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atm
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bluetooth
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netflow
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netgraph.h
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ng_UI.c
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ng_UI.h
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ng_async.c
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ng_async.h
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ng_atmllc.c
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ng_atmllc.h
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ng_base.c
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ng_bpf.c
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ng_bpf.h
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ng_bridge.c
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ng_bridge.h
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ng_car.c
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ng_car.h
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ng_checksum.c
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ng_checksum.h
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ng_cisco.c
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ng_cisco.h
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ng_deflate.c
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ng_deflate.h
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ng_device.c
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ng_device.h
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ng_echo.c
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ng_echo.h
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ng_eiface.c
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ng_eiface.h
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ng_etf.c
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ng_etf.h
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ng_ether.c
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ng_ether.h
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ng_ether_echo.c
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ng_ether_echo.h
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ng_frame_relay.c
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ng_frame_relay.h
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ng_gif.c
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ng_gif.h
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ng_gif_demux.c
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ng_gif_demux.h
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ng_hole.c
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ng_hole.h
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ng_hub.c
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ng_hub.h
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ng_iface.c
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ng_iface.h
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ng_ip_input.c
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ng_ip_input.h
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ng_ipfw.c
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ng_ipfw.h
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ng_ksocket.c
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ng_ksocket.h
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ng_l2tp.c
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ng_l2tp.h
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ng_lmi.c
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ng_lmi.h
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ng_macfilter.c
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ng_macfilter.h
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ng_message.h
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ng_mppc.c
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ng_mppc.h
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ng_nat.c
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ng_nat.h
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ng_one2many.c
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ng_one2many.h
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ng_parse.c
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ng_parse.h
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ng_patch.c
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ng_patch.h
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ng_pipe.c
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ng_pipe.h
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ng_ppp.c
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ng_ppp.h
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ng_pppoe.c
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ng_pppoe.h
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ng_pptpgre.c
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ng_pptpgre.h
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ng_pred1.c
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ng_pred1.h
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ng_rfc1490.c
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ng_rfc1490.h
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ng_sample.c
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ng_sample.h
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ng_socket.c
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ng_socket.h
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ng_socketvar.h
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ng_source.c
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ng_source.h
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ng_split.c
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ng_split.h
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ng_sppp.c
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ng_sppp.h
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ng_tag.c
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ng_tag.h
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ng_tcpmss.c
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ng_tcpmss.h
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ng_tee.c
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ng_tee.h
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ng_tty.c
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ng_tty.h
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ng_vjc.c
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ng_vjc.h
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ng_vlan.c
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ng_vlan.h
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Editing: ng_bridge.c
/*- * Copyright (c) 2000 Whistle Communications, Inc. * All rights reserved. * * Subject to the following obligations and disclaimer of warranty, use and * redistribution of this software, in source or object code forms, with or * without modifications are expressly permitted by Whistle Communications; * provided, however, that: * 1. Any and all reproductions of the source or object code must include the * copyright notice above and the following disclaimer of warranties; and * 2. No rights are granted, in any manner or form, to use Whistle * Communications, Inc. trademarks, including the mark "WHISTLE * COMMUNICATIONS" on advertising, endorsements, or otherwise except as * such appears in the above copyright notice or in the software. * * THIS SOFTWARE IS BEING PROVIDED BY WHISTLE COMMUNICATIONS "AS IS", AND * TO THE MAXIMUM EXTENT PERMITTED BY LAW, WHISTLE COMMUNICATIONS MAKES NO * REPRESENTATIONS OR WARRANTIES, EXPRESS OR IMPLIED, REGARDING THIS SOFTWARE, * INCLUDING WITHOUT LIMITATION, ANY AND ALL IMPLIED WARRANTIES OF * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE, OR NON-INFRINGEMENT. * WHISTLE COMMUNICATIONS DOES NOT WARRANT, GUARANTEE, OR MAKE ANY * REPRESENTATIONS REGARDING THE USE OF, OR THE RESULTS OF THE USE OF THIS * SOFTWARE IN TERMS OF ITS CORRECTNESS, ACCURACY, RELIABILITY OR OTHERWISE. * IN NO EVENT SHALL WHISTLE COMMUNICATIONS BE LIABLE FOR ANY DAMAGES * RESULTING FROM OR ARISING OUT OF ANY USE OF THIS SOFTWARE, INCLUDING * WITHOUT LIMITATION, ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, * PUNITIVE, OR CONSEQUENTIAL DAMAGES, PROCUREMENT OF SUBSTITUTE GOODS OR * SERVICES, LOSS OF USE, DATA OR PROFITS, HOWEVER CAUSED AND UNDER ANY * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF * THIS SOFTWARE, EVEN IF WHISTLE COMMUNICATIONS IS ADVISED OF THE POSSIBILITY * OF SUCH DAMAGE. * * Author: Archie Cobbs <archie@freebsd.org> * * $FreeBSD$ */ /* * ng_bridge(4) netgraph node type * * The node performs standard intelligent Ethernet bridging over * each of its connected hooks, or links. A simple loop detection * algorithm is included which disables a link for priv->conf.loopTimeout * seconds when a host is seen to have jumped from one link to * another within priv->conf.minStableAge seconds. * * We keep a hashtable that maps Ethernet addresses to host info, * which is contained in struct ng_bridge_host's. These structures * tell us on which link the host may be found. A host's entry will * expire after priv->conf.maxStaleness seconds. * * This node is optimzed for stable networks, where machines jump * from one port to the other only rarely. */ #include <sys/param.h> #include <sys/systm.h> #include <sys/kernel.h> #include <sys/lock.h> #include <sys/malloc.h> #include <sys/mbuf.h> #include <sys/errno.h> #include <sys/rwlock.h> #include <sys/syslog.h> #include <sys/socket.h> #include <sys/ctype.h> #include <net/if.h> #include <net/if_var.h> #include <net/ethernet.h> #include <net/vnet.h> #include <netinet/in.h> #if 0 /* not used yet */ #include <netinet/ip_fw.h> #endif #include <netgraph/ng_message.h> #include <netgraph/netgraph.h> #include <netgraph/ng_parse.h> #include <netgraph/ng_bridge.h> #ifdef NG_SEPARATE_MALLOC static MALLOC_DEFINE(M_NETGRAPH_BRIDGE, "netgraph_bridge", "netgraph bridge node"); #else #define M_NETGRAPH_BRIDGE M_NETGRAPH #endif /* Per-link private data */ struct ng_bridge_link { hook_p hook; /* netgraph hook */ u_int16_t loopCount; /* loop ignore timer */ struct ng_bridge_link_stats stats; /* link stats */ }; /* Per-node private data */ struct ng_bridge_private { struct ng_bridge_bucket *tab; /* hash table bucket array */ struct ng_bridge_config conf; /* node configuration */ node_p node; /* netgraph node */ u_int numHosts; /* num entries in table */ u_int numBuckets; /* num buckets in table */ u_int hashMask; /* numBuckets - 1 */ int numLinks; /* num connected links */ int persistent; /* can exist w/o hooks */ struct callout timer; /* one second periodic timer */ }; typedef struct ng_bridge_private *priv_p; /* Information about a host, stored in a hash table entry */ struct ng_bridge_hent { struct ng_bridge_host host; /* actual host info */ SLIST_ENTRY(ng_bridge_hent) next; /* next entry in bucket */ }; /* Hash table bucket declaration */ SLIST_HEAD(ng_bridge_bucket, ng_bridge_hent); /* Netgraph node methods */ static ng_constructor_t ng_bridge_constructor; static ng_rcvmsg_t ng_bridge_rcvmsg; static ng_shutdown_t ng_bridge_shutdown; static ng_newhook_t ng_bridge_newhook; static ng_rcvdata_t ng_bridge_rcvdata; static ng_disconnect_t ng_bridge_disconnect; /* Other internal functions */ static struct ng_bridge_host *ng_bridge_get(priv_p priv, const u_char *addr); static int ng_bridge_put(priv_p priv, const u_char *addr, link_p link); static void ng_bridge_rehash(priv_p priv); static void ng_bridge_remove_hosts(priv_p priv, link_p link); static void ng_bridge_timeout(node_p node, hook_p hook, void *arg1, int arg2); static const char *ng_bridge_nodename(node_p node); /* Ethernet broadcast */ static const u_char ng_bridge_bcast_addr[ETHER_ADDR_LEN] = { 0xff, 0xff, 0xff, 0xff, 0xff, 0xff }; /* Compare Ethernet addresses using 32 and 16 bit words instead of bytewise */ #define ETHER_EQUAL(a,b) (((const u_int32_t *)(a))[0] \ == ((const u_int32_t *)(b))[0] \ && ((const u_int16_t *)(a))[2] \ == ((const u_int16_t *)(b))[2]) /* Minimum and maximum number of hash buckets. Must be a power of two. */ #define MIN_BUCKETS (1 << 5) /* 32 */ #define MAX_BUCKETS (1 << 14) /* 16384 */ /* Configuration default values */ #define DEFAULT_LOOP_TIMEOUT 60 #define DEFAULT_MAX_STALENESS (15 * 60) /* same as ARP timeout */ #define DEFAULT_MIN_STABLE_AGE 1 /****************************************************************** NETGRAPH PARSE TYPES ******************************************************************/ /* * How to determine the length of the table returned by NGM_BRIDGE_GET_TABLE */ static int ng_bridge_getTableLength(const struct ng_parse_type *type, const u_char *start, const u_char *buf) { const struct ng_bridge_host_ary *const hary = (const struct ng_bridge_host_ary *)(buf - sizeof(u_int32_t)); return hary->numHosts; } /* Parse type for struct ng_bridge_host_ary */ static const struct ng_parse_struct_field ng_bridge_host_type_fields[] = NG_BRIDGE_HOST_TYPE_INFO(&ng_parse_enaddr_type); static const struct ng_parse_type ng_bridge_host_type = { &ng_parse_struct_type, &ng_bridge_host_type_fields }; static const struct ng_parse_array_info ng_bridge_hary_type_info = { &ng_bridge_host_type, ng_bridge_getTableLength }; static const struct ng_parse_type ng_bridge_hary_type = { &ng_parse_array_type, &ng_bridge_hary_type_info }; static const struct ng_parse_struct_field ng_bridge_host_ary_type_fields[] = NG_BRIDGE_HOST_ARY_TYPE_INFO(&ng_bridge_hary_type); static const struct ng_parse_type ng_bridge_host_ary_type = { &ng_parse_struct_type, &ng_bridge_host_ary_type_fields }; /* Parse type for struct ng_bridge_config */ static const struct ng_parse_struct_field ng_bridge_config_type_fields[] = NG_BRIDGE_CONFIG_TYPE_INFO; static const struct ng_parse_type ng_bridge_config_type = { &ng_parse_struct_type, &ng_bridge_config_type_fields }; /* Parse type for struct ng_bridge_link_stat */ static const struct ng_parse_struct_field ng_bridge_stats_type_fields[] = NG_BRIDGE_STATS_TYPE_INFO; static const struct ng_parse_type ng_bridge_stats_type = { &ng_parse_struct_type, &ng_bridge_stats_type_fields }; /* List of commands and how to convert arguments to/from ASCII */ static const struct ng_cmdlist ng_bridge_cmdlist[] = { { NGM_BRIDGE_COOKIE, NGM_BRIDGE_SET_CONFIG, "setconfig", &ng_bridge_config_type, NULL }, { NGM_BRIDGE_COOKIE, NGM_BRIDGE_GET_CONFIG, "getconfig", NULL, &ng_bridge_config_type }, { NGM_BRIDGE_COOKIE, NGM_BRIDGE_RESET, "reset", NULL, NULL }, { NGM_BRIDGE_COOKIE, NGM_BRIDGE_GET_STATS, "getstats", &ng_parse_uint32_type, &ng_bridge_stats_type }, { NGM_BRIDGE_COOKIE, NGM_BRIDGE_CLR_STATS, "clrstats", &ng_parse_uint32_type, NULL }, { NGM_BRIDGE_COOKIE, NGM_BRIDGE_GETCLR_STATS, "getclrstats", &ng_parse_uint32_type, &ng_bridge_stats_type }, { NGM_BRIDGE_COOKIE, NGM_BRIDGE_GET_TABLE, "gettable", NULL, &ng_bridge_host_ary_type }, { NGM_BRIDGE_COOKIE, NGM_BRIDGE_SET_PERSISTENT, "setpersistent", NULL, NULL }, { 0 } }; /* Node type descriptor */ static struct ng_type ng_bridge_typestruct = { .version = NG_ABI_VERSION, .name = NG_BRIDGE_NODE_TYPE, .constructor = ng_bridge_constructor, .rcvmsg = ng_bridge_rcvmsg, .shutdown = ng_bridge_shutdown, .newhook = ng_bridge_newhook, .rcvdata = ng_bridge_rcvdata, .disconnect = ng_bridge_disconnect, .cmdlist = ng_bridge_cmdlist, }; NETGRAPH_INIT(bridge, &ng_bridge_typestruct); /****************************************************************** NETGRAPH NODE METHODS ******************************************************************/ /* * Node constructor */ static int ng_bridge_constructor(node_p node) { priv_p priv; /* Allocate and initialize private info */ priv = malloc(sizeof(*priv), M_NETGRAPH_BRIDGE, M_WAITOK | M_ZERO); ng_callout_init(&priv->timer); /* Allocate and initialize hash table, etc. */ priv->tab = malloc(MIN_BUCKETS * sizeof(*priv->tab), M_NETGRAPH_BRIDGE, M_WAITOK | M_ZERO); priv->numBuckets = MIN_BUCKETS; priv->hashMask = MIN_BUCKETS - 1; priv->conf.debugLevel = 1; priv->conf.loopTimeout = DEFAULT_LOOP_TIMEOUT; priv->conf.maxStaleness = DEFAULT_MAX_STALENESS; priv->conf.minStableAge = DEFAULT_MIN_STABLE_AGE; /* * This node has all kinds of stuff that could be screwed by SMP. * Until it gets it's own internal protection, we go through in * single file. This could hurt a machine bridging between two * GB ethernets so it should be fixed. * When it's fixed the process SHOULD NOT SLEEP, spinlocks please! * (and atomic ops ) */ NG_NODE_FORCE_WRITER(node); NG_NODE_SET_PRIVATE(node, priv); priv->node = node; /* Start timer; timer is always running while node is alive */ ng_callout(&priv->timer, node, NULL, hz, ng_bridge_timeout, NULL, 0); /* Done */ return (0); } /* * Method for attaching a new hook */ static int ng_bridge_newhook(node_p node, hook_p hook, const char *name) { const priv_p priv = NG_NODE_PRIVATE(node); /* Check for a link hook */ if (strlen(name) > strlen(NG_BRIDGE_HOOK_LINK_PREFIX)) { char linkName[NG_HOOKSIZ]; u_int32_t linkNum; link_p link; /* primitive parsing */ linkNum = strtoul(name + strlen(NG_BRIDGE_HOOK_LINK_PREFIX), NULL, 10); /* validation by comparing against the reconstucted name */ snprintf(linkName, sizeof(linkName), "%s%u", NG_BRIDGE_HOOK_LINK_PREFIX, linkNum); if (strcmp(linkName, name) != 0) return (EINVAL); if(NG_PEER_NODE(hook) == node) return (ELOOP); link = malloc(sizeof(*link), M_NETGRAPH_BRIDGE, M_WAITOK|M_ZERO); if (link == NULL) return (ENOMEM); link->hook = hook; NG_HOOK_SET_PRIVATE(hook, link); priv->numLinks++; return (0); } /* Unknown hook name */ return (EINVAL); } /* * Receive a control message */ static int ng_bridge_reset_link(hook_p hook, void *arg __unused) { link_p priv = NG_HOOK_PRIVATE(hook); priv->loopCount = 0; bzero(&priv->stats, sizeof(priv->stats)); return (1); } static int ng_bridge_rcvmsg(node_p node, item_p item, hook_p lasthook) { const priv_p priv = NG_NODE_PRIVATE(node); struct ng_mesg *resp = NULL; int error = 0; struct ng_mesg *msg; NGI_GET_MSG(item, msg); switch (msg->header.typecookie) { #ifdef NGM_BRIDGE_TABLE_ABI case NGM_BRIDGE_COOKIE_TBL: switch (msg->header.cmd) { case NGM_BRIDGE_GET_CONFIG: { struct ng_bridge_config_tbl *conf; NG_MKRESPONSE(resp, msg, sizeof(*conf), M_NOWAIT|M_ZERO); if (resp == NULL) { error = ENOMEM; break; } conf = (struct ng_bridge_config_tbl *)resp->data; conf->cfg = priv->conf; break; } case NGM_BRIDGE_SET_CONFIG: { struct ng_bridge_config_tbl *conf; if (msg->header.arglen != sizeof(*conf)) { error = EINVAL; break; } conf = (struct ng_bridge_config_tbl *)msg->data; priv->conf = conf->cfg; break; } case NGM_BRIDGE_GET_TABLE: { struct ng_bridge_host_tbl_ary *ary; struct ng_bridge_hent *hent; int i, bucket; NG_MKRESPONSE(resp, msg, sizeof(*ary) + (priv->numHosts * sizeof(*ary->hosts)), M_NOWAIT); if (resp == NULL) { error = ENOMEM; break; } ary = (struct ng_bridge_host_tbl_ary *)resp->data; ary->numHosts = priv->numHosts; i = 0; for (bucket = 0; bucket < priv->numBuckets; bucket++) { SLIST_FOREACH(hent, &priv->tab[bucket], next) { memcpy(ary->hosts[i].addr, hent->host.addr, sizeof(ary->hosts[i].addr)); ary->hosts[i].age = hent->host.age; ary->hosts[i].staleness = hent->host.staleness; ary->hosts[i].linkNum = strtol( NG_HOOK_NAME(hent->host.link->hook) + strlen(NG_BRIDGE_HOOK_LINK_PREFIX), NULL, 10); i++; } } break; } } /* If already handled break, otherwise use new ABI. */ if (resp != NULL || error != 0) break; #endif /* NGM_BRIDGE_TABLE_ABI */ case NGM_BRIDGE_COOKIE: switch (msg->header.cmd) { case NGM_BRIDGE_GET_CONFIG: { struct ng_bridge_config *conf; NG_MKRESPONSE(resp, msg, sizeof(struct ng_bridge_config), M_NOWAIT); if (resp == NULL) { error = ENOMEM; break; } conf = (struct ng_bridge_config *)resp->data; *conf = priv->conf; /* no sanity checking needed */ break; } case NGM_BRIDGE_SET_CONFIG: { struct ng_bridge_config *conf; if (msg->header.arglen != sizeof(struct ng_bridge_config)) { error = EINVAL; break; } conf = (struct ng_bridge_config *)msg->data; priv->conf = *conf; break; } case NGM_BRIDGE_RESET: { hook_p rethook; /* Flush all entries in the hash table */ ng_bridge_remove_hosts(priv, NULL); /* Reset all loop detection counters and stats */ NG_NODE_FOREACH_HOOK(node, ng_bridge_reset_link, NULL, rethook); break; } case NGM_BRIDGE_GET_STATS: case NGM_BRIDGE_CLR_STATS: case NGM_BRIDGE_GETCLR_STATS: { hook_p hook; link_p link; char linkName[NG_HOOKSIZ]; /* Get link number */ if (msg->header.arglen != sizeof(u_int32_t)) { error = EINVAL; break; } snprintf(linkName, sizeof(linkName), "%s%u", NG_BRIDGE_HOOK_LINK_PREFIX, *((u_int32_t *)msg->data)); if ((hook = ng_findhook(node, linkName)) == NULL) { error = ENOTCONN; break; } link = NG_HOOK_PRIVATE(hook); /* Get/clear stats */ if (msg->header.cmd != NGM_BRIDGE_CLR_STATS) { NG_MKRESPONSE(resp, msg, sizeof(link->stats), M_NOWAIT); if (resp == NULL) { error = ENOMEM; break; } bcopy(&link->stats, resp->data, sizeof(link->stats)); } if (msg->header.cmd != NGM_BRIDGE_GET_STATS) bzero(&link->stats, sizeof(link->stats)); break; } case NGM_BRIDGE_GET_TABLE: { struct ng_bridge_host_ary *ary; struct ng_bridge_hent *hent; int i = 0, bucket; NG_MKRESPONSE(resp, msg, sizeof(*ary) + (priv->numHosts * sizeof(*ary->hosts)), M_NOWAIT); if (resp == NULL) { error = ENOMEM; break; } ary = (struct ng_bridge_host_ary *)resp->data; ary->numHosts = priv->numHosts; for (bucket = 0; bucket < priv->numBuckets; bucket++) { SLIST_FOREACH(hent, &priv->tab[bucket], next) { memcpy(ary->hosts[i].addr, hent->host.addr, sizeof(ary->hosts[i].addr)); ary->hosts[i].age = hent->host.age; ary->hosts[i].staleness = hent->host.staleness; strncpy(ary->hosts[i].hook, NG_HOOK_NAME(hent->host.link->hook), sizeof(ary->hosts[i].hook)); i++; } } break; } case NGM_BRIDGE_SET_PERSISTENT: { priv->persistent = 1; break; } default: error = EINVAL; break; } break; default: error = EINVAL; break; } /* Done */ NG_RESPOND_MSG(error, node, item, resp); NG_FREE_MSG(msg); return (error); } /* * Receive data on a hook */ struct ng_bridge_send_ctx { link_p foundFirst, incoming; struct mbuf * m; int manycast, error; }; static int ng_bridge_send_ctx(hook_p dst, void *arg) { struct ng_bridge_send_ctx *ctx = arg; link_p destLink = NG_HOOK_PRIVATE(dst); struct mbuf *m2 = NULL; int error = 0; /* Skip incoming link */ if (destLink == ctx->incoming) { return (1); } if (ctx->foundFirst == NULL) { /* * This is the first usable link we have found. * Reserve it for the originals. * If we never find another we save a copy. */ ctx->foundFirst = destLink; return (1); } /* * It's usable link but not the reserved (first) one. * Copy mbuf info for sending. */ m2 = m_dup(ctx->m, M_NOWAIT); /* XXX m_copypacket() */ if (m2 == NULL) { ctx->incoming->stats.memoryFailures++; ctx->error = ENOBUFS; return (0); /* abort loop */ } /* Update stats */ destLink->stats.xmitPackets++; destLink->stats.xmitOctets += m2->m_pkthdr.len; switch (ctx->manycast) { default: /* unknown unicast */ break; case 1: /* multicast */ destLink->stats.xmitMulticasts++; break; case 2: /* broadcast */ destLink->stats.xmitBroadcasts++; break; } /* Send packet */ NG_SEND_DATA_ONLY(error, destLink->hook, m2); if(error) ctx->error = error; return (1); } static int ng_bridge_rcvdata(hook_p hook, item_p item) { const node_p node = NG_HOOK_NODE(hook); const priv_p priv = NG_NODE_PRIVATE(node); struct ng_bridge_host *host; struct ether_header *eh; struct ng_bridge_send_ctx ctx = { 0 }; hook_p ret; NGI_GET_M(item, ctx.m); ctx.incoming = NG_HOOK_PRIVATE(hook); /* Sanity check packet and pull up header */ if (ctx.m->m_pkthdr.len < ETHER_HDR_LEN) { ctx.incoming->stats.recvRunts++; NG_FREE_ITEM(item); NG_FREE_M(ctx.m); return (EINVAL); } if (ctx.m->m_len < ETHER_HDR_LEN && !(ctx.m = m_pullup(ctx.m, ETHER_HDR_LEN))) { ctx.incoming->stats.memoryFailures++; NG_FREE_ITEM(item); return (ENOBUFS); } eh = mtod(ctx.m, struct ether_header *); if ((eh->ether_shost[0] & 1) != 0) { ctx.incoming->stats.recvInvalid++; NG_FREE_ITEM(item); NG_FREE_M(ctx.m); return (EINVAL); } /* Is link disabled due to a loopback condition? */ if (ctx.incoming->loopCount != 0) { ctx.incoming->stats.loopDrops++; NG_FREE_ITEM(item); NG_FREE_M(ctx.m); return (ELOOP); /* XXX is this an appropriate error? */ } /* Update stats */ ctx.incoming->stats.recvPackets++; ctx.incoming->stats.recvOctets += ctx.m->m_pkthdr.len; if ((ctx.manycast = (eh->ether_dhost[0] & 1)) != 0) { if (ETHER_EQUAL(eh->ether_dhost, ng_bridge_bcast_addr)) { ctx.incoming->stats.recvBroadcasts++; ctx.manycast = 2; } else ctx.incoming->stats.recvMulticasts++; } /* Look up packet's source Ethernet address in hashtable */ if ((host = ng_bridge_get(priv, eh->ether_shost)) != NULL) { /* Update time since last heard from this host */ host->staleness = 0; /* Did host jump to a different link? */ if (host->link != ctx.incoming) { /* * If the host's old link was recently established * on the old link and it's already jumped to a new * link, declare a loopback condition. */ if (host->age < priv->conf.minStableAge) { /* Log the problem */ if (priv->conf.debugLevel >= 2) { struct ifnet *ifp = ctx.m->m_pkthdr.rcvif; char suffix[32]; if (ifp != NULL) snprintf(suffix, sizeof(suffix), " (%s)", ifp->if_xname); else *suffix = '\0'; log(LOG_WARNING, "ng_bridge: %s:" " loopback detected on %s%s\n", ng_bridge_nodename(node), NG_HOOK_NAME(hook), suffix); } /* Mark link as linka non grata */ ctx.incoming->loopCount = priv->conf.loopTimeout; ctx.incoming->stats.loopDetects++; /* Forget all hosts on this link */ ng_bridge_remove_hosts(priv, ctx.incoming); /* Drop packet */ ctx.incoming->stats.loopDrops++; NG_FREE_ITEM(item); NG_FREE_M(ctx.m); return (ELOOP); /* XXX appropriate? */ } /* Move host over to new link */ host->link = ctx.incoming; host->age = 0; } } else { if (!ng_bridge_put(priv, eh->ether_shost, ctx.incoming)) { ctx.incoming->stats.memoryFailures++; NG_FREE_ITEM(item); NG_FREE_M(ctx.m); return (ENOMEM); } } /* Run packet through ipfw processing, if enabled */ #if 0 if (priv->conf.ipfw[linkNum] && V_fw_enable && V_ip_fw_chk_ptr != NULL) { /* XXX not implemented yet */ } #endif /* * If unicast and destination host known, deliver to host's link, * unless it is the same link as the packet came in on. */ if (!ctx.manycast) { /* Determine packet destination link */ if ((host = ng_bridge_get(priv, eh->ether_dhost)) != NULL) { link_p destLink = host->link; /* If destination same as incoming link, do nothing */ if (destLink == ctx.incoming) { NG_FREE_ITEM(item); NG_FREE_M(ctx.m); return (0); } /* Deliver packet out the destination link */ destLink->stats.xmitPackets++; destLink->stats.xmitOctets += ctx.m->m_pkthdr.len; NG_FWD_NEW_DATA(ctx.error, item, destLink->hook, ctx.m); return (ctx.error); } /* Destination host is not known */ ctx.incoming->stats.recvUnknown++; } /* Distribute unknown, multicast, broadcast pkts to all other links */ NG_NODE_FOREACH_HOOK(node, ng_bridge_send_ctx, &ctx, ret); /* If we never saw a good link, leave. */ if (ctx.foundFirst == NULL || ctx.error != 0) { NG_FREE_ITEM(item); NG_FREE_M(ctx.m); return (ctx.error); } /* * If we've sent all the others, send the original * on the first link we found. */ NG_FWD_NEW_DATA(ctx.error, item, ctx.foundFirst->hook, ctx.m); return (ctx.error); } /* * Shutdown node */ static int ng_bridge_shutdown(node_p node) { const priv_p priv = NG_NODE_PRIVATE(node); /* * Shut down everything including the timer. Even if the * callout has already been dequeued and is about to be * run, ng_bridge_timeout() won't be fired as the node * is already marked NGF_INVALID, so we're safe to free * the node now. */ KASSERT(priv->numLinks == 0 && priv->numHosts == 0, ("%s: numLinks=%d numHosts=%d", __func__, priv->numLinks, priv->numHosts)); ng_uncallout(&priv->timer, node); NG_NODE_SET_PRIVATE(node, NULL); NG_NODE_UNREF(node); free(priv->tab, M_NETGRAPH_BRIDGE); free(priv, M_NETGRAPH_BRIDGE); return (0); } /* * Hook disconnection. */ static int ng_bridge_disconnect(hook_p hook) { const priv_p priv = NG_NODE_PRIVATE(NG_HOOK_NODE(hook)); link_p link = NG_HOOK_PRIVATE(hook); /* Remove all hosts associated with this link */ ng_bridge_remove_hosts(priv, link); /* Free associated link information */ free(link, M_NETGRAPH_BRIDGE); priv->numLinks--; /* If no more hooks, go away */ if ((NG_NODE_NUMHOOKS(NG_HOOK_NODE(hook)) == 0) && (NG_NODE_IS_VALID(NG_HOOK_NODE(hook))) && !priv->persistent) { ng_rmnode_self(NG_HOOK_NODE(hook)); } return (0); } /****************************************************************** HASH TABLE FUNCTIONS ******************************************************************/ /* * Hash algorithm */ #define HASH(addr,mask) ( (((const u_int16_t *)(addr))[0] \ ^ ((const u_int16_t *)(addr))[1] \ ^ ((const u_int16_t *)(addr))[2]) & (mask) ) /* * Find a host entry in the table. */ static struct ng_bridge_host * ng_bridge_get(priv_p priv, const u_char *addr) { const int bucket = HASH(addr, priv->hashMask); struct ng_bridge_hent *hent; SLIST_FOREACH(hent, &priv->tab[bucket], next) { if (ETHER_EQUAL(hent->host.addr, addr)) return (&hent->host); } return (NULL); } /* * Add a new host entry to the table. This assumes the host doesn't * already exist in the table. Returns 1 on success, 0 if there * was a memory allocation failure. */ static int ng_bridge_put(priv_p priv, const u_char *addr, link_p link) { const int bucket = HASH(addr, priv->hashMask); struct ng_bridge_hent *hent; #ifdef INVARIANTS /* Assert that entry does not already exist in hashtable */ SLIST_FOREACH(hent, &priv->tab[bucket], next) { KASSERT(!ETHER_EQUAL(hent->host.addr, addr), ("%s: entry %6D exists in table", __func__, addr, ":")); } #endif /* Allocate and initialize new hashtable entry */ hent = malloc(sizeof(*hent), M_NETGRAPH_BRIDGE, M_NOWAIT); if (hent == NULL) return (0); bcopy(addr, hent->host.addr, ETHER_ADDR_LEN); hent->host.link = link; hent->host.staleness = 0; hent->host.age = 0; /* Add new element to hash bucket */ SLIST_INSERT_HEAD(&priv->tab[bucket], hent, next); priv->numHosts++; /* Resize table if necessary */ ng_bridge_rehash(priv); return (1); } /* * Resize the hash table. We try to maintain the number of buckets * such that the load factor is in the range 0.25 to 1.0. * * If we can't get the new memory then we silently fail. This is OK * because things will still work and we'll try again soon anyway. */ static void ng_bridge_rehash(priv_p priv) { struct ng_bridge_bucket *newTab; int oldBucket, newBucket; int newNumBuckets; u_int newMask; /* Is table too full or too empty? */ if (priv->numHosts > priv->numBuckets && (priv->numBuckets << 1) <= MAX_BUCKETS) newNumBuckets = priv->numBuckets << 1; else if (priv->numHosts < (priv->numBuckets >> 2) && (priv->numBuckets >> 2) >= MIN_BUCKETS) newNumBuckets = priv->numBuckets >> 2; else return; newMask = newNumBuckets - 1; /* Allocate and initialize new table */ newTab = malloc(newNumBuckets * sizeof(*newTab), M_NETGRAPH_BRIDGE, M_NOWAIT | M_ZERO); if (newTab == NULL) return; /* Move all entries from old table to new table */ for (oldBucket = 0; oldBucket < priv->numBuckets; oldBucket++) { struct ng_bridge_bucket *const oldList = &priv->tab[oldBucket]; while (!SLIST_EMPTY(oldList)) { struct ng_bridge_hent *const hent = SLIST_FIRST(oldList); SLIST_REMOVE_HEAD(oldList, next); newBucket = HASH(hent->host.addr, newMask); SLIST_INSERT_HEAD(&newTab[newBucket], hent, next); } } /* Replace old table with new one */ if (priv->conf.debugLevel >= 3) { log(LOG_INFO, "ng_bridge: %s: table size %d -> %d\n", ng_bridge_nodename(priv->node), priv->numBuckets, newNumBuckets); } free(priv->tab, M_NETGRAPH_BRIDGE); priv->numBuckets = newNumBuckets; priv->hashMask = newMask; priv->tab = newTab; return; } /****************************************************************** MISC FUNCTIONS ******************************************************************/ /* * Remove all hosts associated with a specific link from the hashtable. * If linkNum == -1, then remove all hosts in the table. */ static void ng_bridge_remove_hosts(priv_p priv, link_p link) { int bucket; for (bucket = 0; bucket < priv->numBuckets; bucket++) { struct ng_bridge_hent **hptr = &SLIST_FIRST(&priv->tab[bucket]); while (*hptr != NULL) { struct ng_bridge_hent *const hent = *hptr; if (link == NULL || hent->host.link == link) { *hptr = SLIST_NEXT(hent, next); free(hent, M_NETGRAPH_BRIDGE); priv->numHosts--; } else hptr = &SLIST_NEXT(hent, next); } } } /* * Handle our once-per-second timeout event. We do two things: * we decrement link->loopCount for those links being muted due to * a detected loopback condition, and we remove any hosts from * the hashtable whom we haven't heard from in a long while. */ static int ng_bridge_unmute(hook_p hook, void *arg) { link_p link = NG_HOOK_PRIVATE(hook); node_p node = NG_HOOK_NODE(hook); priv_p priv = NG_NODE_PRIVATE(node); int *counter = arg; if (link->loopCount != 0) { link->loopCount--; if (link->loopCount == 0 && priv->conf.debugLevel >= 2) { log(LOG_INFO, "ng_bridge: %s:" " restoring looped back %s\n", ng_bridge_nodename(node), NG_HOOK_NAME(hook)); } } (*counter)++; return (1); } static void ng_bridge_timeout(node_p node, hook_p hook, void *arg1, int arg2) { const priv_p priv = NG_NODE_PRIVATE(node); int bucket; int counter = 0; hook_p ret; /* Update host time counters and remove stale entries */ for (bucket = 0; bucket < priv->numBuckets; bucket++) { struct ng_bridge_hent **hptr = &SLIST_FIRST(&priv->tab[bucket]); while (*hptr != NULL) { struct ng_bridge_hent *const hent = *hptr; /* Remove hosts we haven't heard from in a while */ if (++hent->host.staleness >= priv->conf.maxStaleness) { *hptr = SLIST_NEXT(hent, next); free(hent, M_NETGRAPH_BRIDGE); priv->numHosts--; } else { if (hent->host.age < 0xffff) hent->host.age++; hptr = &SLIST_NEXT(hent, next); counter++; } } } KASSERT(priv->numHosts == counter, ("%s: hosts: %d != %d", __func__, priv->numHosts, counter)); /* Decrease table size if necessary */ ng_bridge_rehash(priv); /* Decrease loop counter on muted looped back links */ counter = 0; NG_NODE_FOREACH_HOOK(node, ng_bridge_unmute, &counter, ret); KASSERT(priv->numLinks == counter, ("%s: links: %d != %d", __func__, priv->numLinks, counter)); /* Register a new timeout, keeping the existing node reference */ ng_callout(&priv->timer, node, NULL, hz, ng_bridge_timeout, NULL, 0); } /* * Return node's "name", even if it doesn't have one. */ static const char * ng_bridge_nodename(node_p node) { static char name[NG_NODESIZ]; if (NG_NODE_HAS_NAME(node)) snprintf(name, sizeof(name), "%s", NG_NODE_NAME(node)); else snprintf(name, sizeof(name), "[%x]", ng_node2ID(node)); return name; }
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