xref: /freebsd/sys/kern/kern_ktrace.c (revision 41466b50c1d5bfd1cf6adaae547a579a75d7c04e)
1 /*
2  * Copyright (c) 1989, 1993
3  *	The Regents of the University of California.  All rights reserved.
4  *
5  * Redistribution and use in source and binary forms, with or without
6  * modification, are permitted provided that the following conditions
7  * are met:
8  * 1. Redistributions of source code must retain the above copyright
9  *    notice, this list of conditions and the following disclaimer.
10  * 2. Redistributions in binary form must reproduce the above copyright
11  *    notice, this list of conditions and the following disclaimer in the
12  *    documentation and/or other materials provided with the distribution.
13  * 3. All advertising materials mentioning features or use of this software
14  *    must display the following acknowledgement:
15  *	This product includes software developed by the University of
16  *	California, Berkeley and its contributors.
17  * 4. Neither the name of the University nor the names of its contributors
18  *    may be used to endorse or promote products derived from this software
19  *    without specific prior written permission.
20  *
21  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
22  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
23  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
24  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
25  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
26  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
27  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
28  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
29  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
30  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
31  * SUCH DAMAGE.
32  *
33  *	@(#)kern_ktrace.c	8.2 (Berkeley) 9/23/93
34  * $FreeBSD$
35  */
36 
37 #include "opt_ktrace.h"
38 
39 #include <sys/param.h>
40 #include <sys/systm.h>
41 #include <sys/lock.h>
42 #include <sys/mutex.h>
43 #include <sys/sysproto.h>
44 #include <sys/kernel.h>
45 #include <sys/proc.h>
46 #include <sys/fcntl.h>
47 #include <sys/namei.h>
48 #include <sys/vnode.h>
49 #include <sys/ktrace.h>
50 #include <sys/malloc.h>
51 #include <sys/sx.h>
52 #include <sys/syslog.h>
53 #include <sys/jail.h>
54 
55 static MALLOC_DEFINE(M_KTRACE, "KTRACE", "KTRACE");
56 
57 #ifdef KTRACE
58 static struct ktr_header *ktrgetheader __P((int type));
59 static void ktrwrite __P((struct vnode *, struct ktr_header *, struct uio *));
60 static int ktrcanset __P((struct proc *,struct proc *));
61 static int ktrsetchildren __P((struct proc *,struct proc *,int,int,struct vnode *));
62 static int ktrops __P((struct proc *,struct proc *,int,int,struct vnode *));
63 
64 
65 static struct ktr_header *
66 ktrgetheader(type)
67 	int type;
68 {
69 	register struct ktr_header *kth;
70 	struct proc *p = curproc;	/* XXX */
71 
72 	MALLOC(kth, struct ktr_header *, sizeof (struct ktr_header),
73 		M_KTRACE, M_WAITOK);
74 	kth->ktr_type = type;
75 	microtime(&kth->ktr_time);
76 	kth->ktr_pid = p->p_pid;
77 	bcopy(p->p_comm, kth->ktr_comm, MAXCOMLEN + 1);
78 	return (kth);
79 }
80 
81 /*
82  * MPSAFE
83  */
84 void
85 ktrsyscall(vp, code, narg, args)
86 	struct vnode *vp;
87 	int code, narg;
88 	register_t args[];
89 {
90 	struct	ktr_header *kth;
91 	struct	ktr_syscall *ktp;
92 	register int len = offsetof(struct ktr_syscall, ktr_args) +
93 	    (narg * sizeof(register_t));
94 	struct proc *p = curproc;	/* XXX */
95 	register_t *argp;
96 	int i;
97 
98 	mtx_lock(&Giant);
99 	p->p_traceflag |= KTRFAC_ACTIVE;
100 	kth = ktrgetheader(KTR_SYSCALL);
101 	MALLOC(ktp, struct ktr_syscall *, len, M_KTRACE, M_WAITOK);
102 	ktp->ktr_code = code;
103 	ktp->ktr_narg = narg;
104 	argp = &ktp->ktr_args[0];
105 	for (i = 0; i < narg; i++)
106 		*argp++ = args[i];
107 	kth->ktr_buffer = (caddr_t)ktp;
108 	kth->ktr_len = len;
109 	ktrwrite(vp, kth, NULL);
110 	FREE(ktp, M_KTRACE);
111 	FREE(kth, M_KTRACE);
112 	p->p_traceflag &= ~KTRFAC_ACTIVE;
113 	mtx_unlock(&Giant);
114 }
115 
116 /*
117  * MPSAFE
118  */
119 void
120 ktrsysret(vp, code, error, retval)
121 	struct vnode *vp;
122 	int code, error;
123 	register_t retval;
124 {
125 	struct ktr_header *kth;
126 	struct ktr_sysret ktp;
127 	struct proc *p = curproc;	/* XXX */
128 
129 	mtx_lock(&Giant);
130 	p->p_traceflag |= KTRFAC_ACTIVE;
131 	kth = ktrgetheader(KTR_SYSRET);
132 	ktp.ktr_code = code;
133 	ktp.ktr_error = error;
134 	ktp.ktr_retval = retval;		/* what about val2 ? */
135 
136 	kth->ktr_buffer = (caddr_t)&ktp;
137 	kth->ktr_len = sizeof(struct ktr_sysret);
138 
139 	ktrwrite(vp, kth, NULL);
140 	FREE(kth, M_KTRACE);
141 	p->p_traceflag &= ~KTRFAC_ACTIVE;
142 	mtx_unlock(&Giant);
143 }
144 
145 void
146 ktrnamei(vp, path)
147 	struct vnode *vp;
148 	char *path;
149 {
150 	struct ktr_header *kth;
151 	struct proc *p = curproc;	/* XXX */
152 
153 	/*
154 	 * don't let p_tracep get ripped out from under us
155 	 */
156 	if (vp)
157 		VREF(vp);
158 	p->p_traceflag |= KTRFAC_ACTIVE;
159 	kth = ktrgetheader(KTR_NAMEI);
160 	kth->ktr_len = strlen(path);
161 	kth->ktr_buffer = path;
162 
163 	ktrwrite(vp, kth, NULL);
164 	if (vp)
165 		vrele(vp);
166 	FREE(kth, M_KTRACE);
167 	p->p_traceflag &= ~KTRFAC_ACTIVE;
168 }
169 
170 void
171 ktrgenio(vp, fd, rw, uio, error)
172 	struct vnode *vp;
173 	int fd;
174 	enum uio_rw rw;
175 	struct uio *uio;
176 	int error;
177 {
178 	struct ktr_header *kth;
179 	struct ktr_genio ktg;
180 	struct proc *p = curproc;	/* XXX */
181 
182 	if (error)
183 		return;
184 	/*
185 	 * don't let p_tracep get ripped out from under us
186 	 */
187 	if (vp)
188 		VREF(vp);
189 	p->p_traceflag |= KTRFAC_ACTIVE;
190 	kth = ktrgetheader(KTR_GENIO);
191 	ktg.ktr_fd = fd;
192 	ktg.ktr_rw = rw;
193 	kth->ktr_buffer = (caddr_t)&ktg;
194 	kth->ktr_len = sizeof(struct ktr_genio);
195 	uio->uio_offset = 0;
196 	uio->uio_rw = UIO_WRITE;
197 
198 	ktrwrite(vp, kth, uio);
199 	if (vp)
200 		vrele(vp);
201 	FREE(kth, M_KTRACE);
202 	p->p_traceflag &= ~KTRFAC_ACTIVE;
203 }
204 
205 void
206 ktrpsig(vp, sig, action, mask, code)
207 	struct vnode *vp;
208 	int sig;
209 	sig_t action;
210 	sigset_t *mask;
211 	int code;
212 {
213 	struct ktr_header *kth;
214 	struct ktr_psig	kp;
215 	struct proc *p = curproc;	/* XXX */
216 
217 	/*
218 	 * don't let vp get ripped out from under us
219 	 */
220 	if (vp)
221 		VREF(vp);
222 	p->p_traceflag |= KTRFAC_ACTIVE;
223 	kth = ktrgetheader(KTR_PSIG);
224 	kp.signo = (char)sig;
225 	kp.action = action;
226 	kp.mask = *mask;
227 	kp.code = code;
228 	kth->ktr_buffer = (caddr_t)&kp;
229 	kth->ktr_len = sizeof (struct ktr_psig);
230 
231 	ktrwrite(vp, kth, NULL);
232 	if (vp)
233 		vrele(vp);
234 	FREE(kth, M_KTRACE);
235 	p->p_traceflag &= ~KTRFAC_ACTIVE;
236 }
237 
238 void
239 ktrcsw(vp, out, user)
240 	struct vnode *vp;
241 	int out, user;
242 {
243 	struct ktr_header *kth;
244 	struct	ktr_csw kc;
245 	struct proc *p = curproc;	/* XXX */
246 
247 	/*
248 	 * don't let vp get ripped out from under us
249 	 */
250 	if (vp)
251 		VREF(vp);
252 	p->p_traceflag |= KTRFAC_ACTIVE;
253 	kth = ktrgetheader(KTR_CSW);
254 	kc.out = out;
255 	kc.user = user;
256 	kth->ktr_buffer = (caddr_t)&kc;
257 	kth->ktr_len = sizeof (struct ktr_csw);
258 
259 	ktrwrite(vp, kth, NULL);
260 	if (vp)
261 		vrele(vp);
262 	FREE(kth, M_KTRACE);
263 	p->p_traceflag &= ~KTRFAC_ACTIVE;
264 }
265 #endif
266 
267 /* Interface and common routines */
268 
269 /*
270  * ktrace system call
271  */
272 #ifndef _SYS_SYSPROTO_H_
273 struct ktrace_args {
274 	char	*fname;
275 	int	ops;
276 	int	facs;
277 	int	pid;
278 };
279 #endif
280 /* ARGSUSED */
281 int
282 ktrace(td, uap)
283 	struct thread *td;
284 	register struct ktrace_args *uap;
285 {
286 #ifdef KTRACE
287 	struct proc *curp = td->td_proc;
288 	register struct vnode *vp = NULL;
289 	register struct proc *p;
290 	struct pgrp *pg;
291 	int facs = uap->facs & ~KTRFAC_ROOT;
292 	int ops = KTROP(uap->ops);
293 	int descend = uap->ops & KTRFLAG_DESCEND;
294 	int ret = 0;
295 	int flags, error = 0;
296 	struct nameidata nd;
297 
298 	curp->p_traceflag |= KTRFAC_ACTIVE;
299 	if (ops != KTROP_CLEAR) {
300 		/*
301 		 * an operation which requires a file argument.
302 		 */
303 		NDINIT(&nd, LOOKUP, NOFOLLOW, UIO_USERSPACE, uap->fname, td);
304 		flags = FREAD | FWRITE | O_NOFOLLOW;
305 		error = vn_open(&nd, &flags, 0);
306 		if (error) {
307 			curp->p_traceflag &= ~KTRFAC_ACTIVE;
308 			return (error);
309 		}
310 		NDFREE(&nd, NDF_ONLY_PNBUF);
311 		vp = nd.ni_vp;
312 		VOP_UNLOCK(vp, 0, td);
313 		if (vp->v_type != VREG) {
314 			(void) vn_close(vp, FREAD|FWRITE, curp->p_ucred, td);
315 			curp->p_traceflag &= ~KTRFAC_ACTIVE;
316 			return (EACCES);
317 		}
318 	}
319 	/*
320 	 * Clear all uses of the tracefile.
321 	 */
322 	if (ops == KTROP_CLEARFILE) {
323 		sx_slock(&allproc_lock);
324 		LIST_FOREACH(p, &allproc, p_list) {
325 			if (p->p_tracep == vp) {
326 				if (ktrcanset(curp, p) && p->p_tracep == vp) {
327 					p->p_tracep = NULL;
328 					p->p_traceflag = 0;
329 					(void) vn_close(vp, FREAD|FWRITE,
330 						p->p_ucred, td);
331 				} else {
332 					error = EPERM;
333 				}
334 			}
335 		}
336 		sx_sunlock(&allproc_lock);
337 		goto done;
338 	}
339 	/*
340 	 * need something to (un)trace (XXX - why is this here?)
341 	 */
342 	if (!facs) {
343 		error = EINVAL;
344 		goto done;
345 	}
346 	/*
347 	 * do it
348 	 */
349 	if (uap->pid < 0) {
350 		/*
351 		 * by process group
352 		 */
353 		pg = pgfind(-uap->pid);
354 		if (pg == NULL) {
355 			error = ESRCH;
356 			goto done;
357 		}
358 		LIST_FOREACH(p, &pg->pg_members, p_pglist)
359 			if (descend)
360 				ret |= ktrsetchildren(curp, p, ops, facs, vp);
361 			else
362 				ret |= ktrops(curp, p, ops, facs, vp);
363 	} else {
364 		/*
365 		 * by pid
366 		 */
367 		p = pfind(uap->pid);
368 		if (p == NULL) {
369 			error = ESRCH;
370 			goto done;
371 		}
372 		PROC_UNLOCK(p);
373 		if (descend)
374 			ret |= ktrsetchildren(curp, p, ops, facs, vp);
375 		else
376 			ret |= ktrops(curp, p, ops, facs, vp);
377 	}
378 	if (!ret)
379 		error = EPERM;
380 done:
381 	if (vp != NULL)
382 		(void) vn_close(vp, FWRITE, curp->p_ucred, td);
383 	curp->p_traceflag &= ~KTRFAC_ACTIVE;
384 	return (error);
385 #else
386 	return ENOSYS;
387 #endif
388 }
389 
390 /*
391  * utrace system call
392  */
393 /* ARGSUSED */
394 int
395 utrace(td, uap)
396 	struct thread *td;
397 	register struct utrace_args *uap;
398 {
399 
400 #ifdef KTRACE
401 	struct ktr_header *kth;
402 	struct proc *p = curproc;	/* XXX */
403 	struct vnode *vp;
404 	register caddr_t cp;
405 
406 	if (!KTRPOINT(p, KTR_USER))
407 		return (0);
408 	if (uap->len > KTR_USER_MAXLEN)
409 		return (EINVAL);
410 	p->p_traceflag |= KTRFAC_ACTIVE;
411 	if ((vp = p->p_tracep) != NULL)
412 		VREF(vp);
413 	kth = ktrgetheader(KTR_USER);
414 	MALLOC(cp, caddr_t, uap->len, M_KTRACE, M_WAITOK);
415 	if (!copyin(uap->addr, cp, uap->len)) {
416 		kth->ktr_buffer = cp;
417 		kth->ktr_len = uap->len;
418 		ktrwrite(vp, kth, NULL);
419 	}
420 	if (vp)
421 		vrele(vp);
422 	FREE(kth, M_KTRACE);
423 	FREE(cp, M_KTRACE);
424 	p->p_traceflag &= ~KTRFAC_ACTIVE;
425 
426 	return (0);
427 #else
428 	return (ENOSYS);
429 #endif
430 }
431 
432 #ifdef KTRACE
433 static int
434 ktrops(curp, p, ops, facs, vp)
435 	struct proc *p, *curp;
436 	int ops, facs;
437 	struct vnode *vp;
438 {
439 
440 	if (!ktrcanset(curp, p))
441 		return (0);
442 	if (ops == KTROP_SET) {
443 		if (p->p_tracep != vp) {
444 			struct vnode *vtmp;
445 
446 			/*
447 			 * if trace file already in use, relinquish
448 			 */
449 			VREF(vp);
450 			while ((vtmp = p->p_tracep) != NULL) {
451 				p->p_tracep = NULL;
452 				vrele(vtmp);
453 			}
454 			p->p_tracep = vp;
455 		}
456 		p->p_traceflag |= facs;
457 		if (curp->p_ucred->cr_uid == 0)
458 			p->p_traceflag |= KTRFAC_ROOT;
459 	} else {
460 		/* KTROP_CLEAR */
461 		if (((p->p_traceflag &= ~facs) & KTRFAC_MASK) == 0) {
462 			struct vnode *vtmp;
463 
464 			/* no more tracing */
465 			p->p_traceflag = 0;
466 			if ((vtmp = p->p_tracep) != NULL) {
467 				p->p_tracep = NULL;
468 				vrele(vtmp);
469 			}
470 		}
471 	}
472 
473 	return (1);
474 }
475 
476 static int
477 ktrsetchildren(curp, top, ops, facs, vp)
478 	struct proc *curp, *top;
479 	int ops, facs;
480 	struct vnode *vp;
481 {
482 	register struct proc *p;
483 	register int ret = 0;
484 
485 	p = top;
486 	sx_slock(&proctree_lock);
487 	for (;;) {
488 		ret |= ktrops(curp, p, ops, facs, vp);
489 		/*
490 		 * If this process has children, descend to them next,
491 		 * otherwise do any siblings, and if done with this level,
492 		 * follow back up the tree (but not past top).
493 		 */
494 		if (!LIST_EMPTY(&p->p_children))
495 			p = LIST_FIRST(&p->p_children);
496 		else for (;;) {
497 			if (p == top) {
498 				sx_sunlock(&proctree_lock);
499 				return (ret);
500 			}
501 			if (LIST_NEXT(p, p_sibling)) {
502 				p = LIST_NEXT(p, p_sibling);
503 				break;
504 			}
505 			p = p->p_pptr;
506 		}
507 	}
508 	/*NOTREACHED*/
509 }
510 
511 static void
512 ktrwrite(vp, kth, uio)
513 	struct vnode *vp;
514 	register struct ktr_header *kth;
515 	struct uio *uio;
516 {
517 	struct uio auio;
518 	struct iovec aiov[2];
519 	struct thread *td = curthread;	/* XXX */
520 	struct proc *p = td->td_proc;	/* XXX */
521 	struct mount *mp;
522 	int error;
523 
524 	if (vp == NULL)
525 		return;
526 	auio.uio_iov = &aiov[0];
527 	auio.uio_offset = 0;
528 	auio.uio_segflg = UIO_SYSSPACE;
529 	auio.uio_rw = UIO_WRITE;
530 	aiov[0].iov_base = (caddr_t)kth;
531 	aiov[0].iov_len = sizeof(struct ktr_header);
532 	auio.uio_resid = sizeof(struct ktr_header);
533 	auio.uio_iovcnt = 1;
534 	auio.uio_td = curthread;
535 	if (kth->ktr_len > 0) {
536 		auio.uio_iovcnt++;
537 		aiov[1].iov_base = kth->ktr_buffer;
538 		aiov[1].iov_len = kth->ktr_len;
539 		auio.uio_resid += kth->ktr_len;
540 		if (uio != NULL)
541 			kth->ktr_len += uio->uio_resid;
542 	}
543 	vn_start_write(vp, &mp, V_WAIT);
544 	vn_lock(vp, LK_EXCLUSIVE | LK_RETRY, td);
545 	(void)VOP_LEASE(vp, td, p->p_ucred, LEASE_WRITE);
546 	error = VOP_WRITE(vp, &auio, IO_UNIT | IO_APPEND, p->p_ucred);
547 	if (error == 0 && uio != NULL) {
548 		(void)VOP_LEASE(vp, td, p->p_ucred, LEASE_WRITE);
549 		error = VOP_WRITE(vp, uio, IO_UNIT | IO_APPEND, p->p_ucred);
550 	}
551 	VOP_UNLOCK(vp, 0, td);
552 	vn_finished_write(mp);
553 	if (!error)
554 		return;
555 	/*
556 	 * If error encountered, give up tracing on this vnode.  XXX what
557 	 * happens to the loop if vrele() blocks?
558 	 */
559 	log(LOG_NOTICE, "ktrace write failed, errno %d, tracing stopped\n",
560 	    error);
561 	sx_slock(&allproc_lock);
562 	LIST_FOREACH(p, &allproc, p_list) {
563 		if (p->p_tracep == vp) {
564 			p->p_tracep = NULL;
565 			p->p_traceflag = 0;
566 			vrele(vp);
567 		}
568 	}
569 	sx_sunlock(&allproc_lock);
570 }
571 
572 /*
573  * Return true if caller has permission to set the ktracing state
574  * of target.  Essentially, the target can't possess any
575  * more permissions than the caller.  KTRFAC_ROOT signifies that
576  * root previously set the tracing status on the target process, and
577  * so, only root may further change it.
578  */
579 static int
580 ktrcanset(callp, targetp)
581 	struct proc *callp, *targetp;
582 {
583 
584 	if (targetp->p_traceflag & KTRFAC_ROOT &&
585 	    suser_xxx(NULL, callp, PRISON_ROOT))
586 		return (0);
587 
588 	if (p_candebug(callp, targetp) != 0)
589 		return (0);
590 
591 	return (1);
592 }
593 
594 #endif /* KTRACE */
595