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kern_ktrace.c revision 1.100
      1  1.100     perry /*	$NetBSD: kern_ktrace.c,v 1.100 2005/12/24 19:12:23 perry Exp $	*/
      2   1.11       cgd 
      3    1.1       cgd /*
      4    1.9       cgd  * Copyright (c) 1989, 1993
      5    1.9       cgd  *	The Regents of the University of California.  All rights reserved.
      6    1.1       cgd  *
      7    1.1       cgd  * Redistribution and use in source and binary forms, with or without
      8    1.1       cgd  * modification, are permitted provided that the following conditions
      9    1.1       cgd  * are met:
     10    1.1       cgd  * 1. Redistributions of source code must retain the above copyright
     11    1.1       cgd  *    notice, this list of conditions and the following disclaimer.
     12    1.1       cgd  * 2. Redistributions in binary form must reproduce the above copyright
     13    1.1       cgd  *    notice, this list of conditions and the following disclaimer in the
     14    1.1       cgd  *    documentation and/or other materials provided with the distribution.
     15   1.77       agc  * 3. Neither the name of the University nor the names of its contributors
     16    1.1       cgd  *    may be used to endorse or promote products derived from this software
     17    1.1       cgd  *    without specific prior written permission.
     18    1.1       cgd  *
     19    1.1       cgd  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     20    1.1       cgd  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     21    1.1       cgd  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     22    1.1       cgd  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     23    1.1       cgd  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     24    1.1       cgd  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     25    1.1       cgd  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     26    1.1       cgd  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     27    1.1       cgd  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     28    1.1       cgd  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     29    1.1       cgd  * SUCH DAMAGE.
     30    1.1       cgd  *
     31   1.25      fvdl  *	@(#)kern_ktrace.c	8.5 (Berkeley) 5/14/95
     32    1.1       cgd  */
     33   1.55     lukem 
     34   1.55     lukem #include <sys/cdefs.h>
     35  1.100     perry __KERNEL_RCSID(0, "$NetBSD: kern_ktrace.c,v 1.100 2005/12/24 19:12:23 perry Exp $");
     36   1.29   thorpej 
     37   1.29   thorpej #include "opt_ktrace.h"
     38   1.62      manu #include "opt_compat_mach.h"
     39    1.1       cgd 
     40    1.7   mycroft #include <sys/param.h>
     41   1.13       cgd #include <sys/systm.h>
     42    1.7   mycroft #include <sys/proc.h>
     43    1.7   mycroft #include <sys/file.h>
     44    1.7   mycroft #include <sys/namei.h>
     45    1.7   mycroft #include <sys/vnode.h>
     46   1.93     enami #include <sys/kernel.h>
     47   1.93     enami #include <sys/kthread.h>
     48    1.7   mycroft #include <sys/ktrace.h>
     49    1.7   mycroft #include <sys/malloc.h>
     50    1.7   mycroft #include <sys/syslog.h>
     51   1.28  christos #include <sys/filedesc.h>
     52   1.42  sommerfe #include <sys/ioctl.h>
     53   1.93     enami #include <sys/callout.h>
     54    1.1       cgd 
     55   1.13       cgd #include <sys/mount.h>
     56   1.67   thorpej #include <sys/sa.h>
     57   1.13       cgd #include <sys/syscallargs.h>
     58   1.22  christos 
     59   1.51  jdolecek #ifdef KTRACE
     60   1.51  jdolecek 
     61   1.93     enami /*
     62   1.93     enami  * XXX:
     63   1.93     enami  *	- need better error reporting?
     64   1.93     enami  *	- p->p_tracep access lock.  lock p_lock, lock ktd if !NULL, inc ref.
     65   1.93     enami  *	- userland utility to sort ktrace.out by timestamp.
     66   1.93     enami  *	- keep minimum information in ktrace_entry when rest of alloc failed.
     67   1.93     enami  *	- enlarge ktrace_entry so that small entry won't require additional
     68   1.93     enami  *	  alloc?
     69   1.93     enami  *	- per trace control of configurable parameters.
     70   1.93     enami  */
     71   1.93     enami 
     72   1.93     enami struct ktrace_entry {
     73   1.93     enami 	TAILQ_ENTRY(ktrace_entry) kte_list;
     74   1.93     enami 	struct ktr_header kte_kth;
     75   1.98  christos 	void *kte_buf;
     76   1.93     enami };
     77   1.93     enami 
     78   1.93     enami struct ktr_desc {
     79   1.93     enami 	TAILQ_ENTRY(ktr_desc) ktd_list;
     80   1.93     enami 	int ktd_flags;
     81   1.93     enami #define	KTDF_WAIT		0x0001
     82   1.93     enami #define	KTDF_DONE		0x0002
     83   1.93     enami #define	KTDF_BLOCKING		0x0004
     84   1.93     enami #define	KTDF_INTERACTIVE	0x0008
     85   1.93     enami 	int ktd_error;
     86   1.93     enami #define	KTDE_ENOMEM		0x0001
     87   1.93     enami #define	KTDE_ENOSPC		0x0002
     88   1.93     enami 	int ktd_errcnt;
     89   1.93     enami 	int ktd_ref;			/* # of reference */
     90   1.93     enami 	int ktd_qcount;			/* # of entry in the queue */
     91   1.93     enami 
     92   1.93     enami 	/*
     93   1.93     enami 	 * Params to control behaviour.
     94   1.93     enami 	 */
     95   1.93     enami 	int ktd_delayqcnt;		/* # of entry allowed to delay */
     96   1.93     enami 	int ktd_wakedelay;		/* delay of wakeup in *tick* */
     97   1.93     enami 	int ktd_intrwakdl;		/* ditto, but when interactive */
     98   1.93     enami 
     99   1.93     enami 	struct file *ktd_fp;		/* trace output file */
    100   1.93     enami 	struct proc *ktd_proc;		/* our kernel thread */
    101   1.93     enami 	TAILQ_HEAD(, ktrace_entry) ktd_queue;
    102   1.93     enami 	struct callout ktd_wakch;	/* delayed wakeup */
    103   1.93     enami 	struct simplelock ktd_slock;
    104   1.93     enami };
    105   1.93     enami 
    106   1.98  christos static void	ktrinitheader(struct ktr_header *, struct lwp *, int);
    107   1.93     enami static void	ktrwrite(struct ktr_desc *, struct ktrace_entry *);
    108   1.93     enami static int	ktrace_common(struct proc *, int, int, int, struct file *);
    109   1.93     enami static int	ktrops(struct proc *, struct proc *, int, int,
    110   1.93     enami 		    struct ktr_desc *);
    111   1.93     enami static int	ktrsetchildren(struct proc *, struct proc *, int, int,
    112   1.93     enami 		    struct ktr_desc *);
    113   1.93     enami static int	ktrcanset(struct proc *, struct proc *);
    114   1.93     enami static int	ktrsamefile(struct file *, struct file *);
    115   1.93     enami 
    116   1.93     enami static struct ktr_desc *
    117   1.93     enami 		ktd_lookup(struct file *);
    118   1.93     enami static void	ktdrel(struct ktr_desc *);
    119   1.93     enami static void	ktdref(struct ktr_desc *);
    120   1.98  christos static void	ktraddentry(struct lwp *, struct ktrace_entry *, int);
    121   1.93     enami /* Flags for ktraddentry (3rd arg) */
    122   1.93     enami #define	KTA_NOWAIT		0x0000
    123   1.93     enami #define	KTA_WAITOK		0x0001
    124   1.93     enami #define	KTA_LARGE		0x0002
    125   1.93     enami static void	ktefree(struct ktrace_entry *);
    126   1.93     enami static void	ktd_logerrl(struct ktr_desc *, int);
    127   1.93     enami static void	ktd_logerr(struct proc *, int);
    128   1.93     enami static void	ktrace_thread(void *);
    129   1.93     enami 
    130   1.93     enami /*
    131   1.93     enami  * Default vaules.
    132   1.93     enami  */
    133   1.93     enami #define	KTD_MAXENTRY		1000	/* XXX: tune */
    134   1.93     enami #define	KTD_TIMEOUT		5	/* XXX: tune */
    135   1.93     enami #define	KTD_DELAYQCNT		100	/* XXX: tune */
    136   1.93     enami #define	KTD_WAKEDELAY		5000	/* XXX: tune */
    137   1.93     enami #define	KTD_INTRWAKDL		100	/* XXX: tune */
    138   1.93     enami 
    139   1.93     enami /*
    140   1.93     enami  * Patchable variables.
    141   1.93     enami  */
    142   1.93     enami int ktd_maxentry = KTD_MAXENTRY;	/* max # of entry in the queue */
    143   1.93     enami int ktd_timeout = KTD_TIMEOUT;		/* timeout in seconds */
    144   1.93     enami int ktd_delayqcnt = KTD_DELAYQCNT;	/* # of entry allowed to delay */
    145   1.93     enami int ktd_wakedelay = KTD_WAKEDELAY;	/* delay of wakeup in *ms* */
    146   1.93     enami int ktd_intrwakdl = KTD_INTRWAKDL;	/* ditto, but when interactive */
    147   1.93     enami 
    148   1.93     enami static struct simplelock ktdq_slock = SIMPLELOCK_INITIALIZER;
    149   1.93     enami static TAILQ_HEAD(, ktr_desc) ktdq = TAILQ_HEAD_INITIALIZER(ktdq);
    150   1.93     enami 
    151   1.93     enami MALLOC_DEFINE(M_KTRACE, "ktrace", "ktrace data buffer");
    152   1.93     enami POOL_INIT(kte_pool, sizeof(struct ktrace_entry), 0, 0, 0,
    153   1.93     enami     "ktepl", &pool_allocator_nointr);
    154   1.93     enami 
    155  1.100     perry static inline void
    156   1.93     enami ktd_wakeup(struct ktr_desc *ktd)
    157   1.93     enami {
    158   1.93     enami 
    159   1.93     enami 	callout_stop(&ktd->ktd_wakch);
    160   1.93     enami 	wakeup(ktd);
    161   1.93     enami }
    162   1.93     enami 
    163   1.93     enami static void
    164   1.93     enami ktd_logerrl(struct ktr_desc *ktd, int error)
    165   1.93     enami {
    166   1.93     enami 
    167   1.93     enami 	ktd->ktd_error |= error;
    168   1.93     enami 	ktd->ktd_errcnt++;
    169   1.93     enami }
    170   1.93     enami 
    171   1.93     enami static void
    172   1.93     enami ktd_logerr(struct proc *p, int error)
    173   1.93     enami {
    174   1.93     enami 	struct ktr_desc *ktd = p->p_tracep;
    175   1.93     enami 
    176   1.93     enami 	if (ktd == NULL)
    177   1.93     enami 		return;
    178   1.93     enami 
    179   1.93     enami 	simple_lock(&ktd->ktd_slock);
    180   1.93     enami 	ktd_logerrl(ktd, error);
    181   1.93     enami 	simple_unlock(&ktd->ktd_slock);
    182   1.93     enami }
    183   1.93     enami 
    184   1.93     enami /*
    185   1.93     enami  * Release a reference.  Called with ktd_slock held.
    186   1.93     enami  */
    187   1.93     enami void
    188   1.93     enami ktdrel(struct ktr_desc *ktd)
    189   1.93     enami {
    190   1.93     enami 
    191   1.93     enami 	KDASSERT(ktd->ktd_ref != 0);
    192   1.93     enami 	KASSERT(ktd->ktd_ref > 0);
    193   1.93     enami 	if (--ktd->ktd_ref <= 0) {
    194   1.93     enami 		ktd->ktd_flags |= KTDF_DONE;
    195   1.93     enami 		wakeup(ktd);
    196   1.93     enami 	}
    197   1.93     enami 	simple_unlock(&ktd->ktd_slock);
    198   1.93     enami }
    199   1.93     enami 
    200   1.93     enami void
    201   1.93     enami ktdref(struct ktr_desc *ktd)
    202   1.93     enami {
    203   1.93     enami 
    204   1.93     enami 	simple_lock(&ktd->ktd_slock);
    205   1.93     enami 	ktd->ktd_ref++;
    206   1.93     enami 	simple_unlock(&ktd->ktd_slock);
    207   1.93     enami }
    208   1.93     enami 
    209   1.93     enami struct ktr_desc *
    210   1.93     enami ktd_lookup(struct file *fp)
    211   1.93     enami {
    212   1.93     enami 	struct ktr_desc *ktd;
    213   1.93     enami 
    214   1.93     enami 	simple_lock(&ktdq_slock);
    215   1.93     enami 	for (ktd = TAILQ_FIRST(&ktdq); ktd != NULL;
    216   1.93     enami 	    ktd = TAILQ_NEXT(ktd, ktd_list)) {
    217   1.93     enami 		simple_lock(&ktd->ktd_slock);
    218   1.93     enami 		if (ktrsamefile(ktd->ktd_fp, fp)) {
    219   1.93     enami 			ktd->ktd_ref++;
    220   1.93     enami 			simple_unlock(&ktd->ktd_slock);
    221   1.93     enami 			break;
    222   1.93     enami 		}
    223   1.93     enami 		simple_unlock(&ktd->ktd_slock);
    224   1.93     enami 	}
    225   1.93     enami 	simple_unlock(&ktdq_slock);
    226   1.93     enami 	return (ktd);
    227   1.93     enami }
    228   1.93     enami 
    229   1.93     enami void
    230   1.98  christos ktraddentry(struct lwp *l, struct ktrace_entry *kte, int flags)
    231   1.93     enami {
    232   1.98  christos 	struct proc *p = l->l_proc;
    233   1.93     enami 	struct ktr_desc *ktd;
    234   1.93     enami #ifdef DEBUG
    235   1.93     enami 	struct timeval t;
    236   1.93     enami 	int s;
    237   1.93     enami #endif
    238   1.93     enami 
    239   1.93     enami 	if (p->p_traceflag & KTRFAC_TRC_EMUL) {
    240   1.93     enami 		/* Add emulation trace before first entry for this process */
    241   1.93     enami 		p->p_traceflag &= ~KTRFAC_TRC_EMUL;
    242   1.98  christos 		ktremul(l);
    243   1.93     enami 	}
    244   1.93     enami 
    245   1.93     enami 	/*
    246   1.93     enami 	 * Tracing may be canceled while we were sleeping waiting for
    247   1.93     enami 	 * memory.
    248   1.93     enami 	 */
    249   1.93     enami 	ktd = p->p_tracep;
    250   1.93     enami 	if (ktd == NULL)
    251   1.93     enami 		goto freekte;
    252   1.93     enami 
    253   1.93     enami 	/*
    254   1.93     enami 	 * Bump reference count so that the object will remain while
    255   1.93     enami 	 * we are here.  Note that the trace is controlled by other
    256   1.93     enami 	 * process.
    257   1.93     enami 	 */
    258   1.93     enami 	ktdref(ktd);
    259   1.93     enami 
    260   1.93     enami 	simple_lock(&ktd->ktd_slock);
    261   1.93     enami 	if (ktd->ktd_flags & KTDF_DONE)
    262   1.93     enami 		goto relktd;
    263   1.93     enami 
    264   1.93     enami 	if (ktd->ktd_qcount > ktd_maxentry) {
    265   1.93     enami 		ktd_logerrl(ktd, KTDE_ENOSPC);
    266   1.93     enami 		goto relktd;
    267   1.93     enami 	}
    268   1.93     enami 	TAILQ_INSERT_TAIL(&ktd->ktd_queue, kte, kte_list);
    269   1.93     enami 	ktd->ktd_qcount++;
    270   1.93     enami 	if (ktd->ktd_flags & KTDF_BLOCKING)
    271   1.93     enami 		goto skip_sync;
    272   1.93     enami 
    273   1.93     enami 	if (flags & KTA_WAITOK &&
    274   1.93     enami 	    (/* flags & KTA_LARGE */0 || ktd->ktd_flags & KTDF_WAIT ||
    275   1.93     enami 	    ktd->ktd_qcount > ktd_maxentry >> 1))
    276   1.93     enami 		/*
    277   1.93     enami 		 * Sync with writer thread since we're requesting rather
    278   1.93     enami 		 * big one or many requests are pending.
    279   1.93     enami 		 */
    280   1.93     enami 		do {
    281   1.93     enami 			ktd->ktd_flags |= KTDF_WAIT;
    282   1.93     enami 			ktd_wakeup(ktd);
    283   1.93     enami #ifdef DEBUG
    284   1.93     enami 			s = splclock();
    285   1.93     enami 			t = mono_time;
    286   1.93     enami 			splx(s);
    287   1.93     enami #endif
    288   1.93     enami 			if (ltsleep(&ktd->ktd_flags, PWAIT, "ktrsync",
    289   1.93     enami 			    ktd_timeout * hz, &ktd->ktd_slock) != 0) {
    290   1.93     enami 				ktd->ktd_flags |= KTDF_BLOCKING;
    291   1.93     enami 				/*
    292   1.93     enami 				 * Maybe the writer thread is blocking
    293   1.93     enami 				 * completely for some reason, but
    294   1.93     enami 				 * don't stop target process forever.
    295   1.93     enami 				 */
    296   1.93     enami 				log(LOG_NOTICE, "ktrace timeout\n");
    297   1.93     enami 				break;
    298   1.93     enami 			}
    299   1.93     enami #ifdef DEBUG
    300   1.93     enami 			s = splclock();
    301   1.93     enami 			timersub(&mono_time, &t, &t);
    302   1.93     enami 			splx(s);
    303   1.93     enami 			if (t.tv_sec > 0)
    304   1.93     enami 				log(LOG_NOTICE,
    305   1.93     enami 				    "ktrace long wait: %ld.%06ld\n",
    306   1.93     enami 				    t.tv_sec, t.tv_usec);
    307   1.93     enami #endif
    308   1.93     enami 		} while (p->p_tracep == ktd &&
    309   1.93     enami 		    (ktd->ktd_flags & (KTDF_WAIT | KTDF_DONE)) == KTDF_WAIT);
    310   1.93     enami 	else {
    311   1.93     enami 		/* Schedule delayed wakeup */
    312   1.93     enami 		if (ktd->ktd_qcount > ktd->ktd_delayqcnt)
    313   1.93     enami 			ktd_wakeup(ktd);	/* Wakeup now */
    314   1.93     enami 		else if (!callout_pending(&ktd->ktd_wakch))
    315   1.93     enami 			callout_reset(&ktd->ktd_wakch,
    316   1.93     enami 			    ktd->ktd_flags & KTDF_INTERACTIVE ?
    317   1.93     enami 			    ktd->ktd_intrwakdl : ktd->ktd_wakedelay,
    318   1.93     enami 			    (void (*)(void *))wakeup, ktd);
    319   1.93     enami 	}
    320   1.93     enami 
    321   1.93     enami skip_sync:
    322   1.93     enami 	ktdrel(ktd);
    323   1.93     enami 	return;
    324   1.93     enami 
    325   1.93     enami relktd:
    326   1.93     enami 	ktdrel(ktd);
    327   1.93     enami 
    328   1.93     enami freekte:
    329   1.93     enami 	ktefree(kte);
    330   1.93     enami }
    331   1.93     enami 
    332   1.93     enami void
    333   1.93     enami ktefree(struct ktrace_entry *kte)
    334   1.93     enami {
    335   1.93     enami 
    336   1.98  christos 	if (kte->kte_buf != NULL)
    337   1.93     enami 		free(kte->kte_buf, M_KTRACE);
    338   1.93     enami 	pool_put(&kte_pool, kte);
    339   1.93     enami }
    340   1.44  sommerfe 
    341   1.44  sommerfe /*
    342   1.44  sommerfe  * "deep" compare of two files for the purposes of clearing a trace.
    343   1.44  sommerfe  * Returns true if they're the same open file, or if they point at the
    344   1.44  sommerfe  * same underlying vnode/socket.
    345   1.44  sommerfe  */
    346   1.44  sommerfe 
    347   1.44  sommerfe int
    348   1.89     enami ktrsamefile(struct file *f1, struct file *f2)
    349   1.44  sommerfe {
    350   1.88     enami 
    351   1.44  sommerfe 	return ((f1 == f2) ||
    352   1.45  sommerfe 	    ((f1 != NULL) && (f2 != NULL) &&
    353   1.45  sommerfe 		(f1->f_type == f2->f_type) &&
    354   1.44  sommerfe 		(f1->f_data == f2->f_data)));
    355   1.44  sommerfe }
    356   1.22  christos 
    357   1.28  christos void
    358   1.89     enami ktrderef(struct proc *p)
    359   1.28  christos {
    360   1.93     enami 	struct ktr_desc *ktd = p->p_tracep;
    361   1.93     enami 
    362   1.42  sommerfe 	p->p_traceflag = 0;
    363   1.93     enami 	if (ktd == NULL)
    364   1.28  christos 		return;
    365   1.84       dsl 	p->p_tracep = NULL;
    366   1.84       dsl 
    367   1.93     enami 	simple_lock(&ktd->ktd_slock);
    368   1.93     enami 	wakeup(&ktd->ktd_flags);
    369   1.93     enami 	ktdrel(ktd);
    370   1.28  christos }
    371   1.28  christos 
    372   1.28  christos void
    373   1.89     enami ktradref(struct proc *p)
    374   1.28  christos {
    375   1.93     enami 	struct ktr_desc *ktd = p->p_tracep;
    376   1.28  christos 
    377   1.93     enami 	ktdref(ktd);
    378   1.28  christos }
    379   1.28  christos 
    380   1.39   thorpej void
    381   1.98  christos ktrinitheader(struct ktr_header *kth, struct lwp *l, int type)
    382    1.1       cgd {
    383   1.98  christos 	struct proc *p = l->l_proc;
    384    1.1       cgd 
    385   1.90  christos 	(void)memset(kth, 0, sizeof(*kth));
    386    1.1       cgd 	kth->ktr_type = type;
    387    1.1       cgd 	kth->ktr_pid = p->p_pid;
    388   1.32     perry 	memcpy(kth->ktr_comm, p->p_comm, MAXCOMLEN);
    389   1.98  christos 
    390   1.98  christos 	kth->ktr_version = KTRFAC_VERSION(p->p_traceflag);
    391   1.98  christos 
    392   1.98  christos 	switch (KTRFAC_VERSION(p->p_traceflag)) {
    393   1.98  christos 	case 0:
    394   1.98  christos 		/* This is the original format */
    395   1.98  christos 		microtime(&kth->ktr_tv);
    396   1.98  christos 		break;
    397   1.98  christos 	case 1:
    398   1.98  christos 		kth->ktr_lid = l->l_lid;
    399   1.98  christos 		nanotime(&kth->ktr_time);
    400   1.98  christos 		break;
    401   1.98  christos 	default:
    402   1.98  christos 		break;
    403   1.98  christos 	}
    404    1.1       cgd }
    405    1.1       cgd 
    406   1.93     enami void
    407   1.98  christos ktrsyscall(struct lwp *l, register_t code, register_t realcode,
    408   1.89     enami     const struct sysent *callp, register_t args[])
    409    1.1       cgd {
    410   1.98  christos 	struct proc *p = l->l_proc;
    411   1.93     enami 	struct ktrace_entry *kte;
    412   1.93     enami 	struct ktr_header *kth;
    413   1.72   darrenr 	struct ktr_syscall *ktp;
    414   1.17       cgd 	register_t *argp;
    415   1.93     enami 	int argsize;
    416   1.57      fvdl 	size_t len;
    417   1.60   thorpej 	u_int i;
    418   1.57      fvdl 
    419   1.66      manu 	if (callp == NULL)
    420   1.66      manu 		callp = p->p_emul->e_sysent;
    421   1.88     enami 
    422   1.76  drochner 	argsize = callp[code].sy_argsize;
    423   1.86       mrg #ifdef _LP64
    424   1.86       mrg 	if (p->p_flag & P_32)
    425   1.86       mrg 		argsize = argsize << 1;
    426   1.86       mrg #endif
    427   1.57      fvdl 	len = sizeof(struct ktr_syscall) + argsize;
    428    1.1       cgd 
    429    1.9       cgd 	p->p_traceflag |= KTRFAC_ACTIVE;
    430   1.93     enami 	kte = pool_get(&kte_pool, PR_WAITOK);
    431   1.93     enami 	kth = &kte->kte_kth;
    432   1.98  christos 	ktrinitheader(kth, l, KTR_SYSCALL);
    433   1.93     enami 
    434   1.93     enami 	ktp = malloc(len, M_KTRACE, M_WAITOK);
    435   1.61      manu 	ktp->ktr_code = realcode;
    436   1.17       cgd 	ktp->ktr_argsize = argsize;
    437   1.93     enami 	argp = (register_t *)(ktp + 1);
    438   1.31     perry 	for (i = 0; i < (argsize / sizeof(*argp)); i++)
    439    1.1       cgd 		*argp++ = args[i];
    440   1.93     enami 	kth->ktr_len = len;
    441   1.93     enami 	kte->kte_buf = ktp;
    442   1.93     enami 
    443   1.98  christos 	ktraddentry(l, kte, KTA_WAITOK);
    444    1.9       cgd 	p->p_traceflag &= ~KTRFAC_ACTIVE;
    445    1.1       cgd }
    446    1.1       cgd 
    447   1.93     enami void
    448   1.98  christos ktrsysret(struct lwp *l, register_t code, int error, register_t *retval)
    449    1.1       cgd {
    450   1.98  christos 	struct proc *p = l->l_proc;
    451   1.93     enami 	struct ktrace_entry *kte;
    452   1.93     enami 	struct ktr_header *kth;
    453   1.93     enami 	struct ktr_sysret *ktp;
    454    1.1       cgd 
    455    1.9       cgd 	p->p_traceflag |= KTRFAC_ACTIVE;
    456   1.93     enami 	kte = pool_get(&kte_pool, PR_WAITOK);
    457   1.93     enami 	kth = &kte->kte_kth;
    458   1.98  christos 	ktrinitheader(kth, l, KTR_SYSRET);
    459   1.93     enami 
    460   1.93     enami 	ktp = malloc(sizeof(struct ktr_sysret), M_KTRACE, M_WAITOK);
    461   1.93     enami 	ktp->ktr_code = code;
    462   1.93     enami 	ktp->ktr_eosys = 0;			/* XXX unused */
    463   1.93     enami 	ktp->ktr_error = error;
    464   1.93     enami 	ktp->ktr_retval = retval ? retval[0] : 0;
    465   1.93     enami 	ktp->ktr_retval_1 = retval ? retval[1] : 0;
    466    1.1       cgd 
    467   1.93     enami 	kth->ktr_len = sizeof(struct ktr_sysret);
    468   1.93     enami 	kte->kte_buf = ktp;
    469    1.1       cgd 
    470   1.98  christos 	ktraddentry(l, kte, KTA_WAITOK);
    471    1.9       cgd 	p->p_traceflag &= ~KTRFAC_ACTIVE;
    472    1.1       cgd }
    473    1.1       cgd 
    474   1.93     enami /*
    475   1.93     enami  * XXX: ndp->ni_pathlen should be passed.
    476   1.93     enami  */
    477   1.93     enami void
    478   1.98  christos ktrnamei(struct lwp *l, char *path)
    479    1.1       cgd {
    480    1.1       cgd 
    481   1.98  christos 	ktrkmem(l, KTR_NAMEI, path, strlen(path));
    482   1.18  christos }
    483   1.18  christos 
    484   1.93     enami void
    485   1.98  christos ktremul(struct lwp *l)
    486   1.18  christos {
    487   1.98  christos 	const char *emul = l->l_proc->p_emul->e_name;
    488    1.1       cgd 
    489   1.98  christos 	ktrkmem(l, KTR_EMUL, emul, strlen(emul));
    490    1.1       cgd }
    491    1.1       cgd 
    492   1.93     enami void
    493   1.98  christos ktrkmem(struct lwp *l, int type, const void *bf, size_t len)
    494   1.75       dsl {
    495   1.98  christos  	struct proc *p = l->l_proc;
    496   1.93     enami 	struct ktrace_entry *kte;
    497   1.93     enami 	struct ktr_header *kth;
    498   1.75       dsl 
    499   1.75       dsl 	p->p_traceflag |= KTRFAC_ACTIVE;
    500   1.93     enami 	kte = pool_get(&kte_pool, PR_WAITOK);
    501   1.93     enami 	kth = &kte->kte_kth;
    502   1.98  christos 	ktrinitheader(kth, l, type);
    503   1.93     enami 
    504   1.93     enami 	kth->ktr_len = len;
    505   1.93     enami 	kte->kte_buf = malloc(len, M_KTRACE, M_WAITOK);
    506   1.97  christos 	memcpy(kte->kte_buf, bf, len);
    507   1.75       dsl 
    508   1.98  christos 	ktraddentry(l, kte, KTA_WAITOK);
    509   1.75       dsl 	p->p_traceflag &= ~KTRFAC_ACTIVE;
    510   1.75       dsl }
    511   1.75       dsl 
    512   1.93     enami void
    513   1.98  christos ktrgenio(struct lwp *l, int fd, enum uio_rw rw, struct iovec *iov,
    514   1.89     enami     int len, int error)
    515    1.1       cgd {
    516   1.98  christos 	struct proc *p = l->l_proc;
    517   1.93     enami 	struct ktrace_entry *kte;
    518   1.93     enami 	struct ktr_header *kth;
    519   1.28  christos 	struct ktr_genio *ktp;
    520   1.98  christos 	int resid = len, cnt;
    521   1.74      fvdl 	caddr_t cp;
    522   1.39   thorpej 	int buflen;
    523   1.39   thorpej 
    524    1.1       cgd 	if (error)
    525   1.93     enami 		return;
    526   1.39   thorpej 
    527    1.9       cgd 	p->p_traceflag |= KTRFAC_ACTIVE;
    528   1.39   thorpej 
    529   1.93     enami next:
    530   1.93     enami 	buflen = min(PAGE_SIZE, resid + sizeof(struct ktr_genio));
    531   1.39   thorpej 
    532   1.93     enami 	kte = pool_get(&kte_pool, PR_WAITOK);
    533   1.93     enami 	kth = &kte->kte_kth;
    534   1.98  christos 	ktrinitheader(kth, l, KTR_GENIO);
    535   1.93     enami 
    536   1.93     enami 	ktp = malloc(buflen, M_KTRACE, M_WAITOK);
    537    1.1       cgd 	ktp->ktr_fd = fd;
    538    1.1       cgd 	ktp->ktr_rw = rw;
    539   1.39   thorpej 
    540   1.93     enami 	kte->kte_buf = ktp;
    541   1.39   thorpej 
    542   1.93     enami 	cp = (caddr_t)(ktp + 1);
    543   1.39   thorpej 	buflen -= sizeof(struct ktr_genio);
    544   1.93     enami 	kth->ktr_len = sizeof(struct ktr_genio);
    545   1.93     enami 
    546   1.93     enami 	while (buflen > 0) {
    547   1.93     enami 		cnt = min(iov->iov_len, buflen);
    548   1.93     enami 		if (copyin(iov->iov_base, cp, cnt) != 0)
    549   1.93     enami 			goto out;
    550   1.93     enami 		kth->ktr_len += cnt;
    551   1.93     enami 		buflen -= cnt;
    552   1.93     enami 		resid -= cnt;
    553   1.93     enami 		iov->iov_len -= cnt;
    554   1.93     enami 		if (iov->iov_len == 0)
    555   1.93     enami 			iov++;
    556   1.93     enami 		else
    557   1.93     enami 			iov->iov_base = (caddr_t)iov->iov_base + cnt;
    558   1.93     enami 	}
    559   1.39   thorpej 
    560   1.93     enami 	/*
    561   1.93     enami 	 * Don't push so many entry at once.  It will cause kmem map
    562   1.93     enami 	 * shortage.
    563   1.93     enami 	 */
    564   1.98  christos 	ktraddentry(l, kte, KTA_WAITOK | KTA_LARGE);
    565   1.93     enami 	if (resid > 0) {
    566   1.67   thorpej #if 0 /* XXX NJWLWP */
    567   1.46   thorpej 		KDASSERT(p->p_cpu != NULL);
    568   1.46   thorpej 		KDASSERT(p->p_cpu == curcpu());
    569   1.67   thorpej #endif
    570   1.67   thorpej 		/* XXX NJWLWP */
    571   1.67   thorpej 		if (curcpu()->ci_schedstate.spc_flags & SPCF_SHOULDYIELD)
    572   1.67   thorpej 			preempt(1);
    573   1.39   thorpej 
    574   1.93     enami 		goto next;
    575   1.93     enami 	}
    576   1.39   thorpej 
    577   1.93     enami 	p->p_traceflag &= ~KTRFAC_ACTIVE;
    578   1.93     enami 	return;
    579   1.39   thorpej 
    580   1.93     enami out:
    581   1.93     enami 	ktefree(kte);
    582    1.9       cgd 	p->p_traceflag &= ~KTRFAC_ACTIVE;
    583    1.1       cgd }
    584    1.1       cgd 
    585   1.93     enami void
    586   1.98  christos ktrpsig(struct lwp *l, int sig, sig_t action, const sigset_t *mask,
    587   1.89     enami     const ksiginfo_t *ksi)
    588    1.1       cgd {
    589   1.98  christos 	struct proc *p = l->l_proc;
    590   1.93     enami 	struct ktrace_entry *kte;
    591   1.93     enami 	struct ktr_header *kth;
    592   1.78  christos 	struct {
    593   1.78  christos 		struct ktr_psig	kp;
    594   1.78  christos 		siginfo_t	si;
    595   1.93     enami 	} *kbuf;
    596    1.1       cgd 
    597    1.9       cgd 	p->p_traceflag |= KTRFAC_ACTIVE;
    598   1.93     enami 	kte = pool_get(&kte_pool, PR_WAITOK);
    599   1.93     enami 	kth = &kte->kte_kth;
    600   1.98  christos 	ktrinitheader(kth, l, KTR_PSIG);
    601   1.93     enami 
    602   1.93     enami 	kbuf = malloc(sizeof(*kbuf), M_KTRACE, M_WAITOK);
    603   1.93     enami 	kbuf->kp.signo = (char)sig;
    604   1.93     enami 	kbuf->kp.action = action;
    605   1.93     enami 	kbuf->kp.mask = *mask;
    606   1.93     enami 	kte->kte_buf = kbuf;
    607   1.78  christos 	if (ksi) {
    608   1.93     enami 		kbuf->kp.code = KSI_TRAPCODE(ksi);
    609   1.93     enami 		(void)memset(&kbuf->si, 0, sizeof(kbuf->si));
    610   1.93     enami 		kbuf->si._info = ksi->ksi_info;
    611   1.95     skrll 		kth->ktr_len = sizeof(*kbuf);
    612   1.78  christos 	} else {
    613   1.93     enami 		kbuf->kp.code = 0;
    614   1.93     enami 		kth->ktr_len = sizeof(struct ktr_psig);
    615   1.78  christos 	}
    616   1.93     enami 
    617   1.98  christos 	ktraddentry(l, kte, KTA_WAITOK);
    618    1.9       cgd 	p->p_traceflag &= ~KTRFAC_ACTIVE;
    619    1.9       cgd }
    620    1.9       cgd 
    621   1.93     enami void
    622   1.98  christos ktrcsw(struct lwp *l, int out, int user)
    623    1.9       cgd {
    624   1.98  christos 	struct proc *p = l->l_proc;
    625   1.93     enami 	struct ktrace_entry *kte;
    626   1.93     enami 	struct ktr_header *kth;
    627   1.93     enami 	struct ktr_csw *kc;
    628    1.9       cgd 
    629    1.9       cgd 	p->p_traceflag |= KTRFAC_ACTIVE;
    630    1.9       cgd 
    631   1.93     enami 	/*
    632   1.93     enami 	 * We can't sleep if we're already going to sleep (if original
    633   1.93     enami 	 * condition is met during sleep, we hang up).
    634   1.93     enami 	 */
    635   1.93     enami 	kte = pool_get(&kte_pool, out ? PR_NOWAIT : PR_WAITOK);
    636   1.93     enami 	if (kte == NULL) {
    637   1.93     enami 		ktd_logerr(p, KTDE_ENOMEM);
    638   1.93     enami 		goto out;
    639   1.93     enami 	}
    640   1.93     enami 	kth = &kte->kte_kth;
    641   1.98  christos 	ktrinitheader(kth, l, KTR_CSW);
    642   1.93     enami 
    643   1.93     enami 	kc = malloc(sizeof(struct ktr_csw), M_KTRACE,
    644   1.93     enami 	    out ? M_NOWAIT : M_WAITOK);
    645   1.93     enami 	if (kc == NULL) {
    646   1.93     enami 		ktd_logerr(p, KTDE_ENOMEM);
    647   1.93     enami 		goto free_kte;
    648   1.93     enami 	}
    649   1.93     enami 	kc->out = out;
    650   1.93     enami 	kc->user = user;
    651   1.93     enami 	kth->ktr_len = sizeof(struct ktr_csw);
    652   1.93     enami 	kte->kte_buf = kc;
    653   1.93     enami 
    654   1.98  christos 	ktraddentry(l, kte, out ? KTA_NOWAIT : KTA_WAITOK);
    655   1.93     enami 	p->p_traceflag &= ~KTRFAC_ACTIVE;
    656   1.93     enami 	return;
    657   1.93     enami 
    658   1.93     enami free_kte:
    659   1.93     enami 	pool_put(&kte_pool, kte);
    660   1.93     enami out:
    661    1.9       cgd 	p->p_traceflag &= ~KTRFAC_ACTIVE;
    662    1.1       cgd }
    663    1.1       cgd 
    664   1.93     enami void
    665   1.98  christos ktruser(struct lwp *l, const char *id, void *addr, size_t len, int ustr)
    666   1.51  jdolecek {
    667   1.98  christos 	struct proc *p = l->l_proc;
    668   1.93     enami 	struct ktrace_entry *kte;
    669   1.93     enami 	struct ktr_header *kth;
    670   1.51  jdolecek 	struct ktr_user *ktp;
    671   1.51  jdolecek 	caddr_t user_dta;
    672   1.51  jdolecek 
    673   1.51  jdolecek 	p->p_traceflag |= KTRFAC_ACTIVE;
    674   1.93     enami 	kte = pool_get(&kte_pool, PR_WAITOK);
    675   1.93     enami 	kth = &kte->kte_kth;
    676   1.98  christos 	ktrinitheader(kth, l, KTR_USER);
    677   1.93     enami 
    678   1.93     enami 	ktp = malloc(sizeof(struct ktr_user) + len, M_KTRACE, M_WAITOK);
    679   1.51  jdolecek 	if (ustr) {
    680   1.51  jdolecek 		if (copyinstr(id, ktp->ktr_id, KTR_USER_MAXIDLEN, NULL) != 0)
    681   1.51  jdolecek 			ktp->ktr_id[0] = '\0';
    682   1.51  jdolecek 	} else
    683   1.51  jdolecek 		strncpy(ktp->ktr_id, id, KTR_USER_MAXIDLEN);
    684   1.51  jdolecek 	ktp->ktr_id[KTR_USER_MAXIDLEN-1] = '\0';
    685   1.51  jdolecek 
    686   1.93     enami 	user_dta = (caddr_t)(ktp + 1);
    687   1.93     enami 	if (copyin(addr, (void *)user_dta, len) != 0)
    688   1.51  jdolecek 		len = 0;
    689   1.51  jdolecek 
    690   1.93     enami 	kth->ktr_len = sizeof(struct ktr_user) + len;
    691   1.93     enami 	kte->kte_buf = ktp;
    692   1.51  jdolecek 
    693   1.98  christos 	ktraddentry(l, kte, KTA_WAITOK);
    694   1.51  jdolecek 	p->p_traceflag &= ~KTRFAC_ACTIVE;
    695   1.51  jdolecek }
    696   1.51  jdolecek 
    697   1.93     enami void
    698   1.98  christos ktrmmsg(struct lwp *l, const void *msgh, size_t size)
    699   1.62      manu {
    700   1.98  christos 	ktrkmem(l, KTR_MMSG, msgh, size);
    701   1.62      manu }
    702   1.83      manu 
    703   1.93     enami void
    704   1.98  christos ktrmool(struct lwp *l, const void *kaddr, size_t size, const void *uaddr)
    705   1.83      manu {
    706   1.98  christos 	struct proc *p = l->l_proc;
    707   1.93     enami 	struct ktrace_entry *kte;
    708   1.93     enami 	struct ktr_header *kth;
    709   1.83      manu 	struct ktr_mool *kp;
    710   1.97  christos 	struct ktr_mool *bf;
    711   1.83      manu 
    712   1.83      manu 	p->p_traceflag |= KTRFAC_ACTIVE;
    713   1.93     enami 	kte = pool_get(&kte_pool, PR_WAITOK);
    714   1.93     enami 	kth = &kte->kte_kth;
    715   1.98  christos 	ktrinitheader(kth, l, KTR_MOOL);
    716   1.83      manu 
    717   1.93     enami 	kp = malloc(size + sizeof(*kp), M_KTRACE, M_WAITOK);
    718   1.83      manu 	kp->uaddr = uaddr;
    719   1.83      manu 	kp->size = size;
    720   1.97  christos 	bf = kp + 1; /* Skip uaddr and size */
    721   1.97  christos 	(void)memcpy(bf, kaddr, size);
    722   1.88     enami 
    723   1.93     enami 	kth->ktr_len = size + sizeof(*kp);
    724   1.93     enami 	kte->kte_buf = kp;
    725   1.83      manu 
    726   1.98  christos 	ktraddentry(l, kte, KTA_WAITOK);
    727   1.83      manu 	p->p_traceflag &= ~KTRFAC_ACTIVE;
    728   1.83      manu }
    729   1.83      manu 
    730   1.98  christos void
    731   1.98  christos ktrsaupcall(struct lwp *l, int type, int nevent, int nint, void *sas,
    732   1.98  christos     void *ap)
    733   1.98  christos {
    734   1.98  christos 	struct proc *p = l->l_proc;
    735   1.98  christos 	struct ktrace_entry *kte;
    736   1.98  christos 	struct ktr_header *kth;
    737   1.98  christos 	struct ktr_saupcall *ktp;
    738   1.98  christos 	size_t len;
    739   1.98  christos 	struct sa_t **sapp;
    740   1.98  christos 	int i;
    741   1.98  christos 
    742   1.98  christos 	p->p_traceflag |= KTRFAC_ACTIVE;
    743   1.98  christos 	kte = pool_get(&kte_pool, PR_WAITOK);
    744   1.98  christos 	kth = &kte->kte_kth;
    745   1.98  christos 	ktrinitheader(kth, l, KTR_SAUPCALL);
    746   1.98  christos 
    747   1.98  christos 	len = sizeof(struct ktr_saupcall);
    748   1.98  christos 	ktp = malloc(len + sizeof(struct sa_t) * (nevent + nint + 1), M_KTRACE,
    749   1.98  christos 	    M_WAITOK);
    750   1.98  christos 
    751   1.98  christos 	ktp->ktr_type = type;
    752   1.98  christos 	ktp->ktr_nevent = nevent;
    753   1.98  christos 	ktp->ktr_nint = nint;
    754   1.98  christos 	ktp->ktr_sas = sas;
    755   1.98  christos 	ktp->ktr_ap = ap;
    756   1.98  christos 	/*
    757   1.98  christos 	 *  Copy the sa_t's
    758   1.98  christos 	 */
    759   1.98  christos 	sapp = (struct sa_t **) sas;
    760   1.98  christos 
    761   1.98  christos 	for (i = nevent + nint; i >= 0; i--) {
    762   1.98  christos 		if (copyin(*sapp, (char *)ktp + len, sizeof(struct sa_t)) == 0)
    763   1.98  christos 			len += sizeof(struct sa_t);
    764   1.98  christos 		sapp++;
    765   1.98  christos 	}
    766   1.98  christos 
    767   1.98  christos 	kth->ktr_len = len;
    768   1.98  christos 	kte->kte_buf = ktp;
    769   1.98  christos 
    770   1.98  christos 	ktraddentry(l, kte, KTA_WAITOK);
    771   1.98  christos 	p->p_traceflag &= ~KTRFAC_ACTIVE;
    772   1.98  christos }
    773   1.62      manu 
    774    1.1       cgd /* Interface and common routines */
    775    1.1       cgd 
    776   1.17       cgd int
    777   1.89     enami ktrace_common(struct proc *curp, int ops, int facs, int pid, struct file *fp)
    778   1.28  christos {
    779   1.93     enami 	struct proc *p;
    780   1.93     enami 	struct pgrp *pg;
    781   1.93     enami 	struct ktr_desc *ktd = NULL;
    782   1.74      fvdl 	int ret = 0;
    783   1.72   darrenr 	int error = 0;
    784   1.42  sommerfe 	int descend;
    785   1.28  christos 
    786   1.28  christos 	curp->p_traceflag |= KTRFAC_ACTIVE;
    787   1.42  sommerfe 	descend = ops & KTRFLAG_DESCEND;
    788   1.42  sommerfe 	facs = facs & ~((unsigned) KTRFAC_ROOT);
    789   1.28  christos 
    790   1.93     enami 	switch (KTROP(ops)) {
    791   1.93     enami 
    792   1.93     enami 	case KTROP_CLEARFILE:
    793   1.93     enami 		/*
    794   1.93     enami 		 * Clear all uses of the tracefile
    795   1.93     enami 		 */
    796   1.93     enami 
    797   1.93     enami 		ktd = ktd_lookup(fp);
    798   1.93     enami 		if (ktd == NULL)
    799   1.93     enami 			goto done;
    800   1.93     enami 
    801   1.37   thorpej 		proclist_lock_read();
    802   1.94      yamt 		PROCLIST_FOREACH(p, &allproc) {
    803   1.93     enami 			if (p->p_tracep == ktd) {
    804   1.28  christos 				if (ktrcanset(curp, p))
    805   1.28  christos 					ktrderef(p);
    806   1.28  christos 				else
    807   1.28  christos 					error = EPERM;
    808   1.28  christos 			}
    809   1.28  christos 		}
    810   1.36   thorpej 		proclist_unlock_read();
    811   1.28  christos 		goto done;
    812   1.42  sommerfe 
    813   1.93     enami 	case KTROP_SET:
    814   1.93     enami 		ktd = ktd_lookup(fp);
    815   1.93     enami 		if (ktd == NULL) {
    816   1.93     enami 			ktd = malloc(sizeof(struct ktr_desc),
    817   1.93     enami 			    M_KTRACE, M_WAITOK);
    818   1.93     enami 			TAILQ_INIT(&ktd->ktd_queue);
    819   1.93     enami 			simple_lock_init(&ktd->ktd_slock);
    820   1.93     enami 			callout_init(&ktd->ktd_wakch);
    821   1.93     enami 			ktd->ktd_flags = ktd->ktd_qcount =
    822   1.93     enami 			    ktd->ktd_error = ktd->ktd_errcnt = 0;
    823   1.93     enami 			ktd->ktd_ref = 1;
    824   1.93     enami 			ktd->ktd_delayqcnt = ktd_delayqcnt;
    825   1.93     enami 			ktd->ktd_wakedelay = mstohz(ktd_wakedelay);
    826   1.93     enami 			ktd->ktd_intrwakdl = mstohz(ktd_intrwakdl);
    827   1.93     enami 			/*
    828   1.93     enami 			 * XXX: not correct.  needs an way to detect
    829   1.93     enami 			 * whether ktruss or ktrace.
    830   1.93     enami 			 */
    831   1.93     enami 			if (fp->f_type == DTYPE_PIPE)
    832   1.93     enami 				ktd->ktd_flags |= KTDF_INTERACTIVE;
    833   1.93     enami 
    834   1.93     enami 			error = kthread_create1(ktrace_thread, ktd,
    835   1.93     enami 			    &ktd->ktd_proc, "ktr %p", ktd);
    836   1.93     enami 			if (error != 0) {
    837   1.93     enami 				free(ktd, M_KTRACE);
    838   1.93     enami 				goto done;
    839   1.93     enami 			}
    840   1.93     enami 
    841   1.93     enami 			simple_lock(&fp->f_slock);
    842   1.93     enami 			fp->f_count++;
    843   1.93     enami 			simple_unlock(&fp->f_slock);
    844   1.93     enami 			ktd->ktd_fp = fp;
    845   1.93     enami 
    846   1.93     enami 			simple_lock(&ktdq_slock);
    847   1.93     enami 			TAILQ_INSERT_TAIL(&ktdq, ktd, ktd_list);
    848   1.93     enami 			simple_unlock(&ktdq_slock);
    849   1.93     enami 		}
    850   1.93     enami 		break;
    851   1.42  sommerfe 
    852   1.93     enami 	case KTROP_CLEAR:
    853   1.93     enami 		break;
    854   1.43  sommerfe 	}
    855   1.88     enami 
    856   1.28  christos 	/*
    857   1.28  christos 	 * need something to (un)trace (XXX - why is this here?)
    858   1.28  christos 	 */
    859   1.28  christos 	if (!facs) {
    860   1.28  christos 		error = EINVAL;
    861   1.28  christos 		goto done;
    862   1.28  christos 	}
    863   1.93     enami 
    864   1.88     enami 	/*
    865   1.28  christos 	 * do it
    866   1.28  christos 	 */
    867   1.42  sommerfe 	if (pid < 0) {
    868   1.28  christos 		/*
    869   1.28  christos 		 * by process group
    870   1.28  christos 		 */
    871   1.82       dsl 		pg = pg_find(-pid, PFIND_UNLOCK_FAIL);
    872   1.28  christos 		if (pg == NULL) {
    873   1.28  christos 			error = ESRCH;
    874   1.28  christos 			goto done;
    875   1.28  christos 		}
    876   1.81  jdolecek 		LIST_FOREACH(p, &pg->pg_members, p_pglist) {
    877   1.28  christos 			if (descend)
    878   1.93     enami 				ret |= ktrsetchildren(curp, p, ops, facs, ktd);
    879   1.88     enami 			else
    880   1.93     enami 				ret |= ktrops(curp, p, ops, facs, ktd);
    881   1.39   thorpej 		}
    882   1.88     enami 
    883   1.28  christos 	} else {
    884   1.28  christos 		/*
    885   1.28  christos 		 * by pid
    886   1.28  christos 		 */
    887   1.82       dsl 		p = p_find(pid, PFIND_UNLOCK_FAIL);
    888   1.28  christos 		if (p == NULL) {
    889   1.28  christos 			error = ESRCH;
    890   1.28  christos 			goto done;
    891   1.28  christos 		}
    892   1.28  christos 		if (descend)
    893   1.93     enami 			ret |= ktrsetchildren(curp, p, ops, facs, ktd);
    894   1.28  christos 		else
    895   1.93     enami 			ret |= ktrops(curp, p, ops, facs, ktd);
    896   1.28  christos 	}
    897   1.82       dsl 	proclist_unlock_read();	/* taken by p{g}_find */
    898   1.28  christos 	if (!ret)
    899   1.28  christos 		error = EPERM;
    900   1.28  christos done:
    901   1.96  christos 	if (ktd != NULL) {
    902   1.96  christos 		if (error != 0) {
    903   1.96  christos 			/*
    904   1.96  christos 			 * Wakeup the thread so that it can be die if we
    905   1.96  christos 			 * can't trace any process.
    906   1.96  christos 			 */
    907   1.96  christos 			ktd_wakeup(ktd);
    908   1.96  christos 		}
    909   1.96  christos 		if (KTROP(ops) == KTROP_SET || KTROP(ops) == KTROP_CLEARFILE) {
    910   1.96  christos 			    simple_lock(&ktd->ktd_slock);
    911   1.96  christos 			    ktdrel(ktd);
    912   1.96  christos 		}
    913   1.93     enami 	}
    914   1.28  christos 	curp->p_traceflag &= ~KTRFAC_ACTIVE;
    915   1.28  christos 	return (error);
    916   1.28  christos }
    917   1.28  christos 
    918   1.28  christos /*
    919   1.93     enami  * fktrace system call
    920   1.28  christos  */
    921   1.28  christos /* ARGSUSED */
    922   1.28  christos int
    923   1.89     enami sys_fktrace(struct lwp *l, void *v, register_t *retval)
    924   1.42  sommerfe {
    925   1.42  sommerfe 	struct sys_fktrace_args /* {
    926   1.42  sommerfe 		syscallarg(int) fd;
    927   1.42  sommerfe 		syscallarg(int) ops;
    928   1.42  sommerfe 		syscallarg(int) facs;
    929   1.42  sommerfe 		syscallarg(int) pid;
    930   1.42  sommerfe 	} */ *uap = v;
    931   1.98  christos 	struct proc *curp;
    932   1.42  sommerfe 	struct file *fp = NULL;
    933   1.98  christos 	struct filedesc *fdp = l->l_proc->p_fd;
    934   1.70      yamt 	int error;
    935   1.42  sommerfe 
    936   1.98  christos 	curp = l->l_proc;
    937   1.98  christos 	fdp = curp->p_fd;
    938   1.54   thorpej 	if ((fp = fd_getfile(fdp, SCARG(uap, fd))) == NULL)
    939   1.54   thorpej 		return (EBADF);
    940   1.54   thorpej 
    941   1.70      yamt 	FILE_USE(fp);
    942   1.70      yamt 
    943   1.54   thorpej 	if ((fp->f_flag & FWRITE) == 0)
    944   1.70      yamt 		error = EBADF;
    945   1.70      yamt 	else
    946   1.74      fvdl 		error = ktrace_common(curp, SCARG(uap, ops),
    947   1.70      yamt 		    SCARG(uap, facs), SCARG(uap, pid), fp);
    948   1.70      yamt 
    949   1.98  christos 	FILE_UNUSE(fp, l);
    950   1.42  sommerfe 
    951   1.70      yamt 	return error;
    952   1.42  sommerfe }
    953   1.42  sommerfe 
    954   1.42  sommerfe /*
    955   1.42  sommerfe  * ktrace system call
    956   1.42  sommerfe  */
    957   1.42  sommerfe /* ARGSUSED */
    958   1.42  sommerfe int
    959   1.89     enami sys_ktrace(struct lwp *l, void *v, register_t *retval)
    960   1.19   thorpej {
    961   1.28  christos 	struct sys_ktrace_args /* {
    962   1.24   mycroft 		syscallarg(const char *) fname;
    963   1.13       cgd 		syscallarg(int) ops;
    964   1.13       cgd 		syscallarg(int) facs;
    965   1.13       cgd 		syscallarg(int) pid;
    966   1.19   thorpej 	} */ *uap = v;
    967   1.67   thorpej 	struct proc *curp = l->l_proc;
    968   1.28  christos 	struct vnode *vp = NULL;
    969   1.42  sommerfe 	struct file *fp = NULL;
    970   1.42  sommerfe 	int ops = SCARG(uap, ops);
    971   1.98  christos 	struct nameidata nd;
    972   1.74      fvdl 	int error = 0;
    973   1.98  christos 	int fd;
    974    1.1       cgd 
    975   1.42  sommerfe 	ops = KTROP(ops) | (ops & KTRFLAG_DESCEND);
    976   1.42  sommerfe 
    977    1.9       cgd 	curp->p_traceflag |= KTRFAC_ACTIVE;
    978   1.69  christos 	if ((ops & KTROP_CLEAR) == 0) {
    979    1.1       cgd 		/*
    980    1.1       cgd 		 * an operation which requires a file argument.
    981    1.1       cgd 		 */
    982   1.13       cgd 		NDINIT(&nd, LOOKUP, FOLLOW, UIO_USERSPACE, SCARG(uap, fname),
    983   1.98  christos 		    l);
    984   1.22  christos 		if ((error = vn_open(&nd, FREAD|FWRITE, 0)) != 0) {
    985    1.9       cgd 			curp->p_traceflag &= ~KTRFAC_ACTIVE;
    986    1.1       cgd 			return (error);
    987    1.9       cgd 		}
    988    1.1       cgd 		vp = nd.ni_vp;
    989   1.25      fvdl 		VOP_UNLOCK(vp, 0);
    990    1.1       cgd 		if (vp->v_type != VREG) {
    991   1.98  christos 			(void) vn_close(vp, FREAD|FWRITE, curp->p_ucred, l);
    992    1.9       cgd 			curp->p_traceflag &= ~KTRFAC_ACTIVE;
    993    1.1       cgd 			return (EACCES);
    994    1.1       cgd 		}
    995    1.1       cgd 		/*
    996   1.42  sommerfe 		 * XXX This uses up a file descriptor slot in the
    997   1.42  sommerfe 		 * tracing process for the duration of this syscall.
    998   1.42  sommerfe 		 * This is not expected to be a problem.  If
    999   1.42  sommerfe 		 * falloc(NULL, ...) DTRT we could skip that part, but
   1000   1.42  sommerfe 		 * that would require changing its interface to allow
   1001   1.42  sommerfe 		 * the caller to pass in a ucred..
   1002   1.42  sommerfe 		 *
   1003   1.88     enami 		 * This will FILE_USE the fp it returns, if any.
   1004   1.42  sommerfe 		 * Keep it in use until we return.
   1005    1.1       cgd 		 */
   1006   1.42  sommerfe 		if ((error = falloc(curp, &fp, &fd)) != 0)
   1007    1.1       cgd 			goto done;
   1008   1.88     enami 
   1009   1.93     enami 		fp->f_flag = FWRITE;
   1010   1.42  sommerfe 		fp->f_type = DTYPE_VNODE;
   1011   1.42  sommerfe 		fp->f_ops = &vnops;
   1012   1.42  sommerfe 		fp->f_data = (caddr_t)vp;
   1013   1.54   thorpej 		FILE_SET_MATURE(fp);
   1014   1.42  sommerfe 		vp = NULL;
   1015   1.42  sommerfe 	}
   1016   1.74      fvdl 	error = ktrace_common(curp, SCARG(uap, ops), SCARG(uap, facs),
   1017   1.42  sommerfe 	    SCARG(uap, pid), fp);
   1018   1.88     enami done:
   1019    1.1       cgd 	if (vp != NULL)
   1020   1.98  christos 		(void) vn_close(vp, FWRITE, curp->p_ucred, l);
   1021   1.42  sommerfe 	if (fp != NULL) {
   1022   1.98  christos 		FILE_UNUSE(fp, l);	/* release file */
   1023   1.98  christos 		fdrelease(l, fd); 	/* release fd table slot */
   1024   1.42  sommerfe 	}
   1025    1.1       cgd 	return (error);
   1026    1.1       cgd }
   1027    1.1       cgd 
   1028    1.4    andrew int
   1029   1.89     enami ktrops(struct proc *curp, struct proc *p, int ops, int facs,
   1030   1.93     enami     struct ktr_desc *ktd)
   1031    1.1       cgd {
   1032    1.1       cgd 
   1033   1.98  christos 	int vers = ops & KTRFAC_VER_MASK;
   1034   1.98  christos 
   1035    1.1       cgd 	if (!ktrcanset(curp, p))
   1036    1.1       cgd 		return (0);
   1037   1.98  christos 
   1038   1.98  christos 	switch (vers) {
   1039   1.98  christos 	case KTRFACv0:
   1040   1.98  christos 	case KTRFACv1:
   1041   1.98  christos 		break;
   1042   1.98  christos 	default:
   1043   1.98  christos 		return EINVAL;
   1044   1.98  christos 	}
   1045   1.98  christos 
   1046   1.28  christos 	if (KTROP(ops) == KTROP_SET) {
   1047   1.93     enami 		if (p->p_tracep != ktd) {
   1048    1.1       cgd 			/*
   1049    1.1       cgd 			 * if trace file already in use, relinquish
   1050    1.1       cgd 			 */
   1051   1.28  christos 			ktrderef(p);
   1052   1.93     enami 			p->p_tracep = ktd;
   1053   1.28  christos 			ktradref(p);
   1054    1.1       cgd 		}
   1055    1.1       cgd 		p->p_traceflag |= facs;
   1056    1.1       cgd 		if (curp->p_ucred->cr_uid == 0)
   1057    1.1       cgd 			p->p_traceflag |= KTRFAC_ROOT;
   1058   1.88     enami 	} else {
   1059    1.1       cgd 		/* KTROP_CLEAR */
   1060    1.1       cgd 		if (((p->p_traceflag &= ~facs) & KTRFAC_MASK) == 0) {
   1061    1.1       cgd 			/* no more tracing */
   1062   1.28  christos 			ktrderef(p);
   1063    1.1       cgd 		}
   1064    1.1       cgd 	}
   1065   1.21  christos 
   1066   1.98  christos 	if (p->p_traceflag)
   1067   1.98  christos 		p->p_traceflag |= vers;
   1068   1.21  christos 	/*
   1069   1.21  christos 	 * Emit an emulation record, every time there is a ktrace
   1070   1.88     enami 	 * change/attach request.
   1071   1.21  christos 	 */
   1072   1.21  christos 	if (KTRPOINT(p, KTR_EMUL))
   1073   1.84       dsl 		p->p_traceflag |= KTRFAC_TRC_EMUL;
   1074   1.49    martin #ifdef __HAVE_SYSCALL_INTERN
   1075   1.48   mycroft 	(*p->p_emul->e_syscall_intern)(p);
   1076   1.49    martin #endif
   1077    1.1       cgd 
   1078    1.1       cgd 	return (1);
   1079    1.1       cgd }
   1080    1.1       cgd 
   1081   1.22  christos int
   1082   1.89     enami ktrsetchildren(struct proc *curp, struct proc *top, int ops, int facs,
   1083   1.93     enami     struct ktr_desc *ktd)
   1084    1.1       cgd {
   1085   1.28  christos 	struct proc *p;
   1086   1.28  christos 	int ret = 0;
   1087    1.1       cgd 
   1088    1.1       cgd 	p = top;
   1089    1.1       cgd 	for (;;) {
   1090   1.93     enami 		ret |= ktrops(curp, p, ops, facs, ktd);
   1091    1.1       cgd 		/*
   1092    1.1       cgd 		 * If this process has children, descend to them next,
   1093    1.1       cgd 		 * otherwise do any siblings, and if done with this level,
   1094    1.1       cgd 		 * follow back up the tree (but not past top).
   1095    1.1       cgd 		 */
   1096   1.82       dsl 		if (LIST_FIRST(&p->p_children) != NULL) {
   1097   1.39   thorpej 			p = LIST_FIRST(&p->p_children);
   1098   1.82       dsl 			continue;
   1099   1.82       dsl 		}
   1100   1.82       dsl 		for (;;) {
   1101    1.1       cgd 			if (p == top)
   1102    1.1       cgd 				return (ret);
   1103   1.39   thorpej 			if (LIST_NEXT(p, p_sibling) != NULL) {
   1104   1.39   thorpej 				p = LIST_NEXT(p, p_sibling);
   1105    1.1       cgd 				break;
   1106    1.1       cgd 			}
   1107   1.12   mycroft 			p = p->p_pptr;
   1108    1.1       cgd 		}
   1109    1.1       cgd 	}
   1110    1.1       cgd 	/*NOTREACHED*/
   1111    1.1       cgd }
   1112    1.1       cgd 
   1113   1.93     enami void
   1114   1.93     enami ktrwrite(struct ktr_desc *ktd, struct ktrace_entry *kte)
   1115    1.1       cgd {
   1116   1.74      fvdl 	struct uio auio;
   1117   1.93     enami 	struct iovec aiov[64], *iov;
   1118   1.93     enami 	struct ktrace_entry *top = kte;
   1119   1.93     enami 	struct ktr_header *kth;
   1120   1.93     enami 	struct file *fp = ktd->ktd_fp;
   1121   1.93     enami 	struct proc *p;
   1122   1.93     enami 	int error;
   1123   1.93     enami next:
   1124   1.93     enami 	auio.uio_iov = iov = &aiov[0];
   1125    1.1       cgd 	auio.uio_offset = 0;
   1126    1.1       cgd 	auio.uio_segflg = UIO_SYSSPACE;
   1127    1.1       cgd 	auio.uio_rw = UIO_WRITE;
   1128   1.93     enami 	auio.uio_resid = 0;
   1129   1.93     enami 	auio.uio_iovcnt = 0;
   1130   1.99   reinoud 	auio.uio_lwp = curlwp;
   1131   1.93     enami 	do {
   1132   1.93     enami 		kth = &kte->kte_kth;
   1133   1.98  christos 
   1134   1.98  christos 		if (kth->ktr_version == 0) {
   1135   1.98  christos 			/*
   1136   1.98  christos 			 * Convert back to the old format fields
   1137   1.98  christos 			 */
   1138   1.98  christos 			TIMESPEC_TO_TIMEVAL(&kth->ktr_tv, &kth->ktr_time);
   1139   1.98  christos 			kth->ktr_unused = NULL;
   1140   1.98  christos 		}
   1141   1.93     enami 		iov->iov_base = (caddr_t)kth;
   1142   1.93     enami 		iov++->iov_len = sizeof(struct ktr_header);
   1143   1.93     enami 		auio.uio_resid += sizeof(struct ktr_header);
   1144    1.1       cgd 		auio.uio_iovcnt++;
   1145   1.93     enami 		if (kth->ktr_len > 0) {
   1146   1.93     enami 			iov->iov_base = kte->kte_buf;
   1147   1.93     enami 			iov++->iov_len = kth->ktr_len;
   1148   1.93     enami 			auio.uio_resid += kth->ktr_len;
   1149   1.93     enami 			auio.uio_iovcnt++;
   1150   1.93     enami 		}
   1151   1.93     enami 	} while ((kte = TAILQ_NEXT(kte, kte_list)) != NULL &&
   1152   1.93     enami 	    auio.uio_iovcnt < sizeof(aiov) / sizeof(aiov[0]) - 1);
   1153   1.93     enami 
   1154   1.93     enami again:
   1155   1.93     enami 	simple_lock(&fp->f_slock);
   1156   1.93     enami 	FILE_USE(fp);
   1157   1.93     enami 	error = (*fp->f_ops->fo_write)(fp, &fp->f_offset, &auio,
   1158   1.93     enami 	    fp->f_cred, FOF_UPDATE_OFFSET);
   1159   1.93     enami 	FILE_UNUSE(fp, NULL);
   1160   1.93     enami 	switch (error) {
   1161   1.93     enami 
   1162   1.93     enami 	case 0:
   1163   1.93     enami 		if (auio.uio_resid > 0)
   1164   1.93     enami 			goto again;
   1165   1.93     enami 		if (kte != NULL)
   1166   1.93     enami 			goto next;
   1167   1.93     enami 		break;
   1168   1.93     enami 
   1169   1.93     enami 	case EWOULDBLOCK:
   1170   1.93     enami 		preempt(1);
   1171   1.93     enami 		goto again;
   1172   1.93     enami 
   1173   1.93     enami 	default:
   1174   1.93     enami 		/*
   1175   1.93     enami 		 * If error encountered, give up tracing on this
   1176   1.93     enami 		 * vnode.  Don't report EPIPE as this can easily
   1177   1.93     enami 		 * happen with fktrace()/ktruss.
   1178   1.93     enami 		 */
   1179   1.93     enami #ifndef DEBUG
   1180   1.93     enami 		if (error != EPIPE)
   1181   1.93     enami #endif
   1182   1.93     enami 			log(LOG_NOTICE,
   1183   1.93     enami 			    "ktrace write failed, errno %d, tracing stopped\n",
   1184   1.93     enami 			    error);
   1185   1.93     enami 		proclist_lock_read();
   1186   1.94      yamt 		PROCLIST_FOREACH(p, &allproc) {
   1187   1.93     enami 			if (p->p_tracep == ktd)
   1188   1.93     enami 				ktrderef(p);
   1189   1.93     enami 		}
   1190   1.93     enami 		proclist_unlock_read();
   1191   1.93     enami 	}
   1192   1.93     enami 
   1193   1.93     enami 	while ((kte = top) != NULL) {
   1194   1.93     enami 		top = TAILQ_NEXT(top, kte_list);
   1195   1.93     enami 		ktefree(kte);
   1196   1.93     enami 	}
   1197   1.93     enami }
   1198   1.93     enami 
   1199   1.93     enami void
   1200   1.93     enami ktrace_thread(void *arg)
   1201   1.93     enami {
   1202   1.93     enami 	struct ktr_desc *ktd = arg;
   1203   1.93     enami 	struct file *fp = ktd->ktd_fp;
   1204   1.93     enami 	struct ktrace_entry *kte;
   1205   1.93     enami 	int ktrerr, errcnt;
   1206   1.93     enami 
   1207   1.93     enami 	for (;;) {
   1208   1.93     enami 		simple_lock(&ktd->ktd_slock);
   1209   1.93     enami 		kte = TAILQ_FIRST(&ktd->ktd_queue);
   1210   1.93     enami 		if (kte == NULL) {
   1211   1.93     enami 			if (ktd->ktd_flags & KTDF_WAIT) {
   1212   1.93     enami 				ktd->ktd_flags &= ~(KTDF_WAIT | KTDF_BLOCKING);
   1213   1.93     enami 				wakeup(&ktd->ktd_flags);
   1214   1.93     enami 			}
   1215   1.93     enami 			if (ktd->ktd_ref == 0)
   1216   1.93     enami 				break;
   1217   1.93     enami 			ltsleep(ktd, PWAIT | PNORELOCK, "ktrwait", 0,
   1218   1.93     enami 			    &ktd->ktd_slock);
   1219   1.93     enami 			continue;
   1220   1.93     enami 		}
   1221   1.93     enami 		TAILQ_INIT(&ktd->ktd_queue);
   1222   1.93     enami 		ktd->ktd_qcount = 0;
   1223   1.93     enami 		ktrerr = ktd->ktd_error;
   1224   1.93     enami 		errcnt = ktd->ktd_errcnt;
   1225   1.93     enami 		ktd->ktd_error = ktd->ktd_errcnt = 0;
   1226   1.93     enami 		simple_unlock(&ktd->ktd_slock);
   1227   1.93     enami 
   1228   1.93     enami 		if (ktrerr) {
   1229   1.93     enami 			log(LOG_NOTICE,
   1230   1.93     enami 			    "ktrace failed, fp %p, error 0x%x, total %d\n",
   1231   1.93     enami 			    fp, ktrerr, errcnt);
   1232   1.93     enami 		}
   1233   1.93     enami 		ktrwrite(ktd, kte);
   1234    1.1       cgd 	}
   1235   1.93     enami 	simple_unlock(&ktd->ktd_slock);
   1236   1.93     enami 
   1237   1.93     enami 	simple_lock(&ktdq_slock);
   1238   1.93     enami 	TAILQ_REMOVE(&ktdq, ktd, ktd_list);
   1239   1.93     enami 	simple_unlock(&ktdq_slock);
   1240   1.28  christos 
   1241   1.68        pk 	simple_lock(&fp->f_slock);
   1242   1.42  sommerfe 	FILE_USE(fp);
   1243   1.42  sommerfe 
   1244    1.1       cgd 	/*
   1245   1.93     enami 	 * ktrace file descriptor can't be watched (are not visible to
   1246   1.93     enami 	 * userspace), so no kqueue stuff here
   1247   1.93     enami 	 * XXX: The above comment is wrong, because the fktrace file
   1248   1.93     enami 	 * descriptor is available in userland.
   1249    1.1       cgd 	 */
   1250   1.93     enami 	closef(fp, NULL);
   1251   1.93     enami 
   1252   1.93     enami 	callout_stop(&ktd->ktd_wakch);
   1253   1.93     enami 	free(ktd, M_KTRACE);
   1254   1.39   thorpej 
   1255   1.93     enami 	kthread_exit(0);
   1256    1.1       cgd }
   1257    1.1       cgd 
   1258    1.1       cgd /*
   1259    1.1       cgd  * Return true if caller has permission to set the ktracing state
   1260    1.1       cgd  * of target.  Essentially, the target can't possess any
   1261    1.1       cgd  * more permissions than the caller.  KTRFAC_ROOT signifies that
   1262   1.88     enami  * root previously set the tracing status on the target process, and
   1263    1.1       cgd  * so, only root may further change it.
   1264    1.1       cgd  *
   1265    1.1       cgd  * TODO: check groups.  use caller effective gid.
   1266    1.1       cgd  */
   1267   1.22  christos int
   1268   1.89     enami ktrcanset(struct proc *callp, struct proc *targetp)
   1269    1.1       cgd {
   1270   1.28  christos 	struct pcred *caller = callp->p_cred;
   1271   1.28  christos 	struct pcred *target = targetp->p_cred;
   1272    1.1       cgd 
   1273    1.1       cgd 	if ((caller->pc_ucred->cr_uid == target->p_ruid &&
   1274   1.88     enami 	    target->p_ruid == target->p_svuid &&
   1275   1.88     enami 	    caller->p_rgid == target->p_rgid &&	/* XXX */
   1276   1.88     enami 	    target->p_rgid == target->p_svgid &&
   1277   1.88     enami 	    (targetp->p_traceflag & KTRFAC_ROOT) == 0 &&
   1278   1.88     enami 	    (targetp->p_flag & P_SUGID) == 0) ||
   1279   1.88     enami 	    caller->pc_ucred->cr_uid == 0)
   1280    1.1       cgd 		return (1);
   1281    1.1       cgd 
   1282    1.1       cgd 	return (0);
   1283    1.1       cgd }
   1284   1.47   thorpej #endif /* KTRACE */
   1285   1.51  jdolecek 
   1286   1.51  jdolecek /*
   1287   1.51  jdolecek  * Put user defined entry to ktrace records.
   1288   1.51  jdolecek  */
   1289   1.51  jdolecek int
   1290   1.89     enami sys_utrace(struct lwp *l, void *v, register_t *retval)
   1291   1.51  jdolecek {
   1292   1.51  jdolecek #ifdef KTRACE
   1293   1.51  jdolecek 	struct sys_utrace_args /* {
   1294   1.52  jdolecek 		syscallarg(const char *) label;
   1295   1.51  jdolecek 		syscallarg(void *) addr;
   1296   1.51  jdolecek 		syscallarg(size_t) len;
   1297   1.51  jdolecek 	} */ *uap = v;
   1298   1.67   thorpej 	struct proc *p = l->l_proc;
   1299   1.88     enami 
   1300   1.51  jdolecek 	if (!KTRPOINT(p, KTR_USER))
   1301   1.51  jdolecek 		return (0);
   1302   1.53  jdolecek 
   1303   1.53  jdolecek 	if (SCARG(uap, len) > KTR_USER_MAXLEN)
   1304   1.53  jdolecek 		return (EINVAL);
   1305   1.51  jdolecek 
   1306   1.98  christos 	ktruser(l, SCARG(uap, label), SCARG(uap, addr), SCARG(uap, len), 1);
   1307   1.51  jdolecek 
   1308   1.51  jdolecek 	return (0);
   1309   1.51  jdolecek #else /* !KTRACE */
   1310   1.51  jdolecek 	return ENOSYS;
   1311   1.51  jdolecek #endif /* KTRACE */
   1312   1.51  jdolecek }
   1313