kern_ktrace.c revision 1.42 1 1.42 sommerfe /* $NetBSD: kern_ktrace.c,v 1.42 2000/05/27 00:40:45 sommerfeld Exp $ */
2 1.11 cgd
3 1.1 cgd /*
4 1.9 cgd * Copyright (c) 1989, 1993
5 1.9 cgd * The Regents of the University of California. All rights reserved.
6 1.1 cgd *
7 1.1 cgd * Redistribution and use in source and binary forms, with or without
8 1.1 cgd * modification, are permitted provided that the following conditions
9 1.1 cgd * are met:
10 1.1 cgd * 1. Redistributions of source code must retain the above copyright
11 1.1 cgd * notice, this list of conditions and the following disclaimer.
12 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 cgd * notice, this list of conditions and the following disclaimer in the
14 1.1 cgd * documentation and/or other materials provided with the distribution.
15 1.1 cgd * 3. All advertising materials mentioning features or use of this software
16 1.1 cgd * must display the following acknowledgement:
17 1.1 cgd * This product includes software developed by the University of
18 1.1 cgd * California, Berkeley and its contributors.
19 1.1 cgd * 4. Neither the name of the University nor the names of its contributors
20 1.1 cgd * may be used to endorse or promote products derived from this software
21 1.1 cgd * without specific prior written permission.
22 1.1 cgd *
23 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
24 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
25 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
26 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
27 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
28 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
29 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
30 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
31 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
32 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
33 1.1 cgd * SUCH DAMAGE.
34 1.1 cgd *
35 1.25 fvdl * @(#)kern_ktrace.c 8.5 (Berkeley) 5/14/95
36 1.1 cgd */
37 1.29 thorpej
38 1.29 thorpej #include "opt_ktrace.h"
39 1.1 cgd
40 1.9 cgd #ifdef KTRACE
41 1.9 cgd
42 1.7 mycroft #include <sys/param.h>
43 1.13 cgd #include <sys/systm.h>
44 1.7 mycroft #include <sys/proc.h>
45 1.7 mycroft #include <sys/file.h>
46 1.7 mycroft #include <sys/namei.h>
47 1.7 mycroft #include <sys/vnode.h>
48 1.7 mycroft #include <sys/ktrace.h>
49 1.7 mycroft #include <sys/malloc.h>
50 1.7 mycroft #include <sys/syslog.h>
51 1.28 christos #include <sys/filedesc.h>
52 1.42 sommerfe #include <sys/ioctl.h>
53 1.1 cgd
54 1.13 cgd #include <sys/mount.h>
55 1.13 cgd #include <sys/syscallargs.h>
56 1.22 christos
57 1.42 sommerfe int ktrace_common __P((struct proc *, int, int, int, struct file *));
58 1.39 thorpej void ktrinitheader __P((struct ktr_header *, struct proc *, int));
59 1.42 sommerfe int ktrops __P((struct proc *, struct proc *, int, int, struct file *));
60 1.42 sommerfe int ktrsetchildren __P((struct proc *, struct proc *, int, int,
61 1.42 sommerfe struct file *));
62 1.42 sommerfe int ktrwrite __P((struct proc *, struct ktr_header *));
63 1.39 thorpej int ktrcanset __P((struct proc *, struct proc *));
64 1.22 christos
65 1.28 christos void
66 1.28 christos ktrderef(p)
67 1.28 christos struct proc *p;
68 1.28 christos {
69 1.42 sommerfe struct file *fp = p->p_tracep;
70 1.42 sommerfe p->p_traceflag = 0;
71 1.42 sommerfe if (fp == NULL)
72 1.28 christos return;
73 1.42 sommerfe FILE_USE(fp);
74 1.42 sommerfe closef(fp, NULL);
75 1.28 christos
76 1.28 christos p->p_tracep = NULL;
77 1.28 christos }
78 1.28 christos
79 1.28 christos void
80 1.28 christos ktradref(p)
81 1.28 christos struct proc *p;
82 1.28 christos {
83 1.42 sommerfe struct file *fp = p->p_tracep;
84 1.28 christos
85 1.42 sommerfe fp->f_count++;
86 1.28 christos }
87 1.28 christos
88 1.39 thorpej void
89 1.39 thorpej ktrinitheader(kth, p, type)
90 1.39 thorpej struct ktr_header *kth;
91 1.39 thorpej struct proc *p;
92 1.4 andrew int type;
93 1.1 cgd {
94 1.1 cgd
95 1.39 thorpej memset(kth, 0, sizeof(*kth));
96 1.1 cgd kth->ktr_type = type;
97 1.1 cgd microtime(&kth->ktr_time);
98 1.1 cgd kth->ktr_pid = p->p_pid;
99 1.32 perry memcpy(kth->ktr_comm, p->p_comm, MAXCOMLEN);
100 1.1 cgd }
101 1.1 cgd
102 1.17 cgd void
103 1.42 sommerfe ktrsyscall(p, code, argsize, args)
104 1.42 sommerfe struct proc *p;
105 1.16 mycroft register_t code;
106 1.16 mycroft size_t argsize;
107 1.16 mycroft register_t args[];
108 1.1 cgd {
109 1.39 thorpej struct ktr_header kth;
110 1.39 thorpej struct ktr_syscall *ktp;
111 1.17 cgd register_t *argp;
112 1.39 thorpej size_t len = sizeof(struct ktr_syscall) + argsize;
113 1.17 cgd int i;
114 1.1 cgd
115 1.9 cgd p->p_traceflag |= KTRFAC_ACTIVE;
116 1.39 thorpej ktrinitheader(&kth, p, KTR_SYSCALL);
117 1.39 thorpej ktp = malloc(len, M_TEMP, M_WAITOK);
118 1.1 cgd ktp->ktr_code = code;
119 1.17 cgd ktp->ktr_argsize = argsize;
120 1.17 cgd argp = (register_t *)((char *)ktp + sizeof(struct ktr_syscall));
121 1.31 perry for (i = 0; i < (argsize / sizeof(*argp)); i++)
122 1.1 cgd *argp++ = args[i];
123 1.39 thorpej kth.ktr_buf = (caddr_t)ktp;
124 1.39 thorpej kth.ktr_len = len;
125 1.42 sommerfe (void) ktrwrite(p, &kth);
126 1.39 thorpej free(ktp, M_TEMP);
127 1.9 cgd p->p_traceflag &= ~KTRFAC_ACTIVE;
128 1.1 cgd }
129 1.1 cgd
130 1.17 cgd void
131 1.42 sommerfe ktrsysret(p, code, error, retval)
132 1.42 sommerfe struct proc *p;
133 1.16 mycroft register_t code;
134 1.16 mycroft int error;
135 1.16 mycroft register_t retval;
136 1.1 cgd {
137 1.39 thorpej struct ktr_header kth;
138 1.1 cgd struct ktr_sysret ktp;
139 1.1 cgd
140 1.9 cgd p->p_traceflag |= KTRFAC_ACTIVE;
141 1.39 thorpej ktrinitheader(&kth, p, KTR_SYSRET);
142 1.1 cgd ktp.ktr_code = code;
143 1.34 kleink ktp.ktr_eosys = 0; /* XXX unused */
144 1.1 cgd ktp.ktr_error = error;
145 1.1 cgd ktp.ktr_retval = retval; /* what about val2 ? */
146 1.1 cgd
147 1.39 thorpej kth.ktr_buf = (caddr_t)&ktp;
148 1.39 thorpej kth.ktr_len = sizeof(struct ktr_sysret);
149 1.1 cgd
150 1.42 sommerfe (void) ktrwrite(p, &kth);
151 1.9 cgd p->p_traceflag &= ~KTRFAC_ACTIVE;
152 1.1 cgd }
153 1.1 cgd
154 1.17 cgd void
155 1.42 sommerfe ktrnamei(p, path)
156 1.42 sommerfe struct proc *p;
157 1.1 cgd char *path;
158 1.1 cgd {
159 1.39 thorpej struct ktr_header kth;
160 1.1 cgd
161 1.9 cgd p->p_traceflag |= KTRFAC_ACTIVE;
162 1.39 thorpej ktrinitheader(&kth, p, KTR_NAMEI);
163 1.39 thorpej kth.ktr_len = strlen(path);
164 1.39 thorpej kth.ktr_buf = path;
165 1.18 christos
166 1.42 sommerfe (void) ktrwrite(p, &kth);
167 1.18 christos p->p_traceflag &= ~KTRFAC_ACTIVE;
168 1.18 christos }
169 1.18 christos
170 1.18 christos void
171 1.42 sommerfe ktremul(p)
172 1.28 christos struct proc *p;
173 1.18 christos {
174 1.39 thorpej struct ktr_header kth;
175 1.42 sommerfe char *emul = p->p_emul->e_name;
176 1.18 christos
177 1.18 christos p->p_traceflag |= KTRFAC_ACTIVE;
178 1.39 thorpej ktrinitheader(&kth, p, KTR_EMUL);
179 1.39 thorpej kth.ktr_len = strlen(emul);
180 1.39 thorpej kth.ktr_buf = emul;
181 1.1 cgd
182 1.42 sommerfe (void) ktrwrite(p, &kth);
183 1.9 cgd p->p_traceflag &= ~KTRFAC_ACTIVE;
184 1.1 cgd }
185 1.1 cgd
186 1.17 cgd void
187 1.42 sommerfe ktrgenio(p, fd, rw, iov, len, error)
188 1.42 sommerfe struct proc *p;
189 1.1 cgd int fd;
190 1.1 cgd enum uio_rw rw;
191 1.28 christos struct iovec *iov;
192 1.4 andrew int len, error;
193 1.1 cgd {
194 1.39 thorpej struct ktr_header kth;
195 1.28 christos struct ktr_genio *ktp;
196 1.28 christos caddr_t cp;
197 1.28 christos int resid = len, cnt;
198 1.39 thorpej int buflen;
199 1.39 thorpej
200 1.1 cgd if (error)
201 1.1 cgd return;
202 1.39 thorpej
203 1.9 cgd p->p_traceflag |= KTRFAC_ACTIVE;
204 1.39 thorpej
205 1.39 thorpej buflen = min(PAGE_SIZE, len + sizeof(struct ktr_genio));
206 1.39 thorpej
207 1.39 thorpej ktrinitheader(&kth, p, KTR_GENIO);
208 1.39 thorpej ktp = malloc(buflen, M_TEMP, M_WAITOK);
209 1.1 cgd ktp->ktr_fd = fd;
210 1.1 cgd ktp->ktr_rw = rw;
211 1.39 thorpej
212 1.39 thorpej kth.ktr_buf = (caddr_t)ktp;
213 1.39 thorpej
214 1.31 perry cp = (caddr_t)((char *)ktp + sizeof(struct ktr_genio));
215 1.39 thorpej buflen -= sizeof(struct ktr_genio);
216 1.39 thorpej
217 1.1 cgd while (resid > 0) {
218 1.41 thorpej if (curcpu()->ci_schedstate.spc_flags & SPCF_SHOULDYIELD)
219 1.39 thorpej preempt(NULL);
220 1.39 thorpej
221 1.39 thorpej cnt = min(iov->iov_len, buflen);
222 1.39 thorpej if (cnt > resid)
223 1.1 cgd cnt = resid;
224 1.39 thorpej if (copyin(iov->iov_base, cp, cnt))
225 1.39 thorpej break;
226 1.39 thorpej
227 1.39 thorpej kth.ktr_len = cnt + sizeof(struct ktr_genio);
228 1.39 thorpej
229 1.42 sommerfe if (__predict_false(ktrwrite(p, &kth) != 0))
230 1.39 thorpej break;
231 1.39 thorpej
232 1.39 thorpej iov->iov_base = (caddr_t)iov->iov_base + cnt;
233 1.39 thorpej iov->iov_len -= cnt;
234 1.39 thorpej
235 1.39 thorpej if (iov->iov_len == 0)
236 1.39 thorpej iov++;
237 1.39 thorpej
238 1.1 cgd resid -= cnt;
239 1.1 cgd }
240 1.1 cgd
241 1.39 thorpej free(ktp, M_TEMP);
242 1.9 cgd p->p_traceflag &= ~KTRFAC_ACTIVE;
243 1.1 cgd }
244 1.1 cgd
245 1.17 cgd void
246 1.42 sommerfe ktrpsig(p, sig, action, mask, code)
247 1.42 sommerfe struct proc *p;
248 1.9 cgd int sig;
249 1.9 cgd sig_t action;
250 1.33 mycroft sigset_t *mask;
251 1.33 mycroft int code;
252 1.1 cgd {
253 1.39 thorpej struct ktr_header kth;
254 1.1 cgd struct ktr_psig kp;
255 1.1 cgd
256 1.9 cgd p->p_traceflag |= KTRFAC_ACTIVE;
257 1.39 thorpej ktrinitheader(&kth, p, KTR_PSIG);
258 1.1 cgd kp.signo = (char)sig;
259 1.1 cgd kp.action = action;
260 1.33 mycroft kp.mask = *mask;
261 1.1 cgd kp.code = code;
262 1.39 thorpej kth.ktr_buf = (caddr_t)&kp;
263 1.39 thorpej kth.ktr_len = sizeof(struct ktr_psig);
264 1.1 cgd
265 1.42 sommerfe (void) ktrwrite(p, &kth);
266 1.9 cgd p->p_traceflag &= ~KTRFAC_ACTIVE;
267 1.9 cgd }
268 1.9 cgd
269 1.17 cgd void
270 1.42 sommerfe ktrcsw(p, out, user)
271 1.42 sommerfe struct proc *p;
272 1.9 cgd int out, user;
273 1.9 cgd {
274 1.39 thorpej struct ktr_header kth;
275 1.39 thorpej struct ktr_csw kc;
276 1.9 cgd
277 1.9 cgd p->p_traceflag |= KTRFAC_ACTIVE;
278 1.39 thorpej ktrinitheader(&kth, p, KTR_CSW);
279 1.9 cgd kc.out = out;
280 1.9 cgd kc.user = user;
281 1.39 thorpej kth.ktr_buf = (caddr_t)&kc;
282 1.39 thorpej kth.ktr_len = sizeof(struct ktr_csw);
283 1.9 cgd
284 1.42 sommerfe (void) ktrwrite(p, &kth);
285 1.9 cgd p->p_traceflag &= ~KTRFAC_ACTIVE;
286 1.1 cgd }
287 1.1 cgd
288 1.1 cgd /* Interface and common routines */
289 1.1 cgd
290 1.17 cgd int
291 1.42 sommerfe ktrace_common (curp, ops, facs, pid, fp)
292 1.28 christos struct proc *curp;
293 1.42 sommerfe int ops, facs, pid;
294 1.42 sommerfe struct file *fp;
295 1.28 christos {
296 1.42 sommerfe int ret = 0;
297 1.42 sommerfe int error = 0;
298 1.42 sommerfe int one = 1;
299 1.42 sommerfe int descend;
300 1.28 christos struct proc *p;
301 1.28 christos struct pgrp *pg;
302 1.28 christos
303 1.28 christos curp->p_traceflag |= KTRFAC_ACTIVE;
304 1.42 sommerfe descend = ops & KTRFLAG_DESCEND;
305 1.42 sommerfe facs = facs & ~((unsigned) KTRFAC_ROOT);
306 1.28 christos
307 1.28 christos /*
308 1.28 christos * Clear all uses of the tracefile
309 1.28 christos */
310 1.28 christos if (KTROP(ops) == KTROP_CLEARFILE) {
311 1.37 thorpej proclist_lock_read();
312 1.39 thorpej for (p = LIST_FIRST(&allproc); p != NULL;
313 1.39 thorpej p = LIST_NEXT(p, p_list)) {
314 1.28 christos if (p->p_tracep == fp) {
315 1.28 christos if (ktrcanset(curp, p))
316 1.28 christos ktrderef(p);
317 1.28 christos else
318 1.28 christos error = EPERM;
319 1.28 christos }
320 1.28 christos }
321 1.36 thorpej proclist_unlock_read();
322 1.28 christos goto done;
323 1.28 christos }
324 1.42 sommerfe
325 1.42 sommerfe /*
326 1.42 sommerfe * Mark fp non-blocking, to avoid problems from possible deadlocks.
327 1.42 sommerfe */
328 1.42 sommerfe
329 1.42 sommerfe fp->f_flag |= FNONBLOCK;
330 1.42 sommerfe (*fp->f_ops->fo_ioctl)(fp, FIONBIO, (caddr_t)&one, curp);
331 1.42 sommerfe
332 1.42 sommerfe
333 1.28 christos /*
334 1.28 christos * need something to (un)trace (XXX - why is this here?)
335 1.28 christos */
336 1.28 christos if (!facs) {
337 1.28 christos error = EINVAL;
338 1.28 christos goto done;
339 1.28 christos }
340 1.28 christos /*
341 1.28 christos * do it
342 1.28 christos */
343 1.42 sommerfe if (pid < 0) {
344 1.28 christos /*
345 1.28 christos * by process group
346 1.28 christos */
347 1.42 sommerfe pg = pgfind(-pid);
348 1.28 christos if (pg == NULL) {
349 1.28 christos error = ESRCH;
350 1.28 christos goto done;
351 1.28 christos }
352 1.39 thorpej for (p = LIST_FIRST(&pg->pg_members); p != NULL;
353 1.39 thorpej p = LIST_NEXT(p, p_pglist)) {
354 1.28 christos if (descend)
355 1.28 christos ret |= ktrsetchildren(curp, p, ops, facs, fp);
356 1.28 christos else
357 1.28 christos ret |= ktrops(curp, p, ops, facs, fp);
358 1.39 thorpej }
359 1.28 christos
360 1.28 christos } else {
361 1.28 christos /*
362 1.28 christos * by pid
363 1.28 christos */
364 1.42 sommerfe p = pfind(pid);
365 1.28 christos if (p == NULL) {
366 1.28 christos error = ESRCH;
367 1.28 christos goto done;
368 1.28 christos }
369 1.28 christos if (descend)
370 1.28 christos ret |= ktrsetchildren(curp, p, ops, facs, fp);
371 1.28 christos else
372 1.28 christos ret |= ktrops(curp, p, ops, facs, fp);
373 1.28 christos }
374 1.28 christos if (!ret)
375 1.28 christos error = EPERM;
376 1.28 christos done:
377 1.28 christos curp->p_traceflag &= ~KTRFAC_ACTIVE;
378 1.28 christos return (error);
379 1.28 christos }
380 1.28 christos
381 1.28 christos /*
382 1.28 christos * ktrace system call
383 1.28 christos */
384 1.28 christos /* ARGSUSED */
385 1.28 christos int
386 1.42 sommerfe sys_fktrace(curp, v, retval)
387 1.42 sommerfe struct proc *curp;
388 1.42 sommerfe void *v;
389 1.42 sommerfe register_t *retval;
390 1.42 sommerfe {
391 1.42 sommerfe struct sys_fktrace_args /* {
392 1.42 sommerfe syscallarg(int) fd;
393 1.42 sommerfe syscallarg(int) ops;
394 1.42 sommerfe syscallarg(int) facs;
395 1.42 sommerfe syscallarg(int) pid;
396 1.42 sommerfe } */ *uap = v;
397 1.42 sommerfe struct file *fp = NULL;
398 1.42 sommerfe struct filedesc *fdp = curp->p_fd;
399 1.42 sommerfe
400 1.42 sommerfe if (((u_int)SCARG(uap, fd)) >= fdp->fd_nfiles ||
401 1.42 sommerfe (fp = fdp->fd_ofiles[SCARG(uap, fd)]) == NULL ||
402 1.42 sommerfe (fp->f_flag & FWRITE) == 0)
403 1.42 sommerfe return (EBADF);
404 1.42 sommerfe
405 1.42 sommerfe return ktrace_common(curp, SCARG(uap, ops),
406 1.42 sommerfe SCARG(uap, facs), SCARG(uap, pid), fp);
407 1.42 sommerfe }
408 1.42 sommerfe
409 1.42 sommerfe /*
410 1.42 sommerfe * ktrace system call
411 1.42 sommerfe */
412 1.42 sommerfe /* ARGSUSED */
413 1.42 sommerfe int
414 1.20 mycroft sys_ktrace(curp, v, retval)
415 1.1 cgd struct proc *curp;
416 1.19 thorpej void *v;
417 1.19 thorpej register_t *retval;
418 1.19 thorpej {
419 1.28 christos struct sys_ktrace_args /* {
420 1.24 mycroft syscallarg(const char *) fname;
421 1.13 cgd syscallarg(int) ops;
422 1.13 cgd syscallarg(int) facs;
423 1.13 cgd syscallarg(int) pid;
424 1.19 thorpej } */ *uap = v;
425 1.28 christos struct vnode *vp = NULL;
426 1.42 sommerfe struct file *fp = NULL;
427 1.42 sommerfe int fd;
428 1.42 sommerfe int ops = SCARG(uap, ops);
429 1.1 cgd int error = 0;
430 1.1 cgd struct nameidata nd;
431 1.1 cgd
432 1.42 sommerfe ops = KTROP(ops) | (ops & KTRFLAG_DESCEND);
433 1.42 sommerfe
434 1.9 cgd curp->p_traceflag |= KTRFAC_ACTIVE;
435 1.1 cgd if (ops != KTROP_CLEAR) {
436 1.1 cgd /*
437 1.1 cgd * an operation which requires a file argument.
438 1.1 cgd */
439 1.13 cgd NDINIT(&nd, LOOKUP, FOLLOW, UIO_USERSPACE, SCARG(uap, fname),
440 1.13 cgd curp);
441 1.22 christos if ((error = vn_open(&nd, FREAD|FWRITE, 0)) != 0) {
442 1.9 cgd curp->p_traceflag &= ~KTRFAC_ACTIVE;
443 1.1 cgd return (error);
444 1.9 cgd }
445 1.1 cgd vp = nd.ni_vp;
446 1.25 fvdl VOP_UNLOCK(vp, 0);
447 1.1 cgd if (vp->v_type != VREG) {
448 1.1 cgd (void) vn_close(vp, FREAD|FWRITE, curp->p_ucred, curp);
449 1.9 cgd curp->p_traceflag &= ~KTRFAC_ACTIVE;
450 1.1 cgd return (EACCES);
451 1.1 cgd }
452 1.1 cgd /*
453 1.42 sommerfe * XXX This uses up a file descriptor slot in the
454 1.42 sommerfe * tracing process for the duration of this syscall.
455 1.42 sommerfe * This is not expected to be a problem. If
456 1.42 sommerfe * falloc(NULL, ...) DTRT we could skip that part, but
457 1.42 sommerfe * that would require changing its interface to allow
458 1.42 sommerfe * the caller to pass in a ucred..
459 1.42 sommerfe *
460 1.42 sommerfe * This will FILE_USE the fp it returns, if any.
461 1.42 sommerfe * Keep it in use until we return.
462 1.1 cgd */
463 1.42 sommerfe if ((error = falloc(curp, &fp, &fd)) != 0)
464 1.1 cgd goto done;
465 1.42 sommerfe
466 1.42 sommerfe fp->f_flag = FWRITE|FAPPEND;
467 1.42 sommerfe fp->f_type = DTYPE_VNODE;
468 1.42 sommerfe fp->f_ops = &vnops;
469 1.42 sommerfe fp->f_data = (caddr_t)vp;
470 1.42 sommerfe vp = NULL;
471 1.42 sommerfe }
472 1.42 sommerfe error = ktrace_common(curp, SCARG(uap, ops), SCARG(uap, facs),
473 1.42 sommerfe SCARG(uap, pid), fp);
474 1.42 sommerfe done:
475 1.1 cgd if (vp != NULL)
476 1.1 cgd (void) vn_close(vp, FWRITE, curp->p_ucred, curp);
477 1.42 sommerfe if (fp != NULL) {
478 1.42 sommerfe fdrelease(curp, fd); /* release fd table slot */
479 1.42 sommerfe FILE_UNUSE(fp, curp); /* release file */
480 1.42 sommerfe }
481 1.1 cgd return (error);
482 1.1 cgd }
483 1.1 cgd
484 1.4 andrew int
485 1.42 sommerfe ktrops(curp, p, ops, facs, fp)
486 1.9 cgd struct proc *p, *curp;
487 1.4 andrew int ops, facs;
488 1.42 sommerfe struct file *fp;
489 1.1 cgd {
490 1.1 cgd
491 1.1 cgd if (!ktrcanset(curp, p))
492 1.1 cgd return (0);
493 1.28 christos if (KTROP(ops) == KTROP_SET) {
494 1.42 sommerfe if (p->p_tracep != fp) {
495 1.1 cgd /*
496 1.1 cgd * if trace file already in use, relinquish
497 1.1 cgd */
498 1.28 christos ktrderef(p);
499 1.42 sommerfe p->p_tracep = fp;
500 1.28 christos ktradref(p);
501 1.1 cgd }
502 1.1 cgd p->p_traceflag |= facs;
503 1.1 cgd if (curp->p_ucred->cr_uid == 0)
504 1.1 cgd p->p_traceflag |= KTRFAC_ROOT;
505 1.1 cgd } else {
506 1.1 cgd /* KTROP_CLEAR */
507 1.1 cgd if (((p->p_traceflag &= ~facs) & KTRFAC_MASK) == 0) {
508 1.1 cgd /* no more tracing */
509 1.28 christos ktrderef(p);
510 1.1 cgd }
511 1.1 cgd }
512 1.21 christos
513 1.21 christos /*
514 1.21 christos * Emit an emulation record, every time there is a ktrace
515 1.21 christos * change/attach request.
516 1.21 christos */
517 1.21 christos if (KTRPOINT(p, KTR_EMUL))
518 1.42 sommerfe ktremul(p);
519 1.1 cgd
520 1.1 cgd return (1);
521 1.1 cgd }
522 1.1 cgd
523 1.22 christos int
524 1.42 sommerfe ktrsetchildren(curp, top, ops, facs, fp)
525 1.1 cgd struct proc *curp, *top;
526 1.4 andrew int ops, facs;
527 1.42 sommerfe struct file *fp;
528 1.1 cgd {
529 1.28 christos struct proc *p;
530 1.28 christos int ret = 0;
531 1.1 cgd
532 1.1 cgd p = top;
533 1.1 cgd for (;;) {
534 1.42 sommerfe ret |= ktrops(curp, p, ops, facs, fp);
535 1.1 cgd /*
536 1.1 cgd * If this process has children, descend to them next,
537 1.1 cgd * otherwise do any siblings, and if done with this level,
538 1.1 cgd * follow back up the tree (but not past top).
539 1.1 cgd */
540 1.39 thorpej if (LIST_FIRST(&p->p_children) != NULL)
541 1.39 thorpej p = LIST_FIRST(&p->p_children);
542 1.1 cgd else for (;;) {
543 1.1 cgd if (p == top)
544 1.1 cgd return (ret);
545 1.39 thorpej if (LIST_NEXT(p, p_sibling) != NULL) {
546 1.39 thorpej p = LIST_NEXT(p, p_sibling);
547 1.1 cgd break;
548 1.1 cgd }
549 1.12 mycroft p = p->p_pptr;
550 1.1 cgd }
551 1.1 cgd }
552 1.1 cgd /*NOTREACHED*/
553 1.1 cgd }
554 1.1 cgd
555 1.39 thorpej int
556 1.42 sommerfe ktrwrite(p, kth)
557 1.28 christos struct proc *p;
558 1.28 christos struct ktr_header *kth;
559 1.1 cgd {
560 1.1 cgd struct uio auio;
561 1.1 cgd struct iovec aiov[2];
562 1.42 sommerfe int error, tries;
563 1.42 sommerfe struct file *fp = p->p_tracep;
564 1.1 cgd
565 1.42 sommerfe if (fp == NULL)
566 1.42 sommerfe return 0;
567 1.42 sommerfe
568 1.1 cgd auio.uio_iov = &aiov[0];
569 1.1 cgd auio.uio_offset = 0;
570 1.1 cgd auio.uio_segflg = UIO_SYSSPACE;
571 1.1 cgd auio.uio_rw = UIO_WRITE;
572 1.1 cgd aiov[0].iov_base = (caddr_t)kth;
573 1.1 cgd aiov[0].iov_len = sizeof(struct ktr_header);
574 1.1 cgd auio.uio_resid = sizeof(struct ktr_header);
575 1.1 cgd auio.uio_iovcnt = 1;
576 1.1 cgd auio.uio_procp = (struct proc *)0;
577 1.1 cgd if (kth->ktr_len > 0) {
578 1.1 cgd auio.uio_iovcnt++;
579 1.1 cgd aiov[1].iov_base = kth->ktr_buf;
580 1.1 cgd aiov[1].iov_len = kth->ktr_len;
581 1.1 cgd auio.uio_resid += kth->ktr_len;
582 1.1 cgd }
583 1.28 christos
584 1.42 sommerfe FILE_USE(fp);
585 1.42 sommerfe
586 1.42 sommerfe tries = 0;
587 1.42 sommerfe do {
588 1.30 thorpej error = (*fp->f_ops->fo_write)(fp, &fp->f_offset, &auio,
589 1.30 thorpej fp->f_cred, FOF_UPDATE_OFFSET);
590 1.42 sommerfe tries++;
591 1.42 sommerfe if (error == EWOULDBLOCK)
592 1.42 sommerfe yield();
593 1.42 sommerfe } while ((error == EWOULDBLOCK) && (tries < 3));
594 1.42 sommerfe FILE_UNUSE(fp, NULL);
595 1.28 christos
596 1.40 thorpej if (__predict_true(error == 0))
597 1.39 thorpej return (0);
598 1.1 cgd /*
599 1.38 darrenr * If error encountered, give up tracing on this vnode. Don't report
600 1.38 darrenr * EPIPE as this can easily happen with fktrace()/ktruss.
601 1.1 cgd */
602 1.38 darrenr if (error != EPIPE)
603 1.38 darrenr log(LOG_NOTICE,
604 1.38 darrenr "ktrace write failed, errno %d, tracing stopped\n",
605 1.38 darrenr error);
606 1.37 thorpej proclist_lock_read();
607 1.39 thorpej for (p = LIST_FIRST(&allproc); p != NULL; p = LIST_NEXT(p, p_list)) {
608 1.42 sommerfe if (p->p_tracep == fp)
609 1.28 christos ktrderef(p);
610 1.1 cgd }
611 1.36 thorpej proclist_unlock_read();
612 1.39 thorpej
613 1.39 thorpej return (error);
614 1.1 cgd }
615 1.1 cgd
616 1.1 cgd /*
617 1.1 cgd * Return true if caller has permission to set the ktracing state
618 1.1 cgd * of target. Essentially, the target can't possess any
619 1.1 cgd * more permissions than the caller. KTRFAC_ROOT signifies that
620 1.1 cgd * root previously set the tracing status on the target process, and
621 1.1 cgd * so, only root may further change it.
622 1.1 cgd *
623 1.1 cgd * TODO: check groups. use caller effective gid.
624 1.1 cgd */
625 1.22 christos int
626 1.1 cgd ktrcanset(callp, targetp)
627 1.1 cgd struct proc *callp, *targetp;
628 1.1 cgd {
629 1.28 christos struct pcred *caller = callp->p_cred;
630 1.28 christos struct pcred *target = targetp->p_cred;
631 1.1 cgd
632 1.1 cgd if ((caller->pc_ucred->cr_uid == target->p_ruid &&
633 1.1 cgd target->p_ruid == target->p_svuid &&
634 1.1 cgd caller->p_rgid == target->p_rgid && /* XXX */
635 1.1 cgd target->p_rgid == target->p_svgid &&
636 1.1 cgd (targetp->p_traceflag & KTRFAC_ROOT) == 0) ||
637 1.1 cgd caller->pc_ucred->cr_uid == 0)
638 1.1 cgd return (1);
639 1.1 cgd
640 1.1 cgd return (0);
641 1.1 cgd }
642 1.9 cgd
643 1.9 cgd #endif
644