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sco_upper.c revision 1.1.10.1
      1  1.1.10.1     tron /*	$NetBSD: sco_upper.c,v 1.1.10.1 2006/09/07 13:52:47 tron 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  1.1.10.1     tron __KERNEL_RCSID(0, "$NetBSD: sco_upper.c,v 1.1.10.1 2006/09/07 13:52:47 tron Exp $");
     36       1.1  gdamore 
     37       1.1  gdamore #include <sys/param.h>
     38       1.1  gdamore #include <sys/kernel.h>
     39       1.1  gdamore #include <sys/mbuf.h>
     40       1.1  gdamore #include <sys/proc.h>
     41       1.1  gdamore #include <sys/systm.h>
     42       1.1  gdamore 
     43       1.1  gdamore #include <netbt/bluetooth.h>
     44       1.1  gdamore #include <netbt/hci.h>
     45       1.1  gdamore #include <netbt/sco.h>
     46       1.1  gdamore 
     47       1.1  gdamore /****************************************************************************
     48       1.1  gdamore  *
     49       1.1  gdamore  *	SCO - Upper Protocol API
     50       1.1  gdamore  */
     51       1.1  gdamore 
     52       1.1  gdamore struct sco_pcb_list sco_pcb = LIST_HEAD_INITIALIZER(sco_pcb);
     53       1.1  gdamore 
     54       1.1  gdamore /*
     55       1.1  gdamore  * sco_attach(handle, proto, upper)
     56       1.1  gdamore  *
     57       1.1  gdamore  *	Attach a new instance of SCO pcb to handle
     58       1.1  gdamore  */
     59       1.1  gdamore int
     60       1.1  gdamore sco_attach(struct sco_pcb **handle,
     61       1.1  gdamore 		const struct btproto *proto, void *upper)
     62       1.1  gdamore {
     63       1.1  gdamore 	struct sco_pcb *pcb;
     64       1.1  gdamore 
     65       1.1  gdamore 	KASSERT(handle);
     66       1.1  gdamore 	KASSERT(proto);
     67       1.1  gdamore 	KASSERT(upper);
     68       1.1  gdamore 
     69       1.1  gdamore 	pcb = malloc(sizeof(struct sco_pcb), M_BLUETOOTH,
     70       1.1  gdamore 			M_NOWAIT | M_ZERO);
     71       1.1  gdamore 	if (pcb == NULL)
     72       1.1  gdamore 		return ENOMEM;
     73       1.1  gdamore 
     74       1.1  gdamore 	pcb->sp_proto = proto;
     75       1.1  gdamore 	pcb->sp_upper = upper;
     76       1.1  gdamore 
     77       1.1  gdamore 	LIST_INSERT_HEAD(&sco_pcb, pcb, sp_next);
     78       1.1  gdamore 
     79       1.1  gdamore 	*handle = pcb;
     80       1.1  gdamore 	return 0;
     81       1.1  gdamore }
     82       1.1  gdamore 
     83       1.1  gdamore /*
     84       1.1  gdamore  * sco_bind(pcb, sockaddr)
     85       1.1  gdamore  *
     86       1.1  gdamore  *	Bind SCO pcb to local address
     87       1.1  gdamore  */
     88       1.1  gdamore int
     89       1.1  gdamore sco_bind(struct sco_pcb *pcb, struct sockaddr_bt *addr)
     90       1.1  gdamore {
     91       1.1  gdamore 
     92       1.1  gdamore 	bdaddr_copy(&pcb->sp_laddr, &addr->bt_bdaddr);
     93       1.1  gdamore 	return 0;
     94       1.1  gdamore }
     95       1.1  gdamore 
     96       1.1  gdamore /*
     97       1.1  gdamore  * sco_sockaddr(pcb, sockaddr)
     98       1.1  gdamore  *
     99       1.1  gdamore  *	Copy local address of PCB to sockaddr
    100       1.1  gdamore  */
    101       1.1  gdamore int
    102       1.1  gdamore sco_sockaddr(struct sco_pcb *pcb, struct sockaddr_bt *addr)
    103       1.1  gdamore {
    104       1.1  gdamore 
    105       1.1  gdamore 	memset(addr, 0, sizeof(struct sockaddr_bt));
    106       1.1  gdamore 	addr->bt_len = sizeof(struct sockaddr_bt);
    107       1.1  gdamore 	addr->bt_family = AF_BLUETOOTH;
    108       1.1  gdamore 	bdaddr_copy(&addr->bt_bdaddr, &pcb->sp_laddr);
    109       1.1  gdamore 	return 0;
    110       1.1  gdamore }
    111       1.1  gdamore 
    112       1.1  gdamore /*
    113       1.1  gdamore  * sco_connect(pcb, sockaddr)
    114       1.1  gdamore  *
    115       1.1  gdamore  *	Initiate a SCO connection to the destination address.
    116       1.1  gdamore  */
    117       1.1  gdamore int
    118       1.1  gdamore sco_connect(struct sco_pcb *pcb, struct sockaddr_bt *dest)
    119       1.1  gdamore {
    120       1.1  gdamore 	hci_add_sco_con_cp cp;
    121       1.1  gdamore 	struct hci_unit *unit;
    122       1.1  gdamore 	struct hci_link *acl, *sco;
    123       1.1  gdamore 	int err;
    124       1.1  gdamore 
    125       1.1  gdamore 	if (pcb->sp_flags & SP_LISTENING)
    126       1.1  gdamore 		return EINVAL;
    127       1.1  gdamore 
    128       1.1  gdamore 	bdaddr_copy(&pcb->sp_raddr, &dest->bt_bdaddr);
    129       1.1  gdamore 
    130       1.1  gdamore 	if (bdaddr_any(&pcb->sp_raddr))
    131       1.1  gdamore 		return EDESTADDRREQ;
    132       1.1  gdamore 
    133       1.1  gdamore 	if (bdaddr_any(&pcb->sp_laddr)) {
    134       1.1  gdamore 		err = hci_route_lookup(&pcb->sp_laddr, &pcb->sp_raddr);
    135       1.1  gdamore 		if (err)
    136       1.1  gdamore 			return err;
    137       1.1  gdamore 	}
    138       1.1  gdamore 
    139       1.1  gdamore 	unit = hci_unit_lookup(&pcb->sp_laddr);
    140       1.1  gdamore 	if (unit == NULL)
    141       1.1  gdamore 		return ENETDOWN;
    142       1.1  gdamore 
    143       1.1  gdamore 	/*
    144       1.1  gdamore 	 * We must have an already open ACL connection before we open the SCO
    145       1.1  gdamore 	 * connection, and since SCO connections dont happen on their own we
    146       1.1  gdamore 	 * will not open one, the application wanting this should have opened
    147       1.1  gdamore 	 * it previously.
    148       1.1  gdamore 	 */
    149       1.1  gdamore 	acl = hci_link_lookup_bdaddr(unit, &pcb->sp_raddr, HCI_LINK_ACL);
    150       1.1  gdamore 	if (acl == NULL || acl->hl_state != HCI_LINK_OPEN)
    151       1.1  gdamore 		return EHOSTUNREACH;
    152       1.1  gdamore 
    153       1.1  gdamore 	sco = hci_link_alloc(unit);
    154       1.1  gdamore 	if (sco == NULL)
    155       1.1  gdamore 		return ENOMEM;
    156       1.1  gdamore 
    157       1.1  gdamore 	sco->hl_type = HCI_LINK_SCO;
    158       1.1  gdamore 	bdaddr_copy(&sco->hl_bdaddr, &pcb->sp_raddr);
    159       1.1  gdamore 
    160       1.1  gdamore 	sco->hl_link = hci_acl_open(unit, &pcb->sp_raddr);
    161       1.1  gdamore 	KASSERT(sco->hl_link == acl);
    162       1.1  gdamore 
    163       1.1  gdamore 	cp.con_handle = htole16(acl->hl_handle);
    164       1.1  gdamore 	cp.pkt_type = htole16(0x00e0);		/* HV1, HV2, HV3 */
    165       1.1  gdamore 	err = hci_send_cmd(unit, HCI_CMD_ADD_SCO_CON, &cp, sizeof(cp));
    166       1.1  gdamore 	if (err) {
    167       1.1  gdamore 		hci_link_free(sco, err);
    168       1.1  gdamore 		return err;
    169       1.1  gdamore 	}
    170       1.1  gdamore 
    171       1.1  gdamore 	sco->hl_sco = pcb;
    172       1.1  gdamore 	pcb->sp_link = sco;
    173       1.1  gdamore 
    174       1.1  gdamore 	pcb->sp_mtu = unit->hci_max_sco_size;
    175       1.1  gdamore 	return 0;
    176       1.1  gdamore }
    177       1.1  gdamore 
    178       1.1  gdamore /*
    179       1.1  gdamore  * sco_peeraddr(pcb, sockaddr)
    180       1.1  gdamore  *
    181       1.1  gdamore  *	Copy remote address of SCO pcb to sockaddr
    182       1.1  gdamore  */
    183       1.1  gdamore int
    184       1.1  gdamore sco_peeraddr(struct sco_pcb *pcb, struct sockaddr_bt *addr)
    185       1.1  gdamore {
    186       1.1  gdamore 
    187       1.1  gdamore 	memset(addr, 0, sizeof(struct sockaddr_bt));
    188       1.1  gdamore 	addr->bt_len = sizeof(struct sockaddr_bt);
    189       1.1  gdamore 	addr->bt_family = AF_BLUETOOTH;
    190       1.1  gdamore 	bdaddr_copy(&addr->bt_bdaddr, &pcb->sp_raddr);
    191       1.1  gdamore 	return 0;
    192       1.1  gdamore }
    193       1.1  gdamore 
    194       1.1  gdamore /*
    195       1.1  gdamore  * sco_disconnect(pcb, linger)
    196       1.1  gdamore  *
    197       1.1  gdamore  *	Initiate disconnection of connected SCO pcb
    198       1.1  gdamore  */
    199       1.1  gdamore int
    200       1.1  gdamore sco_disconnect(struct sco_pcb *pcb, int linger)
    201       1.1  gdamore {
    202       1.1  gdamore 	hci_discon_cp cp;
    203       1.1  gdamore 	struct hci_link *sco;
    204       1.1  gdamore 	int err;
    205       1.1  gdamore 
    206       1.1  gdamore 	sco = pcb->sp_link;
    207       1.1  gdamore 	if (sco == NULL)
    208       1.1  gdamore 		return EINVAL;
    209       1.1  gdamore 
    210       1.1  gdamore 	cp.con_handle = htole16(sco->hl_handle);
    211       1.1  gdamore 	cp.reason = 0x13;	/* "Remote User Terminated Connection" */
    212       1.1  gdamore 
    213       1.1  gdamore 	err = hci_send_cmd(sco->hl_unit, HCI_CMD_DISCONNECT, &cp, sizeof(cp));
    214       1.1  gdamore 	if (err || linger == 0) {
    215       1.1  gdamore 		sco->hl_sco = NULL;
    216       1.1  gdamore 		pcb->sp_link = NULL;
    217       1.1  gdamore 		hci_link_free(sco, err);
    218       1.1  gdamore 	}
    219       1.1  gdamore 
    220       1.1  gdamore 	return err;
    221       1.1  gdamore }
    222       1.1  gdamore 
    223       1.1  gdamore /*
    224       1.1  gdamore  * sco_detach(handle)
    225       1.1  gdamore  *
    226       1.1  gdamore  *	Detach SCO pcb from handle and clear up
    227       1.1  gdamore  */
    228       1.1  gdamore int
    229       1.1  gdamore sco_detach(struct sco_pcb **handle)
    230       1.1  gdamore {
    231       1.1  gdamore 	struct sco_pcb *pcb;
    232       1.1  gdamore 
    233       1.1  gdamore 	KASSERT(handle);
    234       1.1  gdamore 	pcb = *handle;
    235       1.1  gdamore 	*handle = NULL;
    236       1.1  gdamore 
    237       1.1  gdamore 	if (pcb == NULL)
    238       1.1  gdamore 		return EINVAL;
    239       1.1  gdamore 
    240       1.1  gdamore 	if (pcb->sp_link != NULL) {
    241       1.1  gdamore 		sco_disconnect(pcb, 0);
    242       1.1  gdamore 		pcb->sp_link = NULL;
    243       1.1  gdamore 	}
    244       1.1  gdamore 
    245       1.1  gdamore 	LIST_REMOVE(pcb, sp_next);
    246       1.1  gdamore 	free(pcb, M_BLUETOOTH);
    247       1.1  gdamore 	return 0;
    248       1.1  gdamore }
    249       1.1  gdamore 
    250       1.1  gdamore /*
    251       1.1  gdamore  * sco_listen(pcb)
    252       1.1  gdamore  *
    253       1.1  gdamore  *	Mark pcb as a listener.
    254       1.1  gdamore  */
    255       1.1  gdamore int
    256       1.1  gdamore sco_listen(struct sco_pcb *pcb)
    257       1.1  gdamore {
    258       1.1  gdamore 
    259       1.1  gdamore 	if (pcb->sp_link != NULL)
    260       1.1  gdamore 		return EINVAL;
    261       1.1  gdamore 
    262       1.1  gdamore 	pcb->sp_flags |= SP_LISTENING;
    263       1.1  gdamore 	return 0;
    264       1.1  gdamore }
    265       1.1  gdamore 
    266       1.1  gdamore /*
    267       1.1  gdamore  * sco_send(pcb, mbuf)
    268       1.1  gdamore  *
    269       1.1  gdamore  *	Send data on SCO pcb.
    270       1.1  gdamore  *
    271       1.1  gdamore  * Gross hackage, we just output the packet directly onto the unit queue.
    272       1.1  gdamore  * This will work fine for one channel per unit, but for more channels it
    273       1.1  gdamore  * really needs fixing. We set the context so that when the packet is sent,
    274       1.1  gdamore  * we can drop a record from the socket buffer.
    275       1.1  gdamore  */
    276       1.1  gdamore int
    277       1.1  gdamore sco_send(struct sco_pcb *pcb, struct mbuf *m)
    278       1.1  gdamore {
    279       1.1  gdamore 	hci_scodata_hdr_t *hdr;
    280       1.1  gdamore 	int plen;
    281       1.1  gdamore 
    282       1.1  gdamore 	if (pcb->sp_link == NULL) {
    283       1.1  gdamore 		m_freem(m);
    284       1.1  gdamore 		return EINVAL;
    285       1.1  gdamore 	}
    286       1.1  gdamore 
    287       1.1  gdamore 	plen = m->m_pkthdr.len;
    288       1.1  gdamore 	DPRINTFN(10, "%d bytes\n", plen);
    289       1.1  gdamore 
    290  1.1.10.1     tron 	/*
    291  1.1.10.1     tron 	 * This is a temporary limitation, as USB devices cannot
    292  1.1.10.1     tron 	 * handle SCO packet sizes that are not an integer number
    293  1.1.10.1     tron 	 * of Isochronous frames. See ubt(4)
    294  1.1.10.1     tron 	 */
    295  1.1.10.1     tron 	if (plen != pcb->sp_mtu) {
    296  1.1.10.1     tron 		m_freem(m);
    297  1.1.10.1     tron 		return EMSGSIZE;
    298  1.1.10.1     tron 	}
    299  1.1.10.1     tron 
    300       1.1  gdamore 	M_PREPEND(m, sizeof(hci_scodata_hdr_t), M_DONTWAIT);
    301       1.1  gdamore 	if (m == NULL)
    302       1.1  gdamore 		return ENOMEM;
    303       1.1  gdamore 
    304       1.1  gdamore 	hdr = mtod(m, hci_scodata_hdr_t *);
    305       1.1  gdamore 	hdr->type = HCI_SCO_DATA_PKT;
    306       1.1  gdamore 	hdr->con_handle = htole16(pcb->sp_link->hl_handle);
    307       1.1  gdamore 	hdr->length = plen;
    308       1.1  gdamore 
    309       1.1  gdamore 	pcb->sp_pending++;
    310       1.1  gdamore 	M_SETCTX(m, pcb->sp_link);
    311       1.1  gdamore 	hci_output_sco(pcb->sp_link->hl_unit, m);
    312       1.1  gdamore 
    313       1.1  gdamore 	return 0;
    314       1.1  gdamore }
    315       1.1  gdamore 
    316       1.1  gdamore /*
    317       1.1  gdamore  * sco_setopt(pcb, option, addr)
    318       1.1  gdamore  *
    319       1.1  gdamore  *	Set SCO pcb options
    320       1.1  gdamore  */
    321       1.1  gdamore int
    322       1.1  gdamore sco_setopt(struct sco_pcb *pcb, int opt, void *addr)
    323       1.1  gdamore {
    324       1.1  gdamore 	int err = 0;
    325       1.1  gdamore 
    326       1.1  gdamore 	switch (opt) {
    327       1.1  gdamore 	default:
    328       1.1  gdamore 		break;
    329       1.1  gdamore 	}
    330       1.1  gdamore 
    331       1.1  gdamore 	return err;
    332       1.1  gdamore }
    333       1.1  gdamore 
    334       1.1  gdamore /*
    335       1.1  gdamore  * sco_getopt(pcb, option, addr)
    336       1.1  gdamore  *
    337       1.1  gdamore  *	Get SCO pcb options
    338       1.1  gdamore  */
    339       1.1  gdamore int
    340       1.1  gdamore sco_getopt(struct sco_pcb *pcb, int opt, void *addr)
    341       1.1  gdamore {
    342       1.1  gdamore 
    343       1.1  gdamore 	switch (opt) {
    344       1.1  gdamore 	case SO_SCO_MTU:
    345       1.1  gdamore 		*(uint16_t *)addr = pcb->sp_mtu;
    346       1.1  gdamore 		return sizeof(uint16_t);
    347       1.1  gdamore 
    348       1.1  gdamore 	case SO_SCO_HANDLE:
    349       1.1  gdamore 		if (pcb->sp_link) {
    350       1.1  gdamore 			*(uint16_t *)addr = pcb->sp_link->hl_handle;
    351       1.1  gdamore 			return sizeof(uint16_t);
    352       1.1  gdamore 		}
    353       1.1  gdamore 		break;
    354       1.1  gdamore 
    355       1.1  gdamore 	default:
    356       1.1  gdamore 		break;
    357       1.1  gdamore 	}
    358       1.1  gdamore 	return 0;
    359       1.1  gdamore }
    360