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rfcomm_socket.c revision 1.26
      1  1.26       rtr /*	$NetBSD: rfcomm_socket.c,v 1.26 2014/07/24 15:12:03 rtr Exp $	*/
      2   1.1   gdamore 
      3   1.1   gdamore /*-
      4   1.1   gdamore  * Copyright (c) 2006 Itronix Inc.
      5   1.1   gdamore  * All rights reserved.
      6   1.1   gdamore  *
      7   1.1   gdamore  * Written by Iain Hibbert for Itronix Inc.
      8   1.1   gdamore  *
      9   1.1   gdamore  * Redistribution and use in source and binary forms, with or without
     10   1.1   gdamore  * modification, are permitted provided that the following conditions
     11   1.1   gdamore  * are met:
     12   1.1   gdamore  * 1. Redistributions of source code must retain the above copyright
     13   1.1   gdamore  *    notice, this list of conditions and the following disclaimer.
     14   1.1   gdamore  * 2. Redistributions in binary form must reproduce the above copyright
     15   1.1   gdamore  *    notice, this list of conditions and the following disclaimer in the
     16   1.1   gdamore  *    documentation and/or other materials provided with the distribution.
     17   1.1   gdamore  * 3. The name of Itronix Inc. may not be used to endorse
     18   1.1   gdamore  *    or promote products derived from this software without specific
     19   1.1   gdamore  *    prior written permission.
     20   1.1   gdamore  *
     21   1.1   gdamore  * THIS SOFTWARE IS PROVIDED BY ITRONIX INC. ``AS IS'' AND
     22   1.1   gdamore  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     23   1.1   gdamore  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     24   1.1   gdamore  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL ITRONIX INC. BE LIABLE FOR ANY
     25   1.1   gdamore  * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
     26   1.1   gdamore  * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
     27   1.1   gdamore  * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
     28   1.1   gdamore  * ON ANY THEORY OF LIABILITY, WHETHER IN
     29   1.1   gdamore  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     30   1.1   gdamore  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     31   1.1   gdamore  * POSSIBILITY OF SUCH DAMAGE.
     32   1.1   gdamore  */
     33   1.1   gdamore 
     34   1.1   gdamore #include <sys/cdefs.h>
     35  1.26       rtr __KERNEL_RCSID(0, "$NetBSD: rfcomm_socket.c,v 1.26 2014/07/24 15:12:03 rtr Exp $");
     36   1.6    plunky 
     37   1.6    plunky /* load symbolic names */
     38   1.6    plunky #ifdef BLUETOOTH_DEBUG
     39   1.6    plunky #define PRUREQUESTS
     40   1.6    plunky #define PRCOREQUESTS
     41   1.6    plunky #endif
     42   1.1   gdamore 
     43   1.1   gdamore #include <sys/param.h>
     44   1.1   gdamore #include <sys/domain.h>
     45   1.1   gdamore #include <sys/kernel.h>
     46   1.1   gdamore #include <sys/mbuf.h>
     47   1.1   gdamore #include <sys/proc.h>
     48   1.1   gdamore #include <sys/protosw.h>
     49   1.1   gdamore #include <sys/socket.h>
     50   1.1   gdamore #include <sys/socketvar.h>
     51   1.1   gdamore #include <sys/systm.h>
     52   1.1   gdamore 
     53   1.1   gdamore #include <netbt/bluetooth.h>
     54   1.1   gdamore #include <netbt/rfcomm.h>
     55   1.1   gdamore 
     56   1.1   gdamore /****************************************************************************
     57   1.1   gdamore  *
     58   1.1   gdamore  *	RFCOMM SOCK_STREAM Sockets - serial line emulation
     59   1.1   gdamore  *
     60   1.1   gdamore  */
     61   1.1   gdamore 
     62   1.1   gdamore static void rfcomm_connecting(void *);
     63   1.1   gdamore static void rfcomm_connected(void *);
     64   1.1   gdamore static void rfcomm_disconnected(void *, int);
     65   1.1   gdamore static void *rfcomm_newconn(void *, struct sockaddr_bt *, struct sockaddr_bt *);
     66   1.1   gdamore static void rfcomm_complete(void *, int);
     67   1.7    plunky static void rfcomm_linkmode(void *, int);
     68   1.1   gdamore static void rfcomm_input(void *, struct mbuf *);
     69   1.1   gdamore 
     70   1.1   gdamore static const struct btproto rfcomm_proto = {
     71   1.1   gdamore 	rfcomm_connecting,
     72   1.1   gdamore 	rfcomm_connected,
     73   1.1   gdamore 	rfcomm_disconnected,
     74   1.1   gdamore 	rfcomm_newconn,
     75   1.1   gdamore 	rfcomm_complete,
     76   1.7    plunky 	rfcomm_linkmode,
     77   1.1   gdamore 	rfcomm_input,
     78   1.1   gdamore };
     79   1.1   gdamore 
     80   1.1   gdamore /* sysctl variables */
     81   1.1   gdamore int rfcomm_sendspace = 4096;
     82   1.1   gdamore int rfcomm_recvspace = 4096;
     83   1.1   gdamore 
     84  1.13     rmind static int
     85  1.15     rmind rfcomm_attach(struct socket *so, int proto)
     86  1.13     rmind {
     87  1.13     rmind 	int error;
     88  1.13     rmind 
     89  1.13     rmind 	KASSERT(so->so_pcb == NULL);
     90  1.13     rmind 
     91  1.13     rmind 	if (so->so_lock == NULL) {
     92  1.13     rmind 		mutex_obj_hold(bt_lock);
     93  1.13     rmind 		so->so_lock = bt_lock;
     94  1.13     rmind 		solock(so);
     95  1.13     rmind 	}
     96  1.13     rmind 	KASSERT(solocked(so));
     97  1.13     rmind 
     98  1.13     rmind 	/*
     99  1.13     rmind 	 * Since we have nothing to add, we attach the DLC
    100  1.13     rmind 	 * structure directly to our PCB pointer.
    101  1.13     rmind 	 */
    102  1.13     rmind 	error = soreserve(so, rfcomm_sendspace, rfcomm_recvspace);
    103  1.13     rmind 	if (error)
    104  1.13     rmind 		return error;
    105  1.13     rmind 
    106  1.15     rmind 	error = rfcomm_attach_pcb((struct rfcomm_dlc **)&so->so_pcb,
    107  1.13     rmind 				&rfcomm_proto, so);
    108  1.13     rmind 	if (error)
    109  1.13     rmind 		return error;
    110  1.13     rmind 
    111  1.13     rmind 	error = rfcomm_rcvd(so->so_pcb, sbspace(&so->so_rcv));
    112  1.13     rmind 	if (error) {
    113  1.15     rmind 		rfcomm_detach_pcb((struct rfcomm_dlc **)&so->so_pcb);
    114  1.13     rmind 		return error;
    115  1.13     rmind 	}
    116  1.13     rmind 	return 0;
    117  1.13     rmind }
    118  1.13     rmind 
    119  1.13     rmind static void
    120  1.15     rmind rfcomm_detach(struct socket *so)
    121  1.13     rmind {
    122  1.14    martin 	KASSERT(so->so_pcb != NULL);
    123  1.15     rmind 	rfcomm_detach_pcb((struct rfcomm_dlc **)&so->so_pcb);
    124  1.13     rmind 	KASSERT(so->so_pcb == NULL);
    125  1.13     rmind }
    126  1.13     rmind 
    127  1.17       rtr static int
    128  1.24       rtr rfcomm_accept(struct socket *so, struct mbuf *nam)
    129  1.24       rtr {
    130  1.24       rtr 	struct rfcomm_dlc *pcb = so->so_pcb;
    131  1.24       rtr 	struct sockaddr_bt *sa;
    132  1.24       rtr 
    133  1.24       rtr 	KASSERT(solocked(so));
    134  1.24       rtr 	KASSERT(nam != NULL);
    135  1.24       rtr 
    136  1.24       rtr 	if (pcb == NULL)
    137  1.24       rtr 		return EINVAL;
    138  1.24       rtr 
    139  1.24       rtr 	sa = mtod(nam, struct sockaddr_bt *);
    140  1.24       rtr 	nam->m_len = sizeof(struct sockaddr_bt);
    141  1.24       rtr 	return rfcomm_peeraddr_pcb(pcb, sa);
    142  1.24       rtr }
    143  1.24       rtr 
    144  1.24       rtr static int
    145  1.26       rtr rfcomm_bind(struct socket *so, struct mbuf *nam)
    146  1.26       rtr {
    147  1.26       rtr 	struct rfcomm_dlc *pcb = so->so_pcb;
    148  1.26       rtr 	struct sockaddr_bt *sa;
    149  1.26       rtr 
    150  1.26       rtr 	KASSERT(solocked(so));
    151  1.26       rtr 	KASSERT(nam != NULL);
    152  1.26       rtr 
    153  1.26       rtr 	if (pcb == NULL)
    154  1.26       rtr 		return EINVAL;
    155  1.26       rtr 
    156  1.26       rtr 	sa = mtod(nam, struct sockaddr_bt *);
    157  1.26       rtr 	if (sa->bt_len != sizeof(struct sockaddr_bt))
    158  1.26       rtr 		return EINVAL;
    159  1.26       rtr 
    160  1.26       rtr 	if (sa->bt_family != AF_BLUETOOTH)
    161  1.26       rtr 		return EAFNOSUPPORT;
    162  1.26       rtr 
    163  1.26       rtr 	return rfcomm_bind_pcb(pcb, sa);
    164  1.26       rtr }
    165  1.26       rtr 
    166  1.26       rtr static int
    167  1.26       rtr rfcomm_listen(struct socket *so)
    168  1.26       rtr {
    169  1.26       rtr 	struct rfcomm_dlc *pcb = so->so_pcb;
    170  1.26       rtr 
    171  1.26       rtr 	KASSERT(solocked(so));
    172  1.26       rtr 
    173  1.26       rtr 	if (pcb == NULL)
    174  1.26       rtr 		return EINVAL;
    175  1.26       rtr 
    176  1.26       rtr 	return rfcomm_listen_pcb(pcb);
    177  1.26       rtr }
    178  1.26       rtr 
    179  1.26       rtr static int
    180  1.22       rtr rfcomm_ioctl(struct socket *so, u_long cmd, void *nam, struct ifnet *ifp)
    181  1.17       rtr {
    182  1.17       rtr 	return EPASSTHROUGH;
    183  1.17       rtr }
    184  1.17       rtr 
    185  1.19       rtr static int
    186  1.19       rtr rfcomm_stat(struct socket *so, struct stat *ub)
    187  1.19       rtr {
    188  1.22       rtr 	KASSERT(solocked(so));
    189  1.22       rtr 
    190  1.21       rtr 	return 0;
    191  1.19       rtr }
    192  1.19       rtr 
    193  1.23       rtr static int
    194  1.23       rtr rfcomm_peeraddr(struct socket *so, struct mbuf *nam)
    195  1.23       rtr {
    196  1.23       rtr 	struct rfcomm_dlc *pcb = so->so_pcb;
    197  1.23       rtr 	struct sockaddr_bt *sa;
    198  1.23       rtr 
    199  1.23       rtr 	KASSERT(solocked(so));
    200  1.23       rtr 	KASSERT(pcb != NULL);
    201  1.23       rtr 	KASSERT(nam != NULL);
    202  1.23       rtr 
    203  1.23       rtr 	sa = mtod(nam, struct sockaddr_bt *);
    204  1.23       rtr 	nam->m_len = sizeof(struct sockaddr_bt);
    205  1.23       rtr 	return rfcomm_peeraddr_pcb(pcb, sa);
    206  1.23       rtr }
    207  1.23       rtr 
    208  1.23       rtr static int
    209  1.23       rtr rfcomm_sockaddr(struct socket *so, struct mbuf *nam)
    210  1.23       rtr {
    211  1.23       rtr 	struct rfcomm_dlc *pcb = so->so_pcb;
    212  1.23       rtr 	struct sockaddr_bt *sa;
    213  1.23       rtr 
    214  1.23       rtr 	KASSERT(solocked(so));
    215  1.23       rtr 	KASSERT(pcb != NULL);
    216  1.23       rtr 	KASSERT(nam != NULL);
    217  1.23       rtr 
    218  1.23       rtr 	sa = mtod(nam, struct sockaddr_bt *);
    219  1.23       rtr 	nam->m_len = sizeof(struct sockaddr_bt);
    220  1.23       rtr 	return rfcomm_sockaddr_pcb(pcb, sa);
    221  1.23       rtr }
    222  1.23       rtr 
    223  1.25       rtr static int
    224  1.25       rtr rfcomm_recvoob(struct socket *so, struct mbuf *m, int flags)
    225  1.25       rtr {
    226  1.25       rtr 	KASSERT(solocked(so));
    227  1.25       rtr 
    228  1.25       rtr 	return EOPNOTSUPP;
    229  1.25       rtr }
    230  1.25       rtr 
    231  1.25       rtr static int
    232  1.25       rtr rfcomm_sendoob(struct socket *so, struct mbuf *m, struct mbuf *control)
    233  1.25       rtr {
    234  1.25       rtr 	KASSERT(solocked(so));
    235  1.25       rtr 
    236  1.25       rtr 	if (m)
    237  1.25       rtr 		m_freem(m);
    238  1.25       rtr 	if (control)
    239  1.25       rtr 		m_freem(control);
    240  1.25       rtr 
    241  1.25       rtr 	return EOPNOTSUPP;
    242  1.25       rtr }
    243  1.25       rtr 
    244   1.1   gdamore /*
    245   1.1   gdamore  * User Request.
    246   1.1   gdamore  * up is socket
    247  1.17       rtr  * m is optional mbuf chain containing message
    248   1.1   gdamore  * nam is either
    249   1.1   gdamore  *	optional mbuf chain containing an address
    250   1.1   gdamore  *	message flags (PRU_RCVD)
    251   1.1   gdamore  * ctl is either
    252   1.1   gdamore  *	optional mbuf chain containing socket options
    253  1.17       rtr  *	optional interface pointer PRU_PURGEIF
    254   1.1   gdamore  * l is pointer to process requesting action (if any)
    255   1.1   gdamore  *
    256   1.1   gdamore  * we are responsible for disposing of m and ctl if
    257   1.1   gdamore  * they are mbuf chains
    258   1.1   gdamore  */
    259  1.12     rmind static int
    260   1.1   gdamore rfcomm_usrreq(struct socket *up, int req, struct mbuf *m,
    261   1.3  christos 		struct mbuf *nam, struct mbuf *ctl, struct lwp *l)
    262   1.1   gdamore {
    263   1.1   gdamore 	struct rfcomm_dlc *pcb = up->so_pcb;
    264   1.1   gdamore 	struct sockaddr_bt *sa;
    265   1.1   gdamore 	struct mbuf *m0;
    266   1.1   gdamore 	int err = 0;
    267   1.1   gdamore 
    268   1.1   gdamore 	DPRINTFN(2, "%s\n", prurequests[req]);
    269  1.13     rmind 	KASSERT(req != PRU_ATTACH);
    270  1.13     rmind 	KASSERT(req != PRU_DETACH);
    271  1.24       rtr 	KASSERT(req != PRU_ACCEPT);
    272  1.26       rtr 	KASSERT(req != PRU_BIND);
    273  1.26       rtr 	KASSERT(req != PRU_LISTEN);
    274  1.17       rtr 	KASSERT(req != PRU_CONTROL);
    275  1.19       rtr 	KASSERT(req != PRU_SENSE);
    276  1.23       rtr 	KASSERT(req != PRU_PEERADDR);
    277  1.23       rtr 	KASSERT(req != PRU_SOCKADDR);
    278  1.25       rtr 	KASSERT(req != PRU_RCVOOB);
    279  1.25       rtr 	KASSERT(req != PRU_SENDOOB);
    280   1.1   gdamore 
    281   1.1   gdamore 	switch (req) {
    282   1.1   gdamore 	case PRU_PURGEIF:
    283   1.1   gdamore 		return EOPNOTSUPP;
    284   1.1   gdamore 	}
    285   1.1   gdamore 	if (pcb == NULL) {
    286   1.1   gdamore 		err = EINVAL;
    287   1.1   gdamore 		goto release;
    288   1.1   gdamore 	}
    289   1.1   gdamore 
    290   1.1   gdamore 	switch(req) {
    291   1.1   gdamore 	case PRU_DISCONNECT:
    292   1.1   gdamore 		soisdisconnecting(up);
    293   1.1   gdamore 		return rfcomm_disconnect(pcb, up->so_linger);
    294   1.1   gdamore 
    295   1.1   gdamore 	case PRU_ABORT:
    296   1.1   gdamore 		rfcomm_disconnect(pcb, 0);
    297   1.1   gdamore 		soisdisconnected(up);
    298  1.15     rmind 		rfcomm_detach(up);
    299  1.13     rmind 		return 0;
    300   1.1   gdamore 
    301   1.1   gdamore 	case PRU_CONNECT:
    302   1.5    plunky 		KASSERT(nam != NULL);
    303   1.1   gdamore 		sa = mtod(nam, struct sockaddr_bt *);
    304   1.1   gdamore 
    305   1.1   gdamore 		if (sa->bt_len != sizeof(struct sockaddr_bt))
    306   1.1   gdamore 			return EINVAL;
    307   1.1   gdamore 
    308   1.1   gdamore 		if (sa->bt_family != AF_BLUETOOTH)
    309   1.1   gdamore 			return EAFNOSUPPORT;
    310   1.1   gdamore 
    311   1.1   gdamore 		soisconnecting(up);
    312   1.1   gdamore 		return rfcomm_connect(pcb, sa);
    313   1.1   gdamore 
    314   1.1   gdamore 	case PRU_SHUTDOWN:
    315   1.1   gdamore 		socantsendmore(up);
    316   1.1   gdamore 		break;
    317   1.1   gdamore 
    318   1.1   gdamore 	case PRU_SEND:
    319   1.5    plunky 		KASSERT(m != NULL);
    320   1.1   gdamore 
    321   1.1   gdamore 		if (ctl)	/* no use for that */
    322   1.1   gdamore 			m_freem(ctl);
    323   1.1   gdamore 
    324   1.1   gdamore 		m0 = m_copypacket(m, M_DONTWAIT);
    325   1.1   gdamore 		if (m0 == NULL)
    326   1.1   gdamore 			return ENOMEM;
    327   1.1   gdamore 
    328   1.1   gdamore 		sbappendstream(&up->so_snd, m);
    329   1.1   gdamore 
    330   1.1   gdamore 		return rfcomm_send(pcb, m0);
    331   1.1   gdamore 
    332   1.1   gdamore 	case PRU_RCVD:
    333   1.1   gdamore 		return rfcomm_rcvd(pcb, sbspace(&up->so_rcv));
    334   1.1   gdamore 
    335   1.1   gdamore 	case PRU_CONNECT2:
    336   1.1   gdamore 	case PRU_FASTTIMO:
    337   1.1   gdamore 	case PRU_SLOWTIMO:
    338   1.1   gdamore 	case PRU_PROTORCV:
    339   1.1   gdamore 	case PRU_PROTOSEND:
    340   1.1   gdamore 		err = EOPNOTSUPP;
    341   1.1   gdamore 		break;
    342   1.1   gdamore 
    343   1.1   gdamore 	default:
    344   1.1   gdamore 		UNKNOWN(req);
    345   1.1   gdamore 		err = EOPNOTSUPP;
    346   1.1   gdamore 		break;
    347   1.1   gdamore 	}
    348   1.1   gdamore 
    349   1.1   gdamore release:
    350   1.1   gdamore 	if (m) m_freem(m);
    351   1.1   gdamore 	if (ctl) m_freem(ctl);
    352   1.1   gdamore 	return err;
    353   1.1   gdamore }
    354   1.1   gdamore 
    355   1.1   gdamore /*
    356  1.10    plunky  * rfcomm_ctloutput(req, socket, sockopt)
    357   1.1   gdamore  *
    358   1.1   gdamore  */
    359   1.1   gdamore int
    360  1.10    plunky rfcomm_ctloutput(int req, struct socket *so, struct sockopt *sopt)
    361   1.1   gdamore {
    362   1.1   gdamore 	struct rfcomm_dlc *pcb = so->so_pcb;
    363   1.1   gdamore 	int err = 0;
    364   1.1   gdamore 
    365   1.1   gdamore 	DPRINTFN(2, "%s\n", prcorequests[req]);
    366   1.1   gdamore 
    367   1.4    plunky 	if (pcb == NULL)
    368   1.4    plunky 		return EINVAL;
    369   1.4    plunky 
    370  1.10    plunky 	if (sopt->sopt_level != BTPROTO_RFCOMM)
    371   1.4    plunky 		return ENOPROTOOPT;
    372   1.1   gdamore 
    373   1.1   gdamore 	switch(req) {
    374   1.1   gdamore 	case PRCO_GETOPT:
    375  1.10    plunky 		err = rfcomm_getopt(pcb, sopt);
    376   1.1   gdamore 		break;
    377   1.1   gdamore 
    378   1.1   gdamore 	case PRCO_SETOPT:
    379  1.10    plunky 		err = rfcomm_setopt(pcb, sopt);
    380   1.1   gdamore 		break;
    381   1.1   gdamore 
    382   1.1   gdamore 	default:
    383   1.4    plunky 		err = ENOPROTOOPT;
    384   1.1   gdamore 		break;
    385   1.1   gdamore 	}
    386   1.1   gdamore 
    387   1.1   gdamore 	return err;
    388   1.1   gdamore }
    389   1.1   gdamore 
    390   1.1   gdamore /**********************************************************************
    391   1.1   gdamore  *
    392   1.1   gdamore  * RFCOMM callbacks
    393   1.1   gdamore  */
    394   1.1   gdamore 
    395   1.1   gdamore static void
    396   1.3  christos rfcomm_connecting(void *arg)
    397   1.1   gdamore {
    398   1.1   gdamore 	/* struct socket *so = arg; */
    399   1.1   gdamore 
    400   1.5    plunky 	KASSERT(arg != NULL);
    401   1.1   gdamore 	DPRINTF("Connecting\n");
    402   1.1   gdamore }
    403   1.1   gdamore 
    404   1.1   gdamore static void
    405   1.1   gdamore rfcomm_connected(void *arg)
    406   1.1   gdamore {
    407   1.1   gdamore 	struct socket *so = arg;
    408   1.1   gdamore 
    409   1.5    plunky 	KASSERT(so != NULL);
    410   1.1   gdamore 	DPRINTF("Connected\n");
    411   1.1   gdamore 	soisconnected(so);
    412   1.1   gdamore }
    413   1.1   gdamore 
    414   1.1   gdamore static void
    415   1.1   gdamore rfcomm_disconnected(void *arg, int err)
    416   1.1   gdamore {
    417   1.1   gdamore 	struct socket *so = arg;
    418   1.1   gdamore 
    419   1.5    plunky 	KASSERT(so != NULL);
    420   1.1   gdamore 	DPRINTF("Disconnected\n");
    421   1.1   gdamore 
    422   1.1   gdamore 	so->so_error = err;
    423   1.1   gdamore 	soisdisconnected(so);
    424   1.1   gdamore }
    425   1.1   gdamore 
    426   1.1   gdamore static void *
    427   1.3  christos rfcomm_newconn(void *arg, struct sockaddr_bt *laddr,
    428   1.3  christos     struct sockaddr_bt *raddr)
    429   1.1   gdamore {
    430   1.1   gdamore 	struct socket *so = arg;
    431   1.1   gdamore 
    432   1.1   gdamore 	DPRINTF("New Connection\n");
    433  1.11     rmind 	so = sonewconn(so, false);
    434   1.1   gdamore 	if (so == NULL)
    435   1.1   gdamore 		return NULL;
    436   1.1   gdamore 
    437   1.1   gdamore 	soisconnecting(so);
    438   1.1   gdamore 
    439   1.1   gdamore 	return so->so_pcb;
    440   1.1   gdamore }
    441   1.1   gdamore 
    442   1.1   gdamore /*
    443   1.1   gdamore  * rfcomm_complete(rfcomm_dlc, length)
    444   1.1   gdamore  *
    445   1.1   gdamore  * length bytes are sent and may be removed from socket buffer
    446   1.1   gdamore  */
    447   1.1   gdamore static void
    448   1.1   gdamore rfcomm_complete(void *arg, int length)
    449   1.1   gdamore {
    450   1.1   gdamore 	struct socket *so = arg;
    451   1.1   gdamore 
    452   1.1   gdamore 	sbdrop(&so->so_snd, length);
    453   1.1   gdamore 	sowwakeup(so);
    454   1.1   gdamore }
    455   1.1   gdamore 
    456   1.1   gdamore /*
    457   1.7    plunky  * rfcomm_linkmode(rfcomm_dlc, new)
    458   1.7    plunky  *
    459   1.7    plunky  * link mode change notification.
    460   1.7    plunky  */
    461   1.7    plunky static void
    462   1.7    plunky rfcomm_linkmode(void *arg, int new)
    463   1.7    plunky {
    464   1.7    plunky 	struct socket *so = arg;
    465  1.10    plunky 	struct sockopt sopt;
    466   1.7    plunky 	int mode;
    467   1.7    plunky 
    468   1.7    plunky 	DPRINTF("auth %s, encrypt %s, secure %s\n",
    469   1.7    plunky 		(new & RFCOMM_LM_AUTH ? "on" : "off"),
    470   1.7    plunky 		(new & RFCOMM_LM_ENCRYPT ? "on" : "off"),
    471   1.7    plunky 		(new & RFCOMM_LM_SECURE ? "on" : "off"));
    472   1.7    plunky 
    473  1.10    plunky 	sockopt_init(&sopt, BTPROTO_RFCOMM, SO_RFCOMM_LM, 0);
    474  1.10    plunky 	(void)rfcomm_getopt(so->so_pcb, &sopt);
    475  1.10    plunky 	(void)sockopt_getint(&sopt, &mode);
    476  1.10    plunky 	sockopt_destroy(&sopt);
    477  1.10    plunky 
    478   1.7    plunky 	if (((mode & RFCOMM_LM_AUTH) && !(new & RFCOMM_LM_AUTH))
    479   1.7    plunky 	    || ((mode & RFCOMM_LM_ENCRYPT) && !(new & RFCOMM_LM_ENCRYPT))
    480   1.7    plunky 	    || ((mode & RFCOMM_LM_SECURE) && !(new & RFCOMM_LM_SECURE)))
    481   1.7    plunky 		rfcomm_disconnect(so->so_pcb, 0);
    482   1.7    plunky }
    483   1.7    plunky 
    484   1.7    plunky /*
    485   1.1   gdamore  * rfcomm_input(rfcomm_dlc, mbuf)
    486   1.1   gdamore  */
    487   1.1   gdamore static void
    488   1.1   gdamore rfcomm_input(void *arg, struct mbuf *m)
    489   1.1   gdamore {
    490   1.1   gdamore 	struct socket *so = arg;
    491   1.1   gdamore 
    492   1.5    plunky 	KASSERT(so != NULL);
    493   1.1   gdamore 
    494   1.1   gdamore 	if (m->m_pkthdr.len > sbspace(&so->so_rcv)) {
    495   1.1   gdamore 		printf("%s: %d bytes dropped (socket buffer full)\n",
    496   1.1   gdamore 			__func__, m->m_pkthdr.len);
    497   1.1   gdamore 		m_freem(m);
    498   1.1   gdamore 		return;
    499   1.1   gdamore 	}
    500   1.1   gdamore 
    501   1.1   gdamore 	DPRINTFN(10, "received %d bytes\n", m->m_pkthdr.len);
    502   1.1   gdamore 
    503   1.1   gdamore 	sbappendstream(&so->so_rcv, m);
    504   1.1   gdamore 	sorwakeup(so);
    505   1.1   gdamore }
    506  1.12     rmind 
    507  1.16     rmind PR_WRAP_USRREQS(rfcomm)
    508  1.12     rmind 
    509  1.16     rmind #define	rfcomm_attach		rfcomm_attach_wrapper
    510  1.16     rmind #define	rfcomm_detach		rfcomm_detach_wrapper
    511  1.24       rtr #define	rfcomm_accept		rfcomm_accept_wrapper
    512  1.26       rtr #define	rfcomm_bind		rfcomm_bind_wrapper
    513  1.26       rtr #define	rfcomm_listen		rfcomm_listen_wrapper
    514  1.17       rtr #define	rfcomm_ioctl		rfcomm_ioctl_wrapper
    515  1.19       rtr #define	rfcomm_stat		rfcomm_stat_wrapper
    516  1.23       rtr #define	rfcomm_peeraddr		rfcomm_peeraddr_wrapper
    517  1.23       rtr #define	rfcomm_sockaddr		rfcomm_sockaddr_wrapper
    518  1.25       rtr #define	rfcomm_recvoob		rfcomm_recvoob_wrapper
    519  1.25       rtr #define	rfcomm_sendoob		rfcomm_sendoob_wrapper
    520  1.12     rmind #define	rfcomm_usrreq		rfcomm_usrreq_wrapper
    521  1.12     rmind 
    522  1.12     rmind const struct pr_usrreqs rfcomm_usrreqs = {
    523  1.15     rmind 	.pr_attach	= rfcomm_attach,
    524  1.15     rmind 	.pr_detach	= rfcomm_detach,
    525  1.24       rtr 	.pr_accept	= rfcomm_accept,
    526  1.26       rtr 	.pr_bind	= rfcomm_bind,
    527  1.26       rtr 	.pr_listen	= rfcomm_listen,
    528  1.17       rtr 	.pr_ioctl	= rfcomm_ioctl,
    529  1.19       rtr 	.pr_stat	= rfcomm_stat,
    530  1.23       rtr 	.pr_peeraddr	= rfcomm_peeraddr,
    531  1.23       rtr 	.pr_sockaddr	= rfcomm_sockaddr,
    532  1.25       rtr 	.pr_recvoob	= rfcomm_recvoob,
    533  1.25       rtr 	.pr_sendoob	= rfcomm_sendoob,
    534  1.12     rmind 	.pr_generic	= rfcomm_usrreq,
    535  1.12     rmind };
    536