#include "netif/bridgeif.h"
#include "lwip/netif.h"
#include "lwip/sys.h"
#include "lwip/etharp.h"
#include "lwip/ethip6.h"
#include "lwip/snmp.h"
#include "lwip/timeouts.h"
#include <string.h>
#if LWIP_NUM_NETIF_CLIENT_DATA
#define IFNAME0 'b'
#define IFNAME1 'r'
struct bridgeif_private_s;
typedef struct bridgeif_port_private_s {
struct bridgeif_private_s *bridge;
struct netif *port_netif;
u8_t port_num;
} bridgeif_port_t;
typedef struct bridgeif_fdb_static_entry_s {
u8_t used;
bridgeif_portmask_t dst_ports;
struct eth_addr addr;
} bridgeif_fdb_static_entry_t;
typedef struct bridgeif_private_s {
struct netif *netif;
struct eth_addr ethaddr;
u8_t max_ports;
u8_t num_ports;
bridgeif_port_t *ports;
u16_t max_fdbs_entries;
bridgeif_fdb_static_entry_t *fdbs;
u16_t max_fdbd_entries;
void *fdbd;
} bridgeif_private_t;
static u8_t bridgeif_netif_client_id = 0xff;
err_t
bridgeif_fdb_add(struct netif *bridgeif, const struct eth_addr *addr, bridgeif_portmask_t ports)
{
int i;
bridgeif_private_t *br;
BRIDGEIF_DECL_PROTECT(lev);
LWIP_ASSERT("invalid netif", bridgeif != NULL);
br = (bridgeif_private_t *)bridgeif->state;
LWIP_ASSERT("invalid state", br != NULL);
BRIDGEIF_READ_PROTECT(lev);
for (i = 0; i < br->max_fdbs_entries; i++) {
if (!br->fdbs[i].used) {
BRIDGEIF_WRITE_PROTECT(lev);
if (!br->fdbs[i].used) {
br->fdbs[i].used = 1;
br->fdbs[i].dst_ports = ports;
memcpy(&br->fdbs[i].addr, addr, sizeof(struct eth_addr));
BRIDGEIF_WRITE_UNPROTECT(lev);
BRIDGEIF_READ_UNPROTECT(lev);
return ERR_OK;
}
BRIDGEIF_WRITE_UNPROTECT(lev);
}
}
BRIDGEIF_READ_UNPROTECT(lev);
return ERR_MEM;
}
err_t
bridgeif_fdb_remove(struct netif *bridgeif, const struct eth_addr *addr)
{
int i;
bridgeif_private_t *br;
BRIDGEIF_DECL_PROTECT(lev);
LWIP_ASSERT("invalid netif", bridgeif != NULL);
br = (bridgeif_private_t *)bridgeif->state;
LWIP_ASSERT("invalid state", br != NULL);
BRIDGEIF_READ_PROTECT(lev);
for (i = 0; i < br->max_fdbs_entries; i++) {
if (br->fdbs[i].used && !memcmp(&br->fdbs[i].addr, addr, sizeof(struct eth_addr))) {
BRIDGEIF_WRITE_PROTECT(lev);
if (br->fdbs[i].used && !memcmp(&br->fdbs[i].addr, addr, sizeof(struct eth_addr))) {
memset(&br->fdbs[i], 0, sizeof(bridgeif_fdb_static_entry_t));
BRIDGEIF_WRITE_UNPROTECT(lev);
BRIDGEIF_READ_UNPROTECT(lev);
return ERR_OK;
}
BRIDGEIF_WRITE_UNPROTECT(lev);
}
}
BRIDGEIF_READ_UNPROTECT(lev);
return ERR_VAL;
}
static bridgeif_portmask_t
bridgeif_find_dst_ports(bridgeif_private_t *br, struct eth_addr *dst_addr)
{
int i;
BRIDGEIF_DECL_PROTECT(lev);
BRIDGEIF_READ_PROTECT(lev);
for (i = 0; i < br->max_fdbs_entries; i++) {
if (br->fdbs[i].used) {
if (!memcmp(&br->fdbs[i].addr, dst_addr, sizeof(struct eth_addr))) {
bridgeif_portmask_t ret = br->fdbs[i].dst_ports;
BRIDGEIF_READ_UNPROTECT(lev);
return ret;
}
}
}
if (dst_addr->addr[0] & 1) {
BRIDGEIF_READ_UNPROTECT(lev);
return BR_FLOOD;
}
BRIDGEIF_READ_UNPROTECT(lev);
return bridgeif_fdb_get_dst_ports(br->fdbd, dst_addr);
}
static int
bridgeif_is_local_mac(bridgeif_private_t *br, struct eth_addr *addr)
{
int i;
BRIDGEIF_DECL_PROTECT(lev);
if (!memcmp(br->netif->hwaddr, addr, sizeof(struct eth_addr))) {
return 1;
}
BRIDGEIF_READ_PROTECT(lev);
for (i = 0; i < br->num_ports; i++) {
struct netif *portif = br->ports[i].port_netif;
if (portif != NULL) {
if (!memcmp(portif->hwaddr, addr, sizeof(struct eth_addr))) {
BRIDGEIF_READ_UNPROTECT(lev);
return 1;
}
}
}
BRIDGEIF_READ_UNPROTECT(lev);
return 0;
}
static err_t
bridgeif_send_to_port(bridgeif_private_t *br, struct pbuf *p, u8_t dstport_idx)
{
if (dstport_idx < BRIDGEIF_MAX_PORTS) {
if (dstport_idx < br->max_ports) {
struct netif *portif = br->ports[dstport_idx].port_netif;
if ((portif != NULL) && (portif->linkoutput != NULL)) {
if (netif_get_index(portif) != p->if_idx) {
if (netif_is_link_up(portif)) {
LWIP_DEBUGF(BRIDGEIF_FW_DEBUG, ("br -> flood(%p:%d) -> %d\n", (void *)p, p->if_idx, netif_get_index(portif)));
return portif->linkoutput(portif, p);
}
}
}
}
} else {
LWIP_ASSERT("invalid port index", dstport_idx == BRIDGEIF_MAX_PORTS);
}
return ERR_OK;
}
static err_t
bridgeif_send_to_ports(bridgeif_private_t *br, struct pbuf *p, bridgeif_portmask_t dstports)
{
err_t err, ret_err = ERR_OK;
u8_t i;
bridgeif_portmask_t mask = 1;
BRIDGEIF_DECL_PROTECT(lev);
BRIDGEIF_READ_PROTECT(lev);
for (i = 0; i < BRIDGEIF_MAX_PORTS; i++, mask = (bridgeif_portmask_t)(mask << 1)) {
if (dstports & mask) {
err = bridgeif_send_to_port(br, p, i);
if (err != ERR_OK) {
ret_err = err;
}
}
}
BRIDGEIF_READ_UNPROTECT(lev);
return ret_err;
}
static err_t
bridgeif_output(struct netif *netif, struct pbuf *p)
{
err_t err;
bridgeif_private_t *br = (bridgeif_private_t *)netif->state;
struct eth_addr *dst = (struct eth_addr *)(p->payload);
bridgeif_portmask_t dstports = bridgeif_find_dst_ports(br, dst);
err = bridgeif_send_to_ports(br, p, dstports);
MIB2_STATS_NETIF_ADD(netif, ifoutoctets, p->tot_len);
if (((u8_t *)p->payload)[0] & 1) {
MIB2_STATS_NETIF_INC(netif, ifoutnucastpkts);
} else {
MIB2_STATS_NETIF_INC(netif, ifoutucastpkts);
}
LINK_STATS_INC(link.xmit);
return err;
}
static err_t
bridgeif_input(struct pbuf *p, struct netif *netif)
{
u8_t rx_idx;
bridgeif_portmask_t dstports;
struct eth_addr *src, *dst;
bridgeif_private_t *br;
bridgeif_port_t *port;
if (p == NULL || netif == NULL) {
return ERR_VAL;
}
port = (bridgeif_port_t *)netif_get_client_data(netif, bridgeif_netif_client_id);
LWIP_ASSERT("port data not set", port != NULL);
if (port == NULL || port->bridge == NULL) {
return ERR_VAL;
}
br = (bridgeif_private_t *)port->bridge;
rx_idx = netif_get_index(netif);
p->if_idx = rx_idx;
dst = (struct eth_addr *)p->payload;
src = (struct eth_addr *)(((u8_t *)p->payload) + sizeof(struct eth_addr));
if ((src->addr[0] & 1) == 0) {
bridgeif_fdb_update_src(br->fdbd, src, port->port_num);
}
if (dst->addr[0] & 1) {
dstports = bridgeif_find_dst_ports(br, dst);
bridgeif_send_to_ports(br, p, dstports);
if (dstports & (1 << BRIDGEIF_MAX_PORTS)) {
LWIP_DEBUGF(BRIDGEIF_FW_DEBUG, ("br -> input(%p)\n", (void *)p));
if (br->netif->input(p, br->netif) != ERR_OK) {
pbuf_free(p);
}
} else {
pbuf_free(p);
}
return ERR_OK;
} else {
if (bridgeif_is_local_mac(br, dst)) {
LWIP_DEBUGF(BRIDGEIF_FW_DEBUG, ("br -> input(%p)\n", (void *)p));
return br->netif->input(p, br->netif);
}
dstports = bridgeif_find_dst_ports(br, dst);
bridgeif_send_to_ports(br, p, dstports);
pbuf_free(p);
return ERR_OK;
}
}
#if !BRIDGEIF_PORT_NETIFS_OUTPUT_DIRECT
static err_t
bridgeif_tcpip_input(struct pbuf *p, struct netif *netif)
{
return tcpip_inpkt(p, netif, bridgeif_input);
}
#endif
err_t
bridgeif_init(struct netif *netif)
{
bridgeif_initdata_t *init_data;
bridgeif_private_t *br;
size_t alloc_len_sizet;
mem_size_t alloc_len;
LWIP_ASSERT("netif != NULL", (netif != NULL));
LWIP_ASSERT("bridgeif needs an input callback", (netif->input != NULL));
#if !BRIDGEIF_PORT_NETIFS_OUTPUT_DIRECT
if (netif->input == tcpip_input) {
LWIP_DEBUGF(BRIDGEIF_DEBUG | LWIP_DBG_ON, ("bridgeif does not need tcpip_input, use netif_input/ethernet_input instead\n"));
}
#endif
if (bridgeif_netif_client_id == 0xFF) {
bridgeif_netif_client_id = netif_alloc_client_data_id();
}
init_data = (bridgeif_initdata_t *)netif->state;
LWIP_ASSERT("init_data != NULL", (init_data != NULL));
LWIP_ASSERT("init_data->max_ports <= BRIDGEIF_MAX_PORTS",
init_data->max_ports <= BRIDGEIF_MAX_PORTS);
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)));
alloc_len = (mem_size_t)alloc_len_sizet;
LWIP_ASSERT("alloc_len == alloc_len_sizet", alloc_len == alloc_len_sizet);
LWIP_DEBUGF(BRIDGEIF_DEBUG, ("bridgeif_init: allocating %d bytes for private data\n", (int)alloc_len));
br = (bridgeif_private_t *)mem_calloc(1, alloc_len);
if (br == NULL) {
LWIP_DEBUGF(NETIF_DEBUG, ("bridgeif_init: out of memory\n"));
return ERR_MEM;
}
memcpy(&br->ethaddr, &init_data->ethaddr, sizeof(br->ethaddr));
br->netif = netif;
br->max_ports = init_data->max_ports;
br->ports = (bridgeif_port_t *)(br + 1);
br->max_fdbs_entries = init_data->max_fdb_static_entries;
br->fdbs = (bridgeif_fdb_static_entry_t *)(((u8_t *)(br + 1)) + (init_data->max_ports * sizeof(bridgeif_port_t)));
br->max_fdbd_entries = init_data->max_fdb_dynamic_entries;
br->fdbd = bridgeif_fdb_init(init_data->max_fdb_dynamic_entries);
if (br->fdbd == NULL) {
LWIP_DEBUGF(NETIF_DEBUG, ("bridgeif_init: out of memory in fdb_init\n"));
mem_free(br);
return ERR_MEM;
}
#if LWIP_NETIF_HOSTNAME
netif->hostname = "lwip";
#endif
MIB2_INIT_NETIF(netif, snmp_ifType_ethernet_csmacd, 0);
netif->state = br;
netif->name[0] = IFNAME0;
netif->name[1] = IFNAME1;
#if LWIP_IPV4
netif->output = etharp_output;
#endif
#if LWIP_IPV6
netif->output_ip6 = ethip6_output;
#endif
netif->linkoutput = bridgeif_output;
netif->hwaddr_len = ETH_HWADDR_LEN;
memcpy(netif->hwaddr, &br->ethaddr, ETH_HWADDR_LEN);
netif->mtu = 1500;
netif->flags = NETIF_FLAG_BROADCAST | NETIF_FLAG_ETHARP | NETIF_FLAG_ETHERNET | NETIF_FLAG_IGMP | NETIF_FLAG_MLD6 | NETIF_FLAG_LINK_UP;
#if LWIP_IPV6 && LWIP_IPV6_MLD
if (netif->mld_mac_filter != NULL) {
ip6_addr_t ip6_allnodes_ll;
ip6_addr_set_allnodes_linklocal(&ip6_allnodes_ll);
netif->mld_mac_filter(netif, &ip6_allnodes_ll, NETIF_ADD_MAC_FILTER);
}
#endif
return ERR_OK;
}
err_t
bridgeif_add_port(struct netif *bridgeif, struct netif *portif)
{
bridgeif_private_t *br;
bridgeif_port_t *port;
LWIP_ASSERT("bridgeif != NULL", bridgeif != NULL);
LWIP_ASSERT("bridgeif->state != NULL", bridgeif->state != NULL);
LWIP_ASSERT("portif != NULL", portif != NULL);
if (!(portif->flags & NETIF_FLAG_ETHARP) || !(portif->flags & NETIF_FLAG_ETHERNET)) {
return ERR_VAL;
}
br = (bridgeif_private_t *)bridgeif->state;
if (br->num_ports >= br->max_ports) {
return ERR_VAL;
}
port = &br->ports[br->num_ports];
port->port_netif = portif;
port->port_num = br->num_ports;
port->bridge = br;
br->num_ports++;
#if BRIDGEIF_PORT_NETIFS_OUTPUT_DIRECT
portif->input = bridgeif_input;
#else
portif->input = bridgeif_tcpip_input;
#endif
netif_set_client_data(portif, bridgeif_netif_client_id, port);
netif_clear_flags(portif, NETIF_FLAG_ETHARP);
return ERR_OK;
}
#endif