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/***************************************************************************
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* Copyright (C) 2005 by Joris Guisson *
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* joris.guisson@gmail.com *
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* *
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* This program is free software; you can redistribute it and/or modify *
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* it under the terms of the GNU General Public License as published by *
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* the Free Software Foundation; either version 2 of the License, or *
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* (at your option) any later version. *
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* *
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* This program is distributed in the hope that it will be useful, *
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* but WITHOUT ANY WARRANTY; without even the implied warranty of *
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
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* GNU General Public License for more details. *
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* *
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* You should have received a copy of the GNU General Public License *
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* along with this program; if not, write to the *
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* Free Software Foundation, Inc., *
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* 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA. *
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***************************************************************************/
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#include <tdesocketaddress.h>
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#include <util/file.h>
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#include <util/log.h>
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#include <util/functions.h>
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#include <netinet/in.h>
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#include "kbucket.h"
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#include "kclosestnodessearch.h"
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#include "rpcserver.h"
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#include "node.h"
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using namespace KNetwork;
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using namespace bt;
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namespace dht
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{
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KBucketEntry::KBucketEntry()
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{
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last_responded = bt::GetCurrentTime();
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failed_queries = 0;
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questionable_pings = 0;
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}
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KBucketEntry::KBucketEntry(const KInetSocketAddress & addr,const Key & id)
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: addr(addr),node_id(id)
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{
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last_responded = bt::GetCurrentTime();
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failed_queries = 0;
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questionable_pings = 0;
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}
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KBucketEntry::KBucketEntry(const KBucketEntry & other)
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: addr(other.addr),node_id(other.node_id),
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last_responded(other.last_responded),failed_queries(other.failed_queries),questionable_pings(other.questionable_pings)
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{}
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KBucketEntry::~KBucketEntry()
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{}
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KBucketEntry & KBucketEntry::operator = (const KBucketEntry & other)
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{
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addr = other.addr;
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node_id = other.node_id;
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last_responded = other.last_responded;
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failed_queries = other.failed_queries;
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questionable_pings = other.questionable_pings;
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return *this;
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}
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bool KBucketEntry::operator == (const KBucketEntry & entry) const
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{
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return addr == entry.addr && node_id == entry.node_id;
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}
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bool KBucketEntry::isGood() const
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{
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if (bt::GetCurrentTime() - last_responded > 15 * 60 * 1000)
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return false;
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else
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return true;
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}
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bool KBucketEntry::isQuestionable() const
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{
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if (bt::GetCurrentTime() - last_responded > 15 * 60 * 1000)
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return true;
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else
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return false;
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}
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bool KBucketEntry::isBad() const
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{
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if (isGood())
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return false;
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return failed_queries > 2 || questionable_pings > 2;
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}
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void KBucketEntry::hasResponded()
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{
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last_responded = bt::GetCurrentTime();
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failed_queries = 0; // reset failed queries
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questionable_pings = 0;
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}
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//////////////////////////////////////////////////////////
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KBucket::KBucket(Uint32 idx,RPCServer* srv,Node* node)
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: idx(idx),srv(srv),node(node)
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{
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last_modified = bt::GetCurrentTime();
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refresh_task = 0;
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}
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KBucket::~KBucket()
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{}
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void KBucket::insert(const KBucketEntry & entry)
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{
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TQValueList<KBucketEntry>::iterator i = entries.find(entry);
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// If in the list, move it to the end
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if (i != entries.end())
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{
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KBucketEntry & e = *i;
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e.hasResponded();
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last_modified = bt::GetCurrentTime();
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entries.remove(i);
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entries.append(entry);
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return;
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}
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// insert if not already in the list and we still have room
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if (i == entries.end() && entries.count() < dht::K)
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{
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entries.append(entry);
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last_modified = bt::GetCurrentTime();
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}
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else if (!replaceBadEntry(entry))
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{
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// ping questionable nodes when replacing a bad one fails
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pingQuestionable(entry);
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}
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}
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void KBucket::onResponse(RPCCall* c,MsgBase* rsp)
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{
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last_modified = bt::GetCurrentTime();
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if (!pending_entries_busy_pinging.contains(c))
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return;
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KBucketEntry entry = pending_entries_busy_pinging[c];
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pending_entries_busy_pinging.erase(c); // call is done so erase it
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// we have a response so try to find the next bad or questionable node
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// if we do not have room see if we can get rid of some bad peers
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if (!replaceBadEntry(entry)) // if no bad peers ping a questionable one
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pingQuestionable(entry);
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}
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void KBucket::onTimeout(RPCCall* c)
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{
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if (!pending_entries_busy_pinging.contains(c))
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return;
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KBucketEntry entry = pending_entries_busy_pinging[c];
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// replace the entry which timed out
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TQValueList<KBucketEntry>::iterator i;
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for (i = entries.begin();i != entries.end();i++)
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{
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KBucketEntry & e = *i;
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if (e.getAddress() == c->getRequest()->getOrigin())
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{
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last_modified = bt::GetCurrentTime();
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entries.remove(i);
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entries.append(entry);
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break;
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}
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}
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pending_entries_busy_pinging.erase(c); // call is done so erase it
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// see if we can do another pending entry
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if (pending_entries_busy_pinging.count() < 2 && pending_entries.count() > 0)
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{
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KBucketEntry pe = pending_entries.front();
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pending_entries.pop_front();
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if (!replaceBadEntry(pe)) // if no bad peers ping a questionable one
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pingQuestionable(pe);
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}
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}
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void KBucket::pingQuestionable(const KBucketEntry & replacement_entry)
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{
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if (pending_entries_busy_pinging.count() >= 2)
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{
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pending_entries.append(replacement_entry); // lets not have to many pending_entries calls going on
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return;
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}
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TQValueList<KBucketEntry>::iterator i;
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// we haven't found any bad ones so try the questionable ones
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for (i = entries.begin();i != entries.end();i++)
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{
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KBucketEntry & e = *i;
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if (e.isQuestionable())
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{
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Out(SYS_DHT|LOG_DEBUG) << "Pinging questionable node : " << e.getAddress().toString() << endl;
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PingReq* p = new PingReq(node->getOurID());
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p->setDestination(e.getAddress());
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RPCCall* c = srv->doCall(p);
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if (c)
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{
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e.onPingQuestionable();
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c->addListener(this);
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// add the pending entry
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pending_entries_busy_pinging.insert(c,replacement_entry);
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return;
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}
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}
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}
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}
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bool KBucket::replaceBadEntry(const KBucketEntry & entry)
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{
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TQValueList<KBucketEntry>::iterator i;
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for (i = entries.begin();i != entries.end();i++)
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{
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KBucketEntry & e = *i;
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if (e.isBad())
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{
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// bad one get rid of it
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last_modified = bt::GetCurrentTime();
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entries.remove(i);
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entries.append(entry);
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return true;
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}
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}
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return false;
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}
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bool KBucket::contains(const KBucketEntry & entry) const
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{
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return entries.contains(entry);
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}
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void KBucket::findKClosestNodes(KClosestNodesSearch & kns)
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{
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TQValueList<KBucketEntry>::iterator i = entries.begin();
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while (i != entries.end())
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{
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kns.tryInsert(*i);
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i++;
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}
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}
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bool KBucket::onTimeout(const KInetSocketAddress & addr)
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{
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TQValueList<KBucketEntry>::iterator i;
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for (i = entries.begin();i != entries.end();i++)
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{
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KBucketEntry & e = *i;
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if (e.getAddress() == addr)
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{
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e.requestTimeout();
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return true;
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}
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}
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return false;
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}
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bool KBucket::needsToBeRefreshed() const
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{
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bt::TimeStamp now = bt::GetCurrentTime();
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if (last_modified > now)
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{
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last_modified = now;
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return false;
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}
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return !refresh_task && entries.count() > 0 && (now - last_modified > BUCKET_REFRESH_INTERVAL);
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}
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void KBucket::updateRefreshTimer()
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{
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last_modified = bt::GetCurrentTime();
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}
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void KBucket::save(bt::File & fptr)
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{
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BucketHeader hdr;
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hdr.magic = BUCKET_MAGIC_NUMBER;
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hdr.index = idx;
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hdr.num_entries = entries.count();
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fptr.write(&hdr,sizeof(BucketHeader));
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TQValueList<KBucketEntry>::iterator i;
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for (i = entries.begin();i != entries.end();i++)
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{
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KBucketEntry & e = *i;
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const KIpAddress & ip = e.getAddress().ipAddress();
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Uint8 tmp[26];
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bt::WriteUint32(tmp,0,ip.IPv4Addr());
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bt::WriteUint16(tmp,4,e.getAddress().port());
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memcpy(tmp+6,e.getID().getData(),20);
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fptr.write(tmp,26);
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}
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}
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void KBucket::load(bt::File & fptr,const BucketHeader & hdr)
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{
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if (hdr.num_entries > K)
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return;
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for (Uint32 i = 0;i < hdr.num_entries;i++)
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{
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Uint8 tmp[26];
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if (fptr.read(tmp,26) != 26)
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return;
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entries.append(KBucketEntry(
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KInetSocketAddress(
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KIpAddress(bt::ReadUint32(tmp,0)),
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bt::ReadUint16(tmp,4)),
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dht::Key(tmp+6)));
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}
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}
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void KBucket::onFinished(Task* t)
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{
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if (t == refresh_task)
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refresh_task = 0;
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}
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void KBucket::setRefreshTask(Task* t)
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{
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refresh_task = t;
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if (refresh_task)
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{
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connect(refresh_task,TQT_SIGNAL(finished( Task* )),
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this,TQT_SLOT(onFinished( Task* )));
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}
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}
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}
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#include "kbucket.moc"
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