kern_turnstile.c revision 1.32 1 1.32 yamt /* $NetBSD: kern_turnstile.c,v 1.32 2012/06/15 13:51:40 yamt Exp $ */
2 1.2 ad
3 1.2 ad /*-
4 1.24 ad * Copyright (c) 2002, 2006, 2007, 2009 The NetBSD Foundation, Inc.
5 1.2 ad * All rights reserved.
6 1.2 ad *
7 1.2 ad * This code is derived from software contributed to The NetBSD Foundation
8 1.2 ad * by Jason R. Thorpe and Andrew Doran.
9 1.2 ad *
10 1.2 ad * Redistribution and use in source and binary forms, with or without
11 1.2 ad * modification, are permitted provided that the following conditions
12 1.2 ad * are met:
13 1.2 ad * 1. Redistributions of source code must retain the above copyright
14 1.2 ad * notice, this list of conditions and the following disclaimer.
15 1.2 ad * 2. Redistributions in binary form must reproduce the above copyright
16 1.2 ad * notice, this list of conditions and the following disclaimer in the
17 1.2 ad * documentation and/or other materials provided with the distribution.
18 1.2 ad *
19 1.2 ad * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.2 ad * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.2 ad * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.2 ad * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.2 ad * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.2 ad * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.2 ad * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.2 ad * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.2 ad * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.2 ad * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.2 ad * POSSIBILITY OF SUCH DAMAGE.
30 1.2 ad */
31 1.2 ad
32 1.2 ad /*
33 1.2 ad * Turnstiles are described in detail in:
34 1.2 ad *
35 1.2 ad * Solaris Internals: Core Kernel Architecture, Jim Mauro and
36 1.2 ad * Richard McDougall.
37 1.2 ad *
38 1.2 ad * Turnstiles are kept in a hash table. There are likely to be many more
39 1.2 ad * synchronisation objects than there are threads. Since a thread can block
40 1.2 ad * on only one lock at a time, we only need one turnstile per thread, and
41 1.2 ad * so they are allocated at thread creation time.
42 1.2 ad *
43 1.2 ad * When a thread decides it needs to block on a lock, it looks up the
44 1.2 ad * active turnstile for that lock. If no active turnstile exists, then
45 1.2 ad * the process lends its turnstile to the lock. If there is already an
46 1.2 ad * active turnstile for the lock, the thread places its turnstile on a
47 1.2 ad * list of free turnstiles, and references the active one instead.
48 1.2 ad *
49 1.2 ad * The act of looking up the turnstile acquires an interlock on the sleep
50 1.2 ad * queue. If a thread decides it doesn't need to block after all, then this
51 1.2 ad * interlock must be released by explicitly aborting the turnstile
52 1.2 ad * operation.
53 1.2 ad *
54 1.2 ad * When a thread is awakened, it needs to get its turnstile back. If there
55 1.18 alc * are still other threads waiting in the active turnstile, the thread
56 1.2 ad * grabs a free turnstile off the free list. Otherwise, it can take back
57 1.2 ad * the active turnstile from the lock (thus deactivating the turnstile).
58 1.2 ad *
59 1.4 yamt * Turnstiles are the place to do priority inheritence.
60 1.2 ad */
61 1.2 ad
62 1.2 ad #include <sys/cdefs.h>
63 1.32 yamt __KERNEL_RCSID(0, "$NetBSD: kern_turnstile.c,v 1.32 2012/06/15 13:51:40 yamt Exp $");
64 1.2 ad
65 1.2 ad #include <sys/param.h>
66 1.4 yamt #include <sys/lockdebug.h>
67 1.2 ad #include <sys/pool.h>
68 1.2 ad #include <sys/proc.h>
69 1.2 ad #include <sys/sleepq.h>
70 1.2 ad #include <sys/systm.h>
71 1.2 ad
72 1.2 ad #define TS_HASH_SIZE 64
73 1.2 ad #define TS_HASH_MASK (TS_HASH_SIZE - 1)
74 1.2 ad #define TS_HASH(obj) (((uintptr_t)(obj) >> 3) & TS_HASH_MASK)
75 1.2 ad
76 1.29 rmind static tschain_t turnstile_tab[TS_HASH_SIZE] __cacheline_aligned;
77 1.29 rmind pool_cache_t turnstile_cache __read_mostly;
78 1.2 ad
79 1.29 rmind static int turnstile_ctor(void *, void *, int);
80 1.2 ad
81 1.29 rmind extern turnstile_t turnstile0;
82 1.2 ad
83 1.2 ad /*
84 1.2 ad * turnstile_init:
85 1.2 ad *
86 1.2 ad * Initialize the turnstile mechanism.
87 1.2 ad */
88 1.2 ad void
89 1.2 ad turnstile_init(void)
90 1.2 ad {
91 1.2 ad tschain_t *tc;
92 1.2 ad int i;
93 1.2 ad
94 1.2 ad for (i = 0; i < TS_HASH_SIZE; i++) {
95 1.2 ad tc = &turnstile_tab[i];
96 1.2 ad LIST_INIT(&tc->tc_chain);
97 1.24 ad tc->tc_mutex = mutex_obj_alloc(MUTEX_DEFAULT, IPL_SCHED);
98 1.2 ad }
99 1.2 ad
100 1.12 ad turnstile_cache = pool_cache_init(sizeof(turnstile_t), 0, 0, 0,
101 1.12 ad "tstilepl", NULL, IPL_NONE, turnstile_ctor, NULL, NULL);
102 1.12 ad KASSERT(turnstile_cache != NULL);
103 1.2 ad
104 1.2 ad (void)turnstile_ctor(NULL, &turnstile0, 0);
105 1.2 ad }
106 1.2 ad
107 1.2 ad /*
108 1.2 ad * turnstile_ctor:
109 1.2 ad *
110 1.2 ad * Constructor for turnstiles.
111 1.2 ad */
112 1.29 rmind static int
113 1.2 ad turnstile_ctor(void *arg, void *obj, int flags)
114 1.2 ad {
115 1.2 ad turnstile_t *ts = obj;
116 1.2 ad
117 1.2 ad memset(ts, 0, sizeof(*ts));
118 1.21 ad sleepq_init(&ts->ts_sleepq[TS_READER_Q]);
119 1.21 ad sleepq_init(&ts->ts_sleepq[TS_WRITER_Q]);
120 1.2 ad return (0);
121 1.2 ad }
122 1.2 ad
123 1.2 ad /*
124 1.2 ad * turnstile_remove:
125 1.2 ad *
126 1.2 ad * Remove an LWP from a turnstile sleep queue and wake it.
127 1.2 ad */
128 1.9 yamt static inline void
129 1.21 ad turnstile_remove(turnstile_t *ts, lwp_t *l, int q)
130 1.2 ad {
131 1.2 ad turnstile_t *nts;
132 1.2 ad
133 1.2 ad KASSERT(l->l_ts == ts);
134 1.2 ad
135 1.2 ad /*
136 1.2 ad * This process is no longer using the active turnstile.
137 1.2 ad * Find an inactive one on the free list to give to it.
138 1.2 ad */
139 1.2 ad if ((nts = ts->ts_free) != NULL) {
140 1.2 ad KASSERT(TS_ALL_WAITERS(ts) > 1);
141 1.2 ad l->l_ts = nts;
142 1.2 ad ts->ts_free = nts->ts_free;
143 1.2 ad nts->ts_free = NULL;
144 1.2 ad } else {
145 1.2 ad /*
146 1.2 ad * If the free list is empty, this is the last
147 1.2 ad * waiter.
148 1.2 ad */
149 1.2 ad KASSERT(TS_ALL_WAITERS(ts) == 1);
150 1.2 ad LIST_REMOVE(ts, ts_chain);
151 1.2 ad }
152 1.2 ad
153 1.21 ad ts->ts_waiters[q]--;
154 1.26 rmind sleepq_remove(&ts->ts_sleepq[q], l);
155 1.2 ad }
156 1.2 ad
157 1.2 ad /*
158 1.2 ad * turnstile_lookup:
159 1.2 ad *
160 1.2 ad * Look up the turnstile for the specified lock. This acquires and
161 1.2 ad * holds the turnstile chain lock (sleep queue interlock).
162 1.2 ad */
163 1.2 ad turnstile_t *
164 1.2 ad turnstile_lookup(wchan_t obj)
165 1.2 ad {
166 1.2 ad turnstile_t *ts;
167 1.2 ad tschain_t *tc;
168 1.2 ad
169 1.2 ad tc = &turnstile_tab[TS_HASH(obj)];
170 1.24 ad mutex_spin_enter(tc->tc_mutex);
171 1.2 ad
172 1.2 ad LIST_FOREACH(ts, &tc->tc_chain, ts_chain)
173 1.2 ad if (ts->ts_obj == obj)
174 1.2 ad return (ts);
175 1.2 ad
176 1.2 ad /*
177 1.2 ad * No turnstile yet for this lock. No problem, turnstile_block()
178 1.2 ad * handles this by fetching the turnstile from the blocking thread.
179 1.2 ad */
180 1.2 ad return (NULL);
181 1.2 ad }
182 1.2 ad
183 1.2 ad /*
184 1.2 ad * turnstile_exit:
185 1.2 ad *
186 1.2 ad * Abort a turnstile operation.
187 1.2 ad */
188 1.2 ad void
189 1.2 ad turnstile_exit(wchan_t obj)
190 1.2 ad {
191 1.2 ad tschain_t *tc;
192 1.2 ad
193 1.2 ad tc = &turnstile_tab[TS_HASH(obj)];
194 1.24 ad mutex_spin_exit(tc->tc_mutex);
195 1.2 ad }
196 1.2 ad
197 1.2 ad /*
198 1.31 yamt * turnstile_lendpri:
199 1.31 yamt *
200 1.31 yamt * Lend our priority to lwps on the blocking chain.
201 1.31 yamt *
202 1.32 yamt * If the current owner of the lock (l->l_wchan, set by sleepq_enqueue)
203 1.32 yamt * has a priority lower than ours (lwp_eprio(l)), lend our priority to
204 1.32 yamt * him to avoid priority inversions.
205 1.2 ad */
206 1.31 yamt
207 1.31 yamt static void
208 1.31 yamt turnstile_lendpri(lwp_t *cur)
209 1.2 ad {
210 1.31 yamt lwp_t * l = cur;
211 1.31 yamt pri_t prio;
212 1.19 ad
213 1.19 ad /*
214 1.22 ad * NOTE: if you get a panic in this code block, it is likely that
215 1.22 ad * a lock has been destroyed or corrupted while still in use. Try
216 1.22 ad * compiling a kernel with LOCKDEBUG to pinpoint the problem.
217 1.4 yamt */
218 1.31 yamt
219 1.31 yamt LOCKDEBUG_BARRIER(l->l_mutex, 1);
220 1.31 yamt KASSERT(l == curlwp);
221 1.11 ad prio = lwp_eprio(l);
222 1.4 yamt for (;;) {
223 1.31 yamt lwp_t *owner;
224 1.31 yamt turnstile_t *ts;
225 1.4 yamt bool dolock;
226 1.4 yamt
227 1.4 yamt if (l->l_wchan == NULL)
228 1.4 yamt break;
229 1.4 yamt
230 1.32 yamt /*
231 1.32 yamt * Ask syncobj the owner of the lock.
232 1.32 yamt */
233 1.4 yamt owner = (*l->l_syncobj->sobj_owner)(l->l_wchan);
234 1.4 yamt if (owner == NULL)
235 1.4 yamt break;
236 1.4 yamt
237 1.32 yamt /*
238 1.32 yamt * The owner may have changed as we have dropped the tc lock.
239 1.32 yamt */
240 1.25 bouyer if (cur == owner) {
241 1.25 bouyer /*
242 1.32 yamt * We own the lock: stop here, sleepq_block()
243 1.32 yamt * should wake up immediatly.
244 1.25 bouyer */
245 1.25 bouyer break;
246 1.25 bouyer }
247 1.32 yamt /*
248 1.32 yamt * Acquire owner->l_mutex if we don't have it yet.
249 1.32 yamt * Because we already have another LWP lock (l->l_mutex) held,
250 1.32 yamt * we need to play a try lock dance to avoid deadlock.
251 1.32 yamt */
252 1.32 yamt dolock = l->l_mutex != owner->l_mutex;
253 1.28 yamt if (l == owner || (dolock && !lwp_trylock(owner))) {
254 1.4 yamt /*
255 1.32 yamt * The owner was changed behind us or trylock failed.
256 1.32 yamt * Restart from curlwp.
257 1.32 yamt *
258 1.25 bouyer * Note that there may be a livelock here:
259 1.32 yamt * the owner may try grabing cur's lock (which is the
260 1.32 yamt * tc lock) while we're trying to grab the owner's lock.
261 1.4 yamt */
262 1.4 yamt lwp_unlock(l);
263 1.4 yamt l = cur;
264 1.4 yamt lwp_lock(l);
265 1.4 yamt prio = lwp_eprio(l);
266 1.4 yamt continue;
267 1.4 yamt }
268 1.32 yamt /*
269 1.32 yamt * If the owner's priority is already higher than ours,
270 1.32 yamt * there's nothing to do anymore.
271 1.32 yamt */
272 1.11 ad if (prio <= lwp_eprio(owner)) {
273 1.4 yamt if (dolock)
274 1.4 yamt lwp_unlock(owner);
275 1.4 yamt break;
276 1.4 yamt }
277 1.32 yamt /*
278 1.32 yamt * Lend our priority to the 'owner' LWP.
279 1.32 yamt *
280 1.32 yamt * Update lenders info for turnstile_unlendpri.
281 1.32 yamt */
282 1.4 yamt ts = l->l_ts;
283 1.4 yamt KASSERT(ts->ts_inheritor == owner || ts->ts_inheritor == NULL);
284 1.4 yamt if (ts->ts_inheritor == NULL) {
285 1.4 yamt ts->ts_inheritor = owner;
286 1.4 yamt ts->ts_eprio = prio;
287 1.4 yamt SLIST_INSERT_HEAD(&owner->l_pi_lenders, ts, ts_pichain);
288 1.4 yamt lwp_lendpri(owner, prio);
289 1.11 ad } else if (prio > ts->ts_eprio) {
290 1.4 yamt ts->ts_eprio = prio;
291 1.4 yamt lwp_lendpri(owner, prio);
292 1.4 yamt }
293 1.4 yamt if (dolock)
294 1.4 yamt lwp_unlock(l);
295 1.32 yamt LOCKDEBUG_BARRIER(owner->l_mutex, 1);
296 1.4 yamt l = owner;
297 1.4 yamt }
298 1.4 yamt LOCKDEBUG_BARRIER(l->l_mutex, 1);
299 1.4 yamt if (cur->l_mutex != l->l_mutex) {
300 1.4 yamt lwp_unlock(l);
301 1.4 yamt lwp_lock(cur);
302 1.4 yamt }
303 1.4 yamt LOCKDEBUG_BARRIER(cur->l_mutex, 1);
304 1.31 yamt }
305 1.31 yamt
306 1.31 yamt /*
307 1.31 yamt * turnstile_unlendpri: undo turnstile_lendpri
308 1.31 yamt */
309 1.31 yamt
310 1.31 yamt static void
311 1.31 yamt turnstile_unlendpri(turnstile_t *ts)
312 1.31 yamt {
313 1.31 yamt lwp_t * const l = curlwp;
314 1.31 yamt turnstile_t *iter;
315 1.31 yamt turnstile_t *next;
316 1.31 yamt turnstile_t *prev = NULL;
317 1.31 yamt pri_t prio;
318 1.31 yamt bool dolock;
319 1.31 yamt
320 1.31 yamt KASSERT(ts->ts_inheritor != NULL);
321 1.31 yamt ts->ts_inheritor = NULL;
322 1.31 yamt dolock = l->l_mutex == l->l_cpu->ci_schedstate.spc_lwplock;
323 1.31 yamt if (dolock) {
324 1.31 yamt lwp_lock(l);
325 1.31 yamt }
326 1.31 yamt
327 1.31 yamt /*
328 1.31 yamt * the following loop does two things.
329 1.31 yamt *
330 1.31 yamt * - remove ts from the list.
331 1.31 yamt *
332 1.31 yamt * - from the rest of the list, find the highest priority.
333 1.31 yamt */
334 1.31 yamt
335 1.31 yamt prio = -1;
336 1.31 yamt KASSERT(!SLIST_EMPTY(&l->l_pi_lenders));
337 1.31 yamt for (iter = SLIST_FIRST(&l->l_pi_lenders);
338 1.31 yamt iter != NULL; iter = next) {
339 1.31 yamt KASSERT(lwp_eprio(l) >= ts->ts_eprio);
340 1.31 yamt next = SLIST_NEXT(iter, ts_pichain);
341 1.31 yamt if (iter == ts) {
342 1.31 yamt if (prev == NULL) {
343 1.31 yamt SLIST_REMOVE_HEAD(&l->l_pi_lenders,
344 1.31 yamt ts_pichain);
345 1.31 yamt } else {
346 1.31 yamt SLIST_REMOVE_AFTER(prev, ts_pichain);
347 1.31 yamt }
348 1.31 yamt } else if (prio < iter->ts_eprio) {
349 1.31 yamt prio = iter->ts_eprio;
350 1.31 yamt }
351 1.31 yamt prev = iter;
352 1.31 yamt }
353 1.31 yamt
354 1.31 yamt lwp_lendpri(l, prio);
355 1.4 yamt
356 1.31 yamt if (dolock) {
357 1.31 yamt lwp_unlock(l);
358 1.31 yamt }
359 1.31 yamt }
360 1.31 yamt
361 1.31 yamt /*
362 1.31 yamt * turnstile_block:
363 1.31 yamt *
364 1.31 yamt * Enter an object into the turnstile chain and prepare the current
365 1.31 yamt * LWP for sleep.
366 1.31 yamt */
367 1.31 yamt void
368 1.31 yamt turnstile_block(turnstile_t *ts, int q, wchan_t obj, syncobj_t *sobj)
369 1.31 yamt {
370 1.31 yamt lwp_t * const l = curlwp; /* cached curlwp */
371 1.31 yamt turnstile_t *ots;
372 1.31 yamt tschain_t *tc;
373 1.31 yamt sleepq_t *sq;
374 1.31 yamt pri_t obase;
375 1.31 yamt
376 1.31 yamt tc = &turnstile_tab[TS_HASH(obj)];
377 1.31 yamt
378 1.31 yamt KASSERT(q == TS_READER_Q || q == TS_WRITER_Q);
379 1.31 yamt KASSERT(mutex_owned(tc->tc_mutex));
380 1.31 yamt KASSERT(l != NULL && l->l_ts != NULL);
381 1.31 yamt
382 1.31 yamt if (ts == NULL) {
383 1.31 yamt /*
384 1.31 yamt * We are the first thread to wait for this object;
385 1.31 yamt * lend our turnstile to it.
386 1.31 yamt */
387 1.31 yamt ts = l->l_ts;
388 1.31 yamt KASSERT(TS_ALL_WAITERS(ts) == 0);
389 1.31 yamt KASSERT(TAILQ_EMPTY(&ts->ts_sleepq[TS_READER_Q]) &&
390 1.31 yamt TAILQ_EMPTY(&ts->ts_sleepq[TS_WRITER_Q]));
391 1.31 yamt ts->ts_obj = obj;
392 1.31 yamt ts->ts_inheritor = NULL;
393 1.31 yamt LIST_INSERT_HEAD(&tc->tc_chain, ts, ts_chain);
394 1.31 yamt } else {
395 1.31 yamt /*
396 1.31 yamt * Object already has a turnstile. Put our turnstile
397 1.31 yamt * onto the free list, and reference the existing
398 1.31 yamt * turnstile instead.
399 1.31 yamt */
400 1.31 yamt ots = l->l_ts;
401 1.31 yamt KASSERT(ots->ts_free == NULL);
402 1.31 yamt ots->ts_free = ts->ts_free;
403 1.31 yamt ts->ts_free = ots;
404 1.31 yamt l->l_ts = ts;
405 1.31 yamt
406 1.31 yamt KASSERT(ts->ts_obj == obj);
407 1.31 yamt KASSERT(TS_ALL_WAITERS(ts) != 0);
408 1.31 yamt KASSERT(!TAILQ_EMPTY(&ts->ts_sleepq[TS_READER_Q]) ||
409 1.31 yamt !TAILQ_EMPTY(&ts->ts_sleepq[TS_WRITER_Q]));
410 1.31 yamt }
411 1.31 yamt
412 1.31 yamt sq = &ts->ts_sleepq[q];
413 1.31 yamt ts->ts_waiters[q]++;
414 1.31 yamt sleepq_enter(sq, l, tc->tc_mutex);
415 1.31 yamt LOCKDEBUG_BARRIER(tc->tc_mutex, 1);
416 1.31 yamt l->l_kpriority = true;
417 1.31 yamt obase = l->l_kpribase;
418 1.31 yamt if (obase < PRI_KTHREAD)
419 1.31 yamt l->l_kpribase = PRI_KTHREAD;
420 1.31 yamt sleepq_enqueue(sq, obj, "tstile", sobj);
421 1.31 yamt
422 1.31 yamt /*
423 1.31 yamt * Disable preemption across this entire block, as we may drop
424 1.31 yamt * scheduler locks (allowing preemption), and would prefer not
425 1.31 yamt * to be interrupted while in a state of flux.
426 1.31 yamt */
427 1.31 yamt KPREEMPT_DISABLE(l);
428 1.31 yamt KASSERT(tc->tc_mutex == l->l_mutex);
429 1.31 yamt turnstile_lendpri(l);
430 1.9 yamt sleepq_block(0, false);
431 1.31 yamt l->l_kpribase = obase;
432 1.31 yamt KPREEMPT_ENABLE(l);
433 1.2 ad }
434 1.2 ad
435 1.2 ad /*
436 1.2 ad * turnstile_wakeup:
437 1.2 ad *
438 1.2 ad * Wake up the specified number of threads that are blocked
439 1.2 ad * in a turnstile.
440 1.2 ad */
441 1.2 ad void
442 1.10 ad turnstile_wakeup(turnstile_t *ts, int q, int count, lwp_t *nl)
443 1.2 ad {
444 1.2 ad sleepq_t *sq;
445 1.2 ad tschain_t *tc;
446 1.10 ad lwp_t *l;
447 1.2 ad
448 1.2 ad tc = &turnstile_tab[TS_HASH(ts->ts_obj)];
449 1.2 ad sq = &ts->ts_sleepq[q];
450 1.2 ad
451 1.2 ad KASSERT(q == TS_READER_Q || q == TS_WRITER_Q);
452 1.2 ad KASSERT(count > 0 && count <= TS_WAITERS(ts, q));
453 1.24 ad KASSERT(mutex_owned(tc->tc_mutex));
454 1.4 yamt KASSERT(ts->ts_inheritor == curlwp || ts->ts_inheritor == NULL);
455 1.4 yamt
456 1.4 yamt /*
457 1.4 yamt * restore inherited priority if necessary.
458 1.4 yamt */
459 1.4 yamt
460 1.4 yamt if (ts->ts_inheritor != NULL) {
461 1.31 yamt turnstile_unlendpri(ts);
462 1.4 yamt }
463 1.2 ad
464 1.2 ad if (nl != NULL) {
465 1.2 ad #if defined(DEBUG) || defined(LOCKDEBUG)
466 1.21 ad TAILQ_FOREACH(l, sq, l_sleepchain) {
467 1.2 ad if (l == nl)
468 1.2 ad break;
469 1.2 ad }
470 1.2 ad if (l == NULL)
471 1.2 ad panic("turnstile_wakeup: nl not on sleepq");
472 1.2 ad #endif
473 1.21 ad turnstile_remove(ts, nl, q);
474 1.2 ad } else {
475 1.2 ad while (count-- > 0) {
476 1.21 ad l = TAILQ_FIRST(sq);
477 1.2 ad KASSERT(l != NULL);
478 1.21 ad turnstile_remove(ts, l, q);
479 1.2 ad }
480 1.2 ad }
481 1.24 ad mutex_spin_exit(tc->tc_mutex);
482 1.2 ad }
483 1.2 ad
484 1.2 ad /*
485 1.2 ad * turnstile_unsleep:
486 1.2 ad *
487 1.2 ad * Remove an LWP from the turnstile. This is called when the LWP has
488 1.2 ad * not been awoken normally but instead interrupted: for example, if it
489 1.2 ad * has received a signal. It's not a valid action for turnstiles,
490 1.2 ad * since LWPs blocking on a turnstile are not interruptable.
491 1.2 ad */
492 1.26 rmind void
493 1.16 ad turnstile_unsleep(lwp_t *l, bool cleanup)
494 1.2 ad {
495 1.2 ad
496 1.2 ad lwp_unlock(l);
497 1.2 ad panic("turnstile_unsleep");
498 1.2 ad }
499 1.2 ad
500 1.2 ad /*
501 1.2 ad * turnstile_changepri:
502 1.2 ad *
503 1.4 yamt * Adjust the priority of an LWP residing on a turnstile.
504 1.2 ad */
505 1.2 ad void
506 1.10 ad turnstile_changepri(lwp_t *l, pri_t pri)
507 1.2 ad {
508 1.2 ad
509 1.4 yamt /* XXX priority inheritance */
510 1.4 yamt sleepq_changepri(l, pri);
511 1.2 ad }
512 1.2 ad
513 1.2 ad #if defined(LOCKDEBUG)
514 1.2 ad /*
515 1.2 ad * turnstile_print:
516 1.2 ad *
517 1.2 ad * Given the address of a lock object, print the contents of a
518 1.2 ad * turnstile.
519 1.2 ad */
520 1.2 ad void
521 1.2 ad turnstile_print(volatile void *obj, void (*pr)(const char *, ...))
522 1.2 ad {
523 1.2 ad turnstile_t *ts;
524 1.2 ad tschain_t *tc;
525 1.2 ad sleepq_t *rsq, *wsq;
526 1.10 ad lwp_t *l;
527 1.2 ad
528 1.2 ad tc = &turnstile_tab[TS_HASH(obj)];
529 1.2 ad
530 1.2 ad LIST_FOREACH(ts, &tc->tc_chain, ts_chain)
531 1.2 ad if (ts->ts_obj == obj)
532 1.2 ad break;
533 1.2 ad
534 1.9 yamt (*pr)("Turnstile chain at %p.\n", tc);
535 1.2 ad if (ts == NULL) {
536 1.2 ad (*pr)("=> No active turnstile for this lock.\n");
537 1.2 ad return;
538 1.2 ad }
539 1.2 ad
540 1.2 ad rsq = &ts->ts_sleepq[TS_READER_Q];
541 1.2 ad wsq = &ts->ts_sleepq[TS_WRITER_Q];
542 1.2 ad
543 1.2 ad (*pr)("=> Turnstile at %p (wrq=%p, rdq=%p).\n", ts, rsq, wsq);
544 1.2 ad
545 1.21 ad (*pr)("=> %d waiting readers:", TS_WAITERS(ts, TS_READER_Q));
546 1.21 ad TAILQ_FOREACH(l, rsq, l_sleepchain) {
547 1.2 ad (*pr)(" %p", l);
548 1.2 ad }
549 1.2 ad (*pr)("\n");
550 1.2 ad
551 1.21 ad (*pr)("=> %d waiting writers:", TS_WAITERS(ts, TS_WRITER_Q));
552 1.21 ad TAILQ_FOREACH(l, wsq, l_sleepchain) {
553 1.2 ad (*pr)(" %p", l);
554 1.2 ad }
555 1.2 ad (*pr)("\n");
556 1.2 ad }
557 1.2 ad #endif /* LOCKDEBUG */
558