27 #include <sys/cdefs.h>
30 #include "opt_ktrace.h"
32 #include <sys/param.h>
33 #include <sys/systm.h>
35 #include <sys/mutex.h>
37 #include <sys/kernel.h>
39 #include <sys/condvar.h>
40 #include <sys/sched.h>
41 #include <sys/signalvar.h>
42 #include <sys/sleepqueue.h>
43 #include <sys/resourcevar.h>
46 #include <sys/ktrace.h>
52 #define CV_ASSERT(cvp, lock, td) do { \
53 KASSERT((td) != NULL, ("%s: td NULL", __func__)); \
54 KASSERT(TD_IS_RUNNING(td), ("%s: not TDS_RUNNING", __func__)); \
55 KASSERT((cvp) != NULL, ("%s: cvp NULL", __func__)); \
56 KASSERT((lock) != NULL, ("%s: lock NULL", __func__)); \
66 cvp->cv_description = desc;
83 KASSERT(sq == NULL, (
"%s: associated sleep queue non-empty", __func__));
95 _cv_wait(
struct cv *cvp,
struct lock_object *lock)
97 WITNESS_SAVE_DECL(lock_witness);
98 struct lock_class *
class;
105 if (KTRPOINT(td, KTR_CSW))
106 ktrcsw(1, 0, cv_wmesg(cvp));
109 WITNESS_WARN(WARN_GIANTOK | WARN_SLEEPOK, lock,
110 "Waiting on \"%s\"", cvp->cv_description);
111 class = LOCK_CLASS(lock);
126 if (lock == &
Giant.lock_object)
127 mtx_assert(&
Giant, MA_OWNED);
130 sleepq_add(cvp, lock, cvp->cv_description, SLEEPQ_CONDVAR, 0);
131 if (lock != &
Giant.lock_object) {
132 if (class->lc_flags & LC_SLEEPABLE)
134 WITNESS_SAVE(lock, lock_witness);
135 lock_state =
class->lc_unlock(lock);
136 if (class->lc_flags & LC_SLEEPABLE)
142 if (KTRPOINT(td, KTR_CSW))
143 ktrcsw(0, 0, cv_wmesg(cvp));
146 if (lock != &
Giant.lock_object) {
147 class->lc_lock(lock, lock_state);
148 WITNESS_RESTORE(lock, lock_witness);
159 struct lock_class *
class;
164 if (KTRPOINT(td, KTR_CSW))
165 ktrcsw(1, 0, cv_wmesg(cvp));
168 WITNESS_WARN(WARN_GIANTOK | WARN_SLEEPOK, lock,
169 "Waiting on \"%s\"", cvp->cv_description);
170 KASSERT(lock != &
Giant.lock_object,
171 (
"cv_wait_unlock cannot be used with Giant"));
172 class = LOCK_CLASS(lock);
181 class->lc_unlock(lock);
190 sleepq_add(cvp, lock, cvp->cv_description, SLEEPQ_CONDVAR, 0);
191 if (class->lc_flags & LC_SLEEPABLE)
193 class->lc_unlock(lock);
194 if (class->lc_flags & LC_SLEEPABLE)
199 if (KTRPOINT(td, KTR_CSW))
200 ktrcsw(0, 0, cv_wmesg(cvp));
214 WITNESS_SAVE_DECL(lock_witness);
215 struct lock_class *
class;
217 int lock_state, rval;
222 if (KTRPOINT(td, KTR_CSW))
223 ktrcsw(1, 0, cv_wmesg(cvp));
226 WITNESS_WARN(WARN_GIANTOK | WARN_SLEEPOK, lock,
227 "Waiting on \"%s\"", cvp->cv_description);
228 class = LOCK_CLASS(lock);
243 if (lock == &
Giant.lock_object)
244 mtx_assert(&
Giant, MA_OWNED);
247 sleepq_add(cvp, lock, cvp->cv_description, SLEEPQ_CONDVAR |
248 SLEEPQ_INTERRUPTIBLE, 0);
249 if (lock != &
Giant.lock_object) {
250 if (class->lc_flags & LC_SLEEPABLE)
252 WITNESS_SAVE(lock, lock_witness);
253 lock_state =
class->lc_unlock(lock);
254 if (class->lc_flags & LC_SLEEPABLE)
260 if (KTRPOINT(td, KTR_CSW))
261 ktrcsw(0, 0, cv_wmesg(cvp));
264 if (lock != &
Giant.lock_object) {
265 class->lc_lock(lock, lock_state);
266 WITNESS_RESTORE(lock, lock_witness);
280 WITNESS_SAVE_DECL(lock_witness);
281 struct lock_class *
class;
283 int lock_state, rval;
288 if (KTRPOINT(td, KTR_CSW))
289 ktrcsw(1, 0, cv_wmesg(cvp));
292 WITNESS_WARN(WARN_GIANTOK | WARN_SLEEPOK, lock,
293 "Waiting on \"%s\"", cvp->cv_description);
294 class = LOCK_CLASS(lock);
309 if (lock == &
Giant.lock_object)
310 mtx_assert(&
Giant, MA_OWNED);
313 sleepq_add(cvp, lock, cvp->cv_description, SLEEPQ_CONDVAR, 0);
315 if (lock != &
Giant.lock_object) {
316 if (class->lc_flags & LC_SLEEPABLE)
318 WITNESS_SAVE(lock, lock_witness);
319 lock_state =
class->lc_unlock(lock);
320 if (class->lc_flags & LC_SLEEPABLE)
326 if (KTRPOINT(td, KTR_CSW))
327 ktrcsw(0, 0, cv_wmesg(cvp));
330 if (lock != &
Giant.lock_object) {
331 class->lc_lock(lock, lock_state);
332 WITNESS_RESTORE(lock, lock_witness);
347 WITNESS_SAVE_DECL(lock_witness);
348 struct lock_class *
class;
350 int lock_state, rval;
355 if (KTRPOINT(td, KTR_CSW))
356 ktrcsw(1, 0, cv_wmesg(cvp));
359 WITNESS_WARN(WARN_GIANTOK | WARN_SLEEPOK, lock,
360 "Waiting on \"%s\"", cvp->cv_description);
361 class = LOCK_CLASS(lock);
376 if (lock == &
Giant.lock_object)
377 mtx_assert(&
Giant, MA_OWNED);
380 sleepq_add(cvp, lock, cvp->cv_description, SLEEPQ_CONDVAR |
381 SLEEPQ_INTERRUPTIBLE, 0);
383 if (lock != &
Giant.lock_object) {
384 if (class->lc_flags & LC_SLEEPABLE)
386 WITNESS_SAVE(lock, lock_witness);
387 lock_state =
class->lc_unlock(lock);
388 if (class->lc_flags & LC_SLEEPABLE)
394 if (KTRPOINT(td, KTR_CSW))
395 ktrcsw(0, 0, cv_wmesg(cvp));
398 if (lock != &
Giant.lock_object) {
399 class->lc_lock(lock, lock_state);
400 WITNESS_RESTORE(lock, lock_witness);
420 if (cvp->cv_waiters > 0) {
446 if (cvp->cv_waiters > 0) {
struct sleepqueue * sleepq_lookup(void *wchan)
void sleepq_release(void *wchan)
void sleepq_add(void *wchan, struct lock_object *lock, const char *wmesg, int flags, int queue)
void cv_destroy(struct cv *cvp)
int sleepq_timedwait_sig(void *wchan, int pri)
int _cv_timedwait(struct cv *cvp, struct lock_object *lock, int timo)
void cv_signal(struct cv *cvp)
void sleepq_set_timeout(void *wchan, int timo)
int sleepq_wait_sig(void *wchan, int pri)
void sleepq_lock(void *wchan)
#define CV_ASSERT(cvp, lock, td)
int _cv_wait_sig(struct cv *cvp, struct lock_object *lock)
void sleepq_wait(void *wchan, int pri)
void cv_broadcastpri(struct cv *cvp, int pri)
int sleepq_broadcast(void *wchan, int flags, int pri, int queue)
void cv_init(struct cv *cvp, const char *desc)
int sleepq_signal(void *wchan, int flags, int pri, int queue)
int _cv_timedwait_sig(struct cv *cvp, struct lock_object *lock, int timo)
void _cv_wait(struct cv *cvp, struct lock_object *lock)
void _cv_wait_unlock(struct cv *cvp, struct lock_object *lock)
int sleepq_timedwait(void *wchan, int pri)