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bpf.c revision 1.239
      1  1.239   thorpej /*	$NetBSD: bpf.c,v 1.239 2020/12/18 01:31:49 thorpej Exp $	*/
      2   1.13       cgd 
      3   1.12   mycroft /*
      4   1.12   mycroft  * Copyright (c) 1990, 1991, 1993
      5   1.12   mycroft  *	The Regents of the University of California.  All rights reserved.
      6    1.1       cgd  *
      7    1.1       cgd  * This code is derived from the Stanford/CMU enet packet filter,
      8    1.1       cgd  * (net/enet.c) distributed as part of 4.3BSD, and code contributed
      9   1.36  christos  * to Berkeley by Steven McCanne and Van Jacobson both of Lawrence
     10    1.2       cgd  * Berkeley Laboratory.
     11    1.1       cgd  *
     12    1.1       cgd  * Redistribution and use in source and binary forms, with or without
     13    1.1       cgd  * modification, are permitted provided that the following conditions
     14    1.1       cgd  * are met:
     15    1.1       cgd  * 1. Redistributions of source code must retain the above copyright
     16    1.1       cgd  *    notice, this list of conditions and the following disclaimer.
     17    1.1       cgd  * 2. Redistributions in binary form must reproduce the above copyright
     18    1.1       cgd  *    notice, this list of conditions and the following disclaimer in the
     19    1.1       cgd  *    documentation and/or other materials provided with the distribution.
     20   1.83       agc  * 3. Neither the name of the University nor the names of its contributors
     21    1.1       cgd  *    may be used to endorse or promote products derived from this software
     22    1.1       cgd  *    without specific prior written permission.
     23    1.1       cgd  *
     24    1.1       cgd  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     25    1.1       cgd  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     26    1.1       cgd  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     27    1.1       cgd  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     28    1.1       cgd  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     29    1.1       cgd  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     30    1.1       cgd  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     31    1.1       cgd  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     32    1.1       cgd  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     33    1.1       cgd  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     34    1.1       cgd  * SUCH DAMAGE.
     35    1.1       cgd  *
     36   1.39      fvdl  *	@(#)bpf.c	8.4 (Berkeley) 1/9/95
     37   1.36  christos  * static char rcsid[] =
     38   1.36  christos  * "Header: bpf.c,v 1.67 96/09/26 22:00:52 leres Exp ";
     39    1.1       cgd  */
     40   1.63     lukem 
     41   1.63     lukem #include <sys/cdefs.h>
     42  1.239   thorpej __KERNEL_RCSID(0, "$NetBSD: bpf.c,v 1.239 2020/12/18 01:31:49 thorpej Exp $");
     43  1.127  christos 
     44  1.127  christos #if defined(_KERNEL_OPT)
     45  1.127  christos #include "opt_bpf.h"
     46  1.127  christos #include "sl.h"
     47  1.205     ozaki #include "opt_net_mpsafe.h"
     48  1.127  christos #endif
     49    1.1       cgd 
     50    1.1       cgd #include <sys/param.h>
     51    1.1       cgd #include <sys/systm.h>
     52    1.1       cgd #include <sys/mbuf.h>
     53    1.1       cgd #include <sys/buf.h>
     54   1.12   mycroft #include <sys/time.h>
     55    1.1       cgd #include <sys/proc.h>
     56    1.1       cgd #include <sys/ioctl.h>
     57   1.25  christos #include <sys/conf.h>
     58   1.51     enami #include <sys/vnode.h>
     59  1.105  christos #include <sys/queue.h>
     60  1.145  christos #include <sys/stat.h>
     61  1.154     pooka #include <sys/module.h>
     62  1.155     pooka #include <sys/atomic.h>
     63  1.205     ozaki #include <sys/cpu.h>
     64   1.11   deraadt 
     65    1.1       cgd #include <sys/file.h>
     66  1.105  christos #include <sys/filedesc.h>
     67    1.1       cgd #include <sys/tty.h>
     68    1.1       cgd #include <sys/uio.h>
     69   1.11   deraadt 
     70    1.1       cgd #include <sys/protosw.h>
     71    1.1       cgd #include <sys/socket.h>
     72   1.30   mycroft #include <sys/errno.h>
     73   1.30   mycroft #include <sys/kernel.h>
     74   1.30   mycroft #include <sys/poll.h>
     75   1.89  jonathan #include <sys/sysctl.h>
     76  1.117      elad #include <sys/kauth.h>
     77  1.205     ozaki #include <sys/syslog.h>
     78  1.210     ozaki #include <sys/percpu.h>
     79  1.213     ozaki #include <sys/pserialize.h>
     80  1.213     ozaki #include <sys/lwp.h>
     81  1.235   thorpej #include <sys/xcall.h>
     82   1.30   mycroft 
     83   1.11   deraadt #include <net/if.h>
     84  1.104  christos #include <net/slip.h>
     85    1.8   mycroft 
     86    1.1       cgd #include <net/bpf.h>
     87    1.1       cgd #include <net/bpfdesc.h>
     88  1.173     alnsn #include <net/bpfjit.h>
     89    1.1       cgd 
     90   1.35    scottr #include <net/if_arc.h>
     91   1.34        is #include <net/if_ether.h>
     92   1.34        is 
     93   1.12   mycroft #include <netinet/in.h>
     94   1.34        is #include <netinet/if_inarp.h>
     95   1.65  wrstuden 
     96  1.127  christos 
     97  1.127  christos #include <compat/sys/sockio.h>
     98   1.11   deraadt 
     99   1.55  jonathan #ifndef BPF_BUFSIZE
    100   1.87  jonathan /*
    101   1.87  jonathan  * 4096 is too small for FDDI frames. 8192 is too small for gigabit Ethernet
    102   1.87  jonathan  * jumbos (circa 9k), ATM, or Intel gig/10gig ethernet jumbos (16k).
    103   1.87  jonathan  */
    104   1.87  jonathan # define BPF_BUFSIZE 32768
    105   1.55  jonathan #endif
    106    1.1       cgd 
    107   1.12   mycroft #define PRINET  26			/* interruptible */
    108    1.2       cgd 
    109    1.1       cgd /*
    110   1.89  jonathan  * The default read buffer size, and limit for BIOCSBLEN, is sysctl'able.
    111   1.89  jonathan  * XXX the default values should be computed dynamically based
    112   1.89  jonathan  * on available memory size and available mbuf clusters.
    113    1.1       cgd  */
    114  1.207     ozaki static int bpf_bufsize = BPF_BUFSIZE;
    115  1.207     ozaki static int bpf_maxbufsize = BPF_DFLTBUFSIZE;	/* XXX set dynamically, see above */
    116  1.207     ozaki static bool bpf_jit = false;
    117  1.173     alnsn 
    118  1.173     alnsn struct bpfjit_ops bpfjit_module_ops = {
    119  1.173     alnsn 	.bj_generate_code = NULL,
    120  1.173     alnsn 	.bj_free_code = NULL
    121  1.173     alnsn };
    122    1.1       cgd 
    123  1.110    rpaulo /*
    124  1.110    rpaulo  * Global BPF statistics returned by net.bpf.stats sysctl.
    125  1.110    rpaulo  */
    126  1.210     ozaki static struct percpu	*bpf_gstats_percpu; /* struct bpf_stat */
    127  1.210     ozaki 
    128  1.210     ozaki #define BPF_STATINC(id)					\
    129  1.210     ozaki 	{						\
    130  1.210     ozaki 		struct bpf_stat *__stats =		\
    131  1.210     ozaki 		    percpu_getref(bpf_gstats_percpu);	\
    132  1.210     ozaki 		__stats->bs_##id++;			\
    133  1.210     ozaki 		percpu_putref(bpf_gstats_percpu);	\
    134  1.210     ozaki 	}
    135  1.110    rpaulo 
    136  1.110    rpaulo /*
    137  1.213     ozaki  * Locking notes:
    138  1.213     ozaki  * - bpf_mtx (adaptive mutex) protects:
    139  1.213     ozaki  *   - Gobal lists: bpf_iflist and bpf_dlist
    140  1.213     ozaki  *   - struct bpf_if
    141  1.213     ozaki  *   - bpf_close
    142  1.213     ozaki  *   - bpf_psz (pserialize)
    143  1.213     ozaki  * - struct bpf_d has two mutexes:
    144  1.213     ozaki  *   - bd_buf_mtx (spin mutex) protects the buffers that can be accessed
    145  1.213     ozaki  *     on packet tapping
    146  1.213     ozaki  *   - bd_mtx (adaptive mutex) protects member variables other than the buffers
    147  1.213     ozaki  * - Locking order: bpf_mtx => bpf_d#bd_mtx => bpf_d#bd_buf_mtx
    148  1.213     ozaki  * - struct bpf_d obtained via fp->f_bpf in bpf_read and bpf_write is
    149  1.213     ozaki  *   never freed because struct bpf_d is only freed in bpf_close and
    150  1.213     ozaki  *   bpf_close never be called while executing bpf_read and bpf_write
    151  1.213     ozaki  * - A filter that is assigned to bpf_d can be replaced with another filter
    152  1.213     ozaki  *   while tapping packets, so it needs to be done atomically
    153  1.213     ozaki  * - struct bpf_d is iterated on bpf_dlist with psz
    154  1.213     ozaki  * - struct bpf_if is iterated on bpf_iflist with psz or psref
    155  1.213     ozaki  */
    156  1.213     ozaki /*
    157  1.110    rpaulo  * Use a mutex to avoid a race condition between gathering the stats/peers
    158  1.110    rpaulo  * and opening/closing the device.
    159  1.110    rpaulo  */
    160  1.130   xtraeme static kmutex_t bpf_mtx;
    161  1.110    rpaulo 
    162  1.213     ozaki static struct psref_class	*bpf_psref_class __read_mostly;
    163  1.213     ozaki static pserialize_t		bpf_psz;
    164  1.213     ozaki 
    165  1.213     ozaki static inline void
    166  1.213     ozaki bpf_if_acquire(struct bpf_if *bp, struct psref *psref)
    167  1.213     ozaki {
    168  1.213     ozaki 
    169  1.213     ozaki 	psref_acquire(psref, &bp->bif_psref, bpf_psref_class);
    170  1.213     ozaki }
    171  1.213     ozaki 
    172  1.213     ozaki static inline void
    173  1.213     ozaki bpf_if_release(struct bpf_if *bp, struct psref *psref)
    174  1.213     ozaki {
    175  1.213     ozaki 
    176  1.213     ozaki 	psref_release(psref, &bp->bif_psref, bpf_psref_class);
    177  1.213     ozaki }
    178  1.213     ozaki 
    179    1.1       cgd /*
    180    1.1       cgd  *  bpf_iflist is the list of interfaces; each corresponds to an ifnet
    181    1.1       cgd  *  bpf_dtab holds the descriptors, indexed by minor device #
    182    1.1       cgd  */
    183  1.209     ozaki static struct pslist_head bpf_iflist;
    184  1.209     ozaki static struct pslist_head bpf_dlist;
    185  1.209     ozaki 
    186  1.209     ozaki /* Macros for bpf_d on bpf_dlist */
    187  1.215  christos #define BPF_DLIST_WRITER_INSERT_HEAD(__d)				\
    188  1.209     ozaki 	PSLIST_WRITER_INSERT_HEAD(&bpf_dlist, (__d), bd_bpf_dlist_entry)
    189  1.209     ozaki #define BPF_DLIST_READER_FOREACH(__d)					\
    190  1.209     ozaki 	PSLIST_READER_FOREACH((__d), &bpf_dlist, struct bpf_d,		\
    191  1.209     ozaki 	                      bd_bpf_dlist_entry)
    192  1.209     ozaki #define BPF_DLIST_WRITER_FOREACH(__d)					\
    193  1.209     ozaki 	PSLIST_WRITER_FOREACH((__d), &bpf_dlist, struct bpf_d,		\
    194  1.209     ozaki 	                      bd_bpf_dlist_entry)
    195  1.209     ozaki #define BPF_DLIST_ENTRY_INIT(__d)					\
    196  1.209     ozaki 	PSLIST_ENTRY_INIT((__d), bd_bpf_dlist_entry)
    197  1.209     ozaki #define BPF_DLIST_WRITER_REMOVE(__d)					\
    198  1.209     ozaki 	PSLIST_WRITER_REMOVE((__d), bd_bpf_dlist_entry)
    199  1.209     ozaki #define BPF_DLIST_ENTRY_DESTROY(__d)					\
    200  1.209     ozaki 	PSLIST_ENTRY_DESTROY((__d), bd_bpf_dlist_entry)
    201  1.209     ozaki 
    202  1.209     ozaki /* Macros for bpf_if on bpf_iflist */
    203  1.209     ozaki #define BPF_IFLIST_WRITER_INSERT_HEAD(__bp)				\
    204  1.209     ozaki 	PSLIST_WRITER_INSERT_HEAD(&bpf_iflist, (__bp), bif_iflist_entry)
    205  1.209     ozaki #define BPF_IFLIST_READER_FOREACH(__bp)					\
    206  1.209     ozaki 	PSLIST_READER_FOREACH((__bp), &bpf_iflist, struct bpf_if,	\
    207  1.209     ozaki 	                      bif_iflist_entry)
    208  1.209     ozaki #define BPF_IFLIST_WRITER_FOREACH(__bp)					\
    209  1.209     ozaki 	PSLIST_WRITER_FOREACH((__bp), &bpf_iflist, struct bpf_if,	\
    210  1.209     ozaki 	                      bif_iflist_entry)
    211  1.209     ozaki #define BPF_IFLIST_WRITER_REMOVE(__bp)					\
    212  1.209     ozaki 	PSLIST_WRITER_REMOVE((__bp), bif_iflist_entry)
    213  1.209     ozaki #define BPF_IFLIST_ENTRY_INIT(__bp)					\
    214  1.209     ozaki 	PSLIST_ENTRY_INIT((__bp), bif_iflist_entry)
    215  1.209     ozaki #define BPF_IFLIST_ENTRY_DESTROY(__bp)					\
    216  1.209     ozaki 	PSLIST_ENTRY_DESTROY((__bp), bif_iflist_entry)
    217  1.209     ozaki 
    218  1.209     ozaki /* Macros for bpf_d on bpf_if#bif_dlist_pslist */
    219  1.209     ozaki #define BPFIF_DLIST_READER_FOREACH(__d, __bp)				\
    220  1.209     ozaki 	PSLIST_READER_FOREACH((__d), &(__bp)->bif_dlist_head, struct bpf_d, \
    221  1.209     ozaki 	                      bd_bif_dlist_entry)
    222  1.209     ozaki #define BPFIF_DLIST_WRITER_INSERT_HEAD(__bp, __d)			\
    223  1.209     ozaki 	PSLIST_WRITER_INSERT_HEAD(&(__bp)->bif_dlist_head, (__d),	\
    224  1.209     ozaki 	                          bd_bif_dlist_entry)
    225  1.209     ozaki #define BPFIF_DLIST_WRITER_REMOVE(__d)					\
    226  1.209     ozaki 	PSLIST_WRITER_REMOVE((__d), bd_bif_dlist_entry)
    227  1.209     ozaki #define BPFIF_DLIST_ENTRY_INIT(__d)					\
    228  1.209     ozaki 	PSLIST_ENTRY_INIT((__d), bd_bif_dlist_entry)
    229  1.209     ozaki #define	BPFIF_DLIST_READER_EMPTY(__bp)					\
    230  1.209     ozaki 	(PSLIST_READER_FIRST(&(__bp)->bif_dlist_head, struct bpf_d,	\
    231  1.209     ozaki 	                     bd_bif_dlist_entry) == NULL)
    232  1.209     ozaki #define	BPFIF_DLIST_WRITER_EMPTY(__bp)					\
    233  1.209     ozaki 	(PSLIST_WRITER_FIRST(&(__bp)->bif_dlist_head, struct bpf_d,	\
    234  1.209     ozaki 	                     bd_bif_dlist_entry) == NULL)
    235  1.209     ozaki #define BPFIF_DLIST_ENTRY_DESTROY(__d)					\
    236  1.209     ozaki 	PSLIST_ENTRY_DESTROY((__d), bd_bif_dlist_entry)
    237    1.1       cgd 
    238  1.103  christos static int	bpf_allocbufs(struct bpf_d *);
    239  1.237       roy static u_int	bpf_xfilter(struct bpf_filter **, void *, u_int, u_int);
    240  1.101    dyoung static void	bpf_deliver(struct bpf_if *,
    241  1.137  christos 		            void *(*cpfn)(void *, const void *, size_t),
    242  1.226   msaitoh 		            void *, u_int, u_int, const u_int);
    243  1.103  christos static void	bpf_freed(struct bpf_d *);
    244  1.213     ozaki static void	bpf_free_filter(struct bpf_filter *);
    245  1.103  christos static void	bpf_ifname(struct ifnet *, struct ifreq *);
    246  1.137  christos static void	*bpf_mcpy(void *, const void *, size_t);
    247  1.160  christos static int	bpf_movein(struct uio *, int, uint64_t,
    248  1.237       roy 			        struct mbuf **, struct sockaddr *,
    249  1.237       roy 				struct bpf_filter **);
    250  1.103  christos static void	bpf_attachd(struct bpf_d *, struct bpf_if *);
    251  1.103  christos static void	bpf_detachd(struct bpf_d *);
    252  1.103  christos static int	bpf_setif(struct bpf_d *, struct ifreq *);
    253  1.237       roy static int	bpf_setf(struct bpf_d *, struct bpf_program *, u_long);
    254  1.103  christos static void	bpf_timed_out(void *);
    255  1.114     perry static inline void
    256  1.103  christos 		bpf_wakeup(struct bpf_d *);
    257  1.166    bouyer static int	bpf_hdrlen(struct bpf_d *);
    258  1.103  christos static void	catchpacket(struct bpf_d *, u_char *, u_int, u_int,
    259  1.142  christos     void *(*)(void *, const void *, size_t), struct timespec *);
    260  1.103  christos static void	reset_d(struct bpf_d *);
    261  1.103  christos static int	bpf_getdltlist(struct bpf_d *, struct bpf_dltlist *);
    262  1.103  christos static int	bpf_setdlt(struct bpf_d *, u_int);
    263   1.12   mycroft 
    264  1.117      elad static int	bpf_read(struct file *, off_t *, struct uio *, kauth_cred_t,
    265  1.105  christos     int);
    266  1.117      elad static int	bpf_write(struct file *, off_t *, struct uio *, kauth_cred_t,
    267  1.105  christos     int);
    268  1.135        ad static int	bpf_ioctl(struct file *, u_long, void *);
    269  1.135        ad static int	bpf_poll(struct file *, int);
    270  1.145  christos static int	bpf_stat(struct file *, struct stat *);
    271  1.135        ad static int	bpf_close(struct file *);
    272  1.105  christos static int	bpf_kqfilter(struct file *, struct knote *);
    273  1.105  christos 
    274  1.105  christos static const struct fileops bpf_fileops = {
    275  1.220  christos 	.fo_name = "bpf",
    276  1.144        ad 	.fo_read = bpf_read,
    277  1.144        ad 	.fo_write = bpf_write,
    278  1.144        ad 	.fo_ioctl = bpf_ioctl,
    279  1.144        ad 	.fo_fcntl = fnullop_fcntl,
    280  1.144        ad 	.fo_poll = bpf_poll,
    281  1.145  christos 	.fo_stat = bpf_stat,
    282  1.144        ad 	.fo_close = bpf_close,
    283  1.144        ad 	.fo_kqfilter = bpf_kqfilter,
    284  1.150       dsl 	.fo_restart = fnullop_restart,
    285  1.105  christos };
    286  1.105  christos 
    287   1.67   gehenna dev_type_open(bpfopen);
    288   1.67   gehenna 
    289   1.67   gehenna const struct cdevsw bpf_cdevsw = {
    290  1.182  dholland 	.d_open = bpfopen,
    291  1.182  dholland 	.d_close = noclose,
    292  1.182  dholland 	.d_read = noread,
    293  1.182  dholland 	.d_write = nowrite,
    294  1.182  dholland 	.d_ioctl = noioctl,
    295  1.182  dholland 	.d_stop = nostop,
    296  1.182  dholland 	.d_tty = notty,
    297  1.182  dholland 	.d_poll = nopoll,
    298  1.182  dholland 	.d_mmap = nommap,
    299  1.182  dholland 	.d_kqfilter = nokqfilter,
    300  1.185  dholland 	.d_discard = nodiscard,
    301  1.217     ozaki 	.d_flag = D_OTHER | D_MPSAFE
    302   1.67   gehenna };
    303   1.67   gehenna 
    304  1.178     rmind bpfjit_func_t
    305  1.178     rmind bpf_jit_generate(bpf_ctx_t *bc, void *code, size_t size)
    306  1.178     rmind {
    307  1.234  riastrad 	struct bpfjit_ops *ops = &bpfjit_module_ops;
    308  1.234  riastrad 	bpfjit_func_t (*generate_code)(const bpf_ctx_t *,
    309  1.234  riastrad 	    const struct bpf_insn *, size_t);
    310  1.234  riastrad 
    311  1.234  riastrad 	generate_code = atomic_load_acquire(&ops->bj_generate_code);
    312  1.234  riastrad 	if (generate_code != NULL) {
    313  1.234  riastrad 		return generate_code(bc, code, size);
    314  1.178     rmind 	}
    315  1.178     rmind 	return NULL;
    316  1.178     rmind }
    317  1.178     rmind 
    318  1.178     rmind void
    319  1.178     rmind bpf_jit_freecode(bpfjit_func_t jcode)
    320  1.178     rmind {
    321  1.178     rmind 	KASSERT(bpfjit_module_ops.bj_free_code != NULL);
    322  1.178     rmind 	bpfjit_module_ops.bj_free_code(jcode);
    323  1.178     rmind }
    324  1.178     rmind 
    325   1.12   mycroft static int
    326  1.160  christos bpf_movein(struct uio *uio, int linktype, uint64_t mtu, struct mbuf **mp,
    327  1.237       roy 	   struct sockaddr *sockp, struct bpf_filter **wfilter)
    328   1.12   mycroft {
    329  1.232       ryo 	struct mbuf *m, *m0, *n;
    330   1.12   mycroft 	int error;
    331  1.160  christos 	size_t len;
    332  1.160  christos 	size_t hlen;
    333  1.160  christos 	size_t align;
    334  1.237       roy 	u_int slen;
    335   1.12   mycroft 
    336   1.12   mycroft 	/*
    337   1.12   mycroft 	 * Build a sockaddr based on the data link layer type.
    338   1.12   mycroft 	 * We do this at this level because the ethernet header
    339   1.12   mycroft 	 * is copied directly into the data field of the sockaddr.
    340   1.12   mycroft 	 * In the case of SLIP, there is no header and the packet
    341   1.12   mycroft 	 * is forwarded as is.
    342   1.12   mycroft 	 * Also, we are careful to leave room at the front of the mbuf
    343   1.12   mycroft 	 * for the link level header.
    344   1.12   mycroft 	 */
    345   1.12   mycroft 	switch (linktype) {
    346   1.12   mycroft 
    347   1.12   mycroft 	case DLT_SLIP:
    348   1.12   mycroft 		sockp->sa_family = AF_INET;
    349   1.12   mycroft 		hlen = 0;
    350   1.36  christos 		align = 0;
    351   1.12   mycroft 		break;
    352   1.12   mycroft 
    353   1.12   mycroft 	case DLT_PPP:
    354   1.12   mycroft 		sockp->sa_family = AF_UNSPEC;
    355   1.12   mycroft 		hlen = 0;
    356   1.36  christos 		align = 0;
    357   1.12   mycroft 		break;
    358   1.12   mycroft 
    359   1.12   mycroft 	case DLT_EN10MB:
    360   1.12   mycroft 		sockp->sa_family = AF_UNSPEC;
    361   1.12   mycroft 		/* XXX Would MAXLINKHDR be better? */
    362   1.36  christos  		/* 6(dst)+6(src)+2(type) */
    363   1.12   mycroft 		hlen = sizeof(struct ether_header);
    364   1.36  christos 		align = 2;
    365   1.17     glass 		break;
    366   1.17     glass 
    367   1.17     glass 	case DLT_ARCNET:
    368   1.17     glass 		sockp->sa_family = AF_UNSPEC;
    369   1.17     glass 		hlen = ARC_HDRLEN;
    370   1.36  christos 		align = 5;
    371   1.12   mycroft 		break;
    372   1.12   mycroft 
    373   1.12   mycroft 	case DLT_FDDI:
    374   1.56      matt 		sockp->sa_family = AF_LINK;
    375   1.56      matt 		/* XXX 4(FORMAC)+6(dst)+6(src) */
    376   1.56      matt 		hlen = 16;
    377   1.36  christos 		align = 0;
    378   1.62     bjh21 		break;
    379   1.62     bjh21 
    380   1.62     bjh21 	case DLT_ECONET:
    381   1.62     bjh21 		sockp->sa_family = AF_UNSPEC;
    382   1.62     bjh21 		hlen = 6;
    383   1.62     bjh21 		align = 2;
    384   1.12   mycroft 		break;
    385   1.12   mycroft 
    386   1.12   mycroft 	case DLT_NULL:
    387   1.12   mycroft 		sockp->sa_family = AF_UNSPEC;
    388   1.12   mycroft 		hlen = 0;
    389   1.36  christos 		align = 0;
    390   1.12   mycroft 		break;
    391   1.12   mycroft 
    392   1.12   mycroft 	default:
    393   1.12   mycroft 		return (EIO);
    394   1.12   mycroft 	}
    395   1.12   mycroft 
    396   1.12   mycroft 	len = uio->uio_resid;
    397   1.36  christos 	/*
    398   1.36  christos 	 * If there aren't enough bytes for a link level header or the
    399   1.36  christos 	 * packet length exceeds the interface mtu, return an error.
    400   1.36  christos 	 */
    401  1.160  christos 	if (len - hlen > mtu)
    402   1.36  christos 		return (EMSGSIZE);
    403   1.36  christos 
    404  1.232       ryo 	m0 = m = m_gethdr(M_WAIT, MT_DATA);
    405  1.197     ozaki 	m_reset_rcvif(m);
    406  1.160  christos 	m->m_pkthdr.len = (int)(len - hlen);
    407  1.160  christos 	if (len + align > MHLEN) {
    408   1.77      matt 		m_clget(m, M_WAIT);
    409   1.12   mycroft 		if ((m->m_flags & M_EXT) == 0) {
    410   1.12   mycroft 			error = ENOBUFS;
    411   1.12   mycroft 			goto bad;
    412   1.12   mycroft 		}
    413   1.12   mycroft 	}
    414   1.36  christos 
    415   1.36  christos 	/* Insure the data is properly aligned */
    416  1.232       ryo 	if (align > 0)
    417   1.36  christos 		m->m_data += align;
    418  1.232       ryo 
    419  1.232       ryo 	for (;;) {
    420  1.232       ryo 		len = M_TRAILINGSPACE(m);
    421  1.232       ryo 		if (len > uio->uio_resid)
    422  1.232       ryo 			len = uio->uio_resid;
    423  1.232       ryo 		error = uiomove(mtod(m, void *), len, uio);
    424  1.232       ryo 		if (error)
    425  1.232       ryo 			goto bad;
    426  1.232       ryo 		m->m_len = len;
    427  1.232       ryo 
    428  1.232       ryo 		if (uio->uio_resid == 0)
    429  1.232       ryo 			break;
    430  1.232       ryo 
    431  1.232       ryo 		n = m_get(M_WAIT, MT_DATA);
    432  1.232       ryo 		m_clget(n, M_WAIT);	/* if fails, there is no problem */
    433  1.232       ryo 		m->m_next = n;
    434  1.232       ryo 		m = n;
    435   1.36  christos 	}
    436   1.36  christos 
    437  1.237       roy 	slen = bpf_xfilter(wfilter, mtod(m, u_char *), len, len);
    438  1.237       roy 	if (slen == 0) {
    439  1.237       roy 		error = EPERM;
    440  1.237       roy 		goto bad;
    441  1.237       roy 	}
    442  1.237       roy 
    443   1.12   mycroft 	if (hlen != 0) {
    444  1.232       ryo 		/* move link level header in the top of mbuf to sa_data */
    445  1.232       ryo 		memcpy(sockp->sa_data, mtod(m0, void *), hlen);
    446  1.232       ryo 		m0->m_data += hlen;
    447  1.232       ryo 		m0->m_len -= hlen;
    448   1.12   mycroft 	}
    449  1.232       ryo 
    450  1.232       ryo 	*mp = m0;
    451   1.38   mycroft 	return (0);
    452   1.38   mycroft 
    453   1.38   mycroft bad:
    454  1.232       ryo 	m_freem(m0);
    455   1.12   mycroft 	return (error);
    456   1.12   mycroft }
    457    1.1       cgd 
    458    1.1       cgd /*
    459    1.2       cgd  * Attach file to the bpf interface, i.e. make d listen on bp.
    460    1.1       cgd  */
    461    1.1       cgd static void
    462  1.111    rpaulo bpf_attachd(struct bpf_d *d, struct bpf_if *bp)
    463    1.1       cgd {
    464  1.213     ozaki 
    465  1.192  christos 	KASSERT(mutex_owned(&bpf_mtx));
    466  1.213     ozaki 	KASSERT(mutex_owned(d->bd_mtx));
    467    1.2       cgd 	/*
    468    1.2       cgd 	 * Point d at bp, and add d to the interface's list of listeners.
    469    1.2       cgd 	 * Finally, point the driver's bpf cookie at the interface so
    470    1.2       cgd 	 * it will divert packets to bpf.
    471    1.2       cgd 	 */
    472    1.1       cgd 	d->bd_bif = bp;
    473  1.209     ozaki 	BPFIF_DLIST_WRITER_INSERT_HEAD(bp, d);
    474    1.1       cgd 
    475    1.1       cgd 	*bp->bif_driverp = bp;
    476    1.1       cgd }
    477    1.1       cgd 
    478    1.2       cgd /*
    479    1.2       cgd  * Detach a file from its interface.
    480    1.2       cgd  */
    481    1.1       cgd static void
    482  1.111    rpaulo bpf_detachd(struct bpf_d *d)
    483    1.1       cgd {
    484    1.1       cgd 	struct bpf_if *bp;
    485    1.1       cgd 
    486  1.192  christos 	KASSERT(mutex_owned(&bpf_mtx));
    487  1.213     ozaki 	KASSERT(mutex_owned(d->bd_mtx));
    488  1.192  christos 
    489    1.1       cgd 	bp = d->bd_bif;
    490    1.1       cgd 	/*
    491    1.1       cgd 	 * Check if this descriptor had requested promiscuous mode.
    492    1.1       cgd 	 * If so, turn it off.
    493    1.1       cgd 	 */
    494    1.1       cgd 	if (d->bd_promisc) {
    495  1.180  christos 		int error __diagused;
    496   1.18   mycroft 
    497    1.1       cgd 		d->bd_promisc = 0;
    498   1.36  christos 		/*
    499   1.36  christos 		 * Take device out of promiscuous mode.  Since we were
    500   1.36  christos 		 * able to enter promiscuous mode, we should be able
    501   1.36  christos 		 * to turn it off.  But we can get an error if
    502   1.36  christos 		 * the interface was configured down, so only panic
    503   1.36  christos 		 * if we don't get an unexpected error.
    504   1.36  christos 		 */
    505  1.219     ozaki 		KERNEL_LOCK_UNLESS_NET_MPSAFE();
    506   1.36  christos   		error = ifpromisc(bp->bif_ifp, 0);
    507  1.219     ozaki 		KERNEL_UNLOCK_UNLESS_NET_MPSAFE();
    508  1.180  christos #ifdef DIAGNOSTIC
    509  1.180  christos 		if (error)
    510  1.180  christos 			printf("%s: ifpromisc failed: %d", __func__, error);
    511  1.180  christos #endif
    512    1.1       cgd 	}
    513  1.209     ozaki 
    514    1.2       cgd 	/* Remove d from the interface's descriptor list. */
    515  1.209     ozaki 	BPFIF_DLIST_WRITER_REMOVE(d);
    516  1.209     ozaki 
    517  1.213     ozaki 	pserialize_perform(bpf_psz);
    518  1.209     ozaki 
    519  1.209     ozaki 	if (BPFIF_DLIST_WRITER_EMPTY(bp)) {
    520    1.1       cgd 		/*
    521    1.1       cgd 		 * Let the driver know that there are no more listeners.
    522    1.1       cgd 		 */
    523  1.187     ozaki 		*d->bd_bif->bif_driverp = NULL;
    524  1.209     ozaki 	}
    525  1.187     ozaki 	d->bd_bif = NULL;
    526    1.1       cgd }
    527    1.1       cgd 
    528  1.203  pgoyette static void
    529  1.203  pgoyette bpf_init(void)
    530  1.154     pooka {
    531  1.154     pooka 
    532  1.154     pooka 	mutex_init(&bpf_mtx, MUTEX_DEFAULT, IPL_NONE);
    533  1.213     ozaki 	bpf_psz = pserialize_create();
    534  1.213     ozaki 	bpf_psref_class = psref_class_create("bpf", IPL_SOFTNET);
    535  1.154     pooka 
    536  1.209     ozaki 	PSLIST_INIT(&bpf_iflist);
    537  1.209     ozaki 	PSLIST_INIT(&bpf_dlist);
    538  1.154     pooka 
    539  1.210     ozaki 	bpf_gstats_percpu = percpu_alloc(sizeof(struct bpf_stat));
    540  1.154     pooka 
    541  1.203  pgoyette 	return;
    542  1.154     pooka }
    543    1.1       cgd 
    544    1.1       cgd /*
    545  1.203  pgoyette  * bpfilterattach() is called at boot time.  We don't need to do anything
    546  1.203  pgoyette  * here, since any initialization will happen as part of module init code.
    547   1.46    bouyer  */
    548   1.46    bouyer /* ARGSUSED */
    549   1.46    bouyer void
    550  1.125  christos bpfilterattach(int n)
    551   1.46    bouyer {
    552  1.151     pooka 
    553   1.46    bouyer }
    554   1.46    bouyer 
    555   1.46    bouyer /*
    556  1.105  christos  * Open ethernet device. Clones.
    557    1.1       cgd  */
    558    1.1       cgd /* ARGSUSED */
    559    1.1       cgd int
    560  1.125  christos bpfopen(dev_t dev, int flag, int mode, struct lwp *l)
    561    1.1       cgd {
    562   1.53  augustss 	struct bpf_d *d;
    563  1.105  christos 	struct file *fp;
    564  1.105  christos 	int error, fd;
    565   1.12   mycroft 
    566  1.191     joerg 	/* falloc() will fill in the descriptor for us. */
    567  1.135        ad 	if ((error = fd_allocfile(&fp, &fd)) != 0)
    568  1.105  christos 		return error;
    569    1.2       cgd 
    570  1.208     ozaki 	d = kmem_zalloc(sizeof(*d), KM_SLEEP);
    571    1.2       cgd 	d->bd_bufsize = bpf_bufsize;
    572  1.226   msaitoh 	d->bd_direction = BPF_D_INOUT;
    573  1.156  christos 	d->bd_feedback = 0;
    574  1.112  christos 	d->bd_pid = l->l_proc->p_pid;
    575  1.166    bouyer #ifdef _LP64
    576  1.166    bouyer 	if (curproc->p_flag & PK_32)
    577  1.166    bouyer 		d->bd_compat32 = 1;
    578  1.166    bouyer #endif
    579  1.145  christos 	getnanotime(&d->bd_btime);
    580  1.145  christos 	d->bd_atime = d->bd_mtime = d->bd_btime;
    581  1.222     ozaki 	callout_init(&d->bd_callout, CALLOUT_MPSAFE);
    582  1.134     rmind 	selinit(&d->bd_sel);
    583  1.173     alnsn 	d->bd_jitcode = NULL;
    584  1.237       roy 	d->bd_rfilter = NULL;
    585  1.237       roy 	d->bd_wfilter = NULL;
    586  1.237       roy 	d->bd_locked = 0;
    587  1.209     ozaki 	BPF_DLIST_ENTRY_INIT(d);
    588  1.209     ozaki 	BPFIF_DLIST_ENTRY_INIT(d);
    589  1.213     ozaki 	d->bd_mtx = mutex_obj_alloc(MUTEX_DEFAULT, IPL_SOFTNET);
    590  1.213     ozaki 	d->bd_buf_mtx = mutex_obj_alloc(MUTEX_DEFAULT, IPL_NET);
    591  1.211     ozaki 	cv_init(&d->bd_cv, "bpf");
    592    1.1       cgd 
    593  1.130   xtraeme 	mutex_enter(&bpf_mtx);
    594  1.215  christos 	BPF_DLIST_WRITER_INSERT_HEAD(d);
    595  1.130   xtraeme 	mutex_exit(&bpf_mtx);
    596  1.105  christos 
    597  1.135        ad 	return fd_clone(fp, fd, flag, &bpf_fileops, d);
    598    1.1       cgd }
    599    1.1       cgd 
    600    1.1       cgd /*
    601    1.1       cgd  * Close the descriptor by detaching it from its interface,
    602    1.1       cgd  * deallocating its buffers, and marking it free.
    603    1.1       cgd  */
    604    1.1       cgd /* ARGSUSED */
    605  1.105  christos static int
    606  1.135        ad bpf_close(struct file *fp)
    607    1.1       cgd {
    608  1.194  christos 	struct bpf_d *d;
    609    1.1       cgd 
    610  1.192  christos 	mutex_enter(&bpf_mtx);
    611  1.140        ad 
    612  1.194  christos 	if ((d = fp->f_bpf) == NULL) {
    613  1.194  christos 		mutex_exit(&bpf_mtx);
    614  1.194  christos 		return 0;
    615  1.194  christos 	}
    616  1.194  christos 
    617  1.110    rpaulo 	/*
    618  1.110    rpaulo 	 * Refresh the PID associated with this bpf file.
    619  1.110    rpaulo 	 */
    620  1.135        ad 	d->bd_pid = curproc->p_pid;
    621  1.110    rpaulo 
    622  1.213     ozaki 	mutex_enter(d->bd_mtx);
    623   1.91   darrenr 	if (d->bd_state == BPF_WAITING)
    624  1.213     ozaki 		callout_halt(&d->bd_callout, d->bd_mtx);
    625   1.91   darrenr 	d->bd_state = BPF_IDLE;
    626    1.1       cgd 	if (d->bd_bif)
    627    1.1       cgd 		bpf_detachd(d);
    628  1.213     ozaki 	mutex_exit(d->bd_mtx);
    629  1.213     ozaki 
    630  1.209     ozaki 	BPF_DLIST_WRITER_REMOVE(d);
    631  1.194  christos 
    632  1.213     ozaki 	pserialize_perform(bpf_psz);
    633  1.194  christos 	mutex_exit(&bpf_mtx);
    634  1.194  christos 
    635  1.213     ozaki 	BPFIF_DLIST_ENTRY_DESTROY(d);
    636  1.209     ozaki 	BPF_DLIST_ENTRY_DESTROY(d);
    637  1.213     ozaki 	fp->f_bpf = NULL;
    638  1.213     ozaki 	bpf_freed(d);
    639  1.129        ad 	callout_destroy(&d->bd_callout);
    640  1.134     rmind 	seldestroy(&d->bd_sel);
    641  1.211     ozaki 	mutex_obj_free(d->bd_mtx);
    642  1.213     ozaki 	mutex_obj_free(d->bd_buf_mtx);
    643  1.211     ozaki 	cv_destroy(&d->bd_cv);
    644  1.211     ozaki 
    645  1.208     ozaki 	kmem_free(d, sizeof(*d));
    646  1.140        ad 
    647    1.2       cgd 	return (0);
    648    1.2       cgd }
    649    1.2       cgd 
    650    1.2       cgd /*
    651    1.1       cgd  * Rotate the packet buffers in descriptor d.  Move the store buffer
    652   1.12   mycroft  * into the hold slot, and the free buffer into the store slot.
    653    1.1       cgd  * Zero the length of the new store buffer.
    654    1.1       cgd  */
    655    1.1       cgd #define ROTATE_BUFFERS(d) \
    656  1.100   darrenr 	(d)->bd_hbuf = (d)->bd_sbuf; \
    657  1.100   darrenr 	(d)->bd_hlen = (d)->bd_slen; \
    658  1.100   darrenr 	(d)->bd_sbuf = (d)->bd_fbuf; \
    659  1.100   darrenr 	(d)->bd_slen = 0; \
    660  1.187     ozaki 	(d)->bd_fbuf = NULL;
    661    1.1       cgd /*
    662    1.1       cgd  *  bpfread - read next chunk of packets from buffers
    663    1.1       cgd  */
    664  1.105  christos static int
    665  1.125  christos bpf_read(struct file *fp, off_t *offp, struct uio *uio,
    666  1.125  christos     kauth_cred_t cred, int flags)
    667    1.1       cgd {
    668  1.188      matt 	struct bpf_d *d = fp->f_bpf;
    669   1.91   darrenr 	int timed_out;
    670    1.1       cgd 	int error;
    671    1.1       cgd 
    672  1.145  christos 	getnanotime(&d->bd_atime);
    673    1.1       cgd 	/*
    674   1.12   mycroft 	 * Restrict application to use a buffer the same size as
    675  1.121    martin 	 * the kernel buffers.
    676    1.1       cgd 	 */
    677    1.1       cgd 	if (uio->uio_resid != d->bd_bufsize)
    678    1.1       cgd 		return (EINVAL);
    679    1.1       cgd 
    680  1.213     ozaki 	mutex_enter(d->bd_mtx);
    681   1.91   darrenr 	if (d->bd_state == BPF_WAITING)
    682  1.221     ozaki 		callout_halt(&d->bd_callout, d->bd_mtx);
    683   1.91   darrenr 	timed_out = (d->bd_state == BPF_TIMED_OUT);
    684   1.91   darrenr 	d->bd_state = BPF_IDLE;
    685  1.213     ozaki 	mutex_exit(d->bd_mtx);
    686    1.1       cgd 	/*
    687    1.2       cgd 	 * If the hold buffer is empty, then do a timed sleep, which
    688    1.2       cgd 	 * ends when the timeout expires or when enough packets
    689    1.2       cgd 	 * have arrived to fill the store buffer.
    690    1.1       cgd 	 */
    691  1.213     ozaki 	mutex_enter(d->bd_buf_mtx);
    692  1.187     ozaki 	while (d->bd_hbuf == NULL) {
    693  1.105  christos 		if (fp->f_flag & FNONBLOCK) {
    694   1.93   darrenr 			if (d->bd_slen == 0) {
    695  1.212     ozaki 				error = EWOULDBLOCK;
    696  1.212     ozaki 				goto out;
    697   1.93   darrenr 			}
    698   1.93   darrenr 			ROTATE_BUFFERS(d);
    699   1.93   darrenr 			break;
    700   1.93   darrenr 		}
    701   1.93   darrenr 
    702   1.91   darrenr 		if ((d->bd_immediate || timed_out) && d->bd_slen != 0) {
    703    1.1       cgd 			/*
    704    1.1       cgd 			 * A packet(s) either arrived since the previous
    705    1.1       cgd 			 * read or arrived while we were asleep.
    706    1.1       cgd 			 * Rotate the buffers and return what's here.
    707    1.1       cgd 			 */
    708    1.1       cgd 			ROTATE_BUFFERS(d);
    709    1.1       cgd 			break;
    710    1.1       cgd 		}
    711  1.211     ozaki 
    712  1.213     ozaki 		error = cv_timedwait_sig(&d->bd_cv, d->bd_buf_mtx, d->bd_rtout);
    713  1.211     ozaki 
    714  1.212     ozaki 		if (error == EINTR || error == ERESTART)
    715  1.212     ozaki 			goto out;
    716  1.212     ozaki 
    717   1.12   mycroft 		if (error == EWOULDBLOCK) {
    718   1.12   mycroft 			/*
    719   1.12   mycroft 			 * On a timeout, return what's in the buffer,
    720   1.12   mycroft 			 * which may be nothing.  If there is something
    721   1.12   mycroft 			 * in the store buffer, we can rotate the buffers.
    722   1.12   mycroft 			 */
    723   1.12   mycroft 			if (d->bd_hbuf)
    724    1.1       cgd 				/*
    725   1.12   mycroft 				 * We filled up the buffer in between
    726   1.12   mycroft 				 * getting the timeout and arriving
    727   1.12   mycroft 				 * here, so we don't need to rotate.
    728    1.1       cgd 				 */
    729    1.1       cgd 				break;
    730   1.12   mycroft 
    731  1.100   darrenr 			if (d->bd_slen == 0) {
    732  1.212     ozaki 				error = 0;
    733  1.212     ozaki 				goto out;
    734    1.1       cgd 			}
    735  1.100   darrenr 			ROTATE_BUFFERS(d);
    736  1.100   darrenr 			break;
    737    1.1       cgd 		}
    738   1.36  christos 		if (error != 0)
    739  1.212     ozaki 			goto out;
    740    1.1       cgd 	}
    741  1.100   darrenr 	/*
    742  1.100   darrenr 	 * At this point, we know we have something in the hold slot.
    743  1.100   darrenr 	 */
    744  1.213     ozaki 	mutex_exit(d->bd_buf_mtx);
    745  1.100   darrenr 
    746  1.100   darrenr 	/*
    747  1.100   darrenr 	 * Move data from hold buffer into user space.
    748  1.100   darrenr 	 * We know the entire buffer is transferred since
    749  1.100   darrenr 	 * we checked above that the read buffer is bpf_bufsize bytes.
    750  1.100   darrenr 	 */
    751  1.100   darrenr 	error = uiomove(d->bd_hbuf, d->bd_hlen, uio);
    752   1.12   mycroft 
    753  1.213     ozaki 	mutex_enter(d->bd_buf_mtx);
    754  1.100   darrenr 	d->bd_fbuf = d->bd_hbuf;
    755  1.187     ozaki 	d->bd_hbuf = NULL;
    756  1.100   darrenr 	d->bd_hlen = 0;
    757  1.212     ozaki out:
    758  1.213     ozaki 	mutex_exit(d->bd_buf_mtx);
    759  1.100   darrenr 	return (error);
    760    1.1       cgd }
    761    1.1       cgd 
    762    1.1       cgd 
    763    1.1       cgd /*
    764   1.12   mycroft  * If there are processes sleeping on this descriptor, wake them up.
    765    1.1       cgd  */
    766  1.114     perry static inline void
    767  1.111    rpaulo bpf_wakeup(struct bpf_d *d)
    768    1.1       cgd {
    769  1.211     ozaki 
    770  1.213     ozaki 	mutex_enter(d->bd_buf_mtx);
    771  1.211     ozaki 	cv_broadcast(&d->bd_cv);
    772  1.213     ozaki 	mutex_exit(d->bd_buf_mtx);
    773  1.211     ozaki 
    774   1.85  jdolecek 	if (d->bd_async)
    775  1.223     ozaki 		fownsignal(d->bd_pgid, SIGIO, 0, 0, NULL);
    776  1.134     rmind 	selnotify(&d->bd_sel, 0, 0);
    777    1.1       cgd }
    778    1.1       cgd 
    779  1.139        ad static void
    780  1.111    rpaulo bpf_timed_out(void *arg)
    781   1.91   darrenr {
    782  1.103  christos 	struct bpf_d *d = arg;
    783   1.91   darrenr 
    784  1.213     ozaki 	mutex_enter(d->bd_mtx);
    785   1.91   darrenr 	if (d->bd_state == BPF_WAITING) {
    786   1.91   darrenr 		d->bd_state = BPF_TIMED_OUT;
    787   1.91   darrenr 		if (d->bd_slen != 0)
    788   1.91   darrenr 			bpf_wakeup(d);
    789   1.91   darrenr 	}
    790  1.213     ozaki 	mutex_exit(d->bd_mtx);
    791   1.91   darrenr }
    792   1.91   darrenr 
    793   1.91   darrenr 
    794  1.105  christos static int
    795  1.125  christos bpf_write(struct file *fp, off_t *offp, struct uio *uio,
    796  1.125  christos     kauth_cred_t cred, int flags)
    797    1.1       cgd {
    798  1.188      matt 	struct bpf_d *d = fp->f_bpf;
    799  1.213     ozaki 	struct bpf_if *bp;
    800   1.12   mycroft 	struct ifnet *ifp;
    801  1.156  christos 	struct mbuf *m, *mc;
    802  1.213     ozaki 	int error;
    803   1.56      matt 	static struct sockaddr_storage dst;
    804  1.213     ozaki 	struct psref psref;
    805  1.213     ozaki 	int bound;
    806    1.1       cgd 
    807  1.116       mrg 	m = NULL;	/* XXX gcc */
    808  1.116       mrg 
    809  1.213     ozaki 	bound = curlwp_bind();
    810  1.213     ozaki 	mutex_enter(d->bd_mtx);
    811  1.213     ozaki 	bp = d->bd_bif;
    812  1.213     ozaki 	if (bp == NULL) {
    813  1.213     ozaki 		mutex_exit(d->bd_mtx);
    814  1.213     ozaki 		error = ENXIO;
    815  1.213     ozaki 		goto out_bindx;
    816  1.213     ozaki 	}
    817  1.213     ozaki 	bpf_if_acquire(bp, &psref);
    818  1.213     ozaki 	mutex_exit(d->bd_mtx);
    819  1.140        ad 
    820  1.145  christos 	getnanotime(&d->bd_mtime);
    821    1.1       cgd 
    822  1.213     ozaki 	ifp = bp->bif_ifp;
    823  1.213     ozaki 	if (if_is_deactivated(ifp)) {
    824  1.213     ozaki 		error = ENXIO;
    825  1.213     ozaki 		goto out;
    826  1.213     ozaki 	}
    827   1.11   deraadt 
    828  1.140        ad 	if (uio->uio_resid == 0) {
    829  1.213     ozaki 		error = 0;
    830  1.213     ozaki 		goto out;
    831  1.140        ad 	}
    832   1.11   deraadt 
    833  1.213     ozaki 	error = bpf_movein(uio, (int)bp->bif_dlt, ifp->if_mtu, &m,
    834  1.237       roy 		(struct sockaddr *) &dst, &d->bd_wfilter);
    835  1.213     ozaki 	if (error)
    836  1.213     ozaki 		goto out;
    837   1.11   deraadt 
    838  1.109     peter 	if (m->m_pkthdr.len > ifp->if_mtu) {
    839  1.109     peter 		m_freem(m);
    840  1.213     ozaki 		error = EMSGSIZE;
    841  1.213     ozaki 		goto out;
    842  1.109     peter 	}
    843    1.1       cgd 
    844   1.40   thorpej 	if (d->bd_hdrcmplt)
    845   1.56      matt 		dst.ss_family = pseudo_AF_HDRCMPLT;
    846   1.40   thorpej 
    847  1.156  christos 	if (d->bd_feedback) {
    848  1.156  christos 		mc = m_dup(m, 0, M_COPYALL, M_NOWAIT);
    849  1.156  christos 		if (mc != NULL)
    850  1.197     ozaki 			m_set_rcvif(mc, ifp);
    851  1.156  christos 		/* Set M_PROMISC for outgoing packets to be discarded. */
    852  1.156  christos 		if (1 /*d->bd_direction == BPF_D_INOUT*/)
    853  1.156  christos 			m->m_flags |= M_PROMISC;
    854  1.156  christos 	} else
    855  1.156  christos 		mc = NULL;
    856  1.156  christos 
    857  1.199  knakahar 	error = if_output_lock(ifp, ifp, m, (struct sockaddr *) &dst, NULL);
    858  1.156  christos 
    859  1.156  christos 	if (mc != NULL) {
    860  1.224     ozaki 		if (error == 0) {
    861  1.224     ozaki 			int s = splsoftnet();
    862  1.224     ozaki 			KERNEL_LOCK_UNLESS_IFP_MPSAFE(ifp);
    863  1.195     ozaki 			ifp->_if_input(ifp, mc);
    864  1.224     ozaki 			KERNEL_UNLOCK_UNLESS_IFP_MPSAFE(ifp);
    865  1.224     ozaki 			splx(s);
    866  1.224     ozaki 		} else
    867  1.193  christos 			m_freem(mc);
    868  1.167  christos 	}
    869    1.1       cgd 	/*
    870   1.12   mycroft 	 * The driver frees the mbuf.
    871    1.1       cgd 	 */
    872  1.213     ozaki out:
    873  1.213     ozaki 	bpf_if_release(bp, &psref);
    874  1.213     ozaki out_bindx:
    875  1.213     ozaki 	curlwp_bindx(bound);
    876  1.213     ozaki 	return error;
    877    1.1       cgd }
    878    1.1       cgd 
    879    1.1       cgd /*
    880    1.2       cgd  * Reset a descriptor by flushing its packet buffer and clearing the
    881  1.214     ozaki  * receive and drop counts.
    882    1.1       cgd  */
    883    1.1       cgd static void
    884  1.111    rpaulo reset_d(struct bpf_d *d)
    885    1.1       cgd {
    886  1.213     ozaki 
    887  1.213     ozaki 	KASSERT(mutex_owned(d->bd_mtx));
    888  1.213     ozaki 
    889  1.213     ozaki 	mutex_enter(d->bd_buf_mtx);
    890    1.1       cgd 	if (d->bd_hbuf) {
    891    1.1       cgd 		/* Free the hold buffer. */
    892    1.1       cgd 		d->bd_fbuf = d->bd_hbuf;
    893  1.187     ozaki 		d->bd_hbuf = NULL;
    894    1.1       cgd 	}
    895    1.1       cgd 	d->bd_slen = 0;
    896    1.2       cgd 	d->bd_hlen = 0;
    897    1.1       cgd 	d->bd_rcount = 0;
    898    1.1       cgd 	d->bd_dcount = 0;
    899   1.94   darrenr 	d->bd_ccount = 0;
    900  1.213     ozaki 	mutex_exit(d->bd_buf_mtx);
    901    1.1       cgd }
    902    1.1       cgd 
    903    1.1       cgd /*
    904    1.1       cgd  *  FIONREAD		Check for read packet available.
    905    1.1       cgd  *  BIOCGBLEN		Get buffer len [for read()].
    906    1.1       cgd  *  BIOCSETF		Set ethernet read filter.
    907    1.1       cgd  *  BIOCFLUSH		Flush read packet buffer.
    908    1.1       cgd  *  BIOCPROMISC		Put interface into promiscuous mode.
    909    1.1       cgd  *  BIOCGDLT		Get link layer type.
    910    1.1       cgd  *  BIOCGETIF		Get interface name.
    911    1.1       cgd  *  BIOCSETIF		Set interface.
    912    1.1       cgd  *  BIOCSRTIMEOUT	Set read timeout.
    913    1.1       cgd  *  BIOCGRTIMEOUT	Get read timeout.
    914    1.1       cgd  *  BIOCGSTATS		Get packet stats.
    915    1.1       cgd  *  BIOCIMMEDIATE	Set immediate mode.
    916    1.2       cgd  *  BIOCVERSION		Get filter language version.
    917  1.113    rpaulo  *  BIOCGHDRCMPLT	Get "header already complete" flag.
    918  1.113    rpaulo  *  BIOCSHDRCMPLT	Set "header already complete" flag.
    919  1.156  christos  *  BIOCSFEEDBACK	Set packet feedback mode.
    920  1.156  christos  *  BIOCGFEEDBACK	Get packet feedback mode.
    921  1.226   msaitoh  *  BIOCGDIRECTION	Get packet direction flag
    922  1.226   msaitoh  *  BIOCSDIRECTION	Set packet direction flag
    923    1.1       cgd  */
    924    1.1       cgd /* ARGSUSED */
    925  1.105  christos static int
    926  1.135        ad bpf_ioctl(struct file *fp, u_long cmd, void *addr)
    927    1.1       cgd {
    928  1.188      matt 	struct bpf_d *d = fp->f_bpf;
    929  1.213     ozaki 	int error = 0;
    930    1.1       cgd 
    931  1.110    rpaulo 	/*
    932  1.110    rpaulo 	 * Refresh the PID associated with this bpf file.
    933  1.110    rpaulo 	 */
    934  1.135        ad 	d->bd_pid = curproc->p_pid;
    935  1.166    bouyer #ifdef _LP64
    936  1.166    bouyer 	if (curproc->p_flag & PK_32)
    937  1.166    bouyer 		d->bd_compat32 = 1;
    938  1.166    bouyer 	else
    939  1.166    bouyer 		d->bd_compat32 = 0;
    940  1.166    bouyer #endif
    941  1.120  christos 
    942  1.213     ozaki 	mutex_enter(d->bd_mtx);
    943   1.91   darrenr 	if (d->bd_state == BPF_WAITING)
    944  1.213     ozaki 		callout_halt(&d->bd_callout, d->bd_mtx);
    945   1.91   darrenr 	d->bd_state = BPF_IDLE;
    946  1.213     ozaki 	mutex_exit(d->bd_mtx);
    947   1.91   darrenr 
    948  1.237       roy 	if (d->bd_locked) {
    949  1.237       roy 		switch (cmd) {
    950  1.237       roy 		case BIOCGBLEN:		/* FALLTHROUGH */
    951  1.237       roy 		case BIOCFLUSH:		/* FALLTHROUGH */
    952  1.237       roy 		case BIOCGDLT:		/* FALLTHROUGH */
    953  1.237       roy 		case BIOCGDLTLIST:	/* FALLTHROUGH */
    954  1.237       roy 		case BIOCGETIF:		/* FALLTHROUGH */
    955  1.237       roy 		case BIOCGRTIMEOUT:	/* FALLTHROUGH */
    956  1.237       roy 		case BIOCGSTATS:	/* FALLTHROUGH */
    957  1.237       roy 		case BIOCVERSION:	/* FALLTHROUGH */
    958  1.237       roy 		case BIOCGHDRCMPLT:	/* FALLTHROUGH */
    959  1.237       roy 		case FIONREAD:		/* FALLTHROUGH */
    960  1.237       roy 		case BIOCLOCK:		/* FALLTHROUGH */
    961  1.237       roy 		case BIOCSRTIMEOUT:	/* FALLTHROUGH */
    962  1.237       roy 		case BIOCIMMEDIATE:	/* FALLTHROUGH */
    963  1.237       roy 		case TIOCGPGRP:
    964  1.237       roy 			break;
    965  1.237       roy 		default:
    966  1.237       roy 			return EPERM;
    967  1.237       roy 		}
    968  1.237       roy 	}
    969  1.237       roy 
    970    1.1       cgd 	switch (cmd) {
    971    1.1       cgd 
    972    1.1       cgd 	default:
    973    1.1       cgd 		error = EINVAL;
    974    1.1       cgd 		break;
    975    1.1       cgd 
    976    1.1       cgd 	/*
    977    1.1       cgd 	 * Check for read packet available.
    978    1.1       cgd 	 */
    979    1.1       cgd 	case FIONREAD:
    980    1.1       cgd 		{
    981    1.1       cgd 			int n;
    982   1.12   mycroft 
    983  1.213     ozaki 			mutex_enter(d->bd_buf_mtx);
    984    1.1       cgd 			n = d->bd_slen;
    985   1.12   mycroft 			if (d->bd_hbuf)
    986    1.1       cgd 				n += d->bd_hlen;
    987  1.213     ozaki 			mutex_exit(d->bd_buf_mtx);
    988    1.1       cgd 
    989    1.1       cgd 			*(int *)addr = n;
    990    1.1       cgd 			break;
    991    1.1       cgd 		}
    992    1.1       cgd 
    993    1.1       cgd 	/*
    994    1.2       cgd 	 * Get buffer len [for read()].
    995    1.1       cgd 	 */
    996    1.2       cgd 	case BIOCGBLEN:
    997    1.2       cgd 		*(u_int *)addr = d->bd_bufsize;
    998    1.1       cgd 		break;
    999    1.2       cgd 
   1000    1.1       cgd 	/*
   1001    1.2       cgd 	 * Set buffer length.
   1002    1.1       cgd 	 */
   1003    1.2       cgd 	case BIOCSBLEN:
   1004  1.208     ozaki 		/*
   1005  1.208     ozaki 		 * Forbid to change the buffer length if buffers are already
   1006  1.208     ozaki 		 * allocated.
   1007  1.208     ozaki 		 */
   1008  1.213     ozaki 		mutex_enter(d->bd_mtx);
   1009  1.213     ozaki 		mutex_enter(d->bd_buf_mtx);
   1010  1.208     ozaki 		if (d->bd_bif != NULL || d->bd_sbuf != NULL)
   1011    1.2       cgd 			error = EINVAL;
   1012    1.2       cgd 		else {
   1013   1.53  augustss 			u_int size = *(u_int *)addr;
   1014    1.2       cgd 
   1015   1.87  jonathan 			if (size > bpf_maxbufsize)
   1016   1.87  jonathan 				*(u_int *)addr = size = bpf_maxbufsize;
   1017    1.2       cgd 			else if (size < BPF_MINBUFSIZE)
   1018    1.2       cgd 				*(u_int *)addr = size = BPF_MINBUFSIZE;
   1019    1.2       cgd 			d->bd_bufsize = size;
   1020    1.2       cgd 		}
   1021  1.213     ozaki 		mutex_exit(d->bd_buf_mtx);
   1022  1.213     ozaki 		mutex_exit(d->bd_mtx);
   1023    1.1       cgd 		break;
   1024    1.1       cgd 
   1025    1.1       cgd 	/*
   1026    1.2       cgd 	 * Set link layer read filter.
   1027    1.1       cgd 	 */
   1028  1.237       roy 	case BIOCSETF:		/* FALLTHROUGH */
   1029  1.237       roy 	case BIOCSETWF:
   1030  1.237       roy 		error = bpf_setf(d, addr, cmd);
   1031  1.237       roy 		break;
   1032  1.237       roy 
   1033  1.237       roy 	case BIOCLOCK:
   1034  1.237       roy 		d->bd_locked = 1;
   1035    1.1       cgd 		break;
   1036    1.1       cgd 
   1037    1.1       cgd 	/*
   1038    1.1       cgd 	 * Flush read packet buffer.
   1039    1.1       cgd 	 */
   1040    1.1       cgd 	case BIOCFLUSH:
   1041  1.213     ozaki 		mutex_enter(d->bd_mtx);
   1042    1.1       cgd 		reset_d(d);
   1043  1.213     ozaki 		mutex_exit(d->bd_mtx);
   1044    1.1       cgd 		break;
   1045    1.1       cgd 
   1046    1.1       cgd 	/*
   1047    1.1       cgd 	 * Put interface into promiscuous mode.
   1048    1.1       cgd 	 */
   1049    1.1       cgd 	case BIOCPROMISC:
   1050  1.213     ozaki 		mutex_enter(d->bd_mtx);
   1051  1.187     ozaki 		if (d->bd_bif == NULL) {
   1052  1.213     ozaki 			mutex_exit(d->bd_mtx);
   1053    1.1       cgd 			/*
   1054    1.1       cgd 			 * No interface attached yet.
   1055    1.1       cgd 			 */
   1056    1.1       cgd 			error = EINVAL;
   1057    1.1       cgd 			break;
   1058    1.1       cgd 		}
   1059    1.1       cgd 		if (d->bd_promisc == 0) {
   1060  1.219     ozaki 			KERNEL_LOCK_UNLESS_NET_MPSAFE();
   1061    1.1       cgd 			error = ifpromisc(d->bd_bif->bif_ifp, 1);
   1062  1.219     ozaki 			KERNEL_UNLOCK_UNLESS_NET_MPSAFE();
   1063    1.2       cgd 			if (error == 0)
   1064    1.2       cgd 				d->bd_promisc = 1;
   1065    1.1       cgd 		}
   1066  1.213     ozaki 		mutex_exit(d->bd_mtx);
   1067    1.1       cgd 		break;
   1068    1.1       cgd 
   1069    1.1       cgd 	/*
   1070    1.1       cgd 	 * Get device parameters.
   1071    1.1       cgd 	 */
   1072    1.1       cgd 	case BIOCGDLT:
   1073  1.213     ozaki 		mutex_enter(d->bd_mtx);
   1074  1.187     ozaki 		if (d->bd_bif == NULL)
   1075    1.1       cgd 			error = EINVAL;
   1076    1.1       cgd 		else
   1077    1.1       cgd 			*(u_int *)addr = d->bd_bif->bif_dlt;
   1078  1.213     ozaki 		mutex_exit(d->bd_mtx);
   1079    1.1       cgd 		break;
   1080    1.1       cgd 
   1081    1.1       cgd 	/*
   1082   1.66      onoe 	 * Get a list of supported device parameters.
   1083   1.66      onoe 	 */
   1084   1.66      onoe 	case BIOCGDLTLIST:
   1085  1.213     ozaki 		mutex_enter(d->bd_mtx);
   1086  1.187     ozaki 		if (d->bd_bif == NULL)
   1087   1.66      onoe 			error = EINVAL;
   1088   1.66      onoe 		else
   1089  1.103  christos 			error = bpf_getdltlist(d, addr);
   1090  1.213     ozaki 		mutex_exit(d->bd_mtx);
   1091   1.66      onoe 		break;
   1092   1.66      onoe 
   1093   1.66      onoe 	/*
   1094   1.66      onoe 	 * Set device parameters.
   1095   1.66      onoe 	 */
   1096   1.66      onoe 	case BIOCSDLT:
   1097  1.192  christos 		mutex_enter(&bpf_mtx);
   1098  1.213     ozaki 		mutex_enter(d->bd_mtx);
   1099  1.187     ozaki 		if (d->bd_bif == NULL)
   1100   1.66      onoe 			error = EINVAL;
   1101   1.66      onoe 		else
   1102   1.66      onoe 			error = bpf_setdlt(d, *(u_int *)addr);
   1103  1.213     ozaki 		mutex_exit(d->bd_mtx);
   1104  1.192  christos 		mutex_exit(&bpf_mtx);
   1105   1.66      onoe 		break;
   1106   1.66      onoe 
   1107   1.66      onoe 	/*
   1108    1.1       cgd 	 * Set interface name.
   1109    1.1       cgd 	 */
   1110  1.127  christos #ifdef OBIOCGETIF
   1111  1.127  christos 	case OBIOCGETIF:
   1112  1.127  christos #endif
   1113    1.1       cgd 	case BIOCGETIF:
   1114  1.213     ozaki 		mutex_enter(d->bd_mtx);
   1115  1.187     ozaki 		if (d->bd_bif == NULL)
   1116    1.1       cgd 			error = EINVAL;
   1117    1.1       cgd 		else
   1118  1.103  christos 			bpf_ifname(d->bd_bif->bif_ifp, addr);
   1119  1.213     ozaki 		mutex_exit(d->bd_mtx);
   1120    1.1       cgd 		break;
   1121    1.1       cgd 
   1122    1.1       cgd 	/*
   1123    1.1       cgd 	 * Set interface.
   1124    1.1       cgd 	 */
   1125  1.127  christos #ifdef OBIOCSETIF
   1126  1.127  christos 	case OBIOCSETIF:
   1127  1.127  christos #endif
   1128    1.1       cgd 	case BIOCSETIF:
   1129  1.192  christos 		mutex_enter(&bpf_mtx);
   1130  1.103  christos 		error = bpf_setif(d, addr);
   1131  1.192  christos 		mutex_exit(&bpf_mtx);
   1132    1.1       cgd 		break;
   1133    1.1       cgd 
   1134    1.1       cgd 	/*
   1135    1.1       cgd 	 * Set read timeout.
   1136    1.1       cgd 	 */
   1137   1.12   mycroft 	case BIOCSRTIMEOUT:
   1138    1.1       cgd 		{
   1139  1.103  christos 			struct timeval *tv = addr;
   1140    1.1       cgd 
   1141   1.19       cgd 			/* Compute number of ticks. */
   1142   1.19       cgd 			d->bd_rtout = tv->tv_sec * hz + tv->tv_usec / tick;
   1143   1.33   thorpej 			if ((d->bd_rtout == 0) && (tv->tv_usec != 0))
   1144   1.33   thorpej 				d->bd_rtout = 1;
   1145    1.1       cgd 			break;
   1146    1.1       cgd 		}
   1147    1.1       cgd 
   1148  1.142  christos #ifdef BIOCGORTIMEOUT
   1149  1.142  christos 	/*
   1150  1.142  christos 	 * Get read timeout.
   1151  1.142  christos 	 */
   1152  1.142  christos 	case BIOCGORTIMEOUT:
   1153  1.142  christos 		{
   1154  1.142  christos 			struct timeval50 *tv = addr;
   1155  1.142  christos 
   1156  1.142  christos 			tv->tv_sec = d->bd_rtout / hz;
   1157  1.142  christos 			tv->tv_usec = (d->bd_rtout % hz) * tick;
   1158  1.142  christos 			break;
   1159  1.142  christos 		}
   1160  1.142  christos #endif
   1161  1.142  christos 
   1162  1.142  christos #ifdef BIOCSORTIMEOUT
   1163  1.142  christos 	/*
   1164  1.142  christos 	 * Set read timeout.
   1165  1.142  christos 	 */
   1166  1.142  christos 	case BIOCSORTIMEOUT:
   1167  1.142  christos 		{
   1168  1.142  christos 			struct timeval50 *tv = addr;
   1169  1.142  christos 
   1170  1.142  christos 			/* Compute number of ticks. */
   1171  1.142  christos 			d->bd_rtout = tv->tv_sec * hz + tv->tv_usec / tick;
   1172  1.142  christos 			if ((d->bd_rtout == 0) && (tv->tv_usec != 0))
   1173  1.142  christos 				d->bd_rtout = 1;
   1174  1.142  christos 			break;
   1175  1.142  christos 		}
   1176  1.142  christos #endif
   1177  1.142  christos 
   1178    1.1       cgd 	/*
   1179    1.1       cgd 	 * Get read timeout.
   1180    1.1       cgd 	 */
   1181   1.12   mycroft 	case BIOCGRTIMEOUT:
   1182    1.1       cgd 		{
   1183  1.103  christos 			struct timeval *tv = addr;
   1184    1.1       cgd 
   1185   1.19       cgd 			tv->tv_sec = d->bd_rtout / hz;
   1186   1.19       cgd 			tv->tv_usec = (d->bd_rtout % hz) * tick;
   1187    1.1       cgd 			break;
   1188    1.1       cgd 		}
   1189    1.1       cgd 	/*
   1190    1.1       cgd 	 * Get packet stats.
   1191    1.1       cgd 	 */
   1192    1.1       cgd 	case BIOCGSTATS:
   1193    1.1       cgd 		{
   1194  1.103  christos 			struct bpf_stat *bs = addr;
   1195    1.1       cgd 
   1196    1.1       cgd 			bs->bs_recv = d->bd_rcount;
   1197    1.1       cgd 			bs->bs_drop = d->bd_dcount;
   1198   1.94   darrenr 			bs->bs_capt = d->bd_ccount;
   1199   1.94   darrenr 			break;
   1200   1.94   darrenr 		}
   1201   1.94   darrenr 
   1202   1.94   darrenr 	case BIOCGSTATSOLD:
   1203   1.94   darrenr 		{
   1204  1.103  christos 			struct bpf_stat_old *bs = addr;
   1205   1.94   darrenr 
   1206   1.94   darrenr 			bs->bs_recv = d->bd_rcount;
   1207   1.94   darrenr 			bs->bs_drop = d->bd_dcount;
   1208    1.1       cgd 			break;
   1209    1.1       cgd 		}
   1210    1.1       cgd 
   1211    1.1       cgd 	/*
   1212    1.1       cgd 	 * Set immediate mode.
   1213    1.1       cgd 	 */
   1214    1.1       cgd 	case BIOCIMMEDIATE:
   1215    1.1       cgd 		d->bd_immediate = *(u_int *)addr;
   1216    1.1       cgd 		break;
   1217    1.2       cgd 
   1218    1.2       cgd 	case BIOCVERSION:
   1219    1.2       cgd 		{
   1220  1.103  christos 			struct bpf_version *bv = addr;
   1221    1.2       cgd 
   1222    1.2       cgd 			bv->bv_major = BPF_MAJOR_VERSION;
   1223    1.2       cgd 			bv->bv_minor = BPF_MINOR_VERSION;
   1224    1.2       cgd 			break;
   1225   1.12   mycroft 		}
   1226   1.23   thorpej 
   1227   1.40   thorpej 	case BIOCGHDRCMPLT:	/* get "header already complete" flag */
   1228   1.40   thorpej 		*(u_int *)addr = d->bd_hdrcmplt;
   1229   1.40   thorpej 		break;
   1230   1.40   thorpej 
   1231   1.40   thorpej 	case BIOCSHDRCMPLT:	/* set "header already complete" flag */
   1232   1.40   thorpej 		d->bd_hdrcmplt = *(u_int *)addr ? 1 : 0;
   1233   1.40   thorpej 		break;
   1234   1.23   thorpej 
   1235   1.91   darrenr 	/*
   1236  1.226   msaitoh 	 * Get packet direction flag
   1237   1.91   darrenr 	 */
   1238  1.226   msaitoh 	case BIOCGDIRECTION:
   1239  1.226   msaitoh 		*(u_int *)addr = d->bd_direction;
   1240   1.91   darrenr 		break;
   1241   1.91   darrenr 
   1242   1.91   darrenr 	/*
   1243  1.226   msaitoh 	 * Set packet direction flag
   1244   1.91   darrenr 	 */
   1245  1.226   msaitoh 	case BIOCSDIRECTION:
   1246  1.226   msaitoh 		{
   1247  1.226   msaitoh 			u_int	direction;
   1248  1.226   msaitoh 
   1249  1.226   msaitoh 			direction = *(u_int *)addr;
   1250  1.226   msaitoh 			switch (direction) {
   1251  1.226   msaitoh 			case BPF_D_IN:
   1252  1.226   msaitoh 			case BPF_D_INOUT:
   1253  1.226   msaitoh 			case BPF_D_OUT:
   1254  1.226   msaitoh 				d->bd_direction = direction;
   1255  1.226   msaitoh 				break;
   1256  1.226   msaitoh 			default:
   1257  1.226   msaitoh 				error = EINVAL;
   1258  1.226   msaitoh 			}
   1259  1.226   msaitoh 		}
   1260   1.91   darrenr 		break;
   1261   1.91   darrenr 
   1262  1.156  christos 	/*
   1263  1.156  christos 	 * Set "feed packets from bpf back to input" mode
   1264  1.156  christos 	 */
   1265  1.156  christos 	case BIOCSFEEDBACK:
   1266  1.156  christos 		d->bd_feedback = *(u_int *)addr;
   1267  1.156  christos 		break;
   1268  1.156  christos 
   1269  1.156  christos 	/*
   1270  1.156  christos 	 * Get "feed packets from bpf back to input" mode
   1271  1.156  christos 	 */
   1272  1.156  christos 	case BIOCGFEEDBACK:
   1273  1.156  christos 		*(u_int *)addr = d->bd_feedback;
   1274  1.156  christos 		break;
   1275  1.156  christos 
   1276   1.23   thorpej 	case FIONBIO:		/* Non-blocking I/O */
   1277   1.93   darrenr 		/*
   1278   1.93   darrenr 		 * No need to do anything special as we use IO_NDELAY in
   1279   1.93   darrenr 		 * bpfread() as an indication of whether or not to block
   1280   1.93   darrenr 		 * the read.
   1281   1.93   darrenr 		 */
   1282   1.23   thorpej 		break;
   1283   1.23   thorpej 
   1284   1.23   thorpej 	case FIOASYNC:		/* Send signal on receive packets */
   1285  1.222     ozaki 		mutex_enter(d->bd_mtx);
   1286   1.23   thorpej 		d->bd_async = *(int *)addr;
   1287  1.222     ozaki 		mutex_exit(d->bd_mtx);
   1288   1.23   thorpej 		break;
   1289   1.23   thorpej 
   1290   1.23   thorpej 	case TIOCSPGRP:		/* Process or group to send signals to */
   1291   1.85  jdolecek 	case FIOSETOWN:
   1292  1.135        ad 		error = fsetown(&d->bd_pgid, cmd, addr);
   1293   1.23   thorpej 		break;
   1294   1.23   thorpej 
   1295   1.23   thorpej 	case TIOCGPGRP:
   1296   1.85  jdolecek 	case FIOGETOWN:
   1297  1.135        ad 		error = fgetown(d->bd_pgid, cmd, addr);
   1298   1.23   thorpej 		break;
   1299    1.1       cgd 	}
   1300    1.1       cgd 	return (error);
   1301    1.1       cgd }
   1302    1.1       cgd 
   1303   1.12   mycroft /*
   1304    1.2       cgd  * Set d's packet filter program to fp.  If this file already has a filter,
   1305    1.1       cgd  * free it and replace it.  Returns EINVAL for bogus requests.
   1306    1.1       cgd  */
   1307  1.204     ozaki static int
   1308  1.237       roy bpf_setf(struct bpf_d *d, struct bpf_program *fp, u_long cmd)
   1309    1.1       cgd {
   1310  1.213     ozaki 	struct bpf_insn *fcode;
   1311  1.213     ozaki 	bpfjit_func_t jcode;
   1312  1.213     ozaki 	size_t flen, size = 0;
   1313  1.237       roy 	struct bpf_filter *oldf, *newf, **storef;
   1314    1.1       cgd 
   1315  1.173     alnsn 	jcode = NULL;
   1316  1.169     rmind 	flen = fp->bf_len;
   1317  1.169     rmind 
   1318  1.169     rmind 	if ((fp->bf_insns == NULL && flen) || flen > BPF_MAXINSNS) {
   1319  1.169     rmind 		return EINVAL;
   1320  1.169     rmind 	}
   1321  1.169     rmind 
   1322  1.169     rmind 	if (flen) {
   1323  1.169     rmind 		/*
   1324  1.169     rmind 		 * Allocate the buffer, copy the byte-code from
   1325  1.169     rmind 		 * userspace and validate it.
   1326  1.169     rmind 		 */
   1327  1.169     rmind 		size = flen * sizeof(*fp->bf_insns);
   1328  1.208     ozaki 		fcode = kmem_alloc(size, KM_SLEEP);
   1329  1.169     rmind 		if (copyin(fp->bf_insns, fcode, size) != 0 ||
   1330  1.169     rmind 		    !bpf_validate(fcode, (int)flen)) {
   1331  1.208     ozaki 			kmem_free(fcode, size);
   1332  1.169     rmind 			return EINVAL;
   1333  1.169     rmind 		}
   1334  1.183     alnsn 		if (bpf_jit)
   1335  1.183     alnsn 			jcode = bpf_jit_generate(NULL, fcode, flen);
   1336  1.169     rmind 	} else {
   1337  1.169     rmind 		fcode = NULL;
   1338    1.1       cgd 	}
   1339    1.1       cgd 
   1340  1.213     ozaki 	newf = kmem_alloc(sizeof(*newf), KM_SLEEP);
   1341  1.213     ozaki 	newf->bf_insn = fcode;
   1342  1.213     ozaki 	newf->bf_size = size;
   1343  1.213     ozaki 	newf->bf_jitcode = jcode;
   1344  1.237       roy 	if (cmd == BIOCSETF)
   1345  1.237       roy 		d->bd_jitcode = jcode; /* XXX just for kvm(3) users */
   1346  1.208     ozaki 
   1347  1.213     ozaki 	/* Need to hold bpf_mtx for pserialize_perform */
   1348  1.213     ozaki 	mutex_enter(&bpf_mtx);
   1349  1.213     ozaki 	mutex_enter(d->bd_mtx);
   1350  1.237       roy 	if (cmd == BIOCSETWF) {
   1351  1.237       roy 		oldf = d->bd_wfilter;
   1352  1.237       roy 		storef = &d->bd_wfilter;
   1353  1.237       roy 	} else {
   1354  1.237       roy 		oldf = d->bd_rfilter;
   1355  1.237       roy 		storef = &d->bd_rfilter;
   1356  1.237       roy 	}
   1357  1.237       roy 	atomic_store_release(storef, newf);
   1358  1.169     rmind 	reset_d(d);
   1359  1.213     ozaki 	pserialize_perform(bpf_psz);
   1360  1.213     ozaki 	mutex_exit(d->bd_mtx);
   1361  1.213     ozaki 	mutex_exit(&bpf_mtx);
   1362    1.1       cgd 
   1363  1.213     ozaki 	if (oldf != NULL)
   1364  1.213     ozaki 		bpf_free_filter(oldf);
   1365  1.173     alnsn 
   1366  1.169     rmind 	return 0;
   1367    1.1       cgd }
   1368    1.1       cgd 
   1369    1.1       cgd /*
   1370    1.2       cgd  * Detach a file from its current interface (if attached at all) and attach
   1371    1.2       cgd  * to the interface indicated by the name stored in ifr.
   1372    1.2       cgd  * Return an errno or 0.
   1373    1.1       cgd  */
   1374    1.1       cgd static int
   1375  1.103  christos bpf_setif(struct bpf_d *d, struct ifreq *ifr)
   1376    1.1       cgd {
   1377    1.1       cgd 	struct bpf_if *bp;
   1378    1.1       cgd 	char *cp;
   1379  1.213     ozaki 	int unit_seen, i, error;
   1380    1.1       cgd 
   1381  1.192  christos 	KASSERT(mutex_owned(&bpf_mtx));
   1382    1.1       cgd 	/*
   1383   1.26   thorpej 	 * Make sure the provided name has a unit number, and default
   1384   1.26   thorpej 	 * it to '0' if not specified.
   1385   1.26   thorpej 	 * XXX This is ugly ... do this differently?
   1386    1.1       cgd 	 */
   1387   1.26   thorpej 	unit_seen = 0;
   1388    1.1       cgd 	cp = ifr->ifr_name;
   1389   1.26   thorpej 	cp[sizeof(ifr->ifr_name) - 1] = '\0';	/* sanity */
   1390   1.26   thorpej 	while (*cp++)
   1391   1.26   thorpej 		if (*cp >= '0' && *cp <= '9')
   1392   1.26   thorpej 			unit_seen = 1;
   1393   1.26   thorpej 	if (!unit_seen) {
   1394   1.26   thorpej 		/* Make sure to leave room for the '\0'. */
   1395   1.26   thorpej 		for (i = 0; i < (IFNAMSIZ - 1); ++i) {
   1396   1.26   thorpej 			if ((ifr->ifr_name[i] >= 'a' &&
   1397   1.26   thorpej 			     ifr->ifr_name[i] <= 'z') ||
   1398   1.26   thorpej 			    (ifr->ifr_name[i] >= 'A' &&
   1399   1.26   thorpej 			     ifr->ifr_name[i] <= 'Z'))
   1400   1.26   thorpej 				continue;
   1401   1.26   thorpej 			ifr->ifr_name[i] = '0';
   1402    1.1       cgd 		}
   1403    1.1       cgd 	}
   1404   1.26   thorpej 
   1405    1.1       cgd 	/*
   1406    1.1       cgd 	 * Look through attached interfaces for the named one.
   1407    1.1       cgd 	 */
   1408  1.209     ozaki 	BPF_IFLIST_WRITER_FOREACH(bp) {
   1409    1.1       cgd 		struct ifnet *ifp = bp->bif_ifp;
   1410    1.1       cgd 
   1411  1.187     ozaki 		if (ifp == NULL ||
   1412   1.26   thorpej 		    strcmp(ifp->if_xname, ifr->ifr_name) != 0)
   1413    1.1       cgd 			continue;
   1414   1.66      onoe 		/* skip additional entry */
   1415  1.152     pooka 		if (bp->bif_driverp != &ifp->if_bpf)
   1416   1.66      onoe 			continue;
   1417    1.1       cgd 		/*
   1418    1.2       cgd 		 * We found the requested interface.
   1419    1.2       cgd 		 * Allocate the packet buffers if we need to.
   1420    1.2       cgd 		 * If we're already attached to requested interface,
   1421    1.2       cgd 		 * just flush the buffer.
   1422    1.1       cgd 		 */
   1423  1.213     ozaki 		/*
   1424  1.213     ozaki 		 * bpf_allocbufs is called only here. bpf_mtx ensures that
   1425  1.213     ozaki 		 * no race condition happen on d->bd_sbuf.
   1426  1.213     ozaki 		 */
   1427  1.187     ozaki 		if (d->bd_sbuf == NULL) {
   1428    1.2       cgd 			error = bpf_allocbufs(d);
   1429    1.2       cgd 			if (error != 0)
   1430    1.2       cgd 				return (error);
   1431    1.2       cgd 		}
   1432  1.213     ozaki 		mutex_enter(d->bd_mtx);
   1433    1.1       cgd 		if (bp != d->bd_bif) {
   1434  1.216     ozaki 			if (d->bd_bif) {
   1435   1.12   mycroft 				/*
   1436    1.1       cgd 				 * Detach if attached to something else.
   1437    1.1       cgd 				 */
   1438    1.1       cgd 				bpf_detachd(d);
   1439  1.216     ozaki 				BPFIF_DLIST_ENTRY_INIT(d);
   1440  1.216     ozaki 			}
   1441    1.1       cgd 
   1442    1.1       cgd 			bpf_attachd(d, bp);
   1443    1.1       cgd 		}
   1444    1.1       cgd 		reset_d(d);
   1445  1.213     ozaki 		mutex_exit(d->bd_mtx);
   1446    1.1       cgd 		return (0);
   1447    1.1       cgd 	}
   1448    1.1       cgd 	/* Not found. */
   1449    1.1       cgd 	return (ENXIO);
   1450    1.1       cgd }
   1451    1.1       cgd 
   1452    1.1       cgd /*
   1453   1.26   thorpej  * Copy the interface name to the ifreq.
   1454    1.1       cgd  */
   1455    1.1       cgd static void
   1456  1.103  christos bpf_ifname(struct ifnet *ifp, struct ifreq *ifr)
   1457    1.1       cgd {
   1458   1.41     perry 	memcpy(ifr->ifr_name, ifp->if_xname, IFNAMSIZ);
   1459    1.1       cgd }
   1460    1.1       cgd 
   1461  1.145  christos static int
   1462  1.145  christos bpf_stat(struct file *fp, struct stat *st)
   1463  1.145  christos {
   1464  1.188      matt 	struct bpf_d *d = fp->f_bpf;
   1465  1.145  christos 
   1466  1.145  christos 	(void)memset(st, 0, sizeof(*st));
   1467  1.213     ozaki 	mutex_enter(d->bd_mtx);
   1468  1.145  christos 	st->st_dev = makedev(cdevsw_lookup_major(&bpf_cdevsw), d->bd_pid);
   1469  1.145  christos 	st->st_atimespec = d->bd_atime;
   1470  1.145  christos 	st->st_mtimespec = d->bd_mtime;
   1471  1.145  christos 	st->st_ctimespec = st->st_birthtimespec = d->bd_btime;
   1472  1.146  christos 	st->st_uid = kauth_cred_geteuid(fp->f_cred);
   1473  1.146  christos 	st->st_gid = kauth_cred_getegid(fp->f_cred);
   1474  1.164  christos 	st->st_mode = S_IFCHR;
   1475  1.213     ozaki 	mutex_exit(d->bd_mtx);
   1476  1.145  christos 	return 0;
   1477  1.145  christos }
   1478  1.145  christos 
   1479    1.1       cgd /*
   1480   1.36  christos  * Support for poll() system call
   1481    1.1       cgd  *
   1482   1.64   darrenr  * Return true iff the specific operation will not block indefinitely - with
   1483   1.64   darrenr  * the assumption that it is safe to positively acknowledge a request for the
   1484   1.64   darrenr  * ability to write to the BPF device.
   1485  1.134     rmind  * Otherwise, return false but make a note that a selnotify() must be done.
   1486    1.1       cgd  */
   1487  1.105  christos static int
   1488  1.135        ad bpf_poll(struct file *fp, int events)
   1489    1.1       cgd {
   1490  1.188      matt 	struct bpf_d *d = fp->f_bpf;
   1491   1.64   darrenr 	int revents;
   1492   1.12   mycroft 
   1493  1.110    rpaulo 	/*
   1494  1.110    rpaulo 	 * Refresh the PID associated with this bpf file.
   1495  1.110    rpaulo 	 */
   1496  1.213     ozaki 	mutex_enter(&bpf_mtx);
   1497  1.135        ad 	d->bd_pid = curproc->p_pid;
   1498  1.120  christos 
   1499   1.64   darrenr 	revents = events & (POLLOUT | POLLWRNORM);
   1500   1.44   thorpej 	if (events & (POLLIN | POLLRDNORM)) {
   1501   1.64   darrenr 		/*
   1502   1.64   darrenr 		 * An imitation of the FIONREAD ioctl code.
   1503   1.64   darrenr 		 */
   1504  1.213     ozaki 		mutex_enter(d->bd_mtx);
   1505  1.138       scw 		if (d->bd_hlen != 0 ||
   1506  1.138       scw 		    ((d->bd_immediate || d->bd_state == BPF_TIMED_OUT) &&
   1507  1.138       scw 		     d->bd_slen != 0)) {
   1508   1.30   mycroft 			revents |= events & (POLLIN | POLLRDNORM);
   1509   1.92   darrenr 		} else {
   1510  1.135        ad 			selrecord(curlwp, &d->bd_sel);
   1511   1.91   darrenr 			/* Start the read timeout if necessary */
   1512   1.91   darrenr 			if (d->bd_rtout > 0 && d->bd_state == BPF_IDLE) {
   1513   1.91   darrenr 				callout_reset(&d->bd_callout, d->bd_rtout,
   1514   1.91   darrenr 					      bpf_timed_out, d);
   1515   1.91   darrenr 				d->bd_state = BPF_WAITING;
   1516   1.91   darrenr 			}
   1517   1.91   darrenr 		}
   1518  1.213     ozaki 		mutex_exit(d->bd_mtx);
   1519   1.44   thorpej 	}
   1520   1.12   mycroft 
   1521  1.213     ozaki 	mutex_exit(&bpf_mtx);
   1522   1.30   mycroft 	return (revents);
   1523   1.75  jdolecek }
   1524   1.75  jdolecek 
   1525   1.75  jdolecek static void
   1526   1.75  jdolecek filt_bpfrdetach(struct knote *kn)
   1527   1.75  jdolecek {
   1528   1.75  jdolecek 	struct bpf_d *d = kn->kn_hook;
   1529   1.75  jdolecek 
   1530  1.213     ozaki 	mutex_enter(d->bd_buf_mtx);
   1531  1.239   thorpej 	selremove_knote(&d->bd_sel, kn);
   1532  1.213     ozaki 	mutex_exit(d->bd_buf_mtx);
   1533   1.75  jdolecek }
   1534   1.75  jdolecek 
   1535   1.75  jdolecek static int
   1536  1.125  christos filt_bpfread(struct knote *kn, long hint)
   1537   1.75  jdolecek {
   1538   1.75  jdolecek 	struct bpf_d *d = kn->kn_hook;
   1539  1.140        ad 	int rv;
   1540   1.75  jdolecek 
   1541  1.213     ozaki 	mutex_enter(d->bd_buf_mtx);
   1542   1.75  jdolecek 	kn->kn_data = d->bd_hlen;
   1543   1.75  jdolecek 	if (d->bd_immediate)
   1544   1.75  jdolecek 		kn->kn_data += d->bd_slen;
   1545  1.140        ad 	rv = (kn->kn_data > 0);
   1546  1.213     ozaki 	mutex_exit(d->bd_buf_mtx);
   1547  1.140        ad 	return rv;
   1548   1.75  jdolecek }
   1549   1.75  jdolecek 
   1550  1.218      maya static const struct filterops bpfread_filtops = {
   1551  1.218      maya 	.f_isfd = 1,
   1552  1.218      maya 	.f_attach = NULL,
   1553  1.218      maya 	.f_detach = filt_bpfrdetach,
   1554  1.218      maya 	.f_event = filt_bpfread,
   1555  1.218      maya };
   1556   1.75  jdolecek 
   1557  1.105  christos static int
   1558  1.105  christos bpf_kqfilter(struct file *fp, struct knote *kn)
   1559   1.75  jdolecek {
   1560  1.188      matt 	struct bpf_d *d = fp->f_bpf;
   1561  1.140        ad 
   1562   1.75  jdolecek 	switch (kn->kn_filter) {
   1563   1.75  jdolecek 	case EVFILT_READ:
   1564   1.75  jdolecek 		kn->kn_fop = &bpfread_filtops;
   1565   1.75  jdolecek 		break;
   1566   1.75  jdolecek 
   1567   1.75  jdolecek 	default:
   1568  1.131     pooka 		return (EINVAL);
   1569   1.75  jdolecek 	}
   1570   1.75  jdolecek 
   1571   1.75  jdolecek 	kn->kn_hook = d;
   1572   1.75  jdolecek 
   1573  1.239   thorpej 	mutex_enter(d->bd_buf_mtx);
   1574  1.239   thorpej 	selrecord_knote(&d->bd_sel, kn);
   1575  1.213     ozaki 	mutex_exit(d->bd_buf_mtx);
   1576   1.75  jdolecek 
   1577   1.75  jdolecek 	return (0);
   1578    1.1       cgd }
   1579    1.1       cgd 
   1580    1.1       cgd /*
   1581    1.1       cgd  * Copy data from an mbuf chain into a buffer.  This code is derived
   1582    1.1       cgd  * from m_copydata in sys/uipc_mbuf.c.
   1583    1.1       cgd  */
   1584   1.43     perry static void *
   1585  1.137  christos bpf_mcpy(void *dst_arg, const void *src_arg, size_t len)
   1586   1.12   mycroft {
   1587  1.137  christos 	const struct mbuf *m;
   1588   1.53  augustss 	u_int count;
   1589    1.1       cgd 	u_char *dst;
   1590    1.1       cgd 
   1591   1.12   mycroft 	m = src_arg;
   1592   1.12   mycroft 	dst = dst_arg;
   1593    1.1       cgd 	while (len > 0) {
   1594  1.137  christos 		if (m == NULL)
   1595   1.41     perry 			panic("bpf_mcpy");
   1596  1.228  riastrad 		count = uimin(m->m_len, len);
   1597  1.137  christos 		memcpy(dst, mtod(m, const void *), count);
   1598    1.1       cgd 		m = m->m_next;
   1599    1.1       cgd 		dst += count;
   1600    1.1       cgd 		len -= count;
   1601    1.1       cgd 	}
   1602  1.137  christos 	return dst_arg;
   1603    1.1       cgd }
   1604    1.1       cgd 
   1605  1.237       roy static inline u_int
   1606  1.237       roy bpf_xfilter(struct bpf_filter **filter, void *pkt, u_int pktlen, u_int buflen)
   1607  1.237       roy {
   1608  1.237       roy 	struct bpf_filter *filt;
   1609  1.237       roy 	uint32_t mem[BPF_MEMWORDS];
   1610  1.237       roy 	bpf_args_t args = {
   1611  1.237       roy 		.pkt = (const uint8_t *)pkt,
   1612  1.237       roy 		.wirelen = pktlen,
   1613  1.237       roy 		.buflen = buflen,
   1614  1.237       roy 		.mem = mem,
   1615  1.237       roy 		.arg = NULL
   1616  1.237       roy 	};
   1617  1.237       roy 	u_int slen;
   1618  1.237       roy 
   1619  1.237       roy 	filt = atomic_load_consume(filter);
   1620  1.237       roy 	if (filt == NULL) /* No filter means accept all. */
   1621  1.237       roy 		return (u_int)-1;
   1622  1.237       roy 
   1623  1.237       roy 	if (filt->bf_jitcode != NULL)
   1624  1.237       roy 		slen = filt->bf_jitcode(NULL, &args);
   1625  1.237       roy 	else
   1626  1.237       roy 		slen = bpf_filter_ext(NULL, filt->bf_insn, &args);
   1627  1.237       roy 	return slen;
   1628  1.237       roy }
   1629  1.237       roy 
   1630    1.1       cgd /*
   1631   1.96    dyoung  * Dispatch a packet to all the listeners on interface bp.
   1632   1.96    dyoung  *
   1633  1.226   msaitoh  * pkt       pointer to the packet, either a data buffer or an mbuf chain
   1634  1.226   msaitoh  * buflen    buffer length, if pkt is a data buffer
   1635  1.226   msaitoh  * cpfn      a function that can copy pkt into the listener's buffer
   1636  1.226   msaitoh  * pktlen    length of the packet
   1637  1.226   msaitoh  * direction BPF_D_IN or BPF_D_OUT
   1638   1.96    dyoung  */
   1639  1.114     perry static inline void
   1640  1.137  christos bpf_deliver(struct bpf_if *bp, void *(*cpfn)(void *, const void *, size_t),
   1641  1.226   msaitoh     void *pkt, u_int pktlen, u_int buflen, const u_int direction)
   1642   1.96    dyoung {
   1643  1.169     rmind 	bool gottime = false;
   1644  1.189     rmind 	struct timespec ts;
   1645  1.209     ozaki 	struct bpf_d *d;
   1646  1.213     ozaki 	int s;
   1647  1.237       roy 	u_int slen;
   1648  1.213     ozaki 
   1649  1.213     ozaki 	KASSERT(!cpu_intr_p());
   1650  1.169     rmind 
   1651  1.169     rmind 	/*
   1652  1.169     rmind 	 * Note that the IPL does not have to be raised at this point.
   1653  1.169     rmind 	 * The only problem that could arise here is that if two different
   1654  1.169     rmind 	 * interfaces shared any data.  This is not the case.
   1655  1.169     rmind 	 */
   1656  1.213     ozaki 	s = pserialize_read_enter();
   1657  1.209     ozaki 	BPFIF_DLIST_READER_FOREACH(d, bp) {
   1658  1.226   msaitoh 		if (direction == BPF_D_IN) {
   1659  1.226   msaitoh 			if (d->bd_direction == BPF_D_OUT)
   1660  1.226   msaitoh 				continue;
   1661  1.226   msaitoh 		} else { /* BPF_D_OUT */
   1662  1.226   msaitoh 			if (d->bd_direction == BPF_D_IN)
   1663  1.226   msaitoh 				continue;
   1664  1.120  christos 		}
   1665  1.226   msaitoh 
   1666  1.213     ozaki 		atomic_inc_ulong(&d->bd_rcount);
   1667  1.210     ozaki 		BPF_STATINC(recv);
   1668  1.169     rmind 
   1669  1.237       roy 		slen = bpf_xfilter(&d->bd_rfilter, pkt, pktlen, buflen);
   1670  1.237       roy 		if (slen == 0)
   1671  1.237       roy 			continue;
   1672  1.173     alnsn 
   1673  1.169     rmind 		if (!gottime) {
   1674  1.169     rmind 			gottime = true;
   1675  1.169     rmind 			nanotime(&ts);
   1676  1.169     rmind 		}
   1677  1.213     ozaki 		/* Assume catchpacket doesn't sleep */
   1678  1.169     rmind 		catchpacket(d, pkt, pktlen, slen, cpfn, &ts);
   1679   1.96    dyoung 	}
   1680  1.213     ozaki 	pserialize_read_exit(s);
   1681   1.96    dyoung }
   1682   1.96    dyoung 
   1683   1.96    dyoung /*
   1684   1.96    dyoung  * Incoming linkage from device drivers, when the head of the packet is in
   1685   1.96    dyoung  * a buffer, and the tail is in an mbuf chain.
   1686   1.96    dyoung  */
   1687  1.153     pooka static void
   1688  1.226   msaitoh _bpf_mtap2(struct bpf_if *bp, void *data, u_int dlen, struct mbuf *m,
   1689  1.226   msaitoh 	u_int direction)
   1690   1.96    dyoung {
   1691   1.96    dyoung 	u_int pktlen;
   1692   1.96    dyoung 	struct mbuf mb;
   1693   1.96    dyoung 
   1694  1.156  christos 	/* Skip outgoing duplicate packets. */
   1695  1.198     ozaki 	if ((m->m_flags & M_PROMISC) != 0 && m->m_pkthdr.rcvif_index == 0) {
   1696  1.156  christos 		m->m_flags &= ~M_PROMISC;
   1697  1.156  christos 		return;
   1698  1.156  christos 	}
   1699  1.156  christos 
   1700  1.101    dyoung 	pktlen = m_length(m) + dlen;
   1701   1.96    dyoung 
   1702   1.96    dyoung 	/*
   1703   1.96    dyoung 	 * Craft on-stack mbuf suitable for passing to bpf_filter.
   1704   1.96    dyoung 	 * Note that we cut corners here; we only setup what's
   1705  1.162  christos 	 * absolutely needed--this mbuf should never go anywhere else.
   1706  1.162  christos 	 */
   1707  1.101    dyoung 	(void)memset(&mb, 0, sizeof(mb));
   1708  1.227   msaitoh 	mb.m_type = MT_DATA;
   1709   1.96    dyoung 	mb.m_next = m;
   1710   1.96    dyoung 	mb.m_data = data;
   1711   1.96    dyoung 	mb.m_len = dlen;
   1712   1.96    dyoung 
   1713  1.226   msaitoh 	bpf_deliver(bp, bpf_mcpy, &mb, pktlen, 0, direction);
   1714   1.96    dyoung }
   1715   1.96    dyoung 
   1716   1.96    dyoung /*
   1717    1.2       cgd  * Incoming linkage from device drivers, when packet is in an mbuf chain.
   1718    1.1       cgd  */
   1719  1.153     pooka static void
   1720  1.226   msaitoh _bpf_mtap(struct bpf_if *bp, struct mbuf *m, u_int direction)
   1721    1.1       cgd {
   1722  1.137  christos 	void *(*cpfn)(void *, const void *, size_t);
   1723   1.96    dyoung 	u_int pktlen, buflen;
   1724   1.91   darrenr 	void *marg;
   1725    1.1       cgd 
   1726  1.156  christos 	/* Skip outgoing duplicate packets. */
   1727  1.198     ozaki 	if ((m->m_flags & M_PROMISC) != 0 && m->m_pkthdr.rcvif_index == 0) {
   1728  1.156  christos 		m->m_flags &= ~M_PROMISC;
   1729  1.156  christos 		return;
   1730  1.156  christos 	}
   1731  1.156  christos 
   1732  1.101    dyoung 	pktlen = m_length(m);
   1733    1.1       cgd 
   1734  1.231      maxv 	/* Skip zero-sized packets. */
   1735  1.231      maxv 	if (__predict_false(pktlen == 0)) {
   1736  1.231      maxv 		return;
   1737  1.231      maxv 	}
   1738  1.231      maxv 
   1739   1.91   darrenr 	if (pktlen == m->m_len) {
   1740  1.136      yamt 		cpfn = (void *)memcpy;
   1741   1.91   darrenr 		marg = mtod(m, void *);
   1742   1.91   darrenr 		buflen = pktlen;
   1743  1.230      maxv 		KASSERT(buflen != 0);
   1744   1.91   darrenr 	} else {
   1745   1.91   darrenr 		cpfn = bpf_mcpy;
   1746   1.91   darrenr 		marg = m;
   1747   1.91   darrenr 		buflen = 0;
   1748   1.91   darrenr 	}
   1749   1.91   darrenr 
   1750  1.226   msaitoh 	bpf_deliver(bp, cpfn, marg, pktlen, buflen, direction);
   1751    1.1       cgd }
   1752    1.1       cgd 
   1753    1.1       cgd /*
   1754  1.104  christos  * We need to prepend the address family as
   1755  1.104  christos  * a four byte field.  Cons up a dummy header
   1756  1.104  christos  * to pacify bpf.  This is safe because bpf
   1757  1.104  christos  * will only read from the mbuf (i.e., it won't
   1758  1.104  christos  * try to free it or keep a pointer a to it).
   1759  1.104  christos  */
   1760  1.153     pooka static void
   1761  1.226   msaitoh _bpf_mtap_af(struct bpf_if *bp, uint32_t af, struct mbuf *m, u_int direction)
   1762  1.104  christos {
   1763  1.104  christos 	struct mbuf m0;
   1764  1.107     perry 
   1765  1.227   msaitoh 	m0.m_type = MT_DATA;
   1766  1.104  christos 	m0.m_flags = 0;
   1767  1.104  christos 	m0.m_next = m;
   1768  1.227   msaitoh 	m0.m_nextpkt = NULL;
   1769  1.227   msaitoh 	m0.m_owner = NULL;
   1770  1.104  christos 	m0.m_len = 4;
   1771  1.104  christos 	m0.m_data = (char *)&af;
   1772  1.104  christos 
   1773  1.226   msaitoh 	_bpf_mtap(bp, &m0, direction);
   1774  1.104  christos }
   1775  1.104  christos 
   1776  1.104  christos /*
   1777  1.104  christos  * Put the SLIP pseudo-"link header" in place.
   1778  1.104  christos  * Note this M_PREPEND() should never fail,
   1779  1.104  christos  * swince we know we always have enough space
   1780  1.104  christos  * in the input buffer.
   1781  1.104  christos  */
   1782  1.153     pooka static void
   1783  1.157     joerg _bpf_mtap_sl_in(struct bpf_if *bp, u_char *chdr, struct mbuf **m)
   1784  1.104  christos {
   1785  1.104  christos 	u_char *hp;
   1786  1.104  christos 
   1787  1.104  christos 	M_PREPEND(*m, SLIP_HDRLEN, M_DONTWAIT);
   1788  1.104  christos 	if (*m == NULL)
   1789  1.104  christos 		return;
   1790  1.104  christos 
   1791  1.104  christos 	hp = mtod(*m, u_char *);
   1792  1.104  christos 	hp[SLX_DIR] = SLIPDIR_IN;
   1793  1.104  christos 	(void)memcpy(&hp[SLX_CHDR], chdr, CHDR_LEN);
   1794  1.104  christos 
   1795  1.226   msaitoh 	_bpf_mtap(bp, *m, BPF_D_IN);
   1796  1.104  christos 
   1797  1.104  christos 	m_adj(*m, SLIP_HDRLEN);
   1798  1.104  christos }
   1799  1.104  christos 
   1800  1.104  christos /*
   1801  1.104  christos  * Put the SLIP pseudo-"link header" in
   1802  1.104  christos  * place.  The compressed header is now
   1803  1.104  christos  * at the beginning of the mbuf.
   1804  1.104  christos  */
   1805  1.153     pooka static void
   1806  1.157     joerg _bpf_mtap_sl_out(struct bpf_if *bp, u_char *chdr, struct mbuf *m)
   1807  1.104  christos {
   1808  1.104  christos 	struct mbuf m0;
   1809  1.104  christos 	u_char *hp;
   1810  1.104  christos 
   1811  1.227   msaitoh 	m0.m_type = MT_DATA;
   1812  1.104  christos 	m0.m_flags = 0;
   1813  1.104  christos 	m0.m_next = m;
   1814  1.227   msaitoh 	m0.m_nextpkt = NULL;
   1815  1.227   msaitoh 	m0.m_owner = NULL;
   1816  1.104  christos 	m0.m_data = m0.m_dat;
   1817  1.104  christos 	m0.m_len = SLIP_HDRLEN;
   1818  1.104  christos 
   1819  1.104  christos 	hp = mtod(&m0, u_char *);
   1820  1.104  christos 
   1821  1.104  christos 	hp[SLX_DIR] = SLIPDIR_OUT;
   1822  1.104  christos 	(void)memcpy(&hp[SLX_CHDR], chdr, CHDR_LEN);
   1823  1.104  christos 
   1824  1.226   msaitoh 	_bpf_mtap(bp, &m0, BPF_D_OUT);
   1825  1.104  christos 	m_freem(m);
   1826  1.104  christos }
   1827  1.104  christos 
   1828  1.205     ozaki static struct mbuf *
   1829  1.205     ozaki bpf_mbuf_enqueue(struct bpf_if *bp, struct mbuf *m)
   1830  1.205     ozaki {
   1831  1.205     ozaki 	struct mbuf *dup;
   1832  1.205     ozaki 
   1833  1.205     ozaki 	dup = m_dup(m, 0, M_COPYALL, M_NOWAIT);
   1834  1.205     ozaki 	if (dup == NULL)
   1835  1.205     ozaki 		return NULL;
   1836  1.205     ozaki 
   1837  1.205     ozaki 	if (bp->bif_mbuf_tail != NULL) {
   1838  1.205     ozaki 		bp->bif_mbuf_tail->m_nextpkt = dup;
   1839  1.205     ozaki 	} else {
   1840  1.205     ozaki 		bp->bif_mbuf_head = dup;
   1841  1.205     ozaki 	}
   1842  1.205     ozaki 	bp->bif_mbuf_tail = dup;
   1843  1.205     ozaki #ifdef BPF_MTAP_SOFTINT_DEBUG
   1844  1.205     ozaki 	log(LOG_DEBUG, "%s: enqueued mbuf=%p to %s\n",
   1845  1.205     ozaki 	    __func__, dup, bp->bif_ifp->if_xname);
   1846  1.205     ozaki #endif
   1847  1.205     ozaki 
   1848  1.205     ozaki 	return dup;
   1849  1.205     ozaki }
   1850  1.205     ozaki 
   1851  1.205     ozaki static struct mbuf *
   1852  1.205     ozaki bpf_mbuf_dequeue(struct bpf_if *bp)
   1853  1.205     ozaki {
   1854  1.205     ozaki 	struct mbuf *m;
   1855  1.205     ozaki 	int s;
   1856  1.205     ozaki 
   1857  1.213     ozaki 	/* XXX NOMPSAFE: assumed running on one CPU */
   1858  1.205     ozaki 	s = splnet();
   1859  1.205     ozaki 	m = bp->bif_mbuf_head;
   1860  1.205     ozaki 	if (m != NULL) {
   1861  1.205     ozaki 		bp->bif_mbuf_head = m->m_nextpkt;
   1862  1.205     ozaki 		m->m_nextpkt = NULL;
   1863  1.205     ozaki 
   1864  1.205     ozaki 		if (bp->bif_mbuf_head == NULL)
   1865  1.205     ozaki 			bp->bif_mbuf_tail = NULL;
   1866  1.205     ozaki #ifdef BPF_MTAP_SOFTINT_DEBUG
   1867  1.205     ozaki 		log(LOG_DEBUG, "%s: dequeued mbuf=%p from %s\n",
   1868  1.205     ozaki 		    __func__, m, bp->bif_ifp->if_xname);
   1869  1.205     ozaki #endif
   1870  1.205     ozaki 	}
   1871  1.205     ozaki 	splx(s);
   1872  1.205     ozaki 
   1873  1.205     ozaki 	return m;
   1874  1.205     ozaki }
   1875  1.205     ozaki 
   1876  1.205     ozaki static void
   1877  1.205     ozaki bpf_mtap_si(void *arg)
   1878  1.205     ozaki {
   1879  1.205     ozaki 	struct bpf_if *bp = arg;
   1880  1.205     ozaki 	struct mbuf *m;
   1881  1.205     ozaki 
   1882  1.205     ozaki 	while ((m = bpf_mbuf_dequeue(bp)) != NULL) {
   1883  1.205     ozaki #ifdef BPF_MTAP_SOFTINT_DEBUG
   1884  1.205     ozaki 		log(LOG_DEBUG, "%s: tapping mbuf=%p on %s\n",
   1885  1.205     ozaki 		    __func__, m, bp->bif_ifp->if_xname);
   1886  1.205     ozaki #endif
   1887  1.226   msaitoh 		bpf_ops->bpf_mtap(bp, m, BPF_D_IN);
   1888  1.205     ozaki 		m_freem(m);
   1889  1.205     ozaki 	}
   1890  1.205     ozaki }
   1891  1.205     ozaki 
   1892  1.206     ozaki static void
   1893  1.206     ozaki _bpf_mtap_softint(struct ifnet *ifp, struct mbuf *m)
   1894  1.205     ozaki {
   1895  1.205     ozaki 	struct bpf_if *bp = ifp->if_bpf;
   1896  1.205     ozaki 	struct mbuf *dup;
   1897  1.205     ozaki 
   1898  1.205     ozaki 	KASSERT(cpu_intr_p());
   1899  1.205     ozaki 
   1900  1.206     ozaki 	/* To avoid extra invocations of the softint */
   1901  1.209     ozaki 	if (BPFIF_DLIST_READER_EMPTY(bp))
   1902  1.205     ozaki 		return;
   1903  1.205     ozaki 	KASSERT(bp->bif_si != NULL);
   1904  1.205     ozaki 
   1905  1.205     ozaki 	dup = bpf_mbuf_enqueue(bp, m);
   1906  1.205     ozaki 	if (dup != NULL)
   1907  1.205     ozaki 		softint_schedule(bp->bif_si);
   1908  1.205     ozaki }
   1909  1.205     ozaki 
   1910  1.166    bouyer static int
   1911  1.166    bouyer bpf_hdrlen(struct bpf_d *d)
   1912  1.166    bouyer {
   1913  1.166    bouyer 	int hdrlen = d->bd_bif->bif_hdrlen;
   1914  1.166    bouyer 	/*
   1915  1.166    bouyer 	 * Compute the length of the bpf header.  This is not necessarily
   1916  1.166    bouyer 	 * equal to SIZEOF_BPF_HDR because we want to insert spacing such
   1917  1.166    bouyer 	 * that the network layer header begins on a longword boundary (for
   1918  1.166    bouyer 	 * performance reasons and to alleviate alignment restrictions).
   1919  1.166    bouyer 	 */
   1920  1.166    bouyer #ifdef _LP64
   1921  1.166    bouyer 	if (d->bd_compat32)
   1922  1.166    bouyer 		return (BPF_WORDALIGN32(hdrlen + SIZEOF_BPF_HDR32) - hdrlen);
   1923  1.166    bouyer 	else
   1924  1.166    bouyer #endif
   1925  1.166    bouyer 		return (BPF_WORDALIGN(hdrlen + SIZEOF_BPF_HDR) - hdrlen);
   1926  1.166    bouyer }
   1927  1.168  christos 
   1928  1.104  christos /*
   1929    1.1       cgd  * Move the packet data from interface memory (pkt) into the
   1930  1.168  christos  * store buffer. Call the wakeup functions if it's time to wakeup
   1931  1.168  christos  * a listener (buffer full), "cpfn" is the routine called to do the
   1932  1.168  christos  * actual data transfer. memcpy is passed in to copy contiguous chunks,
   1933  1.168  christos  * while bpf_mcpy is passed in to copy mbuf chains.  In the latter case,
   1934    1.2       cgd  * pkt is really an mbuf.
   1935    1.1       cgd  */
   1936    1.1       cgd static void
   1937  1.103  christos catchpacket(struct bpf_d *d, u_char *pkt, u_int pktlen, u_int snaplen,
   1938  1.142  christos     void *(*cpfn)(void *, const void *, size_t), struct timespec *ts)
   1939   1.53  augustss {
   1940  1.176  christos 	char *h;
   1941  1.176  christos 	int totlen, curlen, caplen;
   1942  1.166    bouyer 	int hdrlen = bpf_hdrlen(d);
   1943  1.138       scw 	int do_wakeup = 0;
   1944   1.94   darrenr 
   1945  1.213     ozaki 	atomic_inc_ulong(&d->bd_ccount);
   1946  1.210     ozaki 	BPF_STATINC(capt);
   1947    1.1       cgd 	/*
   1948    1.1       cgd 	 * Figure out how many bytes to move.  If the packet is
   1949    1.1       cgd 	 * greater or equal to the snapshot length, transfer that
   1950    1.1       cgd 	 * much.  Otherwise, transfer the whole packet (unless
   1951    1.1       cgd 	 * we hit the buffer size limit).
   1952    1.1       cgd 	 */
   1953  1.228  riastrad 	totlen = hdrlen + uimin(snaplen, pktlen);
   1954    1.1       cgd 	if (totlen > d->bd_bufsize)
   1955    1.1       cgd 		totlen = d->bd_bufsize;
   1956  1.176  christos 	/*
   1957  1.176  christos 	 * If we adjusted totlen to fit the bufsize, it could be that
   1958  1.176  christos 	 * totlen is smaller than hdrlen because of the link layer header.
   1959  1.176  christos 	 */
   1960  1.176  christos 	caplen = totlen - hdrlen;
   1961  1.176  christos 	if (caplen < 0)
   1962  1.176  christos 		caplen = 0;
   1963    1.1       cgd 
   1964  1.213     ozaki 	mutex_enter(d->bd_buf_mtx);
   1965    1.1       cgd 	/*
   1966    1.1       cgd 	 * Round up the end of the previous packet to the next longword.
   1967    1.1       cgd 	 */
   1968  1.166    bouyer #ifdef _LP64
   1969  1.166    bouyer 	if (d->bd_compat32)
   1970  1.166    bouyer 		curlen = BPF_WORDALIGN32(d->bd_slen);
   1971  1.166    bouyer 	else
   1972  1.166    bouyer #endif
   1973  1.166    bouyer 		curlen = BPF_WORDALIGN(d->bd_slen);
   1974    1.1       cgd 	if (curlen + totlen > d->bd_bufsize) {
   1975    1.1       cgd 		/*
   1976    1.1       cgd 		 * This packet will overflow the storage buffer.
   1977    1.1       cgd 		 * Rotate the buffers if we can, then wakeup any
   1978    1.1       cgd 		 * pending reads.
   1979    1.1       cgd 		 */
   1980  1.187     ozaki 		if (d->bd_fbuf == NULL) {
   1981  1.213     ozaki 			mutex_exit(d->bd_buf_mtx);
   1982   1.12   mycroft 			/*
   1983   1.12   mycroft 			 * We haven't completed the previous read yet,
   1984    1.1       cgd 			 * so drop the packet.
   1985    1.1       cgd 			 */
   1986  1.213     ozaki 			atomic_inc_ulong(&d->bd_dcount);
   1987  1.210     ozaki 			BPF_STATINC(drop);
   1988    1.1       cgd 			return;
   1989    1.1       cgd 		}
   1990    1.1       cgd 		ROTATE_BUFFERS(d);
   1991  1.138       scw 		do_wakeup = 1;
   1992    1.1       cgd 		curlen = 0;
   1993  1.138       scw 	} else if (d->bd_immediate || d->bd_state == BPF_TIMED_OUT) {
   1994  1.138       scw 		/*
   1995  1.138       scw 		 * Immediate mode is set, or the read timeout has
   1996  1.138       scw 		 * already expired during a select call.  A packet
   1997  1.138       scw 		 * arrived, so the reader should be woken up.
   1998  1.138       scw 		 */
   1999  1.138       scw 		do_wakeup = 1;
   2000   1.97   darrenr 	}
   2001    1.1       cgd 
   2002    1.1       cgd 	/*
   2003    1.1       cgd 	 * Append the bpf header.
   2004    1.1       cgd 	 */
   2005  1.176  christos 	h = (char *)d->bd_sbuf + curlen;
   2006  1.166    bouyer #ifdef _LP64
   2007  1.166    bouyer 	if (d->bd_compat32) {
   2008  1.176  christos 		struct bpf_hdr32 *hp32;
   2009  1.176  christos 
   2010  1.176  christos 		hp32 = (struct bpf_hdr32 *)h;
   2011  1.166    bouyer 		hp32->bh_tstamp.tv_sec = ts->tv_sec;
   2012  1.166    bouyer 		hp32->bh_tstamp.tv_usec = ts->tv_nsec / 1000;
   2013  1.166    bouyer 		hp32->bh_datalen = pktlen;
   2014  1.166    bouyer 		hp32->bh_hdrlen = hdrlen;
   2015  1.176  christos 		hp32->bh_caplen = caplen;
   2016  1.166    bouyer 	} else
   2017  1.166    bouyer #endif
   2018  1.166    bouyer 	{
   2019  1.176  christos 		struct bpf_hdr *hp;
   2020  1.176  christos 
   2021  1.176  christos 		hp = (struct bpf_hdr *)h;
   2022  1.166    bouyer 		hp->bh_tstamp.tv_sec = ts->tv_sec;
   2023  1.166    bouyer 		hp->bh_tstamp.tv_usec = ts->tv_nsec / 1000;
   2024  1.166    bouyer 		hp->bh_datalen = pktlen;
   2025  1.166    bouyer 		hp->bh_hdrlen = hdrlen;
   2026  1.176  christos 		hp->bh_caplen = caplen;
   2027  1.166    bouyer 	}
   2028  1.176  christos 
   2029  1.176  christos 	/*
   2030  1.176  christos 	 * Copy the packet data into the store buffer and update its length.
   2031  1.176  christos 	 */
   2032  1.176  christos 	(*cpfn)(h + hdrlen, pkt, caplen);
   2033    1.1       cgd 	d->bd_slen = curlen + totlen;
   2034  1.213     ozaki 	mutex_exit(d->bd_buf_mtx);
   2035   1.97   darrenr 
   2036   1.97   darrenr 	/*
   2037   1.97   darrenr 	 * Call bpf_wakeup after bd_slen has been updated so that kevent(2)
   2038   1.97   darrenr 	 * will cause filt_bpfread() to be called with it adjusted.
   2039   1.97   darrenr 	 */
   2040  1.138       scw 	if (do_wakeup)
   2041   1.97   darrenr 		bpf_wakeup(d);
   2042    1.1       cgd }
   2043    1.1       cgd 
   2044   1.12   mycroft /*
   2045    1.1       cgd  * Initialize all nonzero fields of a descriptor.
   2046    1.1       cgd  */
   2047    1.1       cgd static int
   2048  1.103  christos bpf_allocbufs(struct bpf_d *d)
   2049    1.1       cgd {
   2050   1.50     enami 
   2051  1.229      maxv 	d->bd_fbuf = kmem_zalloc(d->bd_bufsize, KM_NOSLEEP);
   2052  1.100   darrenr 	if (!d->bd_fbuf)
   2053   1.79    itojun 		return (ENOBUFS);
   2054  1.229      maxv 	d->bd_sbuf = kmem_zalloc(d->bd_bufsize, KM_NOSLEEP);
   2055  1.100   darrenr 	if (!d->bd_sbuf) {
   2056  1.208     ozaki 		kmem_free(d->bd_fbuf, d->bd_bufsize);
   2057   1.79    itojun 		return (ENOBUFS);
   2058   1.79    itojun 	}
   2059    1.1       cgd 	d->bd_slen = 0;
   2060    1.1       cgd 	d->bd_hlen = 0;
   2061    1.1       cgd 	return (0);
   2062    1.1       cgd }
   2063    1.1       cgd 
   2064  1.213     ozaki static void
   2065  1.213     ozaki bpf_free_filter(struct bpf_filter *filter)
   2066  1.213     ozaki {
   2067  1.213     ozaki 
   2068  1.213     ozaki 	KASSERT(filter != NULL);
   2069  1.213     ozaki 	KASSERT(filter->bf_insn != NULL);
   2070  1.213     ozaki 
   2071  1.213     ozaki 	kmem_free(filter->bf_insn, filter->bf_size);
   2072  1.213     ozaki 	if (filter->bf_jitcode != NULL)
   2073  1.213     ozaki 		bpf_jit_freecode(filter->bf_jitcode);
   2074  1.213     ozaki 	kmem_free(filter, sizeof(*filter));
   2075  1.213     ozaki }
   2076  1.213     ozaki 
   2077    1.1       cgd /*
   2078    1.2       cgd  * Free buffers currently in use by a descriptor.
   2079    1.2       cgd  * Called on close.
   2080    1.2       cgd  */
   2081    1.2       cgd static void
   2082  1.103  christos bpf_freed(struct bpf_d *d)
   2083    1.2       cgd {
   2084    1.2       cgd 	/*
   2085    1.2       cgd 	 * We don't need to lock out interrupts since this descriptor has
   2086    1.2       cgd 	 * been detached from its interface and it yet hasn't been marked
   2087    1.2       cgd 	 * free.
   2088    1.2       cgd 	 */
   2089  1.171     alnsn 	if (d->bd_sbuf != NULL) {
   2090  1.208     ozaki 		kmem_free(d->bd_sbuf, d->bd_bufsize);
   2091  1.171     alnsn 		if (d->bd_hbuf != NULL)
   2092  1.208     ozaki 			kmem_free(d->bd_hbuf, d->bd_bufsize);
   2093  1.171     alnsn 		if (d->bd_fbuf != NULL)
   2094  1.208     ozaki 			kmem_free(d->bd_fbuf, d->bd_bufsize);
   2095  1.100   darrenr 	}
   2096  1.237       roy 	if (d->bd_rfilter != NULL) {
   2097  1.237       roy 		bpf_free_filter(d->bd_rfilter);
   2098  1.237       roy 		d->bd_rfilter = NULL;
   2099  1.237       roy 	}
   2100  1.237       roy 	if (d->bd_wfilter != NULL) {
   2101  1.237       roy 		bpf_free_filter(d->bd_wfilter);
   2102  1.237       roy 		d->bd_wfilter = NULL;
   2103  1.173     alnsn 	}
   2104  1.213     ozaki 	d->bd_jitcode = NULL;
   2105    1.2       cgd }
   2106    1.2       cgd 
   2107    1.2       cgd /*
   2108  1.153     pooka  * Attach an interface to bpf.  dlt is the link layer type;
   2109   1.66      onoe  * hdrlen is the fixed size of the link header for the specified dlt
   2110   1.66      onoe  * (variable length headers not yet supported).
   2111   1.66      onoe  */
   2112  1.153     pooka static void
   2113  1.157     joerg _bpfattach(struct ifnet *ifp, u_int dlt, u_int hdrlen, struct bpf_if **driverp)
   2114   1.66      onoe {
   2115    1.1       cgd 	struct bpf_if *bp;
   2116  1.208     ozaki 	bp = kmem_alloc(sizeof(*bp), KM_NOSLEEP);
   2117  1.187     ozaki 	if (bp == NULL)
   2118  1.238      maxv 		panic("%s: out of memory", __func__);
   2119   1.12   mycroft 
   2120  1.192  christos 	mutex_enter(&bpf_mtx);
   2121  1.103  christos 	bp->bif_driverp = driverp;
   2122    1.1       cgd 	bp->bif_ifp = ifp;
   2123    1.1       cgd 	bp->bif_dlt = dlt;
   2124  1.205     ozaki 	bp->bif_si = NULL;
   2125  1.209     ozaki 	BPF_IFLIST_ENTRY_INIT(bp);
   2126  1.209     ozaki 	PSLIST_INIT(&bp->bif_dlist_head);
   2127  1.213     ozaki 	psref_target_init(&bp->bif_psref, bpf_psref_class);
   2128    1.1       cgd 
   2129  1.209     ozaki 	BPF_IFLIST_WRITER_INSERT_HEAD(bp);
   2130    1.1       cgd 
   2131  1.187     ozaki 	*bp->bif_driverp = NULL;
   2132    1.1       cgd 
   2133  1.166    bouyer 	bp->bif_hdrlen = hdrlen;
   2134  1.192  christos 	mutex_exit(&bpf_mtx);
   2135   1.11   deraadt #if 0
   2136   1.32  christos 	printf("bpf: %s attached\n", ifp->if_xname);
   2137   1.11   deraadt #endif
   2138   1.48   thorpej }
   2139   1.48   thorpej 
   2140  1.206     ozaki static void
   2141  1.206     ozaki _bpf_mtap_softint_init(struct ifnet *ifp)
   2142  1.205     ozaki {
   2143  1.205     ozaki 	struct bpf_if *bp;
   2144  1.205     ozaki 
   2145  1.205     ozaki 	mutex_enter(&bpf_mtx);
   2146  1.209     ozaki 	BPF_IFLIST_WRITER_FOREACH(bp) {
   2147  1.205     ozaki 		if (bp->bif_ifp != ifp)
   2148  1.205     ozaki 			continue;
   2149  1.205     ozaki 
   2150  1.205     ozaki 		bp->bif_mbuf_head = NULL;
   2151  1.205     ozaki 		bp->bif_mbuf_tail = NULL;
   2152  1.205     ozaki 		bp->bif_si = softint_establish(SOFTINT_NET, bpf_mtap_si, bp);
   2153  1.205     ozaki 		if (bp->bif_si == NULL)
   2154  1.205     ozaki 			panic("%s: softint_establish() failed", __func__);
   2155  1.205     ozaki 		break;
   2156  1.205     ozaki 	}
   2157  1.205     ozaki 	mutex_exit(&bpf_mtx);
   2158  1.205     ozaki 
   2159  1.205     ozaki 	if (bp == NULL)
   2160  1.205     ozaki 		panic("%s: no bpf_if found for %s", __func__, ifp->if_xname);
   2161  1.205     ozaki }
   2162  1.205     ozaki 
   2163   1.48   thorpej /*
   2164   1.48   thorpej  * Remove an interface from bpf.
   2165   1.48   thorpej  */
   2166  1.153     pooka static void
   2167  1.157     joerg _bpfdetach(struct ifnet *ifp)
   2168   1.48   thorpej {
   2169  1.209     ozaki 	struct bpf_if *bp;
   2170   1.51     enami 	struct bpf_d *d;
   2171  1.105  christos 	int s;
   2172   1.51     enami 
   2173  1.192  christos 	mutex_enter(&bpf_mtx);
   2174   1.52     soren 	/* Nuke the vnodes for any open instances */
   2175  1.209     ozaki   again_d:
   2176  1.209     ozaki 	BPF_DLIST_WRITER_FOREACH(d) {
   2177  1.213     ozaki 		mutex_enter(d->bd_mtx);
   2178  1.105  christos 		if (d->bd_bif != NULL && d->bd_bif->bif_ifp == ifp) {
   2179   1.51     enami 			/*
   2180   1.51     enami 			 * Detach the descriptor from an interface now.
   2181   1.51     enami 			 * It will be free'ed later by close routine.
   2182   1.51     enami 			 */
   2183   1.51     enami 			d->bd_promisc = 0;	/* we can't touch device. */
   2184   1.51     enami 			bpf_detachd(d);
   2185  1.213     ozaki 			mutex_exit(d->bd_mtx);
   2186  1.209     ozaki 			goto again_d;
   2187   1.51     enami 		}
   2188  1.213     ozaki 		mutex_exit(d->bd_mtx);
   2189   1.51     enami 	}
   2190   1.48   thorpej 
   2191   1.66      onoe   again:
   2192  1.209     ozaki 	BPF_IFLIST_WRITER_FOREACH(bp) {
   2193   1.48   thorpej 		if (bp->bif_ifp == ifp) {
   2194  1.209     ozaki 			BPF_IFLIST_WRITER_REMOVE(bp);
   2195  1.213     ozaki 
   2196  1.213     ozaki 			pserialize_perform(bpf_psz);
   2197  1.213     ozaki 			psref_target_destroy(&bp->bif_psref, bpf_psref_class);
   2198  1.213     ozaki 
   2199  1.209     ozaki 			BPF_IFLIST_ENTRY_DESTROY(bp);
   2200  1.205     ozaki 			if (bp->bif_si != NULL) {
   2201  1.213     ozaki 				/* XXX NOMPSAFE: assumed running on one CPU */
   2202  1.205     ozaki 				s = splnet();
   2203  1.205     ozaki 				while (bp->bif_mbuf_head != NULL) {
   2204  1.205     ozaki 					struct mbuf *m = bp->bif_mbuf_head;
   2205  1.205     ozaki 					bp->bif_mbuf_head = m->m_nextpkt;
   2206  1.205     ozaki 					m_freem(m);
   2207  1.205     ozaki 				}
   2208  1.205     ozaki 				splx(s);
   2209  1.205     ozaki 				softint_disestablish(bp->bif_si);
   2210  1.205     ozaki 			}
   2211  1.208     ozaki 			kmem_free(bp, sizeof(*bp));
   2212   1.66      onoe 			goto again;
   2213   1.48   thorpej 		}
   2214   1.48   thorpej 	}
   2215  1.192  christos 	mutex_exit(&bpf_mtx);
   2216   1.47   thorpej }
   2217   1.47   thorpej 
   2218   1.47   thorpej /*
   2219   1.66      onoe  * Change the data link type of a interface.
   2220   1.47   thorpej  */
   2221  1.153     pooka static void
   2222  1.157     joerg _bpf_change_type(struct ifnet *ifp, u_int dlt, u_int hdrlen)
   2223   1.47   thorpej {
   2224   1.47   thorpej 	struct bpf_if *bp;
   2225   1.47   thorpej 
   2226  1.213     ozaki 	mutex_enter(&bpf_mtx);
   2227  1.213     ozaki 	BPF_IFLIST_WRITER_FOREACH(bp) {
   2228  1.152     pooka 		if (bp->bif_driverp == &ifp->if_bpf)
   2229   1.47   thorpej 			break;
   2230   1.47   thorpej 	}
   2231   1.47   thorpej 	if (bp == NULL)
   2232   1.47   thorpej 		panic("bpf_change_type");
   2233   1.47   thorpej 
   2234   1.47   thorpej 	bp->bif_dlt = dlt;
   2235   1.47   thorpej 
   2236  1.166    bouyer 	bp->bif_hdrlen = hdrlen;
   2237  1.213     ozaki 	mutex_exit(&bpf_mtx);
   2238   1.66      onoe }
   2239   1.66      onoe 
   2240   1.66      onoe /*
   2241   1.66      onoe  * Get a list of available data link type of the interface.
   2242   1.66      onoe  */
   2243   1.66      onoe static int
   2244  1.103  christos bpf_getdltlist(struct bpf_d *d, struct bpf_dltlist *bfl)
   2245   1.66      onoe {
   2246   1.66      onoe 	int n, error;
   2247   1.66      onoe 	struct ifnet *ifp;
   2248   1.66      onoe 	struct bpf_if *bp;
   2249  1.213     ozaki 	int s, bound;
   2250  1.213     ozaki 
   2251  1.213     ozaki 	KASSERT(mutex_owned(d->bd_mtx));
   2252   1.66      onoe 
   2253   1.66      onoe 	ifp = d->bd_bif->bif_ifp;
   2254   1.66      onoe 	n = 0;
   2255   1.66      onoe 	error = 0;
   2256  1.213     ozaki 
   2257  1.213     ozaki 	bound = curlwp_bind();
   2258  1.213     ozaki 	s = pserialize_read_enter();
   2259  1.209     ozaki 	BPF_IFLIST_READER_FOREACH(bp) {
   2260   1.66      onoe 		if (bp->bif_ifp != ifp)
   2261   1.66      onoe 			continue;
   2262   1.66      onoe 		if (bfl->bfl_list != NULL) {
   2263  1.213     ozaki 			struct psref psref;
   2264  1.213     ozaki 
   2265  1.213     ozaki 			if (n >= bfl->bfl_len) {
   2266  1.213     ozaki 				pserialize_read_exit(s);
   2267   1.66      onoe 				return ENOMEM;
   2268  1.213     ozaki 			}
   2269  1.213     ozaki 
   2270  1.213     ozaki 			bpf_if_acquire(bp, &psref);
   2271  1.213     ozaki 			pserialize_read_exit(s);
   2272  1.213     ozaki 
   2273   1.66      onoe 			error = copyout(&bp->bif_dlt,
   2274   1.66      onoe 			    bfl->bfl_list + n, sizeof(u_int));
   2275  1.213     ozaki 
   2276  1.213     ozaki 			s = pserialize_read_enter();
   2277  1.213     ozaki 			bpf_if_release(bp, &psref);
   2278   1.66      onoe 		}
   2279   1.66      onoe 		n++;
   2280   1.66      onoe 	}
   2281  1.213     ozaki 	pserialize_read_exit(s);
   2282  1.213     ozaki 	curlwp_bindx(bound);
   2283  1.213     ozaki 
   2284   1.66      onoe 	bfl->bfl_len = n;
   2285   1.66      onoe 	return error;
   2286   1.66      onoe }
   2287   1.66      onoe 
   2288   1.66      onoe /*
   2289   1.66      onoe  * Set the data link type of a BPF instance.
   2290   1.66      onoe  */
   2291   1.66      onoe static int
   2292  1.103  christos bpf_setdlt(struct bpf_d *d, u_int dlt)
   2293   1.66      onoe {
   2294  1.213     ozaki 	int error, opromisc;
   2295   1.66      onoe 	struct ifnet *ifp;
   2296   1.66      onoe 	struct bpf_if *bp;
   2297   1.66      onoe 
   2298  1.192  christos 	KASSERT(mutex_owned(&bpf_mtx));
   2299  1.213     ozaki 	KASSERT(mutex_owned(d->bd_mtx));
   2300  1.192  christos 
   2301   1.66      onoe 	if (d->bd_bif->bif_dlt == dlt)
   2302   1.66      onoe 		return 0;
   2303   1.66      onoe 	ifp = d->bd_bif->bif_ifp;
   2304  1.209     ozaki 	BPF_IFLIST_WRITER_FOREACH(bp) {
   2305   1.66      onoe 		if (bp->bif_ifp == ifp && bp->bif_dlt == dlt)
   2306   1.66      onoe 			break;
   2307   1.66      onoe 	}
   2308   1.66      onoe 	if (bp == NULL)
   2309   1.66      onoe 		return EINVAL;
   2310   1.69   thorpej 	opromisc = d->bd_promisc;
   2311   1.66      onoe 	bpf_detachd(d);
   2312  1.216     ozaki 	BPFIF_DLIST_ENTRY_INIT(d);
   2313   1.66      onoe 	bpf_attachd(d, bp);
   2314   1.66      onoe 	reset_d(d);
   2315   1.69   thorpej 	if (opromisc) {
   2316  1.219     ozaki 		KERNEL_LOCK_UNLESS_NET_MPSAFE();
   2317   1.69   thorpej 		error = ifpromisc(bp->bif_ifp, 1);
   2318  1.219     ozaki 		KERNEL_UNLOCK_UNLESS_NET_MPSAFE();
   2319   1.69   thorpej 		if (error)
   2320   1.69   thorpej 			printf("%s: bpf_setdlt: ifpromisc failed (%d)\n",
   2321   1.69   thorpej 			    bp->bif_ifp->if_xname, error);
   2322   1.69   thorpej 		else
   2323   1.69   thorpej 			d->bd_promisc = 1;
   2324   1.69   thorpej 	}
   2325   1.66      onoe 	return 0;
   2326    1.1       cgd }
   2327   1.89  jonathan 
   2328   1.89  jonathan static int
   2329   1.89  jonathan sysctl_net_bpf_maxbufsize(SYSCTLFN_ARGS)
   2330   1.89  jonathan {
   2331   1.89  jonathan 	int newsize, error;
   2332   1.89  jonathan 	struct sysctlnode node;
   2333   1.89  jonathan 
   2334   1.89  jonathan 	node = *rnode;
   2335   1.89  jonathan 	node.sysctl_data = &newsize;
   2336   1.89  jonathan 	newsize = bpf_maxbufsize;
   2337   1.89  jonathan 	error = sysctl_lookup(SYSCTLFN_CALL(&node));
   2338   1.89  jonathan 	if (error || newp == NULL)
   2339   1.89  jonathan 		return (error);
   2340   1.89  jonathan 
   2341   1.89  jonathan 	if (newsize < BPF_MINBUFSIZE || newsize > BPF_MAXBUFSIZE)
   2342   1.89  jonathan 		return (EINVAL);
   2343   1.89  jonathan 
   2344   1.89  jonathan 	bpf_maxbufsize = newsize;
   2345   1.89  jonathan 
   2346   1.89  jonathan 	return (0);
   2347   1.89  jonathan }
   2348   1.89  jonathan 
   2349  1.186     alnsn #if defined(MODULAR) || defined(BPFJIT)
   2350  1.110    rpaulo static int
   2351  1.173     alnsn sysctl_net_bpf_jit(SYSCTLFN_ARGS)
   2352  1.173     alnsn {
   2353  1.173     alnsn 	bool newval;
   2354  1.173     alnsn 	int error;
   2355  1.173     alnsn 	struct sysctlnode node;
   2356  1.173     alnsn 
   2357  1.173     alnsn 	node = *rnode;
   2358  1.173     alnsn 	node.sysctl_data = &newval;
   2359  1.173     alnsn 	newval = bpf_jit;
   2360  1.173     alnsn 	error = sysctl_lookup(SYSCTLFN_CALL(&node));
   2361  1.173     alnsn 	if (error != 0 || newp == NULL)
   2362  1.173     alnsn 		return error;
   2363  1.173     alnsn 
   2364  1.173     alnsn 	bpf_jit = newval;
   2365  1.173     alnsn 	if (newval && bpfjit_module_ops.bj_generate_code == NULL) {
   2366  1.186     alnsn 		printf("JIT compilation is postponed "
   2367  1.173     alnsn 		    "until after bpfjit module is loaded\n");
   2368  1.173     alnsn 	}
   2369  1.173     alnsn 
   2370  1.173     alnsn 	return 0;
   2371  1.173     alnsn }
   2372  1.186     alnsn #endif
   2373  1.173     alnsn 
   2374  1.173     alnsn static int
   2375  1.110    rpaulo sysctl_net_bpf_peers(SYSCTLFN_ARGS)
   2376  1.110    rpaulo {
   2377  1.110    rpaulo 	int    error, elem_count;
   2378  1.110    rpaulo 	struct bpf_d	 *dp;
   2379  1.110    rpaulo 	struct bpf_d_ext  dpe;
   2380  1.110    rpaulo 	size_t len, needed, elem_size, out_size;
   2381  1.110    rpaulo 	char   *sp;
   2382  1.110    rpaulo 
   2383  1.110    rpaulo 	if (namelen == 1 && name[0] == CTL_QUERY)
   2384  1.110    rpaulo 		return (sysctl_query(SYSCTLFN_CALL(rnode)));
   2385  1.110    rpaulo 
   2386  1.110    rpaulo 	if (namelen != 2)
   2387  1.110    rpaulo 		return (EINVAL);
   2388  1.110    rpaulo 
   2389  1.124      elad 	/* BPF peers is privileged information. */
   2390  1.124      elad 	error = kauth_authorize_network(l->l_cred, KAUTH_NETWORK_INTERFACE,
   2391  1.124      elad 	    KAUTH_REQ_NETWORK_INTERFACE_GETPRIV, NULL, NULL, NULL);
   2392  1.124      elad 	if (error)
   2393  1.124      elad 		return (EPERM);
   2394  1.110    rpaulo 
   2395  1.110    rpaulo 	len = (oldp != NULL) ? *oldlenp : 0;
   2396  1.110    rpaulo 	sp = oldp;
   2397  1.110    rpaulo 	elem_size = name[0];
   2398  1.110    rpaulo 	elem_count = name[1];
   2399  1.110    rpaulo 	out_size = MIN(sizeof(dpe), elem_size);
   2400  1.110    rpaulo 	needed = 0;
   2401  1.110    rpaulo 
   2402  1.110    rpaulo 	if (elem_size < 1 || elem_count < 0)
   2403  1.110    rpaulo 		return (EINVAL);
   2404  1.120  christos 
   2405  1.130   xtraeme 	mutex_enter(&bpf_mtx);
   2406  1.209     ozaki 	BPF_DLIST_WRITER_FOREACH(dp) {
   2407  1.110    rpaulo 		if (len >= elem_size && elem_count > 0) {
   2408  1.110    rpaulo #define BPF_EXT(field)	dpe.bde_ ## field = dp->bd_ ## field
   2409  1.110    rpaulo 			BPF_EXT(bufsize);
   2410  1.110    rpaulo 			BPF_EXT(promisc);
   2411  1.110    rpaulo 			BPF_EXT(state);
   2412  1.110    rpaulo 			BPF_EXT(immediate);
   2413  1.110    rpaulo 			BPF_EXT(hdrcmplt);
   2414  1.226   msaitoh 			BPF_EXT(direction);
   2415  1.110    rpaulo 			BPF_EXT(pid);
   2416  1.110    rpaulo 			BPF_EXT(rcount);
   2417  1.110    rpaulo 			BPF_EXT(dcount);
   2418  1.110    rpaulo 			BPF_EXT(ccount);
   2419  1.110    rpaulo #undef BPF_EXT
   2420  1.213     ozaki 			mutex_enter(dp->bd_mtx);
   2421  1.110    rpaulo 			if (dp->bd_bif)
   2422  1.110    rpaulo 				(void)strlcpy(dpe.bde_ifname,
   2423  1.110    rpaulo 				    dp->bd_bif->bif_ifp->if_xname,
   2424  1.110    rpaulo 				    IFNAMSIZ - 1);
   2425  1.110    rpaulo 			else
   2426  1.110    rpaulo 				dpe.bde_ifname[0] = '\0';
   2427  1.237       roy 			dpe.bde_locked = dp->bd_locked;
   2428  1.213     ozaki 			mutex_exit(dp->bd_mtx);
   2429  1.120  christos 
   2430  1.110    rpaulo 			error = copyout(&dpe, sp, out_size);
   2431  1.110    rpaulo 			if (error)
   2432  1.110    rpaulo 				break;
   2433  1.110    rpaulo 			sp += elem_size;
   2434  1.110    rpaulo 			len -= elem_size;
   2435  1.110    rpaulo 		}
   2436  1.143       mrg 		needed += elem_size;
   2437  1.143       mrg 		if (elem_count > 0 && elem_count != INT_MAX)
   2438  1.143       mrg 			elem_count--;
   2439  1.110    rpaulo 	}
   2440  1.130   xtraeme 	mutex_exit(&bpf_mtx);
   2441  1.110    rpaulo 
   2442  1.110    rpaulo 	*oldlenp = needed;
   2443  1.120  christos 
   2444  1.110    rpaulo 	return (error);
   2445  1.110    rpaulo }
   2446  1.110    rpaulo 
   2447  1.210     ozaki static void
   2448  1.210     ozaki bpf_stats(void *p, void *arg, struct cpu_info *ci __unused)
   2449  1.210     ozaki {
   2450  1.210     ozaki 	struct bpf_stat *const stats = p;
   2451  1.210     ozaki 	struct bpf_stat *sum = arg;
   2452  1.210     ozaki 
   2453  1.235   thorpej 	int s = splnet();
   2454  1.235   thorpej 
   2455  1.210     ozaki 	sum->bs_recv += stats->bs_recv;
   2456  1.210     ozaki 	sum->bs_drop += stats->bs_drop;
   2457  1.210     ozaki 	sum->bs_capt += stats->bs_capt;
   2458  1.235   thorpej 
   2459  1.235   thorpej 	splx(s);
   2460  1.210     ozaki }
   2461  1.210     ozaki 
   2462  1.210     ozaki static int
   2463  1.210     ozaki bpf_sysctl_gstats_handler(SYSCTLFN_ARGS)
   2464  1.210     ozaki {
   2465  1.210     ozaki 	struct sysctlnode node;
   2466  1.210     ozaki 	int error;
   2467  1.210     ozaki 	struct bpf_stat sum;
   2468  1.210     ozaki 
   2469  1.210     ozaki 	memset(&sum, 0, sizeof(sum));
   2470  1.210     ozaki 	node = *rnode;
   2471  1.210     ozaki 
   2472  1.235   thorpej 	percpu_foreach_xcall(bpf_gstats_percpu, XC_HIGHPRI_IPL(IPL_SOFTNET),
   2473  1.235   thorpej 	    bpf_stats, &sum);
   2474  1.210     ozaki 
   2475  1.210     ozaki 	node.sysctl_data = &sum;
   2476  1.210     ozaki 	node.sysctl_size = sizeof(sum);
   2477  1.210     ozaki 	error = sysctl_lookup(SYSCTLFN_CALL(&node));
   2478  1.210     ozaki 	if (error != 0 || newp == NULL)
   2479  1.210     ozaki 		return error;
   2480  1.210     ozaki 
   2481  1.210     ozaki 	return 0;
   2482  1.210     ozaki }
   2483  1.210     ozaki 
   2484  1.236  pgoyette SYSCTL_SETUP(sysctl_net_bpf_setup, "bpf sysctls")
   2485   1.89  jonathan {
   2486  1.108    atatat 	const struct sysctlnode *node;
   2487   1.89  jonathan 
   2488   1.89  jonathan 	node = NULL;
   2489  1.236  pgoyette 	sysctl_createv(clog, 0, NULL, &node,
   2490   1.90    atatat 		       CTLFLAG_PERMANENT,
   2491   1.98    atatat 		       CTLTYPE_NODE, "bpf",
   2492   1.98    atatat 		       SYSCTL_DESCR("BPF options"),
   2493   1.89  jonathan 		       NULL, 0, NULL, 0,
   2494   1.89  jonathan 		       CTL_NET, CTL_CREATE, CTL_EOL);
   2495  1.110    rpaulo 	if (node != NULL) {
   2496  1.186     alnsn #if defined(MODULAR) || defined(BPFJIT)
   2497  1.236  pgoyette 		sysctl_createv(clog, 0, NULL, NULL,
   2498   1.90    atatat 			CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
   2499  1.173     alnsn 			CTLTYPE_BOOL, "jit",
   2500  1.173     alnsn 			SYSCTL_DESCR("Toggle Just-In-Time compilation"),
   2501  1.173     alnsn 			sysctl_net_bpf_jit, 0, &bpf_jit, 0,
   2502  1.173     alnsn 			CTL_NET, node->sysctl_num, CTL_CREATE, CTL_EOL);
   2503  1.186     alnsn #endif
   2504  1.236  pgoyette 		sysctl_createv(clog, 0, NULL, NULL,
   2505  1.173     alnsn 			CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
   2506   1.98    atatat 			CTLTYPE_INT, "maxbufsize",
   2507   1.98    atatat 			SYSCTL_DESCR("Maximum size for data capture buffer"),
   2508   1.89  jonathan 			sysctl_net_bpf_maxbufsize, 0, &bpf_maxbufsize, 0,
   2509   1.89  jonathan 			CTL_NET, node->sysctl_num, CTL_CREATE, CTL_EOL);
   2510  1.236  pgoyette 		sysctl_createv(clog, 0, NULL, NULL,
   2511  1.110    rpaulo 			CTLFLAG_PERMANENT,
   2512  1.110    rpaulo 			CTLTYPE_STRUCT, "stats",
   2513  1.110    rpaulo 			SYSCTL_DESCR("BPF stats"),
   2514  1.210     ozaki 			bpf_sysctl_gstats_handler, 0, NULL, 0,
   2515  1.110    rpaulo 			CTL_NET, node->sysctl_num, CTL_CREATE, CTL_EOL);
   2516  1.236  pgoyette 		sysctl_createv(clog, 0, NULL, NULL,
   2517  1.110    rpaulo 			CTLFLAG_PERMANENT,
   2518  1.110    rpaulo 			CTLTYPE_STRUCT, "peers",
   2519  1.110    rpaulo 			SYSCTL_DESCR("BPF peers"),
   2520  1.110    rpaulo 			sysctl_net_bpf_peers, 0, NULL, 0,
   2521  1.110    rpaulo 			CTL_NET, node->sysctl_num, CTL_CREATE, CTL_EOL);
   2522  1.110    rpaulo 	}
   2523  1.120  christos 
   2524   1.89  jonathan }
   2525  1.153     pooka 
   2526  1.153     pooka struct bpf_ops bpf_ops_kernel = {
   2527  1.157     joerg 	.bpf_attach =		_bpfattach,
   2528  1.157     joerg 	.bpf_detach =		_bpfdetach,
   2529  1.157     joerg 	.bpf_change_type =	_bpf_change_type,
   2530  1.157     joerg 
   2531  1.157     joerg 	.bpf_mtap =		_bpf_mtap,
   2532  1.157     joerg 	.bpf_mtap2 =		_bpf_mtap2,
   2533  1.157     joerg 	.bpf_mtap_af =		_bpf_mtap_af,
   2534  1.157     joerg 	.bpf_mtap_sl_in =	_bpf_mtap_sl_in,
   2535  1.157     joerg 	.bpf_mtap_sl_out =	_bpf_mtap_sl_out,
   2536  1.206     ozaki 
   2537  1.206     ozaki 	.bpf_mtap_softint =		_bpf_mtap_softint,
   2538  1.206     ozaki 	.bpf_mtap_softint_init =	_bpf_mtap_softint_init,
   2539  1.153     pooka };
   2540  1.153     pooka 
   2541  1.196  pgoyette MODULE(MODULE_CLASS_DRIVER, bpf, "bpf_filter");
   2542  1.154     pooka 
   2543  1.154     pooka static int
   2544  1.154     pooka bpf_modcmd(modcmd_t cmd, void *arg)
   2545  1.153     pooka {
   2546  1.200  pgoyette #ifdef _MODULE
   2547  1.154     pooka 	devmajor_t bmajor, cmajor;
   2548  1.200  pgoyette #endif
   2549  1.202  pgoyette 	int error = 0;
   2550  1.154     pooka 
   2551  1.154     pooka 	switch (cmd) {
   2552  1.154     pooka 	case MODULE_CMD_INIT:
   2553  1.203  pgoyette 		bpf_init();
   2554  1.200  pgoyette #ifdef _MODULE
   2555  1.201  pgoyette 		bmajor = cmajor = NODEVMAJOR;
   2556  1.154     pooka 		error = devsw_attach("bpf", NULL, &bmajor,
   2557  1.154     pooka 		    &bpf_cdevsw, &cmajor);
   2558  1.154     pooka 		if (error)
   2559  1.154     pooka 			break;
   2560  1.203  pgoyette #endif
   2561  1.154     pooka 
   2562  1.154     pooka 		bpf_ops_handover_enter(&bpf_ops_kernel);
   2563  1.154     pooka 		atomic_swap_ptr(&bpf_ops, &bpf_ops_kernel);
   2564  1.154     pooka 		bpf_ops_handover_exit();
   2565  1.154     pooka 		break;
   2566  1.154     pooka 
   2567  1.154     pooka 	case MODULE_CMD_FINI:
   2568  1.154     pooka 		/*
   2569  1.158     pooka 		 * While there is no reference counting for bpf callers,
   2570  1.158     pooka 		 * unload could at least in theory be done similarly to
   2571  1.158     pooka 		 * system call disestablishment.  This should even be
   2572  1.158     pooka 		 * a little simpler:
   2573  1.158     pooka 		 *
   2574  1.158     pooka 		 * 1) replace op vector with stubs
   2575  1.158     pooka 		 * 2) post update to all cpus with xc
   2576  1.158     pooka 		 * 3) check that nobody is in bpf anymore
   2577  1.158     pooka 		 *    (it's doubtful we'd want something like l_sysent,
   2578  1.158     pooka 		 *     but we could do something like *signed* percpu
   2579  1.158     pooka 		 *     counters.  if the sum is 0, we're good).
   2580  1.158     pooka 		 * 4) if fail, unroll changes
   2581  1.158     pooka 		 *
   2582  1.158     pooka 		 * NOTE: change won't be atomic to the outside.  some
   2583  1.158     pooka 		 * packets may be not captured even if unload is
   2584  1.158     pooka 		 * not succesful.  I think packet capture not working
   2585  1.158     pooka 		 * is a perfectly logical consequence of trying to
   2586  1.158     pooka 		 * disable packet capture.
   2587  1.154     pooka 		 */
   2588  1.154     pooka 		error = EOPNOTSUPP;
   2589  1.154     pooka 		break;
   2590  1.153     pooka 
   2591  1.154     pooka 	default:
   2592  1.154     pooka 		error = ENOTTY;
   2593  1.154     pooka 		break;
   2594  1.154     pooka 	}
   2595  1.154     pooka 
   2596  1.154     pooka 	return error;
   2597  1.153     pooka }
   2598