kern_sysctl.c revision 1.157 1 1.157 atatat /* $NetBSD: kern_sysctl.c,v 1.157 2003/12/29 04:19:28 atatat Exp $ */
2 1.153 atatat
3 1.153 atatat /*-
4 1.153 atatat * Copyright (c) 2003 The NetBSD Foundation, Inc.
5 1.153 atatat * All rights reserved.
6 1.153 atatat *
7 1.153 atatat * This code is derived from software contributed to The NetBSD Foundation
8 1.153 atatat * by Andrew Brown.
9 1.153 atatat *
10 1.153 atatat * Redistribution and use in source and binary forms, with or without
11 1.153 atatat * modification, are permitted provided that the following conditions
12 1.153 atatat * are met:
13 1.153 atatat * 1. Redistributions of source code must retain the above copyright
14 1.153 atatat * notice, this list of conditions and the following disclaimer.
15 1.153 atatat * 2. Redistributions in binary form must reproduce the above copyright
16 1.153 atatat * notice, this list of conditions and the following disclaimer in the
17 1.153 atatat * documentation and/or other materials provided with the distribution.
18 1.153 atatat * 3. All advertising materials mentioning features or use of this software
19 1.153 atatat * must display the following acknowledgement:
20 1.153 atatat * This product includes software developed by the NetBSD
21 1.153 atatat * Foundation, Inc. and its contributors.
22 1.153 atatat * 4. Neither the name of The NetBSD Foundation nor the names of its
23 1.153 atatat * contributors may be used to endorse or promote products derived
24 1.153 atatat * from this software without specific prior written permission.
25 1.153 atatat *
26 1.153 atatat * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
27 1.153 atatat * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
28 1.153 atatat * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
29 1.153 atatat * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
30 1.153 atatat * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31 1.153 atatat * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32 1.153 atatat * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33 1.153 atatat * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34 1.153 atatat * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35 1.153 atatat * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
36 1.153 atatat * POSSIBILITY OF SUCH DAMAGE.
37 1.153 atatat */
38 1.2 cgd
39 1.1 cgd /*-
40 1.1 cgd * Copyright (c) 1982, 1986, 1989, 1993
41 1.1 cgd * The Regents of the University of California. All rights reserved.
42 1.1 cgd *
43 1.1 cgd * This code is derived from software contributed to Berkeley by
44 1.1 cgd * Mike Karels at Berkeley Software Design, Inc.
45 1.1 cgd *
46 1.1 cgd * Redistribution and use in source and binary forms, with or without
47 1.1 cgd * modification, are permitted provided that the following conditions
48 1.1 cgd * are met:
49 1.1 cgd * 1. Redistributions of source code must retain the above copyright
50 1.1 cgd * notice, this list of conditions and the following disclaimer.
51 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
52 1.1 cgd * notice, this list of conditions and the following disclaimer in the
53 1.1 cgd * documentation and/or other materials provided with the distribution.
54 1.140 agc * 3. Neither the name of the University nor the names of its contributors
55 1.1 cgd * may be used to endorse or promote products derived from this software
56 1.1 cgd * without specific prior written permission.
57 1.1 cgd *
58 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
59 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
60 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
61 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
62 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
63 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
64 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
65 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
66 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
67 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
68 1.1 cgd * SUCH DAMAGE.
69 1.1 cgd *
70 1.34 fvdl * @(#)kern_sysctl.c 8.9 (Berkeley) 5/20/95
71 1.1 cgd */
72 1.1 cgd
73 1.1 cgd /*
74 1.1 cgd * sysctl system call.
75 1.1 cgd */
76 1.97 lukem
77 1.97 lukem #include <sys/cdefs.h>
78 1.157 atatat __KERNEL_RCSID(0, "$NetBSD: kern_sysctl.c,v 1.157 2003/12/29 04:19:28 atatat Exp $");
79 1.30 thorpej
80 1.52 bouyer #include "opt_defcorename.h"
81 1.154 fvdl #include "opt_insecure.h"
82 1.153 atatat #include "ksyms.h"
83 1.1 cgd
84 1.1 cgd #include <sys/param.h>
85 1.153 atatat #include <sys/sysctl.h>
86 1.1 cgd #include <sys/systm.h>
87 1.62 simonb #include <sys/buf.h>
88 1.153 atatat #include <sys/ksyms.h>
89 1.1 cgd #include <sys/malloc.h>
90 1.62 simonb #include <sys/mount.h>
91 1.123 thorpej #include <sys/sa.h>
92 1.62 simonb #include <sys/syscallargs.h>
93 1.153 atatat #include <machine/stdarg.h>
94 1.153 atatat
95 1.153 atatat MALLOC_DEFINE(M_SYSCTLNODE, "sysctlnode", "sysctl node structures");
96 1.153 atatat MALLOC_DEFINE(M_SYSCTLDATA, "sysctldata", "misc sysctl data");
97 1.153 atatat
98 1.153 atatat static int sysctl_mmap(SYSCTLFN_RWPROTO);
99 1.153 atatat static int sysctl_alloc(struct sysctlnode *, int);
100 1.153 atatat static int sysctl_realloc(struct sysctlnode *);
101 1.38 jonathan
102 1.153 atatat /*
103 1.153 atatat * the "root" of the new sysctl tree
104 1.153 atatat */
105 1.153 atatat static struct sysctlnode sysctl_root = {
106 1.153 atatat .sysctl_flags = SYSCTL_ROOT|
107 1.153 atatat SYSCTL_READWRITE|
108 1.153 atatat CTLTYPE_NODE,
109 1.153 atatat .sysctl_num = 0,
110 1.153 atatat .sysctl_size = sizeof(struct sysctlnode),
111 1.153 atatat .sysctl_name = "(root)",
112 1.153 atatat };
113 1.69 simonb
114 1.153 atatat /*
115 1.153 atatat * link set of functions that add nodes at boot time (see also
116 1.153 atatat * sysctl_buildtree())
117 1.153 atatat */
118 1.153 atatat __link_set_decl(sysctl_funcs, sysctl_setup_func);
119 1.74 simonb
120 1.153 atatat /*
121 1.153 atatat * The `sysctl_lock' is intended to serialize access to the sysctl
122 1.153 atatat * tree. Given that it is now (a) dynamic, and (b) most consumers of
123 1.153 atatat * sysctl are going to be copying data out, the old `sysctl_memlock'
124 1.153 atatat * has been `upgraded' to simply guard the whole tree.
125 1.153 atatat *
126 1.153 atatat * The two new data here are to keep track of the locked chunk of
127 1.153 atatat * memory, if there is one, so that it can be released more easily
128 1.153 atatat * from anywhere.
129 1.153 atatat */
130 1.153 atatat struct lock sysctl_treelock;
131 1.153 atatat caddr_t sysctl_memaddr;
132 1.153 atatat size_t sysctl_memsize;
133 1.90 jdolecek
134 1.153 atatat /*
135 1.153 atatat * Attributes stored in the kernel.
136 1.153 atatat */
137 1.153 atatat char hostname[MAXHOSTNAMELEN];
138 1.153 atatat int hostnamelen;
139 1.31 mrg
140 1.153 atatat char domainname[MAXHOSTNAMELEN];
141 1.153 atatat int domainnamelen;
142 1.109 itojun
143 1.153 atatat long hostid;
144 1.62 simonb
145 1.153 atatat #ifdef INSECURE
146 1.153 atatat int securelevel = -1;
147 1.153 atatat #else
148 1.153 atatat int securelevel = 0;
149 1.69 simonb #endif
150 1.153 atatat
151 1.153 atatat #ifndef DEFCORENAME
152 1.153 atatat #define DEFCORENAME "%n.core"
153 1.80 bjh21 #endif
154 1.153 atatat char defcorename[MAXPATHLEN] = DEFCORENAME;
155 1.62 simonb
156 1.75 thorpej /*
157 1.153 atatat * ********************************************************************
158 1.153 atatat * Section 0: Some simple glue
159 1.153 atatat * ********************************************************************
160 1.153 atatat * By wrapping copyin(), copyout(), and copyinstr() like this, we can
161 1.153 atatat * stop caring about who's calling us and simplify some code a bunch.
162 1.153 atatat * ********************************************************************
163 1.75 thorpej */
164 1.153 atatat static inline int
165 1.153 atatat sysctl_copyin(const struct lwp *l, const void *uaddr, void *kaddr, size_t len)
166 1.153 atatat {
167 1.153 atatat
168 1.153 atatat if (l != NULL)
169 1.153 atatat return (copyin(uaddr, kaddr, len));
170 1.156 atatat else
171 1.156 atatat return (kcopy(uaddr, kaddr, len));
172 1.153 atatat }
173 1.153 atatat
174 1.153 atatat static inline int
175 1.153 atatat sysctl_copyout(const struct lwp *l, const void *kaddr, void *uaddr, size_t len)
176 1.153 atatat {
177 1.153 atatat
178 1.153 atatat if (l != NULL)
179 1.153 atatat return (copyout(kaddr, uaddr, len));
180 1.156 atatat else
181 1.156 atatat return (kcopy(kaddr, uaddr, len));
182 1.153 atatat }
183 1.153 atatat
184 1.153 atatat static inline int
185 1.153 atatat sysctl_copyinstr(const struct lwp *l, const void *uaddr, void *kaddr,
186 1.153 atatat size_t len, size_t *done)
187 1.153 atatat {
188 1.75 thorpej
189 1.153 atatat if (l != NULL)
190 1.153 atatat return (copyinstr(uaddr, kaddr, len, done));
191 1.153 atatat else
192 1.153 atatat return (copystr(uaddr, kaddr, len, done));
193 1.153 atatat }
194 1.153 atatat
195 1.153 atatat /*
196 1.153 atatat * ********************************************************************
197 1.153 atatat * Initialize sysctl subsystem.
198 1.153 atatat * ********************************************************************
199 1.153 atatat */
200 1.75 thorpej void
201 1.75 thorpej sysctl_init(void)
202 1.75 thorpej {
203 1.153 atatat sysctl_setup_func **sysctl_setup, f;
204 1.153 atatat
205 1.153 atatat lockinit(&sysctl_treelock, PRIBIO|PCATCH, "sysctl", 0, 0);
206 1.153 atatat
207 1.153 atatat /*
208 1.153 atatat * dynamic mib numbers start here
209 1.153 atatat */
210 1.153 atatat sysctl_root.sysctl_num = CREATE_BASE;
211 1.153 atatat
212 1.153 atatat __link_set_foreach(sysctl_setup, sysctl_funcs) {
213 1.153 atatat /*
214 1.153 atatat * XXX - why do i have to coerce the pointers like this?
215 1.153 atatat */
216 1.153 atatat f = (void*)*sysctl_setup;
217 1.153 atatat (*f)();
218 1.153 atatat }
219 1.153 atatat
220 1.153 atatat /*
221 1.153 atatat * setting this means no more permanent nodes can be added,
222 1.153 atatat * trees that claim to be readonly at the root now are, and if
223 1.153 atatat * the main tree is readonly, *everything* is.
224 1.153 atatat */
225 1.153 atatat sysctl_root.sysctl_flags |= SYSCTL_PERMANENT;
226 1.75 thorpej
227 1.75 thorpej }
228 1.75 thorpej
229 1.153 atatat /*
230 1.153 atatat * ********************************************************************
231 1.153 atatat * The main native sysctl system call itself.
232 1.153 atatat * ********************************************************************
233 1.153 atatat */
234 1.1 cgd int
235 1.123 thorpej sys___sysctl(struct lwp *l, void *v, register_t *retval)
236 1.11 thorpej {
237 1.60 augustss struct sys___sysctl_args /* {
238 1.5 cgd syscallarg(int *) name;
239 1.5 cgd syscallarg(u_int) namelen;
240 1.5 cgd syscallarg(void *) old;
241 1.5 cgd syscallarg(size_t *) oldlenp;
242 1.5 cgd syscallarg(void *) new;
243 1.5 cgd syscallarg(size_t) newlen;
244 1.11 thorpej } */ *uap = v;
245 1.153 atatat int error, nerror, name[CTL_MAXNAME];
246 1.153 atatat size_t oldlen, savelen, *oldlenp;
247 1.153 atatat
248 1.153 atatat /*
249 1.153 atatat * get oldlen
250 1.153 atatat */
251 1.153 atatat oldlen = 0;
252 1.153 atatat oldlenp = SCARG(uap, oldlenp);
253 1.153 atatat if (oldlenp != NULL) {
254 1.153 atatat error = copyin(oldlenp, &oldlen, sizeof(oldlen));
255 1.153 atatat if (error)
256 1.153 atatat return (error);
257 1.153 atatat }
258 1.153 atatat savelen = oldlen;
259 1.1 cgd
260 1.1 cgd /*
261 1.153 atatat * top-level sysctl names may or may not be non-terminal, but
262 1.153 atatat * we don't care
263 1.1 cgd */
264 1.153 atatat if (SCARG(uap, namelen) > CTL_MAXNAME || SCARG(uap, namelen) < 1)
265 1.1 cgd return (EINVAL);
266 1.13 christos error = copyin(SCARG(uap, name), &name,
267 1.153 atatat SCARG(uap, namelen) * sizeof(int));
268 1.13 christos if (error)
269 1.1 cgd return (error);
270 1.1 cgd
271 1.52 bouyer /*
272 1.153 atatat * wire old so that copyout() is less likely to fail?
273 1.52 bouyer */
274 1.153 atatat error = sysctl_lock(l, SCARG(uap, old), savelen);
275 1.153 atatat if (error)
276 1.129 enami return (error);
277 1.52 bouyer
278 1.153 atatat /*
279 1.153 atatat * do sysctl work (NULL means main built-in default tree)
280 1.153 atatat */
281 1.153 atatat error = sysctl_dispatch(&name[0], SCARG(uap, namelen),
282 1.153 atatat SCARG(uap, old), &oldlen,
283 1.153 atatat SCARG(uap, new), SCARG(uap, newlen),
284 1.153 atatat &name[0], l, NULL);
285 1.153 atatat
286 1.153 atatat /*
287 1.153 atatat * release the sysctl lock
288 1.153 atatat */
289 1.153 atatat sysctl_unlock(l);
290 1.104 christos
291 1.153 atatat /*
292 1.153 atatat * set caller's oldlen to new value even in the face of an
293 1.153 atatat * error (if this gets an error and they didn't have one, they
294 1.153 atatat * get this one)
295 1.153 atatat */
296 1.153 atatat if (oldlenp) {
297 1.153 atatat nerror = copyout(&oldlen, oldlenp, sizeof(oldlen));
298 1.153 atatat if (error == 0)
299 1.153 atatat error = nerror;
300 1.1 cgd }
301 1.1 cgd
302 1.75 thorpej /*
303 1.153 atatat * if the only problem is that we weren't given enough space,
304 1.153 atatat * that's an ENOMEM error
305 1.75 thorpej */
306 1.153 atatat if (error == 0 && SCARG(uap, old) != NULL && savelen < oldlen)
307 1.153 atatat error = ENOMEM;
308 1.153 atatat
309 1.153 atatat return (error);
310 1.153 atatat }
311 1.153 atatat
312 1.153 atatat /*
313 1.153 atatat * ********************************************************************
314 1.153 atatat * Section 1: How the tree is used
315 1.153 atatat * ********************************************************************
316 1.153 atatat * Implementations of sysctl for emulations should typically need only
317 1.153 atatat * these three functions in this order: lock the tree, dispatch
318 1.153 atatat * request into it, unlock the tree.
319 1.153 atatat * ********************************************************************
320 1.153 atatat */
321 1.153 atatat int
322 1.153 atatat sysctl_lock(struct lwp *l, void *oldp, size_t savelen)
323 1.153 atatat {
324 1.153 atatat int error = 0;
325 1.75 thorpej
326 1.153 atatat error = lockmgr(&sysctl_treelock, LK_EXCLUSIVE, NULL);
327 1.153 atatat if (error)
328 1.153 atatat return (error);
329 1.153 atatat
330 1.153 atatat if (l != NULL && oldp != NULL && savelen) {
331 1.153 atatat error = uvm_vslock(l->l_proc, oldp, savelen, VM_PROT_WRITE);
332 1.87 chs if (error) {
333 1.153 atatat (void) lockmgr(&sysctl_treelock, LK_RELEASE, NULL);
334 1.129 enami return (error);
335 1.45 thorpej }
336 1.153 atatat sysctl_memaddr = oldp;
337 1.153 atatat sysctl_memsize = savelen;
338 1.1 cgd }
339 1.153 atatat
340 1.153 atatat return (0);
341 1.1 cgd }
342 1.1 cgd
343 1.1 cgd /*
344 1.153 atatat * ********************************************************************
345 1.153 atatat * the main sysctl dispatch routine. scans the given tree and picks a
346 1.153 atatat * function to call based on what it finds.
347 1.153 atatat * ********************************************************************
348 1.1 cgd */
349 1.153 atatat int
350 1.153 atatat sysctl_dispatch(SYSCTLFN_RWARGS)
351 1.153 atatat {
352 1.153 atatat int error;
353 1.153 atatat sysctlfn fn;
354 1.153 atatat int ni;
355 1.75 thorpej
356 1.153 atatat fn = NULL;
357 1.153 atatat error = sysctl_locate(l, name, namelen, &rnode, &ni);
358 1.75 thorpej
359 1.153 atatat /*
360 1.153 atatat * the node we ended up at has a function, so call it. it can
361 1.153 atatat * hand off to query or create if it wants to.
362 1.153 atatat */
363 1.153 atatat if (rnode->sysctl_func != NULL)
364 1.153 atatat fn = rnode->sysctl_func;
365 1.75 thorpej
366 1.153 atatat /*
367 1.153 atatat * we found the node they were looking for, so do a lookup.
368 1.153 atatat */
369 1.153 atatat else if (error == 0)
370 1.153 atatat fn = (sysctlfn)sysctl_lookup; /* XXX may write to rnode */
371 1.75 thorpej
372 1.153 atatat /*
373 1.153 atatat * prospective parent node found, but the terminal node was
374 1.153 atatat * not. generic operations associate with the parent.
375 1.153 atatat */
376 1.153 atatat else if (error == ENOENT && (ni + 1) == namelen && name[ni] < 0) {
377 1.153 atatat switch (name[ni]) {
378 1.153 atatat case CTL_QUERY:
379 1.153 atatat fn = sysctl_query;
380 1.153 atatat break;
381 1.153 atatat case CTL_CREATE:
382 1.153 atatat #if NKSYMS > 0
383 1.153 atatat case CTL_CREATESYM:
384 1.153 atatat #endif /* NKSYMS > 0 */
385 1.153 atatat fn = (sysctlfn)sysctl_create; /* we own the rnode */
386 1.153 atatat break;
387 1.153 atatat case CTL_DESTROY:
388 1.153 atatat fn = (sysctlfn)sysctl_destroy; /* we own the rnode */
389 1.153 atatat break;
390 1.153 atatat case CTL_MMAP:
391 1.153 atatat fn = (sysctlfn)sysctl_mmap; /* we own the rnode */
392 1.153 atatat break;
393 1.153 atatat default:
394 1.153 atatat error = EOPNOTSUPP;
395 1.153 atatat break;
396 1.153 atatat }
397 1.153 atatat }
398 1.75 thorpej
399 1.153 atatat /*
400 1.153 atatat * after all of that, maybe we found someone who knows how to
401 1.153 atatat * get us what we want?
402 1.153 atatat */
403 1.153 atatat if (fn != NULL)
404 1.153 atatat error = (*fn)(name + ni, namelen - ni, oldp, oldlenp,
405 1.153 atatat newp, newlen, name, l, rnode);
406 1.1 cgd
407 1.153 atatat else if (error == 0)
408 1.153 atatat error = EOPNOTSUPP;
409 1.84 sommerfe
410 1.153 atatat return (error);
411 1.153 atatat }
412 1.83 sommerfe
413 1.153 atatat /*
414 1.153 atatat * ********************************************************************
415 1.153 atatat * Releases the tree lock. Note that if uvm_vslock() was called when
416 1.153 atatat * the lock was taken, we release that memory now. By keeping track
417 1.153 atatat * of where and how much by ourselves, the lock can be released much
418 1.153 atatat * more easily from anywhere.
419 1.153 atatat * ********************************************************************
420 1.153 atatat */
421 1.153 atatat void
422 1.153 atatat sysctl_unlock(struct lwp *l)
423 1.83 sommerfe {
424 1.84 sommerfe
425 1.153 atatat if (l != NULL && sysctl_memsize != 0) {
426 1.153 atatat uvm_vsunlock(l->l_proc, sysctl_memaddr, sysctl_memsize);
427 1.153 atatat sysctl_memsize = 0;
428 1.153 atatat }
429 1.84 sommerfe
430 1.153 atatat (void) lockmgr(&sysctl_treelock, LK_RELEASE, NULL);
431 1.84 sommerfe }
432 1.84 sommerfe
433 1.153 atatat /*
434 1.153 atatat * ********************************************************************
435 1.153 atatat * Section 2: The main tree interfaces
436 1.153 atatat * ********************************************************************
437 1.153 atatat * This is how sysctl_dispatch() does its work, and you can too, by
438 1.153 atatat * calling these routines from helpers (though typically only
439 1.153 atatat * sysctl_lookup() will be used). The tree MUST BE LOCKED when these
440 1.153 atatat * are called.
441 1.153 atatat * ********************************************************************
442 1.153 atatat */
443 1.83 sommerfe
444 1.1 cgd /*
445 1.153 atatat * sysctl_locate -- Finds the node matching the given mib under the
446 1.153 atatat * given tree (via rv). If no tree is given, we fall back to the
447 1.153 atatat * native tree. The current process (via l) is used for access
448 1.156 atatat * control on the tree (some nodes may be traversable only by root) and
449 1.153 atatat * on return, nip will show how many numbers in the mib were consumed.
450 1.1 cgd */
451 1.13 christos int
452 1.153 atatat sysctl_locate(struct lwp *l, const int *name, u_int namelen,
453 1.153 atatat struct sysctlnode **rv, int *nip)
454 1.1 cgd {
455 1.153 atatat struct sysctlnode *node, *pnode;
456 1.153 atatat int tn, si, ni, error, alias;
457 1.153 atatat
458 1.153 atatat /*
459 1.153 atatat * basic checks and setup
460 1.153 atatat */
461 1.153 atatat if (*rv == NULL)
462 1.153 atatat *rv = &sysctl_root;
463 1.153 atatat if (nip)
464 1.153 atatat *nip = 0;
465 1.153 atatat if (namelen < 0)
466 1.153 atatat return (EINVAL);
467 1.153 atatat if (namelen == 0)
468 1.153 atatat return (0);
469 1.1 cgd
470 1.153 atatat /*
471 1.153 atatat * search starts from "root"
472 1.153 atatat */
473 1.153 atatat pnode = *rv;
474 1.153 atatat node = pnode->sysctl_child;
475 1.153 atatat error = 0;
476 1.1 cgd
477 1.153 atatat /*
478 1.153 atatat * scan for node to which new node should be attached
479 1.153 atatat */
480 1.153 atatat for (ni = 0; ni < namelen; ni++) {
481 1.153 atatat /*
482 1.153 atatat * walked off bottom of tree
483 1.153 atatat */
484 1.153 atatat if (node == NULL) {
485 1.153 atatat if (SYSCTL_TYPE(pnode->sysctl_flags) == CTLTYPE_NODE)
486 1.153 atatat error = ENOENT;
487 1.153 atatat else
488 1.153 atatat error = ENOTDIR;
489 1.153 atatat break;
490 1.153 atatat }
491 1.153 atatat /*
492 1.153 atatat * can anyone traverse this node or only root?
493 1.153 atatat */
494 1.153 atatat if (l != NULL && (pnode->sysctl_flags & SYSCTL_PRIVATE) &&
495 1.153 atatat (error = suser(l->l_proc->p_ucred, &l->l_proc->p_acflag))
496 1.153 atatat != 0)
497 1.153 atatat return (error);
498 1.153 atatat /*
499 1.153 atatat * find a child node with the right number
500 1.153 atatat */
501 1.153 atatat tn = name[ni];
502 1.153 atatat alias = 0;
503 1.153 atatat for (si = 0; si < pnode->sysctl_clen; si++) {
504 1.153 atatat if (node[si].sysctl_num == tn ||
505 1.153 atatat (tn >= 0 &&
506 1.153 atatat node[si].sysctl_flags & SYSCTL_ANYNUMBER)) {
507 1.153 atatat if (node[si].sysctl_flags & SYSCTL_ALIAS) {
508 1.153 atatat if (alias++ == 4)
509 1.153 atatat si = pnode->sysctl_clen - 1;
510 1.153 atatat else {
511 1.153 atatat tn = node[si].sysctl_alias;
512 1.153 atatat si = -1;
513 1.153 atatat }
514 1.139 yamt }
515 1.153 atatat else
516 1.153 atatat break;
517 1.99 lukem }
518 1.29 sommerfe }
519 1.153 atatat /*
520 1.153 atatat * if we ran off the end, it obviously doesn't exist
521 1.153 atatat */
522 1.153 atatat if (si == pnode->sysctl_clen) {
523 1.153 atatat error = ENOENT;
524 1.153 atatat break;
525 1.153 atatat }
526 1.153 atatat /*
527 1.153 atatat * so far so good, move on down the line
528 1.153 atatat */
529 1.153 atatat pnode = &node[si];
530 1.153 atatat if (SYSCTL_TYPE(pnode->sysctl_flags) == CTLTYPE_NODE)
531 1.153 atatat node = node[si].sysctl_child;
532 1.153 atatat else
533 1.153 atatat node = NULL;
534 1.153 atatat }
535 1.153 atatat
536 1.153 atatat *rv = pnode;
537 1.153 atatat if (nip)
538 1.153 atatat *nip = ni;
539 1.153 atatat
540 1.153 atatat return (error);
541 1.153 atatat }
542 1.153 atatat
543 1.153 atatat /*
544 1.153 atatat * sysctl_query -- The auto-discovery engine. Copies out the
545 1.153 atatat * descriptions on nodes under the given node and handles overlay
546 1.153 atatat * trees.
547 1.153 atatat */
548 1.153 atatat int
549 1.153 atatat sysctl_query(SYSCTLFN_ARGS)
550 1.153 atatat {
551 1.153 atatat int error, ni, elim;
552 1.153 atatat size_t out, left, t;
553 1.153 atatat struct sysctlnode *enode, *onode;
554 1.121 jdolecek
555 1.153 atatat if (newp != NULL)
556 1.153 atatat return (EPERM);
557 1.153 atatat if (SYSCTL_TYPE(rnode->sysctl_flags) != CTLTYPE_NODE)
558 1.153 atatat return (ENOTDIR);
559 1.153 atatat if (namelen != 1 || name[0] != CTL_QUERY)
560 1.153 atatat return (EINVAL);
561 1.121 jdolecek
562 1.153 atatat error = 0;
563 1.153 atatat out = 0;
564 1.153 atatat left = *oldlenp;
565 1.153 atatat elim = 0;
566 1.153 atatat enode = NULL;
567 1.121 jdolecek
568 1.153 atatat /*
569 1.153 atatat * process has overlay tree
570 1.153 atatat */
571 1.153 atatat if (l && l->l_proc->p_emul->e_sysctlovly) {
572 1.153 atatat enode = (void*)l->l_proc->p_emul->e_sysctlovly;
573 1.153 atatat elim = (name - oname);
574 1.153 atatat error = sysctl_locate(l, oname, elim, &enode, NULL);
575 1.153 atatat if (error == 0) {
576 1.153 atatat /* ah, found parent in overlay */
577 1.153 atatat elim = enode->sysctl_clen;
578 1.153 atatat enode = enode->sysctl_child;
579 1.153 atatat }
580 1.153 atatat else {
581 1.153 atatat error = 0;
582 1.153 atatat elim = 0;
583 1.153 atatat enode = NULL;
584 1.121 jdolecek }
585 1.153 atatat }
586 1.121 jdolecek
587 1.153 atatat for (ni = 0; ni < rnode->sysctl_clen; ni++) {
588 1.153 atatat t = MIN(left, sizeof(struct sysctlnode));
589 1.153 atatat onode = &rnode->sysctl_child[ni];
590 1.153 atatat if (enode && enode->sysctl_num == onode->sysctl_num) {
591 1.153 atatat if (SYSCTL_TYPE(enode->sysctl_flags) !=
592 1.153 atatat CTLTYPE_NODE)
593 1.153 atatat onode = enode;
594 1.153 atatat if (--elim > 0)
595 1.153 atatat enode++;
596 1.153 atatat else
597 1.153 atatat enode = NULL;
598 1.153 atatat }
599 1.153 atatat if (oldp != NULL && t > 0)
600 1.153 atatat error = sysctl_copyout(l, onode, (char*)oldp + out, t);
601 1.153 atatat if (error)
602 1.1 cgd return (error);
603 1.153 atatat out += sizeof(struct sysctlnode);
604 1.153 atatat left -= t;
605 1.153 atatat }
606 1.153 atatat
607 1.153 atatat /*
608 1.153 atatat * overlay trees *MUST* be entirely consumed
609 1.153 atatat */
610 1.153 atatat KASSERT(enode == NULL);
611 1.153 atatat
612 1.153 atatat *oldlenp = out;
613 1.153 atatat
614 1.153 atatat return (error);
615 1.153 atatat }
616 1.153 atatat
617 1.153 atatat #ifdef SYSCTL_DEBUG_CREATE
618 1.153 atatat #undef sysctl_create
619 1.153 atatat #endif /* SYSCTL_DEBUG_CREATE */
620 1.153 atatat
621 1.153 atatat /*
622 1.153 atatat * sysctl_create -- Adds a node (the description of which is taken
623 1.153 atatat * from newp) to the tree, returning a copy of it in the space pointed
624 1.153 atatat * to by oldp. In the event that the requested slot is already taken
625 1.153 atatat * (either by name or by number), the offending node is returned
626 1.153 atatat * instead. Yes, this is complex, but we want to make sure everything
627 1.153 atatat * is proper.
628 1.153 atatat */
629 1.153 atatat int
630 1.153 atatat sysctl_create(SYSCTLFN_RWARGS)
631 1.153 atatat {
632 1.153 atatat struct sysctlnode nnode, *node, *pnode;
633 1.153 atatat int error, ni, at, nm, type, sz, flags, rw, anum;
634 1.153 atatat void *own;
635 1.153 atatat
636 1.153 atatat error = 0;
637 1.153 atatat own = NULL;
638 1.153 atatat anum = -1;
639 1.153 atatat
640 1.153 atatat if (namelen != 1 || (name[namelen - 1] != CTL_CREATE
641 1.153 atatat #if NKSYMS > 0
642 1.153 atatat && name[namelen - 1] != CTL_CREATESYM
643 1.153 atatat #endif /* NKSYMS > 0 */
644 1.153 atatat ))
645 1.153 atatat return (EINVAL);
646 1.153 atatat
647 1.153 atatat /*
648 1.153 atatat * processes can only add nodes at securelevel 0, must be
649 1.153 atatat * root, and can't add nodes to a parent that's not writeable
650 1.153 atatat */
651 1.153 atatat if (l != NULL) {
652 1.156 atatat #ifndef SYSCTL_DISALLOW_CREATE
653 1.153 atatat if (securelevel > 0)
654 1.153 atatat return (EPERM);
655 1.153 atatat error = suser(l->l_proc->p_ucred, &l->l_proc->p_acflag);
656 1.153 atatat if (error)
657 1.153 atatat return (error);
658 1.153 atatat if (!(rnode->sysctl_flags & SYSCTL_READWRITE))
659 1.153 atatat #endif /* SYSCTL_DISALLOW_CREATE */
660 1.1 cgd return (EPERM);
661 1.153 atatat }
662 1.153 atatat
663 1.153 atatat /*
664 1.153 atatat * nothing can add a node if:
665 1.153 atatat * we've finished initial set up and
666 1.153 atatat * the tree itself is not writeable or
667 1.153 atatat * the entire sysctl system is not writeable
668 1.153 atatat */
669 1.153 atatat if ((sysctl_root.sysctl_flags & SYSCTL_PERMANENT) &&
670 1.153 atatat (!(sysctl_rootof(rnode)->sysctl_flags & SYSCTL_READWRITE) ||
671 1.153 atatat !(sysctl_root.sysctl_flags & SYSCTL_READWRITE)))
672 1.153 atatat return (EPERM);
673 1.120 jdolecek
674 1.153 atatat /*
675 1.153 atatat * it must be a "node", not a "int" or something
676 1.153 atatat */
677 1.153 atatat if (SYSCTL_TYPE(rnode->sysctl_flags) != CTLTYPE_NODE)
678 1.153 atatat return (ENOTDIR);
679 1.153 atatat pnode = rnode;
680 1.120 jdolecek
681 1.153 atatat if (newp == NULL || newlen != sizeof(struct sysctlnode))
682 1.153 atatat return (EINVAL);
683 1.153 atatat error = sysctl_copyin(l, newp, &nnode, sizeof(struct sysctlnode));
684 1.153 atatat if (error)
685 1.120 jdolecek return (error);
686 1.120 jdolecek
687 1.153 atatat /*
688 1.153 atatat * nodes passed in don't *have* parents
689 1.153 atatat */
690 1.153 atatat if (nnode.sysctl_parent != NULL)
691 1.153 atatat return (EINVAL);
692 1.145 dsl
693 1.153 atatat /*
694 1.153 atatat * if we are indeed adding it, it should be a "good" name and
695 1.153 atatat * number
696 1.153 atatat */
697 1.153 atatat nm = nnode.sysctl_num;
698 1.153 atatat #if NKSYMS > 0
699 1.153 atatat if (nm == CTL_CREATESYM)
700 1.153 atatat nm = CTL_CREATE;
701 1.153 atatat #endif /* NKSYMS > 0 */
702 1.153 atatat if (nm < 0 && nm != CTL_CREATE)
703 1.153 atatat return (EINVAL);
704 1.153 atatat sz = 0;
705 1.1 cgd
706 1.153 atatat /*
707 1.153 atatat * the name can't start with a digit
708 1.153 atatat */
709 1.153 atatat if (nnode.sysctl_name[sz] >= '0' &&
710 1.153 atatat nnode.sysctl_name[sz] <= '9')
711 1.153 atatat return (EINVAL);
712 1.1 cgd
713 1.153 atatat /*
714 1.153 atatat * the name must be only alphanumerics or - or _, longer than
715 1.153 atatat * 0 bytes and less that SYSCTL_NAMELEN
716 1.153 atatat */
717 1.153 atatat while (sz < SYSCTL_NAMELEN && nnode.sysctl_name[sz] != '\0') {
718 1.153 atatat if ((nnode.sysctl_name[sz] >= '0' &&
719 1.153 atatat nnode.sysctl_name[sz] <= '9') ||
720 1.153 atatat (nnode.sysctl_name[sz] >= 'A' &&
721 1.153 atatat nnode.sysctl_name[sz] <= 'Z') ||
722 1.153 atatat (nnode.sysctl_name[sz] >= 'a' &&
723 1.153 atatat nnode.sysctl_name[sz] <= 'z') ||
724 1.153 atatat nnode.sysctl_name[sz] == '-' ||
725 1.153 atatat nnode.sysctl_name[sz] == '_')
726 1.153 atatat sz++;
727 1.153 atatat else
728 1.153 atatat return (EINVAL);
729 1.98 simonb }
730 1.153 atatat if (sz == 0 || sz == SYSCTL_NAMELEN)
731 1.153 atatat return (EINVAL);
732 1.1 cgd
733 1.153 atatat /*
734 1.153 atatat * various checks revolve around size vs type, etc
735 1.153 atatat */
736 1.153 atatat type = SYSCTL_TYPE(nnode.sysctl_flags);
737 1.153 atatat flags = SYSCTL_FLAGS(nnode.sysctl_flags);
738 1.153 atatat rw = (flags & SYSCTL_READWRITE) ? B_WRITE : B_READ;
739 1.153 atatat sz = nnode.sysctl_size;
740 1.131 thorpej
741 1.153 atatat /*
742 1.153 atatat * find out if there's a collision, and if so, let the caller
743 1.153 atatat * know what they collided with
744 1.153 atatat */
745 1.153 atatat node = pnode->sysctl_child;
746 1.153 atatat if (((flags & SYSCTL_ANYNUMBER) && node) ||
747 1.153 atatat (node && node->sysctl_flags & SYSCTL_ANYNUMBER))
748 1.153 atatat return (EINVAL);
749 1.153 atatat for (ni = at = 0; ni < pnode->sysctl_clen; ni++) {
750 1.153 atatat if (nm == node[ni].sysctl_num ||
751 1.153 atatat strcmp(nnode.sysctl_name, node[ni].sysctl_name) == 0) {
752 1.153 atatat if (oldp != NULL) {
753 1.153 atatat /*
754 1.153 atatat * ignore error here, since we
755 1.153 atatat * are already fixed on EEXIST
756 1.153 atatat */
757 1.153 atatat (void)sysctl_copyout(l, &node[ni], oldp,
758 1.153 atatat MIN(*oldlenp, sizeof(struct sysctlnode)));
759 1.153 atatat }
760 1.153 atatat *oldlenp = sizeof(struct sysctlnode);
761 1.153 atatat return (EEXIST);
762 1.82 eeh }
763 1.153 atatat if (nm > node[ni].sysctl_num)
764 1.153 atatat at++;
765 1.1 cgd }
766 1.1 cgd
767 1.153 atatat /*
768 1.153 atatat * use sysctl_ver to add to the tree iff it hasn't changed
769 1.153 atatat */
770 1.153 atatat if (nnode.sysctl_ver != 0) {
771 1.153 atatat /*
772 1.153 atatat * a specified value must match either the parent
773 1.153 atatat * node's version or the root node's version
774 1.153 atatat */
775 1.153 atatat if (nnode.sysctl_ver != sysctl_rootof(rnode)->sysctl_ver &&
776 1.153 atatat nnode.sysctl_ver != rnode->sysctl_ver) {
777 1.153 atatat return (EINVAL);
778 1.153 atatat }
779 1.1 cgd }
780 1.1 cgd
781 1.153 atatat /*
782 1.153 atatat * only the kernel can assign functions to entries
783 1.153 atatat */
784 1.153 atatat if (l != NULL && nnode.sysctl_func != NULL)
785 1.153 atatat return (EPERM);
786 1.52 bouyer
787 1.153 atatat /*
788 1.153 atatat * only the kernel can create permanent entries, and only then
789 1.153 atatat * before the kernel is finished setting itself up
790 1.153 atatat */
791 1.153 atatat if (l != NULL && (flags & ~SYSCTL_USERFLAGS))
792 1.153 atatat return (EPERM);
793 1.153 atatat if ((flags & SYSCTL_PERMANENT) &
794 1.153 atatat (sysctl_root.sysctl_flags & SYSCTL_PERMANENT))
795 1.153 atatat return (EPERM);
796 1.153 atatat if ((flags & (SYSCTL_OWNDATA | SYSCTL_IMMEDIATE)) ==
797 1.153 atatat (SYSCTL_OWNDATA | SYSCTL_IMMEDIATE))
798 1.153 atatat return (EINVAL);
799 1.153 atatat if ((flags & SYSCTL_IMMEDIATE) &&
800 1.153 atatat type != CTLTYPE_INT && type != CTLTYPE_QUAD)
801 1.129 enami return (EINVAL);
802 1.52 bouyer
803 1.153 atatat /*
804 1.153 atatat * check size, or set it if unset and we can figure it out.
805 1.153 atatat * kernel created nodes are allowed to have a function instead
806 1.153 atatat * of a size (or a data pointer).
807 1.153 atatat */
808 1.153 atatat switch (type) {
809 1.153 atatat case CTLTYPE_NODE:
810 1.153 atatat /*
811 1.153 atatat * only *i* can assert the size of a node
812 1.153 atatat */
813 1.153 atatat if (flags & SYSCTL_ALIAS) {
814 1.153 atatat anum = nnode.sysctl_alias;
815 1.153 atatat if (anum < 0)
816 1.153 atatat return (EINVAL);
817 1.153 atatat nnode.sysctl_alias = 0;
818 1.52 bouyer }
819 1.153 atatat if (sz != 0 || nnode.sysctl_data != NULL)
820 1.153 atatat return (EINVAL);
821 1.153 atatat if (nnode.sysctl_csize != 0 ||
822 1.153 atatat nnode.sysctl_clen != 0 ||
823 1.153 atatat nnode.sysctl_child != 0)
824 1.129 enami return (EINVAL);
825 1.153 atatat if (flags & SYSCTL_OWNDATA)
826 1.129 enami return (EINVAL);
827 1.153 atatat sz = sizeof(struct sysctlnode);
828 1.153 atatat break;
829 1.153 atatat case CTLTYPE_INT:
830 1.153 atatat /*
831 1.153 atatat * since an int is an int, if the size is not given or
832 1.153 atatat * is wrong, we can "int-uit" it.
833 1.153 atatat */
834 1.153 atatat if (sz != 0 && sz != sizeof(int))
835 1.129 enami return (EINVAL);
836 1.153 atatat sz = sizeof(int);
837 1.153 atatat break;
838 1.153 atatat case CTLTYPE_STRING:
839 1.52 bouyer /*
840 1.153 atatat * strings are a little more tricky
841 1.52 bouyer */
842 1.153 atatat if (sz == 0) {
843 1.153 atatat if (l == NULL) {
844 1.153 atatat if (nnode.sysctl_func == NULL) {
845 1.153 atatat if (nnode.sysctl_data == NULL)
846 1.153 atatat return (EINVAL);
847 1.153 atatat else
848 1.153 atatat sz = strlen(nnode.sysctl_data) +
849 1.153 atatat 1;
850 1.52 bouyer }
851 1.52 bouyer }
852 1.153 atatat else if (nnode.sysctl_data == NULL &&
853 1.153 atatat flags & SYSCTL_OWNDATA) {
854 1.153 atatat return (EINVAL);
855 1.52 bouyer }
856 1.153 atatat else {
857 1.156 atatat char v[PAGE_SIZE], *e;
858 1.153 atatat size_t s;
859 1.153 atatat
860 1.153 atatat /*
861 1.156 atatat * we want a rough idea of what the
862 1.156 atatat * size is now
863 1.153 atatat */
864 1.156 atatat e = nnode.sysctl_data;
865 1.156 atatat do {
866 1.156 atatat error = copystr(e, &v[0], sizeof(v),
867 1.156 atatat &s);
868 1.156 atatat if (error) {
869 1.156 atatat if (error != ENAMETOOLONG)
870 1.156 atatat return (error);
871 1.156 atatat e += PAGE_SIZE;
872 1.156 atatat if ((e - 32 * PAGE_SIZE) >
873 1.156 atatat (char*)nnode.sysctl_data)
874 1.156 atatat return (ERANGE);
875 1.156 atatat }
876 1.156 atatat } while (error != 0);
877 1.156 atatat sz = s + (e - (char*)nnode.sysctl_data);
878 1.96 bouyer }
879 1.52 bouyer }
880 1.153 atatat break;
881 1.153 atatat case CTLTYPE_QUAD:
882 1.153 atatat if (sz != 0 && sz != sizeof(u_quad_t))
883 1.129 enami return (EINVAL);
884 1.153 atatat sz = sizeof(u_quad_t);
885 1.153 atatat break;
886 1.153 atatat case CTLTYPE_STRUCT:
887 1.153 atatat if (sz == 0) {
888 1.153 atatat if (l != NULL || nnode.sysctl_func == NULL)
889 1.153 atatat return (EINVAL);
890 1.153 atatat if (flags & SYSCTL_OWNDATA)
891 1.153 atatat return (EINVAL);
892 1.153 atatat }
893 1.153 atatat break;
894 1.115 manu default:
895 1.115 manu return (EINVAL);
896 1.52 bouyer }
897 1.52 bouyer
898 1.153 atatat /*
899 1.153 atatat * at this point, if sz is zero, we *must* have a
900 1.153 atatat * function to go with it and we can't own it.
901 1.153 atatat */
902 1.104 christos
903 1.153 atatat /*
904 1.153 atatat * l ptr own
905 1.153 atatat * 0 0 0 -> EINVAL (if no func)
906 1.153 atatat * 0 0 1 -> own
907 1.153 atatat * 0 1 0 -> kptr
908 1.153 atatat * 0 1 1 -> kptr
909 1.153 atatat * 1 0 0 -> EINVAL
910 1.153 atatat * 1 0 1 -> own
911 1.156 atatat * 1 1 0 -> kptr, no own (fault on lookup)
912 1.153 atatat * 1 1 1 -> uptr, own
913 1.153 atatat */
914 1.153 atatat if (type != CTLTYPE_NODE) {
915 1.153 atatat if (sz != 0) {
916 1.153 atatat if (flags & SYSCTL_OWNDATA) {
917 1.153 atatat own = malloc(sz, M_SYSCTLDATA,
918 1.153 atatat M_WAITOK|M_CANFAIL);
919 1.153 atatat if (nnode.sysctl_data == NULL)
920 1.153 atatat memset(own, 0, sz);
921 1.153 atatat else {
922 1.153 atatat error = sysctl_copyin(l,
923 1.153 atatat nnode.sysctl_data, own, sz);
924 1.153 atatat if (error != 0) {
925 1.153 atatat FREE(own, M_SYSCTLDATA);
926 1.153 atatat return (error);
927 1.153 atatat }
928 1.153 atatat }
929 1.153 atatat }
930 1.153 atatat else if ((nnode.sysctl_data != NULL) &&
931 1.153 atatat !(flags & SYSCTL_IMMEDIATE)) {
932 1.153 atatat #if NKSYMS > 0
933 1.153 atatat if (name[namelen - 1] == CTL_CREATESYM) {
934 1.153 atatat char symname[128]; /* XXX enough? */
935 1.153 atatat u_long symaddr;
936 1.153 atatat size_t symlen;
937 1.153 atatat
938 1.153 atatat error = sysctl_copyinstr(l,
939 1.153 atatat nnode.sysctl_data, symname,
940 1.153 atatat sizeof(symname), &symlen);
941 1.153 atatat if (error)
942 1.153 atatat return (error);
943 1.153 atatat error = ksyms_getval_from_kernel(NULL,
944 1.153 atatat symname, &symaddr, KSYMS_EXTERN);
945 1.153 atatat if (error)
946 1.153 atatat return (error); /* EINVAL? */
947 1.153 atatat nnode.sysctl_data = (void*)symaddr;
948 1.153 atatat }
949 1.153 atatat #endif /* NKSYMS > 0 */
950 1.156 atatat /*
951 1.156 atatat * Ideally, we'd like to verify here
952 1.156 atatat * that this address is acceptable,
953 1.156 atatat * but...
954 1.156 atatat *
955 1.156 atatat * - it might be valid now, only to
956 1.156 atatat * become invalid later
957 1.156 atatat *
958 1.156 atatat * - it might be invalid only for the
959 1.156 atatat * moment and valid later
960 1.156 atatat *
961 1.156 atatat * - or something else.
962 1.156 atatat *
963 1.156 atatat * Since we can't get a good answer,
964 1.156 atatat * we'll just accept the address as
965 1.156 atatat * given, and fault on individual
966 1.156 atatat * lookups.
967 1.156 atatat */
968 1.153 atatat }
969 1.153 atatat }
970 1.153 atatat else if (nnode.sysctl_func == NULL)
971 1.153 atatat return (EINVAL);
972 1.153 atatat }
973 1.104 christos
974 1.153 atatat /*
975 1.153 atatat * a process can't assign a function to a node, and the kernel
976 1.153 atatat * can't create a node that has no function or data.
977 1.153 atatat * (XXX somewhat redundant check)
978 1.153 atatat */
979 1.153 atatat if (l != NULL || nnode.sysctl_func == NULL) {
980 1.153 atatat if (type != CTLTYPE_NODE &&
981 1.153 atatat nnode.sysctl_data == NULL &&
982 1.153 atatat !(flags & SYSCTL_IMMEDIATE) &&
983 1.153 atatat own == NULL)
984 1.153 atatat return (EINVAL);
985 1.153 atatat }
986 1.104 christos
987 1.153 atatat #ifdef SYSCTL_DISALLOW_KWRITE
988 1.153 atatat /*
989 1.153 atatat * a process can't create a writable node unless it refers to
990 1.153 atatat * new data.
991 1.153 atatat */
992 1.153 atatat if (l != NULL && own == NULL && type != CTLTYPE_NODE &&
993 1.153 atatat (flags & SYSCTL_READWRITE) != SYSCTL_READONLY &&
994 1.153 atatat !(flags & SYSCTL_IMMEDIATE))
995 1.153 atatat return (EPERM);
996 1.153 atatat #endif /* SYSCTL_DISALLOW_KWRITE */
997 1.104 christos
998 1.153 atatat /*
999 1.153 atatat * make sure there's somewhere to put the new stuff.
1000 1.153 atatat */
1001 1.153 atatat if (pnode->sysctl_child == NULL) {
1002 1.153 atatat if (flags & SYSCTL_ANYNUMBER)
1003 1.153 atatat error = sysctl_alloc(pnode, 1);
1004 1.153 atatat else
1005 1.153 atatat error = sysctl_alloc(pnode, 0);
1006 1.153 atatat if (error)
1007 1.153 atatat return (error);
1008 1.153 atatat }
1009 1.153 atatat node = pnode->sysctl_child;
1010 1.105 jdolecek
1011 1.153 atatat /*
1012 1.153 atatat * no collisions, so pick a good dynamic number if we need to.
1013 1.153 atatat */
1014 1.153 atatat if (nm == CTL_CREATE) {
1015 1.153 atatat nm = ++sysctl_root.sysctl_num;
1016 1.153 atatat for (ni = 0; ni < pnode->sysctl_clen; ni++) {
1017 1.153 atatat if (nm == node[ni].sysctl_num) {
1018 1.153 atatat nm++;
1019 1.153 atatat ni = -1;
1020 1.153 atatat }
1021 1.153 atatat else if (nm > node[ni].sysctl_num)
1022 1.153 atatat at = ni + 1;
1023 1.153 atatat }
1024 1.104 christos }
1025 1.104 christos
1026 1.153 atatat /*
1027 1.153 atatat * oops...ran out of space
1028 1.153 atatat */
1029 1.153 atatat if (pnode->sysctl_clen == pnode->sysctl_csize) {
1030 1.153 atatat error = sysctl_realloc(pnode);
1031 1.153 atatat if (error)
1032 1.153 atatat return (error);
1033 1.153 atatat node = pnode->sysctl_child;
1034 1.55 is }
1035 1.55 is
1036 1.153 atatat /*
1037 1.153 atatat * insert new node data
1038 1.153 atatat */
1039 1.153 atatat if (at < pnode->sysctl_clen) {
1040 1.153 atatat int t;
1041 1.153 atatat
1042 1.153 atatat /*
1043 1.153 atatat * move the nodes that should come after the new one
1044 1.153 atatat */
1045 1.153 atatat memmove(&node[at + 1], &node[at],
1046 1.153 atatat (pnode->sysctl_clen - at) * sizeof(struct sysctlnode));
1047 1.153 atatat memset(&node[at], 0, sizeof(struct sysctlnode));
1048 1.153 atatat node[at].sysctl_parent = pnode;
1049 1.153 atatat /*
1050 1.153 atatat * and...reparent any children of any moved nodes
1051 1.153 atatat */
1052 1.153 atatat for (ni = at; ni <= pnode->sysctl_clen; ni++)
1053 1.153 atatat if (SYSCTL_TYPE(node[ni].sysctl_flags) == CTLTYPE_NODE)
1054 1.153 atatat for (t = 0; t < node[ni].sysctl_clen; t++)
1055 1.153 atatat node[ni].sysctl_child[t].sysctl_parent =
1056 1.153 atatat &node[ni];
1057 1.153 atatat }
1058 1.153 atatat node = &node[at];
1059 1.153 atatat pnode->sysctl_clen++;
1060 1.153 atatat
1061 1.153 atatat strlcpy(node->sysctl_name, nnode.sysctl_name,
1062 1.153 atatat sizeof(node->sysctl_name));
1063 1.153 atatat node->sysctl_num = nm;
1064 1.153 atatat node->sysctl_size = sz;
1065 1.153 atatat node->sysctl_flags = type|flags;
1066 1.153 atatat node->sysctl_csize = 0;
1067 1.153 atatat node->sysctl_clen = 0;
1068 1.153 atatat if (own) {
1069 1.153 atatat node->sysctl_data = own;
1070 1.153 atatat node->sysctl_flags |= SYSCTL_OWNDATA;
1071 1.153 atatat }
1072 1.153 atatat else if (flags & SYSCTL_ALIAS) {
1073 1.153 atatat node->sysctl_alias = anum;
1074 1.153 atatat }
1075 1.153 atatat else if (flags & SYSCTL_IMMEDIATE) {
1076 1.153 atatat switch (type) {
1077 1.153 atatat case CTLTYPE_INT:
1078 1.153 atatat node->sysctl_idata = nnode.sysctl_idata;
1079 1.153 atatat break;
1080 1.153 atatat case CTLTYPE_QUAD:
1081 1.153 atatat node->sysctl_qdata = nnode.sysctl_qdata;
1082 1.153 atatat break;
1083 1.153 atatat }
1084 1.55 is }
1085 1.153 atatat else {
1086 1.153 atatat node->sysctl_data = nnode.sysctl_data;
1087 1.153 atatat node->sysctl_flags &= ~SYSCTL_OWNDATA;
1088 1.153 atatat }
1089 1.153 atatat node->sysctl_func = nnode.sysctl_func;
1090 1.153 atatat node->sysctl_child = NULL;
1091 1.153 atatat /* node->sysctl_parent should already be done */
1092 1.55 is
1093 1.153 atatat /*
1094 1.153 atatat * update "version" on path to "root"
1095 1.153 atatat */
1096 1.153 atatat for (; rnode->sysctl_parent != NULL; rnode = rnode->sysctl_parent)
1097 1.153 atatat ;
1098 1.153 atatat pnode = node;
1099 1.153 atatat for (nm = rnode->sysctl_ver + 1; pnode != NULL;
1100 1.153 atatat pnode = pnode->sysctl_parent)
1101 1.153 atatat pnode->sysctl_ver = nm;
1102 1.153 atatat
1103 1.153 atatat if (oldp != NULL)
1104 1.153 atatat error = sysctl_copyout(l, node, oldp,
1105 1.153 atatat MIN(*oldlenp, sizeof(struct sysctlnode)));
1106 1.153 atatat *oldlenp = sizeof(struct sysctlnode);
1107 1.55 is
1108 1.1 cgd return (error);
1109 1.1 cgd }
1110 1.1 cgd
1111 1.1 cgd /*
1112 1.153 atatat * ********************************************************************
1113 1.153 atatat * A wrapper around sysctl_create() that prints the thing we're trying
1114 1.153 atatat * to add.
1115 1.153 atatat * ********************************************************************
1116 1.1 cgd */
1117 1.153 atatat #ifdef SYSCTL_DEBUG_CREATE
1118 1.153 atatat int _sysctl_create(SYSCTLFN_RWPROTO);
1119 1.13 christos int
1120 1.153 atatat _sysctl_create(SYSCTLFN_RWARGS)
1121 1.1 cgd {
1122 1.153 atatat const struct sysctlnode *node;
1123 1.153 atatat int k, rc, ni, nl = namelen + (name - oname);
1124 1.153 atatat
1125 1.153 atatat node = newp;
1126 1.153 atatat
1127 1.153 atatat printf("namelen %d (", nl);
1128 1.153 atatat for (ni = 0; ni < nl - 1; ni++)
1129 1.153 atatat printf(" %d", oname[ni]);
1130 1.153 atatat printf(" %d )\t[%s]\tflags %08x (%08x %d %zu)\n",
1131 1.153 atatat k = node->sysctl_num,
1132 1.153 atatat node->sysctl_name,
1133 1.153 atatat node->sysctl_flags,
1134 1.153 atatat SYSCTL_FLAGS(node->sysctl_flags),
1135 1.153 atatat SYSCTL_TYPE(node->sysctl_flags),
1136 1.153 atatat node->sysctl_size);
1137 1.1 cgd
1138 1.153 atatat node = rnode;
1139 1.153 atatat rc = sysctl_create(SYSCTLFN_CALL(rnode));
1140 1.55 is
1141 1.153 atatat printf("sysctl_create(");
1142 1.153 atatat for (ni = 0; ni < nl - 1; ni++)
1143 1.153 atatat printf(" %d", oname[ni]);
1144 1.153 atatat printf(" %d ) returned %d\n", k, rc);
1145 1.55 is
1146 1.153 atatat return (rc);
1147 1.1 cgd }
1148 1.153 atatat #define sysctl_create _sysctl_create
1149 1.153 atatat #endif /* SYSCTL_DEBUG_CREATE */
1150 1.1 cgd
1151 1.1 cgd /*
1152 1.153 atatat * sysctl_destroy -- Removes a node (as described by newp) from the
1153 1.153 atatat * given tree, returning (if successful) a copy of the dead node in
1154 1.153 atatat * oldp. Since we're removing stuff, there's not much to check.
1155 1.52 bouyer */
1156 1.52 bouyer int
1157 1.153 atatat sysctl_destroy(SYSCTLFN_RWARGS)
1158 1.52 bouyer {
1159 1.153 atatat struct sysctlnode *node, *pnode, onode, nnode;
1160 1.153 atatat int ni, error;
1161 1.52 bouyer
1162 1.153 atatat error = 0;
1163 1.55 is
1164 1.153 atatat if (namelen != 1 || name[namelen - 1] != CTL_DESTROY)
1165 1.153 atatat return (EINVAL);
1166 1.52 bouyer
1167 1.153 atatat /*
1168 1.153 atatat * processes can only destroy nodes at securelevel 0, must be
1169 1.153 atatat * root, and can't remove nodes from a parent that's not
1170 1.153 atatat * writeable
1171 1.153 atatat */
1172 1.153 atatat if (l != NULL) {
1173 1.156 atatat #ifndef SYSCTL_DISALLOW_CREATE
1174 1.153 atatat if (securelevel > 0)
1175 1.153 atatat return (EPERM);
1176 1.153 atatat error = suser(l->l_proc->p_ucred, &l->l_proc->p_acflag);
1177 1.153 atatat if (error)
1178 1.153 atatat return (error);
1179 1.153 atatat if (!(rnode->sysctl_flags & SYSCTL_READWRITE))
1180 1.156 atatat #endif /* SYSCTL_DISALLOW_CREATE */
1181 1.153 atatat return (EPERM);
1182 1.153 atatat }
1183 1.52 bouyer
1184 1.153 atatat /*
1185 1.153 atatat * nothing can remove a node if:
1186 1.153 atatat * the node is permanent (checked later) or
1187 1.153 atatat * the tree itself is not writeable or
1188 1.153 atatat * the entire sysctl system is not writeable
1189 1.153 atatat */
1190 1.153 atatat if (!(sysctl_rootof(rnode)->sysctl_flags & SYSCTL_READWRITE) ||
1191 1.153 atatat !(sysctl_root.sysctl_flags & SYSCTL_READWRITE))
1192 1.52 bouyer return (EPERM);
1193 1.55 is
1194 1.153 atatat if (newp == NULL || newlen != sizeof(struct sysctlnode))
1195 1.153 atatat return (EINVAL);
1196 1.153 atatat error = sysctl_copyin(l, newp, &nnode, sizeof(struct sysctlnode));
1197 1.153 atatat if (error)
1198 1.153 atatat return (error);
1199 1.153 atatat memset(&onode, 0, sizeof(struct sysctlnode));
1200 1.55 is
1201 1.153 atatat node = rnode->sysctl_child;
1202 1.153 atatat for (ni = 0; ni < rnode->sysctl_clen; ni++) {
1203 1.153 atatat if (nnode.sysctl_num == node[ni].sysctl_num) {
1204 1.153 atatat /*
1205 1.153 atatat * if name specified, must match
1206 1.153 atatat */
1207 1.153 atatat if (nnode.sysctl_name[0] != '\0' &&
1208 1.153 atatat strcmp(nnode.sysctl_name, node[ni].sysctl_name))
1209 1.153 atatat continue;
1210 1.153 atatat /*
1211 1.153 atatat * if version specified, must match
1212 1.153 atatat */
1213 1.153 atatat if (nnode.sysctl_ver != 0 &&
1214 1.153 atatat nnode.sysctl_ver != node[ni].sysctl_ver)
1215 1.153 atatat continue;
1216 1.153 atatat /*
1217 1.153 atatat * this must be the one
1218 1.153 atatat */
1219 1.153 atatat break;
1220 1.153 atatat }
1221 1.153 atatat }
1222 1.153 atatat if (ni == rnode->sysctl_clen)
1223 1.153 atatat return (ENOENT);
1224 1.153 atatat node = &node[ni];
1225 1.153 atatat pnode = node->sysctl_parent;
1226 1.52 bouyer
1227 1.153 atatat /*
1228 1.153 atatat * if the kernel says permanent, it is, so there. nyah.
1229 1.153 atatat */
1230 1.153 atatat if (SYSCTL_FLAGS(node->sysctl_flags) & SYSCTL_PERMANENT)
1231 1.153 atatat return (EPERM);
1232 1.1 cgd
1233 1.153 atatat /*
1234 1.153 atatat * can't delete non-empty nodes
1235 1.153 atatat */
1236 1.153 atatat if (SYSCTL_TYPE(node->sysctl_flags) == CTLTYPE_NODE &&
1237 1.153 atatat node->sysctl_clen != 0)
1238 1.153 atatat return (ENOTEMPTY);
1239 1.55 is
1240 1.153 atatat /*
1241 1.153 atatat * if the node "owns" data, release it now
1242 1.153 atatat */
1243 1.153 atatat if (node->sysctl_flags & SYSCTL_OWNDATA) {
1244 1.153 atatat if (node->sysctl_data != NULL)
1245 1.153 atatat FREE(node->sysctl_data, M_SYSCTLDATA);
1246 1.153 atatat node->sysctl_data = NULL;
1247 1.153 atatat }
1248 1.55 is
1249 1.153 atatat /*
1250 1.153 atatat * if the node to be removed is not the last one on the list,
1251 1.153 atatat * move the remaining nodes up, and reparent any grandchildren
1252 1.153 atatat */
1253 1.153 atatat onode = *node;
1254 1.153 atatat if (ni < pnode->sysctl_clen - 1) {
1255 1.153 atatat int t;
1256 1.153 atatat
1257 1.153 atatat memmove(&pnode->sysctl_child[ni], &pnode->sysctl_child[ni + 1],
1258 1.153 atatat (pnode->sysctl_clen - ni - 1) *
1259 1.153 atatat sizeof(struct sysctlnode));
1260 1.153 atatat for (; ni < pnode->sysctl_clen - 1; ni++)
1261 1.153 atatat if (SYSCTL_TYPE(pnode->sysctl_child[ni].sysctl_flags) ==
1262 1.153 atatat CTLTYPE_NODE)
1263 1.153 atatat for (t = 0; t < pnode->sysctl_child[ni].sysctl_clen;
1264 1.153 atatat t++)
1265 1.153 atatat pnode->sysctl_child[ni].sysctl_child[t].
1266 1.153 atatat sysctl_parent =
1267 1.153 atatat &pnode->sysctl_child[ni];
1268 1.153 atatat ni = pnode->sysctl_clen - 1;
1269 1.153 atatat node = &pnode->sysctl_child[ni];
1270 1.1 cgd }
1271 1.1 cgd
1272 1.153 atatat /*
1273 1.153 atatat * reset the space we just vacated
1274 1.153 atatat */
1275 1.153 atatat memset(node, 0, sizeof(struct sysctlnode));
1276 1.153 atatat node->sysctl_parent = pnode;
1277 1.153 atatat pnode->sysctl_clen--;
1278 1.1 cgd
1279 1.153 atatat /*
1280 1.153 atatat * if this parent just lost its last child, nuke the creche
1281 1.153 atatat */
1282 1.153 atatat if (pnode->sysctl_clen == 0) {
1283 1.153 atatat FREE(pnode->sysctl_child, M_SYSCTLNODE);
1284 1.153 atatat pnode->sysctl_csize = 0;
1285 1.153 atatat pnode->sysctl_child = NULL;
1286 1.153 atatat }
1287 1.55 is
1288 1.153 atatat /*
1289 1.153 atatat * update "version" on path to "root"
1290 1.153 atatat */
1291 1.153 atatat for (; rnode->sysctl_parent != NULL; rnode = rnode->sysctl_parent)
1292 1.153 atatat ;
1293 1.153 atatat for (ni = rnode->sysctl_ver + 1; pnode != NULL;
1294 1.153 atatat pnode = pnode->sysctl_parent)
1295 1.153 atatat pnode->sysctl_ver = ni;
1296 1.153 atatat
1297 1.153 atatat if (oldp != NULL)
1298 1.153 atatat error = sysctl_copyout(l, &onode, oldp,
1299 1.153 atatat MIN(*oldlenp, sizeof(struct sysctlnode)));
1300 1.153 atatat *oldlenp = sizeof(struct sysctlnode);
1301 1.55 is
1302 1.1 cgd return (error);
1303 1.1 cgd }
1304 1.1 cgd
1305 1.1 cgd /*
1306 1.153 atatat * sysctl_lookup -- Handles copyin/copyout of new and old values.
1307 1.153 atatat * Partial reads are globally allowed. Only root can write to things
1308 1.153 atatat * unless the node says otherwise.
1309 1.1 cgd */
1310 1.13 christos int
1311 1.153 atatat sysctl_lookup(SYSCTLFN_RWARGS)
1312 1.1 cgd {
1313 1.153 atatat int error, rw;
1314 1.153 atatat size_t sz, len;
1315 1.153 atatat void *d;
1316 1.153 atatat
1317 1.153 atatat error = 0;
1318 1.153 atatat
1319 1.153 atatat /*
1320 1.153 atatat * you can't "look up" a node. you can "query" it, but you
1321 1.153 atatat * can't "look it up".
1322 1.153 atatat */
1323 1.153 atatat if (SYSCTL_TYPE(rnode->sysctl_flags) == CTLTYPE_NODE || namelen != 0)
1324 1.153 atatat return (EINVAL);
1325 1.1 cgd
1326 1.153 atatat /*
1327 1.153 atatat * some nodes are private, so only root can look into them.
1328 1.153 atatat */
1329 1.157 atatat if (l != NULL && (rnode->sysctl_flags & SYSCTL_PRIVATE) &&
1330 1.157 atatat (error = suser(l->l_proc->p_ucred, &l->l_proc->p_acflag)) != 0)
1331 1.153 atatat return (error);
1332 1.55 is
1333 1.153 atatat /*
1334 1.153 atatat * if a node wants to be writable according to different rules
1335 1.153 atatat * other than "only root can write to stuff unless a flag is
1336 1.153 atatat * set", then it needs its own function which should have been
1337 1.153 atatat * called and not us.
1338 1.153 atatat */
1339 1.153 atatat if (l != NULL && newp != NULL &&
1340 1.153 atatat !(rnode->sysctl_flags & SYSCTL_ANYWRITE) &&
1341 1.153 atatat (error = suser(l->l_proc->p_ucred, &l->l_proc->p_acflag)) != 0)
1342 1.153 atatat return (error);
1343 1.1 cgd
1344 1.153 atatat /*
1345 1.153 atatat * is this node supposedly writable?
1346 1.153 atatat */
1347 1.153 atatat rw = 0;
1348 1.153 atatat switch (rnode->sysctl_flags & SYSCTL_READWRITE) {
1349 1.153 atatat case SYSCTL_READONLY1:
1350 1.153 atatat rw = (securelevel < 1) ? 1 : 0;
1351 1.153 atatat break;
1352 1.153 atatat case SYSCTL_READONLY2:
1353 1.153 atatat rw = (securelevel < 2) ? 1 : 0;
1354 1.153 atatat break;
1355 1.153 atatat case SYSCTL_READWRITE:
1356 1.153 atatat rw = 1;
1357 1.153 atatat break;
1358 1.153 atatat }
1359 1.1 cgd
1360 1.153 atatat /*
1361 1.153 atatat * it appears not to be writable at this time, so if someone
1362 1.153 atatat * tried to write to it, we must tell them to go away
1363 1.153 atatat */
1364 1.153 atatat if (!rw && newp != NULL)
1365 1.1 cgd return (EPERM);
1366 1.55 is
1367 1.153 atatat /*
1368 1.153 atatat * step one, copy out the stuff we have presently
1369 1.153 atatat */
1370 1.153 atatat if (rnode->sysctl_flags & SYSCTL_IMMEDIATE) {
1371 1.153 atatat switch (SYSCTL_TYPE(rnode->sysctl_flags)) {
1372 1.153 atatat case CTLTYPE_INT:
1373 1.153 atatat d = &rnode->sysctl_idata;
1374 1.153 atatat break;
1375 1.153 atatat case CTLTYPE_QUAD:
1376 1.153 atatat d = &rnode->sysctl_qdata;
1377 1.153 atatat break;
1378 1.153 atatat default:
1379 1.153 atatat return (EINVAL);
1380 1.153 atatat }
1381 1.153 atatat }
1382 1.153 atatat else
1383 1.153 atatat d = rnode->sysctl_data;
1384 1.153 atatat if (SYSCTL_TYPE(rnode->sysctl_flags) == CTLTYPE_STRING)
1385 1.157 atatat sz = strlen(d) + 1; /* XXX@@@ possible fault here */
1386 1.153 atatat else
1387 1.153 atatat sz = rnode->sysctl_size;
1388 1.153 atatat if (oldp != NULL)
1389 1.153 atatat error = sysctl_copyout(l, d, oldp, MIN(sz, *oldlenp));
1390 1.153 atatat if (error)
1391 1.153 atatat return (error);
1392 1.153 atatat *oldlenp = sz;
1393 1.153 atatat
1394 1.153 atatat /*
1395 1.153 atatat * are we done?
1396 1.153 atatat */
1397 1.153 atatat if (newp == NULL || newlen == 0)
1398 1.153 atatat return (0);
1399 1.153 atatat
1400 1.153 atatat /*
1401 1.153 atatat * hmm...not done. must now "copy in" new value. re-adjust
1402 1.153 atatat * sz to maximum value (strings are "weird").
1403 1.153 atatat */
1404 1.153 atatat sz = rnode->sysctl_size;
1405 1.153 atatat switch (SYSCTL_TYPE(rnode->sysctl_flags)) {
1406 1.153 atatat case CTLTYPE_INT:
1407 1.153 atatat case CTLTYPE_QUAD:
1408 1.153 atatat case CTLTYPE_STRUCT:
1409 1.153 atatat /*
1410 1.153 atatat * these data must be *exactly* the same size coming
1411 1.153 atatat * in.
1412 1.153 atatat */
1413 1.153 atatat if (newlen != sz)
1414 1.153 atatat return (EINVAL);
1415 1.153 atatat error = sysctl_copyin(l, newp, d, sz);
1416 1.153 atatat break;
1417 1.153 atatat case CTLTYPE_STRING: {
1418 1.153 atatat /*
1419 1.153 atatat * strings, on the other hand, can be shorter, and we
1420 1.153 atatat * let userland be sloppy about the trailing nul.
1421 1.153 atatat */
1422 1.153 atatat char *newbuf;
1423 1.85 simonb
1424 1.153 atatat /*
1425 1.153 atatat * too much new string?
1426 1.153 atatat */
1427 1.153 atatat if (newlen > sz)
1428 1.153 atatat return (EINVAL);
1429 1.85 simonb
1430 1.153 atatat /*
1431 1.153 atatat * temporary copy of new inbound string
1432 1.153 atatat */
1433 1.153 atatat len = MIN(sz, newlen);
1434 1.153 atatat newbuf = malloc(len, M_SYSCTLDATA, M_WAITOK|M_CANFAIL);
1435 1.153 atatat if (newbuf == NULL)
1436 1.153 atatat return (ENOMEM);
1437 1.153 atatat error = sysctl_copyin(l, newp, newbuf, len);
1438 1.153 atatat if (error) {
1439 1.153 atatat FREE(newbuf, M_SYSCTLDATA);
1440 1.153 atatat return (error);
1441 1.153 atatat }
1442 1.85 simonb
1443 1.153 atatat /*
1444 1.153 atatat * did they null terminate it, or do we have space
1445 1.153 atatat * left to do it ourselves?
1446 1.153 atatat */
1447 1.153 atatat if (newbuf[len - 1] != '\0' && len == sz) {
1448 1.153 atatat FREE(newbuf, M_SYSCTLDATA);
1449 1.153 atatat return (EINVAL);
1450 1.153 atatat }
1451 1.85 simonb
1452 1.153 atatat /*
1453 1.153 atatat * looks good, so pop it into place and zero the rest.
1454 1.153 atatat */
1455 1.153 atatat if (len > 0)
1456 1.153 atatat memcpy(rnode->sysctl_data, newbuf, len);
1457 1.153 atatat if (sz != len)
1458 1.153 atatat memset((char*)rnode->sysctl_data + len, 0, sz - len);
1459 1.153 atatat FREE(newbuf, M_SYSCTLDATA);
1460 1.153 atatat break;
1461 1.153 atatat }
1462 1.153 atatat default:
1463 1.153 atatat return (EINVAL);
1464 1.153 atatat }
1465 1.55 is
1466 1.1 cgd return (error);
1467 1.1 cgd }
1468 1.1 cgd
1469 1.1 cgd /*
1470 1.153 atatat * sysctl_mmap -- Dispatches sysctl mmap requests to those nodes that
1471 1.153 atatat * purport to handle it. This interface isn't fully fleshed out yet,
1472 1.153 atatat * unfortunately.
1473 1.1 cgd */
1474 1.69 simonb static int
1475 1.153 atatat sysctl_mmap(SYSCTLFN_RWARGS)
1476 1.1 cgd {
1477 1.153 atatat struct sysctlnode nnode, *node;
1478 1.111 thorpej int error;
1479 1.1 cgd
1480 1.153 atatat /*
1481 1.153 atatat * let's just pretend that didn't happen, m'kay?
1482 1.153 atatat */
1483 1.153 atatat if (l == NULL)
1484 1.153 atatat return (EPERM);
1485 1.153 atatat
1486 1.153 atatat /*
1487 1.153 atatat * is this a sysctlnode description of an mmap request?
1488 1.153 atatat */
1489 1.153 atatat if (newp == NULL || newlen != sizeof(struct sysctlnode))
1490 1.153 atatat return (EINVAL);
1491 1.153 atatat error = sysctl_copyin(l, newp, &nnode, sizeof(struct sysctlnode));
1492 1.153 atatat if (error)
1493 1.153 atatat return (error);
1494 1.1 cgd
1495 1.1 cgd /*
1496 1.153 atatat * does the node they asked for exist?
1497 1.1 cgd */
1498 1.153 atatat if (namelen != 1)
1499 1.153 atatat return (EOPNOTSUPP);
1500 1.153 atatat node = rnode;
1501 1.153 atatat error = sysctl_locate(l, &nnode.sysctl_num, 1, &node, NULL);
1502 1.13 christos if (error)
1503 1.1 cgd return (error);
1504 1.1 cgd
1505 1.1 cgd /*
1506 1.153 atatat * does this node that we have found purport to handle mmap?
1507 1.153 atatat */
1508 1.153 atatat if (node->sysctl_func == NULL ||
1509 1.153 atatat !(node->sysctl_flags & SYSCTL_MMAP))
1510 1.153 atatat return (EOPNOTSUPP);
1511 1.153 atatat
1512 1.153 atatat /*
1513 1.153 atatat * well...okay, they asked for it.
1514 1.1 cgd */
1515 1.153 atatat return ((*node->sysctl_func)(SYSCTLFN_CALL(node)));
1516 1.1 cgd }
1517 1.1 cgd
1518 1.145 dsl /*
1519 1.153 atatat * ********************************************************************
1520 1.153 atatat * Section 3: Create and destroy from inside the kernel
1521 1.153 atatat * ********************************************************************
1522 1.153 atatat * sysctl_createv() and sysctl_destroyv() are simpler-to-use
1523 1.153 atatat * interfaces for the kernel to fling new entries into the mib and rip
1524 1.153 atatat * them out later. In the case of sysctl_createv(), the returned copy
1525 1.153 atatat * of the node (see sysctl_create()) will be translated back into a
1526 1.153 atatat * pointer to the actual node.
1527 1.153 atatat *
1528 1.153 atatat * Note that sysctl_createv() will return 0 if the create request
1529 1.153 atatat * matches an existing node (ala mkdir -p), and that sysctl_destroyv()
1530 1.153 atatat * will return 0 if the node to be destroyed already does not exist
1531 1.153 atatat * (aka rm -f) or if it is a parent of other nodes.
1532 1.153 atatat *
1533 1.153 atatat * This allows two (or more) different subsystems to assert sub-tree
1534 1.153 atatat * existence before populating their own nodes, and to remove their
1535 1.153 atatat * own nodes without orphaning the others when they are done.
1536 1.153 atatat * ********************************************************************
1537 1.145 dsl */
1538 1.153 atatat int
1539 1.153 atatat sysctl_createv(int flags, int type,
1540 1.153 atatat const char *namep, struct sysctlnode **rnode,
1541 1.153 atatat sysctlfn func, u_quad_t qv, void *newp, size_t newlen,
1542 1.153 atatat ...)
1543 1.153 atatat {
1544 1.153 atatat va_list ap;
1545 1.153 atatat int error, ni, namelen, name[CTL_MAXNAME];
1546 1.153 atatat struct sysctlnode *pnode, nnode, onode;
1547 1.153 atatat size_t sz;
1548 1.145 dsl
1549 1.153 atatat /*
1550 1.153 atatat * what is it?
1551 1.153 atatat */
1552 1.153 atatat flags = SYSCTL_TYPE(type)|SYSCTL_FLAGS(flags);
1553 1.145 dsl
1554 1.145 dsl /*
1555 1.153 atatat * where do we put it?
1556 1.145 dsl */
1557 1.153 atatat va_start(ap, newlen);
1558 1.153 atatat namelen = 0;
1559 1.153 atatat ni = -1;
1560 1.153 atatat do {
1561 1.153 atatat if (++ni == CTL_MAXNAME)
1562 1.153 atatat return (ENAMETOOLONG);
1563 1.153 atatat name[ni] = va_arg(ap, int);
1564 1.153 atatat /*
1565 1.153 atatat * sorry, this is not supported from here
1566 1.153 atatat */
1567 1.153 atatat if (name[ni] == CTL_CREATESYM)
1568 1.153 atatat return (EINVAL);
1569 1.153 atatat } while (name[ni] != CTL_EOL && name[ni] != CTL_CREATE);
1570 1.153 atatat namelen = ni + (name[ni] == CTL_CREATE ? 1 : 0);
1571 1.153 atatat va_end(ap);
1572 1.69 simonb
1573 1.69 simonb /*
1574 1.153 atatat * what's it called
1575 1.69 simonb */
1576 1.153 atatat if (strlcpy(nnode.sysctl_name, namep, sizeof(nnode.sysctl_name)) >
1577 1.153 atatat sizeof(nnode.sysctl_name))
1578 1.153 atatat return (ENAMETOOLONG);
1579 1.69 simonb
1580 1.153 atatat /*
1581 1.153 atatat * cons up the description of the new node
1582 1.153 atatat */
1583 1.153 atatat nnode.sysctl_num = name[namelen - 1];
1584 1.153 atatat name[namelen - 1] = CTL_CREATE;
1585 1.153 atatat nnode.sysctl_size = newlen;
1586 1.153 atatat nnode.sysctl_flags = flags;
1587 1.153 atatat if (type == CTLTYPE_NODE) {
1588 1.153 atatat nnode.sysctl_csize = 0;
1589 1.153 atatat nnode.sysctl_clen = 0;
1590 1.153 atatat nnode.sysctl_child = NULL;
1591 1.153 atatat if (flags & SYSCTL_ALIAS)
1592 1.153 atatat nnode.sysctl_alias = qv;
1593 1.153 atatat }
1594 1.153 atatat else if (flags & SYSCTL_IMMEDIATE) {
1595 1.153 atatat switch (type) {
1596 1.153 atatat case CTLTYPE_INT:
1597 1.153 atatat nnode.sysctl_idata = qv;
1598 1.153 atatat break;
1599 1.153 atatat case CTLTYPE_QUAD:
1600 1.153 atatat nnode.sysctl_qdata = qv;
1601 1.153 atatat break;
1602 1.153 atatat default:
1603 1.153 atatat return (EINVAL);
1604 1.153 atatat }
1605 1.69 simonb }
1606 1.153 atatat else {
1607 1.153 atatat nnode.sysctl_data = newp;
1608 1.69 simonb }
1609 1.153 atatat nnode.sysctl_func = func;
1610 1.153 atatat nnode.sysctl_parent = NULL;
1611 1.153 atatat nnode.sysctl_ver = 0;
1612 1.69 simonb
1613 1.153 atatat /*
1614 1.153 atatat * initialize lock state -- we need locks if the main tree has
1615 1.153 atatat * been marked as complete, but since we could be called from
1616 1.153 atatat * either there, or from a device driver (say, at device
1617 1.153 atatat * insertion), or from an lkm (at lkm load time, say), we
1618 1.153 atatat * don't really want to "wait"...
1619 1.153 atatat */
1620 1.153 atatat error = sysctl_lock(NULL, NULL, 0);
1621 1.153 atatat if (error)
1622 1.153 atatat return (error);
1623 1.153 atatat
1624 1.153 atatat /*
1625 1.153 atatat * locate the prospective parent of the new node, and if we
1626 1.153 atatat * find it, add the new node.
1627 1.153 atatat */
1628 1.153 atatat sz = sizeof(onode);
1629 1.153 atatat pnode = (rnode != NULL) ? *rnode : NULL;
1630 1.153 atatat error = sysctl_locate(NULL, &name[0], namelen - 1, &pnode, &ni);
1631 1.69 simonb if (error == 0)
1632 1.153 atatat error = sysctl_create(&name[ni], namelen - ni, &onode, &sz,
1633 1.153 atatat &nnode, sizeof(nnode), &name[0], NULL,
1634 1.153 atatat pnode);
1635 1.72 simonb
1636 1.72 simonb /*
1637 1.153 atatat * unfortunately the node we wanted to create is already
1638 1.153 atatat * there. if the node that's already there is a reasonable
1639 1.153 atatat * facsimile of the node we wanted to create, just pretend
1640 1.153 atatat * (for the caller's benefit) that we managed to create the
1641 1.153 atatat * node they wanted.
1642 1.72 simonb */
1643 1.153 atatat if (error == EEXIST) {
1644 1.153 atatat /* name is the same as requested... */
1645 1.153 atatat if (strcmp(nnode.sysctl_name, onode.sysctl_name) == 0 &&
1646 1.153 atatat /* they want the same function... */
1647 1.153 atatat nnode.sysctl_func == onode.sysctl_func &&
1648 1.153 atatat /* number is the same as requested, or... */
1649 1.153 atatat (nnode.sysctl_num == onode.sysctl_num ||
1650 1.153 atatat /* they didn't pick a number... */
1651 1.153 atatat nnode.sysctl_num == CTL_CREATE)) {
1652 1.153 atatat /*
1653 1.153 atatat * collision here from trying to create
1654 1.153 atatat * something that already existed; let's give
1655 1.153 atatat * our customers a hand and tell them they got
1656 1.153 atatat * what they wanted.
1657 1.153 atatat */
1658 1.153 atatat #ifdef SYSCTL_DEBUG_CREATE
1659 1.153 atatat printf("cleared\n");
1660 1.153 atatat #endif /* SYSCTL_DEBUG_CREATE */
1661 1.153 atatat error = 0;
1662 1.153 atatat }
1663 1.72 simonb }
1664 1.72 simonb
1665 1.153 atatat /*
1666 1.153 atatat * if they want to know where the new node is, go find the
1667 1.153 atatat * address of the actual node, not the copy that
1668 1.153 atatat * sysctl_create() gave us.
1669 1.153 atatat */
1670 1.153 atatat if (rnode != NULL && error == 0) {
1671 1.153 atatat /*
1672 1.153 atatat * sysctl_create() gave us back a copy of the node,
1673 1.153 atatat * but we need to know where it actually is...
1674 1.153 atatat */
1675 1.153 atatat name[namelen - 1] = onode.sysctl_num;
1676 1.153 atatat pnode = *rnode;
1677 1.153 atatat error = sysctl_locate(NULL, &name[0], namelen, &pnode, &ni);
1678 1.153 atatat /*
1679 1.153 atatat * not expecting an error here, but...
1680 1.153 atatat */
1681 1.153 atatat if (error == 0)
1682 1.153 atatat *rnode = pnode;
1683 1.72 simonb }
1684 1.72 simonb
1685 1.88 enami /*
1686 1.153 atatat * now it should be safe to release the lock state.
1687 1.88 enami */
1688 1.153 atatat sysctl_unlock(NULL);
1689 1.88 enami
1690 1.153 atatat if (error != 0) {
1691 1.153 atatat printf("sysctl_createv: sysctl_create(%s) returned %d\n",
1692 1.153 atatat nnode.sysctl_name, error);
1693 1.153 atatat #if 0
1694 1.153 atatat if (error != ENOENT)
1695 1.153 atatat sysctl_dump(&onode);
1696 1.153 atatat #endif
1697 1.72 simonb }
1698 1.153 atatat
1699 1.72 simonb return (error);
1700 1.72 simonb }
1701 1.69 simonb
1702 1.153 atatat int
1703 1.153 atatat sysctl_destroyv(struct sysctlnode *rnode, ...)
1704 1.1 cgd {
1705 1.153 atatat va_list ap;
1706 1.153 atatat int error, name[CTL_MAXNAME], namelen, ni;
1707 1.153 atatat struct sysctlnode *pnode, *node;
1708 1.153 atatat
1709 1.153 atatat va_start(ap, rnode);
1710 1.153 atatat namelen = 0;
1711 1.153 atatat ni = 0;
1712 1.153 atatat do {
1713 1.153 atatat if (ni == CTL_MAXNAME)
1714 1.153 atatat return (ENAMETOOLONG);
1715 1.153 atatat name[ni] = va_arg(ap, int);
1716 1.153 atatat } while (name[ni++] != CTL_EOL);
1717 1.153 atatat namelen = ni - 1;
1718 1.153 atatat va_end(ap);
1719 1.62 simonb
1720 1.153 atatat /*
1721 1.153 atatat * i can't imagine why we'd be destroying a node when the tree
1722 1.153 atatat * wasn't complete, but who knows?
1723 1.153 atatat */
1724 1.153 atatat error = sysctl_lock(NULL, NULL, 0);
1725 1.153 atatat if (error)
1726 1.153 atatat return (error);
1727 1.1 cgd
1728 1.153 atatat /*
1729 1.153 atatat * where is it?
1730 1.153 atatat */
1731 1.153 atatat node = rnode;
1732 1.153 atatat error = sysctl_locate(NULL, &name[0], namelen, &node, &ni);
1733 1.153 atatat if (error) {
1734 1.153 atatat /* they want it gone and it's not there, so... */
1735 1.153 atatat sysctl_unlock(NULL);
1736 1.153 atatat return (error == ENOENT ? 0 : error);
1737 1.62 simonb }
1738 1.41 thorpej
1739 1.153 atatat /*
1740 1.153 atatat * we found it, now let's nuke it
1741 1.153 atatat */
1742 1.153 atatat name[namelen - 1] = CTL_DESTROY;
1743 1.153 atatat pnode = node->sysctl_parent;
1744 1.153 atatat error = sysctl_destroy(&name[namelen - 1], 1, NULL, NULL,
1745 1.153 atatat node, sizeof(*node), &name[0], NULL,
1746 1.153 atatat pnode);
1747 1.153 atatat if (error == ENOTEMPTY)
1748 1.1 cgd /*
1749 1.153 atatat * think of trying to delete "foo" when "foo.bar"
1750 1.153 atatat * (which someone else put there) is still in
1751 1.153 atatat * existence
1752 1.1 cgd */
1753 1.153 atatat error = 0;
1754 1.1 cgd
1755 1.153 atatat sysctl_unlock(NULL);
1756 1.1 cgd
1757 1.153 atatat return (error);
1758 1.153 atatat }
1759 1.1 cgd
1760 1.153 atatat #if 0
1761 1.153 atatat /*
1762 1.153 atatat * ********************************************************************
1763 1.153 atatat * the dump routine. i haven't yet decided how (if at all) i'll call
1764 1.153 atatat * this from userland when it's in the kernel.
1765 1.153 atatat * ********************************************************************
1766 1.153 atatat */
1767 1.153 atatat static const char *
1768 1.153 atatat sf(int f)
1769 1.153 atatat {
1770 1.153 atatat static char s[256];
1771 1.153 atatat char *c;
1772 1.153 atatat
1773 1.153 atatat s[0] = '\0';
1774 1.153 atatat c = "";
1775 1.153 atatat
1776 1.153 atatat #define print_flag(_f, _s, _c, _q, _x) \
1777 1.153 atatat if (((_x) && (((_f) & (_x)) == (__CONCAT(SYSCTL_,_q)))) || \
1778 1.153 atatat (!(_x) && ((_f) & (__CONCAT(SYSCTL_,_q))))) { \
1779 1.153 atatat strlcat((_s), (_c), sizeof(_s)); \
1780 1.153 atatat strlcat((_s), __STRING(_q), sizeof(_s)); \
1781 1.153 atatat (_c) = ","; \
1782 1.153 atatat (_f) &= ~(__CONCAT(SYSCTL_,_q)|(_x)); \
1783 1.153 atatat }
1784 1.153 atatat print_flag(f, s, c, READONLY, SYSCTL_READWRITE);
1785 1.153 atatat print_flag(f, s, c, READONLY1, SYSCTL_READWRITE);
1786 1.153 atatat print_flag(f, s, c, READONLY2, SYSCTL_READWRITE);
1787 1.153 atatat print_flag(f, s, c, READWRITE, SYSCTL_READWRITE);
1788 1.153 atatat print_flag(f, s, c, ANYWRITE, 0);
1789 1.153 atatat print_flag(f, s, c, PRIVATE, 0);
1790 1.153 atatat print_flag(f, s, c, PERMANENT, 0);
1791 1.153 atatat print_flag(f, s, c, OWNDATA, 0);
1792 1.153 atatat print_flag(f, s, c, IMMEDIATE, 0);
1793 1.153 atatat print_flag(f, s, c, HEX, 0);
1794 1.153 atatat print_flag(f, s, c, ROOT, 0);
1795 1.153 atatat print_flag(f, s, c, ANYNUMBER, 0);
1796 1.153 atatat print_flag(f, s, c, HIDDEN, 0);
1797 1.153 atatat print_flag(f, s, c, ALIAS, 0);
1798 1.153 atatat #undef print_flag
1799 1.153 atatat
1800 1.153 atatat if (f) {
1801 1.153 atatat char foo[9];
1802 1.153 atatat snprintf(foo, sizeof(foo), "%x", f);
1803 1.153 atatat strlcat(s, c, sizeof(s));
1804 1.153 atatat strlcat(s, foo, sizeof(s));
1805 1.153 atatat }
1806 1.153 atatat
1807 1.153 atatat return (s);
1808 1.153 atatat }
1809 1.153 atatat
1810 1.153 atatat static const char *
1811 1.153 atatat st(int t)
1812 1.153 atatat {
1813 1.153 atatat
1814 1.153 atatat switch (t) {
1815 1.153 atatat case CTLTYPE_NODE:
1816 1.153 atatat return "NODE";
1817 1.153 atatat case CTLTYPE_INT:
1818 1.153 atatat return "INT";
1819 1.153 atatat case CTLTYPE_STRING:
1820 1.153 atatat return "STRING";
1821 1.153 atatat case CTLTYPE_QUAD:
1822 1.153 atatat return "QUAD";
1823 1.153 atatat case CTLTYPE_STRUCT:
1824 1.153 atatat return "STRUCT";
1825 1.153 atatat }
1826 1.71 simonb
1827 1.153 atatat return "???";
1828 1.153 atatat }
1829 1.1 cgd
1830 1.153 atatat void
1831 1.153 atatat sysctl_dump(const struct sysctlnode *d)
1832 1.153 atatat {
1833 1.153 atatat static char nmib[64], smib[256];
1834 1.153 atatat static int indent;
1835 1.153 atatat struct sysctlnode *n;
1836 1.153 atatat char *np, *sp, tmp[20];
1837 1.153 atatat int i;
1838 1.1 cgd
1839 1.153 atatat if (d == NULL)
1840 1.153 atatat return;
1841 1.71 simonb
1842 1.153 atatat np = &nmib[strlen(nmib)];
1843 1.153 atatat sp = &smib[strlen(smib)];
1844 1.71 simonb
1845 1.153 atatat if (!(d->sysctl_flags & SYSCTL_ROOT)) {
1846 1.153 atatat snprintf(tmp, sizeof(tmp), "%d", d->sysctl_num);
1847 1.153 atatat strcat(nmib, ".");
1848 1.153 atatat strcat(smib, ".");
1849 1.153 atatat strcat(nmib, tmp);
1850 1.153 atatat strcat(smib, d->sysctl_name);
1851 1.153 atatat printf("%s -> %s (%d)\n", &nmib[1], &smib[1],
1852 1.153 atatat SYSCTL_TYPE(d->sysctl_flags));
1853 1.153 atatat }
1854 1.153 atatat
1855 1.153 atatat if (1) {
1856 1.153 atatat printf("%*s%p:\tsysctl_name [%s]\n", indent, "",
1857 1.153 atatat d, d->sysctl_name);
1858 1.153 atatat printf("%*s\t\tsysctl_num %d\n", indent, "",
1859 1.153 atatat d->sysctl_num);
1860 1.153 atatat printf("%*s\t\tsysctl_flags %x (flags=%x<%s> type=%d<%s> "
1861 1.153 atatat "size=%zu)\n",
1862 1.153 atatat indent, "", d->sysctl_flags,
1863 1.153 atatat SYSCTL_FLAGS(d->sysctl_flags),
1864 1.153 atatat sf(SYSCTL_FLAGS(d->sysctl_flags)),
1865 1.153 atatat SYSCTL_TYPE(d->sysctl_flags),
1866 1.153 atatat st(SYSCTL_TYPE(d->sysctl_flags)),
1867 1.153 atatat d->sysctl_size);
1868 1.153 atatat if (SYSCTL_TYPE(d->sysctl_flags) == CTLTYPE_NODE) {
1869 1.153 atatat printf("%*s\t\tsysctl_csize %d\n", indent, "",
1870 1.153 atatat d->sysctl_csize);
1871 1.153 atatat printf("%*s\t\tsysctl_clen %d\n", indent, "",
1872 1.153 atatat d->sysctl_clen);
1873 1.153 atatat printf("%*s\t\tsysctl_child %p\n", indent, "",
1874 1.153 atatat d->sysctl_child);
1875 1.153 atatat }
1876 1.153 atatat else
1877 1.153 atatat printf("%*s\t\tsysctl_data %p\n", indent, "",
1878 1.153 atatat d->sysctl_data);
1879 1.153 atatat printf("%*s\t\tsysctl_func %p\n", indent, "",
1880 1.153 atatat d->sysctl_func);
1881 1.153 atatat printf("%*s\t\tsysctl_parent %p\n", indent, "",
1882 1.153 atatat d->sysctl_parent);
1883 1.153 atatat printf("%*s\t\tsysctl_ver %d\n", indent, "",
1884 1.153 atatat d->sysctl_ver);
1885 1.153 atatat }
1886 1.71 simonb
1887 1.153 atatat if (SYSCTL_TYPE(d->sysctl_flags) == CTLTYPE_NODE) {
1888 1.153 atatat indent += 8;
1889 1.153 atatat n = d->sysctl_child;
1890 1.153 atatat for (i = 0; i < d->sysctl_clen; i++) {
1891 1.153 atatat sysctl_dump(&n[i]);
1892 1.1 cgd }
1893 1.153 atatat indent -= 8;
1894 1.1 cgd }
1895 1.41 thorpej
1896 1.153 atatat np[0] = '\0';
1897 1.153 atatat sp[0] = '\0';
1898 1.1 cgd }
1899 1.153 atatat #endif /* 0 */
1900 1.123 thorpej
1901 1.123 thorpej /*
1902 1.153 atatat * ********************************************************************
1903 1.153 atatat * Deletes an entire n-ary tree. Not recommended unless you know why
1904 1.153 atatat * you're doing it. Personally, I don't know why you'd even think
1905 1.153 atatat * about it.
1906 1.153 atatat * ********************************************************************
1907 1.123 thorpej */
1908 1.153 atatat void
1909 1.153 atatat sysctl_free(struct sysctlnode *rnode)
1910 1.123 thorpej {
1911 1.153 atatat struct sysctlnode *node, *pnode;
1912 1.123 thorpej
1913 1.153 atatat if (rnode == NULL)
1914 1.153 atatat rnode = &sysctl_root;
1915 1.153 atatat pnode = rnode;
1916 1.153 atatat
1917 1.153 atatat node = pnode->sysctl_child;
1918 1.153 atatat do {
1919 1.153 atatat while (node != NULL && pnode->sysctl_csize > 0) {
1920 1.153 atatat while (node <
1921 1.153 atatat &pnode->sysctl_child[pnode->sysctl_clen] &&
1922 1.153 atatat (SYSCTL_TYPE(node->sysctl_flags) !=
1923 1.153 atatat CTLTYPE_NODE ||
1924 1.153 atatat node->sysctl_csize == 0)) {
1925 1.153 atatat if (SYSCTL_FLAGS(node->sysctl_flags) &
1926 1.153 atatat SYSCTL_OWNDATA) {
1927 1.153 atatat if (node->sysctl_data != NULL) {
1928 1.153 atatat FREE(node->sysctl_data,
1929 1.153 atatat M_SYSCTLDATA);
1930 1.153 atatat node->sysctl_data = NULL;
1931 1.153 atatat }
1932 1.153 atatat }
1933 1.153 atatat node++;
1934 1.153 atatat }
1935 1.153 atatat if (node < &pnode->sysctl_child[pnode->sysctl_clen]) {
1936 1.153 atatat pnode = node;
1937 1.153 atatat node = node->sysctl_child;
1938 1.153 atatat }
1939 1.153 atatat else
1940 1.153 atatat break;
1941 1.153 atatat }
1942 1.153 atatat if (pnode->sysctl_child != NULL)
1943 1.153 atatat FREE(pnode->sysctl_child, M_SYSCTLNODE);
1944 1.153 atatat pnode->sysctl_clen = 0;
1945 1.153 atatat pnode->sysctl_csize = 0;
1946 1.153 atatat pnode->sysctl_child = NULL;
1947 1.153 atatat node = pnode;
1948 1.153 atatat pnode = node->sysctl_parent;
1949 1.153 atatat } while (pnode != NULL && pnode != rnode);
1950 1.123 thorpej }
1951 1.123 thorpej
1952 1.1 cgd /*
1953 1.153 atatat * ********************************************************************
1954 1.153 atatat * old_sysctl -- A routine to bridge old-style internal calls to the
1955 1.153 atatat * new infrastructure.
1956 1.153 atatat * ********************************************************************
1957 1.1 cgd */
1958 1.153 atatat int
1959 1.153 atatat old_sysctl(int *name, u_int namelen, void *oldp, size_t *oldlenp,
1960 1.153 atatat void *newp, size_t newlen, struct lwp *l)
1961 1.1 cgd {
1962 1.153 atatat int error;
1963 1.153 atatat size_t savelen = *oldlenp;
1964 1.153 atatat
1965 1.153 atatat error = sysctl_lock(l, oldp, savelen);
1966 1.153 atatat if (error)
1967 1.153 atatat return (error);
1968 1.153 atatat error = sysctl_dispatch(name, namelen, oldp, oldlenp,
1969 1.153 atatat newp, newlen, name, l, NULL);
1970 1.153 atatat sysctl_unlock(l);
1971 1.153 atatat if (error == 0 && oldp != NULL && savelen < *oldlenp)
1972 1.153 atatat error = ENOMEM;
1973 1.1 cgd
1974 1.153 atatat return (error);
1975 1.62 simonb }
1976 1.62 simonb
1977 1.62 simonb /*
1978 1.153 atatat * ********************************************************************
1979 1.153 atatat * Section 4: Generic helper routines
1980 1.153 atatat * ********************************************************************
1981 1.153 atatat * "helper" routines that can do more finely grained access control,
1982 1.153 atatat * construct structures from disparate information, create the
1983 1.153 atatat * appearance of more nodes and sub-trees, etc. for example, if
1984 1.153 atatat * CTL_PROC wanted a helper function, it could respond to a CTL_QUERY
1985 1.153 atatat * with a dynamically created list of nodes that represented the
1986 1.153 atatat * currently running processes at that instant.
1987 1.153 atatat * ********************************************************************
1988 1.153 atatat */
1989 1.123 thorpej
1990 1.123 thorpej /*
1991 1.153 atatat * first, a few generic helpers that provide:
1992 1.153 atatat *
1993 1.153 atatat * sysctl_needfunc() a readonly interface that emits a warning
1994 1.153 atatat * sysctl_notavail() returns EOPNOTSUPP (generic error)
1995 1.153 atatat * sysctl_null() an empty return buffer with no error
1996 1.123 thorpej */
1997 1.62 simonb int
1998 1.153 atatat sysctl_needfunc(SYSCTLFN_ARGS)
1999 1.62 simonb {
2000 1.153 atatat int error;
2001 1.153 atatat
2002 1.153 atatat printf("!!SYSCTL_NEEDFUNC!!\n");
2003 1.62 simonb
2004 1.153 atatat if (newp != NULL || namelen != 0)
2005 1.153 atatat return (EOPNOTSUPP);
2006 1.62 simonb
2007 1.153 atatat error = 0;
2008 1.153 atatat if (oldp != NULL)
2009 1.153 atatat error = sysctl_copyout(l, rnode->sysctl_data, oldp,
2010 1.153 atatat MIN(rnode->sysctl_size, *oldlenp));
2011 1.153 atatat *oldlenp = rnode->sysctl_size;
2012 1.62 simonb
2013 1.153 atatat return (error);
2014 1.153 atatat }
2015 1.62 simonb
2016 1.153 atatat int
2017 1.153 atatat sysctl_notavail(SYSCTLFN_ARGS)
2018 1.153 atatat {
2019 1.62 simonb
2020 1.155 atatat if (namelen == 1 && name[0] == CTL_QUERY)
2021 1.155 atatat return (sysctl_query(SYSCTLFN_CALL(rnode)));
2022 1.155 atatat
2023 1.153 atatat return (EOPNOTSUPP);
2024 1.153 atatat }
2025 1.62 simonb
2026 1.153 atatat int
2027 1.153 atatat sysctl_null(SYSCTLFN_ARGS)
2028 1.153 atatat {
2029 1.62 simonb
2030 1.153 atatat *oldlenp = 0;
2031 1.123 thorpej
2032 1.153 atatat return (0);
2033 1.153 atatat }
2034 1.67 simonb
2035 1.153 atatat /*
2036 1.153 atatat * ********************************************************************
2037 1.153 atatat * Section 5: The machinery that makes it all go
2038 1.153 atatat * ********************************************************************
2039 1.153 atatat * Memory "manglement" routines. Not much to this, eh?
2040 1.153 atatat * ********************************************************************
2041 1.153 atatat */
2042 1.153 atatat static int
2043 1.153 atatat sysctl_alloc(struct sysctlnode *p, int x)
2044 1.153 atatat {
2045 1.153 atatat int i;
2046 1.153 atatat struct sysctlnode *n;
2047 1.62 simonb
2048 1.153 atatat assert(p->sysctl_child == NULL);
2049 1.62 simonb
2050 1.153 atatat if (x == 1)
2051 1.153 atatat MALLOC(n, struct sysctlnode *,
2052 1.153 atatat sizeof(struct sysctlnode),
2053 1.153 atatat M_SYSCTLNODE, M_WAITOK|M_CANFAIL);
2054 1.62 simonb else
2055 1.153 atatat MALLOC(n, struct sysctlnode *,
2056 1.153 atatat SYSCTL_DEFSIZE * sizeof(struct sysctlnode),
2057 1.153 atatat M_SYSCTLNODE, M_WAITOK|M_CANFAIL);
2058 1.153 atatat if (n == NULL)
2059 1.153 atatat return (ENOMEM);
2060 1.153 atatat
2061 1.153 atatat if (x == 1) {
2062 1.153 atatat memset(n, 0, sizeof(struct sysctlnode));
2063 1.153 atatat p->sysctl_csize = 1;
2064 1.62 simonb }
2065 1.153 atatat else {
2066 1.153 atatat memset(n, 0, SYSCTL_DEFSIZE * sizeof(struct sysctlnode));
2067 1.153 atatat p->sysctl_csize = SYSCTL_DEFSIZE;
2068 1.62 simonb }
2069 1.153 atatat p->sysctl_clen = 0;
2070 1.62 simonb
2071 1.153 atatat for (i = 0; i < p->sysctl_csize; i++)
2072 1.153 atatat n[i].sysctl_parent = p;
2073 1.62 simonb
2074 1.153 atatat p->sysctl_child = n;
2075 1.153 atatat return (0);
2076 1.1 cgd }
2077 1.78 jdolecek
2078 1.78 jdolecek static int
2079 1.153 atatat sysctl_realloc(struct sysctlnode *p)
2080 1.78 jdolecek {
2081 1.153 atatat int i, j;
2082 1.153 atatat struct sysctlnode *n;
2083 1.78 jdolecek
2084 1.153 atatat assert(p->sysctl_csize == p->sysctl_clen);
2085 1.78 jdolecek
2086 1.153 atatat /*
2087 1.153 atatat * how many do we have...how many should we make?
2088 1.153 atatat */
2089 1.153 atatat i = p->sysctl_clen;
2090 1.153 atatat n = malloc(2 * i * sizeof(struct sysctlnode), M_SYSCTLNODE,
2091 1.153 atatat M_WAITOK|M_CANFAIL);
2092 1.153 atatat if (n == NULL)
2093 1.153 atatat return (ENOMEM);
2094 1.78 jdolecek
2095 1.153 atatat /*
2096 1.153 atatat * move old children over...initialize new children
2097 1.153 atatat */
2098 1.153 atatat memcpy(n, p->sysctl_child, i * sizeof(struct sysctlnode));
2099 1.153 atatat memset(&n[i], 0, i * sizeof(struct sysctlnode));
2100 1.153 atatat p->sysctl_csize = 2 * i;
2101 1.153 atatat p->sysctl_clen = i;
2102 1.78 jdolecek
2103 1.153 atatat /*
2104 1.153 atatat * reattach moved (and new) children to parent; if a moved
2105 1.153 atatat * child node has children, reattach the parent pointers of
2106 1.153 atatat * grandchildren
2107 1.153 atatat */
2108 1.153 atatat for (i = 0; i < p->sysctl_csize; i++) {
2109 1.153 atatat n[i].sysctl_parent = p;
2110 1.153 atatat if (n[i].sysctl_child != NULL) {
2111 1.153 atatat for (j = 0; j < n[i].sysctl_csize; j++)
2112 1.153 atatat n[i].sysctl_child[j].sysctl_parent = &n[i];
2113 1.153 atatat }
2114 1.78 jdolecek }
2115 1.78 jdolecek
2116 1.153 atatat /*
2117 1.153 atatat * get out with the old and in with the new
2118 1.153 atatat */
2119 1.153 atatat FREE(p->sysctl_child, M_SYSCTLNODE);
2120 1.153 atatat p->sysctl_child = n;
2121 1.100 simonb
2122 1.153 atatat return (0);
2123 1.100 simonb }
2124