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b0ec0f27 1/* Copyright (c) 2008, 2009, 2010, 2011 Nicira Networks
c93b1d6a 2 *
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3 * Licensed under the Apache License, Version 2.0 (the "License");
4 * you may not use this file except in compliance with the License.
5 * You may obtain a copy of the License at:
064af421 6 *
a14bc59f 7 * http://www.apache.org/licenses/LICENSE-2.0
064af421 8 *
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9 * Unless required by applicable law or agreed to in writing, software
10 * distributed under the License is distributed on an "AS IS" BASIS,
11 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12 * See the License for the specific language governing permissions and
13 * limitations under the License.
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14 */
15
16#include <config.h>
17#include "bridge.h"
10a24935 18#include "byte-order.h"
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19#include <assert.h>
20#include <errno.h>
21#include <arpa/inet.h>
22#include <ctype.h>
23#include <inttypes.h>
9d82ec47 24#include <sys/socket.h>
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25#include <net/if.h>
26#include <openflow/openflow.h>
27#include <signal.h>
28#include <stdlib.h>
29#include <strings.h>
30#include <sys/stat.h>
31#include <sys/socket.h>
7e40e21d 32#include <sys/types.h>
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33#include <unistd.h>
34#include "bitmap.h"
b31bcf60 35#include "cfm.h"
cf3fad8a 36#include "classifier.h"
064af421 37#include "coverage.h"
a7ff9bd7 38#include "daemon.h"
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39#include "dirs.h"
40#include "dpif.h"
41#include "dynamic-string.h"
42#include "flow.h"
43#include "hash.h"
d9a8717a 44#include "hmap.h"
cd11000b 45#include "jsonrpc.h"
6aa74308 46#include "lacp.h"
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47#include "list.h"
48#include "mac-learning.h"
49#include "netdev.h"
cdee00fd 50#include "netlink.h"
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51#include "odp-util.h"
52#include "ofp-print.h"
53#include "ofpbuf.h"
d65349ea 54#include "ofproto/netflow.h"
8cd4882f 55#include "ofproto/ofproto.h"
dd0d105c 56#include "ovsdb-data.h"
da285df4 57#include "packets.h"
064af421 58#include "poll-loop.h"
064af421 59#include "process.h"
76343538 60#include "sha1.h"
6c88d577 61#include "shash.h"
064af421 62#include "socket-util.h"
fe55ad15 63#include "stream-ssl.h"
064af421 64#include "svec.h"
ce887677 65#include "system-stats.h"
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66#include "timeval.h"
67#include "util.h"
da285df4 68#include "unixctl.h"
064af421 69#include "vconn.h"
b36682d8 70#include "vswitchd/vswitch-idl.h"
064af421 71#include "xenserver.h"
5136ce49 72#include "vlog.h"
72b06300 73#include "sflow_api.h"
064af421 74
d98e6007 75VLOG_DEFINE_THIS_MODULE(bridge);
064af421 76
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77COVERAGE_DEFINE(bridge_flush);
78COVERAGE_DEFINE(bridge_process_flow);
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79COVERAGE_DEFINE(bridge_process_cfm);
80COVERAGE_DEFINE(bridge_process_lacp);
d76f09ea 81COVERAGE_DEFINE(bridge_reconfigure);
750d79a5 82COVERAGE_DEFINE(bridge_lacp_update);
d76f09ea 83
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84struct dst {
85 uint16_t vlan;
86 uint16_t dp_ifidx;
87};
88
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89struct dst_set {
90 struct dst builtin[32];
91 struct dst *dsts;
92 size_t n, allocated;
93};
94
95static void dst_set_init(struct dst_set *);
96static void dst_set_add(struct dst_set *, const struct dst *);
97static void dst_set_free(struct dst_set *);
98
064af421 99struct iface {
0c6aea3f 100 /* These members are always valid. */
83db7968 101 struct list port_elem; /* Element in struct port's "ifaces" list. */
064af421 102 struct port *port; /* Containing port. */
064af421 103 char *name; /* Host network device name. */
064af421 104 tag_type tag; /* Tag associated with this interface. */
064af421 105 long long delay_expires; /* Time after which 'enabled' may change. */
064af421 106
0c6aea3f 107 /* These members are valid only after bridge_reconfigure() causes them to
1e0b752d 108 * be initialized. */
d9a8717a 109 struct hmap_node dp_ifidx_node; /* In struct bridge's "ifaces" hmap. */
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110 int dp_ifidx; /* Index within kernel datapath. */
111 struct netdev *netdev; /* Network device. */
064af421 112 bool enabled; /* May be chosen for flows? */
c835c3bf 113 bool up; /* Is the interface up? */
6cefe1da 114 const char *type; /* Usually same as cfg->type. */
76343538 115 const struct ovsrec_interface *cfg;
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116
117 /* LACP information. */
6aa74308 118 uint16_t lacp_priority; /* LACP port priority. */
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119};
120
121#define BOND_MASK 0xff
122struct bond_entry {
c17f0d5e 123 struct iface *iface; /* Assigned iface, or NULL if none. */
064af421 124 uint64_t tx_bytes; /* Count of bytes recently transmitted. */
c0cb6f59 125 tag_type tag; /* Tag for bond_entry<->iface association. */
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126};
127
27dcaa1a 128enum bond_mode {
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129 BM_TCP, /* Transport Layer Load Balance. */
130 BM_SLB, /* Source Load Balance. */
27dcaa1a 131 BM_AB /* Active Backup. */
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132};
133
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134#define MAX_MIRRORS 32
135typedef uint32_t mirror_mask_t;
136#define MIRROR_MASK_C(X) UINT32_C(X)
137BUILD_ASSERT_DECL(sizeof(mirror_mask_t) * CHAR_BIT >= MAX_MIRRORS);
138struct mirror {
139 struct bridge *bridge;
140 size_t idx;
141 char *name;
dd0d105c 142 struct uuid uuid; /* UUID of this "mirror" record in database. */
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143
144 /* Selection criteria. */
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145 struct shash src_ports; /* Name is port name; data is always NULL. */
146 struct shash dst_ports; /* Name is port name; data is always NULL. */
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147 int *vlans;
148 size_t n_vlans;
149
150 /* Output. */
151 struct port *out_port;
152 int out_vlan;
153};
154
155#define FLOOD_PORT ((struct port *) 1) /* The 'flood' output port. */
156struct port {
157 struct bridge *bridge;
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158 struct hmap_node hmap_node; /* Element in struct bridge's "ports" hmap. */
159 char *name;
160
064af421 161 int vlan; /* -1=trunk port, else a 12-bit VLAN ID. */
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162 unsigned long *trunks; /* Bitmap of trunked VLANs, if 'vlan' == -1.
163 * NULL if all VLANs are trunked. */
1e0b752d 164 const struct ovsrec_port *cfg;
064af421 165
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166 /* Monitoring. */
167 struct netdev_monitor *monitor; /* Tracks carrier. NULL if miimon. */
168 long long int miimon_interval; /* Miimon status refresh interval. */
169 long long int miimon_next_update; /* Time of next miimon update. */
170
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171 /* An ordinary bridge port has 1 interface.
172 * A bridge port for bonding has at least 2 interfaces. */
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173 struct list ifaces; /* List of "struct iface"s. */
174 size_t n_ifaces; /* list_size(ifaces). */
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175
176 /* Bonding info. */
27dcaa1a 177 enum bond_mode bond_mode; /* Type of the bond. BM_SLB is the default. */
990cda85 178 struct iface *active_iface; /* iface on which bcasts accepted, or NULL. */
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179 tag_type no_ifaces_tag; /* Tag for flows when all ifaces disabled. */
180 int updelay, downdelay; /* Delay before iface goes up/down, in ms. */
76343538 181 bool bond_fake_iface; /* Fake a bond interface for legacy compat? */
e5ae7df8 182 long long int bond_next_fake_iface_update; /* Time of next update. */
be02e7c3 183
c25c91fd 184 /* LACP information. */
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185 struct lacp *lacp; /* LACP object. NULL if LACP is disabled. */
186 bool lacp_active; /* True if LACP is active */
269340fa 187 bool lacp_fast; /* True if LACP is in fast mode. */
c25c91fd 188 uint16_t lacp_priority; /* LACP system priority. */
c25c91fd 189
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190 /* SLB specific bonding info. */
191 struct bond_entry *bond_hash; /* An array of (BOND_MASK + 1) elements. */
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192 int bond_rebalance_interval; /* Interval between rebalances, in ms. */
193 long long int bond_next_rebalance; /* Next rebalancing time. */
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194
195 /* Port mirroring info. */
196 mirror_mask_t src_mirrors; /* Mirrors triggered when packet received. */
197 mirror_mask_t dst_mirrors; /* Mirrors triggered when packet sent. */
198 bool is_mirror_output_port; /* Does port mirroring send frames here? */
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199};
200
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201struct bridge {
202 struct list node; /* Node in global list of bridges. */
203 char *name; /* User-specified arbitrary name. */
93dfc067 204 struct mac_learning *ml; /* MAC learning table. */
abe457eb 205 uint8_t ea[ETH_ADDR_LEN]; /* Bridge Ethernet Address. */
064af421 206 uint8_t default_ea[ETH_ADDR_LEN]; /* Default MAC. */
1e0b752d 207 const struct ovsrec_bridge *cfg;
064af421 208
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209 /* OpenFlow switch processing. */
210 struct ofproto *ofproto; /* OpenFlow switch. */
211
212 /* Kernel datapath information. */
c228a364 213 struct dpif *dpif; /* Datapath. */
d9a8717a 214 struct hmap ifaces; /* Contains "struct iface"s. */
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215
216 /* Bridge ports. */
8052fb14 217 struct hmap ports; /* "struct port"s indexed by name. */
4a1ee6ae 218 struct shash iface_by_name; /* "struct iface"s indexed by name. */
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219
220 /* Bonding. */
221 bool has_bonded_ports;
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222
223 /* Flow tracking. */
224 bool flush;
225
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226 /* Port mirroring. */
227 struct mirror *mirrors[MAX_MIRRORS];
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228};
229
230/* List of all bridges. */
231static struct list all_bridges = LIST_INITIALIZER(&all_bridges);
232
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233/* OVSDB IDL used to obtain configuration. */
234static struct ovsdb_idl *idl;
235
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236/* Each time this timer expires, the bridge fetches systems and interface
237 * statistics and pushes them into the database. */
238#define STATS_INTERVAL (5 * 1000) /* In milliseconds. */
239static long long int stats_timer = LLONG_MIN;
018f1525 240
1a6f1e2a 241static struct bridge *bridge_create(const struct ovsrec_bridge *br_cfg);
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242static void bridge_destroy(struct bridge *);
243static struct bridge *bridge_lookup(const char *name);
8ca79daa 244static unixctl_cb_func bridge_unixctl_dump_flows;
fa05809b 245static unixctl_cb_func bridge_unixctl_reconnect;
064af421 246static int bridge_run_one(struct bridge *);
1a048029 247static size_t bridge_get_controllers(const struct bridge *br,
76ce9432 248 struct ovsrec_controller ***controllersp);
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249static void bridge_reconfigure_one(struct bridge *);
250static void bridge_reconfigure_remotes(struct bridge *,
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251 const struct sockaddr_in *managers,
252 size_t n_managers);
76343538 253static void bridge_get_all_ifaces(const struct bridge *, struct shash *ifaces);
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254static void bridge_fetch_dp_ifaces(struct bridge *);
255static void bridge_flush(struct bridge *);
256static void bridge_pick_local_hw_addr(struct bridge *,
257 uint8_t ea[ETH_ADDR_LEN],
07c318f4 258 struct iface **hw_addr_iface);
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259static uint64_t bridge_pick_datapath_id(struct bridge *,
260 const uint8_t bridge_ea[ETH_ADDR_LEN],
07c318f4 261 struct iface *hw_addr_iface);
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262static uint64_t dpid_from_hash(const void *, size_t nbytes);
263
8ca79daa 264static unixctl_cb_func bridge_unixctl_fdb_show;
e8fe3026 265static unixctl_cb_func qos_unixctl_show;
8c4c1387 266
da285df4 267static void bond_init(void);
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268static void bond_run(struct port *);
269static void bond_wait(struct port *);
064af421 270static void bond_rebalance_port(struct port *);
2303f3b2 271static void bond_send_learning_packets(struct port *);
8b2a2f4a 272static void bond_enable_slave(struct iface *iface, bool enable);
064af421 273
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274static void port_run(struct port *);
275static void port_wait(struct port *);
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276static struct port *port_create(struct bridge *, const char *name);
277static void port_reconfigure(struct port *, const struct ovsrec_port *);
4a1ee6ae 278static void port_del_ifaces(struct port *, const struct ovsrec_port *);
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279static void port_destroy(struct port *);
280static struct port *port_lookup(const struct bridge *, const char *name);
da285df4 281static struct iface *port_lookup_iface(const struct port *, const char *name);
83db7968 282static struct iface *port_get_an_iface(const struct port *);
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283static struct port *port_from_dp_ifidx(const struct bridge *,
284 uint16_t dp_ifidx);
0c6aea3f 285static void port_update_bonding(struct port *);
c25c91fd 286static void port_update_lacp(struct port *);
064af421 287
dd0d105c 288static void mirror_create(struct bridge *, struct ovsrec_mirror *);
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289static void mirror_destroy(struct mirror *);
290static void mirror_reconfigure(struct bridge *);
37e7f427 291static void mirror_reconfigure_one(struct mirror *, struct ovsrec_mirror *);
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292static bool vlan_is_mirrored(const struct mirror *, int vlan);
293
d295e8e9 294static struct iface *iface_create(struct port *port,
a740f0de 295 const struct ovsrec_interface *if_cfg);
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296static void iface_destroy(struct iface *);
297static struct iface *iface_lookup(const struct bridge *, const char *name);
e8fe3026 298static struct iface *iface_find(const char *name);
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299static struct iface *iface_from_dp_ifidx(const struct bridge *,
300 uint16_t dp_ifidx);
52df17e7 301static void iface_set_mac(struct iface *);
bcd49a45 302static void iface_set_ofport(const struct ovsrec_interface *, int64_t ofport);
c1c9c9c4 303static void iface_update_qos(struct iface *, const struct ovsrec_qos *);
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304static void iface_update_cfm(struct iface *);
305static void iface_refresh_cfm_stats(struct iface *iface);
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306static void iface_update_carrier(struct iface *);
307static bool iface_get_carrier(const struct iface *);
064af421 308
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309static void shash_from_ovs_idl_map(char **keys, char **values, size_t n,
310 struct shash *);
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311static void shash_to_ovs_idl_map(struct shash *,
312 char ***keys, char ***values, size_t *n);
313
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314/* Hooks into ofproto processing. */
315static struct ofhooks bridge_ofhooks;
316\f
317/* Public functions. */
318
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319/* Initializes the bridge module, configuring it to obtain its configuration
320 * from an OVSDB server accessed over 'remote', which should be a string in a
321 * form acceptable to ovsdb_idl_create(). */
064af421 322void
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323bridge_init(const char *remote)
324{
325 /* Create connection to database. */
ef73f86c 326 idl = ovsdb_idl_create(remote, &ovsrec_idl_class, true);
c5187f17 327
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328 ovsdb_idl_omit_alert(idl, &ovsrec_open_vswitch_col_cur_cfg);
329 ovsdb_idl_omit_alert(idl, &ovsrec_open_vswitch_col_statistics);
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330 ovsdb_idl_omit(idl, &ovsrec_open_vswitch_col_external_ids);
331
332 ovsdb_idl_omit(idl, &ovsrec_bridge_col_external_ids);
333
334 ovsdb_idl_omit(idl, &ovsrec_port_col_external_ids);
335 ovsdb_idl_omit(idl, &ovsrec_port_col_fake_bridge);
336
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337 ovsdb_idl_omit_alert(idl, &ovsrec_interface_col_ofport);
338 ovsdb_idl_omit_alert(idl, &ovsrec_interface_col_statistics);
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339 ovsdb_idl_omit(idl, &ovsrec_interface_col_external_ids);
340
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341 /* Register unixctl commands. */
342 unixctl_command_register("fdb/show", bridge_unixctl_fdb_show, NULL);
e8fe3026 343 unixctl_command_register("qos/show", qos_unixctl_show, NULL);
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344 unixctl_command_register("bridge/dump-flows", bridge_unixctl_dump_flows,
345 NULL);
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346 unixctl_command_register("bridge/reconnect", bridge_unixctl_reconnect,
347 NULL);
6aa74308 348 lacp_init();
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349 bond_init();
350}
351
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352void
353bridge_exit(void)
354{
355 struct bridge *br, *next_br;
356
357 LIST_FOR_EACH_SAFE (br, next_br, node, &all_bridges) {
358 bridge_destroy(br);
359 }
360 ovsdb_idl_destroy(idl);
361}
362
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363/* Performs configuration that is only necessary once at ovs-vswitchd startup,
364 * but for which the ovs-vswitchd configuration 'cfg' is required. */
365static void
366bridge_configure_once(const struct ovsrec_open_vswitch *cfg)
064af421 367{
c5187f17 368 static bool already_configured_once;
76343538 369 struct svec bridge_names;
1a6f1e2a 370 struct svec dpif_names, dpif_types;
d3d22744 371 size_t i;
da285df4 372
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373 /* Only do this once per ovs-vswitchd run. */
374 if (already_configured_once) {
375 return;
376 }
377 already_configured_once = true;
8c4c1387 378
cd0cd65f 379 stats_timer = time_msec() + STATS_INTERVAL;
018f1525 380
c5187f17 381 /* Get all the configured bridges' names from 'cfg' into 'bridge_names'. */
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382 svec_init(&bridge_names);
383 for (i = 0; i < cfg->n_bridges; i++) {
384 svec_add(&bridge_names, cfg->bridges[i]->name);
385 }
386 svec_sort(&bridge_names);
387
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388 /* Iterate over all system dpifs and delete any of them that do not appear
389 * in 'cfg'. */
d2a34569 390 svec_init(&dpif_names);
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391 svec_init(&dpif_types);
392 dp_enumerate_types(&dpif_types);
393 for (i = 0; i < dpif_types.n; i++) {
1a6f1e2a 394 size_t j;
064af421 395
1a6f1e2a 396 dp_enumerate_names(dpif_types.names[i], &dpif_names);
d3d22744 397
3d8c9535 398 /* Delete each dpif whose name is not in 'bridge_names'. */
1a6f1e2a 399 for (j = 0; j < dpif_names.n; j++) {
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400 if (!svec_contains(&bridge_names, dpif_names.names[j])) {
401 struct dpif *dpif;
402 int retval;
403
404 retval = dpif_open(dpif_names.names[j], dpif_types.names[i],
405 &dpif);
406 if (!retval) {
407 dpif_delete(dpif);
408 dpif_close(dpif);
d3d22744 409 }
064af421 410 }
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411 }
412 }
7128cd6b 413 svec_destroy(&bridge_names);
d0c9d304 414 svec_destroy(&dpif_names);
1a6f1e2a 415 svec_destroy(&dpif_types);
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416}
417
64d64dd7 418/* Callback for iterate_and_prune_ifaces(). */
0c6aea3f 419static bool
64d64dd7 420check_iface(struct bridge *br, struct iface *iface, void *aux OVS_UNUSED)
0c6aea3f 421{
149f577a 422 if (!iface->netdev) {
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423 /* We already reported a related error, don't bother duplicating it. */
424 return false;
0c6aea3f 425 }
149f577a 426
64d64dd7 427 if (iface->dp_ifidx < 0) {
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428 VLOG_ERR("%s interface not in %s, dropping",
429 iface->name, dpif_name(br->dpif));
430 return false;
431 }
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432
433 VLOG_DBG("%s has interface %s on port %d", dpif_name(br->dpif),
434 iface->name, iface->dp_ifidx);
435 return true;
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436}
437
64d64dd7 438/* Callback for iterate_and_prune_ifaces(). */
795fe1fb 439static bool
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440set_iface_properties(struct bridge *br OVS_UNUSED, struct iface *iface,
441 void *aux OVS_UNUSED)
795fe1fb 442{
4d678233 443 /* Set policing attributes. */
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444 netdev_set_policing(iface->netdev,
445 iface->cfg->ingress_policing_rate,
446 iface->cfg->ingress_policing_burst);
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447
448 /* Set MAC address of internal interfaces other than the local
449 * interface. */
6cefe1da 450 if (iface->dp_ifidx != ODPP_LOCAL && !strcmp(iface->type, "internal")) {
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451 iface_set_mac(iface);
452 }
453
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454 return true;
455}
456
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457/* Calls 'cb' for each interfaces in 'br', passing along the 'aux' argument.
458 * Deletes from 'br' all the interfaces for which 'cb' returns false, and then
459 * deletes from 'br' any ports that no longer have any interfaces. */
460static void
461iterate_and_prune_ifaces(struct bridge *br,
462 bool (*cb)(struct bridge *, struct iface *,
463 void *aux),
464 void *aux)
465{
8052fb14 466 struct port *port, *next_port;
6ae39834 467
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468 HMAP_FOR_EACH_SAFE (port, next_port, hmap_node, &br->ports) {
469 struct iface *iface, *next_iface;
83db7968 470
8052fb14 471 LIST_FOR_EACH_SAFE (iface, next_iface, port_elem, &port->ifaces) {
83db7968 472 if (!cb(br, iface, aux)) {
bcd49a45 473 iface_set_ofport(iface->cfg, -1);
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474 iface_destroy(iface);
475 }
476 }
477
8052fb14 478 if (!port->n_ifaces) {
cca46d33 479 VLOG_WARN("%s port has no interfaces, dropping", port->name);
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480 port_destroy(port);
481 }
482 }
483}
484
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485/* Looks at the list of managers in 'ovs_cfg' and extracts their remote IP
486 * addresses and ports into '*managersp' and '*n_managersp'. The caller is
487 * responsible for freeing '*managersp' (with free()).
488 *
489 * You may be asking yourself "why does ovs-vswitchd care?", because
490 * ovsdb-server is responsible for connecting to the managers, and ovs-vswitchd
491 * should not be and in fact is not directly involved in that. But
492 * ovs-vswitchd needs to make sure that ovsdb-server can reach the managers, so
493 * it has to tell in-band control where the managers are to enable that.
94db5407 494 * (Thus, only managers connected in-band are collected.)
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495 */
496static void
94db5407
BP
497collect_in_band_managers(const struct ovsrec_open_vswitch *ovs_cfg,
498 struct sockaddr_in **managersp, size_t *n_managersp)
cd11000b
BP
499{
500 struct sockaddr_in *managers = NULL;
501 size_t n_managers = 0;
94db5407
BP
502 struct shash targets;
503 size_t i;
504
289df16d
AE
505 /* Collect all of the potential targets from the "targets" columns of the
506 * rows pointed to by "manager_options", excluding any that are
507 * out-of-band. */
94db5407 508 shash_init(&targets);
94db5407
BP
509 for (i = 0; i < ovs_cfg->n_manager_options; i++) {
510 struct ovsrec_manager *m = ovs_cfg->manager_options[i];
511
512 if (m->connection_mode && !strcmp(m->connection_mode, "out-of-band")) {
513 shash_find_and_delete(&targets, m->target);
514 } else {
515 shash_add_once(&targets, m->target, NULL);
516 }
517 }
cd11000b 518
94db5407
BP
519 /* Now extract the targets' IP addresses. */
520 if (!shash_is_empty(&targets)) {
521 struct shash_node *node;
cd11000b 522
94db5407
BP
523 managers = xmalloc(shash_count(&targets) * sizeof *managers);
524 SHASH_FOR_EACH (node, &targets) {
525 const char *target = node->name;
526 struct sockaddr_in *sin = &managers[n_managers];
cd11000b 527
94db5407
BP
528 if ((!strncmp(target, "tcp:", 4)
529 && inet_parse_active(target + 4, JSONRPC_TCP_PORT, sin)) ||
530 (!strncmp(target, "ssl:", 4)
531 && inet_parse_active(target + 4, JSONRPC_SSL_PORT, sin))) {
cd11000b
BP
532 n_managers++;
533 }
534 }
535 }
94db5407 536 shash_destroy(&targets);
cd11000b
BP
537
538 *managersp = managers;
539 *n_managersp = n_managers;
540}
541
c5187f17 542static void
76343538 543bridge_reconfigure(const struct ovsrec_open_vswitch *ovs_cfg)
064af421 544{
76343538
BP
545 struct shash old_br, new_br;
546 struct shash_node *node;
064af421 547 struct bridge *br, *next;
cd11000b
BP
548 struct sockaddr_in *managers;
549 size_t n_managers;
6ae39834 550 size_t i;
72b06300 551 int sflow_bridge_number;
064af421
BP
552
553 COVERAGE_INC(bridge_reconfigure);
554
94db5407 555 collect_in_band_managers(ovs_cfg, &managers, &n_managers);
cd11000b 556
632d136c 557 /* Collect old and new bridges. */
76343538
BP
558 shash_init(&old_br);
559 shash_init(&new_br);
4e8e4213 560 LIST_FOR_EACH (br, node, &all_bridges) {
76343538
BP
561 shash_add(&old_br, br->name, br);
562 }
563 for (i = 0; i < ovs_cfg->n_bridges; i++) {
564 const struct ovsrec_bridge *br_cfg = ovs_cfg->bridges[i];
565 if (!shash_add_once(&new_br, br_cfg->name, br_cfg)) {
566 VLOG_WARN("more than one bridge named %s", br_cfg->name);
567 }
064af421 568 }
064af421
BP
569
570 /* Get rid of deleted bridges and add new bridges. */
4e8e4213 571 LIST_FOR_EACH_SAFE (br, next, node, &all_bridges) {
76343538
BP
572 struct ovsrec_bridge *br_cfg = shash_find_data(&new_br, br->name);
573 if (br_cfg) {
574 br->cfg = br_cfg;
575 } else {
064af421
BP
576 bridge_destroy(br);
577 }
578 }
76343538
BP
579 SHASH_FOR_EACH (node, &new_br) {
580 const char *br_name = node->name;
581 const struct ovsrec_bridge *br_cfg = node->data;
1a6f1e2a
JG
582 br = shash_find_data(&old_br, br_name);
583 if (br) {
584 /* If the bridge datapath type has changed, we need to tear it
585 * down and recreate. */
586 if (strcmp(br->cfg->datapath_type, br_cfg->datapath_type)) {
587 bridge_destroy(br);
588 bridge_create(br_cfg);
fa33d64a 589 }
1a6f1e2a
JG
590 } else {
591 bridge_create(br_cfg);
064af421
BP
592 }
593 }
76343538
BP
594 shash_destroy(&old_br);
595 shash_destroy(&new_br);
064af421 596
064af421 597 /* Reconfigure all bridges. */
4e8e4213 598 LIST_FOR_EACH (br, node, &all_bridges) {
1a048029 599 bridge_reconfigure_one(br);
064af421
BP
600 }
601
602 /* Add and delete ports on all datapaths.
603 *
604 * The kernel will reject any attempt to add a given port to a datapath if
605 * that port already belongs to a different datapath, so we must do all
606 * port deletions before any port additions. */
4e8e4213 607 LIST_FOR_EACH (br, node, &all_bridges) {
b0ec0f27 608 struct dpif_port_dump dump;
76343538 609 struct shash want_ifaces;
4c738a8d 610 struct dpif_port dpif_port;
064af421 611
064af421 612 bridge_get_all_ifaces(br, &want_ifaces);
4c738a8d
BP
613 DPIF_PORT_FOR_EACH (&dpif_port, &dump, br->dpif) {
614 if (!shash_find(&want_ifaces, dpif_port.name)
615 && strcmp(dpif_port.name, br->name)) {
616 int retval = dpif_port_del(br->dpif, dpif_port.port_no);
064af421 617 if (retval) {
cca46d33
BP
618 VLOG_WARN("failed to remove %s interface from %s: %s",
619 dpif_port.name, dpif_name(br->dpif),
620 strerror(retval));
064af421
BP
621 }
622 }
623 }
76343538 624 shash_destroy(&want_ifaces);
064af421 625 }
4e8e4213 626 LIST_FOR_EACH (br, node, &all_bridges) {
76343538 627 struct shash cur_ifaces, want_ifaces;
b0ec0f27 628 struct dpif_port_dump dump;
4c738a8d 629 struct dpif_port dpif_port;
064af421 630
76343538 631 /* Get the set of interfaces currently in this datapath. */
76343538 632 shash_init(&cur_ifaces);
4c738a8d 633 DPIF_PORT_FOR_EACH (&dpif_port, &dump, br->dpif) {
b0ec0f27 634 struct dpif_port *port_info = xmalloc(sizeof *port_info);
4c738a8d
BP
635 dpif_port_clone(port_info, &dpif_port);
636 shash_add(&cur_ifaces, dpif_port.name, port_info);
064af421 637 }
064af421 638
76343538
BP
639 /* Get the set of interfaces we want on this datapath. */
640 bridge_get_all_ifaces(br, &want_ifaces);
6c88d577 641
3a6ccc8c 642 hmap_clear(&br->ifaces);
76343538
BP
643 SHASH_FOR_EACH (node, &want_ifaces) {
644 const char *if_name = node->name;
645 struct iface *iface = node->data;
b0ec0f27
BP
646 struct dpif_port *dpif_port;
647 const char *type;
3a6ccc8c
BP
648 int error;
649
b0ec0f27
BP
650 type = iface ? iface->type : "internal";
651 dpif_port = shash_find_data(&cur_ifaces, if_name);
652
3a6ccc8c
BP
653 /* If we have a port or a netdev already, and it's not the type we
654 * want, then delete the port (if any) and close the netdev (if
655 * any). */
c3827f61
BP
656 if ((dpif_port && strcmp(dpif_port->type, type))
657 || (iface && iface->netdev
658 && strcmp(type, netdev_get_type(iface->netdev)))) {
3a6ccc8c 659 if (dpif_port) {
b0ec0f27 660 error = ofproto_port_del(br->ofproto, dpif_port->port_no);
3a6ccc8c
BP
661 if (error) {
662 continue;
663 }
664 dpif_port = NULL;
76343538 665 }
3a6ccc8c
BP
666 if (iface) {
667 netdev_close(iface->netdev);
668 iface->netdev = NULL;
669 }
670 }
76343538 671
c3827f61
BP
672 /* If the port doesn't exist or we don't have the netdev open,
673 * we need to do more work. */
674 if (!dpif_port || (iface && !iface->netdev)) {
675 struct netdev_options options;
676 struct netdev *netdev;
677 struct shash args;
678
679 /* First open the network device. */
680 options.name = if_name;
681 options.type = type;
682 options.args = &args;
683 options.ethertype = NETDEV_ETH_TYPE_NONE;
684
685 shash_init(&args);
686 if (iface) {
6b4186af 687 shash_from_ovs_idl_map(iface->cfg->key_options,
fe4838bc
JP
688 iface->cfg->value_options,
689 iface->cfg->n_options, &args);
82057f51 690 }
c3827f61
BP
691 error = netdev_open(&options, &netdev);
692 shash_destroy(&args);
82057f51 693
c3827f61
BP
694 if (error) {
695 VLOG_WARN("could not open network device %s (%s)",
696 if_name, strerror(error));
3a6ccc8c 697 continue;
76343538 698 }
3a6ccc8c 699
c3827f61
BP
700 /* Then add the port if we haven't already. */
701 if (!dpif_port) {
702 error = dpif_port_add(br->dpif, netdev, NULL);
3a6ccc8c 703 if (error) {
c3827f61
BP
704 netdev_close(netdev);
705 if (error == EFBIG) {
706 VLOG_ERR("ran out of valid port numbers on %s",
707 dpif_name(br->dpif));
708 break;
709 } else {
cca46d33
BP
710 VLOG_WARN("failed to add %s interface to %s: %s",
711 if_name, dpif_name(br->dpif),
712 strerror(error));
c3827f61
BP
713 continue;
714 }
3a6ccc8c
BP
715 }
716 }
c3827f61
BP
717
718 /* Update 'iface'. */
719 if (iface) {
720 iface->netdev = netdev;
0b8024eb 721 iface->enabled = iface_get_carrier(iface);
c835c3bf 722 iface->up = iface->enabled;
c3827f61
BP
723 }
724 } else if (iface && iface->netdev) {
725 struct shash args;
726
727 shash_init(&args);
6b4186af 728 shash_from_ovs_idl_map(iface->cfg->key_options,
fe4838bc
JP
729 iface->cfg->value_options,
730 iface->cfg->n_options, &args);
6d9e6eb4 731 netdev_set_config(iface->netdev, &args);
c3827f61 732 shash_destroy(&args);
3a6ccc8c 733 }
064af421 734 }
76343538 735 shash_destroy(&want_ifaces);
b0ec0f27
BP
736
737 SHASH_FOR_EACH (node, &cur_ifaces) {
738 struct dpif_port *port_info = node->data;
4c738a8d 739 dpif_port_destroy(port_info);
b0ec0f27
BP
740 free(port_info);
741 }
742 shash_destroy(&cur_ifaces);
064af421 743 }
72b06300 744 sflow_bridge_number = 0;
4e8e4213 745 LIST_FOR_EACH (br, node, &all_bridges) {
064af421
BP
746 uint8_t ea[8];
747 uint64_t dpid;
07c318f4
BP
748 struct iface *local_iface;
749 struct iface *hw_addr_iface;
093e47f4 750 char *dpid_string;
064af421 751
064af421 752 bridge_fetch_dp_ifaces(br);
064af421 753
64d64dd7 754 iterate_and_prune_ifaces(br, check_iface, NULL);
064af421
BP
755
756 /* Pick local port hardware address, datapath ID. */
07c318f4 757 bridge_pick_local_hw_addr(br, ea, &hw_addr_iface);
27b3a6e0 758 local_iface = iface_from_dp_ifidx(br, ODPP_LOCAL);
064af421 759 if (local_iface) {
07c318f4 760 int error = netdev_set_etheraddr(local_iface->netdev, ea);
064af421
BP
761 if (error) {
762 static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
763 VLOG_ERR_RL(&rl, "bridge %s: failed to set bridge "
764 "Ethernet address: %s",
765 br->name, strerror(error));
766 }
767 }
abe457eb 768 memcpy(br->ea, ea, ETH_ADDR_LEN);
064af421 769
07c318f4 770 dpid = bridge_pick_datapath_id(br, ea, hw_addr_iface);
064af421
BP
771 ofproto_set_datapath_id(br->ofproto, dpid);
772
fc09119a 773 dpid_string = xasprintf("%016"PRIx64, dpid);
093e47f4
BP
774 ovsrec_bridge_set_datapath_id(br->cfg, dpid_string);
775 free(dpid_string);
776
064af421 777 /* Set NetFlow configuration on this bridge. */
76343538
BP
778 if (br->cfg->netflow) {
779 struct ovsrec_netflow *nf_cfg = br->cfg->netflow;
780 struct netflow_options opts;
781
782 memset(&opts, 0, sizeof opts);
783
784 dpif_get_netflow_ids(br->dpif, &opts.engine_type, &opts.engine_id);
785 if (nf_cfg->engine_type) {
cd746526 786 opts.engine_type = *nf_cfg->engine_type;
76343538
BP
787 }
788 if (nf_cfg->engine_id) {
cd746526 789 opts.engine_id = *nf_cfg->engine_id;
76343538
BP
790 }
791
792 opts.active_timeout = nf_cfg->active_timeout;
793 if (!opts.active_timeout) {
794 opts.active_timeout = -1;
795 } else if (opts.active_timeout < 0) {
e9e2856e
JG
796 VLOG_WARN("bridge %s: active timeout interval set to negative "
797 "value, using default instead (%d seconds)", br->name,
798 NF_ACTIVE_TIMEOUT_DEFAULT);
799 opts.active_timeout = -1;
76343538
BP
800 }
801
802 opts.add_id_to_iface = nf_cfg->add_id_to_interface;
803 if (opts.add_id_to_iface) {
804 if (opts.engine_id > 0x7f) {
805 VLOG_WARN("bridge %s: netflow port mangling may conflict "
806 "with another vswitch, choose an engine id less "
807 "than 128", br->name);
808 }
8052fb14 809 if (hmap_count(&br->ports) > 508) {
76343538
BP
810 VLOG_WARN("bridge %s: netflow port mangling will conflict "
811 "with another port when more than 508 ports are "
812 "used", br->name);
813 }
814 }
815
816 opts.collectors.n = nf_cfg->n_targets;
817 opts.collectors.names = nf_cfg->targets;
818 if (ofproto_set_netflow(br->ofproto, &opts)) {
d295e8e9 819 VLOG_ERR("bridge %s: problem setting netflow collectors",
76343538
BP
820 br->name);
821 }
822 } else {
823 ofproto_set_netflow(br->ofproto, NULL);
824 }
064af421 825
a4af0040
JP
826 /* Set sFlow configuration on this bridge. */
827 if (br->cfg->sflow) {
d49d354b 828 const struct ovsrec_sflow *sflow_cfg = br->cfg->sflow;
76ce9432 829 struct ovsrec_controller **controllers;
72b06300 830 struct ofproto_sflow_options oso;
76ce9432 831 size_t n_controllers;
72b06300 832
a4af0040
JP
833 memset(&oso, 0, sizeof oso);
834
835 oso.targets.n = sflow_cfg->n_targets;
836 oso.targets.names = sflow_cfg->targets;
72b06300
BP
837
838 oso.sampling_rate = SFL_DEFAULT_SAMPLING_RATE;
a4af0040
JP
839 if (sflow_cfg->sampling) {
840 oso.sampling_rate = *sflow_cfg->sampling;
72b06300
BP
841 }
842
843 oso.polling_interval = SFL_DEFAULT_POLLING_INTERVAL;
a4af0040
JP
844 if (sflow_cfg->polling) {
845 oso.polling_interval = *sflow_cfg->polling;
72b06300
BP
846 }
847
848 oso.header_len = SFL_DEFAULT_HEADER_SIZE;
a4af0040
JP
849 if (sflow_cfg->header) {
850 oso.header_len = *sflow_cfg->header;
72b06300
BP
851 }
852
853 oso.sub_id = sflow_bridge_number++;
a4af0040
JP
854 oso.agent_device = sflow_cfg->agent;
855
76ce9432 856 oso.control_ip = NULL;
1a048029 857 n_controllers = bridge_get_controllers(br, &controllers);
76ce9432
BP
858 for (i = 0; i < n_controllers; i++) {
859 if (controllers[i]->local_ip) {
860 oso.control_ip = controllers[i]->local_ip;
861 break;
862 }
863 }
72b06300
BP
864 ofproto_set_sflow(br->ofproto, &oso);
865
7b99db05 866 /* Do not destroy oso.targets because it is owned by sflow_cfg. */
72b06300
BP
867 } else {
868 ofproto_set_sflow(br->ofproto, NULL);
869 }
870
064af421
BP
871 /* Update the controller and related settings. It would be more
872 * straightforward to call this from bridge_reconfigure_one(), but we
873 * can't do it there for two reasons. First, and most importantly, at
874 * that point we don't know the dp_ifidx of any interfaces that have
875 * been added to the bridge (because we haven't actually added them to
876 * the datapath). Second, at that point we haven't set the datapath ID
877 * yet; when a controller is configured, resetting the datapath ID will
878 * immediately disconnect from the controller, so it's better to set
879 * the datapath ID before the controller. */
1a048029 880 bridge_reconfigure_remotes(br, managers, n_managers);
064af421 881 }
4e8e4213 882 LIST_FOR_EACH (br, node, &all_bridges) {
8052fb14
BP
883 struct port *port;
884
885 HMAP_FOR_EACH (port, hmap_node, &br->ports) {
83db7968 886 struct iface *iface;
52df17e7 887
e5ed989d 888 if (port->monitor) {
83db7968
BP
889 LIST_FOR_EACH (iface, port_elem, &port->ifaces) {
890 netdev_monitor_add(port->monitor, iface->netdev);
e5ed989d
EJ
891 }
892 } else {
893 port->miimon_next_update = 0;
894 }
895
c25c91fd 896 port_update_lacp(port);
afabe15a 897 port_update_bonding(port);
c1c9c9c4 898
83db7968
BP
899 LIST_FOR_EACH (iface, port_elem, &port->ifaces) {
900 iface_update_qos(iface, port->cfg->qos);
c1c9c9c4 901 }
064af421
BP
902 }
903 }
4e8e4213 904 LIST_FOR_EACH (br, node, &all_bridges) {
4d678233 905 iterate_and_prune_ifaces(br, set_iface_properties, NULL);
064af421 906 }
093e47f4 907
b31bcf60
EJ
908 LIST_FOR_EACH (br, node, &all_bridges) {
909 struct iface *iface;
910 HMAP_FOR_EACH (iface, dp_ifidx_node, &br->ifaces) {
911 iface_update_cfm(iface);
912 }
913 }
914
cd11000b 915 free(managers);
a7ff9bd7
BP
916
917 /* ovs-vswitchd has completed initialization, so allow the process that
918 * forked us to exit successfully. */
919 daemonize_complete();
093e47f4
BP
920}
921
922static const char *
af6278e1
BP
923get_ovsrec_key_value(const struct ovsdb_idl_row *row,
924 const struct ovsdb_idl_column *column,
925 const char *key)
093e47f4 926{
af6278e1
BP
927 const struct ovsdb_datum *datum;
928 union ovsdb_atom atom;
929 unsigned int idx;
093e47f4 930
af6278e1
BP
931 datum = ovsdb_idl_get(row, column, OVSDB_TYPE_STRING, OVSDB_TYPE_STRING);
932 atom.string = (char *) key;
933 idx = ovsdb_datum_find_key(datum, &atom, OVSDB_TYPE_STRING);
934 return idx == UINT_MAX ? NULL : datum->values[idx].string;
064af421
BP
935}
936
c8143c88
BP
937static const char *
938bridge_get_other_config(const struct ovsrec_bridge *br_cfg, const char *key)
939{
af6278e1
BP
940 return get_ovsrec_key_value(&br_cfg->header_,
941 &ovsrec_bridge_col_other_config, key);
c8143c88
BP
942}
943
064af421
BP
944static void
945bridge_pick_local_hw_addr(struct bridge *br, uint8_t ea[ETH_ADDR_LEN],
07c318f4 946 struct iface **hw_addr_iface)
064af421 947{
093e47f4 948 const char *hwaddr;
8052fb14 949 struct port *port;
064af421
BP
950 int error;
951
07c318f4 952 *hw_addr_iface = NULL;
064af421
BP
953
954 /* Did the user request a particular MAC? */
093e47f4
BP
955 hwaddr = bridge_get_other_config(br->cfg, "hwaddr");
956 if (hwaddr && eth_addr_from_string(hwaddr, ea)) {
064af421
BP
957 if (eth_addr_is_multicast(ea)) {
958 VLOG_ERR("bridge %s: cannot set MAC address to multicast "
959 "address "ETH_ADDR_FMT, br->name, ETH_ADDR_ARGS(ea));
960 } else if (eth_addr_is_zero(ea)) {
961 VLOG_ERR("bridge %s: cannot set MAC address to zero", br->name);
962 } else {
963 return;
964 }
965 }
966
141f4942
BP
967 /* Otherwise choose the minimum non-local MAC address among all of the
968 * interfaces. */
0b420b10 969 memset(ea, 0xff, ETH_ADDR_LEN);
8052fb14 970 HMAP_FOR_EACH (port, hmap_node, &br->ports) {
58b7527e 971 uint8_t iface_ea[ETH_ADDR_LEN];
83db7968 972 struct iface *candidate;
58b7527e
BP
973 struct iface *iface;
974
975 /* Mirror output ports don't participate. */
064af421
BP
976 if (port->is_mirror_output_port) {
977 continue;
978 }
58b7527e
BP
979
980 /* Choose the MAC address to represent the port. */
83db7968 981 iface = NULL;
76343538 982 if (port->cfg->mac && eth_addr_from_string(port->cfg->mac, iface_ea)) {
ba09980a
BP
983 /* Find the interface with this Ethernet address (if any) so that
984 * we can provide the correct devname to the caller. */
83db7968 985 LIST_FOR_EACH (candidate, port_elem, &port->ifaces) {
ba09980a 986 uint8_t candidate_ea[ETH_ADDR_LEN];
8fef8c71 987 if (!netdev_get_etheraddr(candidate->netdev, candidate_ea)
ba09980a
BP
988 && eth_addr_equals(iface_ea, candidate_ea)) {
989 iface = candidate;
990 }
991 }
58b7527e
BP
992 } else {
993 /* Choose the interface whose MAC address will represent the port.
994 * The Linux kernel bonding code always chooses the MAC address of
995 * the first slave added to a bond, and the Fedora networking
996 * scripts always add slaves to a bond in alphabetical order, so
997 * for compatibility we choose the interface with the name that is
998 * first in alphabetical order. */
83db7968
BP
999 LIST_FOR_EACH (candidate, port_elem, &port->ifaces) {
1000 if (!iface || strcmp(candidate->name, iface->name) < 0) {
58b7527e
BP
1001 iface = candidate;
1002 }
1003 }
1004
1005 /* The local port doesn't count (since we're trying to choose its
141f4942
BP
1006 * MAC address anyway). */
1007 if (iface->dp_ifidx == ODPP_LOCAL) {
064af421
BP
1008 continue;
1009 }
58b7527e
BP
1010
1011 /* Grab MAC. */
07c318f4 1012 error = netdev_get_etheraddr(iface->netdev, iface_ea);
58b7527e 1013 if (error) {
064af421
BP
1014 static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
1015 VLOG_ERR_RL(&rl, "failed to obtain Ethernet address of %s: %s",
1016 iface->name, strerror(error));
58b7527e 1017 continue;
064af421
BP
1018 }
1019 }
58b7527e
BP
1020
1021 /* Compare against our current choice. */
1022 if (!eth_addr_is_multicast(iface_ea) &&
141f4942 1023 !eth_addr_is_local(iface_ea) &&
58b7527e
BP
1024 !eth_addr_is_reserved(iface_ea) &&
1025 !eth_addr_is_zero(iface_ea) &&
130f6e5f 1026 eth_addr_compare_3way(iface_ea, ea) < 0)
58b7527e 1027 {
0babc06f 1028 memcpy(ea, iface_ea, ETH_ADDR_LEN);
8fef8c71 1029 *hw_addr_iface = iface;
58b7527e 1030 }
064af421 1031 }
141f4942 1032 if (eth_addr_is_multicast(ea)) {
064af421 1033 memcpy(ea, br->default_ea, ETH_ADDR_LEN);
07c318f4 1034 *hw_addr_iface = NULL;
064af421
BP
1035 VLOG_WARN("bridge %s: using default bridge Ethernet "
1036 "address "ETH_ADDR_FMT, br->name, ETH_ADDR_ARGS(ea));
1037 } else {
1038 VLOG_DBG("bridge %s: using bridge Ethernet address "ETH_ADDR_FMT,
1039 br->name, ETH_ADDR_ARGS(ea));
1040 }
1041}
1042
1043/* Choose and returns the datapath ID for bridge 'br' given that the bridge
1044 * Ethernet address is 'bridge_ea'. If 'bridge_ea' is the Ethernet address of
07c318f4
BP
1045 * an interface on 'br', then that interface must be passed in as
1046 * 'hw_addr_iface'; if 'bridge_ea' was derived some other way, then
1047 * 'hw_addr_iface' must be passed in as a null pointer. */
064af421
BP
1048static uint64_t
1049bridge_pick_datapath_id(struct bridge *br,
1050 const uint8_t bridge_ea[ETH_ADDR_LEN],
07c318f4 1051 struct iface *hw_addr_iface)
064af421
BP
1052{
1053 /*
1054 * The procedure for choosing a bridge MAC address will, in the most
1055 * ordinary case, also choose a unique MAC that we can use as a datapath
1056 * ID. In some special cases, though, multiple bridges will end up with
1057 * the same MAC address. This is OK for the bridges, but it will confuse
1058 * the OpenFlow controller, because each datapath needs a unique datapath
1059 * ID.
1060 *
1061 * Datapath IDs must be unique. It is also very desirable that they be
1062 * stable from one run to the next, so that policy set on a datapath
1063 * "sticks".
1064 */
093e47f4 1065 const char *datapath_id;
064af421
BP
1066 uint64_t dpid;
1067
093e47f4
BP
1068 datapath_id = bridge_get_other_config(br->cfg, "datapath-id");
1069 if (datapath_id && dpid_from_string(datapath_id, &dpid)) {
064af421
BP
1070 return dpid;
1071 }
1072
07c318f4 1073 if (hw_addr_iface) {
064af421 1074 int vlan;
b2f17b15 1075 if (!netdev_get_vlan_vid(hw_addr_iface->netdev, &vlan)) {
064af421
BP
1076 /*
1077 * A bridge whose MAC address is taken from a VLAN network device
1078 * (that is, a network device created with vconfig(8) or similar
1079 * tool) will have the same MAC address as a bridge on the VLAN
1080 * device's physical network device.
1081 *
1082 * Handle this case by hashing the physical network device MAC
1083 * along with the VLAN identifier.
1084 */
1085 uint8_t buf[ETH_ADDR_LEN + 2];
1086 memcpy(buf, bridge_ea, ETH_ADDR_LEN);
1087 buf[ETH_ADDR_LEN] = vlan >> 8;
1088 buf[ETH_ADDR_LEN + 1] = vlan;
1089 return dpid_from_hash(buf, sizeof buf);
1090 } else {
1091 /*
1092 * Assume that this bridge's MAC address is unique, since it
1093 * doesn't fit any of the cases we handle specially.
1094 */
1095 }
1096 } else {
1097 /*
1098 * A purely internal bridge, that is, one that has no non-virtual
1099 * network devices on it at all, is more difficult because it has no
1100 * natural unique identifier at all.
1101 *
1102 * When the host is a XenServer, we handle this case by hashing the
1103 * host's UUID with the name of the bridge. Names of bridges are
1104 * persistent across XenServer reboots, although they can be reused if
1105 * an internal network is destroyed and then a new one is later
1106 * created, so this is fairly effective.
1107 *
1108 * When the host is not a XenServer, we punt by using a random MAC
1109 * address on each run.
1110 */
1111 const char *host_uuid = xenserver_get_host_uuid();
1112 if (host_uuid) {
1113 char *combined = xasprintf("%s,%s", host_uuid, br->name);
1114 dpid = dpid_from_hash(combined, strlen(combined));
1115 free(combined);
1116 return dpid;
1117 }
1118 }
1119
1120 return eth_addr_to_uint64(bridge_ea);
1121}
1122
1123static uint64_t
1124dpid_from_hash(const void *data, size_t n)
1125{
5eccf359 1126 uint8_t hash[SHA1_DIGEST_SIZE];
064af421
BP
1127
1128 BUILD_ASSERT_DECL(sizeof hash >= ETH_ADDR_LEN);
5eccf359 1129 sha1_bytes(data, n, hash);
064af421
BP
1130 eth_addr_mark_random(hash);
1131 return eth_addr_to_uint64(hash);
1132}
1133
ea83a2fc 1134static void
ea763e0e 1135iface_refresh_status(struct iface *iface)
ea83a2fc 1136{
ea763e0e
EJ
1137 struct shash sh;
1138
e210037e
AE
1139 enum netdev_flags flags;
1140 uint32_t current;
1141 int64_t bps;
1142 int mtu;
1143 int64_t mtu_64;
1144 int error;
1145
ea763e0e
EJ
1146 shash_init(&sh);
1147
1148 if (!netdev_get_status(iface->netdev, &sh)) {
1149 size_t n;
1150 char **keys, **values;
ea83a2fc 1151
ea763e0e
EJ
1152 shash_to_ovs_idl_map(&sh, &keys, &values, &n);
1153 ovsrec_interface_set_status(iface->cfg, keys, values, n);
1154
1155 free(keys);
1156 free(values);
1157 } else {
1158 ovsrec_interface_set_status(iface->cfg, NULL, NULL, 0);
1159 }
1160
1161 shash_destroy_free_data(&sh);
e210037e
AE
1162
1163 error = netdev_get_flags(iface->netdev, &flags);
1164 if (!error) {
1165 ovsrec_interface_set_admin_state(iface->cfg, flags & NETDEV_UP ? "up" : "down");
1166 }
1167 else {
1168 ovsrec_interface_set_admin_state(iface->cfg, NULL);
1169 }
1170
1171 error = netdev_get_features(iface->netdev, &current, NULL, NULL, NULL);
1172 if (!error) {
1173 ovsrec_interface_set_duplex(iface->cfg,
1174 netdev_features_is_full_duplex(current)
1175 ? "full" : "half");
1176 /* warning: uint64_t -> int64_t conversion */
1177 bps = netdev_features_to_bps(current);
1178 ovsrec_interface_set_link_speed(iface->cfg, &bps, 1);
1179 }
1180 else {
1181 ovsrec_interface_set_duplex(iface->cfg, NULL);
1182 ovsrec_interface_set_link_speed(iface->cfg, NULL, 0);
1183 }
1184
1185
1186 ovsrec_interface_set_link_state(iface->cfg,
0b8024eb 1187 iface_get_carrier(iface) ? "up" : "down");
e210037e
AE
1188
1189 error = netdev_get_mtu(iface->netdev, &mtu);
f915f1a8 1190 if (!error && mtu != INT_MAX) {
e210037e
AE
1191 mtu_64 = mtu;
1192 ovsrec_interface_set_mtu(iface->cfg, &mtu_64, 1);
1193 }
1194 else {
1195 ovsrec_interface_set_mtu(iface->cfg, NULL, 0);
1196 }
ea83a2fc
EJ
1197}
1198
b31bcf60
EJ
1199static void
1200iface_refresh_cfm_stats(struct iface *iface)
1201{
b31bcf60 1202 const struct ovsrec_monitor *mon;
e7934396
BP
1203 const struct cfm *cfm;
1204 size_t i;
b31bcf60
EJ
1205
1206 mon = iface->cfg->monitor;
e7934396 1207 cfm = ofproto_iface_get_cfm(iface->port->bridge->ofproto, iface->dp_ifidx);
b31bcf60
EJ
1208
1209 if (!cfm || !mon) {
1210 return;
1211 }
1212
1213 for (i = 0; i < mon->n_remote_mps; i++) {
1214 const struct ovsrec_maintenance_point *mp;
1215 const struct remote_mp *rmp;
1216
1217 mp = mon->remote_mps[i];
1218 rmp = cfm_get_remote_mp(cfm, mp->mpid);
1219
1220 ovsrec_maintenance_point_set_fault(mp, &rmp->fault, 1);
1221 }
1222
1223 if (hmap_is_empty(&cfm->x_remote_mps)) {
1224 ovsrec_monitor_set_unexpected_remote_mpids(mon, NULL, 0);
1225 } else {
1226 size_t length;
1227 struct remote_mp *rmp;
1228 int64_t *x_remote_mps;
1229
1230 length = hmap_count(&cfm->x_remote_mps);
1231 x_remote_mps = xzalloc(length * sizeof *x_remote_mps);
1232
1233 i = 0;
1234 HMAP_FOR_EACH (rmp, node, &cfm->x_remote_mps) {
1235 x_remote_mps[i++] = rmp->mpid;
1236 }
1237
1238 ovsrec_monitor_set_unexpected_remote_mpids(mon, x_remote_mps, length);
1239 free(x_remote_mps);
1240 }
1241
1242 if (hmap_is_empty(&cfm->x_remote_maids)) {
1243 ovsrec_monitor_set_unexpected_remote_maids(mon, NULL, 0);
1244 } else {
1245 size_t length;
1246 char **x_remote_maids;
1247 struct remote_maid *rmaid;
1248
1249 length = hmap_count(&cfm->x_remote_maids);
1250 x_remote_maids = xzalloc(length * sizeof *x_remote_maids);
1251
1252 i = 0;
1253 HMAP_FOR_EACH (rmaid, node, &cfm->x_remote_maids) {
1254 size_t j;
1255
1256 x_remote_maids[i] = xzalloc(CCM_MAID_LEN * 2 + 1);
1257
1258 for (j = 0; j < CCM_MAID_LEN; j++) {
1259 snprintf(&x_remote_maids[i][j * 2], 3, "%02hhx",
1260 rmaid->maid[j]);
1261 }
1262 i++;
1263 }
1264 ovsrec_monitor_set_unexpected_remote_maids(mon, x_remote_maids, length);
1265
1266 for (i = 0; i < length; i++) {
1267 free(x_remote_maids[i]);
1268 }
1269 free(x_remote_maids);
1270 }
1271
1272 ovsrec_monitor_set_fault(mon, &cfm->fault, 1);
1273}
1274
018f1525
BP
1275static void
1276iface_refresh_stats(struct iface *iface)
1277{
1278 struct iface_stat {
1279 char *name;
1280 int offset;
1281 };
1282 static const struct iface_stat iface_stats[] = {
1283 { "rx_packets", offsetof(struct netdev_stats, rx_packets) },
1284 { "tx_packets", offsetof(struct netdev_stats, tx_packets) },
1285 { "rx_bytes", offsetof(struct netdev_stats, rx_bytes) },
1286 { "tx_bytes", offsetof(struct netdev_stats, tx_bytes) },
1287 { "rx_dropped", offsetof(struct netdev_stats, rx_dropped) },
1288 { "tx_dropped", offsetof(struct netdev_stats, tx_dropped) },
1289 { "rx_errors", offsetof(struct netdev_stats, rx_errors) },
1290 { "tx_errors", offsetof(struct netdev_stats, tx_errors) },
1291 { "rx_frame_err", offsetof(struct netdev_stats, rx_frame_errors) },
1292 { "rx_over_err", offsetof(struct netdev_stats, rx_over_errors) },
1293 { "rx_crc_err", offsetof(struct netdev_stats, rx_crc_errors) },
1294 { "collisions", offsetof(struct netdev_stats, collisions) },
1295 };
1296 enum { N_STATS = ARRAY_SIZE(iface_stats) };
1297 const struct iface_stat *s;
1298
1299 char *keys[N_STATS];
1300 int64_t values[N_STATS];
1301 int n;
1302
1303 struct netdev_stats stats;
1304
1305 /* Intentionally ignore return value, since errors will set 'stats' to
1306 * all-1s, and we will deal with that correctly below. */
1307 netdev_get_stats(iface->netdev, &stats);
1308
1309 n = 0;
1310 for (s = iface_stats; s < &iface_stats[N_STATS]; s++) {
1311 uint64_t value = *(uint64_t *) (((char *) &stats) + s->offset);
1312 if (value != UINT64_MAX) {
1313 keys[n] = s->name;
1314 values[n] = value;
1315 n++;
1316 }
1317 }
1318
1319 ovsrec_interface_set_statistics(iface->cfg, keys, values, n);
1320}
1321
ce887677
BP
1322static void
1323refresh_system_stats(const struct ovsrec_open_vswitch *cfg)
1324{
1325 struct ovsdb_datum datum;
1326 struct shash stats;
1327
1328 shash_init(&stats);
1329 get_system_stats(&stats);
1330
1331 ovsdb_datum_from_shash(&datum, &stats);
1332 ovsdb_idl_txn_write(&cfg->header_, &ovsrec_open_vswitch_col_statistics,
1333 &datum);
1334}
1335
bffc0589
AE
1336static inline const char *
1337nx_role_to_str(enum nx_role role)
1338{
1339 switch (role) {
1340 case NX_ROLE_OTHER:
1341 return "other";
1342 case NX_ROLE_MASTER:
1343 return "master";
1344 case NX_ROLE_SLAVE:
1345 return "slave";
1346 default:
1347 return "*** INVALID ROLE ***";
1348 }
1349}
1350
1351static void
1352bridge_refresh_controller_status(const struct bridge *br)
1353{
1354 struct shash info;
1355 const struct ovsrec_controller *cfg;
1356
1357 ofproto_get_ofproto_controller_info(br->ofproto, &info);
1358
1359 OVSREC_CONTROLLER_FOR_EACH(cfg, idl) {
eb9b8307
AE
1360 struct ofproto_controller_info *cinfo =
1361 shash_find_data(&info, cfg->target);
1362
1363 if (cinfo) {
1364 ovsrec_controller_set_is_connected(cfg, cinfo->is_connected);
1365 ovsrec_controller_set_role(cfg, nx_role_to_str(cinfo->role));
1366 ovsrec_controller_set_status(cfg, (char **) cinfo->pairs.keys,
1367 (char **) cinfo->pairs.values,
1368 cinfo->pairs.n);
1369 } else {
1370 ovsrec_controller_set_is_connected(cfg, false);
1371 ovsrec_controller_set_role(cfg, NULL);
1372 ovsrec_controller_set_status(cfg, NULL, NULL, 0);
1373 }
bffc0589
AE
1374 }
1375
1376 ofproto_free_ofproto_controller_info(&info);
1377}
1378
c5187f17 1379void
064af421
BP
1380bridge_run(void)
1381{
d54ff998
BP
1382 const struct ovsrec_open_vswitch *cfg;
1383
c5187f17 1384 bool datapath_destroyed;
d54ff998 1385 bool database_changed;
c5187f17 1386 struct bridge *br;
064af421 1387
c5187f17
BP
1388 /* Let each bridge do the work that it needs to do. */
1389 datapath_destroyed = false;
4e8e4213 1390 LIST_FOR_EACH (br, node, &all_bridges) {
064af421
BP
1391 int error = bridge_run_one(br);
1392 if (error) {
1393 static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
1394 VLOG_ERR_RL(&rl, "bridge %s: datapath was destroyed externally, "
1395 "forcing reconfiguration", br->name);
c5187f17
BP
1396 datapath_destroyed = true;
1397 }
1398 }
1399
1400 /* (Re)configure if necessary. */
d54ff998
BP
1401 database_changed = ovsdb_idl_run(idl);
1402 cfg = ovsrec_open_vswitch_first(idl);
d6da96ce
BP
1403#ifdef HAVE_OPENSSL
1404 /* Re-configure SSL. We do this on every trip through the main loop,
1405 * instead of just when the database changes, because the contents of the
1406 * key and certificate files can change without the database changing.
1407 *
1408 * We do this before bridge_reconfigure() because that function might
1409 * initiate SSL connections and thus requires SSL to be configured. */
1410 if (cfg && cfg->ssl) {
1411 const struct ovsrec_ssl *ssl = cfg->ssl;
1412
1413 stream_ssl_set_key_and_cert(ssl->private_key, ssl->certificate);
1414 stream_ssl_set_ca_cert_file(ssl->ca_cert, ssl->bootstrap_ca_cert);
1415 }
1416#endif
d54ff998 1417 if (database_changed || datapath_destroyed) {
c5187f17
BP
1418 if (cfg) {
1419 struct ovsdb_idl_txn *txn = ovsdb_idl_txn_create(idl);
1420
1421 bridge_configure_once(cfg);
1422 bridge_reconfigure(cfg);
1423
1424 ovsrec_open_vswitch_set_cur_cfg(cfg, cfg->next_cfg);
1425 ovsdb_idl_txn_commit(txn);
1426 ovsdb_idl_txn_destroy(txn); /* XXX */
1e0b752d
BP
1427 } else {
1428 /* We still need to reconfigure to avoid dangling pointers to
1429 * now-destroyed ovsrec structures inside bridge data. */
1430 static const struct ovsrec_open_vswitch null_cfg;
1431
1432 bridge_reconfigure(&null_cfg);
064af421
BP
1433 }
1434 }
018f1525 1435
cd0cd65f
BP
1436 /* Refresh system and interface stats if necessary. */
1437 if (time_msec() >= stats_timer) {
ce887677
BP
1438 if (cfg) {
1439 struct ovsdb_idl_txn *txn;
018f1525 1440
ce887677 1441 txn = ovsdb_idl_txn_create(idl);
4e8e4213 1442 LIST_FOR_EACH (br, node, &all_bridges) {
8052fb14 1443 struct port *port;
018f1525 1444
8052fb14 1445 HMAP_FOR_EACH (port, hmap_node, &br->ports) {
83db7968 1446 struct iface *iface;
018f1525 1447
83db7968 1448 LIST_FOR_EACH (iface, port_elem, &port->ifaces) {
ce887677 1449 iface_refresh_stats(iface);
b31bcf60 1450 iface_refresh_cfm_stats(iface);
ea763e0e 1451 iface_refresh_status(iface);
ce887677 1452 }
018f1525 1453 }
bffc0589 1454 bridge_refresh_controller_status(br);
018f1525 1455 }
ce887677
BP
1456 refresh_system_stats(cfg);
1457 ovsdb_idl_txn_commit(txn);
1458 ovsdb_idl_txn_destroy(txn); /* XXX */
018f1525 1459 }
018f1525 1460
cd0cd65f 1461 stats_timer = time_msec() + STATS_INTERVAL;
018f1525 1462 }
064af421
BP
1463}
1464
1465void
1466bridge_wait(void)
1467{
1468 struct bridge *br;
1469
4e8e4213 1470 LIST_FOR_EACH (br, node, &all_bridges) {
8052fb14 1471 struct port *port;
21dcb94f 1472
064af421 1473 ofproto_wait(br->ofproto);
7d674866 1474 if (ofproto_has_primary_controller(br->ofproto)) {
064af421
BP
1475 continue;
1476 }
1477
93dfc067 1478 mac_learning_wait(br->ml);
b31bcf60 1479
8052fb14
BP
1480 HMAP_FOR_EACH (port, hmap_node, &br->ports) {
1481 port_wait(port);
b31bcf60 1482 }
064af421 1483 }
c5187f17 1484 ovsdb_idl_wait(idl);
cd0cd65f 1485 poll_timer_wait_until(stats_timer);
064af421
BP
1486}
1487
1488/* Forces 'br' to revalidate all of its flows. This is appropriate when 'br''s
1489 * configuration changes. */
1490static void
1491bridge_flush(struct bridge *br)
1492{
1493 COVERAGE_INC(bridge_flush);
1494 br->flush = true;
064af421
BP
1495}
1496\f
8c4c1387
BP
1497/* Bridge unixctl user interface functions. */
1498static void
8ca79daa 1499bridge_unixctl_fdb_show(struct unixctl_conn *conn,
c69ee87c 1500 const char *args, void *aux OVS_UNUSED)
8c4c1387
BP
1501{
1502 struct ds ds = DS_EMPTY_INITIALIZER;
1503 const struct bridge *br;
93dfc067 1504 const struct mac_entry *e;
8c4c1387
BP
1505
1506 br = bridge_lookup(args);
1507 if (!br) {
1508 unixctl_command_reply(conn, 501, "no such bridge");
1509 return;
1510 }
1511
1512 ds_put_cstr(&ds, " port VLAN MAC Age\n");
4e8e4213 1513 LIST_FOR_EACH (e, lru_node, &br->ml->lrus) {
1648ddd7 1514 struct port *port = e->port.p;
93dfc067 1515 ds_put_format(&ds, "%5d %4d "ETH_ADDR_FMT" %3d\n",
1648ddd7 1516 port_get_an_iface(port)->dp_ifidx,
93dfc067 1517 e->vlan, ETH_ADDR_ARGS(e->mac), mac_entry_age(e));
8c4c1387
BP
1518 }
1519 unixctl_command_reply(conn, 200, ds_cstr(&ds));
1520 ds_destroy(&ds);
1521}
1522\f
e8fe3026
EJ
1523/* QoS unixctl user interface functions. */
1524
1525struct qos_unixctl_show_cbdata {
1526 struct ds *ds;
1527 struct iface *iface;
1528};
1529
1530static void
1531qos_unixctl_show_cb(unsigned int queue_id,
1532 const struct shash *details,
1533 void *aux)
1534{
1535 struct qos_unixctl_show_cbdata *data = aux;
1536 struct ds *ds = data->ds;
1537 struct iface *iface = data->iface;
1538 struct netdev_queue_stats stats;
1539 struct shash_node *node;
1540 int error;
1541
1542 ds_put_cstr(ds, "\n");
1543 if (queue_id) {
1544 ds_put_format(ds, "Queue %u:\n", queue_id);
1545 } else {
1546 ds_put_cstr(ds, "Default:\n");
1547 }
1548
1549 SHASH_FOR_EACH (node, details) {
1550 ds_put_format(ds, "\t%s: %s\n", node->name, (char *)node->data);
1551 }
1552
1553 error = netdev_get_queue_stats(iface->netdev, queue_id, &stats);
1554 if (!error) {
1555 if (stats.tx_packets != UINT64_MAX) {
1556 ds_put_format(ds, "\ttx_packets: %"PRIu64"\n", stats.tx_packets);
1557 }
1558
1559 if (stats.tx_bytes != UINT64_MAX) {
1560 ds_put_format(ds, "\ttx_bytes: %"PRIu64"\n", stats.tx_bytes);
1561 }
1562
1563 if (stats.tx_errors != UINT64_MAX) {
1564 ds_put_format(ds, "\ttx_errors: %"PRIu64"\n", stats.tx_errors);
1565 }
1566 } else {
1567 ds_put_format(ds, "\tFailed to get statistics for queue %u: %s",
1568 queue_id, strerror(error));
1569 }
1570}
1571
1572static void
1573qos_unixctl_show(struct unixctl_conn *conn,
1574 const char *args, void *aux OVS_UNUSED)
1575{
1576 struct ds ds = DS_EMPTY_INITIALIZER;
1577 struct shash sh = SHASH_INITIALIZER(&sh);
1578 struct iface *iface;
1579 const char *type;
1580 struct shash_node *node;
1581 struct qos_unixctl_show_cbdata data;
1582 int error;
1583
1584 iface = iface_find(args);
1585 if (!iface) {
1586 unixctl_command_reply(conn, 501, "no such interface");
1587 return;
1588 }
1589
1590 netdev_get_qos(iface->netdev, &type, &sh);
1591
1592 if (*type != '\0') {
1593 ds_put_format(&ds, "QoS: %s %s\n", iface->name, type);
1594
1595 SHASH_FOR_EACH (node, &sh) {
1596 ds_put_format(&ds, "%s: %s\n", node->name, (char *)node->data);
1597 }
1598
1599 data.ds = &ds;
1600 data.iface = iface;
1601 error = netdev_dump_queues(iface->netdev, qos_unixctl_show_cb, &data);
1602
1603 if (error) {
1604 ds_put_format(&ds, "failed to dump queues: %s", strerror(error));
1605 }
1606 unixctl_command_reply(conn, 200, ds_cstr(&ds));
1607 } else {
1608 ds_put_format(&ds, "QoS not configured on %s\n", iface->name);
1609 unixctl_command_reply(conn, 501, ds_cstr(&ds));
1610 }
1611
1612 shash_destroy_free_data(&sh);
1613 ds_destroy(&ds);
1614}
1615\f
064af421 1616/* Bridge reconfiguration functions. */
064af421 1617static struct bridge *
1a6f1e2a 1618bridge_create(const struct ovsrec_bridge *br_cfg)
064af421
BP
1619{
1620 struct bridge *br;
1621 int error;
1622
1a6f1e2a 1623 assert(!bridge_lookup(br_cfg->name));
ec6fde61 1624 br = xzalloc(sizeof *br);
064af421 1625
1a6f1e2a
JG
1626 error = dpif_create_and_open(br_cfg->name, br_cfg->datapath_type,
1627 &br->dpif);
efacbce6 1628 if (error) {
064af421
BP
1629 free(br);
1630 return NULL;
1631 }
efacbce6 1632 dpif_flow_flush(br->dpif);
064af421 1633
1a6f1e2a
JG
1634 error = ofproto_create(br_cfg->name, br_cfg->datapath_type, &bridge_ofhooks,
1635 br, &br->ofproto);
064af421 1636 if (error) {
1a6f1e2a
JG
1637 VLOG_ERR("failed to create switch %s: %s", br_cfg->name,
1638 strerror(error));
c228a364
BP
1639 dpif_delete(br->dpif);
1640 dpif_close(br->dpif);
064af421
BP
1641 free(br);
1642 return NULL;
1643 }
1644
1a6f1e2a
JG
1645 br->name = xstrdup(br_cfg->name);
1646 br->cfg = br_cfg;
064af421 1647 br->ml = mac_learning_create();
70150daf 1648 eth_addr_nicira_random(br->default_ea);
064af421 1649
8052fb14 1650 hmap_init(&br->ports);
d9a8717a 1651 hmap_init(&br->ifaces);
4a1ee6ae
BP
1652 shash_init(&br->iface_by_name);
1653
064af421 1654 br->flush = false;
064af421
BP
1655
1656 list_push_back(&all_bridges, &br->node);
1657
c228a364 1658 VLOG_INFO("created bridge %s on %s", br->name, dpif_name(br->dpif));
064af421
BP
1659
1660 return br;
1661}
1662
1663static void
1664bridge_destroy(struct bridge *br)
1665{
1666 if (br) {
8052fb14 1667 struct port *port, *next;
064af421
BP
1668 int error;
1669
8052fb14
BP
1670 HMAP_FOR_EACH_SAFE (port, next, hmap_node, &br->ports) {
1671 port_destroy(port);
064af421
BP
1672 }
1673 list_remove(&br->node);
c228a364 1674 error = dpif_delete(br->dpif);
064af421 1675 if (error && error != ENOENT) {
b29ba128 1676 VLOG_ERR("failed to delete %s: %s",
c228a364 1677 dpif_name(br->dpif), strerror(error));
064af421 1678 }
c228a364 1679 dpif_close(br->dpif);
064af421 1680 ofproto_destroy(br->ofproto);
064af421 1681 mac_learning_destroy(br->ml);
d9a8717a 1682 hmap_destroy(&br->ifaces);
8052fb14 1683 hmap_destroy(&br->ports);
4a1ee6ae 1684 shash_destroy(&br->iface_by_name);
064af421
BP
1685 free(br->name);
1686 free(br);
1687 }
1688}
1689
1690static struct bridge *
1691bridge_lookup(const char *name)
1692{
1693 struct bridge *br;
1694
4e8e4213 1695 LIST_FOR_EACH (br, node, &all_bridges) {
064af421
BP
1696 if (!strcmp(br->name, name)) {
1697 return br;
1698 }
1699 }
1700 return NULL;
1701}
1702
4f2cad2c
JP
1703/* Handle requests for a listing of all flows known by the OpenFlow
1704 * stack, including those normally hidden. */
1705static void
8ca79daa 1706bridge_unixctl_dump_flows(struct unixctl_conn *conn,
c69ee87c 1707 const char *args, void *aux OVS_UNUSED)
4f2cad2c
JP
1708{
1709 struct bridge *br;
1710 struct ds results;
d295e8e9 1711
4f2cad2c
JP
1712 br = bridge_lookup(args);
1713 if (!br) {
1714 unixctl_command_reply(conn, 501, "Unknown bridge");
1715 return;
1716 }
1717
1718 ds_init(&results);
1719 ofproto_get_all_flows(br->ofproto, &results);
1720
1721 unixctl_command_reply(conn, 200, ds_cstr(&results));
1722 ds_destroy(&results);
1723}
1724
fa05809b
BP
1725/* "bridge/reconnect [BRIDGE]": makes BRIDGE drop all of its controller
1726 * connections and reconnect. If BRIDGE is not specified, then all bridges
1727 * drop their controller connections and reconnect. */
1728static void
1729bridge_unixctl_reconnect(struct unixctl_conn *conn,
1730 const char *args, void *aux OVS_UNUSED)
1731{
1732 struct bridge *br;
1733 if (args[0] != '\0') {
1734 br = bridge_lookup(args);
1735 if (!br) {
1736 unixctl_command_reply(conn, 501, "Unknown bridge");
1737 return;
1738 }
1739 ofproto_reconnect_controllers(br->ofproto);
1740 } else {
4e8e4213 1741 LIST_FOR_EACH (br, node, &all_bridges) {
fa05809b
BP
1742 ofproto_reconnect_controllers(br->ofproto);
1743 }
1744 }
1745 unixctl_command_reply(conn, 200, NULL);
1746}
1747
064af421
BP
1748static int
1749bridge_run_one(struct bridge *br)
1750{
8052fb14 1751 struct port *port;
064af421
BP
1752 int error;
1753
1754 error = ofproto_run1(br->ofproto);
1755 if (error) {
1756 return error;
1757 }
1758
93dfc067 1759 mac_learning_run(br->ml, ofproto_get_revalidate_set(br->ofproto));
21dcb94f 1760
8052fb14
BP
1761 HMAP_FOR_EACH (port, hmap_node, &br->ports) {
1762 port_run(port);
21dcb94f 1763 }
064af421
BP
1764
1765 error = ofproto_run2(br->ofproto, br->flush);
1766 br->flush = false;
1767
1768 return error;
1769}
1770
76ce9432 1771static size_t
1a048029 1772bridge_get_controllers(const struct bridge *br,
76ce9432 1773 struct ovsrec_controller ***controllersp)
064af421 1774{
76ce9432
BP
1775 struct ovsrec_controller **controllers;
1776 size_t n_controllers;
064af421 1777
1a048029
JP
1778 controllers = br->cfg->controller;
1779 n_controllers = br->cfg->n_controller;
76343538 1780
76ce9432
BP
1781 if (n_controllers == 1 && !strcmp(controllers[0]->target, "none")) {
1782 controllers = NULL;
1783 n_controllers = 0;
064af421 1784 }
76343538 1785
76ce9432
BP
1786 if (controllersp) {
1787 *controllersp = controllers;
1788 }
1789 return n_controllers;
064af421
BP
1790}
1791
1792static void
1a048029 1793bridge_reconfigure_one(struct bridge *br)
064af421 1794{
8052fb14 1795 enum ofproto_fail_mode fail_mode;
064af421 1796 struct svec snoops, old_snoops;
8052fb14 1797 struct port *port, *next;
76343538 1798 struct shash_node *node;
8052fb14 1799 struct shash new_ports;
6ae39834 1800 size_t i;
064af421 1801
064af421 1802 /* Collect new ports. */
76343538
BP
1803 shash_init(&new_ports);
1804 for (i = 0; i < br->cfg->n_ports; i++) {
1805 const char *name = br->cfg->ports[i]->name;
1806 if (!shash_add_once(&new_ports, name, br->cfg->ports[i])) {
1807 VLOG_WARN("bridge %s: %s specified twice as bridge port",
1808 br->name, name);
1809 }
1810 }
e073f944
BP
1811
1812 /* If we have a controller, then we need a local port. Complain if the
1813 * user didn't specify one.
1814 *
1815 * XXX perhaps we should synthesize a port ourselves in this case. */
1a048029 1816 if (bridge_get_controllers(br, NULL)) {
72865317
BP
1817 char local_name[IF_NAMESIZE];
1818 int error;
1819
1820 error = dpif_port_get_name(br->dpif, ODPP_LOCAL,
1821 local_name, sizeof local_name);
e073f944
BP
1822 if (!error && !shash_find(&new_ports, local_name)) {
1823 VLOG_WARN("bridge %s: controller specified but no local port "
1824 "(port named %s) defined",
1825 br->name, local_name);
72865317 1826 }
064af421 1827 }
064af421 1828
4a1ee6ae
BP
1829 /* Get rid of deleted ports.
1830 * Get rid of deleted interfaces on ports that still exist. */
8052fb14 1831 HMAP_FOR_EACH_SAFE (port, next, hmap_node, &br->ports) {
4a1ee6ae
BP
1832 const struct ovsrec_port *port_cfg;
1833
8052fb14 1834 port_cfg = shash_find_data(&new_ports, port->name);
4a1ee6ae
BP
1835 if (!port_cfg) {
1836 port_destroy(port);
1837 } else {
1838 port_del_ifaces(port, port_cfg);
064af421
BP
1839 }
1840 }
4a1ee6ae
BP
1841
1842 /* Create new ports.
1843 * Add new interfaces to existing ports.
1844 * Reconfigure existing ports. */
76343538 1845 SHASH_FOR_EACH (node, &new_ports) {
8052fb14 1846 struct port *port = port_lookup(br, node->name);
76343538
BP
1847 if (!port) {
1848 port = port_create(br, node->name);
064af421 1849 }
ceb4559f 1850
76343538 1851 port_reconfigure(port, node->data);
ceb4559f
JG
1852 if (!port->n_ifaces) {
1853 VLOG_WARN("bridge %s: port %s has no interfaces, dropping",
1854 br->name, port->name);
1855 port_destroy(port);
1856 }
064af421 1857 }
76343538 1858 shash_destroy(&new_ports);
064af421 1859
31681a5d
JP
1860 /* Set the fail-mode */
1861 fail_mode = !br->cfg->fail_mode
1862 || !strcmp(br->cfg->fail_mode, "standalone")
1863 ? OFPROTO_FAIL_STANDALONE
1864 : OFPROTO_FAIL_SECURE;
7d674866
BP
1865 if (ofproto_get_fail_mode(br->ofproto) != fail_mode
1866 && !ofproto_has_primary_controller(br->ofproto)) {
abdfe474
JP
1867 ofproto_flush_flows(br->ofproto);
1868 }
31681a5d
JP
1869 ofproto_set_fail_mode(br->ofproto, fail_mode);
1870
064af421
BP
1871 /* Delete all flows if we're switching from connected to standalone or vice
1872 * versa. (XXX Should we delete all flows if we are switching from one
1873 * controller to another?) */
1874
5a243150 1875 /* Configure OpenFlow controller connection snooping. */
76343538
BP
1876 svec_init(&snoops);
1877 svec_add_nocopy(&snoops, xasprintf("punix:%s/%s.snoop",
b43c6fe2 1878 ovs_rundir(), br->name));
76343538
BP
1879 svec_init(&old_snoops);
1880 ofproto_get_snoops(br->ofproto, &old_snoops);
1881 if (!svec_equal(&snoops, &old_snoops)) {
1882 ofproto_set_snoops(br->ofproto, &snoops);
1883 }
1884 svec_destroy(&snoops);
1885 svec_destroy(&old_snoops);
76343538 1886
064af421
BP
1887 mirror_reconfigure(br);
1888}
1889
7d674866
BP
1890/* Initializes 'oc' appropriately as a management service controller for
1891 * 'br'.
1892 *
1893 * The caller must free oc->target when it is no longer needed. */
1894static void
1895bridge_ofproto_controller_for_mgmt(const struct bridge *br,
1896 struct ofproto_controller *oc)
1897{
b43c6fe2 1898 oc->target = xasprintf("punix:%s/%s.mgmt", ovs_rundir(), br->name);
7d674866
BP
1899 oc->max_backoff = 0;
1900 oc->probe_interval = 60;
1901 oc->band = OFPROTO_OUT_OF_BAND;
7d674866
BP
1902 oc->rate_limit = 0;
1903 oc->burst_limit = 0;
1904}
1905
1906/* Converts ovsrec_controller 'c' into an ofproto_controller in 'oc'. */
1907static void
1908bridge_ofproto_controller_from_ovsrec(const struct ovsrec_controller *c,
1909 struct ofproto_controller *oc)
1910{
1911 oc->target = c->target;
1912 oc->max_backoff = c->max_backoff ? *c->max_backoff / 1000 : 8;
1913 oc->probe_interval = c->inactivity_probe ? *c->inactivity_probe / 1000 : 5;
1914 oc->band = (!c->connection_mode || !strcmp(c->connection_mode, "in-band")
1915 ? OFPROTO_IN_BAND : OFPROTO_OUT_OF_BAND);
7d674866
BP
1916 oc->rate_limit = c->controller_rate_limit ? *c->controller_rate_limit : 0;
1917 oc->burst_limit = (c->controller_burst_limit
1918 ? *c->controller_burst_limit : 0);
1919}
1920
1921/* Configures the IP stack for 'br''s local interface properly according to the
1922 * configuration in 'c'. */
1923static void
1924bridge_configure_local_iface_netdev(struct bridge *br,
1925 struct ovsrec_controller *c)
1926{
1927 struct netdev *netdev;
1928 struct in_addr mask, gateway;
1929
1930 struct iface *local_iface;
1931 struct in_addr ip;
1932
7d674866 1933 /* If there's no local interface or no IP address, give up. */
27b3a6e0 1934 local_iface = iface_from_dp_ifidx(br, ODPP_LOCAL);
7d674866
BP
1935 if (!local_iface || !c->local_ip || !inet_aton(c->local_ip, &ip)) {
1936 return;
1937 }
1938
1939 /* Bring up the local interface. */
1940 netdev = local_iface->netdev;
1941 netdev_turn_flags_on(netdev, NETDEV_UP, true);
1942
1943 /* Configure the IP address and netmask. */
1944 if (!c->local_netmask
1945 || !inet_aton(c->local_netmask, &mask)
1946 || !mask.s_addr) {
1947 mask.s_addr = guess_netmask(ip.s_addr);
1948 }
1949 if (!netdev_set_in4(netdev, ip, mask)) {
1950 VLOG_INFO("bridge %s: configured IP address "IP_FMT", netmask "IP_FMT,
1951 br->name, IP_ARGS(&ip.s_addr), IP_ARGS(&mask.s_addr));
1952 }
1953
1954 /* Configure the default gateway. */
1955 if (c->local_gateway
1956 && inet_aton(c->local_gateway, &gateway)
1957 && gateway.s_addr) {
1958 if (!netdev_add_router(netdev, gateway)) {
1959 VLOG_INFO("bridge %s: configured gateway "IP_FMT,
1960 br->name, IP_ARGS(&gateway.s_addr));
1961 }
1962 }
1963}
1964
064af421 1965static void
1a048029 1966bridge_reconfigure_remotes(struct bridge *br,
11bbff1b
BP
1967 const struct sockaddr_in *managers,
1968 size_t n_managers)
064af421 1969{
b1da6250
BP
1970 const char *disable_ib_str, *queue_id_str;
1971 bool disable_in_band = false;
1972 int queue_id;
1973
76ce9432
BP
1974 struct ovsrec_controller **controllers;
1975 size_t n_controllers;
7d674866
BP
1976 bool had_primary;
1977
1978 struct ofproto_controller *ocs;
1979 size_t n_ocs;
1980 size_t i;
064af421 1981
8731b2b6
JP
1982 /* Check if we should disable in-band control on this bridge. */
1983 disable_ib_str = bridge_get_other_config(br->cfg, "disable-in-band");
1984 if (disable_ib_str && !strcmp(disable_ib_str, "true")) {
1985 disable_in_band = true;
1986 }
1987
b1da6250
BP
1988 /* Set OpenFlow queue ID for in-band control. */
1989 queue_id_str = bridge_get_other_config(br->cfg, "in-band-queue");
1990 queue_id = queue_id_str ? strtol(queue_id_str, NULL, 10) : -1;
1991 ofproto_set_in_band_queue(br->ofproto, queue_id);
1992
8731b2b6
JP
1993 if (disable_in_band) {
1994 ofproto_set_extra_in_band_remotes(br->ofproto, NULL, 0);
1995 } else {
1996 ofproto_set_extra_in_band_remotes(br->ofproto, managers, n_managers);
1997 }
7d674866 1998 had_primary = ofproto_has_primary_controller(br->ofproto);
cd11000b 1999
1a048029 2000 n_controllers = bridge_get_controllers(br, &controllers);
064af421 2001
7d674866
BP
2002 ocs = xmalloc((n_controllers + 1) * sizeof *ocs);
2003 n_ocs = 0;
064af421 2004
7d674866
BP
2005 bridge_ofproto_controller_for_mgmt(br, &ocs[n_ocs++]);
2006 for (i = 0; i < n_controllers; i++) {
2007 struct ovsrec_controller *c = controllers[i];
76ce9432 2008
7d674866
BP
2009 if (!strncmp(c->target, "punix:", 6)
2010 || !strncmp(c->target, "unix:", 5)) {
2011 static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
76ce9432 2012
7d674866
BP
2013 /* Prevent remote ovsdb-server users from accessing arbitrary Unix
2014 * domain sockets and overwriting arbitrary local files. */
2015 VLOG_ERR_RL(&rl, "%s: not adding Unix domain socket controller "
2016 "\"%s\" due to possibility for remote exploit",
2017 dpif_name(br->dpif), c->target);
2018 continue;
2019 }
76ce9432 2020
7d674866 2021 bridge_configure_local_iface_netdev(br, c);
8731b2b6
JP
2022 bridge_ofproto_controller_from_ovsrec(c, &ocs[n_ocs]);
2023 if (disable_in_band) {
2024 ocs[n_ocs].band = OFPROTO_OUT_OF_BAND;
2025 }
2026 n_ocs++;
7d674866 2027 }
76ce9432 2028
7d674866
BP
2029 ofproto_set_controllers(br->ofproto, ocs, n_ocs);
2030 free(ocs[0].target); /* From bridge_ofproto_controller_for_mgmt(). */
2031 free(ocs);
064af421 2032
7d674866
BP
2033 if (had_primary != ofproto_has_primary_controller(br->ofproto)) {
2034 ofproto_flush_flows(br->ofproto);
2035 }
76ce9432 2036
7d674866
BP
2037 /* If there are no controllers and the bridge is in standalone
2038 * mode, set up a flow that matches every packet and directs
2039 * them to OFPP_NORMAL (which goes to us). Otherwise, the
2040 * switch is in secure mode and we won't pass any traffic until
2041 * a controller has been defined and it tells us to do so. */
2042 if (!n_controllers
2043 && ofproto_get_fail_mode(br->ofproto) == OFPROTO_FAIL_STANDALONE) {
2044 union ofp_action action;
cf3fad8a 2045 struct cls_rule rule;
76ce9432 2046
7d674866
BP
2047 memset(&action, 0, sizeof action);
2048 action.type = htons(OFPAT_OUTPUT);
2049 action.output.len = htons(sizeof action);
2050 action.output.port = htons(OFPP_NORMAL);
cf3fad8a 2051 cls_rule_init_catchall(&rule, 0);
fa8b054f 2052 ofproto_add_flow(br->ofproto, &rule, &action, 1);
064af421 2053 }
064af421
BP
2054}
2055
2056static void
76343538 2057bridge_get_all_ifaces(const struct bridge *br, struct shash *ifaces)
064af421 2058{
8052fb14 2059 struct port *port;
064af421 2060
76343538 2061 shash_init(ifaces);
8052fb14 2062 HMAP_FOR_EACH (port, hmap_node, &br->ports) {
83db7968
BP
2063 struct iface *iface;
2064
2065 LIST_FOR_EACH (iface, port_elem, &port->ifaces) {
76343538 2066 shash_add_once(ifaces, iface->name, iface);
064af421 2067 }
76343538
BP
2068 if (port->n_ifaces > 1 && port->cfg->bond_fake_iface) {
2069 shash_add_once(ifaces, port->name, NULL);
35c979bf 2070 }
064af421 2071 }
064af421
BP
2072}
2073
2074/* For robustness, in case the administrator moves around datapath ports behind
2075 * our back, we re-check all the datapath port numbers here.
2076 *
2077 * This function will set the 'dp_ifidx' members of interfaces that have
2078 * disappeared to -1, so only call this function from a context where those
2079 * 'struct iface's will be removed from the bridge. Otherwise, the -1
2080 * 'dp_ifidx'es will cause trouble later when we try to send them to the
2081 * datapath, which doesn't support UINT16_MAX+1 ports. */
2082static void
2083bridge_fetch_dp_ifaces(struct bridge *br)
2084{
b0ec0f27 2085 struct dpif_port_dump dump;
4c738a8d 2086 struct dpif_port dpif_port;
8052fb14 2087 struct port *port;
064af421
BP
2088
2089 /* Reset all interface numbers. */
8052fb14 2090 HMAP_FOR_EACH (port, hmap_node, &br->ports) {
83db7968
BP
2091 struct iface *iface;
2092
2093 LIST_FOR_EACH (iface, port_elem, &port->ifaces) {
064af421
BP
2094 iface->dp_ifidx = -1;
2095 }
2096 }
d9a8717a 2097 hmap_clear(&br->ifaces);
064af421 2098
4c738a8d
BP
2099 DPIF_PORT_FOR_EACH (&dpif_port, &dump, br->dpif) {
2100 struct iface *iface = iface_lookup(br, dpif_port.name);
064af421
BP
2101 if (iface) {
2102 if (iface->dp_ifidx >= 0) {
b29ba128 2103 VLOG_WARN("%s reported interface %s twice",
4c738a8d
BP
2104 dpif_name(br->dpif), dpif_port.name);
2105 } else if (iface_from_dp_ifidx(br, dpif_port.port_no)) {
b29ba128 2106 VLOG_WARN("%s reported interface %"PRIu16" twice",
4c738a8d 2107 dpif_name(br->dpif), dpif_port.port_no);
064af421 2108 } else {
4c738a8d 2109 iface->dp_ifidx = dpif_port.port_no;
d9a8717a
BP
2110 hmap_insert(&br->ifaces, &iface->dp_ifidx_node,
2111 hash_int(iface->dp_ifidx, 0));
064af421 2112 }
093e47f4 2113
bcd49a45
BP
2114 iface_set_ofport(iface->cfg,
2115 (iface->dp_ifidx >= 0
2116 ? odp_port_to_ofp_port(iface->dp_ifidx)
2117 : -1));
064af421
BP
2118 }
2119 }
064af421
BP
2120}
2121\f
2122/* Bridge packet processing functions. */
2123
9f5073d8
EJ
2124static bool
2125bond_is_tcp_hash(const struct port *port)
2126{
6aa74308 2127 return port->bond_mode == BM_TCP && lacp_negotiated(port->lacp);
9f5073d8
EJ
2128}
2129
da285df4 2130static int
9f5073d8 2131bond_hash_src(const uint8_t mac[ETH_ADDR_LEN], uint16_t vlan)
da285df4 2132{
e58de0e3 2133 return hash_bytes(mac, ETH_ADDR_LEN, vlan) & BOND_MASK;
da285df4
BP
2134}
2135
9f5073d8
EJ
2136static int bond_hash_tcp(const struct flow *flow, uint16_t vlan)
2137{
2138 struct flow hash_flow;
2139
2140 memcpy(&hash_flow, flow, sizeof hash_flow);
2141 hash_flow.vlan_tci = 0;
2142
2143 /* The symmetric quality of this hash function is not required, but
2144 * flow_hash_symmetric_l4 already exists, and is sufficient for our
2145 * purposes, so we use it out of convenience. */
2146 return flow_hash_symmetric_l4(&hash_flow, vlan) & BOND_MASK;
2147}
2148
064af421 2149static struct bond_entry *
9f5073d8 2150lookup_bond_entry(const struct port *port, const struct flow *flow,
e58de0e3 2151 uint16_t vlan)
064af421 2152{
9f5073d8
EJ
2153 assert(port->bond_mode != BM_AB);
2154
2155 if (bond_is_tcp_hash(port)) {
2156 return &port->bond_hash[bond_hash_tcp(flow, vlan)];
2157 } else {
2158 return &port->bond_hash[bond_hash_src(flow->dl_src, vlan)];
2159 }
064af421
BP
2160}
2161
990cda85 2162static struct iface *
064af421
BP
2163bond_choose_iface(const struct port *port)
2164{
8b2a2f4a 2165 static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(5, 20);
990cda85 2166 struct iface *best_down_slave;
83db7968 2167 struct iface *iface;
8b2a2f4a 2168
990cda85 2169 best_down_slave = NULL;
83db7968 2170 LIST_FOR_EACH (iface, port_elem, &port->ifaces) {
8b2a2f4a 2171 if (iface->enabled) {
990cda85
BP
2172 return iface;
2173 } else if ((!best_down_slave
2174 || iface->delay_expires < best_down_slave->delay_expires)
6aa74308 2175 && lacp_slave_may_enable(port->lacp, iface)) {
990cda85 2176 best_down_slave = iface;
064af421
BP
2177 }
2178 }
8b2a2f4a 2179
990cda85 2180 if (best_down_slave) {
8b2a2f4a 2181 VLOG_INFO_RL(&rl, "interface %s: skipping remaining %lli ms updelay "
990cda85
BP
2182 "since no other interface is up",
2183 best_down_slave->name,
2184 best_down_slave->delay_expires - time_msec());
2185 bond_enable_slave(best_down_slave, true);
8b2a2f4a
JG
2186 }
2187
2188 return best_down_slave;
064af421
BP
2189}
2190
2191static bool
9f5073d8 2192choose_output_iface(const struct port *port, const struct flow *flow,
e58de0e3 2193 uint16_t vlan, uint16_t *dp_ifidx, tag_type *tags)
064af421
BP
2194{
2195 struct iface *iface;
2196
2197 assert(port->n_ifaces);
2198 if (port->n_ifaces == 1) {
83db7968 2199 iface = port_get_an_iface(port);
27dcaa1a 2200 } else if (port->bond_mode == BM_AB) {
990cda85
BP
2201 iface = port->active_iface;
2202 if (!iface) {
be02e7c3
EJ
2203 *tags |= port->no_ifaces_tag;
2204 return false;
2205 }
9f5073d8
EJ
2206 } else {
2207 struct bond_entry *e = lookup_bond_entry(port, flow, vlan);
c17f0d5e 2208 if (!e->iface || !e->iface->enabled) {
064af421
BP
2209 /* XXX select interface properly. The current interface selection
2210 * is only good for testing the rebalancing code. */
c17f0d5e
BP
2211 e->iface = bond_choose_iface(port);
2212 if (!e->iface) {
064af421
BP
2213 *tags |= port->no_ifaces_tag;
2214 return false;
2215 }
c0cb6f59 2216 e->tag = tag_create_random();
064af421 2217 }
c0cb6f59 2218 *tags |= e->tag;
c17f0d5e 2219 iface = e->iface;
064af421
BP
2220 }
2221 *dp_ifidx = iface->dp_ifidx;
2222 *tags |= iface->tag; /* Currently only used for bonding. */
2223 return true;
2224}
2225
2226static void
c835c3bf 2227bond_link_status_update(struct iface *iface)
064af421
BP
2228{
2229 static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(5, 20);
2230 struct port *port = iface->port;
6aa74308 2231 bool up = iface->up && lacp_slave_may_enable(port->lacp, iface);
c25c91fd
EJ
2232 int updelay, downdelay;
2233
2234 updelay = port->updelay;
2235 downdelay = port->downdelay;
2236
6aa74308 2237 if (lacp_negotiated(port->lacp)) {
c25c91fd
EJ
2238 downdelay = 0;
2239 updelay = 0;
2240 }
2241
c25c91fd 2242 if ((up == iface->enabled) == (iface->delay_expires == LLONG_MAX)) {
064af421
BP
2243 /* Nothing to do. */
2244 return;
2245 }
63331829 2246 VLOG_INFO_RL(&rl, "interface %s: link state %s",
c25c91fd
EJ
2247 iface->name, up ? "up" : "down");
2248 if (up == iface->enabled) {
064af421
BP
2249 iface->delay_expires = LLONG_MAX;
2250 VLOG_INFO_RL(&rl, "interface %s: will not be %s",
c25c91fd 2251 iface->name, up ? "disabled" : "enabled");
990cda85 2252 } else if (up && !port->active_iface) {
8b2a2f4a 2253 bond_enable_slave(iface, true);
c25c91fd 2254 if (updelay) {
8b2a2f4a 2255 VLOG_INFO_RL(&rl, "interface %s: skipping %d ms updelay since no "
c25c91fd 2256 "other interface is up", iface->name, updelay);
8b2a2f4a 2257 }
064af421 2258 } else {
c25c91fd 2259 int delay = up ? updelay : downdelay;
064af421
BP
2260 iface->delay_expires = time_msec() + delay;
2261 if (delay) {
2262 VLOG_INFO_RL(&rl,
2263 "interface %s: will be %s if it stays %s for %d ms",
2264 iface->name,
c25c91fd
EJ
2265 up ? "enabled" : "disabled",
2266 up ? "up" : "down",
064af421
BP
2267 delay);
2268 }
2269 }
2270}
2271
2272static void
2273bond_choose_active_iface(struct port *port)
2274{
2275 static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(5, 20);
2276
2277 port->active_iface = bond_choose_iface(port);
990cda85 2278 if (port->active_iface) {
064af421 2279 VLOG_INFO_RL(&rl, "port %s: active interface is now %s",
990cda85 2280 port->name, port->active_iface->name);
064af421
BP
2281 } else {
2282 VLOG_WARN_RL(&rl, "port %s: all ports disabled, no active interface",
2283 port->name);
2284 }
2285}
2286
da285df4
BP
2287static void
2288bond_enable_slave(struct iface *iface, bool enable)
2289{
2290 struct port *port = iface->port;
2291 struct bridge *br = port->bridge;
2292
8b2a2f4a
JG
2293 /* This acts as a recursion check. If the act of disabling a slave
2294 * causes a different slave to be enabled, the flag will allow us to
2295 * skip redundant work when we reenter this function. It must be
2296 * cleared on exit to keep things safe with multiple bonds. */
2297 static bool moving_active_iface = false;
2298
da285df4
BP
2299 iface->delay_expires = LLONG_MAX;
2300 if (enable == iface->enabled) {
2301 return;
2302 }
2303
2304 iface->enabled = enable;
2305 if (!iface->enabled) {
17ea75b2 2306 VLOG_WARN("interface %s: disabled", iface->name);
da285df4 2307 ofproto_revalidate(br->ofproto, iface->tag);
990cda85 2308 if (iface == port->active_iface) {
8b2a2f4a
JG
2309 /* Disabling a slave can lead to another slave being immediately
2310 * enabled if there will be no active slaves but one is waiting
2311 * on an updelay. In this case we do not need to run most of the
2312 * code for the newly enabled slave since there was no period
2313 * without an active slave and it is redundant with the disabling
2314 * path. */
2315 moving_active_iface = true;
da285df4
BP
2316 bond_choose_active_iface(port);
2317 }
2318 bond_send_learning_packets(port);
2319 } else {
17ea75b2 2320 VLOG_WARN("interface %s: enabled", iface->name);
990cda85 2321 if (!port->active_iface && !moving_active_iface) {
da285df4
BP
2322 ofproto_revalidate(br->ofproto, port->no_ifaces_tag);
2323 bond_choose_active_iface(port);
2324 bond_send_learning_packets(port);
2325 }
2326 iface->tag = tag_create_random();
2327 }
8b2a2f4a
JG
2328
2329 moving_active_iface = false;
da285df4
BP
2330}
2331
8722022c
BP
2332/* Attempts to make the sum of the bond slaves' statistics appear on the fake
2333 * bond interface. */
2334static void
2335bond_update_fake_iface_stats(struct port *port)
2336{
2337 struct netdev_stats bond_stats;
2338 struct netdev *bond_dev;
83db7968 2339 struct iface *iface;
8722022c
BP
2340
2341 memset(&bond_stats, 0, sizeof bond_stats);
2342
83db7968 2343 LIST_FOR_EACH (iface, port_elem, &port->ifaces) {
8722022c
BP
2344 struct netdev_stats slave_stats;
2345
83db7968 2346 if (!netdev_get_stats(iface->netdev, &slave_stats)) {
f4b6076a
JG
2347 /* XXX: We swap the stats here because they are swapped back when
2348 * reported by the internal device. The reason for this is
2349 * internal devices normally represent packets going into the system
2350 * but when used as fake bond device they represent packets leaving
2351 * the system. We really should do this in the internal device
2352 * itself because changing it here reverses the counts from the
2353 * perspective of the switch. However, the internal device doesn't
2354 * know what type of device it represents so we have to do it here
2355 * for now. */
2356 bond_stats.tx_packets += slave_stats.rx_packets;
2357 bond_stats.tx_bytes += slave_stats.rx_bytes;
2358 bond_stats.rx_packets += slave_stats.tx_packets;
2359 bond_stats.rx_bytes += slave_stats.tx_bytes;
8722022c
BP
2360 }
2361 }
2362
2363 if (!netdev_open_default(port->name, &bond_dev)) {
2364 netdev_set_stats(bond_dev, &bond_stats);
2365 netdev_close(bond_dev);
2366 }
2367}
2368
064af421 2369static void
21dcb94f 2370bond_run(struct port *port)
064af421 2371{
83db7968 2372 struct iface *iface;
0bb5c3ec 2373
21dcb94f
EJ
2374 if (port->n_ifaces < 2) {
2375 return;
2376 }
0bb5c3ec 2377
83db7968
BP
2378 LIST_FOR_EACH (iface, port_elem, &port->ifaces) {
2379 bond_link_status_update(iface);
21dcb94f 2380 }
8722022c 2381
83db7968 2382 LIST_FOR_EACH (iface, port_elem, &port->ifaces) {
21dcb94f
EJ
2383 if (time_msec() >= iface->delay_expires) {
2384 bond_enable_slave(iface, !iface->enabled);
8b2a2f4a 2385 }
064af421 2386 }
21dcb94f
EJ
2387
2388 if (port->bond_fake_iface
2389 && time_msec() >= port->bond_next_fake_iface_update) {
2390 bond_update_fake_iface_stats(port);
2391 port->bond_next_fake_iface_update = time_msec() + 1000;
2392 }
064af421
BP
2393}
2394
2395static void
21dcb94f 2396bond_wait(struct port *port)
064af421 2397{
83db7968 2398 struct iface *iface;
064af421 2399
21dcb94f
EJ
2400 if (port->n_ifaces < 2) {
2401 return;
2402 }
63331829 2403
83db7968 2404 LIST_FOR_EACH (iface, port_elem, &port->ifaces) {
21dcb94f
EJ
2405 if (iface->delay_expires != LLONG_MAX) {
2406 poll_timer_wait_until(iface->delay_expires);
8722022c 2407 }
064af421 2408 }
21dcb94f
EJ
2409
2410 if (port->bond_fake_iface) {
2411 poll_timer_wait_until(port->bond_next_fake_iface_update);
2412 }
064af421
BP
2413}
2414
2415static bool
0c62a7ad 2416set_dst(struct dst *dst, const struct flow *flow,
064af421
BP
2417 const struct port *in_port, const struct port *out_port,
2418 tag_type *tags)
2419{
0c62a7ad 2420 dst->vlan = (out_port->vlan >= 0 ? OFP_VLAN_NONE
064af421 2421 : in_port->vlan >= 0 ? in_port->vlan
66642cb4
BP
2422 : flow->vlan_tci == 0 ? OFP_VLAN_NONE
2423 : vlan_tci_to_vid(flow->vlan_tci));
9f5073d8 2424 return choose_output_iface(out_port, flow, dst->vlan,
0c62a7ad 2425 &dst->dp_ifidx, tags);
064af421
BP
2426}
2427
2428static void
2429swap_dst(struct dst *p, struct dst *q)
2430{
2431 struct dst tmp = *p;
2432 *p = *q;
2433 *q = tmp;
2434}
2435
2436/* Moves all the dsts with vlan == 'vlan' to the front of the 'n_dsts' in
2437 * 'dsts'. (This may help performance by reducing the number of VLAN changes
2438 * that we push to the datapath. We could in fact fully sort the array by
2439 * vlan, but in most cases there are at most two different vlan tags so that's
2440 * possibly overkill.) */
2441static void
0c62a7ad 2442partition_dsts(struct dst_set *set, int vlan)
064af421 2443{
0c62a7ad
BP
2444 struct dst *first = set->dsts;
2445 struct dst *last = set->dsts + set->n;
064af421
BP
2446
2447 while (first != last) {
2448 /* Invariants:
2449 * - All dsts < first have vlan == 'vlan'.
2450 * - All dsts >= last have vlan != 'vlan'.
2451 * - first < last. */
2452 while (first->vlan == vlan) {
2453 if (++first == last) {
2454 return;
2455 }
2456 }
2457
2458 /* Same invariants, plus one additional:
2459 * - first->vlan != vlan.
2460 */
2461 while (last[-1].vlan != vlan) {
2462 if (--last == first) {
2463 return;
2464 }
2465 }
2466
2467 /* Same invariants, plus one additional:
2468 * - last[-1].vlan == vlan.*/
2469 swap_dst(first++, --last);
2470 }
2471}
2472
2473static int
2474mirror_mask_ffs(mirror_mask_t mask)
2475{
2476 BUILD_ASSERT_DECL(sizeof(unsigned int) >= sizeof(mask));
2477 return ffs(mask);
2478}
2479
0c62a7ad
BP
2480static void
2481dst_set_init(struct dst_set *set)
2482{
2483 set->dsts = set->builtin;
2484 set->n = 0;
2485 set->allocated = ARRAY_SIZE(set->builtin);
2486}
2487
2488static void
2489dst_set_add(struct dst_set *set, const struct dst *dst)
2490{
2491 if (set->n >= set->allocated) {
2492 size_t new_allocated;
2493 struct dst *new_dsts;
2494
2495 new_allocated = set->allocated * 2;
2496 new_dsts = xmalloc(new_allocated * sizeof *new_dsts);
2497 memcpy(new_dsts, set->dsts, set->n * sizeof *new_dsts);
2498
2499 dst_set_free(set);
2500
2501 set->dsts = new_dsts;
2502 set->allocated = new_allocated;
2503 }
2504 set->dsts[set->n++] = *dst;
2505}
2506
2507static void
2508dst_set_free(struct dst_set *set)
2509{
2510 if (set->dsts != set->builtin) {
2511 free(set->dsts);
2512 }
2513}
2514
064af421 2515static bool
0c62a7ad 2516dst_is_duplicate(const struct dst_set *set, const struct dst *test)
064af421
BP
2517{
2518 size_t i;
0c62a7ad
BP
2519 for (i = 0; i < set->n; i++) {
2520 if (set->dsts[i].vlan == test->vlan
2521 && set->dsts[i].dp_ifidx == test->dp_ifidx) {
064af421
BP
2522 return true;
2523 }
2524 }
2525 return false;
2526}
2527
2528static bool
2529port_trunks_vlan(const struct port *port, uint16_t vlan)
2530{
3e9c481c
BP
2531 return (port->vlan < 0
2532 && (!port->trunks || bitmap_is_set(port->trunks, vlan)));
064af421
BP
2533}
2534
2535static bool
2536port_includes_vlan(const struct port *port, uint16_t vlan)
2537{
2538 return vlan == port->vlan || port_trunks_vlan(port, vlan);
2539}
2540
a4e2e1f2
EJ
2541static bool
2542port_is_floodable(const struct port *port)
2543{
83db7968 2544 struct iface *iface;
a4e2e1f2 2545
83db7968 2546 LIST_FOR_EACH (iface, port_elem, &port->ifaces) {
a4e2e1f2 2547 if (!ofproto_port_is_floodable(port->bridge->ofproto,
83db7968 2548 iface->dp_ifidx)) {
a4e2e1f2
EJ
2549 return false;
2550 }
2551 }
2552 return true;
2553}
2554
7e559ecf
BP
2555/* Returns the tag for 'port''s active iface, or 'port''s no_ifaces_tag if
2556 * there is no active iface. */
2557static tag_type
2558port_get_active_iface_tag(const struct port *port)
2559{
990cda85
BP
2560 return (port->active_iface
2561 ? port->active_iface->tag
7e559ecf
BP
2562 : port->no_ifaces_tag);
2563}
2564
83db7968
BP
2565/* Returns an arbitrary interface within 'port'.
2566 *
2567 * 'port' must have at least one interface. */
2568static struct iface *
2569port_get_an_iface(const struct port *port)
2570{
2571 return CONTAINER_OF(list_front(&port->ifaces), struct iface, port_elem);
2572}
2573
0c62a7ad 2574static void
ae412e7d 2575compose_dsts(const struct bridge *br, const struct flow *flow, uint16_t vlan,
064af421 2576 const struct port *in_port, const struct port *out_port,
0c62a7ad 2577 struct dst_set *set, tag_type *tags, uint16_t *nf_output_iface)
064af421
BP
2578{
2579 mirror_mask_t mirrors = in_port->src_mirrors;
0c62a7ad 2580 struct dst dst;
66642cb4 2581 int flow_vlan;
064af421 2582
66642cb4
BP
2583 flow_vlan = vlan_tci_to_vid(flow->vlan_tci);
2584 if (flow_vlan == 0) {
2585 flow_vlan = OFP_VLAN_NONE;
2586 }
2587
064af421 2588 if (out_port == FLOOD_PORT) {
8052fb14
BP
2589 struct port *port;
2590
2591 HMAP_FOR_EACH (port, hmap_node, &br->ports) {
a4e2e1f2
EJ
2592 if (port != in_port
2593 && port_is_floodable(port)
2594 && port_includes_vlan(port, vlan)
064af421 2595 && !port->is_mirror_output_port
0c62a7ad 2596 && set_dst(&dst, flow, in_port, port, tags)) {
064af421 2597 mirrors |= port->dst_mirrors;
0c62a7ad 2598 dst_set_add(set, &dst);
064af421
BP
2599 }
2600 }
6a07af36 2601 *nf_output_iface = NF_OUT_FLOOD;
0c62a7ad
BP
2602 } else if (out_port && set_dst(&dst, flow, in_port, out_port, tags)) {
2603 dst_set_add(set, &dst);
2604 *nf_output_iface = dst.dp_ifidx;
064af421 2605 mirrors |= out_port->dst_mirrors;
064af421
BP
2606 }
2607
2608 while (mirrors) {
2609 struct mirror *m = br->mirrors[mirror_mask_ffs(mirrors) - 1];
2610 if (!m->n_vlans || vlan_is_mirrored(m, vlan)) {
2611 if (m->out_port) {
0c62a7ad
BP
2612 if (set_dst(&dst, flow, in_port, m->out_port, tags)
2613 && !dst_is_duplicate(set, &dst)) {
2614 dst_set_add(set, &dst);
064af421
BP
2615 }
2616 } else {
8052fb14
BP
2617 struct port *port;
2618
2619 HMAP_FOR_EACH (port, hmap_node, &br->ports) {
064af421 2620 if (port_includes_vlan(port, m->out_vlan)
0c62a7ad 2621 && set_dst(&dst, flow, in_port, port, tags))
064af421
BP
2622 {
2623 if (port->vlan < 0) {
0c62a7ad 2624 dst.vlan = m->out_vlan;
064af421 2625 }
0c62a7ad 2626 if (dst_is_duplicate(set, &dst)) {
274de4d2
BP
2627 continue;
2628 }
43aa5f47
JG
2629
2630 /* Use the vlan tag on the original flow instead of
2631 * the one passed in the vlan parameter. This ensures
2632 * that we compare the vlan from before any implicit
2633 * tagging tags place. This is necessary because
2634 * dst->vlan is the final vlan, after removing implicit
2635 * tags. */
0c62a7ad 2636 if (port == in_port && dst.vlan == flow_vlan) {
064af421
BP
2637 /* Don't send out input port on same VLAN. */
2638 continue;
2639 }
0c62a7ad 2640 dst_set_add(set, &dst);
064af421
BP
2641 }
2642 }
2643 }
2644 }
2645 mirrors &= mirrors - 1;
2646 }
2647
0c62a7ad 2648 partition_dsts(set, flow_vlan);
064af421
BP
2649}
2650
67a4917b 2651static void OVS_UNUSED
0c62a7ad 2652print_dsts(const struct dst_set *set)
064af421 2653{
0c62a7ad
BP
2654 size_t i;
2655
2656 for (i = 0; i < set->n; i++) {
2657 const struct dst *dst = &set->dsts[i];
2658
2659 printf(">p%"PRIu16, dst->dp_ifidx);
2660 if (dst->vlan != OFP_VLAN_NONE) {
2661 printf("v%"PRIu16, dst->vlan);
064af421
BP
2662 }
2663 }
2664}
2665
2666static void
ae412e7d 2667compose_actions(struct bridge *br, const struct flow *flow, uint16_t vlan,
064af421 2668 const struct port *in_port, const struct port *out_port,
cdee00fd 2669 tag_type *tags, struct ofpbuf *actions,
6a07af36 2670 uint16_t *nf_output_iface)
064af421 2671{
0c62a7ad 2672 struct dst_set set;
064af421 2673 uint16_t cur_vlan;
0c62a7ad 2674 size_t i;
064af421 2675
0c62a7ad
BP
2676 dst_set_init(&set);
2677 compose_dsts(br, flow, vlan, in_port, out_port, &set, tags,
2678 nf_output_iface);
064af421 2679
66642cb4
BP
2680 cur_vlan = vlan_tci_to_vid(flow->vlan_tci);
2681 if (cur_vlan == 0) {
2682 cur_vlan = OFP_VLAN_NONE;
2683 }
0c62a7ad
BP
2684 for (i = 0; i < set.n; i++) {
2685 const struct dst *dst = &set.dsts[i];
2686 if (dst->vlan != cur_vlan) {
2687 if (dst->vlan == OFP_VLAN_NONE) {
7aec165d 2688 nl_msg_put_flag(actions, ODP_ACTION_ATTR_STRIP_VLAN);
064af421 2689 } else {
cdee00fd 2690 ovs_be16 tci;
0c62a7ad 2691 tci = htons(dst->vlan & VLAN_VID_MASK);
cdee00fd 2692 tci |= flow->vlan_tci & htons(VLAN_PCP_MASK);
7aec165d 2693 nl_msg_put_be16(actions, ODP_ACTION_ATTR_SET_DL_TCI, tci);
064af421 2694 }
0c62a7ad 2695 cur_vlan = dst->vlan;
064af421 2696 }
7aec165d 2697 nl_msg_put_u32(actions, ODP_ACTION_ATTR_OUTPUT, dst->dp_ifidx);
064af421 2698 }
0c62a7ad 2699 dst_set_free(&set);
064af421
BP
2700}
2701
e96a4d80
JG
2702/* Returns the effective vlan of a packet, taking into account both the
2703 * 802.1Q header and implicitly tagged ports. A value of 0 indicates that
2704 * the packet is untagged and -1 indicates it has an invalid header and
2705 * should be dropped. */
ae412e7d 2706static int flow_get_vlan(struct bridge *br, const struct flow *flow,
e96a4d80
JG
2707 struct port *in_port, bool have_packet)
2708{
66642cb4 2709 int vlan = vlan_tci_to_vid(flow->vlan_tci);
e96a4d80
JG
2710 if (in_port->vlan >= 0) {
2711 if (vlan) {
2712 /* XXX support double tagging? */
2713 if (have_packet) {
2714 static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
66642cb4 2715 VLOG_WARN_RL(&rl, "bridge %s: dropping VLAN %d tagged "
e96a4d80
JG
2716 "packet received on port %s configured with "
2717 "implicit VLAN %"PRIu16,
66642cb4 2718 br->name, vlan, in_port->name, in_port->vlan);
e96a4d80
JG
2719 }
2720 return -1;
2721 }
2722 vlan = in_port->vlan;
2723 } else {
2724 if (!port_includes_vlan(in_port, vlan)) {
2725 if (have_packet) {
2726 static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
2727 VLOG_WARN_RL(&rl, "bridge %s: dropping VLAN %d tagged "
2728 "packet received on port %s not configured for "
2729 "trunking VLAN %d",
2730 br->name, vlan, in_port->name, vlan);
2731 }
2732 return -1;
2733 }
2734 }
2735
2736 return vlan;
2737}
2738
7febb910
JG
2739/* A VM broadcasts a gratuitous ARP to indicate that it has resumed after
2740 * migration. Older Citrix-patched Linux DomU used gratuitous ARP replies to
2741 * indicate this; newer upstream kernels use gratuitous ARP requests. */
2742static bool
ae412e7d 2743is_gratuitous_arp(const struct flow *flow)
7febb910
JG
2744{
2745 return (flow->dl_type == htons(ETH_TYPE_ARP)
2746 && eth_addr_is_broadcast(flow->dl_dst)
2747 && (flow->nw_proto == ARP_OP_REPLY
2748 || (flow->nw_proto == ARP_OP_REQUEST
2749 && flow->nw_src == flow->nw_dst)));
2750}
2751
e96a4d80 2752static void
ae412e7d 2753update_learning_table(struct bridge *br, const struct flow *flow, int vlan,
e96a4d80
JG
2754 struct port *in_port)
2755{
db8077c3
BP
2756 struct mac_entry *mac;
2757
2758 if (!mac_learning_may_learn(br->ml, flow->dl_src, vlan)) {
2759 return;
2760 }
2761
2762 mac = mac_learning_insert(br->ml, flow->dl_src, vlan);
2763 if (is_gratuitous_arp(flow)) {
2764 /* We don't want to learn from gratuitous ARP packets that are
2765 * reflected back over bond slaves so we lock the learning table. */
2766 if (in_port->n_ifaces == 1) {
2767 mac_entry_set_grat_arp_lock(mac);
2768 } else if (mac_entry_is_grat_arp_locked(mac)) {
2769 return;
2770 }
2771 }
2772
1648ddd7 2773 if (mac_entry_is_new(mac) || mac->port.p != in_port) {
e96a4d80
JG
2774 /* The log messages here could actually be useful in debugging,
2775 * so keep the rate limit relatively high. */
db8077c3 2776 static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(30, 300);
e96a4d80
JG
2777 VLOG_DBG_RL(&rl, "bridge %s: learned that "ETH_ADDR_FMT" is "
2778 "on port %s in VLAN %d",
2779 br->name, ETH_ADDR_ARGS(flow->dl_src),
2780 in_port->name, vlan);
db8077c3 2781
1648ddd7 2782 mac->port.p = in_port;
db8077c3 2783 ofproto_revalidate(br->ofproto, mac_learning_changed(br->ml, mac));
e96a4d80
JG
2784 }
2785}
2786
14a34d00
BP
2787/* Determines whether packets in 'flow' within 'br' should be forwarded or
2788 * dropped. Returns true if they may be forwarded, false if they should be
2789 * dropped.
2790 *
2791 * If 'have_packet' is true, it indicates that the caller is processing a
2792 * received packet. If 'have_packet' is false, then the caller is just
2793 * revalidating an existing flow because configuration has changed. Either
2794 * way, 'have_packet' only affects logging (there is no point in logging errors
2795 * during revalidation).
2796 *
2797 * Sets '*in_portp' to the input port. This will be a null pointer if
2798 * flow->in_port does not designate a known input port (in which case
2799 * is_admissible() returns false).
2800 *
2801 * When returning true, sets '*vlanp' to the effective VLAN of the input
2802 * packet, as returned by flow_get_vlan().
2803 *
2804 * May also add tags to '*tags', although the current implementation only does
2805 * so in one special case.
2806 */
064af421 2807static bool
ae412e7d 2808is_admissible(struct bridge *br, const struct flow *flow, bool have_packet,
14a34d00 2809 tag_type *tags, int *vlanp, struct port **in_portp)
064af421
BP
2810{
2811 struct iface *in_iface;
2812 struct port *in_port;
064af421
BP
2813 int vlan;
2814
2815 /* Find the interface and port structure for the received packet. */
2816 in_iface = iface_from_dp_ifidx(br, flow->in_port);
2817 if (!in_iface) {
2818 /* No interface? Something fishy... */
14a34d00 2819 if (have_packet) {
064af421
BP
2820 /* Odd. A few possible reasons here:
2821 *
2822 * - We deleted an interface but there are still a few packets
2823 * queued up from it.
2824 *
2825 * - Someone externally added an interface (e.g. with "ovs-dpctl
2826 * add-if") that we don't know about.
2827 *
2828 * - Packet arrived on the local port but the local port is not
2829 * one of our bridge ports.
2830 */
2831 static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
2832
2833 VLOG_WARN_RL(&rl, "bridge %s: received packet on unknown "
d295e8e9 2834 "interface %"PRIu16, br->name, flow->in_port);
064af421
BP
2835 }
2836
14a34d00
BP
2837 *in_portp = NULL;
2838 return false;
064af421 2839 }
14a34d00
BP
2840 *in_portp = in_port = in_iface->port;
2841 *vlanp = vlan = flow_get_vlan(br, flow, in_port, have_packet);
e96a4d80 2842 if (vlan < 0) {
14a34d00 2843 return false;
064af421
BP
2844 }
2845
064af421
BP
2846 /* Drop frames for reserved multicast addresses. */
2847 if (eth_addr_is_reserved(flow->dl_dst)) {
14a34d00 2848 return false;
064af421
BP
2849 }
2850
2851 /* Drop frames on ports reserved for mirroring. */
2852 if (in_port->is_mirror_output_port) {
14a34d00 2853 if (have_packet) {
f925807d
BP
2854 static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
2855 VLOG_WARN_RL(&rl, "bridge %s: dropping packet received on port "
2856 "%s, which is reserved exclusively for mirroring",
2857 br->name, in_port->name);
2858 }
14a34d00 2859 return false;
064af421
BP
2860 }
2861
c25c91fd 2862 /* When using LACP, do not accept packets from disabled interfaces. */
6aa74308 2863 if (lacp_negotiated(in_port->lacp) && !in_iface->enabled) {
c25c91fd
EJ
2864 return false;
2865 }
2866
2867 /* Packets received on non-LACP bonds need special attention to avoid
2868 * duplicates. */
6aa74308 2869 if (in_port->n_ifaces > 1 && !lacp_negotiated(in_port->lacp)) {
db8077c3 2870 struct mac_entry *mac;
3a55ef14
JG
2871
2872 if (eth_addr_is_multicast(flow->dl_dst)) {
7e559ecf 2873 *tags |= port_get_active_iface_tag(in_port);
990cda85 2874 if (in_port->active_iface != in_iface) {
3a55ef14 2875 /* Drop all multicast packets on inactive slaves. */
14a34d00 2876 return false;
c93b1d6a 2877 }
064af421 2878 }
3a55ef14
JG
2879
2880 /* Drop all packets for which we have learned a different input
2881 * port, because we probably sent the packet on one slave and got
5d0ae138 2882 * it back on the other. Gratuitous ARP packets are an exception
7febb910
JG
2883 * to this rule: the host has moved to another switch. The exception
2884 * to the exception is if we locked the learning table to avoid
2885 * reflections on bond slaves. If this is the case, just drop the
2886 * packet now. */
db8077c3 2887 mac = mac_learning_lookup(br->ml, flow->dl_src, vlan, NULL);
1648ddd7 2888 if (mac && mac->port.p != in_port &&
db8077c3 2889 (!is_gratuitous_arp(flow) || mac_entry_is_grat_arp_locked(mac))) {
14a34d00 2890 return false;
3a55ef14 2891 }
064af421
BP
2892 }
2893
14a34d00
BP
2894 return true;
2895}
2896
2897/* If the composed actions may be applied to any packet in the given 'flow',
2898 * returns true. Otherwise, the actions should only be applied to 'packet', or
2899 * not at all, if 'packet' was NULL. */
2900static bool
ae412e7d 2901process_flow(struct bridge *br, const struct flow *flow,
cdee00fd 2902 const struct ofpbuf *packet, struct ofpbuf *actions,
14a34d00
BP
2903 tag_type *tags, uint16_t *nf_output_iface)
2904{
2905 struct port *in_port;
2906 struct port *out_port;
db8077c3 2907 struct mac_entry *mac;
14a34d00 2908 int vlan;
14a34d00
BP
2909
2910 /* Check whether we should drop packets in this flow. */
2911 if (!is_admissible(br, flow, packet != NULL, tags, &vlan, &in_port)) {
2912 out_port = NULL;
2913 goto done;
2914 }
2915
93dfc067
JG
2916 /* Learn source MAC (but don't try to learn from revalidation). */
2917 if (packet) {
e96a4d80 2918 update_learning_table(br, flow, vlan, in_port);
93dfc067
JG
2919 }
2920
2921 /* Determine output port. */
db8077c3 2922 mac = mac_learning_lookup(br->ml, flow->dl_dst, vlan, tags);
1648ddd7
BP
2923 if (mac) {
2924 mac = mac->port.p;
e96a4d80 2925 } else if (!packet && !eth_addr_is_multicast(flow->dl_dst)) {
93dfc067 2926 /* If we are revalidating but don't have a learning entry then
e96a4d80
JG
2927 * eject the flow. Installing a flow that floods packets opens
2928 * up a window of time where we could learn from a packet reflected
2929 * on a bond and blackhole packets before the learning table is
2930 * updated to reflect the correct port. */
93dfc067 2931 return false;
1609aa03
BP
2932 } else {
2933 out_port = FLOOD_PORT;
064af421
BP
2934 }
2935
ba54bf4f
BP
2936 /* Don't send packets out their input ports. */
2937 if (in_port == out_port) {
064af421
BP
2938 out_port = NULL;
2939 }
2940
2941done:
14a34d00
BP
2942 if (in_port) {
2943 compose_actions(br, flow, vlan, in_port, out_port, tags, actions,
2944 nf_output_iface);
2945 }
064af421 2946
69d60f9f 2947 return true;
064af421
BP
2948}
2949
064af421 2950static bool
ae412e7d 2951bridge_normal_ofhook_cb(const struct flow *flow, const struct ofpbuf *packet,
cdee00fd 2952 struct ofpbuf *actions, tag_type *tags,
6a07af36 2953 uint16_t *nf_output_iface, void *br_)
064af421
BP
2954{
2955 struct bridge *br = br_;
2956
064af421 2957 COVERAGE_INC(bridge_process_flow);
ebe482fd
EJ
2958 return process_flow(br, flow, packet, actions, tags, nf_output_iface);
2959}
2960
2961static bool
2962bridge_special_ofhook_cb(const struct flow *flow,
2963 const struct ofpbuf *packet, void *br_)
2964{
2965 struct iface *iface;
2966 struct bridge *br = br_;
26d79bf2 2967
b31bcf60
EJ
2968 iface = iface_from_dp_ifidx(br, flow->in_port);
2969
e7934396 2970 if (flow->dl_type == htons(ETH_TYPE_LACP)) {
ebe482fd 2971
6aa74308
EJ
2972 if (iface && iface->port->lacp && packet) {
2973 const struct lacp_pdu *pdu = parse_lacp_packet(packet);
2974
2975 if (pdu) {
2976 COVERAGE_INC(bridge_process_lacp);
2977 lacp_process_pdu(iface->port->lacp, iface, pdu);
2978 }
c25c91fd
EJ
2979 }
2980 return false;
b31bcf60
EJ
2981 }
2982
ebe482fd 2983 return true;
064af421
BP
2984}
2985
2986static void
ae412e7d 2987bridge_account_flow_ofhook_cb(const struct flow *flow, tag_type tags,
cdee00fd 2988 const struct nlattr *actions,
cf22f8cb 2989 size_t actions_len,
7006c033 2990 uint64_t n_bytes, void *br_)
064af421
BP
2991{
2992 struct bridge *br = br_;
cdee00fd 2993 const struct nlattr *a;
db0e2ad1 2994 struct port *in_port;
26d79bf2 2995 tag_type dummy = 0;
cdee00fd 2996 unsigned int left;
db0e2ad1 2997 int vlan;
064af421 2998
26d79bf2
BP
2999 /* Feed information from the active flows back into the learning table to
3000 * ensure that table is always in sync with what is actually flowing
3001 * through the datapath.
3002 *
3003 * We test that 'tags' is nonzero to ensure that only flows that include an
3004 * OFPP_NORMAL action are used for learning. This works because
3005 * bridge_normal_ofhook_cb() always sets a nonzero tag value. */
3006 if (tags && is_admissible(br, flow, false, &dummy, &vlan, &in_port)) {
db0e2ad1 3007 update_learning_table(br, flow, vlan, in_port);
e96a4d80
JG
3008 }
3009
26d79bf2 3010 /* Account for bond slave utilization. */
064af421
BP
3011 if (!br->has_bonded_ports) {
3012 return;
3013 }
cdee00fd 3014 NL_ATTR_FOR_EACH_UNSAFE (a, left, actions, actions_len) {
7aec165d 3015 if (nl_attr_type(a) == ODP_ACTION_ATTR_OUTPUT) {
cdee00fd 3016 struct port *out_port = port_from_dp_ifidx(br, nl_attr_get_u32(a));
be02e7c3 3017 if (out_port && out_port->n_ifaces >= 2 &&
f48f70b7 3018 out_port->bond_mode != BM_AB) {
e58de0e3
EJ
3019 uint16_t vlan = (flow->vlan_tci
3020 ? vlan_tci_to_vid(flow->vlan_tci)
3021 : OFP_VLAN_NONE);
9f5073d8 3022 struct bond_entry *e = lookup_bond_entry(out_port, flow, vlan);
064af421
BP
3023 e->tx_bytes += n_bytes;
3024 }
3025 }
3026 }
3027}
3028
3029static void
3030bridge_account_checkpoint_ofhook_cb(void *br_)
3031{
3032 struct bridge *br = br_;
8052fb14 3033 struct port *port;
c8143c88 3034 long long int now;
064af421
BP
3035
3036 if (!br->has_bonded_ports) {
3037 return;
3038 }
3039
c8143c88 3040 now = time_msec();
8052fb14 3041 HMAP_FOR_EACH (port, hmap_node, &br->ports) {
f48f70b7 3042 if (port->n_ifaces > 1 && port->bond_mode != BM_AB
be02e7c3 3043 && now >= port->bond_next_rebalance) {
c8143c88 3044 port->bond_next_rebalance = now + port->bond_rebalance_interval;
064af421
BP
3045 bond_rebalance_port(port);
3046 }
3047 }
3048}
3049
3050static struct ofhooks bridge_ofhooks = {
064af421 3051 bridge_normal_ofhook_cb,
ebe482fd 3052 bridge_special_ofhook_cb,
064af421
BP
3053 bridge_account_flow_ofhook_cb,
3054 bridge_account_checkpoint_ofhook_cb,
3055};
3056\f
2303f3b2
BP
3057/* Bonding functions. */
3058
064af421
BP
3059/* Statistics for a single interface on a bonded port, used for load-based
3060 * bond rebalancing. */
3061struct slave_balance {
3062 struct iface *iface; /* The interface. */
3063 uint64_t tx_bytes; /* Sum of hashes[*]->tx_bytes. */
3064
3065 /* All the "bond_entry"s that are assigned to this interface, in order of
3066 * increasing tx_bytes. */
3067 struct bond_entry **hashes;
3068 size_t n_hashes;
3069};
3070
be02e7c3 3071static const char *
27dcaa1a
EJ
3072bond_mode_to_string(enum bond_mode bm) {
3073 static char *bm_slb = "balance-slb";
3074 static char *bm_ab = "active-backup";
9f5073d8 3075 static char *bm_tcp = "balance-tcp";
be02e7c3 3076
27dcaa1a
EJ
3077 switch (bm) {
3078 case BM_SLB: return bm_slb;
3079 case BM_AB: return bm_ab;
9f5073d8 3080 case BM_TCP: return bm_tcp;
be02e7c3
EJ
3081 }
3082
3083 NOT_REACHED();
3084 return NULL;
3085}
3086
064af421
BP
3087/* Sorts pointers to pointers to bond_entries in ascending order by the
3088 * interface to which they are assigned, and within a single interface in
3089 * ascending order of bytes transmitted. */
3090static int
3091compare_bond_entries(const void *a_, const void *b_)
3092{
3093 const struct bond_entry *const *ap = a_;
3094 const struct bond_entry *const *bp = b_;
3095 const struct bond_entry *a = *ap;
3096 const struct bond_entry *b = *bp;
c17f0d5e
BP
3097 if (a->iface != b->iface) {
3098 return a->iface > b->iface ? 1 : -1;
064af421
BP
3099 } else if (a->tx_bytes != b->tx_bytes) {
3100 return a->tx_bytes > b->tx_bytes ? 1 : -1;
3101 } else {
3102 return 0;
3103 }
3104}
3105
3106/* Sorts slave_balances so that enabled ports come first, and otherwise in
3107 * *descending* order by number of bytes transmitted. */
3108static int
3109compare_slave_balance(const void *a_, const void *b_)
3110{
3111 const struct slave_balance *a = a_;
3112 const struct slave_balance *b = b_;
3113 if (a->iface->enabled != b->iface->enabled) {
3114 return a->iface->enabled ? -1 : 1;
3115 } else if (a->tx_bytes != b->tx_bytes) {
3116 return a->tx_bytes > b->tx_bytes ? -1 : 1;
3117 } else {
3118 return 0;
3119 }
3120}
3121
3122static void
3123swap_bals(struct slave_balance *a, struct slave_balance *b)
3124{
3125 struct slave_balance tmp = *a;
3126 *a = *b;
3127 *b = tmp;
3128}
3129
3130/* Restores the 'n_bals' slave_balance structures in 'bals' to sorted order
3131 * given that 'p' (and only 'p') might be in the wrong location.
3132 *
3133 * This function invalidates 'p', since it might now be in a different memory
3134 * location. */
3135static void
3136resort_bals(struct slave_balance *p,
3137 struct slave_balance bals[], size_t n_bals)
3138{
3139 if (n_bals > 1) {
3140 for (; p > bals && p->tx_bytes > p[-1].tx_bytes; p--) {
3141 swap_bals(p, p - 1);
3142 }
3143 for (; p < &bals[n_bals - 1] && p->tx_bytes < p[1].tx_bytes; p++) {
3144 swap_bals(p, p + 1);
3145 }
3146 }
3147}
3148
3149static void
3150log_bals(const struct slave_balance *bals, size_t n_bals, struct port *port)
3151{
3152 if (VLOG_IS_DBG_ENABLED()) {
3153 struct ds ds = DS_EMPTY_INITIALIZER;
3154 const struct slave_balance *b;
3155
3156 for (b = bals; b < bals + n_bals; b++) {
3157 size_t i;
3158
3159 if (b > bals) {
3160 ds_put_char(&ds, ',');
3161 }
3162 ds_put_format(&ds, " %s %"PRIu64"kB",
3163 b->iface->name, b->tx_bytes / 1024);
3164
3165 if (!b->iface->enabled) {
3166 ds_put_cstr(&ds, " (disabled)");
3167 }
3168 if (b->n_hashes > 0) {
3169 ds_put_cstr(&ds, " (");
3170 for (i = 0; i < b->n_hashes; i++) {
3171 const struct bond_entry *e = b->hashes[i];
3172 if (i > 0) {
3173 ds_put_cstr(&ds, " + ");
3174 }
3175 ds_put_format(&ds, "h%td: %"PRIu64"kB",
3176 e - port->bond_hash, e->tx_bytes / 1024);
3177 }
3178 ds_put_cstr(&ds, ")");
3179 }
3180 }
3181 VLOG_DBG("bond %s:%s", port->name, ds_cstr(&ds));
3182 ds_destroy(&ds);
3183 }
3184}
3185
3186/* Shifts 'hash' from 'from' to 'to' within 'port'. */
3187static void
3188bond_shift_load(struct slave_balance *from, struct slave_balance *to,
5422a9e1 3189 int hash_idx)
064af421 3190{
5422a9e1 3191 struct bond_entry *hash = from->hashes[hash_idx];
064af421
BP
3192 struct port *port = from->iface->port;
3193 uint64_t delta = hash->tx_bytes;
3194
f48f70b7 3195 assert(port->bond_mode != BM_AB);
be02e7c3 3196
064af421
BP
3197 VLOG_INFO("bond %s: shift %"PRIu64"kB of load (with hash %td) "
3198 "from %s to %s (now carrying %"PRIu64"kB and "
3199 "%"PRIu64"kB load, respectively)",
3200 port->name, delta / 1024, hash - port->bond_hash,
3201 from->iface->name, to->iface->name,
3202 (from->tx_bytes - delta) / 1024,
3203 (to->tx_bytes + delta) / 1024);
3204
3205 /* Delete element from from->hashes.
3206 *
3207 * We don't bother to add the element to to->hashes because not only would
3208 * it require more work, the only purpose it would be to allow that hash to
3209 * be migrated to another slave in this rebalancing run, and there is no
3210 * point in doing that. */
5422a9e1 3211 if (hash_idx == 0) {
064af421
BP
3212 from->hashes++;
3213 } else {
5422a9e1
JG
3214 memmove(from->hashes + hash_idx, from->hashes + hash_idx + 1,
3215 (from->n_hashes - (hash_idx + 1)) * sizeof *from->hashes);
064af421
BP
3216 }
3217 from->n_hashes--;
3218
3219 /* Shift load away from 'from' to 'to'. */
3220 from->tx_bytes -= delta;
3221 to->tx_bytes += delta;
3222
3223 /* Arrange for flows to be revalidated. */
c0cb6f59 3224 ofproto_revalidate(port->bridge->ofproto, hash->tag);
c17f0d5e 3225 hash->iface = to->iface;
c0cb6f59 3226 hash->tag = tag_create_random();
064af421
BP
3227}
3228
3229static void
3230bond_rebalance_port(struct port *port)
3231{
c47cd5f0 3232 struct slave_balance *bals;
064af421
BP
3233 size_t n_bals;
3234 struct bond_entry *hashes[BOND_MASK + 1];
3235 struct slave_balance *b, *from, *to;
3236 struct bond_entry *e;
83db7968 3237 struct iface *iface;
064af421
BP
3238 size_t i;
3239
9f5073d8 3240 assert(port->bond_mode != BM_AB);
be02e7c3 3241
064af421
BP
3242 /* Sets up 'bals' to describe each of the port's interfaces, sorted in
3243 * descending order of tx_bytes, so that bals[0] represents the most
3244 * heavily loaded slave and bals[n_bals - 1] represents the least heavily
3245 * loaded slave.
3246 *
3247 * The code is a bit tricky: to avoid dynamically allocating a 'hashes'
3248 * array for each slave_balance structure, we sort our local array of
3249 * hashes in order by slave, so that all of the hashes for a given slave
3250 * become contiguous in memory, and then we point each 'hashes' members of
3251 * a slave_balance structure to the start of a contiguous group. */
3252 n_bals = port->n_ifaces;
83db7968
BP
3253 b = bals = xmalloc(n_bals * sizeof *bals);
3254 LIST_FOR_EACH (iface, port_elem, &port->ifaces) {
3255 b->iface = iface;
064af421
BP
3256 b->tx_bytes = 0;
3257 b->hashes = NULL;
3258 b->n_hashes = 0;
83db7968 3259 b++;
064af421 3260 }
83db7968 3261 assert(b == &bals[n_bals]);
064af421
BP
3262 for (i = 0; i <= BOND_MASK; i++) {
3263 hashes[i] = &port->bond_hash[i];
3264 }
3265 qsort(hashes, BOND_MASK + 1, sizeof *hashes, compare_bond_entries);
3266 for (i = 0; i <= BOND_MASK; i++) {
3267 e = hashes[i];
c17f0d5e
BP
3268 if (!e->iface) {
3269 continue;
3270 }
3271
3272 for (b = bals; b < &bals[n_bals]; b++) {
3273 if (b->iface == e->iface) {
3274 b->tx_bytes += e->tx_bytes;
3275 if (!b->hashes) {
3276 b->hashes = &hashes[i];
3277 }
3278 b->n_hashes++;
3279 break;
064af421 3280 }
064af421
BP
3281 }
3282 }
3283 qsort(bals, n_bals, sizeof *bals, compare_slave_balance);
3284 log_bals(bals, n_bals, port);
3285
3286 /* Discard slaves that aren't enabled (which were sorted to the back of the
3287 * array earlier). */
3288 while (!bals[n_bals - 1].iface->enabled) {
3289 n_bals--;
3290 if (!n_bals) {
c47cd5f0 3291 goto exit;
064af421
BP
3292 }
3293 }
3294
3295 /* Shift load from the most-loaded slaves to the least-loaded slaves. */
3296 to = &bals[n_bals - 1];
3297 for (from = bals; from < to; ) {
3298 uint64_t overload = from->tx_bytes - to->tx_bytes;
3299 if (overload < to->tx_bytes >> 5 || overload < 100000) {
3300 /* The extra load on 'from' (and all less-loaded slaves), compared
3301 * to that of 'to' (the least-loaded slave), is less than ~3%, or
3302 * it is less than ~1Mbps. No point in rebalancing. */
3303 break;
3304 } else if (from->n_hashes == 1) {
3305 /* 'from' only carries a single MAC hash, so we can't shift any
3306 * load away from it, even though we want to. */
3307 from++;
3308 } else {
3309 /* 'from' is carrying significantly more load than 'to', and that
3310 * load is split across at least two different hashes. Pick a hash
3311 * to migrate to 'to' (the least-loaded slave), given that doing so
5422a9e1
JG
3312 * must decrease the ratio of the load on the two slaves by at
3313 * least 0.1.
064af421
BP
3314 *
3315 * The sort order we use means that we prefer to shift away the
3316 * smallest hashes instead of the biggest ones. There is little
3317 * reason behind this decision; we could use the opposite sort
3318 * order to shift away big hashes ahead of small ones. */
5422a9e1 3319 bool order_swapped;
064af421
BP
3320
3321 for (i = 0; i < from->n_hashes; i++) {
5422a9e1 3322 double old_ratio, new_ratio;
064af421 3323 uint64_t delta = from->hashes[i]->tx_bytes;
5422a9e1
JG
3324
3325 if (delta == 0 || from->tx_bytes - delta == 0) {
3326 /* Pointless move. */
3327 continue;
3328 }
3329
3330 order_swapped = from->tx_bytes - delta < to->tx_bytes + delta;
3331
3332 if (to->tx_bytes == 0) {
3333 /* Nothing on the new slave, move it. */
3334 break;
3335 }
3336
3337 old_ratio = (double)from->tx_bytes / to->tx_bytes;
3338 new_ratio = (double)(from->tx_bytes - delta) /
3339 (to->tx_bytes + delta);
3340
3341 if (new_ratio == 0) {
3342 /* Should already be covered but check to prevent division
3343 * by zero. */
3344 continue;
3345 }
3346
3347 if (new_ratio < 1) {
3348 new_ratio = 1 / new_ratio;
3349 }
3350
3351 if (old_ratio - new_ratio > 0.1) {
3352 /* Would decrease the ratio, move it. */
064af421
BP
3353 break;
3354 }
3355 }
3356 if (i < from->n_hashes) {
5422a9e1 3357 bond_shift_load(from, to, i);
5422a9e1
JG
3358
3359 /* If the result of the migration changed the relative order of
3360 * 'from' and 'to' swap them back to maintain invariants. */
3361 if (order_swapped) {
3362 swap_bals(from, to);
3363 }
064af421
BP
3364
3365 /* Re-sort 'bals'. Note that this may make 'from' and 'to'
3366 * point to different slave_balance structures. It is only
3367 * valid to do these two operations in a row at all because we
3368 * know that 'from' will not move past 'to' and vice versa. */
3369 resort_bals(from, bals, n_bals);
3370 resort_bals(to, bals, n_bals);
3371 } else {
3372 from++;
3373 }
3374 }
3375 }
3376
3377 /* Implement exponentially weighted moving average. A weight of 1/2 causes
3378 * historical data to decay to <1% in 7 rebalancing runs. */
3379 for (e = &port->bond_hash[0]; e <= &port->bond_hash[BOND_MASK]; e++) {
3380 e->tx_bytes /= 2;
332e0d03 3381 if (!e->tx_bytes) {
c17f0d5e 3382 e->iface = NULL;
332e0d03 3383 }
064af421 3384 }
c47cd5f0
BP
3385
3386exit:
3387 free(bals);
064af421 3388}
2303f3b2
BP
3389
3390static void
3391bond_send_learning_packets(struct port *port)
3392{
3393 struct bridge *br = port->bridge;
3394 struct mac_entry *e;
3395 struct ofpbuf packet;
3396 int error, n_packets, n_errors;
3397
990cda85 3398 if (!port->n_ifaces || !port->active_iface || bond_is_tcp_hash(port)) {
2303f3b2
BP
3399 return;
3400 }
3401
3402 ofpbuf_init(&packet, 128);
3403 error = n_packets = n_errors = 0;
4e8e4213 3404 LIST_FOR_EACH (e, lru_node, &br->ml->lrus) {
2303f3b2 3405 tag_type tags = 0;
3cf10406 3406 uint16_t dp_ifidx;
ae412e7d 3407 struct flow flow;
2303f3b2
BP
3408 int retval;
3409
1648ddd7 3410 if (e->port.p == port) {
9f5073d8
EJ
3411 continue;
3412 }
3413
3414 compose_benign_packet(&packet, "Open vSwitch Bond Failover", 0xf177,
3415 e->mac);
3416 flow_extract(&packet, 0, ODPP_NONE, &flow);
3417
3418 if (!choose_output_iface(port, &flow, e->vlan, &dp_ifidx, &tags)) {
2303f3b2
BP
3419 continue;
3420 }
3421
2303f3b2
BP
3422 /* Send packet. */
3423 n_packets++;
3cf10406 3424 retval = ofproto_send_packet(br->ofproto, dp_ifidx, e->vlan, &packet);
2303f3b2
BP
3425 if (retval) {
3426 error = retval;
3427 n_errors++;
3428 }
3429 }
3430 ofpbuf_uninit(&packet);
3431
3432 if (n_errors) {
3433 static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
3434 VLOG_WARN_RL(&rl, "bond %s: %d errors sending %d gratuitous learning "
3435 "packets, last error was: %s",
3436 port->name, n_errors, n_packets, strerror(error));
3437 } else {
3438 VLOG_DBG("bond %s: sent %d gratuitous learning packets",
3439 port->name, n_packets);
3440 }
3441}
064af421 3442\f
da285df4
BP
3443/* Bonding unixctl user interface functions. */
3444
3445static void
8ca79daa 3446bond_unixctl_list(struct unixctl_conn *conn,
c69ee87c 3447 const char *args OVS_UNUSED, void *aux OVS_UNUSED)
da285df4
BP
3448{
3449 struct ds ds = DS_EMPTY_INITIALIZER;
3450 const struct bridge *br;
3451
be02e7c3 3452 ds_put_cstr(&ds, "bridge\tbond\ttype\tslaves\n");
da285df4 3453
4e8e4213 3454 LIST_FOR_EACH (br, node, &all_bridges) {
8052fb14 3455 struct port *port;
da285df4 3456
8052fb14 3457 HMAP_FOR_EACH (port, hmap_node, &br->ports) {
da285df4 3458 if (port->n_ifaces > 1) {
83db7968 3459 struct iface *iface;
da285df4 3460
be02e7c3 3461 ds_put_format(&ds, "%s\t%s\t%s\t", br->name, port->name,
27dcaa1a 3462 bond_mode_to_string(port->bond_mode));
83db7968
BP
3463 LIST_FOR_EACH (iface, port_elem, &port->ifaces) {
3464 if (&iface->port_elem != list_front(&port->ifaces)) {
da285df4
BP
3465 ds_put_cstr(&ds, ", ");
3466 }
3467 ds_put_cstr(&ds, iface->name);
3468 }
3469 ds_put_char(&ds, '\n');
3470 }
3471 }
3472 }
3473 unixctl_command_reply(conn, 200, ds_cstr(&ds));
3474 ds_destroy(&ds);
3475}
3476
3477static struct port *
3478bond_find(const char *name)
3479{
3480 const struct bridge *br;
3481
4e8e4213 3482 LIST_FOR_EACH (br, node, &all_bridges) {
8052fb14 3483 struct port *port;
da285df4 3484
8052fb14 3485 HMAP_FOR_EACH (port, hmap_node, &br->ports) {
da285df4
BP
3486 if (!strcmp(port->name, name) && port->n_ifaces > 1) {
3487 return port;
3488 }
3489 }
3490 }
3491 return NULL;
3492}
3493
3494static void
8ca79daa 3495bond_unixctl_show(struct unixctl_conn *conn,
c69ee87c 3496 const char *args, void *aux OVS_UNUSED)
da285df4
BP
3497{
3498 struct ds ds = DS_EMPTY_INITIALIZER;
3499 const struct port *port;
83db7968 3500 struct iface *iface;
da285df4
BP
3501
3502 port = bond_find(args);
3503 if (!port) {
3504 unixctl_command_reply(conn, 501, "no such bond");
3505 return;
3506 }
3507
27dcaa1a
EJ
3508 ds_put_format(&ds, "bond_mode: %s\n",
3509 bond_mode_to_string(port->bond_mode));
c25c91fd
EJ
3510
3511 if (port->lacp) {
846f1be5 3512 ds_put_format(&ds, "lacp: %s\n",
6aa74308 3513 port->lacp_active ? "active" : "passive");
c25c91fd 3514 } else {
846f1be5 3515 ds_put_cstr(&ds, "lacp: off\n");
c25c91fd
EJ
3516 }
3517
9f5073d8
EJ
3518 if (port->bond_mode != BM_AB) {
3519 ds_put_format(&ds, "bond-hash-algorithm: %s\n",
3520 bond_is_tcp_hash(port) ? "balance-tcp" : "balance-slb");
3521 }
3522
3523
63331829 3524 ds_put_format(&ds, "bond-detect-mode: %s\n",
e5ed989d 3525 port->monitor ? "carrier" : "miimon");
b42c5c24 3526
e5ed989d 3527 if (!port->monitor) {
b42c5c24 3528 ds_put_format(&ds, "bond-miimon-interval: %lld\n",
e5ed989d 3529 port->miimon_interval);
b42c5c24
EJ
3530 }
3531
da285df4
BP
3532 ds_put_format(&ds, "updelay: %d ms\n", port->updelay);
3533 ds_put_format(&ds, "downdelay: %d ms\n", port->downdelay);
be02e7c3 3534
9f5073d8 3535 if (port->bond_mode != BM_AB) {
be02e7c3
EJ
3536 ds_put_format(&ds, "next rebalance: %lld ms\n",
3537 port->bond_next_rebalance - time_msec());
3538 }
3539
83db7968 3540 LIST_FOR_EACH (iface, port_elem, &port->ifaces) {
da285df4 3541 struct bond_entry *be;
9f5073d8 3542 struct flow flow;
da285df4
BP
3543
3544 /* Basic info. */
846f1be5 3545 ds_put_format(&ds, "\nslave %s: %s\n",
da285df4 3546 iface->name, iface->enabled ? "enabled" : "disabled");
990cda85 3547 if (iface == port->active_iface) {
da285df4
BP
3548 ds_put_cstr(&ds, "\tactive slave\n");
3549 }
3550 if (iface->delay_expires != LLONG_MAX) {
3551 ds_put_format(&ds, "\t%s expires in %lld ms\n",
3552 iface->enabled ? "downdelay" : "updelay",
3553 iface->delay_expires - time_msec());
3554 }
3555
9f5073d8 3556 if (port->bond_mode == BM_AB) {
be02e7c3
EJ
3557 continue;
3558 }
3559
da285df4 3560 /* Hashes. */
9f5073d8 3561 memset(&flow, 0, sizeof flow);
da285df4
BP
3562 for (be = port->bond_hash; be <= &port->bond_hash[BOND_MASK]; be++) {
3563 int hash = be - port->bond_hash;
3564 struct mac_entry *me;
3565
c17f0d5e 3566 if (be->iface != iface) {
da285df4
BP
3567 continue;
3568 }
3569
2886875a 3570 ds_put_format(&ds, "\thash %d: %"PRIu64" kB load\n",
da285df4
BP
3571 hash, be->tx_bytes / 1024);
3572
9f5073d8
EJ
3573 if (port->bond_mode != BM_SLB) {
3574 continue;
3575 }
3576
da285df4 3577 /* MACs. */
4e8e4213 3578 LIST_FOR_EACH (me, lru_node, &port->bridge->ml->lrus) {
da285df4
BP
3579 uint16_t dp_ifidx;
3580 tag_type tags = 0;
9f5073d8
EJ
3581
3582 memcpy(flow.dl_src, me->mac, ETH_ADDR_LEN);
3583 if (bond_hash_src(me->mac, me->vlan) == hash
1648ddd7 3584 && me->port.p != port
9f5073d8 3585 && choose_output_iface(port, &flow, me->vlan,
e58de0e3 3586 &dp_ifidx, &tags)
da285df4
BP
3587 && dp_ifidx == iface->dp_ifidx)
3588 {
3589 ds_put_format(&ds, "\t\t"ETH_ADDR_FMT"\n",
3590 ETH_ADDR_ARGS(me->mac));
3591 }
3592 }
3593 }
3594 }
3595 unixctl_command_reply(conn, 200, ds_cstr(&ds));
3596 ds_destroy(&ds);
3597}
3598
3599static void
8ca79daa 3600bond_unixctl_migrate(struct unixctl_conn *conn, const char *args_,
c69ee87c 3601 void *aux OVS_UNUSED)
da285df4
BP
3602{
3603 char *args = (char *) args_;
3604 char *save_ptr = NULL;
3605 char *bond_s, *hash_s, *slave_s;
da285df4
BP
3606 struct port *port;
3607 struct iface *iface;
3608 struct bond_entry *entry;
3609 int hash;
3610
3611 bond_s = strtok_r(args, " ", &save_ptr);
3612 hash_s = strtok_r(NULL, " ", &save_ptr);
3613 slave_s = strtok_r(NULL, " ", &save_ptr);
3614 if (!slave_s) {
3615 unixctl_command_reply(conn, 501,
3616 "usage: bond/migrate BOND HASH SLAVE");
3617 return;
3618 }
3619
3620 port = bond_find(bond_s);
3621 if (!port) {
3622 unixctl_command_reply(conn, 501, "no such bond");
3623 return;
3624 }
3625
27dcaa1a 3626 if (port->bond_mode != BM_SLB) {
be02e7c3
EJ
3627 unixctl_command_reply(conn, 501, "not an SLB bond");
3628 return;
3629 }
3630
557c178b 3631 if (strspn(hash_s, "0123456789") == strlen(hash_s)) {
da285df4
BP
3632 hash = atoi(hash_s) & BOND_MASK;
3633 } else {
3634 unixctl_command_reply(conn, 501, "bad hash");
3635 return;
3636 }
3637
3638 iface = port_lookup_iface(port, slave_s);
3639 if (!iface) {
3640 unixctl_command_reply(conn, 501, "no such slave");
3641 return;
3642 }
3643
3644 if (!iface->enabled) {
3645 unixctl_command_reply(conn, 501, "cannot migrate to disabled slave");
3646 return;
3647 }
3648
3649 entry = &port->bond_hash[hash];
c0cb6f59 3650 ofproto_revalidate(port->bridge->ofproto, entry->tag);
c17f0d5e 3651 entry->iface = iface;
c0cb6f59 3652 entry->tag = tag_create_random();
da285df4
BP
3653 unixctl_command_reply(conn, 200, "migrated");
3654}
3655
3656static void
8ca79daa 3657bond_unixctl_set_active_slave(struct unixctl_conn *conn, const char *args_,
c69ee87c 3658 void *aux OVS_UNUSED)
da285df4
BP
3659{
3660 char *args = (char *) args_;
3661 char *save_ptr = NULL;
3662 char *bond_s, *slave_s;
3663 struct port *port;
3664 struct iface *iface;
3665
3666 bond_s = strtok_r(args, " ", &save_ptr);
3667 slave_s = strtok_r(NULL, " ", &save_ptr);
3668 if (!slave_s) {
3669 unixctl_command_reply(conn, 501,
3670 "usage: bond/set-active-slave BOND SLAVE");
3671 return;
3672 }
3673
3674 port = bond_find(bond_s);
3675 if (!port) {
3676 unixctl_command_reply(conn, 501, "no such bond");
3677 return;
3678 }
3679
3680 iface = port_lookup_iface(port, slave_s);
3681 if (!iface) {
3682 unixctl_command_reply(conn, 501, "no such slave");
3683 return;
3684 }
3685
3686 if (!iface->enabled) {
3687 unixctl_command_reply(conn, 501, "cannot make disabled slave active");
3688 return;
3689 }
3690
990cda85 3691 if (port->active_iface != iface) {
7e559ecf
BP
3692 ofproto_revalidate(port->bridge->ofproto,
3693 port_get_active_iface_tag(port));
990cda85 3694 port->active_iface = iface;
da285df4
BP
3695 VLOG_INFO("port %s: active interface is now %s",
3696 port->name, iface->name);
3697 bond_send_learning_packets(port);
3698 unixctl_command_reply(conn, 200, "done");
3699 } else {
3700 unixctl_command_reply(conn, 200, "no change");
3701 }
3702}
3703
3704static void
3705enable_slave(struct unixctl_conn *conn, const char *args_, bool enable)
3706{
3707 char *args = (char *) args_;
3708 char *save_ptr = NULL;
3709 char *bond_s, *slave_s;
3710 struct port *port;
3711 struct iface *iface;
3712
3713 bond_s = strtok_r(args, " ", &save_ptr);
3714 slave_s = strtok_r(NULL, " ", &save_ptr);
3715 if (!slave_s) {
3716 unixctl_command_reply(conn, 501,
3717 "usage: bond/enable/disable-slave BOND SLAVE");
3718 return;
3719 }
3720
3721 port = bond_find(bond_s);
3722 if (!port) {
3723 unixctl_command_reply(conn, 501, "no such bond");
3724 return;
3725 }
3726
3727 iface = port_lookup_iface(port, slave_s);
3728 if (!iface) {
3729 unixctl_command_reply(conn, 501, "no such slave");
3730 return;
3731 }
3732
3733 bond_enable_slave(iface, enable);
3734 unixctl_command_reply(conn, 501, enable ? "enabled" : "disabled");
3735}
3736
3737static void
8ca79daa 3738bond_unixctl_enable_slave(struct unixctl_conn *conn, const char *args,
c69ee87c 3739 void *aux OVS_UNUSED)
da285df4
BP
3740{
3741 enable_slave(conn, args, true);
3742}
3743
3744static void
8ca79daa 3745bond_unixctl_disable_slave(struct unixctl_conn *conn, const char *args,
c69ee87c 3746 void *aux OVS_UNUSED)
da285df4
BP
3747{
3748 enable_slave(conn, args, false);
3749}
3750
e0644b61 3751static void
e58de0e3 3752bond_unixctl_hash(struct unixctl_conn *conn, const char *args_,
c69ee87c 3753 void *aux OVS_UNUSED)
e0644b61 3754{
e58de0e3 3755 char *args = (char *) args_;
a27598cd
EJ
3756 uint8_t mac[ETH_ADDR_LEN];
3757 uint8_t hash;
3758 char *hash_cstr;
e58de0e3
EJ
3759 unsigned int vlan;
3760 char *mac_s, *vlan_s;
3761 char *save_ptr = NULL;
3762
3763 mac_s = strtok_r(args, " ", &save_ptr);
3764 vlan_s = strtok_r(NULL, " ", &save_ptr);
3765
3766 if (vlan_s) {
3767 if (sscanf(vlan_s, "%u", &vlan) != 1) {
3768 unixctl_command_reply(conn, 501, "invalid vlan");
3769 return;
3770 }
3771 } else {
3772 vlan = OFP_VLAN_NONE;
3773 }
a27598cd 3774
e58de0e3 3775 if (sscanf(mac_s, ETH_ADDR_SCAN_FMT, ETH_ADDR_SCAN_ARGS(mac))
a27598cd 3776 == ETH_ADDR_SCAN_COUNT) {
9f5073d8 3777 hash = bond_hash_src(mac, vlan);
a27598cd
EJ
3778
3779 hash_cstr = xasprintf("%u", hash);
3780 unixctl_command_reply(conn, 200, hash_cstr);
3781 free(hash_cstr);
3782 } else {
3783 unixctl_command_reply(conn, 501, "invalid mac");
3784 }
e0644b61
IC
3785}
3786
da285df4
BP
3787static void
3788bond_init(void)
3789{
8ca79daa
BP
3790 unixctl_command_register("bond/list", bond_unixctl_list, NULL);
3791 unixctl_command_register("bond/show", bond_unixctl_show, NULL);
3792 unixctl_command_register("bond/migrate", bond_unixctl_migrate, NULL);
da285df4 3793 unixctl_command_register("bond/set-active-slave",
8ca79daa
BP
3794 bond_unixctl_set_active_slave, NULL);
3795 unixctl_command_register("bond/enable-slave", bond_unixctl_enable_slave,
3796 NULL);
3797 unixctl_command_register("bond/disable-slave", bond_unixctl_disable_slave,
3798 NULL);
3799 unixctl_command_register("bond/hash", bond_unixctl_hash, NULL);
da285df4
BP
3800}
3801\f
064af421
BP
3802/* Port functions. */
3803
6aa74308
EJ
3804static void
3805lacp_send_pdu_cb(void *aux, const struct lacp_pdu *pdu)
3806{
3807 struct iface *iface = aux;
3808 uint8_t ea[ETH_ADDR_LEN];
3809 int error;
3810
3811 error = netdev_get_etheraddr(iface->netdev, ea);
3812 if (!error) {
3813 struct ofpbuf packet;
3814
3815 ofpbuf_init(&packet, ETH_HEADER_LEN + LACP_PDU_LEN);
3816 compose_lacp_packet(&packet, ea, pdu);
3cf10406
BP
3817 ofproto_send_packet(iface->port->bridge->ofproto,
3818 iface->dp_ifidx, 0, &packet);
6aa74308
EJ
3819 ofpbuf_uninit(&packet);
3820 } else {
3821 static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 10);
3822 VLOG_ERR_RL(&rl, "iface %s: failed to obtain Ethernet address "
3823 "(%s)", iface->name, strerror(error));
3824 }
3825}
3826
21dcb94f
EJ
3827static void
3828port_run(struct port *port)
3829{
e5ed989d
EJ
3830 if (port->monitor) {
3831 char *devname;
3832
3833 /* Track carrier going up and down on interfaces. */
3834 while (!netdev_monitor_poll(port->monitor, &devname)) {
3835 struct iface *iface;
3836
3837 iface = port_lookup_iface(port, devname);
3838 if (iface) {
0b8024eb 3839 iface_update_carrier(iface);
e5ed989d
EJ
3840 }
3841 free(devname);
3842 }
3843 } else if (time_msec() >= port->miimon_next_update) {
83db7968 3844 struct iface *iface;
e5ed989d 3845
83db7968 3846 LIST_FOR_EACH (iface, port_elem, &port->ifaces) {
0b8024eb 3847 iface_update_carrier(iface);
e5ed989d
EJ
3848 }
3849 port->miimon_next_update = time_msec() + port->miimon_interval;
3850 }
3851
6aa74308 3852 if (port->lacp) {
83db7968 3853 struct iface *iface;
e7934396 3854
83db7968 3855 LIST_FOR_EACH (iface, port_elem, &port->ifaces) {
6aa74308
EJ
3856 lacp_slave_enable(port->lacp, iface, iface->enabled);
3857 }
3858
3859 lacp_run(port->lacp, lacp_send_pdu_cb);
3860 }
3861
21dcb94f 3862 bond_run(port);
21dcb94f
EJ
3863}
3864
3865static void
3866port_wait(struct port *port)
3867{
e5ed989d
EJ
3868 if (port->monitor) {
3869 netdev_monitor_poll_wait(port->monitor);
3870 } else {
3871 poll_timer_wait_until(port->miimon_next_update);
3872 }
3873
6aa74308
EJ
3874 if (port->lacp) {
3875 lacp_wait(port->lacp);
3876 }
3877
21dcb94f 3878 bond_wait(port);
21dcb94f
EJ
3879}
3880
76343538 3881static struct port *
064af421
BP
3882port_create(struct bridge *br, const char *name)
3883{
3884 struct port *port;
3885
ec6fde61 3886 port = xzalloc(sizeof *port);
064af421 3887 port->bridge = br;
064af421
BP
3888 port->vlan = -1;
3889 port->trunks = NULL;
3890 port->name = xstrdup(name);
990cda85 3891 port->active_iface = NULL;
83db7968 3892 list_init(&port->ifaces);
064af421 3893
8052fb14 3894 hmap_insert(&br->ports, &port->hmap_node, hash_string(port->name, 0));
064af421
BP
3895
3896 VLOG_INFO("created port %s on bridge %s", port->name, br->name);
3897 bridge_flush(br);
76343538
BP
3898
3899 return port;
064af421
BP
3900}
3901
c8143c88
BP
3902static const char *
3903get_port_other_config(const struct ovsrec_port *port, const char *key,
3904 const char *default_value)
3905{
af6278e1
BP
3906 const char *value;
3907
3908 value = get_ovsrec_key_value(&port->header_, &ovsrec_port_col_other_config,
3909 key);
c8143c88
BP
3910 return value ? value : default_value;
3911}
3912
c25c91fd
EJ
3913static const char *
3914get_interface_other_config(const struct ovsrec_interface *iface,
3915 const char *key, const char *default_value)
3916{
3917 const char *value;
3918
3919 value = get_ovsrec_key_value(&iface->header_,
3920 &ovsrec_interface_col_other_config, key);
3921 return value ? value : default_value;
3922}
3923
4a1ee6ae
BP
3924static void
3925port_del_ifaces(struct port *port, const struct ovsrec_port *cfg)
3926{
83db7968 3927 struct iface *iface, *next;
4a1ee6ae
BP
3928 struct shash new_ifaces;
3929 size_t i;
3930
3931 /* Collect list of new interfaces. */
3932 shash_init(&new_ifaces);
3933 for (i = 0; i < cfg->n_interfaces; i++) {
3934 const char *name = cfg->interfaces[i]->name;
3935 shash_add_once(&new_ifaces, name, NULL);
3936 }
3937
3938 /* Get rid of deleted interfaces. */
83db7968 3939 LIST_FOR_EACH_SAFE (iface, next, port_elem, &port->ifaces) {
13f5f5b0
BP
3940 if (!shash_find(&new_ifaces, iface->name)) {
3941 iface_destroy(iface);
4a1ee6ae
BP
3942 }
3943 }
3944
3945 shash_destroy(&new_ifaces);
3946}
3947
d5346278
BP
3948/* Expires all MAC learning entries associated with 'port' and forces ofproto
3949 * to revalidate every flow. */
3950static void
3951port_flush_macs(struct port *port)
3952{
3953 struct bridge *br = port->bridge;
3954 struct mac_learning *ml = br->ml;
3955 struct mac_entry *mac, *next_mac;
3956
3957 bridge_flush(br);
3958 LIST_FOR_EACH_SAFE (mac, next_mac, lru_node, &ml->lrus) {
3959 if (mac->port.p == port) {
3960 mac_learning_expire(ml, mac);
3961 }
3962 }
3963}
3964
064af421 3965static void
76343538 3966port_reconfigure(struct port *port, const struct ovsrec_port *cfg)
064af421 3967{
63331829 3968 const char *detect_mode;
4a1ee6ae 3969 struct shash new_ifaces;
c25c91fd 3970 long long int next_rebalance, miimon_next_update, lacp_priority;
d5346278 3971 bool need_flush = false;
064af421
BP
3972 unsigned long *trunks;
3973 int vlan;
3974 size_t i;
3975
76343538
BP
3976 port->cfg = cfg;
3977
4a1ee6ae 3978 /* Update settings. */
76343538
BP
3979 port->updelay = cfg->bond_updelay;
3980 if (port->updelay < 0) {
3981 port->updelay = 0;
3982 }
7ef6b685 3983 port->downdelay = cfg->bond_downdelay;
76343538
BP
3984 if (port->downdelay < 0) {
3985 port->downdelay = 0;
064af421 3986 }
c8143c88
BP
3987 port->bond_rebalance_interval = atoi(
3988 get_port_other_config(cfg, "bond-rebalance-interval", "10000"));
3989 if (port->bond_rebalance_interval < 1000) {
3990 port->bond_rebalance_interval = 1000;
3991 }
3992 next_rebalance = time_msec() + port->bond_rebalance_interval;
3993 if (port->bond_next_rebalance > next_rebalance) {
3994 port->bond_next_rebalance = next_rebalance;
3995 }
064af421 3996
63331829
EJ
3997 detect_mode = get_port_other_config(cfg, "bond-detect-mode",
3998 "carrier");
3999
e5ed989d
EJ
4000 netdev_monitor_destroy(port->monitor);
4001 port->monitor = NULL;
4002
4003 if (strcmp(detect_mode, "miimon")) {
4004 port->monitor = netdev_monitor_create();
4005
4006 if (strcmp(detect_mode, "carrier")) {
4007 VLOG_WARN("port %s: unsupported bond-detect-mode %s, "
4008 "defaulting to carrier", port->name, detect_mode);
4009 }
63331829
EJ
4010 }
4011
e5ed989d 4012 port->miimon_interval = atoi(
63331829 4013 get_port_other_config(cfg, "bond-miimon-interval", "200"));
e5ed989d
EJ
4014 if (port->miimon_interval < 100) {
4015 port->miimon_interval = 100;
63331829 4016 }
e5ed989d
EJ
4017 miimon_next_update = time_msec() + port->miimon_interval;
4018 if (port->miimon_next_update > miimon_next_update) {
4019 port->miimon_next_update = miimon_next_update;
63331829
EJ
4020 }
4021
27dcaa1a
EJ
4022 if (!port->cfg->bond_mode ||
4023 !strcmp(port->cfg->bond_mode, bond_mode_to_string(BM_SLB))) {
4024 port->bond_mode = BM_SLB;
4025 } else if (!strcmp(port->cfg->bond_mode, bond_mode_to_string(BM_AB))) {
4026 port->bond_mode = BM_AB;
9f5073d8
EJ
4027 } else if (!strcmp(port->cfg->bond_mode, bond_mode_to_string(BM_TCP))) {
4028 port->bond_mode = BM_TCP;
be02e7c3 4029 } else {
27dcaa1a
EJ
4030 port->bond_mode = BM_SLB;
4031 VLOG_WARN("port %s: unknown bond_mode %s, defaulting to %s",
4032 port->name, port->cfg->bond_mode,
4033 bond_mode_to_string(port->bond_mode));
be02e7c3
EJ
4034 }
4035
4a1ee6ae
BP
4036 /* Add new interfaces and update 'cfg' member of existing ones. */
4037 shash_init(&new_ifaces);
4038 for (i = 0; i < cfg->n_interfaces; i++) {
4039 const struct ovsrec_interface *if_cfg = cfg->interfaces[i];
76343538
BP
4040 struct iface *iface;
4041
4a1ee6ae
BP
4042 if (!shash_add_once(&new_ifaces, if_cfg->name, NULL)) {
4043 VLOG_WARN("port %s: %s specified twice as port interface",
4044 port->name, if_cfg->name);
bcd49a45 4045 iface_set_ofport(if_cfg, -1);
4a1ee6ae
BP
4046 continue;
4047 }
4048
4049 iface = iface_lookup(port->bridge, if_cfg->name);
4050 if (iface) {
4051 if (iface->port != port) {
4052 VLOG_ERR("bridge %s: %s interface is on multiple ports, "
4053 "removing from %s",
4054 port->bridge->name, if_cfg->name, iface->port->name);
4055 continue;
4056 }
149f577a 4057 iface->cfg = if_cfg;
4a1ee6ae 4058 } else {
6cefe1da 4059 iface = iface_create(port, if_cfg);
064af421 4060 }
6cefe1da
BP
4061
4062 /* Determine interface type. The local port always has type
4063 * "internal". Other ports take their type from the database and
4064 * default to "system" if none is specified. */
4065 iface->type = (!strcmp(if_cfg->name, port->bridge->name) ? "internal"
4066 : if_cfg->type[0] ? if_cfg->type
4067 : "system");
c25c91fd
EJ
4068
4069 lacp_priority =
4070 atoi(get_interface_other_config(if_cfg, "lacp-port-priority",
4071 "0"));
4072
4073 if (lacp_priority <= 0 || lacp_priority > UINT16_MAX) {
4074 iface->lacp_priority = UINT16_MAX;
4075 } else {
4076 iface->lacp_priority = lacp_priority;
4077 }
064af421 4078 }
4a1ee6ae 4079 shash_destroy(&new_ifaces);
064af421 4080
269340fa
EJ
4081 port->lacp_fast = !strcmp(get_port_other_config(cfg, "lacp-time", "slow"),
4082 "fast");
4083
c25c91fd
EJ
4084 lacp_priority =
4085 atoi(get_port_other_config(cfg, "lacp-system-priority", "0"));
4086
4087 if (lacp_priority <= 0 || lacp_priority > UINT16_MAX) {
4088 /* Prefer bondable links if unspecified. */
4089 port->lacp_priority = port->n_ifaces > 1 ? UINT16_MAX - 1 : UINT16_MAX;
4090 } else {
4091 port->lacp_priority = lacp_priority;
4092 }
4093
4094 if (!port->cfg->lacp) {
4095 /* XXX when LACP implementation has been sufficiently tested, enable by
4096 * default and make active on bonded ports. */
6aa74308
EJ
4097 lacp_destroy(port->lacp);
4098 port->lacp = NULL;
c25c91fd 4099 } else if (!strcmp(port->cfg->lacp, "off")) {
6aa74308
EJ
4100 lacp_destroy(port->lacp);
4101 port->lacp = NULL;
c25c91fd 4102 } else if (!strcmp(port->cfg->lacp, "active")) {
6aa74308
EJ
4103 if (!port->lacp) {
4104 port->lacp = lacp_create();
4105 }
4106 port->lacp_active = true;
c25c91fd 4107 } else if (!strcmp(port->cfg->lacp, "passive")) {
6aa74308
EJ
4108 if (!port->lacp) {
4109 port->lacp = lacp_create();
4110 }
4111 port->lacp_active = false;
c25c91fd
EJ
4112 } else {
4113 VLOG_WARN("port %s: unknown LACP mode %s",
4114 port->name, port->cfg->lacp);
6aa74308
EJ
4115 lacp_destroy(port->lacp);
4116 port->lacp = NULL;
c25c91fd
EJ
4117 }
4118
064af421
BP
4119 /* Get VLAN tag. */
4120 vlan = -1;
76343538
BP
4121 if (cfg->tag) {
4122 if (port->n_ifaces < 2) {
4123 vlan = *cfg->tag;
064af421
BP
4124 if (vlan >= 0 && vlan <= 4095) {
4125 VLOG_DBG("port %s: assigning VLAN tag %d", port->name, vlan);
76343538
BP
4126 } else {
4127 vlan = -1;
064af421
BP
4128 }
4129 } else {
4130 /* It's possible that bonded, VLAN-tagged ports make sense. Maybe
4131 * they even work as-is. But they have not been tested. */
4132 VLOG_WARN("port %s: VLAN tags not supported on bonded ports",
4133 port->name);
4134 }
4135 }
4136 if (port->vlan != vlan) {
4137 port->vlan = vlan;
d5346278 4138 need_flush = true;
064af421
BP
4139 }
4140
4141 /* Get trunked VLANs. */
4142 trunks = NULL;
3e9c481c 4143 if (vlan < 0 && cfg->n_trunks) {
76343538 4144 size_t n_errors;
064af421
BP
4145
4146 trunks = bitmap_allocate(4096);
064af421 4147 n_errors = 0;
76343538
BP
4148 for (i = 0; i < cfg->n_trunks; i++) {
4149 int trunk = cfg->trunks[i];
064af421
BP
4150 if (trunk >= 0) {
4151 bitmap_set1(trunks, trunk);
4152 } else {
4153 n_errors++;
4154 }
4155 }
4156 if (n_errors) {
4157 VLOG_ERR("port %s: invalid values for %zu trunk VLANs",
76343538 4158 port->name, cfg->n_trunks);
064af421 4159 }
76343538 4160 if (n_errors == cfg->n_trunks) {
3e9c481c 4161 VLOG_ERR("port %s: no valid trunks, trunking all VLANs",
76343538 4162 port->name);
3e9c481c
BP
4163 bitmap_free(trunks);
4164 trunks = NULL;
064af421 4165 }
3e9c481c
BP
4166 } else if (vlan >= 0 && cfg->n_trunks) {
4167 VLOG_ERR("port %s: ignoring trunks in favor of implicit vlan",
4168 port->name);
064af421
BP
4169 }
4170 if (trunks == NULL
4171 ? port->trunks != NULL
4172 : port->trunks == NULL || !bitmap_equal(trunks, port->trunks, 4096)) {
d5346278 4173 need_flush = true;
064af421
BP
4174 }
4175 bitmap_free(port->trunks);
4176 port->trunks = trunks;
d5346278
BP
4177
4178 if (need_flush) {
4179 port_flush_macs(port);
4180 }
064af421
BP
4181}
4182
4183static void
4184port_destroy(struct port *port)
4185{
4186 if (port) {
4187 struct bridge *br = port->bridge;
83db7968 4188 struct iface *iface, *next;
37e7f427 4189 int i;
064af421 4190
064af421
BP
4191 for (i = 0; i < MAX_MIRRORS; i++) {
4192 struct mirror *m = br->mirrors[i];
4193 if (m && m->out_port == port) {
4194 mirror_destroy(m);
4195 }
4196 }
4197
83db7968
BP
4198 LIST_FOR_EACH_SAFE (iface, next, port_elem, &port->ifaces) {
4199 iface_destroy(iface);
064af421
BP
4200 }
4201
8052fb14 4202 hmap_remove(&br->ports, &port->hmap_node);
064af421 4203
99707a7a
JP
4204 VLOG_INFO("destroyed port %s on bridge %s", port->name, br->name);
4205
d5346278
BP
4206 port_flush_macs(port);
4207
60837272 4208 lacp_destroy(port->lacp);
0bb5c3ec 4209 netdev_monitor_destroy(port->monitor);
064af421 4210 bitmap_free(port->trunks);
fe0cfbf6 4211 free(port->bond_hash);
064af421
BP
4212 free(port->name);
4213 free(port);
064af421
BP
4214 }
4215}
4216
4217static struct port *
4218port_from_dp_ifidx(const struct bridge *br, uint16_t dp_ifidx)
4219{
4220 struct iface *iface = iface_from_dp_ifidx(br, dp_ifidx);
4221 return iface ? iface->port : NULL;
4222}
4223
4224static struct port *
4225port_lookup(const struct bridge *br, const char *name)
4226{
8052fb14
BP
4227 struct port *port;
4228
4229 HMAP_FOR_EACH_WITH_HASH (port, hmap_node, hash_string(name, 0),
4230 &br->ports) {
4231 if (!strcmp(port->name, name)) {
4232 return port;
4233 }
4234 }
4235 return NULL;
064af421
BP
4236}
4237
da285df4
BP
4238static struct iface *
4239port_lookup_iface(const struct port *port, const char *name)
4240{
4a1ee6ae
BP
4241 struct iface *iface = iface_lookup(port->bridge, name);
4242 return iface && iface->port == port ? iface : NULL;
da285df4
BP
4243}
4244
c25c91fd
EJ
4245static void
4246port_update_lacp(struct port *port)
4247{
6aa74308 4248 if (port->lacp) {
83db7968 4249 struct iface *iface;
c25c91fd 4250
6aa74308
EJ
4251 lacp_configure(port->lacp, port->name,
4252 port->bridge->ea, port->lacp_priority,
269340fa 4253 port->lacp_active, port->lacp_fast);
c25c91fd 4254
83db7968 4255 LIST_FOR_EACH (iface, port_elem, &port->ifaces) {
6aa74308
EJ
4256 lacp_slave_register(port->lacp, iface, iface->name,
4257 iface->dp_ifidx, iface->lacp_priority);
c25c91fd
EJ
4258 }
4259 }
c25c91fd
EJ
4260}
4261
064af421
BP
4262static void
4263port_update_bonding(struct port *port)
4264{
4265 if (port->n_ifaces < 2) {
4266 /* Not a bonded port. */
0b8b6f71
BP
4267 free(port->bond_hash);
4268 port->bond_hash = NULL;
be02e7c3 4269 port->bond_fake_iface = false;
990cda85 4270 port->active_iface = NULL;
55eccb86 4271 port->no_ifaces_tag = 0;
064af421 4272 } else {
0bb5c3ec 4273 size_t i;
064af421 4274
9f5073d8 4275 if (port->bond_mode != BM_AB && !port->bond_hash) {
064af421
BP
4276 port->bond_hash = xcalloc(BOND_MASK + 1, sizeof *port->bond_hash);
4277 for (i = 0; i <= BOND_MASK; i++) {
4278 struct bond_entry *e = &port->bond_hash[i];
c17f0d5e 4279 e->iface = NULL;
064af421
BP
4280 e->tx_bytes = 0;
4281 }
c8143c88
BP
4282 port->bond_next_rebalance
4283 = time_msec() + port->bond_rebalance_interval;
9f5073d8 4284 } else if (port->bond_mode == BM_AB) {
be02e7c3
EJ
4285 free(port->bond_hash);
4286 port->bond_hash = NULL;
064af421 4287 }
55eccb86
EJ
4288
4289 if (!port->no_ifaces_tag) {
4290 port->no_ifaces_tag = tag_create_random();
4291 }
4292
990cda85 4293 if (!port->active_iface) {
55eccb86
EJ
4294 bond_choose_active_iface(port);
4295 }
4296
76343538 4297 port->bond_fake_iface = port->cfg->bond_fake_iface;
55eccb86
EJ
4298 if (port->bond_fake_iface) {
4299 port->bond_next_fake_iface_update = time_msec();
4300 }
0bb5c3ec 4301
064af421
BP
4302 }
4303}
064af421
BP
4304\f
4305/* Interface functions. */
4306
76343538 4307static struct iface *
a740f0de 4308iface_create(struct port *port, const struct ovsrec_interface *if_cfg)
064af421 4309{
4a1ee6ae 4310 struct bridge *br = port->bridge;
064af421 4311 struct iface *iface;
a740f0de 4312 char *name = if_cfg->name;
064af421 4313
ec6fde61 4314 iface = xzalloc(sizeof *iface);
064af421 4315 iface->port = port;
064af421
BP
4316 iface->name = xstrdup(name);
4317 iface->dp_ifidx = -1;
4318 iface->tag = tag_create_random();
064af421 4319 iface->delay_expires = LLONG_MAX;
0c6aea3f 4320 iface->netdev = NULL;
149f577a 4321 iface->cfg = if_cfg;
064af421 4322
2457b24f
JG
4323 shash_add_assert(&br->iface_by_name, iface->name, iface);
4324
83db7968
BP
4325 list_push_back(&port->ifaces, &iface->port_elem);
4326 port->n_ifaces++;
4327
064af421 4328 if (port->n_ifaces > 1) {
4a1ee6ae 4329 br->has_bonded_ports = true;
064af421
BP
4330 }
4331
4332 VLOG_DBG("attached network device %s to port %s", iface->name, port->name);
4333
4a1ee6ae 4334 bridge_flush(br);
76343538
BP
4335
4336 return iface;
064af421
BP
4337}
4338
4339static void
4340iface_destroy(struct iface *iface)
4341{
4342 if (iface) {
4343 struct port *port = iface->port;
4344 struct bridge *br = port->bridge;
990cda85 4345 bool del_active = port->active_iface == iface;
c17f0d5e
BP
4346
4347 if (port->bond_hash) {
4348 struct bond_entry *e;
4349 for (e = port->bond_hash; e <= &port->bond_hash[BOND_MASK]; e++) {
4350 if (e->iface == iface) {
4351 e->iface = NULL;
4352 }
4353 }
4354 }
064af421 4355
6aa74308
EJ
4356 if (iface->port->lacp) {
4357 lacp_slave_unregister(iface->port->lacp, iface);
4358 }
4359
e5ed989d 4360 if (port->monitor && iface->netdev) {
7ca5f243
EJ
4361 netdev_monitor_remove(port->monitor, iface->netdev);
4362 }
4363
4a1ee6ae
BP
4364 shash_find_and_delete_assert(&br->iface_by_name, iface->name);
4365
064af421 4366 if (iface->dp_ifidx >= 0) {
d9a8717a 4367 hmap_remove(&br->ifaces, &iface->dp_ifidx_node);
064af421
BP
4368 }
4369
83db7968
BP
4370 list_remove(&iface->port_elem);
4371 port->n_ifaces--;
064af421 4372
0c6aea3f 4373 netdev_close(iface->netdev);
064af421
BP
4374
4375 if (del_active) {
064af421 4376 bond_choose_active_iface(port);
2303f3b2 4377 bond_send_learning_packets(port);
064af421
BP
4378 }
4379
a740f0de
JG
4380 free(iface->name);
4381 free(iface);
4382
064af421
BP
4383 bridge_flush(port->bridge);
4384 }
4385}
4386
4387static struct iface *
4388iface_lookup(const struct bridge *br, const char *name)
4389{
4a1ee6ae 4390 return shash_find_data(&br->iface_by_name, name);
064af421
BP
4391}
4392
e8fe3026
EJ
4393static struct iface *
4394iface_find(const char *name)
4395{
4396 const struct bridge *br;
4397
4398 LIST_FOR_EACH (br, node, &all_bridges) {
4399 struct iface *iface = iface_lookup(br, name);
4400
4401 if (iface) {
4402 return iface;
4403 }
4404 }
4405 return NULL;
4406}
4407
064af421
BP
4408static struct iface *
4409iface_from_dp_ifidx(const struct bridge *br, uint16_t dp_ifidx)
4410{
d9a8717a
BP
4411 struct iface *iface;
4412
4e8e4213 4413 HMAP_FOR_EACH_IN_BUCKET (iface, dp_ifidx_node,
d9a8717a
BP
4414 hash_int(dp_ifidx, 0), &br->ifaces) {
4415 if (iface->dp_ifidx == dp_ifidx) {
4416 return iface;
4417 }
4418 }
4419 return NULL;
064af421 4420}
557d8e6c 4421
52df17e7
BP
4422/* Set Ethernet address of 'iface', if one is specified in the configuration
4423 * file. */
4424static void
4425iface_set_mac(struct iface *iface)
4426{
76343538 4427 uint8_t ea[ETH_ADDR_LEN];
52df17e7 4428
76343538 4429 if (iface->cfg->mac && eth_addr_from_string(iface->cfg->mac, ea)) {
52df17e7
BP
4430 if (eth_addr_is_multicast(ea)) {
4431 VLOG_ERR("interface %s: cannot set MAC to multicast address",
4432 iface->name);
4433 } else if (iface->dp_ifidx == ODPP_LOCAL) {
4434 VLOG_ERR("ignoring iface.%s.mac; use bridge.%s.mac instead",
4435 iface->name, iface->name);
4436 } else {
4d678233 4437 int error = netdev_set_etheraddr(iface->netdev, ea);
52df17e7
BP
4438 if (error) {
4439 VLOG_ERR("interface %s: setting MAC failed (%s)",
4440 iface->name, strerror(error));
4441 }
4442 }
4443 }
4444}
c1c9c9c4 4445
bcd49a45
BP
4446/* Sets the ofport column of 'if_cfg' to 'ofport'. */
4447static void
4448iface_set_ofport(const struct ovsrec_interface *if_cfg, int64_t ofport)
4449{
4450 if (if_cfg) {
4451 ovsrec_interface_set_ofport(if_cfg, &ofport, 1);
4452 }
4453}
4454
43776b8f
BP
4455/* Adds the 'n' key-value pairs in 'keys' in 'values' to 'shash'.
4456 *
4457 * The value strings in '*shash' are taken directly from values[], not copied,
4458 * so the caller should not modify or free them. */
c1c9c9c4
BP
4459static void
4460shash_from_ovs_idl_map(char **keys, char **values, size_t n,
4461 struct shash *shash)
4462{
4463 size_t i;
4464
4465 shash_init(shash);
4466 for (i = 0; i < n; i++) {
4467 shash_add(shash, keys[i], values[i]);
4468 }
4469}
4470
ea763e0e
EJ
4471/* Creates 'keys' and 'values' arrays from 'shash'.
4472 *
4473 * Sets 'keys' and 'values' to heap allocated arrays representing the key-value
4474 * pairs in 'shash'. The caller takes ownership of 'keys' and 'values'. They
4475 * are populated with with strings taken directly from 'shash' and thus have
4476 * the same ownership of the key-value pairs in shash.
4477 */
4478static void
4479shash_to_ovs_idl_map(struct shash *shash,
4480 char ***keys, char ***values, size_t *n)
4481{
4482 size_t i, count;
4483 char **k, **v;
4484 struct shash_node *sn;
4485
4486 count = shash_count(shash);
4487
4488 k = xmalloc(count * sizeof *k);
4489 v = xmalloc(count * sizeof *v);
4490
4491 i = 0;
4492 SHASH_FOR_EACH(sn, shash) {
4493 k[i] = sn->name;
4494 v[i] = sn->data;
4495 i++;
4496 }
4497
4498 *n = count;
4499 *keys = k;
4500 *values = v;
4501}
4502
c1c9c9c4
BP
4503struct iface_delete_queues_cbdata {
4504 struct netdev *netdev;
44fca7f9 4505 const struct ovsdb_datum *queues;
c1c9c9c4
BP
4506};
4507
4508static bool
44fca7f9 4509queue_ids_include(const struct ovsdb_datum *queues, int64_t target)
c1c9c9c4 4510{
44fca7f9 4511 union ovsdb_atom atom;
c1c9c9c4 4512
44fca7f9
BP
4513 atom.integer = target;
4514 return ovsdb_datum_find_key(queues, &atom, OVSDB_TYPE_INTEGER) != UINT_MAX;
c1c9c9c4
BP
4515}
4516
4517static void
4518iface_delete_queues(unsigned int queue_id,
4519 const struct shash *details OVS_UNUSED, void *cbdata_)
4520{
4521 struct iface_delete_queues_cbdata *cbdata = cbdata_;
4522
44fca7f9 4523 if (!queue_ids_include(cbdata->queues, queue_id)) {
c1c9c9c4
BP
4524 netdev_delete_queue(cbdata->netdev, queue_id);
4525 }
4526}
4527
e5ed989d 4528static void
0b8024eb 4529iface_update_carrier(struct iface *iface)
e5ed989d 4530{
0b8024eb 4531 bool carrier = iface_get_carrier(iface);
e5ed989d
EJ
4532 if (carrier == iface->up) {
4533 return;
4534 }
4535
4536 iface->up = carrier;
6aa74308
EJ
4537 if (iface->port->lacp) {
4538 lacp_slave_carrier_changed(iface->port->lacp, iface);
e5ed989d
EJ
4539 }
4540}
4541
c1c9c9c4
BP
4542static void
4543iface_update_qos(struct iface *iface, const struct ovsrec_qos *qos)
4544{
4545 if (!qos || qos->type[0] == '\0') {
4546 netdev_set_qos(iface->netdev, NULL, NULL);
4547 } else {
4548 struct iface_delete_queues_cbdata cbdata;
4549 struct shash details;
4550 size_t i;
4551
4552 /* Configure top-level Qos for 'iface'. */
4553 shash_from_ovs_idl_map(qos->key_other_config, qos->value_other_config,
4554 qos->n_other_config, &details);
4555 netdev_set_qos(iface->netdev, qos->type, &details);
4556 shash_destroy(&details);
4557
4558 /* Deconfigure queues that were deleted. */
4559 cbdata.netdev = iface->netdev;
44fca7f9
BP
4560 cbdata.queues = ovsrec_qos_get_queues(qos, OVSDB_TYPE_INTEGER,
4561 OVSDB_TYPE_UUID);
c1c9c9c4
BP
4562 netdev_dump_queues(iface->netdev, iface_delete_queues, &cbdata);
4563
4564 /* Configure queues for 'iface'. */
4565 for (i = 0; i < qos->n_queues; i++) {
4566 const struct ovsrec_queue *queue = qos->value_queues[i];
4567 unsigned int queue_id = qos->key_queues[i];
4568
4569 shash_from_ovs_idl_map(queue->key_other_config,
4570 queue->value_other_config,
4571 queue->n_other_config, &details);
4572 netdev_set_queue(iface->netdev, queue_id, &details);
4573 shash_destroy(&details);
4574 }
4575 }
4576}
b31bcf60
EJ
4577
4578static void
4579iface_update_cfm(struct iface *iface)
4580{
4581 size_t i;
e7934396 4582 struct cfm cfm;
b31bcf60
EJ
4583 uint16_t *remote_mps;
4584 struct ovsrec_monitor *mon;
4585 uint8_t ea[ETH_ADDR_LEN], maid[CCM_MAID_LEN];
4586
4587 mon = iface->cfg->monitor;
4588
4589 if (!mon) {
e7934396 4590 ofproto_iface_clear_cfm(iface->port->bridge->ofproto, iface->dp_ifidx);
b31bcf60
EJ
4591 return;
4592 }
4593
4594 if (netdev_get_etheraddr(iface->netdev, ea)) {
4595 VLOG_WARN("interface %s: Failed to get ethernet address. "
4596 "Skipping Monitor.", iface->name);
4597 return;
4598 }
4599
4600 if (!cfm_generate_maid(mon->md_name, mon->ma_name, maid)) {
4601 VLOG_WARN("interface %s: Failed to generate MAID.", iface->name);
4602 return;
4603 }
4604
e7934396
BP
4605 cfm.mpid = mon->mpid;
4606 cfm.interval = mon->interval ? *mon->interval : 1000;
b31bcf60 4607
e7934396
BP
4608 memcpy(cfm.eth_src, ea, sizeof cfm.eth_src);
4609 memcpy(cfm.maid, maid, sizeof cfm.maid);
b31bcf60
EJ
4610
4611 remote_mps = xzalloc(mon->n_remote_mps * sizeof *remote_mps);
4612 for(i = 0; i < mon->n_remote_mps; i++) {
4613 remote_mps[i] = mon->remote_mps[i]->mpid;
4614 }
b31bcf60 4615
e7934396
BP
4616 ofproto_iface_set_cfm(iface->port->bridge->ofproto, iface->dp_ifidx,
4617 &cfm, remote_mps, mon->n_remote_mps);
4618 free(remote_mps);
b31bcf60 4619}
0b8024eb
BP
4620
4621/* Read carrier or miimon status directly from 'iface''s netdev, according to
4622 * how 'iface''s port is configured.
4623 *
4624 * Returns true if 'iface' is up, false otherwise. */
4625static bool
4626iface_get_carrier(const struct iface *iface)
4627{
4628 return (iface->port->monitor
4629 ? netdev_get_carrier(iface->netdev)
4630 : netdev_get_miimon(iface->netdev));
4631}
064af421
BP
4632\f
4633/* Port mirroring. */
4634
dd0d105c
BP
4635static struct mirror *
4636mirror_find_by_uuid(struct bridge *br, const struct uuid *uuid)
4637{
4638 int i;
4639
4640 for (i = 0; i < MAX_MIRRORS; i++) {
4641 struct mirror *m = br->mirrors[i];
4642 if (m && uuid_equals(uuid, &m->uuid)) {
4643 return m;
4644 }
4645 }
4646 return NULL;
4647}
4648
064af421 4649static void
37e7f427 4650mirror_reconfigure(struct bridge *br)
064af421 4651{
f2d7fd66 4652 unsigned long *rspan_vlans;
8052fb14 4653 struct port *port;
37e7f427 4654 int i;
064af421 4655
dd0d105c 4656 /* Get rid of deleted mirrors. */
064af421 4657 for (i = 0; i < MAX_MIRRORS; i++) {
dd0d105c
BP
4658 struct mirror *m = br->mirrors[i];
4659 if (m) {
4660 const struct ovsdb_datum *mc;
4661 union ovsdb_atom atom;
4662
4663 mc = ovsrec_bridge_get_mirrors(br->cfg, OVSDB_TYPE_UUID);
4664 atom.uuid = br->mirrors[i]->uuid;
4665 if (ovsdb_datum_find_key(mc, &atom, OVSDB_TYPE_UUID) == UINT_MAX) {
4666 mirror_destroy(m);
4667 }
064af421
BP
4668 }
4669 }
4670
dd0d105c 4671 /* Add new mirrors and reconfigure existing ones. */
37e7f427
BP
4672 for (i = 0; i < br->cfg->n_mirrors; i++) {
4673 struct ovsrec_mirror *cfg = br->cfg->mirrors[i];
dd0d105c
BP
4674 struct mirror *m = mirror_find_by_uuid(br, &cfg->header_.uuid);
4675 if (m) {
4676 mirror_reconfigure_one(m, cfg);
4677 } else {
4678 mirror_create(br, cfg);
064af421
BP
4679 }
4680 }
4681
4682 /* Update port reserved status. */
8052fb14
BP
4683 HMAP_FOR_EACH (port, hmap_node, &br->ports) {
4684 port->is_mirror_output_port = false;
064af421
BP
4685 }
4686 for (i = 0; i < MAX_MIRRORS; i++) {
4687 struct mirror *m = br->mirrors[i];
4688 if (m && m->out_port) {
4689 m->out_port->is_mirror_output_port = true;
4690 }
4691 }
f2d7fd66 4692
8f30d09a 4693 /* Update flooded vlans (for RSPAN). */
f2d7fd66 4694 rspan_vlans = NULL;
37e7f427 4695 if (br->cfg->n_flood_vlans) {
f2d7fd66
JG
4696 rspan_vlans = bitmap_allocate(4096);
4697
37e7f427
BP
4698 for (i = 0; i < br->cfg->n_flood_vlans; i++) {
4699 int64_t vlan = br->cfg->flood_vlans[i];
4700 if (vlan >= 0 && vlan < 4096) {
f2d7fd66 4701 bitmap_set1(rspan_vlans, vlan);
37e7f427 4702 VLOG_INFO("bridge %s: disabling learning on vlan %"PRId64,
42061b2a 4703 br->name, vlan);
f2d7fd66 4704 } else {
37e7f427
BP
4705 VLOG_ERR("bridge %s: invalid value %"PRId64 "for flood VLAN",
4706 br->name, vlan);
f2d7fd66
JG
4707 }
4708 }
4709 }
8f30d09a 4710 if (mac_learning_set_flood_vlans(br->ml, rspan_vlans)) {
f2d7fd66 4711 bridge_flush(br);
d5346278 4712 mac_learning_flush(br->ml);
f2d7fd66 4713 }
064af421
BP
4714}
4715
dd0d105c
BP
4716static void
4717mirror_create(struct bridge *br, struct ovsrec_mirror *cfg)
064af421
BP
4718{
4719 struct mirror *m;
4720 size_t i;
4721
4722 for (i = 0; ; i++) {
4723 if (i >= MAX_MIRRORS) {
4724 VLOG_WARN("bridge %s: maximum of %d port mirrors reached, "
dd0d105c
BP
4725 "cannot create %s", br->name, MAX_MIRRORS, cfg->name);
4726 return;
064af421
BP
4727 }
4728 if (!br->mirrors[i]) {
4729 break;
4730 }
4731 }
4732
dd0d105c 4733 VLOG_INFO("created port mirror %s on bridge %s", cfg->name, br->name);
064af421 4734 bridge_flush(br);
d5346278 4735 mac_learning_flush(br->ml);
064af421 4736
ec6fde61 4737 br->mirrors[i] = m = xzalloc(sizeof *m);
064af421
BP
4738 m->bridge = br;
4739 m->idx = i;
dd0d105c 4740 m->name = xstrdup(cfg->name);
37e7f427
BP
4741 shash_init(&m->src_ports);
4742 shash_init(&m->dst_ports);
064af421
BP
4743 m->vlans = NULL;
4744 m->n_vlans = 0;
4745 m->out_vlan = -1;
4746 m->out_port = NULL;
37e7f427 4747
dd0d105c 4748 mirror_reconfigure_one(m, cfg);
064af421
BP
4749}
4750
4751static void
4752mirror_destroy(struct mirror *m)
4753{
4754 if (m) {
4755 struct bridge *br = m->bridge;
8052fb14 4756 struct port *port;
064af421 4757
8052fb14
BP
4758 HMAP_FOR_EACH (port, hmap_node, &br->ports) {
4759 port->src_mirrors &= ~(MIRROR_MASK_C(1) << m->idx);
4760 port->dst_mirrors &= ~(MIRROR_MASK_C(1) << m->idx);
064af421
BP
4761 }
4762
37e7f427
BP
4763 shash_destroy(&m->src_ports);
4764 shash_destroy(&m->dst_ports);
064af421
BP
4765 free(m->vlans);
4766
4767 m->bridge->mirrors[m->idx] = NULL;
786880a5 4768 free(m->name);
064af421
BP
4769 free(m);
4770
4771 bridge_flush(br);
d5346278 4772 mac_learning_flush(br->ml);
064af421
BP
4773 }
4774}
4775
4776static void
37e7f427
BP
4777mirror_collect_ports(struct mirror *m, struct ovsrec_port **ports, int n_ports,
4778 struct shash *names)
064af421 4779{
064af421
BP
4780 size_t i;
4781
37e7f427
BP
4782 for (i = 0; i < n_ports; i++) {
4783 const char *name = ports[i]->name;
064af421 4784 if (port_lookup(m->bridge, name)) {
37e7f427 4785 shash_add_once(names, name, NULL);
064af421 4786 } else {
37e7f427
BP
4787 VLOG_WARN("bridge %s: mirror %s cannot match on nonexistent "
4788 "port %s", m->bridge->name, m->name, name);
064af421
BP
4789 }
4790 }
064af421
BP
4791}
4792
4793static size_t
37e7f427
BP
4794mirror_collect_vlans(struct mirror *m, const struct ovsrec_mirror *cfg,
4795 int **vlans)
064af421 4796{
37e7f427
BP
4797 size_t n_vlans;
4798 size_t i;
064af421 4799
0b523ea7 4800 *vlans = xmalloc(sizeof **vlans * cfg->n_select_vlan);
064af421 4801 n_vlans = 0;
37e7f427
BP
4802 for (i = 0; i < cfg->n_select_vlan; i++) {
4803 int64_t vlan = cfg->select_vlan[i];
4804 if (vlan < 0 || vlan > 4095) {
4805 VLOG_WARN("bridge %s: mirror %s selects invalid VLAN %"PRId64,
4806 m->bridge->name, m->name, vlan);
064af421
BP
4807 } else {
4808 (*vlans)[n_vlans++] = vlan;
4809 }
4810 }
4811 return n_vlans;
4812}
4813
4814static bool
4815vlan_is_mirrored(const struct mirror *m, int vlan)
4816{
4817 size_t i;
4818
4819 for (i = 0; i < m->n_vlans; i++) {
4820 if (m->vlans[i] == vlan) {
4821 return true;
4822 }
4823 }
4824 return false;
4825}
4826
4827static bool
4828port_trunks_any_mirrored_vlan(const struct mirror *m, const struct port *p)
4829{
4830 size_t i;
4831
4832 for (i = 0; i < m->n_vlans; i++) {
4833 if (port_trunks_vlan(p, m->vlans[i])) {
4834 return true;
4835 }
4836 }
4837 return false;
4838}
4839
4840static void
37e7f427 4841mirror_reconfigure_one(struct mirror *m, struct ovsrec_mirror *cfg)
064af421 4842{
37e7f427 4843 struct shash src_ports, dst_ports;
064af421 4844 mirror_mask_t mirror_bit;
064af421 4845 struct port *out_port;
8052fb14 4846 struct port *port;
064af421
BP
4847 int out_vlan;
4848 size_t n_vlans;
4849 int *vlans;
064af421 4850
dd0d105c
BP
4851 /* Set name. */
4852 if (strcmp(cfg->name, m->name)) {
4853 free(m->name);
4854 m->name = xstrdup(cfg->name);
4855 }
4856
064af421 4857 /* Get output port. */
37e7f427
BP
4858 if (cfg->output_port) {
4859 out_port = port_lookup(m->bridge, cfg->output_port->name);
064af421 4860 if (!out_port) {
37e7f427
BP
4861 VLOG_ERR("bridge %s: mirror %s outputs to port not on bridge",
4862 m->bridge->name, m->name);
064af421 4863 mirror_destroy(m);
064af421
BP
4864 return;
4865 }
4866 out_vlan = -1;
4867
37e7f427
BP
4868 if (cfg->output_vlan) {
4869 VLOG_ERR("bridge %s: mirror %s specifies both output port and "
4870 "output vlan; ignoring output vlan",
4871 m->bridge->name, m->name);
064af421 4872 }
37e7f427 4873 } else if (cfg->output_vlan) {
064af421 4874 out_port = NULL;
37e7f427 4875 out_vlan = *cfg->output_vlan;
064af421 4876 } else {
37e7f427
BP
4877 VLOG_ERR("bridge %s: mirror %s does not specify output; ignoring",
4878 m->bridge->name, m->name);
064af421 4879 mirror_destroy(m);
064af421
BP
4880 return;
4881 }
4882
37e7f427
BP
4883 shash_init(&src_ports);
4884 shash_init(&dst_ports);
939ff267 4885 if (cfg->select_all) {
8052fb14
BP
4886 HMAP_FOR_EACH (port, hmap_node, &m->bridge->ports) {
4887 shash_add_once(&src_ports, port->name, NULL);
4888 shash_add_once(&dst_ports, port->name, NULL);
939ff267
BP
4889 }
4890 vlans = NULL;
4891 n_vlans = 0;
4892 } else {
4893 /* Get ports, and drop duplicates and ports that don't exist. */
4894 mirror_collect_ports(m, cfg->select_src_port, cfg->n_select_src_port,
4895 &src_ports);
4896 mirror_collect_ports(m, cfg->select_dst_port, cfg->n_select_dst_port,
4897 &dst_ports);
064af421 4898
939ff267
BP
4899 /* Get all the vlans, and drop duplicate and invalid vlans. */
4900 n_vlans = mirror_collect_vlans(m, cfg, &vlans);
37e7f427 4901 }
064af421
BP
4902
4903 /* Update mirror data. */
37e7f427
BP
4904 if (!shash_equal_keys(&m->src_ports, &src_ports)
4905 || !shash_equal_keys(&m->dst_ports, &dst_ports)
064af421
BP
4906 || m->n_vlans != n_vlans
4907 || memcmp(m->vlans, vlans, sizeof *vlans * n_vlans)
4908 || m->out_port != out_port
4909 || m->out_vlan != out_vlan) {
4910 bridge_flush(m->bridge);
d5346278 4911 mac_learning_flush(m->bridge->ml);
064af421 4912 }
37e7f427
BP
4913 shash_swap(&m->src_ports, &src_ports);
4914 shash_swap(&m->dst_ports, &dst_ports);
064af421
BP
4915 free(m->vlans);
4916 m->vlans = vlans;
4917 m->n_vlans = n_vlans;
4918 m->out_port = out_port;
4919 m->out_vlan = out_vlan;
4920
064af421
BP
4921 /* Update ports. */
4922 mirror_bit = MIRROR_MASK_C(1) << m->idx;
8052fb14 4923 HMAP_FOR_EACH (port, hmap_node, &m->bridge->ports) {
939ff267 4924 if (shash_find(&m->src_ports, port->name)
064af421
BP
4925 || (m->n_vlans
4926 && (!port->vlan
4927 ? port_trunks_any_mirrored_vlan(m, port)
4928 : vlan_is_mirrored(m, port->vlan)))) {
4929 port->src_mirrors |= mirror_bit;
4930 } else {
4931 port->src_mirrors &= ~mirror_bit;
4932 }
4933
939ff267 4934 if (shash_find(&m->dst_ports, port->name)) {
064af421
BP
4935 port->dst_mirrors |= mirror_bit;
4936 } else {
4937 port->dst_mirrors &= ~mirror_bit;
4938 }
4939 }
4940
4941 /* Clean up. */
37e7f427
BP
4942 shash_destroy(&src_ports);
4943 shash_destroy(&dst_ports);
064af421 4944}