source: source/ariba/overlay/BaseOverlay.cpp@ 6939

Last change on this file since 6939 was 6939, checked in by mies, 14 years ago
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1// [License]
2// The Ariba-Underlay Copyright
3//
4// Copyright (c) 2008-2009, Institute of Telematics, UniversitÀt Karlsruhe (TH)
5//
6// Institute of Telematics
7// UniversitÀt Karlsruhe (TH)
8// Zirkel 2, 76128 Karlsruhe
9// Germany
10//
11// Redistribution and use in source and binary forms, with or without
12// modification, are permitted provided that the following conditions are
13// met:
14//
15// 1. Redistributions of source code must retain the above copyright
16// notice, this list of conditions and the following disclaimer.
17// 2. Redistributions in binary form must reproduce the above copyright
18// notice, this list of conditions and the following disclaimer in the
19// documentation and/or other materials provided with the distribution.
20//
21// THIS SOFTWARE IS PROVIDED BY THE INSTITUTE OF TELEMATICS ``AS IS'' AND
22// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
23// IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
24// PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE ARIBA PROJECT OR
25// CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
26// EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
27// PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
28// PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
29// LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
30// NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
31// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
32//
33// The views and conclusions contained in the software and documentation
34// are those of the authors and should not be interpreted as representing
35// official policies, either expressed or implied, of the Institute of
36// Telematics.
37// [License]
38
39#include "BaseOverlay.h"
40
41#include <sstream>
42#include <iostream>
43#include <string>
44#include <boost/foreach.hpp>
45
46#include "ariba/NodeListener.h"
47#include "ariba/CommunicationListener.h"
48#include "ariba/SideportListener.h"
49
50#include "ariba/overlay/LinkDescriptor.h"
51
52#include "ariba/overlay/messages/OverlayMsg.h"
53#include "ariba/overlay/messages/DHTMessage.h"
54#include "ariba/overlay/messages/JoinRequest.h"
55#include "ariba/overlay/messages/JoinReply.h"
56
57#include "ariba/utility/visual/OvlVis.h"
58#include "ariba/utility/visual/DddVis.h"
59#include "ariba/utility/visual/ServerVis.h"
60
61namespace ariba {
62namespace overlay {
63
64#define visual ariba::utility::DddVis::instance()
65#define visualIdOverlay ariba::utility::ServerVis::NETWORK_ID_BASE_OVERLAY
66#define visualIdBase ariba::utility::ServerVis::NETWORK_ID_BASE_COMMUNICATION
67
68class ValueEntry {
69public:
70 ValueEntry( const Data& value ) : ttl(0), last_update(time(NULL)),
71 last_change(time(NULL)), value(value.clone()) {
72 }
73
74 ValueEntry( const ValueEntry& value ) :
75 ttl(value.ttl), last_update(value.last_update),
76 last_change(value.last_change), value(value.value.clone()) {
77
78 }
79
80 ~ValueEntry() {
81 value.release();
82 }
83
84 void refresh() {
85 last_update = time(NULL);
86 }
87
88 void set_value( const Data& value ) {
89 this->value.release();
90 this->value = value.clone();
91 this->last_change = time(NULL);
92 this->last_update = time(NULL);
93 }
94
95 Data get_value() const {
96 return value;
97 }
98
99 uint16_t get_ttl() const {
100 return ttl;
101 }
102
103 void set_ttl( uint16_t ttl ) {
104 this->ttl = ttl;
105 }
106
107 bool is_ttl_elapsed() const {
108 // is persistent? yes-> always return false
109 if (ttl==0) return false;
110
111 // return true, if ttl is elapsed
112 return ( difftime( time(NULL), this->last_update ) >= ttl );
113 }
114
115private:
116 uint16_t ttl;
117 time_t last_update;
118 time_t last_change;
119 Data value;
120};
121
122class DHTEntry {
123public:
124 Data key;
125 vector<ValueEntry> values;
126
127 vector<Data> get_values() {
128 vector<Data> vect;
129 BOOST_FOREACH( ValueEntry& e, values )
130 vect.push_back( e.get_value() );
131 return vect;
132 }
133
134 void erase_expired_entries() {
135 for (vector<ValueEntry>::iterator i = values.begin();
136 i != values.end(); i++ )
137 if (i->is_ttl_elapsed()) i = values.erase(i);
138 }
139};
140
141class DHT {
142public:
143 typedef vector<DHTEntry> Entries;
144 typedef vector<ValueEntry> Values;
145 Entries entries;
146 static const bool verbose = false;
147
148 static bool equals( const Data& lhs, const Data& rhs ) {
149 if (rhs.getLength()!=lhs.getLength()) return false;
150 for (size_t i=0; i<lhs.getLength()/8; i++)
151 if (lhs.getBuffer()[i] != rhs.getBuffer()[i]) return false;
152 return true;
153 }
154
155 void put( const Data& key, const Data& value, uint16_t ttl = 0 ) {
156
157 // find entry
158 for (size_t i=0; i<entries.size(); i++) {
159 DHTEntry& entry = entries.at(i);
160
161 // check if key is already known
162 if ( equals(entry.key, key) ) {
163
164 // check if value is already in values list
165 for (size_t j=0; j<entry.values.size(); j++) {
166 // found value already? yes-> refresh ttl
167 if ( equals(entry.values[j].get_value(), value) ) {
168 entry.values[j].refresh();
169 if (verbose)
170 std::cout << "DHT: Republished value. Refreshing value timestamp."
171 << std::endl;
172 return;
173 }
174 }
175
176 // new value-> add to entry
177 if (verbose)
178 std::cout << "DHT: Added value to "
179 << " key=" << key << " with value=" << value << std::endl;
180 entry.values.push_back( ValueEntry( value ) );
181 entry.values.back().set_ttl(ttl);
182 return;
183 }
184 }
185
186 // key is unknown-> add key value pair
187 if (verbose)
188 std::cout << "DHT: New key value pair "
189 << " key=" << key << " with value=" << value << std::endl;
190
191 // add new entry
192 entries.push_back( DHTEntry() );
193 DHTEntry& entry = entries.back();
194 entry.key = key.clone();
195 entry.values.push_back( ValueEntry(value) );
196 entry.values.back().set_ttl(ttl);
197 }
198
199 vector<Data> get( const Data& key ) {
200 // find entry
201 for (size_t i=0; i<entries.size(); i++) {
202 DHTEntry& entry = entries.at(i);
203 if ( equals(entry.key,key) )
204 return entry.get_values();
205 }
206 return vector<Data>();
207 }
208
209 bool remove( const Data& key ) {
210 // find entry
211 for (Entries::iterator i = entries.begin(); i != entries.end(); i++) {
212 DHTEntry& entry = *i;
213
214 // found? yes-> delete entry
215 if ( equals(entry.key, key) ) {
216 i = entries.erase(i);
217 return true;
218 }
219 }
220 return false;
221 }
222
223 bool remove( const Data& key, const Data& value ) {
224 // find entry
225 for (Entries::iterator i = entries.begin(); i != entries.end(); i++) {
226 DHTEntry& entry = *i;
227
228 // found? yes-> try to find value
229 if ( equals(entry.key, key) ) {
230 for (Values::iterator j = entry.values.begin();
231 j != entry.values.end(); j++) {
232
233 // value found? yes-> delete
234 if (equals(j->get_value(), value)) {
235 j = entry.values.erase(j);
236 return true;
237 }
238 }
239 }
240 }
241 return false;
242 }
243
244 void cleanup() {
245 // find entry
246 for (Entries::iterator i = entries.begin(); i != entries.end(); i++) {
247 DHTEntry& entry = *i;
248
249 for (Values::iterator j = entry.values.begin();
250 j != entry.values.end(); j++) {
251
252 // value found? yes-> delete
253 if (j->is_ttl_elapsed())
254 j = entry.values.erase(j);
255 }
256
257 if (entry.values.size()==0) i = entries.erase(i);
258 }
259 }
260};
261
262// ----------------------------------------------------------------------------
263
264/* *****************************************************************************
265 * PREREQUESITES
266 * ****************************************************************************/
267
268CommunicationListener* BaseOverlay::getListener( const ServiceID& service ) {
269 if( !communicationListeners.contains( service ) ) {
270 logging_error( "No listener found for service " << service.toString() );
271 return NULL;
272 }
273 CommunicationListener* listener = communicationListeners.get( service );
274 assert( listener != NULL );
275 return listener;
276}
277
278// link descriptor handling ----------------------------------------------------
279
280LinkDescriptor* BaseOverlay::getDescriptor( const LinkID& link, bool communication ) {
281 BOOST_FOREACH( LinkDescriptor* lp, links )
282 if ((communication ? lp->communicationId : lp->overlayId) == link)
283 return lp;
284 return NULL;
285}
286
287const LinkDescriptor* BaseOverlay::getDescriptor( const LinkID& link, bool communication ) const {
288 BOOST_FOREACH( const LinkDescriptor* lp, links )
289 if ((communication ? lp->communicationId : lp->overlayId) == link)
290 return lp;
291 return NULL;
292}
293
294/// erases a link descriptor
295void BaseOverlay::eraseDescriptor( const LinkID& link, bool communication ) {
296 for ( vector<LinkDescriptor*>::iterator i = links.begin(); i!= links.end(); i++) {
297 LinkDescriptor* ld = *i;
298 if ((communication ? ld->communicationId : ld->overlayId) == link) {
299 delete ld;
300 links.erase(i);
301 break;
302 }
303 }
304}
305
306/// adds a link descriptor
307LinkDescriptor* BaseOverlay::addDescriptor( const LinkID& link ) {
308 LinkDescriptor* desc = getDescriptor( link );
309 if ( desc == NULL ) {
310 desc = new LinkDescriptor();
311 if (!link.isUnspecified()) desc->overlayId = link;
312 links.push_back(desc);
313 }
314 return desc;
315}
316
317/// returns a auto-link descriptor
318LinkDescriptor* BaseOverlay::getAutoDescriptor( const NodeID& node, const ServiceID& service ) {
319 // search for a descriptor that is already up
320 BOOST_FOREACH( LinkDescriptor* lp, links )
321 if (lp->autolink && lp->remoteNode == node && lp->service == service && lp->up && lp->keepAliveMissed == 0)
322 return lp;
323 // if not found, search for one that is about to come up...
324 BOOST_FOREACH( LinkDescriptor* lp, links )
325 if (lp->autolink && lp->remoteNode == node && lp->service == service && lp->keepAliveMissed == 0 )
326 return lp;
327 return NULL;
328}
329
330/// stabilizes link information
331void BaseOverlay::stabilizeLinks() {
332 // send keep-alive messages over established links
333 BOOST_FOREACH( LinkDescriptor* ld, links ) {
334 if (!ld->up) continue;
335 OverlayMsg msg( OverlayMsg::typeLinkAlive,
336 OverlayInterface::OVERLAY_SERVICE_ID, nodeId, ld->remoteNode );
337 if (ld->relayed) msg.setRouteRecord(true);
338 send_link( &msg, ld->overlayId );
339 }
340
341 // iterate over all links and check for time boundaries
342 vector<LinkDescriptor*> oldlinks;
343 time_t now = time(NULL);
344 BOOST_FOREACH( LinkDescriptor* ld, links ) {
345
346 // keep alives and not up? yes-> link connection request is stale!
347 if ( !ld->up && difftime( now, ld->keepAliveTime ) >= 2 ) {
348
349 // increase counter
350 ld->keepAliveMissed++;
351
352 // missed more than four keep-alive messages (10 sec)? -> drop link
353 if (ld->keepAliveMissed > 4) {
354 logging_info( "Link connection request is stale, closing: " << ld );
355 oldlinks.push_back( ld );
356 continue;
357 }
358 }
359
360 if (!ld->up) continue;
361
362 // remote used as relay flag
363 if ( ld->relaying && difftime( now, ld->timeRelaying ) > 10)
364 ld->relaying = false;
365
366 // drop links that are dropped and not used as relay
367 if (ld->dropAfterRelaying && !ld->relaying && !ld->autolink) {
368 oldlinks.push_back( ld );
369 continue;
370 }
371
372 // auto-link time exceeded?
373 if ( ld->autolink && difftime( now, ld->lastuse ) > 30 ) {
374 oldlinks.push_back( ld );
375 continue;
376 }
377
378 // keep alives missed? yes->
379 if ( difftime( now, ld->keepAliveTime ) > 2 ) {
380
381 // increase counter
382 ld->keepAliveMissed++;
383
384 // missed more than four keep-alive messages (4 sec)? -> drop link
385 if (ld->keepAliveMissed >= 4) {
386 logging_info( "Link is stale, closing: " << ld );
387 oldlinks.push_back( ld );
388 continue;
389 }
390 }
391 }
392
393 // drop links
394 BOOST_FOREACH( LinkDescriptor* ld, oldlinks ) {
395 logging_info( "Link timed out. Dropping " << ld );
396 ld->relaying = false;
397 dropLink( ld->overlayId );
398 }
399
400 // show link state
401 counter++;
402 if (counter>=4) showLinks();
403 if (counter>=4 || counter<0) counter = 0;
404}
405
406
407std::string BaseOverlay::getLinkHTMLInfo() {
408 std::ostringstream s;
409 vector<NodeID> nodes;
410 if (links.size()==0) {
411 s << "<h2 style=\"color=#606060\">No links established!</h2>";
412 } else {
413 s << "<h2 style=\"color=#606060\">Links</h2>";
414 s << "<table width=\"100%\" cellpadding=\"0\" border=\"0\" cellspacing=\"0\">";
415 s << "<tr style=\"background-color=#ffe0e0\">";
416 s << "<td><b>Link ID</b></td><td><b>Remote ID</b></td><td><b>Relay path</b></td>";
417 s << "</tr>";
418
419 int i=0;
420 BOOST_FOREACH( LinkDescriptor* ld, links ) {
421 if (!ld->isVital() || ld->service != OverlayInterface::OVERLAY_SERVICE_ID) continue;
422 bool found = false;
423 BOOST_FOREACH(NodeID& id, nodes)
424 if (id == ld->remoteNode) found = true;
425 if (found) continue;
426 i++;
427 nodes.push_back(ld->remoteNode);
428 if ((i%1) == 1) s << "<tr style=\"background-color=#f0f0f0;\">";
429 else s << "<tr>";
430 s << "<td>" << ld->overlayId.toString().substr(0,4) << "..</td>";
431 s << "<td>" << ld->remoteNode.toString().substr(0,4) << "..</td>";
432 s << "<td>";
433 if (ld->routeRecord.size()>1 && ld->relayed) {
434 for (size_t i=1; i<ld->routeRecord.size(); i++)
435 s << ld->routeRecord[ld->routeRecord.size()-i-1].toString().substr(0,4) << ".. ";
436 } else {
437 s << "Direct";
438 }
439 s << "</td>";
440 s << "</tr>";
441 }
442 s << "</table>";
443 }
444 return s.str();
445}
446
447/// shows the current link state
448void BaseOverlay::showLinks() {
449 int i=0;
450 logging_info("--- link state -------------------------------");
451 BOOST_FOREACH( LinkDescriptor* ld, links ) {
452 logging_info("link " << i << ": " << ld);
453 i++;
454 }
455 logging_info("----------------------------------------------");
456}
457
458/// compares two arbitrary links to the same node
459int BaseOverlay::compare( const LinkID& lhs, const LinkID& rhs ) {
460 LinkDescriptor* lhsld = getDescriptor(lhs);
461 LinkDescriptor* rhsld = getDescriptor(rhs);
462 if (lhsld==NULL || rhsld==NULL
463 || !lhsld->up || !rhsld->up
464 || lhsld->remoteNode != rhsld->remoteNode) return -1;
465
466 if ((lhsld->remoteLink^lhsld->overlayId)<(rhsld->remoteLink^lhsld->overlayId) )
467 return -1;
468
469 return 1;
470}
471
472
473// internal message delivery ---------------------------------------------------
474
475/// routes a message to its destination node
476void BaseOverlay::route( OverlayMsg* message ) {
477
478 // exceeded time-to-live? yes-> drop message
479 if (message->getNumHops() > message->getTimeToLive()) {
480 logging_warn("Message exceeded TTL. Dropping message and relay routes"
481 "for recovery.");
482 removeRelayNode(message->getDestinationNode());
483 return;
484 }
485
486 // no-> forward message
487 else {
488 // destinastion myself? yes-> handle message
489 if (message->getDestinationNode() == nodeId) {
490 logging_warn("Usually I should not route messages to myself!");
491 Message msg;
492 msg.encapsulate(message);
493 handleMessage( &msg, NULL );
494 } else {
495 // no->send message to next hop
496 send( message, message->getDestinationNode() );
497 }
498 }
499}
500
501/// sends a message to another node, delivers it to the base overlay class
502seqnum_t BaseOverlay::send( OverlayMsg* message, const NodeID& destination ) {
503 LinkDescriptor* next_link = NULL;
504
505 // drop messages to unspecified destinations
506 if (destination.isUnspecified()) return -1;
507
508 // send messages to myself -> handle message and drop warning!
509 if (destination == nodeId) {
510 logging_warn("Sent message to myself. Handling message.")
511 Message msg;
512 msg.encapsulate(message);
513 handleMessage( &msg, NULL );
514 return -1;
515 }
516
517 // use relay path?
518 if (message->isRelayed()) {
519 next_link = getRelayLinkTo( destination );
520 if (next_link != NULL) {
521 next_link->setRelaying();
522 return bc->sendMessage(next_link->communicationId, message);
523 } else {
524 logging_warn("Could not send message. No relay hop found to "
525 << destination << " -- trying to route over overlay paths ...")
526// logging_error("ERROR: " << debugInformation() );
527 // return -1;
528 }
529 }
530
531 // last resort -> route over overlay path
532 LinkID next_id = overlayInterface->getNextLinkId( destination );
533 if (next_id.isUnspecified()) {
534 logging_warn("Could not send message. No next hop found to " <<
535 destination );
536 logging_error("ERROR: " << debugInformation() );
537 return -1;
538 }
539
540 // get link descriptor, up and running? yes-> send message
541 next_link = getDescriptor(next_id);
542 if (next_link != NULL && next_link->up) {
543 // send message over relayed link
544 return send(message, next_link);
545 }
546
547 // no-> error, dropping message
548 else {
549 logging_warn("Could not send message. Link not known or up");
550 logging_error("ERROR: " << debugInformation() );
551 return -1;
552 }
553
554 // not reached-> fail
555 return -1;
556}
557
558/// send a message using a link descriptor, delivers it to the base overlay class
559seqnum_t BaseOverlay::send( OverlayMsg* message, LinkDescriptor* ldr, bool ignore_down ) {
560 // check if null
561 if (ldr == NULL) {
562 logging_error("Can not send message to " << message->getDestinationAddress());
563 return -1;
564 }
565
566 // check if up
567 if (!ldr->up && !ignore_down) {
568 logging_error("Can not send message. Link not up:" << ldr );
569 logging_error("DEBUG_INFO: " << debugInformation() );
570 return -1;
571 }
572 LinkDescriptor* ld = NULL;
573
574 // handle relayed link
575 if (ldr->relayed) {
576 logging_debug("Resolving direct link for relayed link to "
577 << ldr->remoteNode);
578 ld = getRelayLinkTo( ldr->remoteNode );
579 if (ld==NULL) {
580 logging_error("No relay path found to link " << ldr );
581 logging_error("DEBUG_INFO: " << debugInformation() );
582 return -1;
583 }
584 ld->setRelaying();
585 message->setRelayed(true);
586 } else
587 ld = ldr;
588
589 // handle direct link
590 if (ld->communicationUp) {
591 logging_debug("send(): Sending message over direct link.");
592 return bc->sendMessage( ld->communicationId, message );
593 } else {
594 logging_error("send(): Could not send message. "
595 "Not a relayed link and direct link is not up.");
596 return -1;
597 }
598 return -1;
599}
600
601seqnum_t BaseOverlay::send_node( OverlayMsg* message, const NodeID& remote,
602 const ServiceID& service) {
603 message->setSourceNode(nodeId);
604 message->setDestinationNode(remote);
605 message->setService(service);
606 return send( message, remote );
607}
608
609seqnum_t BaseOverlay::send_link( OverlayMsg* message, const LinkID& link,bool ignore_down ) {
610 LinkDescriptor* ld = getDescriptor(link);
611 if (ld==NULL) {
612 logging_error("Cannot find descriptor to link id=" << link.toString());
613 return -1;
614 }
615 message->setSourceNode(nodeId);
616 message->setDestinationNode(ld->remoteNode);
617
618 message->setSourceLink(ld->overlayId);
619 message->setDestinationLink(ld->remoteLink);
620
621 message->setService(ld->service);
622 message->setRelayed(ld->relayed);
623 return send( message, ld, ignore_down );
624}
625
626// relay route management ------------------------------------------------------
627
628/// stabilize relay information
629void BaseOverlay::stabilizeRelays() {
630 vector<relay_route>::iterator i = relay_routes.begin();
631 while (i!=relay_routes.end() ) {
632 relay_route& route = *i;
633 LinkDescriptor* ld = getDescriptor(route.link);
634
635 // relay link still used and alive?
636 if (ld==NULL
637 || !ld->isDirectVital()
638 || difftime(route.used, time(NULL)) > 8) {
639 logging_info("Forgetting relay information to node "
640 << route.node.toString() );
641 i = relay_routes.erase(i);
642 } else
643 i++;
644 }
645}
646
647void BaseOverlay::removeRelayLink( const LinkID& link ) {
648 vector<relay_route>::iterator i = relay_routes.begin();
649 while (i!=relay_routes.end() ) {
650 relay_route& route = *i;
651 if (route.link == link ) i = relay_routes.erase(i); else i++;
652 }
653}
654
655void BaseOverlay::removeRelayNode( const NodeID& remote ) {
656 vector<relay_route>::iterator i = relay_routes.begin();
657 while (i!=relay_routes.end() ) {
658 relay_route& route = *i;
659 if (route.node == remote ) i = relay_routes.erase(i); else i++;
660 }
661}
662
663/// refreshes relay information
664void BaseOverlay::refreshRelayInformation( const OverlayMsg* message, LinkDescriptor* ld ) {
665
666 // handle relayed messages from real links only
667 if (ld == NULL
668 || ld->relayed
669 || message->getSourceNode()==nodeId ) return;
670
671 // update usage information
672 if (message->isRelayed()) {
673 // try to find source node
674 BOOST_FOREACH( relay_route& route, relay_routes ) {
675 // relay route found? yes->
676 if ( route.node == message->getDestinationNode() ) {
677 ld->setRelaying();
678 route.used = time(NULL);
679 }
680 }
681
682 }
683
684 // register relay path
685 if (message->isRegisterRelay()) {
686 // set relaying
687 ld->setRelaying();
688
689 // try to find source node
690 BOOST_FOREACH( relay_route& route, relay_routes ) {
691
692 // relay route found? yes->
693 if ( route.node == message->getSourceNode() ) {
694
695 // refresh timer
696 route.used = time(NULL);
697 LinkDescriptor* rld = getDescriptor(route.link);
698
699 // route has a shorter hop count or old link is dead? yes-> replace
700 if (route.hops > message->getNumHops()
701 || rld == NULL
702 || !rld->isDirectVital()) {
703 logging_info("Updating relay information to node "
704 << route.node.toString()
705 << " reducing to " << message->getNumHops() << " hops.");
706 route.hops = message->getNumHops();
707 route.link = ld->overlayId;
708 }
709 return;
710 }
711 }
712
713 // not found-> add new entry
714 relay_route route;
715 route.hops = message->getNumHops();
716 route.link = ld->overlayId;
717 route.node = message->getSourceNode();
718 route.used = time(NULL);
719 logging_info("Remembering relay information to node "
720 << route.node.toString());
721 relay_routes.push_back(route);
722 }
723}
724
725/// returns a known "vital" relay link which is up and running
726LinkDescriptor* BaseOverlay::getRelayLinkTo( const NodeID& remote ) {
727 // try to find source node
728 BOOST_FOREACH( relay_route& route, relay_routes ) {
729 if (route.node == remote ) {
730 LinkDescriptor* ld = getDescriptor( route.link );
731 if (ld==NULL || !ld->isDirectVital()) return NULL; else {
732 route.used = time(NULL);
733 return ld;
734 }
735 }
736 }
737 return NULL;
738}
739
740/* *****************************************************************************
741 * PUBLIC MEMBERS
742 * ****************************************************************************/
743
744use_logging_cpp(BaseOverlay);
745
746// ----------------------------------------------------------------------------
747
748BaseOverlay::BaseOverlay() :
749 started(false),state(BaseOverlayStateInvalid),
750 bc(NULL),
751 nodeId(NodeID::UNSPECIFIED), spovnetId(SpoVNetID::UNSPECIFIED),
752 sideport(&SideportListener::DEFAULT), overlayInterface(NULL),
753 counter(0) {
754 dht = new DHT();
755 localDHT = new DHT();
756}
757
758BaseOverlay::~BaseOverlay() {
759 delete dht;
760}
761
762// ----------------------------------------------------------------------------
763
764void BaseOverlay::start( BaseCommunication& _basecomm, const NodeID& _nodeid ) {
765 logging_info("Starting...");
766
767 // set parameters
768 bc = &_basecomm;
769 nodeId = _nodeid;
770
771 // register at base communication
772 bc->registerMessageReceiver( this );
773 bc->registerEventListener( this );
774
775 // timer for auto link management
776 Timer::setInterval( 1000 );
777 Timer::start();
778
779 started = true;
780 state = BaseOverlayStateInvalid;
781}
782
783void BaseOverlay::stop() {
784 logging_info("Stopping...");
785
786 // stop timer
787 Timer::stop();
788
789 // delete oberlay interface
790 if(overlayInterface != NULL) {
791 delete overlayInterface;
792 overlayInterface = NULL;
793 }
794
795 // unregister at base communication
796 bc->unregisterMessageReceiver( this );
797 bc->unregisterEventListener( this );
798
799 started = false;
800 state = BaseOverlayStateInvalid;
801}
802
803bool BaseOverlay::isStarted(){
804 return started;
805}
806
807// ----------------------------------------------------------------------------
808
809void BaseOverlay::joinSpoVNet(const SpoVNetID& id,
810 const EndpointDescriptor& bootstrapEp) {
811
812 if(id != spovnetId){
813 logging_error("attempt to join against invalid spovnet, call initiate first");
814 return;
815 }
816
817
818 //ovl.visShowNodeBubble ( ovlId, nodeId, "joining..." );
819 logging_info( "Starting to join spovnet " << id.toString() <<
820 " with nodeid " << nodeId.toString());
821
822 if(bootstrapEp.isUnspecified() && state == BaseOverlayStateInvalid){
823
824 // bootstrap against ourselfs
825 logging_info("joining spovnet locally");
826
827 overlayInterface->joinOverlay();
828 state = BaseOverlayStateCompleted;
829 BOOST_FOREACH( NodeListener* i, nodeListeners )
830 i->onJoinCompleted( spovnetId );
831
832 //ovl.visChangeNodeIcon ( ovlId, nodeId, OvlVis::ICON_ID_CAMERA );
833 //ovl.visChangeNodeColor( ovlId, nodeId, OvlVis::NODE_COLORS_GREEN );
834
835 logging_debug("starting overlay bootstrap module");
836 overlayBootstrap.start(this, spovnetId, nodeId);
837 overlayBootstrap.publish(bc->getEndpointDescriptor());
838
839 } else {
840
841 // bootstrap against another node
842 logging_info("joining spovnet remotely against " << bootstrapEp.toString());
843
844 const LinkID& lnk = bc->establishLink( bootstrapEp );
845 bootstrapLinks.push_back(lnk);
846 logging_info("join process initiated for " << id.toString() << "...");
847 }
848}
849
850void BaseOverlay::leaveSpoVNet() {
851
852 logging_info( "Leaving spovnet " << spovnetId );
853 bool ret = ( state != this->BaseOverlayStateInvalid );
854
855 logging_debug("stopping overlay bootstrap module");
856 overlayBootstrap.stop();
857 overlayBootstrap.revoke();
858
859 logging_debug( "Dropping all auto-links" );
860
861 // gather all service links
862 vector<LinkID> servicelinks;
863 BOOST_FOREACH( LinkDescriptor* ld, links ) {
864 if( ld->service != OverlayInterface::OVERLAY_SERVICE_ID )
865 servicelinks.push_back( ld->overlayId );
866 }
867
868 // drop all service links
869 BOOST_FOREACH( LinkID lnk, servicelinks )
870 dropLink( lnk );
871
872 // let the node leave the spovnet overlay interface
873 logging_debug( "Leaving overlay" );
874 if( overlayInterface != NULL )
875 overlayInterface->leaveOverlay();
876
877 // drop still open bootstrap links
878 BOOST_FOREACH( LinkID lnk, bootstrapLinks )
879 bc->dropLink( lnk );
880
881 // change to inalid state
882 state = BaseOverlayStateInvalid;
883 //ovl.visShutdown( ovlId, nodeId, string("") );
884
885 visual.visShutdown(visualIdOverlay, nodeId, "");
886 visual.visShutdown(visualIdBase, nodeId, "");
887
888 // inform all registered services of the event
889 BOOST_FOREACH( NodeListener* i, nodeListeners ) {
890 if( ret ) i->onLeaveCompleted( spovnetId );
891 else i->onLeaveFailed( spovnetId );
892 }
893}
894
895void BaseOverlay::createSpoVNet(const SpoVNetID& id,
896 const OverlayParameterSet& param,
897 const SecurityParameterSet& sec,
898 const QoSParameterSet& qos) {
899
900 // set the state that we are an initiator, this way incoming messages are
901 // handled correctly
902 logging_info( "creating spovnet " + id.toString() <<
903 " with nodeid " << nodeId.toString() );
904
905 spovnetId = id;
906
907 overlayInterface = OverlayFactory::create( *this, param, nodeId, this );
908 if( overlayInterface == NULL ) {
909 logging_fatal( "overlay structure not supported" );
910 state = BaseOverlayStateInvalid;
911
912 BOOST_FOREACH( NodeListener* i, nodeListeners )
913 i->onJoinFailed( spovnetId );
914
915 return;
916 }
917
918 visual.visCreate(visualIdBase, nodeId, "", "");
919 visual.visCreate(visualIdOverlay, nodeId, "", "");
920}
921
922// ----------------------------------------------------------------------------
923
924const LinkID BaseOverlay::establishLink( const EndpointDescriptor& remoteEp,
925 const NodeID& remoteId, const ServiceID& service ) {
926
927 // establish link via overlay
928 if (!remoteId.isUnspecified())
929 return establishLink( remoteId, service );
930 else
931
932 // establish link directly if only ep is known
933 if (remoteId.isUnspecified())
934 return establishDirectLink(remoteEp, service );
935
936}
937
938/// call base communication's establish link and add link mapping
939const LinkID BaseOverlay::establishDirectLink( const EndpointDescriptor& ep,
940 const ServiceID& service ) {
941
942 /// find a service listener
943 if( !communicationListeners.contains( service ) ) {
944 logging_error( "No listener registered for service id=" << service.toString() );
945 return LinkID::UNSPECIFIED;
946 }
947 CommunicationListener* listener = communicationListeners.get( service );
948 assert( listener != NULL );
949
950 // create descriptor
951 LinkDescriptor* ld = addDescriptor();
952 ld->relayed = false;
953 ld->listener = listener;
954 ld->service = service;
955 ld->communicationId = bc->establishLink( ep );
956
957 /// establish link and add mapping
958 logging_info("Establishing direct link " << ld->communicationId.toString()
959 << " using " << ep.toString());
960
961 return ld->communicationId;
962}
963
964/// establishes a link between two arbitrary nodes
965const LinkID BaseOverlay::establishLink( const NodeID& remote,
966 const ServiceID& service ) {
967
968 // do not establish a link to myself!
969 if (remote == nodeId) return LinkID::UNSPECIFIED;
970
971 // create a link descriptor
972 LinkDescriptor* ld = addDescriptor();
973 ld->relayed = true;
974 ld->remoteNode = remote;
975 ld->service = service;
976 ld->listener = getListener(ld->service);
977
978 // create link request message
979 OverlayMsg msg(OverlayMsg::typeLinkRequest, service, nodeId, remote );
980 msg.setSourceLink(ld->overlayId);
981
982 // send over relayed link
983 msg.setRelayed(true);
984 //msg.setRelayed(false);
985 //msg.setRegisterRelay(true);
986
987 // debug message
988 logging_info(
989 "Sending link request with"
990 << " link=" << ld->overlayId.toString()
991 << " node=" << ld->remoteNode.toString()
992 << " serv=" << ld->service.toString()
993 );
994
995 // sending message to node
996 send_node( &msg, ld->remoteNode, ld->service );
997
998 return ld->overlayId;
999}
1000
1001/// drops an established link
1002void BaseOverlay::dropLink(const LinkID& link) {
1003 logging_info( "Dropping link (initiated locally):" << link.toString() );
1004
1005 // find the link item to drop
1006 LinkDescriptor* ld = getDescriptor(link);
1007 if( ld == NULL ) {
1008 logging_warn( "Can't drop link, link is unknown!");
1009 return;
1010 }
1011
1012 // delete all queued messages
1013 if( ld->messageQueue.size() > 0 ) {
1014 logging_warn( "Dropping link " << ld->overlayId.toString() << " that has "
1015 << ld->messageQueue.size() << " waiting messages" );
1016 ld->flushQueue();
1017 }
1018
1019 // inform sideport and listener
1020 if(ld->listener != NULL)
1021 ld->listener->onLinkDown( ld->overlayId, ld->remoteNode );
1022 sideport->onLinkDown(ld->overlayId, this->nodeId, ld->remoteNode, this->spovnetId );
1023
1024 // do not drop relay links
1025 if (!ld->relaying) {
1026 // drop the link in base communication
1027 if (ld->communicationUp) bc->dropLink( ld->communicationId );
1028
1029 // erase descriptor
1030 eraseDescriptor( ld->overlayId );
1031 } else {
1032 ld->dropAfterRelaying = true;
1033 }
1034}
1035
1036// ----------------------------------------------------------------------------
1037
1038/// internal send message, always use this functions to send messages over links
1039seqnum_t BaseOverlay::sendMessage( const Message* message, const LinkID& link ) {
1040 logging_debug( "Sending data message on link " << link.toString() );
1041
1042 // get the mapping for this link
1043 LinkDescriptor* ld = getDescriptor(link);
1044 if( ld == NULL ) {
1045 logging_error("Could not send message. "
1046 << "Link not found id=" << link.toString());
1047 return -1;
1048 }
1049
1050 // check if the link is up yet, if its an auto link queue message
1051 if( !ld->up ) {
1052 ld->setAutoUsed();
1053 if( ld->autolink ) {
1054 logging_info("Auto-link " << link.toString() << " not up, queue message");
1055 Data data = data_serialize( message );
1056 const_cast<Message*>(message)->dropPayload();
1057 ld->messageQueue.push_back( new Message(data) );
1058 } else {
1059 logging_error("Link " << link.toString() << " not up, drop message");
1060 }
1061 return -1;
1062 }
1063
1064 // compile overlay message (has service and node id)
1065 OverlayMsg overmsg( OverlayMsg::typeData );
1066 overmsg.encapsulate( const_cast<Message*>(message) );
1067
1068 // send message over relay/direct/overlay
1069 return send_link( &overmsg, ld->overlayId );
1070}
1071
1072seqnum_t BaseOverlay::sendMessage(const Message* message,
1073 const NodeID& node, const ServiceID& service) {
1074
1075 // find link for node and service
1076 LinkDescriptor* ld = getAutoDescriptor( node, service );
1077
1078 // if we found no link, create an auto link
1079 if( ld == NULL ) {
1080
1081 // debug output
1082 logging_info( "No link to send message to node "
1083 << node.toString() << " found for service "
1084 << service.toString() << ". Creating auto link ..."
1085 );
1086
1087 // call base overlay to create a link
1088 LinkID link = establishLink( node, service );
1089 ld = getDescriptor( link );
1090 if( ld == NULL ) {
1091 logging_error( "Failed to establish auto-link.");
1092 return -1;
1093 }
1094 ld->autolink = true;
1095
1096 logging_debug( "Auto-link establishment in progress to node "
1097 << node.toString() << " with link id=" << link.toString() );
1098 }
1099 assert(ld != NULL);
1100
1101 // mark the link as used, as we now send a message through it
1102 ld->setAutoUsed();
1103
1104 // send / queue message
1105 return sendMessage( message, ld->overlayId );
1106}
1107
1108// ----------------------------------------------------------------------------
1109
1110const EndpointDescriptor& BaseOverlay::getEndpointDescriptor(
1111 const LinkID& link) const {
1112
1113 // return own end-point descriptor
1114 if( link.isUnspecified() )
1115 return bc->getEndpointDescriptor();
1116
1117 // find link descriptor. not found -> return unspecified
1118 const LinkDescriptor* ld = getDescriptor(link);
1119 if (ld==NULL) return EndpointDescriptor::UNSPECIFIED();
1120
1121 // return endpoint-descriptor from base communication
1122 return bc->getEndpointDescriptor( ld->communicationId );
1123}
1124
1125const EndpointDescriptor& BaseOverlay::getEndpointDescriptor(
1126 const NodeID& node) const {
1127
1128 // return own end-point descriptor
1129 if( node == nodeId || node.isUnspecified() ) {
1130 logging_info("getEndpointDescriptor: returning self.");
1131 return bc->getEndpointDescriptor();
1132 }
1133
1134 // no joined and request remote descriptor? -> fail!
1135 if( overlayInterface == NULL ) {
1136 logging_error( "Overlay interface not set, cannot resolve end-point." );
1137 return EndpointDescriptor::UNSPECIFIED();
1138 }
1139
1140// // resolve end-point descriptor from the base-overlay routing table
1141// const EndpointDescriptor& ep = overlayInterface->resolveNode( node );
1142// if(ep.toString() != "") return ep;
1143
1144 // see if we can find the node in our own table
1145 BOOST_FOREACH(const LinkDescriptor* ld, links){
1146 if(ld->remoteNode != node) continue;
1147 if(!ld->communicationUp) continue;
1148 const EndpointDescriptor& ep =
1149 bc->getEndpointDescriptor(ld->communicationId);
1150 if(ep.toString() == "") continue;
1151 if(ep != EndpointDescriptor::UNSPECIFIED()) {
1152 logging_info("getEndpointDescriptor: using " << ld->to_string());
1153 return ep;
1154 }
1155 }
1156
1157 logging_warn( "No EndpointDescriptor found for node " << node );
1158 logging_warn( const_cast<BaseOverlay*>(this)->debugInformation() );
1159
1160 return EndpointDescriptor::UNSPECIFIED();
1161}
1162
1163// ----------------------------------------------------------------------------
1164
1165bool BaseOverlay::registerSidePort(SideportListener* _sideport) {
1166 sideport = _sideport;
1167 _sideport->configure( this );
1168 return true;
1169}
1170
1171bool BaseOverlay::unregisterSidePort(SideportListener* _sideport) {
1172 sideport = &SideportListener::DEFAULT;
1173 return true;
1174}
1175
1176// ----------------------------------------------------------------------------
1177
1178bool BaseOverlay::bind(CommunicationListener* listener, const ServiceID& sid) {
1179 logging_debug( "binding communication listener " << listener
1180 << " on serviceid " << sid.toString() );
1181
1182 if( communicationListeners.contains( sid ) ) {
1183 logging_error( "some listener already registered for service id "
1184 << sid.toString() );
1185 return false;
1186 }
1187
1188 communicationListeners.registerItem( listener, sid );
1189 return true;
1190}
1191
1192
1193bool BaseOverlay::unbind(CommunicationListener* listener, const ServiceID& sid) {
1194 logging_debug( "unbinding listener " << listener << " from serviceid " << sid.toString() );
1195
1196 if( !communicationListeners.contains( sid ) ) {
1197 logging_warn( "cannot unbind listener. no listener registered on service id " << sid.toString() );
1198 return false;
1199 }
1200
1201 if( communicationListeners.get(sid) != listener ) {
1202 logging_warn( "listener bound to service id " << sid.toString()
1203 << " is different than listener trying to unbind" );
1204 return false;
1205 }
1206
1207 communicationListeners.unregisterItem( sid );
1208 return true;
1209}
1210
1211// ----------------------------------------------------------------------------
1212
1213bool BaseOverlay::bind(NodeListener* listener) {
1214 logging_debug( "Binding node listener " << listener );
1215
1216 // already bound? yes-> warning
1217 NodeListenerVector::iterator i =
1218 find( nodeListeners.begin(), nodeListeners.end(), listener );
1219 if( i != nodeListeners.end() ) {
1220 logging_warn("Node listener " << listener << " is already bound!" );
1221 return false;
1222 }
1223
1224 // no-> add
1225 nodeListeners.push_back( listener );
1226 return true;
1227}
1228
1229bool BaseOverlay::unbind(NodeListener* listener) {
1230 logging_debug( "Unbinding node listener " << listener );
1231
1232 // already unbound? yes-> warning
1233 NodeListenerVector::iterator i = find( nodeListeners.begin(), nodeListeners.end(), listener );
1234 if( i == nodeListeners.end() ) {
1235 logging_warn( "Node listener " << listener << " is not bound!" );
1236 return false;
1237 }
1238
1239 // no-> remove
1240 nodeListeners.erase( i );
1241 return true;
1242}
1243
1244// ----------------------------------------------------------------------------
1245
1246void BaseOverlay::onLinkUp(const LinkID& id,
1247 const address_v* local, const address_v* remote) {
1248 logging_debug( "Link up with base communication link id=" << id );
1249
1250 // get descriptor for link
1251 LinkDescriptor* ld = getDescriptor(id, true);
1252
1253 // handle bootstrap link we initiated
1254 if( std::find(bootstrapLinks.begin(), bootstrapLinks.end(), id) != bootstrapLinks.end() ){
1255 logging_info(
1256 "Join has been initiated by me and the link is now up. " <<
1257 "Sending out join request for SpoVNet " << spovnetId.toString()
1258 );
1259
1260 // send join request message
1261 OverlayMsg overlayMsg( OverlayMsg::typeJoinRequest,
1262 OverlayInterface::OVERLAY_SERVICE_ID, nodeId );
1263 JoinRequest joinRequest( spovnetId, nodeId );
1264 overlayMsg.encapsulate( &joinRequest );
1265 bc->sendMessage( id, &overlayMsg );
1266 return;
1267 }
1268
1269 // no link found? -> link establishment from remote, add one!
1270 if (ld == NULL) {
1271 ld = addDescriptor( id );
1272 logging_info( "onLinkUp (remote request) descriptor: " << ld );
1273
1274 // update descriptor
1275 ld->fromRemote = true;
1276 ld->communicationId = id;
1277 ld->communicationUp = true;
1278 ld->setAutoUsed();
1279 ld->setAlive();
1280
1281 // in this case, do not inform listener, since service it unknown
1282 // -> wait for update message!
1283
1284 // link mapping found? -> send update message with node-id and service id
1285 } else {
1286 logging_info( "onLinkUp descriptor (initiated locally):" << ld );
1287
1288 // update descriptor
1289 ld->setAutoUsed();
1290 ld->setAlive();
1291 ld->communicationUp = true;
1292 ld->fromRemote = false;
1293
1294 // if link is a relayed link->convert to direct link
1295 if (ld->relayed) {
1296 logging_info( "Converting to direct link: " << ld );
1297 ld->up = true;
1298 ld->relayed = false;
1299 OverlayMsg overMsg( OverlayMsg::typeLinkDirect );
1300 overMsg.setSourceLink( ld->overlayId );
1301 overMsg.setDestinationLink( ld->remoteLink );
1302 send_link( &overMsg, ld->overlayId );
1303 } else {
1304 // note: necessary to validate the link on the remote side!
1305 logging_info( "Sending out update" <<
1306 " for service " << ld->service.toString() <<
1307 " with local node id " << nodeId.toString() <<
1308 " on link " << ld->overlayId.toString() );
1309
1310 // compile and send update message
1311 OverlayMsg overlayMsg( OverlayMsg::typeLinkUpdate );
1312 overlayMsg.setSourceLink(ld->overlayId);
1313 overlayMsg.setAutoLink( ld->autolink );
1314 send_link( &overlayMsg, ld->overlayId, true );
1315 }
1316 }
1317}
1318
1319void BaseOverlay::onLinkDown(const LinkID& id,
1320 const address_v* local, const address_v* remote) {
1321
1322 // erase bootstrap links
1323 vector<LinkID>::iterator it = std::find( bootstrapLinks.begin(), bootstrapLinks.end(), id );
1324 if( it != bootstrapLinks.end() ) bootstrapLinks.erase( it );
1325
1326 // get descriptor for link
1327 LinkDescriptor* ld = getDescriptor(id, true);
1328 if ( ld == NULL ) return; // not found? ->ignore!
1329 logging_info( "onLinkDown descriptor: " << ld );
1330
1331 // removing relay link information
1332 removeRelayLink(ld->overlayId);
1333
1334 // inform listeners about link down
1335 ld->communicationUp = false;
1336 if (!ld->service.isUnspecified()) {
1337 CommunicationListener* lst = getListener(ld->service);
1338 if(lst != NULL) lst->onLinkDown( ld->overlayId, ld->remoteNode );
1339 sideport->onLinkDown( id, this->nodeId, ld->remoteNode, this->spovnetId );
1340 }
1341
1342 // delete all queued messages (auto links)
1343 if( ld->messageQueue.size() > 0 ) {
1344 logging_warn( "Dropping link " << id.toString() << " that has "
1345 << ld->messageQueue.size() << " waiting messages" );
1346 ld->flushQueue();
1347 }
1348
1349 // erase mapping
1350 eraseDescriptor(ld->overlayId);
1351}
1352
1353void BaseOverlay::onLinkChanged(const LinkID& id,
1354 const address_v* oldlocal, const address_v* newlocal,
1355 const address_v* oldremote, const address_v* newremote) {
1356
1357 // get descriptor for link
1358 LinkDescriptor* ld = getDescriptor(id, true);
1359 if ( ld == NULL ) return; // not found? ->ignore!
1360 logging_debug( "onLinkChanged descriptor: " << ld );
1361
1362 // inform listeners
1363 ld->listener->onLinkChanged( ld->overlayId, ld->remoteNode );
1364 sideport->onLinkChanged( id, this->nodeId, ld->remoteNode, this->spovnetId );
1365
1366 // autolinks: refresh timestamp
1367 ld->setAutoUsed();
1368}
1369
1370void BaseOverlay::onLinkFail(const LinkID& id,
1371 const address_v* local, const address_v* remote) {
1372 logging_debug( "Link fail with base communication link id=" << id );
1373
1374 // erase bootstrap links
1375 vector<LinkID>::iterator it = std::find( bootstrapLinks.begin(), bootstrapLinks.end(), id );
1376 if( it != bootstrapLinks.end() ) bootstrapLinks.erase( it );
1377
1378 // get descriptor for link
1379 LinkDescriptor* ld = getDescriptor(id, true);
1380 if ( ld == NULL ) return; // not found? ->ignore!
1381 logging_debug( "Link failed id=" << ld->overlayId.toString() );
1382
1383 // inform listeners
1384 ld->listener->onLinkFail( ld->overlayId, ld->remoteNode );
1385 sideport->onLinkFail( id, this->nodeId, ld->remoteNode, this->spovnetId );
1386}
1387
1388void BaseOverlay::onLinkQoSChanged(const LinkID& id, const address_v* local,
1389 const address_v* remote, const QoSParameterSet& qos) {
1390 logging_debug( "Link quality changed with base communication link id=" << id );
1391
1392 // get descriptor for link
1393 LinkDescriptor* ld = getDescriptor(id, true);
1394 if ( ld == NULL ) return; // not found? ->ignore!
1395 logging_debug( "Link quality changed id=" << ld->overlayId.toString() );
1396}
1397
1398bool BaseOverlay::onLinkRequest( const LinkID& id, const address_v* local,
1399 const address_v* remote ) {
1400 logging_debug("Accepting link request from " << remote->to_string() );
1401 return true;
1402}
1403
1404/// handles a message from base communication
1405bool BaseOverlay::receiveMessage(const Message* message,
1406 const LinkID& link, const NodeID& ) {
1407 // get descriptor for link
1408 LinkDescriptor* ld = getDescriptor( link, true );
1409 return handleMessage( message, ld, link );
1410}
1411
1412// ----------------------------------------------------------------------------
1413
1414/// Handle spovnet instance join requests
1415bool BaseOverlay::handleJoinRequest( OverlayMsg* overlayMsg, const LinkID& bcLink ) {
1416
1417 // decapsulate message
1418 JoinRequest* joinReq = overlayMsg->decapsulate<JoinRequest>();
1419 logging_info( "Received join request for spovnet " <<
1420 joinReq->getSpoVNetID().toString() );
1421
1422 // check spovnet id
1423 if( joinReq->getSpoVNetID() != spovnetId ) {
1424 logging_error(
1425 "Received join request for spovnet we don't handle " <<
1426 joinReq->getSpoVNetID().toString() );
1427 return false;
1428 }
1429
1430 // TODO: here you can implement mechanisms to deny joining of a node
1431 bool allow = true;
1432 logging_info( "Sending join reply for spovnet " <<
1433 spovnetId.toString() << " to node " <<
1434 overlayMsg->getSourceNode().toString() <<
1435 ". Result: " << (allow ? "allowed" : "denied") );
1436 joiningNodes.push_back( overlayMsg->getSourceNode() );
1437
1438 // return overlay parameters
1439 assert( overlayInterface != NULL );
1440 logging_debug( "Using bootstrap end-point "
1441 << getEndpointDescriptor().toString() )
1442 OverlayParameterSet parameters = overlayInterface->getParameters();
1443 OverlayMsg retmsg( OverlayMsg::typeJoinReply,
1444 OverlayInterface::OVERLAY_SERVICE_ID, nodeId );
1445 JoinReply replyMsg( spovnetId, parameters,
1446 allow, getEndpointDescriptor() );
1447 retmsg.encapsulate(&replyMsg);
1448 bc->sendMessage( bcLink, &retmsg );
1449
1450 return true;
1451}
1452
1453/// Handle replies to spovnet instance join requests
1454bool BaseOverlay::handleJoinReply( OverlayMsg* overlayMsg, const LinkID& bcLink ) {
1455 // decapsulate message
1456 logging_debug("received join reply message");
1457 JoinReply* replyMsg = overlayMsg->decapsulate<JoinReply>();
1458
1459 // correct spovnet?
1460 if( replyMsg->getSpoVNetID() != spovnetId ) { // no-> fail
1461 logging_error( "Received SpoVNet join reply for " <<
1462 replyMsg->getSpoVNetID().toString() <<
1463 " != " << spovnetId.toString() );
1464 delete replyMsg;
1465 return false;
1466 }
1467
1468 // access granted? no -> fail
1469 if( !replyMsg->getJoinAllowed() ) {
1470 logging_error( "Our join request has been denied" );
1471
1472 // drop initiator link
1473 if( !bcLink.isUnspecified() ){
1474 bc->dropLink( bcLink );
1475
1476 vector<LinkID>::iterator it = std::find(
1477 bootstrapLinks.begin(), bootstrapLinks.end(), bcLink);
1478 if( it != bootstrapLinks.end() )
1479 bootstrapLinks.erase(it);
1480 }
1481
1482 // inform all registered services of the event
1483 BOOST_FOREACH( NodeListener* i, nodeListeners )
1484 i->onJoinFailed( spovnetId );
1485
1486 delete replyMsg;
1487 return true;
1488 }
1489
1490 // access has been granted -> continue!
1491 logging_info("Join request has been accepted for spovnet " <<
1492 spovnetId.toString() );
1493
1494 logging_debug( "Using bootstrap end-point "
1495 << replyMsg->getBootstrapEndpoint().toString() );
1496
1497 // create overlay structure from spovnet parameter set
1498 // if we have not boostrapped yet against some other node
1499 if( overlayInterface == NULL ){
1500
1501 logging_debug("first-time bootstrapping");
1502
1503 overlayInterface = OverlayFactory::create(
1504 *this, replyMsg->getParam(), nodeId, this );
1505
1506 // overlay structure supported? no-> fail!
1507 if( overlayInterface == NULL ) {
1508 logging_error( "overlay structure not supported" );
1509
1510 if( !bcLink.isUnspecified() ){
1511 bc->dropLink( bcLink );
1512
1513 vector<LinkID>::iterator it = std::find(
1514 bootstrapLinks.begin(), bootstrapLinks.end(), bcLink);
1515 if( it != bootstrapLinks.end() )
1516 bootstrapLinks.erase(it);
1517 }
1518
1519 // inform all registered services of the event
1520 BOOST_FOREACH( NodeListener* i, nodeListeners )
1521 i->onJoinFailed( spovnetId );
1522
1523 delete replyMsg;
1524 return true;
1525 }
1526
1527 // everything ok-> join the overlay!
1528 state = BaseOverlayStateCompleted;
1529 overlayInterface->createOverlay();
1530
1531 overlayInterface->joinOverlay( replyMsg->getBootstrapEndpoint() );
1532 overlayBootstrap.recordJoin( replyMsg->getBootstrapEndpoint() );
1533
1534 // update ovlvis
1535 //ovl.visChangeNodeColor( ovlId, nodeId, OvlVis::NODE_COLORS_GREEN);
1536
1537 // inform all registered services of the event
1538 BOOST_FOREACH( NodeListener* i, nodeListeners )
1539 i->onJoinCompleted( spovnetId );
1540
1541 delete replyMsg;
1542
1543 } else {
1544
1545 // this is not the first bootstrap, just join the additional node
1546 logging_debug("not first-time bootstrapping");
1547 overlayInterface->joinOverlay( replyMsg->getBootstrapEndpoint() );
1548 overlayBootstrap.recordJoin( replyMsg->getBootstrapEndpoint() );
1549
1550 delete replyMsg;
1551
1552 } // if( overlayInterface == NULL )
1553
1554 return true;
1555}
1556
1557
1558bool BaseOverlay::handleData( OverlayMsg* overlayMsg, LinkDescriptor* ld ) {
1559 // get service
1560 const ServiceID& service = overlayMsg->getService();
1561 logging_debug( "Received data for service " << service.toString()
1562 << " on link " << overlayMsg->getDestinationLink().toString() );
1563
1564 // delegate data message
1565 CommunicationListener* lst = getListener(service);
1566 if(lst != NULL){
1567 lst->onMessage(
1568 overlayMsg,
1569 overlayMsg->getSourceNode(),
1570 overlayMsg->getDestinationLink()
1571 );
1572 }
1573
1574 return true;
1575}
1576
1577
1578bool BaseOverlay::handleLinkUpdate( OverlayMsg* overlayMsg, LinkDescriptor* ld ) {
1579
1580 if( ld == NULL ) {
1581 logging_warn( "received overlay update message for link for "
1582 << "which we have no mapping" );
1583 return false;
1584 }
1585 logging_info("Received type update message on link " << ld );
1586
1587 // update our link mapping information for this link
1588 bool changed =
1589 ( ld->remoteNode != overlayMsg->getSourceNode() )
1590 || ( ld->service != overlayMsg->getService() );
1591
1592 // set parameters
1593 ld->up = true;
1594 ld->remoteNode = overlayMsg->getSourceNode();
1595 ld->remoteLink = overlayMsg->getSourceLink();
1596 ld->service = overlayMsg->getService();
1597 ld->autolink = overlayMsg->isAutoLink();
1598
1599 // if our link information changed, we send out an update, too
1600 if( changed ) {
1601 overlayMsg->swapRoles();
1602 overlayMsg->setSourceNode(nodeId);
1603 overlayMsg->setSourceLink(ld->overlayId);
1604 overlayMsg->setService(ld->service);
1605 send( overlayMsg, ld );
1606 }
1607
1608 // service registered? no-> error!
1609 if( !communicationListeners.contains( ld->service ) ) {
1610 logging_warn( "Link up: event listener has not been registered" );
1611 return false;
1612 }
1613
1614 // default or no service registered?
1615 CommunicationListener* listener = communicationListeners.get( ld->service );
1616 if( listener == NULL || listener == &CommunicationListener::DEFAULT ) {
1617 logging_warn("Link up: event listener is default or null!" );
1618 return true;
1619 }
1620
1621 // update descriptor
1622 ld->listener = listener;
1623 ld->setAutoUsed();
1624 ld->setAlive();
1625
1626 // ask the service whether it wants to accept this link
1627 if( !listener->onLinkRequest(ld->remoteNode) ) {
1628
1629 logging_debug("Link id=" << ld->overlayId.toString() <<
1630 " has been denied by service " << ld->service.toString() << ", dropping link");
1631
1632 // prevent onLinkDown calls to the service
1633 ld->listener = &CommunicationListener::DEFAULT;
1634
1635 // drop the link
1636 dropLink( ld->overlayId );
1637 return true;
1638 }
1639
1640 // set link up
1641 ld->up = true;
1642 logging_info( "Link has been accepted by service and is up: " << ld );
1643
1644 // auto links: link has been accepted -> send queued messages
1645 if( ld->messageQueue.size() > 0 ) {
1646 logging_info( "Sending out queued messages on link " << ld );
1647 BOOST_FOREACH( Message* msg, ld->messageQueue ) {
1648 sendMessage( msg, ld->overlayId );
1649 delete msg;
1650 }
1651 ld->messageQueue.clear();
1652 }
1653
1654 // call the notification functions
1655 listener->onLinkUp( ld->overlayId, ld->remoteNode );
1656 sideport->onLinkUp( ld->overlayId, nodeId, ld->remoteNode, this->spovnetId );
1657
1658 return true;
1659}
1660
1661/// handle a link request and reply
1662bool BaseOverlay::handleLinkRequest( OverlayMsg* overlayMsg, LinkDescriptor* ld ) {
1663 logging_info( "Link request received from node id=" << overlayMsg->getSourceNode() );
1664
1665 //TODO: Check if a request has already been sent using getSourceLink() ...
1666
1667 // create link descriptor
1668 LinkDescriptor* ldn = addDescriptor();
1669
1670 // flags
1671 ldn->up = true;
1672 ldn->fromRemote = true;
1673 ldn->relayed = true;
1674
1675 // parameters
1676 ldn->service = overlayMsg->getService();
1677 ldn->listener = getListener(ldn->service);
1678 ldn->remoteNode = overlayMsg->getSourceNode();
1679 ldn->remoteLink = overlayMsg->getSourceLink();
1680
1681 // update time-stamps
1682 ldn->setAlive();
1683 ldn->setAutoUsed();
1684
1685 // create reply message and send back!
1686 overlayMsg->swapRoles(); // swap source/destination
1687 overlayMsg->setType(OverlayMsg::typeLinkReply);
1688 overlayMsg->setSourceLink(ldn->overlayId);
1689 overlayMsg->setSourceEndpoint( bc->getEndpointDescriptor() );
1690 overlayMsg->setRelayed(true);
1691 send( overlayMsg, ld ); // send back to link
1692
1693 // inform listener
1694 if(ldn != NULL && ldn->listener != NULL)
1695 ldn->listener->onLinkUp( ldn->overlayId, ldn->remoteNode );
1696
1697 return true;
1698}
1699
1700bool BaseOverlay::handleLinkReply( OverlayMsg* overlayMsg, LinkDescriptor* ld ) {
1701
1702 // find link request
1703 LinkDescriptor* ldn = getDescriptor(overlayMsg->getDestinationLink());
1704
1705 // not found? yes-> drop with error!
1706 if (ldn == NULL) {
1707 logging_error( "No link request pending for "
1708 << overlayMsg->getDestinationLink().toString() );
1709 return false;
1710 }
1711 logging_debug("Handling link reply for " << ldn )
1712
1713 // check if already up
1714 if (ldn->up) {
1715 logging_warn( "Link already up: " << ldn );
1716 return true;
1717 }
1718
1719 // debug message
1720 logging_debug( "Link request reply received. Establishing link"
1721 << " for service " << overlayMsg->getService().toString()
1722 << " with local id=" << overlayMsg->getDestinationLink()
1723 << " and remote link id=" << overlayMsg->getSourceLink()
1724 << " to " << overlayMsg->getSourceEndpoint().toString()
1725 );
1726
1727 // set local link descriptor data
1728 ldn->up = true;
1729 ldn->relayed = true;
1730 ldn->service = overlayMsg->getService();
1731 ldn->listener = getListener(ldn->service);
1732 ldn->remoteLink = overlayMsg->getSourceLink();
1733 ldn->remoteNode = overlayMsg->getSourceNode();
1734
1735 // update timestamps
1736 ldn->setAlive();
1737 ldn->setAutoUsed();
1738
1739 // auto links: link has been accepted -> send queued messages
1740 if( ldn->messageQueue.size() > 0 ) {
1741 logging_info( "Sending out queued messages on link " <<
1742 ldn->overlayId.toString() );
1743 BOOST_FOREACH( Message* msg, ldn->messageQueue ) {
1744 sendMessage( msg, ldn->overlayId );
1745 delete msg;
1746 }
1747 ldn->messageQueue.clear();
1748 }
1749
1750 // inform listeners about new link
1751 ldn->listener->onLinkUp( ldn->overlayId, ldn->remoteNode );
1752
1753 // try to replace relay link with direct link
1754 ldn->communicationId =
1755 bc->establishLink( overlayMsg->getSourceEndpoint() );
1756
1757 return true;
1758}
1759
1760/// handle a keep-alive message for a link
1761bool BaseOverlay::handleLinkAlive( OverlayMsg* overlayMsg, LinkDescriptor* ld ) {
1762 LinkDescriptor* rld = getDescriptor(overlayMsg->getDestinationLink());
1763 if ( rld != NULL ) {
1764 logging_debug("Keep-Alive for " <<
1765 overlayMsg->getDestinationLink() );
1766 if (overlayMsg->isRouteRecord())
1767 rld->routeRecord = overlayMsg->getRouteRecord();
1768 rld->setAlive();
1769 return true;
1770 } else {
1771 logging_error("Keep-Alive for "
1772 << overlayMsg->getDestinationLink() << ": link unknown." );
1773 return false;
1774 }
1775}
1776
1777/// handle a direct link message
1778bool BaseOverlay::handleLinkDirect( OverlayMsg* overlayMsg, LinkDescriptor* ld ) {
1779 logging_debug( "Received direct link replacement request" );
1780
1781 /// get destination overlay link
1782 LinkDescriptor* rld = getDescriptor( overlayMsg->getDestinationLink() );
1783 if (rld == NULL || ld == NULL) {
1784 logging_error("Direct link replacement: Link "
1785 << overlayMsg->getDestinationLink() << "not found error." );
1786 return false;
1787 }
1788 logging_info( "Received direct link convert notification for " << rld );
1789
1790 // update information
1791 rld->communicationId = ld->communicationId;
1792 rld->communicationUp = true;
1793 rld->relayed = false;
1794
1795 // mark used and alive!
1796 rld->setAlive();
1797 rld->setAutoUsed();
1798
1799 // erase the original descriptor
1800 eraseDescriptor(ld->overlayId);
1801 return true;
1802}
1803
1804/// handles an incoming message
1805bool BaseOverlay::handleMessage( const Message* message, LinkDescriptor* ld,
1806 const LinkID bcLink ) {
1807 logging_debug( "Handling message: " << message->toString());
1808
1809 // decapsulate overlay message
1810 OverlayMsg* overlayMsg =
1811 const_cast<Message*>(message)->decapsulate<OverlayMsg>();
1812 if( overlayMsg == NULL ) return false;
1813
1814 // increase number of hops
1815 overlayMsg->increaseNumHops();
1816
1817 // refresh relay information
1818 refreshRelayInformation( overlayMsg, ld );
1819
1820 // update route record
1821 overlayMsg->addRouteRecord(nodeId);
1822
1823 // handle dht messages (do not route)
1824 if (overlayMsg->isDHTMessage())
1825 return handleDHTMessage(overlayMsg);
1826
1827 // handle signaling messages (do not route!)
1828 if (overlayMsg->getType()>=OverlayMsg::typeSignalingStart &&
1829 overlayMsg->getType()<=OverlayMsg::typeSignalingEnd ) {
1830 overlayInterface->onMessage(overlayMsg, NodeID::UNSPECIFIED, LinkID::UNSPECIFIED);
1831 delete overlayMsg;
1832 return true;
1833 }
1834
1835 // message for reached destination? no-> route message
1836 if (!overlayMsg->getDestinationNode().isUnspecified() &&
1837 overlayMsg->getDestinationNode() != nodeId ) {
1838 logging_debug("Routing message "
1839 << " from " << overlayMsg->getSourceNode()
1840 << " to " << overlayMsg->getDestinationNode()
1841 );
1842 route( overlayMsg );
1843 delete overlayMsg;
1844 return true;
1845 }
1846
1847 // handle DHT response messages
1848 if (overlayMsg->hasTypeMask( OverlayMsg::maskDHTResponse )) {
1849 bool ret = handleDHTMessage(overlayMsg);
1850 delete overlayMsg;
1851 return ret;
1852 }
1853
1854 // handle base overlay message
1855 bool ret = false; // return value
1856 switch ( overlayMsg->getType() ) {
1857
1858 // data transport messages
1859 case OverlayMsg::typeData:
1860 ret = handleData(overlayMsg, ld); break;
1861
1862 // overlay setup messages
1863 case OverlayMsg::typeJoinRequest:
1864 ret = handleJoinRequest(overlayMsg, bcLink ); break;
1865 case OverlayMsg::typeJoinReply:
1866 ret = handleJoinReply(overlayMsg, bcLink ); break;
1867
1868 // link specific messages
1869 case OverlayMsg::typeLinkRequest:
1870 ret = handleLinkRequest(overlayMsg, ld ); break;
1871 case OverlayMsg::typeLinkReply:
1872 ret = handleLinkReply(overlayMsg, ld ); break;
1873 case OverlayMsg::typeLinkUpdate:
1874 ret = handleLinkUpdate(overlayMsg, ld ); break;
1875 case OverlayMsg::typeLinkAlive:
1876 ret = handleLinkAlive(overlayMsg, ld ); break;
1877 case OverlayMsg::typeLinkDirect:
1878 ret = handleLinkDirect(overlayMsg, ld ); break;
1879
1880 // handle unknown message type
1881 default: {
1882 logging_error( "received message in invalid state! don't know " <<
1883 "what to do with this message of type " << overlayMsg->getType() );
1884 ret = false;
1885 break;
1886 }
1887 }
1888
1889 // free overlay message and return value
1890 delete overlayMsg;
1891 return ret;
1892}
1893
1894// ----------------------------------------------------------------------------
1895
1896void BaseOverlay::broadcastMessage(Message* message, const ServiceID& service) {
1897
1898 logging_debug( "broadcasting message to all known nodes " <<
1899 "in the overlay from service " + service.toString() );
1900
1901 OverlayInterface::NodeList nodes = overlayInterface->getKnownNodes(true);
1902 OverlayInterface::NodeList::iterator i = nodes.begin();
1903 for(; i != nodes.end(); i++ ) {
1904 if( *i == nodeId) continue; // don't send to ourselfs
1905 sendMessage( message, *i, service );
1906 }
1907}
1908
1909/// return the overlay neighbors
1910vector<NodeID> BaseOverlay::getOverlayNeighbors(bool deep) const {
1911 // the known nodes _can_ also include our node, so we remove ourself
1912 vector<NodeID> nodes = overlayInterface->getKnownNodes(deep);
1913 vector<NodeID>::iterator i = find( nodes.begin(), nodes.end(), this->nodeId );
1914 if( i != nodes.end() ) nodes.erase( i );
1915 return nodes;
1916}
1917
1918const NodeID& BaseOverlay::getNodeID(const LinkID& lid) const {
1919 if( lid == LinkID::UNSPECIFIED ) return nodeId;
1920 const LinkDescriptor* ld = getDescriptor(lid);
1921 if( ld == NULL ) return NodeID::UNSPECIFIED;
1922 else return ld->remoteNode;
1923}
1924
1925vector<LinkID> BaseOverlay::getLinkIDs( const NodeID& nid ) const {
1926 vector<LinkID> linkvector;
1927 BOOST_FOREACH( LinkDescriptor* ld, links ) {
1928 if( ld->remoteNode == nid || nid == NodeID::UNSPECIFIED ) {
1929 linkvector.push_back( ld->overlayId );
1930 }
1931 }
1932 return linkvector;
1933}
1934
1935
1936void BaseOverlay::onNodeJoin(const NodeID& node) {
1937 JoiningNodes::iterator i = std::find( joiningNodes.begin(), joiningNodes.end(), node );
1938 if( i == joiningNodes.end() ) return;
1939
1940 logging_info( "node has successfully joined baseoverlay and overlay structure "
1941 << node.toString() );
1942
1943 joiningNodes.erase( i );
1944}
1945
1946void BaseOverlay::eventFunction() {
1947 stabilizeRelays();
1948 stabilizeLinks();
1949 stabilizeDHT();
1950 updateVisual();
1951}
1952
1953void BaseOverlay::updateVisual(){
1954
1955 //
1956 // update base overlay structure
1957 //
1958
1959 static NodeID pre = NodeID::UNSPECIFIED;
1960 static NodeID suc = NodeID::UNSPECIFIED;
1961
1962 vector<NodeID> nodes = this->getOverlayNeighbors(false);
1963
1964 if(nodes.size() == 0){
1965
1966 if(pre != NodeID::UNSPECIFIED){
1967 visual.visDisconnect(visualIdOverlay, this->nodeId, pre, "");
1968 pre = NodeID::UNSPECIFIED;
1969 }
1970 if(suc != NodeID::UNSPECIFIED){
1971 visual.visDisconnect(visualIdOverlay, this->nodeId, suc, "");
1972 suc = NodeID::UNSPECIFIED;
1973 }
1974
1975 } // if(nodes.size() == 0)
1976
1977 if(nodes.size() == 1){
1978 // only one node, make this pre and succ
1979 // and then go into the node.size()==2 case
1980 //nodes.push_back(nodes.at(0));
1981
1982 if(pre != nodes.at(0)){
1983 pre = nodes.at(0);
1984 if(pre != NodeID::UNSPECIFIED)
1985 visual.visConnect(visualIdOverlay, this->nodeId, pre, "");
1986 }
1987 }
1988
1989 if(nodes.size() == 2){
1990
1991 // old finger
1992 if(nodes.at(0) != pre){
1993 if(pre != NodeID::UNSPECIFIED)
1994 visual.visDisconnect(visualIdOverlay, this->nodeId, pre, "");
1995 pre = NodeID::UNSPECIFIED;
1996 }
1997 if(nodes.at(1) != suc){
1998 if(suc != NodeID::UNSPECIFIED)
1999 visual.visDisconnect(visualIdOverlay, this->nodeId, suc, "");
2000 suc = NodeID::UNSPECIFIED;
2001 }
2002
2003 // connect with fingers
2004 if(pre == NodeID::UNSPECIFIED){
2005 pre = nodes.at(0);
2006 if(pre != NodeID::UNSPECIFIED)
2007 visual.visConnect(visualIdOverlay, this->nodeId, pre, "");
2008 }
2009 if(suc == NodeID::UNSPECIFIED){
2010 suc = nodes.at(1);
2011 if(suc != NodeID::UNSPECIFIED)
2012 visual.visConnect(visualIdOverlay, this->nodeId, suc, "");
2013 }
2014
2015 } //if(nodes.size() == 2)
2016
2017// {
2018// logging_error("================================");
2019// logging_error("my nodeid " << nodeId.get(MAX_KEYLENGTH-16, 16));
2020// logging_error("================================");
2021// if(nodes.size()>= 1){
2022// logging_error("real pre " << nodes.at(0).toString());
2023// logging_error("real pre " << nodes.at(0).get(MAX_KEYLENGTH-16, 16));
2024// }
2025// if(nodes.size()>= 2){
2026// logging_error("real suc " << nodes.at(1).toString());
2027// logging_error("real suc " << nodes.at(1).get(MAX_KEYLENGTH-16, 16));
2028// }
2029// logging_error("================================");
2030// if(pre == NodeID::UNSPECIFIED){
2031// logging_error("pre: unspecified");
2032// }else{
2033// unsigned int prei = pre.get(MAX_KEYLENGTH-16, 16);
2034// logging_error("pre: " << prei);
2035// }
2036// if(suc == NodeID::UNSPECIFIED){
2037// logging_error("suc: unspecified");
2038// }else{
2039// unsigned int suci = suc.get(MAX_KEYLENGTH-16, 16);
2040// logging_error("suc: " << suci);
2041// }
2042// logging_error("================================");
2043// }
2044
2045 //
2046 // update base communication links
2047 //
2048
2049 static set<NodeID> linkset;
2050 set<NodeID> remotenodes;
2051 BOOST_FOREACH( LinkDescriptor* ld, links ) {
2052 if (!ld->isVital() || ld->service != OverlayInterface::OVERLAY_SERVICE_ID)
2053 continue;
2054
2055 if (ld->routeRecord.size()>1 && ld->relayed) {
2056 for (size_t i=1; i<ld->routeRecord.size(); i++)
2057 remotenodes.insert( ld->routeRecord[ld->routeRecord.size()-i-1] );
2058 } else {
2059 remotenodes.insert(ld->remoteNode);
2060 }
2061 }
2062
2063 // which links are old and need deletion?
2064 bool changed = false;
2065
2066 do{
2067 changed = false;
2068 BOOST_FOREACH(NodeID n, linkset){
2069 if(remotenodes.find(n) == remotenodes.end()){
2070 visual.visDisconnect(visualIdBase, this->nodeId, n, "");
2071 linkset.erase(n);
2072 changed = true;
2073 break;
2074 }
2075 }
2076 }while(changed);
2077
2078 // which links are new and need creation?
2079 do{
2080 changed = false;
2081 BOOST_FOREACH(NodeID n, remotenodes){
2082 if(linkset.find(n) == linkset.end()){
2083 visual.visConnect(visualIdBase, this->nodeId, n, "");
2084 linkset.insert(n);
2085 changed = true;
2086 break;
2087 }
2088 }
2089 }while(changed);
2090
2091}
2092
2093// ----------------------------------------------------------------------------
2094
2095/// stabilize DHT state
2096void BaseOverlay::stabilizeDHT() {
2097 // remove old values from DHT
2098 BOOST_FOREACH( DHTEntry& entry, dht->entries ) {
2099 // erase old entries
2100 entry.erase_expired_entries();
2101 }
2102
2103 // erase old values from local DHT
2104 BOOST_FOREACH( DHTEntry& entry, localDHT->entries ) {
2105 // erase old entries
2106 entry.erase_expired_entries();
2107 }
2108
2109 // re-publish values
2110 BOOST_FOREACH( DHTEntry& entry, localDHT->entries ) {
2111 BOOST_FOREACH( ValueEntry& value, entry.values )
2112 dhtPut(entry.key, value.get_value(), 0, false, true );
2113 }
2114}
2115
2116// handle DHT messages
2117bool BaseOverlay::handleDHTMessage( OverlayMsg* msg ) {
2118
2119 // decapsulate message
2120 logging_debug("received DHT message");
2121 DHTMessage* dhtMsg = msg->decapsulate<DHTMessage>();
2122
2123 // handle DHT data message
2124 if (msg->getType()==OverlayMsg::typeDHTData) {
2125 const ServiceID& service = msg->getService();
2126 logging_info( "Received DHT data for service " << service.toString() );
2127
2128 // delegate data message
2129 CommunicationListener* lst = getListener(service);
2130 if(lst != NULL) lst->onKeyValue(dhtMsg->getKey(), dhtMsg->getValues() );
2131 return true;
2132 }
2133
2134 // route message to closest node
2135 if (!overlayInterface->isClosestNodeTo(msg->getDestinationNode())) {
2136 logging_debug("Routing DHT message to closest node "
2137 << " from " << msg->getSourceNode()
2138 << " to " << msg->getDestinationNode()
2139 );
2140 route( msg );
2141 delete msg;
2142 return true;
2143 }
2144
2145 // now, we are the closest node...
2146 switch (msg->getType()) {
2147 case OverlayMsg::typeDHTPut: {
2148 logging_debug("DHT: Attempt to store values for key "
2149 << dhtMsg->getKey());
2150 if (dhtMsg->doReplace()) {
2151 logging_debug("DHT: Attempt to replace key: remove old values first!");
2152 dht->remove(dhtMsg->getKey());
2153 }
2154 BOOST_FOREACH( Data value, dhtMsg->getValues() ) {
2155 logging_debug("DHT: Stored value: " << value );
2156 dht->put(dhtMsg->getKey(), value, dhtMsg->getTTL() );
2157 }
2158 break;
2159 }
2160
2161 case OverlayMsg::typeDHTGet: {
2162 logging_info("DHT-Get: key=" << dhtMsg->getKey() );
2163 vector<Data> vect = dht->get(dhtMsg->getKey());
2164 BOOST_FOREACH(const Data& d, vect)
2165 logging_info("DHT-Get: value=" << d);
2166 OverlayMsg omsg(*msg);
2167 omsg.swapRoles();
2168 omsg.setType(OverlayMsg::typeDHTData);
2169 DHTMessage dhtmsg(dhtMsg->getKey(), vect);
2170 omsg.encapsulate(&dhtmsg);
2171 dhtSend(&omsg, omsg.getDestinationNode());
2172 break;
2173 }
2174
2175 case OverlayMsg::typeDHTRemove: {
2176 if (dhtMsg->hasValues()) {
2177 BOOST_FOREACH( Data value, dhtMsg->getValues() )
2178 dht->remove(dhtMsg->getKey(), value );
2179 } else
2180 dht->remove( dhtMsg->getKey() );
2181 break;
2182 }
2183
2184 default:
2185 logging_error("DHT Message type unknown.");
2186 return false;
2187 }
2188 delete msg;
2189 return true;
2190}
2191
2192/// put a value to the DHT with a ttl given in seconds
2193void BaseOverlay::dhtPut( const Data& key, const Data& value, int ttl, bool replace, bool no_local_refresh ) {
2194
2195 logging_info("DHT: putting key=" << key << " value=" << value
2196 << " ttl=" << ttl << " replace=" << replace
2197 );
2198
2199
2200 if (!no_local_refresh) {
2201 // put into local data store (for refreshes)
2202 if (replace) localDHT->remove(key);
2203 localDHT->put(key, value, ttl);
2204 }
2205
2206 // calculate hash
2207 NodeID dest = NodeID::sha1(key.getBuffer(), key.getLength() / 8);
2208 DHTMessage dhtmsg( key, value );
2209 dhtmsg.setReplace( replace );
2210 dhtmsg.setTTL(ttl);
2211
2212 OverlayMsg msg( OverlayMsg::typeDHTPut );
2213 msg.encapsulate( &dhtmsg );
2214 dhtSend(&msg, dest);
2215}
2216
2217/// removes a key value pair from the DHT
2218void BaseOverlay::dhtRemove( const Data& key, const Data& value ) {
2219 // remove from local data store
2220 localDHT->remove(key,value);
2221
2222 // calculate hash
2223 NodeID dest = NodeID::sha1(key.getBuffer(), key.getLength() / 8);
2224 DHTMessage dhtmsg(key,value);
2225
2226 // send message
2227 OverlayMsg msg(OverlayMsg::typeDHTRemove);
2228 msg.encapsulate( &dhtmsg );
2229 dhtSend(&msg, dest);
2230}
2231
2232/// removes all data stored at the given key
2233void BaseOverlay::dhtRemove( const Data& key ) {
2234 // calculate hash
2235 NodeID dest = NodeID::sha1(key.getBuffer(), key.getLength() / 8);
2236 DHTMessage dhtmsg(key);
2237
2238 // send message
2239 OverlayMsg msg(OverlayMsg::typeDHTRemove);
2240 msg.encapsulate( &dhtmsg );
2241 dhtSend(&msg, dest);
2242}
2243
2244/// requests data stored using key
2245void BaseOverlay::dhtGet( const Data& key, const ServiceID& service ) {
2246 logging_info("DHT: trying to resolve key=" <<
2247 key << " for service=" << service.toString() );
2248
2249 // calculate hash
2250 NodeID dest = NodeID::sha1(key.getBuffer(), key.getLength() / 8);
2251 DHTMessage dhtmsg(key);
2252
2253 // send message
2254 OverlayMsg msg(OverlayMsg::typeDHTGet);
2255 msg.setService(service);
2256 msg.encapsulate( &dhtmsg );
2257 dhtSend(&msg, dest);
2258}
2259
2260void BaseOverlay::dhtSend( OverlayMsg* msg, const NodeID& dest ) {
2261 logging_info("DHT: sending message with key=" << dest.toString() );
2262 msg->setSourceNode(this->nodeId);
2263 msg->setDestinationNode(dest);
2264
2265 // local storage? yes-> put into DHT directly
2266 if (overlayInterface->isClosestNodeTo(msg->getDestinationNode())) {
2267 Data d = data_serialize(msg);
2268 Message* m2 = new Message(d);
2269 OverlayMsg* m3 = m2->decapsulate<OverlayMsg>();
2270 handleDHTMessage(m3);
2271 delete m2;
2272 return;
2273 }
2274
2275 // send message "normally"
2276 send(msg, dest);
2277}
2278
2279std::string BaseOverlay::debugInformation() {
2280 std::stringstream s;
2281 int i=0;
2282
2283 // dump overlay information
2284 s << "Long debug info ... [see below]" << endl << endl;
2285 s << "--- overlay information ----------------------" << endl;
2286 s << overlayInterface->debugInformation() << endl;
2287
2288 // dump link state
2289 s << "--- link state -------------------------------" << endl;
2290 BOOST_FOREACH( LinkDescriptor* ld, links ) {
2291 s << "link " << i << ": " << ld << endl;
2292 i++;
2293 }
2294 s << endl << endl;
2295
2296 return s.str();
2297}
2298
2299}} // namespace ariba, overlay
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