2009-07-08 13:19:16 -07:00
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/*
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* Copyright (c) 2008, 2009 Nicira Networks.
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*
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2009-06-15 15:11:30 -07:00
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at:
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2009-07-08 13:19:16 -07:00
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*
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2009-06-15 15:11:30 -07:00
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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2009-07-08 13:19:16 -07:00
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*/
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#include <config.h>
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#include "fail-open.h"
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#include <inttypes.h>
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#include <stdlib.h>
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#include "flow.h"
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#include "mac-learning.h"
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#include "odp-util.h"
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#include "ofpbuf.h"
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#include "ofproto.h"
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#include "pktbuf.h"
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#include "poll-loop.h"
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#include "rconn.h"
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#include "status.h"
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#include "timeval.h"
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#include "vconn.h"
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#define THIS_MODULE VLM_fail_open
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#include "vlog.h"
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2009-09-16 15:12:19 -07:00
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/*
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* Fail-open mode.
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*
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* In fail-open mode, the switch detects when the controller cannot be
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* contacted or when the controller is dropping switch connections because the
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* switch does not pass its admission control policy. In those situations the
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* switch sets up flows itself using the "normal" action.
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*
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* There is a little subtlety to implementation, to properly handle the case
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* where the controller allows switch connections but drops them a few seconds
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* later for admission control reasons. Because of this case, we don't want to
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* just stop setting up flows when we connect to the controller: if we did,
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* then new flow setup and existing flows would stop during the duration of
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* connection to the controller, and thus the whole network would go down for
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* that period of time.
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*
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* So, instead, we add some special caseswhen we are connected to a controller,
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* but not yet sure that it has admitted us:
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*
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* - We set up flows immediately ourselves, but simultaneously send out an
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* OFPT_PACKET_IN to the controller. We put a special bogus buffer-id in
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* these OFPT_PACKET_IN messages so that duplicate packets don't get sent
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* out to the network when the controller replies.
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*
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* - We also send out OFPT_PACKET_IN messages for totally bogus packets
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* every so often, in case no real new flows are arriving in the network.
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*
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* - We don't flush the flow table at the time we connect, because this
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* could cause network stuttering in a switch with lots of flows or very
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* high-bandwidth flows by suddenly throwing lots of packets down to
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* userspace.
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*/
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struct fail_open {
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struct ofproto *ofproto;
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struct rconn *controller;
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int trigger_duration;
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int last_disconn_secs;
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struct status_category *ss_cat;
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long long int next_bogus_packet_in;
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struct rconn_packet_counter *bogus_packet_counter;
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};
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/* Returns true if 'fo' should be in fail-open mode, otherwise false. */
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static inline bool
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should_fail_open(const struct fail_open *fo)
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{
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return rconn_failure_duration(fo->controller) >= fo->trigger_duration;
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}
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/* Returns true if 'fo' is currently in fail-open mode, otherwise false. */
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bool
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fail_open_is_active(const struct fail_open *fo)
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{
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return fo->last_disconn_secs != 0;
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}
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static void
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send_bogus_packet_in(struct fail_open *fo)
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{
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uint8_t mac[ETH_ADDR_LEN];
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struct ofpbuf *opi;
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struct ofpbuf b;
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/* Compose ofp_packet_in. */
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ofpbuf_init(&b, 128);
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eth_addr_nicira_random(mac);
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compose_benign_packet(&b, "Open vSwitch Controller Probe", 0xa033, mac);
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opi = make_packet_in(pktbuf_get_null(), OFPP_LOCAL, OFPR_NO_MATCH, &b, 64);
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ofpbuf_uninit(&b);
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/* Send. */
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rconn_send_with_limit(fo->controller, opi, fo->bogus_packet_counter, 1);
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}
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/* Enter fail-open mode if we should be in it. Handle reconnecting to a
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* controller from fail-open mode. */
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void
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fail_open_run(struct fail_open *fo)
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{
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/* Enter fail-open mode if 'fo' is not in it but should be. */
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if (should_fail_open(fo)) {
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int disconn_secs = rconn_failure_duration(fo->controller);
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if (!fail_open_is_active(fo)) {
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VLOG_WARN("Could not connect to controller (or switch failed "
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"controller's post-connection admission control "
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"policy) for %d seconds, failing open", disconn_secs);
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fo->last_disconn_secs = disconn_secs;
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/* Flush all OpenFlow and datapath flows. We will set up our
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* fail-open rule from fail_open_flushed() when
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* ofproto_flush_flows() calls back to us. */
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ofproto_flush_flows(fo->ofproto);
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} else if (disconn_secs > fo->last_disconn_secs + 60) {
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VLOG_INFO("Still in fail-open mode after %d seconds disconnected "
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"from controller", disconn_secs);
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fo->last_disconn_secs = disconn_secs;
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}
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}
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/* Schedule a bogus packet-in if we're connected and in fail-open. */
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if (fail_open_is_active(fo)) {
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if (rconn_is_connected(fo->controller)) {
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bool expired = time_msec() >= fo->next_bogus_packet_in;
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if (expired) {
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send_bogus_packet_in(fo);
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}
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if (expired || fo->next_bogus_packet_in == LLONG_MAX) {
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fo->next_bogus_packet_in = time_msec() + 2000;
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}
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} else {
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fo->next_bogus_packet_in = LLONG_MAX;
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}
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}
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}
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2009-09-16 15:12:19 -07:00
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/* If 'fo' is currently in fail-open mode and its rconn has connected to the
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* controller, exits fail open mode. */
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void
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fail_open_maybe_recover(struct fail_open *fo)
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{
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if (fail_open_is_active(fo) && rconn_is_admitted(fo->controller)) {
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flow_t flow;
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VLOG_WARN("No longer in fail-open mode");
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fo->last_disconn_secs = 0;
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fo->next_bogus_packet_in = LLONG_MAX;
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memset(&flow, 0, sizeof flow);
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ofproto_delete_flow(fo->ofproto, &flow, OFPFW_ALL, FAIL_OPEN_PRIORITY);
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}
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}
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void
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fail_open_wait(struct fail_open *fo)
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{
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if (fo->next_bogus_packet_in != LLONG_MAX) {
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poll_timer_wait(fo->next_bogus_packet_in - time_msec());
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}
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}
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void
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fail_open_flushed(struct fail_open *fo)
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{
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int disconn_secs = rconn_failure_duration(fo->controller);
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bool open = disconn_secs >= fo->trigger_duration;
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if (open) {
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union ofp_action action;
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flow_t flow;
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/* Set up a flow that matches every packet and directs them to
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* OFPP_NORMAL. */
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memset(&action, 0, sizeof action);
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action.type = htons(OFPAT_OUTPUT);
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action.output.len = htons(sizeof action);
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action.output.port = htons(OFPP_NORMAL);
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memset(&flow, 0, sizeof flow);
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ofproto_add_flow(fo->ofproto, &flow, OFPFW_ALL, FAIL_OPEN_PRIORITY,
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&action, 1, 0);
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}
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}
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static void
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fail_open_status_cb(struct status_reply *sr, void *fo_)
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{
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struct fail_open *fo = fo_;
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int cur_duration = rconn_failure_duration(fo->controller);
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status_reply_put(sr, "trigger-duration=%d", fo->trigger_duration);
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status_reply_put(sr, "current-duration=%d", cur_duration);
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status_reply_put(sr, "triggered=%s",
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cur_duration >= fo->trigger_duration ? "true" : "false");
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}
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struct fail_open *
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fail_open_create(struct ofproto *ofproto,
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int trigger_duration, struct switch_status *switch_status,
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struct rconn *controller)
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{
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struct fail_open *fo = xmalloc(sizeof *fo);
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fo->ofproto = ofproto;
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fo->controller = controller;
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fo->trigger_duration = trigger_duration;
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fo->last_disconn_secs = 0;
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fo->ss_cat = switch_status_register(switch_status, "fail-open",
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fail_open_status_cb, fo);
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fo->next_bogus_packet_in = LLONG_MAX;
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fo->bogus_packet_counter = rconn_packet_counter_create();
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return fo;
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}
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void
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fail_open_set_trigger_duration(struct fail_open *fo, int trigger_duration)
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{
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fo->trigger_duration = trigger_duration;
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}
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void
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fail_open_destroy(struct fail_open *fo)
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{
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if (fo) {
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/* We don't own fo->controller. */
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switch_status_unregister(fo->ss_cat);
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rconn_packet_counter_destroy(fo->bogus_packet_counter);
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free(fo);
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}
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}
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