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kern_ktrace.c revision 1.164.4.1.2.1
      1  1.164.4.1.2.1       snj /*	$NetBSD: kern_ktrace.c,v 1.164.4.1.2.1 2017/08/19 05:21:56 snj Exp $	*/
      2          1.125        ad 
      3          1.125        ad /*-
      4          1.140        ad  * Copyright (c) 2006, 2007, 2008 The NetBSD Foundation, Inc.
      5          1.125        ad  * All rights reserved.
      6          1.125        ad  *
      7          1.125        ad  * This code is derived from software contributed to The NetBSD Foundation
      8          1.125        ad  * by Andrew Doran.
      9          1.125        ad  *
     10          1.125        ad  * Redistribution and use in source and binary forms, with or without
     11          1.125        ad  * modification, are permitted provided that the following conditions
     12          1.125        ad  * are met:
     13          1.125        ad  * 1. Redistributions of source code must retain the above copyright
     14          1.125        ad  *    notice, this list of conditions and the following disclaimer.
     15          1.125        ad  * 2. Redistributions in binary form must reproduce the above copyright
     16          1.125        ad  *    notice, this list of conditions and the following disclaimer in the
     17          1.125        ad  *    documentation and/or other materials provided with the distribution.
     18          1.125        ad  *
     19          1.125        ad  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20          1.125        ad  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21          1.125        ad  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22          1.125        ad  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23          1.125        ad  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24          1.125        ad  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25          1.125        ad  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26          1.125        ad  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27          1.125        ad  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28          1.125        ad  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29          1.125        ad  * POSSIBILITY OF SUCH DAMAGE.
     30          1.125        ad  */
     31           1.11       cgd 
     32            1.1       cgd /*
     33            1.9       cgd  * Copyright (c) 1989, 1993
     34            1.9       cgd  *	The Regents of the University of California.  All rights reserved.
     35            1.1       cgd  *
     36            1.1       cgd  * Redistribution and use in source and binary forms, with or without
     37            1.1       cgd  * modification, are permitted provided that the following conditions
     38            1.1       cgd  * are met:
     39            1.1       cgd  * 1. Redistributions of source code must retain the above copyright
     40            1.1       cgd  *    notice, this list of conditions and the following disclaimer.
     41            1.1       cgd  * 2. Redistributions in binary form must reproduce the above copyright
     42            1.1       cgd  *    notice, this list of conditions and the following disclaimer in the
     43            1.1       cgd  *    documentation and/or other materials provided with the distribution.
     44           1.77       agc  * 3. Neither the name of the University nor the names of its contributors
     45            1.1       cgd  *    may be used to endorse or promote products derived from this software
     46            1.1       cgd  *    without specific prior written permission.
     47            1.1       cgd  *
     48            1.1       cgd  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     49            1.1       cgd  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     50            1.1       cgd  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     51            1.1       cgd  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     52            1.1       cgd  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     53            1.1       cgd  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     54            1.1       cgd  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     55            1.1       cgd  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     56            1.1       cgd  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     57            1.1       cgd  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     58            1.1       cgd  * SUCH DAMAGE.
     59            1.1       cgd  *
     60           1.25      fvdl  *	@(#)kern_ktrace.c	8.5 (Berkeley) 5/14/95
     61            1.1       cgd  */
     62           1.55     lukem 
     63           1.55     lukem #include <sys/cdefs.h>
     64  1.164.4.1.2.1       snj __KERNEL_RCSID(0, "$NetBSD: kern_ktrace.c,v 1.164.4.1.2.1 2017/08/19 05:21:56 snj Exp $");
     65            1.1       cgd 
     66            1.7   mycroft #include <sys/param.h>
     67           1.13       cgd #include <sys/systm.h>
     68            1.7   mycroft #include <sys/proc.h>
     69            1.7   mycroft #include <sys/file.h>
     70           1.93     enami #include <sys/kernel.h>
     71           1.93     enami #include <sys/kthread.h>
     72            1.7   mycroft #include <sys/ktrace.h>
     73          1.114        ad #include <sys/kmem.h>
     74            1.7   mycroft #include <sys/syslog.h>
     75           1.28  christos #include <sys/filedesc.h>
     76           1.42  sommerfe #include <sys/ioctl.h>
     77           1.93     enami #include <sys/callout.h>
     78          1.103      elad #include <sys/kauth.h>
     79            1.1       cgd 
     80           1.13       cgd #include <sys/mount.h>
     81           1.13       cgd #include <sys/syscallargs.h>
     82           1.22  christos 
     83           1.93     enami /*
     84          1.121        ad  * TODO:
     85           1.93     enami  *	- need better error reporting?
     86           1.93     enami  *	- userland utility to sort ktrace.out by timestamp.
     87           1.93     enami  *	- keep minimum information in ktrace_entry when rest of alloc failed.
     88           1.93     enami  *	- per trace control of configurable parameters.
     89           1.93     enami  */
     90           1.93     enami 
     91           1.93     enami struct ktrace_entry {
     92           1.93     enami 	TAILQ_ENTRY(ktrace_entry) kte_list;
     93          1.114        ad 	struct	ktr_header kte_kth;
     94          1.114        ad 	void	*kte_buf;
     95          1.114        ad 	size_t	kte_bufsz;
     96          1.114        ad #define	KTE_SPACE		32
     97          1.158      matt 	uint8_t kte_space[KTE_SPACE] __aligned(sizeof(register_t));
     98           1.93     enami };
     99           1.93     enami 
    100           1.93     enami struct ktr_desc {
    101           1.93     enami 	TAILQ_ENTRY(ktr_desc) ktd_list;
    102           1.93     enami 	int ktd_flags;
    103           1.93     enami #define	KTDF_WAIT		0x0001
    104           1.93     enami #define	KTDF_DONE		0x0002
    105           1.93     enami #define	KTDF_BLOCKING		0x0004
    106           1.93     enami #define	KTDF_INTERACTIVE	0x0008
    107           1.93     enami 	int ktd_error;
    108           1.93     enami #define	KTDE_ENOMEM		0x0001
    109           1.93     enami #define	KTDE_ENOSPC		0x0002
    110           1.93     enami 	int ktd_errcnt;
    111           1.93     enami 	int ktd_ref;			/* # of reference */
    112           1.93     enami 	int ktd_qcount;			/* # of entry in the queue */
    113           1.93     enami 
    114           1.93     enami 	/*
    115           1.93     enami 	 * Params to control behaviour.
    116           1.93     enami 	 */
    117           1.93     enami 	int ktd_delayqcnt;		/* # of entry allowed to delay */
    118           1.93     enami 	int ktd_wakedelay;		/* delay of wakeup in *tick* */
    119           1.93     enami 	int ktd_intrwakdl;		/* ditto, but when interactive */
    120           1.93     enami 
    121          1.140        ad 	file_t *ktd_fp;			/* trace output file */
    122          1.125        ad 	lwp_t *ktd_lwp;			/* our kernel thread */
    123           1.93     enami 	TAILQ_HEAD(, ktrace_entry) ktd_queue;
    124          1.124        ad 	callout_t ktd_wakch;		/* delayed wakeup */
    125          1.114        ad 	kcondvar_t ktd_sync_cv;
    126          1.114        ad 	kcondvar_t ktd_cv;
    127           1.93     enami };
    128           1.93     enami 
    129          1.125        ad static int	ktealloc(struct ktrace_entry **, void **, lwp_t *, int,
    130          1.114        ad 			 size_t);
    131           1.93     enami static void	ktrwrite(struct ktr_desc *, struct ktrace_entry *);
    132          1.125        ad static int	ktrops(lwp_t *, struct proc *, int, int,
    133           1.93     enami 		    struct ktr_desc *);
    134          1.125        ad static int	ktrsetchildren(lwp_t *, struct proc *, int, int,
    135           1.93     enami 		    struct ktr_desc *);
    136          1.125        ad static int	ktrcanset(lwp_t *, struct proc *);
    137          1.140        ad static int	ktrsamefile(file_t *, file_t *);
    138          1.125        ad static void	ktr_kmem(lwp_t *, int, const void *, size_t);
    139          1.125        ad static void	ktr_io(lwp_t *, int, enum uio_rw, struct iovec *, size_t);
    140           1.93     enami 
    141           1.93     enami static struct ktr_desc *
    142          1.140        ad 		ktd_lookup(file_t *);
    143           1.93     enami static void	ktdrel(struct ktr_desc *);
    144           1.93     enami static void	ktdref(struct ktr_desc *);
    145          1.125        ad static void	ktraddentry(lwp_t *, struct ktrace_entry *, int);
    146           1.93     enami /* Flags for ktraddentry (3rd arg) */
    147           1.93     enami #define	KTA_NOWAIT		0x0000
    148           1.93     enami #define	KTA_WAITOK		0x0001
    149           1.93     enami #define	KTA_LARGE		0x0002
    150           1.93     enami static void	ktefree(struct ktrace_entry *);
    151           1.93     enami static void	ktd_logerrl(struct ktr_desc *, int);
    152           1.93     enami static void	ktrace_thread(void *);
    153          1.114        ad static int	ktrderefall(struct ktr_desc *, int);
    154           1.93     enami 
    155           1.93     enami /*
    156           1.93     enami  * Default vaules.
    157           1.93     enami  */
    158           1.93     enami #define	KTD_MAXENTRY		1000	/* XXX: tune */
    159           1.93     enami #define	KTD_TIMEOUT		5	/* XXX: tune */
    160           1.93     enami #define	KTD_DELAYQCNT		100	/* XXX: tune */
    161           1.93     enami #define	KTD_WAKEDELAY		5000	/* XXX: tune */
    162           1.93     enami #define	KTD_INTRWAKDL		100	/* XXX: tune */
    163           1.93     enami 
    164           1.93     enami /*
    165           1.93     enami  * Patchable variables.
    166           1.93     enami  */
    167           1.93     enami int ktd_maxentry = KTD_MAXENTRY;	/* max # of entry in the queue */
    168           1.93     enami int ktd_timeout = KTD_TIMEOUT;		/* timeout in seconds */
    169           1.93     enami int ktd_delayqcnt = KTD_DELAYQCNT;	/* # of entry allowed to delay */
    170           1.93     enami int ktd_wakedelay = KTD_WAKEDELAY;	/* delay of wakeup in *ms* */
    171           1.93     enami int ktd_intrwakdl = KTD_INTRWAKDL;	/* ditto, but when interactive */
    172           1.93     enami 
    173          1.125        ad kmutex_t ktrace_lock;
    174          1.125        ad int ktrace_on;
    175           1.93     enami static TAILQ_HEAD(, ktr_desc) ktdq = TAILQ_HEAD_INITIALIZER(ktdq);
    176          1.145        ad static pool_cache_t kte_cache;
    177           1.93     enami 
    178          1.150      elad static kauth_listener_t ktrace_listener;
    179          1.150      elad 
    180          1.121        ad static void
    181           1.93     enami ktd_wakeup(struct ktr_desc *ktd)
    182           1.93     enami {
    183           1.93     enami 
    184           1.93     enami 	callout_stop(&ktd->ktd_wakch);
    185          1.121        ad 	cv_signal(&ktd->ktd_cv);
    186          1.121        ad }
    187          1.121        ad 
    188          1.121        ad static void
    189          1.121        ad ktd_callout(void *arg)
    190          1.121        ad {
    191          1.121        ad 
    192          1.129        ad 	mutex_enter(&ktrace_lock);
    193          1.121        ad 	ktd_wakeup(arg);
    194          1.129        ad 	mutex_exit(&ktrace_lock);
    195           1.93     enami }
    196           1.93     enami 
    197           1.93     enami static void
    198           1.93     enami ktd_logerrl(struct ktr_desc *ktd, int error)
    199           1.93     enami {
    200           1.93     enami 
    201           1.93     enami 	ktd->ktd_error |= error;
    202           1.93     enami 	ktd->ktd_errcnt++;
    203           1.93     enami }
    204           1.93     enami 
    205          1.114        ad #if 0
    206           1.93     enami static void
    207           1.93     enami ktd_logerr(struct proc *p, int error)
    208           1.93     enami {
    209          1.114        ad 	struct ktr_desc *ktd;
    210          1.114        ad 
    211          1.125        ad 	KASSERT(mutex_owned(&ktrace_lock));
    212           1.93     enami 
    213          1.114        ad 	ktd = p->p_tracep;
    214           1.93     enami 	if (ktd == NULL)
    215           1.93     enami 		return;
    216           1.93     enami 
    217           1.93     enami 	ktd_logerrl(ktd, error);
    218          1.114        ad }
    219          1.114        ad #endif
    220          1.114        ad 
    221          1.150      elad static int
    222          1.150      elad ktrace_listener_cb(kauth_cred_t cred, kauth_action_t action, void *cookie,
    223          1.150      elad     void *arg0, void *arg1, void *arg2, void *arg3)
    224          1.150      elad {
    225          1.150      elad 	struct proc *p;
    226          1.150      elad 	int result;
    227          1.150      elad 	enum kauth_process_req req;
    228          1.150      elad 
    229          1.150      elad 	result = KAUTH_RESULT_DEFER;
    230          1.150      elad 	p = arg0;
    231          1.150      elad 
    232          1.150      elad 	if (action != KAUTH_PROCESS_KTRACE)
    233          1.150      elad 		return result;
    234          1.150      elad 
    235          1.150      elad 	req = (enum kauth_process_req)(unsigned long)arg1;
    236          1.150      elad 
    237          1.150      elad 	/* Privileged; secmodel should handle these. */
    238          1.150      elad 	if (req == KAUTH_REQ_PROCESS_KTRACE_PERSISTENT)
    239          1.150      elad 		return result;
    240          1.150      elad 
    241          1.150      elad 	if ((p->p_traceflag & KTRFAC_PERSISTENT) ||
    242          1.150      elad 	    (p->p_flag & PK_SUGID))
    243          1.150      elad 		return result;
    244          1.150      elad 
    245          1.150      elad 	if (kauth_cred_geteuid(cred) == kauth_cred_getuid(p->p_cred) &&
    246          1.150      elad 	    kauth_cred_getuid(cred) == kauth_cred_getsvuid(p->p_cred) &&
    247          1.150      elad 	    kauth_cred_getgid(cred) == kauth_cred_getgid(p->p_cred) &&
    248          1.150      elad 	    kauth_cred_getgid(cred) == kauth_cred_getsvgid(p->p_cred))
    249          1.150      elad 		result = KAUTH_RESULT_ALLOW;
    250          1.150      elad 
    251          1.150      elad 	return result;
    252          1.150      elad }
    253          1.150      elad 
    254          1.114        ad /*
    255          1.114        ad  * Initialise the ktrace system.
    256          1.114        ad  */
    257          1.114        ad void
    258          1.114        ad ktrinit(void)
    259          1.114        ad {
    260          1.114        ad 
    261          1.125        ad 	mutex_init(&ktrace_lock, MUTEX_DEFAULT, IPL_NONE);
    262          1.145        ad 	kte_cache = pool_cache_init(sizeof(struct ktrace_entry), 0, 0, 0,
    263          1.145        ad 	    "ktrace", &pool_allocator_nointr, IPL_NONE, NULL, NULL, NULL);
    264          1.150      elad 
    265          1.150      elad 	ktrace_listener = kauth_listen_scope(KAUTH_SCOPE_PROCESS,
    266          1.150      elad 	    ktrace_listener_cb, NULL);
    267           1.93     enami }
    268           1.93     enami 
    269           1.93     enami /*
    270          1.125        ad  * Release a reference.  Called with ktrace_lock held.
    271           1.93     enami  */
    272           1.93     enami void
    273           1.93     enami ktdrel(struct ktr_desc *ktd)
    274           1.93     enami {
    275           1.93     enami 
    276          1.125        ad 	KASSERT(mutex_owned(&ktrace_lock));
    277          1.114        ad 
    278           1.93     enami 	KDASSERT(ktd->ktd_ref != 0);
    279           1.93     enami 	KASSERT(ktd->ktd_ref > 0);
    280          1.125        ad 	KASSERT(ktrace_on > 0);
    281          1.125        ad 	ktrace_on--;
    282           1.93     enami 	if (--ktd->ktd_ref <= 0) {
    283           1.93     enami 		ktd->ktd_flags |= KTDF_DONE;
    284          1.121        ad 		cv_signal(&ktd->ktd_cv);
    285           1.93     enami 	}
    286           1.93     enami }
    287           1.93     enami 
    288           1.93     enami void
    289           1.93     enami ktdref(struct ktr_desc *ktd)
    290           1.93     enami {
    291           1.93     enami 
    292          1.125        ad 	KASSERT(mutex_owned(&ktrace_lock));
    293          1.114        ad 
    294           1.93     enami 	ktd->ktd_ref++;
    295          1.125        ad 	ktrace_on++;
    296           1.93     enami }
    297           1.93     enami 
    298           1.93     enami struct ktr_desc *
    299          1.140        ad ktd_lookup(file_t *fp)
    300           1.93     enami {
    301           1.93     enami 	struct ktr_desc *ktd;
    302           1.93     enami 
    303          1.125        ad 	KASSERT(mutex_owned(&ktrace_lock));
    304          1.114        ad 
    305           1.93     enami 	for (ktd = TAILQ_FIRST(&ktdq); ktd != NULL;
    306           1.93     enami 	    ktd = TAILQ_NEXT(ktd, ktd_list)) {
    307           1.93     enami 		if (ktrsamefile(ktd->ktd_fp, fp)) {
    308          1.125        ad 			ktdref(ktd);
    309           1.93     enami 			break;
    310           1.93     enami 		}
    311           1.93     enami 	}
    312          1.114        ad 
    313           1.93     enami 	return (ktd);
    314           1.93     enami }
    315           1.93     enami 
    316           1.93     enami void
    317          1.125        ad ktraddentry(lwp_t *l, struct ktrace_entry *kte, int flags)
    318           1.93     enami {
    319           1.98  christos 	struct proc *p = l->l_proc;
    320           1.93     enami 	struct ktr_desc *ktd;
    321           1.93     enami #ifdef DEBUG
    322          1.104    kardel 	struct timeval t1, t2;
    323           1.93     enami #endif
    324           1.93     enami 
    325          1.125        ad 	mutex_enter(&ktrace_lock);
    326          1.114        ad 
    327           1.93     enami 	if (p->p_traceflag & KTRFAC_TRC_EMUL) {
    328           1.93     enami 		/* Add emulation trace before first entry for this process */
    329           1.93     enami 		p->p_traceflag &= ~KTRFAC_TRC_EMUL;
    330          1.125        ad 		mutex_exit(&ktrace_lock);
    331          1.114        ad 		ktrexit(l);
    332          1.125        ad 		ktremul();
    333          1.114        ad 		(void)ktrenter(l);
    334          1.125        ad 		mutex_enter(&ktrace_lock);
    335           1.93     enami 	}
    336           1.93     enami 
    337          1.125        ad 	/* Tracing may have been cancelled. */
    338           1.93     enami 	ktd = p->p_tracep;
    339           1.93     enami 	if (ktd == NULL)
    340           1.93     enami 		goto freekte;
    341           1.93     enami 
    342           1.93     enami 	/*
    343           1.93     enami 	 * Bump reference count so that the object will remain while
    344           1.93     enami 	 * we are here.  Note that the trace is controlled by other
    345           1.93     enami 	 * process.
    346           1.93     enami 	 */
    347           1.93     enami 	ktdref(ktd);
    348           1.93     enami 
    349           1.93     enami 	if (ktd->ktd_flags & KTDF_DONE)
    350           1.93     enami 		goto relktd;
    351           1.93     enami 
    352           1.93     enami 	if (ktd->ktd_qcount > ktd_maxentry) {
    353           1.93     enami 		ktd_logerrl(ktd, KTDE_ENOSPC);
    354           1.93     enami 		goto relktd;
    355           1.93     enami 	}
    356           1.93     enami 	TAILQ_INSERT_TAIL(&ktd->ktd_queue, kte, kte_list);
    357           1.93     enami 	ktd->ktd_qcount++;
    358           1.93     enami 	if (ktd->ktd_flags & KTDF_BLOCKING)
    359           1.93     enami 		goto skip_sync;
    360           1.93     enami 
    361           1.93     enami 	if (flags & KTA_WAITOK &&
    362           1.93     enami 	    (/* flags & KTA_LARGE */0 || ktd->ktd_flags & KTDF_WAIT ||
    363           1.93     enami 	    ktd->ktd_qcount > ktd_maxentry >> 1))
    364           1.93     enami 		/*
    365           1.93     enami 		 * Sync with writer thread since we're requesting rather
    366           1.93     enami 		 * big one or many requests are pending.
    367           1.93     enami 		 */
    368           1.93     enami 		do {
    369           1.93     enami 			ktd->ktd_flags |= KTDF_WAIT;
    370           1.93     enami 			ktd_wakeup(ktd);
    371           1.93     enami #ifdef DEBUG
    372          1.104    kardel 			getmicrouptime(&t1);
    373           1.93     enami #endif
    374          1.125        ad 			if (cv_timedwait(&ktd->ktd_sync_cv, &ktrace_lock,
    375          1.114        ad 			    ktd_timeout * hz) != 0) {
    376           1.93     enami 				ktd->ktd_flags |= KTDF_BLOCKING;
    377           1.93     enami 				/*
    378           1.93     enami 				 * Maybe the writer thread is blocking
    379           1.93     enami 				 * completely for some reason, but
    380           1.93     enami 				 * don't stop target process forever.
    381           1.93     enami 				 */
    382           1.93     enami 				log(LOG_NOTICE, "ktrace timeout\n");
    383           1.93     enami 				break;
    384           1.93     enami 			}
    385           1.93     enami #ifdef DEBUG
    386          1.104    kardel 			getmicrouptime(&t2);
    387          1.104    kardel 			timersub(&t2, &t1, &t2);
    388          1.104    kardel 			if (t2.tv_sec > 0)
    389           1.93     enami 				log(LOG_NOTICE,
    390          1.148  christos 				    "ktrace long wait: %lld.%06ld\n",
    391          1.148  christos 				    (long long)t2.tv_sec, (long)t2.tv_usec);
    392           1.93     enami #endif
    393           1.93     enami 		} while (p->p_tracep == ktd &&
    394           1.93     enami 		    (ktd->ktd_flags & (KTDF_WAIT | KTDF_DONE)) == KTDF_WAIT);
    395           1.93     enami 	else {
    396           1.93     enami 		/* Schedule delayed wakeup */
    397           1.93     enami 		if (ktd->ktd_qcount > ktd->ktd_delayqcnt)
    398           1.93     enami 			ktd_wakeup(ktd);	/* Wakeup now */
    399           1.93     enami 		else if (!callout_pending(&ktd->ktd_wakch))
    400           1.93     enami 			callout_reset(&ktd->ktd_wakch,
    401           1.93     enami 			    ktd->ktd_flags & KTDF_INTERACTIVE ?
    402           1.93     enami 			    ktd->ktd_intrwakdl : ktd->ktd_wakedelay,
    403          1.121        ad 			    ktd_callout, ktd);
    404           1.93     enami 	}
    405           1.93     enami 
    406           1.93     enami skip_sync:
    407           1.93     enami 	ktdrel(ktd);
    408          1.125        ad 	mutex_exit(&ktrace_lock);
    409          1.114        ad 	ktrexit(l);
    410           1.93     enami 	return;
    411           1.93     enami 
    412           1.93     enami relktd:
    413           1.93     enami 	ktdrel(ktd);
    414           1.93     enami 
    415           1.93     enami freekte:
    416          1.125        ad 	mutex_exit(&ktrace_lock);
    417           1.93     enami 	ktefree(kte);
    418          1.114        ad 	ktrexit(l);
    419           1.93     enami }
    420           1.93     enami 
    421           1.93     enami void
    422           1.93     enami ktefree(struct ktrace_entry *kte)
    423           1.93     enami {
    424           1.93     enami 
    425          1.114        ad 	if (kte->kte_buf != kte->kte_space)
    426          1.114        ad 		kmem_free(kte->kte_buf, kte->kte_bufsz);
    427          1.145        ad 	pool_cache_put(kte_cache, kte);
    428           1.93     enami }
    429           1.44  sommerfe 
    430           1.44  sommerfe /*
    431           1.44  sommerfe  * "deep" compare of two files for the purposes of clearing a trace.
    432           1.44  sommerfe  * Returns true if they're the same open file, or if they point at the
    433           1.44  sommerfe  * same underlying vnode/socket.
    434           1.44  sommerfe  */
    435           1.44  sommerfe 
    436           1.44  sommerfe int
    437          1.140        ad ktrsamefile(file_t *f1, file_t *f2)
    438           1.44  sommerfe {
    439           1.88     enami 
    440           1.44  sommerfe 	return ((f1 == f2) ||
    441           1.45  sommerfe 	    ((f1 != NULL) && (f2 != NULL) &&
    442           1.45  sommerfe 		(f1->f_type == f2->f_type) &&
    443           1.44  sommerfe 		(f1->f_data == f2->f_data)));
    444           1.44  sommerfe }
    445           1.22  christos 
    446           1.28  christos void
    447           1.89     enami ktrderef(struct proc *p)
    448           1.28  christos {
    449           1.93     enami 	struct ktr_desc *ktd = p->p_tracep;
    450           1.93     enami 
    451          1.125        ad 	KASSERT(mutex_owned(&ktrace_lock));
    452          1.114        ad 
    453           1.42  sommerfe 	p->p_traceflag = 0;
    454           1.93     enami 	if (ktd == NULL)
    455           1.28  christos 		return;
    456           1.84       dsl 	p->p_tracep = NULL;
    457           1.84       dsl 
    458          1.114        ad 	cv_broadcast(&ktd->ktd_sync_cv);
    459           1.93     enami 	ktdrel(ktd);
    460           1.28  christos }
    461           1.28  christos 
    462           1.28  christos void
    463           1.89     enami ktradref(struct proc *p)
    464           1.28  christos {
    465           1.93     enami 	struct ktr_desc *ktd = p->p_tracep;
    466           1.28  christos 
    467          1.125        ad 	KASSERT(mutex_owned(&ktrace_lock));
    468          1.114        ad 
    469           1.93     enami 	ktdref(ktd);
    470           1.28  christos }
    471           1.28  christos 
    472          1.114        ad int
    473          1.114        ad ktrderefall(struct ktr_desc *ktd, int auth)
    474          1.114        ad {
    475          1.125        ad 	lwp_t *curl = curlwp;
    476          1.114        ad 	struct proc *p;
    477          1.114        ad 	int error = 0;
    478          1.114        ad 
    479          1.141        ad 	mutex_enter(proc_lock);
    480          1.114        ad 	PROCLIST_FOREACH(p, &allproc) {
    481          1.151      yamt 		if (p->p_tracep != ktd)
    482          1.114        ad 			continue;
    483          1.142        ad 		mutex_enter(p->p_lock);
    484          1.125        ad 		mutex_enter(&ktrace_lock);
    485          1.114        ad 		if (p->p_tracep == ktd) {
    486          1.114        ad 			if (!auth || ktrcanset(curl, p))
    487          1.114        ad 				ktrderef(p);
    488          1.114        ad 			else
    489          1.114        ad 				error = EPERM;
    490          1.114        ad 		}
    491          1.125        ad 		mutex_exit(&ktrace_lock);
    492          1.142        ad 		mutex_exit(p->p_lock);
    493          1.114        ad 	}
    494          1.141        ad 	mutex_exit(proc_lock);
    495          1.114        ad 
    496          1.114        ad 	return error;
    497          1.114        ad }
    498          1.114        ad 
    499          1.114        ad int
    500          1.125        ad ktealloc(struct ktrace_entry **ktep, void **bufp, lwp_t *l, int type,
    501          1.114        ad 	 size_t sz)
    502            1.1       cgd {
    503           1.98  christos 	struct proc *p = l->l_proc;
    504          1.114        ad 	struct ktrace_entry *kte;
    505          1.114        ad 	struct ktr_header *kth;
    506          1.114        ad 	void *buf;
    507          1.114        ad 
    508          1.114        ad 	if (ktrenter(l))
    509          1.114        ad 		return EAGAIN;
    510            1.1       cgd 
    511          1.145        ad 	kte = pool_cache_get(kte_cache, PR_WAITOK);
    512          1.114        ad 	if (sz > sizeof(kte->kte_space)) {
    513          1.114        ad 		if ((buf = kmem_alloc(sz, KM_SLEEP)) == NULL) {
    514          1.145        ad 			pool_cache_put(kte_cache, kte);
    515          1.114        ad 			ktrexit(l);
    516          1.114        ad 			return ENOMEM;
    517          1.114        ad 		}
    518          1.114        ad 	} else
    519          1.114        ad 		buf = kte->kte_space;
    520          1.114        ad 
    521          1.114        ad 	kte->kte_bufsz = sz;
    522          1.114        ad 	kte->kte_buf = buf;
    523          1.114        ad 
    524          1.114        ad 	kth = &kte->kte_kth;
    525           1.90  christos 	(void)memset(kth, 0, sizeof(*kth));
    526          1.114        ad 	kth->ktr_len = sz;
    527            1.1       cgd 	kth->ktr_type = type;
    528            1.1       cgd 	kth->ktr_pid = p->p_pid;
    529           1.32     perry 	memcpy(kth->ktr_comm, p->p_comm, MAXCOMLEN);
    530           1.98  christos 	kth->ktr_version = KTRFAC_VERSION(p->p_traceflag);
    531          1.154       chs 	kth->ktr_lid = l->l_lid;
    532          1.154       chs 	nanotime(&kth->ktr_ts);
    533          1.114        ad 
    534          1.114        ad 	*ktep = kte;
    535          1.114        ad 	*bufp = buf;
    536          1.114        ad 
    537          1.114        ad 	return 0;
    538            1.1       cgd }
    539            1.1       cgd 
    540           1.93     enami void
    541          1.138       dsl ktr_syscall(register_t code, const register_t args[], int narg)
    542            1.1       cgd {
    543          1.125        ad 	lwp_t *l = curlwp;
    544           1.98  christos 	struct proc *p = l->l_proc;
    545           1.93     enami 	struct ktrace_entry *kte;
    546           1.72   darrenr 	struct ktr_syscall *ktp;
    547           1.17       cgd 	register_t *argp;
    548           1.57      fvdl 	size_t len;
    549           1.60   thorpej 	u_int i;
    550           1.57      fvdl 
    551          1.125        ad 	if (!KTRPOINT(p, KTR_SYSCALL))
    552          1.125        ad 		return;
    553          1.125        ad 
    554          1.138       dsl 	len = sizeof(struct ktr_syscall) + narg * sizeof argp[0];
    555            1.1       cgd 
    556          1.114        ad 	if (ktealloc(&kte, (void *)&ktp, l, KTR_SYSCALL, len))
    557          1.114        ad 		return;
    558           1.93     enami 
    559          1.138       dsl 	ktp->ktr_code = code;
    560          1.138       dsl 	ktp->ktr_argsize = narg * sizeof argp[0];
    561           1.93     enami 	argp = (register_t *)(ktp + 1);
    562          1.138       dsl 	for (i = 0; i < narg; i++)
    563            1.1       cgd 		*argp++ = args[i];
    564           1.93     enami 
    565           1.98  christos 	ktraddentry(l, kte, KTA_WAITOK);
    566            1.1       cgd }
    567            1.1       cgd 
    568           1.93     enami void
    569          1.125        ad ktr_sysret(register_t code, int error, register_t *retval)
    570            1.1       cgd {
    571          1.125        ad 	lwp_t *l = curlwp;
    572           1.93     enami 	struct ktrace_entry *kte;
    573           1.93     enami 	struct ktr_sysret *ktp;
    574            1.1       cgd 
    575          1.125        ad 	if (!KTRPOINT(l->l_proc, KTR_SYSRET))
    576          1.125        ad 		return;
    577          1.125        ad 
    578          1.114        ad 	if (ktealloc(&kte, (void *)&ktp, l, KTR_SYSRET,
    579          1.114        ad 	    sizeof(struct ktr_sysret)))
    580          1.114        ad 		return;
    581           1.93     enami 
    582           1.93     enami 	ktp->ktr_code = code;
    583           1.93     enami 	ktp->ktr_eosys = 0;			/* XXX unused */
    584           1.93     enami 	ktp->ktr_error = error;
    585          1.159   mbalmer 	ktp->ktr_retval = retval && error == 0 ? retval[0] : 0;
    586          1.159   mbalmer 	ktp->ktr_retval_1 = retval && error == 0 ? retval[1] : 0;
    587            1.1       cgd 
    588           1.98  christos 	ktraddentry(l, kte, KTA_WAITOK);
    589            1.1       cgd }
    590            1.1       cgd 
    591           1.93     enami void
    592          1.125        ad ktr_namei(const char *path, size_t pathlen)
    593          1.122       dsl {
    594          1.125        ad 	lwp_t *l = curlwp;
    595          1.125        ad 
    596          1.125        ad 	if (!KTRPOINT(l->l_proc, KTR_NAMEI))
    597          1.125        ad 		return;
    598          1.125        ad 
    599          1.125        ad 	ktr_kmem(l, KTR_NAMEI, path, pathlen);
    600          1.122       dsl }
    601          1.122       dsl 
    602          1.122       dsl void
    603          1.125        ad ktr_namei2(const char *eroot, size_t erootlen,
    604          1.125        ad 	  const char *path, size_t pathlen)
    605            1.1       cgd {
    606          1.125        ad 	lwp_t *l = curlwp;
    607          1.122       dsl 	struct ktrace_entry *kte;
    608          1.122       dsl 	void *buf;
    609            1.1       cgd 
    610          1.125        ad 	if (!KTRPOINT(l->l_proc, KTR_NAMEI))
    611          1.125        ad 		return;
    612          1.125        ad 
    613          1.122       dsl 	if (ktealloc(&kte, &buf, l, KTR_NAMEI, erootlen + pathlen))
    614          1.122       dsl 		return;
    615          1.122       dsl 	memcpy(buf, eroot, erootlen);
    616          1.122       dsl 	buf = (char *)buf + erootlen;
    617          1.122       dsl 	memcpy(buf, path, pathlen);
    618          1.122       dsl 	ktraddentry(l, kte, KTA_WAITOK);
    619           1.18  christos }
    620           1.18  christos 
    621           1.93     enami void
    622          1.125        ad ktr_emul(void)
    623           1.18  christos {
    624          1.125        ad 	lwp_t *l = curlwp;
    625           1.98  christos 	const char *emul = l->l_proc->p_emul->e_name;
    626            1.1       cgd 
    627          1.125        ad 	if (!KTRPOINT(l->l_proc, KTR_EMUL))
    628          1.125        ad 		return;
    629          1.125        ad 
    630          1.125        ad 	ktr_kmem(l, KTR_EMUL, emul, strlen(emul));
    631            1.1       cgd }
    632            1.1       cgd 
    633           1.93     enami void
    634          1.125        ad ktr_execarg(const void *bf, size_t len)
    635          1.125        ad {
    636          1.125        ad 	lwp_t *l = curlwp;
    637          1.125        ad 
    638          1.125        ad 	if (!KTRPOINT(l->l_proc, KTR_EXEC_ARG))
    639          1.125        ad 		return;
    640          1.125        ad 
    641          1.125        ad 	ktr_kmem(l, KTR_EXEC_ARG, bf, len);
    642          1.125        ad }
    643          1.125        ad 
    644          1.125        ad void
    645          1.125        ad ktr_execenv(const void *bf, size_t len)
    646          1.125        ad {
    647          1.125        ad 	lwp_t *l = curlwp;
    648          1.125        ad 
    649          1.125        ad 	if (!KTRPOINT(l->l_proc, KTR_EXEC_ENV))
    650          1.125        ad 		return;
    651          1.125        ad 
    652          1.125        ad 	ktr_kmem(l, KTR_EXEC_ENV, bf, len);
    653          1.125        ad }
    654          1.125        ad 
    655          1.157     alnsn void
    656          1.157     alnsn ktr_execfd(int fd, u_int dtype)
    657          1.157     alnsn {
    658          1.157     alnsn 	struct ktrace_entry *kte;
    659          1.157     alnsn 	struct ktr_execfd* ktp;
    660          1.157     alnsn 
    661          1.157     alnsn 	lwp_t *l = curlwp;
    662          1.157     alnsn 
    663          1.157     alnsn 	if (!KTRPOINT(l->l_proc, KTR_EXEC_FD))
    664          1.157     alnsn 		return;
    665          1.157     alnsn 
    666          1.157     alnsn 	if (ktealloc(&kte, (void *)&ktp, l, KTR_EXEC_FD, sizeof(*ktp)))
    667          1.157     alnsn 		return;
    668          1.157     alnsn 
    669          1.157     alnsn 	ktp->ktr_fd = fd;
    670          1.157     alnsn 	ktp->ktr_dtype = dtype;
    671          1.157     alnsn 	ktraddentry(l, kte, KTA_WAITOK);
    672          1.157     alnsn }
    673          1.157     alnsn 
    674          1.125        ad static void
    675          1.125        ad ktr_kmem(lwp_t *l, int type, const void *bf, size_t len)
    676           1.75       dsl {
    677           1.93     enami 	struct ktrace_entry *kte;
    678          1.114        ad 	void *buf;
    679           1.75       dsl 
    680          1.114        ad 	if (ktealloc(&kte, &buf, l, type, len))
    681          1.114        ad 		return;
    682          1.114        ad 	memcpy(buf, bf, len);
    683           1.98  christos 	ktraddentry(l, kte, KTA_WAITOK);
    684           1.75       dsl }
    685           1.75       dsl 
    686          1.125        ad static void
    687          1.125        ad ktr_io(lwp_t *l, int fd, enum uio_rw rw, struct iovec *iov, size_t len)
    688            1.1       cgd {
    689           1.93     enami 	struct ktrace_entry *kte;
    690           1.28  christos 	struct ktr_genio *ktp;
    691          1.125        ad 	size_t resid = len, cnt, buflen;
    692          1.149       dsl 	char *cp;
    693           1.39   thorpej 
    694          1.114        ad  next:
    695           1.93     enami 	buflen = min(PAGE_SIZE, resid + sizeof(struct ktr_genio));
    696           1.39   thorpej 
    697          1.114        ad 	if (ktealloc(&kte, (void *)&ktp, l, KTR_GENIO, buflen))
    698          1.114        ad 		return;
    699           1.93     enami 
    700            1.1       cgd 	ktp->ktr_fd = fd;
    701            1.1       cgd 	ktp->ktr_rw = rw;
    702           1.39   thorpej 
    703          1.118  christos 	cp = (void *)(ktp + 1);
    704           1.39   thorpej 	buflen -= sizeof(struct ktr_genio);
    705          1.114        ad 	kte->kte_kth.ktr_len = sizeof(struct ktr_genio);
    706           1.93     enami 
    707           1.93     enami 	while (buflen > 0) {
    708           1.93     enami 		cnt = min(iov->iov_len, buflen);
    709           1.93     enami 		if (copyin(iov->iov_base, cp, cnt) != 0)
    710           1.93     enami 			goto out;
    711          1.114        ad 		kte->kte_kth.ktr_len += cnt;
    712          1.149       dsl 		cp += cnt;
    713           1.93     enami 		buflen -= cnt;
    714           1.93     enami 		resid -= cnt;
    715           1.93     enami 		iov->iov_len -= cnt;
    716           1.93     enami 		if (iov->iov_len == 0)
    717           1.93     enami 			iov++;
    718           1.93     enami 		else
    719          1.118  christos 			iov->iov_base = (char *)iov->iov_base + cnt;
    720           1.93     enami 	}
    721           1.39   thorpej 
    722           1.93     enami 	/*
    723           1.93     enami 	 * Don't push so many entry at once.  It will cause kmem map
    724           1.93     enami 	 * shortage.
    725           1.93     enami 	 */
    726           1.98  christos 	ktraddentry(l, kte, KTA_WAITOK | KTA_LARGE);
    727           1.93     enami 	if (resid > 0) {
    728          1.114        ad 		if (curcpu()->ci_schedstate.spc_flags & SPCF_SHOULDYIELD) {
    729          1.114        ad 			(void)ktrenter(l);
    730          1.114        ad 			preempt();
    731          1.114        ad 			ktrexit(l);
    732          1.114        ad 		}
    733           1.39   thorpej 
    734           1.93     enami 		goto next;
    735           1.93     enami 	}
    736           1.39   thorpej 
    737           1.93     enami 	return;
    738           1.39   thorpej 
    739           1.93     enami out:
    740           1.93     enami 	ktefree(kte);
    741          1.114        ad 	ktrexit(l);
    742            1.1       cgd }
    743            1.1       cgd 
    744           1.93     enami void
    745          1.125        ad ktr_genio(int fd, enum uio_rw rw, const void *addr, size_t len, int error)
    746          1.125        ad {
    747          1.125        ad 	lwp_t *l = curlwp;
    748          1.125        ad 	struct iovec iov;
    749          1.125        ad 
    750          1.125        ad 	if (!KTRPOINT(l->l_proc, KTR_GENIO) || error != 0)
    751          1.125        ad 		return;
    752          1.125        ad 	iov.iov_base = __UNCONST(addr);
    753          1.125        ad 	iov.iov_len = len;
    754          1.125        ad 	ktr_io(l, fd, rw, &iov, len);
    755          1.125        ad }
    756          1.125        ad 
    757          1.125        ad void
    758          1.125        ad ktr_geniov(int fd, enum uio_rw rw, struct iovec *iov, size_t len, int error)
    759          1.125        ad {
    760          1.125        ad 	lwp_t *l = curlwp;
    761          1.125        ad 
    762          1.125        ad 	if (!KTRPOINT(l->l_proc, KTR_GENIO) || error != 0)
    763          1.125        ad 		return;
    764          1.125        ad 	ktr_io(l, fd, rw, iov, len);
    765          1.125        ad }
    766          1.125        ad 
    767          1.125        ad void
    768          1.125        ad ktr_mibio(int fd, enum uio_rw rw, const void *addr, size_t len, int error)
    769          1.125        ad {
    770          1.125        ad 	lwp_t *l = curlwp;
    771          1.125        ad 	struct iovec iov;
    772          1.125        ad 
    773          1.125        ad 	if (!KTRPOINT(l->l_proc, KTR_MIB) || error != 0)
    774          1.125        ad 		return;
    775          1.125        ad 	iov.iov_base = __UNCONST(addr);
    776          1.125        ad 	iov.iov_len = len;
    777          1.125        ad 	ktr_io(l, fd, rw, &iov, len);
    778          1.125        ad }
    779          1.125        ad 
    780          1.125        ad void
    781          1.125        ad ktr_psig(int sig, sig_t action, const sigset_t *mask,
    782          1.125        ad 	 const ksiginfo_t *ksi)
    783            1.1       cgd {
    784           1.93     enami 	struct ktrace_entry *kte;
    785          1.125        ad 	lwp_t *l = curlwp;
    786           1.78  christos 	struct {
    787           1.78  christos 		struct ktr_psig	kp;
    788           1.78  christos 		siginfo_t	si;
    789           1.93     enami 	} *kbuf;
    790            1.1       cgd 
    791          1.125        ad 	if (!KTRPOINT(l->l_proc, KTR_PSIG))
    792          1.125        ad 		return;
    793          1.125        ad 
    794          1.114        ad 	if (ktealloc(&kte, (void *)&kbuf, l, KTR_PSIG, sizeof(*kbuf)))
    795          1.114        ad 		return;
    796           1.93     enami 
    797           1.93     enami 	kbuf->kp.signo = (char)sig;
    798           1.93     enami 	kbuf->kp.action = action;
    799           1.93     enami 	kbuf->kp.mask = *mask;
    800          1.114        ad 
    801           1.78  christos 	if (ksi) {
    802           1.93     enami 		kbuf->kp.code = KSI_TRAPCODE(ksi);
    803           1.93     enami 		(void)memset(&kbuf->si, 0, sizeof(kbuf->si));
    804           1.93     enami 		kbuf->si._info = ksi->ksi_info;
    805          1.114        ad 		kte->kte_kth.ktr_len = sizeof(*kbuf);
    806           1.78  christos 	} else {
    807           1.93     enami 		kbuf->kp.code = 0;
    808          1.114        ad 		kte->kte_kth.ktr_len = sizeof(struct ktr_psig);
    809           1.78  christos 	}
    810           1.93     enami 
    811           1.98  christos 	ktraddentry(l, kte, KTA_WAITOK);
    812            1.9       cgd }
    813            1.9       cgd 
    814           1.93     enami void
    815          1.125        ad ktr_csw(int out, int user)
    816            1.9       cgd {
    817          1.125        ad 	lwp_t *l = curlwp;
    818           1.98  christos 	struct proc *p = l->l_proc;
    819           1.93     enami 	struct ktrace_entry *kte;
    820           1.93     enami 	struct ktr_csw *kc;
    821            1.9       cgd 
    822          1.125        ad 	if (!KTRPOINT(p, KTR_CSW))
    823          1.125        ad 		return;
    824          1.125        ad 
    825          1.114        ad 	/*
    826          1.114        ad 	 * Don't record context switches resulting from blocking on
    827          1.114        ad 	 * locks; it's too easy to get duff results.
    828          1.114        ad 	 */
    829          1.117      yamt 	if (l->l_syncobj == &mutex_syncobj || l->l_syncobj == &rw_syncobj)
    830          1.114        ad 		return;
    831            1.9       cgd 
    832           1.93     enami 	/*
    833           1.93     enami 	 * We can't sleep if we're already going to sleep (if original
    834           1.93     enami 	 * condition is met during sleep, we hang up).
    835          1.114        ad 	 *
    836          1.114        ad 	 * XXX This is not ideal: it would be better to maintain a pool
    837          1.114        ad 	 * of ktes and actually push this to the kthread when context
    838          1.114        ad 	 * switch happens, however given the points where we are called
    839          1.114        ad 	 * from that is difficult to do.
    840           1.93     enami 	 */
    841          1.114        ad 	if (out) {
    842          1.114        ad 		if (ktrenter(l))
    843          1.114        ad 			return;
    844          1.114        ad 
    845          1.148  christos 		nanotime(&l->l_ktrcsw);
    846          1.148  christos 		l->l_pflag |= LP_KTRCSW;
    847          1.114        ad 		if (user)
    848          1.114        ad 			l->l_pflag |= LP_KTRCSWUSER;
    849          1.114        ad 		else
    850          1.114        ad 			l->l_pflag &= ~LP_KTRCSWUSER;
    851          1.114        ad 
    852          1.114        ad 		ktrexit(l);
    853          1.114        ad 		return;
    854           1.93     enami 	}
    855           1.93     enami 
    856          1.114        ad 	/*
    857          1.114        ad 	 * On the way back in, we need to record twice: once for entry, and
    858          1.114        ad 	 * once for exit.
    859          1.114        ad 	 */
    860          1.114        ad 	if ((l->l_pflag & LP_KTRCSW) != 0) {
    861          1.148  christos 		struct timespec *ts;
    862          1.114        ad 		l->l_pflag &= ~LP_KTRCSW;
    863          1.114        ad 
    864          1.114        ad 		if (ktealloc(&kte, (void *)&kc, l, KTR_CSW, sizeof(*kc)))
    865          1.114        ad 			return;
    866          1.114        ad 
    867          1.114        ad 		kc->out = 1;
    868          1.114        ad 		kc->user = ((l->l_pflag & LP_KTRCSWUSER) != 0);
    869          1.114        ad 
    870          1.148  christos 		ts = &l->l_ktrcsw;
    871          1.114        ad 		switch (KTRFAC_VERSION(p->p_traceflag)) {
    872          1.114        ad 		case 0:
    873          1.148  christos 			kte->kte_kth.ktr_otv.tv_sec = ts->tv_sec;
    874          1.148  christos 			kte->kte_kth.ktr_otv.tv_usec = ts->tv_nsec / 1000;
    875          1.114        ad 			break;
    876          1.148  christos 		case 1:
    877          1.148  christos 			kte->kte_kth.ktr_ots.tv_sec = ts->tv_sec;
    878          1.148  christos 			kte->kte_kth.ktr_ots.tv_nsec = ts->tv_nsec;
    879          1.148  christos 			break;
    880          1.148  christos 		case 2:
    881          1.148  christos 			kte->kte_kth.ktr_ts.tv_sec = ts->tv_sec;
    882          1.148  christos 			kte->kte_kth.ktr_ts.tv_nsec = ts->tv_nsec;
    883          1.148  christos 			break;
    884          1.114        ad 		default:
    885          1.148  christos 			break;
    886          1.114        ad 		}
    887          1.114        ad 
    888          1.114        ad 		ktraddentry(l, kte, KTA_WAITOK);
    889           1.93     enami 	}
    890          1.114        ad 
    891          1.114        ad 	if (ktealloc(&kte, (void *)&kc, l, KTR_CSW, sizeof(*kc)))
    892          1.114        ad 		return;
    893          1.114        ad 
    894          1.114        ad 	kc->out = 0;
    895           1.93     enami 	kc->user = user;
    896           1.93     enami 
    897          1.114        ad 	ktraddentry(l, kte, KTA_WAITOK);
    898            1.1       cgd }
    899            1.1       cgd 
    900          1.125        ad bool
    901          1.126       dsl ktr_point(int fac_bit)
    902          1.125        ad {
    903          1.126       dsl 	return curlwp->l_proc->p_traceflag & fac_bit;
    904          1.125        ad }
    905          1.125        ad 
    906          1.110  christos int
    907          1.125        ad ktruser(const char *id, void *addr, size_t len, int ustr)
    908           1.51  jdolecek {
    909           1.93     enami 	struct ktrace_entry *kte;
    910           1.51  jdolecek 	struct ktr_user *ktp;
    911          1.125        ad 	lwp_t *l = curlwp;
    912          1.118  christos 	void *user_dta;
    913          1.110  christos 	int error;
    914          1.110  christos 
    915          1.125        ad 	if (!KTRPOINT(l->l_proc, KTR_USER))
    916          1.125        ad 		return 0;
    917          1.125        ad 
    918          1.110  christos 	if (len > KTR_USER_MAXLEN)
    919          1.110  christos 		return ENOSPC;
    920           1.51  jdolecek 
    921          1.114        ad 	error = ktealloc(&kte, (void *)&ktp, l, KTR_USER, sizeof(*ktp) + len);
    922          1.114        ad 	if (error != 0)
    923          1.114        ad 		return error;
    924           1.93     enami 
    925           1.51  jdolecek 	if (ustr) {
    926           1.51  jdolecek 		if (copyinstr(id, ktp->ktr_id, KTR_USER_MAXIDLEN, NULL) != 0)
    927           1.51  jdolecek 			ktp->ktr_id[0] = '\0';
    928           1.51  jdolecek 	} else
    929           1.51  jdolecek 		strncpy(ktp->ktr_id, id, KTR_USER_MAXIDLEN);
    930           1.51  jdolecek 	ktp->ktr_id[KTR_USER_MAXIDLEN-1] = '\0';
    931           1.51  jdolecek 
    932          1.118  christos 	user_dta = (void *)(ktp + 1);
    933          1.110  christos 	if ((error = copyin(addr, (void *)user_dta, len)) != 0)
    934  1.164.4.1.2.1       snj 		kte->kte_kth.ktr_len = 0;
    935           1.51  jdolecek 
    936           1.98  christos 	ktraddentry(l, kte, KTA_WAITOK);
    937          1.110  christos 	return error;
    938           1.51  jdolecek }
    939           1.51  jdolecek 
    940           1.93     enami void
    941          1.125        ad ktr_kuser(const char *id, void *addr, size_t len)
    942          1.123       dsl {
    943          1.123       dsl 	struct ktrace_entry *kte;
    944          1.123       dsl 	struct ktr_user *ktp;
    945          1.125        ad 	lwp_t *l = curlwp;
    946          1.123       dsl 	int error;
    947          1.123       dsl 
    948          1.125        ad 	if (!KTRPOINT(l->l_proc, KTR_USER))
    949          1.125        ad 		return;
    950          1.125        ad 
    951          1.123       dsl 	if (len > KTR_USER_MAXLEN)
    952          1.123       dsl 		return;
    953          1.123       dsl 
    954          1.123       dsl 	error = ktealloc(&kte, (void *)&ktp, l, KTR_USER, sizeof(*ktp) + len);
    955          1.123       dsl 	if (error != 0)
    956          1.123       dsl 		return;
    957          1.123       dsl 
    958          1.123       dsl 	strlcpy(ktp->ktr_id, id, KTR_USER_MAXIDLEN);
    959          1.123       dsl 
    960          1.123       dsl 	memcpy(ktp + 1, addr, len);
    961          1.123       dsl 
    962          1.123       dsl 	ktraddentry(l, kte, KTA_WAITOK);
    963          1.123       dsl }
    964          1.123       dsl 
    965          1.123       dsl void
    966          1.125        ad ktr_mib(const int *name, u_int namelen)
    967           1.98  christos {
    968           1.98  christos 	struct ktrace_entry *kte;
    969          1.106      manu 	int *namep;
    970          1.106      manu 	size_t size;
    971          1.125        ad 	lwp_t *l = curlwp;
    972          1.125        ad 
    973          1.125        ad 	if (!KTRPOINT(l->l_proc, KTR_MIB))
    974          1.125        ad 		return;
    975          1.106      manu 
    976          1.114        ad 	size = namelen * sizeof(*name);
    977          1.114        ad 
    978          1.114        ad 	if (ktealloc(&kte, (void *)&namep, l, KTR_MIB, size))
    979          1.114        ad 		return;
    980          1.106      manu 
    981          1.106      manu 	(void)memcpy(namep, name, namelen * sizeof(*name));
    982          1.106      manu 
    983          1.106      manu 	ktraddentry(l, kte, KTA_WAITOK);
    984          1.106      manu }
    985          1.106      manu 
    986            1.1       cgd /* Interface and common routines */
    987            1.1       cgd 
    988           1.17       cgd int
    989          1.160  christos ktrace_common(lwp_t *curl, int ops, int facs, int pid, file_t **fpp)
    990           1.28  christos {
    991           1.93     enami 	struct proc *p;
    992           1.93     enami 	struct pgrp *pg;
    993           1.93     enami 	struct ktr_desc *ktd = NULL;
    994          1.160  christos 	file_t *fp = *fpp;
    995           1.74      fvdl 	int ret = 0;
    996           1.72   darrenr 	int error = 0;
    997           1.42  sommerfe 	int descend;
    998           1.28  christos 
    999           1.42  sommerfe 	descend = ops & KTRFLAG_DESCEND;
   1000          1.136      elad 	facs = facs & ~((unsigned) KTRFAC_PERSISTENT);
   1001           1.28  christos 
   1002          1.114        ad 	(void)ktrenter(curl);
   1003          1.114        ad 
   1004           1.93     enami 	switch (KTROP(ops)) {
   1005           1.93     enami 
   1006           1.93     enami 	case KTROP_CLEARFILE:
   1007           1.93     enami 		/*
   1008           1.93     enami 		 * Clear all uses of the tracefile
   1009           1.93     enami 		 */
   1010          1.125        ad 		mutex_enter(&ktrace_lock);
   1011           1.93     enami 		ktd = ktd_lookup(fp);
   1012          1.125        ad 		mutex_exit(&ktrace_lock);
   1013           1.93     enami 		if (ktd == NULL)
   1014           1.93     enami 			goto done;
   1015          1.114        ad 		error = ktrderefall(ktd, 1);
   1016           1.28  christos 		goto done;
   1017           1.42  sommerfe 
   1018           1.93     enami 	case KTROP_SET:
   1019          1.125        ad 		mutex_enter(&ktrace_lock);
   1020           1.93     enami 		ktd = ktd_lookup(fp);
   1021          1.125        ad 		mutex_exit(&ktrace_lock);
   1022           1.93     enami 		if (ktd == NULL) {
   1023          1.114        ad 			ktd = kmem_alloc(sizeof(*ktd), KM_SLEEP);
   1024           1.93     enami 			TAILQ_INIT(&ktd->ktd_queue);
   1025          1.133        ad 			callout_init(&ktd->ktd_wakch, CALLOUT_MPSAFE);
   1026          1.114        ad 			cv_init(&ktd->ktd_cv, "ktrwait");
   1027          1.114        ad 			cv_init(&ktd->ktd_sync_cv, "ktrsync");
   1028          1.125        ad 			ktd->ktd_flags = 0;
   1029          1.125        ad 			ktd->ktd_qcount = 0;
   1030          1.125        ad 			ktd->ktd_error = 0;
   1031          1.125        ad 			ktd->ktd_errcnt = 0;
   1032           1.93     enami 			ktd->ktd_delayqcnt = ktd_delayqcnt;
   1033           1.93     enami 			ktd->ktd_wakedelay = mstohz(ktd_wakedelay);
   1034           1.93     enami 			ktd->ktd_intrwakdl = mstohz(ktd_intrwakdl);
   1035          1.125        ad 			ktd->ktd_ref = 0;
   1036          1.140        ad 			ktd->ktd_fp = fp;
   1037          1.125        ad 			mutex_enter(&ktrace_lock);
   1038          1.125        ad 			ktdref(ktd);
   1039          1.125        ad 			mutex_exit(&ktrace_lock);
   1040          1.125        ad 
   1041           1.93     enami 			/*
   1042           1.93     enami 			 * XXX: not correct.  needs an way to detect
   1043           1.93     enami 			 * whether ktruss or ktrace.
   1044           1.93     enami 			 */
   1045           1.93     enami 			if (fp->f_type == DTYPE_PIPE)
   1046           1.93     enami 				ktd->ktd_flags |= KTDF_INTERACTIVE;
   1047           1.93     enami 
   1048          1.140        ad 			mutex_enter(&fp->f_lock);
   1049          1.140        ad 			fp->f_count++;
   1050          1.140        ad 			mutex_exit(&fp->f_lock);
   1051          1.133        ad 			error = kthread_create(PRI_NONE, KTHREAD_MPSAFE, NULL,
   1052          1.124        ad 			    ktrace_thread, ktd, &ktd->ktd_lwp, "ktrace");
   1053           1.93     enami 			if (error != 0) {
   1054          1.114        ad 				kmem_free(ktd, sizeof(*ktd));
   1055          1.160  christos 				ktd = NULL;
   1056          1.140        ad 				mutex_enter(&fp->f_lock);
   1057          1.140        ad 				fp->f_count--;
   1058          1.140        ad 				mutex_exit(&fp->f_lock);
   1059           1.93     enami 				goto done;
   1060           1.93     enami 			}
   1061           1.93     enami 
   1062          1.125        ad 			mutex_enter(&ktrace_lock);
   1063          1.114        ad 			if (ktd_lookup(fp) != NULL) {
   1064          1.114        ad 				ktdrel(ktd);
   1065          1.114        ad 				ktd = NULL;
   1066          1.114        ad 			} else
   1067          1.114        ad 				TAILQ_INSERT_TAIL(&ktdq, ktd, ktd_list);
   1068          1.124        ad 			if (ktd == NULL)
   1069          1.125        ad 				cv_wait(&lbolt, &ktrace_lock);
   1070          1.125        ad 			mutex_exit(&ktrace_lock);
   1071          1.124        ad 			if (ktd == NULL)
   1072          1.114        ad 				goto done;
   1073           1.93     enami 		}
   1074           1.93     enami 		break;
   1075           1.42  sommerfe 
   1076           1.93     enami 	case KTROP_CLEAR:
   1077           1.93     enami 		break;
   1078           1.43  sommerfe 	}
   1079           1.88     enami 
   1080           1.28  christos 	/*
   1081           1.28  christos 	 * need something to (un)trace (XXX - why is this here?)
   1082           1.28  christos 	 */
   1083           1.28  christos 	if (!facs) {
   1084           1.28  christos 		error = EINVAL;
   1085          1.160  christos 		*fpp = NULL;
   1086           1.28  christos 		goto done;
   1087           1.28  christos 	}
   1088           1.93     enami 
   1089           1.88     enami 	/*
   1090           1.28  christos 	 * do it
   1091           1.28  christos 	 */
   1092          1.141        ad 	mutex_enter(proc_lock);
   1093           1.42  sommerfe 	if (pid < 0) {
   1094           1.28  christos 		/*
   1095           1.28  christos 		 * by process group
   1096           1.28  christos 		 */
   1097          1.153     rmind 		pg = pgrp_find(-pid);
   1098          1.114        ad 		if (pg == NULL)
   1099           1.28  christos 			error = ESRCH;
   1100          1.114        ad 		else {
   1101          1.114        ad 			LIST_FOREACH(p, &pg->pg_members, p_pglist) {
   1102          1.114        ad 				if (descend)
   1103          1.114        ad 					ret |= ktrsetchildren(curl, p, ops,
   1104          1.114        ad 					    facs, ktd);
   1105          1.114        ad 				else
   1106          1.114        ad 					ret |= ktrops(curl, p, ops, facs,
   1107          1.114        ad 					    ktd);
   1108          1.114        ad 			}
   1109           1.39   thorpej 		}
   1110           1.88     enami 
   1111           1.28  christos 	} else {
   1112           1.28  christos 		/*
   1113           1.28  christos 		 * by pid
   1114           1.28  christos 		 */
   1115          1.153     rmind 		p = proc_find(pid);
   1116          1.114        ad 		if (p == NULL)
   1117           1.28  christos 			error = ESRCH;
   1118          1.114        ad 		else if (descend)
   1119          1.105        ad 			ret |= ktrsetchildren(curl, p, ops, facs, ktd);
   1120           1.28  christos 		else
   1121          1.105        ad 			ret |= ktrops(curl, p, ops, facs, ktd);
   1122           1.28  christos 	}
   1123          1.141        ad 	mutex_exit(proc_lock);
   1124          1.114        ad 	if (error == 0 && !ret)
   1125           1.28  christos 		error = EPERM;
   1126          1.160  christos 	*fpp = NULL;
   1127           1.28  christos done:
   1128           1.96  christos 	if (ktd != NULL) {
   1129          1.125        ad 		mutex_enter(&ktrace_lock);
   1130           1.96  christos 		if (error != 0) {
   1131           1.96  christos 			/*
   1132           1.96  christos 			 * Wakeup the thread so that it can be die if we
   1133           1.96  christos 			 * can't trace any process.
   1134           1.96  christos 			 */
   1135           1.96  christos 			ktd_wakeup(ktd);
   1136           1.96  christos 		}
   1137          1.121        ad 		if (KTROP(ops) == KTROP_SET || KTROP(ops) == KTROP_CLEARFILE)
   1138          1.114        ad 			ktdrel(ktd);
   1139          1.125        ad 		mutex_exit(&ktrace_lock);
   1140           1.93     enami 	}
   1141          1.114        ad 	ktrexit(curl);
   1142           1.28  christos 	return (error);
   1143           1.28  christos }
   1144           1.28  christos 
   1145           1.28  christos /*
   1146           1.93     enami  * fktrace system call
   1147           1.28  christos  */
   1148           1.28  christos /* ARGSUSED */
   1149           1.28  christos int
   1150          1.131       dsl sys_fktrace(struct lwp *l, const struct sys_fktrace_args *uap, register_t *retval)
   1151           1.42  sommerfe {
   1152          1.131       dsl 	/* {
   1153           1.42  sommerfe 		syscallarg(int) fd;
   1154           1.42  sommerfe 		syscallarg(int) ops;
   1155           1.42  sommerfe 		syscallarg(int) facs;
   1156           1.42  sommerfe 		syscallarg(int) pid;
   1157          1.131       dsl 	} */
   1158          1.140        ad 	file_t *fp;
   1159          1.140        ad 	int error, fd;
   1160           1.42  sommerfe 
   1161          1.140        ad 	fd = SCARG(uap, fd);
   1162          1.140        ad 	if ((fp = fd_getfile(fd)) == NULL)
   1163           1.54   thorpej 		return (EBADF);
   1164           1.54   thorpej 	if ((fp->f_flag & FWRITE) == 0)
   1165           1.70      yamt 		error = EBADF;
   1166           1.70      yamt 	else
   1167          1.105        ad 		error = ktrace_common(l, SCARG(uap, ops),
   1168          1.160  christos 		    SCARG(uap, facs), SCARG(uap, pid), &fp);
   1169          1.140        ad 	fd_putfile(fd);
   1170           1.70      yamt 	return error;
   1171           1.42  sommerfe }
   1172           1.42  sommerfe 
   1173            1.4    andrew int
   1174          1.125        ad ktrops(lwp_t *curl, struct proc *p, int ops, int facs,
   1175           1.93     enami     struct ktr_desc *ktd)
   1176            1.1       cgd {
   1177           1.98  christos 	int vers = ops & KTRFAC_VER_MASK;
   1178          1.114        ad 	int error = 0;
   1179          1.114        ad 
   1180          1.142        ad 	mutex_enter(p->p_lock);
   1181          1.125        ad 	mutex_enter(&ktrace_lock);
   1182           1.98  christos 
   1183          1.105        ad 	if (!ktrcanset(curl, p))
   1184          1.114        ad 		goto out;
   1185           1.98  christos 
   1186           1.98  christos 	switch (vers) {
   1187           1.98  christos 	case KTRFACv0:
   1188           1.98  christos 	case KTRFACv1:
   1189          1.148  christos 	case KTRFACv2:
   1190           1.98  christos 		break;
   1191           1.98  christos 	default:
   1192          1.114        ad 		error = EINVAL;
   1193          1.114        ad 		goto out;
   1194           1.98  christos 	}
   1195           1.98  christos 
   1196           1.28  christos 	if (KTROP(ops) == KTROP_SET) {
   1197           1.93     enami 		if (p->p_tracep != ktd) {
   1198            1.1       cgd 			/*
   1199            1.1       cgd 			 * if trace file already in use, relinquish
   1200            1.1       cgd 			 */
   1201           1.28  christos 			ktrderef(p);
   1202           1.93     enami 			p->p_tracep = ktd;
   1203           1.28  christos 			ktradref(p);
   1204            1.1       cgd 		}
   1205            1.1       cgd 		p->p_traceflag |= facs;
   1206          1.137      elad 		if (kauth_authorize_process(curl->l_cred, KAUTH_PROCESS_KTRACE,
   1207          1.137      elad 		    p, KAUTH_ARG(KAUTH_REQ_PROCESS_KTRACE_PERSISTENT), NULL,
   1208          1.137      elad 		    NULL) == 0)
   1209          1.136      elad 			p->p_traceflag |= KTRFAC_PERSISTENT;
   1210           1.88     enami 	} else {
   1211            1.1       cgd 		/* KTROP_CLEAR */
   1212            1.1       cgd 		if (((p->p_traceflag &= ~facs) & KTRFAC_MASK) == 0) {
   1213            1.1       cgd 			/* no more tracing */
   1214           1.28  christos 			ktrderef(p);
   1215            1.1       cgd 		}
   1216            1.1       cgd 	}
   1217           1.21  christos 
   1218           1.98  christos 	if (p->p_traceflag)
   1219           1.98  christos 		p->p_traceflag |= vers;
   1220           1.21  christos 	/*
   1221           1.21  christos 	 * Emit an emulation record, every time there is a ktrace
   1222           1.88     enami 	 * change/attach request.
   1223           1.21  christos 	 */
   1224           1.21  christos 	if (KTRPOINT(p, KTR_EMUL))
   1225           1.84       dsl 		p->p_traceflag |= KTRFAC_TRC_EMUL;
   1226          1.139       dsl 
   1227          1.139       dsl 	p->p_trace_enabled = trace_is_enabled(p);
   1228           1.49    martin #ifdef __HAVE_SYSCALL_INTERN
   1229           1.48   mycroft 	(*p->p_emul->e_syscall_intern)(p);
   1230           1.49    martin #endif
   1231            1.1       cgd 
   1232          1.114        ad  out:
   1233          1.125        ad  	mutex_exit(&ktrace_lock);
   1234          1.142        ad  	mutex_exit(p->p_lock);
   1235          1.114        ad 
   1236          1.163    martin 	return error ? 0 : 1;
   1237            1.1       cgd }
   1238            1.1       cgd 
   1239           1.22  christos int
   1240          1.125        ad ktrsetchildren(lwp_t *curl, struct proc *top, int ops, int facs,
   1241           1.93     enami     struct ktr_desc *ktd)
   1242            1.1       cgd {
   1243           1.28  christos 	struct proc *p;
   1244           1.28  christos 	int ret = 0;
   1245            1.1       cgd 
   1246          1.141        ad 	KASSERT(mutex_owned(proc_lock));
   1247          1.114        ad 
   1248            1.1       cgd 	p = top;
   1249            1.1       cgd 	for (;;) {
   1250          1.105        ad 		ret |= ktrops(curl, p, ops, facs, ktd);
   1251            1.1       cgd 		/*
   1252            1.1       cgd 		 * If this process has children, descend to them next,
   1253            1.1       cgd 		 * otherwise do any siblings, and if done with this level,
   1254            1.1       cgd 		 * follow back up the tree (but not past top).
   1255            1.1       cgd 		 */
   1256           1.82       dsl 		if (LIST_FIRST(&p->p_children) != NULL) {
   1257           1.39   thorpej 			p = LIST_FIRST(&p->p_children);
   1258           1.82       dsl 			continue;
   1259           1.82       dsl 		}
   1260           1.82       dsl 		for (;;) {
   1261            1.1       cgd 			if (p == top)
   1262            1.1       cgd 				return (ret);
   1263           1.39   thorpej 			if (LIST_NEXT(p, p_sibling) != NULL) {
   1264           1.39   thorpej 				p = LIST_NEXT(p, p_sibling);
   1265            1.1       cgd 				break;
   1266            1.1       cgd 			}
   1267           1.12   mycroft 			p = p->p_pptr;
   1268            1.1       cgd 		}
   1269            1.1       cgd 	}
   1270            1.1       cgd 	/*NOTREACHED*/
   1271            1.1       cgd }
   1272            1.1       cgd 
   1273           1.93     enami void
   1274           1.93     enami ktrwrite(struct ktr_desc *ktd, struct ktrace_entry *kte)
   1275            1.1       cgd {
   1276          1.148  christos 	size_t hlen;
   1277           1.74      fvdl 	struct uio auio;
   1278           1.93     enami 	struct iovec aiov[64], *iov;
   1279           1.93     enami 	struct ktrace_entry *top = kte;
   1280           1.93     enami 	struct ktr_header *kth;
   1281          1.140        ad 	file_t *fp = ktd->ktd_fp;
   1282           1.93     enami 	int error;
   1283           1.93     enami next:
   1284           1.93     enami 	auio.uio_iov = iov = &aiov[0];
   1285            1.1       cgd 	auio.uio_offset = 0;
   1286            1.1       cgd 	auio.uio_rw = UIO_WRITE;
   1287           1.93     enami 	auio.uio_resid = 0;
   1288           1.93     enami 	auio.uio_iovcnt = 0;
   1289          1.101      yamt 	UIO_SETUP_SYSSPACE(&auio);
   1290           1.93     enami 	do {
   1291          1.148  christos 		struct timespec ts;
   1292          1.148  christos 		lwpid_t lid;
   1293           1.93     enami 		kth = &kte->kte_kth;
   1294           1.98  christos 
   1295          1.148  christos 		hlen = sizeof(struct ktr_header);
   1296          1.148  christos 		switch (kth->ktr_version) {
   1297          1.148  christos 		case 0:
   1298          1.148  christos 			ts = kth->ktr_time;
   1299          1.148  christos 
   1300          1.148  christos 			kth->ktr_otv.tv_sec = ts.tv_sec;
   1301          1.148  christos 			kth->ktr_otv.tv_usec = ts.tv_nsec / 1000;
   1302           1.98  christos 			kth->ktr_unused = NULL;
   1303          1.148  christos 			hlen -= sizeof(kth->_v) -
   1304          1.148  christos 			    MAX(sizeof(kth->_v._v0), sizeof(kth->_v._v1));
   1305          1.148  christos 			break;
   1306          1.148  christos 		case 1:
   1307          1.148  christos 			ts = kth->ktr_time;
   1308          1.148  christos 			lid = kth->ktr_lid;
   1309          1.148  christos 
   1310          1.148  christos 			kth->ktr_ots.tv_sec = ts.tv_sec;
   1311          1.148  christos 			kth->ktr_ots.tv_nsec = ts.tv_nsec;
   1312          1.148  christos 			kth->ktr_olid = lid;
   1313          1.148  christos 			hlen -= sizeof(kth->_v) -
   1314          1.148  christos 			    MAX(sizeof(kth->_v._v0), sizeof(kth->_v._v1));
   1315          1.148  christos 			break;
   1316           1.98  christos 		}
   1317          1.118  christos 		iov->iov_base = (void *)kth;
   1318          1.148  christos 		iov++->iov_len = hlen;
   1319          1.148  christos 		auio.uio_resid += hlen;
   1320            1.1       cgd 		auio.uio_iovcnt++;
   1321           1.93     enami 		if (kth->ktr_len > 0) {
   1322           1.93     enami 			iov->iov_base = kte->kte_buf;
   1323           1.93     enami 			iov++->iov_len = kth->ktr_len;
   1324           1.93     enami 			auio.uio_resid += kth->ktr_len;
   1325           1.93     enami 			auio.uio_iovcnt++;
   1326           1.93     enami 		}
   1327           1.93     enami 	} while ((kte = TAILQ_NEXT(kte, kte_list)) != NULL &&
   1328           1.93     enami 	    auio.uio_iovcnt < sizeof(aiov) / sizeof(aiov[0]) - 1);
   1329           1.93     enami 
   1330           1.93     enami again:
   1331           1.93     enami 	error = (*fp->f_ops->fo_write)(fp, &fp->f_offset, &auio,
   1332           1.93     enami 	    fp->f_cred, FOF_UPDATE_OFFSET);
   1333           1.93     enami 	switch (error) {
   1334           1.93     enami 
   1335           1.93     enami 	case 0:
   1336           1.93     enami 		if (auio.uio_resid > 0)
   1337           1.93     enami 			goto again;
   1338           1.93     enami 		if (kte != NULL)
   1339           1.93     enami 			goto next;
   1340           1.93     enami 		break;
   1341           1.93     enami 
   1342           1.93     enami 	case EWOULDBLOCK:
   1343          1.116   thorpej 		kpause("ktrzzz", false, 1, NULL);
   1344           1.93     enami 		goto again;
   1345           1.93     enami 
   1346           1.93     enami 	default:
   1347           1.93     enami 		/*
   1348           1.93     enami 		 * If error encountered, give up tracing on this
   1349           1.93     enami 		 * vnode.  Don't report EPIPE as this can easily
   1350           1.93     enami 		 * happen with fktrace()/ktruss.
   1351           1.93     enami 		 */
   1352           1.93     enami #ifndef DEBUG
   1353           1.93     enami 		if (error != EPIPE)
   1354           1.93     enami #endif
   1355           1.93     enami 			log(LOG_NOTICE,
   1356           1.93     enami 			    "ktrace write failed, errno %d, tracing stopped\n",
   1357           1.93     enami 			    error);
   1358          1.114        ad 		(void)ktrderefall(ktd, 0);
   1359           1.93     enami 	}
   1360           1.93     enami 
   1361           1.93     enami 	while ((kte = top) != NULL) {
   1362           1.93     enami 		top = TAILQ_NEXT(top, kte_list);
   1363           1.93     enami 		ktefree(kte);
   1364           1.93     enami 	}
   1365           1.93     enami }
   1366           1.93     enami 
   1367           1.93     enami void
   1368           1.93     enami ktrace_thread(void *arg)
   1369           1.93     enami {
   1370           1.93     enami 	struct ktr_desc *ktd = arg;
   1371          1.140        ad 	file_t *fp = ktd->ktd_fp;
   1372           1.93     enami 	struct ktrace_entry *kte;
   1373           1.93     enami 	int ktrerr, errcnt;
   1374           1.93     enami 
   1375          1.125        ad 	mutex_enter(&ktrace_lock);
   1376           1.93     enami 	for (;;) {
   1377           1.93     enami 		kte = TAILQ_FIRST(&ktd->ktd_queue);
   1378           1.93     enami 		if (kte == NULL) {
   1379           1.93     enami 			if (ktd->ktd_flags & KTDF_WAIT) {
   1380           1.93     enami 				ktd->ktd_flags &= ~(KTDF_WAIT | KTDF_BLOCKING);
   1381          1.114        ad 				cv_broadcast(&ktd->ktd_sync_cv);
   1382           1.93     enami 			}
   1383           1.93     enami 			if (ktd->ktd_ref == 0)
   1384           1.93     enami 				break;
   1385          1.125        ad 			cv_wait(&ktd->ktd_cv, &ktrace_lock);
   1386           1.93     enami 			continue;
   1387           1.93     enami 		}
   1388           1.93     enami 		TAILQ_INIT(&ktd->ktd_queue);
   1389           1.93     enami 		ktd->ktd_qcount = 0;
   1390           1.93     enami 		ktrerr = ktd->ktd_error;
   1391           1.93     enami 		errcnt = ktd->ktd_errcnt;
   1392           1.93     enami 		ktd->ktd_error = ktd->ktd_errcnt = 0;
   1393          1.125        ad 		mutex_exit(&ktrace_lock);
   1394           1.93     enami 
   1395           1.93     enami 		if (ktrerr) {
   1396           1.93     enami 			log(LOG_NOTICE,
   1397           1.93     enami 			    "ktrace failed, fp %p, error 0x%x, total %d\n",
   1398           1.93     enami 			    fp, ktrerr, errcnt);
   1399           1.93     enami 		}
   1400           1.93     enami 		ktrwrite(ktd, kte);
   1401          1.125        ad 		mutex_enter(&ktrace_lock);
   1402            1.1       cgd 	}
   1403           1.93     enami 
   1404           1.93     enami 	TAILQ_REMOVE(&ktdq, ktd, ktd_list);
   1405      1.164.4.1    martin 
   1406      1.164.4.1    martin 	callout_halt(&ktd->ktd_wakch, &ktrace_lock);
   1407      1.164.4.1    martin 	callout_destroy(&ktd->ktd_wakch);
   1408          1.125        ad 	mutex_exit(&ktrace_lock);
   1409           1.28  christos 
   1410            1.1       cgd 	/*
   1411           1.93     enami 	 * ktrace file descriptor can't be watched (are not visible to
   1412           1.93     enami 	 * userspace), so no kqueue stuff here
   1413           1.93     enami 	 * XXX: The above comment is wrong, because the fktrace file
   1414           1.93     enami 	 * descriptor is available in userland.
   1415            1.1       cgd 	 */
   1416          1.140        ad 	closef(fp);
   1417           1.93     enami 
   1418          1.146    dyoung 	cv_destroy(&ktd->ktd_sync_cv);
   1419          1.146    dyoung 	cv_destroy(&ktd->ktd_cv);
   1420          1.146    dyoung 
   1421          1.114        ad 	kmem_free(ktd, sizeof(*ktd));
   1422           1.39   thorpej 
   1423           1.93     enami 	kthread_exit(0);
   1424            1.1       cgd }
   1425            1.1       cgd 
   1426            1.1       cgd /*
   1427            1.1       cgd  * Return true if caller has permission to set the ktracing state
   1428            1.1       cgd  * of target.  Essentially, the target can't possess any
   1429          1.136      elad  * more permissions than the caller.  KTRFAC_PERSISTENT signifies that
   1430          1.136      elad  * the tracing will persist on sugid processes during exec; it is only
   1431          1.136      elad  * settable by a process with appropriate credentials.
   1432            1.1       cgd  *
   1433            1.1       cgd  * TODO: check groups.  use caller effective gid.
   1434            1.1       cgd  */
   1435           1.22  christos int
   1436          1.125        ad ktrcanset(lwp_t *calll, struct proc *targetp)
   1437            1.1       cgd {
   1438          1.142        ad 	KASSERT(mutex_owned(targetp->p_lock));
   1439          1.125        ad 	KASSERT(mutex_owned(&ktrace_lock));
   1440          1.114        ad 
   1441          1.135      elad 	if (kauth_authorize_process(calll->l_cred, KAUTH_PROCESS_KTRACE,
   1442          1.112      elad 	    targetp, NULL, NULL, NULL) == 0)
   1443            1.1       cgd 		return (1);
   1444            1.1       cgd 
   1445            1.1       cgd 	return (0);
   1446            1.1       cgd }
   1447           1.51  jdolecek 
   1448           1.51  jdolecek /*
   1449           1.51  jdolecek  * Put user defined entry to ktrace records.
   1450           1.51  jdolecek  */
   1451           1.51  jdolecek int
   1452          1.131       dsl sys_utrace(struct lwp *l, const struct sys_utrace_args *uap, register_t *retval)
   1453           1.51  jdolecek {
   1454          1.131       dsl 	/* {
   1455           1.52  jdolecek 		syscallarg(const char *) label;
   1456           1.51  jdolecek 		syscallarg(void *) addr;
   1457           1.51  jdolecek 		syscallarg(size_t) len;
   1458          1.131       dsl 	} */
   1459           1.53  jdolecek 
   1460          1.125        ad 	return ktruser(SCARG(uap, label), SCARG(uap, addr),
   1461          1.110  christos 	    SCARG(uap, len), 1);
   1462           1.51  jdolecek }
   1463