1195972f6Sopenharmony_ci/** 2195972f6Sopenharmony_ci * @file 3195972f6Sopenharmony_ci * lwIP netif implementing an FDB for IEEE 802.1D MAC Bridge 4195972f6Sopenharmony_ci */ 5195972f6Sopenharmony_ci 6195972f6Sopenharmony_ci/* 7195972f6Sopenharmony_ci * Copyright (c) 2017 Simon Goldschmidt. 8195972f6Sopenharmony_ci * All rights reserved. 9195972f6Sopenharmony_ci * 10195972f6Sopenharmony_ci * Redistribution and use in source and binary forms, with or without modification, 11195972f6Sopenharmony_ci * are permitted provided that the following conditions are met: 12195972f6Sopenharmony_ci * 13195972f6Sopenharmony_ci * 1. Redistributions of source code must retain the above copyright notice, 14195972f6Sopenharmony_ci * this list of conditions and the following disclaimer. 15195972f6Sopenharmony_ci * 2. Redistributions in binary form must reproduce the above copyright notice, 16195972f6Sopenharmony_ci * this list of conditions and the following disclaimer in the documentation 17195972f6Sopenharmony_ci * and/or other materials provided with the distribution. 18195972f6Sopenharmony_ci * 3. The name of the author may not be used to endorse or promote products 19195972f6Sopenharmony_ci * derived from this software without specific prior written permission. 20195972f6Sopenharmony_ci * 21195972f6Sopenharmony_ci * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED 22195972f6Sopenharmony_ci * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF 23195972f6Sopenharmony_ci * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT 24195972f6Sopenharmony_ci * SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, 25195972f6Sopenharmony_ci * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT 26195972f6Sopenharmony_ci * OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 27195972f6Sopenharmony_ci * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 28195972f6Sopenharmony_ci * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING 29195972f6Sopenharmony_ci * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY 30195972f6Sopenharmony_ci * OF SUCH DAMAGE. 31195972f6Sopenharmony_ci * 32195972f6Sopenharmony_ci * This file is part of the lwIP TCP/IP stack. 33195972f6Sopenharmony_ci * 34195972f6Sopenharmony_ci * Author: Simon Goldschmidt <goldsimon@gmx.de> 35195972f6Sopenharmony_ci * 36195972f6Sopenharmony_ci */ 37195972f6Sopenharmony_ci 38195972f6Sopenharmony_ci/** 39195972f6Sopenharmony_ci * @defgroup bridgeif_fdb FDB example code 40195972f6Sopenharmony_ci * @ingroup bridgeif 41195972f6Sopenharmony_ci * This file implements an example for an FDB (Forwarding DataBase) 42195972f6Sopenharmony_ci */ 43195972f6Sopenharmony_ci 44195972f6Sopenharmony_ci#include "netif/bridgeif.h" 45195972f6Sopenharmony_ci#include "lwip/sys.h" 46195972f6Sopenharmony_ci#include "lwip/mem.h" 47195972f6Sopenharmony_ci#include "lwip/timeouts.h" 48195972f6Sopenharmony_ci#include <string.h> 49195972f6Sopenharmony_ci 50195972f6Sopenharmony_ci#define BRIDGEIF_AGE_TIMER_MS 1000 51195972f6Sopenharmony_ci 52195972f6Sopenharmony_ci#define BR_FDB_TIMEOUT_SEC (60*5) /* 5 minutes FDB timeout */ 53195972f6Sopenharmony_ci 54195972f6Sopenharmony_citypedef struct bridgeif_dfdb_entry_s { 55195972f6Sopenharmony_ci u8_t used; 56195972f6Sopenharmony_ci u8_t port; 57195972f6Sopenharmony_ci u32_t ts; 58195972f6Sopenharmony_ci struct eth_addr addr; 59195972f6Sopenharmony_ci} bridgeif_dfdb_entry_t; 60195972f6Sopenharmony_ci 61195972f6Sopenharmony_citypedef struct bridgeif_dfdb_s { 62195972f6Sopenharmony_ci u16_t max_fdb_entries; 63195972f6Sopenharmony_ci bridgeif_dfdb_entry_t *fdb; 64195972f6Sopenharmony_ci} bridgeif_dfdb_t; 65195972f6Sopenharmony_ci 66195972f6Sopenharmony_ci/** 67195972f6Sopenharmony_ci * @ingroup bridgeif_fdb 68195972f6Sopenharmony_ci * A real simple and slow implementation of an auto-learning forwarding database that 69195972f6Sopenharmony_ci * remembers known src mac addresses to know which port to send frames destined for that 70195972f6Sopenharmony_ci * mac address. 71195972f6Sopenharmony_ci * 72195972f6Sopenharmony_ci * ATTENTION: This is meant as an example only, in real-world use, you should 73195972f6Sopenharmony_ci * provide a better implementation :-) 74195972f6Sopenharmony_ci */ 75195972f6Sopenharmony_civoid 76195972f6Sopenharmony_cibridgeif_fdb_update_src(void *fdb_ptr, struct eth_addr *src_addr, u8_t port_idx) 77195972f6Sopenharmony_ci{ 78195972f6Sopenharmony_ci int i; 79195972f6Sopenharmony_ci bridgeif_dfdb_t *fdb = (bridgeif_dfdb_t *)fdb_ptr; 80195972f6Sopenharmony_ci BRIDGEIF_DECL_PROTECT(lev); 81195972f6Sopenharmony_ci BRIDGEIF_READ_PROTECT(lev); 82195972f6Sopenharmony_ci for (i = 0; i < fdb->max_fdb_entries; i++) { 83195972f6Sopenharmony_ci bridgeif_dfdb_entry_t *e = &fdb->fdb[i]; 84195972f6Sopenharmony_ci if (e->used && e->ts) { 85195972f6Sopenharmony_ci if (!memcmp(&e->addr, src_addr, sizeof(struct eth_addr))) { 86195972f6Sopenharmony_ci LWIP_DEBUGF(BRIDGEIF_FDB_DEBUG, ("br: update src %02x:%02x:%02x:%02x:%02x:%02x (from %d) @ idx %d\n", 87195972f6Sopenharmony_ci src_addr->addr[0], src_addr->addr[1], src_addr->addr[2], src_addr->addr[3], src_addr->addr[4], src_addr->addr[5], 88195972f6Sopenharmony_ci port_idx, i)); 89195972f6Sopenharmony_ci BRIDGEIF_WRITE_PROTECT(lev); 90195972f6Sopenharmony_ci e->ts = BR_FDB_TIMEOUT_SEC; 91195972f6Sopenharmony_ci e->port = port_idx; 92195972f6Sopenharmony_ci BRIDGEIF_WRITE_UNPROTECT(lev); 93195972f6Sopenharmony_ci BRIDGEIF_READ_UNPROTECT(lev); 94195972f6Sopenharmony_ci return; 95195972f6Sopenharmony_ci } 96195972f6Sopenharmony_ci } 97195972f6Sopenharmony_ci } 98195972f6Sopenharmony_ci /* not found, allocate new entry from free */ 99195972f6Sopenharmony_ci for (i = 0; i < fdb->max_fdb_entries; i++) { 100195972f6Sopenharmony_ci bridgeif_dfdb_entry_t *e = &fdb->fdb[i]; 101195972f6Sopenharmony_ci if (!e->used || !e->ts) { 102195972f6Sopenharmony_ci BRIDGEIF_WRITE_PROTECT(lev); 103195972f6Sopenharmony_ci /* check again when protected */ 104195972f6Sopenharmony_ci if (!e->used || !e->ts) { 105195972f6Sopenharmony_ci LWIP_DEBUGF(BRIDGEIF_FDB_DEBUG, ("br: create src %02x:%02x:%02x:%02x:%02x:%02x (from %d) @ idx %d\n", 106195972f6Sopenharmony_ci src_addr->addr[0], src_addr->addr[1], src_addr->addr[2], src_addr->addr[3], src_addr->addr[4], src_addr->addr[5], 107195972f6Sopenharmony_ci port_idx, i)); 108195972f6Sopenharmony_ci memcpy(&e->addr, src_addr, sizeof(struct eth_addr)); 109195972f6Sopenharmony_ci e->ts = BR_FDB_TIMEOUT_SEC; 110195972f6Sopenharmony_ci e->port = port_idx; 111195972f6Sopenharmony_ci e->used = 1; 112195972f6Sopenharmony_ci BRIDGEIF_WRITE_UNPROTECT(lev); 113195972f6Sopenharmony_ci BRIDGEIF_READ_UNPROTECT(lev); 114195972f6Sopenharmony_ci return; 115195972f6Sopenharmony_ci } 116195972f6Sopenharmony_ci BRIDGEIF_WRITE_UNPROTECT(lev); 117195972f6Sopenharmony_ci } 118195972f6Sopenharmony_ci } 119195972f6Sopenharmony_ci BRIDGEIF_READ_UNPROTECT(lev); 120195972f6Sopenharmony_ci /* not found, no free entry -> flood */ 121195972f6Sopenharmony_ci} 122195972f6Sopenharmony_ci 123195972f6Sopenharmony_ci/** 124195972f6Sopenharmony_ci * @ingroup bridgeif_fdb 125195972f6Sopenharmony_ci * Walk our list of auto-learnt fdb entries and return a port to forward or BR_FLOOD if unknown 126195972f6Sopenharmony_ci */ 127195972f6Sopenharmony_cibridgeif_portmask_t 128195972f6Sopenharmony_cibridgeif_fdb_get_dst_ports(void *fdb_ptr, struct eth_addr *dst_addr) 129195972f6Sopenharmony_ci{ 130195972f6Sopenharmony_ci int i; 131195972f6Sopenharmony_ci bridgeif_dfdb_t *fdb = (bridgeif_dfdb_t *)fdb_ptr; 132195972f6Sopenharmony_ci BRIDGEIF_DECL_PROTECT(lev); 133195972f6Sopenharmony_ci BRIDGEIF_READ_PROTECT(lev); 134195972f6Sopenharmony_ci for (i = 0; i < fdb->max_fdb_entries; i++) { 135195972f6Sopenharmony_ci bridgeif_dfdb_entry_t *e = &fdb->fdb[i]; 136195972f6Sopenharmony_ci if (e->used && e->ts) { 137195972f6Sopenharmony_ci if (!memcmp(&e->addr, dst_addr, sizeof(struct eth_addr))) { 138195972f6Sopenharmony_ci bridgeif_portmask_t ret = (bridgeif_portmask_t)(1 << e->port); 139195972f6Sopenharmony_ci BRIDGEIF_READ_UNPROTECT(lev); 140195972f6Sopenharmony_ci return ret; 141195972f6Sopenharmony_ci } 142195972f6Sopenharmony_ci } 143195972f6Sopenharmony_ci } 144195972f6Sopenharmony_ci BRIDGEIF_READ_UNPROTECT(lev); 145195972f6Sopenharmony_ci return BR_FLOOD; 146195972f6Sopenharmony_ci} 147195972f6Sopenharmony_ci 148195972f6Sopenharmony_ci/** 149195972f6Sopenharmony_ci * @ingroup bridgeif_fdb 150195972f6Sopenharmony_ci * Aging implementation of our simple fdb 151195972f6Sopenharmony_ci */ 152195972f6Sopenharmony_cistatic void 153195972f6Sopenharmony_cibridgeif_fdb_age_one_second(void *fdb_ptr) 154195972f6Sopenharmony_ci{ 155195972f6Sopenharmony_ci int i; 156195972f6Sopenharmony_ci bridgeif_dfdb_t *fdb; 157195972f6Sopenharmony_ci BRIDGEIF_DECL_PROTECT(lev); 158195972f6Sopenharmony_ci 159195972f6Sopenharmony_ci fdb = (bridgeif_dfdb_t *)fdb_ptr; 160195972f6Sopenharmony_ci BRIDGEIF_READ_PROTECT(lev); 161195972f6Sopenharmony_ci 162195972f6Sopenharmony_ci for (i = 0; i < fdb->max_fdb_entries; i++) { 163195972f6Sopenharmony_ci bridgeif_dfdb_entry_t *e = &fdb->fdb[i]; 164195972f6Sopenharmony_ci if (e->used && e->ts) { 165195972f6Sopenharmony_ci BRIDGEIF_WRITE_PROTECT(lev); 166195972f6Sopenharmony_ci /* check again when protected */ 167195972f6Sopenharmony_ci if (e->used && e->ts) { 168195972f6Sopenharmony_ci if (--e->ts == 0) { 169195972f6Sopenharmony_ci e->used = 0; 170195972f6Sopenharmony_ci } 171195972f6Sopenharmony_ci } 172195972f6Sopenharmony_ci BRIDGEIF_WRITE_UNPROTECT(lev); 173195972f6Sopenharmony_ci } 174195972f6Sopenharmony_ci } 175195972f6Sopenharmony_ci BRIDGEIF_READ_UNPROTECT(lev); 176195972f6Sopenharmony_ci} 177195972f6Sopenharmony_ci 178195972f6Sopenharmony_ci/** Timer callback for fdb aging, called once per second */ 179195972f6Sopenharmony_cistatic void 180195972f6Sopenharmony_cibridgeif_age_tmr(void *arg) 181195972f6Sopenharmony_ci{ 182195972f6Sopenharmony_ci bridgeif_dfdb_t *fdb = (bridgeif_dfdb_t *)arg; 183195972f6Sopenharmony_ci 184195972f6Sopenharmony_ci LWIP_ASSERT("invalid arg", arg != NULL); 185195972f6Sopenharmony_ci 186195972f6Sopenharmony_ci bridgeif_fdb_age_one_second(fdb); 187195972f6Sopenharmony_ci sys_timeout(BRIDGEIF_AGE_TIMER_MS, bridgeif_age_tmr, arg); 188195972f6Sopenharmony_ci} 189195972f6Sopenharmony_ci 190195972f6Sopenharmony_ci/** 191195972f6Sopenharmony_ci * @ingroup bridgeif_fdb 192195972f6Sopenharmony_ci * Init our simple fdb list 193195972f6Sopenharmony_ci */ 194195972f6Sopenharmony_civoid * 195195972f6Sopenharmony_cibridgeif_fdb_init(u16_t max_fdb_entries) 196195972f6Sopenharmony_ci{ 197195972f6Sopenharmony_ci bridgeif_dfdb_t *fdb; 198195972f6Sopenharmony_ci size_t alloc_len_sizet = sizeof(bridgeif_dfdb_t) + (max_fdb_entries * sizeof(bridgeif_dfdb_entry_t)); 199195972f6Sopenharmony_ci mem_size_t alloc_len = (mem_size_t)alloc_len_sizet; 200195972f6Sopenharmony_ci LWIP_ASSERT("alloc_len == alloc_len_sizet", alloc_len == alloc_len_sizet); 201195972f6Sopenharmony_ci LWIP_DEBUGF(BRIDGEIF_DEBUG, ("bridgeif_fdb_init: allocating %d bytes for private FDB data\n", (int)alloc_len)); 202195972f6Sopenharmony_ci fdb = (bridgeif_dfdb_t *)mem_calloc(1, alloc_len); 203195972f6Sopenharmony_ci if (fdb == NULL) { 204195972f6Sopenharmony_ci return NULL; 205195972f6Sopenharmony_ci } 206195972f6Sopenharmony_ci fdb->max_fdb_entries = max_fdb_entries; 207195972f6Sopenharmony_ci fdb->fdb = (bridgeif_dfdb_entry_t *)(fdb + 1); 208195972f6Sopenharmony_ci 209195972f6Sopenharmony_ci sys_timeout(BRIDGEIF_AGE_TIMER_MS, bridgeif_age_tmr, fdb); 210195972f6Sopenharmony_ci 211195972f6Sopenharmony_ci return fdb; 212195972f6Sopenharmony_ci} 213