1*10465441SEvalZero /**
2*10465441SEvalZero * @file
3*10465441SEvalZero * lwIP netif implementing an IEEE 802.1D MAC Bridge
4*10465441SEvalZero */
5*10465441SEvalZero
6*10465441SEvalZero /*
7*10465441SEvalZero * Copyright (c) 2017 Simon Goldschmidt.
8*10465441SEvalZero * All rights reserved.
9*10465441SEvalZero *
10*10465441SEvalZero * Redistribution and use in source and binary forms, with or without modification,
11*10465441SEvalZero * are permitted provided that the following conditions are met:
12*10465441SEvalZero *
13*10465441SEvalZero * 1. Redistributions of source code must retain the above copyright notice,
14*10465441SEvalZero * this list of conditions and the following disclaimer.
15*10465441SEvalZero * 2. Redistributions in binary form must reproduce the above copyright notice,
16*10465441SEvalZero * this list of conditions and the following disclaimer in the documentation
17*10465441SEvalZero * and/or other materials provided with the distribution.
18*10465441SEvalZero * 3. The name of the author may not be used to endorse or promote products
19*10465441SEvalZero * derived from this software without specific prior written permission.
20*10465441SEvalZero *
21*10465441SEvalZero * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
22*10465441SEvalZero * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
23*10465441SEvalZero * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT
24*10465441SEvalZero * SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
25*10465441SEvalZero * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT
26*10465441SEvalZero * OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
27*10465441SEvalZero * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
28*10465441SEvalZero * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
29*10465441SEvalZero * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY
30*10465441SEvalZero * OF SUCH DAMAGE.
31*10465441SEvalZero *
32*10465441SEvalZero * This file is part of the lwIP TCP/IP stack.
33*10465441SEvalZero *
34*10465441SEvalZero * Author: Simon Goldschmidt <[email protected]>
35*10465441SEvalZero *
36*10465441SEvalZero */
37*10465441SEvalZero
38*10465441SEvalZero /**
39*10465441SEvalZero * @defgroup bridgeif IEEE 802.1D bridge
40*10465441SEvalZero * @ingroup netifs
41*10465441SEvalZero * This file implements an IEEE 802.1D bridge by using a multilayer netif approach
42*10465441SEvalZero * (one hardware-independent netif for the bridge that uses hardware netifs for its ports).
43*10465441SEvalZero * On transmit, the bridge selects the outgoing port(s).
44*10465441SEvalZero * On receive, the port netif calls into the bridge (via its netif->input function) and
45*10465441SEvalZero * the bridge selects the port(s) (and/or its netif->input function) to pass the received pbuf to.
46*10465441SEvalZero *
47*10465441SEvalZero * Usage:
48*10465441SEvalZero * - add the port netifs just like you would when using them as dedicated netif without a bridge
49*10465441SEvalZero * - only NETIF_FLAG_ETHARP/NETIF_FLAG_ETHERNET netifs are supported as bridge ports
50*10465441SEvalZero * - add the bridge port netifs without IPv4 addresses (i.e. pass 'NULL, NULL, NULL')
51*10465441SEvalZero * - don't add IPv6 addresses to the port netifs!
52*10465441SEvalZero * - set up the bridge configuration in a global variable of type 'bridgeif_initdata_t' that contains
53*10465441SEvalZero * - the MAC address of the bridge
54*10465441SEvalZero * - some configuration options controlling the memory consumption (maximum number of ports
55*10465441SEvalZero * and FDB entries)
56*10465441SEvalZero * - e.g. for a bridge MAC address 00-01-02-03-04-05, 2 bridge ports, 1024 FDB entries + 16 static MAC entries:
57*10465441SEvalZero * bridgeif_initdata_t mybridge_initdata = BRIDGEIF_INITDATA1(2, 1024, 16, ETH_ADDR(0, 1, 2, 3, 4, 5));
58*10465441SEvalZero * - add the bridge netif (with IPv4 config):
59*10465441SEvalZero * struct netif bridge_netif;
60*10465441SEvalZero * netif_add(&bridge_netif, &my_ip, &my_netmask, &my_gw, &mybridge_initdata, bridgeif_init, tcpip_input);
61*10465441SEvalZero * NOTE: the passed 'input' function depends on BRIDGEIF_PORT_NETIFS_OUTPUT_DIRECT setting,
62*10465441SEvalZero * which controls where the forwarding is done (netif low level input context vs. tcpip_thread)
63*10465441SEvalZero * - set up all ports netifs and the bridge netif
64*10465441SEvalZero *
65*10465441SEvalZero * - When adding a port netif, NETIF_FLAG_ETHARP flag will be removed from a port
66*10465441SEvalZero * to prevent ETHARP working on that port netif (we only want one IP per bridge not per port).
67*10465441SEvalZero * - When adding a port netif, its input function is changed to call into the bridge.
68*10465441SEvalZero *
69*10465441SEvalZero *
70*10465441SEvalZero * @todo:
71*10465441SEvalZero * - compact static FDB entries (instead of walking the whole array)
72*10465441SEvalZero * - add FDB query/read access
73*10465441SEvalZero * - add FDB change callback (when learning or dropping auto-learned entries)
74*10465441SEvalZero * - prefill FDB with MAC classes that should never be forwarded
75*10465441SEvalZero * - multicast snooping? (and only forward group addresses to interested ports)
76*10465441SEvalZero * - support removing ports
77*10465441SEvalZero * - check SNMP integration
78*10465441SEvalZero * - VLAN handling / trunk ports
79*10465441SEvalZero * - priority handling? (although that largely depends on TX queue limitations and lwIP doesn't provide tx-done handling)
80*10465441SEvalZero */
81*10465441SEvalZero
82*10465441SEvalZero #include "netif/bridgeif.h"
83*10465441SEvalZero #include "lwip/netif.h"
84*10465441SEvalZero #include "lwip/sys.h"
85*10465441SEvalZero #include "lwip/etharp.h"
86*10465441SEvalZero #include "lwip/ethip6.h"
87*10465441SEvalZero #include "lwip/snmp.h"
88*10465441SEvalZero #include "lwip/timeouts.h"
89*10465441SEvalZero #include <string.h>
90*10465441SEvalZero
91*10465441SEvalZero #if LWIP_NUM_NETIF_CLIENT_DATA
92*10465441SEvalZero
93*10465441SEvalZero /* Define those to better describe your network interface. */
94*10465441SEvalZero #define IFNAME0 'b'
95*10465441SEvalZero #define IFNAME1 'r'
96*10465441SEvalZero
97*10465441SEvalZero struct bridgeif_private_s;
98*10465441SEvalZero typedef struct bridgeif_port_private_s {
99*10465441SEvalZero struct bridgeif_private_s *bridge;
100*10465441SEvalZero struct netif *port_netif;
101*10465441SEvalZero u8_t port_num;
102*10465441SEvalZero } bridgeif_port_t;
103*10465441SEvalZero
104*10465441SEvalZero typedef struct bridgeif_fdb_static_entry_s {
105*10465441SEvalZero u8_t used;
106*10465441SEvalZero bridgeif_portmask_t dst_ports;
107*10465441SEvalZero struct eth_addr addr;
108*10465441SEvalZero } bridgeif_fdb_static_entry_t;
109*10465441SEvalZero
110*10465441SEvalZero typedef struct bridgeif_private_s {
111*10465441SEvalZero struct netif *netif;
112*10465441SEvalZero struct eth_addr ethaddr;
113*10465441SEvalZero u8_t max_ports;
114*10465441SEvalZero u8_t num_ports;
115*10465441SEvalZero bridgeif_port_t *ports;
116*10465441SEvalZero u16_t max_fdbs_entries;
117*10465441SEvalZero bridgeif_fdb_static_entry_t *fdbs;
118*10465441SEvalZero u16_t max_fdbd_entries;
119*10465441SEvalZero void *fdbd;
120*10465441SEvalZero } bridgeif_private_t;
121*10465441SEvalZero
122*10465441SEvalZero /* netif data index to get the bridge on input */
123*10465441SEvalZero u8_t bridgeif_netif_client_id = 0xff;
124*10465441SEvalZero
125*10465441SEvalZero /**
126*10465441SEvalZero * @ingroup bridgeif
127*10465441SEvalZero * Add a static entry to the forwarding database.
128*10465441SEvalZero * A static entry marks where frames to a specific eth address (unicast or group address) are
129*10465441SEvalZero * forwarded.
130*10465441SEvalZero * bits [0..(BRIDGEIF_MAX_PORTS-1)]: hw ports
131*10465441SEvalZero * bit [BRIDGEIF_MAX_PORTS]: cpu port
132*10465441SEvalZero * 0: drop
133*10465441SEvalZero */
134*10465441SEvalZero err_t
bridgeif_fdb_add(struct netif * bridgeif,const struct eth_addr * addr,bridgeif_portmask_t ports)135*10465441SEvalZero bridgeif_fdb_add(struct netif *bridgeif, const struct eth_addr *addr, bridgeif_portmask_t ports)
136*10465441SEvalZero {
137*10465441SEvalZero int i;
138*10465441SEvalZero bridgeif_private_t *br;
139*10465441SEvalZero BRIDGEIF_DECL_PROTECT(lev);
140*10465441SEvalZero LWIP_ASSERT("invalid netif", bridgeif != NULL);
141*10465441SEvalZero br = (bridgeif_private_t *)bridgeif->state;
142*10465441SEvalZero LWIP_ASSERT("invalid state", br != NULL);
143*10465441SEvalZero
144*10465441SEvalZero BRIDGEIF_READ_PROTECT(lev);
145*10465441SEvalZero for (i = 0; i < br->max_fdbs_entries; i++) {
146*10465441SEvalZero if (!br->fdbs[i].used) {
147*10465441SEvalZero BRIDGEIF_WRITE_PROTECT(lev);
148*10465441SEvalZero if (!br->fdbs[i].used) {
149*10465441SEvalZero br->fdbs[i].used = 1;
150*10465441SEvalZero br->fdbs[i].dst_ports = ports;
151*10465441SEvalZero memcpy(&br->fdbs[i].addr, addr, sizeof(struct eth_addr));
152*10465441SEvalZero BRIDGEIF_WRITE_UNPROTECT(lev);
153*10465441SEvalZero BRIDGEIF_READ_UNPROTECT(lev);
154*10465441SEvalZero return ERR_OK;
155*10465441SEvalZero }
156*10465441SEvalZero BRIDGEIF_WRITE_UNPROTECT(lev);
157*10465441SEvalZero }
158*10465441SEvalZero }
159*10465441SEvalZero BRIDGEIF_READ_UNPROTECT(lev);
160*10465441SEvalZero return ERR_MEM;
161*10465441SEvalZero }
162*10465441SEvalZero
163*10465441SEvalZero /**
164*10465441SEvalZero * @ingroup bridgeif
165*10465441SEvalZero * Remove a static entry from the forwarding database
166*10465441SEvalZero */
167*10465441SEvalZero err_t
bridgeif_fdb_remove(struct netif * bridgeif,const struct eth_addr * addr)168*10465441SEvalZero bridgeif_fdb_remove(struct netif *bridgeif, const struct eth_addr *addr)
169*10465441SEvalZero {
170*10465441SEvalZero int i;
171*10465441SEvalZero bridgeif_private_t *br;
172*10465441SEvalZero BRIDGEIF_DECL_PROTECT(lev);
173*10465441SEvalZero LWIP_ASSERT("invalid netif", bridgeif != NULL);
174*10465441SEvalZero br = (bridgeif_private_t *)bridgeif->state;
175*10465441SEvalZero LWIP_ASSERT("invalid state", br != NULL);
176*10465441SEvalZero
177*10465441SEvalZero BRIDGEIF_READ_PROTECT(lev);
178*10465441SEvalZero for (i = 0; i < br->max_fdbs_entries; i++) {
179*10465441SEvalZero if (br->fdbs[i].used && !memcmp(&br->fdbs[i].addr, addr, sizeof(struct eth_addr))) {
180*10465441SEvalZero BRIDGEIF_WRITE_PROTECT(lev);
181*10465441SEvalZero if (br->fdbs[i].used && !memcmp(&br->fdbs[i].addr, addr, sizeof(struct eth_addr))) {
182*10465441SEvalZero memset(&br->fdbs[i], 0, sizeof(bridgeif_fdb_static_entry_t));
183*10465441SEvalZero BRIDGEIF_WRITE_UNPROTECT(lev);
184*10465441SEvalZero BRIDGEIF_READ_UNPROTECT(lev);
185*10465441SEvalZero return ERR_OK;
186*10465441SEvalZero }
187*10465441SEvalZero BRIDGEIF_WRITE_UNPROTECT(lev);
188*10465441SEvalZero }
189*10465441SEvalZero }
190*10465441SEvalZero BRIDGEIF_READ_UNPROTECT(lev);
191*10465441SEvalZero return ERR_VAL;
192*10465441SEvalZero }
193*10465441SEvalZero
194*10465441SEvalZero /** Get the forwarding port(s) (as bit mask) for the specified destination mac address */
195*10465441SEvalZero static bridgeif_portmask_t
bridgeif_find_dst_ports(bridgeif_private_t * br,struct eth_addr * dst_addr)196*10465441SEvalZero bridgeif_find_dst_ports(bridgeif_private_t *br, struct eth_addr *dst_addr)
197*10465441SEvalZero {
198*10465441SEvalZero int i;
199*10465441SEvalZero BRIDGEIF_DECL_PROTECT(lev);
200*10465441SEvalZero BRIDGEIF_READ_PROTECT(lev);
201*10465441SEvalZero /* first check for static entries */
202*10465441SEvalZero for (i = 0; i < br->max_fdbs_entries; i++) {
203*10465441SEvalZero if (br->fdbs[i].used) {
204*10465441SEvalZero if (!memcmp(&br->fdbs[i].addr, dst_addr, sizeof(struct eth_addr))) {
205*10465441SEvalZero bridgeif_portmask_t ret = br->fdbs[i].dst_ports;
206*10465441SEvalZero BRIDGEIF_READ_UNPROTECT(lev);
207*10465441SEvalZero return ret;
208*10465441SEvalZero }
209*10465441SEvalZero }
210*10465441SEvalZero }
211*10465441SEvalZero if (dst_addr->addr[0] & 1) {
212*10465441SEvalZero /* no match found: flood remaining group address */
213*10465441SEvalZero BRIDGEIF_READ_UNPROTECT(lev);
214*10465441SEvalZero return BR_FLOOD;
215*10465441SEvalZero }
216*10465441SEvalZero BRIDGEIF_READ_UNPROTECT(lev);
217*10465441SEvalZero /* no match found: check dynamic fdb for port or fall back to flooding */
218*10465441SEvalZero return bridgeif_fdb_get_dst_ports(br->fdbd, dst_addr);
219*10465441SEvalZero }
220*10465441SEvalZero
221*10465441SEvalZero /** Helper function to see if a destination mac belongs to the bridge
222*10465441SEvalZero * (bridge netif or one of the port netifs), in which case the frame
223*10465441SEvalZero * is sent to the cpu only.
224*10465441SEvalZero */
225*10465441SEvalZero static int
bridgeif_is_local_mac(bridgeif_private_t * br,struct eth_addr * addr)226*10465441SEvalZero bridgeif_is_local_mac(bridgeif_private_t *br, struct eth_addr *addr)
227*10465441SEvalZero {
228*10465441SEvalZero int i;
229*10465441SEvalZero BRIDGEIF_DECL_PROTECT(lev);
230*10465441SEvalZero if (!memcmp(br->netif->hwaddr, addr, sizeof(struct eth_addr))) {
231*10465441SEvalZero return 1;
232*10465441SEvalZero }
233*10465441SEvalZero BRIDGEIF_READ_PROTECT(lev);
234*10465441SEvalZero for (i = 0; i < br->num_ports; i++) {
235*10465441SEvalZero struct netif *portif = br->ports[i].port_netif;
236*10465441SEvalZero if (portif != NULL) {
237*10465441SEvalZero if (!memcmp(portif->hwaddr, addr, sizeof(struct eth_addr))) {
238*10465441SEvalZero BRIDGEIF_READ_UNPROTECT(lev);
239*10465441SEvalZero return 1;
240*10465441SEvalZero }
241*10465441SEvalZero }
242*10465441SEvalZero }
243*10465441SEvalZero BRIDGEIF_READ_UNPROTECT(lev);
244*10465441SEvalZero return 0;
245*10465441SEvalZero }
246*10465441SEvalZero
247*10465441SEvalZero /* Output helper function */
248*10465441SEvalZero static err_t
bridgeif_send_to_port(bridgeif_private_t * br,struct pbuf * p,u8_t dstport_idx)249*10465441SEvalZero bridgeif_send_to_port(bridgeif_private_t *br, struct pbuf *p, u8_t dstport_idx)
250*10465441SEvalZero {
251*10465441SEvalZero if (dstport_idx < BRIDGEIF_MAX_PORTS) {
252*10465441SEvalZero /* possibly an external port */
253*10465441SEvalZero if (dstport_idx < br->max_ports) {
254*10465441SEvalZero struct netif *portif = br->ports[dstport_idx].port_netif;
255*10465441SEvalZero if ((portif != NULL) && (portif->linkoutput != NULL)) {
256*10465441SEvalZero /* prevent sending out to rx port */
257*10465441SEvalZero if (netif_get_index(portif) != p->if_idx) {
258*10465441SEvalZero if (netif_is_link_up(portif)) {
259*10465441SEvalZero LWIP_DEBUGF(BRIDGEIF_FW_DEBUG, ("br -> flood(%p:%d) -> %d\n", (void *)p, p->if_idx, netif_get_index(portif)));
260*10465441SEvalZero return portif->linkoutput(portif, p);
261*10465441SEvalZero }
262*10465441SEvalZero }
263*10465441SEvalZero }
264*10465441SEvalZero }
265*10465441SEvalZero } else {
266*10465441SEvalZero LWIP_ASSERT("invalid port index", dstport_idx == BRIDGEIF_MAX_PORTS);
267*10465441SEvalZero }
268*10465441SEvalZero return ERR_OK;
269*10465441SEvalZero }
270*10465441SEvalZero
271*10465441SEvalZero /** Helper function to pass a pbuf to all ports marked in 'dstports'
272*10465441SEvalZero */
273*10465441SEvalZero static err_t
bridgeif_send_to_ports(bridgeif_private_t * br,struct pbuf * p,bridgeif_portmask_t dstports)274*10465441SEvalZero bridgeif_send_to_ports(bridgeif_private_t *br, struct pbuf *p, bridgeif_portmask_t dstports)
275*10465441SEvalZero {
276*10465441SEvalZero err_t err, ret_err = ERR_OK;
277*10465441SEvalZero u8_t i;
278*10465441SEvalZero bridgeif_portmask_t mask = 1;
279*10465441SEvalZero BRIDGEIF_DECL_PROTECT(lev);
280*10465441SEvalZero BRIDGEIF_READ_PROTECT(lev);
281*10465441SEvalZero for (i = 0; i < BRIDGEIF_MAX_PORTS; i++, mask = (bridgeif_portmask_t)(mask << 1)) {
282*10465441SEvalZero if (dstports & mask) {
283*10465441SEvalZero err = bridgeif_send_to_port(br, p, i);
284*10465441SEvalZero if (err != ERR_OK) {
285*10465441SEvalZero ret_err = err;
286*10465441SEvalZero }
287*10465441SEvalZero }
288*10465441SEvalZero }
289*10465441SEvalZero BRIDGEIF_READ_UNPROTECT(lev);
290*10465441SEvalZero return ret_err;
291*10465441SEvalZero }
292*10465441SEvalZero
293*10465441SEvalZero /** Output function of the application port of the bridge (the one with an ip address).
294*10465441SEvalZero * The forwarding port(s) where this pbuf is sent on is/are automatically selected
295*10465441SEvalZero * from the FDB.
296*10465441SEvalZero */
297*10465441SEvalZero static err_t
bridgeif_output(struct netif * netif,struct pbuf * p)298*10465441SEvalZero bridgeif_output(struct netif *netif, struct pbuf *p)
299*10465441SEvalZero {
300*10465441SEvalZero err_t err;
301*10465441SEvalZero bridgeif_private_t *br = (bridgeif_private_t *)netif->state;
302*10465441SEvalZero struct eth_addr *dst = (struct eth_addr *)(p->payload);
303*10465441SEvalZero
304*10465441SEvalZero bridgeif_portmask_t dstports = bridgeif_find_dst_ports(br, dst);
305*10465441SEvalZero err = bridgeif_send_to_ports(br, p, dstports);
306*10465441SEvalZero
307*10465441SEvalZero MIB2_STATS_NETIF_ADD(netif, ifoutoctets, p->tot_len);
308*10465441SEvalZero if (((u8_t *)p->payload)[0] & 1) {
309*10465441SEvalZero /* broadcast or multicast packet*/
310*10465441SEvalZero MIB2_STATS_NETIF_INC(netif, ifoutnucastpkts);
311*10465441SEvalZero } else {
312*10465441SEvalZero /* unicast packet */
313*10465441SEvalZero MIB2_STATS_NETIF_INC(netif, ifoutucastpkts);
314*10465441SEvalZero }
315*10465441SEvalZero /* increase ifoutdiscards or ifouterrors on error */
316*10465441SEvalZero
317*10465441SEvalZero LINK_STATS_INC(link.xmit);
318*10465441SEvalZero
319*10465441SEvalZero return err;
320*10465441SEvalZero }
321*10465441SEvalZero
322*10465441SEvalZero /** The actual bridge input function. Port netif's input is changed to call
323*10465441SEvalZero * here. This function decides where the frame is forwarded.
324*10465441SEvalZero */
325*10465441SEvalZero static err_t
bridgeif_input(struct pbuf * p,struct netif * netif)326*10465441SEvalZero bridgeif_input(struct pbuf *p, struct netif *netif)
327*10465441SEvalZero {
328*10465441SEvalZero u8_t rx_idx;
329*10465441SEvalZero bridgeif_portmask_t dstports;
330*10465441SEvalZero struct eth_addr *src, *dst;
331*10465441SEvalZero bridgeif_private_t *br;
332*10465441SEvalZero bridgeif_port_t *port;
333*10465441SEvalZero if (p == NULL || netif == NULL) {
334*10465441SEvalZero return ERR_VAL;
335*10465441SEvalZero }
336*10465441SEvalZero port = (bridgeif_port_t *)netif_get_client_data(netif, bridgeif_netif_client_id);
337*10465441SEvalZero LWIP_ASSERT("port data not set", port != NULL);
338*10465441SEvalZero if (port == NULL || port->bridge == NULL) {
339*10465441SEvalZero return ERR_VAL;
340*10465441SEvalZero }
341*10465441SEvalZero br = (bridgeif_private_t *)port->bridge;
342*10465441SEvalZero rx_idx = netif_get_index(netif);
343*10465441SEvalZero /* store receive index in pbuf */
344*10465441SEvalZero p->if_idx = rx_idx;
345*10465441SEvalZero
346*10465441SEvalZero dst = (struct eth_addr *)p->payload;
347*10465441SEvalZero src = (struct eth_addr *)(((u8_t *)p->payload) + sizeof(struct eth_addr));
348*10465441SEvalZero
349*10465441SEvalZero if ((src->addr[0] & 1) == 0) {
350*10465441SEvalZero /* update src for all non-group addresses */
351*10465441SEvalZero bridgeif_fdb_update_src(br->fdbd, src, port->port_num);
352*10465441SEvalZero }
353*10465441SEvalZero
354*10465441SEvalZero if (dst->addr[0] & 1) {
355*10465441SEvalZero /* group address -> flood + cpu? */
356*10465441SEvalZero dstports = bridgeif_find_dst_ports(br, dst);
357*10465441SEvalZero bridgeif_send_to_ports(br, p, dstports);
358*10465441SEvalZero if (dstports & (1 << BRIDGEIF_MAX_PORTS)) {
359*10465441SEvalZero /* we pass the reference to ->input or have to free it */
360*10465441SEvalZero LWIP_DEBUGF(BRIDGEIF_FW_DEBUG, ("br -> input(%p)\n", (void *)p));
361*10465441SEvalZero if (br->netif->input(p, br->netif) != ERR_OK) {
362*10465441SEvalZero pbuf_free(p);
363*10465441SEvalZero }
364*10465441SEvalZero } else {
365*10465441SEvalZero /* all references done */
366*10465441SEvalZero pbuf_free(p);
367*10465441SEvalZero }
368*10465441SEvalZero /* always return ERR_OK here to prevent the caller freeing the pbuf */
369*10465441SEvalZero return ERR_OK;
370*10465441SEvalZero } else {
371*10465441SEvalZero /* is this for one of the local ports? */
372*10465441SEvalZero if (bridgeif_is_local_mac(br, dst)) {
373*10465441SEvalZero /* yes, send to cpu port only */
374*10465441SEvalZero LWIP_DEBUGF(BRIDGEIF_FW_DEBUG, ("br -> input(%p)\n", (void *)p));
375*10465441SEvalZero return br->netif->input(p, br->netif);
376*10465441SEvalZero }
377*10465441SEvalZero
378*10465441SEvalZero /* get dst port */
379*10465441SEvalZero dstports = bridgeif_find_dst_ports(br, dst);
380*10465441SEvalZero bridgeif_send_to_ports(br, p, dstports);
381*10465441SEvalZero /* no need to send to cpu, flooding is for external ports only */
382*10465441SEvalZero /* by this, we consumed the pbuf */
383*10465441SEvalZero pbuf_free(p);
384*10465441SEvalZero /* always return ERR_OK here to prevent the caller freeing the pbuf */
385*10465441SEvalZero return ERR_OK;
386*10465441SEvalZero }
387*10465441SEvalZero }
388*10465441SEvalZero
389*10465441SEvalZero #if !BRIDGEIF_PORT_NETIFS_OUTPUT_DIRECT
390*10465441SEvalZero /** Input function for port netifs used to synchronize into tcpip_thread.
391*10465441SEvalZero */
392*10465441SEvalZero static err_t
bridgeif_tcpip_input(struct pbuf * p,struct netif * netif)393*10465441SEvalZero bridgeif_tcpip_input(struct pbuf *p, struct netif *netif)
394*10465441SEvalZero {
395*10465441SEvalZero return tcpip_inpkt(p, netif, bridgeif_input);
396*10465441SEvalZero }
397*10465441SEvalZero #endif /* BRIDGEIF_PORT_NETIFS_OUTPUT_DIRECT */
398*10465441SEvalZero
399*10465441SEvalZero /**
400*10465441SEvalZero * @ingroup bridgeif
401*10465441SEvalZero * Initialization function passed to netif_add().
402*10465441SEvalZero *
403*10465441SEvalZero * ATTENTION: A pointer to a @ref bridgeif_initdata_t must be passed as 'state'
404*10465441SEvalZero * to @ref netif_add when adding the bridge. I supplies MAC address
405*10465441SEvalZero * and controls memory allocation (number of ports, FDB size).
406*10465441SEvalZero *
407*10465441SEvalZero * @param netif the lwip network interface structure for this ethernetif
408*10465441SEvalZero * @return ERR_OK if the loopif is initialized
409*10465441SEvalZero * ERR_MEM if private data couldn't be allocated
410*10465441SEvalZero * any other err_t on error
411*10465441SEvalZero */
412*10465441SEvalZero err_t
bridgeif_init(struct netif * netif)413*10465441SEvalZero bridgeif_init(struct netif *netif)
414*10465441SEvalZero {
415*10465441SEvalZero bridgeif_initdata_t *init_data;
416*10465441SEvalZero bridgeif_private_t *br;
417*10465441SEvalZero size_t alloc_len_sizet;
418*10465441SEvalZero mem_size_t alloc_len;
419*10465441SEvalZero
420*10465441SEvalZero LWIP_ASSERT("netif != NULL", (netif != NULL));
421*10465441SEvalZero LWIP_ASSERT("bridgeif needs an input callback", (netif->input != NULL));
422*10465441SEvalZero #if !BRIDGEIF_PORT_NETIFS_OUTPUT_DIRECT
423*10465441SEvalZero if (netif->input == tcpip_input) {
424*10465441SEvalZero LWIP_DEBUGF(BRIDGEIF_DEBUG | LWIP_DBG_ON, ("bridgeif does not need tcpip_input, use netif_input/ethernet_input instead"));
425*10465441SEvalZero }
426*10465441SEvalZero #endif
427*10465441SEvalZero
428*10465441SEvalZero if (bridgeif_netif_client_id == 0xFF) {
429*10465441SEvalZero bridgeif_netif_client_id = netif_alloc_client_data_id();
430*10465441SEvalZero }
431*10465441SEvalZero
432*10465441SEvalZero init_data = (bridgeif_initdata_t *)netif->state;
433*10465441SEvalZero LWIP_ASSERT("init_data != NULL", (init_data != NULL));
434*10465441SEvalZero LWIP_ASSERT("init_data->max_ports <= BRIDGEIF_MAX_PORTS",
435*10465441SEvalZero init_data->max_ports <= BRIDGEIF_MAX_PORTS);
436*10465441SEvalZero
437*10465441SEvalZero alloc_len_sizet = sizeof(bridgeif_private_t) + (init_data->max_ports * sizeof(bridgeif_port_t) + (init_data->max_fdb_static_entries * sizeof(bridgeif_fdb_static_entry_t)));
438*10465441SEvalZero alloc_len = (mem_size_t)alloc_len_sizet;
439*10465441SEvalZero LWIP_ASSERT("alloc_len == alloc_len_sizet", alloc_len == alloc_len_sizet);
440*10465441SEvalZero LWIP_DEBUGF(BRIDGEIF_DEBUG, ("bridgeif_init: allocating %d bytes for private data\n", (int)alloc_len));
441*10465441SEvalZero br = (bridgeif_private_t *)mem_calloc(1, alloc_len);
442*10465441SEvalZero if (br == NULL) {
443*10465441SEvalZero LWIP_DEBUGF(NETIF_DEBUG, ("bridgeif_init: out of memory\n"));
444*10465441SEvalZero return ERR_MEM;
445*10465441SEvalZero }
446*10465441SEvalZero memcpy(&br->ethaddr, &init_data->ethaddr, sizeof(br->ethaddr));
447*10465441SEvalZero br->netif = netif;
448*10465441SEvalZero
449*10465441SEvalZero br->max_ports = init_data->max_ports;
450*10465441SEvalZero br->ports = (bridgeif_port_t *)(br + 1);
451*10465441SEvalZero
452*10465441SEvalZero br->max_fdbs_entries = init_data->max_fdb_static_entries;
453*10465441SEvalZero br->fdbs = (bridgeif_fdb_static_entry_t *)(((u8_t *)(br + 1)) + (init_data->max_ports * sizeof(bridgeif_port_t)));
454*10465441SEvalZero
455*10465441SEvalZero br->max_fdbd_entries = init_data->max_fdb_dynamic_entries;
456*10465441SEvalZero br->fdbd = bridgeif_fdb_init(init_data->max_fdb_dynamic_entries);
457*10465441SEvalZero if (br->fdbd == NULL) {
458*10465441SEvalZero LWIP_DEBUGF(NETIF_DEBUG, ("bridgeif_init: out of memory in fdb_init\n"));
459*10465441SEvalZero mem_free(br);
460*10465441SEvalZero return ERR_MEM;
461*10465441SEvalZero }
462*10465441SEvalZero
463*10465441SEvalZero #if LWIP_NETIF_HOSTNAME
464*10465441SEvalZero /* Initialize interface hostname */
465*10465441SEvalZero netif->hostname = "lwip";
466*10465441SEvalZero #endif /* LWIP_NETIF_HOSTNAME */
467*10465441SEvalZero
468*10465441SEvalZero /*
469*10465441SEvalZero * Initialize the snmp variables and counters inside the struct netif.
470*10465441SEvalZero * The last argument should be replaced with your link speed, in units
471*10465441SEvalZero * of bits per second.
472*10465441SEvalZero */
473*10465441SEvalZero MIB2_INIT_NETIF(netif, snmp_ifType_ethernet_csmacd, 0);
474*10465441SEvalZero
475*10465441SEvalZero netif->state = br;
476*10465441SEvalZero netif->name[0] = IFNAME0;
477*10465441SEvalZero netif->name[1] = IFNAME1;
478*10465441SEvalZero /* We directly use etharp_output() here to save a function call.
479*10465441SEvalZero * You can instead declare your own function an call etharp_output()
480*10465441SEvalZero * from it if you have to do some checks before sending (e.g. if link
481*10465441SEvalZero * is available...) */
482*10465441SEvalZero #if LWIP_IPV4
483*10465441SEvalZero netif->output = etharp_output;
484*10465441SEvalZero #endif /* LWIP_IPV4 */
485*10465441SEvalZero #if LWIP_IPV6
486*10465441SEvalZero netif->output_ip6 = ethip6_output;
487*10465441SEvalZero #endif /* LWIP_IPV6 */
488*10465441SEvalZero netif->linkoutput = bridgeif_output;
489*10465441SEvalZero
490*10465441SEvalZero /* set MAC hardware address length */
491*10465441SEvalZero netif->hwaddr_len = ETH_HWADDR_LEN;
492*10465441SEvalZero
493*10465441SEvalZero /* set MAC hardware address */
494*10465441SEvalZero memcpy(netif->hwaddr, &br->ethaddr, ETH_HWADDR_LEN);
495*10465441SEvalZero
496*10465441SEvalZero /* maximum transfer unit */
497*10465441SEvalZero netif->mtu = 1500;
498*10465441SEvalZero
499*10465441SEvalZero /* device capabilities */
500*10465441SEvalZero /* don't set NETIF_FLAG_ETHARP if this device is not an ethernet one */
501*10465441SEvalZero netif->flags = NETIF_FLAG_BROADCAST | NETIF_FLAG_ETHARP | NETIF_FLAG_ETHERNET | NETIF_FLAG_IGMP | NETIF_FLAG_MLD6 | NETIF_FLAG_LINK_UP;
502*10465441SEvalZero
503*10465441SEvalZero #if LWIP_IPV6 && LWIP_IPV6_MLD
504*10465441SEvalZero /*
505*10465441SEvalZero * For hardware/netifs that implement MAC filtering.
506*10465441SEvalZero * All-nodes link-local is handled by default, so we must let the hardware know
507*10465441SEvalZero * to allow multicast packets in.
508*10465441SEvalZero * Should set mld_mac_filter previously. */
509*10465441SEvalZero if (netif->mld_mac_filter != NULL) {
510*10465441SEvalZero ip6_addr_t ip6_allnodes_ll;
511*10465441SEvalZero ip6_addr_set_allnodes_linklocal(&ip6_allnodes_ll);
512*10465441SEvalZero netif->mld_mac_filter(netif, &ip6_allnodes_ll, NETIF_ADD_MAC_FILTER);
513*10465441SEvalZero }
514*10465441SEvalZero #endif /* LWIP_IPV6 && LWIP_IPV6_MLD */
515*10465441SEvalZero
516*10465441SEvalZero return ERR_OK;
517*10465441SEvalZero }
518*10465441SEvalZero
519*10465441SEvalZero /**
520*10465441SEvalZero * @ingroup bridgeif
521*10465441SEvalZero * Add a port to the bridge
522*10465441SEvalZero */
523*10465441SEvalZero err_t
bridgeif_add_port(struct netif * bridgeif,struct netif * portif)524*10465441SEvalZero bridgeif_add_port(struct netif *bridgeif, struct netif *portif)
525*10465441SEvalZero {
526*10465441SEvalZero bridgeif_private_t *br;
527*10465441SEvalZero bridgeif_port_t *port;
528*10465441SEvalZero
529*10465441SEvalZero LWIP_ASSERT("bridgeif != NULL", bridgeif != NULL);
530*10465441SEvalZero LWIP_ASSERT("bridgeif->state != NULL", bridgeif->state != NULL);
531*10465441SEvalZero LWIP_ASSERT("portif != NULL", portif != NULL);
532*10465441SEvalZero
533*10465441SEvalZero if (!(portif->flags & NETIF_FLAG_ETHARP) || !(portif->flags & NETIF_FLAG_ETHERNET)) {
534*10465441SEvalZero /* can only add ETHERNET/ETHARP interfaces */
535*10465441SEvalZero return ERR_VAL;
536*10465441SEvalZero }
537*10465441SEvalZero
538*10465441SEvalZero br = (bridgeif_private_t *)bridgeif->state;
539*10465441SEvalZero
540*10465441SEvalZero if (br->num_ports >= br->max_ports) {
541*10465441SEvalZero return ERR_VAL;
542*10465441SEvalZero }
543*10465441SEvalZero port = &br->ports[br->num_ports];
544*10465441SEvalZero port->port_netif = portif;
545*10465441SEvalZero port->port_num = br->num_ports;
546*10465441SEvalZero port->bridge = br;
547*10465441SEvalZero br->num_ports++;
548*10465441SEvalZero
549*10465441SEvalZero /* let the port call us on input */
550*10465441SEvalZero #if BRIDGEIF_PORT_NETIFS_OUTPUT_DIRECT
551*10465441SEvalZero portif->input = bridgeif_input;
552*10465441SEvalZero #else
553*10465441SEvalZero portif->input = bridgeif_tcpip_input;
554*10465441SEvalZero #endif
555*10465441SEvalZero /* store pointer to bridge in netif */
556*10465441SEvalZero netif_set_client_data(portif, bridgeif_netif_client_id, port);
557*10465441SEvalZero /* remove ETHARP flag to prevent sending report events on netif-up */
558*10465441SEvalZero netif_clear_flags(portif, NETIF_FLAG_ETHARP);
559*10465441SEvalZero
560*10465441SEvalZero return ERR_OK;
561*10465441SEvalZero }
562*10465441SEvalZero
563*10465441SEvalZero #endif /* LWIP_NUM_NETIF_CLIENT_DATA */
564