CLOCKPRO_NOQUEUE 0
133 1.2 yamt #define CLOCKPRO_NEWQ 1 /* small queue to clear initial ref. */
134 1.2 yamt #if defined(LISTQ)
135 1.2 yamt #define CLOCKPRO_COLDQ 2
136 1.2 yamt #define CLOCKPRO_HOTQ 3
137 1.2 yamt #else /* defined(LISTQ) */
138 1.2 yamt #define CLOCKPRO_COLDQ (2 + coldqidx) /* XXX */
139 1.2 yamt #define CLOCKPRO_HOTQ (3 - coldqidx) /* XXX */
140 1.2 yamt #endif /* defined(LISTQ) */
141 1.2 yamt #define CLOCKPRO_LISTQ 4
142 1.2 yamt #define CLOCKPRO_NQUEUE 4
143 1.2 yamt
144 1.2 yamt static inline void
145 1.2 yamt clockpro_setq(struct vm_page *pg, int qidx)
146 1.2 yamt {
147 1.2 yamt KASSERT(qidx >= CLOCKPRO_NOQUEUE);
148 1.2 yamt KASSERT(qidx <= CLOCKPRO_NQUEUE);
149 1.2 yamt
150 1.2 yamt pg->pqflags = (pg->pqflags & ~PQ_QMASK) | (qidx * PQ_QFACTOR);
151 1.2 yamt }
152 1.2 yamt
153 1.2 yamt static inline int
154 1.2 yamt clockpro_getq(struct vm_page *pg)
155 1.2 yamt {
156 1.2 yamt int qidx;
157 1.2 yamt
158 1.2 yamt qidx = (pg->pqflags & PQ_QMASK) / PQ_QFACTOR;
159 1.2 yamt KASSERT(qidx >= CLOCKPRO_NOQUEUE);
160 1.2 yamt KASSERT(qidx <= CLOCKPRO_NQUEUE);
161 1.2 yamt return qidx;
162 1.2 yamt }
163 1.2 yamt
164 1.2 yamt typedef struct {
165 1.2 yamt struct pglist q_q;
166 1.2 yamt int q_len;
167 1.2 yamt } pageq_t;
168 1.2 yamt
169 1.2 yamt struct clockpro_state {
170 1.18 ad kmutex_t lock;
171 1.2 yamt int s_npages;
172 1.2 yamt int s_coldtarget;
173 1.2 yamt int s_ncold;
174 1.2 yamt
175 1.2 yamt int s_newqlenmax;
176 1.2 yamt pageq_t s_q[CLOCKPRO_NQUEUE];
177 1.2 yamt
178 1.2 yamt struct uvm_pctparam s_coldtargetpct;
179 1.2 yamt };
180 1.2 yamt
181 1.2 yamt static pageq_t *
182 1.2 yamt clockpro_queue(struct clockpro_state *s, int qidx)
183 1.2 yamt {
184 1.2 yamt
185 1.2 yamt KASSERT(CLOCKPRO_NOQUEUE < qidx);
186 1.2 yamt KASSERT(qidx <= CLOCKPRO_NQUEUE);
187 1.2 yamt
188 1.2 yamt return &s->s_q[qidx - 1];
189 1.2 yamt }
190 1.2 yamt
191 1.2 yamt #if !defined(LISTQ)
192 1.2 yamt
193 1.2 yamt static int coldqidx;
194 1.2 yamt
195 1.2 yamt static void
196 1.2 yamt clockpro_switchqueue(void)
197 1.2 yamt {
198 1.2 yamt
199 1.2 yamt coldqidx = 1 - coldqidx;
200 1.2 yamt }
201 1.2 yamt
202 1.2 yamt #endif /* !defined(LISTQ) */
203 1.2 yamt
204 1.18 ad static struct clockpro_state clockpro __cacheline_aligned;
205 1.2 yamt static struct clockpro_scanstate {
206 1.2 yamt int ss_nscanned;
207 1.2 yamt } scanstate;
208 1.2 yamt
209 1.2 yamt /* ---------------------------------------- */
210 1.2 yamt
211 1.2 yamt static void
212 1.2 yamt pageq_init(pageq_t *q)
213 1.2 yamt {
214 1.2 yamt
215 1.2 yamt TAILQ_INIT(&q->q_q);
216 1.2 yamt q->q_len = 0;
217 1.2 yamt }
218 1.2 yamt
219 1.2 yamt static int
220 1.2 yamt pageq_len(const pageq_t *q)
221 1.2 yamt {
222 1.2 yamt
223 1.2 yamt return q->q_len;
224 1.2 yamt }
225 1.2 yamt
226 1.2 yamt static struct vm_page *
227 1.2 yamt pageq_first(const pageq_t *q)
228 1.2 yamt {
229 1.2 yamt
230 1.2 yamt return TAILQ_FIRST(&q->q_q);
231 1.2 yamt }
232 1.2 yamt
233 1.2 yamt static void
234 1.2 yamt pageq_insert_tail(pageq_t *q, struct vm_page *pg)
235 1.2 yamt {
236 1.2 yamt
237 1.19 ad TAILQ_INSERT_TAIL(&q->q_q, pg, pdqueue);
238 1.2 yamt q->q_len++;
239 1.2 yamt }
240 1.2 yamt
241 1.14 bjs #if defined(LISTQ)
242 1.2 yamt static void
243 1.2 yamt pageq_insert_head(pageq_t *q, struct vm_page *pg)
244 1.2 yamt {
245 1.2 yamt
246 1.19 ad TAILQ_INSERT_HEAD(&q->q_q, pg, pdqueue);
247 1.2 yamt q->q_len++;
248 1.2 yamt }
249 1.14 bjs #endif
250 1.2 yamt
251 1.2 yamt static void
252 1.2 yamt pageq_remove(pageq_t *q, struct vm_page *pg)
253 1.2 yamt {
254 1.2 yamt
255 1.2 yamt #if 1
256 1.2 yamt KASSERT(clockpro_queue(&clockpro, clockpro_getq(pg)) == q);
257 1.2 yamt #endif
258 1.2 yamt KASSERT(q->q_len > 0);
259 1.19 ad TAILQ_REMOVE(&q->q_q, pg, pdqueue);
260 1.2 yamt q->q_len--;
261 1.2 yamt }
262 1.2 yamt
263 1.2 yamt static struct vm_page *
264 1.2 yamt pageq_remove_head(pageq_t *q)
265 1.2 yamt {
266 1.2 yamt struct vm_page *pg;
267 1.2 yamt
268 1.2 yamt pg = TAILQ_FIRST(&q->q_q);
269 1.2 yamt if (pg == NULL) {
270 1.2 yamt KASSERT(q->q_len == 0);
271 1.2 yamt return NULL;
272 1.2 yamt }
273 1.2 yamt pageq_remove(q, pg);
274 1.2 yamt return pg;
275 1.2 yamt }
276 1.2 yamt
277 1.2 yamt /* ---------------------------------------- */
278 1.2 yamt
279 1.2 yamt static void
280 1.2 yamt clockpro_insert_tail(struct clockpro_state *s, int qidx, struct vm_page *pg)
281 1.2 yamt {
282 1.2 yamt pageq_t *q = clockpro_queue(s, qidx);
283 1.2 yamt
284 1.2 yamt clockpro_setq(pg, qidx);
285 1.2 yamt pageq_insert_tail(q, pg);
286 1.2 yamt }
287 1.2 yamt
288 1.14 bjs #if defined(LISTQ)
289 1.5 christos static void
290 1.2 yamt clockpro_insert_head(struct clockpro_state *s, int qidx, struct vm_page *pg)
291 1.2 yamt {
292 1.2 yamt pageq_t *q = clockpro_queue(s, qidx);
293 1.2 yamt
294 1.2 yamt clockpro_setq(pg, qidx);
295 1.2 yamt pageq_insert_head(q, pg);
296 1.2 yamt }
297 1.2 yamt
298 1.14 bjs #endif
299 1.2 yamt /* ---------------------------------------- */
300 1.2 yamt
301 1.2 yamt typedef uint32_t nonres_cookie_t;
302 1.2 yamt #define NONRES_COOKIE_INVAL 0
303 1.2 yamt
304 1.2 yamt typedef uintptr_t objid_t;
305 1.2 yamt
306 1.2 yamt /*
307 1.2 yamt * XXX maybe these hash functions need reconsideration,
308 1.2 yamt * given that hash distribution is critical here.
309 1.2 yamt */
310 1.2 yamt
311 1.2 yamt static uint32_t
312 1.2 yamt pageidentityhash1(objid_t obj, off_t idx)
313 1.2 yamt {
314 1.2 yamt uint32_t hash = HASH32_BUF_INIT;
315 1.2 yamt
316 1.2 yamt #if 1
317 1.2 yamt hash = hash32_buf(&idx, sizeof(idx), hash);
318 1.2 yamt hash = hash32_buf(&obj, sizeof(obj), hash);
319 1.2 yamt #else
320 1.2 yamt hash = hash32_buf(&obj, sizeof(obj), hash);
321 1.2 yamt hash = hash32_buf(&idx, sizeof(idx), hash);
322 1.2 yamt #endif
323 1.2 yamt return hash;
324 1.2 yamt }
325 1.2 yamt
326 1.2 yamt static uint32_t
327 1.2 yamt pageidentityhash2(objid_t obj, off_t idx)
328 1.2 yamt {
329 1.2 yamt uint32_t hash = HASH32_BUF_INIT;
330 1.2 yamt
331 1.2 yamt hash = hash32_buf(&obj, sizeof(obj), hash);
332 1.2 yamt hash = hash32_buf(&idx, sizeof(idx), hash);
333 1.2 yamt return hash;
334 1.2 yamt }
335 1.2 yamt
336 1.2 yamt static nonres_cookie_t
337 1.2 yamt calccookie(objid_t obj, off_t idx)
338 1.2 yamt {
339 1.2 yamt uint32_t hash = pageidentityhash2(obj, idx);
340 1.2 yamt nonres_cookie_t cookie = hash;
341 1.2 yamt
342 1.2 yamt if (__predict_false(cookie == NONRES_COOKIE_INVAL)) {
343 1.2 yamt cookie++; /* XXX */
344 1.2 yamt }
345 1.2 yamt return cookie;
346 1.2 yamt }
347 1.2 yamt
348 1.2 yamt #define BUCKETSIZE 14
349 1.2 yamt struct bucket {
350 1.2 yamt int cycle;
351 1.2 yamt int cur;
352 1.2 yamt nonres_cookie_t pages[BUCKETSIZE];
353 1.2 yamt };
354 1.2 yamt static int cycle_target;
355 1.2 yamt static int cycle_target_frac;
356 1.2 yamt
357 1.2 yamt static struct bucket static_bucket;
358 1.2 yamt static struct bucket *buckets = &static_bucket;
359 1.2 yamt static size_t hashsize = 1;
360 1.2 yamt
361 1.2 yamt static int coldadj;
362 1.2 yamt #define COLDTARGET_ADJ(d) coldadj += (d)
363 1.2 yamt
364 1.2 yamt #if defined(PDSIM)
365 1.2 yamt
366 1.2 yamt static void *
367 1.2 yamt clockpro_hashalloc(int n)
368 1.2 yamt {
369 1.2 yamt size_t allocsz = sizeof(*buckets) * n;
370 1.2 yamt
371 1.2 yamt return malloc(allocsz);
372 1.2 yamt }
373 1.2 yamt
374 1.2 yamt static void
375 1.2 yamt clockpro_hashfree(void *p, int n)
376 1.2 yamt {
377 1.2 yamt
378 1.2 yamt free(p);
379 1.2 yamt }
380 1.2 yamt
381 1.2 yamt #else /* defined(PDSIM) */
382 1.2 yamt
383 1.2 yamt static void *
384 1.2 yamt clockpro_hashalloc(int n)
385 1.2 yamt {
386 1.2 yamt size_t allocsz = round_page(sizeof(*buckets) * n);
387 1.2 yamt
388 1.2 yamt return (void *)uvm_km_alloc(kernel_map, allocsz, 0, UVM_KMF_WIRED);
389 1.2 yamt }
390 1.2 yamt
391 1.2 yamt static void
392 1.2 yamt clockpro_hashfree(void *p, int n)
393 1.2 yamt {
394 1.2 yamt size_t allocsz = round_page(sizeof(*buckets) * n);
395 1.2 yamt
396 1.2 yamt uvm_km_free(kernel_map, (vaddr_t)p, allocsz, UVM_KMF_WIRED);
397 1.2 yamt }
398 1.2 yamt
399 1.2 yamt #endif /* defined(PDSIM) */
400 1.2 yamt
401 1.2 yamt static void
402 1.2 yamt clockpro_hashinit(uint64_t n)
403 1.2 yamt {
404 1.2 yamt struct bucket *newbuckets;
405 1.2 yamt struct bucket *oldbuckets;
406 1.2 yamt size_t sz;
407 1.2 yamt size_t oldsz;
408 1.2 yamt int i;
409 1.2 yamt
410 1.2 yamt sz = howmany(n, BUCKETSIZE);
411 1.2 yamt sz *= clockpro_hashfactor;
412 1.2 yamt newbuckets = clockpro_hashalloc(sz);
413 1.2 yamt if (newbuckets == NULL) {
414 1.2 yamt panic("%s: allocation failure", __func__);
415 1.2 yamt }
416 1.2 yamt for (i = 0; i < sz; i++) {
417 1.2 yamt struct bucket *b = &newbuckets[i];
418 1.2 yamt int j;
419 1.2 yamt
420 1.2 yamt b->cycle = cycle_target;
421 1.2 yamt b->cur = 0;
422 1.2 yamt for (j = 0; j < BUCKETSIZE; j++) {
423 1.2 yamt b->pages[j] = NONRES_COOKIE_INVAL;
424 1.2 yamt }
425 1.2 yamt }
426 1.2 yamt /* XXX lock */
427 1.2 yamt oldbuckets = buckets;
428 1.2 yamt oldsz = hashsize;
429 1.2 yamt buckets = newbuckets;
430 1.2 yamt hashsize = sz;
431 1.2 yamt /* XXX unlock */
432 1.2 yamt if (oldbuckets != &static_bucket) {
433 1.2 yamt clockpro_hashfree(oldbuckets, oldsz);
434 1.2 yamt }
435 1.2 yamt }
436 1.2 yamt
437 1.2 yamt static struct bucket *
438 1.2 yamt nonresident_getbucket(objid_t obj, off_t idx)
439 1.2 yamt {
440 1.2 yamt uint32_t hash;
441 1.2 yamt
442 1.2 yamt hash = pageidentityhash1(obj, idx);
443 1.2 yamt return &buckets[hash % hashsize];
444 1.2 yamt }
445 1.2 yamt
446 1.2 yamt static void
447 1.2 yamt nonresident_rotate(struct bucket *b)
448 1.2 yamt {
449 1.13 yamt const int target = cycle_target;
450 1.13 yamt const int cycle = b->cycle;
451 1.11 yamt int cur;
452 1.13 yamt int todo;
453 1.2 yamt
454 1.13 yamt todo = target - cycle;
455 1.13 yamt if (todo >= BUCKETSIZE * 2) {
456 1.13 yamt todo = (todo % BUCKETSIZE) + BUCKETSIZE;
457 1.13 yamt }
458 1.11 yamt cur = b->cur;
459 1.13 yamt while (todo > 0) {
460 1.11 yamt if (b->pages[cur] != NONRES_COOKIE_INVAL) {
461 1.2 yamt PDPOL_EVCNT_INCR(nreshandhot);
462 1.2 yamt COLDTARGET_ADJ(-1);
463 1.2 yamt }
464 1.11 yamt b->pages[cur] = NONRES_COOKIE_INVAL;
465 1.11 yamt cur++;
466 1.11 yamt if (cur == BUCKETSIZE) {
467 1.11 yamt cur = 0;
468 1.11 yamt }
469 1.13 yamt todo--;
470 1.2 yamt }
471 1.13 yamt b->cycle = target;
472 1.11 yamt b->cur = cur;
473 1.2 yamt }
474 1.2 yamt
475 1.7 thorpej static bool
476 1.2 yamt nonresident_lookupremove(objid_t obj, off_t idx)
477 1.2 yamt {
478 1.2 yamt struct bucket *b = nonresident_getbucket(obj, idx);
479 1.2 yamt nonres_cookie_t cookie = calccookie(obj, idx);
480 1.2 yamt int i;
481 1.2 yamt
482 1.2 yamt nonresident_rotate(b);
483 1.2 yamt for (i = 0; i < BUCKETSIZE; i++) {
484 1.2 yamt if (b->pages[i] == cookie) {
485 1.2 yamt b->pages[i] = NONRES_COOKIE_INVAL;
486 1.8 thorpej return true;
487 1.2 yamt }
488 1.2 yamt }
489 1.8 thorpej return false;
490 1.2 yamt }
491 1.2 yamt
492 1.2 yamt static objid_t
493 1.2 yamt pageobj(struct vm_page *pg)
494 1.2 yamt {
495 1.2 yamt const void *obj;
496 1.2 yamt
497 1.2 yamt /*
498 1.2 yamt * XXX object pointer is often freed and reused for unrelated object.
499 1.2 yamt * for vnodes, it would be better to use something like
500 1.2 yamt * a hash of fsid/fileid/generation.
501 1.2 yamt */
502 1.2 yamt
503 1.2 yamt obj = pg->uobject;
504 1.2 yamt if (obj == NULL) {
505 1.2 yamt obj = pg->uanon;
506 1.2 yamt KASSERT(obj != NULL);
507 1.2 yamt }
508 1.2 yamt return (objid_t)obj;
509 1.2 yamt }
510 1.2 yamt
511 1.2 yamt static off_t
512 1.2 yamt pageidx(struct vm_page *pg)
513 1.2 yamt {
514 1.2 yamt
515 1.2 yamt KASSERT((pg->offset & PAGE_MASK) == 0);
516 1.2 yamt return pg->offset >> PAGE_SHIFT;
517 1.2 yamt }
518 1.2 yamt
519 1.7 thorpej static bool
520 1.2 yamt nonresident_pagelookupremove(struct vm_page *pg)
521 1.2 yamt {
522 1.7 thorpej bool found = nonresident_lookupremove(pageobj(pg), pageidx(pg));
523 1.2 yamt
524 1.9 yamt if (pg->uobject) {
525 1.9 yamt PDPOL_EVCNT_INCR(nreslookupobj);
526 1.9 yamt } else {
527 1.9 yamt PDPOL_EVCNT_INCR(nreslookupanon);
528 1.9 yamt }
529 1.2 yamt if (found) {
530 1.2 yamt if (pg->uobject) {
531 1.2 yamt PDPOL_EVCNT_INCR(nresfoundobj);
532 1.2 yamt } else {
533 1.2 yamt PDPOL_EVCNT_INCR(nresfoundanon);
534 1.2 yamt }
535 1.2 yamt }
536 1.2 yamt return found;
537 1.2 yamt }
538 1.2 yamt
539 1.2 yamt static void
540 1.2 yamt nonresident_pagerecord(struct vm_page *pg)
541 1.2 yamt {
542 1.2 yamt objid_t obj = pageobj(pg);
543 1.2 yamt off_t idx = pageidx(pg);
544 1.2 yamt struct bucket *b = nonresident_getbucket(obj, idx);
545 1.2 yamt nonres_cookie_t cookie = calccookie(obj, idx);
546 1.2 yamt
547 1.2 yamt #if defined(DEBUG)
548 1.2 yamt int i;
549 1.2 yamt
550 1.2 yamt for (i = 0; i < BUCKETSIZE; i++) {
551 1.2 yamt if (b->pages[i] == cookie) {
552 1.2 yamt PDPOL_EVCNT_INCR(nresconflict);
553 1.2 yamt }
554 1.2 yamt }
555 1.2 yamt #endif /* defined(DEBUG) */
556 1.2 yamt
557 1.2 yamt if (pg->uobject) {
558 1.2 yamt PDPOL_EVCNT_INCR(nresrecordobj);
559 1.2 yamt } else {
560 1.2 yamt PDPOL_EVCNT_INCR(nresrecordanon);
561 1.2 yamt }
562 1.2 yamt nonresident_rotate(b);
563 1.2 yamt if (b->pages[b->cur] != NONRES_COOKIE_INVAL) {
564 1.2 yamt PDPOL_EVCNT_INCR(nresoverwritten);
565 1.2 yamt COLDTARGET_ADJ(-1);
566 1.2 yamt }
567 1.2 yamt b->pages[b->cur] = cookie;
568 1.2 yamt b->cur = (b->cur + 1) % BUCKETSIZE;
569 1.2 yamt }
570 1.2 yamt
571 1.2 yamt /* ---------------------------------------- */
572 1.2 yamt
573 1.2 yamt #if defined(CLOCKPRO_DEBUG)
574 1.2 yamt static void
575 1.2 yamt check_sanity(void)
576 1.2 yamt {
577 1.2 yamt }
578 1.2 yamt #else /* defined(CLOCKPRO_DEBUG) */
579 1.2 yamt #define check_sanity() /* nothing */
580 1.2 yamt #endif /* defined(CLOCKPRO_DEBUG) */
581 1.2 yamt
582 1.2 yamt static void
583 1.2 yamt clockpro_reinit(void)
584 1.2 yamt {
585 1.2 yamt
586 1.18 ad KASSERT(mutex_owned(&clockpro.lock));
587 1.18 ad
588 1.2 yamt clockpro_hashinit(uvmexp.npages);
589 1.2 yamt }
590 1.2 yamt
591 1.2 yamt static void
592 1.2 yamt clockpro_init(void)
593 1.2 yamt {
594 1.2 yamt struct clockpro_state *s = &clockpro;
595 1.2 yamt int i;
596 1.2 yamt
597 1.18 ad mutex_init(&s->lock, MUTEX_DEFAULT, IPL_NONE);
598 1.2 yamt for (i = 0; i < CLOCKPRO_NQUEUE; i++) {
599 1.2 yamt pageq_init(&s->s_q[i]);
600 1.2 yamt }
601 1.2 yamt s->s_newqlenmax = 1;
602 1.2 yamt s->s_coldtarget = 1;
603 1.2 yamt uvm_pctparam_init(&s->s_coldtargetpct, CLOCKPRO_COLDPCT, NULL);
604 1.2 yamt }
605 1.2 yamt
606 1.2 yamt static void
607 1.2 yamt clockpro_tune(void)
608 1.2 yamt {
609 1.2 yamt struct clockpro_state *s = &clockpro;
610 1.2 yamt int coldtarget;
611 1.2 yamt
612 1.18 ad KASSERT(mutex_owned(&s->lock));
613 1.18 ad
614 1.2 yamt #if defined(ADAPTIVE)
615 1.2 yamt int coldmax = s->s_npages * CLOCKPRO_COLDPCTMAX / 100;
616 1.2 yamt int coldmin = 1;
617 1.2 yamt
618 1.2 yamt coldtarget = s->s_coldtarget;
619 1.2 yamt if (coldtarget + coldadj < coldmin) {
620 1.2 yamt coldadj = coldmin - coldtarget;
621 1.2 yamt } else if (coldtarget + coldadj > coldmax) {
622 1.2 yamt coldadj = coldmax - coldtarget;
623 1.2 yamt }
624 1.2 yamt coldtarget += coldadj;
625 1.2 yamt #else /* defined(ADAPTIVE) */
626 1.2 yamt coldtarget = UVM_PCTPARAM_APPLY(&s->s_coldtargetpct, s->s_npages);
627 1.2 yamt if (coldtarget < 1) {
628 1.2 yamt coldtarget = 1;
629 1.2 yamt }
630 1.2 yamt #endif /* defined(ADAPTIVE) */
631 1.2 yamt
632 1.2 yamt s->s_coldtarget = coldtarget;
633 1.2 yamt s->s_newqlenmax = coldtarget / 4;
634 1.2 yamt if (s->s_newqlenmax < CLOCKPRO_NEWQMIN) {
635 1.2 yamt s->s_newqlenmax = CLOCKPRO_NEWQMIN;
636 1.2 yamt }
637 1.2 yamt }
638 1.2 yamt
639 1.2 yamt static void
640 1.17 yamt clockpro_movereferencebit(struct vm_page *pg, bool locked)
641 1.2 yamt {
642 1.17 yamt kmutex_t *lock;
643 1.7 thorpej bool referenced;
644 1.2 yamt
645 1.18 ad KASSERT(mutex_owned(&clockpro.lock));
646 1.17 yamt KASSERT(!locked || uvm_page_locked_p(pg));
647 1.17 yamt if (!locked) {
648 1.18 ad /*
649 1.18 ad * acquire interlock to stablize page identity.
650 1.18 ad * if we have caught the page in a state of flux
651 1.18 ad * and it should be dequeued, abort. it will be
652 1.18 ad * dequeued later.
653 1.18 ad */
654 1.18 ad mutex_enter(&pg->interlock);
655 1.18 ad if ((pg->uobject == NULL && pg->uanon == NULL) ||
656 1.18 ad pg->wire_count > 0) {
657 1.18 ad mutex_exit(&pg->interlock);
658 1.18 ad PDPOL_EVCNT_INCR(lockfail);
659 1.18 ad return;
660 1.18 ad }
661 1.18 ad mutex_exit(&clockpro.lock); /* XXX */
662 1.17 yamt lock = uvmpd_trylockowner(pg);
663 1.18 ad /* pg->interlock now dropped */
664 1.18 ad mutex_enter(&clockpro.lock); /* XXX */
665 1.17 yamt if (lock == NULL) {
666 1.17 yamt /*
667 1.17 yamt * XXXuvmplock
668 1.17 yamt */
669 1.17 yamt PDPOL_EVCNT_INCR(lockfail);
670 1.17 yamt return;
671 1.17 yamt }
672 1.17 yamt PDPOL_EVCNT_INCR(locksuccess);
673 1.17 yamt }
674 1.2 yamt referenced = pmap_clear_reference(pg);
675 1.17 yamt if (!locked) {
676 1.17 yamt mutex_exit(lock);
677 1.17 yamt }
678 1.2 yamt if (referenced) {
679 1.2 yamt pg->pqflags |= PQ_REFERENCED;
680 1.2 yamt }
681 1.2 yamt }
682 1.2 yamt
683 1.2 yamt static void
684 1.17 yamt clockpro_clearreferencebit(struct vm_page *pg, bool locked)
685 1.2 yamt {
686 1.2 yamt
687 1.18 ad KASSERT(mutex_owned(&clockpro.lock));
688 1.18 ad
689 1.17 yamt clockpro_movereferencebit(pg, locked);
690 1.2 yamt pg->pqflags &= ~PQ_REFERENCED;
691 1.2 yamt }
692 1.2 yamt
693 1.2 yamt static void
694 1.2 yamt clockpro___newqrotate(int len)
695 1.2 yamt {
696 1.2 yamt struct clockpro_state * const s = &clockpro;
697 1.2 yamt pageq_t * const newq = clockpro_queue(s, CLOCKPRO_NEWQ);
698 1.2 yamt struct vm_page *pg;
699 1.2 yamt
700 1.18 ad KASSERT(mutex_owned(&s->lock));
701 1.18 ad
702 1.2 yamt while (pageq_len(newq) > len) {
703 1.2 yamt pg = pageq_remove_head(newq);
704 1.2 yamt KASSERT(pg != NULL);
705 1.2 yamt KASSERT(clockpro_getq(pg) == CLOCKPRO_NEWQ);
706 1.2 yamt if ((pg->pqflags & PQ_INITIALREF) != 0) {
707 1.17 yamt clockpro_clearreferencebit(pg, false);
708 1.2 yamt pg->pqflags &= ~PQ_INITIALREF;
709 1.2 yamt }
710 1.2 yamt /* place at the list head */
711 1.2 yamt clockpro_insert_tail(s, CLOCKPRO_COLDQ, pg);
712 1.2 yamt }
713 1.2 yamt }
714 1.2 yamt
715 1.2 yamt static void
716 1.2 yamt clockpro_newqrotate(void)
717 1.2 yamt {
718 1.2 yamt struct clockpro_state * const s = &clockpro;
719 1.2 yamt
720 1.18 ad KASSERT(mutex_owned(&s->lock));
721 1.18 ad
722 1.2 yamt check_sanity();
723 1.2 yamt clockpro___newqrotate(s->s_newqlenmax);
724 1.2 yamt check_sanity();
725 1.2 yamt }
726 1.2 yamt
727 1.2 yamt static void
728 1.2 yamt clockpro_newqflush(int n)
729 1.2 yamt {
730 1.2 yamt
731 1.18 ad KASSERT(mutex_owned(&clockpro.lock));
732 1.18 ad
733 1.2 yamt check_sanity();
734 1.2 yamt clockpro___newqrotate(n);
735 1.2 yamt check_sanity();
736 1.2 yamt }
737 1.2 yamt
738 1.2 yamt static void
739 1.2 yamt clockpro_newqflushone(void)
740 1.2 yamt {
741 1.2 yamt struct clockpro_state * const s = &clockpro;
742 1.2 yamt
743 1.18 ad KASSERT(mutex_owned(&s->lock));
744 1.18 ad
745 1.2 yamt clockpro_newqflush(
746 1.2 yamt MAX(pageq_len(clockpro_queue(s, CLOCKPRO_NEWQ)) - 1, 0));
747 1.2 yamt }
748 1.2 yamt
749 1.2 yamt /*
750 1.2 yamt * our "tail" is called "list-head" in the paper.
751 1.2 yamt */
752 1.2 yamt
753 1.2 yamt static void
754 1.2 yamt clockpro___enqueuetail(struct vm_page *pg)
755 1.2 yamt {
756 1.2 yamt struct clockpro_state * const s = &clockpro;
757 1.2 yamt
758 1.18 ad KASSERT(mutex_owned(&s->lock));
759 1.2 yamt KASSERT(clockpro_getq(pg) == CLOCKPRO_NOQUEUE);
760 1.2 yamt
761 1.2 yamt check_sanity();
762 1.2 yamt #if !defined(USEONCE2)
763 1.2 yamt clockpro_insert_tail(s, CLOCKPRO_NEWQ, pg);
764 1.2 yamt clockpro_newqrotate();
765 1.2 yamt #else /* !defined(USEONCE2) */
766 1.2 yamt #if defined(LISTQ)
767 1.2 yamt KASSERT((pg->pqflags & PQ_REFERENCED) == 0);
768 1.2 yamt #endif /* defined(LISTQ) */
769 1.2 yamt clockpro_insert_tail(s, CLOCKPRO_COLDQ, pg);
770 1.2 yamt #endif /* !defined(USEONCE2) */
771 1.2 yamt check_sanity();
772 1.2 yamt }
773 1.2 yamt
774 1.2 yamt static void
775 1.2 yamt clockpro_pageenqueue(struct vm_page *pg)
776 1.2 yamt {
777 1.2 yamt struct clockpro_state * const s = &clockpro;
778 1.7 thorpej bool hot;
779 1.7 thorpej bool speculative = (pg->pqflags & PQ_SPECULATIVE) != 0; /* XXX */
780 1.2 yamt
781 1.2 yamt KASSERT((~pg->pqflags & (PQ_INITIALREF|PQ_SPECULATIVE)) != 0);
782 1.18 ad KASSERT(mutex_owned(&s->lock));
783 1.2 yamt check_sanity();
784 1.2 yamt KASSERT(clockpro_getq(pg) == CLOCKPRO_NOQUEUE);
785 1.2 yamt s->s_npages++;
786 1.2 yamt pg->pqflags &= ~(PQ_HOT|PQ_TEST);
787 1.2 yamt if (speculative) {
788 1.8 thorpej hot = false;
789 1.2 yamt PDPOL_EVCNT_INCR(speculativeenqueue);
790 1.2 yamt } else {
791 1.2 yamt hot = nonresident_pagelookupremove(pg);
792 1.2 yamt if (hot) {
793 1.2 yamt COLDTARGET_ADJ(1);
794 1.2 yamt }
795 1.2 yamt }
796 1.2 yamt
797 1.2 yamt /*
798 1.2 yamt * consider mmap'ed file:
799 1.2 yamt *
800 1.2 yamt * - read-ahead enqueues a page.
801 1.2 yamt *
802 1.2 yamt * - on the following read-ahead hit, the fault handler activates it.
803 1.2 yamt *
804 1.2 yamt * - finally, the userland code which caused the above fault
805 1.2 yamt * actually accesses the page. it makes its reference bit set.
806 1.2 yamt *
807 1.2 yamt * we want to count the above as a single access, rather than
808 1.2 yamt * three accesses with short reuse distances.
809 1.2 yamt */
810 1.2 yamt
811 1.2 yamt #if defined(USEONCE2)
812 1.2 yamt pg->pqflags &= ~PQ_INITIALREF;
813 1.2 yamt if (hot) {
814 1.2 yamt pg->pqflags |= PQ_TEST;
815 1.2 yamt }
816 1.2 yamt s->s_ncold++;
817 1.17 yamt clockpro_clearreferencebit(pg, false);
818 1.2 yamt clockpro___enqueuetail(pg);
819 1.2 yamt #else /* defined(USEONCE2) */
820 1.2 yamt if (speculative) {
821 1.2 yamt s->s_ncold++;
822 1.2 yamt } else if (hot) {
823 1.2 yamt pg->pqflags |= PQ_HOT;
824 1.2 yamt } else {
825 1.2 yamt pg->pqflags |= PQ_TEST;
826 1.2 yamt s->s_ncold++;
827 1.2 yamt }
828 1.2 yamt clockpro___enqueuetail(pg);
829 1.2 yamt #endif /* defined(USEONCE2) */
830 1.2 yamt KASSERT(s->s_ncold <= s->s_npages);
831 1.2 yamt }
832 1.2 yamt
833 1.2 yamt static pageq_t *
834 1.2 yamt clockpro_pagequeue(struct vm_page *pg)
835 1.2 yamt {
836 1.2 yamt struct clockpro_state * const s = &clockpro;
837 1.2 yamt int qidx;
838 1.2 yamt
839 1.18 ad KASSERT(mutex_owned(&s->lock));
840 1.18 ad
841 1.2 yamt qidx = clockpro_getq(pg);
842 1.2 yamt KASSERT(qidx != CLOCKPRO_NOQUEUE);
843 1.2 yamt
844 1.2 yamt return clockpro_queue(s, qidx);
845 1.2 yamt }
846 1.2 yamt
847 1.2 yamt static void
848 1.2 yamt clockpro_pagedequeue(struct vm_page *pg)
849 1.2 yamt {
850 1.2 yamt struct clockpro_state * const s = &clockpro;
851 1.2 yamt pageq_t *q;
852 1.2 yamt
853 1.18 ad KASSERT(mutex_owned(&s->lock));
854 1.18 ad
855 1.2 yamt KASSERT(s->s_npages > 0);
856 1.2 yamt check_sanity();
857 1.2 yamt q = clockpro_pagequeue(pg);
858 1.2 yamt pageq_remove(q, pg);
859 1.2 yamt check_sanity();
860 1.2 yamt clockpro_setq(pg, CLOCKPRO_NOQUEUE);
861 1.2 yamt if ((pg->pqflags & PQ_HOT) == 0) {
862 1.2 yamt KASSERT(s->s_ncold > 0);
863 1.2 yamt s->s_ncold--;
864 1.2 yamt }
865 1.2 yamt KASSERT(s->s_npages > 0);
866 1.2 yamt s->s_npages--;
867 1.2 yamt check_sanity();
868 1.2 yamt }
869 1.2 yamt
870 1.2 yamt static void
871 1.2 yamt clockpro_pagerequeue(struct vm_page *pg)
872 1.2 yamt {
873 1.2 yamt struct clockpro_state * const s = &clockpro;
874 1.2 yamt int qidx;
875 1.2 yamt
876 1.18 ad KASSERT(mutex_owned(&s->lock));
877 1.18 ad
878 1.2 yamt qidx = clockpro_getq(pg);
879 1.2 yamt KASSERT(qidx == CLOCKPRO_HOTQ || qidx == CLOCKPRO_COLDQ);
880 1.2 yamt pageq_remove(clockpro_queue(s, qidx), pg);
881 1.2 yamt check_sanity();
882 1.2 yamt clockpro_setq(pg, CLOCKPRO_NOQUEUE);
883 1.2 yamt
884 1.2 yamt clockpro___enqueuetail(pg);
885 1.2 yamt }
886 1.2 yamt
887 1.2 yamt static void
888 1.2 yamt handhot_endtest(struct vm_page *pg)
889 1.2 yamt {
890 1.2 yamt
891 1.18 ad KASSERT(mutex_owned(&clockpro.lock));
892 1.18 ad
893 1.2 yamt KASSERT((pg->pqflags & PQ_HOT) == 0);
894 1.2 yamt if ((pg->pqflags & PQ_TEST) != 0) {
895 1.2 yamt PDPOL_EVCNT_INCR(hhotcoldtest);
896 1.2 yamt COLDTARGET_ADJ(-1);
897 1.2 yamt pg->pqflags &= ~PQ_TEST;
898 1.2 yamt } else {
899 1.2 yamt PDPOL_EVCNT_INCR(hhotcold);
900 1.2 yamt }
901 1.2 yamt }
902 1.2 yamt
903 1.2 yamt static void
904 1.2 yamt handhot_advance(void)
905 1.2 yamt {
906 1.2 yamt struct clockpro_state * const s = &clockpro;
907 1.2 yamt struct vm_page *pg;
908 1.2 yamt pageq_t *hotq;
909 1.2 yamt int hotqlen;
910 1.2 yamt
911 1.18 ad KASSERT(mutex_owned(&s->lock));
912 1.18 ad
913 1.2 yamt clockpro_tune();
914 1.2 yamt
915 1.2 yamt dump("hot called");
916 1.2 yamt if (s->s_ncold >= s->s_coldtarget) {
917 1.2 yamt return;
918 1.2 yamt }
919 1.2 yamt hotq = clockpro_queue(s, CLOCKPRO_HOTQ);
920 1.2 yamt again:
921 1.2 yamt pg = pageq_first(hotq);
922 1.2 yamt if (pg == NULL) {
923 1.2 yamt DPRINTF("%s: HHOT TAKEOVER\n", __func__);
924 1.2 yamt dump("hhottakeover");
925 1.2 yamt PDPOL_EVCNT_INCR(hhottakeover);
926 1.2 yamt #if defined(LISTQ)
927 1.2 yamt while (/* CONSTCOND */ 1) {
928 1.2 yamt pageq_t *coldq = clockpro_queue(s, CLOCKPRO_COLDQ);
929 1.2 yamt
930 1.2 yamt pg = pageq_first(coldq);
931 1.2 yamt if (pg == NULL) {
932 1.2 yamt clockpro_newqflushone();
933 1.2 yamt pg = pageq_first(coldq);
934 1.2 yamt if (pg == NULL) {
935 1.2 yamt WARN("hhot: no page?\n");
936 1.2 yamt return;
937 1.2 yamt }
938 1.2 yamt }
939 1.2 yamt KASSERT(clockpro_pagequeue(pg) == coldq);
940 1.2 yamt pageq_remove(coldq, pg);
941 1.2 yamt check_sanity();
942 1.2 yamt if ((pg->pqflags & PQ_HOT) == 0) {
943 1.2 yamt handhot_endtest(pg);
944 1.2 yamt clockpro_insert_tail(s, CLOCKPRO_LISTQ, pg);
945 1.2 yamt } else {
946 1.2 yamt clockpro_insert_head(s, CLOCKPRO_HOTQ, pg);
947 1.2 yamt break;
948 1.2 yamt }
949 1.2 yamt }
950 1.2 yamt #else /* defined(LISTQ) */
951 1.2 yamt clockpro_newqflush(0); /* XXX XXX */
952 1.2 yamt clockpro_switchqueue();
953 1.2 yamt hotq = clockpro_queue(s, CLOCKPRO_HOTQ);
954 1.2 yamt goto again;
955 1.2 yamt #endif /* defined(LISTQ) */
956 1.2 yamt }
957 1.2 yamt
958 1.2 yamt KASSERT(clockpro_pagequeue(pg) == hotq);
959 1.2 yamt
960 1.2 yamt /*
961 1.2 yamt * terminate test period of nonresident pages by cycling them.
962 1.2 yamt */
963 1.2 yamt
964 1.2 yamt cycle_target_frac += BUCKETSIZE;
965 1.2 yamt hotqlen = pageq_len(hotq);
966 1.2 yamt while (cycle_target_frac >= hotqlen) {
967 1.2 yamt cycle_target++;
968 1.2 yamt cycle_target_frac -= hotqlen;
969 1.2 yamt }
970 1.2 yamt
971 1.2 yamt if ((pg->pqflags & PQ_HOT) == 0) {
972 1.2 yamt #if defined(LISTQ)
973 1.2 yamt panic("cold page in hotq: %p", pg);
974 1.2 yamt #else /* defined(LISTQ) */
975 1.2 yamt handhot_endtest(pg);
976 1.2 yamt goto next;
977 1.2 yamt #endif /* defined(LISTQ) */
978 1.2 yamt }
979 1.2 yamt KASSERT((pg->pqflags & PQ_TEST) == 0);
980 1.2 yamt KASSERT((pg->pqflags & PQ_INITIALREF) == 0);
981 1.2 yamt KASSERT((pg->pqflags & PQ_SPECULATIVE) == 0);
982 1.2 yamt
983 1.2 yamt /*
984 1.2 yamt * once we met our target,
985 1.2 yamt * stop at a hot page so that no cold pages in test period
986 1.2 yamt * have larger recency than any hot pages.
987 1.2 yamt */
988 1.2 yamt
989 1.2 yamt if (s->s_ncold >= s->s_coldtarget) {
990 1.2 yamt dump("hot done");
991 1.2 yamt return;
992 1.2 yamt }
993 1.17 yamt clockpro_movereferencebit(pg, false);
994 1.2 yamt if ((pg->pqflags & PQ_REFERENCED) == 0) {
995 1.2 yamt PDPOL_EVCNT_INCR(hhotunref);
996 1.2 yamt uvmexp.pddeact++;
997 1.2 yamt pg->pqflags &= ~PQ_HOT;
998 1.2 yamt clockpro.s_ncold++;
999 1.2 yamt KASSERT(s->s_ncold <= s->s_npages);
1000 1.2 yamt } else {
1001 1.2 yamt PDPOL_EVCNT_INCR(hhotref);
1002 1.2 yamt }
1003 1.2 yamt pg->pqflags &= ~PQ_REFERENCED;
1004 1.2 yamt #if !defined(LISTQ)
1005 1.2 yamt next:
1006 1.2 yamt #endif /* !defined(LISTQ) */
1007 1.2 yamt clockpro_pagerequeue(pg);
1008 1.2 yamt dump("hot");
1009 1.2 yamt goto again;
1010 1.2 yamt }
1011 1.2 yamt
1012 1.2 yamt static struct vm_page *
1013 1.2 yamt handcold_advance(void)
1014 1.2 yamt {
1015 1.2 yamt struct clockpro_state * const s = &clockpro;
1016 1.2 yamt struct vm_page *pg;
1017 1.2 yamt
1018 1.18 ad KASSERT(mutex_owned(&s->lock));
1019 1.18 ad
1020 1.2 yamt for (;;) {
1021 1.3 yamt #if defined(LISTQ)
1022 1.2 yamt pageq_t *listq = clockpro_queue(s, CLOCKPRO_LISTQ);
1023 1.3 yamt #endif /* defined(LISTQ) */
1024 1.2 yamt pageq_t *coldq;
1025 1.2 yamt
1026 1.2 yamt clockpro_newqrotate();
1027 1.2 yamt handhot_advance();
1028 1.2 yamt #if defined(LISTQ)
1029 1.2 yamt pg = pageq_first(listq);
1030 1.2 yamt if (pg != NULL) {
1031 1.2 yamt KASSERT(clockpro_getq(pg) == CLOCKPRO_LISTQ);
1032 1.2 yamt KASSERT((pg->pqflags & PQ_TEST) == 0);
1033 1.2 yamt KASSERT((pg->pqflags & PQ_HOT) == 0);
1034 1.2 yamt KASSERT((pg->pqflags & PQ_INITIALREF) == 0);
1035 1.2 yamt pageq_remove(listq, pg);
1036 1.2 yamt check_sanity();
1037 1.2 yamt clockpro_insert_head(s, CLOCKPRO_COLDQ, pg); /* XXX */
1038 1.2 yamt goto gotcold;
1039 1.2 yamt }
1040 1.2 yamt #endif /* defined(LISTQ) */
1041 1.2 yamt check_sanity();
1042 1.2 yamt coldq = clockpro_queue(s, CLOCKPRO_COLDQ);
1043 1.2 yamt pg = pageq_first(coldq);
1044 1.2 yamt if (pg == NULL) {
1045 1.2 yamt clockpro_newqflushone();
1046 1.2 yamt pg = pageq_first(coldq);
1047 1.2 yamt }
1048 1.2 yamt if (pg == NULL) {
1049 1.2 yamt DPRINTF("%s: HCOLD TAKEOVER\n", __func__);
1050 1.2 yamt dump("hcoldtakeover");
1051 1.2 yamt PDPOL_EVCNT_INCR(hcoldtakeover);
1052 1.2 yamt KASSERT(
1053 1.2 yamt pageq_len(clockpro_queue(s, CLOCKPRO_NEWQ)) == 0);
1054 1.2 yamt #if defined(LISTQ)
1055 1.2 yamt KASSERT(
1056 1.2 yamt pageq_len(clockpro_queue(s, CLOCKPRO_HOTQ)) == 0);
1057 1.2 yamt #else /* defined(LISTQ) */
1058 1.2 yamt clockpro_switchqueue();
1059 1.2 yamt coldq = clockpro_queue(s, CLOCKPRO_COLDQ);
1060 1.2 yamt pg = pageq_first(coldq);
1061 1.2 yamt #endif /* defined(LISTQ) */
1062 1.2 yamt }
1063 1.2 yamt if (pg == NULL) {
1064 1.2 yamt WARN("hcold: no page?\n");
1065 1.2 yamt return NULL;
1066 1.2 yamt }
1067 1.2 yamt KASSERT((pg->pqflags & PQ_INITIALREF) == 0);
1068 1.2 yamt if ((pg->pqflags & PQ_HOT) != 0) {
1069 1.2 yamt PDPOL_EVCNT_INCR(hcoldhot);
1070 1.2 yamt pageq_remove(coldq, pg);
1071 1.2 yamt clockpro_insert_tail(s, CLOCKPRO_HOTQ, pg);
1072 1.2 yamt check_sanity();
1073 1.2 yamt KASSERT((pg->pqflags & PQ_TEST) == 0);
1074 1.2 yamt uvmexp.pdscans++;
1075 1.2 yamt continue;
1076 1.2 yamt }
1077 1.2 yamt #if defined(LISTQ)
1078 1.2 yamt gotcold:
1079 1.2 yamt #endif /* defined(LISTQ) */
1080 1.2 yamt KASSERT((pg->pqflags & PQ_HOT) == 0);
1081 1.2 yamt uvmexp.pdscans++;
1082 1.17 yamt clockpro_movereferencebit(pg, false);
1083 1.2 yamt if ((pg->pqflags & PQ_SPECULATIVE) != 0) {
1084 1.2 yamt KASSERT((pg->pqflags & PQ_TEST) == 0);
1085 1.2 yamt if ((pg->pqflags & PQ_REFERENCED) != 0) {
1086 1.2 yamt PDPOL_EVCNT_INCR(speculativehit2);
1087 1.2 yamt pg->pqflags &= ~(PQ_SPECULATIVE|PQ_REFERENCED);
1088 1.2 yamt clockpro_pagedequeue(pg);
1089 1.2 yamt clockpro_pageenqueue(pg);
1090 1.2 yamt continue;
1091 1.2 yamt }
1092 1.2 yamt PDPOL_EVCNT_INCR(speculativemiss);
1093 1.2 yamt }
1094 1.2 yamt switch (pg->pqflags & (PQ_REFERENCED|PQ_TEST)) {
1095 1.2 yamt case PQ_TEST:
1096 1.2 yamt PDPOL_EVCNT_INCR(hcoldunreftest);
1097 1.2 yamt nonresident_pagerecord(pg);
1098 1.2 yamt goto gotit;
1099 1.2 yamt case 0:
1100 1.2 yamt PDPOL_EVCNT_INCR(hcoldunref);
1101 1.2 yamt gotit:
1102 1.2 yamt KASSERT(s->s_ncold > 0);
1103 1.2 yamt clockpro_pagerequeue(pg); /* XXX */
1104 1.2 yamt dump("cold done");
1105 1.2 yamt /* XXX "pg" is still in queue */
1106 1.2 yamt handhot_advance();
1107 1.2 yamt goto done;
1108 1.2 yamt
1109 1.2 yamt case PQ_REFERENCED|PQ_TEST:
1110 1.2 yamt PDPOL_EVCNT_INCR(hcoldreftest);
1111 1.2 yamt s->s_ncold--;
1112 1.2 yamt COLDTARGET_ADJ(1);
1113 1.2 yamt pg->pqflags |= PQ_HOT;
1114 1.2 yamt pg->pqflags &= ~PQ_TEST;
1115 1.2 yamt break;
1116 1.2 yamt
1117 1.2 yamt case PQ_REFERENCED:
1118 1.2 yamt PDPOL_EVCNT_INCR(hcoldref);
1119 1.2 yamt pg->pqflags |= PQ_TEST;
1120 1.2 yamt break;
1121 1.2 yamt }
1122 1.2 yamt pg->pqflags &= ~PQ_REFERENCED;
1123 1.2 yamt uvmexp.pdreact++;
1124 1.2 yamt /* move to the list head */
1125 1.2 yamt clockpro_pagerequeue(pg);
1126 1.2 yamt dump("cold");
1127 1.2 yamt }
1128 1.2 yamt done:;
1129 1.2 yamt return pg;
1130 1.2 yamt }
1131 1.2 yamt
1132 1.2 yamt void
1133 1.2 yamt uvmpdpol_pageactivate(struct vm_page *pg)
1134 1.2 yamt {
1135 1.18 ad struct clockpro_state * const s = &clockpro;
1136 1.2 yamt
1137 1.18 ad mutex_enter(&s->lock);
1138 1.2 yamt if (!uvmpdpol_pageisqueued_p(pg)) {
1139 1.2 yamt KASSERT((pg->pqflags & PQ_SPECULATIVE) == 0);
1140 1.2 yamt pg->pqflags |= PQ_INITIALREF;
1141 1.2 yamt clockpro_pageenqueue(pg);
1142 1.2 yamt } else if ((pg->pqflags & PQ_SPECULATIVE)) {
1143 1.2 yamt PDPOL_EVCNT_INCR(speculativehit1);
1144 1.2 yamt pg->pqflags &= ~PQ_SPECULATIVE;
1145 1.2 yamt pg->pqflags |= PQ_INITIALREF;
1146 1.2 yamt clockpro_pagedequeue(pg);
1147 1.2 yamt clockpro_pageenqueue(pg);
1148 1.2 yamt }
1149 1.2 yamt pg->pqflags |= PQ_REFERENCED;
1150 1.18 ad mutex_exit(&s->lock);
1151 1.2 yamt }
1152 1.2 yamt
1153 1.2 yamt void
1154 1.2 yamt uvmpdpol_pagedeactivate(struct vm_page *pg)
1155 1.2 yamt {
1156 1.18 ad struct clockpro_state * const s = &clockpro;
1157 1.2 yamt
1158 1.18 ad mutex_enter(&s->lock);
1159 1.17 yamt clockpro_clearreferencebit(pg, true);
1160 1.18 ad mutex_exit(&s->lock);
1161 1.2 yamt }
1162 1.2 yamt
1163 1.2 yamt void
1164 1.2 yamt uvmpdpol_pagedequeue(struct vm_page *pg)
1165 1.2 yamt {
1166 1.18 ad struct clockpro_state * const s = &clockpro;
1167 1.2 yamt
1168 1.2 yamt if (!uvmpdpol_pageisqueued_p(pg)) {
1169 1.2 yamt return;
1170 1.2 yamt }
1171 1.18 ad mutex_enter(&s->lock);
1172 1.2 yamt clockpro_pagedequeue(pg);
1173 1.6 yamt pg->pqflags &= ~(PQ_INITIALREF|PQ_SPECULATIVE);
1174 1.18 ad mutex_exit(&s->lock);
1175 1.2 yamt }
1176 1.2 yamt
1177 1.2 yamt void
1178 1.2 yamt uvmpdpol_pageenqueue(struct vm_page *pg)
1179 1.2 yamt {
1180 1.2 yamt
1181 1.2 yamt #if 1
1182 1.18 ad struct clockpro_state * const s = &clockpro;
1183 1.18 ad
1184 1.2 yamt if (uvmpdpol_pageisqueued_p(pg)) {
1185 1.2 yamt return;
1186 1.2 yamt }
1187 1.18 ad mutex_enter(&s->lock);
1188 1.17 yamt clockpro_clearreferencebit(pg, true);
1189 1.2 yamt pg->pqflags |= PQ_SPECULATIVE;
1190 1.2 yamt clockpro_pageenqueue(pg);
1191 1.18 ad mutex_exit(&s->lock);
1192 1.2 yamt #else
1193 1.2 yamt uvmpdpol_pageactivate(pg);
1194 1.2 yamt #endif
1195 1.2 yamt }
1196 1.2 yamt
1197 1.2 yamt void
1198 1.2 yamt uvmpdpol_anfree(struct vm_anon *an)
1199 1.2 yamt {
1200 1.18 ad struct clockpro_state * const s = &clockpro;
1201 1.2 yamt
1202 1.2 yamt KASSERT(an->an_page == NULL);
1203 1.18 ad mutex_enter(&s->lock);
1204 1.2 yamt if (nonresident_lookupremove((objid_t)an, 0)) {
1205 1.2 yamt PDPOL_EVCNT_INCR(nresanonfree);
1206 1.2 yamt }
1207 1.18 ad mutex_exit(&s->lock);
1208 1.2 yamt }
1209 1.2 yamt
1210 1.2 yamt void
1211 1.2 yamt uvmpdpol_init(void)
1212 1.2 yamt {
1213 1.2 yamt
1214 1.2 yamt clockpro_init();
1215 1.2 yamt }
1216 1.2 yamt
1217 1.2 yamt void
1218 1.2 yamt uvmpdpol_reinit(void)
1219 1.2 yamt {
1220 1.18 ad struct clockpro_state * const s = &clockpro;
1221 1.2 yamt
1222 1.18 ad mutex_enter(&s->lock);
1223 1.2 yamt clockpro_reinit();
1224 1.18 ad mutex_exit(&s->lock);
1225 1.2 yamt }
1226 1.2 yamt
1227 1.2 yamt void
1228 1.2 yamt uvmpdpol_estimatepageable(int *active, int *inactive)
1229 1.2 yamt {
1230 1.2 yamt struct clockpro_state * const s = &clockpro;
1231 1.2 yamt
1232 1.18 ad mutex_enter(&s->lock);
1233 1.2 yamt if (active) {
1234 1.2 yamt *active = s->s_npages - s->s_ncold;
1235 1.2 yamt }
1236 1.2 yamt if (inactive) {
1237 1.2 yamt *inactive = s->s_ncold;
1238 1.2 yamt }
1239 1.18 ad mutex_exit(&s->lock);
1240 1.2 yamt }
1241 1.2 yamt
1242 1.7 thorpej bool
1243 1.2 yamt uvmpdpol_pageisqueued_p(struct vm_page *pg)
1244 1.2 yamt {
1245 1.2 yamt
1246 1.18 ad /* Unlocked check OK due to page lifecycle. */
1247 1.2 yamt return clockpro_getq(pg) != CLOCKPRO_NOQUEUE;
1248 1.2 yamt }
1249 1.2 yamt
1250 1.2 yamt void
1251 1.2 yamt uvmpdpol_scaninit(void)
1252 1.2 yamt {
1253 1.18 ad struct clockpro_state * const s = &clockpro;
1254 1.2 yamt struct clockpro_scanstate * const ss = &scanstate;
1255 1.2 yamt
1256 1.18 ad mutex_enter(&s->lock);
1257 1.2 yamt ss->ss_nscanned = 0;
1258 1.18 ad mutex_exit(&s->lock);
1259 1.2 yamt }
1260 1.2 yamt
1261 1.2 yamt struct vm_page *
1262 1.18 ad uvmpdpol_selectvictim(kmutex_t **plock)
1263 1.2 yamt {
1264 1.2 yamt struct clockpro_state * const s = &clockpro;
1265 1.2 yamt struct clockpro_scanstate * const ss = &scanstate;
1266 1.2 yamt struct vm_page *pg;
1267 1.18 ad kmutex_t *lock = NULL;
1268 1.2 yamt
1269 1.18 ad do {
1270 1.18 ad mutex_enter(&s->lock);
1271 1.18 ad if (ss->ss_nscanned > s->s_npages) {
1272 1.18 ad DPRINTF("scan too much\n");
1273 1.18 ad mutex_exit(&s->lock);
1274 1.18 ad return NULL;
1275 1.18 ad }
1276 1.18 ad pg = handcold_advance();
1277 1.18 ad if (pg == NULL) {
1278 1.18 ad mutex_exit(&s->lock);
1279 1.18 ad break;
1280 1.18 ad }
1281 1.18 ad ss->ss_nscanned++;
1282 1.18 ad /*
1283 1.18 ad * acquire interlock to stablize page identity.
1284 1.18 ad * if we have caught the page in a state of flux
1285 1.18 ad * and it should be dequeued, do it now and then
1286 1.18 ad * move on to the next.
1287 1.18 ad */
1288 1.18 ad mutex_enter(&pg->interlock);
1289 1.18 ad if ((pg->uobject == NULL && pg->uanon == NULL) ||
1290 1.18 ad pg->wire_count > 0) {
1291 1.18 ad mutex_exit(&pg->interlock);
1292 1.18 ad clockpro_pagedequeue(pg);
1293 1.18 ad pg->pqflags &= ~(PQ_INITIALREF|PQ_SPECULATIVE);
1294 1.18 ad continue;
1295 1.18 ad }
1296 1.18 ad mutex_exit(&s->lock);
1297 1.18 ad lock = uvmpd_trylockowner(pg);
1298 1.18 ad /* pg->interlock now dropped */
1299 1.18 ad } while (lock == NULL);
1300 1.18 ad *plock = lock;
1301 1.2 yamt return pg;
1302 1.2 yamt }
1303 1.2 yamt
1304 1.2 yamt static void
1305 1.2 yamt clockpro_dropswap(pageq_t *q, int *todo)
1306 1.2 yamt {
1307 1.2 yamt struct vm_page *pg;
1308 1.2 yamt
1309 1.18 ad KASSERT(mutex_owned(&clockpro.lock));
1310 1.18 ad
1311 1.19 ad TAILQ_FOREACH_REVERSE(pg, &q->q_q, pglist, pdqueue) {
1312 1.2 yamt if (*todo <= 0) {
1313 1.2 yamt break;
1314 1.2 yamt }
1315 1.2 yamt if ((pg->pqflags & PQ_HOT) == 0) {
1316 1.2 yamt continue;
1317 1.2 yamt }
1318 1.18 ad mutex_enter(&pg->interlock);
1319 1.18 ad if ((pg->flags & PG_SWAPBACKED) == 0) {
1320 1.18 ad mutex_exit(&pg->interlock);
1321 1.2 yamt continue;
1322 1.2 yamt }
1323 1.2 yamt if (uvmpd_trydropswap(pg)) {
1324 1.2 yamt (*todo)--;
1325 1.2 yamt }
1326 1.18 ad /* pg->interlock now dropped */
1327 1.2 yamt }
1328 1.2 yamt }
1329 1.2 yamt
1330 1.2 yamt void
1331 1.2 yamt uvmpdpol_balancequeue(int swap_shortage)
1332 1.2 yamt {
1333 1.2 yamt struct clockpro_state * const s = &clockpro;
1334 1.2 yamt int todo = swap_shortage;
1335 1.2 yamt
1336 1.2 yamt if (todo == 0) {
1337 1.2 yamt return;
1338 1.2 yamt }
1339 1.2 yamt
1340 1.2 yamt /*
1341 1.2 yamt * reclaim swap slots from hot pages
1342 1.2 yamt */
1343 1.2 yamt
1344 1.2 yamt DPRINTF("%s: swap_shortage=%d\n", __func__, swap_shortage);
1345 1.2 yamt
1346 1.18 ad mutex_enter(&s->lock);
1347 1.2 yamt clockpro_dropswap(clockpro_queue(s, CLOCKPRO_NEWQ), &todo);
1348 1.2 yamt clockpro_dropswap(clockpro_queue(s, CLOCKPRO_COLDQ), &todo);
1349 1.2 yamt clockpro_dropswap(clockpro_queue(s, CLOCKPRO_HOTQ), &todo);
1350 1.18 ad mutex_exit(&s->lock);
1351 1.2 yamt
1352 1.2 yamt DPRINTF("%s: done=%d\n", __func__, swap_shortage - todo);
1353 1.2 yamt }
1354 1.2 yamt
1355 1.7 thorpej bool
1356 1.2 yamt uvmpdpol_needsscan_p(void)
1357 1.2 yamt {
1358 1.2 yamt struct clockpro_state * const s = &clockpro;
1359 1.2 yamt
1360 1.18 ad /* This must be an unlocked check: can be called from interrupt. */
1361 1.18 ad return s->s_ncold < s->s_coldtarget;
1362 1.2 yamt }
1363 1.2 yamt
1364 1.2 yamt void
1365 1.2 yamt uvmpdpol_tune(void)
1366 1.2 yamt {
1367 1.18 ad struct clockpro_state * const s = &clockpro;
1368 1.2 yamt
1369 1.18 ad mutex_enter(&s->lock);
1370 1.2 yamt clockpro_tune();
1371 1.18 ad mutex_exit(&s->lock);
1372 1.2 yamt }
1373 1.2 yamt
1374 1.2 yamt #if !defined(PDSIM)
1375 1.2 yamt
1376 1.2 yamt #include <sys/sysctl.h> /* XXX SYSCTL_DESCR */
1377 1.2 yamt
1378 1.2 yamt void
1379 1.2 yamt uvmpdpol_sysctlsetup(void)
1380 1.2 yamt {
1381 1.2 yamt #if !defined(ADAPTIVE)
1382 1.2 yamt struct clockpro_state * const s = &clockpro;
1383 1.2 yamt
1384 1.2 yamt uvm_pctparam_createsysctlnode(&s->s_coldtargetpct, "coldtargetpct",
1385 1.2 yamt SYSCTL_DESCR("Percentage cold target queue of the entire queue"));
1386 1.2 yamt #endif /* !defined(ADAPTIVE) */
1387 1.2 yamt }
1388 1.2 yamt
1389 1.2 yamt #endif /* !defined(PDSIM) */
1390 1.2 yamt
1391 1.2 yamt #if defined(DDB)
1392 1.2 yamt
1393 1.17 yamt #if 0 /* XXXuvmplock */
1394 1.17 yamt #define _pmap_is_referenced(pg) pmap_is_referenced(pg)
1395 1.17 yamt #else
1396 1.17 yamt #define _pmap_is_referenced(pg) false
1397 1.17 yamt #endif
1398 1.17 yamt
1399 1.2 yamt void clockpro_dump(void);
1400 1.2 yamt
1401 1.2 yamt void
1402 1.2 yamt clockpro_dump(void)
1403 1.2 yamt {
1404 1.2 yamt struct clockpro_state * const s = &clockpro;
1405 1.2 yamt
1406 1.2 yamt struct vm_page *pg;
1407 1.2 yamt int ncold, nhot, ntest, nspeculative, ninitialref, nref;
1408 1.2 yamt int newqlen, coldqlen, hotqlen, listqlen;
1409 1.2 yamt
1410 1.2 yamt newqlen = coldqlen = hotqlen = listqlen = 0;
1411 1.2 yamt printf("npages=%d, ncold=%d, coldtarget=%d, newqlenmax=%d\n",
1412 1.2 yamt s->s_npages, s->s_ncold, s->s_coldtarget, s->s_newqlenmax);
1413 1.2 yamt
1414 1.2 yamt #define INITCOUNT() \
1415 1.2 yamt ncold = nhot = ntest = nspeculative = ninitialref = nref = 0
1416 1.2 yamt
1417 1.2 yamt #define COUNT(pg) \
1418 1.2 yamt if ((pg->pqflags & PQ_HOT) != 0) { \
1419 1.2 yamt nhot++; \
1420 1.2 yamt } else { \
1421 1.2 yamt ncold++; \
1422 1.2 yamt if ((pg->pqflags & PQ_TEST) != 0) { \
1423 1.2 yamt ntest++; \
1424 1.2 yamt } \
1425 1.2 yamt if ((pg->pqflags & PQ_SPECULATIVE) != 0) { \
1426 1.2 yamt nspeculative++; \
1427 1.2 yamt } \
1428 1.2 yamt if ((pg->pqflags & PQ_INITIALREF) != 0) { \
1429 1.2 yamt ninitialref++; \
1430 1.2 yamt } else if ((pg->pqflags & PQ_REFERENCED) != 0 || \
1431 1.17 yamt _pmap_is_referenced(pg)) { \
1432 1.2 yamt nref++; \
1433 1.2 yamt } \
1434 1.2 yamt }
1435 1.2 yamt
1436 1.2 yamt #define PRINTCOUNT(name) \
1437 1.2 yamt printf("%s hot=%d, cold=%d, test=%d, speculative=%d, initialref=%d, " \
1438 1.2 yamt "nref=%d\n", \
1439 1.2 yamt (name), nhot, ncold, ntest, nspeculative, ninitialref, nref)
1440 1.2 yamt
1441 1.2 yamt INITCOUNT();
1442 1.19 ad TAILQ_FOREACH(pg, &clockpro_queue(s, CLOCKPRO_NEWQ)->q_q, pdqueue) {
1443 1.2 yamt if (clockpro_getq(pg) != CLOCKPRO_NEWQ) {
1444 1.2 yamt printf("newq corrupt %p\n", pg);
1445 1.2 yamt }
1446 1.2 yamt COUNT(pg)
1447 1.2 yamt newqlen++;
1448 1.2 yamt }
1449 1.2 yamt PRINTCOUNT("newq");
1450 1.2 yamt
1451 1.2 yamt INITCOUNT();
1452 1.19 ad TAILQ_FOREACH(pg, &clockpro_queue(s, CLOCKPRO_COLDQ)->q_q, pdqueue) {
1453 1.2 yamt if (clockpro_getq(pg) != CLOCKPRO_COLDQ) {
1454 1.2 yamt printf("coldq corrupt %p\n", pg);
1455 1.2 yamt }
1456 1.2 yamt COUNT(pg)
1457 1.2 yamt coldqlen++;
1458 1.2 yamt }
1459 1.2 yamt PRINTCOUNT("coldq");
1460 1.2 yamt
1461 1.2 yamt INITCOUNT();
1462 1.19 ad TAILQ_FOREACH(pg, &clockpro_queue(s, CLOCKPRO_HOTQ)->q_q, pdqueue) {
1463 1.2 yamt if (clockpro_getq(pg) != CLOCKPRO_HOTQ) {
1464 1.2 yamt printf("hotq corrupt %p\n", pg);
1465 1.2 yamt }
1466 1.2 yamt #if defined(LISTQ)
1467 1.2 yamt if ((pg->pqflags & PQ_HOT) == 0) {
1468 1.2 yamt printf("cold page in hotq: %p\n", pg);
1469 1.2 yamt }
1470 1.2 yamt #endif /* defined(LISTQ) */
1471 1.2 yamt COUNT(pg)
1472 1.2 yamt hotqlen++;
1473 1.2 yamt }
1474 1.2 yamt PRINTCOUNT("hotq");
1475 1.2 yamt
1476 1.2 yamt INITCOUNT();
1477 1.19 ad TAILQ_FOREACH(pg, &clockpro_queue(s, CLOCKPRO_LISTQ)->q_q, pdqueue) {
1478 1.2 yamt #if !defined(LISTQ)
1479 1.14 bjs printf("listq %p\n", pg);
1480 1.2 yamt #endif /* !defined(LISTQ) */
1481 1.2 yamt if (clockpro_getq(pg) != CLOCKPRO_LISTQ) {
1482 1.2 yamt printf("listq corrupt %p\n", pg);
1483 1.2 yamt }
1484 1.2 yamt COUNT(pg)
1485 1.2 yamt listqlen++;
1486 1.2 yamt }
1487 1.2 yamt PRINTCOUNT("listq");
1488 1.2 yamt
1489 1.2 yamt printf("newqlen=%d/%d, coldqlen=%d/%d, hotqlen=%d/%d, listqlen=%d/%d\n",
1490 1.2 yamt newqlen, pageq_len(clockpro_queue(s, CLOCKPRO_NEWQ)),
1491 1.2 yamt coldqlen, pageq_len(clockpro_queue(s, CLOCKPRO_COLDQ)),
1492 1.2 yamt hotqlen, pageq_len(clockpro_queue(s, CLOCKPRO_HOTQ)),
1493 1.2 yamt listqlen, pageq_len(clockpro_queue(s, CLOCKPRO_LISTQ)));
1494 1.2 yamt }
1495 1.2 yamt
1496 1.2 yamt #endif /* defined(DDB) */
1497 1.2 yamt
1498 1.2 yamt #if defined(PDSIM)
1499 1.3 yamt #if defined(DEBUG)
1500 1.2 yamt static void
1501 1.2 yamt pdsim_dumpq(int qidx)
1502 1.2 yamt {
1503 1.2 yamt struct clockpro_state * const s = &clockpro;
1504 1.2 yamt pageq_t *q = clockpro_queue(s, qidx);
1505 1.2 yamt struct vm_page *pg;
1506 1.2 yamt
1507 1.19 ad TAILQ_FOREACH(pg, &q->q_q, pdqueue) {
1508 1.2 yamt DPRINTF(" %" PRIu64 "%s%s%s%s%s%s",
1509 1.2 yamt pg->offset >> PAGE_SHIFT,
1510 1.2 yamt (pg->pqflags & PQ_HOT) ? "H" : "",
1511 1.2 yamt (pg->pqflags & PQ_TEST) ? "T" : "",
1512 1.2 yamt (pg->pqflags & PQ_REFERENCED) ? "R" : "",
1513 1.17 yamt _pmap_is_referenced(pg) ? "r" : "",
1514 1.2 yamt (pg->pqflags & PQ_INITIALREF) ? "I" : "",
1515 1.2 yamt (pg->pqflags & PQ_SPECULATIVE) ? "S" : ""
1516 1.2 yamt );
1517 1.2 yamt }
1518 1.2 yamt }
1519 1.3 yamt #endif /* defined(DEBUG) */
1520 1.2 yamt
1521 1.2 yamt void
1522 1.2 yamt pdsim_dump(const char *id)
1523 1.2 yamt {
1524 1.2 yamt #if defined(DEBUG)
1525 1.2 yamt struct clockpro_state * const s = &clockpro;
1526 1.2 yamt
1527 1.2 yamt DPRINTF(" %s L(", id);
1528 1.2 yamt pdsim_dumpq(CLOCKPRO_LISTQ);
1529 1.2 yamt DPRINTF(" ) H(");
1530 1.2 yamt pdsim_dumpq(CLOCKPRO_HOTQ);
1531 1.2 yamt DPRINTF(" ) C(");
1532 1.2 yamt pdsim_dumpq(CLOCKPRO_COLDQ);
1533 1.2 yamt DPRINTF(" ) N(");
1534 1.2 yamt pdsim_dumpq(CLOCKPRO_NEWQ);
1535 1.2 yamt DPRINTF(" ) ncold=%d/%d, coldadj=%d\n",
1536 1.2 yamt s->s_ncold, s->s_coldtarget, coldadj);
1537 1.2 yamt #endif /* defined(DEBUG) */
1538 1.2 yamt }
1539 1.2 yamt #endif /* defined(PDSIM) */
1540