Merge branch 'dns-seed' of https://github.com/jgarzik/bitcoin
[novacoin.git] / net.cpp
1 // Copyright (c) 2009-2010 Satoshi Nakamoto
2 // Distributed under the MIT/X11 software license, see the accompanying
3 // file license.txt or http://www.opensource.org/licenses/mit-license.php.
4
5 #include "headers.h"
6
7 static const int MAX_OUTBOUND_CONNECTIONS = 8;
8
9 void ThreadMessageHandler2(void* parg);
10 void ThreadSocketHandler2(void* parg);
11 void ThreadOpenConnections2(void* parg);
12 bool OpenNetworkConnection(const CAddress& addrConnect);
13
14
15
16
17
18 //
19 // Global state variables
20 //
21 bool fClient = false;
22 uint64 nLocalServices = (fClient ? 0 : NODE_NETWORK);
23 CAddress addrLocalHost(0, 0, nLocalServices);
24 CNode* pnodeLocalHost = NULL;
25 uint64 nLocalHostNonce = 0;
26 array<int, 10> vnThreadsRunning;
27 SOCKET hListenSocket = INVALID_SOCKET;
28
29 vector<CNode*> vNodes;
30 CCriticalSection cs_vNodes;
31 map<vector<unsigned char>, CAddress> mapAddresses;
32 CCriticalSection cs_mapAddresses;
33 map<CInv, CDataStream> mapRelay;
34 deque<pair<int64, CInv> > vRelayExpiration;
35 CCriticalSection cs_mapRelay;
36 map<CInv, int64> mapAlreadyAskedFor;
37
38 // Settings
39 int fUseProxy = false;
40 CAddress addrProxy("127.0.0.1:9050");
41
42
43
44
45
46 void CNode::PushGetBlocks(CBlockIndex* pindexBegin, uint256 hashEnd)
47 {
48     // Filter out duplicate requests
49     if (pindexBegin == pindexLastGetBlocksBegin && hashEnd == hashLastGetBlocksEnd)
50         return;
51     pindexLastGetBlocksBegin = pindexBegin;
52     hashLastGetBlocksEnd = hashEnd;
53
54     PushMessage("getblocks", CBlockLocator(pindexBegin), hashEnd);
55 }
56
57
58
59
60
61 bool ConnectSocket(const CAddress& addrConnect, SOCKET& hSocketRet)
62 {
63     hSocketRet = INVALID_SOCKET;
64
65     SOCKET hSocket = socket(AF_INET, SOCK_STREAM, IPPROTO_TCP);
66     if (hSocket == INVALID_SOCKET)
67         return false;
68 #ifdef BSD
69     int set = 1;
70     setsockopt(hSocket, SOL_SOCKET, SO_NOSIGPIPE, (void*)&set, sizeof(int));
71 #endif
72
73     bool fRoutable = !(addrConnect.GetByte(3) == 10 || (addrConnect.GetByte(3) == 192 && addrConnect.GetByte(2) == 168));
74     bool fProxy = (fUseProxy && fRoutable);
75     struct sockaddr_in sockaddr = (fProxy ? addrProxy.GetSockAddr() : addrConnect.GetSockAddr());
76
77     if (connect(hSocket, (struct sockaddr*)&sockaddr, sizeof(sockaddr)) == SOCKET_ERROR)
78     {
79         closesocket(hSocket);
80         return false;
81     }
82
83     if (fProxy)
84     {
85         printf("proxy connecting %s\n", addrConnect.ToStringLog().c_str());
86         char pszSocks4IP[] = "\4\1\0\0\0\0\0\0user";
87         memcpy(pszSocks4IP + 2, &addrConnect.port, 2);
88         memcpy(pszSocks4IP + 4, &addrConnect.ip, 4);
89         char* pszSocks4 = pszSocks4IP;
90         int nSize = sizeof(pszSocks4IP);
91
92         int ret = send(hSocket, pszSocks4, nSize, MSG_NOSIGNAL);
93         if (ret != nSize)
94         {
95             closesocket(hSocket);
96             return error("Error sending to proxy");
97         }
98         char pchRet[8];
99         if (recv(hSocket, pchRet, 8, 0) != 8)
100         {
101             closesocket(hSocket);
102             return error("Error reading proxy response");
103         }
104         if (pchRet[1] != 0x5a)
105         {
106             closesocket(hSocket);
107             if (pchRet[1] != 0x5b)
108                 printf("ERROR: Proxy returned error %d\n", pchRet[1]);
109             return false;
110         }
111         printf("proxy connected %s\n", addrConnect.ToStringLog().c_str());
112     }
113
114     hSocketRet = hSocket;
115     return true;
116 }
117
118
119
120 bool GetMyExternalIP2(const CAddress& addrConnect, const char* pszGet, const char* pszKeyword, unsigned int& ipRet)
121 {
122     SOCKET hSocket;
123     if (!ConnectSocket(addrConnect, hSocket))
124         return error("GetMyExternalIP() : connection to %s failed", addrConnect.ToString().c_str());
125
126     send(hSocket, pszGet, strlen(pszGet), MSG_NOSIGNAL);
127
128     string strLine;
129     while (RecvLine(hSocket, strLine))
130     {
131         if (strLine.empty()) // HTTP response is separated from headers by blank line
132         {
133             loop
134             {
135                 if (!RecvLine(hSocket, strLine))
136                 {
137                     closesocket(hSocket);
138                     return false;
139                 }
140                 if (pszKeyword == NULL)
141                     break;
142                 if (strLine.find(pszKeyword) != -1)
143                 {
144                     strLine = strLine.substr(strLine.find(pszKeyword) + strlen(pszKeyword));
145                     break;
146                 }
147             }
148             closesocket(hSocket);
149             if (strLine.find("<") != -1)
150                 strLine = strLine.substr(0, strLine.find("<"));
151             strLine = strLine.substr(strspn(strLine.c_str(), " \t\n\r"));
152             while (strLine.size() > 0 && isspace(strLine[strLine.size()-1]))
153                 strLine.resize(strLine.size()-1);
154             CAddress addr(strLine.c_str());
155             printf("GetMyExternalIP() received [%s] %s\n", strLine.c_str(), addr.ToString().c_str());
156             if (addr.ip == 0 || addr.ip == INADDR_NONE || !addr.IsRoutable())
157                 return false;
158             ipRet = addr.ip;
159             return true;
160         }
161     }
162     closesocket(hSocket);
163     return error("GetMyExternalIP() : connection closed");
164 }
165
166 // We now get our external IP from the IRC server first and only use this as a backup
167 bool GetMyExternalIP(unsigned int& ipRet)
168 {
169     CAddress addrConnect;
170     const char* pszGet;
171     const char* pszKeyword;
172
173     if (fUseProxy)
174         return false;
175
176     for (int nLookup = 0; nLookup <= 1; nLookup++)
177     for (int nHost = 1; nHost <= 2; nHost++)
178     {
179         // We should be phasing out our use of sites like these.  If we need
180         // replacements, we should ask for volunteers to put this simple
181         // php file on their webserver that prints the client IP:
182         //  <?php echo $_SERVER["REMOTE_ADDR"]; ?>
183         if (nHost == 1)
184         {
185             addrConnect = CAddress("91.198.22.70:80"); // checkip.dyndns.org
186
187             if (nLookup == 1)
188             {
189                 struct hostent* phostent = gethostbyname("checkip.dyndns.org");
190                 if (phostent && phostent->h_addr_list && phostent->h_addr_list[0])
191                     addrConnect = CAddress(*(u_long*)phostent->h_addr_list[0], htons(80));
192             }
193
194             pszGet = "GET / HTTP/1.1\r\n"
195                      "Host: checkip.dyndns.org\r\n"
196                      "User-Agent: Mozilla/4.0 (compatible; MSIE 7.0; Windows NT 5.1)\r\n"
197                      "Connection: close\r\n"
198                      "\r\n";
199
200             pszKeyword = "Address:";
201         }
202         else if (nHost == 2)
203         {
204             addrConnect = CAddress("74.208.43.192:80"); // www.showmyip.com
205
206             if (nLookup == 1)
207             {
208                 struct hostent* phostent = gethostbyname("www.showmyip.com");
209                 if (phostent && phostent->h_addr_list && phostent->h_addr_list[0])
210                     addrConnect = CAddress(*(u_long*)phostent->h_addr_list[0], htons(80));
211             }
212
213             pszGet = "GET /simple/ HTTP/1.1\r\n"
214                      "Host: www.showmyip.com\r\n"
215                      "User-Agent: Mozilla/4.0 (compatible; MSIE 7.0; Windows NT 5.1)\r\n"
216                      "Connection: close\r\n"
217                      "\r\n";
218
219             pszKeyword = NULL; // Returns just IP address
220         }
221
222         if (GetMyExternalIP2(addrConnect, pszGet, pszKeyword, ipRet))
223             return true;
224     }
225
226     return false;
227 }
228
229 void ThreadGetMyExternalIP(void* parg)
230 {
231     // Wait for IRC to get it first
232     if (!GetBoolArg("-noirc"))
233     {
234         for (int i = 0; i < 2 * 60; i++)
235         {
236             Sleep(1000);
237             if (fGotExternalIP || fShutdown)
238                 return;
239         }
240     }
241
242     // Fallback in case IRC fails to get it
243     if (GetMyExternalIP(addrLocalHost.ip))
244     {
245         printf("GetMyExternalIP() returned %s\n", addrLocalHost.ToStringIP().c_str());
246         if (addrLocalHost.IsRoutable())
247         {
248             // If we already connected to a few before we had our IP, go back and addr them.
249             // setAddrKnown automatically filters any duplicate sends.
250             CAddress addr(addrLocalHost);
251             addr.nTime = GetAdjustedTime();
252             CRITICAL_BLOCK(cs_vNodes)
253                 foreach(CNode* pnode, vNodes)
254                     pnode->PushAddress(addr);
255         }
256     }
257 }
258
259
260
261
262
263 bool AddAddress(CAddress addr, int64 nTimePenalty)
264 {
265     if (!addr.IsRoutable())
266         return false;
267     if (addr.ip == addrLocalHost.ip)
268         return false;
269     addr.nTime = max((int64)0, (int64)addr.nTime - nTimePenalty);
270     CRITICAL_BLOCK(cs_mapAddresses)
271     {
272         map<vector<unsigned char>, CAddress>::iterator it = mapAddresses.find(addr.GetKey());
273         if (it == mapAddresses.end())
274         {
275             // New address
276             printf("AddAddress(%s)\n", addr.ToStringLog().c_str());
277             mapAddresses.insert(make_pair(addr.GetKey(), addr));
278             CAddrDB().WriteAddress(addr);
279             return true;
280         }
281         else
282         {
283             bool fUpdated = false;
284             CAddress& addrFound = (*it).second;
285             if ((addrFound.nServices | addr.nServices) != addrFound.nServices)
286             {
287                 // Services have been added
288                 addrFound.nServices |= addr.nServices;
289                 fUpdated = true;
290             }
291             bool fCurrentlyOnline = (GetAdjustedTime() - addr.nTime < 24 * 60 * 60);
292             int64 nUpdateInterval = (fCurrentlyOnline ? 60 * 60 : 24 * 60 * 60);
293             if (addrFound.nTime < addr.nTime - nUpdateInterval)
294             {
295                 // Periodically update most recently seen time
296                 addrFound.nTime = addr.nTime;
297                 fUpdated = true;
298             }
299             if (fUpdated)
300                 CAddrDB().WriteAddress(addrFound);
301         }
302     }
303     return false;
304 }
305
306 void AddressCurrentlyConnected(const CAddress& addr)
307 {
308     CRITICAL_BLOCK(cs_mapAddresses)
309     {
310         // Only if it's been published already
311         map<vector<unsigned char>, CAddress>::iterator it = mapAddresses.find(addr.GetKey());
312         if (it != mapAddresses.end())
313         {
314             CAddress& addrFound = (*it).second;
315             int64 nUpdateInterval = 20 * 60;
316             if (addrFound.nTime < GetAdjustedTime() - nUpdateInterval)
317             {
318                 // Periodically update most recently seen time
319                 addrFound.nTime = GetAdjustedTime();
320                 CAddrDB addrdb;
321                 addrdb.WriteAddress(addrFound);
322             }
323         }
324     }
325 }
326
327
328
329
330
331 void AbandonRequests(void (*fn)(void*, CDataStream&), void* param1)
332 {
333     // If the dialog might get closed before the reply comes back,
334     // call this in the destructor so it doesn't get called after it's deleted.
335     CRITICAL_BLOCK(cs_vNodes)
336     {
337         foreach(CNode* pnode, vNodes)
338         {
339             CRITICAL_BLOCK(pnode->cs_mapRequests)
340             {
341                 for (map<uint256, CRequestTracker>::iterator mi = pnode->mapRequests.begin(); mi != pnode->mapRequests.end();)
342                 {
343                     CRequestTracker& tracker = (*mi).second;
344                     if (tracker.fn == fn && tracker.param1 == param1)
345                         pnode->mapRequests.erase(mi++);
346                     else
347                         mi++;
348                 }
349             }
350         }
351     }
352 }
353
354
355
356
357
358
359
360 //
361 // Subscription methods for the broadcast and subscription system.
362 // Channel numbers are message numbers, i.e. MSG_TABLE and MSG_PRODUCT.
363 //
364 // The subscription system uses a meet-in-the-middle strategy.
365 // With 100,000 nodes, if senders broadcast to 1000 random nodes and receivers
366 // subscribe to 1000 random nodes, 99.995% (1 - 0.99^1000) of messages will get through.
367 //
368
369 bool AnySubscribed(unsigned int nChannel)
370 {
371     if (pnodeLocalHost->IsSubscribed(nChannel))
372         return true;
373     CRITICAL_BLOCK(cs_vNodes)
374         foreach(CNode* pnode, vNodes)
375             if (pnode->IsSubscribed(nChannel))
376                 return true;
377     return false;
378 }
379
380 bool CNode::IsSubscribed(unsigned int nChannel)
381 {
382     if (nChannel >= vfSubscribe.size())
383         return false;
384     return vfSubscribe[nChannel];
385 }
386
387 void CNode::Subscribe(unsigned int nChannel, unsigned int nHops)
388 {
389     if (nChannel >= vfSubscribe.size())
390         return;
391
392     if (!AnySubscribed(nChannel))
393     {
394         // Relay subscribe
395         CRITICAL_BLOCK(cs_vNodes)
396             foreach(CNode* pnode, vNodes)
397                 if (pnode != this)
398                     pnode->PushMessage("subscribe", nChannel, nHops);
399     }
400
401     vfSubscribe[nChannel] = true;
402 }
403
404 void CNode::CancelSubscribe(unsigned int nChannel)
405 {
406     if (nChannel >= vfSubscribe.size())
407         return;
408
409     // Prevent from relaying cancel if wasn't subscribed
410     if (!vfSubscribe[nChannel])
411         return;
412     vfSubscribe[nChannel] = false;
413
414     if (!AnySubscribed(nChannel))
415     {
416         // Relay subscription cancel
417         CRITICAL_BLOCK(cs_vNodes)
418             foreach(CNode* pnode, vNodes)
419                 if (pnode != this)
420                     pnode->PushMessage("sub-cancel", nChannel);
421     }
422 }
423
424
425
426
427
428
429
430
431
432 CNode* FindNode(unsigned int ip)
433 {
434     CRITICAL_BLOCK(cs_vNodes)
435     {
436         foreach(CNode* pnode, vNodes)
437             if (pnode->addr.ip == ip)
438                 return (pnode);
439     }
440     return NULL;
441 }
442
443 CNode* FindNode(CAddress addr)
444 {
445     CRITICAL_BLOCK(cs_vNodes)
446     {
447         foreach(CNode* pnode, vNodes)
448             if (pnode->addr == addr)
449                 return (pnode);
450     }
451     return NULL;
452 }
453
454 CNode* ConnectNode(CAddress addrConnect, int64 nTimeout)
455 {
456     if (addrConnect.ip == addrLocalHost.ip)
457         return NULL;
458
459     // Look for an existing connection
460     CNode* pnode = FindNode(addrConnect.ip);
461     if (pnode)
462     {
463         if (nTimeout != 0)
464             pnode->AddRef(nTimeout);
465         else
466             pnode->AddRef();
467         return pnode;
468     }
469
470     /// debug print
471     printf("trying connection %s lastseen=%.1fhrs lasttry=%.1fhrs\n",
472         addrConnect.ToStringLog().c_str(),
473         (double)(addrConnect.nTime - GetAdjustedTime())/3600.0,
474         (double)(addrConnect.nLastTry - GetAdjustedTime())/3600.0);
475
476     CRITICAL_BLOCK(cs_mapAddresses)
477         mapAddresses[addrConnect.GetKey()].nLastTry = GetAdjustedTime();
478
479     // Connect
480     SOCKET hSocket;
481     if (ConnectSocket(addrConnect, hSocket))
482     {
483         /// debug print
484         printf("connected %s\n", addrConnect.ToStringLog().c_str());
485
486         // Set to nonblocking
487 #ifdef __WXMSW__
488         u_long nOne = 1;
489         if (ioctlsocket(hSocket, FIONBIO, &nOne) == SOCKET_ERROR)
490             printf("ConnectSocket() : ioctlsocket nonblocking setting failed, error %d\n", WSAGetLastError());
491 #else
492         if (fcntl(hSocket, F_SETFL, O_NONBLOCK) == SOCKET_ERROR)
493             printf("ConnectSocket() : fcntl nonblocking setting failed, error %d\n", errno);
494 #endif
495
496         // Add node
497         CNode* pnode = new CNode(hSocket, addrConnect, false);
498         if (nTimeout != 0)
499             pnode->AddRef(nTimeout);
500         else
501             pnode->AddRef();
502         CRITICAL_BLOCK(cs_vNodes)
503             vNodes.push_back(pnode);
504
505         pnode->nTimeConnected = GetTime();
506         return pnode;
507     }
508     else
509     {
510         return NULL;
511     }
512 }
513
514 void CNode::CloseSocketDisconnect()
515 {
516     fDisconnect = true;
517     if (hSocket != INVALID_SOCKET)
518     {
519         if (fDebug)
520             printf("%s ", DateTimeStrFormat("%x %H:%M:%S", GetTime()).c_str());
521         printf("disconnecting node %s\n", addr.ToStringLog().c_str());
522         closesocket(hSocket);
523         hSocket = INVALID_SOCKET;
524     }
525 }
526
527 void CNode::Cleanup()
528 {
529     // All of a nodes broadcasts and subscriptions are automatically torn down
530     // when it goes down, so a node has to stay up to keep its broadcast going.
531
532     // Cancel subscriptions
533     for (unsigned int nChannel = 0; nChannel < vfSubscribe.size(); nChannel++)
534         if (vfSubscribe[nChannel])
535             CancelSubscribe(nChannel);
536 }
537
538
539
540
541
542
543
544
545
546
547
548
549
550 void ThreadSocketHandler(void* parg)
551 {
552     IMPLEMENT_RANDOMIZE_STACK(ThreadSocketHandler(parg));
553     try
554     {
555         vnThreadsRunning[0]++;
556         ThreadSocketHandler2(parg);
557         vnThreadsRunning[0]--;
558     }
559     catch (std::exception& e) {
560         vnThreadsRunning[0]--;
561         PrintException(&e, "ThreadSocketHandler()");
562     } catch (...) {
563         vnThreadsRunning[0]--;
564         throw; // support pthread_cancel()
565     }
566     printf("ThreadSocketHandler exiting\n");
567 }
568
569 void ThreadSocketHandler2(void* parg)
570 {
571     printf("ThreadSocketHandler started\n");
572     list<CNode*> vNodesDisconnected;
573     int nPrevNodeCount = 0;
574
575     loop
576     {
577         //
578         // Disconnect nodes
579         //
580         CRITICAL_BLOCK(cs_vNodes)
581         {
582             // Disconnect unused nodes
583             vector<CNode*> vNodesCopy = vNodes;
584             foreach(CNode* pnode, vNodesCopy)
585             {
586                 if (pnode->fDisconnect ||
587                     (pnode->GetRefCount() <= 0 && pnode->vRecv.empty() && pnode->vSend.empty()))
588                 {
589                     // remove from vNodes
590                     vNodes.erase(remove(vNodes.begin(), vNodes.end(), pnode), vNodes.end());
591
592                     // close socket and cleanup
593                     pnode->CloseSocketDisconnect();
594                     pnode->Cleanup();
595
596                     // hold in disconnected pool until all refs are released
597                     pnode->nReleaseTime = max(pnode->nReleaseTime, GetTime() + 15 * 60);
598                     if (pnode->fNetworkNode || pnode->fInbound)
599                         pnode->Release();
600                     vNodesDisconnected.push_back(pnode);
601                 }
602             }
603
604             // Delete disconnected nodes
605             list<CNode*> vNodesDisconnectedCopy = vNodesDisconnected;
606             foreach(CNode* pnode, vNodesDisconnectedCopy)
607             {
608                 // wait until threads are done using it
609                 if (pnode->GetRefCount() <= 0)
610                 {
611                     bool fDelete = false;
612                     TRY_CRITICAL_BLOCK(pnode->cs_vSend)
613                      TRY_CRITICAL_BLOCK(pnode->cs_vRecv)
614                       TRY_CRITICAL_BLOCK(pnode->cs_mapRequests)
615                        TRY_CRITICAL_BLOCK(pnode->cs_inventory)
616                         fDelete = true;
617                     if (fDelete)
618                     {
619                         vNodesDisconnected.remove(pnode);
620                         delete pnode;
621                     }
622                 }
623             }
624         }
625         if (vNodes.size() != nPrevNodeCount)
626         {
627             nPrevNodeCount = vNodes.size();
628             MainFrameRepaint();
629         }
630
631
632         //
633         // Find which sockets have data to receive
634         //
635         struct timeval timeout;
636         timeout.tv_sec  = 0;
637         timeout.tv_usec = 50000; // frequency to poll pnode->vSend
638
639         fd_set fdsetRecv;
640         fd_set fdsetSend;
641         fd_set fdsetError;
642         FD_ZERO(&fdsetRecv);
643         FD_ZERO(&fdsetSend);
644         FD_ZERO(&fdsetError);
645         SOCKET hSocketMax = 0;
646
647         if(hListenSocket != INVALID_SOCKET)
648             FD_SET(hListenSocket, &fdsetRecv);
649         hSocketMax = max(hSocketMax, hListenSocket);
650         CRITICAL_BLOCK(cs_vNodes)
651         {
652             foreach(CNode* pnode, vNodes)
653             {
654                 if (pnode->hSocket == INVALID_SOCKET || pnode->hSocket < 0)
655                     continue;
656                 FD_SET(pnode->hSocket, &fdsetRecv);
657                 FD_SET(pnode->hSocket, &fdsetError);
658                 hSocketMax = max(hSocketMax, pnode->hSocket);
659                 TRY_CRITICAL_BLOCK(pnode->cs_vSend)
660                     if (!pnode->vSend.empty())
661                         FD_SET(pnode->hSocket, &fdsetSend);
662             }
663         }
664
665         vnThreadsRunning[0]--;
666         int nSelect = select(hSocketMax + 1, &fdsetRecv, &fdsetSend, &fdsetError, &timeout);
667         vnThreadsRunning[0]++;
668         if (fShutdown)
669             return;
670         if (nSelect == SOCKET_ERROR)
671         {
672             int nErr = WSAGetLastError();
673             printf("socket select error %d\n", nErr);
674             for (int i = 0; i <= hSocketMax; i++)
675                 FD_SET(i, &fdsetRecv);
676             FD_ZERO(&fdsetSend);
677             FD_ZERO(&fdsetError);
678             Sleep(timeout.tv_usec/1000);
679         }
680
681
682         //
683         // Accept new connections
684         //
685         if (hListenSocket != INVALID_SOCKET && FD_ISSET(hListenSocket, &fdsetRecv))
686         {
687             struct sockaddr_in sockaddr;
688             socklen_t len = sizeof(sockaddr);
689             SOCKET hSocket = accept(hListenSocket, (struct sockaddr*)&sockaddr, &len);
690             CAddress addr(sockaddr);
691             int nInbound = 0;
692
693             CRITICAL_BLOCK(cs_vNodes)
694                 foreach(CNode* pnode, vNodes)
695                 if (pnode->fInbound)
696                     nInbound++;
697             if (hSocket == INVALID_SOCKET)
698             {
699                 if (WSAGetLastError() != WSAEWOULDBLOCK)
700                     printf("socket error accept failed: %d\n", WSAGetLastError());
701             }
702             else if (nInbound >= GetArg("-maxconnections", 125) - MAX_OUTBOUND_CONNECTIONS)
703             {
704                 closesocket(hSocket);
705             }
706             else
707             {
708                 printf("accepted connection %s\n", addr.ToStringLog().c_str());
709                 CNode* pnode = new CNode(hSocket, addr, true);
710                 pnode->AddRef();
711                 CRITICAL_BLOCK(cs_vNodes)
712                     vNodes.push_back(pnode);
713             }
714         }
715
716
717         //
718         // Service each socket
719         //
720         vector<CNode*> vNodesCopy;
721         CRITICAL_BLOCK(cs_vNodes)
722         {
723             vNodesCopy = vNodes;
724             foreach(CNode* pnode, vNodesCopy)
725                 pnode->AddRef();
726         }
727         foreach(CNode* pnode, vNodesCopy)
728         {
729             if (fShutdown)
730                 return;
731
732             //
733             // Receive
734             //
735             if (pnode->hSocket == INVALID_SOCKET)
736                 continue;
737             if (FD_ISSET(pnode->hSocket, &fdsetRecv) || FD_ISSET(pnode->hSocket, &fdsetError))
738             {
739                 TRY_CRITICAL_BLOCK(pnode->cs_vRecv)
740                 {
741                     CDataStream& vRecv = pnode->vRecv;
742                     unsigned int nPos = vRecv.size();
743
744                     if (nPos > 1000*GetArg("-maxreceivebuffer", 10*1000)) {
745                         if (!pnode->fDisconnect)
746                             printf("socket recv flood control disconnect (%d bytes)\n", vRecv.size());
747                         pnode->CloseSocketDisconnect();
748                     }
749                     else {
750                         // typical socket buffer is 8K-64K
751                         char pchBuf[0x10000];
752                         int nBytes = recv(pnode->hSocket, pchBuf, sizeof(pchBuf), MSG_DONTWAIT);
753                         if (nBytes > 0)
754                         {
755                             vRecv.resize(nPos + nBytes);
756                             memcpy(&vRecv[nPos], pchBuf, nBytes);
757                             pnode->nLastRecv = GetTime();
758                         }
759                         else if (nBytes == 0)
760                         {
761                             // socket closed gracefully
762                             if (!pnode->fDisconnect)
763                                 printf("socket closed\n");
764                             pnode->CloseSocketDisconnect();
765                         }
766                         else if (nBytes < 0)
767                         {
768                             // error
769                             int nErr = WSAGetLastError();
770                             if (nErr != WSAEWOULDBLOCK && nErr != WSAEMSGSIZE && nErr != WSAEINTR && nErr != WSAEINPROGRESS)
771                             {
772                                 if (!pnode->fDisconnect)
773                                     printf("socket recv error %d\n", nErr);
774                                 pnode->CloseSocketDisconnect();
775                             }
776                         }
777                     }
778                 }
779             }
780
781             //
782             // Send
783             //
784             if (pnode->hSocket == INVALID_SOCKET)
785                 continue;
786             if (FD_ISSET(pnode->hSocket, &fdsetSend))
787             {
788                 TRY_CRITICAL_BLOCK(pnode->cs_vSend)
789                 {
790                     CDataStream& vSend = pnode->vSend;
791                     if (!vSend.empty())
792                     {
793                         int nBytes = send(pnode->hSocket, &vSend[0], vSend.size(), MSG_NOSIGNAL | MSG_DONTWAIT);
794                         if (nBytes > 0)
795                         {
796                             vSend.erase(vSend.begin(), vSend.begin() + nBytes);
797                             pnode->nLastSend = GetTime();
798                         }
799                         else if (nBytes < 0)
800                         {
801                             // error
802                             int nErr = WSAGetLastError();
803                             if (nErr != WSAEWOULDBLOCK && nErr != WSAEMSGSIZE && nErr != WSAEINTR && nErr != WSAEINPROGRESS)
804                             {
805                                 printf("socket send error %d\n", nErr);
806                                 pnode->CloseSocketDisconnect();
807                             }
808                         }
809                         if (vSend.size() > 1000*GetArg("-maxsendbuffer", 10*1000)) {
810                             if (!pnode->fDisconnect)
811                                 printf("socket send flood control disconnect (%d bytes)\n", vSend.size());
812                             pnode->CloseSocketDisconnect();
813                         }
814                     }
815                 }
816             }
817
818             //
819             // Inactivity checking
820             //
821             if (pnode->vSend.empty())
822                 pnode->nLastSendEmpty = GetTime();
823             if (GetTime() - pnode->nTimeConnected > 60)
824             {
825                 if (pnode->nLastRecv == 0 || pnode->nLastSend == 0)
826                 {
827                     printf("socket no message in first 60 seconds, %d %d\n", pnode->nLastRecv != 0, pnode->nLastSend != 0);
828                     pnode->fDisconnect = true;
829                 }
830                 else if (GetTime() - pnode->nLastSend > 90*60 && GetTime() - pnode->nLastSendEmpty > 90*60)
831                 {
832                     printf("socket not sending\n");
833                     pnode->fDisconnect = true;
834                 }
835                 else if (GetTime() - pnode->nLastRecv > 90*60)
836                 {
837                     printf("socket inactivity timeout\n");
838                     pnode->fDisconnect = true;
839                 }
840             }
841         }
842         CRITICAL_BLOCK(cs_vNodes)
843         {
844             foreach(CNode* pnode, vNodesCopy)
845                 pnode->Release();
846         }
847
848         Sleep(10);
849     }
850 }
851
852
853
854
855
856
857
858
859
860 static const char *strDNSSeed[] = {
861     "bitseed.xf2.org",
862 };
863
864 void DNSAddressSeed()
865 {
866     int found = 0;
867
868     printf("Loading addresses from DNS seeds (could take a while)\n");
869
870     for (int seed_idx = 0; seed_idx < ARRAYLEN(strDNSSeed); seed_idx++) {
871         struct hostent* phostent = gethostbyname(strDNSSeed[seed_idx]);
872         if (!phostent)
873             continue;
874
875         for (int host = 0; phostent->h_addr_list[host] != NULL; host++) {
876             CAddress addr(*(unsigned int*)phostent->h_addr_list[host],
877                           GetDefaultPort(), NODE_NETWORK);
878             addr.nTime = 0;
879             if (addr.IsValid() && addr.GetByte(3) != 127) {
880                 AddAddress(addr);
881                 found++;
882             }
883         }
884     }
885
886     printf("%d addresses found from DNS seeds\n", found);
887 }
888
889
890
891 unsigned int pnSeed[] =
892 {
893     0x1ddb1032, 0x6242ce40, 0x52d6a445, 0x2dd7a445, 0x8a53cd47, 0x73263750, 0xda23c257, 0xecd4ed57,
894     0x0a40ec59, 0x75dce160, 0x7df76791, 0x89370bad, 0xa4f214ad, 0x767700ae, 0x638b0418, 0x868a1018,
895     0xcd9f332e, 0x0129653e, 0xcc92dc3e, 0x96671640, 0x56487e40, 0x5b66f440, 0xb1d01f41, 0xf1dc6041,
896     0xc1d12b42, 0x86ba1243, 0x6be4df43, 0x6d4cef43, 0xd18e0644, 0x1ab0b344, 0x6584a345, 0xe7c1a445,
897     0x58cea445, 0xc5daa445, 0x21dda445, 0x3d3b5346, 0x13e55347, 0x1080d24a, 0x8e611e4b, 0x81518e4b,
898     0x6c839e4b, 0xe2ad0a4c, 0xfbbc0a4c, 0x7f5b6e4c, 0x7244224e, 0x1300554e, 0x20690652, 0x5a48b652,
899     0x75c5c752, 0x4335cc54, 0x340fd154, 0x87c07455, 0x087b2b56, 0x8a133a57, 0xac23c257, 0x70374959,
900     0xfb63d45b, 0xb9a1685c, 0x180d765c, 0x674f645d, 0x04d3495e, 0x1de44b5e, 0x4ee8a362, 0x0ded1b63,
901     0xc1b04b6d, 0x8d921581, 0x97b7ea82, 0x1cf83a8e, 0x91490bad, 0x09dc75ae, 0x9a6d79ae, 0xa26d79ae,
902     0x0fd08fae, 0x0f3e3fb2, 0x4f944fb2, 0xcca448b8, 0x3ecd6ab8, 0xa9d5a5bc, 0x8d0119c1, 0x045997d5,
903     0xca019dd9, 0x0d526c4d, 0xabf1ba44, 0x66b1ab55, 0x1165f462, 0x3ed7cbad, 0xa38fae6e, 0x3bd2cbad,
904     0xd36f0547, 0x20df7840, 0x7a337742, 0x549f8e4b, 0x9062365c, 0xd399f562, 0x2b5274a1, 0x8edfa153,
905     0x3bffb347, 0x7074bf58, 0xb74fcbad, 0x5b5a795b, 0x02fa29ce, 0x5a6738d4, 0xe8a1d23e, 0xef98c445,
906     0x4b0f494c, 0xa2bc1e56, 0x7694ad63, 0xa4a800c3, 0x05fda6cd, 0x9f22175e, 0x364a795b, 0x536285d5,
907     0xac44c9d4, 0x0b06254d, 0x150c2fd4, 0x32a50dcc, 0xfd79ce48, 0xf15cfa53, 0x66c01e60, 0x6bc26661,
908     0xc03b47ae, 0x4dda1b81, 0x3285a4c1, 0x883ca96d, 0x35d60a4c, 0xdae09744, 0x2e314d61, 0x84e247cf,
909     0x6c814552, 0x3a1cc658, 0x98d8f382, 0xe584cb5b, 0x15e86057, 0x7b01504e, 0xd852dd48, 0x56382f56,
910     0x0a5df454, 0xa0d18d18, 0x2e89b148, 0xa79c114c, 0xcbdcd054, 0x5523bc43, 0xa9832640, 0x8a066144,
911     0x3894c3bc, 0xab76bf58, 0x6a018ac1, 0xfebf4f43, 0x2f26c658, 0x31102f4e, 0x85e929d5, 0x2a1c175e,
912     0xfc6c2cd1, 0x27b04b6d, 0xdf024650, 0x161748b8, 0x28be6580, 0x57be6580, 0x1cee677a, 0xaa6bb742,
913     0x9a53964b, 0x0a5a2d4d, 0x2434c658, 0x9a494f57, 0x1ebb0e48, 0xf610b85d, 0x077ecf44, 0x085128bc,
914     0x5ba17a18, 0x27ca1b42, 0xf8a00b56, 0xfcd4c257, 0xcf2fc15e, 0xd897e052, 0x4cada04f, 0x2f35f6d5,
915     0x382ce8c9, 0xe523984b, 0x3f946846, 0x60c8be43, 0x41da6257, 0xde0be142, 0xae8a544b, 0xeff0c254,
916     0x1e0f795b, 0xaeb28890, 0xca16acd9, 0x1e47ddd8, 0x8c8c4829, 0xd27dc747, 0xd53b1663, 0x4096b163,
917     0x9c8dd958, 0xcb12f860, 0x9e79305c, 0x40c1a445, 0x4a90c2bc, 0x2c3a464d, 0x2727f23c, 0x30b04b6d,
918     0x59024cb8, 0xa091e6ad, 0x31b04b6d, 0xc29d46a6, 0x63934fb2, 0xd9224dbe, 0x9f5910d8, 0x7f530a6b,
919     0x752e9c95, 0x65453548, 0xa484be46, 0xce5a1b59, 0x710e0718, 0x46a13d18, 0xdaaf5318, 0xc4a8ff53,
920     0x87abaa52, 0xb764cf51, 0xb2025d4a, 0x6d351e41, 0xc035c33e, 0xa432c162, 0x61ef34ae, 0xd16fddbc,
921     0x0870e8c1, 0x3070e8c1, 0x9c71e8c1, 0xa4992363, 0x85a1f663, 0x4184e559, 0x18d96ed8, 0x17b8dbd5,
922     0x60e7cd18, 0xe5ee104c, 0xab17ac62, 0x1e786e1b, 0x5d23b762, 0xf2388fae, 0x88270360, 0x9e5b3d80,
923     0x7da518b2, 0xb5613b45, 0x1ad41f3e, 0xd550854a, 0x8617e9a9, 0x925b229c, 0xf2e92542, 0x47af0544,
924     0x73b5a843, 0xb9b7a0ad, 0x03a748d0, 0x0a6ff862, 0x6694df62, 0x3bfac948, 0x8e098f4f, 0x746916c3,
925     0x02f38e4f, 0x40bb1243, 0x6a54d162, 0x6008414b, 0xa513794c, 0x514aa343, 0x63781747, 0xdbb6795b,
926     0xed065058, 0x42d24b46, 0x1518794c, 0x9b271681, 0x73e4ffad, 0x0654784f, 0x438dc945, 0x641846a6,
927     0x2d1b0944, 0x94b59148, 0x8d369558, 0xa5a97662, 0x8b705b42, 0xce9204ae, 0x8d584450, 0x2df61555,
928     0xeebff943, 0x2e75fb4d, 0x3ef8fc57, 0x9921135e, 0x8e31042e, 0xb5afad43, 0x89ecedd1, 0x9cfcc047,
929     0x8fcd0f4c, 0xbe49f5ad, 0x146a8d45, 0x98669ab8, 0x98d9175e, 0xd1a8e46d, 0x839a3ab8, 0x40a0016c,
930     0x6d27c257, 0x977fffad, 0x7baa5d5d, 0x1213be43, 0xb167e5a9, 0x640fe8ca, 0xbc9ea655, 0x0f820a4c,
931     0x0f097059, 0x69ac957c, 0x366d8453, 0xb1ba2844, 0x8857f081, 0x70b5be63, 0xc545454b, 0xaf36ded1,
932     0xb5a4b052, 0x21f062d1, 0x72ab89b2, 0x74a45318, 0x8312e6bc, 0xb916965f, 0x8aa7c858, 0xfe7effad,
933 };
934
935
936
937 void ThreadOpenConnections(void* parg)
938 {
939     IMPLEMENT_RANDOMIZE_STACK(ThreadOpenConnections(parg));
940     try
941     {
942         vnThreadsRunning[1]++;
943         ThreadOpenConnections2(parg);
944         vnThreadsRunning[1]--;
945     }
946     catch (std::exception& e) {
947         vnThreadsRunning[1]--;
948         PrintException(&e, "ThreadOpenConnections()");
949     } catch (...) {
950         vnThreadsRunning[1]--;
951         PrintException(NULL, "ThreadOpenConnections()");
952     }
953     printf("ThreadOpenConnections exiting\n");
954 }
955
956 void ThreadOpenConnections2(void* parg)
957 {
958     printf("ThreadOpenConnections started\n");
959
960     // Connect to specific addresses
961     if (mapArgs.count("-connect"))
962     {
963         for (int64 nLoop = 0;; nLoop++)
964         {
965             foreach(string strAddr, mapMultiArgs["-connect"])
966             {
967                 CAddress addr(strAddr, NODE_NETWORK);
968                 if (addr.IsValid())
969                     OpenNetworkConnection(addr);
970                 for (int i = 0; i < 10 && i < nLoop; i++)
971                 {
972                     Sleep(500);
973                     if (fShutdown)
974                         return;
975                 }
976             }
977         }
978     }
979
980     // Connect to manually added nodes first
981     if (mapArgs.count("-addnode"))
982     {
983         foreach(string strAddr, mapMultiArgs["-addnode"])
984         {
985             CAddress addr(strAddr, NODE_NETWORK);
986             if (addr.IsValid())
987             {
988                 OpenNetworkConnection(addr);
989                 Sleep(500);
990                 if (fShutdown)
991                     return;
992             }
993         }
994     }
995
996     // Initiate network connections
997     int64 nStart = GetTime();
998     loop
999     {
1000         // Limit outbound connections
1001         vnThreadsRunning[1]--;
1002         Sleep(500);
1003         loop
1004         {
1005             int nOutbound = 0;
1006             CRITICAL_BLOCK(cs_vNodes)
1007                 foreach(CNode* pnode, vNodes)
1008                     if (!pnode->fInbound)
1009                         nOutbound++;
1010             int nMaxOutboundConnections = MAX_OUTBOUND_CONNECTIONS;
1011             nMaxOutboundConnections = min(nMaxOutboundConnections, (int)GetArg("-maxconnections", 125));
1012             if (nOutbound < nMaxOutboundConnections)
1013                 break;
1014             Sleep(2000);
1015             if (fShutdown)
1016                 return;
1017         }
1018         vnThreadsRunning[1]++;
1019         if (fShutdown)
1020             return;
1021
1022         CRITICAL_BLOCK(cs_mapAddresses)
1023         {
1024             // Add seed nodes if IRC isn't working
1025             static bool fSeedUsed;
1026             bool fTOR = (fUseProxy && addrProxy.port == htons(9050));
1027             if (mapAddresses.empty() && (GetTime() - nStart > 60 || fTOR) && !fTestNet)
1028             {
1029                 for (int i = 0; i < ARRAYLEN(pnSeed); i++)
1030                 {
1031                     // It'll only connect to one or two seed nodes because once it connects,
1032                     // it'll get a pile of addresses with newer timestamps.
1033                     CAddress addr;
1034                     addr.ip = pnSeed[i];
1035                     addr.nTime = 0;
1036                     AddAddress(addr);
1037                 }
1038                 fSeedUsed = true;
1039             }
1040
1041             if (fSeedUsed && mapAddresses.size() > ARRAYLEN(pnSeed) + 100)
1042             {
1043                 // Disconnect seed nodes
1044                 set<unsigned int> setSeed(pnSeed, pnSeed + ARRAYLEN(pnSeed));
1045                 static int64 nSeedDisconnected;
1046                 if (nSeedDisconnected == 0)
1047                 {
1048                     nSeedDisconnected = GetTime();
1049                     CRITICAL_BLOCK(cs_vNodes)
1050                         foreach(CNode* pnode, vNodes)
1051                             if (setSeed.count(pnode->addr.ip))
1052                                 pnode->fDisconnect = true;
1053                 }
1054
1055                 // Keep setting timestamps to 0 so they won't reconnect
1056                 if (GetTime() - nSeedDisconnected < 60 * 60)
1057                 {
1058                     foreach(PAIRTYPE(const vector<unsigned char>, CAddress)& item, mapAddresses)
1059                     {
1060                         if (setSeed.count(item.second.ip) && item.second.nTime != 0)
1061                         {
1062                             item.second.nTime = 0;
1063                             CAddrDB().WriteAddress(item.second);
1064                         }
1065                     }
1066                 }
1067             }
1068         }
1069
1070
1071         //
1072         // Choose an address to connect to based on most recently seen
1073         //
1074         CAddress addrConnect;
1075         int64 nBest = INT64_MIN;
1076
1077         // Only connect to one address per a.b.?.? range.
1078         // Do this here so we don't have to critsect vNodes inside mapAddresses critsect.
1079         set<unsigned int> setConnected;
1080         CRITICAL_BLOCK(cs_vNodes)
1081             foreach(CNode* pnode, vNodes)
1082                 setConnected.insert(pnode->addr.ip & 0x0000ffff);
1083
1084         CRITICAL_BLOCK(cs_mapAddresses)
1085         {
1086             foreach(const PAIRTYPE(vector<unsigned char>, CAddress)& item, mapAddresses)
1087             {
1088                 const CAddress& addr = item.second;
1089                 if (!addr.IsIPv4() || !addr.IsValid() || setConnected.count(addr.ip & 0x0000ffff))
1090                     continue;
1091                 int64 nSinceLastSeen = GetAdjustedTime() - addr.nTime;
1092                 int64 nSinceLastTry = GetAdjustedTime() - addr.nLastTry;
1093
1094                 // Randomize the order in a deterministic way, putting the standard port first
1095                 int64 nRandomizer = (uint64)(nStart * 4951 + addr.nLastTry * 9567851 + addr.ip * 7789) % (2 * 60 * 60);
1096                 if (addr.port != GetDefaultPort())
1097                     nRandomizer += 2 * 60 * 60;
1098
1099                 // Last seen  Base retry frequency
1100                 //   <1 hour   10 min
1101                 //    1 hour    1 hour
1102                 //    4 hours   2 hours
1103                 //   24 hours   5 hours
1104                 //   48 hours   7 hours
1105                 //    7 days   13 hours
1106                 //   30 days   27 hours
1107                 //   90 days   46 hours
1108                 //  365 days   93 hours
1109                 int64 nDelay = (int64)(3600.0 * sqrt(fabs((double)nSinceLastSeen) / 3600.0) + nRandomizer);
1110
1111                 // Fast reconnect for one hour after last seen
1112                 if (nSinceLastSeen < 60 * 60)
1113                     nDelay = 10 * 60;
1114
1115                 // Limit retry frequency
1116                 if (nSinceLastTry < nDelay)
1117                     continue;
1118
1119                 // If we have IRC, we'll be notified when they first come online,
1120                 // and again every 24 hours by the refresh broadcast.
1121                 if (nGotIRCAddresses > 0 && vNodes.size() >= 2 && nSinceLastSeen > 24 * 60 * 60)
1122                     continue;
1123
1124                 // Only try the old stuff if we don't have enough connections
1125                 if (vNodes.size() >= 8 && nSinceLastSeen > 24 * 60 * 60)
1126                     continue;
1127
1128                 // If multiple addresses are ready, prioritize by time since
1129                 // last seen and time since last tried.
1130                 int64 nScore = min(nSinceLastTry, (int64)24 * 60 * 60) - nSinceLastSeen - nRandomizer;
1131                 if (nScore > nBest)
1132                 {
1133                     nBest = nScore;
1134                     addrConnect = addr;
1135                 }
1136             }
1137         }
1138
1139         if (addrConnect.IsValid())
1140             OpenNetworkConnection(addrConnect);
1141     }
1142 }
1143
1144 bool OpenNetworkConnection(const CAddress& addrConnect)
1145 {
1146     //
1147     // Initiate outbound network connection
1148     //
1149     if (fShutdown)
1150         return false;
1151     if (addrConnect.ip == addrLocalHost.ip || !addrConnect.IsIPv4() || FindNode(addrConnect.ip))
1152         return false;
1153
1154     vnThreadsRunning[1]--;
1155     CNode* pnode = ConnectNode(addrConnect);
1156     vnThreadsRunning[1]++;
1157     if (fShutdown)
1158         return false;
1159     if (!pnode)
1160         return false;
1161     pnode->fNetworkNode = true;
1162
1163     return true;
1164 }
1165
1166
1167
1168
1169
1170
1171
1172
1173 void ThreadMessageHandler(void* parg)
1174 {
1175     IMPLEMENT_RANDOMIZE_STACK(ThreadMessageHandler(parg));
1176     try
1177     {
1178         vnThreadsRunning[2]++;
1179         ThreadMessageHandler2(parg);
1180         vnThreadsRunning[2]--;
1181     }
1182     catch (std::exception& e) {
1183         vnThreadsRunning[2]--;
1184         PrintException(&e, "ThreadMessageHandler()");
1185     } catch (...) {
1186         vnThreadsRunning[2]--;
1187         PrintException(NULL, "ThreadMessageHandler()");
1188     }
1189     printf("ThreadMessageHandler exiting\n");
1190 }
1191
1192 void ThreadMessageHandler2(void* parg)
1193 {
1194     printf("ThreadMessageHandler started\n");
1195     SetThreadPriority(THREAD_PRIORITY_BELOW_NORMAL);
1196     while (!fShutdown)
1197     {
1198         vector<CNode*> vNodesCopy;
1199         CRITICAL_BLOCK(cs_vNodes)
1200         {
1201             vNodesCopy = vNodes;
1202             foreach(CNode* pnode, vNodesCopy)
1203                 pnode->AddRef();
1204         }
1205
1206         // Poll the connected nodes for messages
1207         CNode* pnodeTrickle = NULL;
1208         if (!vNodesCopy.empty())
1209             pnodeTrickle = vNodesCopy[GetRand(vNodesCopy.size())];
1210         foreach(CNode* pnode, vNodesCopy)
1211         {
1212             // Receive messages
1213             TRY_CRITICAL_BLOCK(pnode->cs_vRecv)
1214                 ProcessMessages(pnode);
1215             if (fShutdown)
1216                 return;
1217
1218             // Send messages
1219             TRY_CRITICAL_BLOCK(pnode->cs_vSend)
1220                 SendMessages(pnode, pnode == pnodeTrickle);
1221             if (fShutdown)
1222                 return;
1223         }
1224
1225         CRITICAL_BLOCK(cs_vNodes)
1226         {
1227             foreach(CNode* pnode, vNodesCopy)
1228                 pnode->Release();
1229         }
1230
1231         // Wait and allow messages to bunch up.
1232         // Reduce vnThreadsRunning so StopNode has permission to exit while
1233         // we're sleeping, but we must always check fShutdown after doing this.
1234         vnThreadsRunning[2]--;
1235         Sleep(100);
1236         if (fRequestShutdown)
1237             Shutdown(NULL);
1238         vnThreadsRunning[2]++;
1239         if (fShutdown)
1240             return;
1241     }
1242 }
1243
1244
1245
1246
1247
1248
1249
1250
1251
1252 bool BindListenPort(string& strError)
1253 {
1254     strError = "";
1255     int nOne = 1;
1256     addrLocalHost.port = GetDefaultPort();
1257
1258 #ifdef __WXMSW__
1259     // Initialize Windows Sockets
1260     WSADATA wsadata;
1261     int ret = WSAStartup(MAKEWORD(2,2), &wsadata);
1262     if (ret != NO_ERROR)
1263     {
1264         strError = strprintf("Error: TCP/IP socket library failed to start (WSAStartup returned error %d)", ret);
1265         printf("%s\n", strError.c_str());
1266         return false;
1267     }
1268 #endif
1269
1270     // Create socket for listening for incoming connections
1271     hListenSocket = socket(AF_INET, SOCK_STREAM, IPPROTO_TCP);
1272     if (hListenSocket == INVALID_SOCKET)
1273     {
1274         strError = strprintf("Error: Couldn't open socket for incoming connections (socket returned error %d)", WSAGetLastError());
1275         printf("%s\n", strError.c_str());
1276         return false;
1277     }
1278
1279 #ifdef BSD
1280     // Different way of disabling SIGPIPE on BSD
1281     setsockopt(hListenSocket, SOL_SOCKET, SO_NOSIGPIPE, (void*)&nOne, sizeof(int));
1282 #endif
1283
1284 #ifndef __WXMSW__
1285     // Allow binding if the port is still in TIME_WAIT state after
1286     // the program was closed and restarted.  Not an issue on windows.
1287     setsockopt(hListenSocket, SOL_SOCKET, SO_REUSEADDR, (void*)&nOne, sizeof(int));
1288 #endif
1289
1290 #ifdef __WXMSW__
1291     // Set to nonblocking, incoming connections will also inherit this
1292     if (ioctlsocket(hListenSocket, FIONBIO, (u_long*)&nOne) == SOCKET_ERROR)
1293 #else
1294     if (fcntl(hListenSocket, F_SETFL, O_NONBLOCK) == SOCKET_ERROR)
1295 #endif
1296     {
1297         strError = strprintf("Error: Couldn't set properties on socket for incoming connections (error %d)", WSAGetLastError());
1298         printf("%s\n", strError.c_str());
1299         return false;
1300     }
1301
1302     // The sockaddr_in structure specifies the address family,
1303     // IP address, and port for the socket that is being bound
1304     struct sockaddr_in sockaddr;
1305     memset(&sockaddr, 0, sizeof(sockaddr));
1306     sockaddr.sin_family = AF_INET;
1307     sockaddr.sin_addr.s_addr = INADDR_ANY; // bind to all IPs on this computer
1308     sockaddr.sin_port = GetDefaultPort();
1309     if (::bind(hListenSocket, (struct sockaddr*)&sockaddr, sizeof(sockaddr)) == SOCKET_ERROR)
1310     {
1311         int nErr = WSAGetLastError();
1312         if (nErr == WSAEADDRINUSE)
1313             strError = strprintf(_("Unable to bind to port %d on this computer.  Bitcoin is probably already running."), ntohs(sockaddr.sin_port));
1314         else
1315             strError = strprintf("Error: Unable to bind to port %d on this computer (bind returned error %d)", ntohs(sockaddr.sin_port), nErr);
1316         printf("%s\n", strError.c_str());
1317         return false;
1318     }
1319     printf("Bound to port %d\n", ntohs(sockaddr.sin_port));
1320
1321     // Listen for incoming connections
1322     if (listen(hListenSocket, SOMAXCONN) == SOCKET_ERROR)
1323     {
1324         strError = strprintf("Error: Listening for incoming connections failed (listen returned error %d)", WSAGetLastError());
1325         printf("%s\n", strError.c_str());
1326         return false;
1327     }
1328
1329     return true;
1330 }
1331
1332 void StartNode(void* parg)
1333 {
1334     if (pnodeLocalHost == NULL)
1335         pnodeLocalHost = new CNode(INVALID_SOCKET, CAddress("127.0.0.1", nLocalServices));
1336
1337 #ifdef __WXMSW__
1338     // Get local host ip
1339     char pszHostName[1000] = "";
1340     if (gethostname(pszHostName, sizeof(pszHostName)) != SOCKET_ERROR)
1341     {
1342         struct hostent* phostent = gethostbyname(pszHostName);
1343         if (phostent)
1344         {
1345             // Take the first IP that isn't loopback 127.x.x.x
1346             for (int i = 0; phostent->h_addr_list[i] != NULL; i++)
1347                 printf("host ip %d: %s\n", i, CAddress(*(unsigned int*)phostent->h_addr_list[i]).ToStringIP().c_str());
1348             for (int i = 0; phostent->h_addr_list[i] != NULL; i++)
1349             {
1350                 CAddress addr(*(unsigned int*)phostent->h_addr_list[i], GetDefaultPort(), nLocalServices);
1351                 if (addr.IsValid() && addr.GetByte(3) != 127)
1352                 {
1353                     addrLocalHost = addr;
1354                     break;
1355                 }
1356             }
1357         }
1358     }
1359 #else
1360     // Get local host ip
1361     struct ifaddrs* myaddrs;
1362     if (getifaddrs(&myaddrs) == 0)
1363     {
1364         for (struct ifaddrs* ifa = myaddrs; ifa != NULL; ifa = ifa->ifa_next)
1365         {
1366             if (ifa->ifa_addr == NULL) continue;
1367             if ((ifa->ifa_flags & IFF_UP) == 0) continue;
1368             if (strcmp(ifa->ifa_name, "lo") == 0) continue;
1369             if (strcmp(ifa->ifa_name, "lo0") == 0) continue;
1370             char pszIP[100];
1371             if (ifa->ifa_addr->sa_family == AF_INET)
1372             {
1373                 struct sockaddr_in* s4 = (struct sockaddr_in*)(ifa->ifa_addr);
1374                 if (inet_ntop(ifa->ifa_addr->sa_family, (void*)&(s4->sin_addr), pszIP, sizeof(pszIP)) != NULL)
1375                     printf("ipv4 %s: %s\n", ifa->ifa_name, pszIP);
1376
1377                 // Take the first IP that isn't loopback 127.x.x.x
1378                 CAddress addr(*(unsigned int*)&s4->sin_addr, GetDefaultPort(), nLocalServices);
1379                 if (addr.IsValid() && addr.GetByte(3) != 127)
1380                 {
1381                     addrLocalHost = addr;
1382                     break;
1383                 }
1384             }
1385             else if (ifa->ifa_addr->sa_family == AF_INET6)
1386             {
1387                 struct sockaddr_in6* s6 = (struct sockaddr_in6*)(ifa->ifa_addr);
1388                 if (inet_ntop(ifa->ifa_addr->sa_family, (void*)&(s6->sin6_addr), pszIP, sizeof(pszIP)) != NULL)
1389                     printf("ipv6 %s: %s\n", ifa->ifa_name, pszIP);
1390             }
1391         }
1392         freeifaddrs(myaddrs);
1393     }
1394 #endif
1395     printf("addrLocalHost = %s\n", addrLocalHost.ToString().c_str());
1396
1397     if (fUseProxy || mapArgs.count("-connect") || fNoListen)
1398     {
1399         // Proxies can't take incoming connections
1400         addrLocalHost.ip = CAddress("0.0.0.0").ip;
1401         printf("addrLocalHost = %s\n", addrLocalHost.ToString().c_str());
1402     }
1403     else
1404     {
1405         CreateThread(ThreadGetMyExternalIP, NULL);
1406     }
1407
1408     //
1409     // Start threads
1410     //
1411
1412     // Get addresses from IRC and advertise ours
1413     if (!CreateThread(ThreadIRCSeed, NULL))
1414         printf("Error: CreateThread(ThreadIRCSeed) failed\n");
1415
1416     // Send and receive from sockets, accept connections
1417     pthread_t hThreadSocketHandler = CreateThread(ThreadSocketHandler, NULL, true);
1418
1419     // Initiate outbound connections
1420     if (!CreateThread(ThreadOpenConnections, NULL))
1421         printf("Error: CreateThread(ThreadOpenConnections) failed\n");
1422
1423     // Process messages
1424     if (!CreateThread(ThreadMessageHandler, NULL))
1425         printf("Error: CreateThread(ThreadMessageHandler) failed\n");
1426
1427     // Generate coins in the background
1428     GenerateBitcoins(fGenerateBitcoins);
1429 }
1430
1431 bool StopNode()
1432 {
1433     printf("StopNode()\n");
1434     fShutdown = true;
1435     nTransactionsUpdated++;
1436     int64 nStart = GetTime();
1437     while (vnThreadsRunning[0] > 0 || vnThreadsRunning[2] > 0 || vnThreadsRunning[3] > 0 || vnThreadsRunning[4] > 0)
1438     {
1439         if (GetTime() - nStart > 20)
1440             break;
1441         Sleep(20);
1442     }
1443     if (vnThreadsRunning[0] > 0) printf("ThreadSocketHandler still running\n");
1444     if (vnThreadsRunning[1] > 0) printf("ThreadOpenConnections still running\n");
1445     if (vnThreadsRunning[2] > 0) printf("ThreadMessageHandler still running\n");
1446     if (vnThreadsRunning[3] > 0) printf("ThreadBitcoinMiner still running\n");
1447     if (vnThreadsRunning[4] > 0) printf("ThreadRPCServer still running\n");
1448     while (vnThreadsRunning[2] > 0 || vnThreadsRunning[4] > 0)
1449         Sleep(20);
1450     Sleep(50);
1451
1452     return true;
1453 }
1454
1455 class CNetCleanup
1456 {
1457 public:
1458     CNetCleanup()
1459     {
1460     }
1461     ~CNetCleanup()
1462     {
1463         // Close sockets
1464         foreach(CNode* pnode, vNodes)
1465             if (pnode->hSocket != INVALID_SOCKET)
1466                 closesocket(pnode->hSocket);
1467         if (hListenSocket != INVALID_SOCKET)
1468             if (closesocket(hListenSocket) == SOCKET_ERROR)
1469                 printf("closesocket(hListenSocket) failed with error %d\n", WSAGetLastError());
1470
1471 #ifdef __WXMSW__
1472         // Shutdown Windows Sockets
1473         WSACleanup();
1474 #endif
1475     }
1476 }
1477 instance_of_cnetcleanup;