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1 /*   +------------------------------------+
2  *   | Inspire Internet Relay Chat Daemon |
3  *   +------------------------------------+
4  *
5  *  InspIRCd is copyright (C) 2002-2006 ChatSpike-Dev.
6  *                     E-mail:
7  *                <brain@chatspike.net>
8  *                <Craig@chatspike.net>
9  *     
10  * Written by Craig Edwards, Craig McLure, and others.
11  * This program is free but copyrighted software; see
12  *            the file COPYING for details.
13  *
14  * ---------------------------------------------------
15  */
16
17 /* $ModDesc: Povides a spanning tree server link protocol */
18
19 using namespace std;
20
21 #include <stdio.h>
22 #include <vector>
23 #include <deque>
24 #include "globals.h"
25 #include "inspircd_config.h"
26 #ifdef GCC3
27 #include <ext/hash_map>
28 #else
29 #include <hash_map>
30 #endif
31 #include "users.h"
32 #include "channels.h"
33 #include "modules.h"
34 #include "commands.h"
35 #include "socket.h"
36 #include "helperfuncs.h"
37 #include "inspircd.h"
38 #include "inspstring.h"
39 #include "hashcomp.h"
40 #include "message.h"
41 #include "xline.h"
42 #include "typedefs.h"
43 #include "cull_list.h"
44 #include "aes.h"
45
46 #ifdef GCC3
47 #define nspace __gnu_cxx
48 #else
49 #define nspace std
50 #endif
51
52 /*
53  * The server list in InspIRCd is maintained as two structures
54  * which hold the data in different ways. Most of the time, we
55  * want to very quicky obtain three pieces of information:
56  *
57  * (1) The information on a server
58  * (2) The information on the server we must send data through
59  *     to actually REACH the server we're after
60  * (3) Potentially, the child/parent objects of this server
61  *
62  * The InspIRCd spanning protocol provides easy access to these
63  * by storing the data firstly in a recursive structure, where
64  * each item references its parent item, and a dynamic list
65  * of child items, and another structure which stores the items
66  * hashed, linearly. This means that if we want to find a server
67  * by name quickly, we can look it up in the hash, avoiding
68  * any O(n) lookups. If however, during a split or sync, we want
69  * to apply an operation to a server, and any of its child objects
70  * we can resort to recursion to walk the tree structure.
71  */
72
73 class ModuleSpanningTree;
74 static ModuleSpanningTree* TreeProtocolModule;
75
76 extern ServerConfig* Config;
77
78 extern std::vector<Module*> modules;
79 extern std::vector<ircd_module*> factory;
80 extern int MODCOUNT;
81
82 /* Any socket can have one of five states at any one time.
83  * The LISTENER state indicates a socket which is listening
84  * for connections. It cannot receive data itself, only incoming
85  * sockets.
86  * The CONNECTING state indicates an outbound socket which is
87  * waiting to be writeable.
88  * The WAIT_AUTH_1 state indicates the socket is outbound and
89  * has successfully connected, but has not yet sent and received
90  * SERVER strings.
91  * The WAIT_AUTH_2 state indicates that the socket is inbound
92  * (allocated by a LISTENER) but has not yet sent and received
93  * SERVER strings.
94  * The CONNECTED state represents a fully authorized, fully
95  * connected server.
96  */
97 enum ServerState { LISTENER, CONNECTING, WAIT_AUTH_1, WAIT_AUTH_2, CONNECTED };
98
99 /* We need to import these from the core for use in netbursts */
100 extern user_hash clientlist;
101 extern chan_hash chanlist;
102
103 /* Foward declarations */
104 class TreeServer;
105 class TreeSocket;
106
107 /* This variable represents the root of the server tree
108  * (for all intents and purposes, it's us)
109  */
110 TreeServer *TreeRoot;
111
112 Server* Srv;
113
114 /* This hash_map holds the hash equivalent of the server
115  * tree, used for rapid linear lookups.
116  */
117 typedef nspace::hash_map<std::string, TreeServer*> server_hash;
118 server_hash serverlist;
119
120 /* More forward declarations */
121 bool DoOneToOne(std::string prefix, std::string command, std::deque<std::string> &params, std::string target);
122 bool DoOneToAllButSender(std::string prefix, std::string command, std::deque<std::string> &params, std::string omit);
123 bool DoOneToMany(std::string prefix, std::string command, std::deque<std::string> &params);
124 bool DoOneToAllButSenderRaw(std::string data, std::string omit, std::string prefix, std::string command, std::deque<std::string> &params);
125 void ReadConfiguration(bool rebind);
126
127 /* Flatten links and /MAP for non-opers */
128 bool FlatLinks;
129 /* Hide U-Lined servers in /MAP and /LINKS */
130 bool HideULines;
131
132 /* Imported from xline.cpp for use during netburst */
133 extern std::vector<KLine> klines;
134 extern std::vector<GLine> glines;
135 extern std::vector<ZLine> zlines;
136 extern std::vector<QLine> qlines;
137 extern std::vector<ELine> elines;
138 extern std::vector<KLine> pklines;
139 extern std::vector<GLine> pglines;
140 extern std::vector<ZLine> pzlines;
141 extern std::vector<QLine> pqlines;
142 extern std::vector<ELine> pelines;
143
144 /* Each server in the tree is represented by one class of
145  * type TreeServer. A locally connected TreeServer can
146  * have a class of type TreeSocket associated with it, for
147  * remote servers, the TreeSocket entry will be NULL.
148  * Each server also maintains a pointer to its parent
149  * (NULL if this server is ours, at the top of the tree)
150  * and a pointer to its "Route" (see the comments in the
151  * constructors below), and also a dynamic list of pointers
152  * to its children which can be iterated recursively
153  * if required. Creating or deleting objects of type
154  * TreeServer automatically maintains the hash_map of
155  * TreeServer items, deleting and inserting them as they
156  * are created and destroyed.
157  */
158
159 class TreeServer
160 {
161         TreeServer* Parent;                     /* Parent entry */
162         TreeServer* Route;                      /* Route entry */
163         std::vector<TreeServer*> Children;      /* List of child objects */
164         std::string ServerName;                 /* Server's name */
165         std::string ServerDesc;                 /* Server's description */
166         std::string VersionString;              /* Version string or empty string */
167         int UserCount;                          /* Not used in this version */
168         int OperCount;                          /* Not used in this version */
169         TreeSocket* Socket;                     /* For directly connected servers this points at the socket object */
170         time_t NextPing;                        /* After this time, the server should be PINGed*/
171         bool LastPingWasGood;                   /* True if the server responded to the last PING with a PONG */
172         
173  public:
174
175         /* We don't use this constructor. Its a dummy, and won't cause any insertion
176          * of the TreeServer into the hash_map. See below for the two we DO use.
177          */
178         TreeServer()
179         {
180                 Parent = NULL;
181                 ServerName = "";
182                 ServerDesc = "";
183                 VersionString = "";
184                 UserCount = OperCount = 0;
185                 VersionString = Srv->GetVersion();
186         }
187
188         /* We use this constructor only to create the 'root' item, TreeRoot, which
189          * represents our own server. Therefore, it has no route, no parent, and
190          * no socket associated with it. Its version string is our own local version.
191          */
192         TreeServer(std::string Name, std::string Desc) : ServerName(Name), ServerDesc(Desc)
193         {
194                 Parent = NULL;
195                 VersionString = "";
196                 UserCount = OperCount = 0;
197                 VersionString = Srv->GetVersion();
198                 Route = NULL;
199                 Socket = NULL; /* Fix by brain */
200                 AddHashEntry();
201         }
202
203         /* When we create a new server, we call this constructor to initialize it.
204          * This constructor initializes the server's Route and Parent, and sets up
205          * its ping counters so that it will be pinged one minute from now.
206          */
207         TreeServer(std::string Name, std::string Desc, TreeServer* Above, TreeSocket* Sock) : Parent(Above), ServerName(Name), ServerDesc(Desc), Socket(Sock)
208         {
209                 VersionString = "";
210                 UserCount = OperCount = 0;
211                 this->SetNextPingTime(time(NULL) + 120);
212                 this->SetPingFlag();
213
214                 /* find the 'route' for this server (e.g. the one directly connected
215                  * to the local server, which we can use to reach it)
216                  *
217                  * In the following example, consider we have just added a TreeServer
218                  * class for server G on our network, of which we are server A.
219                  * To route traffic to G (marked with a *) we must send the data to
220                  * B (marked with a +) so this algorithm initializes the 'Route'
221                  * value to point at whichever server traffic must be routed through
222                  * to get here. If we were to try this algorithm with server B,
223                  * the Route pointer would point at its own object ('this').
224                  *
225                  *              A
226                  *             / \
227                  *          + B   C
228                  *           / \   \
229                  *          D   E   F
230                  *         /         \
231                  *      * G           H
232                  *
233                  * We only run this algorithm when a server is created, as
234                  * the routes remain constant while ever the server exists, and
235                  * do not need to be re-calculated.
236                  */
237
238                 Route = Above;
239                 if (Route == TreeRoot)
240                 {
241                         Route = this;
242                 }
243                 else
244                 {
245                         while (this->Route->GetParent() != TreeRoot)
246                         {
247                                 this->Route = Route->GetParent();
248                         }
249                 }
250
251                 /* Because recursive code is slow and takes a lot of resources,
252                  * we store two representations of the server tree. The first
253                  * is a recursive structure where each server references its
254                  * children and its parent, which is used for netbursts and
255                  * netsplits to dump the whole dataset to the other server,
256                  * and the second is used for very fast lookups when routing
257                  * messages and is instead a hash_map, where each item can
258                  * be referenced by its server name. The AddHashEntry()
259                  * call below automatically inserts each TreeServer class
260                  * into the hash_map as it is created. There is a similar
261                  * maintainance call in the destructor to tidy up deleted
262                  * servers.
263                  */
264
265                 this->AddHashEntry();
266         }
267
268         /* This method is used to add the structure to the
269          * hash_map for linear searches. It is only called
270          * by the constructors.
271          */
272         void AddHashEntry()
273         {
274                 server_hash::iterator iter;
275                 iter = serverlist.find(this->ServerName);
276                 if (iter == serverlist.end())
277                         serverlist[this->ServerName] = this;
278         }
279
280         /* This method removes the reference to this object
281          * from the hash_map which is used for linear searches.
282          * It is only called by the default destructor.
283          */
284         void DelHashEntry()
285         {
286                 server_hash::iterator iter;
287                 iter = serverlist.find(this->ServerName);
288                 if (iter != serverlist.end())
289                         serverlist.erase(iter);
290         }
291
292         /* These accessors etc should be pretty self-
293          * explanitory.
294          */
295
296         TreeServer* GetRoute()
297         {
298                 return Route;
299         }
300
301         std::string GetName()
302         {
303                 return ServerName;
304         }
305
306         std::string GetDesc()
307         {
308                 return ServerDesc;
309         }
310
311         std::string GetVersion()
312         {
313                 return VersionString;
314         }
315
316         void SetNextPingTime(time_t t)
317         {
318                 this->NextPing = t;
319                 LastPingWasGood = false;
320         }
321
322         time_t NextPingTime()
323         {
324                 return NextPing;
325         }
326
327         bool AnsweredLastPing()
328         {
329                 return LastPingWasGood;
330         }
331
332         void SetPingFlag()
333         {
334                 LastPingWasGood = true;
335         }
336
337         int GetUserCount()
338         {
339                 return UserCount;
340         }
341
342         void AddUserCount()
343         {
344                 UserCount++;
345         }
346
347         void DelUserCount()
348         {
349                 UserCount--;
350         }
351
352         int GetOperCount()
353         {
354                 return OperCount;
355         }
356
357         TreeSocket* GetSocket()
358         {
359                 return Socket;
360         }
361
362         TreeServer* GetParent()
363         {
364                 return Parent;
365         }
366
367         void SetVersion(std::string Version)
368         {
369                 VersionString = Version;
370         }
371
372         unsigned int ChildCount()
373         {
374                 return Children.size();
375         }
376
377         TreeServer* GetChild(unsigned int n)
378         {
379                 if (n < Children.size())
380                 {
381                         /* Make sure they  cant request
382                          * an out-of-range object. After
383                          * all we know what these programmer
384                          * types are like *grin*.
385                          */
386                         return Children[n];
387                 }
388                 else
389                 {
390                         return NULL;
391                 }
392         }
393
394         void AddChild(TreeServer* Child)
395         {
396                 Children.push_back(Child);
397         }
398
399         bool DelChild(TreeServer* Child)
400         {
401                 for (std::vector<TreeServer*>::iterator a = Children.begin(); a < Children.end(); a++)
402                 {
403                         if (*a == Child)
404                         {
405                                 Children.erase(a);
406                                 return true;
407                         }
408                 }
409                 return false;
410         }
411
412         /* Removes child nodes of this node, and of that node, etc etc.
413          * This is used during netsplits to automatically tidy up the
414          * server tree. It is slow, we don't use it for much else.
415          */
416         bool Tidy()
417         {
418                 bool stillchildren = true;
419                 while (stillchildren)
420                 {
421                         stillchildren = false;
422                         for (std::vector<TreeServer*>::iterator a = Children.begin(); a < Children.end(); a++)
423                         {
424                                 TreeServer* s = (TreeServer*)*a;
425                                 s->Tidy();
426                                 Children.erase(a);
427                                 delete s;
428                                 stillchildren = true;
429                                 break;
430                         }
431                 }
432                 return true;
433         }
434
435         ~TreeServer()
436         {
437                 /* We'd better tidy up after ourselves, eh? */
438                 this->DelHashEntry();
439         }
440 };
441
442 /* The Link class might as well be a struct,
443  * but this is C++ and we don't believe in structs (!).
444  * It holds the entire information of one <link>
445  * tag from the main config file. We maintain a list
446  * of them, and populate the list on rehash/load.
447  */
448
449 class Link
450 {
451  public:
452          std::string Name;
453          std::string IPAddr;
454          int Port;
455          std::string SendPass;
456          std::string RecvPass;
457          unsigned long AutoConnect;
458          time_t NextConnectTime;
459          std::string EncryptionKey;
460          bool HiddenFromStats;
461 };
462
463 /* The usual stuff for inspircd modules,
464  * plus the vector of Link classes which we
465  * use to store the <link> tags from the config
466  * file.
467  */
468 ConfigReader *Conf;
469 std::vector<Link> LinkBlocks;
470
471 /* Yay for fast searches!
472  * This is hundreds of times faster than recursion
473  * or even scanning a linked list, especially when
474  * there are more than a few servers to deal with.
475  * (read as: lots).
476  */
477 TreeServer* FindServer(std::string ServerName)
478 {
479         server_hash::iterator iter;
480         iter = serverlist.find(ServerName);
481         if (iter != serverlist.end())
482         {
483                 return iter->second;
484         }
485         else
486         {
487                 return NULL;
488         }
489 }
490
491 /* Returns the locally connected server we must route a
492  * message through to reach server 'ServerName'. This
493  * only applies to one-to-one and not one-to-many routing.
494  * See the comments for the constructor of TreeServer
495  * for more details.
496  */
497 TreeServer* BestRouteTo(std::string ServerName)
498 {
499         if (ServerName.c_str() == TreeRoot->GetName())
500                 return NULL;
501         TreeServer* Found = FindServer(ServerName);
502         if (Found)
503         {
504                 return Found->GetRoute();
505         }
506         else
507         {
508                 return NULL;
509         }
510 }
511
512 /* Find the first server matching a given glob mask.
513  * Theres no find-using-glob method of hash_map [awwww :-(]
514  * so instead, we iterate over the list using an iterator
515  * and match each one until we get a hit. Yes its slow,
516  * deal with it.
517  */
518 TreeServer* FindServerMask(std::string ServerName)
519 {
520         for (server_hash::iterator i = serverlist.begin(); i != serverlist.end(); i++)
521         {
522                 if (Srv->MatchText(i->first,ServerName))
523                         return i->second;
524         }
525         return NULL;
526 }
527
528 /* A convenient wrapper that returns true if a server exists */
529 bool IsServer(std::string ServerName)
530 {
531         return (FindServer(ServerName) != NULL);
532 }
533
534
535 class cmd_rconnect : public command_t
536 {
537         Module* Creator;
538  public:
539         cmd_rconnect (Module* Callback) : command_t("RCONNECT", 'o', 2), Creator(Callback)
540         {
541                 this->source = "m_spanningtree.so";
542         }                
543
544         void Handle (char **parameters, int pcnt, userrec *user)
545         {
546                 WriteServ(user->fd,"NOTICE %s :*** RCONNECT: Sending remote connect to \002%s\002 to connect server \002%s\002.",user->nick,parameters[0],parameters[1]);
547                 /* Is this aimed at our server? */
548                 if (Srv->MatchText(Srv->GetServerName(),parameters[0]))
549                 {
550                         /* Yes, initiate the given connect */
551                         WriteOpers("*** Remote CONNECT from %s matching \002%s\002, connecting server \002%s\002",user->nick,parameters[0],parameters[1]);
552                         char* para[1];
553                         para[0] = parameters[1];
554                         Creator->OnPreCommand("CONNECT", para, 1, user, true);
555                 }
556         }
557 };
558  
559
560
561 /* Every SERVER connection inbound or outbound is represented by
562  * an object of type TreeSocket.
563  * TreeSockets, being inherited from InspSocket, can be tied into
564  * the core socket engine, and we cn therefore receive activity events
565  * for them, just like activex objects on speed. (yes really, that
566  * is a technical term!) Each of these which relates to a locally
567  * connected server is assocated with it, by hooking it onto a
568  * TreeSocket class using its constructor. In this way, we can
569  * maintain a list of servers, some of which are directly connected,
570  * some of which are not.
571  */
572
573 class TreeSocket : public InspSocket
574 {
575         std::string myhost;
576         std::string in_buffer;
577         ServerState LinkState;
578         std::string InboundServerName;
579         std::string InboundDescription;
580         int num_lost_users;
581         int num_lost_servers;
582         time_t NextPing;
583         bool LastPingWasGood;
584         bool bursting;
585         AES* ctx_in;
586         AES* ctx_out;
587         unsigned int keylength;
588         
589  public:
590
591         /* Because most of the I/O gubbins are encapsulated within
592          * InspSocket, we just call the superclass constructor for
593          * most of the action, and append a few of our own values
594          * to it.
595          */
596         TreeSocket(std::string host, int port, bool listening, unsigned long maxtime)
597                 : InspSocket(host, port, listening, maxtime)
598         {
599                 myhost = host;
600                 this->LinkState = LISTENER;
601                 this->ctx_in = NULL;
602                 this->ctx_out = NULL;
603         }
604
605         TreeSocket(std::string host, int port, bool listening, unsigned long maxtime, std::string ServerName)
606                 : InspSocket(host, port, listening, maxtime)
607         {
608                 myhost = ServerName;
609                 this->LinkState = CONNECTING;
610                 this->ctx_in = NULL;
611                 this->ctx_out = NULL;
612         }
613
614         /* When a listening socket gives us a new file descriptor,
615          * we must associate it with a socket without creating a new
616          * connection. This constructor is used for this purpose.
617          */
618         TreeSocket(int newfd, char* ip)
619                 : InspSocket(newfd, ip)
620         {
621                 this->LinkState = WAIT_AUTH_1;
622                 this->ctx_in = NULL;
623                 this->ctx_out = NULL;
624                 this->SendCapabilities();
625         }
626
627         ~TreeSocket()
628         {
629                 if (ctx_in)
630                         delete ctx_in;
631                 if (ctx_out)
632                         delete ctx_out;
633         }
634
635         void InitAES(std::string key,std::string SName)
636         {
637                 if (key == "")
638                         return;
639
640                 ctx_in = new AES();
641                 ctx_out = new AES();
642                 log(DEBUG,"Initialized AES key %s",key.c_str());
643                 // key must be 16, 24, 32 etc bytes (multiple of 8)
644                 keylength = key.length();
645                 if (!(keylength == 16 || keylength == 24 || keylength == 32))
646                 {
647                         WriteOpers("*** \2ERROR\2: Key length for encryptionkey is not 16, 24 or 32 bytes in length!");
648                         log(DEBUG,"Key length not 16, 24 or 32 characters!");
649                 }
650                 else
651                 {
652                         WriteOpers("*** \2AES\2: Initialized %d bit encryption to server %s",keylength*8,SName.c_str());
653                         ctx_in->MakeKey(key.c_str(), "\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\
654                                 \0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0", keylength, keylength);
655                         ctx_out->MakeKey(key.c_str(), "\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\
656                                 \0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0", keylength, keylength);
657                 }
658         }
659         
660         /* When an outbound connection finishes connecting, we receive
661          * this event, and must send our SERVER string to the other
662          * side. If the other side is happy, as outlined in the server
663          * to server docs on the inspircd.org site, the other side
664          * will then send back its own server string.
665          */
666         virtual bool OnConnected()
667         {
668                 if (this->LinkState == CONNECTING)
669                 {
670                         /* we do not need to change state here. */
671                         for (std::vector<Link>::iterator x = LinkBlocks.begin(); x < LinkBlocks.end(); x++)
672                         {
673                                 if (x->Name == this->myhost)
674                                 {
675                                         Srv->SendOpers("*** Connection to \2"+myhost+"\2["+(x->HiddenFromStats ? "<hidden>" : this->GetIP())+"] established.");
676                                         this->SendCapabilities();
677                                         if (x->EncryptionKey != "")
678                                         {
679                                                 if (!(x->EncryptionKey.length() == 16 || x->EncryptionKey.length() == 24 || x->EncryptionKey.length() == 32))
680                                                 {
681                                                         WriteOpers("\2WARNING\2: Your encryption key is NOT 16, 24 or 32 characters in length, encryption will \2NOT\2 be enabled.");
682                                                 }
683                                                 else
684                                                 {
685                                                         this->WriteLine("AES "+Srv->GetServerName());
686                                                         this->InitAES(x->EncryptionKey,x->Name);
687                                                 }
688                                         }
689                                         /* found who we're supposed to be connecting to, send the neccessary gubbins. */
690                                         this->WriteLine("SERVER "+Srv->GetServerName()+" "+x->SendPass+" 0 :"+Srv->GetServerDescription());
691                                         return true;
692                                 }
693                         }
694                 }
695                 /* There is a (remote) chance that between the /CONNECT and the connection
696                  * being accepted, some muppet has removed the <link> block and rehashed.
697                  * If that happens the connection hangs here until it's closed. Unlikely
698                  * and rather harmless.
699                  */
700                 Srv->SendOpers("*** Connection to \2"+myhost+"\2 lost link tag(!)");
701                 return true;
702         }
703         
704         virtual void OnError(InspSocketError e)
705         {
706                 /* We don't handle this method, because all our
707                  * dirty work is done in OnClose() (see below)
708                  * which is still called on error conditions too.
709                  */
710         }
711
712         virtual int OnDisconnect()
713         {
714                 /* For the same reason as above, we don't
715                  * handle OnDisconnect()
716                  */
717                 return true;
718         }
719
720         /* Recursively send the server tree with distances as hops.
721          * This is used during network burst to inform the other server
722          * (and any of ITS servers too) of what servers we know about.
723          * If at any point any of these servers already exist on the other
724          * end, our connection may be terminated. The hopcounts given
725          * by this function are relative, this doesn't matter so long as
726          * they are all >1, as all the remote servers re-calculate them
727          * to be relative too, with themselves as hop 0.
728          */
729         void SendServers(TreeServer* Current, TreeServer* s, int hops)
730         {
731                 char command[1024];
732                 for (unsigned int q = 0; q < Current->ChildCount(); q++)
733                 {
734                         TreeServer* recursive_server = Current->GetChild(q);
735                         if (recursive_server != s)
736                         {
737                                 snprintf(command,1024,":%s SERVER %s * %d :%s",Current->GetName().c_str(),recursive_server->GetName().c_str(),hops,recursive_server->GetDesc().c_str());
738                                 this->WriteLine(command);
739                                 this->WriteLine(":"+recursive_server->GetName()+" VERSION :"+recursive_server->GetVersion());
740                                 /* down to next level */
741                                 this->SendServers(recursive_server, s, hops+1);
742                         }
743                 }
744         }
745
746         std::string MyCapabilities()
747         {
748                 ServerConfig* Config = Srv->GetConfig();
749                 std::vector<std::string> modlist;
750                 std::string capabilities = "";
751
752                 for (int i = 0; i <= MODCOUNT; i++)
753                 {
754                         if ((modules[i]->GetVersion().Flags & VF_STATIC) || (modules[i]->GetVersion().Flags & VF_COMMON))
755                                 modlist.push_back(Config->module_names[i]);
756                 }
757                 sort(modlist.begin(),modlist.end());
758                 for (unsigned int i = 0; i < modlist.size(); i++)
759                 {
760                         if (i)
761                                 capabilities = capabilities + ",";
762                         capabilities = capabilities + modlist[i];
763                 }
764                 return capabilities;
765         }
766         
767         void SendCapabilities()
768         {
769                 this->WriteLine("CAPAB "+MyCapabilities());
770         }
771
772         bool Capab(std::deque<std::string> params)
773         {
774                 if (params.size() != 1)
775                 {
776                         this->WriteLine("ERROR :Invalid number of parameters for CAPAB");
777                         return false;
778                 }
779
780                 if (params[0] != this->MyCapabilities())
781                 {
782                         std::string quitserver = this->myhost;
783                         if (this->InboundServerName != "")
784                         {
785                                 quitserver = this->InboundServerName;
786                         }
787
788                         WriteOpers("*** \2ERROR\2: Server '%s' does not have the same set of modules loaded, cannot link!",quitserver.c_str());
789                         WriteOpers("*** Our networked module set is: '%s'",this->MyCapabilities().c_str());
790                         WriteOpers("*** Other server's networked module set is: '%s'",params[0].c_str());
791                         WriteOpers("*** These lists must match exactly on both servers. Please correct these errors, and try again.");
792                         this->WriteLine("ERROR :CAPAB mismatch; My capabilities: '"+this->MyCapabilities()+"'");
793                         return false;
794                 }
795
796                 return true;
797         }
798
799         /* This function forces this server to quit, removing this server
800          * and any users on it (and servers and users below that, etc etc).
801          * It's very slow and pretty clunky, but luckily unless your network
802          * is having a REAL bad hair day, this function shouldnt be called
803          * too many times a month ;-)
804          */
805         void SquitServer(TreeServer* Current, CullList* Goners)
806         {
807                 /* recursively squit the servers attached to 'Current'.
808                  * We're going backwards so we don't remove users
809                  * while we still need them ;)
810                  */
811                 for (unsigned int q = 0; q < Current->ChildCount(); q++)
812                 {
813                         TreeServer* recursive_server = Current->GetChild(q);
814                         this->SquitServer(recursive_server,Goners);
815                 }
816                 /* Now we've whacked the kids, whack self */
817                 num_lost_servers++;
818                 for (user_hash::iterator u = clientlist.begin(); u != clientlist.end(); u++)
819                 {
820                         if (!strcasecmp(u->second->server,Current->GetName().c_str()))
821                         {
822                                 std::string qreason = Current->GetName()+" "+std::string(Srv->GetServerName());
823                                 Goners->AddItem(u->second,qreason);
824                                 num_lost_users++;
825                         }
826                 }
827         }
828
829         /* This is a wrapper function for SquitServer above, which
830          * does some validation first and passes on the SQUIT to all
831          * other remaining servers.
832          */
833         void Squit(TreeServer* Current,std::string reason)
834         {
835                 if ((Current) && (Current != TreeRoot))
836                 {
837                         std::deque<std::string> params;
838                         params.push_back(Current->GetName());
839                         params.push_back(":"+reason);
840                         DoOneToAllButSender(Current->GetParent()->GetName(),"SQUIT",params,Current->GetName());
841                         if (Current->GetParent() == TreeRoot)
842                         {
843                                 Srv->SendOpers("Server \002"+Current->GetName()+"\002 split: "+reason);
844                         }
845                         else
846                         {
847                                 Srv->SendOpers("Server \002"+Current->GetName()+"\002 split from server \002"+Current->GetParent()->GetName()+"\002 with reason: "+reason);
848                         }
849                         num_lost_servers = 0;
850                         num_lost_users = 0;
851                         CullList* Goners = new CullList();
852                         SquitServer(Current, Goners);
853                         Goners->Apply();
854                         Current->Tidy();
855                         Current->GetParent()->DelChild(Current);
856                         delete Current;
857                         delete Goners;
858                         WriteOpers("Netsplit complete, lost \002%d\002 users on \002%d\002 servers.", num_lost_users, num_lost_servers);
859                 }
860                 else
861                 {
862                         log(DEFAULT,"Squit from unknown server");
863                 }
864         }
865
866         /* FMODE command */
867         bool ForceMode(std::string source, std::deque<std::string> params)
868         {
869                 userrec* who = new userrec;
870                 who->fd = FD_MAGIC_NUMBER;
871                 if (params.size() < 2)
872                         return true;
873                 char* modelist[255];
874                 for (unsigned int q = 0; q < params.size(); q++)
875                 {
876                         modelist[q] = (char*)params[q].c_str();
877                 }
878                 Srv->SendMode(modelist,params.size(),who);
879                 DoOneToAllButSender(source,"FMODE",params,source);
880                 delete who;
881                 return true;
882         }
883
884         /* FTOPIC command */
885         bool ForceTopic(std::string source, std::deque<std::string> params)
886         {
887                 if (params.size() != 4)
888                         return true;
889                 time_t ts = atoi(params[1].c_str());
890                 std::string nsource = source;
891
892                 chanrec* c = Srv->FindChannel(params[0]);
893                 if (c)
894                 {
895                         if ((ts >= c->topicset) || (!*c->topic))
896                         {
897                                 std::string oldtopic = c->topic;
898                                 strlcpy(c->topic,params[3].c_str(),MAXTOPIC);
899                                 strlcpy(c->setby,params[2].c_str(),NICKMAX);
900                                 c->topicset = ts;
901                                 /* if the topic text is the same as the current topic,
902                                  * dont bother to send the TOPIC command out, just silently
903                                  * update the set time and set nick.
904                                  */
905                                 if (oldtopic != params[3])
906                                 {
907                                         userrec* user = Srv->FindNick(source);
908                                         if (!user)
909                                         {
910                                                 WriteChannelWithServ((char*)source.c_str(), c, "TOPIC %s :%s", c->name, c->topic);
911                                         }
912                                         else
913                                         {
914                                                 WriteChannel(c, user, "TOPIC %s :%s", c->name, c->topic);
915                                                 nsource = user->server;
916                                         }
917                                 }
918                         }
919                         
920                 }
921                 
922                 /* all done, send it on its way */
923                 params[3] = ":" + params[3];
924                 DoOneToAllButSender(source,"FTOPIC",params,nsource);
925
926                 return true;
927         }
928
929         /* FJOIN, similar to unreal SJOIN */
930         bool ForceJoin(std::string source, std::deque<std::string> params)
931         {
932                 if (params.size() < 3)
933                         return true;
934
935                 char first[MAXBUF];
936                 char modestring[MAXBUF];
937                 char* mode_users[127];
938                 mode_users[0] = first;
939                 mode_users[1] = modestring;
940                 strcpy(mode_users[1],"+");
941                 unsigned int modectr = 2;
942                 
943                 userrec* who = NULL;
944                 std::string channel = params[0];
945                 time_t TS = atoi(params[1].c_str());
946                 char* key = "";
947                 
948                 chanrec* chan = Srv->FindChannel(channel);
949                 if (chan)
950                 {
951                         key = chan->key;
952                 }
953                 strlcpy(mode_users[0],channel.c_str(),MAXBUF);
954
955                 /* default is a high value, which if we dont have this
956                  * channel will let the other side apply their modes.
957                  */
958                 time_t ourTS = time(NULL)+600;
959                 chanrec* us = Srv->FindChannel(channel);
960                 if (us)
961                 {
962                         ourTS = us->age;
963                 }
964
965                 log(DEBUG,"FJOIN detected, our TS=%lu, their TS=%lu",ourTS,TS);
966
967                 /* do this first, so our mode reversals are correctly received by other servers
968                  * if there is a TS collision.
969                  */
970                 DoOneToAllButSender(source,"FJOIN",params,source);
971                 
972                 for (unsigned int usernum = 2; usernum < params.size(); usernum++)
973                 {
974                         /* process one channel at a time, applying modes. */
975                         char* usr = (char*)params[usernum].c_str();
976                         /* Safety check just to make sure someones not sent us an FJOIN full of spaces
977                          * (is this even possible?) */
978                         if (usr && *usr)
979                         {
980                                 char permissions = *usr;
981                                 switch (permissions)
982                                 {
983                                         case '@':
984                                                 usr++;
985                                                 mode_users[modectr++] = usr;
986                                                 strlcat(modestring,"o",MAXBUF);
987                                         break;
988                                         case '%':
989                                                 usr++;
990                                                 mode_users[modectr++] = usr;
991                                                 strlcat(modestring,"h",MAXBUF);
992                                         break;
993                                         case '+':
994                                                 usr++;
995                                                 mode_users[modectr++] = usr;
996                                                 strlcat(modestring,"v",MAXBUF);
997                                         break;
998                                 }
999                                 who = Srv->FindNick(usr);
1000                                 if (who)
1001                                 {
1002                                         Srv->JoinUserToChannel(who,channel,key);
1003                                         if (modectr >= (MAXMODES-1))
1004                                         {
1005                                                 /* theres a mode for this user. push them onto the mode queue, and flush it
1006                                                  * if there are more than MAXMODES to go.
1007                                                  */
1008                                                 if ((ourTS >= TS) || (Srv->IsUlined(who->server)))
1009                                                 {
1010                                                         /* We also always let u-lined clients win, no matter what the TS value */
1011                                                         log(DEBUG,"Our our channel newer than theirs, accepting their modes");
1012                                                         Srv->SendMode(mode_users,modectr,who);
1013                                                 }
1014                                                 else
1015                                                 {
1016                                                         log(DEBUG,"Their channel newer than ours, bouncing their modes");
1017                                                         /* bouncy bouncy! */
1018                                                         std::deque<std::string> params;
1019                                                         /* modes are now being UNSET... */
1020                                                         *mode_users[1] = '-';
1021                                                         for (unsigned int x = 0; x < modectr; x++)
1022                                                         {
1023                                                                 params.push_back(mode_users[x]);
1024                                                         }
1025                                                         // tell everyone to bounce the modes. bad modes, bad!
1026                                                         DoOneToMany(Srv->GetServerName(),"FMODE",params);
1027                                                 }
1028                                                 strcpy(mode_users[1],"+");
1029                                                 modectr = 2;
1030                                         }
1031                                 }
1032                         }
1033                 }
1034                 /* there werent enough modes built up to flush it during FJOIN,
1035                  * or, there are a number left over. flush them out.
1036                  */
1037                 if ((modectr > 2) && (who))
1038                 {
1039                         if (ourTS >= TS)
1040                         {
1041                                 log(DEBUG,"Our our channel newer than theirs, accepting their modes");
1042                                 Srv->SendMode(mode_users,modectr,who);
1043                         }
1044                         else
1045                         {
1046                                 log(DEBUG,"Their channel newer than ours, bouncing their modes");
1047                                 std::deque<std::string> params;
1048                                 *mode_users[1] = '-';
1049                                 for (unsigned int x = 0; x < modectr; x++)
1050                                 {
1051                                         params.push_back(mode_users[x]);
1052                                 }
1053                                 DoOneToMany(Srv->GetServerName(),"FMODE",params);
1054                         }
1055                 }
1056                 return true;
1057         }
1058
1059         /* NICK command */
1060         bool IntroduceClient(std::string source, std::deque<std::string> params)
1061         {
1062                 if (params.size() < 8)
1063                         return true;
1064                 if (params.size() > 8)
1065                 {
1066                         this->WriteLine(":"+Srv->GetServerName()+" KILL "+params[1]+" :Invalid client introduction ("+params[1]+"?)");
1067                         return true;
1068                 }
1069                 // NICK age nick host dhost ident +modes ip :gecos
1070                 //   0   123  4 56   7
1071                 time_t age = atoi(params[0].c_str());
1072                 std::string modes = params[5];
1073                 while (*(modes.c_str()) == '+')
1074                 {
1075                         char* m = (char*)modes.c_str();
1076                         m++;
1077                         modes = m;
1078                 }
1079                 char* tempnick = (char*)params[1].c_str();
1080                 log(DEBUG,"Introduce client %s!%s@%s",tempnick,params[4].c_str(),params[2].c_str());
1081                 
1082                 user_hash::iterator iter;
1083                 iter = clientlist.find(tempnick);
1084                 if (iter != clientlist.end())
1085                 {
1086                         // nick collision
1087                         log(DEBUG,"Nick collision on %s!%s@%s: %lu %lu",tempnick,params[4].c_str(),params[2].c_str(),(unsigned long)age,(unsigned long)iter->second->age);
1088                         this->WriteLine(":"+Srv->GetServerName()+" KILL "+tempnick+" :Nickname collision");
1089                         return true;
1090                 }
1091
1092                 clientlist[tempnick] = new userrec();
1093                 clientlist[tempnick]->fd = FD_MAGIC_NUMBER;
1094                 strlcpy(clientlist[tempnick]->nick, tempnick,NICKMAX);
1095                 strlcpy(clientlist[tempnick]->host, params[2].c_str(),160);
1096                 strlcpy(clientlist[tempnick]->dhost, params[3].c_str(),160);
1097                 clientlist[tempnick]->server = (char*)FindServerNamePtr(source.c_str());
1098                 strlcpy(clientlist[tempnick]->ident, params[4].c_str(),IDENTMAX);
1099                 strlcpy(clientlist[tempnick]->fullname, params[7].c_str(),MAXGECOS);
1100                 clientlist[tempnick]->registered = 7;
1101                 clientlist[tempnick]->signon = age;
1102                 strlcpy(clientlist[tempnick]->modes, modes.c_str(),53);
1103                 inet_aton(params[6].c_str(),&clientlist[tempnick]->ip4);
1104
1105                 ucrec a;
1106                 a.channel = NULL;
1107                 a.uc_modes = 0;
1108                 for (int i = 0; i < MAXCHANS; i++)
1109                         clientlist[tempnick]->chans.push_back(a);
1110
1111                 if (!this->bursting)
1112                 {
1113                         WriteOpers("*** Client connecting at %s: %s!%s@%s [%s]",clientlist[tempnick]->server,clientlist[tempnick]->nick,clientlist[tempnick]->ident,clientlist[tempnick]->host,(char*)inet_ntoa(clientlist[tempnick]->ip4));
1114                 }
1115                 params[7] = ":" + params[7];
1116                 DoOneToAllButSender(source,"NICK",params,source);
1117
1118                 // Increment the Source Servers User Count..
1119                 TreeServer* SourceServer = FindServer(source);
1120                 if (SourceServer)
1121                 {
1122                         SourceServer->AddUserCount();
1123                 }
1124
1125                 return true;
1126         }
1127
1128         /* Send one or more FJOINs for a channel of users.
1129          * If the length of a single line is more than 480-NICKMAX
1130          * in length, it is split over multiple lines.
1131          */
1132         void SendFJoins(TreeServer* Current, chanrec* c)
1133         {
1134                 log(DEBUG,"Sending FJOINs to other server for %s",c->name);
1135                 char list[MAXBUF];
1136                 std::string individual_halfops = ":"+Srv->GetServerName()+" FMODE "+c->name;
1137                 snprintf(list,MAXBUF,":%s FJOIN %s %lu",Srv->GetServerName().c_str(),c->name,(unsigned long)c->age);
1138                 std::map<char*,char*> *ulist = c->GetUsers();
1139                 std::vector<userrec*> specific_halfop;
1140                 std::vector<userrec*> specific_voice;
1141                 for (std::map<char*,char*>::iterator i = ulist->begin(); i != ulist->end(); i++)
1142                 {
1143                         char* o = i->second;
1144                         userrec* otheruser = (userrec*)o;
1145                         strlcat(list," ",MAXBUF);
1146                         int x = cflags(otheruser,c);
1147                         if ((x & UCMODE_HOP) && (x & UCMODE_OP))
1148                         {
1149                                 specific_halfop.push_back(otheruser);
1150                         }
1151                         if (((x & UCMODE_HOP) || (x & UCMODE_OP)) && (x & UCMODE_VOICE))
1152                         {
1153                                 specific_voice.push_back(otheruser);
1154                         }
1155
1156                         char* n = "";
1157                         if (x & UCMODE_OP)
1158                         {
1159                                 n = "@";
1160                         }
1161                         else if (x & UCMODE_HOP)
1162                         {
1163                                 n = "%";
1164                         }
1165                         else if (x & UCMODE_VOICE)
1166                         {
1167                                 n = "+";
1168                         }
1169
1170                         strlcat(list,n,MAXBUF);
1171                         strlcat(list,otheruser->nick,MAXBUF);
1172                         if (strlen(list)>(480-NICKMAX))
1173                         {
1174                                 log(DEBUG,"FJOIN line wrapped");
1175                                 this->WriteLine(list);
1176                                 snprintf(list,MAXBUF,":%s FJOIN %s %lu",Srv->GetServerName().c_str(),c->name,(unsigned long)c->age);
1177                                 for (unsigned int y = 0; y < specific_voice.size(); y++)
1178                                 {
1179                                         this->WriteLine(":"+Srv->GetServerName()+" FMODE "+c->name+" +v "+specific_voice[y]->nick);
1180                                 }
1181                                 for (unsigned int y = 0; y < specific_halfop.size(); y++)
1182                                 {
1183                                         this->WriteLine(":"+Srv->GetServerName()+" FMODE "+c->name+" +h "+specific_halfop[y]->nick);
1184                                 }
1185                         }
1186                 }
1187                 if (list[strlen(list)-1] != ':')
1188                 {
1189                         log(DEBUG,"Final FJOIN line");
1190                         this->WriteLine(list);
1191                         for (unsigned int y = 0; y < specific_voice.size(); y++)
1192                         {
1193                                 this->WriteLine(":"+Srv->GetServerName()+" FMODE "+c->name+" +v "+specific_voice[y]->nick);
1194                         }
1195                         for (unsigned int y = 0; y < specific_halfop.size(); y++)
1196                         {
1197                                 this->WriteLine(":"+Srv->GetServerName()+" FMODE "+c->name+" +h "+specific_halfop[y]->nick);
1198                         }
1199                 }
1200         }
1201
1202         /* Send G, Q, Z and E lines */
1203         void SendXLines(TreeServer* Current)
1204         {
1205                 char data[MAXBUF];
1206                 const char* sn = Srv->GetServerName().c_str();
1207                 /* Yes, these arent too nice looking, but they get the job done */
1208                 for (std::vector<ZLine>::iterator i = zlines.begin(); i != zlines.end(); i++)
1209                 {
1210                         snprintf(data,MAXBUF,":%s ADDLINE Z %s %s %lu %lu :%s",sn,i->ipaddr,i->source,(unsigned long)i->set_time,(unsigned long)i->duration,i->reason);
1211                         this->WriteLine(data);
1212                 }
1213                 for (std::vector<QLine>::iterator i = qlines.begin(); i != qlines.end(); i++)
1214                 {
1215                         snprintf(data,MAXBUF,":%s ADDLINE Q %s %s %lu %lu :%s",sn,i->nick,i->source,(unsigned long)i->set_time,(unsigned long)i->duration,i->reason);
1216                         this->WriteLine(data);
1217                 }
1218                 for (std::vector<GLine>::iterator i = glines.begin(); i != glines.end(); i++)
1219                 {
1220                         snprintf(data,MAXBUF,":%s ADDLINE G %s %s %lu %lu :%s",sn,i->hostmask,i->source,(unsigned long)i->set_time,(unsigned long)i->duration,i->reason);
1221                         this->WriteLine(data);
1222                 }
1223                 for (std::vector<ELine>::iterator i = elines.begin(); i != elines.end(); i++)
1224                 {
1225                         snprintf(data,MAXBUF,":%s ADDLINE E %s %s %lu %lu :%s",sn,i->hostmask,i->source,(unsigned long)i->set_time,(unsigned long)i->duration,i->reason);
1226                         this->WriteLine(data);
1227                 }
1228                 for (std::vector<ZLine>::iterator i = pzlines.begin(); i != pzlines.end(); i++)
1229                 {
1230                         snprintf(data,MAXBUF,":%s ADDLINE Z %s %s %lu %lu :%s",sn,i->ipaddr,i->source,(unsigned long)i->set_time,(unsigned long)i->duration,i->reason);
1231                         this->WriteLine(data);
1232                 }
1233                 for (std::vector<QLine>::iterator i = pqlines.begin(); i != pqlines.end(); i++)
1234                 {
1235                         snprintf(data,MAXBUF,":%s ADDLINE Q %s %s %lu %lu :%s",sn,i->nick,i->source,(unsigned long)i->set_time,(unsigned long)i->duration,i->reason);
1236                         this->WriteLine(data);
1237                 }
1238                 for (std::vector<GLine>::iterator i = pglines.begin(); i != pglines.end(); i++)
1239                 {
1240                         snprintf(data,MAXBUF,":%s ADDLINE G %s %s %lu %lu :%s",sn,i->hostmask,i->source,(unsigned long)i->set_time,(unsigned long)i->duration,i->reason);
1241                         this->WriteLine(data);
1242                 }
1243                 for (std::vector<ELine>::iterator i = pelines.begin(); i != pelines.end(); i++)
1244                 {
1245                         snprintf(data,MAXBUF,":%s ADDLINE E %s %s %lu %lu :%s",sn,i->hostmask,i->source,(unsigned long)i->set_time,(unsigned long)i->duration,i->reason);
1246                         this->WriteLine(data);
1247                 }
1248         }
1249
1250         /* Send channel modes and topics */
1251         void SendChannelModes(TreeServer* Current)
1252         {
1253                 char data[MAXBUF];
1254                 std::deque<std::string> list;
1255                 const char* sn = Srv->GetServerName().c_str();
1256                 for (chan_hash::iterator c = chanlist.begin(); c != chanlist.end(); c++)
1257                 {
1258                         SendFJoins(Current, c->second);
1259                         snprintf(data,MAXBUF,":%s FMODE %s +%s",sn,c->second->name,chanmodes(c->second,true));
1260                         this->WriteLine(data);
1261                         if (*c->second->topic)
1262                         {
1263                                 snprintf(data,MAXBUF,":%s FTOPIC %s %lu %s :%s",sn,c->second->name,(unsigned long)c->second->topicset,c->second->setby,c->second->topic);
1264                                 this->WriteLine(data);
1265                         }
1266                         for (BanList::iterator b = c->second->bans.begin(); b != c->second->bans.end(); b++)
1267                         {
1268                                 snprintf(data,MAXBUF,":%s FMODE %s +b %s",sn,c->second->name,b->data);
1269                                 this->WriteLine(data);
1270                         }
1271                         FOREACH_MOD(I_OnSyncChannel,OnSyncChannel(c->second,(Module*)TreeProtocolModule,(void*)this));
1272                         list.clear();
1273                         c->second->GetExtList(list);
1274                         for (unsigned int j = 0; j < list.size(); j++)
1275                         {
1276                                 FOREACH_MOD(I_OnSyncChannelMetaData,OnSyncChannelMetaData(c->second,(Module*)TreeProtocolModule,(void*)this,list[j]));
1277                         }
1278                 }
1279         }
1280
1281         /* send all users and their oper state/modes */
1282         void SendUsers(TreeServer* Current)
1283         {
1284                 char data[MAXBUF];
1285                 std::deque<std::string> list;
1286                 for (user_hash::iterator u = clientlist.begin(); u != clientlist.end(); u++)
1287                 {
1288                         if (u->second->registered == 7)
1289                         {
1290                                 snprintf(data,MAXBUF,":%s NICK %lu %s %s %s %s +%s %s :%s",u->second->server,(unsigned long)u->second->age,u->second->nick,u->second->host,u->second->dhost,u->second->ident,u->second->modes,(char*)inet_ntoa(u->second->ip4),u->second->fullname);
1291                                 this->WriteLine(data);
1292                                 if (*u->second->oper)
1293                                 {
1294                                         this->WriteLine(":"+std::string(u->second->nick)+" OPERTYPE "+std::string(u->second->oper));
1295                                 }
1296                                 if (*u->second->awaymsg)
1297                                 {
1298                                         this->WriteLine(":"+std::string(u->second->nick)+" AWAY :"+std::string(u->second->awaymsg));
1299                                 }
1300                                 FOREACH_MOD(I_OnSyncUser,OnSyncUser(u->second,(Module*)TreeProtocolModule,(void*)this));
1301                                 list.clear();
1302                                 u->second->GetExtList(list);
1303                                 for (unsigned int j = 0; j < list.size(); j++)
1304                                 {
1305                                         FOREACH_MOD(I_OnSyncUserMetaData,OnSyncUserMetaData(u->second,(Module*)TreeProtocolModule,(void*)this,list[j]));
1306                                 }
1307                         }
1308                 }
1309         }
1310
1311         /* This function is called when we want to send a netburst to a local
1312          * server. There is a set order we must do this, because for example
1313          * users require their servers to exist, and channels require their
1314          * users to exist. You get the idea.
1315          */
1316         void DoBurst(TreeServer* s)
1317         {
1318                 Srv->SendOpers("*** Bursting to \2"+s->GetName()+"\2.");
1319                 this->WriteLine("BURST");
1320                 /* send our version string */
1321                 this->WriteLine(":"+Srv->GetServerName()+" VERSION :"+Srv->GetVersion());
1322                 /* Send server tree */
1323                 this->SendServers(TreeRoot,s,1);
1324                 /* Send users and their oper status */
1325                 this->SendUsers(s);
1326                 /* Send everything else (channel modes, xlines etc) */
1327                 this->SendChannelModes(s);
1328                 this->SendXLines(s);
1329                 FOREACH_MOD(I_OnSyncOtherMetaData,OnSyncOtherMetaData((Module*)TreeProtocolModule,(void*)this));
1330                 this->WriteLine("ENDBURST");
1331                 Srv->SendOpers("*** Finished bursting to \2"+s->GetName()+"\2.");
1332         }
1333
1334         /* This function is called when we receive data from a remote
1335          * server. We buffer the data in a std::string (it doesnt stay
1336          * there for long), reading using InspSocket::Read() which can
1337          * read up to 16 kilobytes in one operation.
1338          *
1339          * IF THIS FUNCTION RETURNS FALSE, THE CORE CLOSES AND DELETES
1340          * THE SOCKET OBJECT FOR US.
1341          */
1342         virtual bool OnDataReady()
1343         {
1344                 char* data = this->Read();
1345                 /* Check that the data read is a valid pointer and it has some content */
1346                 if (data && *data)
1347                 {
1348                         this->in_buffer.append(data);
1349                         /* While there is at least one new line in the buffer,
1350                          * do something useful (we hope!) with it.
1351                          */
1352                         while (in_buffer.find("\n") != std::string::npos)
1353                         {
1354                                 std::string ret = in_buffer.substr(0,in_buffer.find("\n")-1);
1355                                 in_buffer = in_buffer.substr(in_buffer.find("\n")+1,in_buffer.length()-in_buffer.find("\n"));
1356                                 if (ret.find("\r") != std::string::npos)
1357                                         ret = in_buffer.substr(0,in_buffer.find("\r")-1);
1358                                 /* Process this one, abort if it
1359                                  * didnt return true.
1360                                  */
1361                                 if (this->ctx_in)
1362                                 {
1363                                         char out[1024];
1364                                         char result[1024];
1365                                         memset(result,0,1024);
1366                                         memset(out,0,1024);
1367                                         log(DEBUG,"Original string '%s'",ret.c_str());
1368                                         /* ERROR + CAPAB is still allowed unencryped */
1369                                         if ((ret.substr(0,7) != "ERROR :") && (ret.substr(0,6) != "CAPAB "))
1370                                         {
1371                                                 int nbytes = from64tobits(out, ret.c_str(), 1024);
1372                                                 if ((nbytes > 0) && (nbytes < 1024))
1373                                                 {
1374                                                         log(DEBUG,"m_spanningtree: decrypt %d bytes",nbytes);
1375                                                         ctx_in->Decrypt(out, result, nbytes, 1);
1376                                                         for (int t = 0; t < nbytes; t++)
1377                                                                 if (result[t] == '\7') result[t] = 0;
1378                                                         ret = result;
1379                                                 }
1380                                         }
1381                                 }
1382                                 if (!this->ProcessLine(ret))
1383                                 {
1384                                         return false;
1385                                 }
1386                         }
1387                 }
1388                 /* EAGAIN returns an empty but non-NULL string, so this
1389                  * evaluates to TRUE for EAGAIN but to FALSE for EOF.
1390                  */
1391                 return (data != NULL);
1392         }
1393
1394         int WriteLine(std::string line)
1395         {
1396                 log(DEBUG,"OUT: %s",line.c_str());
1397                 if (this->ctx_out)
1398                 {
1399                         log(DEBUG,"AES context");
1400                         char result[10240];
1401                         char result64[10240];
1402                         if (this->keylength)
1403                         {
1404                                 while (line.length() % this->keylength != 0)
1405                                 {
1406                                         // pad it to be a multiple of the key length
1407                                         line = line + "\7";
1408                                 }
1409                         }
1410                         unsigned int ll = line.length();
1411                         log(DEBUG,"Plaintext line with padding = %d chars",ll);
1412                         ctx_out->Encrypt(line.c_str(), result, ll, 1);
1413                         log(DEBUG,"Encrypted.");
1414                         to64frombits((unsigned char*)result64,(unsigned char*)result,ll);
1415                         line = result64;
1416                         log(DEBUG,"Encrypted: %s",line.c_str());
1417                         //int from64tobits(char *out, const char *in, int maxlen);
1418                 }
1419                 return this->Write(line + "\r\n");
1420         }
1421
1422         /* Handle ERROR command */
1423         bool Error(std::deque<std::string> &params)
1424         {
1425                 if (params.size() < 1)
1426                         return false;
1427                 WriteOpers("*** ERROR from %s: %s",(InboundServerName != "" ? InboundServerName.c_str() : myhost.c_str()),params[0].c_str());
1428                 /* we will return false to cause the socket to close. */
1429                 return false;
1430         }
1431
1432         /* Because the core won't let users or even SERVERS set +o,
1433          * we use the OPERTYPE command to do this.
1434          */
1435         bool OperType(std::string prefix, std::deque<std::string> &params)
1436         {
1437                 if (params.size() != 1)
1438                         return true;
1439                 std::string opertype = params[0];
1440                 userrec* u = Srv->FindNick(prefix);
1441                 if (u)
1442                 {
1443                         strlcpy(u->oper,opertype.c_str(),NICKMAX);
1444                         if (!strchr(u->modes,'o'))
1445                         {
1446                                 strcat(u->modes,"o");
1447                         }
1448                         DoOneToAllButSender(u->nick,"OPERTYPE",params,u->server);
1449                 }
1450                 return true;
1451         }
1452
1453         /* Because Andy insists that services-compatible servers must
1454          * implement SVSNICK and SVSJOIN, that's exactly what we do :p
1455          */
1456         bool ForceNick(std::string prefix, std::deque<std::string> &params)
1457         {
1458                 if (params.size() < 3)
1459                         return true;
1460
1461                 userrec* u = Srv->FindNick(params[0]);
1462
1463                 if (u)
1464                 {
1465                         DoOneToAllButSender(prefix,"SVSNICK",params,prefix);
1466                         if (IS_LOCAL(u))
1467                         {
1468                                 std::deque<std::string> par;
1469                                 par.push_back(params[1]);
1470                                 DoOneToMany(u->nick,"NICK",par);
1471                                 Srv->ChangeUserNick(u,params[1]);
1472                                 u->age = atoi(params[2].c_str());
1473                         }
1474                 }
1475                 return true;
1476         }
1477
1478         bool ServiceJoin(std::string prefix, std::deque<std::string> &params)
1479         {
1480                 if (params.size() < 2)
1481                         return true;
1482
1483                 userrec* u = Srv->FindNick(params[0]);
1484
1485                 if (u)
1486                 {
1487                         Srv->JoinUserToChannel(u,params[1],"");
1488                         DoOneToAllButSender(prefix,"SVSJOIN",params,prefix);
1489                 }
1490                 return true;
1491         }
1492
1493         bool RemoteRehash(std::string prefix, std::deque<std::string> &params)
1494         {
1495                 if (params.size() < 1)
1496                         return false;
1497
1498                 std::string servermask = params[0];
1499
1500                 if (Srv->MatchText(Srv->GetServerName(),servermask))
1501                 {
1502                         Srv->SendOpers("*** Remote rehash initiated from server \002"+prefix+"\002.");
1503                         Srv->RehashServer();
1504                         ReadConfiguration(false);
1505                 }
1506                 DoOneToAllButSender(prefix,"REHASH",params,prefix);
1507                 return true;
1508         }
1509
1510         bool RemoteKill(std::string prefix, std::deque<std::string> &params)
1511         {
1512                 if (params.size() != 2)
1513                         return true;
1514
1515                 std::string nick = params[0];
1516                 userrec* u = Srv->FindNick(prefix);
1517                 userrec* who = Srv->FindNick(nick);
1518
1519                 if (who)
1520                 {
1521                         /* Prepend kill source, if we don't have one */
1522                         std::string sourceserv = prefix;
1523                         if (u)
1524                         {
1525                                 sourceserv = u->server;
1526                         }
1527                         if (*(params[1].c_str()) != '[')
1528                         {
1529                                 params[1] = "[" + sourceserv + "] Killed (" + params[1] +")";
1530                         }
1531                         std::string reason = params[1];
1532                         params[1] = ":" + params[1];
1533                         DoOneToAllButSender(prefix,"KILL",params,sourceserv);
1534                         Srv->QuitUser(who,reason);
1535                 }
1536                 return true;
1537         }
1538
1539         bool LocalPong(std::string prefix, std::deque<std::string> &params)
1540         {
1541                 if (params.size() < 1)
1542                         return true;
1543
1544                 if (params.size() == 1)
1545                 {
1546                         TreeServer* ServerSource = FindServer(prefix);
1547                         if (ServerSource)
1548                         {
1549                                 ServerSource->SetPingFlag();
1550                         }
1551                 }
1552                 else
1553                 {
1554                         std::string forwardto = params[1];
1555                         if (forwardto == Srv->GetServerName())
1556                         {
1557                                 /*
1558                                  * this is a PONG for us
1559                                  * if the prefix is a user, check theyre local, and if they are,
1560                                  * dump the PONG reply back to their fd. If its a server, do nowt.
1561                                  * Services might want to send these s->s, but we dont need to yet.
1562                                  */
1563                                 userrec* u = Srv->FindNick(prefix);
1564
1565                                 if (u)
1566                                 {
1567                                         WriteServ(u->fd,"PONG %s %s",params[0].c_str(),params[1].c_str());
1568                                 }
1569                         }
1570                         else
1571                         {
1572                                 // not for us, pass it on :)
1573                                 DoOneToOne(prefix,"PONG",params,forwardto);
1574                         }
1575                 }
1576
1577                 return true;
1578         }
1579         
1580         bool MetaData(std::string prefix, std::deque<std::string> &params)
1581         {
1582                 if (params.size() < 3)
1583                         return true;
1584
1585                 TreeServer* ServerSource = FindServer(prefix);
1586
1587                 if (ServerSource)
1588                 {
1589                         if (params[0] == "*")
1590                         {
1591                                 FOREACH_MOD(I_OnDecodeMetaData,OnDecodeMetaData(TYPE_OTHER,NULL,params[1],params[2]));
1592                         }
1593                         else if (*(params[0].c_str()) == '#')
1594                         {
1595                                 chanrec* c = Srv->FindChannel(params[0]);
1596                                 if (c)
1597                                 {
1598                                         FOREACH_MOD(I_OnDecodeMetaData,OnDecodeMetaData(TYPE_CHANNEL,c,params[1],params[2]));
1599                                 }
1600                         }
1601                         else if (*(params[0].c_str()) != '#')
1602                         {
1603                                 userrec* u = Srv->FindNick(params[0]);
1604                                 if (u)
1605                                 {
1606                                         FOREACH_MOD(I_OnDecodeMetaData,OnDecodeMetaData(TYPE_USER,u,params[1],params[2]));
1607                                 }
1608                         }
1609                 }
1610
1611                 params[2] = ":" + params[2];
1612                 DoOneToAllButSender(prefix,"METADATA",params,prefix);
1613                 return true;
1614         }
1615
1616         bool ServerVersion(std::string prefix, std::deque<std::string> &params)
1617         {
1618                 if (params.size() < 1)
1619                         return true;
1620
1621                 TreeServer* ServerSource = FindServer(prefix);
1622
1623                 if (ServerSource)
1624                 {
1625                         ServerSource->SetVersion(params[0]);
1626                 }
1627                 params[0] = ":" + params[0];
1628                 DoOneToAllButSender(prefix,"VERSION",params,prefix);
1629                 return true;
1630         }
1631
1632         bool ChangeHost(std::string prefix, std::deque<std::string> &params)
1633         {
1634                 if (params.size() < 1)
1635                         return true;
1636
1637                 userrec* u = Srv->FindNick(prefix);
1638
1639                 if (u)
1640                 {
1641                         Srv->ChangeHost(u,params[0]);
1642                         DoOneToAllButSender(prefix,"FHOST",params,u->server);
1643                 }
1644                 return true;
1645         }
1646
1647         bool AddLine(std::string prefix, std::deque<std::string> &params)
1648         {
1649                 if (params.size() < 6)
1650                         return true;
1651
1652                 bool propogate = false;
1653
1654                 switch (*(params[0].c_str()))
1655                 {
1656                         case 'Z':
1657                                 propogate = add_zline(atoi(params[4].c_str()), params[2].c_str(), params[5].c_str(), params[1].c_str());
1658                                 zline_set_creation_time((char*)params[1].c_str(), atoi(params[3].c_str()));
1659                         break;
1660                         case 'Q':
1661                                 propogate = add_qline(atoi(params[4].c_str()), params[2].c_str(), params[5].c_str(), params[1].c_str());
1662                                 qline_set_creation_time((char*)params[1].c_str(), atoi(params[3].c_str()));
1663                         break;
1664                         case 'E':
1665                                 propogate = add_eline(atoi(params[4].c_str()), params[2].c_str(), params[5].c_str(), params[1].c_str());
1666                                 eline_set_creation_time((char*)params[1].c_str(), atoi(params[3].c_str()));
1667                         break;
1668                         case 'G':
1669                                 propogate = add_gline(atoi(params[4].c_str()), params[2].c_str(), params[5].c_str(), params[1].c_str());
1670                                 gline_set_creation_time((char*)params[1].c_str(), atoi(params[3].c_str()));
1671                         break;
1672                         case 'K':
1673                                 propogate = add_kline(atoi(params[4].c_str()), params[2].c_str(), params[5].c_str(), params[1].c_str());
1674                         break;
1675                         default:
1676                                 /* Just in case... */
1677                                 Srv->SendOpers("*** \2WARNING\2: Invalid xline type '"+params[0]+"' sent by server "+prefix+", ignored!");
1678                                 propogate = false;
1679                         break;
1680                 }
1681
1682                 /* Send it on its way */
1683                 if (propogate)
1684                 {
1685                         params[5] = ":" + params[5];
1686                         DoOneToAllButSender(prefix,"ADDLINE",params,prefix);
1687                 }
1688                 if (!this->bursting)
1689                 {
1690                         apply_lines(APPLY_ZLINES|APPLY_GLINES|APPLY_QLINES);
1691                 }
1692                 return true;
1693         }
1694
1695         bool ChangeName(std::string prefix, std::deque<std::string> &params)
1696         {
1697                 if (params.size() < 1)
1698                         return true;
1699
1700                 userrec* u = Srv->FindNick(prefix);
1701
1702                 if (u)
1703                 {
1704                         Srv->ChangeGECOS(u,params[0]);
1705                         params[0] = ":" + params[0];
1706                         DoOneToAllButSender(prefix,"FNAME",params,u->server);
1707                 }
1708                 return true;
1709         }
1710
1711         bool Whois(std::string prefix, std::deque<std::string> &params)
1712         {
1713                 if (params.size() < 1)
1714                         return true;
1715
1716                 log(DEBUG,"In IDLE command");
1717                 userrec* u = Srv->FindNick(prefix);
1718
1719                 if (u)
1720                 {
1721                         log(DEBUG,"USER EXISTS: %s",u->nick);
1722                         // an incoming request
1723                         if (params.size() == 1)
1724                         {
1725                                 userrec* x = Srv->FindNick(params[0]);
1726                                 if ((x) && (x->fd > -1))
1727                                 {
1728                                         userrec* x = Srv->FindNick(params[0]);
1729                                         log(DEBUG,"Got IDLE");
1730                                         char signon[MAXBUF];
1731                                         char idle[MAXBUF];
1732                                         log(DEBUG,"Sending back IDLE 3");
1733                                         snprintf(signon,MAXBUF,"%lu",(unsigned long)x->signon);
1734                                         snprintf(idle,MAXBUF,"%lu",(unsigned long)abs((x->idle_lastmsg)-time(NULL)));
1735                                         std::deque<std::string> par;
1736                                         par.push_back(prefix);
1737                                         par.push_back(signon);
1738                                         par.push_back(idle);
1739                                         // ours, we're done, pass it BACK
1740                                         DoOneToOne(params[0],"IDLE",par,u->server);
1741                                 }
1742                                 else
1743                                 {
1744                                         // not ours pass it on
1745                                         DoOneToOne(prefix,"IDLE",params,x->server);
1746                                 }
1747                         }
1748                         else if (params.size() == 3)
1749                         {
1750                                 std::string who_did_the_whois = params[0];
1751                                 userrec* who_to_send_to = Srv->FindNick(who_did_the_whois);
1752                                 if ((who_to_send_to) && (who_to_send_to->fd > -1))
1753                                 {
1754                                         log(DEBUG,"Got final IDLE");
1755                                         // an incoming reply to a whois we sent out
1756                                         std::string nick_whoised = prefix;
1757                                         unsigned long signon = atoi(params[1].c_str());
1758                                         unsigned long idle = atoi(params[2].c_str());
1759                                         if ((who_to_send_to) && (who_to_send_to->fd > -1))
1760                                                 do_whois(who_to_send_to,u,signon,idle,(char*)nick_whoised.c_str());
1761                                 }
1762                                 else
1763                                 {
1764                                         // not ours, pass it on
1765                                         DoOneToOne(prefix,"IDLE",params,who_to_send_to->server);
1766                                 }
1767                         }
1768                 }
1769                 return true;
1770         }
1771
1772         bool Push(std::string prefix, std::deque<std::string> &params)
1773         {
1774                 if (params.size() < 2)
1775                         return true;
1776
1777                 userrec* u = Srv->FindNick(params[0]);
1778
1779                 if (IS_LOCAL(u))
1780                 {
1781                         // push the raw to the user
1782                         if (Srv->IsUlined(prefix))
1783                         {
1784                                 ::Write(u->fd,"%s",params[1].c_str());
1785                         }
1786                         else
1787                         {
1788                                 log(DEBUG,"PUSH from non-ulined server dropped into the bit-bucket:  :%s PUSH %s :%s",prefix.c_str(),params[0].c_str(),params[1].c_str());
1789                         }
1790                 }
1791                 else
1792                 {
1793                         // continue the raw onwards
1794                         params[1] = ":" + params[1];
1795                         DoOneToOne(prefix,"PUSH",params,u->server);
1796                 }
1797                 return true;
1798         }
1799
1800         bool Time(std::string prefix, std::deque<std::string> &params)
1801         {
1802                 // :source.server TIME remote.server sendernick
1803                 // :remote.server TIME source.server sendernick TS
1804                 if (params.size() == 2)
1805                 {
1806                         // someone querying our time?
1807                         if (Srv->GetServerName() == params[0])
1808                         {
1809                                 userrec* u = Srv->FindNick(params[1]);
1810                                 if (u)
1811                                 {
1812                                         char curtime[256];
1813                                         snprintf(curtime,256,"%lu",(unsigned long)time(NULL));
1814                                         params.push_back(curtime);
1815                                         params[0] = prefix;
1816                                         DoOneToOne(Srv->GetServerName(),"TIME",params,params[0]);
1817                                 }
1818                         }
1819                         else
1820                         {
1821                                 // not us, pass it on
1822                                 userrec* u = Srv->FindNick(params[1]);
1823                                 if (u)
1824                                         DoOneToOne(prefix,"TIME",params,params[0]);
1825                         }
1826                 }
1827                 else if (params.size() == 3)
1828                 {
1829                         // a response to a previous TIME
1830                         userrec* u = Srv->FindNick(params[1]);
1831                         if ((u) && (IS_LOCAL(u)))
1832                         {
1833                         time_t rawtime = atol(params[2].c_str());
1834                         struct tm * timeinfo;
1835                         timeinfo = localtime(&rawtime);
1836                                 char tms[26];
1837                                 snprintf(tms,26,"%s",asctime(timeinfo));
1838                                 tms[24] = 0;
1839                         WriteServ(u->fd,"391 %s %s :%s",u->nick,prefix.c_str(),tms);
1840                         }
1841                         else
1842                         {
1843                                 if (u)
1844                                         DoOneToOne(prefix,"TIME",params,u->server);
1845                         }
1846                 }
1847                 return true;
1848         }
1849         
1850         bool LocalPing(std::string prefix, std::deque<std::string> &params)
1851         {
1852                 if (params.size() < 1)
1853                         return true;
1854
1855                 if (params.size() == 1)
1856                 {
1857                         std::string stufftobounce = params[0];
1858                         this->WriteLine(":"+Srv->GetServerName()+" PONG "+stufftobounce);
1859                         return true;
1860                 }
1861                 else
1862                 {
1863                         std::string forwardto = params[1];
1864                         if (forwardto == Srv->GetServerName())
1865                         {
1866                                 // this is a ping for us, send back PONG to the requesting server
1867                                 params[1] = params[0];
1868                                 params[0] = forwardto;
1869                                 DoOneToOne(forwardto,"PONG",params,params[1]);
1870                         }
1871                         else
1872                         {
1873                                 // not for us, pass it on :)
1874                                 DoOneToOne(prefix,"PING",params,forwardto);
1875                         }
1876                         return true;
1877                 }
1878         }
1879
1880         bool RemoteServer(std::string prefix, std::deque<std::string> &params)
1881         {
1882                 if (params.size() < 4)
1883                         return false;
1884
1885                 std::string servername = params[0];
1886                 std::string password = params[1];
1887                 // hopcount is not used for a remote server, we calculate this ourselves
1888                 std::string description = params[3];
1889                 TreeServer* ParentOfThis = FindServer(prefix);
1890
1891                 if (!ParentOfThis)
1892                 {
1893                         this->WriteLine("ERROR :Protocol error - Introduced remote server from unknown server "+prefix);
1894                         return false;
1895                 }
1896                 TreeServer* CheckDupe = FindServer(servername);
1897                 if (CheckDupe)
1898                 {
1899                         this->WriteLine("ERROR :Server "+servername+" already exists on server "+CheckDupe->GetParent()->GetName()+"!");
1900                         Srv->SendOpers("*** Server connection from \2"+servername+"\2 denied, already exists on server "+CheckDupe->GetParent()->GetName());
1901                         return false;
1902                 }
1903                 TreeServer* Node = new TreeServer(servername,description,ParentOfThis,NULL);
1904                 ParentOfThis->AddChild(Node);
1905                 params[3] = ":" + params[3];
1906                 DoOneToAllButSender(prefix,"SERVER",params,prefix);
1907                 Srv->SendOpers("*** Server \002"+prefix+"\002 introduced server \002"+servername+"\002 ("+description+")");
1908                 return true;
1909         }
1910
1911         bool Outbound_Reply_Server(std::deque<std::string> &params)
1912         {
1913                 if (params.size() < 4)
1914                         return false;
1915
1916                 std::string servername = params[0];
1917                 std::string password = params[1];
1918                 int hops = atoi(params[2].c_str());
1919
1920                 if (hops)
1921                 {
1922                         this->WriteLine("ERROR :Server too far away for authentication");
1923                         Srv->SendOpers("*** Server connection from \2"+servername+"\2 denied, server is too far away for authentication");
1924                         return false;
1925                 }
1926                 std::string description = params[3];
1927                 for (std::vector<Link>::iterator x = LinkBlocks.begin(); x < LinkBlocks.end(); x++)
1928                 {
1929                         if ((x->Name == servername) && (x->RecvPass == password))
1930                         {
1931                                 TreeServer* CheckDupe = FindServer(servername);
1932                                 if (CheckDupe)
1933                                 {
1934                                         this->WriteLine("ERROR :Server "+servername+" already exists on server "+CheckDupe->GetParent()->GetName()+"!");
1935                                         Srv->SendOpers("*** Server connection from \2"+servername+"\2 denied, already exists on server "+CheckDupe->GetParent()->GetName());
1936                                         return false;
1937                                 }
1938                                 // Begin the sync here. this kickstarts the
1939                                 // other side, waiting in WAIT_AUTH_2 state,
1940                                 // into starting their burst, as it shows
1941                                 // that we're happy.
1942                                 this->LinkState = CONNECTED;
1943                                 // we should add the details of this server now
1944                                 // to the servers tree, as a child of the root
1945                                 // node.
1946                                 TreeServer* Node = new TreeServer(servername,description,TreeRoot,this);
1947                                 TreeRoot->AddChild(Node);
1948                                 params[3] = ":" + params[3];
1949                                 DoOneToAllButSender(TreeRoot->GetName(),"SERVER",params,servername);
1950                                 this->bursting = true;
1951                                 this->DoBurst(Node);
1952                                 return true;
1953                         }
1954                 }
1955                 this->WriteLine("ERROR :Invalid credentials");
1956                 Srv->SendOpers("*** Server connection from \2"+servername+"\2 denied, invalid link credentials");
1957                 return false;
1958         }
1959
1960         bool Inbound_Server(std::deque<std::string> &params)
1961         {
1962                 if (params.size() < 4)
1963                         return false;
1964
1965                 std::string servername = params[0];
1966                 std::string password = params[1];
1967                 int hops = atoi(params[2].c_str());
1968
1969                 if (hops)
1970                 {
1971                         this->WriteLine("ERROR :Server too far away for authentication");
1972                         Srv->SendOpers("*** Server connection from \2"+servername+"\2 denied, server is too far away for authentication");
1973                         return false;
1974                 }
1975                 std::string description = params[3];
1976                 for (std::vector<Link>::iterator x = LinkBlocks.begin(); x < LinkBlocks.end(); x++)
1977                 {
1978                         if ((x->Name == servername) && (x->RecvPass == password))
1979                         {
1980                                 TreeServer* CheckDupe = FindServer(servername);
1981                                 if (CheckDupe)
1982                                 {
1983                                         this->WriteLine("ERROR :Server "+servername+" already exists on server "+CheckDupe->GetParent()->GetName()+"!");
1984                                         Srv->SendOpers("*** Server connection from \2"+servername+"\2 denied, already exists on server "+CheckDupe->GetParent()->GetName());
1985                                         return false;
1986                                 }
1987                                 /* If the config says this link is encrypted, but the remote side
1988                                  * hasnt bothered to send the AES command before SERVER, then we
1989                                  * boot them off as we MUST have this connection encrypted.
1990                                  */
1991                                 if ((x->EncryptionKey != "") && (!this->ctx_in))
1992                                 {
1993                                         this->WriteLine("ERROR :This link requires AES encryption to be enabled. Plaintext connection refused.");
1994                                         Srv->SendOpers("*** Server connection from \2"+servername+"\2 denied, remote server did not enable AES.");
1995                                         return false;
1996                                 }
1997                                 Srv->SendOpers("*** Verified incoming server connection from \002"+servername+"\002["+(x->HiddenFromStats ? "<hidden>" : this->GetIP())+"] ("+description+")");
1998                                 this->InboundServerName = servername;
1999                                 this->InboundDescription = description;
2000                                 // this is good. Send our details: Our server name and description and hopcount of 0,
2001                                 // along with the sendpass from this block.
2002                                 this->WriteLine("SERVER "+Srv->GetServerName()+" "+x->SendPass+" 0 :"+Srv->GetServerDescription());
2003                                 // move to the next state, we are now waiting for THEM.
2004                                 this->LinkState = WAIT_AUTH_2;
2005                                 return true;
2006                         }
2007                 }
2008                 this->WriteLine("ERROR :Invalid credentials");
2009                 Srv->SendOpers("*** Server connection from \2"+servername+"\2 denied, invalid link credentials");
2010                 return false;
2011         }
2012
2013         void Split(std::string line, bool stripcolon, std::deque<std::string> &n)
2014         {
2015                 if (!strchr(line.c_str(),' '))
2016                 {
2017                         n.push_back(line);
2018                         return;
2019                 }
2020                 std::stringstream s(line);
2021                 std::string param = "";
2022
2023                 n.clear();
2024                 int item = 0;
2025                 while (!s.eof())
2026                 {
2027                         char c;
2028                         s.get(c);
2029                         if (c == ' ')
2030                         {
2031                                 n.push_back(param);
2032                                 param = "";
2033                                 item++;
2034                         }
2035                         else
2036                         {
2037                                 if (!s.eof())
2038                                 {
2039                                         param = param + c;
2040                                 }
2041                                 if ((param == ":") && (item > 0))
2042                                 {
2043                                         param = "";
2044                                         while (!s.eof())
2045                                         {
2046                                                 s.get(c);
2047                                                 if (!s.eof())
2048                                                 {
2049                                                         param = param + c;
2050                                                 }
2051                                         }
2052                                         n.push_back(param);
2053                                         param = "";
2054                                 }
2055                         }
2056                 }
2057                 if (param != "")
2058                 {
2059                         n.push_back(param);
2060                 }
2061                 return;
2062         }
2063
2064         bool ProcessLine(std::string line)
2065         {
2066                 char* l = (char*)line.c_str();
2067                 while ((strlen(l)) && (l[strlen(l)-1] == '\r') || (l[strlen(l)-1] == '\n'))
2068                         l[strlen(l)-1] = '\0';
2069                 line = l;
2070                 if (line == "")
2071                         return true;
2072                 Srv->Log(DEBUG,"IN: "+line);
2073                 
2074                 std::deque<std::string> params;
2075                 this->Split(line,true,params);
2076                 std::string command = "";
2077                 std::string prefix = "";
2078                 if (((params[0].c_str())[0] == ':') && (params.size() > 1))
2079                 {
2080                         prefix = params[0];
2081                         command = params[1];
2082                         char* pref = (char*)prefix.c_str();
2083                         prefix = ++pref;
2084                         params.pop_front();
2085                         params.pop_front();
2086                 }
2087                 else
2088                 {
2089                         prefix = "";
2090                         command = params[0];
2091                         params.pop_front();
2092                 }
2093
2094                 if ((!this->ctx_in) && (command == "AES"))
2095                 {
2096                         std::string sserv = params[0];
2097                         for (std::vector<Link>::iterator x = LinkBlocks.begin(); x < LinkBlocks.end(); x++)
2098                         {
2099                                 if ((x->EncryptionKey != "") && (x->Name == sserv))
2100                                 {
2101                                         this->InitAES(x->EncryptionKey,sserv);
2102                                 }
2103                         }
2104
2105                         return true;
2106                 }
2107                 else if ((this->ctx_in) && (command == "AES"))
2108                 {
2109                         WriteOpers("*** \2AES\2: Encryption already enabled on this connection yet %s is trying to enable it twice!",params[0].c_str());
2110                 }
2111
2112                 switch (this->LinkState)
2113                 {
2114                         TreeServer* Node;
2115                         
2116                         case WAIT_AUTH_1:
2117                                 // Waiting for SERVER command from remote server. Server initiating
2118                                 // the connection sends the first SERVER command, listening server
2119                                 // replies with theirs if its happy, then if the initiator is happy,
2120                                 // it starts to send its net sync, which starts the merge, otherwise
2121                                 // it sends an ERROR.
2122                                 if (command == "PASS")
2123                                 {
2124                                         /* Silently ignored */
2125                                 }
2126                                 else if (command == "SERVER")
2127                                 {
2128                                         return this->Inbound_Server(params);
2129                                 }
2130                                 else if (command == "ERROR")
2131                                 {
2132                                         return this->Error(params);
2133                                 }
2134                                 else if (command == "USER")
2135                                 {
2136                                         this->WriteLine("ERROR :Client connections to this port are prohibited.");
2137                                         return false;
2138                                 }
2139                                 else if (command == "CAPAB")
2140                                 {
2141                                         return this->Capab(params);
2142                                 }
2143                                 else if ((command == "U") || (command == "S"))
2144                                 {
2145                                         this->WriteLine("ERROR :Cannot use the old-style mesh linking protocol with m_spanningtree.so!");
2146                                         return false;
2147                                 }
2148                                 else
2149                                 {
2150                                         this->WriteLine("ERROR :Invalid command in negotiation phase.");
2151                                         return false;
2152                                 }
2153                         break;
2154                         case WAIT_AUTH_2:
2155                                 // Waiting for start of other side's netmerge to say they liked our
2156                                 // password.
2157                                 if (command == "SERVER")
2158                                 {
2159                                         // cant do this, they sent it to us in the WAIT_AUTH_1 state!
2160                                         // silently ignore.
2161                                         return true;
2162                                 }
2163                                 else if ((command == "U") || (command == "S"))
2164                                 {
2165                                         this->WriteLine("ERROR :Cannot use the old-style mesh linking protocol with m_spanningtree.so!");
2166                                         return false;
2167                                 }
2168                                 else if (command == "BURST")
2169                                 {
2170                                         this->LinkState = CONNECTED;
2171                                         Node = new TreeServer(InboundServerName,InboundDescription,TreeRoot,this);
2172                                         TreeRoot->AddChild(Node);
2173                                         params.clear();
2174                                         params.push_back(InboundServerName);
2175                                         params.push_back("*");
2176                                         params.push_back("1");
2177                                         params.push_back(":"+InboundDescription);
2178                                         DoOneToAllButSender(TreeRoot->GetName(),"SERVER",params,InboundServerName);
2179                                         this->bursting = true;
2180                                         this->DoBurst(Node);
2181                                 }
2182                                 else if (command == "ERROR")
2183                                 {
2184                                         return this->Error(params);
2185                                 }
2186                                 else if (command == "CAPAB")
2187                                 {
2188                                         return this->Capab(params);
2189                                 }
2190                                 
2191                         break;
2192                         case LISTENER:
2193                                 this->WriteLine("ERROR :Internal error -- listening socket accepted its own descriptor!!!");
2194                                 return false;
2195                         break;
2196                         case CONNECTING:
2197                                 if (command == "SERVER")
2198                                 {
2199                                         // another server we connected to, which was in WAIT_AUTH_1 state,
2200                                         // has just sent us their credentials. If we get this far, theyre
2201                                         // happy with OUR credentials, and they are now in WAIT_AUTH_2 state.
2202                                         // if we're happy with this, we should send our netburst which
2203                                         // kickstarts the merge.
2204                                         return this->Outbound_Reply_Server(params);
2205                                 }
2206                                 else if (command == "ERROR")
2207                                 {
2208                                         return this->Error(params);
2209                                 }
2210                         break;
2211                         case CONNECTED:
2212                                 // This is the 'authenticated' state, when all passwords
2213                                 // have been exchanged and anything past this point is taken
2214                                 // as gospel.
2215                                 
2216                                 if (prefix != "")
2217                                 {
2218                                         std::string direction = prefix;
2219                                         userrec* t = Srv->FindNick(prefix);
2220                                         if (t)
2221                                         {
2222                                                 direction = t->server;
2223                                         }
2224                                         TreeServer* route_back_again = BestRouteTo(direction);
2225                                         if ((!route_back_again) || (route_back_again->GetSocket() != this))
2226                                         {
2227                                                 if (route_back_again)
2228                                                         log(DEBUG,"Protocol violation: Fake direction in command '%s' from connection '%s'",line.c_str(),this->GetName().c_str());
2229                                                 return true;
2230                                         }
2231
2232                                         /* Fix by brain:
2233                                          * When there is activity on the socket, reset the ping counter so
2234                                          * that we're not wasting bandwidth pinging an active server.
2235                                          */ 
2236                                         route_back_again->SetNextPingTime(time(NULL) + 120);
2237                                         route_back_again->SetPingFlag();
2238                                 }
2239                                 
2240                                 if (command == "SVSMODE")
2241                                 {
2242                                         /* Services expects us to implement
2243                                          * SVSMODE. In inspircd its the same as
2244                                          * MODE anyway.
2245                                          */
2246                                         command = "MODE";
2247                                 }
2248                                 std::string target = "";
2249                                 /* Yes, know, this is a mess. Its reasonably fast though as we're
2250                                  * working with std::string here.
2251                                  */
2252                                 if ((command == "NICK") && (params.size() > 1))
2253                                 {
2254                                         return this->IntroduceClient(prefix,params);
2255                                 }
2256                                 else if (command == "FJOIN")
2257                                 {
2258                                         return this->ForceJoin(prefix,params);
2259                                 }
2260                                 else if (command == "SERVER")
2261                                 {
2262                                         return this->RemoteServer(prefix,params);
2263                                 }
2264                                 else if (command == "ERROR")
2265                                 {
2266                                         return this->Error(params);
2267                                 }
2268                                 else if (command == "OPERTYPE")
2269                                 {
2270                                         return this->OperType(prefix,params);
2271                                 }
2272                                 else if (command == "FMODE")
2273                                 {
2274                                         return this->ForceMode(prefix,params);
2275                                 }
2276                                 else if (command == "KILL")
2277                                 {
2278                                         return this->RemoteKill(prefix,params);
2279                                 }
2280                                 else if (command == "FTOPIC")
2281                                 {
2282                                         return this->ForceTopic(prefix,params);
2283                                 }
2284                                 else if (command == "REHASH")
2285                                 {
2286                                         return this->RemoteRehash(prefix,params);
2287                                 }
2288                                 else if (command == "METADATA")
2289                                 {
2290                                         return this->MetaData(prefix,params);
2291                                 }
2292                                 else if (command == "PING")
2293                                 {
2294                                         if (prefix == "")
2295                                         {
2296                                                 prefix = this->GetName();
2297                                         }
2298                                         return this->LocalPing(prefix,params);
2299                                 }
2300                                 else if (command == "PONG")
2301                                 {
2302                                         if (prefix == "")
2303                                         {
2304                                                 prefix = this->GetName();
2305                                         }
2306                                         return this->LocalPong(prefix,params);
2307                                 }
2308                                 else if (command == "VERSION")
2309                                 {
2310                                         return this->ServerVersion(prefix,params);
2311                                 }
2312                                 else if (command == "FHOST")
2313                                 {
2314                                         return this->ChangeHost(prefix,params);
2315                                 }
2316                                 else if (command == "FNAME")
2317                                 {
2318                                         return this->ChangeName(prefix,params);
2319                                 }
2320                                 else if (command == "ADDLINE")
2321                                 {
2322                                         return this->AddLine(prefix,params);
2323                                 }
2324                                 else if (command == "SVSNICK")
2325                                 {
2326                                         if (prefix == "")
2327                                         {
2328                                                 prefix = this->GetName();
2329                                         }
2330                                         return this->ForceNick(prefix,params);
2331                                 }
2332                                 else if (command == "IDLE")
2333                                 {
2334                                         return this->Whois(prefix,params);
2335                                 }
2336                                 else if (command == "PUSH")
2337                                 {
2338                                         return this->Push(prefix,params);
2339                                 }
2340                                 else if (command == "TIME")
2341                                 {
2342                                         return this->Time(prefix,params);
2343                                 }
2344                                 else if (command == "SVSJOIN")
2345                                 {
2346                                         if (prefix == "")
2347                                         {
2348                                                 prefix = this->GetName();
2349                                         }
2350                                         return this->ServiceJoin(prefix,params);
2351                                 }
2352                                 else if (command == "SQUIT")
2353                                 {
2354                                         if (params.size() == 2)
2355                                         {
2356                                                 this->Squit(FindServer(params[0]),params[1]);
2357                                         }
2358                                         return true;
2359                                 }
2360                                 else if (command == "ENDBURST")
2361                                 {
2362                                         this->bursting = false;
2363                                         apply_lines(APPLY_ZLINES|APPLY_GLINES|APPLY_QLINES);
2364                                         return true;
2365                                 }
2366                                 else
2367                                 {
2368                                         // not a special inter-server command.
2369                                         // Emulate the actual user doing the command,
2370                                         // this saves us having a huge ugly parser.
2371                                         userrec* who = Srv->FindNick(prefix);
2372                                         std::string sourceserv = this->myhost;
2373                                         if (this->InboundServerName != "")
2374                                         {
2375                                                 sourceserv = this->InboundServerName;
2376                                         }
2377                                         if (who)
2378                                         {
2379                                                 if ((command == "NICK") && (params.size() > 0))
2380                                                 {
2381                                                         /* On nick messages, check that the nick doesnt
2382                                                          * already exist here. If it does, kill their copy,
2383                                                          * and our copy.
2384                                                          */
2385                                                         userrec* x = Srv->FindNick(params[0]);
2386                                                         if (x)
2387                                                         {
2388                                                                 std::deque<std::string> p;
2389                                                                 p.push_back(params[0]);
2390                                                                 p.push_back("Nickname collision ("+prefix+" -> "+params[0]+")");
2391                                                                 DoOneToMany(Srv->GetServerName(),"KILL",p);
2392                                                                 p.clear();
2393                                                                 p.push_back(prefix);
2394                                                                 p.push_back("Nickname collision");
2395                                                                 DoOneToMany(Srv->GetServerName(),"KILL",p);
2396                                                                 Srv->QuitUser(x,"Nickname collision ("+prefix+" -> "+params[0]+")");
2397                                                                 userrec* y = Srv->FindNick(prefix);
2398                                                                 if (y)
2399                                                                 {
2400                                                                         Srv->QuitUser(y,"Nickname collision");
2401                                                                 }
2402                                                                 return DoOneToAllButSenderRaw(line,sourceserv,prefix,command,params);
2403                                                         }
2404                                                 }
2405                                                 // its a user
2406                                                 target = who->server;
2407                                                 char* strparams[127];
2408                                                 for (unsigned int q = 0; q < params.size(); q++)
2409                                                 {
2410                                                         strparams[q] = (char*)params[q].c_str();
2411                                                 }
2412                                                 Srv->CallCommandHandler(command, strparams, params.size(), who);
2413                                         }
2414                                         else
2415                                         {
2416                                                 // its not a user. Its either a server, or somethings screwed up.
2417                                                 if (IsServer(prefix))
2418                                                 {
2419                                                         target = Srv->GetServerName();
2420                                                 }
2421                                                 else
2422                                                 {
2423                                                         log(DEBUG,"Command with unknown origin '%s'",prefix.c_str());
2424                                                         return true;
2425                                                 }
2426                                         }
2427                                         return DoOneToAllButSenderRaw(line,sourceserv,prefix,command,params);
2428
2429                                 }
2430                                 return true;
2431                         break;
2432                 }
2433                 return true;
2434         }
2435
2436         virtual std::string GetName()
2437         {
2438                 std::string sourceserv = this->myhost;
2439                 if (this->InboundServerName != "")
2440                 {
2441                         sourceserv = this->InboundServerName;
2442                 }
2443                 return sourceserv;
2444         }
2445
2446         virtual void OnTimeout()
2447         {
2448                 if (this->LinkState == CONNECTING)
2449                 {
2450                         Srv->SendOpers("*** CONNECT: Connection to \002"+myhost+"\002 timed out.");
2451                 }
2452         }
2453
2454         virtual void OnClose()
2455         {
2456                 // Connection closed.
2457                 // If the connection is fully up (state CONNECTED)
2458                 // then propogate a netsplit to all peers.
2459                 std::string quitserver = this->myhost;
2460                 if (this->InboundServerName != "")
2461                 {
2462                         quitserver = this->InboundServerName;
2463                 }
2464                 TreeServer* s = FindServer(quitserver);
2465                 if (s)
2466                 {
2467                         Squit(s,"Remote host closed the connection");
2468                 }
2469                 WriteOpers("Server '\2%s\2' closed the connection.",quitserver.c_str());
2470         }
2471
2472         virtual int OnIncomingConnection(int newsock, char* ip)
2473         {
2474                 TreeSocket* s = new TreeSocket(newsock, ip);
2475                 Srv->AddSocket(s);
2476                 return true;
2477         }
2478 };
2479
2480 void AddThisServer(TreeServer* server, std::deque<TreeServer*> &list)
2481 {
2482         for (unsigned int c = 0; c < list.size(); c++)
2483         {
2484                 if (list[c] == server)
2485                 {
2486                         return;
2487                 }
2488         }
2489         list.push_back(server);
2490 }
2491
2492 // returns a list of DIRECT servernames for a specific channel
2493 void GetListOfServersForChannel(chanrec* c, std::deque<TreeServer*> &list)
2494 {
2495         std::map<char*,char*> *ulist = c->GetUsers();
2496         for (std::map<char*,char*>::iterator i = ulist->begin(); i != ulist->end(); i++)
2497         {
2498                 char* o = i->second;
2499                 userrec* otheruser = (userrec*)o;
2500                 if (otheruser->fd < 0)
2501                 {
2502                         TreeServer* best = BestRouteTo(otheruser->server);
2503                         if (best)
2504                                 AddThisServer(best,list);
2505                 }
2506         }
2507         return;
2508 }
2509
2510 bool DoOneToAllButSenderRaw(std::string data, std::string omit, std::string prefix, std::string command, std::deque<std::string> &params)
2511 {
2512         TreeServer* omitroute = BestRouteTo(omit);
2513         if ((command == "NOTICE") || (command == "PRIVMSG"))
2514         {
2515                 if ((params.size() >= 2) && (*(params[0].c_str()) != '$'))
2516                 {
2517                         /* Prefixes */
2518                         if ((*(params[0].c_str()) == '@') || (*(params[0].c_str()) == '%') || (*(params[0].c_str()) == '+'))
2519                         {
2520                                 params[0] = params[0].substr(1, params[0].length()-1);
2521                         }
2522                         if (*(params[0].c_str()) != '#')
2523                         {
2524                                 // special routing for private messages/notices
2525                                 userrec* d = Srv->FindNick(params[0]);
2526                                 if (d)
2527                                 {
2528                                         std::deque<std::string> par;
2529                                         par.push_back(params[0]);
2530                                         par.push_back(":"+params[1]);
2531                                         DoOneToOne(prefix,command,par,d->server);
2532                                         return true;
2533                                 }
2534                         }
2535                         else
2536                         {
2537                                 log(DEBUG,"Channel privmsg going to chan %s",params[0].c_str());
2538                                 chanrec* c = Srv->FindChannel(params[0]);
2539                                 if (c)
2540                                 {
2541                                         std::deque<TreeServer*> list;
2542                                         GetListOfServersForChannel(c,list);
2543                                         log(DEBUG,"Got a list of %d servers",list.size());
2544                                         unsigned int lsize = list.size();
2545                                         for (unsigned int i = 0; i < lsize; i++)
2546                                         {
2547                                                 TreeSocket* Sock = list[i]->GetSocket();
2548                                                 if ((Sock) && (list[i]->GetName() != omit) && (omitroute != list[i]))
2549                                                 {
2550                                                         log(DEBUG,"Writing privmsg to server %s",list[i]->GetName().c_str());
2551                                                         Sock->WriteLine(data);
2552                                                 }
2553                                         }
2554                                         return true;
2555                                 }
2556                         }
2557                 }
2558         }
2559         unsigned int items = TreeRoot->ChildCount();
2560         for (unsigned int x = 0; x < items; x++)
2561         {
2562                 TreeServer* Route = TreeRoot->GetChild(x);
2563                 if ((Route->GetSocket()) && (Route->GetName() != omit) && (omitroute != Route))
2564                 {
2565                         TreeSocket* Sock = Route->GetSocket();
2566                         Sock->WriteLine(data);
2567                 }
2568         }
2569         return true;
2570 }
2571
2572 bool DoOneToAllButSender(std::string prefix, std::string command, std::deque<std::string> &params, std::string omit)
2573 {
2574         TreeServer* omitroute = BestRouteTo(omit);
2575         std::string FullLine = ":" + prefix + " " + command;
2576         unsigned int words = params.size();
2577         for (unsigned int x = 0; x < words; x++)
2578         {
2579                 FullLine = FullLine + " " + params[x];
2580         }
2581         unsigned int items = TreeRoot->ChildCount();
2582         for (unsigned int x = 0; x < items; x++)
2583         {
2584                 TreeServer* Route = TreeRoot->GetChild(x);
2585                 // Send the line IF:
2586                 // The route has a socket (its a direct connection)
2587                 // The route isnt the one to be omitted
2588                 // The route isnt the path to the one to be omitted
2589                 if ((Route->GetSocket()) && (Route->GetName() != omit) && (omitroute != Route))
2590                 {
2591                         TreeSocket* Sock = Route->GetSocket();
2592                         Sock->WriteLine(FullLine);
2593                 }
2594         }
2595         return true;
2596 }
2597
2598 bool DoOneToMany(std::string prefix, std::string command, std::deque<std::string> &params)
2599 {
2600         std::string FullLine = ":" + prefix + " " + command;
2601         unsigned int words = params.size();
2602         for (unsigned int x = 0; x < words; x++)
2603         {
2604                 FullLine = FullLine + " " + params[x];
2605         }
2606         unsigned int items = TreeRoot->ChildCount();
2607         for (unsigned int x = 0; x < items; x++)
2608         {
2609                 TreeServer* Route = TreeRoot->GetChild(x);
2610                 if (Route->GetSocket())
2611                 {
2612                         TreeSocket* Sock = Route->GetSocket();
2613                         Sock->WriteLine(FullLine);
2614                 }
2615         }
2616         return true;
2617 }
2618
2619 bool DoOneToOne(std::string prefix, std::string command, std::deque<std::string> &params, std::string target)
2620 {
2621         TreeServer* Route = BestRouteTo(target);
2622         if (Route)
2623         {
2624                 std::string FullLine = ":" + prefix + " " + command;
2625                 unsigned int words = params.size();
2626                 for (unsigned int x = 0; x < words; x++)
2627                 {
2628                         FullLine = FullLine + " " + params[x];
2629                 }
2630                 if (Route->GetSocket())
2631                 {
2632                         TreeSocket* Sock = Route->GetSocket();
2633                         Sock->WriteLine(FullLine);
2634                 }
2635                 return true;
2636         }
2637         else
2638         {
2639                 return true;
2640         }
2641 }
2642
2643 std::vector<TreeSocket*> Bindings;
2644
2645 void ReadConfiguration(bool rebind)
2646 {
2647         Conf = new ConfigReader;
2648         if (rebind)
2649         {
2650                 for (int j =0; j < Conf->Enumerate("bind"); j++)
2651                 {
2652                         std::string Type = Conf->ReadValue("bind","type",j);
2653                         std::string IP = Conf->ReadValue("bind","address",j);
2654                         long Port = Conf->ReadInteger("bind","port",j,true);
2655                         if (Type == "servers")
2656                         {
2657                                 if (IP == "*")
2658                                 {
2659                                         IP = "";
2660                                 }
2661                                 TreeSocket* listener = new TreeSocket(IP.c_str(),Port,true,10);
2662                                 if (listener->GetState() == I_LISTENING)
2663                                 {
2664                                         Srv->AddSocket(listener);
2665                                         Bindings.push_back(listener);
2666                                 }
2667                                 else
2668                                 {
2669                                         log(DEFAULT,"m_spanningtree: Warning: Failed to bind server port %d",Port);
2670                                         listener->Close();
2671                                         delete listener;
2672                                 }
2673                         }
2674                 }
2675         }
2676         FlatLinks = Conf->ReadFlag("options","flatlinks",0);
2677         HideULines = Conf->ReadFlag("options","hideulines",0);
2678         LinkBlocks.clear();
2679         for (int j =0; j < Conf->Enumerate("link"); j++)
2680         {
2681                 Link L;
2682                 L.Name = Conf->ReadValue("link","name",j);
2683                 L.IPAddr = Conf->ReadValue("link","ipaddr",j);
2684                 L.Port = Conf->ReadInteger("link","port",j,true);
2685                 L.SendPass = Conf->ReadValue("link","sendpass",j);
2686                 L.RecvPass = Conf->ReadValue("link","recvpass",j);
2687                 L.AutoConnect = Conf->ReadInteger("link","autoconnect",j,true);
2688                 L.EncryptionKey =  Conf->ReadValue("link","encryptionkey",j);
2689                 L.HiddenFromStats = Conf->ReadFlag("link","hidden",j);
2690                 L.NextConnectTime = time(NULL) + L.AutoConnect;
2691                 /* Bugfix by brain, do not allow people to enter bad configurations */
2692                 if ((L.RecvPass != "") && (L.SendPass != "") && (L.Name != "") && (L.Port))
2693                 {
2694                         LinkBlocks.push_back(L);
2695                         log(DEBUG,"m_spanningtree: Read server %s with host %s:%d",L.Name.c_str(),L.IPAddr.c_str(),L.Port);
2696                 }
2697                 else
2698                 {
2699                         if (L.RecvPass == "")
2700                         {
2701                                 log(DEFAULT,"Invalid configuration for server '%s', recvpass not defined!",L.Name.c_str());
2702                         }
2703                         else if (L.SendPass == "")
2704                         {
2705                                 log(DEFAULT,"Invalid configuration for server '%s', sendpass not defined!",L.Name.c_str());
2706                         }
2707                         else if (L.Name == "")
2708                         {
2709                                 log(DEFAULT,"Invalid configuration, link tag without a name!");
2710                         }
2711                         else if (!L.Port)
2712                         {
2713                                 log(DEFAULT,"Invalid configuration for server '%s', no port specified!",L.Name.c_str());
2714                         }
2715                 }
2716         }
2717         delete Conf;
2718 }
2719
2720
2721 class ModuleSpanningTree : public Module
2722 {
2723         std::vector<TreeSocket*> Bindings;
2724         int line;
2725         int NumServers;
2726         unsigned int max_local;
2727         unsigned int max_global;
2728         cmd_rconnect* command_rconnect;
2729
2730  public:
2731
2732         ModuleSpanningTree(Server* Me)
2733                 : Module::Module(Me), max_local(0), max_global(0)
2734         {
2735                 Srv = Me;
2736                 Bindings.clear();
2737
2738                 // Create the root of the tree
2739                 TreeRoot = new TreeServer(Srv->GetServerName(),Srv->GetServerDescription());
2740
2741                 ReadConfiguration(true);
2742
2743                 command_rconnect = new cmd_rconnect(this);
2744                 Srv->AddCommand(command_rconnect);
2745         }
2746
2747         void ShowLinks(TreeServer* Current, userrec* user, int hops)
2748         {
2749                 std::string Parent = TreeRoot->GetName();
2750                 if (Current->GetParent())
2751                 {
2752                         Parent = Current->GetParent()->GetName();
2753                 }
2754                 for (unsigned int q = 0; q < Current->ChildCount(); q++)
2755                 {
2756                         if ((HideULines) && (Srv->IsUlined(Current->GetName())))
2757                         {
2758                                 if (*user->oper)
2759                                 {
2760                                          ShowLinks(Current->GetChild(q),user,hops+1);
2761                                 }
2762                         }
2763                         else
2764                         {
2765                                 ShowLinks(Current->GetChild(q),user,hops+1);
2766                         }
2767                 }
2768                 WriteServ(user->fd,"364 %s %s %s :%d %s",user->nick,Current->GetName().c_str(),(FlatLinks && (!*user->oper)) ? Srv->GetServerName().c_str() : Parent.c_str(),(FlatLinks && (!*user->oper)) ? 0 : hops,Current->GetDesc().c_str());
2769         }
2770
2771         int CountLocalServs()
2772         {
2773                 return TreeRoot->ChildCount();
2774         }
2775
2776         int CountServs()
2777         {
2778                 return serverlist.size();
2779         }
2780
2781         void HandleLinks(char** parameters, int pcnt, userrec* user)
2782         {
2783                 ShowLinks(TreeRoot,user,0);
2784                 WriteServ(user->fd,"365 %s * :End of /LINKS list.",user->nick);
2785                 return;
2786         }
2787
2788         void HandleLusers(char** parameters, int pcnt, userrec* user)
2789         {
2790                 /* Only update these when someone wants to see them, more efficient */
2791                 if ((unsigned int)local_count() > max_local)
2792                         max_local = local_count();
2793                 if (clientlist.size() > max_global)
2794                         max_global = clientlist.size();
2795
2796                 WriteServ(user->fd,"251 %s :There are %d users and %d invisible on %d servers",user->nick,usercnt()-usercount_invisible(),usercount_invisible(),this->CountServs());
2797                 WriteServ(user->fd,"252 %s %d :operator(s) online",user->nick,usercount_opers());
2798                 WriteServ(user->fd,"253 %s %d :unknown connections",user->nick,usercount_unknown());
2799                 WriteServ(user->fd,"254 %s %d :channels formed",user->nick,chancount());
2800                 WriteServ(user->fd,"254 %s :I have %d clients and %d servers",user->nick,local_count(),this->CountLocalServs());
2801                 WriteServ(user->fd,"265 %s :Current Local Users: %d  Max: %d",user->nick,local_count(),max_local);
2802                 WriteServ(user->fd,"266 %s :Current Global Users: %d  Max: %d",user->nick,clientlist.size(),max_global);
2803                 return;
2804         }
2805
2806         // WARNING: NOT THREAD SAFE - DONT GET ANY SMART IDEAS.
2807
2808         void ShowMap(TreeServer* Current, userrec* user, int depth, char matrix[128][80], float &totusers, float &totservers)
2809         {
2810                 if (line < 128)
2811                 {
2812                         for (int t = 0; t < depth; t++)
2813                         {
2814                                 matrix[line][t] = ' ';
2815                         }
2816
2817                         // For Aligning, we need to work out exactly how deep this thing is, and produce
2818                         // a 'Spacer' String to compensate.
2819                         char spacer[40];
2820
2821                         memset(spacer,' ',40);
2822                         if ((40 - Current->GetName().length() - depth) > 1) {
2823                                 spacer[40 - Current->GetName().length() - depth] = '\0';
2824                         }
2825                         else
2826                         {
2827                                 spacer[5] = '\0';
2828                         }
2829
2830                         float percent;
2831                         char text[80];
2832                         if (clientlist.size() == 0) {
2833                                 // If there are no users, WHO THE HELL DID THE /MAP?!?!?!
2834                                 percent = 0;
2835                         }
2836                         else
2837                         {
2838                                 percent = ((float)Current->GetUserCount() / (float)clientlist.size()) * 100;
2839                         }
2840                         snprintf(text, 80, "%s %s%5d [%5.2f%%]", Current->GetName().c_str(), spacer, Current->GetUserCount(), percent);
2841                         totusers += Current->GetUserCount();
2842                         totservers++;
2843                         strlcpy(&matrix[line][depth],text,80);
2844                         line++;
2845                         for (unsigned int q = 0; q < Current->ChildCount(); q++)
2846                         {
2847                                 if ((HideULines) && (Srv->IsUlined(Current->GetChild(q)->GetName())))
2848                                 {
2849                                         if (*user->oper)
2850                                         {
2851                                                 ShowMap(Current->GetChild(q),user,(FlatLinks && (!*user->oper)) ? depth : depth+2,matrix,totusers,totservers);
2852                                         }
2853                                 }
2854                                 else
2855                                 {
2856                                         ShowMap(Current->GetChild(q),user,(FlatLinks && (!*user->oper)) ? depth : depth+2,matrix,totusers,totservers);
2857                                 }
2858                         }
2859                 }
2860         }
2861
2862         // Ok, prepare to be confused.
2863         // After much mulling over how to approach this, it struck me that
2864         // the 'usual' way of doing a /MAP isnt the best way. Instead of
2865         // keeping track of a ton of ascii characters, and line by line
2866         // under recursion working out where to place them using multiplications
2867         // and divisons, we instead render the map onto a backplane of characters
2868         // (a character matrix), then draw the branches as a series of "L" shapes
2869         // from the nodes. This is not only friendlier on CPU it uses less stack.
2870
2871         void HandleMap(char** parameters, int pcnt, userrec* user)
2872         {
2873                 // This array represents a virtual screen which we will
2874                 // "scratch" draw to, as the console device of an irc
2875                 // client does not provide for a proper terminal.
2876                 float totusers = 0;
2877                 float totservers = 0;
2878                 char matrix[128][80];
2879                 for (unsigned int t = 0; t < 128; t++)
2880                 {
2881                         matrix[t][0] = '\0';
2882                 }
2883                 line = 0;
2884                 // The only recursive bit is called here.
2885                 ShowMap(TreeRoot,user,0,matrix,totusers,totservers);
2886                 // Process each line one by one. The algorithm has a limit of
2887                 // 128 servers (which is far more than a spanning tree should have
2888                 // anyway, so we're ok). This limit can be raised simply by making
2889                 // the character matrix deeper, 128 rows taking 10k of memory.
2890                 for (int l = 1; l < line; l++)
2891                 {
2892                         // scan across the line looking for the start of the
2893                         // servername (the recursive part of the algorithm has placed
2894                         // the servers at indented positions depending on what they
2895                         // are related to)
2896                         int first_nonspace = 0;
2897                         while (matrix[l][first_nonspace] == ' ')
2898                         {
2899                                 first_nonspace++;
2900                         }
2901                         first_nonspace--;
2902                         // Draw the `- (corner) section: this may be overwritten by
2903                         // another L shape passing along the same vertical pane, becoming
2904                         // a |- (branch) section instead.
2905                         matrix[l][first_nonspace] = '-';
2906                         matrix[l][first_nonspace-1] = '`';
2907                         int l2 = l - 1;
2908                         // Draw upwards until we hit the parent server, causing possibly
2909                         // other corners (`-) to become branches (|-)
2910                         while ((matrix[l2][first_nonspace-1] == ' ') || (matrix[l2][first_nonspace-1] == '`'))
2911                         {
2912                                 matrix[l2][first_nonspace-1] = '|';
2913                                 l2--;
2914                         }
2915                 }
2916                 // dump the whole lot to the user. This is the easy bit, honest.
2917                 for (int t = 0; t < line; t++)
2918                 {
2919                         WriteServ(user->fd,"006 %s :%s",user->nick,&matrix[t][0]);
2920                 }
2921                 float avg_users = totusers / totservers;
2922                 WriteServ(user->fd,"270 %s :%.0f server%s and %.0f user%s, average %.2f users per server",user->nick,totservers,(totservers > 1 ? "s" : ""),totusers,(totusers > 1 ? "s" : ""),avg_users);
2923         WriteServ(user->fd,"007 %s :End of /MAP",user->nick);
2924                 return;
2925         }
2926
2927         int HandleSquit(char** parameters, int pcnt, userrec* user)
2928         {
2929                 TreeServer* s = FindServerMask(parameters[0]);
2930                 if (s)
2931                 {
2932                         if (s == TreeRoot)
2933                         {
2934                                  WriteServ(user->fd,"NOTICE %s :*** SQUIT: Foolish mortal, you cannot make a server SQUIT itself! (%s matches local server name)",user->nick,parameters[0]);
2935                                 return 1;
2936                         }
2937                         TreeSocket* sock = s->GetSocket();
2938                         if (sock)
2939                         {
2940                                 log(DEBUG,"Splitting server %s",s->GetName().c_str());
2941                                 WriteOpers("*** SQUIT: Server \002%s\002 removed from network by %s",parameters[0],user->nick);
2942                                 sock->Squit(s,"Server quit by "+std::string(user->nick)+"!"+std::string(user->ident)+"@"+std::string(user->host));
2943                                 Srv->RemoveSocket(sock);
2944                         }
2945                         else
2946                         {
2947                                 WriteServ(user->fd,"NOTICE %s :*** SQUIT: The server \002%s\002 is not directly connected.",user->nick,parameters[0]);
2948                         }
2949                 }
2950                 else
2951                 {
2952                          WriteServ(user->fd,"NOTICE %s :*** SQUIT: The server \002%s\002 does not exist on the network.",user->nick,parameters[0]);
2953                 }
2954                 return 1;
2955         }
2956
2957         int HandleTime(char** parameters, int pcnt, userrec* user)
2958         {
2959                 if ((user->fd > -1) && (pcnt))
2960                 {
2961                         TreeServer* found = FindServerMask(parameters[0]);
2962                         if (found)
2963                         {
2964                                 // we dont' override for local server
2965                                 if (found == TreeRoot)
2966                                         return 0;
2967                                 
2968                                 std::deque<std::string> params;
2969                                 params.push_back(found->GetName());
2970                                 params.push_back(user->nick);
2971                                 DoOneToOne(Srv->GetServerName(),"TIME",params,found->GetName());
2972                         }
2973                         else
2974                         {
2975                                 WriteServ(user->fd,"402 %s %s :No such server",user->nick,parameters[0]);
2976                         }
2977                 }
2978                 return 1;
2979         }
2980
2981         int HandleRemoteWhois(char** parameters, int pcnt, userrec* user)
2982         {
2983                 if ((user->fd > -1) && (pcnt > 1))
2984                 {
2985                         userrec* remote = Srv->FindNick(parameters[1]);
2986                         if ((remote) && (remote->fd < 0))
2987                         {
2988                                 std::deque<std::string> params;
2989                                 params.push_back(parameters[1]);
2990                                 DoOneToOne(user->nick,"IDLE",params,remote->server);
2991                                 return 1;
2992                         }
2993                         else if (!remote)
2994                         {
2995                                 WriteServ(user->fd,"401 %s %s :No such nick/channel",user->nick, parameters[1]);
2996                                 WriteServ(user->fd,"318 %s %s :End of /WHOIS list.",user->nick, parameters[1]);
2997                                 return 1;
2998                         }
2999                 }
3000                 return 0;
3001         }
3002
3003         void DoPingChecks(time_t curtime)
3004         {
3005                 for (unsigned int j = 0; j < TreeRoot->ChildCount(); j++)
3006                 {
3007                         TreeServer* serv = TreeRoot->GetChild(j);
3008                         TreeSocket* sock = serv->GetSocket();
3009                         if (sock)
3010                         {
3011                                 if (curtime >= serv->NextPingTime())
3012                                 {
3013                                         if (serv->AnsweredLastPing())
3014                                         {
3015                                                 sock->WriteLine(":"+Srv->GetServerName()+" PING "+serv->GetName());
3016                                                 serv->SetNextPingTime(curtime + 120);
3017                                         }
3018                                         else
3019                                         {
3020                                                 // they didnt answer, boot them
3021                                                 WriteOpers("*** Server \002%s\002 pinged out",serv->GetName().c_str());
3022                                                 sock->Squit(serv,"Ping timeout");
3023                                                 Srv->RemoveSocket(sock);
3024                                                 return;
3025                                         }
3026                                 }
3027                         }
3028                 }
3029         }
3030
3031         void AutoConnectServers(time_t curtime)
3032         {
3033                 for (std::vector<Link>::iterator x = LinkBlocks.begin(); x < LinkBlocks.end(); x++)
3034                 {
3035                         if ((x->AutoConnect) && (curtime >= x->NextConnectTime))
3036                         {
3037                                 log(DEBUG,"Auto-Connecting %s",x->Name.c_str());
3038                                 x->NextConnectTime = curtime + x->AutoConnect;
3039                                 TreeServer* CheckDupe = FindServer(x->Name);
3040                                 if (!CheckDupe)
3041                                 {
3042                                         // an autoconnected server is not connected. Check if its time to connect it
3043                                         WriteOpers("*** AUTOCONNECT: Auto-connecting server \002%s\002 (%lu seconds until next attempt)",x->Name.c_str(),x->AutoConnect);
3044                                         TreeSocket* newsocket = new TreeSocket(x->IPAddr,x->Port,false,10,x->Name);
3045                                         if (newsocket->GetState() != I_ERROR)
3046                                         {
3047                                                 Srv->AddSocket(newsocket);
3048                                         }
3049                                         else
3050                                         {
3051                                                 WriteOpers("*** AUTOCONNECT: Error autoconnecting \002%s\002.",x->Name.c_str());
3052                                                 delete newsocket;
3053                                         }
3054                                 }
3055                         }
3056                 }
3057         }
3058
3059         int HandleVersion(char** parameters, int pcnt, userrec* user)
3060         {
3061                 // we've already checked if pcnt > 0, so this is safe
3062                 TreeServer* found = FindServerMask(parameters[0]);
3063                 if (found)
3064                 {
3065                         std::string Version = found->GetVersion();
3066                         WriteServ(user->fd,"351 %s :%s",user->nick,Version.c_str());
3067                         if (found == TreeRoot)
3068                         {
3069                                 std::stringstream out(Config->data005);
3070                                 std::string token = "";
3071                                 std::string line5 = "";
3072                                 int token_counter = 0;
3073
3074                                 while (!out.eof())
3075                                 {
3076                                         out >> token;
3077                                         line5 = line5 + token + " ";   
3078                                         token_counter++;
3079
3080                                         if ((token_counter >= 13) || (out.eof() == true))
3081                                         {
3082                                                 WriteServ(user->fd,"005 %s %s:are supported by this server",user->nick,line5.c_str());
3083                                                 line5 = "";
3084                                                 token_counter = 0;
3085                                         }
3086                                 }
3087                         }
3088                 }
3089                 else
3090                 {
3091                         WriteServ(user->fd,"402 %s %s :No such server",user->nick,parameters[0]);
3092                 }
3093                 return 1;
3094         }
3095         
3096         int HandleConnect(char** parameters, int pcnt, userrec* user)
3097         {
3098                 for (std::vector<Link>::iterator x = LinkBlocks.begin(); x < LinkBlocks.end(); x++)
3099                 {
3100                         if (Srv->MatchText(x->Name.c_str(),parameters[0]))
3101                         {
3102                                 TreeServer* CheckDupe = FindServer(x->Name);
3103                                 if (!CheckDupe)
3104                                 {
3105                                         WriteServ(user->fd,"NOTICE %s :*** CONNECT: Connecting to server: \002%s\002 (%s:%d)",user->nick,x->Name.c_str(),(x->HiddenFromStats ? "<hidden>" : x->IPAddr.c_str()),x->Port);
3106                                         TreeSocket* newsocket = new TreeSocket(x->IPAddr,x->Port,false,10,x->Name);
3107                                         if (newsocket->GetState() != I_ERROR)
3108                                         {
3109                                                 Srv->AddSocket(newsocket);
3110                                         }
3111                                         else
3112                                         {
3113                                                 WriteServ(user->fd,"NOTICE %s :*** CONNECT: Error connecting \002%s\002.",user->nick,x->Name.c_str());
3114                                                 delete newsocket;
3115                                         }
3116                                         return 1;
3117                                 }
3118                                 else
3119                                 {
3120                                         WriteServ(user->fd,"NOTICE %s :*** CONNECT: Server \002%s\002 already exists on the network and is connected via \002%s\002",user->nick,x->Name.c_str(),CheckDupe->GetParent()->GetName().c_str());
3121                                         return 1;
3122                                 }
3123                         }
3124                 }
3125                 WriteServ(user->fd,"NOTICE %s :*** CONNECT: No server matching \002%s\002 could be found in the config file.",user->nick,parameters[0]);
3126                 return 1;
3127         }
3128
3129         virtual int OnStats(char statschar, userrec* user)
3130         {
3131                 if (statschar == 'c')
3132                 {
3133                         for (unsigned int i = 0; i < LinkBlocks.size(); i++)
3134                         {
3135                                 WriteServ(user->fd,"213 %s C *@%s * %s %d 0 %c%c%c",user->nick,(LinkBlocks[i].HiddenFromStats ? "<hidden>" : LinkBlocks[i].IPAddr).c_str(),LinkBlocks[i].Name.c_str(),LinkBlocks[i].Port,(LinkBlocks[i].EncryptionKey != "" ? 'e' : '-'),(LinkBlocks[i].AutoConnect ? 'a' : '-'),'s');
3136                                 WriteServ(user->fd,"244 %s H * * %s",user->nick,LinkBlocks[i].Name.c_str());
3137                         }
3138                         WriteServ(user->fd,"219 %s %c :End of /STATS report",user->nick,statschar);
3139                         WriteOpers("*** Notice: Stats '%c' requested by %s (%s@%s)",statschar,user->nick,user->ident,user->host);
3140                         return 1;
3141                 }
3142                 return 0;
3143         }
3144
3145         virtual int OnPreCommand(std::string command, char **parameters, int pcnt, userrec *user, bool validated)
3146         {
3147                 /* If the command doesnt appear to be valid, we dont want to mess with it. */
3148                 if (!validated)
3149                         return 0;
3150
3151                 if (command == "CONNECT")
3152                 {
3153                         return this->HandleConnect(parameters,pcnt,user);
3154                 }
3155                 else if (command == "SQUIT")
3156                 {
3157                         return this->HandleSquit(parameters,pcnt,user);
3158                 }
3159                 else if (command == "MAP")
3160                 {
3161                         this->HandleMap(parameters,pcnt,user);
3162                         return 1;
3163                 }
3164                 else if ((command == "TIME") && (pcnt > 0))
3165                 {
3166                         return this->HandleTime(parameters,pcnt,user);
3167                 }
3168                 else if (command == "LUSERS")
3169                 {
3170                         this->HandleLusers(parameters,pcnt,user);
3171                         return 1;
3172                 }
3173                 else if (command == "LINKS")
3174                 {
3175                         this->HandleLinks(parameters,pcnt,user);
3176                         return 1;
3177                 }
3178                 else if (command == "WHOIS")
3179                 {
3180                         if (pcnt > 1)
3181                         {
3182                                 // remote whois
3183                                 return this->HandleRemoteWhois(parameters,pcnt,user);
3184                         }
3185                 }
3186                 else if ((command == "VERSION") && (pcnt > 0))
3187                 {
3188                         this->HandleVersion(parameters,pcnt,user);
3189                         return 1;
3190                 }
3191                 else if (Srv->IsValidModuleCommand(command, pcnt, user))
3192                 {
3193                         // this bit of code cleverly routes all module commands
3194                         // to all remote severs *automatically* so that modules
3195                         // can just handle commands locally, without having
3196                         // to have any special provision in place for remote
3197                         // commands and linking protocols.
3198                         std::deque<std::string> params;
3199                         params.clear();
3200                         for (int j = 0; j < pcnt; j++)
3201                         {
3202                                 if (strchr(parameters[j],' '))
3203                                 {
3204                                         params.push_back(":" + std::string(parameters[j]));
3205                                 }
3206                                 else
3207                                 {
3208                                         params.push_back(std::string(parameters[j]));
3209                                 }
3210                         }
3211                         log(DEBUG,"Globally route '%s'",command.c_str());
3212                         DoOneToMany(user->nick,command,params);
3213                 }
3214                 return 0;
3215         }
3216
3217         virtual void OnGetServerDescription(std::string servername,std::string &description)
3218         {
3219                 TreeServer* s = FindServer(servername);
3220                 if (s)
3221                 {
3222                         description = s->GetDesc();
3223                 }
3224         }
3225
3226         virtual void OnUserInvite(userrec* source,userrec* dest,chanrec* channel)
3227         {
3228                 if (source->fd > -1)
3229                 {
3230                         std::deque<std::string> params;
3231                         params.push_back(dest->nick);
3232                         params.push_back(channel->name);
3233                         DoOneToMany(source->nick,"INVITE",params);
3234                 }
3235         }
3236
3237         virtual void OnPostLocalTopicChange(userrec* user, chanrec* chan, std::string topic)
3238         {
3239                 std::deque<std::string> params;
3240                 params.push_back(chan->name);
3241                 params.push_back(":"+topic);
3242                 DoOneToMany(user->nick,"TOPIC",params);
3243         }
3244
3245         virtual void OnWallops(userrec* user, std::string text)
3246         {
3247                 if (user->fd > -1)
3248                 {
3249                         std::deque<std::string> params;
3250                         params.push_back(":"+text);
3251                         DoOneToMany(user->nick,"WALLOPS",params);
3252                 }
3253         }
3254
3255         virtual void OnUserNotice(userrec* user, void* dest, int target_type, std::string text, char status)
3256         {
3257                 if (target_type == TYPE_USER)
3258                 {
3259                         userrec* d = (userrec*)dest;
3260                         if ((d->fd < 0) && (user->fd > -1))
3261                         {
3262                                 std::deque<std::string> params;
3263                                 params.clear();
3264                                 params.push_back(d->nick);
3265                                 params.push_back(":"+text);
3266                                 DoOneToOne(user->nick,"NOTICE",params,d->server);
3267                         }
3268                 }
3269                 else
3270                 {
3271                         if (user->fd > -1)
3272                         {
3273                                 chanrec *c = (chanrec*)dest;
3274                                 std::string cname = c->name;
3275                                 if (status)
3276                                         cname = status + cname;
3277                                 std::deque<TreeServer*> list;
3278                                 GetListOfServersForChannel(c,list);
3279                                 unsigned int ucount = list.size();
3280                                 for (unsigned int i = 0; i < ucount; i++)
3281                                 {
3282                                         TreeSocket* Sock = list[i]->GetSocket();
3283                                         if (Sock)
3284                                                 Sock->WriteLine(":"+std::string(user->nick)+" NOTICE "+cname+" :"+text);
3285                                 }
3286                         }
3287                 }
3288         }
3289
3290         virtual void OnUserMessage(userrec* user, void* dest, int target_type, std::string text, char status)
3291         {
3292                 if (target_type == TYPE_USER)
3293                 {
3294                         // route private messages which are targetted at clients only to the server
3295                         // which needs to receive them
3296                         userrec* d = (userrec*)dest;
3297                         if ((d->fd < 0) && (user->fd > -1))
3298                         {
3299                                 std::deque<std::string> params;
3300                                 params.clear();
3301                                 params.push_back(d->nick);
3302                                 params.push_back(":"+text);
3303                                 DoOneToOne(user->nick,"PRIVMSG",params,d->server);
3304                         }
3305                 }
3306                 else
3307                 {
3308                         if (user->fd > -1)
3309                         {
3310                                 chanrec *c = (chanrec*)dest;
3311                                 std::string cname = c->name;
3312                                 if (status)
3313                                         cname = status + cname;
3314                                 std::deque<TreeServer*> list;
3315                                 GetListOfServersForChannel(c,list);
3316                                 unsigned int ucount = list.size();
3317                                 for (unsigned int i = 0; i < ucount; i++)
3318                                 {
3319                                         TreeSocket* Sock = list[i]->GetSocket();
3320                                         if (Sock)
3321                                                 Sock->WriteLine(":"+std::string(user->nick)+" PRIVMSG "+cname+" :"+text);
3322                                 }
3323                         }
3324                 }
3325         }
3326
3327         virtual void OnBackgroundTimer(time_t curtime)
3328         {
3329                 AutoConnectServers(curtime);
3330                 DoPingChecks(curtime);
3331         }
3332
3333         virtual void OnUserJoin(userrec* user, chanrec* channel)
3334         {
3335                 // Only do this for local users
3336                 if (user->fd > -1)
3337                 {
3338                         std::deque<std::string> params;
3339                         params.clear();
3340                         params.push_back(channel->name);
3341                         if (*channel->key)
3342                         {
3343                                 // if the channel has a key, force the join by emulating the key.
3344                                 params.push_back(channel->key);
3345                         }
3346                         if (channel->GetUserCounter() > 1)
3347                         {
3348                                 // not the first in the channel
3349                                 DoOneToMany(user->nick,"JOIN",params);
3350                         }
3351                         else
3352                         {
3353                                 // first in the channel, set up their permissions
3354                                 // and the channel TS with FJOIN.
3355                                 char ts[24];
3356                                 snprintf(ts,24,"%lu",(unsigned long)channel->age);
3357                                 params.clear();
3358                                 params.push_back(channel->name);
3359                                 params.push_back(ts);
3360                                 params.push_back("@"+std::string(user->nick));
3361                                 DoOneToMany(Srv->GetServerName(),"FJOIN",params);
3362                         }
3363                 }
3364         }
3365
3366         virtual void OnChangeHost(userrec* user, std::string newhost)
3367         {
3368                 // only occurs for local clients
3369                 if (user->registered != 7)
3370                         return;
3371                 std::deque<std::string> params;
3372                 params.push_back(newhost);
3373                 DoOneToMany(user->nick,"FHOST",params);
3374         }
3375
3376         virtual void OnChangeName(userrec* user, std::string gecos)
3377         {
3378                 // only occurs for local clients
3379                 if (user->registered != 7)
3380                         return;
3381                 std::deque<std::string> params;
3382                 params.push_back(gecos);
3383                 DoOneToMany(user->nick,"FNAME",params);
3384         }
3385
3386         virtual void OnUserPart(userrec* user, chanrec* channel, std::string partmessage)
3387         {
3388                 if (user->fd > -1)
3389                 {
3390                         std::deque<std::string> params;
3391                         params.push_back(channel->name);
3392                         if (partmessage != "")
3393                                 params.push_back(":"+partmessage);
3394                         DoOneToMany(user->nick,"PART",params);
3395                 }
3396         }
3397
3398         virtual void OnUserConnect(userrec* user)
3399         {
3400                 char agestr[MAXBUF];
3401                 if (user->fd > -1)
3402                 {
3403                         std::deque<std::string> params;
3404                         snprintf(agestr,MAXBUF,"%lu",(unsigned long)user->age);
3405                         params.push_back(agestr);
3406                         params.push_back(user->nick);
3407                         params.push_back(user->host);
3408                         params.push_back(user->dhost);
3409                         params.push_back(user->ident);
3410                         params.push_back("+"+std::string(user->modes));
3411                         params.push_back((char*)inet_ntoa(user->ip4));
3412                         params.push_back(":"+std::string(user->fullname));
3413                         DoOneToMany(Srv->GetServerName(),"NICK",params);
3414
3415                         // User is Local, change needs to be reflected!
3416                         TreeServer* SourceServer = FindServer(user->server);
3417                         if (SourceServer)
3418                         {
3419                                 SourceServer->AddUserCount();
3420                         }
3421
3422                 }
3423         }
3424
3425         virtual void OnUserQuit(userrec* user, std::string reason)
3426         {
3427                 if ((user->fd > -1) && (user->registered == 7))
3428                 {
3429                         std::deque<std::string> params;
3430                         params.push_back(":"+reason);
3431                         DoOneToMany(user->nick,"QUIT",params);
3432                 }
3433                 // Regardless, We need to modify the user Counts..
3434                 TreeServer* SourceServer = FindServer(user->server);
3435                 if (SourceServer)
3436                 {
3437                         SourceServer->DelUserCount();
3438                 }
3439
3440         }
3441
3442         virtual void OnUserPostNick(userrec* user, std::string oldnick)
3443         {
3444                 if (user->fd > -1)
3445                 {
3446                         std::deque<std::string> params;
3447                         params.push_back(user->nick);
3448                         DoOneToMany(oldnick,"NICK",params);
3449                 }
3450         }
3451
3452         virtual void OnUserKick(userrec* source, userrec* user, chanrec* chan, std::string reason)
3453         {
3454                 if ((source) && (source->fd > -1))
3455                 {
3456                         std::deque<std::string> params;
3457                         params.push_back(chan->name);
3458                         params.push_back(user->nick);
3459                         params.push_back(":"+reason);
3460                         DoOneToMany(source->nick,"KICK",params);
3461                 }
3462         }
3463
3464         virtual void OnRemoteKill(userrec* source, userrec* dest, std::string reason)
3465         {
3466                 std::deque<std::string> params;
3467                 params.push_back(dest->nick);
3468                 params.push_back(":"+reason);
3469                 DoOneToMany(source->nick,"KILL",params);
3470         }
3471
3472         virtual void OnRehash(std::string parameter)
3473         {
3474                 if (parameter != "")
3475                 {
3476                         std::deque<std::string> params;
3477                         params.push_back(parameter);
3478                         DoOneToMany(Srv->GetServerName(),"REHASH",params);
3479                         // check for self
3480                         if (Srv->MatchText(Srv->GetServerName(),parameter))
3481                         {
3482                                 Srv->SendOpers("*** Remote rehash initiated from server \002"+Srv->GetServerName()+"\002.");
3483                                 Srv->RehashServer();
3484                         }
3485                 }
3486                 ReadConfiguration(false);
3487         }
3488
3489         // note: the protocol does not allow direct umode +o except
3490         // via NICK with 8 params. sending OPERTYPE infers +o modechange
3491         // locally.
3492         virtual void OnOper(userrec* user, std::string opertype)
3493         {
3494                 if (user->fd > -1)
3495                 {
3496                         std::deque<std::string> params;
3497                         params.push_back(opertype);
3498                         DoOneToMany(user->nick,"OPERTYPE",params);
3499                 }
3500         }
3501
3502         void OnLine(userrec* source, std::string host, bool adding, char linetype, long duration, std::string reason)
3503         {
3504                 if (source->fd > -1)
3505                 {
3506                         char type[8];
3507                         snprintf(type,8,"%cLINE",linetype);
3508                         std::string stype = type;
3509                         if (adding)
3510                         {
3511                                 char sduration[MAXBUF];
3512                                 snprintf(sduration,MAXBUF,"%ld",duration);
3513                                 std::deque<std::string> params;
3514                                 params.push_back(host);
3515                                 params.push_back(sduration);
3516                                 params.push_back(":"+reason);
3517                                 DoOneToMany(source->nick,stype,params);
3518                         }
3519                         else
3520                         {
3521                                 std::deque<std::string> params;
3522                                 params.push_back(host);
3523                                 DoOneToMany(source->nick,stype,params);
3524                         }
3525                 }
3526         }
3527
3528         virtual void OnAddGLine(long duration, userrec* source, std::string reason, std::string hostmask)
3529         {
3530                 OnLine(source,hostmask,true,'G',duration,reason);
3531         }
3532         
3533         virtual void OnAddZLine(long duration, userrec* source, std::string reason, std::string ipmask)
3534         {
3535                 OnLine(source,ipmask,true,'Z',duration,reason);
3536         }
3537
3538         virtual void OnAddQLine(long duration, userrec* source, std::string reason, std::string nickmask)
3539         {
3540                 OnLine(source,nickmask,true,'Q',duration,reason);
3541         }
3542
3543         virtual void OnAddELine(long duration, userrec* source, std::string reason, std::string hostmask)
3544         {
3545                 OnLine(source,hostmask,true,'E',duration,reason);
3546         }
3547
3548         virtual void OnDelGLine(userrec* source, std::string hostmask)
3549         {
3550                 OnLine(source,hostmask,false,'G',0,"");
3551         }
3552
3553         virtual void OnDelZLine(userrec* source, std::string ipmask)
3554         {
3555                 OnLine(source,ipmask,false,'Z',0,"");
3556         }
3557
3558         virtual void OnDelQLine(userrec* source, std::string nickmask)
3559         {
3560                 OnLine(source,nickmask,false,'Q',0,"");
3561         }
3562
3563         virtual void OnDelELine(userrec* source, std::string hostmask)
3564         {
3565                 OnLine(source,hostmask,false,'E',0,"");
3566         }
3567
3568         virtual void OnMode(userrec* user, void* dest, int target_type, std::string text)
3569         {
3570                 if ((user->fd > -1) && (user->registered == 7))
3571                 {
3572                         if (target_type == TYPE_USER)
3573                         {
3574                                 userrec* u = (userrec*)dest;
3575                                 std::deque<std::string> params;
3576                                 params.push_back(u->nick);
3577                                 params.push_back(text);
3578                                 DoOneToMany(user->nick,"MODE",params);
3579                         }
3580                         else
3581                         {
3582                                 chanrec* c = (chanrec*)dest;
3583                                 std::deque<std::string> params;
3584                                 params.push_back(c->name);
3585                                 params.push_back(text);
3586                                 DoOneToMany(user->nick,"MODE",params);
3587                         }
3588                 }
3589         }
3590
3591         virtual void OnSetAway(userrec* user)
3592         {
3593                 if (IS_LOCAL(user))
3594                 {
3595                         std::deque<std::string> params;
3596                         params.push_back(":"+std::string(user->awaymsg));
3597                         DoOneToMany(user->nick,"AWAY",params);
3598                 }
3599         }
3600
3601         virtual void OnCancelAway(userrec* user)
3602         {
3603                 if (IS_LOCAL(user))
3604                 {
3605                         std::deque<std::string> params;
3606                         params.clear();
3607                         DoOneToMany(user->nick,"AWAY",params);
3608                 }
3609         }
3610
3611         virtual void ProtoSendMode(void* opaque, int target_type, void* target, std::string modeline)
3612         {
3613                 TreeSocket* s = (TreeSocket*)opaque;
3614                 if (target)
3615                 {
3616                         if (target_type == TYPE_USER)
3617                         {
3618                                 userrec* u = (userrec*)target;
3619                                 s->WriteLine(":"+Srv->GetServerName()+" FMODE "+u->nick+" "+modeline);
3620                         }
3621                         else
3622                         {
3623                                 chanrec* c = (chanrec*)target;
3624                                 s->WriteLine(":"+Srv->GetServerName()+" FMODE "+c->name+" "+modeline);
3625                         }
3626                 }
3627         }
3628
3629         virtual void ProtoSendMetaData(void* opaque, int target_type, void* target, std::string extname, std::string extdata)
3630         {
3631                 TreeSocket* s = (TreeSocket*)opaque;
3632                 if (target)
3633                 {
3634                         if (target_type == TYPE_USER)
3635                         {
3636                                 userrec* u = (userrec*)target;
3637                                 s->WriteLine(":"+Srv->GetServerName()+" METADATA "+u->nick+" "+extname+" :"+extdata);
3638                         }
3639                         else if (target_type == TYPE_OTHER)
3640                         {
3641                                 s->WriteLine(":"+Srv->GetServerName()+" METADATA * "+extname+" :"+extdata);
3642                         }
3643                         else if (target_type == TYPE_CHANNEL)
3644                         {
3645                                 chanrec* c = (chanrec*)target;
3646                                 s->WriteLine(":"+Srv->GetServerName()+" METADATA "+c->name+" "+extname+" :"+extdata);
3647                         }
3648                 }
3649         }
3650
3651         virtual void OnEvent(Event* event)
3652         {
3653                 if (event->GetEventID() == "send_metadata")
3654                 {
3655                         std::deque<std::string>* params = (std::deque<std::string>*)event->GetData();
3656                         if (params->size() < 3)
3657                                 return;
3658                         (*params)[2] = ":" + (*params)[2];
3659                         DoOneToMany(Srv->GetServerName(),"METADATA",*params);
3660                 }
3661         }
3662
3663         virtual ~ModuleSpanningTree()
3664         {
3665         }
3666
3667         virtual Version GetVersion()
3668         {
3669                 return Version(1,0,0,0,VF_STATIC|VF_VENDOR);
3670         }
3671
3672         void Implements(char* List)
3673         {
3674                 List[I_OnPreCommand] = List[I_OnGetServerDescription] = List[I_OnUserInvite] = List[I_OnPostLocalTopicChange] = 1;
3675                 List[I_OnWallops] = List[I_OnUserNotice] = List[I_OnUserMessage] = List[I_OnBackgroundTimer] = 1;
3676                 List[I_OnUserJoin] = List[I_OnChangeHost] = List[I_OnChangeName] = List[I_OnUserPart] = List[I_OnUserConnect] = 1;
3677                 List[I_OnUserQuit] = List[I_OnUserPostNick] = List[I_OnUserKick] = List[I_OnRemoteKill] = List[I_OnRehash] = 1;
3678                 List[I_OnOper] = List[I_OnAddGLine] = List[I_OnAddZLine] = List[I_OnAddQLine] = List[I_OnAddELine] = 1;
3679                 List[I_OnDelGLine] = List[I_OnDelZLine] = List[I_OnDelQLine] = List[I_OnDelELine] = List[I_ProtoSendMode] = List[I_OnMode] = 1;
3680                 List[I_OnStats] = List[I_ProtoSendMetaData] = List[I_OnEvent] = List[I_OnSetAway] = List[I_OnCancelAway] = 1;
3681         }
3682
3683         /* It is IMPORTANT that m_spanningtree is the last module in the chain
3684          * so that any activity it sees is FINAL, e.g. we arent going to send out
3685          * a NICK message before m_cloaking has finished putting the +x on the user,
3686          * etc etc.
3687          * Therefore, we return PRIORITY_LAST to make sure we end up at the END of
3688          * the module call queue.
3689          */
3690         Priority Prioritize()
3691         {
3692                 return PRIORITY_LAST;
3693         }
3694 };
3695
3696
3697 class ModuleSpanningTreeFactory : public ModuleFactory
3698 {
3699  public:
3700         ModuleSpanningTreeFactory()
3701         {
3702         }
3703         
3704         ~ModuleSpanningTreeFactory()
3705         {
3706         }
3707         
3708         virtual Module * CreateModule(Server* Me)
3709         {
3710                 TreeProtocolModule = new ModuleSpanningTree(Me);
3711                 return TreeProtocolModule;
3712         }
3713         
3714 };
3715
3716
3717 extern "C" void * init_module( void )
3718 {
3719         return new ModuleSpanningTreeFactory;
3720 }