-/* Copyright (c) 2008, 2009 Nicira Networks
+/* Copyright (c) 2008, 2009, 2010 Nicira Networks
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
#include <config.h>
#include "bridge.h"
+#include "byte-order.h"
#include <assert.h>
#include <errno.h>
#include <arpa/inet.h>
#include <ctype.h>
#include <inttypes.h>
+#include <sys/socket.h>
#include <net/if.h>
#include <openflow/openflow.h>
#include <signal.h>
#include <sys/types.h>
#include <unistd.h>
#include "bitmap.h"
-#include "cfg.h"
+#include "cfm.h"
+#include "classifier.h"
#include "coverage.h"
#include "dirs.h"
#include "dpif.h"
#include "dynamic-string.h"
#include "flow.h"
#include "hash.h"
+#include "hmap.h"
+#include "jsonrpc.h"
#include "list.h"
#include "mac-learning.h"
#include "netdev.h"
+#include "netlink.h"
#include "odp-util.h"
#include "ofp-print.h"
#include "ofpbuf.h"
+#include "ofproto/netflow.h"
+#include "ofproto/ofproto.h"
+#include "ovsdb-data.h"
#include "packets.h"
#include "poll-loop.h"
-#include "port-array.h"
#include "proc-net-compat.h"
#include "process.h"
-#include "secchan/netflow.h"
-#include "secchan/ofproto.h"
+#include "sha1.h"
+#include "shash.h"
#include "socket-util.h"
-#include "stp.h"
+#include "stream-ssl.h"
#include "svec.h"
+#include "system-stats.h"
#include "timeval.h"
#include "util.h"
#include "unixctl.h"
#include "vconn.h"
-#include "vconn-ssl.h"
+#include "vswitchd/vswitch-idl.h"
#include "xenserver.h"
-#include "xtoxll.h"
-
-#define THIS_MODULE VLM_bridge
#include "vlog.h"
+#include "sflow_api.h"
+
+VLOG_DEFINE_THIS_MODULE(bridge);
+
+COVERAGE_DEFINE(bridge_flush);
+COVERAGE_DEFINE(bridge_process_flow);
+COVERAGE_DEFINE(bridge_reconfigure);
struct dst {
uint16_t vlan;
uint16_t dp_ifidx;
};
-extern uint64_t mgmt_id;
+struct dst_set {
+ struct dst builtin[32];
+ struct dst *dsts;
+ size_t n, allocated;
+};
+
+static void dst_set_init(struct dst_set *);
+static void dst_set_add(struct dst_set *, const struct dst *);
+static void dst_set_free(struct dst_set *);
struct iface {
+ /* These members are always valid. */
struct port *port; /* Containing port. */
size_t port_ifidx; /* Index within containing port. */
-
char *name; /* Host network device name. */
- int dp_ifidx; /* Index within kernel datapath. */
-
- uint8_t mac[ETH_ADDR_LEN]; /* Ethernet address (all zeros if unknowns). */
-
tag_type tag; /* Tag associated with this interface. */
- bool enabled; /* May be chosen for flows? */
long long delay_expires; /* Time after which 'enabled' may change. */
+
+ /* These members are valid only after bridge_reconfigure() causes them to
+ * be initialized. */
+ struct hmap_node dp_ifidx_node; /* In struct bridge's "ifaces" hmap. */
+ int dp_ifidx; /* Index within kernel datapath. */
+ struct netdev *netdev; /* Network device. */
+ bool enabled; /* May be chosen for flows? */
+ const char *type; /* Usually same as cfg->type. */
+ struct cfm *cfm; /* Connectivity Fault Management */
+ const struct ovsrec_interface *cfg;
};
#define BOND_MASK 0xff
tag_type iface_tag; /* Tag associated with iface_idx. */
};
+enum bond_mode {
+ BM_SLB, /* Source Load Balance (Default). */
+ BM_AB /* Active Backup. */
+};
+
#define MAX_MIRRORS 32
typedef uint32_t mirror_mask_t;
#define MIRROR_MASK_C(X) UINT32_C(X)
struct bridge *bridge;
size_t idx;
char *name;
+ struct uuid uuid; /* UUID of this "mirror" record in database. */
/* Selection criteria. */
- struct svec src_ports;
- struct svec dst_ports;
+ struct shash src_ports; /* Name is port name; data is always NULL. */
+ struct shash dst_ports; /* Name is port name; data is always NULL. */
int *vlans;
size_t n_vlans;
struct bridge *bridge;
size_t port_idx;
int vlan; /* -1=trunk port, else a 12-bit VLAN ID. */
- unsigned long *trunks; /* Bitmap of trunked VLANs, if 'vlan' == -1. */
+ unsigned long *trunks; /* Bitmap of trunked VLANs, if 'vlan' == -1.
+ * NULL if all VLANs are trunked. */
+ const struct ovsrec_port *cfg;
char *name;
/* An ordinary bridge port has 1 interface.
size_t n_ifaces, allocated_ifaces;
/* Bonding info. */
- struct bond_entry *bond_hash; /* An array of (BOND_MASK + 1) elements. */
+ enum bond_mode bond_mode; /* Type of the bond. BM_SLB is the default. */
int active_iface; /* Ifidx on which bcasts accepted, or -1. */
tag_type active_iface_tag; /* Tag for bcast flows. */
tag_type no_ifaces_tag; /* Tag for flows when all ifaces disabled. */
int updelay, downdelay; /* Delay before iface goes up/down, in ms. */
bool bond_compat_is_stale; /* Need to call port_update_bond_compat()? */
+ bool bond_fake_iface; /* Fake a bond interface for legacy compat? */
+ bool miimon; /* Use miimon instead of carrier? */
+ long long int bond_miimon_interval; /* Miimon status refresh interval. */
+ long long int bond_miimon_next_update; /* Time of next miimon update. */
+ long long int bond_next_fake_iface_update; /* Time of next update. */
+ struct netdev_monitor *monitor; /* Tracks carrier up/down status. */
+
+ /* SLB specific bonding info. */
+ struct bond_entry *bond_hash; /* An array of (BOND_MASK + 1) elements. */
+ int bond_rebalance_interval; /* Interval between rebalances, in ms. */
+ long long int bond_next_rebalance; /* Next rebalancing time. */
/* Port mirroring info. */
mirror_mask_t src_mirrors; /* Mirrors triggered when packet received. */
mirror_mask_t dst_mirrors; /* Mirrors triggered when packet sent. */
bool is_mirror_output_port; /* Does port mirroring send frames here? */
-
- /* Spanning tree info. */
- enum stp_state stp_state; /* Always STP_FORWARDING if STP not in use. */
- tag_type stp_state_tag; /* Tag for STP state change. */
};
-#define DP_MAX_PORTS 255
struct bridge {
struct list node; /* Node in global list of bridges. */
char *name; /* User-specified arbitrary name. */
struct mac_learning *ml; /* MAC learning table. */
- bool sent_config_request; /* Successfully sent config request? */
uint8_t default_ea[ETH_ADDR_LEN]; /* Default MAC. */
-
- /* Support for remote controllers. */
- char *controller; /* NULL if there is no remote controller;
- * "discover" to do controller discovery;
- * otherwise a vconn name. */
+ const struct ovsrec_bridge *cfg;
/* OpenFlow switch processing. */
struct ofproto *ofproto; /* OpenFlow switch. */
/* Kernel datapath information. */
- struct dpif dpif; /* Kernel datapath. */
- struct port_array ifaces; /* Indexed by kernel datapath port number. */
+ struct dpif *dpif; /* Datapath. */
+ struct hmap ifaces; /* Contains "struct iface"s. */
/* Bridge ports. */
struct port **ports;
size_t n_ports, allocated_ports;
+ struct shash iface_by_name; /* "struct iface"s indexed by name. */
+ struct shash port_by_name; /* "struct port"s indexed by name. */
/* Bonding. */
bool has_bonded_ports;
- long long int bond_next_rebalance;
/* Flow tracking. */
bool flush;
- /* Flow statistics gathering. */
- time_t next_stats_request;
-
/* Port mirroring. */
struct mirror *mirrors[MAX_MIRRORS];
-
- /* Spanning tree. */
- struct stp *stp;
- long long int stp_last_tick;
};
/* List of all bridges. */
static struct list all_bridges = LIST_INITIALIZER(&all_bridges);
-/* Maximum number of datapaths. */
-enum { DP_MAX = 256 };
+/* OVSDB IDL used to obtain configuration. */
+static struct ovsdb_idl *idl;
-static struct bridge *bridge_create(const char *name);
+/* Each time this timer expires, the bridge fetches systems and interface
+ * statistics and pushes them into the database. */
+#define STATS_INTERVAL (5 * 1000) /* In milliseconds. */
+static long long int stats_timer = LLONG_MIN;
+
+static struct bridge *bridge_create(const struct ovsrec_bridge *br_cfg);
static void bridge_destroy(struct bridge *);
static struct bridge *bridge_lookup(const char *name);
-static void bridge_unixctl_dump_flows(struct unixctl_conn *, const char *);
+static unixctl_cb_func bridge_unixctl_dump_flows;
+static unixctl_cb_func bridge_unixctl_reconnect;
static int bridge_run_one(struct bridge *);
+static size_t bridge_get_controllers(const struct bridge *br,
+ struct ovsrec_controller ***controllersp);
static void bridge_reconfigure_one(struct bridge *);
-static void bridge_reconfigure_controller(struct bridge *);
-static void bridge_get_all_ifaces(const struct bridge *, struct svec *ifaces);
+static void bridge_reconfigure_remotes(struct bridge *,
+ const struct sockaddr_in *managers,
+ size_t n_managers);
+static void bridge_get_all_ifaces(const struct bridge *, struct shash *ifaces);
static void bridge_fetch_dp_ifaces(struct bridge *);
static void bridge_flush(struct bridge *);
static void bridge_pick_local_hw_addr(struct bridge *,
uint8_t ea[ETH_ADDR_LEN],
- const char **devname);
+ struct iface **hw_addr_iface);
static uint64_t bridge_pick_datapath_id(struct bridge *,
const uint8_t bridge_ea[ETH_ADDR_LEN],
- const char *devname);
+ struct iface *hw_addr_iface);
+static struct iface *bridge_get_local_iface(struct bridge *);
static uint64_t dpid_from_hash(const void *, size_t nbytes);
-static void bridge_unixctl_fdb_show(struct unixctl_conn *, const char *args);
+static unixctl_cb_func bridge_unixctl_fdb_show;
static void bond_init(void);
static void bond_run(struct bridge *);
static void bond_send_learning_packets(struct port *);
static void bond_enable_slave(struct iface *iface, bool enable);
-static void port_create(struct bridge *, const char *name);
-static void port_reconfigure(struct port *);
+static struct port *port_create(struct bridge *, const char *name);
+static void port_reconfigure(struct port *, const struct ovsrec_port *);
+static void port_del_ifaces(struct port *, const struct ovsrec_port *);
static void port_destroy(struct port *);
static struct port *port_lookup(const struct bridge *, const char *name);
static struct iface *port_lookup_iface(const struct port *, const char *name);
uint16_t dp_ifidx);
static void port_update_bond_compat(struct port *);
static void port_update_vlan_compat(struct port *);
+static void port_update_bonding(struct port *);
-static void mirror_create(struct bridge *, const char *name);
+static void mirror_create(struct bridge *, struct ovsrec_mirror *);
static void mirror_destroy(struct mirror *);
static void mirror_reconfigure(struct bridge *);
-static void mirror_reconfigure_one(struct mirror *);
+static void mirror_reconfigure_one(struct mirror *, struct ovsrec_mirror *);
static bool vlan_is_mirrored(const struct mirror *, int vlan);
-static void brstp_reconfigure(struct bridge *);
-static void brstp_adjust_timers(struct bridge *);
-static void brstp_run(struct bridge *);
-static void brstp_wait(struct bridge *);
-
-static void iface_create(struct port *, const char *name);
+static struct iface *iface_create(struct port *port,
+ const struct ovsrec_interface *if_cfg);
static void iface_destroy(struct iface *);
static struct iface *iface_lookup(const struct bridge *, const char *name);
static struct iface *iface_from_dp_ifidx(const struct bridge *,
uint16_t dp_ifidx);
-static bool iface_is_internal(const struct bridge *, const char *name);
static void iface_set_mac(struct iface *);
+static void iface_set_ofport(const struct ovsrec_interface *, int64_t ofport);
+static void iface_update_qos(struct iface *, const struct ovsrec_qos *);
+static void iface_update_cfm(struct iface *);
+static void iface_refresh_cfm_stats(struct iface *iface);
+static void iface_send_packet(struct iface *, struct ofpbuf *packet);
+
+static void shash_from_ovs_idl_map(char **keys, char **values, size_t n,
+ struct shash *);
+static void shash_to_ovs_idl_map(struct shash *,
+ char ***keys, char ***values, size_t *n);
+
/* Hooks into ofproto processing. */
static struct ofhooks bridge_ofhooks;
\f
/* Public functions. */
-/* Adds the name of each interface used by a bridge, including local and
- * internal ports, to 'svec'. */
+/* Initializes the bridge module, configuring it to obtain its configuration
+ * from an OVSDB server accessed over 'remote', which should be a string in a
+ * form acceptable to ovsdb_idl_create(). */
void
-bridge_get_ifaces(struct svec *svec)
+bridge_init(const char *remote)
{
- struct bridge *br, *next;
- size_t i, j;
+ /* Create connection to database. */
+ idl = ovsdb_idl_create(remote, &ovsrec_idl_class, true);
- LIST_FOR_EACH_SAFE (br, next, struct bridge, node, &all_bridges) {
- for (i = 0; i < br->n_ports; i++) {
- struct port *port = br->ports[i];
+ ovsdb_idl_omit_alert(idl, &ovsrec_open_vswitch_col_cur_cfg);
+ ovsdb_idl_omit_alert(idl, &ovsrec_open_vswitch_col_statistics);
+ ovsdb_idl_omit(idl, &ovsrec_open_vswitch_col_external_ids);
- for (j = 0; j < port->n_ifaces; j++) {
- struct iface *iface = port->ifaces[j];
- if (iface->dp_ifidx < 0) {
- VLOG_ERR("%s interface not in dp%u, ignoring",
- iface->name, dpif_id(&br->dpif));
- } else {
- if (iface->dp_ifidx != ODPP_LOCAL) {
- svec_add(svec, iface->name);
- }
- }
- }
- }
- }
+ ovsdb_idl_omit(idl, &ovsrec_bridge_col_external_ids);
+
+ ovsdb_idl_omit(idl, &ovsrec_port_col_external_ids);
+ ovsdb_idl_omit(idl, &ovsrec_port_col_fake_bridge);
+
+ ovsdb_idl_omit_alert(idl, &ovsrec_interface_col_ofport);
+ ovsdb_idl_omit_alert(idl, &ovsrec_interface_col_statistics);
+ ovsdb_idl_omit(idl, &ovsrec_interface_col_external_ids);
+
+ /* Register unixctl commands. */
+ unixctl_command_register("fdb/show", bridge_unixctl_fdb_show, NULL);
+ unixctl_command_register("bridge/dump-flows", bridge_unixctl_dump_flows,
+ NULL);
+ unixctl_command_register("bridge/reconnect", bridge_unixctl_reconnect,
+ NULL);
+ bond_init();
}
-/* The caller must already have called cfg_read(). */
void
-bridge_init(void)
+bridge_exit(void)
{
- int retval;
- int i;
+ struct bridge *br, *next_br;
- bond_init();
+ LIST_FOR_EACH_SAFE (br, next_br, node, &all_bridges) {
+ bridge_destroy(br);
+ }
+ ovsdb_idl_destroy(idl);
+}
+
+/* Performs configuration that is only necessary once at ovs-vswitchd startup,
+ * but for which the ovs-vswitchd configuration 'cfg' is required. */
+static void
+bridge_configure_once(const struct ovsrec_open_vswitch *cfg)
+{
+ static bool already_configured_once;
+ struct svec bridge_names;
+ struct svec dpif_names, dpif_types;
+ size_t i;
+
+ /* Only do this once per ovs-vswitchd run. */
+ if (already_configured_once) {
+ return;
+ }
+ already_configured_once = true;
+
+ stats_timer = time_msec() + STATS_INTERVAL;
+
+ /* Get all the configured bridges' names from 'cfg' into 'bridge_names'. */
+ svec_init(&bridge_names);
+ for (i = 0; i < cfg->n_bridges; i++) {
+ svec_add(&bridge_names, cfg->bridges[i]->name);
+ }
+ svec_sort(&bridge_names);
+
+ /* Iterate over all system dpifs and delete any of them that do not appear
+ * in 'cfg'. */
+ svec_init(&dpif_names);
+ svec_init(&dpif_types);
+ dp_enumerate_types(&dpif_types);
+ for (i = 0; i < dpif_types.n; i++) {
+ struct dpif *dpif;
+ int retval;
+ size_t j;
+
+ dp_enumerate_names(dpif_types.names[i], &dpif_names);
- unixctl_command_register("fdb/show", bridge_unixctl_fdb_show);
+ /* For each dpif... */
+ for (j = 0; j < dpif_names.n; j++) {
+ retval = dpif_open(dpif_names.names[j], dpif_types.names[i], &dpif);
+ if (!retval) {
+ struct svec all_names;
+ size_t k;
+
+ /* ...check whether any of its names is in 'bridge_names'. */
+ svec_init(&all_names);
+ dpif_get_all_names(dpif, &all_names);
+ for (k = 0; k < all_names.n; k++) {
+ if (svec_contains(&bridge_names, all_names.names[k])) {
+ goto found;
+ }
+ }
- for (i = 0; i < DP_MAX; i++) {
- struct dpif dpif;
- char devname[16];
+ /* No. Delete the dpif. */
+ dpif_delete(dpif);
- sprintf(devname, "dp%d", i);
- retval = dpif_open(devname, &dpif);
- if (!retval) {
- char dpif_name[IF_NAMESIZE];
- if (dpif_get_name(&dpif, dpif_name, sizeof dpif_name)
- || !cfg_has("bridge.%s.port", dpif_name)) {
- dpif_delete(&dpif);
+ found:
+ svec_destroy(&all_names);
+ dpif_close(dpif);
}
- dpif_close(&dpif);
- } else if (retval != ENODEV) {
- VLOG_ERR("failed to delete datapath dp%d: %s",
- i, strerror(retval));
}
}
+ svec_destroy(&bridge_names);
+ svec_destroy(&dpif_names);
+ svec_destroy(&dpif_types);
+}
+
+/* Callback for iterate_and_prune_ifaces(). */
+static bool
+check_iface(struct bridge *br, struct iface *iface, void *aux OVS_UNUSED)
+{
+ if (!iface->netdev) {
+ /* We already reported a related error, don't bother duplicating it. */
+ return false;
+ }
- unixctl_command_register("bridge/dump-flows", bridge_unixctl_dump_flows);
+ if (iface->dp_ifidx < 0) {
+ VLOG_ERR("%s interface not in %s, dropping",
+ iface->name, dpif_name(br->dpif));
+ return false;
+ }
- bridge_reconfigure();
+ VLOG_DBG("%s has interface %s on port %d", dpif_name(br->dpif),
+ iface->name, iface->dp_ifidx);
+ return true;
}
-#ifdef HAVE_OPENSSL
+/* Callback for iterate_and_prune_ifaces(). */
static bool
-config_string_change(const char *key, char **valuep)
+set_iface_properties(struct bridge *br OVS_UNUSED, struct iface *iface,
+ void *aux OVS_UNUSED)
{
- const char *value = cfg_get_string(0, "%s", key);
- if (value && (!*valuep || strcmp(value, *valuep))) {
- free(*valuep);
- *valuep = xstrdup(value);
- return true;
- } else {
- return false;
+ /* Set policing attributes. */
+ netdev_set_policing(iface->netdev,
+ iface->cfg->ingress_policing_rate,
+ iface->cfg->ingress_policing_burst);
+
+ /* Set MAC address of internal interfaces other than the local
+ * interface. */
+ if (iface->dp_ifidx != ODPP_LOCAL && !strcmp(iface->type, "internal")) {
+ iface_set_mac(iface);
+ }
+
+ return true;
+}
+
+/* Calls 'cb' for each interfaces in 'br', passing along the 'aux' argument.
+ * Deletes from 'br' all the interfaces for which 'cb' returns false, and then
+ * deletes from 'br' any ports that no longer have any interfaces. */
+static void
+iterate_and_prune_ifaces(struct bridge *br,
+ bool (*cb)(struct bridge *, struct iface *,
+ void *aux),
+ void *aux)
+{
+ size_t i, j;
+
+ for (i = 0; i < br->n_ports; ) {
+ struct port *port = br->ports[i];
+ for (j = 0; j < port->n_ifaces; ) {
+ struct iface *iface = port->ifaces[j];
+ if (cb(br, iface, aux)) {
+ j++;
+ } else {
+ iface_set_ofport(iface->cfg, -1);
+ iface_destroy(iface);
+ }
+ }
+
+ if (port->n_ifaces) {
+ i++;
+ } else {
+ VLOG_ERR("%s port has no interfaces, dropping", port->name);
+ port_destroy(port);
+ }
}
}
+/* Looks at the list of managers in 'ovs_cfg' and extracts their remote IP
+ * addresses and ports into '*managersp' and '*n_managersp'. The caller is
+ * responsible for freeing '*managersp' (with free()).
+ *
+ * You may be asking yourself "why does ovs-vswitchd care?", because
+ * ovsdb-server is responsible for connecting to the managers, and ovs-vswitchd
+ * should not be and in fact is not directly involved in that. But
+ * ovs-vswitchd needs to make sure that ovsdb-server can reach the managers, so
+ * it has to tell in-band control where the managers are to enable that.
+ * (Thus, only managers connected in-band are collected.)
+ */
static void
-bridge_configure_ssl(void)
+collect_in_band_managers(const struct ovsrec_open_vswitch *ovs_cfg,
+ struct sockaddr_in **managersp, size_t *n_managersp)
{
- /* XXX SSL should be configurable on a per-bridge basis.
- * XXX should be possible to de-configure SSL. */
- static char *private_key_file;
- static char *certificate_file;
- static char *cacert_file;
- struct stat s;
+ struct sockaddr_in *managers = NULL;
+ size_t n_managers = 0;
+ struct shash targets;
+ size_t i;
- if (config_string_change("ssl.private-key", &private_key_file)) {
- vconn_ssl_set_private_key_file(private_key_file);
+ /* Collect all of the potential targets, as the union of the "managers"
+ * column and the "targets" columns of the rows pointed to by
+ * "manager_options", excluding any that are out-of-band. */
+ shash_init(&targets);
+ for (i = 0; i < ovs_cfg->n_managers; i++) {
+ shash_add_once(&targets, ovs_cfg->managers[i], NULL);
}
+ for (i = 0; i < ovs_cfg->n_manager_options; i++) {
+ struct ovsrec_manager *m = ovs_cfg->manager_options[i];
- if (config_string_change("ssl.certificate", &certificate_file)) {
- vconn_ssl_set_certificate_file(certificate_file);
+ if (m->connection_mode && !strcmp(m->connection_mode, "out-of-band")) {
+ shash_find_and_delete(&targets, m->target);
+ } else {
+ shash_add_once(&targets, m->target, NULL);
+ }
}
- /* We assume that even if the filename hasn't changed, if the CA cert
- * file has been removed, that we want to move back into
- * boot-strapping mode. This opens a small security hole, because
- * the old certificate will still be trusted until vSwitch is
- * restarted. We may want to address this in vconn's SSL library. */
- if (config_string_change("ssl.ca-cert", &cacert_file)
- || (stat(cacert_file, &s) && errno == ENOENT)) {
- vconn_ssl_set_ca_cert_file(cacert_file,
- cfg_get_bool(0, "ssl.bootstrap-ca-cert"));
+ /* Now extract the targets' IP addresses. */
+ if (!shash_is_empty(&targets)) {
+ struct shash_node *node;
+
+ managers = xmalloc(shash_count(&targets) * sizeof *managers);
+ SHASH_FOR_EACH (node, &targets) {
+ const char *target = node->name;
+ struct sockaddr_in *sin = &managers[n_managers];
+
+ if ((!strncmp(target, "tcp:", 4)
+ && inet_parse_active(target + 4, JSONRPC_TCP_PORT, sin)) ||
+ (!strncmp(target, "ssl:", 4)
+ && inet_parse_active(target + 4, JSONRPC_SSL_PORT, sin))) {
+ n_managers++;
+ }
+ }
}
+ shash_destroy(&targets);
+
+ *managersp = managers;
+ *n_managersp = n_managers;
}
-#endif
-void
-bridge_reconfigure(void)
+static void
+bridge_reconfigure(const struct ovsrec_open_vswitch *ovs_cfg)
{
- struct svec old_br, new_br, raw_new_br;
+ struct shash old_br, new_br;
+ struct shash_node *node;
struct bridge *br, *next;
- size_t i, j;
+ struct sockaddr_in *managers;
+ size_t n_managers;
+ size_t i;
+ int sflow_bridge_number;
COVERAGE_INC(bridge_reconfigure);
- /* Collect old bridges. */
- svec_init(&old_br);
- LIST_FOR_EACH (br, struct bridge, node, &all_bridges) {
- svec_add(&old_br, br->name);
- }
-
- /* Collect new bridges. */
- svec_init(&raw_new_br);
- cfg_get_subsections(&raw_new_br, "bridge");
- svec_init(&new_br);
- for (i = 0; i < raw_new_br.n; i++) {
- const char *name = raw_new_br.names[i];
- if ((!strncmp(name, "dp", 2) && isdigit(name[2])) ||
- (!strncmp(name, "nl:", 3) && isdigit(name[3]))) {
- VLOG_ERR("%s is not a valid bridge name (bridges may not be "
- "named \"dp\" or \"nl:\" followed by a digit)", name);
- } else {
- svec_add(&new_br, name);
+ collect_in_band_managers(ovs_cfg, &managers, &n_managers);
+
+ /* Collect old and new bridges. */
+ shash_init(&old_br);
+ shash_init(&new_br);
+ LIST_FOR_EACH (br, node, &all_bridges) {
+ shash_add(&old_br, br->name, br);
+ }
+ for (i = 0; i < ovs_cfg->n_bridges; i++) {
+ const struct ovsrec_bridge *br_cfg = ovs_cfg->bridges[i];
+ if (!shash_add_once(&new_br, br_cfg->name, br_cfg)) {
+ VLOG_WARN("more than one bridge named %s", br_cfg->name);
}
}
- svec_destroy(&raw_new_br);
/* Get rid of deleted bridges and add new bridges. */
- svec_sort(&old_br);
- svec_sort(&new_br);
- assert(svec_is_unique(&old_br));
- assert(svec_is_unique(&new_br));
- LIST_FOR_EACH_SAFE (br, next, struct bridge, node, &all_bridges) {
- if (!svec_contains(&new_br, br->name)) {
+ LIST_FOR_EACH_SAFE (br, next, node, &all_bridges) {
+ struct ovsrec_bridge *br_cfg = shash_find_data(&new_br, br->name);
+ if (br_cfg) {
+ br->cfg = br_cfg;
+ } else {
bridge_destroy(br);
}
}
- for (i = 0; i < new_br.n; i++) {
- const char *name = new_br.names[i];
- if (!svec_contains(&old_br, name)) {
- bridge_create(name);
+ SHASH_FOR_EACH (node, &new_br) {
+ const char *br_name = node->name;
+ const struct ovsrec_bridge *br_cfg = node->data;
+ br = shash_find_data(&old_br, br_name);
+ if (br) {
+ /* If the bridge datapath type has changed, we need to tear it
+ * down and recreate. */
+ if (strcmp(br->cfg->datapath_type, br_cfg->datapath_type)) {
+ bridge_destroy(br);
+ bridge_create(br_cfg);
+ }
+ } else {
+ bridge_create(br_cfg);
}
}
- svec_destroy(&old_br);
- svec_destroy(&new_br);
-
-#ifdef HAVE_OPENSSL
- /* Configure SSL. */
- bridge_configure_ssl();
-#endif
+ shash_destroy(&old_br);
+ shash_destroy(&new_br);
/* Reconfigure all bridges. */
- LIST_FOR_EACH (br, struct bridge, node, &all_bridges) {
+ LIST_FOR_EACH (br, node, &all_bridges) {
bridge_reconfigure_one(br);
}
* The kernel will reject any attempt to add a given port to a datapath if
* that port already belongs to a different datapath, so we must do all
* port deletions before any port additions. */
- LIST_FOR_EACH (br, struct bridge, node, &all_bridges) {
+ LIST_FOR_EACH (br, node, &all_bridges) {
struct odp_port *dpif_ports;
size_t n_dpif_ports;
- struct svec want_ifaces;
+ struct shash want_ifaces;
- dpif_port_list(&br->dpif, &dpif_ports, &n_dpif_ports);
+ dpif_port_list(br->dpif, &dpif_ports, &n_dpif_ports);
bridge_get_all_ifaces(br, &want_ifaces);
for (i = 0; i < n_dpif_ports; i++) {
const struct odp_port *p = &dpif_ports[i];
- if (!svec_contains(&want_ifaces, p->devname)
+ if (!shash_find(&want_ifaces, p->devname)
&& strcmp(p->devname, br->name)) {
- int retval = dpif_port_del(&br->dpif, p->port);
+ int retval = dpif_port_del(br->dpif, p->port);
if (retval) {
- VLOG_ERR("failed to remove %s interface from dp%u: %s",
- p->devname, dpif_id(&br->dpif), strerror(retval));
+ VLOG_ERR("failed to remove %s interface from %s: %s",
+ p->devname, dpif_name(br->dpif),
+ strerror(retval));
}
}
}
- svec_destroy(&want_ifaces);
+ shash_destroy(&want_ifaces);
free(dpif_ports);
}
- LIST_FOR_EACH (br, struct bridge, node, &all_bridges) {
+ LIST_FOR_EACH (br, node, &all_bridges) {
struct odp_port *dpif_ports;
size_t n_dpif_ports;
- struct svec cur_ifaces, want_ifaces, add_ifaces;
- int next_port_no;
+ struct shash cur_ifaces, want_ifaces;
- dpif_port_list(&br->dpif, &dpif_ports, &n_dpif_ports);
- svec_init(&cur_ifaces);
+ /* Get the set of interfaces currently in this datapath. */
+ dpif_port_list(br->dpif, &dpif_ports, &n_dpif_ports);
+ shash_init(&cur_ifaces);
for (i = 0; i < n_dpif_ports; i++) {
- svec_add(&cur_ifaces, dpif_ports[i].devname);
+ const char *name = dpif_ports[i].devname;
+ shash_add_once(&cur_ifaces, name, &dpif_ports[i]);
}
- free(dpif_ports);
- svec_sort_unique(&cur_ifaces);
+
+ /* Get the set of interfaces we want on this datapath. */
bridge_get_all_ifaces(br, &want_ifaces);
- svec_diff(&want_ifaces, &cur_ifaces, &add_ifaces, NULL, NULL);
-
- next_port_no = 1;
- for (i = 0; i < add_ifaces.n; i++) {
- const char *if_name = add_ifaces.names[i];
- for (;;) {
- bool internal;
- int error;
-
- /* Add to datapath. */
- internal = iface_is_internal(br, if_name);
- error = dpif_port_add(&br->dpif, if_name, next_port_no++,
- internal ? ODP_PORT_INTERNAL : 0);
- if (error != EEXIST) {
- if (next_port_no >= 256) {
- VLOG_ERR("ran out of valid port numbers on dp%u",
- dpif_id(&br->dpif));
- goto out;
+
+ hmap_clear(&br->ifaces);
+ SHASH_FOR_EACH (node, &want_ifaces) {
+ const char *if_name = node->name;
+ struct iface *iface = node->data;
+ struct odp_port *dpif_port = shash_find_data(&cur_ifaces, if_name);
+ const char *type = iface ? iface->type : "internal";
+ int error;
+
+ /* If we have a port or a netdev already, and it's not the type we
+ * want, then delete the port (if any) and close the netdev (if
+ * any). */
+ if ((dpif_port && strcmp(dpif_port->type, type))
+ || (iface && iface->netdev
+ && strcmp(type, netdev_get_type(iface->netdev)))) {
+ if (dpif_port) {
+ error = ofproto_port_del(br->ofproto, dpif_port->port);
+ if (error) {
+ continue;
}
+ dpif_port = NULL;
+ }
+ if (iface) {
+ netdev_close(iface->netdev);
+ iface->netdev = NULL;
+ }
+ }
+
+ /* If the port doesn't exist or we don't have the netdev open,
+ * we need to do more work. */
+ if (!dpif_port || (iface && !iface->netdev)) {
+ struct netdev_options options;
+ struct netdev *netdev;
+ struct shash args;
+
+ /* First open the network device. */
+ options.name = if_name;
+ options.type = type;
+ options.args = &args;
+ options.ethertype = NETDEV_ETH_TYPE_NONE;
+
+ shash_init(&args);
+ if (iface) {
+ shash_from_ovs_idl_map(iface->cfg->key_options,
+ iface->cfg->value_options,
+ iface->cfg->n_options, &args);
+ }
+ error = netdev_open(&options, &netdev);
+ shash_destroy(&args);
+
+ if (error) {
+ VLOG_WARN("could not open network device %s (%s)",
+ if_name, strerror(error));
+ continue;
+ }
+
+ /* Then add the port if we haven't already. */
+ if (!dpif_port) {
+ error = dpif_port_add(br->dpif, netdev, NULL);
if (error) {
- VLOG_ERR("failed to add %s interface to dp%u: %s",
- if_name, dpif_id(&br->dpif), strerror(error));
+ netdev_close(netdev);
+ if (error == EFBIG) {
+ VLOG_ERR("ran out of valid port numbers on %s",
+ dpif_name(br->dpif));
+ break;
+ } else {
+ VLOG_ERR("failed to add %s interface to %s: %s",
+ if_name, dpif_name(br->dpif),
+ strerror(error));
+ continue;
+ }
}
- break;
}
+
+ /* Update 'iface'. */
+ if (iface) {
+ iface->netdev = netdev;
+ iface->enabled = netdev_get_carrier(iface->netdev);
+ }
+ } else if (iface && iface->netdev) {
+ struct shash args;
+
+ shash_init(&args);
+ shash_from_ovs_idl_map(iface->cfg->key_options,
+ iface->cfg->value_options,
+ iface->cfg->n_options, &args);
+ netdev_reconfigure(iface->netdev, &args);
+ shash_destroy(&args);
}
}
- out:
- svec_destroy(&cur_ifaces);
- svec_destroy(&want_ifaces);
- svec_destroy(&add_ifaces);
+ free(dpif_ports);
+ shash_destroy(&cur_ifaces);
+ shash_destroy(&want_ifaces);
}
- LIST_FOR_EACH (br, struct bridge, node, &all_bridges) {
+ sflow_bridge_number = 0;
+ LIST_FOR_EACH (br, node, &all_bridges) {
uint8_t ea[8];
uint64_t dpid;
- struct iface *local_iface = NULL;
- const char *devname;
- struct netflow_options nf_options;
+ struct iface *local_iface;
+ struct iface *hw_addr_iface;
+ char *dpid_string;
bridge_fetch_dp_ifaces(br);
- for (i = 0; i < br->n_ports; ) {
- struct port *port = br->ports[i];
- for (j = 0; j < port->n_ifaces; ) {
- struct iface *iface = port->ifaces[j];
- if (iface->dp_ifidx < 0) {
- VLOG_ERR("%s interface not in dp%u, dropping",
- iface->name, dpif_id(&br->dpif));
- iface_destroy(iface);
- } else {
- if (iface->dp_ifidx == ODPP_LOCAL) {
- local_iface = iface;
- }
- VLOG_DBG("dp%u has interface %s on port %d",
- dpif_id(&br->dpif), iface->name, iface->dp_ifidx);
- j++;
- }
- }
- if (!port->n_ifaces) {
- VLOG_ERR("%s port has no interfaces, dropping", port->name);
- port_destroy(port);
- continue;
- }
- i++;
- }
+ iterate_and_prune_ifaces(br, check_iface, NULL);
/* Pick local port hardware address, datapath ID. */
- bridge_pick_local_hw_addr(br, ea, &devname);
+ bridge_pick_local_hw_addr(br, ea, &hw_addr_iface);
+ local_iface = bridge_get_local_iface(br);
if (local_iface) {
- int error = netdev_nodev_set_etheraddr(local_iface->name, ea);
+ int error = netdev_set_etheraddr(local_iface->netdev, ea);
if (error) {
static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
VLOG_ERR_RL(&rl, "bridge %s: failed to set bridge "
}
}
- dpid = bridge_pick_datapath_id(br, ea, devname);
+ dpid = bridge_pick_datapath_id(br, ea, hw_addr_iface);
ofproto_set_datapath_id(br->ofproto, dpid);
+ dpid_string = xasprintf("%016"PRIx64, dpid);
+ ovsrec_bridge_set_datapath_id(br->cfg, dpid_string);
+ free(dpid_string);
+
/* Set NetFlow configuration on this bridge. */
- memset(&nf_options, 0, sizeof nf_options);
- nf_options.engine_type = br->dpif.minor;
- nf_options.engine_id = br->dpif.minor;
- nf_options.active_timeout = -1;
-
- if (cfg_has("netflow.%s.engine-type", br->name)) {
- nf_options.engine_type = cfg_get_int(0, "netflow.%s.engine-type",
- br->name);
- }
- if (cfg_has("netflow.%s.engine-id", br->name)) {
- nf_options.engine_id = cfg_get_int(0, "netflow.%s.engine-id",
- br->name);
- }
- if (cfg_has("netflow.%s.active-timeout", br->name)) {
- nf_options.active_timeout = cfg_get_int(0,
- "netflow.%s.active-timeout",
- br->name);
- }
- if (cfg_has("netflow.%s.add-id-to-iface", br->name)) {
- nf_options.add_id_to_iface = cfg_get_bool(0,
- "netflow.%s.add-id-to-iface",
- br->name);
- }
- if (nf_options.add_id_to_iface && nf_options.engine_id > 0x7f) {
- VLOG_WARN("bridge %s: netflow port mangling may conflict with "
- "another vswitch, choose an engine id less than 128",
- br->name);
- }
- if (nf_options.add_id_to_iface && br->n_ports > 508) {
- VLOG_WARN("bridge %s: netflow port mangling will conflict with "
- "another port when more than 508 ports are used",
- br->name);
- }
- svec_init(&nf_options.collectors);
- cfg_get_all_keys(&nf_options.collectors, "netflow.%s.host", br->name);
- if (ofproto_set_netflow(br->ofproto, &nf_options)) {
- VLOG_ERR("bridge %s: problem setting netflow collectors",
- br->name);
- }
- svec_destroy(&nf_options.collectors);
+ if (br->cfg->netflow) {
+ struct ovsrec_netflow *nf_cfg = br->cfg->netflow;
+ struct netflow_options opts;
+
+ memset(&opts, 0, sizeof opts);
+
+ dpif_get_netflow_ids(br->dpif, &opts.engine_type, &opts.engine_id);
+ if (nf_cfg->engine_type) {
+ opts.engine_type = *nf_cfg->engine_type;
+ }
+ if (nf_cfg->engine_id) {
+ opts.engine_id = *nf_cfg->engine_id;
+ }
+
+ opts.active_timeout = nf_cfg->active_timeout;
+ if (!opts.active_timeout) {
+ opts.active_timeout = -1;
+ } else if (opts.active_timeout < 0) {
+ VLOG_WARN("bridge %s: active timeout interval set to negative "
+ "value, using default instead (%d seconds)", br->name,
+ NF_ACTIVE_TIMEOUT_DEFAULT);
+ opts.active_timeout = -1;
+ }
+
+ opts.add_id_to_iface = nf_cfg->add_id_to_interface;
+ if (opts.add_id_to_iface) {
+ if (opts.engine_id > 0x7f) {
+ VLOG_WARN("bridge %s: netflow port mangling may conflict "
+ "with another vswitch, choose an engine id less "
+ "than 128", br->name);
+ }
+ if (br->n_ports > 508) {
+ VLOG_WARN("bridge %s: netflow port mangling will conflict "
+ "with another port when more than 508 ports are "
+ "used", br->name);
+ }
+ }
+
+ opts.collectors.n = nf_cfg->n_targets;
+ opts.collectors.names = nf_cfg->targets;
+ if (ofproto_set_netflow(br->ofproto, &opts)) {
+ VLOG_ERR("bridge %s: problem setting netflow collectors",
+ br->name);
+ }
+ } else {
+ ofproto_set_netflow(br->ofproto, NULL);
+ }
+
+ /* Set sFlow configuration on this bridge. */
+ if (br->cfg->sflow) {
+ const struct ovsrec_sflow *sflow_cfg = br->cfg->sflow;
+ struct ovsrec_controller **controllers;
+ struct ofproto_sflow_options oso;
+ size_t n_controllers;
+
+ memset(&oso, 0, sizeof oso);
+
+ oso.targets.n = sflow_cfg->n_targets;
+ oso.targets.names = sflow_cfg->targets;
+
+ oso.sampling_rate = SFL_DEFAULT_SAMPLING_RATE;
+ if (sflow_cfg->sampling) {
+ oso.sampling_rate = *sflow_cfg->sampling;
+ }
+
+ oso.polling_interval = SFL_DEFAULT_POLLING_INTERVAL;
+ if (sflow_cfg->polling) {
+ oso.polling_interval = *sflow_cfg->polling;
+ }
+
+ oso.header_len = SFL_DEFAULT_HEADER_SIZE;
+ if (sflow_cfg->header) {
+ oso.header_len = *sflow_cfg->header;
+ }
+
+ oso.sub_id = sflow_bridge_number++;
+ oso.agent_device = sflow_cfg->agent;
+
+ oso.control_ip = NULL;
+ n_controllers = bridge_get_controllers(br, &controllers);
+ for (i = 0; i < n_controllers; i++) {
+ if (controllers[i]->local_ip) {
+ oso.control_ip = controllers[i]->local_ip;
+ break;
+ }
+ }
+ ofproto_set_sflow(br->ofproto, &oso);
+
+ /* Do not destroy oso.targets because it is owned by sflow_cfg. */
+ } else {
+ ofproto_set_sflow(br->ofproto, NULL);
+ }
/* Update the controller and related settings. It would be more
* straightforward to call this from bridge_reconfigure_one(), but we
* yet; when a controller is configured, resetting the datapath ID will
* immediately disconnect from the controller, so it's better to set
* the datapath ID before the controller. */
- bridge_reconfigure_controller(br);
+ bridge_reconfigure_remotes(br, managers, n_managers);
}
- LIST_FOR_EACH (br, struct bridge, node, &all_bridges) {
+ LIST_FOR_EACH (br, node, &all_bridges) {
for (i = 0; i < br->n_ports; i++) {
struct port *port = br->ports[i];
+ int j;
port_update_vlan_compat(port);
+ port_update_bonding(port);
for (j = 0; j < port->n_ifaces; j++) {
- struct iface *iface = port->ifaces[j];
- if (iface->dp_ifidx != ODPP_LOCAL
- && iface_is_internal(br, iface->name)) {
- iface_set_mac(iface);
- }
+ iface_update_qos(port->ifaces[j], port->cfg->qos);
}
}
}
- LIST_FOR_EACH (br, struct bridge, node, &all_bridges) {
- brstp_reconfigure(br);
+ LIST_FOR_EACH (br, node, &all_bridges) {
+ iterate_and_prune_ifaces(br, set_iface_properties, NULL);
+ }
+
+ LIST_FOR_EACH (br, node, &all_bridges) {
+ struct iface *iface;
+ HMAP_FOR_EACH (iface, dp_ifidx_node, &br->ifaces) {
+ iface_update_cfm(iface);
+ }
}
+
+ free(managers);
+}
+
+static const char *
+get_ovsrec_key_value(const struct ovsdb_idl_row *row,
+ const struct ovsdb_idl_column *column,
+ const char *key)
+{
+ const struct ovsdb_datum *datum;
+ union ovsdb_atom atom;
+ unsigned int idx;
+
+ datum = ovsdb_idl_get(row, column, OVSDB_TYPE_STRING, OVSDB_TYPE_STRING);
+ atom.string = (char *) key;
+ idx = ovsdb_datum_find_key(datum, &atom, OVSDB_TYPE_STRING);
+ return idx == UINT_MAX ? NULL : datum->values[idx].string;
+}
+
+static const char *
+bridge_get_other_config(const struct ovsrec_bridge *br_cfg, const char *key)
+{
+ return get_ovsrec_key_value(&br_cfg->header_,
+ &ovsrec_bridge_col_other_config, key);
}
static void
bridge_pick_local_hw_addr(struct bridge *br, uint8_t ea[ETH_ADDR_LEN],
- const char **devname)
+ struct iface **hw_addr_iface)
{
- uint64_t requested_ea;
+ const char *hwaddr;
size_t i, j;
int error;
- *devname = NULL;
+ *hw_addr_iface = NULL;
/* Did the user request a particular MAC? */
- requested_ea = cfg_get_mac(0, "bridge.%s.mac", br->name);
- if (requested_ea) {
- eth_addr_from_uint64(requested_ea, ea);
+ hwaddr = bridge_get_other_config(br->cfg, "hwaddr");
+ if (hwaddr && eth_addr_from_string(hwaddr, ea)) {
if (eth_addr_is_multicast(ea)) {
VLOG_ERR("bridge %s: cannot set MAC address to multicast "
"address "ETH_ADDR_FMT, br->name, ETH_ADDR_ARGS(ea));
}
}
- /* Otherwise choose the minimum MAC address among all of the interfaces.
- * (Xen uses FE:FF:FF:FF:FF:FF for virtual interfaces so this will get the
- * MAC of the physical interface in such an environment.) */
+ /* Otherwise choose the minimum non-local MAC address among all of the
+ * interfaces. */
memset(ea, 0xff, sizeof ea);
for (i = 0; i < br->n_ports; i++) {
struct port *port = br->ports[i];
uint8_t iface_ea[ETH_ADDR_LEN];
- uint64_t iface_ea_u64;
struct iface *iface;
/* Mirror output ports don't participate. */
}
/* Choose the MAC address to represent the port. */
- iface_ea_u64 = cfg_get_mac(0, "port.%s.mac", port->name);
- if (iface_ea_u64) {
- /* User specified explicitly. */
- eth_addr_from_uint64(iface_ea_u64, iface_ea);
-
+ if (port->cfg->mac && eth_addr_from_string(port->cfg->mac, iface_ea)) {
/* Find the interface with this Ethernet address (if any) so that
* we can provide the correct devname to the caller. */
iface = NULL;
for (j = 0; j < port->n_ifaces; j++) {
struct iface *candidate = port->ifaces[j];
uint8_t candidate_ea[ETH_ADDR_LEN];
- if (!netdev_nodev_get_etheraddr(candidate->name, candidate_ea)
+ if (!netdev_get_etheraddr(candidate->netdev, candidate_ea)
&& eth_addr_equals(iface_ea, candidate_ea)) {
iface = candidate;
}
}
/* The local port doesn't count (since we're trying to choose its
- * MAC address anyway). Other internal ports don't count because
- * we really want a physical MAC if we can get it, and internal
- * ports typically have randomly generated MACs. */
- if (iface->dp_ifidx == ODPP_LOCAL
- || cfg_get_bool(0, "iface.%s.internal", iface->name)) {
+ * MAC address anyway). */
+ if (iface->dp_ifidx == ODPP_LOCAL) {
continue;
}
/* Grab MAC. */
- error = netdev_nodev_get_etheraddr(iface->name, iface_ea);
+ error = netdev_get_etheraddr(iface->netdev, iface_ea);
if (error) {
static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
VLOG_ERR_RL(&rl, "failed to obtain Ethernet address of %s: %s",
/* Compare against our current choice. */
if (!eth_addr_is_multicast(iface_ea) &&
+ !eth_addr_is_local(iface_ea) &&
!eth_addr_is_reserved(iface_ea) &&
!eth_addr_is_zero(iface_ea) &&
memcmp(iface_ea, ea, ETH_ADDR_LEN) < 0)
{
memcpy(ea, iface_ea, ETH_ADDR_LEN);
- *devname = iface ? iface->name : NULL;
+ *hw_addr_iface = iface;
}
}
- if (eth_addr_is_multicast(ea) || eth_addr_is_vif(ea)) {
+ if (eth_addr_is_multicast(ea)) {
memcpy(ea, br->default_ea, ETH_ADDR_LEN);
- *devname = NULL;
+ *hw_addr_iface = NULL;
VLOG_WARN("bridge %s: using default bridge Ethernet "
"address "ETH_ADDR_FMT, br->name, ETH_ADDR_ARGS(ea));
} else {
/* Choose and returns the datapath ID for bridge 'br' given that the bridge
* Ethernet address is 'bridge_ea'. If 'bridge_ea' is the Ethernet address of
- * a network device, then that network device's name must be passed in as
- * 'devname'; if 'bridge_ea' was derived some other way, then 'devname' must be
- * passed in as a null pointer. */
+ * an interface on 'br', then that interface must be passed in as
+ * 'hw_addr_iface'; if 'bridge_ea' was derived some other way, then
+ * 'hw_addr_iface' must be passed in as a null pointer. */
static uint64_t
bridge_pick_datapath_id(struct bridge *br,
const uint8_t bridge_ea[ETH_ADDR_LEN],
- const char *devname)
+ struct iface *hw_addr_iface)
{
/*
* The procedure for choosing a bridge MAC address will, in the most
* stable from one run to the next, so that policy set on a datapath
* "sticks".
*/
+ const char *datapath_id;
uint64_t dpid;
- dpid = cfg_get_dpid(0, "bridge.%s.datapath-id", br->name);
- if (dpid) {
+ datapath_id = bridge_get_other_config(br->cfg, "datapath-id");
+ if (datapath_id && dpid_from_string(datapath_id, &dpid)) {
return dpid;
}
- if (devname) {
+ if (hw_addr_iface) {
int vlan;
- if (!netdev_get_vlan_vid(devname, &vlan)) {
+ if (!netdev_get_vlan_vid(hw_addr_iface->netdev, &vlan)) {
/*
* A bridge whose MAC address is taken from a VLAN network device
* (that is, a network device created with vconfig(8) or similar
return eth_addr_to_uint64(hash);
}
-int
-bridge_run(void)
+static void
+iface_refresh_status(struct iface *iface)
{
- struct bridge *br, *next;
- int retval;
+ struct shash sh;
- retval = 0;
- LIST_FOR_EACH_SAFE (br, next, struct bridge, node, &all_bridges) {
- int error = bridge_run_one(br);
- if (error) {
- static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
- VLOG_ERR_RL(&rl, "bridge %s: datapath was destroyed externally, "
- "forcing reconfiguration", br->name);
- if (!retval) {
- retval = error;
- }
- }
+ enum netdev_flags flags;
+ uint32_t current;
+ int64_t bps;
+ int mtu;
+ int64_t mtu_64;
+ int error;
+
+ shash_init(&sh);
+
+ if (!netdev_get_status(iface->netdev, &sh)) {
+ size_t n;
+ char **keys, **values;
+
+ shash_to_ovs_idl_map(&sh, &keys, &values, &n);
+ ovsrec_interface_set_status(iface->cfg, keys, values, n);
+
+ free(keys);
+ free(values);
+ } else {
+ ovsrec_interface_set_status(iface->cfg, NULL, NULL, 0);
}
- return retval;
-}
-void
-bridge_wait(void)
-{
- struct bridge *br;
+ shash_destroy_free_data(&sh);
- LIST_FOR_EACH (br, struct bridge, node, &all_bridges) {
- ofproto_wait(br->ofproto);
- if (br->controller) {
- continue;
- }
+ error = netdev_get_flags(iface->netdev, &flags);
+ if (!error) {
+ ovsrec_interface_set_admin_state(iface->cfg, flags & NETDEV_UP ? "up" : "down");
+ }
+ else {
+ ovsrec_interface_set_admin_state(iface->cfg, NULL);
+ }
- mac_learning_wait(br->ml);
- bond_wait(br);
- brstp_wait(br);
+ error = netdev_get_features(iface->netdev, ¤t, NULL, NULL, NULL);
+ if (!error) {
+ ovsrec_interface_set_duplex(iface->cfg,
+ netdev_features_is_full_duplex(current)
+ ? "full" : "half");
+ /* warning: uint64_t -> int64_t conversion */
+ bps = netdev_features_to_bps(current);
+ ovsrec_interface_set_link_speed(iface->cfg, &bps, 1);
+ }
+ else {
+ ovsrec_interface_set_duplex(iface->cfg, NULL);
+ ovsrec_interface_set_link_speed(iface->cfg, NULL, 0);
}
-}
-/* Forces 'br' to revalidate all of its flows. This is appropriate when 'br''s
- * configuration changes. */
-static void
-bridge_flush(struct bridge *br)
-{
- COVERAGE_INC(bridge_flush);
- br->flush = true;
- mac_learning_flush(br->ml);
+
+ ovsrec_interface_set_link_state(iface->cfg,
+ netdev_get_carrier(iface->netdev)
+ ? "up" : "down");
+
+ error = netdev_get_mtu(iface->netdev, &mtu);
+ if (!error) {
+ mtu_64 = mtu;
+ ovsrec_interface_set_mtu(iface->cfg, &mtu_64, 1);
+ }
+ else {
+ ovsrec_interface_set_mtu(iface->cfg, NULL, 0);
+ }
}
-\f
-/* Bridge unixctl user interface functions. */
+
static void
-bridge_unixctl_fdb_show(struct unixctl_conn *conn, const char *args)
+iface_refresh_cfm_stats(struct iface *iface)
{
- struct ds ds = DS_EMPTY_INITIALIZER;
- const struct bridge *br;
- const struct mac_entry *e;
+ size_t i;
+ struct cfm *cfm;
+ const struct ovsrec_monitor *mon;
- br = bridge_lookup(args);
- if (!br) {
- unixctl_command_reply(conn, 501, "no such bridge");
+ mon = iface->cfg->monitor;
+ cfm = iface->cfm;
+
+ if (!cfm || !mon) {
return;
}
- ds_put_cstr(&ds, " port VLAN MAC Age\n");
- LIST_FOR_EACH (e, struct mac_entry, lru_node, &br->ml->lrus) {
- if (e->port < 0 || e->port >= br->n_ports) {
- continue;
+ for (i = 0; i < mon->n_remote_mps; i++) {
+ const struct ovsrec_maintenance_point *mp;
+ const struct remote_mp *rmp;
+
+ mp = mon->remote_mps[i];
+ rmp = cfm_get_remote_mp(cfm, mp->mpid);
+
+ ovsrec_maintenance_point_set_fault(mp, &rmp->fault, 1);
+ }
+
+ if (hmap_is_empty(&cfm->x_remote_mps)) {
+ ovsrec_monitor_set_unexpected_remote_mpids(mon, NULL, 0);
+ } else {
+ size_t length;
+ struct remote_mp *rmp;
+ int64_t *x_remote_mps;
+
+ length = hmap_count(&cfm->x_remote_mps);
+ x_remote_mps = xzalloc(length * sizeof *x_remote_mps);
+
+ i = 0;
+ HMAP_FOR_EACH (rmp, node, &cfm->x_remote_mps) {
+ x_remote_mps[i++] = rmp->mpid;
+ }
+
+ ovsrec_monitor_set_unexpected_remote_mpids(mon, x_remote_mps, length);
+ free(x_remote_mps);
+ }
+
+ if (hmap_is_empty(&cfm->x_remote_maids)) {
+ ovsrec_monitor_set_unexpected_remote_maids(mon, NULL, 0);
+ } else {
+ size_t length;
+ char **x_remote_maids;
+ struct remote_maid *rmaid;
+
+ length = hmap_count(&cfm->x_remote_maids);
+ x_remote_maids = xzalloc(length * sizeof *x_remote_maids);
+
+ i = 0;
+ HMAP_FOR_EACH (rmaid, node, &cfm->x_remote_maids) {
+ size_t j;
+
+ x_remote_maids[i] = xzalloc(CCM_MAID_LEN * 2 + 1);
+
+ for (j = 0; j < CCM_MAID_LEN; j++) {
+ snprintf(&x_remote_maids[i][j * 2], 3, "%02hhx",
+ rmaid->maid[j]);
+ }
+ i++;
+ }
+ ovsrec_monitor_set_unexpected_remote_maids(mon, x_remote_maids, length);
+
+ for (i = 0; i < length; i++) {
+ free(x_remote_maids[i]);
+ }
+ free(x_remote_maids);
+ }
+
+ ovsrec_monitor_set_fault(mon, &cfm->fault, 1);
+}
+
+static void
+iface_refresh_stats(struct iface *iface)
+{
+ struct iface_stat {
+ char *name;
+ int offset;
+ };
+ static const struct iface_stat iface_stats[] = {
+ { "rx_packets", offsetof(struct netdev_stats, rx_packets) },
+ { "tx_packets", offsetof(struct netdev_stats, tx_packets) },
+ { "rx_bytes", offsetof(struct netdev_stats, rx_bytes) },
+ { "tx_bytes", offsetof(struct netdev_stats, tx_bytes) },
+ { "rx_dropped", offsetof(struct netdev_stats, rx_dropped) },
+ { "tx_dropped", offsetof(struct netdev_stats, tx_dropped) },
+ { "rx_errors", offsetof(struct netdev_stats, rx_errors) },
+ { "tx_errors", offsetof(struct netdev_stats, tx_errors) },
+ { "rx_frame_err", offsetof(struct netdev_stats, rx_frame_errors) },
+ { "rx_over_err", offsetof(struct netdev_stats, rx_over_errors) },
+ { "rx_crc_err", offsetof(struct netdev_stats, rx_crc_errors) },
+ { "collisions", offsetof(struct netdev_stats, collisions) },
+ };
+ enum { N_STATS = ARRAY_SIZE(iface_stats) };
+ const struct iface_stat *s;
+
+ char *keys[N_STATS];
+ int64_t values[N_STATS];
+ int n;
+
+ struct netdev_stats stats;
+
+ /* Intentionally ignore return value, since errors will set 'stats' to
+ * all-1s, and we will deal with that correctly below. */
+ netdev_get_stats(iface->netdev, &stats);
+
+ n = 0;
+ for (s = iface_stats; s < &iface_stats[N_STATS]; s++) {
+ uint64_t value = *(uint64_t *) (((char *) &stats) + s->offset);
+ if (value != UINT64_MAX) {
+ keys[n] = s->name;
+ values[n] = value;
+ n++;
+ }
+ }
+
+ ovsrec_interface_set_statistics(iface->cfg, keys, values, n);
+}
+
+static void
+refresh_system_stats(const struct ovsrec_open_vswitch *cfg)
+{
+ struct ovsdb_datum datum;
+ struct shash stats;
+
+ shash_init(&stats);
+ get_system_stats(&stats);
+
+ ovsdb_datum_from_shash(&datum, &stats);
+ ovsdb_idl_txn_write(&cfg->header_, &ovsrec_open_vswitch_col_statistics,
+ &datum);
+}
+
+static inline const char *
+nx_role_to_str(enum nx_role role)
+{
+ switch (role) {
+ case NX_ROLE_OTHER:
+ return "other";
+ case NX_ROLE_MASTER:
+ return "master";
+ case NX_ROLE_SLAVE:
+ return "slave";
+ default:
+ return "*** INVALID ROLE ***";
+ }
+}
+
+static void
+bridge_refresh_controller_status(const struct bridge *br)
+{
+ struct shash info;
+ const struct ovsrec_controller *cfg;
+
+ ofproto_get_ofproto_controller_info(br->ofproto, &info);
+
+ OVSREC_CONTROLLER_FOR_EACH(cfg, idl) {
+ struct ofproto_controller_info *cinfo =
+ shash_find_data(&info, cfg->target);
+
+ if (cinfo) {
+ ovsrec_controller_set_is_connected(cfg, cinfo->is_connected);
+ ovsrec_controller_set_role(cfg, nx_role_to_str(cinfo->role));
+ ovsrec_controller_set_status(cfg, (char **) cinfo->pairs.keys,
+ (char **) cinfo->pairs.values,
+ cinfo->pairs.n);
+ } else {
+ ovsrec_controller_set_is_connected(cfg, false);
+ ovsrec_controller_set_role(cfg, NULL);
+ ovsrec_controller_set_status(cfg, NULL, NULL, 0);
+ }
+ }
+
+ ofproto_free_ofproto_controller_info(&info);
+}
+
+void
+bridge_run(void)
+{
+ const struct ovsrec_open_vswitch *cfg;
+
+ bool datapath_destroyed;
+ bool database_changed;
+ struct bridge *br;
+
+ /* Let each bridge do the work that it needs to do. */
+ datapath_destroyed = false;
+ LIST_FOR_EACH (br, node, &all_bridges) {
+ int error = bridge_run_one(br);
+ if (error) {
+ static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
+ VLOG_ERR_RL(&rl, "bridge %s: datapath was destroyed externally, "
+ "forcing reconfiguration", br->name);
+ datapath_destroyed = true;
+ }
+ }
+
+ /* (Re)configure if necessary. */
+ database_changed = ovsdb_idl_run(idl);
+ cfg = ovsrec_open_vswitch_first(idl);
+#ifdef HAVE_OPENSSL
+ /* Re-configure SSL. We do this on every trip through the main loop,
+ * instead of just when the database changes, because the contents of the
+ * key and certificate files can change without the database changing.
+ *
+ * We do this before bridge_reconfigure() because that function might
+ * initiate SSL connections and thus requires SSL to be configured. */
+ if (cfg && cfg->ssl) {
+ const struct ovsrec_ssl *ssl = cfg->ssl;
+
+ stream_ssl_set_key_and_cert(ssl->private_key, ssl->certificate);
+ stream_ssl_set_ca_cert_file(ssl->ca_cert, ssl->bootstrap_ca_cert);
+ }
+#endif
+ if (database_changed || datapath_destroyed) {
+ if (cfg) {
+ struct ovsdb_idl_txn *txn = ovsdb_idl_txn_create(idl);
+
+ bridge_configure_once(cfg);
+ bridge_reconfigure(cfg);
+
+ ovsrec_open_vswitch_set_cur_cfg(cfg, cfg->next_cfg);
+ ovsdb_idl_txn_commit(txn);
+ ovsdb_idl_txn_destroy(txn); /* XXX */
+ } else {
+ /* We still need to reconfigure to avoid dangling pointers to
+ * now-destroyed ovsrec structures inside bridge data. */
+ static const struct ovsrec_open_vswitch null_cfg;
+
+ bridge_reconfigure(&null_cfg);
+ }
+ }
+
+ /* Refresh system and interface stats if necessary. */
+ if (time_msec() >= stats_timer) {
+ if (cfg) {
+ struct ovsdb_idl_txn *txn;
+
+ txn = ovsdb_idl_txn_create(idl);
+ LIST_FOR_EACH (br, node, &all_bridges) {
+ size_t i;
+
+ for (i = 0; i < br->n_ports; i++) {
+ struct port *port = br->ports[i];
+ size_t j;
+
+ for (j = 0; j < port->n_ifaces; j++) {
+ struct iface *iface = port->ifaces[j];
+ iface_refresh_stats(iface);
+ iface_refresh_cfm_stats(iface);
+ iface_refresh_status(iface);
+ }
+ }
+ bridge_refresh_controller_status(br);
+ }
+ refresh_system_stats(cfg);
+ ovsdb_idl_txn_commit(txn);
+ ovsdb_idl_txn_destroy(txn); /* XXX */
+ }
+
+ stats_timer = time_msec() + STATS_INTERVAL;
+ }
+}
+
+void
+bridge_wait(void)
+{
+ struct bridge *br;
+ struct iface *iface;
+
+ LIST_FOR_EACH (br, node, &all_bridges) {
+ ofproto_wait(br->ofproto);
+ if (ofproto_has_primary_controller(br->ofproto)) {
+ continue;
+ }
+
+ mac_learning_wait(br->ml);
+ bond_wait(br);
+
+ HMAP_FOR_EACH (iface, dp_ifidx_node, &br->ifaces) {
+ if (iface->cfm) {
+ cfm_wait(iface->cfm);
+ }
+ }
+ }
+ ovsdb_idl_wait(idl);
+ poll_timer_wait_until(stats_timer);
+}
+
+/* Forces 'br' to revalidate all of its flows. This is appropriate when 'br''s
+ * configuration changes. */
+static void
+bridge_flush(struct bridge *br)
+{
+ COVERAGE_INC(bridge_flush);
+ br->flush = true;
+ mac_learning_flush(br->ml);
+}
+
+/* Returns the 'br' interface for the ODPP_LOCAL port, or null if 'br' has no
+ * such interface. */
+static struct iface *
+bridge_get_local_iface(struct bridge *br)
+{
+ size_t i, j;
+
+ for (i = 0; i < br->n_ports; i++) {
+ struct port *port = br->ports[i];
+ for (j = 0; j < port->n_ifaces; j++) {
+ struct iface *iface = port->ifaces[j];
+ if (iface->dp_ifidx == ODPP_LOCAL) {
+ return iface;
+ }
+ }
+ }
+
+ return NULL;
+}
+\f
+/* Bridge unixctl user interface functions. */
+static void
+bridge_unixctl_fdb_show(struct unixctl_conn *conn,
+ const char *args, void *aux OVS_UNUSED)
+{
+ struct ds ds = DS_EMPTY_INITIALIZER;
+ const struct bridge *br;
+ const struct mac_entry *e;
+
+ br = bridge_lookup(args);
+ if (!br) {
+ unixctl_command_reply(conn, 501, "no such bridge");
+ return;
+ }
+
+ ds_put_cstr(&ds, " port VLAN MAC Age\n");
+ LIST_FOR_EACH (e, lru_node, &br->ml->lrus) {
+ if (e->port < 0 || e->port >= br->n_ports) {
+ continue;
}
ds_put_format(&ds, "%5d %4d "ETH_ADDR_FMT" %3d\n",
br->ports[e->port]->ifaces[0]->dp_ifidx,
}
\f
/* Bridge reconfiguration functions. */
-
static struct bridge *
-bridge_create(const char *name)
+bridge_create(const struct ovsrec_bridge *br_cfg)
{
struct bridge *br;
int error;
- assert(!bridge_lookup(name));
- br = xcalloc(1, sizeof *br);
+ assert(!bridge_lookup(br_cfg->name));
+ br = xzalloc(sizeof *br);
- error = dpif_create(name, &br->dpif);
- if (error == EEXIST) {
- error = dpif_open(name, &br->dpif);
- if (error) {
- VLOG_ERR("datapath %s already exists but cannot be opened: %s",
- name, strerror(error));
- free(br);
- return NULL;
- }
- dpif_flow_flush(&br->dpif);
- } else if (error) {
- VLOG_ERR("failed to create datapath %s: %s", name, strerror(error));
+ error = dpif_create_and_open(br_cfg->name, br_cfg->datapath_type,
+ &br->dpif);
+ if (error) {
free(br);
return NULL;
}
+ dpif_flow_flush(br->dpif);
- error = ofproto_create(name, &bridge_ofhooks, br, &br->ofproto);
+ error = ofproto_create(br_cfg->name, br_cfg->datapath_type, &bridge_ofhooks,
+ br, &br->ofproto);
if (error) {
- VLOG_ERR("failed to create switch %s: %s", name, strerror(error));
- dpif_delete(&br->dpif);
- dpif_close(&br->dpif);
+ VLOG_ERR("failed to create switch %s: %s", br_cfg->name,
+ strerror(error));
+ dpif_delete(br->dpif);
+ dpif_close(br->dpif);
free(br);
return NULL;
}
- br->name = xstrdup(name);
+ br->name = xstrdup(br_cfg->name);
+ br->cfg = br_cfg;
br->ml = mac_learning_create();
- br->sent_config_request = false;
- eth_addr_random(br->default_ea);
+ eth_addr_nicira_random(br->default_ea);
- port_array_init(&br->ifaces);
+ hmap_init(&br->ifaces);
+
+ shash_init(&br->port_by_name);
+ shash_init(&br->iface_by_name);
br->flush = false;
- br->bond_next_rebalance = time_msec() + 10000;
list_push_back(&all_bridges, &br->node);
- VLOG_INFO("created bridge %s on dp%u", br->name, dpif_id(&br->dpif));
+ VLOG_INFO("created bridge %s on %s", br->name, dpif_name(br->dpif));
return br;
}
port_destroy(br->ports[br->n_ports - 1]);
}
list_remove(&br->node);
- error = dpif_delete(&br->dpif);
+ error = dpif_delete(br->dpif);
if (error && error != ENOENT) {
- VLOG_ERR("failed to delete dp%u: %s",
- dpif_id(&br->dpif), strerror(error));
+ VLOG_ERR("failed to delete %s: %s",
+ dpif_name(br->dpif), strerror(error));
}
- dpif_close(&br->dpif);
+ dpif_close(br->dpif);
ofproto_destroy(br->ofproto);
- free(br->controller);
mac_learning_destroy(br->ml);
- port_array_destroy(&br->ifaces);
+ hmap_destroy(&br->ifaces);
+ shash_destroy(&br->port_by_name);
+ shash_destroy(&br->iface_by_name);
free(br->ports);
free(br->name);
free(br);
{
struct bridge *br;
- LIST_FOR_EACH (br, struct bridge, node, &all_bridges) {
+ LIST_FOR_EACH (br, node, &all_bridges) {
if (!strcmp(br->name, name)) {
return br;
}
return NULL;
}
-bool
-bridge_exists(const char *name)
-{
- return bridge_lookup(name) ? true : false;
-}
-
-uint64_t
-bridge_get_datapathid(const char *name)
-{
- struct bridge *br = bridge_lookup(name);
- return br ? ofproto_get_datapath_id(br->ofproto) : 0;
-}
-
/* Handle requests for a listing of all flows known by the OpenFlow
* stack, including those normally hidden. */
static void
-bridge_unixctl_dump_flows(struct unixctl_conn *conn, const char *args)
+bridge_unixctl_dump_flows(struct unixctl_conn *conn,
+ const char *args, void *aux OVS_UNUSED)
{
struct bridge *br;
struct ds results;
-
+
br = bridge_lookup(args);
if (!br) {
unixctl_command_reply(conn, 501, "Unknown bridge");
ds_destroy(&results);
}
+/* "bridge/reconnect [BRIDGE]": makes BRIDGE drop all of its controller
+ * connections and reconnect. If BRIDGE is not specified, then all bridges
+ * drop their controller connections and reconnect. */
+static void
+bridge_unixctl_reconnect(struct unixctl_conn *conn,
+ const char *args, void *aux OVS_UNUSED)
+{
+ struct bridge *br;
+ if (args[0] != '\0') {
+ br = bridge_lookup(args);
+ if (!br) {
+ unixctl_command_reply(conn, 501, "Unknown bridge");
+ return;
+ }
+ ofproto_reconnect_controllers(br->ofproto);
+ } else {
+ LIST_FOR_EACH (br, node, &all_bridges) {
+ ofproto_reconnect_controllers(br->ofproto);
+ }
+ }
+ unixctl_command_reply(conn, 200, NULL);
+}
+
static int
bridge_run_one(struct bridge *br)
{
int error;
+ struct iface *iface;
error = ofproto_run1(br->ofproto);
if (error) {
mac_learning_run(br->ml, ofproto_get_revalidate_set(br->ofproto));
bond_run(br);
- brstp_run(br);
error = ofproto_run2(br->ofproto, br->flush);
br->flush = false;
+ HMAP_FOR_EACH (iface, dp_ifidx_node, &br->ifaces) {
+ struct ofpbuf *packet;
+
+ if (!iface->cfm) {
+ continue;
+ }
+
+ packet = cfm_run(iface->cfm);
+ if (packet) {
+ iface_send_packet(iface, packet);
+ ofpbuf_uninit(packet);
+ free(packet);
+ }
+ }
+
return error;
}
-static const char *
-bridge_get_controller(const struct bridge *br)
+static size_t
+bridge_get_controllers(const struct bridge *br,
+ struct ovsrec_controller ***controllersp)
{
- const char *controller;
+ struct ovsrec_controller **controllers;
+ size_t n_controllers;
+
+ controllers = br->cfg->controller;
+ n_controllers = br->cfg->n_controller;
- controller = cfg_get_string(0, "bridge.%s.controller", br->name);
- if (!controller) {
- controller = cfg_get_string(0, "mgmt.controller");
+ if (n_controllers == 1 && !strcmp(controllers[0]->target, "none")) {
+ controllers = NULL;
+ n_controllers = 0;
}
- return controller && controller[0] ? controller : NULL;
+
+ if (controllersp) {
+ *controllersp = controllers;
+ }
+ return n_controllers;
}
static void
bridge_reconfigure_one(struct bridge *br)
{
- struct svec old_ports, new_ports, ifaces;
- struct svec listeners, old_listeners;
+ struct shash old_ports, new_ports;
struct svec snoops, old_snoops;
- size_t i, j;
+ struct shash_node *node;
+ enum ofproto_fail_mode fail_mode;
+ size_t i;
/* Collect old ports. */
- svec_init(&old_ports);
+ shash_init(&old_ports);
for (i = 0; i < br->n_ports; i++) {
- svec_add(&old_ports, br->ports[i]->name);
+ shash_add(&old_ports, br->ports[i]->name, br->ports[i]);
}
- svec_sort(&old_ports);
- assert(svec_is_unique(&old_ports));
/* Collect new ports. */
- svec_init(&new_ports);
- cfg_get_all_keys(&new_ports, "bridge.%s.port", br->name);
- svec_sort(&new_ports);
- if (bridge_get_controller(br) && !svec_contains(&new_ports, br->name)) {
- svec_add(&new_ports, br->name);
- svec_sort(&new_ports);
+ shash_init(&new_ports);
+ for (i = 0; i < br->cfg->n_ports; i++) {
+ const char *name = br->cfg->ports[i]->name;
+ if (!shash_add_once(&new_ports, name, br->cfg->ports[i])) {
+ VLOG_WARN("bridge %s: %s specified twice as bridge port",
+ br->name, name);
+ }
}
- if (!svec_is_unique(&new_ports)) {
- VLOG_WARN("bridge %s: %s specified twice as bridge port",
- br->name, svec_get_duplicate(&new_ports));
- svec_unique(&new_ports);
+
+ /* If we have a controller, then we need a local port. Complain if the
+ * user didn't specify one.
+ *
+ * XXX perhaps we should synthesize a port ourselves in this case. */
+ if (bridge_get_controllers(br, NULL)) {
+ char local_name[IF_NAMESIZE];
+ int error;
+
+ error = dpif_port_get_name(br->dpif, ODPP_LOCAL,
+ local_name, sizeof local_name);
+ if (!error && !shash_find(&new_ports, local_name)) {
+ VLOG_WARN("bridge %s: controller specified but no local port "
+ "(port named %s) defined",
+ br->name, local_name);
+ }
}
- ofproto_set_mgmt_id(br->ofproto, mgmt_id);
+ /* Get rid of deleted ports.
+ * Get rid of deleted interfaces on ports that still exist. */
+ SHASH_FOR_EACH (node, &old_ports) {
+ struct port *port = node->data;
+ const struct ovsrec_port *port_cfg;
- /* Get rid of deleted ports and add new ports. */
- for (i = 0; i < br->n_ports; ) {
- struct port *port = br->ports[i];
- if (!svec_contains(&new_ports, port->name)) {
+ port_cfg = shash_find_data(&new_ports, node->name);
+ if (!port_cfg) {
port_destroy(port);
} else {
- i++;
+ port_del_ifaces(port, port_cfg);
}
}
- for (i = 0; i < new_ports.n; i++) {
- const char *name = new_ports.names[i];
- if (!svec_contains(&old_ports, name)) {
- port_create(br, name);
- }
- }
- svec_destroy(&old_ports);
- svec_destroy(&new_ports);
-
- /* Reconfigure all ports. */
- for (i = 0; i < br->n_ports; i++) {
- port_reconfigure(br->ports[i]);
- }
- /* Check and delete duplicate interfaces. */
- svec_init(&ifaces);
- for (i = 0; i < br->n_ports; ) {
- struct port *port = br->ports[i];
- for (j = 0; j < port->n_ifaces; ) {
- struct iface *iface = port->ifaces[j];
- if (svec_contains(&ifaces, iface->name)) {
- VLOG_ERR("bridge %s: %s interface is on multiple ports, "
- "removing from %s",
- br->name, iface->name, port->name);
- iface_destroy(iface);
- } else {
- svec_add(&ifaces, iface->name);
- svec_sort(&ifaces);
- j++;
- }
+ /* Create new ports.
+ * Add new interfaces to existing ports.
+ * Reconfigure existing ports. */
+ SHASH_FOR_EACH (node, &new_ports) {
+ struct port *port = shash_find_data(&old_ports, node->name);
+ if (!port) {
+ port = port_create(br, node->name);
}
+
+ port_reconfigure(port, node->data);
if (!port->n_ifaces) {
- VLOG_ERR("%s port has no interfaces, dropping", port->name);
+ VLOG_WARN("bridge %s: port %s has no interfaces, dropping",
+ br->name, port->name);
port_destroy(port);
- } else {
- i++;
}
}
- svec_destroy(&ifaces);
+ shash_destroy(&old_ports);
+ shash_destroy(&new_ports);
+
+ /* Set the fail-mode */
+ fail_mode = !br->cfg->fail_mode
+ || !strcmp(br->cfg->fail_mode, "standalone")
+ ? OFPROTO_FAIL_STANDALONE
+ : OFPROTO_FAIL_SECURE;
+ if (ofproto_get_fail_mode(br->ofproto) != fail_mode
+ && !ofproto_has_primary_controller(br->ofproto)) {
+ ofproto_flush_flows(br->ofproto);
+ }
+ ofproto_set_fail_mode(br->ofproto, fail_mode);
/* Delete all flows if we're switching from connected to standalone or vice
* versa. (XXX Should we delete all flows if we are switching from one
* controller to another?) */
- /* Configure OpenFlow management listeners. */
- svec_init(&listeners);
- cfg_get_all_strings(&listeners, "bridge.%s.openflow.listeners", br->name);
- if (!listeners.n) {
- svec_add_nocopy(&listeners, xasprintf("punix:%s/%s.mgmt",
- ovs_rundir, br->name));
- } else if (listeners.n == 1 && !strcmp(listeners.names[0], "none")) {
- svec_clear(&listeners);
- }
- svec_sort_unique(&listeners);
-
- svec_init(&old_listeners);
- ofproto_get_listeners(br->ofproto, &old_listeners);
- svec_sort_unique(&old_listeners);
-
- if (!svec_equal(&listeners, &old_listeners)) {
- ofproto_set_listeners(br->ofproto, &listeners);
- }
- svec_destroy(&listeners);
- svec_destroy(&old_listeners);
-
/* Configure OpenFlow controller connection snooping. */
svec_init(&snoops);
- cfg_get_all_strings(&snoops, "bridge.%s.openflow.snoops", br->name);
- if (!snoops.n) {
- svec_add_nocopy(&snoops, xasprintf("punix:%s/%s.snoop",
- ovs_rundir, br->name));
- } else if (snoops.n == 1 && !strcmp(snoops.names[0], "none")) {
- svec_clear(&snoops);
- }
- svec_sort_unique(&snoops);
-
+ svec_add_nocopy(&snoops, xasprintf("punix:%s/%s.snoop",
+ ovs_rundir(), br->name));
svec_init(&old_snoops);
ofproto_get_snoops(br->ofproto, &old_snoops);
- svec_sort_unique(&old_snoops);
-
if (!svec_equal(&snoops, &old_snoops)) {
ofproto_set_snoops(br->ofproto, &snoops);
}
mirror_reconfigure(br);
}
+/* Initializes 'oc' appropriately as a management service controller for
+ * 'br'.
+ *
+ * The caller must free oc->target when it is no longer needed. */
static void
-bridge_reconfigure_controller(struct bridge *br)
+bridge_ofproto_controller_for_mgmt(const struct bridge *br,
+ struct ofproto_controller *oc)
{
- char *pfx = xasprintf("bridge.%s.controller", br->name);
- const char *controller;
+ oc->target = xasprintf("punix:%s/%s.mgmt", ovs_rundir(), br->name);
+ oc->max_backoff = 0;
+ oc->probe_interval = 60;
+ oc->band = OFPROTO_OUT_OF_BAND;
+ oc->accept_re = NULL;
+ oc->update_resolv_conf = false;
+ oc->rate_limit = 0;
+ oc->burst_limit = 0;
+}
- controller = bridge_get_controller(br);
- if ((br->controller != NULL) != (controller != NULL)) {
- ofproto_flush_flows(br->ofproto);
- }
- free(br->controller);
- br->controller = controller ? xstrdup(controller) : NULL;
+/* Converts ovsrec_controller 'c' into an ofproto_controller in 'oc'. */
+static void
+bridge_ofproto_controller_from_ovsrec(const struct ovsrec_controller *c,
+ struct ofproto_controller *oc)
+{
+ oc->target = c->target;
+ oc->max_backoff = c->max_backoff ? *c->max_backoff / 1000 : 8;
+ oc->probe_interval = c->inactivity_probe ? *c->inactivity_probe / 1000 : 5;
+ oc->band = (!c->connection_mode || !strcmp(c->connection_mode, "in-band")
+ ? OFPROTO_IN_BAND : OFPROTO_OUT_OF_BAND);
+ oc->accept_re = c->discover_accept_regex;
+ oc->update_resolv_conf = c->discover_update_resolv_conf;
+ oc->rate_limit = c->controller_rate_limit ? *c->controller_rate_limit : 0;
+ oc->burst_limit = (c->controller_burst_limit
+ ? *c->controller_burst_limit : 0);
+}
- if (controller) {
- const char *fail_mode;
- int max_backoff, probe;
- int rate_limit, burst_limit;
+/* Configures the IP stack for 'br''s local interface properly according to the
+ * configuration in 'c'. */
+static void
+bridge_configure_local_iface_netdev(struct bridge *br,
+ struct ovsrec_controller *c)
+{
+ struct netdev *netdev;
+ struct in_addr mask, gateway;
- if (!strcmp(controller, "discover")) {
- bool update_resolv_conf = true;
+ struct iface *local_iface;
+ struct in_addr ip;
- if (cfg_has("%s.update-resolv.conf", pfx)) {
- update_resolv_conf = cfg_get_bool(0, "%s.update-resolv.conf",
- pfx);
- }
- ofproto_set_discovery(br->ofproto, true,
- cfg_get_string(0, "%s.accept-regex", pfx),
- update_resolv_conf);
- } else {
- struct netdev *netdev;
- bool in_band;
- int error;
+ /* Controller discovery does its own TCP/IP configuration later. */
+ if (strcmp(c->target, "discover")) {
+ return;
+ }
- in_band = (!cfg_is_valid(CFG_BOOL | CFG_REQUIRED,
- "%s.in-band", pfx)
- || cfg_get_bool(0, "%s.in-band", pfx));
- ofproto_set_discovery(br->ofproto, false, NULL, NULL);
- ofproto_set_in_band(br->ofproto, in_band);
-
- error = netdev_open(br->name, NETDEV_ETH_TYPE_NONE, &netdev);
- if (!error) {
- if (cfg_is_valid(CFG_IP | CFG_REQUIRED, "%s.ip", pfx)) {
- struct in_addr ip, mask, gateway;
- ip.s_addr = cfg_get_ip(0, "%s.ip", pfx);
- mask.s_addr = cfg_get_ip(0, "%s.netmask", pfx);
- gateway.s_addr = cfg_get_ip(0, "%s.gateway", pfx);
-
- netdev_turn_flags_on(netdev, NETDEV_UP, true);
- if (!mask.s_addr) {
- mask.s_addr = guess_netmask(ip.s_addr);
- }
- if (!netdev_set_in4(netdev, ip, mask)) {
- VLOG_INFO("bridge %s: configured IP address "IP_FMT", "
- "netmask "IP_FMT,
- br->name, IP_ARGS(&ip.s_addr),
- IP_ARGS(&mask.s_addr));
- }
+ /* If there's no local interface or no IP address, give up. */
+ local_iface = bridge_get_local_iface(br);
+ if (!local_iface || !c->local_ip || !inet_aton(c->local_ip, &ip)) {
+ return;
+ }
- if (gateway.s_addr) {
- if (!netdev_add_router(gateway)) {
- VLOG_INFO("bridge %s: configured gateway "IP_FMT,
- br->name, IP_ARGS(&gateway.s_addr));
- }
- }
- }
- netdev_close(netdev);
- }
- }
+ /* Bring up the local interface. */
+ netdev = local_iface->netdev;
+ netdev_turn_flags_on(netdev, NETDEV_UP, true);
- fail_mode = cfg_get_string(0, "%s.fail-mode", pfx);
- if (!fail_mode) {
- fail_mode = cfg_get_string(0, "mgmt.fail-mode");
- }
- ofproto_set_failure(br->ofproto,
- (!fail_mode
- || !strcmp(fail_mode, "standalone")
- || !strcmp(fail_mode, "open")));
+ /* Configure the IP address and netmask. */
+ if (!c->local_netmask
+ || !inet_aton(c->local_netmask, &mask)
+ || !mask.s_addr) {
+ mask.s_addr = guess_netmask(ip.s_addr);
+ }
+ if (!netdev_set_in4(netdev, ip, mask)) {
+ VLOG_INFO("bridge %s: configured IP address "IP_FMT", netmask "IP_FMT,
+ br->name, IP_ARGS(&ip.s_addr), IP_ARGS(&mask.s_addr));
+ }
- probe = cfg_get_int(0, "%s.inactivity-probe", pfx);
- if (probe < 5) {
- probe = cfg_get_int(0, "mgmt.inactivity-probe");
- if (probe < 5) {
- probe = 5;
- }
+ /* Configure the default gateway. */
+ if (c->local_gateway
+ && inet_aton(c->local_gateway, &gateway)
+ && gateway.s_addr) {
+ if (!netdev_add_router(netdev, gateway)) {
+ VLOG_INFO("bridge %s: configured gateway "IP_FMT,
+ br->name, IP_ARGS(&gateway.s_addr));
}
- ofproto_set_probe_interval(br->ofproto, probe);
+ }
+}
- max_backoff = cfg_get_int(0, "%s.max-backoff", pfx);
- if (!max_backoff) {
- max_backoff = cfg_get_int(0, "mgmt.max-backoff");
- if (!max_backoff) {
- max_backoff = 8;
- }
- }
- ofproto_set_max_backoff(br->ofproto, max_backoff);
+static void
+bridge_reconfigure_remotes(struct bridge *br,
+ const struct sockaddr_in *managers,
+ size_t n_managers)
+{
+ const char *disable_ib_str, *queue_id_str;
+ bool disable_in_band = false;
+ int queue_id;
- rate_limit = cfg_get_int(0, "%s.rate-limit", pfx);
- if (!rate_limit) {
- rate_limit = cfg_get_int(0, "mgmt.rate-limit");
- }
- burst_limit = cfg_get_int(0, "%s.burst-limit", pfx);
- if (!burst_limit) {
- burst_limit = cfg_get_int(0, "mgmt.burst-limit");
- }
- ofproto_set_rate_limit(br->ofproto, rate_limit, burst_limit);
+ struct ovsrec_controller **controllers;
+ size_t n_controllers;
+ bool had_primary;
- ofproto_set_stp(br->ofproto, cfg_get_bool(0, "%s.stp", pfx));
+ struct ofproto_controller *ocs;
+ size_t n_ocs;
+ size_t i;
- if (cfg_has("%s.commands.acl", pfx)) {
- struct svec command_acls;
- char *command_acl;
+ /* Check if we should disable in-band control on this bridge. */
+ disable_ib_str = bridge_get_other_config(br->cfg, "disable-in-band");
+ if (disable_ib_str && !strcmp(disable_ib_str, "true")) {
+ disable_in_band = true;
+ }
- svec_init(&command_acls);
- cfg_get_all_strings(&command_acls, "%s.commands.acl", pfx);
- command_acl = svec_join(&command_acls, ",", "");
+ /* Set OpenFlow queue ID for in-band control. */
+ queue_id_str = bridge_get_other_config(br->cfg, "in-band-queue");
+ queue_id = queue_id_str ? strtol(queue_id_str, NULL, 10) : -1;
+ ofproto_set_in_band_queue(br->ofproto, queue_id);
- ofproto_set_remote_execution(br->ofproto, command_acl,
- cfg_get_string(0, "%s.commands.dir",
- pfx));
+ if (disable_in_band) {
+ ofproto_set_extra_in_band_remotes(br->ofproto, NULL, 0);
+ } else {
+ ofproto_set_extra_in_band_remotes(br->ofproto, managers, n_managers);
+ }
+ had_primary = ofproto_has_primary_controller(br->ofproto);
- svec_destroy(&command_acls);
- free(command_acl);
- } else {
- ofproto_set_remote_execution(br->ofproto, NULL, NULL);
+ n_controllers = bridge_get_controllers(br, &controllers);
+
+ ocs = xmalloc((n_controllers + 1) * sizeof *ocs);
+ n_ocs = 0;
+
+ bridge_ofproto_controller_for_mgmt(br, &ocs[n_ocs++]);
+ for (i = 0; i < n_controllers; i++) {
+ struct ovsrec_controller *c = controllers[i];
+
+ if (!strncmp(c->target, "punix:", 6)
+ || !strncmp(c->target, "unix:", 5)) {
+ static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
+
+ /* Prevent remote ovsdb-server users from accessing arbitrary Unix
+ * domain sockets and overwriting arbitrary local files. */
+ VLOG_ERR_RL(&rl, "%s: not adding Unix domain socket controller "
+ "\"%s\" due to possibility for remote exploit",
+ dpif_name(br->dpif), c->target);
+ continue;
}
- } else {
+
+ bridge_configure_local_iface_netdev(br, c);
+ bridge_ofproto_controller_from_ovsrec(c, &ocs[n_ocs]);
+ if (disable_in_band) {
+ ocs[n_ocs].band = OFPROTO_OUT_OF_BAND;
+ }
+ n_ocs++;
+ }
+
+ ofproto_set_controllers(br->ofproto, ocs, n_ocs);
+ free(ocs[0].target); /* From bridge_ofproto_controller_for_mgmt(). */
+ free(ocs);
+
+ if (had_primary != ofproto_has_primary_controller(br->ofproto)) {
+ ofproto_flush_flows(br->ofproto);
+ }
+
+ /* If there are no controllers and the bridge is in standalone
+ * mode, set up a flow that matches every packet and directs
+ * them to OFPP_NORMAL (which goes to us). Otherwise, the
+ * switch is in secure mode and we won't pass any traffic until
+ * a controller has been defined and it tells us to do so. */
+ if (!n_controllers
+ && ofproto_get_fail_mode(br->ofproto) == OFPROTO_FAIL_STANDALONE) {
union ofp_action action;
- flow_t flow;
+ struct cls_rule rule;
- /* Set up a flow that matches every packet and directs them to
- * OFPP_NORMAL (which goes to us). */
memset(&action, 0, sizeof action);
action.type = htons(OFPAT_OUTPUT);
action.output.len = htons(sizeof action);
action.output.port = htons(OFPP_NORMAL);
- memset(&flow, 0, sizeof flow);
- ofproto_add_flow(br->ofproto, &flow, OFPFW_ALL, 0,
- &action, 1, 0);
-
- ofproto_set_in_band(br->ofproto, false);
- ofproto_set_max_backoff(br->ofproto, 1);
- ofproto_set_probe_interval(br->ofproto, 5);
- ofproto_set_failure(br->ofproto, false);
- ofproto_set_stp(br->ofproto, false);
+ cls_rule_init_catchall(&rule, 0);
+ ofproto_add_flow(br->ofproto, &rule, &action, 1);
}
- free(pfx);
-
- ofproto_set_controller(br->ofproto, br->controller);
}
static void
-bridge_get_all_ifaces(const struct bridge *br, struct svec *ifaces)
+bridge_get_all_ifaces(const struct bridge *br, struct shash *ifaces)
{
size_t i, j;
- svec_init(ifaces);
+ shash_init(ifaces);
for (i = 0; i < br->n_ports; i++) {
struct port *port = br->ports[i];
for (j = 0; j < port->n_ifaces; j++) {
struct iface *iface = port->ifaces[j];
- svec_add(ifaces, iface->name);
+ shash_add_once(ifaces, iface->name, iface);
}
- if (port->n_ifaces > 1
- && cfg_get_bool(0, "bonding.%s.fake-iface", port->name)) {
- svec_add(ifaces, port->name);
+ if (port->n_ifaces > 1 && port->cfg->bond_fake_iface) {
+ shash_add_once(ifaces, port->name, NULL);
}
}
- svec_sort_unique(ifaces);
}
/* For robustness, in case the administrator moves around datapath ports behind
iface->dp_ifidx = -1;
}
}
- port_array_clear(&br->ifaces);
+ hmap_clear(&br->ifaces);
- dpif_port_list(&br->dpif, &dpif_ports, &n_dpif_ports);
+ dpif_port_list(br->dpif, &dpif_ports, &n_dpif_ports);
for (i = 0; i < n_dpif_ports; i++) {
struct odp_port *p = &dpif_ports[i];
struct iface *iface = iface_lookup(br, p->devname);
if (iface) {
if (iface->dp_ifidx >= 0) {
- VLOG_WARN("dp%u reported interface %s twice",
- dpif_id(&br->dpif), p->devname);
+ VLOG_WARN("%s reported interface %s twice",
+ dpif_name(br->dpif), p->devname);
} else if (iface_from_dp_ifidx(br, p->port)) {
- VLOG_WARN("dp%u reported interface %"PRIu16" twice",
- dpif_id(&br->dpif), p->port);
+ VLOG_WARN("%s reported interface %"PRIu16" twice",
+ dpif_name(br->dpif), p->port);
} else {
- port_array_set(&br->ifaces, p->port, iface);
iface->dp_ifidx = p->port;
+ hmap_insert(&br->ifaces, &iface->dp_ifidx_node,
+ hash_int(iface->dp_ifidx, 0));
}
+
+ iface_set_ofport(iface->cfg,
+ (iface->dp_ifidx >= 0
+ ? odp_port_to_ofp_port(iface->dp_ifidx)
+ : -1));
}
}
free(dpif_ports);
/* Bridge packet processing functions. */
static int
-bond_hash(const uint8_t mac[ETH_ADDR_LEN])
+bond_hash(const uint8_t mac[ETH_ADDR_LEN], uint16_t vlan)
{
- return hash_bytes(mac, ETH_ADDR_LEN, 0) & BOND_MASK;
+ return hash_bytes(mac, ETH_ADDR_LEN, vlan) & BOND_MASK;
}
static struct bond_entry *
-lookup_bond_entry(const struct port *port, const uint8_t mac[ETH_ADDR_LEN])
+lookup_bond_entry(const struct port *port, const uint8_t mac[ETH_ADDR_LEN],
+ uint16_t vlan)
{
- return &port->bond_hash[bond_hash(mac)];
+ assert(port->bond_mode == BM_SLB);
+ return &port->bond_hash[bond_hash(mac, vlan)];
}
static int
static bool
choose_output_iface(const struct port *port, const uint8_t *dl_src,
- uint16_t *dp_ifidx, tag_type *tags)
+ uint16_t vlan, uint16_t *dp_ifidx, tag_type *tags)
{
struct iface *iface;
assert(port->n_ifaces);
if (port->n_ifaces == 1) {
iface = port->ifaces[0];
- } else {
- struct bond_entry *e = lookup_bond_entry(port, dl_src);
+ } else if (port->bond_mode == BM_AB) {
+ if (port->active_iface < 0) {
+ *tags |= port->no_ifaces_tag;
+ return false;
+ }
+ iface = port->ifaces[port->active_iface];
+ } else if (port->bond_mode == BM_SLB){
+ struct bond_entry *e = lookup_bond_entry(port, dl_src, vlan);
if (e->iface_idx < 0 || e->iface_idx >= port->n_ifaces
|| !port->ifaces[e->iface_idx]->enabled) {
/* XXX select interface properly. The current interface selection
}
*tags |= e->iface_tag;
iface = port->ifaces[e->iface_idx];
+ } else {
+ NOT_REACHED();
}
*dp_ifidx = iface->dp_ifidx;
*tags |= iface->tag; /* Currently only used for bonding. */
/* Nothing to do. */
return;
}
- VLOG_INFO_RL(&rl, "interface %s: carrier %s",
- iface->name, carrier ? "detected" : "dropped");
+ VLOG_INFO_RL(&rl, "interface %s: link state %s",
+ iface->name, carrier ? "up" : "down");
if (carrier == iface->enabled) {
iface->delay_expires = LLONG_MAX;
VLOG_INFO_RL(&rl, "interface %s: will not be %s",
port->bond_compat_is_stale = true;
}
+/* Attempts to make the sum of the bond slaves' statistics appear on the fake
+ * bond interface. */
+static void
+bond_update_fake_iface_stats(struct port *port)
+{
+ struct netdev_stats bond_stats;
+ struct netdev *bond_dev;
+ size_t i;
+
+ memset(&bond_stats, 0, sizeof bond_stats);
+
+ for (i = 0; i < port->n_ifaces; i++) {
+ struct netdev_stats slave_stats;
+
+ if (!netdev_get_stats(port->ifaces[i]->netdev, &slave_stats)) {
+ /* XXX: We swap the stats here because they are swapped back when
+ * reported by the internal device. The reason for this is
+ * internal devices normally represent packets going into the system
+ * but when used as fake bond device they represent packets leaving
+ * the system. We really should do this in the internal device
+ * itself because changing it here reverses the counts from the
+ * perspective of the switch. However, the internal device doesn't
+ * know what type of device it represents so we have to do it here
+ * for now. */
+ bond_stats.tx_packets += slave_stats.rx_packets;
+ bond_stats.tx_bytes += slave_stats.rx_bytes;
+ bond_stats.rx_packets += slave_stats.tx_packets;
+ bond_stats.rx_bytes += slave_stats.tx_bytes;
+ }
+ }
+
+ if (!netdev_open_default(port->name, &bond_dev)) {
+ netdev_set_stats(bond_dev, &bond_stats);
+ netdev_close(bond_dev);
+ }
+}
+
static void
bond_run(struct bridge *br)
{
struct port *port = br->ports[i];
if (port->n_ifaces >= 2) {
+ char *devname;
+
+ if (port->monitor) {
+ assert(!port->miimon);
+
+ /* Track carrier going up and down on interfaces. */
+ while (!netdev_monitor_poll(port->monitor, &devname)) {
+ struct iface *iface;
+
+ iface = port_lookup_iface(port, devname);
+ if (iface) {
+ bool up = netdev_get_carrier(iface->netdev);
+
+ bond_link_status_update(iface, up);
+ port_update_bond_compat(port);
+ }
+ free(devname);
+ }
+ } else {
+ assert(port->miimon);
+
+ if (time_msec() >= port->bond_miimon_next_update) {
+ for (j = 0; j < port->n_ifaces; j++) {
+ struct iface *iface = port->ifaces[j];
+ bool up = netdev_get_miimon(iface->netdev);
+
+ bond_link_status_update(iface, up);
+ port_update_bond_compat(port);
+ }
+ port->bond_miimon_next_update = time_msec() +
+ port->bond_miimon_interval;
+ }
+ }
+
for (j = 0; j < port->n_ifaces; j++) {
struct iface *iface = port->ifaces[j];
if (time_msec() >= iface->delay_expires) {
bond_enable_slave(iface, !iface->enabled);
}
}
+
+ if (port->bond_fake_iface
+ && time_msec() >= port->bond_next_fake_iface_update) {
+ bond_update_fake_iface_stats(port);
+ port->bond_next_fake_iface_update = time_msec() + 1000;
+ }
}
if (port->bond_compat_is_stale) {
if (port->n_ifaces < 2) {
continue;
}
+
+ if (port->monitor) {
+ netdev_monitor_poll_wait(port->monitor);
+ }
+
+ if (port->miimon) {
+ poll_timer_wait_until(port->bond_miimon_next_update);
+ }
+
for (j = 0; j < port->n_ifaces; j++) {
struct iface *iface = port->ifaces[j];
if (iface->delay_expires != LLONG_MAX) {
- poll_timer_wait(iface->delay_expires - time_msec());
+ poll_timer_wait_until(iface->delay_expires);
}
}
+ if (port->bond_fake_iface) {
+ poll_timer_wait_until(port->bond_next_fake_iface_update);
+ }
}
}
static bool
-set_dst(struct dst *p, const flow_t *flow,
+set_dst(struct dst *dst, const struct flow *flow,
const struct port *in_port, const struct port *out_port,
tag_type *tags)
{
- /* STP handling.
- *
- * XXX This uses too many tags: any broadcast flow will get one tag per
- * destination port, and thus a broadcast on a switch of any size is likely
- * to have all tag bits set. We should figure out a way to be smarter.
- *
- * This is OK when STP is disabled, because stp_state_tag is 0 then. */
- *tags |= out_port->stp_state_tag;
- if (!(out_port->stp_state & (STP_DISABLED | STP_FORWARDING))) {
- return false;
- }
-
- p->vlan = (out_port->vlan >= 0 ? OFP_VLAN_NONE
+ dst->vlan = (out_port->vlan >= 0 ? OFP_VLAN_NONE
: in_port->vlan >= 0 ? in_port->vlan
- : ntohs(flow->dl_vlan));
- return choose_output_iface(out_port, flow->dl_src, &p->dp_ifidx, tags);
+ : flow->vlan_tci == 0 ? OFP_VLAN_NONE
+ : vlan_tci_to_vid(flow->vlan_tci));
+ return choose_output_iface(out_port, flow->dl_src, dst->vlan,
+ &dst->dp_ifidx, tags);
}
static void
* vlan, but in most cases there are at most two different vlan tags so that's
* possibly overkill.) */
static void
-partition_dsts(struct dst *dsts, size_t n_dsts, int vlan)
+partition_dsts(struct dst_set *set, int vlan)
{
- struct dst *first = dsts;
- struct dst *last = dsts + n_dsts;
+ struct dst *first = set->dsts;
+ struct dst *last = set->dsts + set->n;
while (first != last) {
/* Invariants:
}
}
- /* Same invariants, plus one additional:
- * - last[-1].vlan == vlan.*/
- swap_dst(first++, --last);
+ /* Same invariants, plus one additional:
+ * - last[-1].vlan == vlan.*/
+ swap_dst(first++, --last);
+ }
+}
+
+static int
+mirror_mask_ffs(mirror_mask_t mask)
+{
+ BUILD_ASSERT_DECL(sizeof(unsigned int) >= sizeof(mask));
+ return ffs(mask);
+}
+
+static void
+dst_set_init(struct dst_set *set)
+{
+ set->dsts = set->builtin;
+ set->n = 0;
+ set->allocated = ARRAY_SIZE(set->builtin);
+}
+
+static void
+dst_set_add(struct dst_set *set, const struct dst *dst)
+{
+ if (set->n >= set->allocated) {
+ size_t new_allocated;
+ struct dst *new_dsts;
+
+ new_allocated = set->allocated * 2;
+ new_dsts = xmalloc(new_allocated * sizeof *new_dsts);
+ memcpy(new_dsts, set->dsts, set->n * sizeof *new_dsts);
+
+ dst_set_free(set);
+
+ set->dsts = new_dsts;
+ set->allocated = new_allocated;
}
+ set->dsts[set->n++] = *dst;
}
-static int
-mirror_mask_ffs(mirror_mask_t mask)
+static void
+dst_set_free(struct dst_set *set)
{
- BUILD_ASSERT_DECL(sizeof(unsigned int) >= sizeof(mask));
- return ffs(mask);
+ if (set->dsts != set->builtin) {
+ free(set->dsts);
+ }
}
static bool
-dst_is_duplicate(const struct dst *dsts, size_t n_dsts,
- const struct dst *test)
+dst_is_duplicate(const struct dst_set *set, const struct dst *test)
{
size_t i;
- for (i = 0; i < n_dsts; i++) {
- if (dsts[i].vlan == test->vlan && dsts[i].dp_ifidx == test->dp_ifidx) {
+ for (i = 0; i < set->n; i++) {
+ if (set->dsts[i].vlan == test->vlan
+ && set->dsts[i].dp_ifidx == test->dp_ifidx) {
return true;
}
}
static bool
port_trunks_vlan(const struct port *port, uint16_t vlan)
{
- return port->vlan < 0 && bitmap_is_set(port->trunks, vlan);
+ return (port->vlan < 0
+ && (!port->trunks || bitmap_is_set(port->trunks, vlan)));
}
static bool
return vlan == port->vlan || port_trunks_vlan(port, vlan);
}
-static size_t
-compose_dsts(const struct bridge *br, const flow_t *flow, uint16_t vlan,
+static bool
+port_is_floodable(const struct port *port)
+{
+ int i;
+
+ for (i = 0; i < port->n_ifaces; i++) {
+ if (!ofproto_port_is_floodable(port->bridge->ofproto,
+ port->ifaces[i]->dp_ifidx)) {
+ return false;
+ }
+ }
+ return true;
+}
+
+static void
+compose_dsts(const struct bridge *br, const struct flow *flow, uint16_t vlan,
const struct port *in_port, const struct port *out_port,
- struct dst dsts[], tag_type *tags, uint16_t *nf_output_iface)
+ struct dst_set *set, tag_type *tags, uint16_t *nf_output_iface)
{
mirror_mask_t mirrors = in_port->src_mirrors;
- struct dst *dst = dsts;
+ struct dst dst;
+ int flow_vlan;
size_t i;
- *tags |= in_port->stp_state_tag;
+ flow_vlan = vlan_tci_to_vid(flow->vlan_tci);
+ if (flow_vlan == 0) {
+ flow_vlan = OFP_VLAN_NONE;
+ }
+
if (out_port == FLOOD_PORT) {
- /* XXX use ODP_FLOOD if no vlans or bonding. */
- /* XXX even better, define each VLAN as a datapath port group */
for (i = 0; i < br->n_ports; i++) {
struct port *port = br->ports[i];
- if (port != in_port && port_includes_vlan(port, vlan)
+ if (port != in_port
+ && port_is_floodable(port)
+ && port_includes_vlan(port, vlan)
&& !port->is_mirror_output_port
- && set_dst(dst, flow, in_port, port, tags)) {
+ && set_dst(&dst, flow, in_port, port, tags)) {
mirrors |= port->dst_mirrors;
- dst++;
+ dst_set_add(set, &dst);
}
}
*nf_output_iface = NF_OUT_FLOOD;
- } else if (out_port && set_dst(dst, flow, in_port, out_port, tags)) {
- *nf_output_iface = dst->dp_ifidx;
+ } else if (out_port && set_dst(&dst, flow, in_port, out_port, tags)) {
+ dst_set_add(set, &dst);
+ *nf_output_iface = dst.dp_ifidx;
mirrors |= out_port->dst_mirrors;
- dst++;
}
while (mirrors) {
struct mirror *m = br->mirrors[mirror_mask_ffs(mirrors) - 1];
if (!m->n_vlans || vlan_is_mirrored(m, vlan)) {
if (m->out_port) {
- if (set_dst(dst, flow, in_port, m->out_port, tags)
- && !dst_is_duplicate(dsts, dst - dsts, dst)) {
- dst++;
+ if (set_dst(&dst, flow, in_port, m->out_port, tags)
+ && !dst_is_duplicate(set, &dst)) {
+ dst_set_add(set, &dst);
}
} else {
for (i = 0; i < br->n_ports; i++) {
struct port *port = br->ports[i];
if (port_includes_vlan(port, m->out_vlan)
- && set_dst(dst, flow, in_port, port, tags))
+ && set_dst(&dst, flow, in_port, port, tags))
{
- int flow_vlan;
-
if (port->vlan < 0) {
- dst->vlan = m->out_vlan;
+ dst.vlan = m->out_vlan;
}
- if (dst_is_duplicate(dsts, dst - dsts, dst)) {
+ if (dst_is_duplicate(set, &dst)) {
continue;
}
* tagging tags place. This is necessary because
* dst->vlan is the final vlan, after removing implicit
* tags. */
- flow_vlan = ntohs(flow->dl_vlan);
- if (flow_vlan == 0) {
- flow_vlan = OFP_VLAN_NONE;
- }
- if (port == in_port && dst->vlan == flow_vlan) {
+ if (port == in_port && dst.vlan == flow_vlan) {
/* Don't send out input port on same VLAN. */
continue;
}
- dst++;
+ dst_set_add(set, &dst);
}
}
}
mirrors &= mirrors - 1;
}
- partition_dsts(dsts, dst - dsts, ntohs(flow->dl_vlan));
- return dst - dsts;
+ partition_dsts(set, flow_vlan);
}
-static void UNUSED
-print_dsts(const struct dst *dsts, size_t n)
+static void OVS_UNUSED
+print_dsts(const struct dst_set *set)
{
- for (; n--; dsts++) {
- printf(">p%"PRIu16, dsts->dp_ifidx);
- if (dsts->vlan != OFP_VLAN_NONE) {
- printf("v%"PRIu16, dsts->vlan);
+ size_t i;
+
+ for (i = 0; i < set->n; i++) {
+ const struct dst *dst = &set->dsts[i];
+
+ printf(">p%"PRIu16, dst->dp_ifidx);
+ if (dst->vlan != OFP_VLAN_NONE) {
+ printf("v%"PRIu16, dst->vlan);
}
}
}
static void
-compose_actions(struct bridge *br, const flow_t *flow, uint16_t vlan,
+compose_actions(struct bridge *br, const struct flow *flow, uint16_t vlan,
const struct port *in_port, const struct port *out_port,
- tag_type *tags, struct odp_actions *actions,
+ tag_type *tags, struct ofpbuf *actions,
uint16_t *nf_output_iface)
{
- struct dst dsts[DP_MAX_PORTS * (MAX_MIRRORS + 1)];
- size_t n_dsts;
- const struct dst *p;
+ struct dst_set set;
uint16_t cur_vlan;
+ size_t i;
- n_dsts = compose_dsts(br, flow, vlan, in_port, out_port, dsts, tags,
- nf_output_iface);
+ dst_set_init(&set);
+ compose_dsts(br, flow, vlan, in_port, out_port, &set, tags,
+ nf_output_iface);
- cur_vlan = ntohs(flow->dl_vlan);
- for (p = dsts; p < &dsts[n_dsts]; p++) {
- union odp_action *a;
- if (p->vlan != cur_vlan) {
- if (p->vlan == OFP_VLAN_NONE) {
- odp_actions_add(actions, ODPAT_STRIP_VLAN);
+ cur_vlan = vlan_tci_to_vid(flow->vlan_tci);
+ if (cur_vlan == 0) {
+ cur_vlan = OFP_VLAN_NONE;
+ }
+ for (i = 0; i < set.n; i++) {
+ const struct dst *dst = &set.dsts[i];
+ if (dst->vlan != cur_vlan) {
+ if (dst->vlan == OFP_VLAN_NONE) {
+ nl_msg_put_flag(actions, ODPAT_STRIP_VLAN);
} else {
- a = odp_actions_add(actions, ODPAT_SET_VLAN_VID);
- a->vlan_vid.vlan_vid = htons(p->vlan);
+ ovs_be16 tci;
+ tci = htons(dst->vlan & VLAN_VID_MASK);
+ tci |= flow->vlan_tci & htons(VLAN_PCP_MASK);
+ nl_msg_put_be16(actions, ODPAT_SET_DL_TCI, tci);
}
- cur_vlan = p->vlan;
+ cur_vlan = dst->vlan;
}
- a = odp_actions_add(actions, ODPAT_OUTPUT);
- a->output.port = p->dp_ifidx;
+ nl_msg_put_u32(actions, ODPAT_OUTPUT, dst->dp_ifidx);
}
+ dst_set_free(&set);
}
/* Returns the effective vlan of a packet, taking into account both the
* 802.1Q header and implicitly tagged ports. A value of 0 indicates that
* the packet is untagged and -1 indicates it has an invalid header and
* should be dropped. */
-static int flow_get_vlan(struct bridge *br, const flow_t *flow,
+static int flow_get_vlan(struct bridge *br, const struct flow *flow,
struct port *in_port, bool have_packet)
{
- /* Note that dl_vlan of 0 and of OFP_VLAN_NONE both mean that the packet
- * belongs to VLAN 0, so we should treat both cases identically. (In the
- * former case, the packet has an 802.1Q header that specifies VLAN 0,
- * presumably to allow a priority to be specified. In the latter case, the
- * packet does not have any 802.1Q header.) */
- int vlan = ntohs(flow->dl_vlan);
- if (vlan == OFP_VLAN_NONE) {
- vlan = 0;
- }
+ int vlan = vlan_tci_to_vid(flow->vlan_tci);
if (in_port->vlan >= 0) {
if (vlan) {
/* XXX support double tagging? */
if (have_packet) {
static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
- VLOG_WARN_RL(&rl, "bridge %s: dropping VLAN %"PRIu16" tagged "
+ VLOG_WARN_RL(&rl, "bridge %s: dropping VLAN %d tagged "
"packet received on port %s configured with "
"implicit VLAN %"PRIu16,
- br->name, ntohs(flow->dl_vlan),
- in_port->name, in_port->vlan);
+ br->name, vlan, in_port->name, in_port->vlan);
}
return -1;
}
return vlan;
}
+/* A VM broadcasts a gratuitous ARP to indicate that it has resumed after
+ * migration. Older Citrix-patched Linux DomU used gratuitous ARP replies to
+ * indicate this; newer upstream kernels use gratuitous ARP requests. */
+static bool
+is_gratuitous_arp(const struct flow *flow)
+{
+ return (flow->dl_type == htons(ETH_TYPE_ARP)
+ && eth_addr_is_broadcast(flow->dl_dst)
+ && (flow->nw_proto == ARP_OP_REPLY
+ || (flow->nw_proto == ARP_OP_REQUEST
+ && flow->nw_src == flow->nw_dst)));
+}
+
static void
-update_learning_table(struct bridge *br, const flow_t *flow, int vlan,
+update_learning_table(struct bridge *br, const struct flow *flow, int vlan,
struct port *in_port)
{
- tag_type rev_tag = mac_learning_learn(br->ml, flow->dl_src,
- vlan, in_port->port_idx);
+ enum grat_arp_lock_type lock_type;
+ tag_type rev_tag;
+
+ /* We don't want to learn from gratuitous ARP packets that are reflected
+ * back over bond slaves so we lock the learning table. */
+ lock_type = !is_gratuitous_arp(flow) ? GRAT_ARP_LOCK_NONE :
+ (in_port->n_ifaces == 1) ? GRAT_ARP_LOCK_SET :
+ GRAT_ARP_LOCK_CHECK;
+
+ rev_tag = mac_learning_learn(br->ml, flow->dl_src, vlan, in_port->port_idx,
+ lock_type);
if (rev_tag) {
/* The log messages here could actually be useful in debugging,
* so keep the rate limit relatively high. */
}
}
+/* Determines whether packets in 'flow' within 'br' should be forwarded or
+ * dropped. Returns true if they may be forwarded, false if they should be
+ * dropped.
+ *
+ * If 'have_packet' is true, it indicates that the caller is processing a
+ * received packet. If 'have_packet' is false, then the caller is just
+ * revalidating an existing flow because configuration has changed. Either
+ * way, 'have_packet' only affects logging (there is no point in logging errors
+ * during revalidation).
+ *
+ * Sets '*in_portp' to the input port. This will be a null pointer if
+ * flow->in_port does not designate a known input port (in which case
+ * is_admissible() returns false).
+ *
+ * When returning true, sets '*vlanp' to the effective VLAN of the input
+ * packet, as returned by flow_get_vlan().
+ *
+ * May also add tags to '*tags', although the current implementation only does
+ * so in one special case.
+ */
static bool
-is_bcast_arp_reply(const flow_t *flow)
-{
- return (flow->dl_type == htons(ETH_TYPE_ARP)
- && flow->nw_proto == ARP_OP_REPLY
- && eth_addr_is_broadcast(flow->dl_dst));
-}
-
-/* If the composed actions may be applied to any packet in the given 'flow',
- * returns true. Otherwise, the actions should only be applied to 'packet', or
- * not at all, if 'packet' was NULL. */
-static bool
-process_flow(struct bridge *br, const flow_t *flow,
- const struct ofpbuf *packet, struct odp_actions *actions,
- tag_type *tags, uint16_t *nf_output_iface)
+is_admissible(struct bridge *br, const struct flow *flow, bool have_packet,
+ tag_type *tags, int *vlanp, struct port **in_portp)
{
struct iface *in_iface;
struct port *in_port;
- struct port *out_port = NULL; /* By default, drop the packet/flow. */
int vlan;
- int out_port_idx;
/* Find the interface and port structure for the received packet. */
in_iface = iface_from_dp_ifidx(br, flow->in_port);
if (!in_iface) {
/* No interface? Something fishy... */
- if (packet != NULL) {
+ if (have_packet) {
/* Odd. A few possible reasons here:
*
* - We deleted an interface but there are still a few packets
static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
VLOG_WARN_RL(&rl, "bridge %s: received packet on unknown "
- "interface %"PRIu16, br->name, flow->in_port);
+ "interface %"PRIu16, br->name, flow->in_port);
}
- /* Return without adding any actions, to drop packets on this flow. */
- return true;
+ *in_portp = NULL;
+ return false;
}
- in_port = in_iface->port;
- vlan = flow_get_vlan(br, flow, in_port, !!packet);
+ *in_portp = in_port = in_iface->port;
+ *vlanp = vlan = flow_get_vlan(br, flow, in_port, have_packet);
if (vlan < 0) {
- goto done;
- }
-
- /* Drop frames for ports that STP wants entirely killed (both for
- * forwarding and for learning). Later, after we do learning, we'll drop
- * the frames that STP wants to do learning but not forwarding on. */
- if (in_port->stp_state & (STP_LISTENING | STP_BLOCKING)) {
- goto done;
+ return false;
}
/* Drop frames for reserved multicast addresses. */
if (eth_addr_is_reserved(flow->dl_dst)) {
- goto done;
+ return false;
}
/* Drop frames on ports reserved for mirroring. */
if (in_port->is_mirror_output_port) {
- static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
- VLOG_WARN_RL(&rl, "bridge %s: dropping packet received on port %s, "
- "which is reserved exclusively for mirroring",
- br->name, in_port->name);
- goto done;
+ if (have_packet) {
+ static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
+ VLOG_WARN_RL(&rl, "bridge %s: dropping packet received on port "
+ "%s, which is reserved exclusively for mirroring",
+ br->name, in_port->name);
+ }
+ return false;
}
/* Packets received on bonds need special attention to avoid duplicates. */
if (in_port->n_ifaces > 1) {
int src_idx;
+ bool is_grat_arp_locked;
if (eth_addr_is_multicast(flow->dl_dst)) {
*tags |= in_port->active_iface_tag;
if (in_port->active_iface != in_iface->port_ifidx) {
/* Drop all multicast packets on inactive slaves. */
- goto done;
+ return false;
}
}
/* Drop all packets for which we have learned a different input
* port, because we probably sent the packet on one slave and got
- * it back on the other. Broadcast ARP replies are an exception
- * to this rule: the host has moved to another switch. */
- src_idx = mac_learning_lookup(br->ml, flow->dl_src, vlan);
+ * it back on the other. Gratuitous ARP packets are an exception
+ * to this rule: the host has moved to another switch. The exception
+ * to the exception is if we locked the learning table to avoid
+ * reflections on bond slaves. If this is the case, just drop the
+ * packet now. */
+ src_idx = mac_learning_lookup(br->ml, flow->dl_src, vlan,
+ &is_grat_arp_locked);
if (src_idx != -1 && src_idx != in_port->port_idx &&
- !is_bcast_arp_reply(flow)) {
- goto done;
+ (!is_gratuitous_arp(flow) || is_grat_arp_locked)) {
+ return false;
}
}
- /* MAC learning. */
- out_port = FLOOD_PORT;
+ return true;
+}
+
+/* If the composed actions may be applied to any packet in the given 'flow',
+ * returns true. Otherwise, the actions should only be applied to 'packet', or
+ * not at all, if 'packet' was NULL. */
+static bool
+process_flow(struct bridge *br, const struct flow *flow,
+ const struct ofpbuf *packet, struct ofpbuf *actions,
+ tag_type *tags, uint16_t *nf_output_iface)
+{
+ struct port *in_port;
+ struct port *out_port;
+ int vlan;
+ int out_port_idx;
+
+ /* Check whether we should drop packets in this flow. */
+ if (!is_admissible(br, flow, packet != NULL, tags, &vlan, &in_port)) {
+ out_port = NULL;
+ goto done;
+ }
+
/* Learn source MAC (but don't try to learn from revalidation). */
if (packet) {
update_learning_table(br, flow, vlan, in_port);
}
/* Determine output port. */
- out_port_idx = mac_learning_lookup_tag(br->ml, flow->dl_dst, vlan,
- tags);
+ out_port_idx = mac_learning_lookup_tag(br->ml, flow->dl_dst, vlan, tags,
+ NULL);
if (out_port_idx >= 0 && out_port_idx < br->n_ports) {
out_port = br->ports[out_port_idx];
} else if (!packet && !eth_addr_is_multicast(flow->dl_dst)) {
* on a bond and blackhole packets before the learning table is
* updated to reflect the correct port. */
return false;
+ } else {
+ out_port = FLOOD_PORT;
}
- /* Don't send packets out their input ports. Don't forward frames that STP
- * wants us to discard. */
- if (in_port == out_port || in_port->stp_state == STP_LEARNING) {
+ /* Don't send packets out their input ports. */
+ if (in_port == out_port) {
out_port = NULL;
}
done:
- compose_actions(br, flow, vlan, in_port, out_port, tags, actions,
- nf_output_iface);
+ if (in_port) {
+ compose_actions(br, flow, vlan, in_port, out_port, tags, actions,
+ nf_output_iface);
+ }
return true;
}
-/* Careful: 'opp' is in host byte order and opp->port_no is an OFP port
- * number. */
-static void
-bridge_port_changed_ofhook_cb(enum ofp_port_reason reason,
- const struct ofp_phy_port *opp,
- void *br_)
+static bool
+bridge_normal_ofhook_cb(const struct flow *flow, const struct ofpbuf *packet,
+ struct ofpbuf *actions, tag_type *tags,
+ uint16_t *nf_output_iface, void *br_)
{
- struct bridge *br = br_;
struct iface *iface;
- struct port *port;
+ struct bridge *br = br_;
- iface = iface_from_dp_ifidx(br, ofp_port_to_odp_port(opp->port_no));
- if (!iface) {
- return;
- }
- port = iface->port;
+ COVERAGE_INC(bridge_process_flow);
- if (reason == OFPPR_DELETE) {
- VLOG_WARN("bridge %s: interface %s deleted unexpectedly",
- br->name, iface->name);
- iface_destroy(iface);
- if (!port->n_ifaces) {
- VLOG_WARN("bridge %s: port %s has no interfaces, dropping",
- br->name, port->name);
- port_destroy(port);
- }
+ iface = iface_from_dp_ifidx(br, flow->in_port);
- bridge_flush(br);
- } else {
- memcpy(iface->mac, opp->hw_addr, ETH_ADDR_LEN);
- if (port->n_ifaces > 1) {
- bool up = !(opp->state & OFPPS_LINK_DOWN);
- bond_link_status_update(iface, up);
- port_update_bond_compat(port);
+ if (cfm_should_process_flow(flow)) {
+ if (packet && iface->cfm) {
+ cfm_process_heartbeat(iface->cfm, packet);
}
+ return false;
}
-}
-
-static bool
-bridge_normal_ofhook_cb(const flow_t *flow, const struct ofpbuf *packet,
- struct odp_actions *actions, tag_type *tags,
- uint16_t *nf_output_iface, void *br_)
-{
- struct bridge *br = br_;
-
-#if 0
- if (flow->dl_type == htons(OFP_DL_TYPE_NOT_ETH_TYPE)
- && eth_addr_equals(flow->dl_dst, stp_eth_addr)) {
- brstp_receive(br, flow, payload);
- return true;
- }
-#endif
- COVERAGE_INC(bridge_process_flow);
return process_flow(br, flow, packet, actions, tags, nf_output_iface);
}
static void
-bridge_account_flow_ofhook_cb(const flow_t *flow,
- const union odp_action *actions,
- size_t n_actions, unsigned long long int n_bytes,
- void *br_)
+bridge_account_flow_ofhook_cb(const struct flow *flow, tag_type tags,
+ const struct nlattr *actions,
+ size_t actions_len,
+ unsigned long long int n_bytes, void *br_)
{
struct bridge *br = br_;
+ const struct nlattr *a;
struct port *in_port;
+ tag_type dummy = 0;
+ unsigned int left;
int vlan;
- const union odp_action *a;
-
- /* Feed information from the active flows back into the learning table
- * to ensure that table is always in sync with what is actually flowing
- * through the datapath. */
- in_port = port_from_dp_ifidx(br, flow->in_port);
- vlan = flow_get_vlan(br, flow, in_port, false);
- if (in_port && vlan >= 0) {
+
+ /* Feed information from the active flows back into the learning table to
+ * ensure that table is always in sync with what is actually flowing
+ * through the datapath.
+ *
+ * We test that 'tags' is nonzero to ensure that only flows that include an
+ * OFPP_NORMAL action are used for learning. This works because
+ * bridge_normal_ofhook_cb() always sets a nonzero tag value. */
+ if (tags && is_admissible(br, flow, false, &dummy, &vlan, &in_port)) {
update_learning_table(br, flow, vlan, in_port);
}
+ /* Account for bond slave utilization. */
if (!br->has_bonded_ports) {
return;
}
-
- for (a = actions; a < &actions[n_actions]; a++) {
- if (a->type == ODPAT_OUTPUT) {
- struct port *out_port = port_from_dp_ifidx(br, a->output.port);
- if (out_port && out_port->n_ifaces >= 2) {
+ NL_ATTR_FOR_EACH_UNSAFE (a, left, actions, actions_len) {
+ if (nl_attr_type(a) == ODPAT_OUTPUT) {
+ struct port *out_port = port_from_dp_ifidx(br, nl_attr_get_u32(a));
+ if (out_port && out_port->n_ifaces >= 2 &&
+ out_port->bond_mode == BM_SLB) {
+ uint16_t vlan = (flow->vlan_tci
+ ? vlan_tci_to_vid(flow->vlan_tci)
+ : OFP_VLAN_NONE);
struct bond_entry *e = lookup_bond_entry(out_port,
- flow->dl_src);
+ flow->dl_src, vlan);
e->tx_bytes += n_bytes;
}
}
bridge_account_checkpoint_ofhook_cb(void *br_)
{
struct bridge *br = br_;
+ long long int now;
size_t i;
if (!br->has_bonded_ports) {
return;
}
- /* The current ofproto implementation calls this callback at least once a
- * second, so this timer implementation is sufficient. */
- if (time_msec() < br->bond_next_rebalance) {
- return;
- }
- br->bond_next_rebalance = time_msec() + 10000;
-
+ now = time_msec();
for (i = 0; i < br->n_ports; i++) {
struct port *port = br->ports[i];
- if (port->n_ifaces > 1) {
+ if (port->n_ifaces > 1 && port->bond_mode == BM_SLB
+ && now >= port->bond_next_rebalance) {
+ port->bond_next_rebalance = now + port->bond_rebalance_interval;
bond_rebalance_port(port);
}
}
}
static struct ofhooks bridge_ofhooks = {
- bridge_port_changed_ofhook_cb,
bridge_normal_ofhook_cb,
bridge_account_flow_ofhook_cb,
bridge_account_checkpoint_ofhook_cb,
size_t n_hashes;
};
+static const char *
+bond_mode_to_string(enum bond_mode bm) {
+ static char *bm_slb = "balance-slb";
+ static char *bm_ab = "active-backup";
+
+ switch (bm) {
+ case BM_SLB: return bm_slb;
+ case BM_AB: return bm_ab;
+ }
+
+ NOT_REACHED();
+ return NULL;
+}
+
/* Sorts pointers to pointers to bond_entries in ascending order by the
* interface to which they are assigned, and within a single interface in
* ascending order of bytes transmitted. */
struct port *port = from->iface->port;
uint64_t delta = hash->tx_bytes;
+ assert(port->bond_mode == BM_SLB);
+
VLOG_INFO("bond %s: shift %"PRIu64"kB of load (with hash %td) "
"from %s to %s (now carrying %"PRIu64"kB and "
"%"PRIu64"kB load, respectively)",
static void
bond_rebalance_port(struct port *port)
{
- struct slave_balance bals[DP_MAX_PORTS];
+ struct slave_balance *bals;
size_t n_bals;
struct bond_entry *hashes[BOND_MASK + 1];
struct slave_balance *b, *from, *to;
struct bond_entry *e;
size_t i;
+ assert(port->bond_mode == BM_SLB);
+
/* Sets up 'bals' to describe each of the port's interfaces, sorted in
* descending order of tx_bytes, so that bals[0] represents the most
* heavily loaded slave and bals[n_bals - 1] represents the least heavily
* become contiguous in memory, and then we point each 'hashes' members of
* a slave_balance structure to the start of a contiguous group. */
n_bals = port->n_ifaces;
+ bals = xmalloc(n_bals * sizeof *bals);
for (b = bals; b < &bals[n_bals]; b++) {
b->iface = port->ifaces[b - bals];
b->tx_bytes = 0;
while (!bals[n_bals - 1].iface->enabled) {
n_bals--;
if (!n_bals) {
- return;
+ goto exit;
}
}
* smallest hashes instead of the biggest ones. There is little
* reason behind this decision; we could use the opposite sort
* order to shift away big hashes ahead of small ones. */
- size_t i;
bool order_swapped;
for (i = 0; i < from->n_hashes; i++) {
for (e = &port->bond_hash[0]; e <= &port->bond_hash[BOND_MASK]; e++) {
e->tx_bytes /= 2;
}
+
+exit:
+ free(bals);
}
static void
ofpbuf_init(&packet, 128);
error = n_packets = n_errors = 0;
- LIST_FOR_EACH (e, struct mac_entry, lru_node, &br->ml->lrus) {
+ LIST_FOR_EACH (e, lru_node, &br->ml->lrus) {
union ofp_action actions[2], *a;
uint16_t dp_ifidx;
tag_type tags = 0;
- flow_t flow;
+ struct flow flow;
int retval;
if (e->port == port->port_idx
- || !choose_output_iface(port, e->mac, &dp_ifidx, &tags)) {
+ || !choose_output_iface(port, e->mac, e->vlan, &dp_ifidx, &tags)) {
continue;
}
n_packets++;
compose_benign_packet(&packet, "Open vSwitch Bond Failover", 0xf177,
e->mac);
- flow_extract(&packet, ODPP_NONE, &flow);
+ flow_extract(&packet, 0, ODPP_NONE, &flow);
retval = ofproto_send_packet(br->ofproto, &flow, actions, a - actions,
&packet);
if (retval) {
/* Bonding unixctl user interface functions. */
static void
-bond_unixctl_list(struct unixctl_conn *conn, const char *args UNUSED)
+bond_unixctl_list(struct unixctl_conn *conn,
+ const char *args OVS_UNUSED, void *aux OVS_UNUSED)
{
struct ds ds = DS_EMPTY_INITIALIZER;
const struct bridge *br;
- ds_put_cstr(&ds, "bridge\tbond\tslaves\n");
+ ds_put_cstr(&ds, "bridge\tbond\ttype\tslaves\n");
- LIST_FOR_EACH (br, struct bridge, node, &all_bridges) {
+ LIST_FOR_EACH (br, node, &all_bridges) {
size_t i;
for (i = 0; i < br->n_ports; i++) {
if (port->n_ifaces > 1) {
size_t j;
- ds_put_format(&ds, "%s\t%s\t", br->name, port->name);
+ ds_put_format(&ds, "%s\t%s\t%s\t", br->name, port->name,
+ bond_mode_to_string(port->bond_mode));
for (j = 0; j < port->n_ifaces; j++) {
const struct iface *iface = port->ifaces[j];
if (j) {
{
const struct bridge *br;
- LIST_FOR_EACH (br, struct bridge, node, &all_bridges) {
+ LIST_FOR_EACH (br, node, &all_bridges) {
size_t i;
for (i = 0; i < br->n_ports; i++) {
}
static void
-bond_unixctl_show(struct unixctl_conn *conn, const char *args)
+bond_unixctl_show(struct unixctl_conn *conn,
+ const char *args, void *aux OVS_UNUSED)
{
struct ds ds = DS_EMPTY_INITIALIZER;
const struct port *port;
return;
}
+ ds_put_format(&ds, "bond_mode: %s\n",
+ bond_mode_to_string(port->bond_mode));
+ ds_put_format(&ds, "bond-detect-mode: %s\n",
+ port->miimon ? "miimon" : "carrier");
+
+ if (port->miimon) {
+ ds_put_format(&ds, "bond-miimon-interval: %lld\n",
+ port->bond_miimon_interval);
+ }
+
ds_put_format(&ds, "updelay: %d ms\n", port->updelay);
ds_put_format(&ds, "downdelay: %d ms\n", port->downdelay);
- ds_put_format(&ds, "next rebalance: %lld ms\n",
- port->bridge->bond_next_rebalance - time_msec());
+
+ if (port->bond_mode == BM_SLB) {
+ ds_put_format(&ds, "next rebalance: %lld ms\n",
+ port->bond_next_rebalance - time_msec());
+ }
+
for (j = 0; j < port->n_ifaces; j++) {
const struct iface *iface = port->ifaces[j];
struct bond_entry *be;
iface->delay_expires - time_msec());
}
+ if (port->bond_mode != BM_SLB) {
+ continue;
+ }
+
/* Hashes. */
for (be = port->bond_hash; be <= &port->bond_hash[BOND_MASK]; be++) {
int hash = be - port->bond_hash;
hash, be->tx_bytes / 1024);
/* MACs. */
- LIST_FOR_EACH (me, struct mac_entry, lru_node,
- &port->bridge->ml->lrus) {
+ LIST_FOR_EACH (me, lru_node, &port->bridge->ml->lrus) {
uint16_t dp_ifidx;
tag_type tags = 0;
- if (bond_hash(me->mac) == hash
+ if (bond_hash(me->mac, me->vlan) == hash
&& me->port != port->port_idx
- && choose_output_iface(port, me->mac, &dp_ifidx, &tags)
+ && choose_output_iface(port, me->mac, me->vlan,
+ &dp_ifidx, &tags)
&& dp_ifidx == iface->dp_ifidx)
{
ds_put_format(&ds, "\t\t"ETH_ADDR_FMT"\n",
}
static void
-bond_unixctl_migrate(struct unixctl_conn *conn, const char *args_)
+bond_unixctl_migrate(struct unixctl_conn *conn, const char *args_,
+ void *aux OVS_UNUSED)
{
char *args = (char *) args_;
char *save_ptr = NULL;
char *bond_s, *hash_s, *slave_s;
- uint8_t mac[ETH_ADDR_LEN];
struct port *port;
struct iface *iface;
struct bond_entry *entry;
return;
}
- if (sscanf(hash_s, ETH_ADDR_SCAN_FMT, ETH_ADDR_SCAN_ARGS(mac))
- == ETH_ADDR_SCAN_COUNT) {
- hash = bond_hash(mac);
- } else if (strspn(hash_s, "0123456789") == strlen(hash_s)) {
+ if (port->bond_mode != BM_SLB) {
+ unixctl_command_reply(conn, 501, "not an SLB bond");
+ return;
+ }
+
+ if (strspn(hash_s, "0123456789") == strlen(hash_s)) {
hash = atoi(hash_s) & BOND_MASK;
} else {
unixctl_command_reply(conn, 501, "bad hash");
}
static void
-bond_unixctl_set_active_slave(struct unixctl_conn *conn, const char *args_)
+bond_unixctl_set_active_slave(struct unixctl_conn *conn, const char *args_,
+ void *aux OVS_UNUSED)
{
char *args = (char *) args_;
char *save_ptr = NULL;
}
static void
-bond_unixctl_enable_slave(struct unixctl_conn *conn, const char *args)
+bond_unixctl_enable_slave(struct unixctl_conn *conn, const char *args,
+ void *aux OVS_UNUSED)
{
enable_slave(conn, args, true);
}
static void
-bond_unixctl_disable_slave(struct unixctl_conn *conn, const char *args)
+bond_unixctl_disable_slave(struct unixctl_conn *conn, const char *args,
+ void *aux OVS_UNUSED)
{
enable_slave(conn, args, false);
}
+static void
+bond_unixctl_hash(struct unixctl_conn *conn, const char *args_,
+ void *aux OVS_UNUSED)
+{
+ char *args = (char *) args_;
+ uint8_t mac[ETH_ADDR_LEN];
+ uint8_t hash;
+ char *hash_cstr;
+ unsigned int vlan;
+ char *mac_s, *vlan_s;
+ char *save_ptr = NULL;
+
+ mac_s = strtok_r(args, " ", &save_ptr);
+ vlan_s = strtok_r(NULL, " ", &save_ptr);
+
+ if (vlan_s) {
+ if (sscanf(vlan_s, "%u", &vlan) != 1) {
+ unixctl_command_reply(conn, 501, "invalid vlan");
+ return;
+ }
+ } else {
+ vlan = OFP_VLAN_NONE;
+ }
+
+ if (sscanf(mac_s, ETH_ADDR_SCAN_FMT, ETH_ADDR_SCAN_ARGS(mac))
+ == ETH_ADDR_SCAN_COUNT) {
+ hash = bond_hash(mac, vlan);
+
+ hash_cstr = xasprintf("%u", hash);
+ unixctl_command_reply(conn, 200, hash_cstr);
+ free(hash_cstr);
+ } else {
+ unixctl_command_reply(conn, 501, "invalid mac");
+ }
+}
+
static void
bond_init(void)
{
- unixctl_command_register("bond/list", bond_unixctl_list);
- unixctl_command_register("bond/show", bond_unixctl_show);
- unixctl_command_register("bond/migrate", bond_unixctl_migrate);
+ unixctl_command_register("bond/list", bond_unixctl_list, NULL);
+ unixctl_command_register("bond/show", bond_unixctl_show, NULL);
+ unixctl_command_register("bond/migrate", bond_unixctl_migrate, NULL);
unixctl_command_register("bond/set-active-slave",
- bond_unixctl_set_active_slave);
- unixctl_command_register("bond/enable-slave", bond_unixctl_enable_slave);
- unixctl_command_register("bond/disable-slave", bond_unixctl_disable_slave);
+ bond_unixctl_set_active_slave, NULL);
+ unixctl_command_register("bond/enable-slave", bond_unixctl_enable_slave,
+ NULL);
+ unixctl_command_register("bond/disable-slave", bond_unixctl_disable_slave,
+ NULL);
+ unixctl_command_register("bond/hash", bond_unixctl_hash, NULL);
}
\f
/* Port functions. */
-static void
+static struct port *
port_create(struct bridge *br, const char *name)
{
struct port *port;
- port = xcalloc(1, sizeof *port);
+ port = xzalloc(sizeof *port);
port->bridge = br;
port->port_idx = br->n_ports;
port->vlan = -1;
port->trunks = NULL;
port->name = xstrdup(name);
port->active_iface = -1;
- port->stp_state = STP_DISABLED;
- port->stp_state_tag = 0;
if (br->n_ports >= br->allocated_ports) {
br->ports = x2nrealloc(br->ports, &br->allocated_ports,
sizeof *br->ports);
}
br->ports[br->n_ports++] = port;
+ shash_add_assert(&br->port_by_name, port->name, port);
VLOG_INFO("created port %s on bridge %s", port->name, br->name);
bridge_flush(br);
+
+ return port;
+}
+
+static const char *
+get_port_other_config(const struct ovsrec_port *port, const char *key,
+ const char *default_value)
+{
+ const char *value;
+
+ value = get_ovsrec_key_value(&port->header_, &ovsrec_port_col_other_config,
+ key);
+ return value ? value : default_value;
+}
+
+static void
+port_del_ifaces(struct port *port, const struct ovsrec_port *cfg)
+{
+ struct shash new_ifaces;
+ size_t i;
+
+ /* Collect list of new interfaces. */
+ shash_init(&new_ifaces);
+ for (i = 0; i < cfg->n_interfaces; i++) {
+ const char *name = cfg->interfaces[i]->name;
+ shash_add_once(&new_ifaces, name, NULL);
+ }
+
+ /* Get rid of deleted interfaces. */
+ for (i = 0; i < port->n_ifaces; ) {
+ if (!shash_find(&new_ifaces, cfg->interfaces[i]->name)) {
+ iface_destroy(port->ifaces[i]);
+ } else {
+ i++;
+ }
+ }
+
+ shash_destroy(&new_ifaces);
}
static void
-port_reconfigure(struct port *port)
+port_reconfigure(struct port *port, const struct ovsrec_port *cfg)
{
- bool bonded = cfg_has_section("bonding.%s", port->name);
- struct svec old_ifaces, new_ifaces;
+ const char *detect_mode;
+ struct shash new_ifaces;
+ long long int next_rebalance, miimon_next_update;
unsigned long *trunks;
int vlan;
size_t i;
- /* Collect old and new interfaces. */
- svec_init(&old_ifaces);
- svec_init(&new_ifaces);
- for (i = 0; i < port->n_ifaces; i++) {
- svec_add(&old_ifaces, port->ifaces[i]->name);
+ port->cfg = cfg;
+
+ /* Update settings. */
+ port->updelay = cfg->bond_updelay;
+ if (port->updelay < 0) {
+ port->updelay = 0;
+ }
+ port->downdelay = cfg->bond_downdelay;
+ if (port->downdelay < 0) {
+ port->downdelay = 0;
+ }
+ port->bond_rebalance_interval = atoi(
+ get_port_other_config(cfg, "bond-rebalance-interval", "10000"));
+ if (port->bond_rebalance_interval < 1000) {
+ port->bond_rebalance_interval = 1000;
+ }
+ next_rebalance = time_msec() + port->bond_rebalance_interval;
+ if (port->bond_next_rebalance > next_rebalance) {
+ port->bond_next_rebalance = next_rebalance;
}
- svec_sort(&old_ifaces);
- if (bonded) {
- cfg_get_all_keys(&new_ifaces, "bonding.%s.slave", port->name);
- if (!new_ifaces.n) {
- VLOG_ERR("port %s: no interfaces specified for bonded port",
- port->name);
- } else if (new_ifaces.n == 1) {
- VLOG_WARN("port %s: only 1 interface specified for bonded port",
- port->name);
- }
- port->updelay = cfg_get_int(0, "bonding.%s.updelay", port->name);
- if (port->updelay < 0) {
- port->updelay = 0;
- }
- port->downdelay = cfg_get_int(0, "bonding.%s.downdelay", port->name);
- if (port->downdelay < 0) {
- port->downdelay = 0;
- }
+ detect_mode = get_port_other_config(cfg, "bond-detect-mode",
+ "carrier");
+
+ if (!strcmp(detect_mode, "carrier")) {
+ port->miimon = false;
+ } else if (!strcmp(detect_mode, "miimon")) {
+ port->miimon = true;
} else {
- svec_init(&new_ifaces);
- svec_add(&new_ifaces, port->name);
+ port->miimon = false;
+ VLOG_WARN("port %s: unsupported bond-detect-mode %s, defaulting to "
+ "carrier", port->name, detect_mode);
}
- /* Get rid of deleted interfaces and add new interfaces. */
- for (i = 0; i < port->n_ifaces; i++) {
- struct iface *iface = port->ifaces[i];
- if (!svec_contains(&new_ifaces, iface->name)) {
- iface_destroy(iface);
- } else {
- i++;
- }
+ port->bond_miimon_interval = atoi(
+ get_port_other_config(cfg, "bond-miimon-interval", "200"));
+ if (port->bond_miimon_interval < 100) {
+ port->bond_miimon_interval = 100;
}
- for (i = 0; i < new_ifaces.n; i++) {
- const char *name = new_ifaces.names[i];
- if (!svec_contains(&old_ifaces, name)) {
- iface_create(port, name);
+ miimon_next_update = time_msec() + port->bond_miimon_interval;
+ if (port->bond_miimon_next_update > miimon_next_update) {
+ port->bond_miimon_next_update = miimon_next_update;
+ }
+
+ if (!port->cfg->bond_mode ||
+ !strcmp(port->cfg->bond_mode, bond_mode_to_string(BM_SLB))) {
+ port->bond_mode = BM_SLB;
+ } else if (!strcmp(port->cfg->bond_mode, bond_mode_to_string(BM_AB))) {
+ port->bond_mode = BM_AB;
+ } else {
+ port->bond_mode = BM_SLB;
+ VLOG_WARN("port %s: unknown bond_mode %s, defaulting to %s",
+ port->name, port->cfg->bond_mode,
+ bond_mode_to_string(port->bond_mode));
+ }
+
+ /* Add new interfaces and update 'cfg' member of existing ones. */
+ shash_init(&new_ifaces);
+ for (i = 0; i < cfg->n_interfaces; i++) {
+ const struct ovsrec_interface *if_cfg = cfg->interfaces[i];
+ struct iface *iface;
+
+ if (!shash_add_once(&new_ifaces, if_cfg->name, NULL)) {
+ VLOG_WARN("port %s: %s specified twice as port interface",
+ port->name, if_cfg->name);
+ iface_set_ofport(if_cfg, -1);
+ continue;
+ }
+
+ iface = iface_lookup(port->bridge, if_cfg->name);
+ if (iface) {
+ if (iface->port != port) {
+ VLOG_ERR("bridge %s: %s interface is on multiple ports, "
+ "removing from %s",
+ port->bridge->name, if_cfg->name, iface->port->name);
+ continue;
+ }
+ iface->cfg = if_cfg;
+ } else {
+ iface = iface_create(port, if_cfg);
}
+
+ /* Determine interface type. The local port always has type
+ * "internal". Other ports take their type from the database and
+ * default to "system" if none is specified. */
+ iface->type = (!strcmp(if_cfg->name, port->bridge->name) ? "internal"
+ : if_cfg->type[0] ? if_cfg->type
+ : "system");
}
+ shash_destroy(&new_ifaces);
/* Get VLAN tag. */
vlan = -1;
- if (cfg_has("vlan.%s.tag", port->name)) {
- if (!bonded) {
- vlan = cfg_get_vlan(0, "vlan.%s.tag", port->name);
+ if (cfg->tag) {
+ if (port->n_ifaces < 2) {
+ vlan = *cfg->tag;
if (vlan >= 0 && vlan <= 4095) {
VLOG_DBG("port %s: assigning VLAN tag %d", port->name, vlan);
+ } else {
+ vlan = -1;
}
} else {
/* It's possible that bonded, VLAN-tagged ports make sense. Maybe
/* Get trunked VLANs. */
trunks = NULL;
- if (vlan < 0) {
- size_t n_trunks, n_errors;
- size_t i;
+ if (vlan < 0 && cfg->n_trunks) {
+ size_t n_errors;
trunks = bitmap_allocate(4096);
- n_trunks = cfg_count("vlan.%s.trunks", port->name);
n_errors = 0;
- for (i = 0; i < n_trunks; i++) {
- int trunk = cfg_get_vlan(i, "vlan.%s.trunks", port->name);
+ for (i = 0; i < cfg->n_trunks; i++) {
+ int trunk = cfg->trunks[i];
if (trunk >= 0) {
bitmap_set1(trunks, trunk);
} else {
}
if (n_errors) {
VLOG_ERR("port %s: invalid values for %zu trunk VLANs",
- port->name, n_trunks);
- }
- if (n_errors == n_trunks) {
- if (n_errors) {
- VLOG_ERR("port %s: no valid trunks, trunking all VLANs",
- port->name);
- }
- bitmap_set_multiple(trunks, 0, 4096, 1);
+ port->name, cfg->n_trunks);
}
- } else {
- if (cfg_has("vlan.%s.trunks", port->name)) {
- VLOG_ERR("ignoring vlan.%s.trunks in favor of vlan.%s.vlan",
- port->name, port->name);
+ if (n_errors == cfg->n_trunks) {
+ VLOG_ERR("port %s: no valid trunks, trunking all VLANs",
+ port->name);
+ bitmap_free(trunks);
+ trunks = NULL;
}
+ } else if (vlan >= 0 && cfg->n_trunks) {
+ VLOG_ERR("port %s: ignoring trunks in favor of implicit vlan",
+ port->name);
}
if (trunks == NULL
? port->trunks != NULL
}
bitmap_free(port->trunks);
port->trunks = trunks;
-
- svec_destroy(&old_ifaces);
- svec_destroy(&new_ifaces);
}
static void
if (port) {
struct bridge *br = port->bridge;
struct port *del;
- size_t i;
+ int i;
proc_net_compat_update_vlan(port->name, NULL, 0);
proc_net_compat_update_bond(port->name, NULL);
iface_destroy(port->ifaces[port->n_ifaces - 1]);
}
+ shash_find_and_delete_assert(&br->port_by_name, port->name);
+
del = br->ports[port->port_idx] = br->ports[--br->n_ports];
del->port_idx = port->port_idx;
+ VLOG_INFO("destroyed port %s on bridge %s", port->name, br->name);
+
+ netdev_monitor_destroy(port->monitor);
free(port->ifaces);
bitmap_free(port->trunks);
free(port->name);
static struct port *
port_lookup(const struct bridge *br, const char *name)
{
- size_t i;
-
- for (i = 0; i < br->n_ports; i++) {
- struct port *port = br->ports[i];
- if (!strcmp(port->name, name)) {
- return port;
- }
- }
- return NULL;
-}
-
-static struct iface *
-port_lookup_iface(const struct port *port, const char *name)
-{
- size_t j;
-
- for (j = 0; j < port->n_ifaces; j++) {
- struct iface *iface = port->ifaces[j];
- if (!strcmp(iface->name, name)) {
- return iface;
- }
- }
- return NULL;
+ return shash_find_data(&br->port_by_name, name);
+}
+
+static struct iface *
+port_lookup_iface(const struct port *port, const char *name)
+{
+ struct iface *iface = iface_lookup(port->bridge, name);
+ return iface && iface->port == port ? iface : NULL;
}
static void
port_update_bonding(struct port *port)
{
+ if (port->monitor) {
+ netdev_monitor_destroy(port->monitor);
+ port->monitor = NULL;
+ }
if (port->n_ifaces < 2) {
/* Not a bonded port. */
if (port->bond_hash) {
port->bond_hash = NULL;
port->bond_compat_is_stale = true;
}
+
+ port->bond_fake_iface = false;
} else {
- if (!port->bond_hash) {
- size_t i;
+ size_t i;
+ if (port->bond_mode == BM_SLB && !port->bond_hash) {
port->bond_hash = xcalloc(BOND_MASK + 1, sizeof *port->bond_hash);
for (i = 0; i <= BOND_MASK; i++) {
struct bond_entry *e = &port->bond_hash[i];
}
port->no_ifaces_tag = tag_create_random();
bond_choose_active_iface(port);
+ port->bond_next_rebalance
+ = time_msec() + port->bond_rebalance_interval;
+
+ if (port->cfg->bond_fake_iface) {
+ port->bond_next_fake_iface_update = time_msec();
+ }
+ } else if (port->bond_mode != BM_SLB) {
+ free(port->bond_hash);
+ port->bond_hash = NULL;
}
port->bond_compat_is_stale = true;
+ port->bond_fake_iface = port->cfg->bond_fake_iface;
+
+ if (!port->miimon) {
+ port->monitor = netdev_monitor_create();
+ for (i = 0; i < port->n_ifaces; i++) {
+ netdev_monitor_add(port->monitor, port->ifaces[i]->netdev);
+ }
+ }
}
}
struct compat_bond bond;
size_t i;
- if (port->n_ifaces < 2) {
+ if (port->n_ifaces < 2 || port->bond_mode != BM_SLB) {
proc_net_compat_update_bond(port->name, NULL);
return;
}
/* We need to make the same determination as the Linux bonding
* code to determine whether a slave should be consider "up".
- * The Linux function bond_miimon_inspect() supports four
+ * The Linux function bond_miimon_inspect() supports four
* BOND_LINK_* states:
- *
+ *
* - BOND_LINK_UP: carrier detected, updelay has passed.
* - BOND_LINK_FAIL: carrier lost, downdelay in progress.
* - BOND_LINK_DOWN: carrier lost, downdelay has passed.
* - BOND_LINK_BACK: carrier detected, updelay in progress.
*
- * The function bond_info_show_slave() only considers BOND_LINK_UP
+ * The function bond_info_show_slave() only considers BOND_LINK_UP
* to be "up" and anything else to be "down".
*/
slave->up = iface->enabled && iface->delay_expires == LLONG_MAX;
if (slave->up) {
bond.up = true;
}
- memcpy(slave->mac, iface->mac, ETH_ADDR_LEN);
+ netdev_get_etheraddr(iface->netdev, slave->mac);
}
- if (cfg_get_bool(0, "bonding.%s.fake-iface", port->name)) {
+ if (port->bond_fake_iface) {
struct netdev *bond_netdev;
- if (!netdev_open(port->name, NETDEV_ETH_TYPE_NONE, &bond_netdev)) {
+ if (!netdev_open_default(port->name, &bond_netdev)) {
if (bond.up) {
netdev_turn_flags_on(bond_netdev, NETDEV_UP, true);
} else {
&& p->n_ifaces
&& (!vlandev_name || strcmp(p->name, vlandev_name) <= 0))
{
- const uint8_t *ea = p->ifaces[0]->mac;
+ uint8_t ea[ETH_ADDR_LEN];
+ netdev_get_etheraddr(p->ifaces[0]->netdev, ea);
if (!eth_addr_is_multicast(ea) &&
!eth_addr_is_reserved(ea) &&
!eth_addr_is_zero(ea)) {
/* Interface functions. */
static void
-iface_create(struct port *port, const char *name)
+iface_send_packet(struct iface *iface, struct ofpbuf *packet)
+{
+ struct flow flow;
+ union ofp_action action;
+
+ memset(&action, 0, sizeof action);
+ action.output.type = htons(OFPAT_OUTPUT);
+ action.output.len = htons(sizeof action);
+ action.output.port = htons(odp_port_to_ofp_port(iface->dp_ifidx));
+
+ flow_extract(packet, 0, ODPP_NONE, &flow);
+
+ if (ofproto_send_packet(iface->port->bridge->ofproto, &flow, &action, 1,
+ packet)) {
+ static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
+ VLOG_WARN_RL(&rl, "interface %s: Failed to send packet.", iface->name);
+ }
+}
+
+static struct iface *
+iface_create(struct port *port, const struct ovsrec_interface *if_cfg)
{
+ struct bridge *br = port->bridge;
struct iface *iface;
+ char *name = if_cfg->name;
- iface = xcalloc(1, sizeof *iface);
+ iface = xzalloc(sizeof *iface);
iface->port = port;
iface->port_ifidx = port->n_ifaces;
iface->name = xstrdup(name);
iface->dp_ifidx = -1;
iface->tag = tag_create_random();
iface->delay_expires = LLONG_MAX;
+ iface->netdev = NULL;
+ iface->cfg = if_cfg;
- if (!cfg_get_bool(0, "iface.%s.internal", iface->name)) {
- netdev_nodev_get_etheraddr(name, iface->mac);
- netdev_nodev_get_carrier(name, &iface->enabled);
- } else {
- /* Internal interfaces are created later by the call to dpif_port_add()
- * in bridge_reconfigure(). Until then, we can't obtain any
- * information about them. (There's no real value in doing so, anyway,
- * because the 'mac' and 'enabled' values are only used for interfaces
- * that are bond slaves, and it doesn't normally make sense to bond an
- * internal interface.) */
- }
+ shash_add_assert(&br->iface_by_name, iface->name, iface);
if (port->n_ifaces >= port->allocated_ifaces) {
port->ifaces = x2nrealloc(port->ifaces, &port->allocated_ifaces,
}
port->ifaces[port->n_ifaces++] = iface;
if (port->n_ifaces > 1) {
- port->bridge->has_bonded_ports = true;
+ br->has_bonded_ports = true;
}
VLOG_DBG("attached network device %s to port %s", iface->name, port->name);
- port_update_bonding(port);
- bridge_flush(port->bridge);
+ bridge_flush(br);
+
+ return iface;
}
static void
bool del_active = port->active_iface == iface->port_ifidx;
struct iface *del;
+ if (port->monitor) {
+ netdev_monitor_remove(port->monitor, iface->netdev);
+ }
+
+ shash_find_and_delete_assert(&br->iface_by_name, iface->name);
+
if (iface->dp_ifidx >= 0) {
- port_array_set(&br->ifaces, iface->dp_ifidx, NULL);
+ hmap_remove(&br->ifaces, &iface->dp_ifidx_node);
}
del = port->ifaces[iface->port_ifidx] = port->ifaces[--port->n_ifaces];
del->port_ifidx = iface->port_ifidx;
- free(iface->name);
- free(iface);
+ netdev_close(iface->netdev);
if (del_active) {
ofproto_revalidate(port->bridge->ofproto, port->active_iface_tag);
bond_send_learning_packets(port);
}
- port_update_bonding(port);
+ cfm_destroy(iface->cfm);
+
+ free(iface->name);
+ free(iface);
+
bridge_flush(port->bridge);
}
}
static struct iface *
iface_lookup(const struct bridge *br, const char *name)
{
- size_t i, j;
-
- for (i = 0; i < br->n_ports; i++) {
- struct port *port = br->ports[i];
- for (j = 0; j < port->n_ifaces; j++) {
- struct iface *iface = port->ifaces[j];
- if (!strcmp(iface->name, name)) {
- return iface;
- }
- }
- }
- return NULL;
+ return shash_find_data(&br->iface_by_name, name);
}
static struct iface *
iface_from_dp_ifidx(const struct bridge *br, uint16_t dp_ifidx)
{
- return port_array_get(&br->ifaces, dp_ifidx);
-}
-
-/* Returns true if 'iface' is the name of an "internal" interface on bridge
- * 'br', that is, an interface that is entirely simulated within the datapath.
- * The local port (ODPP_LOCAL) is always an internal interface. Other local
- * interfaces are created by setting "iface.<iface>.internal = true".
- *
- * In addition, we have a kluge-y feature that creates an internal port with
- * the name of a bonded port if "bonding.<bondname>.fake-iface = true" is set.
- * This feature needs to go away in the long term. Until then, this is one
- * reason why this function takes a name instead of a struct iface: the fake
- * interfaces created this way do not have a struct iface. */
-static bool
-iface_is_internal(const struct bridge *br, const char *iface)
-{
- if (!strcmp(iface, br->name)
- || cfg_get_bool(0, "iface.%s.internal", iface)) {
- return true;
- }
+ struct iface *iface;
- if (cfg_get_bool(0, "bonding.%s.fake-iface", iface)) {
- struct port *port = port_lookup(br, iface);
- if (port && port->n_ifaces > 1) {
- return true;
+ HMAP_FOR_EACH_IN_BUCKET (iface, dp_ifidx_node,
+ hash_int(dp_ifidx, 0), &br->ifaces) {
+ if (iface->dp_ifidx == dp_ifidx) {
+ return iface;
}
}
-
- return false;
+ return NULL;
}
/* Set Ethernet address of 'iface', if one is specified in the configuration
static void
iface_set_mac(struct iface *iface)
{
- uint64_t mac = cfg_get_mac(0, "iface.%s.mac", iface->name);
- if (mac) {
- static uint8_t ea[ETH_ADDR_LEN];
+ uint8_t ea[ETH_ADDR_LEN];
- eth_addr_from_uint64(mac, ea);
+ if (iface->cfg->mac && eth_addr_from_string(iface->cfg->mac, ea)) {
if (eth_addr_is_multicast(ea)) {
VLOG_ERR("interface %s: cannot set MAC to multicast address",
iface->name);
VLOG_ERR("ignoring iface.%s.mac; use bridge.%s.mac instead",
iface->name, iface->name);
} else {
- int error = netdev_nodev_set_etheraddr(iface->name, ea);
+ int error = netdev_set_etheraddr(iface->netdev, ea);
if (error) {
VLOG_ERR("interface %s: setting MAC failed (%s)",
iface->name, strerror(error));
}
}
}
-\f
-/* Port mirroring. */
+/* Sets the ofport column of 'if_cfg' to 'ofport'. */
static void
-mirror_reconfigure(struct bridge *br)
+iface_set_ofport(const struct ovsrec_interface *if_cfg, int64_t ofport)
{
- struct svec old_mirrors, new_mirrors;
- size_t i, n_rspan_vlans;
- unsigned long *rspan_vlans;
+ if (if_cfg) {
+ ovsrec_interface_set_ofport(if_cfg, &ofport, 1);
+ }
+}
- /* Collect old and new mirrors. */
- svec_init(&old_mirrors);
- svec_init(&new_mirrors);
- cfg_get_subsections(&new_mirrors, "mirror.%s", br->name);
- for (i = 0; i < MAX_MIRRORS; i++) {
- if (br->mirrors[i]) {
- svec_add(&old_mirrors, br->mirrors[i]->name);
+/* Adds the 'n' key-value pairs in 'keys' in 'values' to 'shash'.
+ *
+ * The value strings in '*shash' are taken directly from values[], not copied,
+ * so the caller should not modify or free them. */
+static void
+shash_from_ovs_idl_map(char **keys, char **values, size_t n,
+ struct shash *shash)
+{
+ size_t i;
+
+ shash_init(shash);
+ for (i = 0; i < n; i++) {
+ shash_add(shash, keys[i], values[i]);
+ }
+}
+
+/* Creates 'keys' and 'values' arrays from 'shash'.
+ *
+ * Sets 'keys' and 'values' to heap allocated arrays representing the key-value
+ * pairs in 'shash'. The caller takes ownership of 'keys' and 'values'. They
+ * are populated with with strings taken directly from 'shash' and thus have
+ * the same ownership of the key-value pairs in shash.
+ */
+static void
+shash_to_ovs_idl_map(struct shash *shash,
+ char ***keys, char ***values, size_t *n)
+{
+ size_t i, count;
+ char **k, **v;
+ struct shash_node *sn;
+
+ count = shash_count(shash);
+
+ k = xmalloc(count * sizeof *k);
+ v = xmalloc(count * sizeof *v);
+
+ i = 0;
+ SHASH_FOR_EACH(sn, shash) {
+ k[i] = sn->name;
+ v[i] = sn->data;
+ i++;
+ }
+
+ *n = count;
+ *keys = k;
+ *values = v;
+}
+
+struct iface_delete_queues_cbdata {
+ struct netdev *netdev;
+ const struct ovsdb_datum *queues;
+};
+
+static bool
+queue_ids_include(const struct ovsdb_datum *queues, int64_t target)
+{
+ union ovsdb_atom atom;
+
+ atom.integer = target;
+ return ovsdb_datum_find_key(queues, &atom, OVSDB_TYPE_INTEGER) != UINT_MAX;
+}
+
+static void
+iface_delete_queues(unsigned int queue_id,
+ const struct shash *details OVS_UNUSED, void *cbdata_)
+{
+ struct iface_delete_queues_cbdata *cbdata = cbdata_;
+
+ if (!queue_ids_include(cbdata->queues, queue_id)) {
+ netdev_delete_queue(cbdata->netdev, queue_id);
+ }
+}
+
+static void
+iface_update_qos(struct iface *iface, const struct ovsrec_qos *qos)
+{
+ if (!qos || qos->type[0] == '\0') {
+ netdev_set_qos(iface->netdev, NULL, NULL);
+ } else {
+ struct iface_delete_queues_cbdata cbdata;
+ struct shash details;
+ size_t i;
+
+ /* Configure top-level Qos for 'iface'. */
+ shash_from_ovs_idl_map(qos->key_other_config, qos->value_other_config,
+ qos->n_other_config, &details);
+ netdev_set_qos(iface->netdev, qos->type, &details);
+ shash_destroy(&details);
+
+ /* Deconfigure queues that were deleted. */
+ cbdata.netdev = iface->netdev;
+ cbdata.queues = ovsrec_qos_get_queues(qos, OVSDB_TYPE_INTEGER,
+ OVSDB_TYPE_UUID);
+ netdev_dump_queues(iface->netdev, iface_delete_queues, &cbdata);
+
+ /* Configure queues for 'iface'. */
+ for (i = 0; i < qos->n_queues; i++) {
+ const struct ovsrec_queue *queue = qos->value_queues[i];
+ unsigned int queue_id = qos->key_queues[i];
+
+ shash_from_ovs_idl_map(queue->key_other_config,
+ queue->value_other_config,
+ queue->n_other_config, &details);
+ netdev_set_queue(iface->netdev, queue_id, &details);
+ shash_destroy(&details);
}
}
+}
+
+static void
+iface_update_cfm(struct iface *iface)
+{
+ size_t i;
+ struct cfm *cfm;
+ uint16_t *remote_mps;
+ struct ovsrec_monitor *mon;
+ uint8_t ea[ETH_ADDR_LEN], maid[CCM_MAID_LEN];
+
+ mon = iface->cfg->monitor;
+
+ if (!mon) {
+ return;
+ }
+
+ if (netdev_get_etheraddr(iface->netdev, ea)) {
+ VLOG_WARN("interface %s: Failed to get ethernet address. "
+ "Skipping Monitor.", iface->name);
+ return;
+ }
+
+ if (!cfm_generate_maid(mon->md_name, mon->ma_name, maid)) {
+ VLOG_WARN("interface %s: Failed to generate MAID.", iface->name);
+ return;
+ }
+
+ if (!iface->cfm) {
+ iface->cfm = cfm_create();
+ }
+
+ cfm = iface->cfm;
+ cfm->mpid = mon->mpid;
+ cfm->interval = mon->interval ? *mon->interval : 1000;
+
+ memcpy(cfm->eth_src, ea, sizeof cfm->eth_src);
+ memcpy(cfm->maid, maid, sizeof cfm->maid);
+
+ remote_mps = xzalloc(mon->n_remote_mps * sizeof *remote_mps);
+ for(i = 0; i < mon->n_remote_mps; i++) {
+ remote_mps[i] = mon->remote_mps[i]->mpid;
+ }
+ cfm_update_remote_mps(cfm, remote_mps, mon->n_remote_mps);
+ free(remote_mps);
+
+ if (!cfm_configure(iface->cfm)) {
+ cfm_destroy(iface->cfm);
+ iface->cfm = NULL;
+ }
+}
+\f
+/* Port mirroring. */
+
+static struct mirror *
+mirror_find_by_uuid(struct bridge *br, const struct uuid *uuid)
+{
+ int i;
- /* Get rid of deleted mirrors and add new mirrors. */
- svec_sort(&old_mirrors);
- assert(svec_is_unique(&old_mirrors));
- svec_sort(&new_mirrors);
- assert(svec_is_unique(&new_mirrors));
for (i = 0; i < MAX_MIRRORS; i++) {
struct mirror *m = br->mirrors[i];
- if (m && !svec_contains(&new_mirrors, m->name)) {
- mirror_destroy(m);
+ if (m && uuid_equals(uuid, &m->uuid)) {
+ return m;
}
}
- for (i = 0; i < new_mirrors.n; i++) {
- const char *name = new_mirrors.names[i];
- if (!svec_contains(&old_mirrors, name)) {
- mirror_create(br, name);
+ return NULL;
+}
+
+static void
+mirror_reconfigure(struct bridge *br)
+{
+ unsigned long *rspan_vlans;
+ int i;
+
+ /* Get rid of deleted mirrors. */
+ for (i = 0; i < MAX_MIRRORS; i++) {
+ struct mirror *m = br->mirrors[i];
+ if (m) {
+ const struct ovsdb_datum *mc;
+ union ovsdb_atom atom;
+
+ mc = ovsrec_bridge_get_mirrors(br->cfg, OVSDB_TYPE_UUID);
+ atom.uuid = br->mirrors[i]->uuid;
+ if (ovsdb_datum_find_key(mc, &atom, OVSDB_TYPE_UUID) == UINT_MAX) {
+ mirror_destroy(m);
+ }
}
}
- svec_destroy(&old_mirrors);
- svec_destroy(&new_mirrors);
- /* Reconfigure all mirrors. */
- for (i = 0; i < MAX_MIRRORS; i++) {
- if (br->mirrors[i]) {
- mirror_reconfigure_one(br->mirrors[i]);
+ /* Add new mirrors and reconfigure existing ones. */
+ for (i = 0; i < br->cfg->n_mirrors; i++) {
+ struct ovsrec_mirror *cfg = br->cfg->mirrors[i];
+ struct mirror *m = mirror_find_by_uuid(br, &cfg->header_.uuid);
+ if (m) {
+ mirror_reconfigure_one(m, cfg);
+ } else {
+ mirror_create(br, cfg);
}
}
}
}
- /* Update learning disabled vlans (for RSPAN). */
+ /* Update flooded vlans (for RSPAN). */
rspan_vlans = NULL;
- n_rspan_vlans = cfg_count("vlan.%s.disable-learning", br->name);
- if (n_rspan_vlans) {
+ if (br->cfg->n_flood_vlans) {
rspan_vlans = bitmap_allocate(4096);
- for (i = 0; i < n_rspan_vlans; i++) {
- int vlan = cfg_get_vlan(i, "vlan.%s.disable-learning", br->name);
- if (vlan >= 0) {
+ for (i = 0; i < br->cfg->n_flood_vlans; i++) {
+ int64_t vlan = br->cfg->flood_vlans[i];
+ if (vlan >= 0 && vlan < 4096) {
bitmap_set1(rspan_vlans, vlan);
+ VLOG_INFO("bridge %s: disabling learning on vlan %"PRId64,
+ br->name, vlan);
} else {
- VLOG_ERR("bridge %s: invalid value '%s' for learning disabled "
- "VLAN", br->name,
- cfg_get_string(i, "vlan.%s.disable-learning", br->name));
+ VLOG_ERR("bridge %s: invalid value %"PRId64 "for flood VLAN",
+ br->name, vlan);
}
}
}
- if (mac_learning_set_disabled_vlans(br->ml, rspan_vlans)) {
+ if (mac_learning_set_flood_vlans(br->ml, rspan_vlans)) {
bridge_flush(br);
}
}
static void
-mirror_create(struct bridge *br, const char *name)
+mirror_create(struct bridge *br, struct ovsrec_mirror *cfg)
{
struct mirror *m;
size_t i;
for (i = 0; ; i++) {
if (i >= MAX_MIRRORS) {
VLOG_WARN("bridge %s: maximum of %d port mirrors reached, "
- "cannot create %s", br->name, MAX_MIRRORS, name);
+ "cannot create %s", br->name, MAX_MIRRORS, cfg->name);
return;
}
if (!br->mirrors[i]) {
}
}
- VLOG_INFO("created port mirror %s on bridge %s", name, br->name);
+ VLOG_INFO("created port mirror %s on bridge %s", cfg->name, br->name);
bridge_flush(br);
- br->mirrors[i] = m = xcalloc(1, sizeof *m);
+ br->mirrors[i] = m = xzalloc(sizeof *m);
m->bridge = br;
m->idx = i;
- m->name = xstrdup(name);
- svec_init(&m->src_ports);
- svec_init(&m->dst_ports);
+ m->name = xstrdup(cfg->name);
+ shash_init(&m->src_ports);
+ shash_init(&m->dst_ports);
m->vlans = NULL;
m->n_vlans = 0;
m->out_vlan = -1;
m->out_port = NULL;
+
+ mirror_reconfigure_one(m, cfg);
}
static void
br->ports[i]->dst_mirrors &= ~(MIRROR_MASK_C(1) << m->idx);
}
- svec_destroy(&m->src_ports);
- svec_destroy(&m->dst_ports);
+ shash_destroy(&m->src_ports);
+ shash_destroy(&m->dst_ports);
free(m->vlans);
m->bridge->mirrors[m->idx] = NULL;
+ free(m->name);
free(m);
bridge_flush(br);
}
static void
-prune_ports(struct mirror *m, struct svec *ports)
+mirror_collect_ports(struct mirror *m, struct ovsrec_port **ports, int n_ports,
+ struct shash *names)
{
- struct svec tmp;
size_t i;
- svec_sort_unique(ports);
-
- svec_init(&tmp);
- for (i = 0; i < ports->n; i++) {
- const char *name = ports->names[i];
+ for (i = 0; i < n_ports; i++) {
+ const char *name = ports[i]->name;
if (port_lookup(m->bridge, name)) {
- svec_add(&tmp, name);
+ shash_add_once(names, name, NULL);
} else {
- VLOG_WARN("mirror.%s.%s: cannot match on nonexistent port %s",
- m->bridge->name, m->name, name);
+ VLOG_WARN("bridge %s: mirror %s cannot match on nonexistent "
+ "port %s", m->bridge->name, m->name, name);
}
}
- svec_swap(ports, &tmp);
- svec_destroy(&tmp);
}
static size_t
-prune_vlans(struct mirror *m, struct svec *vlan_strings, int **vlans)
+mirror_collect_vlans(struct mirror *m, const struct ovsrec_mirror *cfg,
+ int **vlans)
{
- size_t n_vlans, i;
-
- /* This isn't perfect: it won't combine "0" and "00", and the textual sort
- * order won't give us numeric sort order. But that's good enough for what
- * we need right now. */
- svec_sort_unique(vlan_strings);
+ size_t n_vlans;
+ size_t i;
- *vlans = xmalloc(sizeof *vlans * vlan_strings->n);
+ *vlans = xmalloc(sizeof **vlans * cfg->n_select_vlan);
n_vlans = 0;
- for (i = 0; i < vlan_strings->n; i++) {
- const char *name = vlan_strings->names[i];
- int vlan;
- if (!str_to_int(name, 10, &vlan) || vlan < 0 || vlan > 4095) {
- VLOG_WARN("mirror.%s.%s.select.vlan: ignoring invalid VLAN %s",
- m->bridge->name, m->name, name);
+ for (i = 0; i < cfg->n_select_vlan; i++) {
+ int64_t vlan = cfg->select_vlan[i];
+ if (vlan < 0 || vlan > 4095) {
+ VLOG_WARN("bridge %s: mirror %s selects invalid VLAN %"PRId64,
+ m->bridge->name, m->name, vlan);
} else {
(*vlans)[n_vlans++] = vlan;
}
}
static void
-mirror_reconfigure_one(struct mirror *m)
+mirror_reconfigure_one(struct mirror *m, struct ovsrec_mirror *cfg)
{
- char *pfx = xasprintf("mirror.%s.%s", m->bridge->name, m->name);
- struct svec src_ports, dst_ports, ports;
- struct svec vlan_strings;
+ struct shash src_ports, dst_ports;
mirror_mask_t mirror_bit;
- const char *out_port_name;
struct port *out_port;
int out_vlan;
size_t n_vlans;
int *vlans;
size_t i;
- bool mirror_all_ports;
- bool any_ports_specified;
+
+ /* Set name. */
+ if (strcmp(cfg->name, m->name)) {
+ free(m->name);
+ m->name = xstrdup(cfg->name);
+ }
/* Get output port. */
- out_port_name = cfg_get_key(0, "mirror.%s.%s.output.port",
- m->bridge->name, m->name);
- if (out_port_name) {
- out_port = port_lookup(m->bridge, out_port_name);
+ if (cfg->output_port) {
+ out_port = port_lookup(m->bridge, cfg->output_port->name);
if (!out_port) {
- VLOG_ERR("%s.output.port: bridge %s does not have a port "
- "named %s", pfx, m->bridge->name, out_port_name);
+ VLOG_ERR("bridge %s: mirror %s outputs to port not on bridge",
+ m->bridge->name, m->name);
mirror_destroy(m);
- free(pfx);
return;
}
out_vlan = -1;
- if (cfg_has("%s.output.vlan", pfx)) {
- VLOG_ERR("%s.output.port and %s.output.vlan both specified; "
- "ignoring %s.output.vlan", pfx, pfx, pfx);
+ if (cfg->output_vlan) {
+ VLOG_ERR("bridge %s: mirror %s specifies both output port and "
+ "output vlan; ignoring output vlan",
+ m->bridge->name, m->name);
}
- } else if (cfg_has("%s.output.vlan", pfx)) {
+ } else if (cfg->output_vlan) {
out_port = NULL;
- out_vlan = cfg_get_vlan(0, "%s.output.vlan", pfx);
+ out_vlan = *cfg->output_vlan;
} else {
- VLOG_ERR("%s: neither %s.output.port nor %s.output.vlan specified, "
- "but exactly one is required; disabling port mirror %s",
- pfx, pfx, pfx, pfx);
+ VLOG_ERR("bridge %s: mirror %s does not specify output; ignoring",
+ m->bridge->name, m->name);
mirror_destroy(m);
- free(pfx);
return;
}
- /* Get all the ports, and drop duplicates and ports that don't exist. */
- svec_init(&src_ports);
- svec_init(&dst_ports);
- svec_init(&ports);
- cfg_get_all_keys(&src_ports, "%s.select.src-port", pfx);
- cfg_get_all_keys(&dst_ports, "%s.select.dst-port", pfx);
- cfg_get_all_keys(&ports, "%s.select.port", pfx);
- any_ports_specified = src_ports.n || dst_ports.n || ports.n;
- svec_append(&src_ports, &ports);
- svec_append(&dst_ports, &ports);
- svec_destroy(&ports);
- prune_ports(m, &src_ports);
- prune_ports(m, &dst_ports);
- if (any_ports_specified && !src_ports.n && !dst_ports.n) {
- VLOG_ERR("%s: none of the specified ports exist; "
- "disabling port mirror %s", pfx, pfx);
- mirror_destroy(m);
- goto exit;
- }
+ shash_init(&src_ports);
+ shash_init(&dst_ports);
+ if (cfg->select_all) {
+ for (i = 0; i < m->bridge->n_ports; i++) {
+ const char *name = m->bridge->ports[i]->name;
+ shash_add_once(&src_ports, name, NULL);
+ shash_add_once(&dst_ports, name, NULL);
+ }
+ vlans = NULL;
+ n_vlans = 0;
+ } else {
+ /* Get ports, and drop duplicates and ports that don't exist. */
+ mirror_collect_ports(m, cfg->select_src_port, cfg->n_select_src_port,
+ &src_ports);
+ mirror_collect_ports(m, cfg->select_dst_port, cfg->n_select_dst_port,
+ &dst_ports);
- /* Get all the vlans, and drop duplicate and invalid vlans. */
- svec_init(&vlan_strings);
- cfg_get_all_keys(&vlan_strings, "%s.select.vlan", pfx);
- n_vlans = prune_vlans(m, &vlan_strings, &vlans);
- svec_destroy(&vlan_strings);
+ /* Get all the vlans, and drop duplicate and invalid vlans. */
+ n_vlans = mirror_collect_vlans(m, cfg, &vlans);
+ }
/* Update mirror data. */
- if (!svec_equal(&m->src_ports, &src_ports)
- || !svec_equal(&m->dst_ports, &dst_ports)
+ if (!shash_equal_keys(&m->src_ports, &src_ports)
+ || !shash_equal_keys(&m->dst_ports, &dst_ports)
|| m->n_vlans != n_vlans
|| memcmp(m->vlans, vlans, sizeof *vlans * n_vlans)
|| m->out_port != out_port
|| m->out_vlan != out_vlan) {
bridge_flush(m->bridge);
}
- svec_swap(&m->src_ports, &src_ports);
- svec_swap(&m->dst_ports, &dst_ports);
+ shash_swap(&m->src_ports, &src_ports);
+ shash_swap(&m->dst_ports, &dst_ports);
free(m->vlans);
m->vlans = vlans;
m->n_vlans = n_vlans;
m->out_port = out_port;
m->out_vlan = out_vlan;
- /* If no selection criteria have been given, mirror for all ports. */
- mirror_all_ports = (!m->src_ports.n) && (!m->dst_ports.n) && (!m->n_vlans);
-
/* Update ports. */
mirror_bit = MIRROR_MASK_C(1) << m->idx;
for (i = 0; i < m->bridge->n_ports; i++) {
struct port *port = m->bridge->ports[i];
- if (mirror_all_ports
- || svec_contains(&m->src_ports, port->name)
+ if (shash_find(&m->src_ports, port->name)
|| (m->n_vlans
&& (!port->vlan
? port_trunks_any_mirrored_vlan(m, port)
port->src_mirrors &= ~mirror_bit;
}
- if (mirror_all_ports || svec_contains(&m->dst_ports, port->name)) {
+ if (shash_find(&m->dst_ports, port->name)) {
port->dst_mirrors |= mirror_bit;
} else {
port->dst_mirrors &= ~mirror_bit;
}
/* Clean up. */
-exit:
- svec_destroy(&src_ports);
- svec_destroy(&dst_ports);
- free(pfx);
-}
-\f
-/* Spanning tree protocol. */
-
-static void brstp_update_port_state(struct port *);
-
-static void
-brstp_send_bpdu(struct ofpbuf *pkt, int port_no, void *br_)
-{
- struct bridge *br = br_;
- static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
- struct iface *iface = iface_from_dp_ifidx(br, port_no);
- if (!iface) {
- VLOG_WARN_RL(&rl, "%s: cannot send BPDU on unknown port %d",
- br->name, port_no);
- } else if (eth_addr_is_zero(iface->mac)) {
- VLOG_WARN_RL(&rl, "%s: cannot send BPDU on port %d with unknown MAC",
- br->name, port_no);
- } else {
- union ofp_action action;
- struct eth_header *eth = pkt->l2;
- flow_t flow;
-
- memcpy(eth->eth_src, iface->mac, ETH_ADDR_LEN);
-
- memset(&action, 0, sizeof action);
- action.type = htons(OFPAT_OUTPUT);
- action.output.len = htons(sizeof action);
- action.output.port = htons(port_no);
-
- flow_extract(pkt, ODPP_NONE, &flow);
- ofproto_send_packet(br->ofproto, &flow, &action, 1, pkt);
- }
- ofpbuf_delete(pkt);
-}
-
-static void
-brstp_reconfigure(struct bridge *br)
-{
- size_t i;
-
- if (!cfg_get_bool(0, "stp.%s.enabled", br->name)) {
- if (br->stp) {
- stp_destroy(br->stp);
- br->stp = NULL;
-
- bridge_flush(br);
- }
- } else {
- uint64_t bridge_address, bridge_id;
- int bridge_priority;
-
- bridge_address = cfg_get_mac(0, "stp.%s.address", br->name);
- if (!bridge_address) {
- if (br->stp) {
- bridge_address = (stp_get_bridge_id(br->stp)
- & ((UINT64_C(1) << 48) - 1));
- } else {
- uint8_t mac[ETH_ADDR_LEN];
- eth_addr_random(mac);
- bridge_address = eth_addr_to_uint64(mac);
- }
- }
-
- if (cfg_is_valid(CFG_INT | CFG_REQUIRED, "stp.%s.priority",
- br->name)) {
- bridge_priority = cfg_get_int(0, "stp.%s.priority", br->name);
- } else {
- bridge_priority = STP_DEFAULT_BRIDGE_PRIORITY;
- }
-
- bridge_id = bridge_address | ((uint64_t) bridge_priority << 48);
- if (!br->stp) {
- br->stp = stp_create(br->name, bridge_id, brstp_send_bpdu, br);
- br->stp_last_tick = time_msec();
- bridge_flush(br);
- } else {
- if (bridge_id != stp_get_bridge_id(br->stp)) {
- stp_set_bridge_id(br->stp, bridge_id);
- bridge_flush(br);
- }
- }
-
- for (i = 0; i < br->n_ports; i++) {
- struct port *p = br->ports[i];
- int dp_ifidx;
- struct stp_port *sp;
- int path_cost, priority;
- bool enable;
-
- if (!p->n_ifaces) {
- continue;
- }
- dp_ifidx = p->ifaces[0]->dp_ifidx;
- if (dp_ifidx < 0 || dp_ifidx >= STP_MAX_PORTS) {
- continue;
- }
-
- sp = stp_get_port(br->stp, dp_ifidx);
- enable = (!cfg_is_valid(CFG_BOOL | CFG_REQUIRED,
- "stp.%s.port.%s.enabled",
- br->name, p->name)
- || cfg_get_bool(0, "stp.%s.port.%s.enabled",
- br->name, p->name));
- if (p->is_mirror_output_port) {
- enable = false;
- }
- if (enable != (stp_port_get_state(sp) != STP_DISABLED)) {
- bridge_flush(br); /* Might not be necessary. */
- if (enable) {
- stp_port_enable(sp);
- } else {
- stp_port_disable(sp);
- }
- }
-
- path_cost = cfg_get_int(0, "stp.%s.port.%s.path-cost",
- br->name, p->name);
- stp_port_set_path_cost(sp, path_cost ? path_cost : 19 /* XXX */);
-
- priority = (cfg_is_valid(CFG_INT | CFG_REQUIRED,
- "stp.%s.port.%s.priority",
- br->name, p->name)
- ? cfg_get_int(0, "stp.%s.port.%s.priority",
- br->name, p->name)
- : STP_DEFAULT_PORT_PRIORITY);
- stp_port_set_priority(sp, priority);
- }
-
- brstp_adjust_timers(br);
- }
- for (i = 0; i < br->n_ports; i++) {
- brstp_update_port_state(br->ports[i]);
- }
-}
-
-static void
-brstp_update_port_state(struct port *p)
-{
- struct bridge *br = p->bridge;
- enum stp_state state;
-
- /* Figure out new state. */
- state = STP_DISABLED;
- if (br->stp && p->n_ifaces > 0) {
- int dp_ifidx = p->ifaces[0]->dp_ifidx;
- if (dp_ifidx >= 0 && dp_ifidx < STP_MAX_PORTS) {
- state = stp_port_get_state(stp_get_port(br->stp, dp_ifidx));
- }
- }
-
- /* Update state. */
- if (p->stp_state != state) {
- static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(10, 10);
- VLOG_INFO_RL(&rl, "port %s: STP state changed from %s to %s",
- p->name, stp_state_name(p->stp_state),
- stp_state_name(state));
- if (p->stp_state == STP_DISABLED) {
- bridge_flush(br);
- } else {
- ofproto_revalidate(p->bridge->ofproto, p->stp_state_tag);
- }
- p->stp_state = state;
- p->stp_state_tag = (p->stp_state == STP_DISABLED ? 0
- : tag_create_random());
- }
-}
-
-static void
-brstp_adjust_timers(struct bridge *br)
-{
- int hello_time = cfg_get_int(0, "stp.%s.hello-time", br->name);
- int max_age = cfg_get_int(0, "stp.%s.max-age", br->name);
- int forward_delay = cfg_get_int(0, "stp.%s.forward-delay", br->name);
-
- stp_set_hello_time(br->stp, hello_time ? hello_time : 2000);
- stp_set_max_age(br->stp, max_age ? max_age : 20000);
- stp_set_forward_delay(br->stp, forward_delay ? forward_delay : 15000);
-}
-
-static void
-brstp_run(struct bridge *br)
-{
- if (br->stp) {
- long long int now = time_msec();
- long long int elapsed = now - br->stp_last_tick;
- struct stp_port *sp;
-
- if (elapsed > 0) {
- stp_tick(br->stp, MIN(INT_MAX, elapsed));
- br->stp_last_tick = now;
- }
- while (stp_get_changed_port(br->stp, &sp)) {
- struct port *p = port_from_dp_ifidx(br, stp_port_no(sp));
- if (p) {
- brstp_update_port_state(p);
- }
- }
- }
-}
-
-static void
-brstp_wait(struct bridge *br)
-{
- if (br->stp) {
- poll_timer_wait(1000);
- }
+ shash_destroy(&src_ports);
+ shash_destroy(&dst_ports);
}