]> git.netwichtig.de Git - user/henk/code/inspircd.git/blob - src/modules/extra/m_ssl_gnutls.cpp
Fix broken openssl outbound connects.
[user/henk/code/inspircd.git] / src / modules / extra / m_ssl_gnutls.cpp
1 /*       +------------------------------------+
2  *       | Inspire Internet Relay Chat Daemon |
3  *       +------------------------------------+
4  *
5  *  InspIRCd: (C) 2002-2007 InspIRCd Development Team
6  * See: http://www.inspircd.org/wiki/index.php/Credits
7  *
8  * This program is free but copyrighted software; see
9  *            the file COPYING for details.
10  *
11  * ---------------------------------------------------
12  */
13
14 #include <string>
15 #include <vector>
16
17 #include <gnutls/gnutls.h>
18 #include <gnutls/x509.h>
19
20 #include "inspircd_config.h"
21 #include "configreader.h"
22 #include "users.h"
23 #include "channels.h"
24 #include "modules.h"
25
26 #include "socket.h"
27 #include "hashcomp.h"
28 #include "inspircd.h"
29
30 #include "transport.h"
31
32 /* $ModDesc: Provides SSL support for clients */
33 /* $CompileFlags: exec("libgnutls-config --cflags") */
34 /* $LinkerFlags: rpath("libgnutls-config --libs") exec("libgnutls-config --libs") */
35 /* $ModDep: transport.h */
36
37
38 enum issl_status { ISSL_NONE, ISSL_HANDSHAKING_READ, ISSL_HANDSHAKING_WRITE, ISSL_HANDSHAKEN, ISSL_CLOSING, ISSL_CLOSED };
39
40 bool isin(int port, const std::vector<int> &portlist)
41 {
42         for(unsigned int i = 0; i < portlist.size(); i++)
43                 if(portlist[i] == port)
44                         return true;
45                         
46         return false;
47 }
48
49 /** Represents an SSL user's extra data
50  */
51 class issl_session : public classbase
52 {
53 public:
54         gnutls_session_t sess;
55         issl_status status;
56         std::string outbuf;
57         int inbufoffset;
58         char* inbuf;
59         int fd;
60 };
61
62 class ModuleSSLGnuTLS : public Module
63 {
64         
65         ConfigReader* Conf;
66
67         char* dummy;
68         
69         CullList* culllist;
70         
71         std::vector<int> listenports;
72         
73         int inbufsize;
74         issl_session sessions[MAX_DESCRIPTORS];
75         
76         gnutls_certificate_credentials x509_cred;
77         gnutls_dh_params dh_params;
78         
79         std::string keyfile;
80         std::string certfile;
81         std::string cafile;
82         std::string crlfile;
83         int dh_bits;
84         
85  public:
86         
87         ModuleSSLGnuTLS(InspIRCd* Me)
88                 : Module::Module(Me)
89         {
90                 
91
92                 culllist = new CullList(ServerInstance);
93
94                 ServerInstance->PublishInterface("InspSocketHook", this);
95                 
96                 // Not rehashable...because I cba to reduce all the sizes of existing buffers.
97                 inbufsize = ServerInstance->Config->NetBufferSize;
98                 
99                 gnutls_global_init(); // This must be called once in the program
100
101                 if(gnutls_certificate_allocate_credentials(&x509_cred) != 0)
102                         ServerInstance->Log(DEFAULT, "m_ssl_gnutls.so: Failed to allocate certificate credentials");
103
104                 // Guessing return meaning
105                 if(gnutls_dh_params_init(&dh_params) < 0)
106                         ServerInstance->Log(DEFAULT, "m_ssl_gnutls.so: Failed to initialise DH parameters");
107
108                 // Needs the flag as it ignores a plain /rehash
109                 OnRehash(NULL,"ssl");
110                 
111                 // Void return, guess we assume success
112                 gnutls_certificate_set_dh_params(x509_cred, dh_params);
113         }
114         
115         virtual void OnRehash(userrec* user, const std::string &param)
116         {
117                 if(param != "ssl")
118                         return;
119         
120                 Conf = new ConfigReader(ServerInstance);
121                 
122                 for(unsigned int i = 0; i < listenports.size(); i++)
123                 {
124                         ServerInstance->Config->DelIOHook(listenports[i]);
125                 }
126                 
127                 listenports.clear();
128                 
129                 for(int i = 0; i < Conf->Enumerate("bind"); i++)
130                 {
131                         // For each <bind> tag
132                         if(((Conf->ReadValue("bind", "type", i) == "") || (Conf->ReadValue("bind", "type", i) == "clients")) && (Conf->ReadValue("bind", "ssl", i) == "gnutls"))
133                         {
134                                 // Get the port we're meant to be listening on with SSL
135                                 std::string port = Conf->ReadValue("bind", "port", i);
136                                 irc::portparser portrange(port, false);
137                                 long portno = -1;
138                                 while ((portno = portrange.GetToken()))
139                                 {
140                                         if (ServerInstance->Config->AddIOHook(portno, this))
141                                         {
142                                                 listenports.push_back(portno);
143                                                 for (unsigned int i = 0; i < ServerInstance->stats->BoundPortCount; i++)
144                                                         if (ServerInstance->Config->ports[i] == portno)
145                                                                 ServerInstance->Config->openSockfd[i]->SetDescription("ssl");
146                                                 ServerInstance->Log(DEFAULT, "m_ssl_gnutls.so: Enabling SSL for port %d", portno);
147                                         }
148                                         else
149                                         {
150                                                 ServerInstance->Log(DEFAULT, "m_ssl_gnutls.so: FAILED to enable SSL on port %d, maybe you have another ssl or similar module loaded?", portno);
151                                         }
152                                 }
153                         }
154                 }
155                 
156                 std::string confdir(CONFIG_FILE);
157                 // +1 so we the path ends with a /
158                 confdir = confdir.substr(0, confdir.find_last_of('/') + 1);
159                 
160                 cafile  = Conf->ReadValue("gnutls", "cafile", 0);
161                 crlfile = Conf->ReadValue("gnutls", "crlfile", 0);
162                 certfile        = Conf->ReadValue("gnutls", "certfile", 0);
163                 keyfile = Conf->ReadValue("gnutls", "keyfile", 0);
164                 dh_bits = Conf->ReadInteger("gnutls", "dhbits", 0, false);
165                 
166                 // Set all the default values needed.
167                 if(cafile == "")
168                         cafile = "ca.pem";
169                         
170                 if(crlfile == "")
171                         crlfile = "crl.pem";
172                         
173                 if(certfile == "")
174                         certfile = "cert.pem";
175                         
176                 if(keyfile == "")
177                         keyfile = "key.pem";
178                         
179                 if((dh_bits != 768) && (dh_bits != 1024) && (dh_bits != 2048) && (dh_bits != 3072) && (dh_bits != 4096))
180                         dh_bits = 1024;
181                         
182                 // Prepend relative paths with the path to the config directory.        
183                 if(cafile[0] != '/')
184                         cafile = confdir + cafile;
185                 
186                 if(crlfile[0] != '/')
187                         crlfile = confdir + crlfile;
188                         
189                 if(certfile[0] != '/')
190                         certfile = confdir + certfile;
191                         
192                 if(keyfile[0] != '/')
193                         keyfile = confdir + keyfile;
194                 
195                 if(gnutls_certificate_set_x509_trust_file(x509_cred, cafile.c_str(), GNUTLS_X509_FMT_PEM) < 0)
196                         ServerInstance->Log(DEFAULT, "m_ssl_gnutls.so: Failed to set X.509 trust file: %s", cafile.c_str());
197                         
198                 if(gnutls_certificate_set_x509_crl_file (x509_cred, crlfile.c_str(), GNUTLS_X509_FMT_PEM) < 0)
199                         ServerInstance->Log(DEFAULT, "m_ssl_gnutls.so: Failed to set X.509 CRL file: %s", crlfile.c_str());
200                 
201                 // Guessing on the return value of this, manual doesn't say :|
202                 if(gnutls_certificate_set_x509_key_file (x509_cred, certfile.c_str(), keyfile.c_str(), GNUTLS_X509_FMT_PEM) < 0)
203                         ServerInstance->Log(DEFAULT, "m_ssl_gnutls.so: Failed to set X.509 certificate and key files: %s and %s", certfile.c_str(), keyfile.c_str());   
204                         
205                 // This may be on a large (once a day or week) timer eventually.
206                 GenerateDHParams();
207                 
208                 DELETE(Conf);
209         }
210         
211         void GenerateDHParams()
212         {
213                 // Generate Diffie Hellman parameters - for use with DHE
214                 // kx algorithms. These should be discarded and regenerated
215                 // once a day, once a week or once a month. Depending on the
216                 // security requirements.
217                 
218                 if(gnutls_dh_params_generate2(dh_params, dh_bits) < 0)
219                         ServerInstance->Log(DEFAULT, "m_ssl_gnutls.so: Failed to generate DH parameters (%d bits)", dh_bits);
220         }
221         
222         virtual ~ModuleSSLGnuTLS()
223         {
224                 gnutls_dh_params_deinit(dh_params);
225                 gnutls_certificate_free_credentials(x509_cred);
226                 gnutls_global_deinit();
227                 delete culllist;
228         }
229         
230         virtual void OnCleanup(int target_type, void* item)
231         {
232                 if(target_type == TYPE_USER)
233                 {
234                         userrec* user = (userrec*)item;
235                         
236                         if(user->GetExt("ssl", dummy) && isin(user->GetPort(), listenports))
237                         {
238                                 // User is using SSL, they're a local user, and they're using one of *our* SSL ports.
239                                 // Potentially there could be multiple SSL modules loaded at once on different ports.
240                                 culllist->AddItem(user, "SSL module unloading");
241                         }
242                         if (user->GetExt("ssl_cert", dummy) && isin(user->GetPort(), listenports))
243                         {
244                                 ssl_cert* tofree;
245                                 user->GetExt("ssl_cert", tofree);
246                                 delete tofree;
247                                 user->Shrink("ssl_cert");
248                         }
249                 }
250         }
251         
252         virtual void OnUnloadModule(Module* mod, const std::string &name)
253         {
254                 if(mod == this)
255                 {
256                         // We're being unloaded, kill all the users added to the cull list in OnCleanup
257                         culllist->Apply();
258                         
259                         for(unsigned int i = 0; i < listenports.size(); i++)
260                         {
261                                 ServerInstance->Config->DelIOHook(listenports[i]);
262                                 for (unsigned int j = 0; j < ServerInstance->stats->BoundPortCount; j++)
263                                         if (ServerInstance->Config->ports[j] == listenports[i])
264                                                 if (ServerInstance->Config->openSockfd[j])
265                                                         ServerInstance->Config->openSockfd[j]->SetDescription("plaintext");
266                         }
267                 }
268         }
269         
270         virtual Version GetVersion()
271         {
272                 return Version(1, 1, 0, 0, VF_VENDOR, API_VERSION);
273         }
274
275         void Implements(char* List)
276         {
277                 List[I_OnRawSocketConnect] = List[I_OnRawSocketAccept] = List[I_OnRawSocketClose] = List[I_OnRawSocketRead] = List[I_OnRawSocketWrite] = List[I_OnCleanup] = 1;
278                 List[I_OnRequest] = List[I_OnSyncUserMetaData] = List[I_OnDecodeMetaData] = List[I_OnUnloadModule] = List[I_OnRehash] = List[I_OnWhois] = List[I_OnPostConnect] = 1;
279         }
280
281         virtual char* OnRequest(Request* request)
282         {
283                 ISHRequest* ISR = (ISHRequest*)request;
284                 if (strcmp("IS_NAME", request->GetId()) == 0)
285                 {
286                         return "gnutls";
287                 }
288                 else if (strcmp("IS_HOOK", request->GetId()) == 0)
289                 {
290                         char* ret = "OK";
291                         try
292                         {
293                                 ret = ServerInstance->Config->AddIOHook((Module*)this, (InspSocket*)ISR->Sock) ? (char*)"OK" : NULL;
294                         }
295                         catch (ModuleException &e)
296                         {
297                                 return NULL;
298                         }
299                         return ret;
300                 }
301                 else if (strcmp("IS_UNHOOK", request->GetId()) == 0)
302                 {
303                         return ServerInstance->Config->DelIOHook((InspSocket*)ISR->Sock) ? (char*)"OK" : NULL;
304                 }
305                 else if (strcmp("IS_HSDONE", request->GetId()) == 0)
306                 {
307                         issl_session* session = &sessions[ISR->Sock->GetFd()];
308                         return (session->status == ISSL_HANDSHAKING_READ || session->status == ISSL_HANDSHAKING_WRITE) ? NULL : (char*)"OK";
309                 }
310                 else if (strcmp("IS_ATTACH", request->GetId()) == 0)
311                 {
312                         issl_session* session = &sessions[ISR->Sock->GetFd()];
313                         if (session)
314                         {
315                                 VerifyCertificate(session, (InspSocket*)ISR->Sock);
316                                 return "OK";
317                         }
318                 }
319                 return NULL;
320         }
321
322
323         virtual void OnRawSocketAccept(int fd, const std::string &ip, int localport)
324         {
325                 issl_session* session = &sessions[fd];
326         
327                 session->fd = fd;
328                 session->inbuf = new char[inbufsize];
329                 session->inbufoffset = 0;
330         
331                 gnutls_init(&session->sess, GNUTLS_SERVER);
332
333                 gnutls_set_default_priority(session->sess); // Avoid calling all the priority functions, defaults are adequate.
334                 gnutls_credentials_set(session->sess, GNUTLS_CRD_CERTIFICATE, x509_cred);
335                 gnutls_certificate_server_set_request(session->sess, GNUTLS_CERT_REQUEST); // Request client certificate if any.
336                 gnutls_dh_set_prime_bits(session->sess, dh_bits);
337                 
338                 /* This is an experimental change to avoid a warning on 64bit systems about casting between integer and pointer of different sizes
339                  * This needs testing, but it's easy enough to rollback if need be
340                  * Old: gnutls_transport_set_ptr(session->sess, (gnutls_transport_ptr_t) fd); // Give gnutls the fd for the socket.
341                  * New: gnutls_transport_set_ptr(session->sess, &fd); // Give gnutls the fd for the socket.
342                  *
343                  * With testing this seems to...not work :/
344                  */
345                 
346                 gnutls_transport_set_ptr(session->sess, (gnutls_transport_ptr_t) fd); // Give gnutls the fd for the socket.
347
348                 Handshake(session);
349         }
350
351         virtual void OnRawSocketConnect(int fd)
352         {
353                 issl_session* session = &sessions[fd];
354
355                 session->fd = fd;
356                 session->inbuf = new char[inbufsize];
357                 session->inbufoffset = 0;
358
359                 gnutls_init(&session->sess, GNUTLS_SERVER);
360
361                 gnutls_set_default_priority(session->sess); // Avoid calling all the priority functions, defaults are adequate.
362                 gnutls_credentials_set(session->sess, GNUTLS_CRD_CERTIFICATE, x509_cred);
363                 gnutls_dh_set_prime_bits(session->sess, dh_bits);
364
365                 gnutls_transport_set_ptr(session->sess, (gnutls_transport_ptr_t) fd); // Give gnutls the fd for the socket.
366
367                 Handshake(session);
368         }
369
370         virtual void OnRawSocketClose(int fd)
371         {
372                 CloseSession(&sessions[fd]);
373
374                 EventHandler* user = ServerInstance->SE->GetRef(fd);
375
376                 if ((user) && (user->GetExt("ssl_cert", dummy)))
377                 {
378                         ssl_cert* tofree;
379                         user->GetExt("ssl_cert", tofree);
380                         delete tofree;
381                         user->Shrink("ssl_cert");
382                 }
383         }
384         
385         virtual int OnRawSocketRead(int fd, char* buffer, unsigned int count, int &readresult)
386         {
387                 issl_session* session = &sessions[fd];
388                 
389                 if (!session->sess)
390                 {
391                         readresult = 0;
392                         CloseSession(session);
393                         return 1;
394                 }
395
396                 if (session->status == ISSL_HANDSHAKING_READ)
397                 {
398                         // The handshake isn't finished, try to finish it.
399                         
400                         if(!Handshake(session))
401                         {
402                                 // Couldn't resume handshake.   
403                                 return -1;
404                         }
405                 }
406                 else if (session->status == ISSL_HANDSHAKING_WRITE)
407                 {
408                         return -1;
409                 }
410                 
411                 // If we resumed the handshake then session->status will be ISSL_HANDSHAKEN.
412                 
413                 if (session->status == ISSL_HANDSHAKEN)
414                 {
415                         // Is this right? Not sure if the unencrypted data is garaunteed to be the same length.
416                         // Read into the inbuffer, offset from the beginning by the amount of data we have that insp hasn't taken yet.
417                         int ret = gnutls_record_recv(session->sess, session->inbuf + session->inbufoffset, inbufsize - session->inbufoffset);
418
419                         if (ret == 0)
420                         {
421                                 // Client closed connection.
422                                 readresult = 0;
423                                 CloseSession(session);
424                                 return 1;
425                         }
426                         else if (ret < 0)
427                         {
428                                 if (ret == GNUTLS_E_AGAIN || ret == GNUTLS_E_INTERRUPTED)
429                                         return -1;
430                                 else
431                                 {
432                                         readresult = 0;
433                                         CloseSession(session);
434                                 }
435                         }
436                         else
437                         {
438                                 // Read successfully 'ret' bytes into inbuf + inbufoffset
439                                 // There are 'ret' + 'inbufoffset' bytes of data in 'inbuf'
440                                 // 'buffer' is 'count' long
441                                 
442                                 unsigned int length = ret + session->inbufoffset;
443                                                 
444                                 if(count <= length)
445                                 {
446                                         memcpy(buffer, session->inbuf, count);
447                                         // Move the stuff left in inbuf to the beginning of it
448                                         memcpy(session->inbuf, session->inbuf + count, (length - count));
449                                         // Now we need to set session->inbufoffset to the amount of data still waiting to be handed to insp.
450                                         session->inbufoffset = length - count;
451                                         // Insp uses readresult as the count of how much data there is in buffer, so:
452                                         readresult = count;
453                                 }
454                                 else
455                                 {
456                                         // There's not as much in the inbuf as there is space in the buffer, so just copy the whole thing.
457                                         memcpy(buffer, session->inbuf, length);
458                                         // Zero the offset, as there's nothing there..
459                                         session->inbufoffset = 0;
460                                         // As above
461                                         readresult = length;
462                                 }
463                         }
464                 }
465                 else if(session->status == ISSL_CLOSING)
466                         readresult = 0;
467                 
468                 return 1;
469         }
470         
471         virtual int OnRawSocketWrite(int fd, const char* buffer, int count)
472         {
473                 if (!count)
474                         return 0;
475
476                 issl_session* session = &sessions[fd];
477                 const char* sendbuffer = buffer;
478
479                 if(!session->sess)
480                 {
481                         CloseSession(session);
482                         return 1;
483                 }
484                 
485                 if(session->status == ISSL_HANDSHAKING_WRITE)
486                 {
487                         // The handshake isn't finished, try to finish it.
488                         Handshake(session);
489                 }
490
491                 session->outbuf.append(sendbuffer, count);
492                 sendbuffer = session->outbuf.c_str();
493                 count = session->outbuf.size();
494
495                 if(session->status == ISSL_HANDSHAKEN)
496                 {       
497                         int ret = gnutls_record_send(session->sess, sendbuffer, count);
498                 
499                         if(ret == 0)
500                                 CloseSession(session);
501                         else if(ret < 0)
502                         {
503                                 if(ret != GNUTLS_E_AGAIN && ret != GNUTLS_E_INTERRUPTED)
504                                         CloseSession(session);
505                         }
506                         else
507                         {
508                                 session->outbuf = session->outbuf.substr(ret);
509                         }
510                 }
511                 
512                 return 1;
513         }
514         
515         // :kenny.chatspike.net 320 Om Epy|AFK :is a Secure Connection
516         virtual void OnWhois(userrec* source, userrec* dest)
517         {
518                 // Bugfix, only send this numeric for *our* SSL users
519                 if(dest->GetExt("ssl", dummy) || (IS_LOCAL(dest) &&  isin(dest->GetPort(), listenports)))
520                 {
521                         ServerInstance->SendWhoisLine(source, dest, 320, "%s %s :is using a secure connection", source->nick, dest->nick);
522                 }
523         }
524         
525         virtual void OnSyncUserMetaData(userrec* user, Module* proto, void* opaque, const std::string &extname)
526         {
527                 // check if the linking module wants to know about OUR metadata
528                 if(extname == "ssl")
529                 {
530                         // check if this user has an swhois field to send
531                         if(user->GetExt(extname, dummy))
532                         {
533                                 // call this function in the linking module, let it format the data how it
534                                 // sees fit, and send it on its way. We dont need or want to know how.
535                                 proto->ProtoSendMetaData(opaque, TYPE_USER, user, extname, "ON");
536                         }
537                 }
538         }
539         
540         virtual void OnDecodeMetaData(int target_type, void* target, const std::string &extname, const std::string &extdata)
541         {
542                 // check if its our metadata key, and its associated with a user
543                 if ((target_type == TYPE_USER) && (extname == "ssl"))
544                 {
545                         userrec* dest = (userrec*)target;
546                         // if they dont already have an ssl flag, accept the remote server's
547                         if (!dest->GetExt(extname, dummy))
548                         {
549                                 dest->Extend(extname, "ON");
550                         }
551                 }
552         }
553         
554         bool Handshake(issl_session* session)
555         {               
556                 int ret = gnutls_handshake(session->sess);
557       
558                 if(ret < 0)
559                 {
560                         if(ret == GNUTLS_E_AGAIN || ret == GNUTLS_E_INTERRUPTED)
561                         {
562                                 // Handshake needs resuming later, read() or write() would have blocked.
563                                 
564                                 if(gnutls_record_get_direction(session->sess) == 0)
565                                 {
566                                         // gnutls_handshake() wants to read() again.
567                                         session->status = ISSL_HANDSHAKING_READ;
568                                 }
569                                 else
570                                 {
571                                         // gnutls_handshake() wants to write() again.
572                                         session->status = ISSL_HANDSHAKING_WRITE;
573                                         MakePollWrite(session); 
574                                 }
575                         }
576                         else
577                         {
578                                 // Handshake failed.
579                                 CloseSession(session);
580                                 session->status = ISSL_CLOSING;
581                         }
582                         
583                         return false;
584                 }
585                 else
586                 {
587                         // Handshake complete.
588                         // This will do for setting the ssl flag...it could be done earlier if it's needed. But this seems neater.
589                         userrec* extendme = ServerInstance->FindDescriptor(session->fd);
590                         if (extendme)
591                         {
592                                 if (!extendme->GetExt("ssl", dummy))
593                                         extendme->Extend("ssl", "ON");
594                         }
595
596                         // Change the seesion state
597                         session->status = ISSL_HANDSHAKEN;
598                         
599                         // Finish writing, if any left
600                         MakePollWrite(session);
601                         
602                         return true;
603                 }
604         }
605
606         virtual void OnPostConnect(userrec* user)
607         {
608                 // This occurs AFTER OnUserConnect so we can be sure the
609                 // protocol module has propogated the NICK message.
610                 if ((user->GetExt("ssl", dummy)) && (IS_LOCAL(user)))
611                 {
612                         // Tell whatever protocol module we're using that we need to inform other servers of this metadata NOW.
613                         std::deque<std::string>* metadata = new std::deque<std::string>;
614                         metadata->push_back(user->nick);
615                         metadata->push_back("ssl");             // The metadata id
616                         metadata->push_back("ON");              // The value to send
617                         Event* event = new Event((char*)metadata,(Module*)this,"send_metadata");
618                         event->Send(ServerInstance);            // Trigger the event. We don't care what module picks it up.
619                         DELETE(event);
620                         DELETE(metadata);
621
622                         VerifyCertificate(&sessions[user->GetFd()],user);
623                 }
624         }
625         
626         void MakePollWrite(issl_session* session)
627         {
628                 OnRawSocketWrite(session->fd, NULL, 0);
629         }
630         
631         void CloseSession(issl_session* session)
632         {
633                 if(session->sess)
634                 {
635                         gnutls_bye(session->sess, GNUTLS_SHUT_WR);
636                         gnutls_deinit(session->sess);
637                 }
638                 
639                 if(session->inbuf)
640                 {
641                         delete[] session->inbuf;
642                 }
643                 
644                 session->outbuf.clear();
645                 session->inbuf = NULL;
646                 session->sess = NULL;
647                 session->status = ISSL_NONE;
648         }
649
650         void VerifyCertificate(issl_session* session, Extensible* user)
651         {
652                 unsigned int status;
653                 const gnutls_datum_t* cert_list;
654                 int ret;
655                 unsigned int cert_list_size;
656                 gnutls_x509_crt_t cert;
657                 char name[MAXBUF];
658                 unsigned char digest[MAXBUF];
659                 size_t digest_size = sizeof(digest);
660                 size_t name_size = sizeof(name);
661                 ssl_cert* certinfo = new ssl_cert;
662
663                 user->Extend("ssl_cert",certinfo);
664
665                 /* This verification function uses the trusted CAs in the credentials
666                  * structure. So you must have installed one or more CA certificates.
667                  */
668                 ret = gnutls_certificate_verify_peers2(session->sess, &status);
669
670                 if (ret < 0)
671                 {
672                         certinfo->data.insert(std::make_pair("error",std::string(gnutls_strerror(ret))));
673                         return;
674                 }
675
676                 if (status & GNUTLS_CERT_INVALID)
677                 {
678                         certinfo->data.insert(std::make_pair("invalid",ConvToStr(1)));
679                 }
680                 else
681                 {
682                         certinfo->data.insert(std::make_pair("invalid",ConvToStr(0)));
683                 }
684                 if (status & GNUTLS_CERT_SIGNER_NOT_FOUND)
685                 {
686                         certinfo->data.insert(std::make_pair("unknownsigner",ConvToStr(1)));
687                 }
688                 else
689                 {
690                         certinfo->data.insert(std::make_pair("unknownsigner",ConvToStr(0)));
691                 }
692                 if (status & GNUTLS_CERT_REVOKED)
693                 {
694                         certinfo->data.insert(std::make_pair("revoked",ConvToStr(1)));
695                 }
696                 else
697                 {
698                         certinfo->data.insert(std::make_pair("revoked",ConvToStr(0)));
699                 }
700                 if (status & GNUTLS_CERT_SIGNER_NOT_CA)
701                 {
702                         certinfo->data.insert(std::make_pair("trusted",ConvToStr(0)));
703                 }
704                 else
705                 {
706                         certinfo->data.insert(std::make_pair("trusted",ConvToStr(1)));
707                 }
708         
709                 /* Up to here the process is the same for X.509 certificates and
710                  * OpenPGP keys. From now on X.509 certificates are assumed. This can
711                  * be easily extended to work with openpgp keys as well.
712                  */
713                 if (gnutls_certificate_type_get(session->sess) != GNUTLS_CRT_X509)
714                 {
715                         certinfo->data.insert(std::make_pair("error","No X509 keys sent"));
716                         return;
717                 }
718
719                 ret = gnutls_x509_crt_init(&cert);
720                 if (ret < 0)
721                 {
722                         certinfo->data.insert(std::make_pair("error",gnutls_strerror(ret)));
723                         return;
724                 }
725
726                 cert_list_size = 0;
727                 cert_list = gnutls_certificate_get_peers(session->sess, &cert_list_size);
728                 if (cert_list == NULL)
729                 {
730                         certinfo->data.insert(std::make_pair("error","No certificate was found"));
731                         return;
732                 }
733
734                 /* This is not a real world example, since we only check the first 
735                  * certificate in the given chain.
736                  */
737
738                 ret = gnutls_x509_crt_import(cert, &cert_list[0], GNUTLS_X509_FMT_DER);
739                 if (ret < 0)
740                 {
741                         certinfo->data.insert(std::make_pair("error",gnutls_strerror(ret)));
742                         return;
743                 }
744
745                 gnutls_x509_crt_get_dn(cert, name, &name_size);
746
747                 certinfo->data.insert(std::make_pair("dn",name));
748
749                 gnutls_x509_crt_get_issuer_dn(cert, name, &name_size);
750
751                 certinfo->data.insert(std::make_pair("issuer",name));
752
753                 if ((ret = gnutls_x509_crt_get_fingerprint(cert, GNUTLS_DIG_MD5, digest, &digest_size)) < 0)
754                 {
755                         certinfo->data.insert(std::make_pair("error",gnutls_strerror(ret)));
756                 }
757                 else
758                 {
759                         certinfo->data.insert(std::make_pair("fingerprint",irc::hex(digest, digest_size)));
760                 }
761
762                 /* Beware here we do not check for errors.
763                  */
764                 if ((gnutls_x509_crt_get_expiration_time(cert) < time(0)) || (gnutls_x509_crt_get_activation_time(cert) > time(0)))
765                 {
766                         certinfo->data.insert(std::make_pair("error","Not activated, or expired certificate"));
767                 }
768
769                 gnutls_x509_crt_deinit(cert);
770
771                 return;
772         }
773
774 };
775
776 class ModuleSSLGnuTLSFactory : public ModuleFactory
777 {
778  public:
779         ModuleSSLGnuTLSFactory()
780         {
781         }
782         
783         ~ModuleSSLGnuTLSFactory()
784         {
785         }
786         
787         virtual Module * CreateModule(InspIRCd* Me)
788         {
789                 return new ModuleSSLGnuTLS(Me);
790         }
791 };
792
793
794 extern "C" void * init_module( void )
795 {
796         return new ModuleSSLGnuTLSFactory;
797 }