kern_sysctl.c revision 1.145 1 1.145 dsl /* $NetBSD: kern_sysctl.c,v 1.145 2003/09/27 07:58:55 dsl Exp $ */
2 1.2 cgd
3 1.1 cgd /*-
4 1.1 cgd * Copyright (c) 1982, 1986, 1989, 1993
5 1.1 cgd * The Regents of the University of California. All rights reserved.
6 1.1 cgd *
7 1.1 cgd * This code is derived from software contributed to Berkeley by
8 1.1 cgd * Mike Karels at Berkeley Software Design, Inc.
9 1.1 cgd *
10 1.1 cgd * Redistribution and use in source and binary forms, with or without
11 1.1 cgd * modification, are permitted provided that the following conditions
12 1.1 cgd * are met:
13 1.1 cgd * 1. Redistributions of source code must retain the above copyright
14 1.1 cgd * notice, this list of conditions and the following disclaimer.
15 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 cgd * notice, this list of conditions and the following disclaimer in the
17 1.1 cgd * documentation and/or other materials provided with the distribution.
18 1.140 agc * 3. Neither the name of the University nor the names of its contributors
19 1.1 cgd * may be used to endorse or promote products derived from this software
20 1.1 cgd * without specific prior written permission.
21 1.1 cgd *
22 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
23 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
24 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
25 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
26 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
27 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
28 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
29 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
30 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
31 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
32 1.1 cgd * SUCH DAMAGE.
33 1.1 cgd *
34 1.34 fvdl * @(#)kern_sysctl.c 8.9 (Berkeley) 5/20/95
35 1.1 cgd */
36 1.1 cgd
37 1.1 cgd /*
38 1.1 cgd * sysctl system call.
39 1.1 cgd */
40 1.97 lukem
41 1.97 lukem #include <sys/cdefs.h>
42 1.145 dsl __KERNEL_RCSID(0, "$NetBSD: kern_sysctl.c,v 1.145 2003/09/27 07:58:55 dsl Exp $");
43 1.30 thorpej
44 1.38 jonathan #include "opt_ddb.h"
45 1.30 thorpej #include "opt_insecure.h"
46 1.52 bouyer #include "opt_defcorename.h"
47 1.134 martin #include "opt_multiprocessor.h"
48 1.102 jdolecek #include "opt_pipe.h"
49 1.42 tron #include "opt_sysv.h"
50 1.77 jdolecek #include "pty.h"
51 1.109 itojun #include "rnd.h"
52 1.1 cgd
53 1.1 cgd #include <sys/param.h>
54 1.1 cgd #include <sys/systm.h>
55 1.1 cgd #include <sys/kernel.h>
56 1.62 simonb #include <sys/buf.h>
57 1.62 simonb #include <sys/device.h>
58 1.62 simonb #include <sys/disklabel.h>
59 1.62 simonb #include <sys/dkstat.h>
60 1.62 simonb #include <sys/exec.h>
61 1.62 simonb #include <sys/file.h>
62 1.62 simonb #include <sys/ioctl.h>
63 1.1 cgd #include <sys/malloc.h>
64 1.62 simonb #include <sys/mount.h>
65 1.62 simonb #include <sys/msgbuf.h>
66 1.52 bouyer #include <sys/pool.h>
67 1.1 cgd #include <sys/proc.h>
68 1.62 simonb #include <sys/resource.h>
69 1.62 simonb #include <sys/resourcevar.h>
70 1.123 thorpej #include <sys/sa.h>
71 1.62 simonb #include <sys/syscallargs.h>
72 1.62 simonb #include <sys/tty.h>
73 1.62 simonb #include <sys/unistd.h>
74 1.1 cgd #include <sys/vnode.h>
75 1.93 thorpej #include <sys/socketvar.h>
76 1.75 thorpej #define __SYSCTL_PRIVATE
77 1.1 cgd #include <sys/sysctl.h>
78 1.75 thorpej #include <sys/lock.h>
79 1.95 chs #include <sys/namei.h>
80 1.145 dsl #include <sys/conf.h>
81 1.38 jonathan
82 1.69 simonb #if defined(SYSVMSG) || defined(SYSVSEM) || defined(SYSVSHM)
83 1.69 simonb #include <sys/ipc.h>
84 1.69 simonb #endif
85 1.69 simonb #ifdef SYSVMSG
86 1.69 simonb #include <sys/msg.h>
87 1.69 simonb #endif
88 1.69 simonb #ifdef SYSVSEM
89 1.69 simonb #include <sys/sem.h>
90 1.69 simonb #endif
91 1.69 simonb #ifdef SYSVSHM
92 1.69 simonb #include <sys/shm.h>
93 1.69 simonb #endif
94 1.69 simonb
95 1.74 simonb #include <dev/cons.h>
96 1.74 simonb
97 1.38 jonathan #if defined(DDB)
98 1.38 jonathan #include <ddb/ddbvar.h>
99 1.90 jdolecek #endif
100 1.90 jdolecek
101 1.102 jdolecek #ifndef PIPE_SOCKETPAIR
102 1.90 jdolecek #include <sys/pipe.h>
103 1.31 mrg #endif
104 1.31 mrg
105 1.109 itojun #if NRND > 0
106 1.109 itojun #include <sys/rnd.h>
107 1.109 itojun #endif
108 1.109 itojun
109 1.62 simonb #define PTRTOINT64(foo) ((u_int64_t)(uintptr_t)(foo))
110 1.62 simonb
111 1.91 simonb static int sysctl_file(void *, size_t *);
112 1.145 dsl static int sysctl_drivers(void *, size_t *);
113 1.69 simonb #if defined(SYSVMSG) || defined(SYSVSEM) || defined(SYSVSHM)
114 1.91 simonb static int sysctl_sysvipc(int *, u_int, void *, size_t *);
115 1.69 simonb #endif
116 1.91 simonb static int sysctl_msgbuf(void *, size_t *);
117 1.91 simonb static int sysctl_doeproc(int *, u_int, void *, size_t *);
118 1.123 thorpej static int sysctl_dolwp(int *, u_int, void *, size_t *);
119 1.100 simonb static int sysctl_dotkstat(int *, u_int, void *, size_t *, void *);
120 1.83 sommerfe #ifdef MULTIPROCESSOR
121 1.91 simonb static int sysctl_docptime(void *, size_t *, void *);
122 1.91 simonb static int sysctl_ncpus(void);
123 1.83 sommerfe #endif
124 1.91 simonb static void fill_kproc2(struct proc *, struct kinfo_proc2 *);
125 1.123 thorpej static void fill_lwp(struct lwp *, struct kinfo_lwp *);
126 1.91 simonb static int sysctl_procargs(int *, u_int, void *, size_t *, struct proc *);
127 1.80 bjh21 #if NPTY > 0
128 1.91 simonb static int sysctl_pty(void *, size_t *, void *, size_t);
129 1.80 bjh21 #endif
130 1.62 simonb
131 1.75 thorpej /*
132 1.75 thorpej * The `sysctl_memlock' is intended to keep too many processes from
133 1.75 thorpej * locking down memory by doing sysctls at once. Whether or not this
134 1.75 thorpej * is really a good idea to worry about it probably a subject of some
135 1.75 thorpej * debate.
136 1.75 thorpej */
137 1.75 thorpej struct lock sysctl_memlock;
138 1.75 thorpej
139 1.75 thorpej void
140 1.75 thorpej sysctl_init(void)
141 1.75 thorpej {
142 1.75 thorpej
143 1.75 thorpej lockinit(&sysctl_memlock, PRIBIO|PCATCH, "sysctl", 0, 0);
144 1.75 thorpej }
145 1.75 thorpej
146 1.1 cgd int
147 1.123 thorpej sys___sysctl(struct lwp *l, void *v, register_t *retval)
148 1.11 thorpej {
149 1.60 augustss struct sys___sysctl_args /* {
150 1.5 cgd syscallarg(int *) name;
151 1.5 cgd syscallarg(u_int) namelen;
152 1.5 cgd syscallarg(void *) old;
153 1.5 cgd syscallarg(size_t *) oldlenp;
154 1.5 cgd syscallarg(void *) new;
155 1.5 cgd syscallarg(size_t) newlen;
156 1.11 thorpej } */ *uap = v;
157 1.123 thorpej struct proc *p = l->l_proc;
158 1.75 thorpej int error;
159 1.13 christos size_t savelen = 0, oldlen = 0;
160 1.1 cgd sysctlfn *fn;
161 1.1 cgd int name[CTL_MAXNAME];
162 1.1 cgd
163 1.1 cgd /*
164 1.1 cgd * all top-level sysctl names are non-terminal
165 1.1 cgd */
166 1.5 cgd if (SCARG(uap, namelen) > CTL_MAXNAME || SCARG(uap, namelen) < 2)
167 1.1 cgd return (EINVAL);
168 1.13 christos error = copyin(SCARG(uap, name), &name,
169 1.129 enami SCARG(uap, namelen) * sizeof(int));
170 1.13 christos if (error)
171 1.1 cgd return (error);
172 1.1 cgd
173 1.52 bouyer /*
174 1.52 bouyer * For all but CTL_PROC, must be root to change a value.
175 1.52 bouyer * For CTL_PROC, must be root, or owner of the proc (and not suid),
176 1.52 bouyer * this is checked in proc_sysctl() (once we know the targer proc).
177 1.52 bouyer */
178 1.52 bouyer if (SCARG(uap, new) != NULL && name[0] != CTL_PROC &&
179 1.129 enami (error = suser(p->p_ucred, &p->p_acflag)))
180 1.129 enami return (error);
181 1.52 bouyer
182 1.1 cgd switch (name[0]) {
183 1.1 cgd case CTL_KERN:
184 1.1 cgd fn = kern_sysctl;
185 1.1 cgd break;
186 1.1 cgd case CTL_HW:
187 1.1 cgd fn = hw_sysctl;
188 1.1 cgd break;
189 1.1 cgd case CTL_VM:
190 1.31 mrg fn = uvm_sysctl;
191 1.1 cgd break;
192 1.1 cgd case CTL_NET:
193 1.1 cgd fn = net_sysctl;
194 1.1 cgd break;
195 1.34 fvdl case CTL_VFS:
196 1.34 fvdl fn = vfs_sysctl;
197 1.1 cgd break;
198 1.1 cgd case CTL_MACHDEP:
199 1.1 cgd fn = cpu_sysctl;
200 1.1 cgd break;
201 1.1 cgd #ifdef DEBUG
202 1.1 cgd case CTL_DEBUG:
203 1.1 cgd fn = debug_sysctl;
204 1.20 thorpej break;
205 1.20 thorpej #endif
206 1.20 thorpej #ifdef DDB
207 1.20 thorpej case CTL_DDB:
208 1.20 thorpej fn = ddb_sysctl;
209 1.1 cgd break;
210 1.1 cgd #endif
211 1.52 bouyer case CTL_PROC:
212 1.52 bouyer fn = proc_sysctl;
213 1.52 bouyer break;
214 1.104 christos
215 1.104 christos case CTL_EMUL:
216 1.104 christos fn = emul_sysctl;
217 1.104 christos break;
218 1.1 cgd default:
219 1.1 cgd return (EOPNOTSUPP);
220 1.1 cgd }
221 1.1 cgd
222 1.75 thorpej /*
223 1.75 thorpej * XXX Hey, we wire `old', but what about `new'?
224 1.75 thorpej */
225 1.75 thorpej
226 1.141 itojun if (SCARG(uap, oldlenp)) {
227 1.141 itojun if ((error = copyin(SCARG(uap, oldlenp), &oldlen,
228 1.141 itojun sizeof(oldlen))))
229 1.55 is return (error);
230 1.55 is }
231 1.5 cgd if (SCARG(uap, old) != NULL) {
232 1.75 thorpej error = lockmgr(&sysctl_memlock, LK_EXCLUSIVE, NULL);
233 1.75 thorpej if (error)
234 1.75 thorpej return (error);
235 1.103 chs error = uvm_vslock(p, SCARG(uap, old), oldlen, VM_PROT_WRITE);
236 1.87 chs if (error) {
237 1.75 thorpej (void) lockmgr(&sysctl_memlock, LK_RELEASE, NULL);
238 1.129 enami return (error);
239 1.45 thorpej }
240 1.1 cgd savelen = oldlen;
241 1.1 cgd }
242 1.5 cgd error = (*fn)(name + 1, SCARG(uap, namelen) - 1, SCARG(uap, old),
243 1.141 itojun &oldlen, SCARG(uap, new), SCARG(uap, newlen), p);
244 1.5 cgd if (SCARG(uap, old) != NULL) {
245 1.75 thorpej uvm_vsunlock(p, SCARG(uap, old), savelen);
246 1.75 thorpej (void) lockmgr(&sysctl_memlock, LK_RELEASE, NULL);
247 1.1 cgd }
248 1.1 cgd if (error)
249 1.1 cgd return (error);
250 1.5 cgd if (SCARG(uap, oldlenp))
251 1.5 cgd error = copyout(&oldlen, SCARG(uap, oldlenp), sizeof(oldlen));
252 1.16 thorpej return (error);
253 1.1 cgd }
254 1.1 cgd
255 1.1 cgd /*
256 1.1 cgd * Attributes stored in the kernel.
257 1.1 cgd */
258 1.1 cgd char hostname[MAXHOSTNAMELEN];
259 1.1 cgd int hostnamelen;
260 1.75 thorpej
261 1.1 cgd char domainname[MAXHOSTNAMELEN];
262 1.1 cgd int domainnamelen;
263 1.75 thorpej
264 1.1 cgd long hostid;
265 1.75 thorpej
266 1.8 cgd #ifdef INSECURE
267 1.8 cgd int securelevel = -1;
268 1.8 cgd #else
269 1.17 mrg int securelevel = 0;
270 1.8 cgd #endif
271 1.75 thorpej
272 1.75 thorpej #ifndef DEFCORENAME
273 1.75 thorpej #define DEFCORENAME "%n.core"
274 1.75 thorpej #endif
275 1.52 bouyer char defcorename[MAXPATHLEN] = DEFCORENAME;
276 1.75 thorpej
277 1.57 fair extern int kern_logsigexit;
278 1.62 simonb extern fixpt_t ccpu;
279 1.129 enami extern int forkfsleep;
280 1.125 atatat extern int dumponpanic;
281 1.1 cgd
282 1.84 sommerfe #ifndef MULTIPROCESSOR
283 1.84 sommerfe #define sysctl_ncpus() 1
284 1.84 sommerfe #endif
285 1.84 sommerfe
286 1.83 sommerfe #ifdef MULTIPROCESSOR
287 1.83 sommerfe
288 1.83 sommerfe #ifndef CPU_INFO_FOREACH
289 1.83 sommerfe #define CPU_INFO_ITERATOR int
290 1.83 sommerfe #define CPU_INFO_FOREACH(cii, ci) cii = 0, ci = curcpu(); ci != NULL; ci = NULL
291 1.83 sommerfe #endif
292 1.83 sommerfe
293 1.83 sommerfe static int
294 1.91 simonb sysctl_docptime(void *oldp, size_t *oldlenp, void *newp)
295 1.83 sommerfe {
296 1.83 sommerfe u_int64_t cp_time[CPUSTATES];
297 1.83 sommerfe int i;
298 1.83 sommerfe struct cpu_info *ci;
299 1.83 sommerfe CPU_INFO_ITERATOR cii;
300 1.83 sommerfe
301 1.117 simonb for (i = 0; i < CPUSTATES; i++)
302 1.83 sommerfe cp_time[i] = 0;
303 1.83 sommerfe
304 1.83 sommerfe for (CPU_INFO_FOREACH(cii, ci)) {
305 1.117 simonb for (i = 0; i < CPUSTATES; i++)
306 1.83 sommerfe cp_time[i] += ci->ci_schedstate.spc_cp_time[i];
307 1.83 sommerfe }
308 1.83 sommerfe return (sysctl_rdstruct(oldp, oldlenp, newp,
309 1.83 sommerfe cp_time, sizeof(cp_time)));
310 1.83 sommerfe }
311 1.84 sommerfe
312 1.84 sommerfe static int
313 1.84 sommerfe sysctl_ncpus(void)
314 1.84 sommerfe {
315 1.84 sommerfe struct cpu_info *ci;
316 1.84 sommerfe CPU_INFO_ITERATOR cii;
317 1.84 sommerfe
318 1.84 sommerfe int ncpus = 0;
319 1.84 sommerfe for (CPU_INFO_FOREACH(cii, ci))
320 1.84 sommerfe ncpus++;
321 1.129 enami return (ncpus);
322 1.84 sommerfe }
323 1.84 sommerfe
324 1.83 sommerfe #endif
325 1.83 sommerfe
326 1.1 cgd /*
327 1.1 cgd * kernel related system variables.
328 1.1 cgd */
329 1.13 christos int
330 1.91 simonb kern_sysctl(int *name, u_int namelen, void *oldp, size_t *oldlenp,
331 1.137 fvdl void *newp, size_t newlen, struct proc *p)
332 1.1 cgd {
333 1.1 cgd int error, level, inthostid;
334 1.18 explorer int old_autonicetime;
335 1.22 tls int old_vnodes;
336 1.74 simonb dev_t consdev;
337 1.109 itojun #if NRND > 0
338 1.109 itojun int v;
339 1.109 itojun #endif
340 1.1 cgd
341 1.44 thorpej /* All sysctl names at this level, except for a few, are terminal. */
342 1.44 thorpej switch (name[0]) {
343 1.44 thorpej case KERN_PROC:
344 1.62 simonb case KERN_PROC2:
345 1.123 thorpej case KERN_LWP:
346 1.44 thorpej case KERN_PROF:
347 1.44 thorpej case KERN_MBUF:
348 1.62 simonb case KERN_PROC_ARGS:
349 1.69 simonb case KERN_SYSVIPC_INFO:
350 1.89 jdolecek case KERN_PIPE:
351 1.100 simonb case KERN_TKSTAT:
352 1.44 thorpej /* Not terminal. */
353 1.44 thorpej break;
354 1.44 thorpej default:
355 1.44 thorpej if (namelen != 1)
356 1.44 thorpej return (ENOTDIR); /* overloaded */
357 1.44 thorpej }
358 1.1 cgd
359 1.1 cgd switch (name[0]) {
360 1.1 cgd case KERN_OSTYPE:
361 1.1 cgd return (sysctl_rdstring(oldp, oldlenp, newp, ostype));
362 1.1 cgd case KERN_OSRELEASE:
363 1.1 cgd return (sysctl_rdstring(oldp, oldlenp, newp, osrelease));
364 1.1 cgd case KERN_OSREV:
365 1.75 thorpej return (sysctl_rdint(oldp, oldlenp, newp, __NetBSD_Version__));
366 1.1 cgd case KERN_VERSION:
367 1.1 cgd return (sysctl_rdstring(oldp, oldlenp, newp, version));
368 1.1 cgd case KERN_MAXVNODES:
369 1.22 tls old_vnodes = desiredvnodes;
370 1.29 sommerfe error = sysctl_int(oldp, oldlenp, newp, newlen, &desiredvnodes);
371 1.99 lukem if (newp && !error) {
372 1.99 lukem if (old_vnodes > desiredvnodes) {
373 1.139 yamt error = vfs_drainvnodes(desiredvnodes, p);
374 1.139 yamt if (error) {
375 1.139 yamt desiredvnodes = old_vnodes;
376 1.139 yamt return error;
377 1.139 yamt }
378 1.99 lukem }
379 1.94 chs vfs_reinit();
380 1.95 chs nchreinit();
381 1.29 sommerfe }
382 1.22 tls return (error);
383 1.1 cgd case KERN_MAXPROC:
384 1.121 jdolecek {
385 1.121 jdolecek int nmaxproc = maxproc;
386 1.121 jdolecek
387 1.129 enami error = sysctl_int(oldp, oldlenp, newp, newlen, &nmaxproc);
388 1.121 jdolecek
389 1.121 jdolecek if (!error && newp) {
390 1.133 jdolecek if (nmaxproc < 0 || nmaxproc >= PID_MAX)
391 1.121 jdolecek return (EINVAL);
392 1.121 jdolecek
393 1.122 jdolecek #ifdef __HAVE_CPU_MAXPROC
394 1.122 jdolecek if (nmaxproc > cpu_maxproc())
395 1.122 jdolecek return (EINVAL);
396 1.122 jdolecek #endif
397 1.121 jdolecek maxproc = nmaxproc;
398 1.121 jdolecek }
399 1.121 jdolecek
400 1.121 jdolecek return (error);
401 1.121 jdolecek }
402 1.1 cgd case KERN_MAXFILES:
403 1.1 cgd return (sysctl_int(oldp, oldlenp, newp, newlen, &maxfiles));
404 1.1 cgd case KERN_ARGMAX:
405 1.1 cgd return (sysctl_rdint(oldp, oldlenp, newp, ARG_MAX));
406 1.1 cgd case KERN_SECURELVL:
407 1.1 cgd level = securelevel;
408 1.1 cgd if ((error = sysctl_int(oldp, oldlenp, newp, newlen, &level)) ||
409 1.1 cgd newp == NULL)
410 1.1 cgd return (error);
411 1.137 fvdl if (level < securelevel && p->p_pid != 1)
412 1.1 cgd return (EPERM);
413 1.1 cgd securelevel = level;
414 1.1 cgd return (0);
415 1.1 cgd case KERN_HOSTNAME:
416 1.1 cgd error = sysctl_string(oldp, oldlenp, newp, newlen,
417 1.1 cgd hostname, sizeof(hostname));
418 1.1 cgd if (newp && !error)
419 1.1 cgd hostnamelen = newlen;
420 1.1 cgd return (error);
421 1.1 cgd case KERN_DOMAINNAME:
422 1.1 cgd error = sysctl_string(oldp, oldlenp, newp, newlen,
423 1.1 cgd domainname, sizeof(domainname));
424 1.1 cgd if (newp && !error)
425 1.1 cgd domainnamelen = newlen;
426 1.1 cgd return (error);
427 1.1 cgd case KERN_HOSTID:
428 1.1 cgd inthostid = hostid; /* XXX assumes sizeof long <= sizeof int */
429 1.129 enami error = sysctl_int(oldp, oldlenp, newp, newlen, &inthostid);
430 1.99 lukem if (newp && !error)
431 1.99 lukem hostid = inthostid;
432 1.1 cgd return (error);
433 1.1 cgd case KERN_CLOCKRATE:
434 1.1 cgd return (sysctl_clockrate(oldp, oldlenp));
435 1.1 cgd case KERN_BOOTTIME:
436 1.1 cgd return (sysctl_rdstruct(oldp, oldlenp, newp, &boottime,
437 1.1 cgd sizeof(struct timeval)));
438 1.1 cgd case KERN_VNODE:
439 1.137 fvdl return (sysctl_vnode(oldp, oldlenp, p));
440 1.1 cgd case KERN_PROC:
441 1.62 simonb case KERN_PROC2:
442 1.62 simonb return (sysctl_doeproc(name, namelen, oldp, oldlenp));
443 1.123 thorpej case KERN_LWP:
444 1.123 thorpej return (sysctl_dolwp(name, namelen, oldp, oldlenp));
445 1.62 simonb case KERN_PROC_ARGS:
446 1.62 simonb return (sysctl_procargs(name + 1, namelen - 1,
447 1.137 fvdl oldp, oldlenp, p));
448 1.1 cgd case KERN_FILE:
449 1.1 cgd return (sysctl_file(oldp, oldlenp));
450 1.1 cgd #ifdef GPROF
451 1.1 cgd case KERN_PROF:
452 1.1 cgd return (sysctl_doprof(name + 1, namelen - 1, oldp, oldlenp,
453 1.1 cgd newp, newlen));
454 1.1 cgd #endif
455 1.1 cgd case KERN_POSIX1:
456 1.1 cgd return (sysctl_rdint(oldp, oldlenp, newp, _POSIX_VERSION));
457 1.1 cgd case KERN_NGROUPS:
458 1.1 cgd return (sysctl_rdint(oldp, oldlenp, newp, NGROUPS_MAX));
459 1.1 cgd case KERN_JOB_CONTROL:
460 1.1 cgd return (sysctl_rdint(oldp, oldlenp, newp, 1));
461 1.1 cgd case KERN_SAVED_IDS:
462 1.1 cgd #ifdef _POSIX_SAVED_IDS
463 1.1 cgd return (sysctl_rdint(oldp, oldlenp, newp, 1));
464 1.1 cgd #else
465 1.1 cgd return (sysctl_rdint(oldp, oldlenp, newp, 0));
466 1.1 cgd #endif
467 1.7 cgd case KERN_MAXPARTITIONS:
468 1.7 cgd return (sysctl_rdint(oldp, oldlenp, newp, MAXPARTITIONS));
469 1.10 thorpej case KERN_RAWPARTITION:
470 1.10 thorpej return (sysctl_rdint(oldp, oldlenp, newp, RAW_PART));
471 1.19 thorpej #ifdef NTP
472 1.15 jonathan case KERN_NTPTIME:
473 1.15 jonathan return (sysctl_ntptime(oldp, oldlenp));
474 1.19 thorpej #endif
475 1.18 explorer case KERN_AUTONICETIME:
476 1.129 enami old_autonicetime = autonicetime;
477 1.129 enami error = sysctl_int(oldp, oldlenp, newp, newlen, &autonicetime);
478 1.18 explorer if (autonicetime < 0)
479 1.129 enami autonicetime = old_autonicetime;
480 1.18 explorer return (error);
481 1.18 explorer case KERN_AUTONICEVAL:
482 1.18 explorer error = sysctl_int(oldp, oldlenp, newp, newlen, &autoniceval);
483 1.18 explorer if (autoniceval < PRIO_MIN)
484 1.18 explorer autoniceval = PRIO_MIN;
485 1.18 explorer if (autoniceval > PRIO_MAX)
486 1.18 explorer autoniceval = PRIO_MAX;
487 1.18 explorer return (error);
488 1.21 perry case KERN_RTC_OFFSET:
489 1.21 perry return (sysctl_rdint(oldp, oldlenp, newp, rtc_offset));
490 1.23 thorpej case KERN_ROOT_DEVICE:
491 1.23 thorpej return (sysctl_rdstring(oldp, oldlenp, newp,
492 1.23 thorpej root_device->dv_xname));
493 1.145 dsl case KERN_ROOT_PARTITION:
494 1.145 dsl return (sysctl_rdint(oldp, oldlenp, newp, DISKPART(rootdev)));
495 1.28 leo case KERN_MSGBUFSIZE:
496 1.28 leo /*
497 1.28 leo * deal with cases where the message buffer has
498 1.28 leo * become corrupted.
499 1.28 leo */
500 1.28 leo if (!msgbufenabled || msgbufp->msg_magic != MSG_MAGIC) {
501 1.28 leo msgbufenabled = 0;
502 1.28 leo return (ENXIO);
503 1.28 leo }
504 1.28 leo return (sysctl_rdint(oldp, oldlenp, newp, msgbufp->msg_bufs));
505 1.36 kleink case KERN_FSYNC:
506 1.36 kleink return (sysctl_rdint(oldp, oldlenp, newp, 1));
507 1.36 kleink case KERN_SYSVMSG:
508 1.36 kleink #ifdef SYSVMSG
509 1.36 kleink return (sysctl_rdint(oldp, oldlenp, newp, 1));
510 1.36 kleink #else
511 1.36 kleink return (sysctl_rdint(oldp, oldlenp, newp, 0));
512 1.36 kleink #endif
513 1.36 kleink case KERN_SYSVSEM:
514 1.36 kleink #ifdef SYSVSEM
515 1.36 kleink return (sysctl_rdint(oldp, oldlenp, newp, 1));
516 1.36 kleink #else
517 1.36 kleink return (sysctl_rdint(oldp, oldlenp, newp, 0));
518 1.36 kleink #endif
519 1.36 kleink case KERN_SYSVSHM:
520 1.36 kleink #ifdef SYSVSHM
521 1.36 kleink return (sysctl_rdint(oldp, oldlenp, newp, 1));
522 1.36 kleink #else
523 1.36 kleink return (sysctl_rdint(oldp, oldlenp, newp, 0));
524 1.36 kleink #endif
525 1.52 bouyer case KERN_DEFCORENAME:
526 1.52 bouyer if (newp && newlen < 1)
527 1.52 bouyer return (EINVAL);
528 1.52 bouyer error = sysctl_string(oldp, oldlenp, newp, newlen,
529 1.52 bouyer defcorename, sizeof(defcorename));
530 1.52 bouyer return (error);
531 1.40 kleink case KERN_SYNCHRONIZED_IO:
532 1.40 kleink return (sysctl_rdint(oldp, oldlenp, newp, 1));
533 1.40 kleink case KERN_IOV_MAX:
534 1.40 kleink return (sysctl_rdint(oldp, oldlenp, newp, IOV_MAX));
535 1.44 thorpej case KERN_MBUF:
536 1.44 thorpej return (sysctl_dombuf(name + 1, namelen - 1, oldp, oldlenp,
537 1.44 thorpej newp, newlen));
538 1.47 kleink case KERN_MAPPED_FILES:
539 1.47 kleink return (sysctl_rdint(oldp, oldlenp, newp, 1));
540 1.47 kleink case KERN_MEMLOCK:
541 1.47 kleink return (sysctl_rdint(oldp, oldlenp, newp, 1));
542 1.47 kleink case KERN_MEMLOCK_RANGE:
543 1.47 kleink return (sysctl_rdint(oldp, oldlenp, newp, 1));
544 1.47 kleink case KERN_MEMORY_PROTECTION:
545 1.47 kleink return (sysctl_rdint(oldp, oldlenp, newp, 1));
546 1.51 kleink case KERN_LOGIN_NAME_MAX:
547 1.51 kleink return (sysctl_rdint(oldp, oldlenp, newp, LOGIN_NAME_MAX));
548 1.57 fair case KERN_LOGSIGEXIT:
549 1.62 simonb return (sysctl_int(oldp, oldlenp, newp, newlen,
550 1.62 simonb &kern_logsigexit));
551 1.62 simonb case KERN_FSCALE:
552 1.62 simonb return (sysctl_rdint(oldp, oldlenp, newp, FSCALE));
553 1.62 simonb case KERN_CCPU:
554 1.62 simonb return (sysctl_rdint(oldp, oldlenp, newp, ccpu));
555 1.62 simonb case KERN_CP_TIME:
556 1.83 sommerfe #ifndef MULTIPROCESSOR
557 1.70 thorpej return (sysctl_rdstruct(oldp, oldlenp, newp,
558 1.70 thorpej curcpu()->ci_schedstate.spc_cp_time,
559 1.70 thorpej sizeof(curcpu()->ci_schedstate.spc_cp_time)));
560 1.83 sommerfe #else
561 1.83 sommerfe return (sysctl_docptime(oldp, oldlenp, newp));
562 1.83 sommerfe #endif
563 1.69 simonb #if defined(SYSVMSG) || defined(SYSVSEM) || defined(SYSVSHM)
564 1.69 simonb case KERN_SYSVIPC_INFO:
565 1.69 simonb return (sysctl_sysvipc(name + 1, namelen - 1, oldp, oldlenp));
566 1.69 simonb #endif
567 1.72 simonb case KERN_MSGBUF:
568 1.72 simonb return (sysctl_msgbuf(oldp, oldlenp));
569 1.74 simonb case KERN_CONSDEV:
570 1.74 simonb if (cn_tab != NULL)
571 1.74 simonb consdev = cn_tab->cn_dev;
572 1.74 simonb else
573 1.74 simonb consdev = NODEV;
574 1.74 simonb return (sysctl_rdstruct(oldp, oldlenp, newp, &consdev,
575 1.74 simonb sizeof consdev));
576 1.77 jdolecek #if NPTY > 0
577 1.77 jdolecek case KERN_MAXPTYS:
578 1.129 enami return (sysctl_pty(oldp, oldlenp, newp, newlen));
579 1.89 jdolecek #endif
580 1.102 jdolecek #ifndef PIPE_SOCKETPAIR
581 1.89 jdolecek case KERN_PIPE:
582 1.89 jdolecek return (sysctl_dopipe(name + 1, namelen - 1, oldp, oldlenp,
583 1.89 jdolecek newp, newlen));
584 1.77 jdolecek #endif
585 1.92 matt case KERN_MAXPHYS:
586 1.93 thorpej return (sysctl_rdint(oldp, oldlenp, newp, MAXPHYS));
587 1.138 ragge case KERN_SOMAXKVA:
588 1.138 ragge {
589 1.138 ragge int new_somaxkva = somaxkva;
590 1.138 ragge
591 1.138 ragge error = sysctl_int(oldp, oldlenp, newp, newlen, &new_somaxkva);
592 1.138 ragge if (newp && !error) {
593 1.138 ragge if (new_somaxkva < (16 * 1024 * 1024)) /* sanity */
594 1.138 ragge return (EINVAL);
595 1.138 ragge somaxkva = new_somaxkva;
596 1.138 ragge }
597 1.138 ragge return (error);
598 1.138 ragge }
599 1.93 thorpej case KERN_SBMAX:
600 1.93 thorpej {
601 1.93 thorpej int new_sbmax = sb_max;
602 1.93 thorpej
603 1.93 thorpej error = sysctl_int(oldp, oldlenp, newp, newlen, &new_sbmax);
604 1.99 lukem if (newp && !error) {
605 1.93 thorpej if (new_sbmax < (16 * 1024)) /* sanity */
606 1.93 thorpej return (EINVAL);
607 1.93 thorpej sb_max = new_sbmax;
608 1.93 thorpej }
609 1.93 thorpej return (error);
610 1.93 thorpej }
611 1.100 simonb case KERN_TKSTAT:
612 1.100 simonb return (sysctl_dotkstat(name + 1, namelen - 1, oldp, oldlenp,
613 1.100 simonb newp));
614 1.101 kleink case KERN_MONOTONIC_CLOCK: /* XXX _POSIX_VERSION */
615 1.101 kleink return (sysctl_rdint(oldp, oldlenp, newp, 200112));
616 1.109 itojun case KERN_URND:
617 1.109 itojun #if NRND > 0
618 1.109 itojun if (rnd_extract_data(&v, sizeof(v), RND_EXTRACT_ANY) ==
619 1.109 itojun sizeof(v))
620 1.109 itojun return (sysctl_rdint(oldp, oldlenp, newp, v));
621 1.109 itojun else
622 1.109 itojun return (EIO); /*XXX*/
623 1.109 itojun #else
624 1.109 itojun return (EOPNOTSUPP);
625 1.109 itojun #endif
626 1.119 scw case KERN_LABELSECTOR:
627 1.119 scw return (sysctl_rdint(oldp, oldlenp, newp, LABELSECTOR));
628 1.119 scw case KERN_LABELOFFSET:
629 1.119 scw return (sysctl_rdint(oldp, oldlenp, newp, LABELOFFSET));
630 1.120 jdolecek case KERN_FORKFSLEEP:
631 1.120 jdolecek {
632 1.120 jdolecek /* userland sees value in ms, internally is in ticks */
633 1.120 jdolecek int timo, lsleep = forkfsleep * 1000 / hz;
634 1.120 jdolecek
635 1.129 enami error = sysctl_int(oldp, oldlenp, newp, newlen, &lsleep);
636 1.120 jdolecek if (newp && !error) {
637 1.120 jdolecek /* refuse negative values, and overly 'long time' */
638 1.120 jdolecek if (lsleep < 0 || lsleep > MAXSLP * 1000)
639 1.120 jdolecek return (EINVAL);
640 1.120 jdolecek
641 1.120 jdolecek timo = mstohz(lsleep);
642 1.120 jdolecek
643 1.120 jdolecek /* if the interval is >0 ms && <1 tick, use 1 tick */
644 1.120 jdolecek if (lsleep != 0 && timo == 0)
645 1.120 jdolecek forkfsleep = 1;
646 1.120 jdolecek else
647 1.120 jdolecek forkfsleep = timo;
648 1.120 jdolecek }
649 1.120 jdolecek return (error);
650 1.120 jdolecek }
651 1.124 kleink case KERN_POSIX_THREADS: /* XXX _POSIX_VERSION */
652 1.124 kleink return (sysctl_rdint(oldp, oldlenp, newp, 200112));
653 1.124 kleink case KERN_POSIX_SEMAPHORES: /* XXX _POSIX_VERSION */
654 1.124 kleink #ifdef P1003_1B_SEMAPHORE
655 1.124 kleink return (sysctl_rdint(oldp, oldlenp, newp, 200112));
656 1.129 enami #else
657 1.124 kleink return (sysctl_rdint(oldp, oldlenp, newp, 0));
658 1.124 kleink #endif
659 1.124 kleink case KERN_POSIX_BARRIERS: /* XXX _POSIX_VERSION */
660 1.124 kleink return (sysctl_rdint(oldp, oldlenp, newp, 200112));
661 1.124 kleink case KERN_POSIX_TIMERS: /* XXX _POSIX_VERSION */
662 1.124 kleink return (sysctl_rdint(oldp, oldlenp, newp, 200112));
663 1.124 kleink case KERN_POSIX_SPIN_LOCKS: /* XXX _POSIX_VERSION */
664 1.124 kleink return (sysctl_rdint(oldp, oldlenp, newp, 200112));
665 1.124 kleink case KERN_POSIX_READER_WRITER_LOCKS: /* XXX _POSIX_VERSION */
666 1.124 kleink return (sysctl_rdint(oldp, oldlenp, newp, 200112));
667 1.125 atatat case KERN_DUMP_ON_PANIC:
668 1.125 atatat return (sysctl_int(oldp, oldlenp, newp, newlen, &dumponpanic));
669 1.120 jdolecek
670 1.145 dsl case KERN_DRIVERS:
671 1.145 dsl return (sysctl_drivers(oldp, oldlenp));
672 1.145 dsl
673 1.1 cgd default:
674 1.1 cgd return (EOPNOTSUPP);
675 1.1 cgd }
676 1.1 cgd /* NOTREACHED */
677 1.1 cgd }
678 1.1 cgd
679 1.1 cgd /*
680 1.1 cgd * hardware related system variables.
681 1.1 cgd */
682 1.13 christos int
683 1.91 simonb hw_sysctl(int *name, u_int namelen, void *oldp, size_t *oldlenp,
684 1.137 fvdl void *newp, size_t newlen, struct proc *p)
685 1.1 cgd {
686 1.1 cgd
687 1.98 simonb /* All sysctl names at this level, except for a few, are terminal. */
688 1.98 simonb switch (name[0]) {
689 1.98 simonb case HW_DISKSTATS:
690 1.98 simonb /* Not terminal. */
691 1.98 simonb break;
692 1.98 simonb default:
693 1.98 simonb if (namelen != 1)
694 1.98 simonb return (ENOTDIR); /* overloaded */
695 1.98 simonb }
696 1.1 cgd
697 1.1 cgd switch (name[0]) {
698 1.1 cgd case HW_MACHINE:
699 1.1 cgd return (sysctl_rdstring(oldp, oldlenp, newp, machine));
700 1.27 veego case HW_MACHINE_ARCH:
701 1.27 veego return (sysctl_rdstring(oldp, oldlenp, newp, machine_arch));
702 1.1 cgd case HW_MODEL:
703 1.1 cgd return (sysctl_rdstring(oldp, oldlenp, newp, cpu_model));
704 1.1 cgd case HW_NCPU:
705 1.84 sommerfe return (sysctl_rdint(oldp, oldlenp, newp, sysctl_ncpus()));
706 1.1 cgd case HW_BYTEORDER:
707 1.1 cgd return (sysctl_rdint(oldp, oldlenp, newp, BYTE_ORDER));
708 1.1 cgd case HW_PHYSMEM:
709 1.131 thorpej {
710 1.131 thorpej u_int rval;
711 1.131 thorpej
712 1.131 thorpej if ((u_int)physmem > (UINT_MAX / PAGE_SIZE))
713 1.131 thorpej rval = UINT_MAX;
714 1.131 thorpej else
715 1.131 thorpej rval = physmem * PAGE_SIZE;
716 1.131 thorpej return (sysctl_rdint(oldp, oldlenp, newp, rval));
717 1.131 thorpej }
718 1.131 thorpej case HW_PHYSMEM64:
719 1.131 thorpej return (sysctl_rdquad(oldp, oldlenp, newp,
720 1.131 thorpej (u_quad_t)physmem * PAGE_SIZE));
721 1.1 cgd case HW_USERMEM:
722 1.131 thorpej {
723 1.131 thorpej u_int rval;
724 1.131 thorpej
725 1.131 thorpej if ((u_int)(physmem - uvmexp.wired) > (UINT_MAX / PAGE_SIZE))
726 1.131 thorpej rval = UINT_MAX;
727 1.131 thorpej else
728 1.131 thorpej rval = (physmem - uvmexp.wired) * PAGE_SIZE;
729 1.131 thorpej return (sysctl_rdint(oldp, oldlenp, newp, rval));
730 1.131 thorpej }
731 1.131 thorpej case HW_USERMEM64:
732 1.127 thorpej return (sysctl_rdquad(oldp, oldlenp, newp,
733 1.131 thorpej (u_quad_t)(physmem - uvmexp.wired) * PAGE_SIZE));
734 1.1 cgd case HW_PAGESIZE:
735 1.1 cgd return (sysctl_rdint(oldp, oldlenp, newp, PAGE_SIZE));
736 1.58 itojun case HW_ALIGNBYTES:
737 1.58 itojun return (sysctl_rdint(oldp, oldlenp, newp, ALIGNBYTES));
738 1.98 simonb case HW_DISKNAMES:
739 1.98 simonb return (sysctl_disknames(oldp, oldlenp));
740 1.98 simonb case HW_DISKSTATS:
741 1.98 simonb return (sysctl_diskstats(name + 1, namelen - 1, oldp, oldlenp));
742 1.82 eeh case HW_CNMAGIC: {
743 1.82 eeh char magic[CNS_LEN];
744 1.82 eeh int error;
745 1.82 eeh
746 1.82 eeh if (oldp)
747 1.82 eeh cn_get_magic(magic, CNS_LEN);
748 1.82 eeh error = sysctl_string(oldp, oldlenp, newp, newlen,
749 1.82 eeh magic, sizeof(magic));
750 1.82 eeh if (newp && !error) {
751 1.82 eeh error = cn_set_magic(magic);
752 1.82 eeh }
753 1.82 eeh return (error);
754 1.82 eeh }
755 1.1 cgd default:
756 1.1 cgd return (EOPNOTSUPP);
757 1.1 cgd }
758 1.1 cgd /* NOTREACHED */
759 1.1 cgd }
760 1.1 cgd
761 1.1 cgd #ifdef DEBUG
762 1.1 cgd /*
763 1.1 cgd * Debugging related system variables.
764 1.1 cgd */
765 1.107 matt struct ctldebug /* debug0, */ /* debug1, */ debug2, debug3, debug4;
766 1.1 cgd struct ctldebug debug5, debug6, debug7, debug8, debug9;
767 1.1 cgd struct ctldebug debug10, debug11, debug12, debug13, debug14;
768 1.108 matt struct ctldebug debug15, debug16, debug17, debug18, debug19;
769 1.1 cgd static struct ctldebug *debugvars[CTL_DEBUG_MAXID] = {
770 1.1 cgd &debug0, &debug1, &debug2, &debug3, &debug4,
771 1.1 cgd &debug5, &debug6, &debug7, &debug8, &debug9,
772 1.1 cgd &debug10, &debug11, &debug12, &debug13, &debug14,
773 1.1 cgd &debug15, &debug16, &debug17, &debug18, &debug19,
774 1.1 cgd };
775 1.91 simonb
776 1.1 cgd int
777 1.91 simonb debug_sysctl(int *name, u_int namelen, void *oldp, size_t *oldlenp,
778 1.137 fvdl void *newp, size_t newlen, struct proc *p)
779 1.1 cgd {
780 1.1 cgd struct ctldebug *cdp;
781 1.1 cgd
782 1.1 cgd /* all sysctl names at this level are name and field */
783 1.1 cgd if (namelen != 2)
784 1.1 cgd return (ENOTDIR); /* overloaded */
785 1.104 christos if (name[0] >= CTL_DEBUG_MAXID)
786 1.104 christos return (EOPNOTSUPP);
787 1.1 cgd cdp = debugvars[name[0]];
788 1.104 christos if (cdp->debugname == 0)
789 1.1 cgd return (EOPNOTSUPP);
790 1.1 cgd switch (name[1]) {
791 1.1 cgd case CTL_DEBUG_NAME:
792 1.1 cgd return (sysctl_rdstring(oldp, oldlenp, newp, cdp->debugname));
793 1.1 cgd case CTL_DEBUG_VALUE:
794 1.1 cgd return (sysctl_int(oldp, oldlenp, newp, newlen, cdp->debugvar));
795 1.1 cgd default:
796 1.1 cgd return (EOPNOTSUPP);
797 1.1 cgd }
798 1.1 cgd /* NOTREACHED */
799 1.1 cgd }
800 1.1 cgd #endif /* DEBUG */
801 1.1 cgd
802 1.52 bouyer int
803 1.91 simonb proc_sysctl(int *name, u_int namelen, void *oldp, size_t *oldlenp,
804 1.137 fvdl void *newp, size_t newlen, struct proc *p)
805 1.52 bouyer {
806 1.62 simonb struct proc *ptmp = NULL;
807 1.52 bouyer int error = 0;
808 1.52 bouyer struct rlimit alim;
809 1.52 bouyer struct plimit *newplim;
810 1.52 bouyer char *tmps = NULL;
811 1.111 thorpej size_t len, curlen;
812 1.111 thorpej u_int i;
813 1.144 ragge int si;
814 1.52 bouyer
815 1.52 bouyer if (namelen < 2)
816 1.129 enami return (EINVAL);
817 1.52 bouyer
818 1.52 bouyer if (name[0] == PROC_CURPROC) {
819 1.52 bouyer ptmp = p;
820 1.143 atatat } else if ((ptmp = pfind((pid_t)name[0])) == NULL) {
821 1.143 atatat return (ESRCH);
822 1.52 bouyer } else {
823 1.52 bouyer if (p->p_ucred->cr_uid != 0) {
824 1.129 enami if (p->p_cred->p_ruid != ptmp->p_cred->p_ruid ||
825 1.52 bouyer p->p_cred->p_ruid != ptmp->p_cred->p_svuid)
826 1.129 enami return (EPERM);
827 1.52 bouyer if (ptmp->p_cred->p_rgid != ptmp->p_cred->p_svgid)
828 1.129 enami return (EPERM); /* sgid proc */
829 1.52 bouyer for (i = 0; i < p->p_ucred->cr_ngroups; i++) {
830 1.52 bouyer if (p->p_ucred->cr_groups[i] ==
831 1.52 bouyer ptmp->p_cred->p_rgid)
832 1.52 bouyer break;
833 1.52 bouyer }
834 1.52 bouyer if (i == p->p_ucred->cr_ngroups)
835 1.129 enami return (EPERM);
836 1.52 bouyer }
837 1.52 bouyer }
838 1.129 enami switch (name[1]) {
839 1.129 enami case PROC_PID_STOPFORK:
840 1.115 manu if (namelen != 2)
841 1.129 enami return (EINVAL);
842 1.144 ragge si = ((ptmp->p_flag & P_STOPFORK) != 0);
843 1.144 ragge if ((error = sysctl_int(oldp, oldlenp, newp, newlen, &si)) != 0)
844 1.129 enami return (error);
845 1.144 ragge if (si != 0)
846 1.115 manu ptmp->p_flag |= P_STOPFORK;
847 1.115 manu else
848 1.115 manu ptmp->p_flag &= ~P_STOPFORK;
849 1.129 enami return (0);
850 1.115 manu break;
851 1.129 enami
852 1.129 enami case PROC_PID_STOPEXEC:
853 1.115 manu if (namelen != 2)
854 1.129 enami return (EINVAL);
855 1.144 ragge si = ((ptmp->p_flag & P_STOPEXEC) != 0);
856 1.144 ragge if ((error = sysctl_int(oldp, oldlenp, newp, newlen, &si)) != 0)
857 1.129 enami return (error);
858 1.144 ragge if (si != 0)
859 1.115 manu ptmp->p_flag |= P_STOPEXEC;
860 1.115 manu else
861 1.115 manu ptmp->p_flag &= ~P_STOPEXEC;
862 1.129 enami return (0);
863 1.115 manu break;
864 1.115 manu
865 1.115 manu case PROC_PID_CORENAME:
866 1.52 bouyer if (namelen != 2)
867 1.129 enami return (EINVAL);
868 1.52 bouyer /*
869 1.52 bouyer * Can't use sysctl_string() here because we may malloc a new
870 1.52 bouyer * area during the process, so we have to do it by hand.
871 1.52 bouyer */
872 1.52 bouyer curlen = strlen(ptmp->p_limit->pl_corename) + 1;
873 1.129 enami if (oldlenp && *oldlenp < curlen) {
874 1.55 is if (!oldp)
875 1.55 is *oldlenp = curlen;
876 1.52 bouyer return (ENOMEM);
877 1.55 is }
878 1.52 bouyer if (newp) {
879 1.52 bouyer if (securelevel > 2)
880 1.129 enami return (EPERM);
881 1.52 bouyer if (newlen > MAXPATHLEN)
882 1.129 enami return (ENAMETOOLONG);
883 1.52 bouyer tmps = malloc(newlen + 1, M_TEMP, M_WAITOK);
884 1.52 bouyer if (tmps == NULL)
885 1.129 enami return (ENOMEM);
886 1.52 bouyer error = copyin(newp, tmps, newlen + 1);
887 1.52 bouyer tmps[newlen] = '\0';
888 1.52 bouyer if (error)
889 1.52 bouyer goto cleanup;
890 1.52 bouyer /* Enforce to be either 'core' for end with '.core' */
891 1.129 enami if (newlen < 4) { /* c.o.r.e */
892 1.52 bouyer error = EINVAL;
893 1.52 bouyer goto cleanup;
894 1.52 bouyer }
895 1.52 bouyer len = newlen - 4;
896 1.52 bouyer if (len > 0) {
897 1.52 bouyer if (tmps[len - 1] != '.' &&
898 1.52 bouyer tmps[len - 1] != '/') {
899 1.52 bouyer error = EINVAL;
900 1.52 bouyer goto cleanup;
901 1.52 bouyer }
902 1.52 bouyer }
903 1.52 bouyer if (strcmp(&tmps[len], "core") != 0) {
904 1.52 bouyer error = EINVAL;
905 1.52 bouyer goto cleanup;
906 1.52 bouyer }
907 1.52 bouyer }
908 1.55 is if (oldp && oldlenp) {
909 1.52 bouyer *oldlenp = curlen;
910 1.52 bouyer error = copyout(ptmp->p_limit->pl_corename, oldp,
911 1.52 bouyer curlen);
912 1.52 bouyer }
913 1.52 bouyer if (newp && error == 0) {
914 1.52 bouyer /* if the 2 strings are identical, don't limcopy() */
915 1.52 bouyer if (strcmp(tmps, ptmp->p_limit->pl_corename) == 0) {
916 1.52 bouyer error = 0;
917 1.52 bouyer goto cleanup;
918 1.52 bouyer }
919 1.52 bouyer if (ptmp->p_limit->p_refcnt > 1 &&
920 1.52 bouyer (ptmp->p_limit->p_lflags & PL_SHAREMOD) == 0) {
921 1.52 bouyer newplim = limcopy(ptmp->p_limit);
922 1.52 bouyer limfree(ptmp->p_limit);
923 1.52 bouyer ptmp->p_limit = newplim;
924 1.96 bouyer }
925 1.96 bouyer if (ptmp->p_limit->pl_corename != defcorename) {
926 1.52 bouyer free(ptmp->p_limit->pl_corename, M_TEMP);
927 1.52 bouyer }
928 1.52 bouyer ptmp->p_limit->pl_corename = tmps;
929 1.52 bouyer return (0);
930 1.52 bouyer }
931 1.52 bouyer cleanup:
932 1.52 bouyer if (tmps)
933 1.52 bouyer free(tmps, M_TEMP);
934 1.52 bouyer return (error);
935 1.115 manu break;
936 1.115 manu
937 1.115 manu case PROC_PID_LIMIT:
938 1.142 itojun if (namelen != 4 || name[2] < 1 ||
939 1.142 itojun name[2] >= PROC_PID_LIMIT_MAXID)
940 1.129 enami return (EINVAL);
941 1.52 bouyer memcpy(&alim, &ptmp->p_rlimit[name[2] - 1], sizeof(alim));
942 1.52 bouyer if (name[3] == PROC_PID_LIMIT_TYPE_HARD)
943 1.52 bouyer error = sysctl_quad(oldp, oldlenp, newp, newlen,
944 1.52 bouyer &alim.rlim_max);
945 1.52 bouyer else if (name[3] == PROC_PID_LIMIT_TYPE_SOFT)
946 1.52 bouyer error = sysctl_quad(oldp, oldlenp, newp, newlen,
947 1.52 bouyer &alim.rlim_cur);
948 1.129 enami else
949 1.129 enami error = (EINVAL);
950 1.52 bouyer
951 1.52 bouyer if (error)
952 1.129 enami return (error);
953 1.52 bouyer
954 1.52 bouyer if (newp)
955 1.52 bouyer error = dosetrlimit(ptmp, p->p_cred,
956 1.52 bouyer name[2] - 1, &alim);
957 1.129 enami return (error);
958 1.115 manu break;
959 1.115 manu
960 1.115 manu default:
961 1.115 manu return (EINVAL);
962 1.115 manu break;
963 1.52 bouyer }
964 1.115 manu /* NOTREACHED */
965 1.52 bouyer return (EINVAL);
966 1.52 bouyer }
967 1.52 bouyer
968 1.104 christos int
969 1.104 christos emul_sysctl(int *name, u_int namelen, void *oldp, size_t *oldlenp,
970 1.137 fvdl void *newp, size_t newlen, struct proc *p)
971 1.104 christos {
972 1.104 christos static struct {
973 1.104 christos const char *name;
974 1.129 enami int type;
975 1.104 christos } emulations[] = CTL_EMUL_NAMES;
976 1.105 jdolecek const struct emul *e;
977 1.104 christos const char *ename;
978 1.105 jdolecek #ifdef LKM
979 1.105 jdolecek extern struct lock exec_lock; /* XXX */
980 1.105 jdolecek int error;
981 1.105 jdolecek #else
982 1.105 jdolecek extern int nexecs_builtin;
983 1.105 jdolecek extern const struct execsw execsw_builtin[];
984 1.104 christos int i;
985 1.105 jdolecek #endif
986 1.104 christos
987 1.104 christos /* all sysctl names at this level are name and field */
988 1.104 christos if (namelen < 2)
989 1.104 christos return (ENOTDIR); /* overloaded */
990 1.104 christos
991 1.105 jdolecek if ((u_int) name[0] >= EMUL_MAXID || name[0] == 0)
992 1.104 christos return (EOPNOTSUPP);
993 1.104 christos
994 1.104 christos ename = emulations[name[0]].name;
995 1.104 christos
996 1.105 jdolecek #ifdef LKM
997 1.105 jdolecek lockmgr(&exec_lock, LK_SHARED, NULL);
998 1.105 jdolecek if ((e = emul_search(ename))) {
999 1.105 jdolecek error = (*e->e_sysctl)(name + 1, namelen - 1, oldp, oldlenp,
1000 1.137 fvdl newp, newlen, p);
1001 1.105 jdolecek } else
1002 1.105 jdolecek error = EOPNOTSUPP;
1003 1.105 jdolecek lockmgr(&exec_lock, LK_RELEASE, NULL);
1004 1.105 jdolecek
1005 1.105 jdolecek return (error);
1006 1.105 jdolecek #else
1007 1.104 christos for (i = 0; i < nexecs_builtin; i++) {
1008 1.129 enami e = execsw_builtin[i].es_emul;
1009 1.129 enami /*
1010 1.129 enami * In order to match e.g. e->e_name "irix o32"
1011 1.129 enami * with ename "irix", we limit the comparison
1012 1.129 enami * to the length of ename.
1013 1.129 enami */
1014 1.129 enami if (e == NULL ||
1015 1.129 enami strncmp(ename, e->e_name, strlen(ename)) != 0 ||
1016 1.129 enami e->e_sysctl == NULL)
1017 1.129 enami continue;
1018 1.105 jdolecek
1019 1.129 enami return ((*e->e_sysctl)(name + 1, namelen - 1, oldp, oldlenp,
1020 1.137 fvdl newp, newlen, p));
1021 1.104 christos }
1022 1.104 christos
1023 1.104 christos return (EOPNOTSUPP);
1024 1.105 jdolecek #endif
1025 1.104 christos }
1026 1.1 cgd /*
1027 1.55 is * Convenience macros.
1028 1.55 is */
1029 1.55 is
1030 1.55 is #define SYSCTL_SCALAR_CORE_LEN(oldp, oldlenp, valp, len) \
1031 1.55 is if (oldlenp) { \
1032 1.55 is if (!oldp) \
1033 1.55 is *oldlenp = len; \
1034 1.55 is else { \
1035 1.55 is if (*oldlenp < len) \
1036 1.129 enami return (ENOMEM); \
1037 1.55 is *oldlenp = len; \
1038 1.145 dsl error = copyout(valp, oldp, len); \
1039 1.55 is } \
1040 1.55 is }
1041 1.55 is
1042 1.55 is #define SYSCTL_SCALAR_CORE_TYP(oldp, oldlenp, valp, typ) \
1043 1.55 is SYSCTL_SCALAR_CORE_LEN(oldp, oldlenp, valp, sizeof(typ))
1044 1.55 is
1045 1.55 is #define SYSCTL_SCALAR_NEWPCHECK_LEN(newp, newlen, len) \
1046 1.55 is if (newp && newlen != len) \
1047 1.55 is return (EINVAL);
1048 1.55 is
1049 1.55 is #define SYSCTL_SCALAR_NEWPCHECK_TYP(newp, newlen, typ) \
1050 1.55 is SYSCTL_SCALAR_NEWPCHECK_LEN(newp, newlen, sizeof(typ))
1051 1.55 is
1052 1.55 is #define SYSCTL_SCALAR_NEWPCOP_LEN(newp, valp, len) \
1053 1.55 is if (error == 0 && newp) \
1054 1.55 is error = copyin(newp, valp, len);
1055 1.55 is
1056 1.129 enami #define SYSCTL_SCALAR_NEWPCOP_TYP(newp, valp, typ) \
1057 1.55 is SYSCTL_SCALAR_NEWPCOP_LEN(newp, valp, sizeof(typ))
1058 1.55 is
1059 1.55 is #define SYSCTL_STRING_CORE(oldp, oldlenp, str) \
1060 1.55 is if (oldlenp) { \
1061 1.55 is len = strlen(str) + 1; \
1062 1.55 is if (!oldp) \
1063 1.55 is *oldlenp = len; \
1064 1.55 is else { \
1065 1.55 is if (*oldlenp < len) { \
1066 1.55 is err2 = ENOMEM; \
1067 1.55 is len = *oldlenp; \
1068 1.55 is } else \
1069 1.55 is *oldlenp = len; \
1070 1.55 is error = copyout(str, oldp, len);\
1071 1.55 is if (error == 0) \
1072 1.55 is error = err2; \
1073 1.55 is } \
1074 1.55 is }
1075 1.55 is
1076 1.55 is /*
1077 1.1 cgd * Validate parameters and get old / set new parameters
1078 1.1 cgd * for an integer-valued sysctl function.
1079 1.1 cgd */
1080 1.13 christos int
1081 1.91 simonb sysctl_int(void *oldp, size_t *oldlenp, void *newp, size_t newlen, int *valp)
1082 1.1 cgd {
1083 1.1 cgd int error = 0;
1084 1.1 cgd
1085 1.55 is SYSCTL_SCALAR_NEWPCHECK_TYP(newp, newlen, int)
1086 1.55 is SYSCTL_SCALAR_CORE_TYP(oldp, oldlenp, valp, int)
1087 1.55 is SYSCTL_SCALAR_NEWPCOP_TYP(newp, valp, int)
1088 1.55 is
1089 1.1 cgd return (error);
1090 1.1 cgd }
1091 1.1 cgd
1092 1.55 is
1093 1.1 cgd /*
1094 1.1 cgd * As above, but read-only.
1095 1.1 cgd */
1096 1.13 christos int
1097 1.91 simonb sysctl_rdint(void *oldp, size_t *oldlenp, void *newp, int val)
1098 1.1 cgd {
1099 1.1 cgd int error = 0;
1100 1.1 cgd
1101 1.1 cgd if (newp)
1102 1.1 cgd return (EPERM);
1103 1.55 is
1104 1.55 is SYSCTL_SCALAR_CORE_TYP(oldp, oldlenp, &val, int)
1105 1.55 is
1106 1.1 cgd return (error);
1107 1.1 cgd }
1108 1.1 cgd
1109 1.1 cgd /*
1110 1.1 cgd * Validate parameters and get old / set new parameters
1111 1.52 bouyer * for an quad-valued sysctl function.
1112 1.52 bouyer */
1113 1.52 bouyer int
1114 1.91 simonb sysctl_quad(void *oldp, size_t *oldlenp, void *newp, size_t newlen,
1115 1.91 simonb quad_t *valp)
1116 1.52 bouyer {
1117 1.52 bouyer int error = 0;
1118 1.52 bouyer
1119 1.55 is SYSCTL_SCALAR_NEWPCHECK_TYP(newp, newlen, quad_t)
1120 1.55 is SYSCTL_SCALAR_CORE_TYP(oldp, oldlenp, valp, quad_t)
1121 1.55 is SYSCTL_SCALAR_NEWPCOP_TYP(newp, valp, quad_t)
1122 1.55 is
1123 1.52 bouyer return (error);
1124 1.52 bouyer }
1125 1.52 bouyer
1126 1.52 bouyer /*
1127 1.52 bouyer * As above, but read-only.
1128 1.52 bouyer */
1129 1.52 bouyer int
1130 1.91 simonb sysctl_rdquad(void *oldp, size_t *oldlenp, void *newp, quad_t val)
1131 1.52 bouyer {
1132 1.52 bouyer int error = 0;
1133 1.52 bouyer
1134 1.52 bouyer if (newp)
1135 1.52 bouyer return (EPERM);
1136 1.55 is
1137 1.55 is SYSCTL_SCALAR_CORE_TYP(oldp, oldlenp, &val, quad_t)
1138 1.55 is
1139 1.52 bouyer return (error);
1140 1.52 bouyer }
1141 1.52 bouyer
1142 1.52 bouyer /*
1143 1.52 bouyer * Validate parameters and get old / set new parameters
1144 1.1 cgd * for a string-valued sysctl function.
1145 1.1 cgd */
1146 1.13 christos int
1147 1.91 simonb sysctl_string(void *oldp, size_t *oldlenp, void *newp, size_t newlen, char *str,
1148 1.111 thorpej size_t maxlen)
1149 1.1 cgd {
1150 1.111 thorpej int error = 0, err2 = 0;
1151 1.111 thorpej size_t len;
1152 1.1 cgd
1153 1.1 cgd if (newp && newlen >= maxlen)
1154 1.1 cgd return (EINVAL);
1155 1.55 is
1156 1.55 is SYSCTL_STRING_CORE(oldp, oldlenp, str);
1157 1.55 is
1158 1.1 cgd if (error == 0 && newp) {
1159 1.1 cgd error = copyin(newp, str, newlen);
1160 1.1 cgd str[newlen] = 0;
1161 1.1 cgd }
1162 1.1 cgd return (error);
1163 1.1 cgd }
1164 1.1 cgd
1165 1.1 cgd /*
1166 1.1 cgd * As above, but read-only.
1167 1.1 cgd */
1168 1.13 christos int
1169 1.91 simonb sysctl_rdstring(void *oldp, size_t *oldlenp, void *newp, const char *str)
1170 1.1 cgd {
1171 1.111 thorpej int error = 0, err2 = 0;
1172 1.111 thorpej size_t len;
1173 1.1 cgd
1174 1.1 cgd if (newp)
1175 1.1 cgd return (EPERM);
1176 1.55 is
1177 1.55 is SYSCTL_STRING_CORE(oldp, oldlenp, str);
1178 1.55 is
1179 1.1 cgd return (error);
1180 1.1 cgd }
1181 1.1 cgd
1182 1.1 cgd /*
1183 1.1 cgd * Validate parameters and get old / set new parameters
1184 1.1 cgd * for a structure oriented sysctl function.
1185 1.1 cgd */
1186 1.13 christos int
1187 1.91 simonb sysctl_struct(void *oldp, size_t *oldlenp, void *newp, size_t newlen, void *sp,
1188 1.111 thorpej size_t len)
1189 1.1 cgd {
1190 1.1 cgd int error = 0;
1191 1.1 cgd
1192 1.55 is SYSCTL_SCALAR_NEWPCHECK_LEN(newp, newlen, len)
1193 1.55 is SYSCTL_SCALAR_CORE_LEN(oldp, oldlenp, sp, len)
1194 1.55 is SYSCTL_SCALAR_NEWPCOP_LEN(newp, sp, len)
1195 1.55 is
1196 1.1 cgd return (error);
1197 1.1 cgd }
1198 1.1 cgd
1199 1.1 cgd /*
1200 1.1 cgd * Validate parameters and get old parameters
1201 1.1 cgd * for a structure oriented sysctl function.
1202 1.1 cgd */
1203 1.13 christos int
1204 1.91 simonb sysctl_rdstruct(void *oldp, size_t *oldlenp, void *newp, const void *sp,
1205 1.111 thorpej size_t len)
1206 1.1 cgd {
1207 1.1 cgd int error = 0;
1208 1.1 cgd
1209 1.1 cgd if (newp)
1210 1.1 cgd return (EPERM);
1211 1.55 is
1212 1.85 simonb SYSCTL_SCALAR_CORE_LEN(oldp, oldlenp, sp, len)
1213 1.85 simonb
1214 1.85 simonb return (error);
1215 1.85 simonb }
1216 1.85 simonb
1217 1.85 simonb /*
1218 1.85 simonb * As above, but can return a truncated result.
1219 1.85 simonb */
1220 1.85 simonb int
1221 1.91 simonb sysctl_rdminstruct(void *oldp, size_t *oldlenp, void *newp, const void *sp,
1222 1.111 thorpej size_t len)
1223 1.85 simonb {
1224 1.85 simonb int error = 0;
1225 1.85 simonb
1226 1.85 simonb if (newp)
1227 1.85 simonb return (EPERM);
1228 1.85 simonb
1229 1.85 simonb len = min(*oldlenp, len);
1230 1.55 is SYSCTL_SCALAR_CORE_LEN(oldp, oldlenp, sp, len)
1231 1.55 is
1232 1.1 cgd return (error);
1233 1.1 cgd }
1234 1.1 cgd
1235 1.1 cgd /*
1236 1.1 cgd * Get file structures.
1237 1.1 cgd */
1238 1.69 simonb static int
1239 1.91 simonb sysctl_file(void *vwhere, size_t *sizep)
1240 1.1 cgd {
1241 1.111 thorpej int error;
1242 1.111 thorpej size_t buflen;
1243 1.1 cgd struct file *fp;
1244 1.69 simonb char *start, *where;
1245 1.1 cgd
1246 1.69 simonb start = where = vwhere;
1247 1.1 cgd buflen = *sizep;
1248 1.1 cgd if (where == NULL) {
1249 1.1 cgd /*
1250 1.1 cgd * overestimate by 10 files
1251 1.1 cgd */
1252 1.1 cgd *sizep = sizeof(filehead) + (nfiles + 10) * sizeof(struct file);
1253 1.1 cgd return (0);
1254 1.1 cgd }
1255 1.1 cgd
1256 1.1 cgd /*
1257 1.1 cgd * first copyout filehead
1258 1.1 cgd */
1259 1.1 cgd if (buflen < sizeof(filehead)) {
1260 1.1 cgd *sizep = 0;
1261 1.1 cgd return (0);
1262 1.1 cgd }
1263 1.145 dsl error = copyout(&filehead, where, sizeof(filehead));
1264 1.13 christos if (error)
1265 1.1 cgd return (error);
1266 1.1 cgd buflen -= sizeof(filehead);
1267 1.1 cgd where += sizeof(filehead);
1268 1.1 cgd
1269 1.1 cgd /*
1270 1.1 cgd * followed by an array of file structures
1271 1.1 cgd */
1272 1.113 matt LIST_FOREACH(fp, &filehead, f_list) {
1273 1.1 cgd if (buflen < sizeof(struct file)) {
1274 1.1 cgd *sizep = where - start;
1275 1.1 cgd return (ENOMEM);
1276 1.1 cgd }
1277 1.145 dsl error = copyout(fp, where, sizeof(struct file));
1278 1.13 christos if (error)
1279 1.1 cgd return (error);
1280 1.1 cgd buflen -= sizeof(struct file);
1281 1.1 cgd where += sizeof(struct file);
1282 1.1 cgd }
1283 1.1 cgd *sizep = where - start;
1284 1.1 cgd return (0);
1285 1.1 cgd }
1286 1.1 cgd
1287 1.145 dsl /*
1288 1.145 dsl * Get driver names and majors
1289 1.145 dsl */
1290 1.145 dsl static int
1291 1.145 dsl sysctl_drivers(void *vwhere, size_t *sizep)
1292 1.145 dsl {
1293 1.145 dsl int error;
1294 1.145 dsl size_t buflen;
1295 1.145 dsl struct kinfo_drivers kd;
1296 1.145 dsl char *start, *where;
1297 1.145 dsl const char *name;
1298 1.145 dsl int i;
1299 1.145 dsl extern struct devsw_conv *devsw_conv;
1300 1.145 dsl extern int max_devsw_convs;
1301 1.145 dsl
1302 1.145 dsl start = where = vwhere;
1303 1.145 dsl buflen = *sizep;
1304 1.145 dsl if (where == NULL) {
1305 1.145 dsl *sizep = sizeof (int32_t) + max_devsw_convs * sizeof kd;
1306 1.145 dsl return 0;
1307 1.145 dsl }
1308 1.145 dsl
1309 1.145 dsl /*
1310 1.145 dsl * An array of kinfo_drivers structures
1311 1.145 dsl */
1312 1.145 dsl error = 0;
1313 1.145 dsl if (buflen >= sizeof (int32_t)) {
1314 1.145 dsl int32_t l = sizeof kd;
1315 1.145 dsl error = copyout(&l, where, sizeof (int32_t));
1316 1.145 dsl where += sizeof (int32_t);
1317 1.145 dsl buflen -= sizeof (int32_t);
1318 1.145 dsl }
1319 1.145 dsl for (i = 0; i < max_devsw_convs; i++) {
1320 1.145 dsl name = devsw_conv[i].d_name;
1321 1.145 dsl if (name == NULL)
1322 1.145 dsl continue;
1323 1.145 dsl if (buflen < sizeof kd) {
1324 1.145 dsl error = ENOMEM;
1325 1.145 dsl break;
1326 1.145 dsl }
1327 1.145 dsl kd.d_bmajor = devsw_conv[i].d_bmajor;
1328 1.145 dsl kd.d_cmajor = devsw_conv[i].d_cmajor;
1329 1.145 dsl strlcpy(kd.d_name, name, sizeof kd.d_name);
1330 1.145 dsl error = copyout(&kd, where, sizeof kd);
1331 1.145 dsl if (error != 0)
1332 1.145 dsl break;
1333 1.145 dsl buflen -= sizeof kd;
1334 1.145 dsl where += sizeof kd;
1335 1.145 dsl }
1336 1.145 dsl *sizep = where - start;
1337 1.145 dsl return error;
1338 1.145 dsl }
1339 1.145 dsl
1340 1.69 simonb #if defined(SYSVMSG) || defined(SYSVSEM) || defined(SYSVSHM)
1341 1.69 simonb #define FILL_PERM(src, dst) do { \
1342 1.129 enami (dst)._key = (src)._key; \
1343 1.129 enami (dst).uid = (src).uid; \
1344 1.129 enami (dst).gid = (src).gid; \
1345 1.129 enami (dst).cuid = (src).cuid; \
1346 1.129 enami (dst).cgid = (src).cgid; \
1347 1.129 enami (dst).mode = (src).mode; \
1348 1.129 enami (dst)._seq = (src)._seq; \
1349 1.129 enami } while (/*CONSTCOND*/ 0);
1350 1.69 simonb #define FILL_MSG(src, dst) do { \
1351 1.69 simonb FILL_PERM((src).msg_perm, (dst).msg_perm); \
1352 1.69 simonb (dst).msg_qnum = (src).msg_qnum; \
1353 1.69 simonb (dst).msg_qbytes = (src).msg_qbytes; \
1354 1.69 simonb (dst)._msg_cbytes = (src)._msg_cbytes; \
1355 1.69 simonb (dst).msg_lspid = (src).msg_lspid; \
1356 1.69 simonb (dst).msg_lrpid = (src).msg_lrpid; \
1357 1.69 simonb (dst).msg_stime = (src).msg_stime; \
1358 1.69 simonb (dst).msg_rtime = (src).msg_rtime; \
1359 1.69 simonb (dst).msg_ctime = (src).msg_ctime; \
1360 1.129 enami } while (/*CONSTCOND*/ 0)
1361 1.69 simonb #define FILL_SEM(src, dst) do { \
1362 1.69 simonb FILL_PERM((src).sem_perm, (dst).sem_perm); \
1363 1.69 simonb (dst).sem_nsems = (src).sem_nsems; \
1364 1.69 simonb (dst).sem_otime = (src).sem_otime; \
1365 1.69 simonb (dst).sem_ctime = (src).sem_ctime; \
1366 1.129 enami } while (/*CONSTCOND*/ 0)
1367 1.69 simonb #define FILL_SHM(src, dst) do { \
1368 1.69 simonb FILL_PERM((src).shm_perm, (dst).shm_perm); \
1369 1.69 simonb (dst).shm_segsz = (src).shm_segsz; \
1370 1.69 simonb (dst).shm_lpid = (src).shm_lpid; \
1371 1.69 simonb (dst).shm_cpid = (src).shm_cpid; \
1372 1.69 simonb (dst).shm_atime = (src).shm_atime; \
1373 1.69 simonb (dst).shm_dtime = (src).shm_dtime; \
1374 1.69 simonb (dst).shm_ctime = (src).shm_ctime; \
1375 1.69 simonb (dst).shm_nattch = (src).shm_nattch; \
1376 1.129 enami } while (/*CONSTCOND*/ 0)
1377 1.69 simonb
1378 1.69 simonb static int
1379 1.91 simonb sysctl_sysvipc(int *name, u_int namelen, void *where, size_t *sizep)
1380 1.69 simonb {
1381 1.73 simonb #ifdef SYSVMSG
1382 1.118 scw struct msg_sysctl_info *msgsi = NULL;
1383 1.73 simonb #endif
1384 1.73 simonb #ifdef SYSVSEM
1385 1.118 scw struct sem_sysctl_info *semsi = NULL;
1386 1.73 simonb #endif
1387 1.73 simonb #ifdef SYSVSHM
1388 1.118 scw struct shm_sysctl_info *shmsi = NULL;
1389 1.73 simonb #endif
1390 1.69 simonb size_t infosize, dssize, tsize, buflen;
1391 1.106 simonb void *buf = NULL;
1392 1.69 simonb char *start;
1393 1.69 simonb int32_t nds;
1394 1.69 simonb int i, error, ret;
1395 1.69 simonb
1396 1.69 simonb if (namelen != 1)
1397 1.69 simonb return (EINVAL);
1398 1.69 simonb
1399 1.69 simonb start = where;
1400 1.69 simonb buflen = *sizep;
1401 1.69 simonb
1402 1.69 simonb switch (*name) {
1403 1.69 simonb case KERN_SYSVIPC_MSG_INFO:
1404 1.69 simonb #ifdef SYSVMSG
1405 1.69 simonb infosize = sizeof(msgsi->msginfo);
1406 1.69 simonb nds = msginfo.msgmni;
1407 1.69 simonb dssize = sizeof(msgsi->msgids[0]);
1408 1.69 simonb break;
1409 1.69 simonb #else
1410 1.69 simonb return (EINVAL);
1411 1.69 simonb #endif
1412 1.69 simonb case KERN_SYSVIPC_SEM_INFO:
1413 1.69 simonb #ifdef SYSVSEM
1414 1.69 simonb infosize = sizeof(semsi->seminfo);
1415 1.69 simonb nds = seminfo.semmni;
1416 1.69 simonb dssize = sizeof(semsi->semids[0]);
1417 1.69 simonb break;
1418 1.69 simonb #else
1419 1.69 simonb return (EINVAL);
1420 1.69 simonb #endif
1421 1.69 simonb case KERN_SYSVIPC_SHM_INFO:
1422 1.69 simonb #ifdef SYSVSHM
1423 1.69 simonb infosize = sizeof(shmsi->shminfo);
1424 1.69 simonb nds = shminfo.shmmni;
1425 1.69 simonb dssize = sizeof(shmsi->shmids[0]);
1426 1.69 simonb break;
1427 1.69 simonb #else
1428 1.69 simonb return (EINVAL);
1429 1.69 simonb #endif
1430 1.69 simonb default:
1431 1.69 simonb return (EINVAL);
1432 1.69 simonb }
1433 1.69 simonb /*
1434 1.69 simonb * Round infosize to 64 bit boundary if requesting more than just
1435 1.69 simonb * the info structure or getting the total data size.
1436 1.69 simonb */
1437 1.69 simonb if (where == NULL || *sizep > infosize)
1438 1.69 simonb infosize = ((infosize + 7) / 8) * 8;
1439 1.69 simonb tsize = infosize + nds * dssize;
1440 1.69 simonb
1441 1.69 simonb /* Return just the total size required. */
1442 1.69 simonb if (where == NULL) {
1443 1.69 simonb *sizep = tsize;
1444 1.69 simonb return (0);
1445 1.69 simonb }
1446 1.69 simonb
1447 1.69 simonb /* Not enough room for even the info struct. */
1448 1.69 simonb if (buflen < infosize) {
1449 1.69 simonb *sizep = 0;
1450 1.69 simonb return (ENOMEM);
1451 1.69 simonb }
1452 1.69 simonb buf = malloc(min(tsize, buflen), M_TEMP, M_WAITOK);
1453 1.69 simonb memset(buf, 0, min(tsize, buflen));
1454 1.69 simonb
1455 1.129 enami switch (*name) {
1456 1.73 simonb #ifdef SYSVMSG
1457 1.69 simonb case KERN_SYSVIPC_MSG_INFO:
1458 1.69 simonb msgsi = (struct msg_sysctl_info *)buf;
1459 1.69 simonb msgsi->msginfo = msginfo;
1460 1.69 simonb break;
1461 1.73 simonb #endif
1462 1.73 simonb #ifdef SYSVSEM
1463 1.69 simonb case KERN_SYSVIPC_SEM_INFO:
1464 1.69 simonb semsi = (struct sem_sysctl_info *)buf;
1465 1.69 simonb semsi->seminfo = seminfo;
1466 1.69 simonb break;
1467 1.73 simonb #endif
1468 1.73 simonb #ifdef SYSVSHM
1469 1.69 simonb case KERN_SYSVIPC_SHM_INFO:
1470 1.69 simonb shmsi = (struct shm_sysctl_info *)buf;
1471 1.69 simonb shmsi->shminfo = shminfo;
1472 1.69 simonb break;
1473 1.73 simonb #endif
1474 1.69 simonb }
1475 1.69 simonb buflen -= infosize;
1476 1.69 simonb
1477 1.69 simonb ret = 0;
1478 1.69 simonb if (buflen > 0) {
1479 1.69 simonb /* Fill in the IPC data structures. */
1480 1.69 simonb for (i = 0; i < nds; i++) {
1481 1.69 simonb if (buflen < dssize) {
1482 1.69 simonb ret = ENOMEM;
1483 1.69 simonb break;
1484 1.69 simonb }
1485 1.129 enami switch (*name) {
1486 1.73 simonb #ifdef SYSVMSG
1487 1.69 simonb case KERN_SYSVIPC_MSG_INFO:
1488 1.69 simonb FILL_MSG(msqids[i], msgsi->msgids[i]);
1489 1.69 simonb break;
1490 1.73 simonb #endif
1491 1.73 simonb #ifdef SYSVSEM
1492 1.69 simonb case KERN_SYSVIPC_SEM_INFO:
1493 1.69 simonb FILL_SEM(sema[i], semsi->semids[i]);
1494 1.69 simonb break;
1495 1.73 simonb #endif
1496 1.73 simonb #ifdef SYSVSHM
1497 1.69 simonb case KERN_SYSVIPC_SHM_INFO:
1498 1.69 simonb FILL_SHM(shmsegs[i], shmsi->shmids[i]);
1499 1.69 simonb break;
1500 1.73 simonb #endif
1501 1.69 simonb }
1502 1.69 simonb buflen -= dssize;
1503 1.69 simonb }
1504 1.69 simonb }
1505 1.69 simonb *sizep -= buflen;
1506 1.69 simonb error = copyout(buf, start, *sizep);
1507 1.69 simonb /* If copyout succeeded, use return code set earlier. */
1508 1.69 simonb if (error == 0)
1509 1.69 simonb error = ret;
1510 1.69 simonb if (buf)
1511 1.69 simonb free(buf, M_TEMP);
1512 1.69 simonb return (error);
1513 1.69 simonb }
1514 1.69 simonb #endif /* SYSVMSG || SYSVSEM || SYSVSHM */
1515 1.72 simonb
1516 1.72 simonb static int
1517 1.91 simonb sysctl_msgbuf(void *vwhere, size_t *sizep)
1518 1.72 simonb {
1519 1.72 simonb char *where = vwhere;
1520 1.72 simonb size_t len, maxlen = *sizep;
1521 1.88 enami long beg, end;
1522 1.72 simonb int error;
1523 1.72 simonb
1524 1.72 simonb /*
1525 1.72 simonb * deal with cases where the message buffer has
1526 1.72 simonb * become corrupted.
1527 1.72 simonb */
1528 1.72 simonb if (!msgbufenabled || msgbufp->msg_magic != MSG_MAGIC) {
1529 1.72 simonb msgbufenabled = 0;
1530 1.72 simonb return (ENXIO);
1531 1.72 simonb }
1532 1.72 simonb
1533 1.72 simonb if (where == NULL) {
1534 1.72 simonb /* always return full buffer size */
1535 1.72 simonb *sizep = msgbufp->msg_bufs;
1536 1.72 simonb return (0);
1537 1.72 simonb }
1538 1.72 simonb
1539 1.72 simonb error = 0;
1540 1.72 simonb maxlen = min(msgbufp->msg_bufs, maxlen);
1541 1.88 enami
1542 1.88 enami /*
1543 1.88 enami * First, copy from the write pointer to the end of
1544 1.88 enami * message buffer.
1545 1.88 enami */
1546 1.88 enami beg = msgbufp->msg_bufx;
1547 1.88 enami end = msgbufp->msg_bufs;
1548 1.72 simonb while (maxlen > 0) {
1549 1.88 enami len = min(end - beg, maxlen);
1550 1.72 simonb if (len == 0)
1551 1.72 simonb break;
1552 1.88 enami error = copyout(&msgbufp->msg_bufc[beg], where, len);
1553 1.72 simonb if (error)
1554 1.72 simonb break;
1555 1.72 simonb where += len;
1556 1.72 simonb maxlen -= len;
1557 1.88 enami
1558 1.88 enami /*
1559 1.88 enami * ... then, copy from the beginning of message buffer to
1560 1.88 enami * the write pointer.
1561 1.88 enami */
1562 1.88 enami beg = 0;
1563 1.88 enami end = msgbufp->msg_bufx;
1564 1.72 simonb }
1565 1.72 simonb return (error);
1566 1.72 simonb }
1567 1.69 simonb
1568 1.1 cgd /*
1569 1.1 cgd * try over estimating by 5 procs
1570 1.1 cgd */
1571 1.39 perry #define KERN_PROCSLOP (5 * sizeof(struct kinfo_proc))
1572 1.1 cgd
1573 1.69 simonb static int
1574 1.91 simonb sysctl_doeproc(int *name, u_int namelen, void *vwhere, size_t *sizep)
1575 1.1 cgd {
1576 1.62 simonb struct eproc eproc;
1577 1.62 simonb struct kinfo_proc2 kproc2;
1578 1.69 simonb struct kinfo_proc *dp;
1579 1.60 augustss struct proc *p;
1580 1.41 thorpej const struct proclist_desc *pd;
1581 1.69 simonb char *where, *dp2;
1582 1.111 thorpej int type, op, arg;
1583 1.111 thorpej u_int elem_size, elem_count;
1584 1.111 thorpej size_t buflen, needed;
1585 1.111 thorpej int error;
1586 1.62 simonb
1587 1.69 simonb dp = vwhere;
1588 1.69 simonb dp2 = where = vwhere;
1589 1.62 simonb buflen = where != NULL ? *sizep : 0;
1590 1.111 thorpej error = 0;
1591 1.111 thorpej needed = 0;
1592 1.62 simonb type = name[0];
1593 1.1 cgd
1594 1.62 simonb if (type == KERN_PROC) {
1595 1.62 simonb if (namelen != 3 && !(namelen == 2 && name[1] == KERN_PROC_ALL))
1596 1.62 simonb return (EINVAL);
1597 1.62 simonb op = name[1];
1598 1.62 simonb if (op != KERN_PROC_ALL)
1599 1.62 simonb arg = name[2];
1600 1.118 scw else
1601 1.118 scw arg = 0; /* Quell compiler warning */
1602 1.118 scw elem_size = elem_count = 0; /* Ditto */
1603 1.62 simonb } else {
1604 1.62 simonb if (namelen != 5)
1605 1.62 simonb return (EINVAL);
1606 1.62 simonb op = name[1];
1607 1.62 simonb arg = name[2];
1608 1.62 simonb elem_size = name[3];
1609 1.62 simonb elem_count = name[4];
1610 1.62 simonb }
1611 1.41 thorpej
1612 1.50 thorpej proclist_lock_read();
1613 1.49 thorpej
1614 1.41 thorpej pd = proclists;
1615 1.1 cgd again:
1616 1.62 simonb for (p = LIST_FIRST(pd->pd_list); p != NULL; p = LIST_NEXT(p, p_list)) {
1617 1.1 cgd /*
1618 1.1 cgd * Skip embryonic processes.
1619 1.1 cgd */
1620 1.1 cgd if (p->p_stat == SIDL)
1621 1.1 cgd continue;
1622 1.1 cgd /*
1623 1.1 cgd * TODO - make more efficient (see notes below).
1624 1.1 cgd * do by session.
1625 1.1 cgd */
1626 1.62 simonb switch (op) {
1627 1.1 cgd
1628 1.1 cgd case KERN_PROC_PID:
1629 1.1 cgd /* could do this with just a lookup */
1630 1.62 simonb if (p->p_pid != (pid_t)arg)
1631 1.1 cgd continue;
1632 1.1 cgd break;
1633 1.1 cgd
1634 1.1 cgd case KERN_PROC_PGRP:
1635 1.1 cgd /* could do this by traversing pgrp */
1636 1.62 simonb if (p->p_pgrp->pg_id != (pid_t)arg)
1637 1.1 cgd continue;
1638 1.1 cgd break;
1639 1.1 cgd
1640 1.71 simonb case KERN_PROC_SESSION:
1641 1.71 simonb if (p->p_session->s_sid != (pid_t)arg)
1642 1.71 simonb continue;
1643 1.71 simonb break;
1644 1.71 simonb
1645 1.1 cgd case KERN_PROC_TTY:
1646 1.111 thorpej if (arg == (int) KERN_PROC_TTY_REVOKE) {
1647 1.61 simonb if ((p->p_flag & P_CONTROLT) == 0 ||
1648 1.61 simonb p->p_session->s_ttyp == NULL ||
1649 1.61 simonb p->p_session->s_ttyvp != NULL)
1650 1.61 simonb continue;
1651 1.61 simonb } else if ((p->p_flag & P_CONTROLT) == 0 ||
1652 1.61 simonb p->p_session->s_ttyp == NULL) {
1653 1.62 simonb if ((dev_t)arg != KERN_PROC_TTY_NODEV)
1654 1.61 simonb continue;
1655 1.62 simonb } else if (p->p_session->s_ttyp->t_dev != (dev_t)arg)
1656 1.1 cgd continue;
1657 1.1 cgd break;
1658 1.1 cgd
1659 1.1 cgd case KERN_PROC_UID:
1660 1.62 simonb if (p->p_ucred->cr_uid != (uid_t)arg)
1661 1.1 cgd continue;
1662 1.1 cgd break;
1663 1.1 cgd
1664 1.1 cgd case KERN_PROC_RUID:
1665 1.62 simonb if (p->p_cred->p_ruid != (uid_t)arg)
1666 1.1 cgd continue;
1667 1.1 cgd break;
1668 1.71 simonb
1669 1.71 simonb case KERN_PROC_GID:
1670 1.71 simonb if (p->p_ucred->cr_gid != (uid_t)arg)
1671 1.71 simonb continue;
1672 1.71 simonb break;
1673 1.71 simonb
1674 1.71 simonb case KERN_PROC_RGID:
1675 1.71 simonb if (p->p_cred->p_rgid != (uid_t)arg)
1676 1.71 simonb continue;
1677 1.71 simonb break;
1678 1.71 simonb
1679 1.71 simonb case KERN_PROC_ALL:
1680 1.71 simonb /* allow everything */
1681 1.71 simonb break;
1682 1.71 simonb
1683 1.71 simonb default:
1684 1.71 simonb error = EINVAL;
1685 1.71 simonb goto cleanup;
1686 1.1 cgd }
1687 1.62 simonb if (type == KERN_PROC) {
1688 1.62 simonb if (buflen >= sizeof(struct kinfo_proc)) {
1689 1.62 simonb fill_eproc(p, &eproc);
1690 1.145 dsl error = copyout(p, &dp->kp_proc,
1691 1.129 enami sizeof(struct proc));
1692 1.62 simonb if (error)
1693 1.62 simonb goto cleanup;
1694 1.145 dsl error = copyout(&eproc, &dp->kp_eproc,
1695 1.129 enami sizeof(eproc));
1696 1.62 simonb if (error)
1697 1.62 simonb goto cleanup;
1698 1.62 simonb dp++;
1699 1.62 simonb buflen -= sizeof(struct kinfo_proc);
1700 1.62 simonb }
1701 1.62 simonb needed += sizeof(struct kinfo_proc);
1702 1.62 simonb } else { /* KERN_PROC2 */
1703 1.64 simonb if (buflen >= elem_size && elem_count > 0) {
1704 1.62 simonb fill_kproc2(p, &kproc2);
1705 1.62 simonb /*
1706 1.62 simonb * Copy out elem_size, but not larger than
1707 1.62 simonb * the size of a struct kinfo_proc2.
1708 1.62 simonb */
1709 1.62 simonb error = copyout(&kproc2, dp2,
1710 1.62 simonb min(sizeof(kproc2), elem_size));
1711 1.62 simonb if (error)
1712 1.62 simonb goto cleanup;
1713 1.62 simonb dp2 += elem_size;
1714 1.62 simonb buflen -= elem_size;
1715 1.64 simonb elem_count--;
1716 1.62 simonb }
1717 1.62 simonb needed += elem_size;
1718 1.1 cgd }
1719 1.1 cgd }
1720 1.41 thorpej pd++;
1721 1.41 thorpej if (pd->pd_list != NULL)
1722 1.1 cgd goto again;
1723 1.49 thorpej proclist_unlock_read();
1724 1.41 thorpej
1725 1.1 cgd if (where != NULL) {
1726 1.62 simonb if (type == KERN_PROC)
1727 1.145 dsl *sizep = (char *)dp - where;
1728 1.62 simonb else
1729 1.62 simonb *sizep = dp2 - where;
1730 1.1 cgd if (needed > *sizep)
1731 1.1 cgd return (ENOMEM);
1732 1.1 cgd } else {
1733 1.1 cgd needed += KERN_PROCSLOP;
1734 1.1 cgd *sizep = needed;
1735 1.1 cgd }
1736 1.1 cgd return (0);
1737 1.56 assar cleanup:
1738 1.56 assar proclist_unlock_read();
1739 1.56 assar return (error);
1740 1.1 cgd }
1741 1.1 cgd
1742 1.123 thorpej
1743 1.123 thorpej /*
1744 1.123 thorpej * try over estimating by 5 LWPs
1745 1.123 thorpej */
1746 1.123 thorpej #define KERN_LWPSLOP (5 * sizeof(struct kinfo_lwp))
1747 1.123 thorpej
1748 1.123 thorpej static int
1749 1.123 thorpej sysctl_dolwp(int *name, u_int namelen, void *vwhere, size_t *sizep)
1750 1.123 thorpej {
1751 1.123 thorpej struct kinfo_lwp klwp;
1752 1.123 thorpej struct proc *p;
1753 1.123 thorpej struct lwp *l;
1754 1.123 thorpej char *where, *dp;
1755 1.123 thorpej int type, pid, elem_size, elem_count;
1756 1.123 thorpej int buflen, needed, error;
1757 1.123 thorpej
1758 1.123 thorpej dp = where = vwhere;
1759 1.123 thorpej buflen = where != NULL ? *sizep : 0;
1760 1.123 thorpej error = needed = 0;
1761 1.123 thorpej type = name[0];
1762 1.123 thorpej
1763 1.123 thorpej if (namelen != 4)
1764 1.123 thorpej return (EINVAL);
1765 1.123 thorpej pid = name[1];
1766 1.123 thorpej elem_size = name[2];
1767 1.123 thorpej elem_count = name[3];
1768 1.123 thorpej
1769 1.123 thorpej p = pfind(pid);
1770 1.123 thorpej if (p == NULL)
1771 1.123 thorpej return (ESRCH);
1772 1.123 thorpej LIST_FOREACH(l, &p->p_lwps, l_sibling) {
1773 1.123 thorpej if (buflen >= elem_size && elem_count > 0) {
1774 1.123 thorpej fill_lwp(l, &klwp);
1775 1.123 thorpej /*
1776 1.123 thorpej * Copy out elem_size, but not larger than
1777 1.123 thorpej * the size of a struct kinfo_proc2.
1778 1.123 thorpej */
1779 1.123 thorpej error = copyout(&klwp, dp,
1780 1.123 thorpej min(sizeof(klwp), elem_size));
1781 1.123 thorpej if (error)
1782 1.123 thorpej goto cleanup;
1783 1.123 thorpej dp += elem_size;
1784 1.123 thorpej buflen -= elem_size;
1785 1.123 thorpej elem_count--;
1786 1.123 thorpej }
1787 1.123 thorpej needed += elem_size;
1788 1.123 thorpej }
1789 1.123 thorpej
1790 1.123 thorpej if (where != NULL) {
1791 1.123 thorpej *sizep = dp - where;
1792 1.123 thorpej if (needed > *sizep)
1793 1.123 thorpej return (ENOMEM);
1794 1.123 thorpej } else {
1795 1.123 thorpej needed += KERN_PROCSLOP;
1796 1.123 thorpej *sizep = needed;
1797 1.123 thorpej }
1798 1.123 thorpej return (0);
1799 1.123 thorpej cleanup:
1800 1.123 thorpej return (error);
1801 1.123 thorpej }
1802 1.123 thorpej
1803 1.1 cgd /*
1804 1.1 cgd * Fill in an eproc structure for the specified process.
1805 1.1 cgd */
1806 1.1 cgd void
1807 1.91 simonb fill_eproc(struct proc *p, struct eproc *ep)
1808 1.1 cgd {
1809 1.60 augustss struct tty *tp;
1810 1.123 thorpej struct lwp *l;
1811 1.1 cgd
1812 1.1 cgd ep->e_paddr = p;
1813 1.61 simonb ep->e_sess = p->p_session;
1814 1.1 cgd ep->e_pcred = *p->p_cred;
1815 1.1 cgd ep->e_ucred = *p->p_ucred;
1816 1.48 thorpej if (p->p_stat == SIDL || P_ZOMBIE(p)) {
1817 1.1 cgd ep->e_vm.vm_rssize = 0;
1818 1.1 cgd ep->e_vm.vm_tsize = 0;
1819 1.1 cgd ep->e_vm.vm_dsize = 0;
1820 1.1 cgd ep->e_vm.vm_ssize = 0;
1821 1.1 cgd /* ep->e_vm.vm_pmap = XXX; */
1822 1.1 cgd } else {
1823 1.60 augustss struct vmspace *vm = p->p_vmspace;
1824 1.1 cgd
1825 1.26 gwr ep->e_vm.vm_rssize = vm_resident_count(vm);
1826 1.1 cgd ep->e_vm.vm_tsize = vm->vm_tsize;
1827 1.1 cgd ep->e_vm.vm_dsize = vm->vm_dsize;
1828 1.1 cgd ep->e_vm.vm_ssize = vm->vm_ssize;
1829 1.123 thorpej
1830 1.123 thorpej /* Pick a "representative" LWP */
1831 1.123 thorpej l = proc_representative_lwp(p);
1832 1.129 enami
1833 1.123 thorpej if (l->l_wmesg)
1834 1.123 thorpej strncpy(ep->e_wmesg, l->l_wmesg, WMESGLEN);
1835 1.1 cgd }
1836 1.1 cgd if (p->p_pptr)
1837 1.1 cgd ep->e_ppid = p->p_pptr->p_pid;
1838 1.1 cgd else
1839 1.1 cgd ep->e_ppid = 0;
1840 1.1 cgd ep->e_pgid = p->p_pgrp->pg_id;
1841 1.33 thorpej ep->e_sid = ep->e_sess->s_sid;
1842 1.1 cgd ep->e_jobc = p->p_pgrp->pg_jobc;
1843 1.1 cgd if ((p->p_flag & P_CONTROLT) &&
1844 1.129 enami (tp = ep->e_sess->s_ttyp)) {
1845 1.1 cgd ep->e_tdev = tp->t_dev;
1846 1.132 dsl ep->e_tpgid = tp->t_pgrp ? tp->t_pgrp->pg_id : NO_PGID;
1847 1.1 cgd ep->e_tsess = tp->t_session;
1848 1.1 cgd } else
1849 1.1 cgd ep->e_tdev = NODEV;
1850 1.123 thorpej
1851 1.1 cgd ep->e_xsize = ep->e_xrssize = 0;
1852 1.1 cgd ep->e_xccount = ep->e_xswrss = 0;
1853 1.24 mycroft ep->e_flag = ep->e_sess->s_ttyvp ? EPROC_CTTY : 0;
1854 1.24 mycroft if (SESS_LEADER(p))
1855 1.24 mycroft ep->e_flag |= EPROC_SLEADER;
1856 1.24 mycroft strncpy(ep->e_login, ep->e_sess->s_login, MAXLOGNAME);
1857 1.62 simonb }
1858 1.62 simonb
1859 1.62 simonb /*
1860 1.62 simonb * Fill in an eproc structure for the specified process.
1861 1.62 simonb */
1862 1.62 simonb static void
1863 1.91 simonb fill_kproc2(struct proc *p, struct kinfo_proc2 *ki)
1864 1.62 simonb {
1865 1.62 simonb struct tty *tp;
1866 1.123 thorpej struct lwp *l;
1867 1.130 dsl struct timeval ut, st;
1868 1.130 dsl
1869 1.62 simonb memset(ki, 0, sizeof(*ki));
1870 1.62 simonb
1871 1.62 simonb ki->p_paddr = PTRTOINT64(p);
1872 1.62 simonb ki->p_fd = PTRTOINT64(p->p_fd);
1873 1.62 simonb ki->p_cwdi = PTRTOINT64(p->p_cwdi);
1874 1.62 simonb ki->p_stats = PTRTOINT64(p->p_stats);
1875 1.62 simonb ki->p_limit = PTRTOINT64(p->p_limit);
1876 1.62 simonb ki->p_vmspace = PTRTOINT64(p->p_vmspace);
1877 1.62 simonb ki->p_sigacts = PTRTOINT64(p->p_sigacts);
1878 1.62 simonb ki->p_sess = PTRTOINT64(p->p_session);
1879 1.62 simonb ki->p_tsess = 0; /* may be changed if controlling tty below */
1880 1.62 simonb ki->p_ru = PTRTOINT64(p->p_ru);
1881 1.62 simonb
1882 1.62 simonb ki->p_eflag = 0;
1883 1.62 simonb ki->p_exitsig = p->p_exitsig;
1884 1.62 simonb ki->p_flag = p->p_flag;
1885 1.62 simonb
1886 1.62 simonb ki->p_pid = p->p_pid;
1887 1.62 simonb if (p->p_pptr)
1888 1.62 simonb ki->p_ppid = p->p_pptr->p_pid;
1889 1.62 simonb else
1890 1.62 simonb ki->p_ppid = 0;
1891 1.62 simonb ki->p_sid = p->p_session->s_sid;
1892 1.62 simonb ki->p__pgid = p->p_pgrp->pg_id;
1893 1.62 simonb
1894 1.132 dsl ki->p_tpgid = NO_PGID; /* may be changed if controlling tty below */
1895 1.62 simonb
1896 1.62 simonb ki->p_uid = p->p_ucred->cr_uid;
1897 1.62 simonb ki->p_ruid = p->p_cred->p_ruid;
1898 1.62 simonb ki->p_gid = p->p_ucred->cr_gid;
1899 1.62 simonb ki->p_rgid = p->p_cred->p_rgid;
1900 1.128 atatat ki->p_svuid = p->p_cred->p_svuid;
1901 1.128 atatat ki->p_svgid = p->p_cred->p_svgid;
1902 1.62 simonb
1903 1.62 simonb memcpy(ki->p_groups, p->p_cred->pc_ucred->cr_groups,
1904 1.62 simonb min(sizeof(ki->p_groups), sizeof(p->p_cred->pc_ucred->cr_groups)));
1905 1.62 simonb ki->p_ngroups = p->p_cred->pc_ucred->cr_ngroups;
1906 1.62 simonb
1907 1.62 simonb ki->p_jobc = p->p_pgrp->pg_jobc;
1908 1.62 simonb if ((p->p_flag & P_CONTROLT) && (tp = p->p_session->s_ttyp)) {
1909 1.62 simonb ki->p_tdev = tp->t_dev;
1910 1.132 dsl ki->p_tpgid = tp->t_pgrp ? tp->t_pgrp->pg_id : NO_PGID;
1911 1.62 simonb ki->p_tsess = PTRTOINT64(tp->t_session);
1912 1.62 simonb } else {
1913 1.62 simonb ki->p_tdev = NODEV;
1914 1.62 simonb }
1915 1.62 simonb
1916 1.62 simonb ki->p_estcpu = p->p_estcpu;
1917 1.62 simonb ki->p_rtime_sec = p->p_rtime.tv_sec;
1918 1.62 simonb ki->p_rtime_usec = p->p_rtime.tv_usec;
1919 1.62 simonb ki->p_cpticks = p->p_cpticks;
1920 1.62 simonb ki->p_pctcpu = p->p_pctcpu;
1921 1.62 simonb
1922 1.62 simonb ki->p_uticks = p->p_uticks;
1923 1.62 simonb ki->p_sticks = p->p_sticks;
1924 1.62 simonb ki->p_iticks = p->p_iticks;
1925 1.62 simonb
1926 1.62 simonb ki->p_tracep = PTRTOINT64(p->p_tracep);
1927 1.62 simonb ki->p_traceflag = p->p_traceflag;
1928 1.62 simonb
1929 1.62 simonb
1930 1.86 jdolecek memcpy(&ki->p_siglist, &p->p_sigctx.ps_siglist, sizeof(ki_sigset_t));
1931 1.86 jdolecek memcpy(&ki->p_sigmask, &p->p_sigctx.ps_sigmask, sizeof(ki_sigset_t));
1932 1.86 jdolecek memcpy(&ki->p_sigignore, &p->p_sigctx.ps_sigignore,sizeof(ki_sigset_t));
1933 1.86 jdolecek memcpy(&ki->p_sigcatch, &p->p_sigctx.ps_sigcatch, sizeof(ki_sigset_t));
1934 1.62 simonb
1935 1.123 thorpej ki->p_stat = p->p_stat; /* Will likely be overridden by LWP status */
1936 1.123 thorpej ki->p_realstat = p->p_stat;
1937 1.62 simonb ki->p_nice = p->p_nice;
1938 1.62 simonb
1939 1.62 simonb ki->p_xstat = p->p_xstat;
1940 1.62 simonb ki->p_acflag = p->p_acflag;
1941 1.62 simonb
1942 1.62 simonb strncpy(ki->p_comm, p->p_comm,
1943 1.62 simonb min(sizeof(ki->p_comm), sizeof(p->p_comm)));
1944 1.62 simonb
1945 1.126 dsl strncpy(ki->p_login, p->p_session->s_login,
1946 1.129 enami min(sizeof ki->p_login - 1, sizeof p->p_session->s_login));
1947 1.62 simonb
1948 1.123 thorpej ki->p_nlwps = p->p_nlwps;
1949 1.123 thorpej ki->p_nrlwps = p->p_nrlwps;
1950 1.123 thorpej ki->p_realflag = p->p_flag;
1951 1.62 simonb
1952 1.62 simonb if (p->p_stat == SIDL || P_ZOMBIE(p)) {
1953 1.62 simonb ki->p_vm_rssize = 0;
1954 1.62 simonb ki->p_vm_tsize = 0;
1955 1.62 simonb ki->p_vm_dsize = 0;
1956 1.62 simonb ki->p_vm_ssize = 0;
1957 1.123 thorpej l = NULL;
1958 1.62 simonb } else {
1959 1.62 simonb struct vmspace *vm = p->p_vmspace;
1960 1.62 simonb
1961 1.62 simonb ki->p_vm_rssize = vm_resident_count(vm);
1962 1.62 simonb ki->p_vm_tsize = vm->vm_tsize;
1963 1.62 simonb ki->p_vm_dsize = vm->vm_dsize;
1964 1.62 simonb ki->p_vm_ssize = vm->vm_ssize;
1965 1.123 thorpej
1966 1.123 thorpej /* Pick a "representative" LWP */
1967 1.123 thorpej l = proc_representative_lwp(p);
1968 1.123 thorpej ki->p_forw = PTRTOINT64(l->l_forw);
1969 1.123 thorpej ki->p_back = PTRTOINT64(l->l_back);
1970 1.123 thorpej ki->p_addr = PTRTOINT64(l->l_addr);
1971 1.123 thorpej ki->p_stat = l->l_stat;
1972 1.123 thorpej ki->p_flag |= l->l_flag;
1973 1.123 thorpej ki->p_swtime = l->l_swtime;
1974 1.123 thorpej ki->p_slptime = l->l_slptime;
1975 1.123 thorpej if (l->l_stat == LSONPROC) {
1976 1.123 thorpej KDASSERT(l->l_cpu != NULL);
1977 1.123 thorpej ki->p_schedflags = l->l_cpu->ci_schedstate.spc_flags;
1978 1.123 thorpej } else
1979 1.123 thorpej ki->p_schedflags = 0;
1980 1.123 thorpej ki->p_holdcnt = l->l_holdcnt;
1981 1.123 thorpej ki->p_priority = l->l_priority;
1982 1.123 thorpej ki->p_usrpri = l->l_usrpri;
1983 1.123 thorpej if (l->l_wmesg)
1984 1.123 thorpej strncpy(ki->p_wmesg, l->l_wmesg, sizeof(ki->p_wmesg));
1985 1.123 thorpej ki->p_wchan = PTRTOINT64(l->l_wchan);
1986 1.123 thorpej
1987 1.62 simonb }
1988 1.62 simonb
1989 1.62 simonb if (p->p_session->s_ttyvp)
1990 1.62 simonb ki->p_eflag |= EPROC_CTTY;
1991 1.62 simonb if (SESS_LEADER(p))
1992 1.62 simonb ki->p_eflag |= EPROC_SLEADER;
1993 1.62 simonb
1994 1.62 simonb /* XXX Is this double check necessary? */
1995 1.123 thorpej if (P_ZOMBIE(p)) {
1996 1.62 simonb ki->p_uvalid = 0;
1997 1.62 simonb } else {
1998 1.62 simonb ki->p_uvalid = 1;
1999 1.62 simonb
2000 1.62 simonb ki->p_ustart_sec = p->p_stats->p_start.tv_sec;
2001 1.62 simonb ki->p_ustart_usec = p->p_stats->p_start.tv_usec;
2002 1.62 simonb
2003 1.130 dsl calcru(p, &ut, &st, 0);
2004 1.130 dsl ki->p_uutime_sec = ut.tv_sec;
2005 1.130 dsl ki->p_uutime_usec = ut.tv_usec;
2006 1.130 dsl ki->p_ustime_sec = st.tv_sec;
2007 1.130 dsl ki->p_ustime_usec = st.tv_usec;
2008 1.62 simonb
2009 1.62 simonb ki->p_uru_maxrss = p->p_stats->p_ru.ru_maxrss;
2010 1.62 simonb ki->p_uru_ixrss = p->p_stats->p_ru.ru_ixrss;
2011 1.62 simonb ki->p_uru_idrss = p->p_stats->p_ru.ru_idrss;
2012 1.62 simonb ki->p_uru_isrss = p->p_stats->p_ru.ru_isrss;
2013 1.62 simonb ki->p_uru_minflt = p->p_stats->p_ru.ru_minflt;
2014 1.62 simonb ki->p_uru_majflt = p->p_stats->p_ru.ru_majflt;
2015 1.62 simonb ki->p_uru_nswap = p->p_stats->p_ru.ru_nswap;
2016 1.62 simonb ki->p_uru_inblock = p->p_stats->p_ru.ru_inblock;
2017 1.62 simonb ki->p_uru_oublock = p->p_stats->p_ru.ru_oublock;
2018 1.62 simonb ki->p_uru_msgsnd = p->p_stats->p_ru.ru_msgsnd;
2019 1.62 simonb ki->p_uru_msgrcv = p->p_stats->p_ru.ru_msgrcv;
2020 1.62 simonb ki->p_uru_nsignals = p->p_stats->p_ru.ru_nsignals;
2021 1.62 simonb ki->p_uru_nvcsw = p->p_stats->p_ru.ru_nvcsw;
2022 1.62 simonb ki->p_uru_nivcsw = p->p_stats->p_ru.ru_nivcsw;
2023 1.62 simonb
2024 1.130 dsl timeradd(&p->p_stats->p_cru.ru_utime,
2025 1.130 dsl &p->p_stats->p_cru.ru_stime, &ut);
2026 1.130 dsl ki->p_uctime_sec = ut.tv_sec;
2027 1.130 dsl ki->p_uctime_usec = ut.tv_usec;
2028 1.62 simonb }
2029 1.83 sommerfe #ifdef MULTIPROCESSOR
2030 1.123 thorpej if (l && l->l_cpu != NULL)
2031 1.123 thorpej ki->p_cpuid = l->l_cpu->ci_cpuid;
2032 1.83 sommerfe else
2033 1.83 sommerfe #endif
2034 1.83 sommerfe ki->p_cpuid = KI_NOCPU;
2035 1.123 thorpej
2036 1.123 thorpej }
2037 1.123 thorpej
2038 1.123 thorpej /*
2039 1.123 thorpej * Fill in a kinfo_lwp structure for the specified lwp.
2040 1.123 thorpej */
2041 1.123 thorpej static void
2042 1.123 thorpej fill_lwp(struct lwp *l, struct kinfo_lwp *kl)
2043 1.123 thorpej {
2044 1.129 enami
2045 1.123 thorpej kl->l_forw = PTRTOINT64(l->l_forw);
2046 1.123 thorpej kl->l_back = PTRTOINT64(l->l_back);
2047 1.123 thorpej kl->l_laddr = PTRTOINT64(l);
2048 1.123 thorpej kl->l_addr = PTRTOINT64(l->l_addr);
2049 1.123 thorpej kl->l_stat = l->l_stat;
2050 1.123 thorpej kl->l_lid = l->l_lid;
2051 1.123 thorpej kl->l_flag = l->l_flag;
2052 1.123 thorpej
2053 1.123 thorpej kl->l_swtime = l->l_swtime;
2054 1.123 thorpej kl->l_slptime = l->l_slptime;
2055 1.123 thorpej if (l->l_stat == LSONPROC) {
2056 1.123 thorpej KDASSERT(l->l_cpu != NULL);
2057 1.123 thorpej kl->l_schedflags = l->l_cpu->ci_schedstate.spc_flags;
2058 1.123 thorpej } else
2059 1.123 thorpej kl->l_schedflags = 0;
2060 1.123 thorpej kl->l_holdcnt = l->l_holdcnt;
2061 1.123 thorpej kl->l_priority = l->l_priority;
2062 1.123 thorpej kl->l_usrpri = l->l_usrpri;
2063 1.123 thorpej if (l->l_wmesg)
2064 1.123 thorpej strncpy(kl->l_wmesg, l->l_wmesg, sizeof(kl->l_wmesg));
2065 1.123 thorpej kl->l_wchan = PTRTOINT64(l->l_wchan);
2066 1.123 thorpej #ifdef MULTIPROCESSOR
2067 1.123 thorpej if (l->l_cpu != NULL)
2068 1.123 thorpej kl->l_cpuid = l->l_cpu->ci_cpuid;
2069 1.123 thorpej else
2070 1.123 thorpej #endif
2071 1.123 thorpej kl->l_cpuid = KI_NOCPU;
2072 1.62 simonb }
2073 1.62 simonb
2074 1.62 simonb int
2075 1.91 simonb sysctl_procargs(int *name, u_int namelen, void *where, size_t *sizep,
2076 1.91 simonb struct proc *up)
2077 1.62 simonb {
2078 1.62 simonb struct ps_strings pss;
2079 1.62 simonb struct proc *p;
2080 1.111 thorpej size_t len, upper_bound, xlen, i;
2081 1.62 simonb struct uio auio;
2082 1.62 simonb struct iovec aiov;
2083 1.62 simonb vaddr_t argv;
2084 1.62 simonb pid_t pid;
2085 1.111 thorpej int nargv, type, error;
2086 1.62 simonb char *arg;
2087 1.68 pk char *tmp;
2088 1.62 simonb
2089 1.62 simonb if (namelen != 2)
2090 1.62 simonb return (EINVAL);
2091 1.62 simonb pid = name[0];
2092 1.62 simonb type = name[1];
2093 1.62 simonb
2094 1.62 simonb switch (type) {
2095 1.111 thorpej case KERN_PROC_ARGV:
2096 1.111 thorpej case KERN_PROC_NARGV:
2097 1.111 thorpej case KERN_PROC_ENV:
2098 1.111 thorpej case KERN_PROC_NENV:
2099 1.62 simonb /* ok */
2100 1.62 simonb break;
2101 1.111 thorpej default:
2102 1.62 simonb return (EINVAL);
2103 1.62 simonb }
2104 1.62 simonb
2105 1.62 simonb /* check pid */
2106 1.62 simonb if ((p = pfind(pid)) == NULL)
2107 1.62 simonb return (EINVAL);
2108 1.62 simonb
2109 1.62 simonb /* only root or same user change look at the environment */
2110 1.62 simonb if (type == KERN_PROC_ENV || type == KERN_PROC_NENV) {
2111 1.62 simonb if (up->p_ucred->cr_uid != 0) {
2112 1.62 simonb if (up->p_cred->p_ruid != p->p_cred->p_ruid ||
2113 1.62 simonb up->p_cred->p_ruid != p->p_cred->p_svuid)
2114 1.62 simonb return (EPERM);
2115 1.62 simonb }
2116 1.62 simonb }
2117 1.62 simonb
2118 1.62 simonb if (sizep != NULL && where == NULL) {
2119 1.62 simonb if (type == KERN_PROC_NARGV || type == KERN_PROC_NENV)
2120 1.62 simonb *sizep = sizeof (int);
2121 1.62 simonb else
2122 1.62 simonb *sizep = ARG_MAX; /* XXX XXX XXX */
2123 1.62 simonb return (0);
2124 1.62 simonb }
2125 1.62 simonb if (where == NULL || sizep == NULL)
2126 1.62 simonb return (EINVAL);
2127 1.62 simonb
2128 1.62 simonb /*
2129 1.62 simonb * Zombies don't have a stack, so we can't read their psstrings.
2130 1.62 simonb * System processes also don't have a user stack.
2131 1.62 simonb */
2132 1.62 simonb if (P_ZOMBIE(p) || (p->p_flag & P_SYSTEM) != 0)
2133 1.62 simonb return (EINVAL);
2134 1.62 simonb
2135 1.62 simonb /*
2136 1.62 simonb * Lock the process down in memory.
2137 1.62 simonb */
2138 1.62 simonb /* XXXCDC: how should locking work here? */
2139 1.62 simonb if ((p->p_flag & P_WEXIT) || (p->p_vmspace->vm_refcnt < 1))
2140 1.62 simonb return (EFAULT);
2141 1.123 thorpej
2142 1.62 simonb p->p_vmspace->vm_refcnt++; /* XXX */
2143 1.67 simonb
2144 1.67 simonb /*
2145 1.67 simonb * Allocate a temporary buffer to hold the arguments.
2146 1.67 simonb */
2147 1.67 simonb arg = malloc(PAGE_SIZE, M_TEMP, M_WAITOK);
2148 1.62 simonb
2149 1.62 simonb /*
2150 1.62 simonb * Read in the ps_strings structure.
2151 1.62 simonb */
2152 1.62 simonb aiov.iov_base = &pss;
2153 1.62 simonb aiov.iov_len = sizeof(pss);
2154 1.62 simonb auio.uio_iov = &aiov;
2155 1.62 simonb auio.uio_iovcnt = 1;
2156 1.62 simonb auio.uio_offset = (vaddr_t)p->p_psstr;
2157 1.62 simonb auio.uio_resid = sizeof(pss);
2158 1.62 simonb auio.uio_segflg = UIO_SYSSPACE;
2159 1.62 simonb auio.uio_rw = UIO_READ;
2160 1.137 fvdl auio.uio_procp = NULL;
2161 1.62 simonb error = uvm_io(&p->p_vmspace->vm_map, &auio);
2162 1.62 simonb if (error)
2163 1.62 simonb goto done;
2164 1.62 simonb
2165 1.62 simonb if (type == KERN_PROC_ARGV || type == KERN_PROC_NARGV)
2166 1.62 simonb memcpy(&nargv, (char *)&pss + p->p_psnargv, sizeof(nargv));
2167 1.62 simonb else
2168 1.62 simonb memcpy(&nargv, (char *)&pss + p->p_psnenv, sizeof(nargv));
2169 1.62 simonb if (type == KERN_PROC_NARGV || type == KERN_PROC_NENV) {
2170 1.62 simonb error = copyout(&nargv, where, sizeof(nargv));
2171 1.64 simonb *sizep = sizeof(nargv);
2172 1.62 simonb goto done;
2173 1.62 simonb }
2174 1.62 simonb /*
2175 1.62 simonb * Now read the address of the argument vector.
2176 1.62 simonb */
2177 1.62 simonb switch (type) {
2178 1.68 pk case KERN_PROC_ARGV:
2179 1.62 simonb /* XXX compat32 stuff here */
2180 1.68 pk memcpy(&tmp, (char *)&pss + p->p_psargv, sizeof(tmp));
2181 1.62 simonb break;
2182 1.68 pk case KERN_PROC_ENV:
2183 1.68 pk memcpy(&tmp, (char *)&pss + p->p_psenv, sizeof(tmp));
2184 1.62 simonb break;
2185 1.68 pk default:
2186 1.68 pk return (EINVAL);
2187 1.62 simonb }
2188 1.68 pk auio.uio_offset = (off_t)(long)tmp;
2189 1.62 simonb aiov.iov_base = &argv;
2190 1.62 simonb aiov.iov_len = sizeof(argv);
2191 1.62 simonb auio.uio_iov = &aiov;
2192 1.62 simonb auio.uio_iovcnt = 1;
2193 1.62 simonb auio.uio_resid = sizeof(argv);
2194 1.62 simonb auio.uio_segflg = UIO_SYSSPACE;
2195 1.129 enami auio.uio_rw = UIO_READ;
2196 1.137 fvdl auio.uio_procp = NULL;
2197 1.62 simonb error = uvm_io(&p->p_vmspace->vm_map, &auio);
2198 1.62 simonb if (error)
2199 1.62 simonb goto done;
2200 1.62 simonb
2201 1.62 simonb /*
2202 1.62 simonb * Now copy in the actual argument vector, one page at a time,
2203 1.62 simonb * since we don't know how long the vector is (though, we do
2204 1.62 simonb * know how many NUL-terminated strings are in the vector).
2205 1.62 simonb */
2206 1.62 simonb len = 0;
2207 1.62 simonb upper_bound = *sizep;
2208 1.62 simonb for (; nargv != 0 && len < upper_bound; len += xlen) {
2209 1.62 simonb aiov.iov_base = arg;
2210 1.62 simonb aiov.iov_len = PAGE_SIZE;
2211 1.62 simonb auio.uio_iov = &aiov;
2212 1.62 simonb auio.uio_iovcnt = 1;
2213 1.62 simonb auio.uio_offset = argv + len;
2214 1.62 simonb xlen = PAGE_SIZE - ((argv + len) & PAGE_MASK);
2215 1.62 simonb auio.uio_resid = xlen;
2216 1.62 simonb auio.uio_segflg = UIO_SYSSPACE;
2217 1.62 simonb auio.uio_rw = UIO_READ;
2218 1.137 fvdl auio.uio_procp = NULL;
2219 1.62 simonb error = uvm_io(&p->p_vmspace->vm_map, &auio);
2220 1.62 simonb if (error)
2221 1.62 simonb goto done;
2222 1.62 simonb
2223 1.62 simonb for (i = 0; i < xlen && nargv != 0; i++) {
2224 1.62 simonb if (arg[i] == '\0')
2225 1.62 simonb nargv--; /* one full string */
2226 1.62 simonb }
2227 1.62 simonb
2228 1.111 thorpej /*
2229 1.111 thorpej * Make sure we don't copyout past the end of the user's
2230 1.111 thorpej * buffer.
2231 1.111 thorpej */
2232 1.62 simonb if (len + i > upper_bound)
2233 1.62 simonb i = upper_bound - len;
2234 1.62 simonb
2235 1.62 simonb error = copyout(arg, (char *)where + len, i);
2236 1.62 simonb if (error)
2237 1.62 simonb break;
2238 1.62 simonb
2239 1.62 simonb if (nargv == 0) {
2240 1.62 simonb len += i;
2241 1.62 simonb break;
2242 1.62 simonb }
2243 1.62 simonb }
2244 1.62 simonb *sizep = len;
2245 1.62 simonb
2246 1.62 simonb done:
2247 1.62 simonb uvmspace_free(p->p_vmspace);
2248 1.62 simonb
2249 1.62 simonb free(arg, M_TEMP);
2250 1.62 simonb return (error);
2251 1.1 cgd }
2252 1.78 jdolecek
2253 1.78 jdolecek #if NPTY > 0
2254 1.91 simonb int pty_maxptys(int, int); /* defined in kern/tty_pty.c */
2255 1.78 jdolecek
2256 1.78 jdolecek /*
2257 1.78 jdolecek * Validate parameters and get old / set new parameters
2258 1.78 jdolecek * for pty sysctl function.
2259 1.78 jdolecek */
2260 1.78 jdolecek static int
2261 1.91 simonb sysctl_pty(void *oldp, size_t *oldlenp, void *newp, size_t newlen)
2262 1.78 jdolecek {
2263 1.78 jdolecek int error = 0;
2264 1.78 jdolecek int oldmax = 0, newmax = 0;
2265 1.78 jdolecek
2266 1.78 jdolecek /* get current value of maxptys */
2267 1.79 thorpej oldmax = pty_maxptys(0, 0);
2268 1.78 jdolecek
2269 1.78 jdolecek SYSCTL_SCALAR_CORE_TYP(oldp, oldlenp, &oldmax, int)
2270 1.78 jdolecek
2271 1.78 jdolecek if (!error && newp) {
2272 1.78 jdolecek SYSCTL_SCALAR_NEWPCHECK_TYP(newp, newlen, int)
2273 1.78 jdolecek SYSCTL_SCALAR_NEWPCOP_TYP(newp, &newmax, int)
2274 1.78 jdolecek
2275 1.78 jdolecek if (newmax != pty_maxptys(newmax, (newp != NULL)))
2276 1.78 jdolecek return (EINVAL);
2277 1.78 jdolecek
2278 1.78 jdolecek }
2279 1.78 jdolecek
2280 1.78 jdolecek return (error);
2281 1.78 jdolecek }
2282 1.78 jdolecek #endif /* NPTY > 0 */
2283 1.100 simonb
2284 1.100 simonb static int
2285 1.129 enami sysctl_dotkstat(int *name, u_int namelen, void *where, size_t *sizep,
2286 1.129 enami void *newp)
2287 1.100 simonb {
2288 1.129 enami
2289 1.100 simonb /* all sysctl names at this level are terminal */
2290 1.100 simonb if (namelen != 1)
2291 1.100 simonb return (ENOTDIR); /* overloaded */
2292 1.100 simonb
2293 1.100 simonb switch (name[0]) {
2294 1.100 simonb case KERN_TKSTAT_NIN:
2295 1.100 simonb return (sysctl_rdquad(where, sizep, newp, tk_nin));
2296 1.100 simonb case KERN_TKSTAT_NOUT:
2297 1.100 simonb return (sysctl_rdquad(where, sizep, newp, tk_nout));
2298 1.100 simonb case KERN_TKSTAT_CANCC:
2299 1.100 simonb return (sysctl_rdquad(where, sizep, newp, tk_cancc));
2300 1.100 simonb case KERN_TKSTAT_RAWCC:
2301 1.100 simonb return (sysctl_rdquad(where, sizep, newp, tk_rawcc));
2302 1.100 simonb default:
2303 1.100 simonb return (EOPNOTSUPP);
2304 1.100 simonb }
2305 1.100 simonb }
2306