#include <netinet/in.h>
#include <stdbool.h>
#include <stdlib.h>
+#include "byte-order.h"
#include "classifier.h"
#include "coverage.h"
#include "discovery.h"
#include "dpif.h"
#include "dynamic-string.h"
#include "fail-open.h"
+#include "hash.h"
+#include "hmap.h"
#include "in-band.h"
#include "mac-learning.h"
#include "netdev.h"
#include "netflow.h"
+#include "nx-match.h"
#include "odp-util.h"
#include "ofp-print.h"
#include "ofp-util.h"
#include "pinsched.h"
#include "pktbuf.h"
#include "poll-loop.h"
-#include "port-array.h"
#include "rconn.h"
#include "shash.h"
#include "status.h"
#include "unixctl.h"
#include "vconn.h"
#include "vlog.h"
-#include "xtoxll.h"
-VLOG_DEFINE_THIS_MODULE(ofproto)
+VLOG_DEFINE_THIS_MODULE(ofproto);
#include "sflow_api.h"
-enum {
- TABLEID_HASH = 0,
- TABLEID_CLASSIFIER = 1
-};
-
struct ofport {
+ struct hmap_node hmap_node; /* In struct ofproto's "ports" hmap. */
struct netdev *netdev;
struct ofp_phy_port opp; /* In host byte order. */
+ uint16_t odp_port;
};
static void ofport_free(struct ofport *);
static void hton_ofp_phy_port(struct ofp_phy_port *);
static int xlate_actions(const union ofp_action *in, size_t n_in,
- const flow_t *flow, struct ofproto *ofproto,
+ const struct flow *, struct ofproto *,
const struct ofpbuf *packet,
struct odp_actions *out, tag_type *tags,
bool *may_set_up_flow, uint16_t *nf_output_iface);
struct rule {
struct cls_rule cr;
- uint64_t flow_cookie; /* Controller-issued identifier.
- (Kept in network-byte order.) */
+ ovs_be64 flow_cookie; /* Controller-issued identifier. */
uint16_t idle_timeout; /* In seconds from time of last use. */
uint16_t hard_timeout; /* In seconds from time of creation. */
bool send_flow_removed; /* Send a flow removed message? */
- long long int used; /* Last-used time (0 if never used). */
+ long long int used; /* Time last used; time created if not used. */
long long int created; /* Creation time. */
uint64_t packet_count; /* Number of packets received. */
uint64_t byte_count; /* Number of bytes received. */
static struct rule *rule_create(struct ofproto *, struct rule *super,
const union ofp_action *, size_t n_actions,
uint16_t idle_timeout, uint16_t hard_timeout,
- uint64_t flow_cookie, bool send_flow_removed);
+ ovs_be64 flow_cookie, bool send_flow_removed);
static void rule_free(struct rule *);
static void rule_destroy(struct ofproto *, struct rule *);
static struct rule *rule_from_cls_rule(const struct cls_rule *);
struct rule *displaced_rule);
static void rule_uninstall(struct ofproto *, struct rule *);
static void rule_post_uninstall(struct ofproto *, struct rule *);
-static void send_flow_removed(struct ofproto *p, struct rule *rule,
- long long int now, uint8_t reason);
+static void send_flow_removed(struct ofproto *, struct rule *, uint8_t reason);
/* ofproto supports two kinds of OpenFlow connections:
*
struct list node; /* In struct ofproto's "all_conns" list. */
struct rconn *rconn; /* OpenFlow connection. */
enum ofconn_type type; /* Type. */
+ int flow_format; /* One of NXFF_*. */
/* OFPT_PACKET_IN related data. */
struct rconn_packet_counter *packet_in_counter; /* # queued on 'rconn'. */
static struct ofconn *ofconn_create(struct ofproto *, struct rconn *,
enum ofconn_type);
static void ofconn_destroy(struct ofconn *);
-static void ofconn_run(struct ofconn *, struct ofproto *);
+static void ofconn_run(struct ofconn *);
static void ofconn_wait(struct ofconn *);
static bool ofconn_receives_async_msgs(const struct ofconn *);
static char *ofconn_make_name(const struct ofproto *, const char *target);
/* Datapath. */
struct dpif *dpif;
struct netdev_monitor *netdev_monitor;
- struct port_array ports; /* Index is ODP port nr; ofport->opp.port_no is
- * OFP port nr. */
+ struct hmap ports; /* Contains "struct ofport"s. */
struct shash port_by_name;
uint32_t max_ports;
bool need_revalidate;
long long int next_expiration;
struct tag_set revalidate_set;
- bool tun_id_from_cookie;
/* OpenFlow connections. */
struct hmap controllers; /* Controller "struct ofconn"s. */
static uint64_t pick_datapath_id(const struct ofproto *);
static uint64_t pick_fallback_dpid(void);
-static void update_used(struct ofproto *);
+static int ofproto_expire(struct ofproto *);
+
static void update_stats(struct ofproto *, struct rule *,
const struct odp_flow_stats *);
-static void expire_rule(struct cls_rule *, void *ofproto);
-static void active_timeout(struct ofproto *ofproto, struct rule *rule);
static bool revalidate_rule(struct ofproto *p, struct rule *rule);
static void revalidate_cb(struct cls_rule *rule_, void *p_);
static void handle_odp_msg(struct ofproto *, struct ofpbuf *);
-static void handle_openflow(struct ofconn *, struct ofproto *,
- struct ofpbuf *);
-
-static void refresh_port_groups(struct ofproto *);
+static void handle_openflow(struct ofconn *, struct ofpbuf *);
+static struct ofport *get_port(const struct ofproto *, uint16_t odp_port);
static void update_port(struct ofproto *, const char *devname);
static int init_ports(struct ofproto *);
static void reinit_ports(struct ofproto *);
/* Initialize datapath. */
p->dpif = dpif;
p->netdev_monitor = netdev_monitor_create();
- port_array_init(&p->ports);
+ hmap_init(&p->ports);
shash_init(&p->port_by_name);
p->max_ports = stats.max_ports;
{
struct ofconn *ofconn;
- HMAP_FOR_EACH_WITH_HASH (ofconn, struct ofconn, hmap_node,
+ HMAP_FOR_EACH_WITH_HASH (ofconn, hmap_node,
hash_string(target, 0), &ofproto->controllers) {
if (!strcmp(ofconn_get_target(ofconn), target)) {
return ofconn;
/* Add all the remotes. */
discovery = false;
- HMAP_FOR_EACH (ofconn, struct ofconn, hmap_node, &ofproto->controllers) {
+ HMAP_FOR_EACH (ofconn, hmap_node, &ofproto->controllers) {
struct sockaddr_in *sin = &addrs[n_addrs];
if (ofconn->band == OFPROTO_OUT_OF_BAND) {
n = 0;
rconns = xmalloc(hmap_count(&p->controllers) * sizeof *rconns);
- HMAP_FOR_EACH (ofconn, struct ofconn, hmap_node, &p->controllers) {
+ HMAP_FOR_EACH (ofconn, hmap_node, &p->controllers) {
rconns[n++] = ofconn->rconn;
}
/* Delete controllers that are no longer configured.
* Update configuration of all now-existing controllers. */
ss_exists = false;
- HMAP_FOR_EACH_SAFE (ofconn, next_ofconn, struct ofconn, hmap_node,
- &p->controllers) {
+ HMAP_FOR_EACH_SAFE (ofconn, next_ofconn, hmap_node, &p->controllers) {
struct ofproto_controller *c;
c = shash_find_data(&new_controllers, ofconn_get_target(ofconn));
/* Delete services that are no longer configured.
* Update configuration of all now-existing services. */
- HMAP_FOR_EACH_SAFE (ofservice, next_ofservice, struct ofservice, node,
- &p->services) {
+ HMAP_FOR_EACH_SAFE (ofservice, next_ofservice, node, &p->services) {
struct ofproto_controller *c;
c = shash_find_data(&new_controllers,
{
struct ofconn *ofconn;
- LIST_FOR_EACH (ofconn, struct ofconn, node, &ofproto->all_conns) {
+ LIST_FOR_EACH (ofconn, node, &ofproto->all_conns) {
rconn_reconnect(ofconn->rconn);
}
}
if (oso) {
if (!os) {
struct ofport *ofport;
- unsigned int odp_port;
os = ofproto->sflow = ofproto_sflow_create(ofproto->dpif);
- refresh_port_groups(ofproto);
- PORT_ARRAY_FOR_EACH (ofport, &ofproto->ports, odp_port) {
- ofproto_sflow_add_port(os, odp_port,
+ HMAP_FOR_EACH (ofport, hmap_node, &ofproto->ports) {
+ ofproto_sflow_add_port(os, ofport->odp_port,
netdev_get_name(ofport->netdev));
}
}
{
struct ofservice *ofservice, *next_ofservice;
struct ofconn *ofconn, *next_ofconn;
- struct ofport *ofport;
- unsigned int port_no;
+ struct ofport *ofport, *next_ofport;
size_t i;
if (!p) {
ofproto_flush_flows(p);
classifier_destroy(&p->cls);
- LIST_FOR_EACH_SAFE (ofconn, next_ofconn, struct ofconn, node,
- &p->all_conns) {
+ LIST_FOR_EACH_SAFE (ofconn, next_ofconn, node, &p->all_conns) {
ofconn_destroy(ofconn);
}
hmap_destroy(&p->controllers);
dpif_close(p->dpif);
netdev_monitor_destroy(p->netdev_monitor);
- PORT_ARRAY_FOR_EACH (ofport, &p->ports, port_no) {
+ HMAP_FOR_EACH_SAFE (ofport, next_ofport, hmap_node, &p->ports) {
+ hmap_remove(&p->ports, &ofport->hmap_node);
ofport_free(ofport);
}
shash_destroy(&p->port_by_name);
netflow_destroy(p->netflow);
ofproto_sflow_destroy(p->sflow);
- HMAP_FOR_EACH_SAFE (ofservice, next_ofservice, struct ofservice, node,
- &p->services) {
+ HMAP_FOR_EACH_SAFE (ofservice, next_ofservice, node, &p->services) {
ofservice_destroy(p, ofservice);
}
hmap_destroy(&p->services);
free(p->serial_desc);
free(p->dp_desc);
- port_array_destroy(&p->ports);
+ hmap_destroy(&p->ports);
free(p);
}
/* Pick a controller for monitoring. */
best = NULL;
- LIST_FOR_EACH (ofconn, struct ofconn, node, &ofproto->all_conns) {
+ LIST_FOR_EACH (ofconn, node, &ofproto->all_conns) {
if (ofconn->type == OFCONN_PRIMARY
&& (!best || snoop_preference(ofconn) > snoop_preference(best))) {
best = ofconn;
for (i = 0; i < 50; i++) {
struct ofpbuf *buf;
- int error;
error = dpif_recv(p->dpif, &buf);
if (error) {
in_band_run(p->in_band);
}
- LIST_FOR_EACH_SAFE (ofconn, next_ofconn, struct ofconn, node,
- &p->all_conns) {
- ofconn_run(ofconn, p);
+ LIST_FOR_EACH_SAFE (ofconn, next_ofconn, node, &p->all_conns) {
+ ofconn_run(ofconn);
}
/* Fail-open maintenance. Do this after processing the ofconns since
fail_open_run(p->fail_open);
}
- HMAP_FOR_EACH (ofservice, struct ofservice, node, &p->services) {
+ HMAP_FOR_EACH (ofservice, node, &p->services) {
struct vconn *vconn;
int retval;
retval = pvconn_accept(ofservice->pvconn, OFP_VERSION, &vconn);
if (!retval) {
- struct ofconn *ofconn;
struct rconn *rconn;
char *name;
}
if (time_msec() >= p->next_expiration) {
+ int delay = ofproto_expire(p);
+ p->next_expiration = time_msec() + delay;
COVERAGE_INC(ofproto_expiration);
- p->next_expiration = time_msec() + 1000;
- update_used(p);
-
- classifier_for_each(&p->cls, CLS_INC_ALL, expire_rule, p);
-
- /* Let the hook know that we're at a stable point: all outstanding data
- * in existing flows has been accounted to the account_cb. Thus, the
- * hook can now reasonably do operations that depend on having accurate
- * flow volume accounting (currently, that's just bond rebalancing). */
- if (p->ofhooks->account_checkpoint_cb) {
- p->ofhooks->account_checkpoint_cb(p->aux);
- }
}
if (p->netflow) {
dpif_recv_wait(p->dpif);
dpif_port_poll_wait(p->dpif);
netdev_monitor_poll_wait(p->netdev_monitor);
- LIST_FOR_EACH (ofconn, struct ofconn, node, &p->all_conns) {
+ LIST_FOR_EACH (ofconn, node, &p->all_conns) {
ofconn_wait(ofconn);
}
if (p->in_band) {
} else if (p->next_expiration != LLONG_MAX) {
poll_timer_wait_until(p->next_expiration);
}
- HMAP_FOR_EACH (ofservice, struct ofservice, node, &p->services) {
+ HMAP_FOR_EACH (ofservice, node, &p->services) {
pvconn_wait(ofservice->pvconn);
}
for (i = 0; i < p->n_snoops; i++) {
return !hmap_is_empty(&p->controllers);
}
+/* Deletes port number 'odp_port' from the datapath for 'ofproto'.
+ *
+ * This is almost the same as calling dpif_port_del() directly on the
+ * datapath, but it also makes 'ofproto' close its open netdev for the port
+ * (if any). This makes it possible to create a new netdev of a different
+ * type under the same name, which otherwise the netdev library would refuse
+ * to do because of the conflict. (The netdev would eventually get closed on
+ * the next trip through ofproto_run(), but this interface is more direct.)
+ *
+ * Returns 0 if successful, otherwise a positive errno. */
+int
+ofproto_port_del(struct ofproto *ofproto, uint16_t odp_port)
+{
+ struct ofport *ofport = get_port(ofproto, odp_port);
+ const char *name = ofport ? (char *) ofport->opp.name : "<unknown>";
+ int error;
+
+ error = dpif_port_del(ofproto->dpif, odp_port);
+ if (error) {
+ VLOG_ERR("%s: failed to remove port %"PRIu16" (%s) interface (%s)",
+ dpif_name(ofproto->dpif), odp_port, name, strerror(error));
+ } else if (ofport) {
+ /* 'name' is ofport->opp.name and update_port() is going to destroy
+ * 'ofport'. Just in case update_port() refers to 'name' after it
+ * destroys 'ofport', make a copy of it around the update_port()
+ * call. */
+ char *devname = xstrdup(name);
+ update_port(ofproto, devname);
+ free(devname);
+ }
+ return error;
+}
+
+/* Checks if 'ofproto' thinks 'odp_port' should be included in floods. Returns
+ * true if 'odp_port' exists and should be included, false otherwise. */
+bool
+ofproto_port_is_floodable(struct ofproto *ofproto, uint16_t odp_port)
+{
+ struct ofport *ofport = get_port(ofproto, odp_port);
+ return ofport && !(ofport->opp.config & OFPPC_NO_FLOOD);
+}
+
int
-ofproto_send_packet(struct ofproto *p, const flow_t *flow,
+ofproto_send_packet(struct ofproto *p, const struct flow *flow,
const union ofp_action *actions, size_t n_actions,
const struct ofpbuf *packet)
{
/* XXX Should we translate the dpif_execute() errno value into an OpenFlow
* error code? */
- dpif_execute(p->dpif, flow->in_port, odp_actions.actions,
- odp_actions.n_actions, packet);
+ dpif_execute(p->dpif, odp_actions.actions, odp_actions.n_actions, packet);
return 0;
}
+/* Adds a flow to the OpenFlow flow table in 'p' that matches 'cls_rule' and
+ * performs the 'n_actions' actions in 'actions'. The new flow will not
+ * timeout.
+ *
+ * If cls_rule->priority is in the range of priorities supported by OpenFlow
+ * (0...65535, inclusive) then the flow will be visible to OpenFlow
+ * controllers; otherwise, it will be hidden.
+ *
+ * The caller retains ownership of 'cls_rule' and 'actions'. */
void
-ofproto_add_flow(struct ofproto *p,
- const flow_t *flow, uint32_t wildcards, unsigned int priority,
- const union ofp_action *actions, size_t n_actions,
- int idle_timeout)
+ofproto_add_flow(struct ofproto *p, const struct cls_rule *cls_rule,
+ const union ofp_action *actions, size_t n_actions)
{
struct rule *rule;
- rule = rule_create(p, NULL, actions, n_actions,
- idle_timeout >= 0 ? idle_timeout : 5 /* XXX */,
- 0, 0, false);
- cls_rule_from_flow(flow, wildcards, priority, &rule->cr);
+ rule = rule_create(p, NULL, actions, n_actions, 0, 0, 0, false);
+ rule->cr = *cls_rule;
rule_insert(p, rule, NULL, 0);
}
void
-ofproto_delete_flow(struct ofproto *ofproto, const flow_t *flow,
- uint32_t wildcards, unsigned int priority)
+ofproto_delete_flow(struct ofproto *ofproto, const struct cls_rule *target)
{
struct rule *rule;
rule = rule_from_cls_rule(classifier_find_rule_exactly(&ofproto->cls,
- flow, wildcards,
- priority));
+ target));
if (rule) {
rule_remove(ofproto, rule);
}
{
struct svec devnames;
struct ofport *ofport;
- unsigned int port_no;
struct odp_port *odp_ports;
size_t n_odp_ports;
size_t i;
+ COVERAGE_INC(ofproto_reinit_ports);
+
svec_init(&devnames);
- PORT_ARRAY_FOR_EACH (ofport, &p->ports, port_no) {
+ HMAP_FOR_EACH (ofport, hmap_node, &p->ports) {
svec_add (&devnames, (char *) ofport->opp.name);
}
dpif_port_list(p->dpif, &odp_ports, &n_odp_ports);
svec_destroy(&devnames);
}
-static size_t
-refresh_port_group(struct ofproto *p, unsigned int group)
-{
- uint16_t *ports;
- size_t n_ports;
- struct ofport *port;
- unsigned int port_no;
-
- assert(group == DP_GROUP_ALL || group == DP_GROUP_FLOOD);
-
- ports = xmalloc(port_array_count(&p->ports) * sizeof *ports);
- n_ports = 0;
- PORT_ARRAY_FOR_EACH (port, &p->ports, port_no) {
- if (group == DP_GROUP_ALL || !(port->opp.config & OFPPC_NO_FLOOD)) {
- ports[n_ports++] = port_no;
- }
- }
- dpif_port_group_set(p->dpif, group, ports, n_ports);
- free(ports);
-
- return n_ports;
-}
-
-static void
-refresh_port_groups(struct ofproto *p)
-{
- size_t n_flood = refresh_port_group(p, DP_GROUP_FLOOD);
- size_t n_all = refresh_port_group(p, DP_GROUP_ALL);
- if (p->sflow) {
- ofproto_sflow_set_group_sizes(p->sflow, n_flood, n_all);
- }
-}
-
static struct ofport *
make_ofport(const struct odp_port *odp_port)
{
enum netdev_flags flags;
struct ofport *ofport;
struct netdev *netdev;
- bool carrier;
int error;
memset(&netdev_options, 0, sizeof netdev_options);
ofport = xmalloc(sizeof *ofport);
ofport->netdev = netdev;
+ ofport->odp_port = odp_port->port;
ofport->opp.port_no = odp_port_to_ofp_port(odp_port->port);
netdev_get_etheraddr(netdev, ofport->opp.hw_addr);
memcpy(ofport->opp.name, odp_port->devname,
netdev_get_flags(netdev, &flags);
ofport->opp.config = flags & NETDEV_UP ? 0 : OFPPC_PORT_DOWN;
- netdev_get_carrier(netdev, &carrier);
- ofport->opp.state = carrier ? 0 : OFPPS_LINK_DOWN;
+ ofport->opp.state = netdev_get_carrier(netdev) ? 0 : OFPPS_LINK_DOWN;
netdev_get_features(netdev,
&ofport->opp.curr, &ofport->opp.advertised,
static bool
ofport_conflicts(const struct ofproto *p, const struct odp_port *odp_port)
{
- if (port_array_get(&p->ports, odp_port->port)) {
+ if (get_port(p, odp_port->port)) {
VLOG_WARN_RL(&rl, "ignoring duplicate port %"PRIu16" in datapath",
odp_port->port);
return true;
{
/* XXX Should limit the number of queued port status change messages. */
struct ofconn *ofconn;
- LIST_FOR_EACH (ofconn, struct ofconn, node, &p->all_conns) {
+ LIST_FOR_EACH (ofconn, node, &p->all_conns) {
struct ofp_port_status *ops;
struct ofpbuf *b;
hton_ofp_phy_port(&ops->desc);
queue_tx(b, ofconn, NULL);
}
- if (p->ofhooks->port_changed_cb) {
- p->ofhooks->port_changed_cb(reason, &ofport->opp, p->aux);
- }
}
static void
ofport_install(struct ofproto *p, struct ofport *ofport)
{
- uint16_t odp_port = ofp_port_to_odp_port(ofport->opp.port_no);
const char *netdev_name = (const char *) ofport->opp.name;
netdev_monitor_add(p->netdev_monitor, ofport->netdev);
- port_array_set(&p->ports, odp_port, ofport);
+ hmap_insert(&p->ports, &ofport->hmap_node, hash_int(ofport->odp_port, 0));
shash_add(&p->port_by_name, netdev_name, ofport);
if (p->sflow) {
- ofproto_sflow_add_port(p->sflow, odp_port, netdev_name);
+ ofproto_sflow_add_port(p->sflow, ofport->odp_port, netdev_name);
}
}
static void
ofport_remove(struct ofproto *p, struct ofport *ofport)
{
- uint16_t odp_port = ofp_port_to_odp_port(ofport->opp.port_no);
-
netdev_monitor_remove(p->netdev_monitor, ofport->netdev);
- port_array_delete(&p->ports, odp_port);
+ hmap_remove(&p->ports, &ofport->hmap_node);
shash_delete(&p->port_by_name,
shash_find(&p->port_by_name, (char *) ofport->opp.name));
if (p->sflow) {
- ofproto_sflow_del_port(p->sflow, odp_port);
+ ofproto_sflow_del_port(p->sflow, ofport->odp_port);
}
}
}
}
+static struct ofport *
+get_port(const struct ofproto *ofproto, uint16_t odp_port)
+{
+ struct ofport *port;
+
+ HMAP_FOR_EACH_IN_BUCKET (port, hmap_node,
+ hash_int(odp_port, 0), &ofproto->ports) {
+ if (port->odp_port == odp_port) {
+ return port;
+ }
+ }
+ return NULL;
+}
+
static void
update_port(struct ofproto *p, const char *devname)
{
* reliably but more portably by comparing the old port's MAC
* against the new port's MAC. However, this code isn't that smart
* and always sends an OFPPR_MODIFY (XXX). */
- old_ofport = port_array_get(&p->ports, odp_port.port);
+ old_ofport = get_port(p, odp_port.port);
}
} else if (error != ENOENT && error != ENODEV) {
VLOG_WARN_RL(&rl, "dpif_port_query_by_name returned unexpected error "
: !new_ofport ? OFPPR_DELETE
: OFPPR_MODIFY));
ofport_free(old_ofport);
-
- /* Update port groups. */
- refresh_port_groups(p);
}
static int
}
}
free(ports);
- refresh_port_groups(p);
return 0;
}
\f
list_push_back(&p->all_conns, &ofconn->node);
ofconn->rconn = rconn;
ofconn->type = type;
+ ofconn->flow_format = NXFF_OPENFLOW10;
ofconn->role = NX_ROLE_OTHER;
ofconn->packet_in_counter = rconn_packet_counter_create ();
ofconn->pktbuf = NULL;
}
static void
-ofconn_run(struct ofconn *ofconn, struct ofproto *p)
+ofconn_run(struct ofconn *ofconn)
{
+ struct ofproto *p = ofconn->ofproto;
int iteration;
size_t i;
if (p->fail_open) {
fail_open_maybe_recover(p->fail_open);
}
- handle_openflow(ofconn, p, of_msg);
+ handle_openflow(ofconn, of_msg);
ofpbuf_delete(of_msg);
}
}
{
struct ofservice *ofservice;
- HMAP_FOR_EACH_WITH_HASH (ofservice, struct ofservice, node,
- hash_string(target, 0), &ofproto->services) {
+ HMAP_FOR_EACH_WITH_HASH (ofservice, node, hash_string(target, 0),
+ &ofproto->services) {
if (!strcmp(pvconn_get_name(ofservice->pvconn), target)) {
return ofservice;
}
rule_create(struct ofproto *ofproto, struct rule *super,
const union ofp_action *actions, size_t n_actions,
uint16_t idle_timeout, uint16_t hard_timeout,
- uint64_t flow_cookie, bool send_flow_removed)
+ ovs_be64 flow_cookie, bool send_flow_removed)
{
struct rule *rule = xzalloc(sizeof *rule);
rule->idle_timeout = idle_timeout;
} else {
list_init(&rule->list);
}
- rule->n_actions = n_actions;
- rule->actions = xmemdup(actions, n_actions * sizeof *actions);
+ if (n_actions > 0) {
+ rule->n_actions = n_actions;
+ rule->actions = xmemdup(actions, n_actions * sizeof *actions);
+ }
netflow_flow_clear(&rule->nf_flow);
netflow_flow_update_time(ofproto->netflow, &rule->nf_flow, rule->created);
{
if (!rule->super) {
struct rule *subrule, *next;
- LIST_FOR_EACH_SAFE (subrule, next, struct rule, list, &rule->list) {
+ LIST_FOR_EACH_SAFE (subrule, next, list, &rule->list) {
revalidate_rule(ofproto, subrule);
}
} else {
}
static bool
-rule_has_out_port(const struct rule *rule, uint16_t out_port)
+rule_has_out_port(const struct rule *rule, ovs_be16 out_port)
{
const union ofp_action *oa;
struct actions_iterator i;
} else {
int error;
- error = dpif_execute(ofproto->dpif, in_port,
- actions, n_actions, packet);
+ error = dpif_execute(ofproto->dpif, actions, n_actions, packet);
ofpbuf_delete(packet);
return !error;
}
* Takes ownership of 'packet'. */
static void
rule_execute(struct ofproto *ofproto, struct rule *rule,
- struct ofpbuf *packet, const flow_t *flow)
+ struct ofpbuf *packet, const struct flow *flow)
{
const union odp_action *actions;
struct odp_flow_stats stats;
/* Send the packet and credit it to the rule. */
if (packet) {
- flow_t flow;
+ struct flow flow;
flow_extract(packet, 0, in_port, &flow);
rule_execute(p, rule, packet, &flow);
}
static struct rule *
rule_create_subrule(struct ofproto *ofproto, struct rule *rule,
- const flow_t *flow)
+ const struct flow *flow)
{
struct rule *subrule = rule_create(ofproto, rule, NULL, 0,
rule->idle_timeout, rule->hard_timeout,
0, false);
COVERAGE_INC(ofproto_subrule_create);
- cls_rule_from_flow(flow, 0, (rule->cr.priority <= UINT16_MAX ? UINT16_MAX
- : rule->cr.priority), &subrule->cr);
- classifier_insert_exact(&ofproto->cls, &subrule->cr);
+ cls_rule_init_exact(flow, (rule->cr.priority <= UINT16_MAX ? UINT16_MAX
+ : rule->cr.priority),
+ &subrule->cr);
+
+ if (classifier_insert(&ofproto->cls, &subrule->cr)) {
+ /* Can't happen, */
+ NOT_REACHED();
+ }
return subrule;
}
+/* Remove 'rule' from 'ofproto' and free up the associated memory:
+ *
+ * - If 'rule' was installed in the datapath, uninstalls it and updates
+ * 'rule''s statistics (or its super-rule's statistics, if it is a
+ * subrule), via rule_uninstall().
+ *
+ * - Removes 'rule' from the classifier.
+ *
+ * - If 'rule' is a super-rule that has subrules, revalidates (and possibly
+ * uninstalls and destroys) its subrules, via rule_destroy().
+ */
static void
rule_remove(struct ofproto *ofproto, struct rule *rule)
{
struct odp_flow_put *put)
{
memset(&put->flow.stats, 0, sizeof put->flow.stats);
- put->flow.key = rule->cr.flow;
+ odp_flow_key_from_flow(&put->flow.key, &rule->cr.flow);
put->flow.actions = rule->odp_actions;
put->flow.n_actions = rule->n_odp_actions;
put->flow.flags = 0;
}
}
+/* 'rule' must be an exact-match rule in 'p'.
+ *
+ * If 'rule' is installed in the datapath, uninstalls it and updates's
+ * statistics. If 'rule' is a subrule, the statistics that are updated are
+ * actually its super-rule's statistics; otherwise 'rule''s own statistics are
+ * updated.
+ *
+ * If 'rule' is not installed, this function has no effect. */
static void
rule_uninstall(struct ofproto *p, struct rule *rule)
{
if (rule->installed) {
struct odp_flow odp_flow;
- odp_flow.key = rule->cr.flow;
+ odp_flow_key_from_flow(&odp_flow.key, &rule->cr.flow);
odp_flow.actions = NULL;
odp_flow.n_actions = 0;
odp_flow.flags = 0;
}
}
-static void
-send_error(const struct ofconn *ofconn, const struct ofp_header *oh,
- int error, const void *data, size_t len)
-{
- struct ofpbuf *buf;
- struct ofp_error_msg *oem;
-
- if (!(error >> 16)) {
- VLOG_WARN_RL(&rl, "not sending bad error code %d to controller",
- error);
- return;
- }
-
- COVERAGE_INC(ofproto_error);
- oem = make_openflow_xid(len + sizeof *oem, OFPT_ERROR,
- oh ? oh->xid : 0, &buf);
- oem->type = htons((unsigned int) error >> 16);
- oem->code = htons(error & 0xffff);
- memcpy(oem->data, data, len);
- queue_tx(buf, ofconn, ofconn->reply_counter);
-}
-
static void
send_error_oh(const struct ofconn *ofconn, const struct ofp_header *oh,
int error)
{
- size_t oh_length = ntohs(oh->length);
- send_error(ofconn, oh, error, oh, MIN(oh_length, 64));
+ struct ofpbuf *buf = make_ofp_error_msg(error, oh);
+ if (buf) {
+ COVERAGE_INC(ofproto_error);
+ queue_tx(buf, ofconn, ofconn->reply_counter);
+ }
}
static void
}
static int
-handle_features_request(struct ofproto *p, struct ofconn *ofconn,
- struct ofp_header *oh)
+handle_features_request(struct ofconn *ofconn, struct ofp_header *oh)
{
struct ofp_switch_features *osf;
struct ofpbuf *buf;
- unsigned int port_no;
struct ofport *port;
osf = make_openflow_xid(sizeof *osf, OFPT_FEATURES_REPLY, oh->xid, &buf);
- osf->datapath_id = htonll(p->datapath_id);
+ osf->datapath_id = htonll(ofconn->ofproto->datapath_id);
osf->n_buffers = htonl(pktbuf_capacity());
osf->n_tables = 2;
osf->capabilities = htonl(OFPC_FLOW_STATS | OFPC_TABLE_STATS |
(1u << OFPAT_SET_TP_DST) |
(1u << OFPAT_ENQUEUE));
- PORT_ARRAY_FOR_EACH (port, &p->ports, port_no) {
+ HMAP_FOR_EACH (port, hmap_node, &ofconn->ofproto->ports) {
hton_ofp_phy_port(ofpbuf_put(buf, &port->opp, sizeof port->opp));
}
}
static int
-handle_get_config_request(struct ofproto *p, struct ofconn *ofconn,
- struct ofp_header *oh)
+handle_get_config_request(struct ofconn *ofconn, struct ofp_header *oh)
{
struct ofpbuf *buf;
struct ofp_switch_config *osc;
bool drop_frags;
/* Figure out flags. */
- dpif_get_drop_frags(p->dpif, &drop_frags);
+ dpif_get_drop_frags(ofconn->ofproto->dpif, &drop_frags);
flags = drop_frags ? OFPC_FRAG_DROP : OFPC_FRAG_NORMAL;
/* Send reply. */
}
static int
-handle_set_config(struct ofproto *p, struct ofconn *ofconn,
- struct ofp_switch_config *osc)
+handle_set_config(struct ofconn *ofconn, struct ofp_switch_config *osc)
{
uint16_t flags;
int error;
if (ofconn->type == OFCONN_PRIMARY && ofconn->role != NX_ROLE_SLAVE) {
switch (flags & OFPC_FRAG_MASK) {
case OFPC_FRAG_NORMAL:
- dpif_set_drop_frags(p->dpif, false);
+ dpif_set_drop_frags(ofconn->ofproto->dpif, false);
break;
case OFPC_FRAG_DROP:
- dpif_set_drop_frags(p->dpif, true);
+ dpif_set_drop_frags(ofconn->ofproto->dpif, true);
break;
default:
VLOG_WARN_RL(&rl, "requested bad fragment mode (flags=%"PRIx16")",
return 0;
}
-static void
-add_output_group_action(struct odp_actions *actions, uint16_t group,
- uint16_t *nf_output_iface)
-{
- odp_actions_add(actions, ODPAT_OUTPUT_GROUP)->output_group.group = group;
-
- if (group == DP_GROUP_ALL || group == DP_GROUP_FLOOD) {
- *nf_output_iface = NF_OUT_FLOOD;
- }
-}
-
static void
add_controller_action(struct odp_actions *actions, uint16_t max_len)
{
struct action_xlate_ctx {
/* Input. */
- flow_t flow; /* Flow to which these actions correspond. */
+ struct flow flow; /* Flow to which these actions correspond. */
int recurse; /* Recursion level, via xlate_table_action. */
struct ofproto *ofproto;
const struct ofpbuf *packet; /* The packet corresponding to 'flow', or a
static void
add_output_action(struct action_xlate_ctx *ctx, uint16_t port)
{
- const struct ofport *ofport = port_array_get(&ctx->ofproto->ports, port);
+ const struct ofport *ofport = get_port(ctx->ofproto, port);
if (ofport) {
if (ofport->opp.config & OFPPC_NO_FWD) {
}
static struct rule *
-lookup_valid_rule(struct ofproto *ofproto, const flow_t *flow)
+lookup_valid_rule(struct ofproto *ofproto, const struct flow *flow)
{
struct rule *rule;
- rule = rule_from_cls_rule(classifier_lookup(&ofproto->cls, flow));
+ rule = rule_from_cls_rule(classifier_lookup(&ofproto->cls, flow,
+ CLS_INC_ALL));
/* The rule we found might not be valid, since we could be in need of
* revalidation. If it is not valid, don't return it. */
}
}
+static void
+flood_packets(struct ofproto *ofproto, uint16_t odp_in_port, uint32_t mask,
+ uint16_t *nf_output_iface, struct odp_actions *actions)
+{
+ struct ofport *ofport;
+
+ HMAP_FOR_EACH (ofport, hmap_node, &ofproto->ports) {
+ uint16_t odp_port = ofport->odp_port;
+ if (odp_port != odp_in_port && !(ofport->opp.config & mask)) {
+ odp_actions_add(actions, ODPAT_OUTPUT)->output.port = odp_port;
+ }
+ }
+ *nf_output_iface = NF_OUT_FLOOD;
+}
+
static void
xlate_output_action__(struct action_xlate_ctx *ctx,
uint16_t port, uint16_t max_len)
}
break;
case OFPP_FLOOD:
- add_output_group_action(ctx->out, DP_GROUP_FLOOD,
- &ctx->nf_output_iface);
+ flood_packets(ctx->ofproto, ctx->flow.in_port, OFPPC_NO_FLOOD,
+ &ctx->nf_output_iface, ctx->out);
break;
case OFPP_ALL:
- add_output_group_action(ctx->out, DP_GROUP_ALL, &ctx->nf_output_iface);
+ flood_packets(ctx->ofproto, ctx->flow.in_port, 0,
+ &ctx->nf_output_iface, ctx->out);
break;
case OFPP_CONTROLLER:
add_controller_action(ctx->out, max_len);
}
}
+static void
+xlate_set_queue_action(struct action_xlate_ctx *ctx,
+ const struct nx_action_set_queue *nasq)
+{
+ uint32_t priority;
+ int error;
+
+ error = dpif_queue_to_priority(ctx->ofproto->dpif, ntohl(nasq->queue_id),
+ &priority);
+ if (error) {
+ /* Couldn't translate queue to a priority, so ignore. A warning
+ * has already been logged. */
+ return;
+ }
+
+ remove_pop_action(ctx);
+ odp_actions_add(ctx->out, ODPAT_SET_PRIORITY)->priority.priority
+ = priority;
+}
+
+static void
+xlate_set_dl_tci(struct action_xlate_ctx *ctx)
+{
+ ovs_be16 dl_vlan = ctx->flow.dl_vlan;
+ uint8_t dl_vlan_pcp = ctx->flow.dl_vlan_pcp;
+
+ if (dl_vlan == htons(OFP_VLAN_NONE)) {
+ odp_actions_add(ctx->out, ODPAT_STRIP_VLAN);
+ } else {
+ union odp_action *oa = odp_actions_add(ctx->out, ODPAT_SET_DL_TCI);
+ oa->dl_tci.tci = htons(ntohs(dl_vlan & htons(VLAN_VID_MASK))
+ | (dl_vlan_pcp << VLAN_PCP_SHIFT)
+ | VLAN_CFI);
+ }
+}
+
+static void
+xlate_reg_move_action(struct action_xlate_ctx *ctx,
+ const struct nx_action_reg_move *narm)
+{
+ ovs_be16 old_vlan = ctx->flow.dl_vlan;
+ uint8_t old_pcp = ctx->flow.dl_vlan_pcp;
+
+ nxm_execute_reg_move(narm, &ctx->flow);
+
+ if (ctx->flow.dl_vlan != old_vlan || ctx->flow.dl_vlan_pcp != old_pcp) {
+ xlate_set_dl_tci(ctx);
+ }
+}
+
static void
xlate_nicira_action(struct action_xlate_ctx *ctx,
const struct nx_action_header *nah)
{
const struct nx_action_resubmit *nar;
const struct nx_action_set_tunnel *nast;
+ const struct nx_action_set_queue *nasq;
union odp_action *oa;
int subtype = ntohs(nah->subtype);
}
break;
+ case NXAST_SET_QUEUE:
+ nasq = (const struct nx_action_set_queue *) nah;
+ xlate_set_queue_action(ctx, nasq);
+ break;
+
+ case NXAST_POP_QUEUE:
+ odp_actions_add(ctx->out, ODPAT_POP_PRIORITY);
+ break;
+
+ case NXAST_REG_MOVE:
+ xlate_reg_move_action(ctx, (const struct nx_action_reg_move *) nah);
+ break;
+
+ case NXAST_REG_LOAD:
+ nxm_execute_reg_load((const struct nx_action_reg_load *) nah,
+ &ctx->flow);
+ break;
+
/* If you add a new action here that modifies flow data, don't forget to
* update the flow key in ctx->flow at the same time. */
const union ofp_action *ia;
const struct ofport *port;
- port = port_array_get(&ctx->ofproto->ports, ctx->flow.in_port);
+ port = get_port(ctx->ofproto, ctx->flow.in_port);
if (port && port->opp.config & (OFPPC_NO_RECV | OFPPC_NO_RECV_STP) &&
port->opp.config & (eth_addr_equals(ctx->flow.dl_dst, eth_addr_stp)
? OFPPC_NO_RECV_STP : OFPPC_NO_RECV)) {
break;
case OFPAT_SET_VLAN_VID:
- oa = odp_actions_add(ctx->out, ODPAT_SET_VLAN_VID);
- ctx->flow.dl_vlan = oa->vlan_vid.vlan_vid = ia->vlan_vid.vlan_vid;
+ ctx->flow.dl_vlan = ia->vlan_vid.vlan_vid;
+ xlate_set_dl_tci(ctx);
break;
case OFPAT_SET_VLAN_PCP:
- oa = odp_actions_add(ctx->out, ODPAT_SET_VLAN_PCP);
- ctx->flow.dl_vlan_pcp = oa->vlan_pcp.vlan_pcp = ia->vlan_pcp.vlan_pcp;
+ ctx->flow.dl_vlan_pcp = ia->vlan_pcp.vlan_pcp;
+ xlate_set_dl_tci(ctx);
break;
case OFPAT_STRIP_VLAN:
- odp_actions_add(ctx->out, ODPAT_STRIP_VLAN);
ctx->flow.dl_vlan = htons(OFP_VLAN_NONE);
ctx->flow.dl_vlan_pcp = 0;
+ xlate_set_dl_tci(ctx);
break;
case OFPAT_SET_DL_SRC:
static int
xlate_actions(const union ofp_action *in, size_t n_in,
- const flow_t *flow, struct ofproto *ofproto,
+ const struct flow *flow, struct ofproto *ofproto,
const struct ofpbuf *packet,
struct odp_actions *out, tag_type *tags, bool *may_set_up_flow,
uint16_t *nf_output_iface)
* error message code (composed with ofp_mkerr()) for the caller to propagate
* upward. Otherwise, returns 0.
*
- * 'oh' is used to make log messages more informative. */
+ * The log message mentions 'msg_type'. */
static int
-reject_slave_controller(struct ofconn *ofconn, const struct ofp_header *oh)
+reject_slave_controller(struct ofconn *ofconn, const const char *msg_type)
{
if (ofconn->type == OFCONN_PRIMARY && ofconn->role == NX_ROLE_SLAVE) {
static struct vlog_rate_limit perm_rl = VLOG_RATE_LIMIT_INIT(1, 5);
- char *type_name;
-
- type_name = ofp_message_type_to_string(oh->type);
VLOG_WARN_RL(&perm_rl, "rejecting %s message from slave controller",
- type_name);
- free(type_name);
+ msg_type);
return ofp_mkerr(OFPET_BAD_REQUEST, OFPBRC_EPERM);
} else {
}
static int
-handle_packet_out(struct ofproto *p, struct ofconn *ofconn,
- struct ofp_header *oh)
+handle_packet_out(struct ofconn *ofconn, struct ofp_header *oh)
{
+ struct ofproto *p = ofconn->ofproto;
struct ofp_packet_out *opo;
struct ofpbuf payload, *buffer;
- struct odp_actions actions;
- int n_actions;
+ union ofp_action *ofp_actions;
+ struct odp_actions odp_actions;
+ struct ofpbuf request;
+ struct flow flow;
+ size_t n_ofp_actions;
uint16_t in_port;
- flow_t flow;
int error;
- error = reject_slave_controller(ofconn, oh);
+ COVERAGE_INC(ofproto_packet_out);
+
+ error = reject_slave_controller(ofconn, "OFPT_PACKET_OUT");
if (error) {
return error;
}
- error = check_ofp_packet_out(oh, &payload, &n_actions, p->max_ports);
+ /* Get ofp_packet_out. */
+ request.data = oh;
+ request.size = ntohs(oh->length);
+ opo = ofpbuf_try_pull(&request, offsetof(struct ofp_packet_out, actions));
+ if (!opo) {
+ return ofp_mkerr(OFPET_BAD_REQUEST, OFPBRC_BAD_LEN);
+ }
+
+ /* Get actions. */
+ error = ofputil_pull_actions(&request, ntohs(opo->actions_len),
+ &ofp_actions, &n_ofp_actions);
if (error) {
return error;
}
- opo = (struct ofp_packet_out *) oh;
- COVERAGE_INC(ofproto_packet_out);
+ /* Get payload. */
if (opo->buffer_id != htonl(UINT32_MAX)) {
error = pktbuf_retrieve(ofconn->pktbuf, ntohl(opo->buffer_id),
&buffer, &in_port);
}
payload = *buffer;
} else {
+ payload = request;
buffer = NULL;
}
- flow_extract(&payload, 0, ofp_port_to_odp_port(ntohs(opo->in_port)), &flow);
- error = xlate_actions((const union ofp_action *) opo->actions, n_actions,
- &flow, p, &payload, &actions, NULL, NULL, NULL);
+ /* Extract flow, check actions. */
+ flow_extract(&payload, 0, ofp_port_to_odp_port(ntohs(opo->in_port)),
+ &flow);
+ error = validate_actions(ofp_actions, n_ofp_actions, &flow, p->max_ports);
if (error) {
- return error;
+ goto exit;
}
- dpif_execute(p->dpif, flow.in_port, actions.actions, actions.n_actions,
- &payload);
- ofpbuf_delete(buffer);
+ /* Send. */
+ error = xlate_actions(ofp_actions, n_ofp_actions, &flow, p, &payload,
+ &odp_actions, NULL, NULL, NULL);
+ if (!error) {
+ dpif_execute(p->dpif, odp_actions.actions, odp_actions.n_actions,
+ &payload);
+ }
+exit:
+ ofpbuf_delete(buffer);
return 0;
}
netdev_turn_flags_on(port->netdev, NETDEV_UP, true);
}
}
-#define REVALIDATE_BITS (OFPPC_NO_RECV | OFPPC_NO_RECV_STP | OFPPC_NO_FWD)
+#define REVALIDATE_BITS (OFPPC_NO_RECV | OFPPC_NO_RECV_STP | \
+ OFPPC_NO_FWD | OFPPC_NO_FLOOD)
if (mask & REVALIDATE_BITS) {
COVERAGE_INC(ofproto_costly_flags);
port->opp.config ^= mask & REVALIDATE_BITS;
p->need_revalidate = true;
}
#undef REVALIDATE_BITS
- if (mask & OFPPC_NO_FLOOD) {
- port->opp.config ^= OFPPC_NO_FLOOD;
- refresh_port_groups(p);
- }
if (mask & OFPPC_NO_PACKET_IN) {
port->opp.config ^= OFPPC_NO_PACKET_IN;
}
}
static int
-handle_port_mod(struct ofproto *p, struct ofconn *ofconn,
- struct ofp_header *oh)
+handle_port_mod(struct ofconn *ofconn, struct ofp_header *oh)
{
+ struct ofproto *p = ofconn->ofproto;
const struct ofp_port_mod *opm;
struct ofport *port;
int error;
- error = reject_slave_controller(ofconn, oh);
+ error = reject_slave_controller(ofconn, "OFPT_PORT_MOD");
if (error) {
return error;
}
}
opm = (struct ofp_port_mod *) oh;
- port = port_array_get(&p->ports,
- ofp_port_to_odp_port(ntohs(opm->port_no)));
+ port = get_port(p, ofp_port_to_odp_port(ntohs(opm->port_no)));
if (!port) {
return ofp_mkerr(OFPET_PORT_MOD_FAILED, OFPPMFC_BAD_PORT);
} else if (memcmp(port->opp.hw_addr, opm->hw_addr, OFP_ETH_ALEN)) {
}
static struct ofpbuf *
-make_stats_reply(uint32_t xid, uint16_t type, size_t body_len)
+make_ofp_stats_reply(ovs_be32 xid, ovs_be16 type, size_t body_len)
{
struct ofp_stats_reply *osr;
struct ofpbuf *msg;
}
static struct ofpbuf *
-start_stats_reply(const struct ofp_stats_request *request, size_t body_len)
+start_ofp_stats_reply(const struct ofp_stats_request *request, size_t body_len)
{
- return make_stats_reply(request->header.xid, request->type, body_len);
+ return make_ofp_stats_reply(request->header.xid, request->type, body_len);
}
static void *
-append_stats_reply(size_t nbytes, struct ofconn *ofconn, struct ofpbuf **msgp)
+append_ofp_stats_reply(size_t nbytes, struct ofconn *ofconn,
+ struct ofpbuf **msgp)
{
struct ofpbuf *msg = *msgp;
assert(nbytes <= UINT16_MAX - sizeof(struct ofp_stats_reply));
if (nbytes + msg->size > UINT16_MAX) {
struct ofp_stats_reply *reply = msg->data;
reply->flags = htons(OFPSF_REPLY_MORE);
- *msgp = make_stats_reply(reply->header.xid, reply->type, nbytes);
+ *msgp = make_ofp_stats_reply(reply->header.xid, reply->type, nbytes);
queue_tx(msg, ofconn, ofconn->reply_counter);
}
return ofpbuf_put_uninit(*msgp, nbytes);
}
+static struct ofpbuf *
+make_nxstats_reply(ovs_be32 xid, ovs_be32 subtype, size_t body_len)
+{
+ struct nicira_stats_msg *nsm;
+ struct ofpbuf *msg;
+
+ msg = ofpbuf_new(MIN(sizeof *nsm + body_len, UINT16_MAX));
+ nsm = put_openflow_xid(sizeof *nsm, OFPT_STATS_REPLY, xid, msg);
+ nsm->type = htons(OFPST_VENDOR);
+ nsm->flags = htons(0);
+ nsm->vendor = htonl(NX_VENDOR_ID);
+ nsm->subtype = htonl(subtype);
+ return msg;
+}
+
+static struct ofpbuf *
+start_nxstats_reply(const struct nicira_stats_msg *request, size_t body_len)
+{
+ return make_nxstats_reply(request->header.xid, request->subtype, body_len);
+}
+
+static void
+append_nxstats_reply(size_t nbytes, struct ofconn *ofconn,
+ struct ofpbuf **msgp)
+{
+ struct ofpbuf *msg = *msgp;
+ assert(nbytes <= UINT16_MAX - sizeof(struct nicira_stats_msg));
+ if (nbytes + msg->size > UINT16_MAX) {
+ struct nicira_stats_msg *reply = msg->data;
+ reply->flags = htons(OFPSF_REPLY_MORE);
+ *msgp = make_nxstats_reply(reply->header.xid, reply->subtype, nbytes);
+ queue_tx(msg, ofconn, ofconn->reply_counter);
+ }
+ ofpbuf_prealloc_tailroom(*msgp, nbytes);
+}
+
static int
-handle_desc_stats_request(struct ofproto *p, struct ofconn *ofconn,
- struct ofp_stats_request *request)
+handle_desc_stats_request(struct ofconn *ofconn,
+ struct ofp_stats_request *request)
{
+ struct ofproto *p = ofconn->ofproto;
struct ofp_desc_stats *ods;
struct ofpbuf *msg;
- msg = start_stats_reply(request, sizeof *ods);
- ods = append_stats_reply(sizeof *ods, ofconn, &msg);
+ msg = start_ofp_stats_reply(request, sizeof *ods);
+ ods = append_ofp_stats_reply(sizeof *ods, ofconn, &msg);
memset(ods, 0, sizeof *ods);
ovs_strlcpy(ods->mfr_desc, p->mfr_desc, sizeof ods->mfr_desc);
ovs_strlcpy(ods->hw_desc, p->hw_desc, sizeof ods->hw_desc);
return 0;
}
-static void
-count_subrules(struct cls_rule *cls_rule, void *n_subrules_)
-{
- struct rule *rule = rule_from_cls_rule(cls_rule);
- int *n_subrules = n_subrules_;
-
- if (rule->super) {
- (*n_subrules)++;
- }
-}
-
static int
-handle_table_stats_request(struct ofproto *p, struct ofconn *ofconn,
+handle_table_stats_request(struct ofconn *ofconn,
struct ofp_stats_request *request)
{
+ struct ofproto *p = ofconn->ofproto;
struct ofp_table_stats *ots;
struct ofpbuf *msg;
- struct odp_stats dpstats;
- int n_exact, n_subrules, n_wild;
-
- msg = start_stats_reply(request, sizeof *ots * 2);
+ struct rule *rule;
+ int n_rules;
- /* Count rules of various kinds. */
- n_subrules = 0;
- classifier_for_each(&p->cls, CLS_INC_EXACT, count_subrules, &n_subrules);
- n_exact = classifier_count_exact(&p->cls) - n_subrules;
- n_wild = classifier_count(&p->cls) - classifier_count_exact(&p->cls);
+ msg = start_ofp_stats_reply(request, sizeof *ots * 2);
- /* Hash table. */
- dpif_get_dp_stats(p->dpif, &dpstats);
- ots = append_stats_reply(sizeof *ots, ofconn, &msg);
- memset(ots, 0, sizeof *ots);
- ots->table_id = TABLEID_HASH;
- strcpy(ots->name, "hash");
- ots->wildcards = htonl(0);
- ots->max_entries = htonl(dpstats.max_capacity);
- ots->active_count = htonl(n_exact);
- ots->lookup_count = htonll(dpstats.n_frags + dpstats.n_hit +
- dpstats.n_missed);
- ots->matched_count = htonll(dpstats.n_hit); /* XXX */
+ /* Count rules other than subrules. */
+ n_rules = classifier_count(&p->cls);
+ CLASSIFIER_FOR_EACH_EXACT_RULE (rule, cr, &p->cls) {
+ if (rule->super) {
+ n_rules--;
+ }
+ }
/* Classifier table. */
- ots = append_stats_reply(sizeof *ots, ofconn, &msg);
+ ots = append_ofp_stats_reply(sizeof *ots, ofconn, &msg);
memset(ots, 0, sizeof *ots);
- ots->table_id = TABLEID_CLASSIFIER;
strcpy(ots->name, "classifier");
- ots->wildcards = p->tun_id_from_cookie ? htonl(OVSFW_ALL)
- : htonl(OFPFW_ALL);
- ots->max_entries = htonl(65536);
- ots->active_count = htonl(n_wild);
+ ots->wildcards = (ofconn->flow_format == NXFF_OPENFLOW10
+ ? htonl(OFPFW_ALL) : htonl(OVSFW_ALL));
+ ots->max_entries = htonl(1024 * 1024); /* An arbitrary big number. */
+ ots->active_count = htonl(n_rules);
ots->lookup_count = htonll(0); /* XXX */
ots->matched_count = htonll(0); /* XXX */
}
static void
-append_port_stat(struct ofport *port, uint16_t port_no, struct ofconn *ofconn,
+append_port_stat(struct ofport *port, struct ofconn *ofconn,
struct ofpbuf **msgp)
{
struct netdev_stats stats;
* netdev_get_stats() will log errors. */
netdev_get_stats(port->netdev, &stats);
- ops = append_stats_reply(sizeof *ops, ofconn, msgp);
- ops->port_no = htons(odp_port_to_ofp_port(port_no));
+ ops = append_ofp_stats_reply(sizeof *ops, ofconn, msgp);
+ ops->port_no = htons(port->opp.port_no);
memset(ops->pad, 0, sizeof ops->pad);
ops->rx_packets = htonll(stats.rx_packets);
ops->tx_packets = htonll(stats.tx_packets);
}
static int
-handle_port_stats_request(struct ofproto *p, struct ofconn *ofconn,
- struct ofp_stats_request *osr,
+handle_port_stats_request(struct ofconn *ofconn, struct ofp_stats_request *osr,
size_t arg_size)
{
+ struct ofproto *p = ofconn->ofproto;
struct ofp_port_stats_request *psr;
struct ofp_port_stats *ops;
struct ofpbuf *msg;
struct ofport *port;
- unsigned int port_no;
if (arg_size != sizeof *psr) {
return ofp_mkerr(OFPET_BAD_REQUEST, OFPBRC_BAD_LEN);
}
psr = (struct ofp_port_stats_request *) osr->body;
- msg = start_stats_reply(osr, sizeof *ops * 16);
+ msg = start_ofp_stats_reply(osr, sizeof *ops * 16);
if (psr->port_no != htons(OFPP_NONE)) {
- port = port_array_get(&p->ports,
- ofp_port_to_odp_port(ntohs(psr->port_no)));
+ port = get_port(p, ofp_port_to_odp_port(ntohs(psr->port_no)));
if (port) {
- append_port_stat(port, ntohs(psr->port_no), ofconn, &msg);
+ append_port_stat(port, ofconn, &msg);
}
} else {
- PORT_ARRAY_FOR_EACH (port, &p->ports, port_no) {
- append_port_stat(port, port_no, ofconn, &msg);
+ HMAP_FOR_EACH (port, hmap_node, &p->ports) {
+ append_port_stat(port, ofconn, &msg);
}
}
}
struct flow_stats_cbdata {
- struct ofproto *ofproto;
struct ofconn *ofconn;
- uint16_t out_port;
+ ovs_be16 out_port;
struct ofpbuf *msg;
};
odp_flows = xzalloc(n_odp_flows * sizeof *odp_flows);
if (rule->cr.wc.wildcards) {
size_t i = 0;
- LIST_FOR_EACH (subrule, struct rule, list, &rule->list) {
- odp_flows[i++].key = subrule->cr.flow;
+ LIST_FOR_EACH (subrule, list, &rule->list) {
+ odp_flow_key_from_flow(&odp_flows[i++].key, &subrule->cr.flow);
packet_count += subrule->packet_count;
byte_count += subrule->byte_count;
}
} else {
- odp_flows[0].key = rule->cr.flow;
+ odp_flow_key_from_flow(&odp_flows[0].key, &rule->cr.flow);
}
/* Fetch up-to-date statistics from the datapath and add them in. */
*byte_countp = byte_count;
}
+static void
+calc_flow_duration(long long int start, ovs_be32 *sec, ovs_be32 *nsec)
+{
+ long long int msecs = time_msec() - start;
+ *sec = htonl(msecs / 1000);
+ *nsec = htonl((msecs % 1000) * (1000 * 1000));
+}
+
static void
flow_stats_cb(struct cls_rule *rule_, void *cbdata_)
{
struct ofp_flow_stats *ofs;
uint64_t packet_count, byte_count;
size_t act_len, len;
- long long int tdiff = time_msec() - rule->created;
- uint32_t sec = tdiff / 1000;
- uint32_t msec = tdiff - (sec * 1000);
if (rule_is_hidden(rule) || !rule_has_out_port(rule, cbdata->out_port)) {
return;
act_len = sizeof *rule->actions * rule->n_actions;
len = offsetof(struct ofp_flow_stats, actions) + act_len;
- query_stats(cbdata->ofproto, rule, &packet_count, &byte_count);
+ query_stats(cbdata->ofconn->ofproto, rule, &packet_count, &byte_count);
- ofs = append_stats_reply(len, cbdata->ofconn, &cbdata->msg);
+ ofs = append_ofp_stats_reply(len, cbdata->ofconn, &cbdata->msg);
ofs->length = htons(len);
- ofs->table_id = rule->cr.wc.wildcards ? TABLEID_CLASSIFIER : TABLEID_HASH;
+ ofs->table_id = 0;
ofs->pad = 0;
flow_to_match(&rule->cr.flow, rule->cr.wc.wildcards,
- cbdata->ofproto->tun_id_from_cookie, &ofs->match);
- ofs->duration_sec = htonl(sec);
- ofs->duration_nsec = htonl(msec * 1000000);
+ cbdata->ofconn->flow_format, &ofs->match);
+ calc_flow_duration(rule->created, &ofs->duration_sec, &ofs->duration_nsec);
ofs->cookie = rule->flow_cookie;
ofs->priority = htons(rule->cr.priority);
ofs->idle_timeout = htons(rule->idle_timeout);
memset(ofs->pad2, 0, sizeof ofs->pad2);
ofs->packet_count = htonll(packet_count);
ofs->byte_count = htonll(byte_count);
- memcpy(ofs->actions, rule->actions, act_len);
+ if (rule->n_actions > 0) {
+ memcpy(ofs->actions, rule->actions, act_len);
+ }
}
static int
table_id_to_include(uint8_t table_id)
{
- return (table_id == TABLEID_HASH ? CLS_INC_EXACT
- : table_id == TABLEID_CLASSIFIER ? CLS_INC_WILD
- : table_id == 0xff ? CLS_INC_ALL
- : 0);
+ return table_id == 0 || table_id == 0xff ? CLS_INC_ALL : 0;
}
static int
-handle_flow_stats_request(struct ofproto *p, struct ofconn *ofconn,
- const struct ofp_stats_request *osr,
- size_t arg_size)
+handle_flow_stats_request(struct ofconn *ofconn,
+ const struct ofp_stats_request *osr, size_t arg_size)
{
struct ofp_flow_stats_request *fsr;
struct flow_stats_cbdata cbdata;
fsr = (struct ofp_flow_stats_request *) osr->body;
COVERAGE_INC(ofproto_flows_req);
- cbdata.ofproto = p;
cbdata.ofconn = ofconn;
cbdata.out_port = fsr->out_port;
- cbdata.msg = start_stats_reply(osr, 1024);
- cls_rule_from_match(&fsr->match, 0, false, 0, &target);
- classifier_for_each_match(&p->cls, &target,
+ cbdata.msg = start_ofp_stats_reply(osr, 1024);
+ cls_rule_from_match(&fsr->match, 0, NXFF_OPENFLOW10, 0, &target);
+ classifier_for_each_match(&ofconn->ofproto->cls, &target,
table_id_to_include(fsr->table_id),
flow_stats_cb, &cbdata);
queue_tx(cbdata.msg, ofconn, ofconn->reply_counter);
return 0;
}
+static void
+nx_flow_stats_cb(struct cls_rule *rule_, void *cbdata_)
+{
+ struct rule *rule = rule_from_cls_rule(rule_);
+ struct flow_stats_cbdata *cbdata = cbdata_;
+ struct nx_flow_stats *nfs;
+ uint64_t packet_count, byte_count;
+ size_t act_len, start_len;
+
+ if (rule_is_hidden(rule) || !rule_has_out_port(rule, cbdata->out_port)) {
+ return;
+ }
+
+ query_stats(cbdata->ofconn->ofproto, rule, &packet_count, &byte_count);
+
+ act_len = sizeof *rule->actions * rule->n_actions;
+
+ start_len = cbdata->msg->size;
+ append_nxstats_reply(sizeof *nfs + NXM_MAX_LEN + act_len,
+ cbdata->ofconn, &cbdata->msg);
+ nfs = ofpbuf_put_uninit(cbdata->msg, sizeof *nfs);
+ nfs->table_id = 0;
+ nfs->pad = 0;
+ calc_flow_duration(rule->created, &nfs->duration_sec, &nfs->duration_nsec);
+ nfs->cookie = rule->flow_cookie;
+ nfs->priority = htons(rule->cr.priority);
+ nfs->idle_timeout = htons(rule->idle_timeout);
+ nfs->hard_timeout = htons(rule->hard_timeout);
+ nfs->match_len = htons(nx_put_match(cbdata->msg, &rule->cr));
+ memset(nfs->pad2, 0, sizeof nfs->pad2);
+ nfs->packet_count = htonll(packet_count);
+ nfs->byte_count = htonll(byte_count);
+ if (rule->n_actions > 0) {
+ ofpbuf_put(cbdata->msg, rule->actions, act_len);
+ }
+ nfs->length = htons(cbdata->msg->size - start_len);
+}
+
+static int
+handle_nxst_flow(struct ofconn *ofconn, struct ofpbuf *b)
+{
+ struct nx_flow_stats_request *nfsr;
+ struct flow_stats_cbdata cbdata;
+ struct cls_rule target;
+ int error;
+
+ /* Dissect the message. */
+ nfsr = ofpbuf_try_pull(b, sizeof *nfsr);
+ if (!nfsr) {
+ return ofp_mkerr(OFPET_BAD_REQUEST, OFPBRC_BAD_LEN);
+ }
+ error = nx_pull_match(b, ntohs(nfsr->match_len), 0, &target);
+ if (error) {
+ return error;
+ }
+
+ COVERAGE_INC(ofproto_flows_req);
+ cbdata.ofconn = ofconn;
+ cbdata.out_port = nfsr->out_port;
+ cbdata.msg = start_nxstats_reply(&nfsr->nsm, 1024);
+ classifier_for_each_match(&ofconn->ofproto->cls, &target,
+ table_id_to_include(nfsr->table_id),
+ nx_flow_stats_cb, &cbdata);
+ queue_tx(cbdata.msg, ofconn, ofconn->reply_counter);
+ return 0;
+}
+
struct flow_stats_ds_cbdata {
struct ofproto *ofproto;
struct ds *results;
query_stats(cbdata->ofproto, rule, &packet_count, &byte_count);
flow_to_match(&rule->cr.flow, rule->cr.wc.wildcards,
- cbdata->ofproto->tun_id_from_cookie, &match);
+ NXFF_OPENFLOW10, &match);
ds_put_format(results, "duration=%llds, ",
(time_msec() - rule->created) / 1000);
ds_put_format(results, "n_packets=%"PRIu64", ", packet_count);
ds_put_format(results, "n_bytes=%"PRIu64", ", byte_count);
ofp_print_match(results, &match, true);
- ofp_print_actions(results, &rule->actions->header, act_len);
+ if (act_len > 0) {
+ ofp_print_actions(results, &rule->actions->header, act_len);
+ } else {
+ ds_put_cstr(results, "drop");
+ }
ds_put_cstr(results, "\n");
}
cbdata.ofproto = p;
cbdata.results = results;
- cls_rule_from_match(&match, 0, false, 0, &target);
+ cls_rule_from_match(&match, 0, NXFF_OPENFLOW10, 0, &target);
classifier_for_each_match(&p->cls, &target, CLS_INC_ALL,
flow_stats_ds_cb, &cbdata);
}
struct aggregate_stats_cbdata {
struct ofproto *ofproto;
- uint16_t out_port;
+ ovs_be16 out_port;
uint64_t packet_count;
uint64_t byte_count;
uint32_t n_flows;
cbdata->n_flows++;
}
+static void
+query_aggregate_stats(struct ofproto *ofproto, struct cls_rule *target,
+ ovs_be16 out_port, uint8_t table_id,
+ struct ofp_aggregate_stats_reply *oasr)
+{
+ struct aggregate_stats_cbdata cbdata;
+
+ COVERAGE_INC(ofproto_agg_request);
+ cbdata.ofproto = ofproto;
+ cbdata.out_port = out_port;
+ cbdata.packet_count = 0;
+ cbdata.byte_count = 0;
+ cbdata.n_flows = 0;
+ classifier_for_each_match(&ofproto->cls, target,
+ table_id_to_include(table_id),
+ aggregate_stats_cb, &cbdata);
+
+ oasr->flow_count = htonl(cbdata.n_flows);
+ oasr->packet_count = htonll(cbdata.packet_count);
+ oasr->byte_count = htonll(cbdata.byte_count);
+ memset(oasr->pad, 0, sizeof oasr->pad);
+}
+
static int
-handle_aggregate_stats_request(struct ofproto *p, struct ofconn *ofconn,
+handle_aggregate_stats_request(struct ofconn *ofconn,
const struct ofp_stats_request *osr,
size_t arg_size)
{
- struct ofp_aggregate_stats_request *asr;
+ struct ofp_aggregate_stats_request *request;
struct ofp_aggregate_stats_reply *reply;
- struct aggregate_stats_cbdata cbdata;
struct cls_rule target;
struct ofpbuf *msg;
- if (arg_size != sizeof *asr) {
+ if (arg_size != sizeof *request) {
return ofp_mkerr(OFPET_BAD_REQUEST, OFPBRC_BAD_LEN);
}
- asr = (struct ofp_aggregate_stats_request *) osr->body;
+ request = (struct ofp_aggregate_stats_request *) osr->body;
- COVERAGE_INC(ofproto_agg_request);
- cbdata.ofproto = p;
- cbdata.out_port = asr->out_port;
- cbdata.packet_count = 0;
- cbdata.byte_count = 0;
- cbdata.n_flows = 0;
- cls_rule_from_match(&asr->match, 0, false, 0, &target);
- classifier_for_each_match(&p->cls, &target,
- table_id_to_include(asr->table_id),
- aggregate_stats_cb, &cbdata);
+ cls_rule_from_match(&request->match, 0, NXFF_OPENFLOW10, 0, &target);
- msg = start_stats_reply(osr, sizeof *reply);
- reply = append_stats_reply(sizeof *reply, ofconn, &msg);
- reply->flow_count = htonl(cbdata.n_flows);
- reply->packet_count = htonll(cbdata.packet_count);
- reply->byte_count = htonll(cbdata.byte_count);
+ msg = start_ofp_stats_reply(osr, sizeof *reply);
+ reply = append_ofp_stats_reply(sizeof *reply, ofconn, &msg);
+ query_aggregate_stats(ofconn->ofproto, &target, request->out_port,
+ request->table_id, reply);
queue_tx(msg, ofconn, ofconn->reply_counter);
return 0;
}
-struct queue_stats_cbdata {
- struct ofconn *ofconn;
- struct ofpbuf *msg;
- uint16_t port_no;
-};
-
-static void
-put_queue_stats(struct queue_stats_cbdata *cbdata, uint32_t queue_id,
+static int
+handle_nxst_aggregate(struct ofconn *ofconn, struct ofpbuf *b)
+{
+ struct nx_aggregate_stats_request *request;
+ struct ofp_aggregate_stats_reply *reply;
+ struct cls_rule target;
+ struct ofpbuf *buf;
+ int error;
+
+ /* Dissect the message. */
+ request = ofpbuf_try_pull(b, sizeof *request);
+ if (!request) {
+ return ofp_mkerr(OFPET_BAD_REQUEST, OFPBRC_BAD_LEN);
+ }
+ error = nx_pull_match(b, ntohs(request->match_len), 0, &target);
+ if (error) {
+ return error;
+ }
+
+ /* Reply. */
+ COVERAGE_INC(ofproto_flows_req);
+ buf = start_nxstats_reply(&request->nsm, sizeof *reply);
+ reply = ofpbuf_put_uninit(buf, sizeof *reply);
+ query_aggregate_stats(ofconn->ofproto, &target, request->out_port,
+ request->table_id, reply);
+ queue_tx(buf, ofconn, ofconn->reply_counter);
+
+ return 0;
+}
+
+struct queue_stats_cbdata {
+ struct ofconn *ofconn;
+ struct ofport *ofport;
+ struct ofpbuf *msg;
+};
+
+static void
+put_queue_stats(struct queue_stats_cbdata *cbdata, uint32_t queue_id,
const struct netdev_queue_stats *stats)
{
struct ofp_queue_stats *reply;
- reply = append_stats_reply(sizeof *reply, cbdata->ofconn, &cbdata->msg);
- reply->port_no = htons(cbdata->port_no);
+ reply = append_ofp_stats_reply(sizeof *reply, cbdata->ofconn, &cbdata->msg);
+ reply->port_no = htons(cbdata->ofport->opp.port_no);
memset(reply->pad, 0, sizeof reply->pad);
reply->queue_id = htonl(queue_id);
reply->tx_bytes = htonll(stats->tx_bytes);
}
static void
-handle_queue_stats_for_port(struct ofport *port, uint16_t port_no,
- uint32_t queue_id,
+handle_queue_stats_for_port(struct ofport *port, uint32_t queue_id,
struct queue_stats_cbdata *cbdata)
{
- cbdata->port_no = port_no;
+ cbdata->ofport = port;
if (queue_id == OFPQ_ALL) {
netdev_dump_queue_stats(port->netdev,
handle_queue_stats_dump_cb, cbdata);
} else {
struct netdev_queue_stats stats;
- netdev_get_queue_stats(port->netdev, queue_id, &stats);
- put_queue_stats(cbdata, queue_id, &stats);
+ if (!netdev_get_queue_stats(port->netdev, queue_id, &stats)) {
+ put_queue_stats(cbdata, queue_id, &stats);
+ }
}
}
static int
-handle_queue_stats_request(struct ofproto *ofproto, struct ofconn *ofconn,
+handle_queue_stats_request(struct ofconn *ofconn,
const struct ofp_stats_request *osr,
size_t arg_size)
{
+ struct ofproto *ofproto = ofconn->ofproto;
struct ofp_queue_stats_request *qsr;
struct queue_stats_cbdata cbdata;
struct ofport *port;
COVERAGE_INC(ofproto_queue_req);
cbdata.ofconn = ofconn;
- cbdata.msg = start_stats_reply(osr, 128);
+ cbdata.msg = start_ofp_stats_reply(osr, 128);
port_no = ntohs(qsr->port_no);
queue_id = ntohl(qsr->queue_id);
if (port_no == OFPP_ALL) {
- PORT_ARRAY_FOR_EACH (port, &ofproto->ports, port_no) {
- handle_queue_stats_for_port(port, port_no, queue_id, &cbdata);
+ HMAP_FOR_EACH (port, hmap_node, &ofproto->ports) {
+ handle_queue_stats_for_port(port, queue_id, &cbdata);
}
} else if (port_no < ofproto->max_ports) {
- port = port_array_get(&ofproto->ports, port_no);
+ port = get_port(ofproto, ofp_port_to_odp_port(port_no));
if (port) {
- handle_queue_stats_for_port(port, port_no, queue_id, &cbdata);
+ handle_queue_stats_for_port(port, queue_id, &cbdata);
}
} else {
ofpbuf_delete(cbdata.msg);
}
static int
-handle_stats_request(struct ofproto *p, struct ofconn *ofconn,
- struct ofp_header *oh)
+handle_vendor_stats_request(struct ofconn *ofconn,
+ struct ofp_stats_request *osr, size_t arg_size)
+{
+ struct nicira_stats_msg *nsm;
+ struct ofpbuf b;
+ ovs_be32 vendor;
+
+ if (arg_size < 4) {
+ VLOG_WARN_RL(&rl, "truncated vendor stats request body");
+ return ofp_mkerr(OFPET_BAD_REQUEST, OFPBRC_BAD_LEN);
+ }
+
+ memcpy(&vendor, osr->body, sizeof vendor);
+ if (vendor != htonl(NX_VENDOR_ID)) {
+ return ofp_mkerr(OFPET_BAD_REQUEST, OFPBRC_BAD_VENDOR);
+ }
+
+ if (ntohs(osr->header.length) < sizeof(struct nicira_stats_msg)) {
+ VLOG_WARN_RL(&rl, "truncated Nicira stats request");
+ return ofp_mkerr(OFPET_BAD_REQUEST, OFPBRC_BAD_LEN);
+ }
+
+ nsm = (struct nicira_stats_msg *) osr;
+ b.data = nsm;
+ b.size = ntohs(nsm->header.length);
+ switch (ntohl(nsm->subtype)) {
+ case NXST_FLOW:
+ return handle_nxst_flow(ofconn, &b);
+
+ case NXST_AGGREGATE:
+ return handle_nxst_aggregate(ofconn, &b);
+
+ default:
+ return ofp_mkerr(OFPET_BAD_REQUEST, OFPBRC_BAD_SUBTYPE);
+ }
+}
+
+static int
+handle_stats_request(struct ofconn *ofconn, struct ofp_header *oh)
{
struct ofp_stats_request *osr;
size_t arg_size;
switch (ntohs(osr->type)) {
case OFPST_DESC:
- return handle_desc_stats_request(p, ofconn, osr);
+ return handle_desc_stats_request(ofconn, osr);
case OFPST_FLOW:
- return handle_flow_stats_request(p, ofconn, osr, arg_size);
+ return handle_flow_stats_request(ofconn, osr, arg_size);
case OFPST_AGGREGATE:
- return handle_aggregate_stats_request(p, ofconn, osr, arg_size);
+ return handle_aggregate_stats_request(ofconn, osr, arg_size);
case OFPST_TABLE:
- return handle_table_stats_request(p, ofconn, osr);
+ return handle_table_stats_request(ofconn, osr);
case OFPST_PORT:
- return handle_port_stats_request(p, ofconn, osr, arg_size);
+ return handle_port_stats_request(ofconn, osr, arg_size);
case OFPST_QUEUE:
- return handle_queue_stats_request(p, ofconn, osr, arg_size);
+ return handle_queue_stats_request(ofconn, osr, arg_size);
case OFPST_VENDOR:
- return ofp_mkerr(OFPET_BAD_REQUEST, OFPBRC_BAD_VENDOR);
+ return handle_vendor_stats_request(ofconn, osr, arg_size);
default:
return ofp_mkerr(OFPET_BAD_REQUEST, OFPBRC_BAD_STAT);
}
}
+struct flow_mod {
+ struct cls_rule cr;
+ ovs_be64 cookie;
+ uint16_t command;
+ uint16_t idle_timeout;
+ uint16_t hard_timeout;
+ uint32_t buffer_id;
+ uint16_t out_port;
+ uint16_t flags;
+ union ofp_action *actions;
+ size_t n_actions;
+};
+
/* Implements OFPFC_ADD and the cases for OFPFC_MODIFY and OFPFC_MODIFY_STRICT
* in which no matching flow already exists in the flow table.
*
* Adds the flow specified by 'ofm', which is followed by 'n_actions'
- * ofp_actions, to 'p''s flow table. Returns 0 on success or an OpenFlow error
- * code as encoded by ofp_mkerr() on failure.
+ * ofp_actions, to ofconn->ofproto's flow table. Returns 0 on success or an
+ * OpenFlow error code as encoded by ofp_mkerr() on failure.
*
* 'ofconn' is used to retrieve the packet buffer specified in ofm->buffer_id,
* if any. */
static int
-add_flow(struct ofproto *p, struct ofconn *ofconn,
- const struct ofp_flow_mod *ofm, size_t n_actions)
+add_flow(struct ofconn *ofconn, struct flow_mod *fm)
{
+ struct ofproto *p = ofconn->ofproto;
struct ofpbuf *packet;
struct rule *rule;
uint16_t in_port;
int error;
- if (ofm->flags & htons(OFPFF_CHECK_OVERLAP)) {
- flow_t flow;
- uint32_t wildcards;
-
- flow_from_match(&ofm->match, p->tun_id_from_cookie, ofm->cookie,
- &flow, &wildcards);
- if (classifier_rule_overlaps(&p->cls, &flow, wildcards,
- ntohs(ofm->priority))) {
- return ofp_mkerr(OFPET_FLOW_MOD_FAILED, OFPFMFC_OVERLAP);
- }
+ if (fm->flags & OFPFF_CHECK_OVERLAP
+ && classifier_rule_overlaps(&p->cls, &fm->cr)) {
+ return ofp_mkerr(OFPET_FLOW_MOD_FAILED, OFPFMFC_OVERLAP);
}
- rule = rule_create(p, NULL, (const union ofp_action *) ofm->actions,
- n_actions, ntohs(ofm->idle_timeout),
- ntohs(ofm->hard_timeout), ofm->cookie,
- ofm->flags & htons(OFPFF_SEND_FLOW_REM));
- cls_rule_from_match(&ofm->match, ntohs(ofm->priority),
- p->tun_id_from_cookie, ofm->cookie, &rule->cr);
+ rule = rule_create(p, NULL, fm->actions, fm->n_actions,
+ fm->idle_timeout, fm->hard_timeout, fm->cookie,
+ fm->flags & OFPFF_SEND_FLOW_REM);
+ rule->cr = fm->cr;
error = 0;
- if (ofm->buffer_id != htonl(UINT32_MAX)) {
- error = pktbuf_retrieve(ofconn->pktbuf, ntohl(ofm->buffer_id),
+ if (fm->buffer_id != UINT32_MAX) {
+ error = pktbuf_retrieve(ofconn->pktbuf, fm->buffer_id,
&packet, &in_port);
} else {
packet = NULL;
}
static struct rule *
-find_flow_strict(struct ofproto *p, const struct ofp_flow_mod *ofm)
+find_flow_strict(struct ofproto *p, const struct flow_mod *fm)
{
- uint32_t wildcards;
- flow_t flow;
-
- flow_from_match(&ofm->match, p->tun_id_from_cookie, ofm->cookie,
- &flow, &wildcards);
- return rule_from_cls_rule(classifier_find_rule_exactly(
- &p->cls, &flow, wildcards,
- ntohs(ofm->priority)));
+ return rule_from_cls_rule(classifier_find_rule_exactly(&p->cls, &fm->cr));
}
static int
-send_buffered_packet(struct ofproto *ofproto, struct ofconn *ofconn,
- struct rule *rule, const struct ofp_flow_mod *ofm)
+send_buffered_packet(struct ofconn *ofconn,
+ struct rule *rule, uint32_t buffer_id)
{
struct ofpbuf *packet;
uint16_t in_port;
- flow_t flow;
+ struct flow flow;
int error;
- if (ofm->buffer_id == htonl(UINT32_MAX)) {
+ if (buffer_id == UINT32_MAX) {
return 0;
}
- error = pktbuf_retrieve(ofconn->pktbuf, ntohl(ofm->buffer_id),
- &packet, &in_port);
+ error = pktbuf_retrieve(ofconn->pktbuf, buffer_id, &packet, &in_port);
if (error) {
return error;
}
flow_extract(packet, 0, in_port, &flow);
- rule_execute(ofproto, rule, packet, &flow);
+ rule_execute(ofconn->ofproto, rule, packet, &flow);
return 0;
}
struct modify_flows_cbdata {
struct ofproto *ofproto;
- const struct ofp_flow_mod *ofm;
- size_t n_actions;
+ const struct flow_mod *fm;
struct rule *match;
};
-static int modify_flow(struct ofproto *, const struct ofp_flow_mod *,
- size_t n_actions, struct rule *);
+static int modify_flow(struct ofproto *, const struct flow_mod *,
+ struct rule *);
static void modify_flows_cb(struct cls_rule *, void *cbdata_);
/* Implements OFPFC_MODIFY. Returns 0 on success or an OpenFlow error code as
* 'ofconn' is used to retrieve the packet buffer specified in ofm->buffer_id,
* if any. */
static int
-modify_flows_loose(struct ofproto *p, struct ofconn *ofconn,
- const struct ofp_flow_mod *ofm, size_t n_actions)
+modify_flows_loose(struct ofconn *ofconn, struct flow_mod *fm)
{
struct modify_flows_cbdata cbdata;
- struct cls_rule target;
- cbdata.ofproto = p;
- cbdata.ofm = ofm;
- cbdata.n_actions = n_actions;
+ cbdata.ofproto = ofconn->ofproto;
+ cbdata.fm = fm;
cbdata.match = NULL;
- cls_rule_from_match(&ofm->match, 0, p->tun_id_from_cookie, ofm->cookie,
- &target);
-
- classifier_for_each_match(&p->cls, &target, CLS_INC_ALL,
+ classifier_for_each_match(&ofconn->ofproto->cls, &fm->cr, CLS_INC_ALL,
modify_flows_cb, &cbdata);
if (cbdata.match) {
/* This credits the packet to whichever flow happened to happened to
* match last. That's weird. Maybe we should do a lookup for the
* flow that actually matches the packet? Who knows. */
- send_buffered_packet(p, ofconn, cbdata.match, ofm);
+ send_buffered_packet(ofconn, cbdata.match, fm->buffer_id);
return 0;
} else {
- return add_flow(p, ofconn, ofm, n_actions);
+ return add_flow(ofconn, fm);
}
}
* 'ofconn' is used to retrieve the packet buffer specified in ofm->buffer_id,
* if any. */
static int
-modify_flow_strict(struct ofproto *p, struct ofconn *ofconn,
- struct ofp_flow_mod *ofm, size_t n_actions)
+modify_flow_strict(struct ofconn *ofconn, struct flow_mod *fm)
{
- struct rule *rule = find_flow_strict(p, ofm);
+ struct ofproto *p = ofconn->ofproto;
+ struct rule *rule = find_flow_strict(p, fm);
if (rule && !rule_is_hidden(rule)) {
- modify_flow(p, ofm, n_actions, rule);
- return send_buffered_packet(p, ofconn, rule, ofm);
+ modify_flow(p, fm, rule);
+ return send_buffered_packet(ofconn, rule, fm->buffer_id);
} else {
- return add_flow(p, ofconn, ofm, n_actions);
+ return add_flow(ofconn, fm);
}
}
if (!rule_is_hidden(rule)) {
cbdata->match = rule;
- modify_flow(cbdata->ofproto, cbdata->ofm, cbdata->n_actions, rule);
+ modify_flow(cbdata->ofproto, cbdata->fm, rule);
}
}
* the rule's actions to match those in 'ofm' (which is followed by 'n_actions'
* ofp_action[] structures). */
static int
-modify_flow(struct ofproto *p, const struct ofp_flow_mod *ofm,
- size_t n_actions, struct rule *rule)
+modify_flow(struct ofproto *p, const struct flow_mod *fm, struct rule *rule)
{
- size_t actions_len = n_actions * sizeof *rule->actions;
+ size_t actions_len = fm->n_actions * sizeof *rule->actions;
- rule->flow_cookie = ofm->cookie;
+ rule->flow_cookie = fm->cookie;
/* If the actions are the same, do nothing. */
- if (n_actions == rule->n_actions
- && !memcmp(ofm->actions, rule->actions, actions_len))
- {
+ if (fm->n_actions == rule->n_actions
+ && (!fm->n_actions
+ || !memcmp(fm->actions, rule->actions, actions_len))) {
return 0;
}
/* Replace actions. */
free(rule->actions);
- rule->actions = xmemdup(ofm->actions, actions_len);
- rule->n_actions = n_actions;
+ rule->actions = fm->n_actions ? xmemdup(fm->actions, actions_len) : NULL;
+ rule->n_actions = fm->n_actions;
/* Make sure that the datapath gets updated properly. */
if (rule->cr.wc.wildcards) {
struct delete_flows_cbdata {
struct ofproto *ofproto;
- uint16_t out_port;
+ ovs_be16 out_port;
};
static void delete_flows_cb(struct cls_rule *, void *cbdata_);
-static void delete_flow(struct ofproto *, struct rule *, uint16_t out_port);
+static void delete_flow(struct ofproto *, struct rule *, ovs_be16 out_port);
/* Implements OFPFC_DELETE. */
static void
-delete_flows_loose(struct ofproto *p, const struct ofp_flow_mod *ofm)
+delete_flows_loose(struct ofproto *p, const struct flow_mod *fm)
{
struct delete_flows_cbdata cbdata;
- struct cls_rule target;
cbdata.ofproto = p;
- cbdata.out_port = ofm->out_port;
+ cbdata.out_port = htons(fm->out_port);
- cls_rule_from_match(&ofm->match, 0, p->tun_id_from_cookie, ofm->cookie,
- &target);
-
- classifier_for_each_match(&p->cls, &target, CLS_INC_ALL,
+ classifier_for_each_match(&p->cls, &fm->cr, CLS_INC_ALL,
delete_flows_cb, &cbdata);
}
/* Implements OFPFC_DELETE_STRICT. */
static void
-delete_flow_strict(struct ofproto *p, struct ofp_flow_mod *ofm)
+delete_flow_strict(struct ofproto *p, struct flow_mod *fm)
{
- struct rule *rule = find_flow_strict(p, ofm);
+ struct rule *rule = find_flow_strict(p, fm);
if (rule) {
- delete_flow(p, rule, ofm->out_port);
+ delete_flow(p, rule, htons(fm->out_port));
}
}
* 'out_port' is htons(OFPP_NONE) or if 'rule' actually outputs to the
* specified 'out_port'. */
static void
-delete_flow(struct ofproto *p, struct rule *rule, uint16_t out_port)
+delete_flow(struct ofproto *p, struct rule *rule, ovs_be16 out_port)
{
if (rule_is_hidden(rule)) {
return;
return;
}
- send_flow_removed(p, rule, time_msec(), OFPRR_DELETE);
+ send_flow_removed(p, rule, OFPRR_DELETE);
rule_remove(p, rule);
}
\f
static int
-handle_flow_mod(struct ofproto *p, struct ofconn *ofconn,
- struct ofp_flow_mod *ofm)
+flow_mod_core(struct ofconn *ofconn, struct flow_mod *fm)
{
- struct ofp_match orig_match;
- size_t n_actions;
+ struct ofproto *p = ofconn->ofproto;
int error;
- error = reject_slave_controller(ofconn, &ofm->header);
+ error = reject_slave_controller(ofconn, "flow_mod");
if (error) {
return error;
}
- error = check_ofp_message_array(&ofm->header, OFPT_FLOW_MOD, sizeof *ofm,
- sizeof *ofm->actions, &n_actions);
+
+ error = validate_actions(fm->actions, fm->n_actions,
+ &fm->cr.flow, p->max_ports);
if (error) {
return error;
}
/* We do not support the emergency flow cache. It will hopefully
* get dropped from OpenFlow in the near future. */
- if (ofm->flags & htons(OFPFF_EMERG)) {
+ if (fm->flags & OFPFF_EMERG) {
/* There isn't a good fit for an error code, so just state that the
* flow table is full. */
return ofp_mkerr(OFPET_FLOW_MOD_FAILED, OFPFMFC_ALL_TABLES_FULL);
}
- /* Normalize ofp->match. If normalization actually changes anything, then
+ switch (fm->command) {
+ case OFPFC_ADD:
+ return add_flow(ofconn, fm);
+
+ case OFPFC_MODIFY:
+ return modify_flows_loose(ofconn, fm);
+
+ case OFPFC_MODIFY_STRICT:
+ return modify_flow_strict(ofconn, fm);
+
+ case OFPFC_DELETE:
+ delete_flows_loose(p, fm);
+ return 0;
+
+ case OFPFC_DELETE_STRICT:
+ delete_flow_strict(p, fm);
+ return 0;
+
+ default:
+ return ofp_mkerr(OFPET_FLOW_MOD_FAILED, OFPFMFC_BAD_COMMAND);
+ }
+}
+
+static int
+handle_ofpt_flow_mod(struct ofconn *ofconn, struct ofp_header *oh)
+{
+ struct ofp_match orig_match;
+ struct ofp_flow_mod *ofm;
+ struct flow_mod fm;
+ struct ofpbuf b;
+ int error;
+
+ b.data = oh;
+ b.size = ntohs(oh->length);
+
+ /* Dissect the message. */
+ ofm = ofpbuf_try_pull(&b, sizeof *ofm);
+ if (!ofm) {
+ return ofp_mkerr(OFPET_BAD_REQUEST, OFPBRC_BAD_LEN);
+ }
+ error = ofputil_pull_actions(&b, b.size, &fm.actions, &fm.n_actions);
+ if (error) {
+ return error;
+ }
+
+ /* Normalize ofm->match. If normalization actually changes anything, then
* log the differences. */
ofm->match.pad1[0] = ofm->match.pad2[0] = 0;
orig_match = ofm->match;
}
}
- if (!ofm->match.wildcards) {
- ofm->priority = htons(UINT16_MAX);
- }
-
- error = validate_actions((const union ofp_action *) ofm->actions,
- n_actions, p->max_ports);
- if (error) {
- return error;
- }
+ /* Translate the message. */
+ cls_rule_from_match(&ofm->match, ntohs(ofm->priority), ofconn->flow_format,
+ ofm->cookie, &fm.cr);
+ fm.cookie = ofm->cookie;
+ fm.command = ntohs(ofm->command);
+ fm.idle_timeout = ntohs(ofm->idle_timeout);
+ fm.hard_timeout = ntohs(ofm->hard_timeout);
+ fm.buffer_id = ntohl(ofm->buffer_id);
+ fm.out_port = ntohs(ofm->out_port);
+ fm.flags = ntohs(ofm->flags);
- switch (ntohs(ofm->command)) {
- case OFPFC_ADD:
- return add_flow(p, ofconn, ofm, n_actions);
+ /* Execute the command. */
+ return flow_mod_core(ofconn, &fm);
+}
- case OFPFC_MODIFY:
- return modify_flows_loose(p, ofconn, ofm, n_actions);
+static int
+handle_nxt_flow_mod(struct ofconn *ofconn, struct ofp_header *oh)
+{
+ struct nx_flow_mod *nfm;
+ struct flow_mod fm;
+ struct ofpbuf b;
+ int error;
- case OFPFC_MODIFY_STRICT:
- return modify_flow_strict(p, ofconn, ofm, n_actions);
+ b.data = oh;
+ b.size = ntohs(oh->length);
- case OFPFC_DELETE:
- delete_flows_loose(p, ofm);
- return 0;
+ /* Dissect the message. */
+ nfm = ofpbuf_try_pull(&b, sizeof *nfm);
+ if (!nfm) {
+ return ofp_mkerr(OFPET_BAD_REQUEST, OFPBRC_BAD_LEN);
+ }
+ error = nx_pull_match(&b, ntohs(nfm->match_len), ntohs(nfm->priority),
+ &fm.cr);
+ if (error) {
+ return error;
+ }
+ error = ofputil_pull_actions(&b, b.size, &fm.actions, &fm.n_actions);
+ if (error) {
+ return error;
+ }
- case OFPFC_DELETE_STRICT:
- delete_flow_strict(p, ofm);
- return 0;
+ /* Translate the message. */
+ fm.cookie = nfm->cookie;
+ fm.command = ntohs(nfm->command);
+ fm.idle_timeout = ntohs(nfm->idle_timeout);
+ fm.hard_timeout = ntohs(nfm->hard_timeout);
+ fm.buffer_id = ntohl(nfm->buffer_id);
+ fm.out_port = ntohs(nfm->out_port);
+ fm.flags = ntohs(nfm->flags);
- default:
- return ofp_mkerr(OFPET_FLOW_MOD_FAILED, OFPFMFC_BAD_COMMAND);
- }
+ /* Execute the command. */
+ return flow_mod_core(ofconn, &fm);
}
static int
-handle_tun_id_from_cookie(struct ofproto *p, struct nxt_tun_id_cookie *msg)
+handle_tun_id_from_cookie(struct ofconn *ofconn, struct nxt_tun_id_cookie *msg)
{
int error;
return error;
}
- p->tun_id_from_cookie = !!msg->set;
+ ofconn->flow_format = msg->set ? NXFF_TUN_ID_FROM_COOKIE : NXFF_OPENFLOW10;
return 0;
}
static int
-handle_role_request(struct ofproto *ofproto,
- struct ofconn *ofconn, struct nicira_header *msg)
+handle_role_request(struct ofconn *ofconn, struct nicira_header *msg)
{
struct nx_role_request *nrr;
struct nx_role_request *reply;
if (role == NX_ROLE_MASTER) {
struct ofconn *other;
- HMAP_FOR_EACH (other, struct ofconn, hmap_node,
- &ofproto->controllers) {
+ HMAP_FOR_EACH (other, hmap_node, &ofconn->ofproto->controllers) {
if (other->role == NX_ROLE_MASTER) {
other->role = NX_ROLE_SLAVE;
}
}
ofconn->role = role;
- reply = make_openflow_xid(sizeof *reply, OFPT_VENDOR, msg->header.xid,
- &buf);
- reply->nxh.vendor = htonl(NX_VENDOR_ID);
- reply->nxh.subtype = htonl(NXT_ROLE_REPLY);
+ reply = make_nxmsg_xid(sizeof *reply, NXT_ROLE_REPLY, msg->header.xid,
+ &buf);
reply->role = htonl(role);
queue_tx(buf, ofconn, ofconn->reply_counter);
}
static int
-handle_vendor(struct ofproto *p, struct ofconn *ofconn, void *msg)
+handle_nxt_set_flow_format(struct ofconn *ofconn,
+ struct nxt_set_flow_format *msg)
{
+ uint32_t format;
+ int error;
+
+ error = check_ofp_message(&msg->header, OFPT_VENDOR, sizeof *msg);
+ if (error) {
+ return error;
+ }
+
+ format = ntohl(msg->format);
+ if (format == NXFF_OPENFLOW10
+ || format == NXFF_TUN_ID_FROM_COOKIE
+ || format == NXFF_NXM) {
+ ofconn->flow_format = format;
+ return 0;
+ } else {
+ return ofp_mkerr(OFPET_BAD_REQUEST, OFPBRC_EPERM);
+ }
+}
+
+static int
+handle_vendor(struct ofconn *ofconn, void *msg)
+{
+ struct ofproto *p = ofconn->ofproto;
struct ofp_vendor_header *ovh = msg;
struct nicira_header *nh;
msg);
case NXT_TUN_ID_FROM_COOKIE:
- return handle_tun_id_from_cookie(p, msg);
+ return handle_tun_id_from_cookie(ofconn, msg);
case NXT_ROLE_REQUEST:
- return handle_role_request(p, ofconn, msg);
+ return handle_role_request(ofconn, msg);
+
+ case NXT_SET_FLOW_FORMAT:
+ return handle_nxt_set_flow_format(ofconn, msg);
+
+ case NXT_FLOW_MOD:
+ return handle_nxt_flow_mod(ofconn, &ovh->header);
}
return ofp_mkerr(OFPET_BAD_REQUEST, OFPBRC_BAD_SUBTYPE);
}
static void
-handle_openflow(struct ofconn *ofconn, struct ofproto *p,
- struct ofpbuf *ofp_msg)
+handle_openflow(struct ofconn *ofconn, struct ofpbuf *ofp_msg)
{
struct ofp_header *oh = ofp_msg->data;
int error;
break;
case OFPT_FEATURES_REQUEST:
- error = handle_features_request(p, ofconn, oh);
+ error = handle_features_request(ofconn, oh);
break;
case OFPT_GET_CONFIG_REQUEST:
- error = handle_get_config_request(p, ofconn, oh);
+ error = handle_get_config_request(ofconn, oh);
break;
case OFPT_SET_CONFIG:
- error = handle_set_config(p, ofconn, ofp_msg->data);
+ error = handle_set_config(ofconn, ofp_msg->data);
break;
case OFPT_PACKET_OUT:
- error = handle_packet_out(p, ofconn, ofp_msg->data);
+ error = handle_packet_out(ofconn, ofp_msg->data);
break;
case OFPT_PORT_MOD:
- error = handle_port_mod(p, ofconn, oh);
+ error = handle_port_mod(ofconn, oh);
break;
case OFPT_FLOW_MOD:
- error = handle_flow_mod(p, ofconn, ofp_msg->data);
+ error = handle_ofpt_flow_mod(ofconn, ofp_msg->data);
break;
case OFPT_STATS_REQUEST:
- error = handle_stats_request(p, ofconn, oh);
+ error = handle_stats_request(ofconn, oh);
break;
case OFPT_VENDOR:
- error = handle_vendor(p, ofconn, ofp_msg->data);
+ error = handle_vendor(ofconn, ofp_msg->data);
break;
case OFPT_BARRIER_REQUEST:
struct odp_msg *msg = packet->data;
struct rule *rule;
struct ofpbuf payload;
- flow_t flow;
+ struct flow flow;
payload.data = msg + 1;
payload.size = msg->length - sizeof *msg;
memset(&action, 0, sizeof(action));
action.output.type = ODPAT_OUTPUT;
action.output.port = ODPP_LOCAL;
- dpif_execute(p->dpif, flow.in_port, &action, 1, &payload);
+ dpif_execute(p->dpif, &action, 1, &payload);
}
rule = lookup_valid_rule(p, &flow);
if (!rule) {
/* Don't send a packet-in if OFPPC_NO_PACKET_IN asserted. */
- struct ofport *port = port_array_get(&p->ports, msg->port);
+ struct ofport *port = get_port(p, msg->port);
if (port) {
if (port->opp.config & OFPPC_NO_PACKET_IN) {
COVERAGE_INC(ofproto_no_packet_in);
}
}
\f
-static void
-revalidate_cb(struct cls_rule *sub_, void *cbdata_)
-{
- struct rule *sub = rule_from_cls_rule(sub_);
- struct revalidate_cbdata *cbdata = cbdata_;
+/* Flow expiration. */
- if (cbdata->revalidate_all
- || (cbdata->revalidate_subrules && sub->super)
- || (tag_set_intersects(&cbdata->revalidate_set, sub->tags))) {
- revalidate_rule(cbdata->ofproto, sub);
- }
-}
+struct expire_cbdata {
+ struct ofproto *ofproto;
+ int dp_max_idle;
+};
-static bool
-revalidate_rule(struct ofproto *p, struct rule *rule)
-{
- const flow_t *flow = &rule->cr.flow;
+static int ofproto_dp_max_idle(const struct ofproto *);
+static void ofproto_update_used(struct ofproto *);
+static void rule_expire(struct cls_rule *, void *cbdata);
- COVERAGE_INC(ofproto_revalidate_rule);
- if (rule->super) {
- struct rule *super;
- super = rule_from_cls_rule(classifier_lookup_wild(&p->cls, flow));
- if (!super) {
- rule_remove(p, rule);
- return false;
- } else if (super != rule->super) {
- COVERAGE_INC(ofproto_revalidate_moved);
- list_remove(&rule->list);
- list_push_back(&super->list, &rule->list);
- rule->super = super;
- rule->hard_timeout = super->hard_timeout;
- rule->idle_timeout = super->idle_timeout;
- rule->created = super->created;
- rule->used = 0;
- }
- }
+/* This function is called periodically by ofproto_run(). Its job is to
+ * collect updates for the flows that have been installed into the datapath,
+ * most importantly when they last were used, and then use that information to
+ * expire flows that have not been used recently.
+ *
+ * Returns the number of milliseconds after which it should be called again. */
+static int
+ofproto_expire(struct ofproto *ofproto)
+{
+ struct expire_cbdata cbdata;
- rule_update_actions(p, rule);
- return true;
-}
+ /* Update 'used' for each flow in the datapath. */
+ ofproto_update_used(ofproto);
-static struct ofpbuf *
-compose_flow_removed(struct ofproto *p, const struct rule *rule,
- long long int now, uint8_t reason)
-{
- struct ofp_flow_removed *ofr;
- struct ofpbuf *buf;
- long long int tdiff = now - rule->created;
- uint32_t sec = tdiff / 1000;
- uint32_t msec = tdiff - (sec * 1000);
+ /* Expire idle flows.
+ *
+ * A wildcarded flow is idle only when all of its subrules have expired due
+ * to becoming idle, so iterate through the exact-match flows first. */
+ cbdata.ofproto = ofproto;
+ cbdata.dp_max_idle = ofproto_dp_max_idle(ofproto);
+ classifier_for_each(&ofproto->cls, CLS_INC_EXACT, rule_expire, &cbdata);
+ classifier_for_each(&ofproto->cls, CLS_INC_WILD, rule_expire, &cbdata);
- ofr = make_openflow(sizeof *ofr, OFPT_FLOW_REMOVED, &buf);
- flow_to_match(&rule->cr.flow, rule->cr.wc.wildcards, p->tun_id_from_cookie,
- &ofr->match);
- ofr->cookie = rule->flow_cookie;
- ofr->priority = htons(rule->cr.priority);
- ofr->reason = reason;
- ofr->duration_sec = htonl(sec);
- ofr->duration_nsec = htonl(msec * 1000000);
- ofr->idle_timeout = htons(rule->idle_timeout);
- ofr->packet_count = htonll(rule->packet_count);
- ofr->byte_count = htonll(rule->byte_count);
+ /* Let the hook know that we're at a stable point: all outstanding data
+ * in existing flows has been accounted to the account_cb. Thus, the
+ * hook can now reasonably do operations that depend on having accurate
+ * flow volume accounting (currently, that's just bond rebalancing). */
+ if (ofproto->ofhooks->account_checkpoint_cb) {
+ ofproto->ofhooks->account_checkpoint_cb(ofproto->aux);
+ }
- return buf;
+ return MIN(cbdata.dp_max_idle, 1000);
}
+/* Update 'used' member of each flow currently installed into the datapath. */
static void
-uninstall_idle_flow(struct ofproto *ofproto, struct rule *rule)
+ofproto_update_used(struct ofproto *p)
{
- assert(rule->installed);
- assert(!rule->cr.wc.wildcards);
+ struct odp_flow *flows;
+ size_t n_flows;
+ size_t i;
+ int error;
- if (rule->super) {
- rule_remove(ofproto, rule);
- } else {
- rule_uninstall(ofproto, rule);
+ error = dpif_flow_list_all(p->dpif, &flows, &n_flows);
+ if (error) {
+ return;
}
-}
-static void
-send_flow_removed(struct ofproto *p, struct rule *rule,
- long long int now, uint8_t reason)
-{
- struct ofconn *ofconn;
- struct ofconn *prev;
- struct ofpbuf *buf = NULL;
+ for (i = 0; i < n_flows; i++) {
+ struct odp_flow *f = &flows[i];
+ struct cls_rule target;
+ struct rule *rule;
+ struct flow flow;
- /* We limit the maximum number of queued flow expirations it by accounting
- * them under the counter for replies. That works because preventing
- * OpenFlow requests from being processed also prevents new flows from
- * being added (and expiring). (It also prevents processing OpenFlow
- * requests that would not add new flows, so it is imperfect.) */
+ odp_flow_key_to_flow(&f->key, &flow);
+ cls_rule_init_exact(&flow, UINT16_MAX, &target);
- prev = NULL;
- LIST_FOR_EACH (ofconn, struct ofconn, node, &p->all_conns) {
- if (rule->send_flow_removed && rconn_is_connected(ofconn->rconn)
- && ofconn_receives_async_msgs(ofconn)) {
- if (prev) {
- queue_tx(ofpbuf_clone(buf), prev, prev->reply_counter);
- } else {
- buf = compose_flow_removed(p, rule, now, reason);
- }
- prev = ofconn;
+ rule = rule_from_cls_rule(classifier_find_rule_exactly(&p->cls,
+ &target));
+
+ if (rule && rule->installed) {
+ update_time(p, rule, &f->stats);
+ rule_account(p, rule, f->stats.n_bytes);
+ } else {
+ /* There's a flow in the datapath that we know nothing about.
+ * Delete it. */
+ COVERAGE_INC(ofproto_unexpected_rule);
+ dpif_flow_del(p->dpif, f);
}
+
}
- if (prev) {
- queue_tx(buf, prev, prev->reply_counter);
- }
+ free(flows);
}
-
-static void
-expire_rule(struct cls_rule *cls_rule, void *p_)
+/* Calculates and returns the number of milliseconds of idle time after which
+ * flows should expire from the datapath and we should fold their statistics
+ * into their parent rules in userspace. */
+static int
+ofproto_dp_max_idle(const struct ofproto *ofproto)
{
- struct ofproto *p = p_;
- struct rule *rule = rule_from_cls_rule(cls_rule);
- long long int hard_expire, idle_expire, expire, now;
+ /*
+ * Idle time histogram.
+ *
+ * Most of the time a switch has a relatively small number of flows. When
+ * this is the case we might as well keep statistics for all of them in
+ * userspace and to cache them in the kernel datapath for performance as
+ * well.
+ *
+ * As the number of flows increases, the memory required to maintain
+ * statistics about them in userspace and in the kernel becomes
+ * significant. However, with a large number of flows it is likely that
+ * only a few of them are "heavy hitters" that consume a large amount of
+ * bandwidth. At this point, only heavy hitters are worth caching in the
+ * kernel and maintaining in userspaces; other flows we can discard.
+ *
+ * The technique used to compute the idle time is to build a histogram with
+ * N_BUCKETS bucket whose width is BUCKET_WIDTH msecs each. Each flow that
+ * is installed in the kernel gets dropped in the appropriate bucket.
+ * After the histogram has been built, we compute the cutoff so that only
+ * the most-recently-used 1% of flows (but at least 1000 flows) are kept
+ * cached. At least the most-recently-used bucket of flows is kept, so
+ * actually an arbitrary number of flows can be kept in any given
+ * expiration run (though the next run will delete most of those unless
+ * they receive additional data).
+ *
+ * This requires a second pass through the exact-match flows, in addition
+ * to the pass made by ofproto_update_used(), because the former function
+ * never looks at uninstallable flows.
+ */
+ enum { BUCKET_WIDTH = ROUND_UP(100, TIME_UPDATE_INTERVAL) };
+ enum { N_BUCKETS = 5000 / BUCKET_WIDTH };
+ int buckets[N_BUCKETS] = { 0 };
+ int total, bucket;
+ struct rule *rule;
+ long long int now;
+ int i;
- hard_expire = (rule->hard_timeout
- ? rule->created + rule->hard_timeout * 1000
- : LLONG_MAX);
- idle_expire = (rule->idle_timeout
- && (rule->super || list_is_empty(&rule->list))
- ? rule->used + rule->idle_timeout * 1000
- : LLONG_MAX);
- expire = MIN(hard_expire, idle_expire);
+ total = classifier_count_exact(&ofproto->cls);
+ if (total <= 1000) {
+ return N_BUCKETS * BUCKET_WIDTH;
+ }
+ /* Build histogram. */
now = time_msec();
- if (now < expire) {
- if (rule->installed && now >= rule->used + 5000) {
- uninstall_idle_flow(p, rule);
- } else if (!rule->cr.wc.wildcards) {
- active_timeout(p, rule);
+ CLASSIFIER_FOR_EACH_EXACT_RULE (rule, cr, &ofproto->cls) {
+ long long int idle = now - rule->used;
+ int bucket = (idle <= 0 ? 0
+ : idle >= BUCKET_WIDTH * N_BUCKETS ? N_BUCKETS - 1
+ : (unsigned int) idle / BUCKET_WIDTH);
+ buckets[bucket]++;
+ }
+
+ /* Find the first bucket whose flows should be expired. */
+ for (bucket = 0; bucket < N_BUCKETS; bucket++) {
+ if (buckets[bucket]) {
+ int subtotal = 0;
+ do {
+ subtotal += buckets[bucket++];
+ } while (bucket < N_BUCKETS && subtotal < MAX(1000, total / 100));
+ break;
}
-
- return;
}
- COVERAGE_INC(ofproto_expired);
+ if (VLOG_IS_DBG_ENABLED()) {
+ struct ds s;
- /* Update stats. This code will be a no-op if the rule expired
- * due to an idle timeout. */
- if (rule->cr.wc.wildcards) {
- struct rule *subrule, *next;
- LIST_FOR_EACH_SAFE (subrule, next, struct rule, list, &rule->list) {
- rule_remove(p, subrule);
+ ds_init(&s);
+ ds_put_cstr(&s, "keep");
+ for (i = 0; i < N_BUCKETS; i++) {
+ if (i == bucket) {
+ ds_put_cstr(&s, ", drop");
+ }
+ if (buckets[i]) {
+ ds_put_format(&s, " %d:%d", i * BUCKET_WIDTH, buckets[i]);
+ }
}
- } else {
- rule_uninstall(p, rule);
+ VLOG_INFO("%s: %s (msec:count)",
+ dpif_name(ofproto->dpif), ds_cstr(&s));
+ ds_destroy(&s);
}
- if (!rule_is_hidden(rule)) {
- send_flow_removed(p, rule, now,
- (now >= hard_expire
- ? OFPRR_HARD_TIMEOUT : OFPRR_IDLE_TIMEOUT));
- }
- rule_remove(p, rule);
+ return bucket * BUCKET_WIDTH;
}
static void
-active_timeout(struct ofproto *ofproto, struct rule *rule)
+rule_active_timeout(struct ofproto *ofproto, struct rule *rule)
{
if (ofproto->netflow && !is_controller_rule(rule) &&
netflow_active_timeout_expired(ofproto->netflow, &rule->nf_flow)) {
struct ofexpired expired;
struct odp_flow odp_flow;
- /* Get updated flow stats. */
+ /* Get updated flow stats.
+ *
+ * XXX We could avoid this call entirely if (1) ofproto_update_used()
+ * updated TCP flags and (2) the dpif_flow_list_all() in
+ * ofproto_update_used() zeroed TCP flags. */
memset(&odp_flow, 0, sizeof odp_flow);
if (rule->installed) {
- odp_flow.key = rule->cr.flow;
+ odp_flow_key_from_flow(&odp_flow.key, &rule->cr.flow);
odp_flow.flags = ODPFF_ZERO_TCP_FLAGS;
dpif_flow_get(ofproto->dpif, &odp_flow);
expired.used = rule->used;
netflow_expire(ofproto->netflow, &rule->nf_flow, &expired);
+ }
+}
- /* Schedule us to send the accumulated records once we have
- * collected all of them. */
- poll_immediate_wake();
+/* If 'cls_rule' is an OpenFlow rule, that has expired according to OpenFlow
+ * rules, then delete it entirely.
+ *
+ * If 'cls_rule' is a subrule, that has not been used recently, remove it from
+ * the datapath and fold its statistics back into its super-rule.
+ *
+ * (This is a callback function for classifier_for_each().) */
+static void
+rule_expire(struct cls_rule *cls_rule, void *cbdata_)
+{
+ struct expire_cbdata *cbdata = cbdata_;
+ struct ofproto *ofproto = cbdata->ofproto;
+ struct rule *rule = rule_from_cls_rule(cls_rule);
+ long long int hard_expire, idle_expire, expire, now;
+
+ /* Calculate OpenFlow expiration times for 'rule'. */
+ hard_expire = (rule->hard_timeout
+ ? rule->created + rule->hard_timeout * 1000
+ : LLONG_MAX);
+ idle_expire = (rule->idle_timeout
+ && (rule->super || list_is_empty(&rule->list))
+ ? rule->used + rule->idle_timeout * 1000
+ : LLONG_MAX);
+ expire = MIN(hard_expire, idle_expire);
+
+ now = time_msec();
+ if (now < expire) {
+ /* 'rule' has not expired according to OpenFlow rules. */
+ if (!rule->cr.wc.wildcards) {
+ if (now >= rule->used + cbdata->dp_max_idle) {
+ /* This rule is idle, so drop it to free up resources. */
+ if (rule->super) {
+ /* It's not part of the OpenFlow flow table, so we can
+ * delete it entirely and fold its statistics into its
+ * super-rule. */
+ rule_remove(ofproto, rule);
+ } else {
+ /* It is part of the OpenFlow flow table, so we have to
+ * keep the rule but we can at least uninstall it from the
+ * datapath. */
+ rule_uninstall(ofproto, rule);
+ }
+ } else {
+ /* Send NetFlow active timeout if appropriate. */
+ rule_active_timeout(cbdata->ofproto, rule);
+ }
+ }
+ } else {
+ /* 'rule' has expired according to OpenFlow rules. */
+ COVERAGE_INC(ofproto_expired);
+
+ /* Update stats. (This is a no-op if the rule expired due to an idle
+ * timeout, because that only happens when the rule has no subrules
+ * left.) */
+ if (rule->cr.wc.wildcards) {
+ struct rule *subrule, *next;
+ LIST_FOR_EACH_SAFE (subrule, next, list, &rule->list) {
+ rule_remove(cbdata->ofproto, subrule);
+ }
+ } else {
+ rule_uninstall(cbdata->ofproto, rule);
+ }
+
+ /* Get rid of the rule. */
+ if (!rule_is_hidden(rule)) {
+ send_flow_removed(cbdata->ofproto, rule,
+ (now >= hard_expire
+ ? OFPRR_HARD_TIMEOUT : OFPRR_IDLE_TIMEOUT));
+ }
+ rule_remove(cbdata->ofproto, rule);
}
}
+\f
+static void
+revalidate_cb(struct cls_rule *sub_, void *cbdata_)
+{
+ struct rule *sub = rule_from_cls_rule(sub_);
+ struct revalidate_cbdata *cbdata = cbdata_;
+
+ if (cbdata->revalidate_all
+ || (cbdata->revalidate_subrules && sub->super)
+ || (tag_set_intersects(&cbdata->revalidate_set, sub->tags))) {
+ revalidate_rule(cbdata->ofproto, sub);
+ }
+}
+
+static bool
+revalidate_rule(struct ofproto *p, struct rule *rule)
+{
+ const struct flow *flow = &rule->cr.flow;
+
+ COVERAGE_INC(ofproto_revalidate_rule);
+ if (rule->super) {
+ struct rule *super;
+ super = rule_from_cls_rule(classifier_lookup(&p->cls, flow,
+ CLS_INC_WILD));
+ if (!super) {
+ rule_remove(p, rule);
+ return false;
+ } else if (super != rule->super) {
+ COVERAGE_INC(ofproto_revalidate_moved);
+ list_remove(&rule->list);
+ list_push_back(&super->list, &rule->list);
+ rule->super = super;
+ rule->hard_timeout = super->hard_timeout;
+ rule->idle_timeout = super->idle_timeout;
+ rule->created = rule->used = super->created;
+ }
+ }
+
+ rule_update_actions(p, rule);
+ return true;
+}
+
+static struct ofpbuf *
+compose_ofp_flow_removed(struct ofconn *ofconn, const struct rule *rule,
+ uint8_t reason)
+{
+ struct ofp_flow_removed *ofr;
+ struct ofpbuf *buf;
+
+ ofr = make_openflow(sizeof *ofr, OFPT_FLOW_REMOVED, &buf);
+ flow_to_match(&rule->cr.flow, rule->cr.wc.wildcards, ofconn->flow_format,
+ &ofr->match);
+ ofr->cookie = rule->flow_cookie;
+ ofr->priority = htons(rule->cr.priority);
+ ofr->reason = reason;
+ calc_flow_duration(rule->created, &ofr->duration_sec, &ofr->duration_nsec);
+ ofr->idle_timeout = htons(rule->idle_timeout);
+ ofr->packet_count = htonll(rule->packet_count);
+ ofr->byte_count = htonll(rule->byte_count);
+
+ return buf;
+}
+
+static struct ofpbuf *
+compose_nx_flow_removed(const struct rule *rule, uint8_t reason)
+{
+ struct nx_flow_removed *nfr;
+ struct ofpbuf *buf;
+ int match_len;
+
+ nfr = make_nxmsg(sizeof *nfr, NXT_FLOW_REMOVED, &buf);
+
+ match_len = nx_put_match(buf, &rule->cr);
+
+ nfr->cookie = rule->flow_cookie;
+ nfr->priority = htons(rule->cr.priority);
+ nfr->reason = reason;
+ calc_flow_duration(rule->created, &nfr->duration_sec, &nfr->duration_nsec);
+ nfr->idle_timeout = htons(rule->idle_timeout);
+ nfr->match_len = htons(match_len);
+ nfr->packet_count = htonll(rule->packet_count);
+ nfr->byte_count = htonll(rule->byte_count);
+
+ return buf;
+}
static void
-update_used(struct ofproto *p)
+send_flow_removed(struct ofproto *p, struct rule *rule, uint8_t reason)
{
- struct odp_flow *flows;
- size_t n_flows;
- size_t i;
- int error;
+ struct ofconn *ofconn;
- error = dpif_flow_list_all(p->dpif, &flows, &n_flows);
- if (error) {
+ if (!rule->send_flow_removed) {
return;
}
- for (i = 0; i < n_flows; i++) {
- struct odp_flow *f = &flows[i];
- struct rule *rule;
+ LIST_FOR_EACH (ofconn, node, &p->all_conns) {
+ struct ofpbuf *msg;
- rule = rule_from_cls_rule(
- classifier_find_rule_exactly(&p->cls, &f->key, 0, UINT16_MAX));
- if (!rule || !rule->installed) {
- COVERAGE_INC(ofproto_unexpected_rule);
- dpif_flow_del(p->dpif, f);
+ if (!rconn_is_connected(ofconn->rconn)
+ || !ofconn_receives_async_msgs(ofconn)) {
continue;
}
- update_time(p, rule, &f->stats);
- rule_account(p, rule, f->stats.n_bytes);
+ msg = (ofconn->flow_format == NXFF_NXM
+ ? compose_nx_flow_removed(rule, reason)
+ : compose_ofp_flow_removed(ofconn, rule, reason));
+
+ /* Account flow expirations under ofconn->reply_counter, the counter
+ * for replies to OpenFlow requests. That works because preventing
+ * OpenFlow requests from being processed also prevents new flows from
+ * being added (and expiring). (It also prevents processing OpenFlow
+ * requests that would not add new flows, so it is imperfect.) */
+ queue_tx(msg, ofconn, ofconn->reply_counter);
}
- free(flows);
}
/* pinsched callback for sending 'packet' on 'ofconn'. */
max_len = do_convert_to_packet_in(packet);
prev = NULL;
- LIST_FOR_EACH (ofconn, struct ofconn, node, &ofproto->all_conns) {
+ LIST_FOR_EACH (ofconn, node, &ofproto->all_conns) {
if (ofconn_receives_async_msgs(ofconn)) {
if (prev) {
schedule_packet_in(prev, packet, max_len, true);
{
const struct ofport *port;
- port = port_array_get(&ofproto->ports, ODPP_LOCAL);
+ port = get_port(ofproto, ODPP_LOCAL);
if (port) {
uint8_t ea[ETH_ADDR_LEN];
int error;
}
\f
static bool
-default_normal_ofhook_cb(const flow_t *flow, const struct ofpbuf *packet,
+default_normal_ofhook_cb(const struct flow *flow, const struct ofpbuf *packet,
struct odp_actions *actions, tag_type *tags,
uint16_t *nf_output_iface, void *ofproto_)
{
out_port = mac_learning_lookup_tag(ofproto->ml, flow->dl_dst, 0, tags,
NULL);
if (out_port < 0) {
- add_output_group_action(actions, DP_GROUP_FLOOD, nf_output_iface);
+ flood_packets(ofproto, flow->in_port, OFPPC_NO_FLOOD,
+ nf_output_iface, actions);
} else if (out_port != flow->in_port) {
odp_actions_add(actions, ODPAT_OUTPUT)->output.port = out_port;
*nf_output_iface = out_port;
}
static const struct ofhooks default_ofhooks = {
- NULL,
default_normal_ofhook_cb,
NULL,
NULL