Upgrade dependancies and tweak build process.
[novacoin.git] / src / net.cpp
1 // Copyright (c) 2009-2010 Satoshi Nakamoto
2 // Copyright (c) 2011 The Bitcoin developers
3 // Distributed under the MIT/X11 software license, see the accompanying
4 // file license.txt or http://www.opensource.org/licenses/mit-license.php.
5
6 #include "headers.h"
7 #include "irc.h"
8 #include "db.h"
9 #include "net.h"
10 #include "init.h"
11 #include "strlcpy.h"
12
13 #ifdef __WXMSW__
14 #include <string.h>
15 #endif
16
17 #ifdef USE_UPNP
18 #include <miniupnpc/miniwget.h>
19 #include <miniupnpc/miniupnpc.h>
20 #include <miniupnpc/upnpcommands.h>
21 #include <miniupnpc/upnperrors.h>
22 #endif
23
24 using namespace std;
25 using namespace boost;
26
27 static const int MAX_OUTBOUND_CONNECTIONS = 8;
28
29 void ThreadMessageHandler2(void* parg);
30 void ThreadSocketHandler2(void* parg);
31 void ThreadOpenConnections2(void* parg);
32 #ifdef USE_UPNP
33 void ThreadMapPort2(void* parg);
34 #endif
35 bool OpenNetworkConnection(const CAddress& addrConnect);
36
37
38
39
40
41 //
42 // Global state variables
43 //
44 bool fClient = false;
45 bool fAllowDNS = false;
46 uint64 nLocalServices = (fClient ? 0 : NODE_NETWORK);
47 CAddress addrLocalHost("0.0.0.0", 0, false, nLocalServices);
48 CNode* pnodeLocalHost = NULL;
49 uint64 nLocalHostNonce = 0;
50 array<int, 10> vnThreadsRunning;
51 SOCKET hListenSocket = INVALID_SOCKET;
52
53 vector<CNode*> vNodes;
54 CCriticalSection cs_vNodes;
55 map<vector<unsigned char>, CAddress> mapAddresses;
56 CCriticalSection cs_mapAddresses;
57 map<CInv, CDataStream> mapRelay;
58 deque<pair<int64, CInv> > vRelayExpiration;
59 CCriticalSection cs_mapRelay;
60 map<CInv, int64> mapAlreadyAskedFor;
61
62 // Settings
63 int fUseProxy = false;
64 int nConnectTimeout = 5000;
65 CAddress addrProxy("127.0.0.1",9050);
66
67
68
69
70 unsigned short GetListenPort()
71 {
72     return (unsigned short)(GetArg("-port", GetDefaultPort()));
73 }
74
75 void CNode::PushGetBlocks(CBlockIndex* pindexBegin, uint256 hashEnd)
76 {
77     // Filter out duplicate requests
78     if (pindexBegin == pindexLastGetBlocksBegin && hashEnd == hashLastGetBlocksEnd)
79         return;
80     pindexLastGetBlocksBegin = pindexBegin;
81     hashLastGetBlocksEnd = hashEnd;
82
83     PushMessage("getblocks", CBlockLocator(pindexBegin), hashEnd);
84 }
85
86
87
88
89
90 bool ConnectSocket(const CAddress& addrConnect, SOCKET& hSocketRet, int nTimeout)
91 {
92     hSocketRet = INVALID_SOCKET;
93
94     SOCKET hSocket = socket(AF_INET, SOCK_STREAM, IPPROTO_TCP);
95     if (hSocket == INVALID_SOCKET)
96         return false;
97 #ifdef SO_NOSIGPIPE
98     int set = 1;
99     setsockopt(hSocket, SOL_SOCKET, SO_NOSIGPIPE, (void*)&set, sizeof(int));
100 #endif
101
102     bool fProxy = (fUseProxy && addrConnect.IsRoutable());
103     struct sockaddr_in sockaddr = (fProxy ? addrProxy.GetSockAddr() : addrConnect.GetSockAddr());
104
105 #ifdef __WXMSW__
106     u_long fNonblock = 1;
107     if (ioctlsocket(hSocket, FIONBIO, &fNonblock) == SOCKET_ERROR)
108 #else
109     int fFlags = fcntl(hSocket, F_GETFL, 0);
110     if (fcntl(hSocket, F_SETFL, fFlags | O_NONBLOCK) == -1)
111 #endif
112     {
113         closesocket(hSocket);
114         return false;
115     }
116
117
118     if (connect(hSocket, (struct sockaddr*)&sockaddr, sizeof(sockaddr)) == SOCKET_ERROR)
119     {
120         // WSAEINVAL is here because some legacy version of winsock uses it
121         if (WSAGetLastError() == WSAEINPROGRESS || WSAGetLastError() == WSAEWOULDBLOCK || WSAGetLastError() == WSAEINVAL)
122         {
123             struct timeval timeout;
124             timeout.tv_sec  = nTimeout / 1000;
125             timeout.tv_usec = (nTimeout % 1000) * 1000;
126
127             fd_set fdset;
128             FD_ZERO(&fdset);
129             FD_SET(hSocket, &fdset);
130             int nRet = select(hSocket + 1, NULL, &fdset, NULL, &timeout);
131             if (nRet == 0)
132             {
133                 printf("connection timeout\n");
134                 closesocket(hSocket);
135                 return false;
136             }
137             if (nRet == SOCKET_ERROR)
138             {
139                 printf("select() for connection failed: %i\n",WSAGetLastError());
140                 closesocket(hSocket);
141                 return false;
142             }
143             socklen_t nRetSize = sizeof(nRet);
144 #ifdef __WXMSW__
145             if (getsockopt(hSocket, SOL_SOCKET, SO_ERROR, (char*)(&nRet), &nRetSize) == SOCKET_ERROR)
146 #else
147             if (getsockopt(hSocket, SOL_SOCKET, SO_ERROR, &nRet, &nRetSize) == SOCKET_ERROR)
148 #endif
149             {
150                 printf("getsockopt() for connection failed: %i\n",WSAGetLastError());
151                 closesocket(hSocket);
152                 return false;
153             }
154             if (nRet != 0)
155             {
156                 printf("connect() failed after select(): %s\n",strerror(nRet));
157                 closesocket(hSocket);
158                 return false;
159             }
160         }
161 #ifdef __WXMSW__
162         else if (WSAGetLastError() != WSAEISCONN)
163 #else
164         else
165 #endif
166         {
167             printf("connect() failed: %i\n",WSAGetLastError());
168             closesocket(hSocket);
169             return false;
170         }
171     }
172
173     /*
174     this isn't even strictly necessary
175     CNode::ConnectNode immediately turns the socket back to non-blocking
176     but we'll turn it back to blocking just in case
177     */
178 #ifdef __WXMSW__
179     fNonblock = 0;
180     if (ioctlsocket(hSocket, FIONBIO, &fNonblock) == SOCKET_ERROR)
181 #else
182     fFlags = fcntl(hSocket, F_GETFL, 0);
183     if (fcntl(hSocket, F_SETFL, fFlags & !O_NONBLOCK) == SOCKET_ERROR)
184 #endif
185     {
186         closesocket(hSocket);
187         return false;
188     }
189
190     if (fProxy)
191     {
192         printf("proxy connecting %s\n", addrConnect.ToString().c_str());
193         char pszSocks4IP[] = "\4\1\0\0\0\0\0\0user";
194         memcpy(pszSocks4IP + 2, &addrConnect.port, 2);
195         memcpy(pszSocks4IP + 4, &addrConnect.ip, 4);
196         char* pszSocks4 = pszSocks4IP;
197         int nSize = sizeof(pszSocks4IP);
198
199         int ret = send(hSocket, pszSocks4, nSize, MSG_NOSIGNAL);
200         if (ret != nSize)
201         {
202             closesocket(hSocket);
203             return error("Error sending to proxy");
204         }
205         char pchRet[8];
206         if (recv(hSocket, pchRet, 8, 0) != 8)
207         {
208             closesocket(hSocket);
209             return error("Error reading proxy response");
210         }
211         if (pchRet[1] != 0x5a)
212         {
213             closesocket(hSocket);
214             if (pchRet[1] != 0x5b)
215                 printf("ERROR: Proxy returned error %d\n", pchRet[1]);
216             return false;
217         }
218         printf("proxy connected %s\n", addrConnect.ToString().c_str());
219     }
220
221     hSocketRet = hSocket;
222     return true;
223 }
224
225 // portDefault is in host order
226 bool Lookup(const char *pszName, vector<CAddress>& vaddr, int nServices, int nMaxSolutions, bool fAllowLookup, int portDefault, bool fAllowPort)
227 {
228     vaddr.clear();
229     if (pszName[0] == 0)
230         return false;
231     int port = portDefault;
232     char psz[256];
233     char *pszHost = psz;
234     strlcpy(psz, pszName, sizeof(psz));
235     if (fAllowPort)
236     {
237         char* pszColon = strrchr(psz+1,':');
238         char *pszPortEnd = NULL;
239         int portParsed = pszColon ? strtoul(pszColon+1, &pszPortEnd, 10) : 0;
240         if (pszColon && pszPortEnd && pszPortEnd[0] == 0)
241         {
242             if (psz[0] == '[' && pszColon[-1] == ']')
243             {
244                 // Future: enable IPv6 colon-notation inside []
245                 pszHost = psz+1;
246                 pszColon[-1] = 0;
247             }
248             else
249                 pszColon[0] = 0;
250             port = portParsed;
251             if (port < 0 || port > USHRT_MAX)
252                 port = USHRT_MAX;
253         }
254     }
255
256     unsigned int addrIP = inet_addr(pszHost);
257     if (addrIP != INADDR_NONE)
258     {
259         // valid IP address passed
260         vaddr.push_back(CAddress(addrIP, port, nServices));
261         return true;
262     }
263
264     if (!fAllowLookup)
265         return false;
266
267     struct hostent* phostent = gethostbyname(pszHost);
268     if (!phostent)
269         return false;
270
271     if (phostent->h_addrtype != AF_INET)
272         return false;
273
274     char** ppAddr = phostent->h_addr_list;
275     while (*ppAddr != NULL && vaddr.size() != nMaxSolutions)
276     {
277         CAddress addr(((struct in_addr*)ppAddr[0])->s_addr, port, nServices);
278         if (addr.IsValid())
279             vaddr.push_back(addr);
280         ppAddr++;
281     }
282
283     return (vaddr.size() > 0);
284 }
285
286 // portDefault is in host order
287 bool Lookup(const char *pszName, CAddress& addr, int nServices, bool fAllowLookup, int portDefault, bool fAllowPort)
288 {
289     vector<CAddress> vaddr;
290     bool fRet = Lookup(pszName, vaddr, nServices, 1, fAllowLookup, portDefault, fAllowPort);
291     if (fRet)
292         addr = vaddr[0];
293     return fRet;
294 }
295
296 bool GetMyExternalIP2(const CAddress& addrConnect, const char* pszGet, const char* pszKeyword, unsigned int& ipRet)
297 {
298     SOCKET hSocket;
299     if (!ConnectSocket(addrConnect, hSocket))
300         return error("GetMyExternalIP() : connection to %s failed", addrConnect.ToString().c_str());
301
302     send(hSocket, pszGet, strlen(pszGet), MSG_NOSIGNAL);
303
304     string strLine;
305     while (RecvLine(hSocket, strLine))
306     {
307         if (strLine.empty()) // HTTP response is separated from headers by blank line
308         {
309             loop
310             {
311                 if (!RecvLine(hSocket, strLine))
312                 {
313                     closesocket(hSocket);
314                     return false;
315                 }
316                 if (pszKeyword == NULL)
317                     break;
318                 if (strLine.find(pszKeyword) != -1)
319                 {
320                     strLine = strLine.substr(strLine.find(pszKeyword) + strlen(pszKeyword));
321                     break;
322                 }
323             }
324             closesocket(hSocket);
325             if (strLine.find("<") != -1)
326                 strLine = strLine.substr(0, strLine.find("<"));
327             strLine = strLine.substr(strspn(strLine.c_str(), " \t\n\r"));
328             while (strLine.size() > 0 && isspace(strLine[strLine.size()-1]))
329                 strLine.resize(strLine.size()-1);
330             CAddress addr(strLine,0,true);
331             printf("GetMyExternalIP() received [%s] %s\n", strLine.c_str(), addr.ToString().c_str());
332             if (addr.ip == 0 || addr.ip == INADDR_NONE || !addr.IsRoutable())
333                 return false;
334             ipRet = addr.ip;
335             return true;
336         }
337     }
338     closesocket(hSocket);
339     return error("GetMyExternalIP() : connection closed");
340 }
341
342 // We now get our external IP from the IRC server first and only use this as a backup
343 bool GetMyExternalIP(unsigned int& ipRet)
344 {
345     CAddress addrConnect;
346     const char* pszGet;
347     const char* pszKeyword;
348
349     if (fUseProxy)
350         return false;
351
352     for (int nLookup = 0; nLookup <= 1; nLookup++)
353     for (int nHost = 1; nHost <= 2; nHost++)
354     {
355         // We should be phasing out our use of sites like these.  If we need
356         // replacements, we should ask for volunteers to put this simple
357         // php file on their webserver that prints the client IP:
358         //  <?php echo $_SERVER["REMOTE_ADDR"]; ?>
359         if (nHost == 1)
360         {
361             addrConnect = CAddress("91.198.22.70",80); // checkip.dyndns.org
362
363             if (nLookup == 1)
364             {
365                 CAddress addrIP("checkip.dyndns.org", 80, true);
366                 if (addrIP.IsValid())
367                     addrConnect = addrIP;
368             }
369
370             pszGet = "GET / HTTP/1.1\r\n"
371                      "Host: checkip.dyndns.org\r\n"
372                      "User-Agent: Mozilla/4.0 (compatible; MSIE 7.0; Windows NT 5.1)\r\n"
373                      "Connection: close\r\n"
374                      "\r\n";
375
376             pszKeyword = "Address:";
377         }
378         else if (nHost == 2)
379         {
380             addrConnect = CAddress("74.208.43.192", 80); // www.showmyip.com
381
382             if (nLookup == 1)
383             {
384                 CAddress addrIP("www.showmyip.com", 80, true);
385                 if (addrIP.IsValid())
386                     addrConnect = addrIP;
387             }
388
389             pszGet = "GET /simple/ HTTP/1.1\r\n"
390                      "Host: www.showmyip.com\r\n"
391                      "User-Agent: Mozilla/4.0 (compatible; MSIE 7.0; Windows NT 5.1)\r\n"
392                      "Connection: close\r\n"
393                      "\r\n";
394
395             pszKeyword = NULL; // Returns just IP address
396         }
397
398         if (GetMyExternalIP2(addrConnect, pszGet, pszKeyword, ipRet))
399             return true;
400     }
401
402     return false;
403 }
404
405 void ThreadGetMyExternalIP(void* parg)
406 {
407     // Wait for IRC to get it first
408     if (!GetBoolArg("-noirc"))
409     {
410         for (int i = 0; i < 2 * 60; i++)
411         {
412             Sleep(1000);
413             if (fGotExternalIP || fShutdown)
414                 return;
415         }
416     }
417
418     // Fallback in case IRC fails to get it
419     if (GetMyExternalIP(addrLocalHost.ip))
420     {
421         printf("GetMyExternalIP() returned %s\n", addrLocalHost.ToStringIP().c_str());
422         if (addrLocalHost.IsRoutable())
423         {
424             // If we already connected to a few before we had our IP, go back and addr them.
425             // setAddrKnown automatically filters any duplicate sends.
426             CAddress addr(addrLocalHost);
427             addr.nTime = GetAdjustedTime();
428             CRITICAL_BLOCK(cs_vNodes)
429                 BOOST_FOREACH(CNode* pnode, vNodes)
430                     pnode->PushAddress(addr);
431         }
432     }
433 }
434
435
436
437
438
439 bool AddAddress(CAddress addr, int64 nTimePenalty, CAddrDB *pAddrDB)
440 {
441     if (!addr.IsRoutable())
442         return false;
443     if (addr.ip == addrLocalHost.ip)
444         return false;
445     addr.nTime = max((int64)0, (int64)addr.nTime - nTimePenalty);
446     CRITICAL_BLOCK(cs_mapAddresses)
447     {
448         map<vector<unsigned char>, CAddress>::iterator it = mapAddresses.find(addr.GetKey());
449         if (it == mapAddresses.end())
450         {
451             // New address
452             printf("AddAddress(%s)\n", addr.ToString().c_str());
453             mapAddresses.insert(make_pair(addr.GetKey(), addr));
454             if (pAddrDB)
455                 pAddrDB->WriteAddress(addr);
456             else
457                 CAddrDB().WriteAddress(addr);
458             return true;
459         }
460         else
461         {
462             bool fUpdated = false;
463             CAddress& addrFound = (*it).second;
464             if ((addrFound.nServices | addr.nServices) != addrFound.nServices)
465             {
466                 // Services have been added
467                 addrFound.nServices |= addr.nServices;
468                 fUpdated = true;
469             }
470             bool fCurrentlyOnline = (GetAdjustedTime() - addr.nTime < 24 * 60 * 60);
471             int64 nUpdateInterval = (fCurrentlyOnline ? 60 * 60 : 24 * 60 * 60);
472             if (addrFound.nTime < addr.nTime - nUpdateInterval)
473             {
474                 // Periodically update most recently seen time
475                 addrFound.nTime = addr.nTime;
476                 fUpdated = true;
477             }
478             if (fUpdated)
479             {
480                 if (pAddrDB)
481                     pAddrDB->WriteAddress(addrFound);
482                 else
483                     CAddrDB().WriteAddress(addrFound);
484             }
485         }
486     }
487     return false;
488 }
489
490 void AddressCurrentlyConnected(const CAddress& addr)
491 {
492     CRITICAL_BLOCK(cs_mapAddresses)
493     {
494         // Only if it's been published already
495         map<vector<unsigned char>, CAddress>::iterator it = mapAddresses.find(addr.GetKey());
496         if (it != mapAddresses.end())
497         {
498             CAddress& addrFound = (*it).second;
499             int64 nUpdateInterval = 20 * 60;
500             if (addrFound.nTime < GetAdjustedTime() - nUpdateInterval)
501             {
502                 // Periodically update most recently seen time
503                 addrFound.nTime = GetAdjustedTime();
504                 CAddrDB addrdb;
505                 addrdb.WriteAddress(addrFound);
506             }
507         }
508     }
509 }
510
511
512
513
514
515 void AbandonRequests(void (*fn)(void*, CDataStream&), void* param1)
516 {
517     // If the dialog might get closed before the reply comes back,
518     // call this in the destructor so it doesn't get called after it's deleted.
519     CRITICAL_BLOCK(cs_vNodes)
520     {
521         BOOST_FOREACH(CNode* pnode, vNodes)
522         {
523             CRITICAL_BLOCK(pnode->cs_mapRequests)
524             {
525                 for (map<uint256, CRequestTracker>::iterator mi = pnode->mapRequests.begin(); mi != pnode->mapRequests.end();)
526                 {
527                     CRequestTracker& tracker = (*mi).second;
528                     if (tracker.fn == fn && tracker.param1 == param1)
529                         pnode->mapRequests.erase(mi++);
530                     else
531                         mi++;
532                 }
533             }
534         }
535     }
536 }
537
538
539
540
541
542
543
544 //
545 // Subscription methods for the broadcast and subscription system.
546 // Channel numbers are message numbers, i.e. MSG_TABLE and MSG_PRODUCT.
547 //
548 // The subscription system uses a meet-in-the-middle strategy.
549 // With 100,000 nodes, if senders broadcast to 1000 random nodes and receivers
550 // subscribe to 1000 random nodes, 99.995% (1 - 0.99^1000) of messages will get through.
551 //
552
553 bool AnySubscribed(unsigned int nChannel)
554 {
555     if (pnodeLocalHost->IsSubscribed(nChannel))
556         return true;
557     CRITICAL_BLOCK(cs_vNodes)
558         BOOST_FOREACH(CNode* pnode, vNodes)
559             if (pnode->IsSubscribed(nChannel))
560                 return true;
561     return false;
562 }
563
564 bool CNode::IsSubscribed(unsigned int nChannel)
565 {
566     if (nChannel >= vfSubscribe.size())
567         return false;
568     return vfSubscribe[nChannel];
569 }
570
571 void CNode::Subscribe(unsigned int nChannel, unsigned int nHops)
572 {
573     if (nChannel >= vfSubscribe.size())
574         return;
575
576     if (!AnySubscribed(nChannel))
577     {
578         // Relay subscribe
579         CRITICAL_BLOCK(cs_vNodes)
580             BOOST_FOREACH(CNode* pnode, vNodes)
581                 if (pnode != this)
582                     pnode->PushMessage("subscribe", nChannel, nHops);
583     }
584
585     vfSubscribe[nChannel] = true;
586 }
587
588 void CNode::CancelSubscribe(unsigned int nChannel)
589 {
590     if (nChannel >= vfSubscribe.size())
591         return;
592
593     // Prevent from relaying cancel if wasn't subscribed
594     if (!vfSubscribe[nChannel])
595         return;
596     vfSubscribe[nChannel] = false;
597
598     if (!AnySubscribed(nChannel))
599     {
600         // Relay subscription cancel
601         CRITICAL_BLOCK(cs_vNodes)
602             BOOST_FOREACH(CNode* pnode, vNodes)
603                 if (pnode != this)
604                     pnode->PushMessage("sub-cancel", nChannel);
605     }
606 }
607
608
609
610
611
612
613
614
615
616 CNode* FindNode(unsigned int ip)
617 {
618     CRITICAL_BLOCK(cs_vNodes)
619     {
620         BOOST_FOREACH(CNode* pnode, vNodes)
621             if (pnode->addr.ip == ip)
622                 return (pnode);
623     }
624     return NULL;
625 }
626
627 CNode* FindNode(CAddress addr)
628 {
629     CRITICAL_BLOCK(cs_vNodes)
630     {
631         BOOST_FOREACH(CNode* pnode, vNodes)
632             if (pnode->addr == addr)
633                 return (pnode);
634     }
635     return NULL;
636 }
637
638 CNode* ConnectNode(CAddress addrConnect, int64 nTimeout)
639 {
640     if (addrConnect.ip == addrLocalHost.ip)
641         return NULL;
642
643     // Look for an existing connection
644     CNode* pnode = FindNode(addrConnect.ip);
645     if (pnode)
646     {
647         if (nTimeout != 0)
648             pnode->AddRef(nTimeout);
649         else
650             pnode->AddRef();
651         return pnode;
652     }
653
654     /// debug print
655     printf("trying connection %s lastseen=%.1fhrs lasttry=%.1fhrs\n",
656         addrConnect.ToString().c_str(),
657         (double)(addrConnect.nTime - GetAdjustedTime())/3600.0,
658         (double)(addrConnect.nLastTry - GetAdjustedTime())/3600.0);
659
660     CRITICAL_BLOCK(cs_mapAddresses)
661         mapAddresses[addrConnect.GetKey()].nLastTry = GetAdjustedTime();
662
663     // Connect
664     SOCKET hSocket;
665     if (ConnectSocket(addrConnect, hSocket))
666     {
667         /// debug print
668         printf("connected %s\n", addrConnect.ToString().c_str());
669
670         // Set to nonblocking
671 #ifdef __WXMSW__
672         u_long nOne = 1;
673         if (ioctlsocket(hSocket, FIONBIO, &nOne) == SOCKET_ERROR)
674             printf("ConnectSocket() : ioctlsocket nonblocking setting failed, error %d\n", WSAGetLastError());
675 #else
676         if (fcntl(hSocket, F_SETFL, O_NONBLOCK) == SOCKET_ERROR)
677             printf("ConnectSocket() : fcntl nonblocking setting failed, error %d\n", errno);
678 #endif
679
680         // Add node
681         CNode* pnode = new CNode(hSocket, addrConnect, false);
682         if (nTimeout != 0)
683             pnode->AddRef(nTimeout);
684         else
685             pnode->AddRef();
686         CRITICAL_BLOCK(cs_vNodes)
687             vNodes.push_back(pnode);
688
689         pnode->nTimeConnected = GetTime();
690         return pnode;
691     }
692     else
693     {
694         return NULL;
695     }
696 }
697
698 void CNode::CloseSocketDisconnect()
699 {
700     fDisconnect = true;
701     if (hSocket != INVALID_SOCKET)
702     {
703         if (fDebug)
704             printf("%s ", DateTimeStrFormat("%x %H:%M:%S", GetTime()).c_str());
705         printf("disconnecting node %s\n", addr.ToString().c_str());
706         closesocket(hSocket);
707         hSocket = INVALID_SOCKET;
708     }
709 }
710
711 void CNode::Cleanup()
712 {
713     // All of a nodes broadcasts and subscriptions are automatically torn down
714     // when it goes down, so a node has to stay up to keep its broadcast going.
715
716     // Cancel subscriptions
717     for (unsigned int nChannel = 0; nChannel < vfSubscribe.size(); nChannel++)
718         if (vfSubscribe[nChannel])
719             CancelSubscribe(nChannel);
720 }
721
722
723
724
725
726
727
728
729
730
731
732
733
734 void ThreadSocketHandler(void* parg)
735 {
736     IMPLEMENT_RANDOMIZE_STACK(ThreadSocketHandler(parg));
737     try
738     {
739         vnThreadsRunning[0]++;
740         ThreadSocketHandler2(parg);
741         vnThreadsRunning[0]--;
742     }
743     catch (std::exception& e) {
744         vnThreadsRunning[0]--;
745         PrintException(&e, "ThreadSocketHandler()");
746     } catch (...) {
747         vnThreadsRunning[0]--;
748         throw; // support pthread_cancel()
749     }
750     printf("ThreadSocketHandler exiting\n");
751 }
752
753 void ThreadSocketHandler2(void* parg)
754 {
755     printf("ThreadSocketHandler started\n");
756     list<CNode*> vNodesDisconnected;
757     int nPrevNodeCount = 0;
758
759     loop
760     {
761         //
762         // Disconnect nodes
763         //
764         CRITICAL_BLOCK(cs_vNodes)
765         {
766             // Disconnect unused nodes
767             vector<CNode*> vNodesCopy = vNodes;
768             BOOST_FOREACH(CNode* pnode, vNodesCopy)
769             {
770                 if (pnode->fDisconnect ||
771                     (pnode->GetRefCount() <= 0 && pnode->vRecv.empty() && pnode->vSend.empty()))
772                 {
773                     // remove from vNodes
774                     vNodes.erase(remove(vNodes.begin(), vNodes.end(), pnode), vNodes.end());
775
776                     // close socket and cleanup
777                     pnode->CloseSocketDisconnect();
778                     pnode->Cleanup();
779
780                     // hold in disconnected pool until all refs are released
781                     pnode->nReleaseTime = max(pnode->nReleaseTime, GetTime() + 15 * 60);
782                     if (pnode->fNetworkNode || pnode->fInbound)
783                         pnode->Release();
784                     vNodesDisconnected.push_back(pnode);
785                 }
786             }
787
788             // Delete disconnected nodes
789             list<CNode*> vNodesDisconnectedCopy = vNodesDisconnected;
790             BOOST_FOREACH(CNode* pnode, vNodesDisconnectedCopy)
791             {
792                 // wait until threads are done using it
793                 if (pnode->GetRefCount() <= 0)
794                 {
795                     bool fDelete = false;
796                     TRY_CRITICAL_BLOCK(pnode->cs_vSend)
797                      TRY_CRITICAL_BLOCK(pnode->cs_vRecv)
798                       TRY_CRITICAL_BLOCK(pnode->cs_mapRequests)
799                        TRY_CRITICAL_BLOCK(pnode->cs_inventory)
800                         fDelete = true;
801                     if (fDelete)
802                     {
803                         vNodesDisconnected.remove(pnode);
804                         delete pnode;
805                     }
806                 }
807             }
808         }
809         if (vNodes.size() != nPrevNodeCount)
810         {
811             nPrevNodeCount = vNodes.size();
812             MainFrameRepaint();
813         }
814
815
816         //
817         // Find which sockets have data to receive
818         //
819         struct timeval timeout;
820         timeout.tv_sec  = 0;
821         timeout.tv_usec = 50000; // frequency to poll pnode->vSend
822
823         fd_set fdsetRecv;
824         fd_set fdsetSend;
825         fd_set fdsetError;
826         FD_ZERO(&fdsetRecv);
827         FD_ZERO(&fdsetSend);
828         FD_ZERO(&fdsetError);
829         SOCKET hSocketMax = 0;
830
831         if(hListenSocket != INVALID_SOCKET)
832             FD_SET(hListenSocket, &fdsetRecv);
833         hSocketMax = max(hSocketMax, hListenSocket);
834         CRITICAL_BLOCK(cs_vNodes)
835         {
836             BOOST_FOREACH(CNode* pnode, vNodes)
837             {
838                 if (pnode->hSocket == INVALID_SOCKET)
839                     continue;
840                 FD_SET(pnode->hSocket, &fdsetRecv);
841                 FD_SET(pnode->hSocket, &fdsetError);
842                 hSocketMax = max(hSocketMax, pnode->hSocket);
843                 TRY_CRITICAL_BLOCK(pnode->cs_vSend)
844                     if (!pnode->vSend.empty())
845                         FD_SET(pnode->hSocket, &fdsetSend);
846             }
847         }
848
849         vnThreadsRunning[0]--;
850         int nSelect = select(hSocketMax + 1, &fdsetRecv, &fdsetSend, &fdsetError, &timeout);
851         vnThreadsRunning[0]++;
852         if (fShutdown)
853             return;
854         if (nSelect == SOCKET_ERROR)
855         {
856             int nErr = WSAGetLastError();
857             if (hSocketMax > -1)
858             {
859                 printf("socket select error %d\n", nErr);
860                 for (int i = 0; i <= hSocketMax; i++)
861                     FD_SET(i, &fdsetRecv);
862             }
863             FD_ZERO(&fdsetSend);
864             FD_ZERO(&fdsetError);
865             Sleep(timeout.tv_usec/1000);
866         }
867
868
869         //
870         // Accept new connections
871         //
872         if (hListenSocket != INVALID_SOCKET && FD_ISSET(hListenSocket, &fdsetRecv))
873         {
874             struct sockaddr_in sockaddr;
875             socklen_t len = sizeof(sockaddr);
876             SOCKET hSocket = accept(hListenSocket, (struct sockaddr*)&sockaddr, &len);
877             CAddress addr(sockaddr);
878             int nInbound = 0;
879
880             CRITICAL_BLOCK(cs_vNodes)
881                 BOOST_FOREACH(CNode* pnode, vNodes)
882                 if (pnode->fInbound)
883                     nInbound++;
884             if (hSocket == INVALID_SOCKET)
885             {
886                 if (WSAGetLastError() != WSAEWOULDBLOCK)
887                     printf("socket error accept failed: %d\n", WSAGetLastError());
888             }
889             else if (nInbound >= GetArg("-maxconnections", 125) - MAX_OUTBOUND_CONNECTIONS)
890             {
891                 closesocket(hSocket);
892             }
893             else
894             {
895                 printf("accepted connection %s\n", addr.ToString().c_str());
896                 CNode* pnode = new CNode(hSocket, addr, true);
897                 pnode->AddRef();
898                 CRITICAL_BLOCK(cs_vNodes)
899                     vNodes.push_back(pnode);
900             }
901         }
902
903
904         //
905         // Service each socket
906         //
907         vector<CNode*> vNodesCopy;
908         CRITICAL_BLOCK(cs_vNodes)
909         {
910             vNodesCopy = vNodes;
911             BOOST_FOREACH(CNode* pnode, vNodesCopy)
912                 pnode->AddRef();
913         }
914         BOOST_FOREACH(CNode* pnode, vNodesCopy)
915         {
916             if (fShutdown)
917                 return;
918
919             //
920             // Receive
921             //
922             if (pnode->hSocket == INVALID_SOCKET)
923                 continue;
924             if (FD_ISSET(pnode->hSocket, &fdsetRecv) || FD_ISSET(pnode->hSocket, &fdsetError))
925             {
926                 TRY_CRITICAL_BLOCK(pnode->cs_vRecv)
927                 {
928                     CDataStream& vRecv = pnode->vRecv;
929                     unsigned int nPos = vRecv.size();
930
931                     if (nPos > ReceiveBufferSize()) {
932                         if (!pnode->fDisconnect)
933                             printf("socket recv flood control disconnect (%d bytes)\n", vRecv.size());
934                         pnode->CloseSocketDisconnect();
935                     }
936                     else {
937                         // typical socket buffer is 8K-64K
938                         char pchBuf[0x10000];
939                         int nBytes = recv(pnode->hSocket, pchBuf, sizeof(pchBuf), MSG_DONTWAIT);
940                         if (nBytes > 0)
941                         {
942                             vRecv.resize(nPos + nBytes);
943                             memcpy(&vRecv[nPos], pchBuf, nBytes);
944                             pnode->nLastRecv = GetTime();
945                         }
946                         else if (nBytes == 0)
947                         {
948                             // socket closed gracefully
949                             if (!pnode->fDisconnect)
950                                 printf("socket closed\n");
951                             pnode->CloseSocketDisconnect();
952                         }
953                         else if (nBytes < 0)
954                         {
955                             // error
956                             int nErr = WSAGetLastError();
957                             if (nErr != WSAEWOULDBLOCK && nErr != WSAEMSGSIZE && nErr != WSAEINTR && nErr != WSAEINPROGRESS)
958                             {
959                                 if (!pnode->fDisconnect)
960                                     printf("socket recv error %d\n", nErr);
961                                 pnode->CloseSocketDisconnect();
962                             }
963                         }
964                     }
965                 }
966             }
967
968             //
969             // Send
970             //
971             if (pnode->hSocket == INVALID_SOCKET)
972                 continue;
973             if (FD_ISSET(pnode->hSocket, &fdsetSend))
974             {
975                 TRY_CRITICAL_BLOCK(pnode->cs_vSend)
976                 {
977                     CDataStream& vSend = pnode->vSend;
978                     if (!vSend.empty())
979                     {
980                         int nBytes = send(pnode->hSocket, &vSend[0], vSend.size(), MSG_NOSIGNAL | MSG_DONTWAIT);
981                         if (nBytes > 0)
982                         {
983                             vSend.erase(vSend.begin(), vSend.begin() + nBytes);
984                             pnode->nLastSend = GetTime();
985                         }
986                         else if (nBytes < 0)
987                         {
988                             // error
989                             int nErr = WSAGetLastError();
990                             if (nErr != WSAEWOULDBLOCK && nErr != WSAEMSGSIZE && nErr != WSAEINTR && nErr != WSAEINPROGRESS)
991                             {
992                                 printf("socket send error %d\n", nErr);
993                                 pnode->CloseSocketDisconnect();
994                             }
995                         }
996                         if (vSend.size() > SendBufferSize()) {
997                             if (!pnode->fDisconnect)
998                                 printf("socket send flood control disconnect (%d bytes)\n", vSend.size());
999                             pnode->CloseSocketDisconnect();
1000                         }
1001                     }
1002                 }
1003             }
1004
1005             //
1006             // Inactivity checking
1007             //
1008             if (pnode->vSend.empty())
1009                 pnode->nLastSendEmpty = GetTime();
1010             if (GetTime() - pnode->nTimeConnected > 60)
1011             {
1012                 if (pnode->nLastRecv == 0 || pnode->nLastSend == 0)
1013                 {
1014                     printf("socket no message in first 60 seconds, %d %d\n", pnode->nLastRecv != 0, pnode->nLastSend != 0);
1015                     pnode->fDisconnect = true;
1016                 }
1017                 else if (GetTime() - pnode->nLastSend > 90*60 && GetTime() - pnode->nLastSendEmpty > 90*60)
1018                 {
1019                     printf("socket not sending\n");
1020                     pnode->fDisconnect = true;
1021                 }
1022                 else if (GetTime() - pnode->nLastRecv > 90*60)
1023                 {
1024                     printf("socket inactivity timeout\n");
1025                     pnode->fDisconnect = true;
1026                 }
1027             }
1028         }
1029         CRITICAL_BLOCK(cs_vNodes)
1030         {
1031             BOOST_FOREACH(CNode* pnode, vNodesCopy)
1032                 pnode->Release();
1033         }
1034
1035         Sleep(10);
1036     }
1037 }
1038
1039
1040
1041
1042
1043
1044
1045
1046
1047 #ifdef USE_UPNP
1048 void ThreadMapPort(void* parg)
1049 {
1050     IMPLEMENT_RANDOMIZE_STACK(ThreadMapPort(parg));
1051     try
1052     {
1053         vnThreadsRunning[5]++;
1054         ThreadMapPort2(parg);
1055         vnThreadsRunning[5]--;
1056     }
1057     catch (std::exception& e) {
1058         vnThreadsRunning[5]--;
1059         PrintException(&e, "ThreadMapPort()");
1060     } catch (...) {
1061         vnThreadsRunning[5]--;
1062         PrintException(NULL, "ThreadMapPort()");
1063     }
1064     printf("ThreadMapPort exiting\n");
1065 }
1066
1067 void ThreadMapPort2(void* parg)
1068 {
1069     printf("ThreadMapPort started\n");
1070
1071     char port[6];
1072     sprintf(port, "%d", GetListenPort());
1073
1074     const char * rootdescurl = 0;
1075     const char * multicastif = 0;
1076     const char * minissdpdpath = 0;
1077     int error = 0;
1078     struct UPNPDev * devlist = 0;
1079     char lanaddr[64];
1080
1081     devlist = upnpDiscover(2000, multicastif, minissdpdpath, 0, 0, &error);
1082
1083     struct UPNPUrls urls;
1084     struct IGDdatas data;
1085     int r;
1086
1087     r = UPNP_GetValidIGD(devlist, &urls, &data, lanaddr, sizeof(lanaddr));
1088     if (r == 1)
1089     {
1090         char intClient[16];
1091         char intPort[6];
1092         string strDesc = "Bitcoin " + FormatFullVersion();
1093         r = UPNP_AddPortMapping(urls.controlURL, data.first.servicetype,
1094                                 port, port, lanaddr, strDesc.c_str(), "TCP", 0, "0");
1095
1096         if(r!=UPNPCOMMAND_SUCCESS)
1097             printf("AddPortMapping(%s, %s, %s) failed with code %d (%s)\n",
1098                 port, port, lanaddr, r, strupnperror(r));
1099         else
1100             printf("UPnP Port Mapping successful.\n");
1101         loop {
1102             if (fShutdown || !fUseUPnP)
1103             {
1104                 r = UPNP_DeletePortMapping(urls.controlURL, data.first.servicetype, port, "TCP", 0);
1105                 printf("UPNP_DeletePortMapping() returned : %d\n", r);
1106                 freeUPNPDevlist(devlist); devlist = 0;
1107                 FreeUPNPUrls(&urls);
1108                 return;
1109             }
1110             Sleep(2000);
1111         }
1112     } else {
1113         printf("No valid UPnP IGDs found\n");
1114         freeUPNPDevlist(devlist); devlist = 0;
1115         if (r != 0)
1116             FreeUPNPUrls(&urls);
1117         loop {
1118             if (fShutdown || !fUseUPnP)
1119                 return;
1120             Sleep(2000);
1121         }
1122     }
1123 }
1124
1125 void MapPort(bool fMapPort)
1126 {
1127     if (fUseUPnP != fMapPort)
1128     {
1129         fUseUPnP = fMapPort;
1130         WriteSetting("fUseUPnP", fUseUPnP);
1131     }
1132     if (fUseUPnP && vnThreadsRunning[5] < 1)
1133     {
1134         if (!CreateThread(ThreadMapPort, NULL))
1135             printf("Error: ThreadMapPort(ThreadMapPort) failed\n");
1136     }
1137 }
1138 #else
1139 void MapPort(bool /* unused fMapPort */)
1140 {
1141     // Intentionally left blank.
1142 }
1143 #endif
1144
1145
1146
1147
1148
1149
1150
1151
1152
1153
1154 static const char *strDNSSeed[] = {
1155     "bitseed.xf2.org",
1156     "bitseed.bitcoin.org.uk",
1157     "dnsseed.bluematt.me",
1158 };
1159
1160 void DNSAddressSeed()
1161 {
1162     int found = 0;
1163
1164     if (!fTestNet)
1165     {
1166         printf("Loading addresses from DNS seeds (could take a while)\n");
1167         CAddrDB addrDB;
1168         addrDB.TxnBegin();
1169
1170         for (int seed_idx = 0; seed_idx < ARRAYLEN(strDNSSeed); seed_idx++) {
1171             vector<CAddress> vaddr;
1172             if (Lookup(strDNSSeed[seed_idx], vaddr, NODE_NETWORK, -1, true))
1173             {
1174                 BOOST_FOREACH (CAddress& addr, vaddr)
1175                 {
1176                     if (addr.GetByte(3) != 127)
1177                     {
1178                         addr.nTime = 0;
1179                         AddAddress(addr, 0, &addrDB);
1180                         found++;
1181                     }
1182                 }
1183             }
1184         }
1185
1186         addrDB.TxnCommit();  // Save addresses (it's ok if this fails)
1187     }
1188
1189     printf("%d addresses found from DNS seeds\n", found);
1190 }
1191
1192
1193
1194 unsigned int pnSeed[] =
1195 {
1196     0x1ddb1032, 0x6242ce40, 0x52d6a445, 0x2dd7a445, 0x8a53cd47, 0x73263750, 0xda23c257, 0xecd4ed57,
1197     0x0a40ec59, 0x75dce160, 0x7df76791, 0x89370bad, 0xa4f214ad, 0x767700ae, 0x638b0418, 0x868a1018,
1198     0xcd9f332e, 0x0129653e, 0xcc92dc3e, 0x96671640, 0x56487e40, 0x5b66f440, 0xb1d01f41, 0xf1dc6041,
1199     0xc1d12b42, 0x86ba1243, 0x6be4df43, 0x6d4cef43, 0xd18e0644, 0x1ab0b344, 0x6584a345, 0xe7c1a445,
1200     0x58cea445, 0xc5daa445, 0x21dda445, 0x3d3b5346, 0x13e55347, 0x1080d24a, 0x8e611e4b, 0x81518e4b,
1201     0x6c839e4b, 0xe2ad0a4c, 0xfbbc0a4c, 0x7f5b6e4c, 0x7244224e, 0x1300554e, 0x20690652, 0x5a48b652,
1202     0x75c5c752, 0x4335cc54, 0x340fd154, 0x87c07455, 0x087b2b56, 0x8a133a57, 0xac23c257, 0x70374959,
1203     0xfb63d45b, 0xb9a1685c, 0x180d765c, 0x674f645d, 0x04d3495e, 0x1de44b5e, 0x4ee8a362, 0x0ded1b63,
1204     0xc1b04b6d, 0x8d921581, 0x97b7ea82, 0x1cf83a8e, 0x91490bad, 0x09dc75ae, 0x9a6d79ae, 0xa26d79ae,
1205     0x0fd08fae, 0x0f3e3fb2, 0x4f944fb2, 0xcca448b8, 0x3ecd6ab8, 0xa9d5a5bc, 0x8d0119c1, 0x045997d5,
1206     0xca019dd9, 0x0d526c4d, 0xabf1ba44, 0x66b1ab55, 0x1165f462, 0x3ed7cbad, 0xa38fae6e, 0x3bd2cbad,
1207     0xd36f0547, 0x20df7840, 0x7a337742, 0x549f8e4b, 0x9062365c, 0xd399f562, 0x2b5274a1, 0x8edfa153,
1208     0x3bffb347, 0x7074bf58, 0xb74fcbad, 0x5b5a795b, 0x02fa29ce, 0x5a6738d4, 0xe8a1d23e, 0xef98c445,
1209     0x4b0f494c, 0xa2bc1e56, 0x7694ad63, 0xa4a800c3, 0x05fda6cd, 0x9f22175e, 0x364a795b, 0x536285d5,
1210     0xac44c9d4, 0x0b06254d, 0x150c2fd4, 0x32a50dcc, 0xfd79ce48, 0xf15cfa53, 0x66c01e60, 0x6bc26661,
1211     0xc03b47ae, 0x4dda1b81, 0x3285a4c1, 0x883ca96d, 0x35d60a4c, 0xdae09744, 0x2e314d61, 0x84e247cf,
1212     0x6c814552, 0x3a1cc658, 0x98d8f382, 0xe584cb5b, 0x15e86057, 0x7b01504e, 0xd852dd48, 0x56382f56,
1213     0x0a5df454, 0xa0d18d18, 0x2e89b148, 0xa79c114c, 0xcbdcd054, 0x5523bc43, 0xa9832640, 0x8a066144,
1214     0x3894c3bc, 0xab76bf58, 0x6a018ac1, 0xfebf4f43, 0x2f26c658, 0x31102f4e, 0x85e929d5, 0x2a1c175e,
1215     0xfc6c2cd1, 0x27b04b6d, 0xdf024650, 0x161748b8, 0x28be6580, 0x57be6580, 0x1cee677a, 0xaa6bb742,
1216     0x9a53964b, 0x0a5a2d4d, 0x2434c658, 0x9a494f57, 0x1ebb0e48, 0xf610b85d, 0x077ecf44, 0x085128bc,
1217     0x5ba17a18, 0x27ca1b42, 0xf8a00b56, 0xfcd4c257, 0xcf2fc15e, 0xd897e052, 0x4cada04f, 0x2f35f6d5,
1218     0x382ce8c9, 0xe523984b, 0x3f946846, 0x60c8be43, 0x41da6257, 0xde0be142, 0xae8a544b, 0xeff0c254,
1219     0x1e0f795b, 0xaeb28890, 0xca16acd9, 0x1e47ddd8, 0x8c8c4829, 0xd27dc747, 0xd53b1663, 0x4096b163,
1220     0x9c8dd958, 0xcb12f860, 0x9e79305c, 0x40c1a445, 0x4a90c2bc, 0x2c3a464d, 0x2727f23c, 0x30b04b6d,
1221     0x59024cb8, 0xa091e6ad, 0x31b04b6d, 0xc29d46a6, 0x63934fb2, 0xd9224dbe, 0x9f5910d8, 0x7f530a6b,
1222     0x752e9c95, 0x65453548, 0xa484be46, 0xce5a1b59, 0x710e0718, 0x46a13d18, 0xdaaf5318, 0xc4a8ff53,
1223     0x87abaa52, 0xb764cf51, 0xb2025d4a, 0x6d351e41, 0xc035c33e, 0xa432c162, 0x61ef34ae, 0xd16fddbc,
1224     0x0870e8c1, 0x3070e8c1, 0x9c71e8c1, 0xa4992363, 0x85a1f663, 0x4184e559, 0x18d96ed8, 0x17b8dbd5,
1225     0x60e7cd18, 0xe5ee104c, 0xab17ac62, 0x1e786e1b, 0x5d23b762, 0xf2388fae, 0x88270360, 0x9e5b3d80,
1226     0x7da518b2, 0xb5613b45, 0x1ad41f3e, 0xd550854a, 0x8617e9a9, 0x925b229c, 0xf2e92542, 0x47af0544,
1227     0x73b5a843, 0xb9b7a0ad, 0x03a748d0, 0x0a6ff862, 0x6694df62, 0x3bfac948, 0x8e098f4f, 0x746916c3,
1228     0x02f38e4f, 0x40bb1243, 0x6a54d162, 0x6008414b, 0xa513794c, 0x514aa343, 0x63781747, 0xdbb6795b,
1229     0xed065058, 0x42d24b46, 0x1518794c, 0x9b271681, 0x73e4ffad, 0x0654784f, 0x438dc945, 0x641846a6,
1230     0x2d1b0944, 0x94b59148, 0x8d369558, 0xa5a97662, 0x8b705b42, 0xce9204ae, 0x8d584450, 0x2df61555,
1231     0xeebff943, 0x2e75fb4d, 0x3ef8fc57, 0x9921135e, 0x8e31042e, 0xb5afad43, 0x89ecedd1, 0x9cfcc047,
1232     0x8fcd0f4c, 0xbe49f5ad, 0x146a8d45, 0x98669ab8, 0x98d9175e, 0xd1a8e46d, 0x839a3ab8, 0x40a0016c,
1233     0x6d27c257, 0x977fffad, 0x7baa5d5d, 0x1213be43, 0xb167e5a9, 0x640fe8ca, 0xbc9ea655, 0x0f820a4c,
1234     0x0f097059, 0x69ac957c, 0x366d8453, 0xb1ba2844, 0x8857f081, 0x70b5be63, 0xc545454b, 0xaf36ded1,
1235     0xb5a4b052, 0x21f062d1, 0x72ab89b2, 0x74a45318, 0x8312e6bc, 0xb916965f, 0x8aa7c858, 0xfe7effad,
1236 };
1237
1238
1239
1240 void ThreadOpenConnections(void* parg)
1241 {
1242     IMPLEMENT_RANDOMIZE_STACK(ThreadOpenConnections(parg));
1243     try
1244     {
1245         vnThreadsRunning[1]++;
1246         ThreadOpenConnections2(parg);
1247         vnThreadsRunning[1]--;
1248     }
1249     catch (std::exception& e) {
1250         vnThreadsRunning[1]--;
1251         PrintException(&e, "ThreadOpenConnections()");
1252     } catch (...) {
1253         vnThreadsRunning[1]--;
1254         PrintException(NULL, "ThreadOpenConnections()");
1255     }
1256     printf("ThreadOpenConnections exiting\n");
1257 }
1258
1259 void ThreadOpenConnections2(void* parg)
1260 {
1261     printf("ThreadOpenConnections started\n");
1262
1263     // Connect to specific addresses
1264     if (mapArgs.count("-connect"))
1265     {
1266         for (int64 nLoop = 0;; nLoop++)
1267         {
1268             BOOST_FOREACH(string strAddr, mapMultiArgs["-connect"])
1269             {
1270                 CAddress addr(strAddr, fAllowDNS);
1271                 if (addr.IsValid())
1272                     OpenNetworkConnection(addr);
1273                 for (int i = 0; i < 10 && i < nLoop; i++)
1274                 {
1275                     Sleep(500);
1276                     if (fShutdown)
1277                         return;
1278                 }
1279             }
1280         }
1281     }
1282
1283     // Connect to manually added nodes first
1284     if (mapArgs.count("-addnode"))
1285     {
1286         BOOST_FOREACH(string strAddr, mapMultiArgs["-addnode"])
1287         {
1288             CAddress addr(strAddr, fAllowDNS);
1289             if (addr.IsValid())
1290             {
1291                 OpenNetworkConnection(addr);
1292                 Sleep(500);
1293                 if (fShutdown)
1294                     return;
1295             }
1296         }
1297     }
1298
1299     // Initiate network connections
1300     int64 nStart = GetTime();
1301     loop
1302     {
1303         // Limit outbound connections
1304         vnThreadsRunning[1]--;
1305         Sleep(500);
1306         loop
1307         {
1308             int nOutbound = 0;
1309             CRITICAL_BLOCK(cs_vNodes)
1310                 BOOST_FOREACH(CNode* pnode, vNodes)
1311                     if (!pnode->fInbound)
1312                         nOutbound++;
1313             int nMaxOutboundConnections = MAX_OUTBOUND_CONNECTIONS;
1314             nMaxOutboundConnections = min(nMaxOutboundConnections, (int)GetArg("-maxconnections", 125));
1315             if (nOutbound < nMaxOutboundConnections)
1316                 break;
1317             Sleep(2000);
1318             if (fShutdown)
1319                 return;
1320         }
1321         vnThreadsRunning[1]++;
1322         if (fShutdown)
1323             return;
1324
1325         CRITICAL_BLOCK(cs_mapAddresses)
1326         {
1327             // Add seed nodes if IRC isn't working
1328             static bool fSeedUsed;
1329             bool fTOR = (fUseProxy && addrProxy.port == htons(9050));
1330             if (mapAddresses.empty() && (GetTime() - nStart > 60 || fTOR) && !fTestNet)
1331             {
1332                 for (int i = 0; i < ARRAYLEN(pnSeed); i++)
1333                 {
1334                     // It'll only connect to one or two seed nodes because once it connects,
1335                     // it'll get a pile of addresses with newer timestamps.
1336                     CAddress addr;
1337                     addr.ip = pnSeed[i];
1338                     addr.nTime = 0;
1339                     AddAddress(addr);
1340                 }
1341                 fSeedUsed = true;
1342             }
1343
1344             if (fSeedUsed && mapAddresses.size() > ARRAYLEN(pnSeed) + 100)
1345             {
1346                 // Disconnect seed nodes
1347                 set<unsigned int> setSeed(pnSeed, pnSeed + ARRAYLEN(pnSeed));
1348                 static int64 nSeedDisconnected;
1349                 if (nSeedDisconnected == 0)
1350                 {
1351                     nSeedDisconnected = GetTime();
1352                     CRITICAL_BLOCK(cs_vNodes)
1353                         BOOST_FOREACH(CNode* pnode, vNodes)
1354                             if (setSeed.count(pnode->addr.ip))
1355                                 pnode->fDisconnect = true;
1356                 }
1357
1358                 // Keep setting timestamps to 0 so they won't reconnect
1359                 if (GetTime() - nSeedDisconnected < 60 * 60)
1360                 {
1361                     BOOST_FOREACH(PAIRTYPE(const vector<unsigned char>, CAddress)& item, mapAddresses)
1362                     {
1363                         if (setSeed.count(item.second.ip) && item.second.nTime != 0)
1364                         {
1365                             item.second.nTime = 0;
1366                             CAddrDB().WriteAddress(item.second);
1367                         }
1368                     }
1369                 }
1370             }
1371         }
1372
1373
1374         //
1375         // Choose an address to connect to based on most recently seen
1376         //
1377         CAddress addrConnect;
1378         int64 nBest = INT64_MIN;
1379
1380         // Only connect to one address per a.b.?.? range.
1381         // Do this here so we don't have to critsect vNodes inside mapAddresses critsect.
1382         set<unsigned int> setConnected;
1383         CRITICAL_BLOCK(cs_vNodes)
1384             BOOST_FOREACH(CNode* pnode, vNodes)
1385                 setConnected.insert(pnode->addr.ip & 0x0000ffff);
1386
1387         CRITICAL_BLOCK(cs_mapAddresses)
1388         {
1389             BOOST_FOREACH(const PAIRTYPE(vector<unsigned char>, CAddress)& item, mapAddresses)
1390             {
1391                 const CAddress& addr = item.second;
1392                 if (!addr.IsIPv4() || !addr.IsValid() || setConnected.count(addr.ip & 0x0000ffff))
1393                     continue;
1394                 int64 nSinceLastSeen = GetAdjustedTime() - addr.nTime;
1395                 int64 nSinceLastTry = GetAdjustedTime() - addr.nLastTry;
1396
1397                 // Randomize the order in a deterministic way, putting the standard port first
1398                 int64 nRandomizer = (uint64)(nStart * 4951 + addr.nLastTry * 9567851 + addr.ip * 7789) % (2 * 60 * 60);
1399                 if (addr.port != htons(GetDefaultPort()))
1400                     nRandomizer += 2 * 60 * 60;
1401
1402                 // Last seen  Base retry frequency
1403                 //   <1 hour   10 min
1404                 //    1 hour    1 hour
1405                 //    4 hours   2 hours
1406                 //   24 hours   5 hours
1407                 //   48 hours   7 hours
1408                 //    7 days   13 hours
1409                 //   30 days   27 hours
1410                 //   90 days   46 hours
1411                 //  365 days   93 hours
1412                 int64 nDelay = (int64)(3600.0 * sqrt(fabs((double)nSinceLastSeen) / 3600.0) + nRandomizer);
1413
1414                 // Fast reconnect for one hour after last seen
1415                 if (nSinceLastSeen < 60 * 60)
1416                     nDelay = 10 * 60;
1417
1418                 // Limit retry frequency
1419                 if (nSinceLastTry < nDelay)
1420                     continue;
1421
1422                 // If we have IRC, we'll be notified when they first come online,
1423                 // and again every 24 hours by the refresh broadcast.
1424                 if (nGotIRCAddresses > 0 && vNodes.size() >= 2 && nSinceLastSeen > 24 * 60 * 60)
1425                     continue;
1426
1427                 // Only try the old stuff if we don't have enough connections
1428                 if (vNodes.size() >= 8 && nSinceLastSeen > 24 * 60 * 60)
1429                     continue;
1430
1431                 // If multiple addresses are ready, prioritize by time since
1432                 // last seen and time since last tried.
1433                 int64 nScore = min(nSinceLastTry, (int64)24 * 60 * 60) - nSinceLastSeen - nRandomizer;
1434                 if (nScore > nBest)
1435                 {
1436                     nBest = nScore;
1437                     addrConnect = addr;
1438                 }
1439             }
1440         }
1441
1442         if (addrConnect.IsValid())
1443             OpenNetworkConnection(addrConnect);
1444     }
1445 }
1446
1447 bool OpenNetworkConnection(const CAddress& addrConnect)
1448 {
1449     //
1450     // Initiate outbound network connection
1451     //
1452     if (fShutdown)
1453         return false;
1454     if (addrConnect.ip == addrLocalHost.ip || !addrConnect.IsIPv4() || FindNode(addrConnect.ip))
1455         return false;
1456
1457     vnThreadsRunning[1]--;
1458     CNode* pnode = ConnectNode(addrConnect);
1459     vnThreadsRunning[1]++;
1460     if (fShutdown)
1461         return false;
1462     if (!pnode)
1463         return false;
1464     pnode->fNetworkNode = true;
1465
1466     return true;
1467 }
1468
1469
1470
1471
1472
1473
1474
1475
1476 void ThreadMessageHandler(void* parg)
1477 {
1478     IMPLEMENT_RANDOMIZE_STACK(ThreadMessageHandler(parg));
1479     try
1480     {
1481         vnThreadsRunning[2]++;
1482         ThreadMessageHandler2(parg);
1483         vnThreadsRunning[2]--;
1484     }
1485     catch (std::exception& e) {
1486         vnThreadsRunning[2]--;
1487         PrintException(&e, "ThreadMessageHandler()");
1488     } catch (...) {
1489         vnThreadsRunning[2]--;
1490         PrintException(NULL, "ThreadMessageHandler()");
1491     }
1492     printf("ThreadMessageHandler exiting\n");
1493 }
1494
1495 void ThreadMessageHandler2(void* parg)
1496 {
1497     printf("ThreadMessageHandler started\n");
1498     SetThreadPriority(THREAD_PRIORITY_BELOW_NORMAL);
1499     while (!fShutdown)
1500     {
1501         vector<CNode*> vNodesCopy;
1502         CRITICAL_BLOCK(cs_vNodes)
1503         {
1504             vNodesCopy = vNodes;
1505             BOOST_FOREACH(CNode* pnode, vNodesCopy)
1506                 pnode->AddRef();
1507         }
1508
1509         // Poll the connected nodes for messages
1510         CNode* pnodeTrickle = NULL;
1511         if (!vNodesCopy.empty())
1512             pnodeTrickle = vNodesCopy[GetRand(vNodesCopy.size())];
1513         BOOST_FOREACH(CNode* pnode, vNodesCopy)
1514         {
1515             // Receive messages
1516             TRY_CRITICAL_BLOCK(pnode->cs_vRecv)
1517                 ProcessMessages(pnode);
1518             if (fShutdown)
1519                 return;
1520
1521             // Send messages
1522             TRY_CRITICAL_BLOCK(pnode->cs_vSend)
1523                 SendMessages(pnode, pnode == pnodeTrickle);
1524             if (fShutdown)
1525                 return;
1526         }
1527
1528         CRITICAL_BLOCK(cs_vNodes)
1529         {
1530             BOOST_FOREACH(CNode* pnode, vNodesCopy)
1531                 pnode->Release();
1532         }
1533
1534         // Wait and allow messages to bunch up.
1535         // Reduce vnThreadsRunning so StopNode has permission to exit while
1536         // we're sleeping, but we must always check fShutdown after doing this.
1537         vnThreadsRunning[2]--;
1538         Sleep(100);
1539         if (fRequestShutdown)
1540             Shutdown(NULL);
1541         vnThreadsRunning[2]++;
1542         if (fShutdown)
1543             return;
1544     }
1545 }
1546
1547
1548
1549
1550
1551
1552 bool BindListenPort(string& strError)
1553 {
1554     strError = "";
1555     int nOne = 1;
1556     addrLocalHost.port = htons(GetListenPort());
1557
1558 #ifdef __WXMSW__
1559     // Initialize Windows Sockets
1560     WSADATA wsadata;
1561     int ret = WSAStartup(MAKEWORD(2,2), &wsadata);
1562     if (ret != NO_ERROR)
1563     {
1564         strError = strprintf("Error: TCP/IP socket library failed to start (WSAStartup returned error %d)", ret);
1565         printf("%s\n", strError.c_str());
1566         return false;
1567     }
1568 #endif
1569
1570     // Create socket for listening for incoming connections
1571     hListenSocket = socket(AF_INET, SOCK_STREAM, IPPROTO_TCP);
1572     if (hListenSocket == INVALID_SOCKET)
1573     {
1574         strError = strprintf("Error: Couldn't open socket for incoming connections (socket returned error %d)", WSAGetLastError());
1575         printf("%s\n", strError.c_str());
1576         return false;
1577     }
1578
1579 #ifdef SO_NOSIGPIPE
1580     // Different way of disabling SIGPIPE on BSD
1581     setsockopt(hListenSocket, SOL_SOCKET, SO_NOSIGPIPE, (void*)&nOne, sizeof(int));
1582 #endif
1583
1584 #ifndef __WXMSW__
1585     // Allow binding if the port is still in TIME_WAIT state after
1586     // the program was closed and restarted.  Not an issue on windows.
1587     setsockopt(hListenSocket, SOL_SOCKET, SO_REUSEADDR, (void*)&nOne, sizeof(int));
1588 #endif
1589
1590 #ifdef __WXMSW__
1591     // Set to nonblocking, incoming connections will also inherit this
1592     if (ioctlsocket(hListenSocket, FIONBIO, (u_long*)&nOne) == SOCKET_ERROR)
1593 #else
1594     if (fcntl(hListenSocket, F_SETFL, O_NONBLOCK) == SOCKET_ERROR)
1595 #endif
1596     {
1597         strError = strprintf("Error: Couldn't set properties on socket for incoming connections (error %d)", WSAGetLastError());
1598         printf("%s\n", strError.c_str());
1599         return false;
1600     }
1601
1602     // The sockaddr_in structure specifies the address family,
1603     // IP address, and port for the socket that is being bound
1604     struct sockaddr_in sockaddr;
1605     memset(&sockaddr, 0, sizeof(sockaddr));
1606     sockaddr.sin_family = AF_INET;
1607     sockaddr.sin_addr.s_addr = INADDR_ANY; // bind to all IPs on this computer
1608     sockaddr.sin_port = htons(GetListenPort());
1609     if (::bind(hListenSocket, (struct sockaddr*)&sockaddr, sizeof(sockaddr)) == SOCKET_ERROR)
1610     {
1611         int nErr = WSAGetLastError();
1612         if (nErr == WSAEADDRINUSE)
1613             strError = strprintf(_("Unable to bind to port %d on this computer.  Bitcoin is probably already running."), ntohs(sockaddr.sin_port));
1614         else
1615             strError = strprintf("Error: Unable to bind to port %d on this computer (bind returned error %d)", ntohs(sockaddr.sin_port), nErr);
1616         printf("%s\n", strError.c_str());
1617         return false;
1618     }
1619     printf("Bound to port %d\n", ntohs(sockaddr.sin_port));
1620
1621     // Listen for incoming connections
1622     if (listen(hListenSocket, SOMAXCONN) == SOCKET_ERROR)
1623     {
1624         strError = strprintf("Error: Listening for incoming connections failed (listen returned error %d)", WSAGetLastError());
1625         printf("%s\n", strError.c_str());
1626         return false;
1627     }
1628
1629     return true;
1630 }
1631
1632 void StartNode(void* parg)
1633 {
1634     if (pnodeLocalHost == NULL)
1635         pnodeLocalHost = new CNode(INVALID_SOCKET, CAddress("127.0.0.1", 0, false, nLocalServices));
1636
1637 #ifdef __WXMSW__
1638     // Get local host ip
1639     char pszHostName[1000] = "";
1640     if (gethostname(pszHostName, sizeof(pszHostName)) != SOCKET_ERROR)
1641     {
1642         vector<CAddress> vaddr;
1643         if (Lookup(pszHostName, vaddr, nLocalServices, -1, true))
1644             BOOST_FOREACH (const CAddress &addr, vaddr)
1645                 if (addr.GetByte(3) != 127)
1646                 {
1647                     addrLocalHost = addr;
1648                     break;
1649                 }
1650     }
1651 #else
1652     // Get local host ip
1653     struct ifaddrs* myaddrs;
1654     if (getifaddrs(&myaddrs) == 0)
1655     {
1656         for (struct ifaddrs* ifa = myaddrs; ifa != NULL; ifa = ifa->ifa_next)
1657         {
1658             if (ifa->ifa_addr == NULL) continue;
1659             if ((ifa->ifa_flags & IFF_UP) == 0) continue;
1660             if (strcmp(ifa->ifa_name, "lo") == 0) continue;
1661             if (strcmp(ifa->ifa_name, "lo0") == 0) continue;
1662             char pszIP[100];
1663             if (ifa->ifa_addr->sa_family == AF_INET)
1664             {
1665                 struct sockaddr_in* s4 = (struct sockaddr_in*)(ifa->ifa_addr);
1666                 if (inet_ntop(ifa->ifa_addr->sa_family, (void*)&(s4->sin_addr), pszIP, sizeof(pszIP)) != NULL)
1667                     printf("ipv4 %s: %s\n", ifa->ifa_name, pszIP);
1668
1669                 // Take the first IP that isn't loopback 127.x.x.x
1670                 CAddress addr(*(unsigned int*)&s4->sin_addr, GetListenPort(), nLocalServices);
1671                 if (addr.IsValid() && addr.GetByte(3) != 127)
1672                 {
1673                     addrLocalHost = addr;
1674                     break;
1675                 }
1676             }
1677             else if (ifa->ifa_addr->sa_family == AF_INET6)
1678             {
1679                 struct sockaddr_in6* s6 = (struct sockaddr_in6*)(ifa->ifa_addr);
1680                 if (inet_ntop(ifa->ifa_addr->sa_family, (void*)&(s6->sin6_addr), pszIP, sizeof(pszIP)) != NULL)
1681                     printf("ipv6 %s: %s\n", ifa->ifa_name, pszIP);
1682             }
1683         }
1684         freeifaddrs(myaddrs);
1685     }
1686 #endif
1687     printf("addrLocalHost = %s\n", addrLocalHost.ToString().c_str());
1688
1689     if (fUseProxy || mapArgs.count("-connect") || fNoListen)
1690     {
1691         // Proxies can't take incoming connections
1692         addrLocalHost.ip = CAddress("0.0.0.0").ip;
1693         printf("addrLocalHost = %s\n", addrLocalHost.ToString().c_str());
1694     }
1695     else
1696     {
1697         CreateThread(ThreadGetMyExternalIP, NULL);
1698     }
1699
1700     //
1701     // Start threads
1702     //
1703
1704     // Map ports with UPnP
1705     if (fHaveUPnP)
1706         MapPort(fUseUPnP);
1707
1708     // Get addresses from IRC and advertise ours
1709     if (!CreateThread(ThreadIRCSeed, NULL))
1710         printf("Error: CreateThread(ThreadIRCSeed) failed\n");
1711
1712     // Send and receive from sockets, accept connections
1713     CreateThread(ThreadSocketHandler, NULL, true);
1714
1715     // Initiate outbound connections
1716     if (!CreateThread(ThreadOpenConnections, NULL))
1717         printf("Error: CreateThread(ThreadOpenConnections) failed\n");
1718
1719     // Process messages
1720     if (!CreateThread(ThreadMessageHandler, NULL))
1721         printf("Error: CreateThread(ThreadMessageHandler) failed\n");
1722
1723     // Generate coins in the background
1724     GenerateBitcoins(fGenerateBitcoins, pwalletMain);
1725 }
1726
1727 bool StopNode()
1728 {
1729     printf("StopNode()\n");
1730     fShutdown = true;
1731     nTransactionsUpdated++;
1732     int64 nStart = GetTime();
1733     while (vnThreadsRunning[0] > 0 || vnThreadsRunning[2] > 0 || vnThreadsRunning[3] > 0 || vnThreadsRunning[4] > 0
1734 #ifdef USE_UPNP
1735         || vnThreadsRunning[5] > 0
1736 #endif
1737     )
1738     {
1739         if (GetTime() - nStart > 20)
1740             break;
1741         Sleep(20);
1742     }
1743     if (vnThreadsRunning[0] > 0) printf("ThreadSocketHandler still running\n");
1744     if (vnThreadsRunning[1] > 0) printf("ThreadOpenConnections still running\n");
1745     if (vnThreadsRunning[2] > 0) printf("ThreadMessageHandler still running\n");
1746     if (vnThreadsRunning[3] > 0) printf("ThreadBitcoinMiner still running\n");
1747     if (vnThreadsRunning[4] > 0) printf("ThreadRPCServer still running\n");
1748     if (fHaveUPnP && vnThreadsRunning[5] > 0) printf("ThreadMapPort still running\n");
1749     while (vnThreadsRunning[2] > 0 || vnThreadsRunning[4] > 0)
1750         Sleep(20);
1751     Sleep(50);
1752
1753     return true;
1754 }
1755
1756 class CNetCleanup
1757 {
1758 public:
1759     CNetCleanup()
1760     {
1761     }
1762     ~CNetCleanup()
1763     {
1764         // Close sockets
1765         BOOST_FOREACH(CNode* pnode, vNodes)
1766             if (pnode->hSocket != INVALID_SOCKET)
1767                 closesocket(pnode->hSocket);
1768         if (hListenSocket != INVALID_SOCKET)
1769             if (closesocket(hListenSocket) == SOCKET_ERROR)
1770                 printf("closesocket(hListenSocket) failed with error %d\n", WSAGetLastError());
1771
1772 #ifdef __WXMSW__
1773         // Shutdown Windows Sockets
1774         WSACleanup();
1775 #endif
1776     }
1777 }
1778 instance_of_cnetcleanup;