sys_lwp.c revision 1.81 1 1.81 ad /* $NetBSD: sys_lwp.c,v 1.81 2020/05/23 20:45:10 ad Exp $ */
2 1.2 ad
3 1.2 ad /*-
4 1.72 ad * Copyright (c) 2001, 2006, 2007, 2008, 2019, 2020 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 Nathan J. Williams, 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 * Lightweight process (LWP) system calls. See kern_lwp.c for a description
34 1.2 ad * of LWPs.
35 1.2 ad */
36 1.2 ad
37 1.2 ad #include <sys/cdefs.h>
38 1.81 ad __KERNEL_RCSID(0, "$NetBSD: sys_lwp.c,v 1.81 2020/05/23 20:45:10 ad Exp $");
39 1.2 ad
40 1.2 ad #include <sys/param.h>
41 1.2 ad #include <sys/systm.h>
42 1.2 ad #include <sys/pool.h>
43 1.2 ad #include <sys/proc.h>
44 1.2 ad #include <sys/types.h>
45 1.2 ad #include <sys/syscallargs.h>
46 1.2 ad #include <sys/kauth.h>
47 1.2 ad #include <sys/kmem.h>
48 1.70 kamil #include <sys/ptrace.h>
49 1.2 ad #include <sys/sleepq.h>
50 1.30 ad #include <sys/lwpctl.h>
51 1.45 ad #include <sys/cpu.h>
52 1.81 ad #include <sys/pserialize.h>
53 1.2 ad
54 1.2 ad #include <uvm/uvm_extern.h>
55 1.2 ad
56 1.2 ad #define LWP_UNPARK_MAX 1024
57 1.2 ad
58 1.69 maxv static const stack_t lwp_ss_init = SS_INIT;
59 1.69 maxv
60 1.74 ad syncobj_t lwp_park_syncobj = {
61 1.74 ad .sobj_flag = SOBJ_SLEEPQ_NULL,
62 1.63 ozaki .sobj_unsleep = sleepq_unsleep,
63 1.63 ozaki .sobj_changepri = sleepq_changepri,
64 1.63 ozaki .sobj_lendpri = sleepq_lendpri,
65 1.63 ozaki .sobj_owner = syncobj_noowner,
66 1.2 ad };
67 1.2 ad
68 1.64 kamil static void
69 1.64 kamil mi_startlwp(void *arg)
70 1.64 kamil {
71 1.64 kamil struct lwp *l = curlwp;
72 1.64 kamil struct proc *p = l->l_proc;
73 1.64 kamil
74 1.65 kamil (p->p_emul->e_startlwp)(arg);
75 1.65 kamil
76 1.64 kamil /* If the process is traced, report lwp creation to a debugger */
77 1.66 kamil if ((p->p_slflag & (PSL_TRACED|PSL_TRACELWP_CREATE)) ==
78 1.64 kamil (PSL_TRACED|PSL_TRACELWP_CREATE)) {
79 1.64 kamil /* Paranoid check */
80 1.64 kamil mutex_enter(proc_lock);
81 1.66 kamil if ((p->p_slflag & (PSL_TRACED|PSL_TRACELWP_CREATE)) !=
82 1.66 kamil (PSL_TRACED|PSL_TRACELWP_CREATE)) {
83 1.64 kamil mutex_exit(proc_lock);
84 1.65 kamil return;
85 1.64 kamil }
86 1.64 kamil
87 1.64 kamil mutex_enter(p->p_lock);
88 1.70 kamil eventswitch(TRAP_LWP, PTRACE_LWP_CREATE, l->l_lid);
89 1.64 kamil }
90 1.64 kamil }
91 1.64 kamil
92 1.2 ad int
93 1.72 ad do_lwp_create(lwp_t *l, void *arg, u_long flags, lwp_t **l2,
94 1.59 christos const sigset_t *sigmask, const stack_t *sigstk)
95 1.2 ad {
96 1.2 ad struct proc *p = l->l_proc;
97 1.2 ad vaddr_t uaddr;
98 1.54 martin int error;
99 1.2 ad
100 1.2 ad /* XXX check against resource limits */
101 1.2 ad
102 1.46 rmind uaddr = uvm_uarea_alloc();
103 1.54 martin if (__predict_false(uaddr == 0))
104 1.2 ad return ENOMEM;
105 1.2 ad
106 1.59 christos error = lwp_create(l, p, uaddr, flags & LWP_DETACHED, NULL, 0,
107 1.72 ad mi_startlwp, arg, l2, l->l_class, sigmask, &lwp_ss_init);
108 1.46 rmind if (__predict_false(error)) {
109 1.46 rmind uvm_uarea_free(uaddr);
110 1.18 rmind return error;
111 1.18 rmind }
112 1.2 ad
113 1.2 ad return 0;
114 1.2 ad }
115 1.2 ad
116 1.2 ad int
117 1.54 martin sys__lwp_create(struct lwp *l, const struct sys__lwp_create_args *uap,
118 1.54 martin register_t *retval)
119 1.54 martin {
120 1.54 martin /* {
121 1.54 martin syscallarg(const ucontext_t *) ucp;
122 1.54 martin syscallarg(u_long) flags;
123 1.54 martin syscallarg(lwpid_t *) new_lwp;
124 1.54 martin } */
125 1.54 martin struct proc *p = l->l_proc;
126 1.57 maxv ucontext_t *newuc;
127 1.72 ad lwp_t *l2;
128 1.54 martin int error;
129 1.54 martin
130 1.54 martin newuc = kmem_alloc(sizeof(ucontext_t), KM_SLEEP);
131 1.54 martin error = copyin(SCARG(uap, ucp), newuc, p->p_emul->e_ucsize);
132 1.54 martin if (error)
133 1.54 martin goto fail;
134 1.54 martin
135 1.54 martin /* validate the ucontext */
136 1.54 martin if ((newuc->uc_flags & _UC_CPU) == 0) {
137 1.54 martin error = EINVAL;
138 1.54 martin goto fail;
139 1.54 martin }
140 1.54 martin error = cpu_mcontext_validate(l, &newuc->uc_mcontext);
141 1.54 martin if (error)
142 1.54 martin goto fail;
143 1.54 martin
144 1.59 christos const sigset_t *sigmask = newuc->uc_flags & _UC_SIGMASK ?
145 1.59 christos &newuc->uc_sigmask : &l->l_sigmask;
146 1.72 ad error = do_lwp_create(l, newuc, SCARG(uap, flags), &l2, sigmask,
147 1.59 christos &SS_INIT);
148 1.54 martin if (error)
149 1.54 martin goto fail;
150 1.54 martin
151 1.72 ad error = copyout(&l2->l_lid, SCARG(uap, new_lwp), sizeof(l2->l_lid));
152 1.73 ad if (error == 0) {
153 1.72 ad lwp_start(l2, SCARG(uap, flags));
154 1.73 ad return 0;
155 1.73 ad }
156 1.73 ad lwp_exit(l2);
157 1.72 ad fail:
158 1.54 martin kmem_free(newuc, sizeof(ucontext_t));
159 1.54 martin return error;
160 1.54 martin }
161 1.54 martin
162 1.54 martin int
163 1.32 dsl sys__lwp_exit(struct lwp *l, const void *v, register_t *retval)
164 1.2 ad {
165 1.2 ad
166 1.2 ad lwp_exit(l);
167 1.2 ad return 0;
168 1.2 ad }
169 1.2 ad
170 1.2 ad int
171 1.32 dsl sys__lwp_self(struct lwp *l, const void *v, register_t *retval)
172 1.2 ad {
173 1.2 ad
174 1.2 ad *retval = l->l_lid;
175 1.2 ad return 0;
176 1.2 ad }
177 1.2 ad
178 1.2 ad int
179 1.32 dsl sys__lwp_getprivate(struct lwp *l, const void *v, register_t *retval)
180 1.2 ad {
181 1.2 ad
182 1.2 ad *retval = (uintptr_t)l->l_private;
183 1.2 ad return 0;
184 1.2 ad }
185 1.2 ad
186 1.2 ad int
187 1.47 rmind sys__lwp_setprivate(struct lwp *l, const struct sys__lwp_setprivate_args *uap,
188 1.47 rmind register_t *retval)
189 1.2 ad {
190 1.32 dsl /* {
191 1.2 ad syscallarg(void *) ptr;
192 1.32 dsl } */
193 1.2 ad
194 1.52 chs return lwp_setprivate(l, SCARG(uap, ptr));
195 1.2 ad }
196 1.2 ad
197 1.2 ad int
198 1.47 rmind sys__lwp_suspend(struct lwp *l, const struct sys__lwp_suspend_args *uap,
199 1.47 rmind register_t *retval)
200 1.2 ad {
201 1.32 dsl /* {
202 1.2 ad syscallarg(lwpid_t) target;
203 1.32 dsl } */
204 1.2 ad struct proc *p = l->l_proc;
205 1.2 ad struct lwp *t;
206 1.2 ad int error;
207 1.2 ad
208 1.39 ad mutex_enter(p->p_lock);
209 1.2 ad if ((t = lwp_find(p, SCARG(uap, target))) == NULL) {
210 1.39 ad mutex_exit(p->p_lock);
211 1.2 ad return ESRCH;
212 1.2 ad }
213 1.2 ad
214 1.2 ad /*
215 1.2 ad * Check for deadlock, which is only possible when we're suspending
216 1.2 ad * ourself. XXX There is a short race here, as p_nrlwps is only
217 1.2 ad * incremented when an LWP suspends itself on the kernel/user
218 1.2 ad * boundary. It's still possible to kill -9 the process so we
219 1.2 ad * don't bother checking further.
220 1.2 ad */
221 1.2 ad lwp_lock(t);
222 1.2 ad if ((t == l && p->p_nrlwps == 1) ||
223 1.4 pavel (l->l_flag & (LW_WCORE | LW_WEXIT)) != 0) {
224 1.2 ad lwp_unlock(t);
225 1.39 ad mutex_exit(p->p_lock);
226 1.2 ad return EDEADLK;
227 1.2 ad }
228 1.2 ad
229 1.2 ad /*
230 1.2 ad * Suspend the LWP. XXX If it's on a different CPU, we should wait
231 1.2 ad * for it to be preempted, where it will put itself to sleep.
232 1.2 ad *
233 1.2 ad * Suspension of the current LWP will happen on return to userspace.
234 1.2 ad */
235 1.2 ad error = lwp_suspend(l, t);
236 1.23 rmind if (error) {
237 1.39 ad mutex_exit(p->p_lock);
238 1.23 rmind return error;
239 1.23 rmind }
240 1.23 rmind
241 1.23 rmind /*
242 1.23 rmind * Wait for:
243 1.23 rmind * o process exiting
244 1.23 rmind * o target LWP suspended
245 1.23 rmind * o target LWP not suspended and L_WSUSPEND clear
246 1.23 rmind * o target LWP exited
247 1.23 rmind */
248 1.23 rmind for (;;) {
249 1.39 ad error = cv_wait_sig(&p->p_lwpcv, p->p_lock);
250 1.23 rmind if (error) {
251 1.23 rmind error = ERESTART;
252 1.23 rmind break;
253 1.23 rmind }
254 1.25 rmind if (lwp_find(p, SCARG(uap, target)) == NULL) {
255 1.25 rmind error = ESRCH;
256 1.25 rmind break;
257 1.25 rmind }
258 1.23 rmind if ((l->l_flag | t->l_flag) & (LW_WCORE | LW_WEXIT)) {
259 1.23 rmind error = ERESTART;
260 1.23 rmind break;
261 1.23 rmind }
262 1.23 rmind if (t->l_stat == LSSUSPENDED ||
263 1.23 rmind (t->l_flag & LW_WSUSPEND) == 0)
264 1.23 rmind break;
265 1.23 rmind }
266 1.39 ad mutex_exit(p->p_lock);
267 1.2 ad
268 1.2 ad return error;
269 1.2 ad }
270 1.2 ad
271 1.2 ad int
272 1.47 rmind sys__lwp_continue(struct lwp *l, const struct sys__lwp_continue_args *uap,
273 1.47 rmind register_t *retval)
274 1.2 ad {
275 1.32 dsl /* {
276 1.2 ad syscallarg(lwpid_t) target;
277 1.32 dsl } */
278 1.2 ad int error;
279 1.2 ad struct proc *p = l->l_proc;
280 1.2 ad struct lwp *t;
281 1.2 ad
282 1.2 ad error = 0;
283 1.2 ad
284 1.39 ad mutex_enter(p->p_lock);
285 1.2 ad if ((t = lwp_find(p, SCARG(uap, target))) == NULL) {
286 1.39 ad mutex_exit(p->p_lock);
287 1.2 ad return ESRCH;
288 1.2 ad }
289 1.2 ad
290 1.2 ad lwp_lock(t);
291 1.2 ad lwp_continue(t);
292 1.39 ad mutex_exit(p->p_lock);
293 1.2 ad
294 1.2 ad return error;
295 1.2 ad }
296 1.2 ad
297 1.2 ad int
298 1.47 rmind sys__lwp_wakeup(struct lwp *l, const struct sys__lwp_wakeup_args *uap,
299 1.47 rmind register_t *retval)
300 1.2 ad {
301 1.32 dsl /* {
302 1.2 ad syscallarg(lwpid_t) target;
303 1.32 dsl } */
304 1.2 ad struct lwp *t;
305 1.2 ad struct proc *p;
306 1.2 ad int error;
307 1.2 ad
308 1.2 ad p = l->l_proc;
309 1.39 ad mutex_enter(p->p_lock);
310 1.2 ad
311 1.2 ad if ((t = lwp_find(p, SCARG(uap, target))) == NULL) {
312 1.39 ad mutex_exit(p->p_lock);
313 1.2 ad return ESRCH;
314 1.2 ad }
315 1.2 ad
316 1.2 ad lwp_lock(t);
317 1.15 ad t->l_flag |= (LW_CANCELLED | LW_UNPARKED);
318 1.2 ad
319 1.2 ad if (t->l_stat != LSSLEEP) {
320 1.16 ad lwp_unlock(t);
321 1.2 ad error = ENODEV;
322 1.16 ad } else if ((t->l_flag & LW_SINTR) == 0) {
323 1.16 ad lwp_unlock(t);
324 1.2 ad error = EBUSY;
325 1.16 ad } else {
326 1.16 ad /* Wake it up. lwp_unsleep() will release the LWP lock. */
327 1.46 rmind lwp_unsleep(t, true);
328 1.16 ad error = 0;
329 1.2 ad }
330 1.2 ad
331 1.39 ad mutex_exit(p->p_lock);
332 1.2 ad
333 1.2 ad return error;
334 1.2 ad }
335 1.2 ad
336 1.2 ad int
337 1.47 rmind sys__lwp_wait(struct lwp *l, const struct sys__lwp_wait_args *uap,
338 1.47 rmind register_t *retval)
339 1.2 ad {
340 1.32 dsl /* {
341 1.2 ad syscallarg(lwpid_t) wait_for;
342 1.2 ad syscallarg(lwpid_t *) departed;
343 1.32 dsl } */
344 1.2 ad struct proc *p = l->l_proc;
345 1.2 ad int error;
346 1.2 ad lwpid_t dep;
347 1.2 ad
348 1.39 ad mutex_enter(p->p_lock);
349 1.55 rmind error = lwp_wait(l, SCARG(uap, wait_for), &dep, false);
350 1.39 ad mutex_exit(p->p_lock);
351 1.2 ad
352 1.55 rmind if (!error && SCARG(uap, departed)) {
353 1.2 ad error = copyout(&dep, SCARG(uap, departed), sizeof(dep));
354 1.2 ad }
355 1.2 ad
356 1.55 rmind return error;
357 1.2 ad }
358 1.2 ad
359 1.2 ad int
360 1.47 rmind sys__lwp_kill(struct lwp *l, const struct sys__lwp_kill_args *uap,
361 1.47 rmind register_t *retval)
362 1.2 ad {
363 1.32 dsl /* {
364 1.2 ad syscallarg(lwpid_t) target;
365 1.2 ad syscallarg(int) signo;
366 1.32 dsl } */
367 1.2 ad struct proc *p = l->l_proc;
368 1.2 ad struct lwp *t;
369 1.2 ad ksiginfo_t ksi;
370 1.2 ad int signo = SCARG(uap, signo);
371 1.2 ad int error = 0;
372 1.2 ad
373 1.2 ad if ((u_int)signo >= NSIG)
374 1.2 ad return EINVAL;
375 1.2 ad
376 1.2 ad KSI_INIT(&ksi);
377 1.2 ad ksi.ksi_signo = signo;
378 1.43 ad ksi.ksi_code = SI_LWP;
379 1.2 ad ksi.ksi_pid = p->p_pid;
380 1.2 ad ksi.ksi_uid = kauth_cred_geteuid(l->l_cred);
381 1.2 ad ksi.ksi_lid = SCARG(uap, target);
382 1.2 ad
383 1.38 ad mutex_enter(proc_lock);
384 1.39 ad mutex_enter(p->p_lock);
385 1.2 ad if ((t = lwp_find(p, ksi.ksi_lid)) == NULL)
386 1.2 ad error = ESRCH;
387 1.2 ad else if (signo != 0)
388 1.2 ad kpsignal2(p, &ksi);
389 1.39 ad mutex_exit(p->p_lock);
390 1.38 ad mutex_exit(proc_lock);
391 1.2 ad
392 1.2 ad return error;
393 1.2 ad }
394 1.2 ad
395 1.2 ad int
396 1.47 rmind sys__lwp_detach(struct lwp *l, const struct sys__lwp_detach_args *uap,
397 1.47 rmind register_t *retval)
398 1.2 ad {
399 1.32 dsl /* {
400 1.2 ad syscallarg(lwpid_t) target;
401 1.32 dsl } */
402 1.2 ad struct proc *p;
403 1.2 ad struct lwp *t;
404 1.2 ad lwpid_t target;
405 1.2 ad int error;
406 1.2 ad
407 1.2 ad target = SCARG(uap, target);
408 1.2 ad p = l->l_proc;
409 1.2 ad
410 1.39 ad mutex_enter(p->p_lock);
411 1.2 ad
412 1.2 ad if (l->l_lid == target)
413 1.2 ad t = l;
414 1.2 ad else {
415 1.2 ad /*
416 1.2 ad * We can't use lwp_find() here because the target might
417 1.2 ad * be a zombie.
418 1.2 ad */
419 1.79 thorpej t = proc_find_lwp(p, target);
420 1.74 ad KASSERT(t == NULL || t->l_lid == target);
421 1.2 ad }
422 1.2 ad
423 1.2 ad /*
424 1.2 ad * If the LWP is already detached, there's nothing to do.
425 1.2 ad * If it's a zombie, we need to clean up after it. LSZOMB
426 1.2 ad * is visible with the proc mutex held.
427 1.2 ad *
428 1.2 ad * After we have detached or released the LWP, kick any
429 1.2 ad * other LWPs that may be sitting in _lwp_wait(), waiting
430 1.2 ad * for the target LWP to exit.
431 1.2 ad */
432 1.2 ad if (t != NULL && t->l_stat != LSIDL) {
433 1.2 ad if ((t->l_prflag & LPR_DETACHED) == 0) {
434 1.2 ad p->p_ndlwps++;
435 1.2 ad t->l_prflag |= LPR_DETACHED;
436 1.2 ad if (t->l_stat == LSZOMB) {
437 1.17 ad /* Releases proc mutex. */
438 1.17 ad lwp_free(t, false, false);
439 1.2 ad return 0;
440 1.2 ad }
441 1.2 ad error = 0;
442 1.17 ad
443 1.17 ad /*
444 1.17 ad * Have any LWPs sleeping in lwp_wait() recheck
445 1.17 ad * for deadlock.
446 1.17 ad */
447 1.17 ad cv_broadcast(&p->p_lwpcv);
448 1.2 ad } else
449 1.2 ad error = EINVAL;
450 1.2 ad } else
451 1.2 ad error = ESRCH;
452 1.2 ad
453 1.39 ad mutex_exit(p->p_lock);
454 1.2 ad
455 1.2 ad return error;
456 1.2 ad }
457 1.2 ad
458 1.2 ad int
459 1.74 ad lwp_unpark(const lwpid_t *tp, const u_int ntargets)
460 1.2 ad {
461 1.74 ad u_int target;
462 1.81 ad int error, s;
463 1.24 ad proc_t *p;
464 1.24 ad lwp_t *t;
465 1.24 ad
466 1.24 ad p = curproc;
467 1.74 ad error = 0;
468 1.24 ad
469 1.81 ad s = pserialize_read_enter();
470 1.74 ad for (target = 0; target < ntargets; target++) {
471 1.81 ad t = proc_find_lwp_unlocked(p, tp[target]);
472 1.79 thorpej if (__predict_false(t == NULL)) {
473 1.74 ad error = ESRCH;
474 1.74 ad continue;
475 1.74 ad }
476 1.74 ad
477 1.81 ad KASSERT(lwp_locked(t, NULL));
478 1.81 ad
479 1.79 thorpej if (__predict_true(t->l_syncobj == &lwp_park_syncobj)) {
480 1.75 ad /*
481 1.75 ad * As expected it's parked, so wake it up.
482 1.75 ad * lwp_unsleep() will release the LWP lock.
483 1.75 ad */
484 1.74 ad lwp_unsleep(t, true);
485 1.80 ad } else if (__predict_false(t->l_stat == LSZOMB)) {
486 1.80 ad lwp_unlock(t);
487 1.80 ad error = ESRCH;
488 1.74 ad } else {
489 1.74 ad /*
490 1.75 ad * It hasn't parked yet because the wakeup side won
491 1.75 ad * the race, or something else has happened to make
492 1.75 ad * the thread not park. Why doesn't really matter.
493 1.75 ad * Set the operation pending, so that the next call
494 1.75 ad * to _lwp_park() in the LWP returns early. If it
495 1.75 ad * turns out to be a spurious wakeup, no harm done.
496 1.74 ad */
497 1.74 ad t->l_flag |= LW_UNPARKED;
498 1.74 ad lwp_unlock(t);
499 1.74 ad }
500 1.24 ad }
501 1.81 ad pserialize_read_exit(s);
502 1.20 dsl
503 1.74 ad return error;
504 1.20 dsl }
505 1.20 dsl
506 1.20 dsl int
507 1.74 ad lwp_park(clockid_t clock_id, int flags, struct timespec *ts)
508 1.20 dsl {
509 1.2 ad int timo, error;
510 1.62 christos struct timespec start;
511 1.24 ad lwp_t *l;
512 1.62 christos bool timeremain = !(flags & TIMER_ABSTIME) && ts;
513 1.2 ad
514 1.20 dsl if (ts != NULL) {
515 1.62 christos if ((error = ts2timo(clock_id, flags, ts, &timo,
516 1.62 christos timeremain ? &start : NULL)) != 0)
517 1.2 ad return error;
518 1.24 ad KASSERT(timo != 0);
519 1.48 rmind } else {
520 1.2 ad timo = 0;
521 1.48 rmind }
522 1.2 ad
523 1.2 ad /*
524 1.2 ad * Before going the full route and blocking, check to see if an
525 1.2 ad * unpark op is pending.
526 1.2 ad */
527 1.74 ad l = curlwp;
528 1.19 yamt lwp_lock(l);
529 1.8 ad if ((l->l_flag & (LW_CANCELLED | LW_UNPARKED)) != 0) {
530 1.8 ad l->l_flag &= ~(LW_CANCELLED | LW_UNPARKED);
531 1.19 yamt lwp_unlock(l);
532 1.2 ad return EALREADY;
533 1.2 ad }
534 1.24 ad l->l_biglocks = 0;
535 1.77 ad sleepq_enqueue(NULL, l, "parked", &lwp_park_syncobj, true);
536 1.19 yamt error = sleepq_block(timo, true);
537 1.13 yamt switch (error) {
538 1.14 yamt case EWOULDBLOCK:
539 1.14 yamt error = ETIMEDOUT;
540 1.62 christos if (timeremain)
541 1.62 christos memset(ts, 0, sizeof(*ts));
542 1.14 yamt break;
543 1.14 yamt case ERESTART:
544 1.14 yamt error = EINTR;
545 1.62 christos /*FALLTHROUGH*/
546 1.14 yamt default:
547 1.62 christos if (timeremain)
548 1.62 christos clock_timeleft(clock_id, ts, &start);
549 1.14 yamt break;
550 1.13 yamt }
551 1.13 yamt return error;
552 1.2 ad }
553 1.2 ad
554 1.24 ad /*
555 1.24 ad * 'park' an LWP waiting on a user-level synchronisation object. The LWP
556 1.24 ad * will remain parked until another LWP in the same process calls in and
557 1.24 ad * requests that it be unparked.
558 1.24 ad */
559 1.2 ad int
560 1.56 christos sys____lwp_park60(struct lwp *l, const struct sys____lwp_park60_args *uap,
561 1.44 christos register_t *retval)
562 1.2 ad {
563 1.32 dsl /* {
564 1.56 christos syscallarg(clockid_t) clock_id;
565 1.56 christos syscallarg(int) flags;
566 1.62 christos syscallarg(struct timespec *) ts;
567 1.24 ad syscallarg(lwpid_t) unpark;
568 1.24 ad syscallarg(const void *) hint;
569 1.24 ad syscallarg(const void *) unparkhint;
570 1.32 dsl } */
571 1.24 ad struct timespec ts, *tsp;
572 1.24 ad int error;
573 1.2 ad
574 1.24 ad if (SCARG(uap, ts) == NULL)
575 1.24 ad tsp = NULL;
576 1.24 ad else {
577 1.24 ad error = copyin(SCARG(uap, ts), &ts, sizeof(ts));
578 1.24 ad if (error != 0)
579 1.24 ad return error;
580 1.24 ad tsp = &ts;
581 1.24 ad }
582 1.2 ad
583 1.24 ad if (SCARG(uap, unpark) != 0) {
584 1.74 ad error = lwp_unpark(&SCARG(uap, unpark), 1);
585 1.24 ad if (error != 0)
586 1.24 ad return error;
587 1.15 ad }
588 1.15 ad
589 1.74 ad error = lwp_park(SCARG(uap, clock_id), SCARG(uap, flags), tsp);
590 1.62 christos if (SCARG(uap, ts) != NULL && (SCARG(uap, flags) & TIMER_ABSTIME) == 0)
591 1.62 christos (void)copyout(tsp, SCARG(uap, ts), sizeof(*tsp));
592 1.62 christos return error;
593 1.24 ad }
594 1.2 ad
595 1.24 ad int
596 1.47 rmind sys__lwp_unpark(struct lwp *l, const struct sys__lwp_unpark_args *uap,
597 1.47 rmind register_t *retval)
598 1.24 ad {
599 1.32 dsl /* {
600 1.24 ad syscallarg(lwpid_t) target;
601 1.24 ad syscallarg(const void *) hint;
602 1.32 dsl } */
603 1.2 ad
604 1.74 ad return lwp_unpark(&SCARG(uap, target), 1);
605 1.2 ad }
606 1.2 ad
607 1.2 ad int
608 1.47 rmind sys__lwp_unpark_all(struct lwp *l, const struct sys__lwp_unpark_all_args *uap,
609 1.47 rmind register_t *retval)
610 1.2 ad {
611 1.32 dsl /* {
612 1.2 ad syscallarg(const lwpid_t *) targets;
613 1.2 ad syscallarg(size_t) ntargets;
614 1.2 ad syscallarg(const void *) hint;
615 1.32 dsl } */
616 1.74 ad lwpid_t targets[32], *tp;
617 1.46 rmind int error;
618 1.15 ad u_int ntargets;
619 1.2 ad size_t sz;
620 1.2 ad
621 1.2 ad ntargets = SCARG(uap, ntargets);
622 1.2 ad if (SCARG(uap, targets) == NULL) {
623 1.2 ad /*
624 1.2 ad * Let the caller know how much we are willing to do, and
625 1.2 ad * let it unpark the LWPs in blocks.
626 1.2 ad */
627 1.2 ad *retval = LWP_UNPARK_MAX;
628 1.2 ad return 0;
629 1.2 ad }
630 1.2 ad if (ntargets > LWP_UNPARK_MAX || ntargets == 0)
631 1.2 ad return EINVAL;
632 1.2 ad
633 1.2 ad /*
634 1.2 ad * Copy in the target array. If it's a small number of LWPs, then
635 1.2 ad * place the numbers on the stack.
636 1.2 ad */
637 1.74 ad sz = sizeof(lwpid_t) * ntargets;
638 1.2 ad if (sz <= sizeof(targets))
639 1.2 ad tp = targets;
640 1.61 chs else
641 1.2 ad tp = kmem_alloc(sz, KM_SLEEP);
642 1.2 ad error = copyin(SCARG(uap, targets), tp, sz);
643 1.2 ad if (error != 0) {
644 1.2 ad if (tp != targets) {
645 1.2 ad kmem_free(tp, sz);
646 1.2 ad }
647 1.2 ad return error;
648 1.2 ad }
649 1.74 ad error = lwp_unpark(tp, ntargets);
650 1.33 ad if (tp != targets)
651 1.2 ad kmem_free(tp, sz);
652 1.74 ad return error;
653 1.2 ad }
654 1.28 ad
655 1.28 ad int
656 1.47 rmind sys__lwp_setname(struct lwp *l, const struct sys__lwp_setname_args *uap,
657 1.47 rmind register_t *retval)
658 1.28 ad {
659 1.32 dsl /* {
660 1.28 ad syscallarg(lwpid_t) target;
661 1.28 ad syscallarg(const char *) name;
662 1.32 dsl } */
663 1.28 ad char *name, *oname;
664 1.30 ad lwpid_t target;
665 1.28 ad proc_t *p;
666 1.28 ad lwp_t *t;
667 1.28 ad int error;
668 1.28 ad
669 1.30 ad if ((target = SCARG(uap, target)) == 0)
670 1.30 ad target = l->l_lid;
671 1.30 ad
672 1.28 ad name = kmem_alloc(MAXCOMLEN, KM_SLEEP);
673 1.28 ad error = copyinstr(SCARG(uap, name), name, MAXCOMLEN, NULL);
674 1.28 ad switch (error) {
675 1.28 ad case ENAMETOOLONG:
676 1.28 ad case 0:
677 1.28 ad name[MAXCOMLEN - 1] = '\0';
678 1.28 ad break;
679 1.28 ad default:
680 1.28 ad kmem_free(name, MAXCOMLEN);
681 1.28 ad return error;
682 1.28 ad }
683 1.28 ad
684 1.28 ad p = curproc;
685 1.39 ad mutex_enter(p->p_lock);
686 1.30 ad if ((t = lwp_find(p, target)) == NULL) {
687 1.39 ad mutex_exit(p->p_lock);
688 1.28 ad kmem_free(name, MAXCOMLEN);
689 1.28 ad return ESRCH;
690 1.28 ad }
691 1.28 ad lwp_lock(t);
692 1.28 ad oname = t->l_name;
693 1.28 ad t->l_name = name;
694 1.28 ad lwp_unlock(t);
695 1.39 ad mutex_exit(p->p_lock);
696 1.28 ad
697 1.28 ad if (oname != NULL)
698 1.28 ad kmem_free(oname, MAXCOMLEN);
699 1.28 ad
700 1.28 ad return 0;
701 1.28 ad }
702 1.28 ad
703 1.28 ad int
704 1.47 rmind sys__lwp_getname(struct lwp *l, const struct sys__lwp_getname_args *uap,
705 1.47 rmind register_t *retval)
706 1.28 ad {
707 1.32 dsl /* {
708 1.28 ad syscallarg(lwpid_t) target;
709 1.28 ad syscallarg(char *) name;
710 1.28 ad syscallarg(size_t) len;
711 1.32 dsl } */
712 1.28 ad char name[MAXCOMLEN];
713 1.30 ad lwpid_t target;
714 1.68 maxv size_t len;
715 1.28 ad proc_t *p;
716 1.28 ad lwp_t *t;
717 1.28 ad
718 1.30 ad if ((target = SCARG(uap, target)) == 0)
719 1.30 ad target = l->l_lid;
720 1.30 ad
721 1.28 ad p = curproc;
722 1.39 ad mutex_enter(p->p_lock);
723 1.30 ad if ((t = lwp_find(p, target)) == NULL) {
724 1.39 ad mutex_exit(p->p_lock);
725 1.28 ad return ESRCH;
726 1.28 ad }
727 1.28 ad lwp_lock(t);
728 1.28 ad if (t->l_name == NULL)
729 1.28 ad name[0] = '\0';
730 1.28 ad else
731 1.58 maya strlcpy(name, t->l_name, sizeof(name));
732 1.28 ad lwp_unlock(t);
733 1.39 ad mutex_exit(p->p_lock);
734 1.28 ad
735 1.68 maxv len = uimin(SCARG(uap, len), sizeof(name));
736 1.68 maxv
737 1.68 maxv return copyoutstr(name, SCARG(uap, name), len, NULL);
738 1.28 ad }
739 1.30 ad
740 1.30 ad int
741 1.47 rmind sys__lwp_ctl(struct lwp *l, const struct sys__lwp_ctl_args *uap,
742 1.47 rmind register_t *retval)
743 1.30 ad {
744 1.32 dsl /* {
745 1.30 ad syscallarg(int) features;
746 1.30 ad syscallarg(struct lwpctl **) address;
747 1.32 dsl } */
748 1.30 ad int error, features;
749 1.30 ad vaddr_t vaddr;
750 1.30 ad
751 1.30 ad features = SCARG(uap, features);
752 1.35 ad features &= ~(LWPCTL_FEATURE_CURCPU | LWPCTL_FEATURE_PCTR);
753 1.35 ad if (features != 0)
754 1.30 ad return ENODEV;
755 1.30 ad if ((error = lwp_ctl_alloc(&vaddr)) != 0)
756 1.30 ad return error;
757 1.30 ad return copyout(&vaddr, SCARG(uap, address), sizeof(void *));
758 1.30 ad }
759