lwproc.c revision 1.58 1 1.58 riastrad /* $NetBSD: lwproc.c,v 1.58 2023/10/15 11:11:37 riastradh Exp $ */
2 1.1 pooka
3 1.1 pooka /*
4 1.7 pooka * Copyright (c) 2010, 2011 Antti Kantee. All Rights Reserved.
5 1.1 pooka *
6 1.1 pooka * Redistribution and use in source and binary forms, with or without
7 1.1 pooka * modification, are permitted provided that the following conditions
8 1.1 pooka * are met:
9 1.1 pooka * 1. Redistributions of source code must retain the above copyright
10 1.1 pooka * notice, this list of conditions and the following disclaimer.
11 1.1 pooka * 2. Redistributions in binary form must reproduce the above copyright
12 1.1 pooka * notice, this list of conditions and the following disclaimer in the
13 1.1 pooka * documentation and/or other materials provided with the distribution.
14 1.1 pooka *
15 1.1 pooka * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS
16 1.1 pooka * OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
17 1.1 pooka * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
18 1.1 pooka * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
19 1.1 pooka * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
20 1.1 pooka * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
21 1.1 pooka * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
22 1.1 pooka * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
23 1.1 pooka * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
24 1.1 pooka * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
25 1.1 pooka * SUCH DAMAGE.
26 1.1 pooka */
27 1.1 pooka
28 1.28 pooka #define RUMP__CURLWP_PRIVATE
29 1.27 pooka
30 1.1 pooka #include <sys/cdefs.h>
31 1.58 riastrad __KERNEL_RCSID(0, "$NetBSD: lwproc.c,v 1.58 2023/10/15 11:11:37 riastradh Exp $");
32 1.1 pooka
33 1.1 pooka #include <sys/param.h>
34 1.1 pooka #include <sys/atomic.h>
35 1.1 pooka #include <sys/filedesc.h>
36 1.41 hannken #include <sys/fstrans.h>
37 1.1 pooka #include <sys/kauth.h>
38 1.1 pooka #include <sys/kmem.h>
39 1.1 pooka #include <sys/lwp.h>
40 1.25 pooka #include <sys/ktrace.h>
41 1.1 pooka #include <sys/pool.h>
42 1.1 pooka #include <sys/proc.h>
43 1.1 pooka #include <sys/queue.h>
44 1.1 pooka #include <sys/resourcevar.h>
45 1.1 pooka #include <sys/uidinfo.h>
46 1.42 ozaki #include <sys/psref.h>
47 1.58 riastrad #include <sys/syncobj.h>
48 1.1 pooka
49 1.37 pooka #include <rump-sys/kern.h>
50 1.37 pooka
51 1.1 pooka #include <rump/rumpuser.h>
52 1.37 pooka
53 1.27 pooka #include "rump_curlwp.h"
54 1.1 pooka
55 1.36 pooka struct lwp lwp0 = {
56 1.47 thorpej .l_lid = 0,
57 1.36 pooka .l_proc = &proc0,
58 1.36 pooka .l_fd = &filedesc0,
59 1.36 pooka };
60 1.36 pooka struct lwplist alllwp = LIST_HEAD_INITIALIZER(alllwp);
61 1.36 pooka
62 1.36 pooka u_int nprocs = 1;
63 1.36 pooka
64 1.20 pooka struct emul *emul_default = &emul_netbsd;
65 1.20 pooka
66 1.27 pooka void
67 1.36 pooka lwp_unsleep(lwp_t *l, bool cleanup)
68 1.36 pooka {
69 1.36 pooka
70 1.36 pooka KASSERT(mutex_owned(l->l_mutex));
71 1.36 pooka
72 1.36 pooka (*l->l_syncobj->sobj_unsleep)(l, cleanup);
73 1.36 pooka }
74 1.36 pooka
75 1.40 martin /*
76 1.40 martin * Look up a live LWP within the specified process.
77 1.53 riastrad *
78 1.40 martin * Must be called with p->p_lock held.
79 1.40 martin */
80 1.40 martin struct lwp *
81 1.40 martin lwp_find(struct proc *p, lwpid_t id)
82 1.40 martin {
83 1.40 martin struct lwp *l;
84 1.40 martin
85 1.40 martin KASSERT(mutex_owned(p->p_lock));
86 1.40 martin
87 1.40 martin LIST_FOREACH(l, &p->p_lwps, l_sibling) {
88 1.40 martin if (l->l_lid == id)
89 1.40 martin break;
90 1.40 martin }
91 1.40 martin
92 1.40 martin /*
93 1.40 martin * No need to lock - all of these conditions will
94 1.40 martin * be visible with the process level mutex held.
95 1.40 martin */
96 1.40 martin if (l != NULL && (l->l_stat == LSIDL || l->l_stat == LSZOMB))
97 1.40 martin l = NULL;
98 1.40 martin
99 1.40 martin return l;
100 1.40 martin }
101 1.40 martin
102 1.36 pooka void
103 1.27 pooka rump_lwproc_init(void)
104 1.27 pooka {
105 1.27 pooka
106 1.27 pooka lwproc_curlwpop(RUMPUSER_LWP_CREATE, &lwp0);
107 1.27 pooka }
108 1.27 pooka
109 1.27 pooka struct lwp *
110 1.27 pooka rump_lwproc_curlwp_hypercall(void)
111 1.27 pooka {
112 1.27 pooka
113 1.27 pooka return rumpuser_curlwp();
114 1.27 pooka }
115 1.27 pooka
116 1.27 pooka void
117 1.27 pooka rump_lwproc_curlwp_set(struct lwp *l)
118 1.27 pooka {
119 1.27 pooka
120 1.27 pooka KASSERT(curlwp == NULL);
121 1.27 pooka lwproc_curlwpop(RUMPUSER_LWP_SET, l);
122 1.27 pooka }
123 1.27 pooka
124 1.27 pooka void
125 1.27 pooka rump_lwproc_curlwp_clear(struct lwp *l)
126 1.27 pooka {
127 1.27 pooka
128 1.27 pooka KASSERT(l == curlwp);
129 1.27 pooka lwproc_curlwpop(RUMPUSER_LWP_CLEAR, l);
130 1.27 pooka }
131 1.27 pooka
132 1.1 pooka static void
133 1.1 pooka lwproc_proc_free(struct proc *p)
134 1.1 pooka {
135 1.1 pooka kauth_cred_t cred;
136 1.30 pooka struct proc *child;
137 1.1 pooka
138 1.25 pooka KASSERT(p->p_stat == SDYING || p->p_stat == SDEAD);
139 1.25 pooka
140 1.25 pooka #ifdef KTRACE
141 1.25 pooka if (p->p_tracep) {
142 1.25 pooka mutex_enter(&ktrace_lock);
143 1.25 pooka ktrderef(p);
144 1.25 pooka mutex_exit(&ktrace_lock);
145 1.25 pooka }
146 1.25 pooka #endif
147 1.25 pooka
148 1.50 ad mutex_enter(&proc_lock);
149 1.1 pooka
150 1.30 pooka /* childranee eunt initus */
151 1.30 pooka while ((child = LIST_FIRST(&p->p_children)) != NULL) {
152 1.30 pooka LIST_REMOVE(child, p_sibling);
153 1.30 pooka child->p_pptr = initproc;
154 1.30 pooka child->p_ppid = 1;
155 1.30 pooka LIST_INSERT_HEAD(&initproc->p_children, child, p_sibling);
156 1.30 pooka }
157 1.30 pooka
158 1.1 pooka KASSERT(p->p_nlwps == 0);
159 1.1 pooka KASSERT(LIST_EMPTY(&p->p_lwps));
160 1.1 pooka
161 1.1 pooka LIST_REMOVE(p, p_list);
162 1.1 pooka LIST_REMOVE(p, p_sibling);
163 1.45 thorpej proc_free_pid(p->p_pid);
164 1.45 thorpej atomic_dec_uint(&nprocs);
165 1.1 pooka proc_leavepgrp(p); /* releases proc_lock */
166 1.1 pooka
167 1.1 pooka cred = p->p_cred;
168 1.1 pooka chgproccnt(kauth_cred_getuid(cred), -1);
169 1.31 pooka rump_proc_vfs_release(p);
170 1.1 pooka
171 1.29 pooka doexithooks(p);
172 1.18 pgoyette lim_free(p->p_limit);
173 1.1 pooka pstatsfree(p->p_stats);
174 1.1 pooka kauth_cred_free(p->p_cred);
175 1.1 pooka proc_finispecific(p);
176 1.1 pooka
177 1.1 pooka mutex_obj_free(p->p_lock);
178 1.1 pooka mutex_destroy(&p->p_stmutex);
179 1.1 pooka mutex_destroy(&p->p_auxlock);
180 1.1 pooka rw_destroy(&p->p_reflock);
181 1.1 pooka cv_destroy(&p->p_waitcv);
182 1.1 pooka cv_destroy(&p->p_lwpcv);
183 1.1 pooka
184 1.33 pooka /* non-local vmspaces are not shared */
185 1.10 pooka if (!RUMP_LOCALPROC_P(p)) {
186 1.35 pooka struct rump_spctl *ctl = (struct rump_spctl *)p->p_vmspace;
187 1.6 pooka KASSERT(p->p_vmspace->vm_refcnt == 1);
188 1.35 pooka kmem_free(ctl, sizeof(*ctl));
189 1.6 pooka }
190 1.6 pooka
191 1.1 pooka proc_free_mem(p);
192 1.1 pooka }
193 1.1 pooka
194 1.1 pooka /*
195 1.1 pooka * Allocate a new process. Mostly mimic fork by
196 1.1 pooka * copying the properties of the parent. However, there are some
197 1.20 pooka * differences.
198 1.1 pooka *
199 1.1 pooka * Switch to the new lwp and return a pointer to it.
200 1.1 pooka */
201 1.1 pooka static struct proc *
202 1.33 pooka lwproc_newproc(struct proc *parent, struct vmspace *vm, int flags)
203 1.1 pooka {
204 1.1 pooka uid_t uid = kauth_cred_getuid(parent->p_cred);
205 1.1 pooka struct proc *p;
206 1.1 pooka
207 1.1 pooka /* maxproc not enforced */
208 1.1 pooka atomic_inc_uint(&nprocs);
209 1.1 pooka
210 1.1 pooka /* allocate process */
211 1.1 pooka p = proc_alloc();
212 1.1 pooka memset(&p->p_startzero, 0,
213 1.1 pooka offsetof(struct proc, p_endzero)
214 1.1 pooka - offsetof(struct proc, p_startzero));
215 1.1 pooka memcpy(&p->p_startcopy, &parent->p_startcopy,
216 1.1 pooka offsetof(struct proc, p_endcopy)
217 1.1 pooka - offsetof(struct proc, p_startcopy));
218 1.1 pooka
219 1.15 pooka /* some other garbage we need to zero */
220 1.15 pooka p->p_sigacts = NULL;
221 1.15 pooka p->p_aio = NULL;
222 1.15 pooka p->p_dtrace = NULL;
223 1.15 pooka p->p_mqueue_cnt = p->p_exitsig = 0;
224 1.15 pooka p->p_flag = p->p_sflag = p->p_slflag = p->p_lflag = p->p_stflag = 0;
225 1.15 pooka p->p_trace_enabled = 0;
226 1.39 christos p->p_xsig = p->p_xexit = p->p_acflag = 0;
227 1.15 pooka p->p_stackbase = 0;
228 1.15 pooka
229 1.1 pooka p->p_stats = pstatscopy(parent->p_stats);
230 1.1 pooka
231 1.33 pooka p->p_vmspace = vm;
232 1.20 pooka p->p_emul = emul_default;
233 1.26 pooka #ifdef __HAVE_SYSCALL_INTERN
234 1.26 pooka p->p_emul->e_syscall_intern(p);
235 1.26 pooka #endif
236 1.14 pooka if (*parent->p_comm)
237 1.14 pooka strcpy(p->p_comm, parent->p_comm);
238 1.14 pooka else
239 1.14 pooka strcpy(p->p_comm, "rumproc");
240 1.7 pooka
241 1.7 pooka if ((flags & RUMP_RFCFDG) == 0)
242 1.7 pooka KASSERT(parent == curproc);
243 1.7 pooka if (flags & RUMP_RFFDG)
244 1.7 pooka p->p_fd = fd_copy();
245 1.7 pooka else if (flags & RUMP_RFCFDG)
246 1.7 pooka p->p_fd = fd_init(NULL);
247 1.7 pooka else
248 1.7 pooka fd_share(p);
249 1.7 pooka
250 1.1 pooka lim_addref(parent->p_limit);
251 1.1 pooka p->p_limit = parent->p_limit;
252 1.1 pooka
253 1.1 pooka LIST_INIT(&p->p_lwps);
254 1.1 pooka LIST_INIT(&p->p_children);
255 1.1 pooka
256 1.1 pooka p->p_lock = mutex_obj_alloc(MUTEX_DEFAULT, IPL_NONE);
257 1.21 pooka mutex_init(&p->p_stmutex, MUTEX_DEFAULT, IPL_HIGH);
258 1.1 pooka mutex_init(&p->p_auxlock, MUTEX_DEFAULT, IPL_NONE);
259 1.1 pooka rw_init(&p->p_reflock);
260 1.1 pooka cv_init(&p->p_waitcv, "pwait");
261 1.1 pooka cv_init(&p->p_lwpcv, "plwp");
262 1.1 pooka
263 1.1 pooka p->p_pptr = parent;
264 1.1 pooka p->p_ppid = parent->p_pid;
265 1.12 pooka p->p_stat = SACTIVE;
266 1.1 pooka
267 1.1 pooka kauth_proc_fork(parent, p);
268 1.1 pooka
269 1.1 pooka /* initialize cwd in rump kernels with vfs */
270 1.31 pooka rump_proc_vfs_init(p);
271 1.1 pooka
272 1.1 pooka chgproccnt(uid, 1); /* not enforced */
273 1.1 pooka
274 1.1 pooka /* publish proc various proc lists */
275 1.50 ad mutex_enter(&proc_lock);
276 1.1 pooka LIST_INSERT_HEAD(&allproc, p, p_list);
277 1.1 pooka LIST_INSERT_HEAD(&parent->p_children, p, p_sibling);
278 1.1 pooka LIST_INSERT_AFTER(parent, p, p_pglist);
279 1.50 ad mutex_exit(&proc_lock);
280 1.1 pooka
281 1.1 pooka return p;
282 1.1 pooka }
283 1.1 pooka
284 1.1 pooka static void
285 1.1 pooka lwproc_freelwp(struct lwp *l)
286 1.1 pooka {
287 1.1 pooka struct proc *p;
288 1.1 pooka
289 1.1 pooka p = l->l_proc;
290 1.1 pooka mutex_enter(p->p_lock);
291 1.1 pooka
292 1.1 pooka KASSERT(l->l_flag & LW_WEXIT);
293 1.1 pooka KASSERT(l->l_refcnt == 0);
294 1.1 pooka
295 1.1 pooka LIST_REMOVE(l, l_sibling);
296 1.1 pooka KASSERT(p->p_nlwps >= 1);
297 1.1 pooka if (--p->p_nlwps == 0) {
298 1.1 pooka KASSERT(p != &proc0);
299 1.1 pooka p->p_stat = SDEAD;
300 1.32 pooka } else {
301 1.32 pooka chglwpcnt(kauth_cred_getuid(p->p_cred), -1);
302 1.1 pooka }
303 1.22 pooka cv_broadcast(&p->p_lwpcv); /* nobody sleeps on this in a rump kernel? */
304 1.1 pooka kauth_cred_free(l->l_cred);
305 1.49 ad l->l_stat = LSIDL;
306 1.1 pooka mutex_exit(p->p_lock);
307 1.1 pooka
308 1.50 ad mutex_enter(&proc_lock);
309 1.49 ad proc_free_lwpid(p, l->l_lid);
310 1.1 pooka LIST_REMOVE(l, l_list);
311 1.50 ad mutex_exit(&proc_lock);
312 1.1 pooka
313 1.1 pooka if (l->l_name)
314 1.1 pooka kmem_free(l->l_name, MAXCOMLEN);
315 1.41 hannken fstrans_lwp_dtor(l);
316 1.1 pooka lwp_finispecific(l);
317 1.1 pooka
318 1.27 pooka lwproc_curlwpop(RUMPUSER_LWP_DESTROY, l);
319 1.1 pooka kmem_free(l, sizeof(*l));
320 1.1 pooka
321 1.1 pooka if (p->p_stat == SDEAD)
322 1.53 riastrad lwproc_proc_free(p);
323 1.1 pooka }
324 1.1 pooka
325 1.12 pooka extern kmutex_t unruntime_lock;
326 1.12 pooka
327 1.51 ad static struct lwp *
328 1.51 ad lwproc_makelwp(struct proc *p, bool doswitch, bool procmake)
329 1.1 pooka {
330 1.51 ad struct lwp *l = kmem_zalloc(sizeof(*l), KM_SLEEP);
331 1.1 pooka
332 1.52 ozaki l->l_refcnt = 1;
333 1.52 ozaki l->l_proc = p;
334 1.52 ozaki l->l_stat = LSIDL;
335 1.52 ozaki l->l_mutex = &unruntime_lock;
336 1.52 ozaki
337 1.52 ozaki proc_alloc_lwpid(p, l);
338 1.52 ozaki
339 1.52 ozaki mutex_enter(p->p_lock);
340 1.32 pooka /*
341 1.32 pooka * Account the new lwp to the owner of the process.
342 1.32 pooka * For some reason, NetBSD doesn't count the first lwp
343 1.32 pooka * in a process as a lwp, so skip that.
344 1.32 pooka */
345 1.32 pooka if (p->p_nlwps++) {
346 1.32 pooka chglwpcnt(kauth_cred_getuid(p->p_cred), 1);
347 1.32 pooka }
348 1.32 pooka
349 1.51 ad KASSERT((p->p_sflag & PS_RUMP_LWPEXIT) == 0);
350 1.1 pooka LIST_INSERT_HEAD(&p->p_lwps, l, l_sibling);
351 1.1 pooka
352 1.1 pooka l->l_fd = p->p_fd;
353 1.38 pooka l->l_cpu = &rump_bootcpu;
354 1.38 pooka l->l_target_cpu = &rump_bootcpu; /* Initial target CPU always same */
355 1.9 pooka l->l_stat = LSRUN;
356 1.8 pooka TAILQ_INIT(&l->l_ld_locks);
357 1.16 pooka mutex_exit(p->p_lock);
358 1.1 pooka
359 1.57 ad l->l_cred = kauth_cred_hold(p->p_cred);
360 1.1 pooka lwp_initspecific(l);
361 1.42 ozaki PSREF_DEBUG_INIT_LWP(l);
362 1.1 pooka
363 1.27 pooka lwproc_curlwpop(RUMPUSER_LWP_CREATE, l);
364 1.1 pooka if (doswitch) {
365 1.1 pooka rump_lwproc_switch(l);
366 1.1 pooka }
367 1.1 pooka
368 1.1 pooka /* filedesc already has refcount 1 when process is created */
369 1.1 pooka if (!procmake) {
370 1.1 pooka fd_hold(l);
371 1.1 pooka }
372 1.1 pooka
373 1.50 ad mutex_enter(&proc_lock);
374 1.1 pooka LIST_INSERT_HEAD(&alllwp, l, l_list);
375 1.50 ad mutex_exit(&proc_lock);
376 1.51 ad
377 1.51 ad return l;
378 1.1 pooka }
379 1.1 pooka
380 1.1 pooka struct lwp *
381 1.3 pooka rump__lwproc_alloclwp(struct proc *p)
382 1.1 pooka {
383 1.3 pooka bool newproc = false;
384 1.3 pooka
385 1.3 pooka if (p == NULL) {
386 1.34 pooka p = lwproc_newproc(&proc0, rump_vmspace_local, RUMP_RFCFDG);
387 1.3 pooka newproc = true;
388 1.3 pooka }
389 1.1 pooka
390 1.51 ad return lwproc_makelwp(p, false, newproc);
391 1.1 pooka }
392 1.1 pooka
393 1.1 pooka int
394 1.1 pooka rump_lwproc_newlwp(pid_t pid)
395 1.1 pooka {
396 1.1 pooka struct proc *p;
397 1.1 pooka struct lwp *l;
398 1.1 pooka
399 1.1 pooka l = kmem_zalloc(sizeof(*l), KM_SLEEP);
400 1.50 ad mutex_enter(&proc_lock);
401 1.1 pooka p = proc_find_raw(pid);
402 1.1 pooka if (p == NULL) {
403 1.50 ad mutex_exit(&proc_lock);
404 1.1 pooka kmem_free(l, sizeof(*l));
405 1.1 pooka return ESRCH;
406 1.1 pooka }
407 1.1 pooka mutex_enter(p->p_lock);
408 1.17 pooka if (p->p_sflag & PS_RUMP_LWPEXIT) {
409 1.50 ad mutex_exit(&proc_lock);
410 1.17 pooka mutex_exit(p->p_lock);
411 1.17 pooka kmem_free(l, sizeof(*l));
412 1.17 pooka return EBUSY;
413 1.17 pooka }
414 1.51 ad mutex_exit(p->p_lock);
415 1.50 ad mutex_exit(&proc_lock);
416 1.51 ad
417 1.51 ad /* XXX what holds proc? */
418 1.51 ad
419 1.51 ad lwproc_makelwp(p, true, false);
420 1.1 pooka
421 1.1 pooka return 0;
422 1.1 pooka }
423 1.1 pooka
424 1.1 pooka int
425 1.33 pooka rump_lwproc_rfork_vmspace(struct vmspace *vm, int flags)
426 1.1 pooka {
427 1.1 pooka struct proc *p;
428 1.1 pooka
429 1.7 pooka if (flags & ~(RUMP_RFFDG|RUMP_RFCFDG) ||
430 1.7 pooka (~flags & (RUMP_RFFDG|RUMP_RFCFDG)) == 0)
431 1.7 pooka return EINVAL;
432 1.7 pooka
433 1.33 pooka p = lwproc_newproc(curproc, vm, flags);
434 1.51 ad lwproc_makelwp(p, true, true);
435 1.1 pooka
436 1.1 pooka return 0;
437 1.1 pooka }
438 1.1 pooka
439 1.33 pooka int
440 1.33 pooka rump_lwproc_rfork(int flags)
441 1.33 pooka {
442 1.33 pooka
443 1.33 pooka return rump_lwproc_rfork_vmspace(rump_vmspace_local, flags);
444 1.33 pooka }
445 1.33 pooka
446 1.1 pooka /*
447 1.1 pooka * Switch to a new process/thread. Release previous one if
448 1.4 pooka * deemed to be exiting. This is considered a slow path for
449 1.4 pooka * rump kernel entry.
450 1.1 pooka */
451 1.1 pooka void
452 1.1 pooka rump_lwproc_switch(struct lwp *newlwp)
453 1.1 pooka {
454 1.1 pooka struct lwp *l = curlwp;
455 1.56 ad int nlocks;
456 1.1 pooka
457 1.1 pooka KASSERT(!(l->l_flag & LW_WEXIT) || newlwp);
458 1.1 pooka
459 1.44 ad if (__predict_false(newlwp && (newlwp->l_pflag & LP_RUNNING)))
460 1.1 pooka panic("lwp %p (%d:%d) already running",
461 1.1 pooka newlwp, newlwp->l_proc->p_pid, newlwp->l_lid);
462 1.1 pooka
463 1.1 pooka if (newlwp == NULL) {
464 1.44 ad l->l_pflag &= ~LP_RUNNING;
465 1.1 pooka l->l_flag |= LW_RUMP_CLEAR;
466 1.1 pooka return;
467 1.1 pooka }
468 1.1 pooka
469 1.1 pooka /* fd_free() must be called from curlwp context. talk about ugh */
470 1.1 pooka if (l->l_flag & LW_WEXIT) {
471 1.1 pooka fd_free();
472 1.1 pooka }
473 1.1 pooka
474 1.56 ad KERNEL_UNLOCK_ALL(NULL, &nlocks);
475 1.27 pooka lwproc_curlwpop(RUMPUSER_LWP_CLEAR, l);
476 1.1 pooka
477 1.1 pooka newlwp->l_cpu = newlwp->l_target_cpu = l->l_cpu;
478 1.1 pooka newlwp->l_mutex = l->l_mutex;
479 1.44 ad newlwp->l_pflag |= LP_RUNNING;
480 1.1 pooka
481 1.27 pooka lwproc_curlwpop(RUMPUSER_LWP_SET, newlwp);
482 1.24 pooka curcpu()->ci_curlwp = newlwp;
483 1.56 ad KERNEL_LOCK(nlocks, NULL);
484 1.1 pooka
485 1.4 pooka /*
486 1.4 pooka * Check if the thread should get a signal. This is
487 1.4 pooka * mostly to satisfy the "record" rump sigmodel.
488 1.4 pooka */
489 1.4 pooka mutex_enter(newlwp->l_proc->p_lock);
490 1.4 pooka if (sigispending(newlwp, 0)) {
491 1.4 pooka newlwp->l_flag |= LW_PENDSIG;
492 1.4 pooka }
493 1.4 pooka mutex_exit(newlwp->l_proc->p_lock);
494 1.4 pooka
495 1.12 pooka l->l_mutex = &unruntime_lock;
496 1.44 ad l->l_pflag &= ~LP_RUNNING;
497 1.4 pooka l->l_flag &= ~LW_PENDSIG;
498 1.13 pooka l->l_stat = LSRUN;
499 1.55 ad l->l_ru.ru_nvcsw++;
500 1.1 pooka
501 1.1 pooka if (l->l_flag & LW_WEXIT) {
502 1.49 ad l->l_stat = LSIDL;
503 1.1 pooka lwproc_freelwp(l);
504 1.1 pooka }
505 1.1 pooka }
506 1.1 pooka
507 1.24 pooka /*
508 1.24 pooka * Mark the current thread to be released upon return from
509 1.24 pooka * kernel.
510 1.24 pooka */
511 1.1 pooka void
512 1.1 pooka rump_lwproc_releaselwp(void)
513 1.1 pooka {
514 1.1 pooka struct lwp *l = curlwp;
515 1.1 pooka
516 1.24 pooka if (l->l_refcnt == 0 || l->l_flag & LW_WEXIT)
517 1.2 pooka panic("releasing non-pertinent lwp");
518 1.2 pooka
519 1.24 pooka rump__lwproc_lwprele();
520 1.24 pooka KASSERT(l->l_refcnt == 0 && (l->l_flag & LW_WEXIT));
521 1.24 pooka }
522 1.24 pooka
523 1.24 pooka /*
524 1.24 pooka * In-kernel routines used to add and remove references for the
525 1.24 pooka * current thread. The main purpose is to make it possible for
526 1.24 pooka * implicit threads to persist over scheduling operations in
527 1.24 pooka * rump kernel drivers. Note that we don't need p_lock in a
528 1.24 pooka * rump kernel, since we do refcounting only for curlwp.
529 1.24 pooka */
530 1.24 pooka void
531 1.24 pooka rump__lwproc_lwphold(void)
532 1.24 pooka {
533 1.24 pooka struct lwp *l = curlwp;
534 1.24 pooka
535 1.24 pooka l->l_refcnt++;
536 1.24 pooka l->l_flag &= ~LW_WEXIT;
537 1.24 pooka }
538 1.24 pooka
539 1.24 pooka void
540 1.24 pooka rump__lwproc_lwprele(void)
541 1.24 pooka {
542 1.24 pooka struct lwp *l = curlwp;
543 1.24 pooka
544 1.1 pooka l->l_refcnt--;
545 1.24 pooka if (l->l_refcnt == 0)
546 1.24 pooka l->l_flag |= LW_WEXIT;
547 1.1 pooka }
548 1.1 pooka
549 1.1 pooka struct lwp *
550 1.1 pooka rump_lwproc_curlwp(void)
551 1.1 pooka {
552 1.1 pooka struct lwp *l = curlwp;
553 1.1 pooka
554 1.1 pooka if (l->l_flag & LW_WEXIT)
555 1.1 pooka return NULL;
556 1.1 pooka return l;
557 1.1 pooka }
558 1.20 pooka
559 1.20 pooka /* this interface is under construction (like the proverbial 90's web page) */
560 1.20 pooka int rump_i_know_what_i_am_doing_with_sysents = 0;
561 1.20 pooka void
562 1.20 pooka rump_lwproc_sysent_usenative()
563 1.20 pooka {
564 1.20 pooka
565 1.20 pooka if (!rump_i_know_what_i_am_doing_with_sysents)
566 1.20 pooka panic("don't use rump_lwproc_sysent_usenative()");
567 1.20 pooka curproc->p_emul = &emul_netbsd;
568 1.20 pooka }
569 1.55 ad
570 1.55 ad long
571 1.55 ad lwp_pctr(void)
572 1.55 ad {
573 1.55 ad
574 1.55 ad return curlwp->l_ru.ru_nvcsw;
575 1.55 ad }
576