XRootD
XrdClAsyncSocketHandler.cc
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1 //------------------------------------------------------------------------------
2 // Copyright (c) 2011-2012 by European Organization for Nuclear Research (CERN)
3 // Author: Lukasz Janyst <ljanyst@cern.ch>
4 //------------------------------------------------------------------------------
5 // XRootD is free software: you can redistribute it and/or modify
6 // it under the terms of the GNU Lesser General Public License as published by
7 // the Free Software Foundation, either version 3 of the License, or
8 // (at your option) any later version.
9 //
10 // XRootD is distributed in the hope that it will be useful,
11 // but WITHOUT ANY WARRANTY; without even the implied warranty of
12 // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 // GNU General Public License for more details.
14 //
15 // You should have received a copy of the GNU Lesser General Public License
16 // along with XRootD. If not, see <http://www.gnu.org/licenses/>.
17 //------------------------------------------------------------------------------
18 
19 #include "XrdCl/XrdClStream.hh"
20 #include "XrdCl/XrdClConstants.hh"
21 #include "XrdCl/XrdClLog.hh"
22 #include "XrdCl/XrdClMessage.hh"
26 #include "XrdCl/XrdClOptimizers.hh"
27 #include "XrdSys/XrdSysE2T.hh"
28 #include <netinet/tcp.h>
29 
30 namespace XrdCl
31 {
32  //----------------------------------------------------------------------------
33  // Constructor
34  //----------------------------------------------------------------------------
36  Poller *poller,
37  TransportHandler *transport,
38  AnyObject *channelData,
39  uint16_t subStreamNum,
40  Stream *strm ):
41  pPoller( poller ),
42  pTransport( transport ),
43  pChannelData( channelData ),
44  pSubStreamNum( subStreamNum ),
45  pStream( strm ),
46  pStreamName( ToStreamName( url, subStreamNum ) ),
47  pSocket( new Socket() ),
48  pHandShakeDone( false ),
49  pConnectionStarted( 0 ),
50  pConnectionTimeout( 0 ),
51  pHSWaitStarted( 0 ),
52  pHSWaitSeconds( 0 ),
53  pUrl( url ),
54  pTlsHandShakeOngoing( false )
55  {
56  Env *env = DefaultEnv::GetEnv();
57 
58  int timeoutResolution = DefaultTimeoutResolution;
59  env->GetInt( "TimeoutResolution", timeoutResolution );
60  pTimeoutResolution = timeoutResolution;
61 
63  pLastActivity = time(0);
64  }
65 
66  //----------------------------------------------------------------------------
67  // Destructor
68  //----------------------------------------------------------------------------
70  {
71  Close();
72  delete pSocket;
73  }
74 
75  //----------------------------------------------------------------------------
76  // Connect to given address
77  //----------------------------------------------------------------------------
79  {
80  Log *log = DefaultEnv::GetLog();
81  pLastActivity = pConnectionStarted = ::time(0);
82  pConnectionTimeout = timeout;
83 
84  //--------------------------------------------------------------------------
85  // Initialize the socket
86  //--------------------------------------------------------------------------
88  if( !st.IsOK() )
89  {
90  log->Error( AsyncSockMsg, "[%s] Unable to initialize socket: %s",
91  pStreamName.c_str(), st.ToString().c_str() );
92  st.status = stFatal;
93  return st;
94  }
95 
96  //--------------------------------------------------------------------------
97  // Set the keep-alive up
98  //--------------------------------------------------------------------------
99  Env *env = DefaultEnv::GetEnv();
100 
101  int keepAlive = DefaultTCPKeepAlive;
102  env->GetInt( "TCPKeepAlive", keepAlive );
103  if( keepAlive )
104  {
105  int param = 1;
106  XRootDStatus st = pSocket->SetSockOpt( SOL_SOCKET, SO_KEEPALIVE, &param,
107  sizeof(param) );
108  if( !st.IsOK() )
109  log->Error( AsyncSockMsg, "[%s] Unable to turn on keepalive: %s",
110  pStreamName.c_str(), st.ToString().c_str() );
111 
112 #if ( defined(__linux__) || defined(__GNU__) ) && defined( TCP_KEEPIDLE ) && \
113  defined( TCP_KEEPINTVL ) && defined( TCP_KEEPCNT )
114 
115  param = DefaultTCPKeepAliveTime;
116  env->GetInt( "TCPKeepAliveTime", param );
117  st = pSocket->SetSockOpt(SOL_TCP, TCP_KEEPIDLE, &param, sizeof(param));
118  if( !st.IsOK() )
119  log->Error( AsyncSockMsg, "[%s] Unable to set keepalive time: %s",
120  pStreamName.c_str(), st.ToString().c_str() );
121 
123  env->GetInt( "TCPKeepAliveInterval", param );
124  st = pSocket->SetSockOpt(SOL_TCP, TCP_KEEPINTVL, &param, sizeof(param));
125  if( !st.IsOK() )
126  log->Error( AsyncSockMsg, "[%s] Unable to set keepalive interval: %s",
127  pStreamName.c_str(), st.ToString().c_str() );
128 
130  env->GetInt( "TCPKeepAliveProbes", param );
131  st = pSocket->SetSockOpt(SOL_TCP, TCP_KEEPCNT, &param, sizeof(param));
132  if( !st.IsOK() )
133  log->Error( AsyncSockMsg, "[%s] Unable to set keepalive probes: %s",
134  pStreamName.c_str(), st.ToString().c_str() );
135 #endif
136  }
137 
138  pHandShakeDone = false;
139  pTlsHandShakeOngoing = false;
140  pHSWaitStarted = 0;
141  pHSWaitSeconds = 0;
143 
144  //--------------------------------------------------------------------------
145  // Initiate async connection to the address
146  //--------------------------------------------------------------------------
147  char nameBuff[256];
148  pSockAddr.Format( nameBuff, sizeof(nameBuff), XrdNetAddrInfo::fmtAdv6 );
149  log->Debug( AsyncSockMsg, "[%s] Attempting connection to %s",
150  pStreamName.c_str(), nameBuff );
151 
152  st = pSocket->ConnectToAddress( pSockAddr, 0 );
153  if( !st.IsOK() )
154  {
155  log->Error( AsyncSockMsg, "[%s] Unable to initiate the connection: %s",
156  pStreamName.c_str(), st.ToString().c_str() );
157  return st;
158  }
159 
161 
162  //--------------------------------------------------------------------------
163  // We should get the ready to write event once we're really connected
164  // so we need to listen to it
165  //--------------------------------------------------------------------------
166  if( !pPoller->AddSocket( pSocket, this ) )
167  {
169  pSocket->Close();
170  return st;
171  }
172 
174  {
177  pSocket->Close();
178  return st;
179  }
180 
181  return XRootDStatus();
182  }
183 
184  //----------------------------------------------------------------------------
185  // Close the connection
186  //----------------------------------------------------------------------------
188  {
189  Log *log = DefaultEnv::GetLog();
190  log->Debug( AsyncSockMsg, "[%s] Closing the socket", pStreamName.c_str() );
191 
193  pSubStreamNum );
194 
196  pSocket->Close();
197  return XRootDStatus();
198  }
199 
200  std::string AsyncSocketHandler::ToStreamName( const URL &url, uint16_t strmnb )
201  {
202  std::ostringstream o;
203  o << url.GetHostId();
204  o << "." << strmnb;
205  return o.str();
206  }
207 
208  //----------------------------------------------------------------------------
209  // Handler a socket event
210  //----------------------------------------------------------------------------
211  void AsyncSocketHandler::Event( uint8_t type, XrdCl::Socket */*socket*/ )
212  {
213  //--------------------------------------------------------------------------
214  // First check if the socket itself wants to apply some mapping on the
215  // event. E.g. in case of TLS socket it might want to map read events to
216  // write events and vice-versa.
217  //--------------------------------------------------------------------------
218  type = pSocket->MapEvent( type );
219 
220  //--------------------------------------------------------------------------
221  // Handle any read or write events. If any of the handlers indicate an error
222  // we will have been disconnected. A disconnection may cause the current
223  // object to be asynchronously reused or deleted, so we return immediately.
224  //--------------------------------------------------------------------------
225  if( !EventRead( type ) )
226  return;
227 
228  //--------------------------------------------------------------------------
229  // If there's a previosuly noted ECONNRESET error from write we give the
230  // fault now. This gave us the chance to process a read event.
231  //--------------------------------------------------------------------------
232  if( !pReqConnResetError.IsOK() )
233  {
235  return;
236  }
237 
238  if( !EventWrite( type ) )
239  return;
240  }
241 
242  //----------------------------------------------------------------------------
243  // Handler for read related socket events
244  //----------------------------------------------------------------------------
245  bool AsyncSocketHandler::EventRead( uint8_t type )
246  {
247  //--------------------------------------------------------------------------
248  // Read event
249  //--------------------------------------------------------------------------
250  if( type & ReadyToRead )
251  {
252  pLastActivity = time(0);
254  return OnTLSHandShake();
255 
256  if( likely( pHandShakeDone ) )
257  return OnRead();
258 
259  return OnReadWhileHandshaking();
260  }
261 
262  //--------------------------------------------------------------------------
263  // Read timeout
264  //--------------------------------------------------------------------------
265  else if( type & ReadTimeOut )
266  {
267  if( pHSWaitSeconds )
268  {
269  if( !CheckHSWait() )
270  return false;
271  }
272 
273  if( likely( pHandShakeDone ) )
274  return OnReadTimeout();
275 
276  return OnTimeoutWhileHandshaking();
277  }
278 
279  return true;
280  }
281 
282  //----------------------------------------------------------------------------
283  // Handler for write related socket events
284  //----------------------------------------------------------------------------
285  bool AsyncSocketHandler::EventWrite( uint8_t type )
286  {
287  //--------------------------------------------------------------------------
288  // Write event
289  //--------------------------------------------------------------------------
290  if( type & ReadyToWrite )
291  {
292  pLastActivity = time(0);
294  return OnConnectionReturn();
295 
296  //------------------------------------------------------------------------
297  // Make sure we are not writing anything if we have been told to wait.
298  //------------------------------------------------------------------------
299  if( pHSWaitSeconds != 0 )
300  return true;
301 
303  return OnTLSHandShake();
304 
305  if( likely( pHandShakeDone ) )
306  return OnWrite();
307 
308  return OnWriteWhileHandshaking();
309  }
310 
311  //--------------------------------------------------------------------------
312  // Write timeout
313  //--------------------------------------------------------------------------
314  else if( type & WriteTimeOut )
315  {
316  if( likely( pHandShakeDone ) )
317  return OnWriteTimeout();
318 
319  return OnTimeoutWhileHandshaking();
320  }
321 
322  return true;
323  }
324 
325  //----------------------------------------------------------------------------
326  // Connect returned
327  //----------------------------------------------------------------------------
329  {
330  //--------------------------------------------------------------------------
331  // Check whether we were able to connect
332  //--------------------------------------------------------------------------
333  Log *log = DefaultEnv::GetLog();
334  log->Debug( AsyncSockMsg, "[%s] Async connection call returned",
335  pStreamName.c_str() );
336 
337  int errorCode = 0;
338  socklen_t optSize = sizeof( errorCode );
339  XRootDStatus st = pSocket->GetSockOpt( SOL_SOCKET, SO_ERROR, &errorCode,
340  &optSize );
341 
342  //--------------------------------------------------------------------------
343  // This is an internal error really (either logic or system fault),
344  // so we call it a day and don't retry
345  //--------------------------------------------------------------------------
346  if( !st.IsOK() )
347  {
348  log->Error( AsyncSockMsg, "[%s] Unable to get the status of the "
349  "connect operation: %s", pStreamName.c_str(),
350  XrdSysE2T( errno ) );
353  return false;
354  }
355 
356  //--------------------------------------------------------------------------
357  // We were unable to connect
358  //--------------------------------------------------------------------------
359  if( errorCode )
360  {
361  log->Error( AsyncSockMsg, "[%s] Unable to connect: %s",
362  pStreamName.c_str(), XrdSysE2T( errorCode ) );
365  return false;
366  }
368 
369  //--------------------------------------------------------------------------
370  // Cork the socket
371  //--------------------------------------------------------------------------
372  st = pSocket->Cork();
373  if( !st.IsOK() )
374  {
376  return false;
377  }
378 
379  //--------------------------------------------------------------------------
380  // Initialize the handshake
381  //--------------------------------------------------------------------------
383  pSubStreamNum ) );
384  pHandShakeData->serverAddr = pSocket->GetServerAddress();
385  pHandShakeData->clientName = pSocket->GetSockName();
386  pHandShakeData->streamName = pStreamName;
387 
389  if( !st.IsOK() )
390  {
391  log->Error( AsyncSockMsg, "[%s] Connection negotiation failed",
392  pStreamName.c_str() );
394  return false;
395  }
396 
397  if( st.code != suRetry )
398  ++pHandShakeData->step;
399 
400  //--------------------------------------------------------------------------
401  // Initialize the hand-shake reader and writer
402  //--------------------------------------------------------------------------
403  hswriter.reset( new AsyncHSWriter( *pSocket, pStreamName ) );
405 
406  //--------------------------------------------------------------------------
407  // Transport has given us something to send
408  //--------------------------------------------------------------------------
409  if( pHandShakeData->out )
410  {
411  hswriter->Reset( pHandShakeData->out );
412  pHandShakeData->out = nullptr;
413  }
414 
415  //--------------------------------------------------------------------------
416  // Listen to what the server has to say
417  //--------------------------------------------------------------------------
419  {
422  return false;
423  }
424  return true;
425  }
426 
427  //----------------------------------------------------------------------------
428  // Got a write readiness event
429  //----------------------------------------------------------------------------
431  {
432  if( !reqwriter )
433  {
434  OnFault( XRootDStatus( stError, errInternal, 0, "Request writer is null." ) );
435  return false;
436  }
437  //--------------------------------------------------------------------------
438  // Let's do the writing ...
439  //--------------------------------------------------------------------------
440  XRootDStatus st = reqwriter->Write();
441 
442  //--------------------------------------------------------------------------
443  // In the case of ECONNRESET perhaps the server sent us something.
444  // To give a chance to read it in the next event poll we pass this as a
445  // retry, but return the error after the next event.
446  //--------------------------------------------------------------------------
447  if( st.code == errSocketError && st.errNo == ECONNRESET )
448  {
449  if( (DisableUplink()).IsOK() )
450  {
451  pReqConnResetError = st;
452  st = XRootDStatus( stOK, suRetry );
453  }
454  }
455  if( !st.IsOK() )
456  {
457  //------------------------------------------------------------------------
458  // We failed
459  //------------------------------------------------------------------------
460  OnFault( st );
461  return false;
462  }
463  //--------------------------------------------------------------------------
464  // We are not done yet
465  //--------------------------------------------------------------------------
466  if( st.code == suRetry) return true;
467  //--------------------------------------------------------------------------
468  // Disable the respective substream if empty
469  //--------------------------------------------------------------------------
470  reqwriter->Reset();
472  return true;
473  }
474 
475  //----------------------------------------------------------------------------
476  // Got a write readiness event while handshaking
477  //----------------------------------------------------------------------------
479  {
480  XRootDStatus st;
481  if( !hswriter || !hswriter->HasMsg() )
482  {
483  if( !(st = DisableUplink()).IsOK() )
484  {
486  return false;
487  }
488  return true;
489  }
490  //--------------------------------------------------------------------------
491  // Let's do the writing ...
492  //--------------------------------------------------------------------------
493  st = hswriter->Write();
494  if( !st.IsOK() )
495  {
496  //------------------------------------------------------------------------
497  // We failed
498  //------------------------------------------------------------------------
500  return false;
501  }
502  //--------------------------------------------------------------------------
503  // We are not done yet
504  //--------------------------------------------------------------------------
505  if( st.code == suRetry ) return true;
506  //--------------------------------------------------------------------------
507  // Disable the uplink
508  // Note: at this point we don't deallocate the HS message as we might need
509  // to re-send it in case of a kXR_wait response
510  //--------------------------------------------------------------------------
511  if( !(st = DisableUplink()).IsOK() )
512  {
514  return false;
515  }
516  return true;
517  }
518 
519  //----------------------------------------------------------------------------
520  // Got a read readiness event
521  //----------------------------------------------------------------------------
523  {
524  //--------------------------------------------------------------------------
525  // Make sure the response reader object exists
526  //--------------------------------------------------------------------------
527  if( !rspreader )
528  {
529  OnFault( XRootDStatus( stError, errInternal, 0, "Response reader is null." ) );
530  return false;
531  }
532 
533  //--------------------------------------------------------------------------
534  // Readout the data from the socket
535  //--------------------------------------------------------------------------
536  XRootDStatus st = rspreader->Read();
537 
538  //--------------------------------------------------------------------------
539  // Handler header corruption
540  //--------------------------------------------------------------------------
541  if( !st.IsOK() && st.code == errCorruptedHeader )
542  {
544  return false;
545  }
546 
547  //--------------------------------------------------------------------------
548  // Handler other errors
549  //--------------------------------------------------------------------------
550  if( !st.IsOK() )
551  {
552  OnFault( st );
553  return false;
554  }
555 
556  //--------------------------------------------------------------------------
557  // We are not done yet
558  //--------------------------------------------------------------------------
559  if( st.code == suRetry ) return true;
560 
561  //--------------------------------------------------------------------------
562  // We are done, reset the response reader so we can read out next message
563  //--------------------------------------------------------------------------
564  rspreader->Reset();
565  return true;
566  }
567 
568  //----------------------------------------------------------------------------
569  // Got a read readiness event while handshaking
570  //----------------------------------------------------------------------------
572  {
573  //--------------------------------------------------------------------------
574  // Make sure the response reader object exists
575  //--------------------------------------------------------------------------
576  if( !hsreader )
577  {
578  OnFault( XRootDStatus( stError, errInternal, 0, "Hand-shake reader is null." ) );
579  return false;
580  }
581 
582  //--------------------------------------------------------------------------
583  // Read the message and let the transport handler look at it when
584  // reading has finished
585  //--------------------------------------------------------------------------
586  XRootDStatus st = hsreader->Read();
587  if( !st.IsOK() )
588  {
590  return false;
591  }
592 
593  if( st.code != suDone )
594  return true;
595 
596  return HandleHandShake( hsreader->ReleaseMsg() );
597  }
598 
599  //------------------------------------------------------------------------
600  // Handle the handshake message
601  //------------------------------------------------------------------------
602  bool AsyncSocketHandler::HandleHandShake( std::unique_ptr<Message> msg )
603  {
604  //--------------------------------------------------------------------------
605  // OK, we have a new message, let's deal with it;
606  //--------------------------------------------------------------------------
607  pHandShakeData->in = msg.release();
609 
610  //--------------------------------------------------------------------------
611  // Deal with wait responses
612  //--------------------------------------------------------------------------
613  kXR_int32 waitSeconds = HandleWaitRsp( pHandShakeData->in );
614 
615  delete pHandShakeData->in;
616  pHandShakeData->in = 0;
617 
618  if( !st.IsOK() )
619  {
621  return false;
622  }
623 
624  if( st.code == suRetry )
625  {
626  //------------------------------------------------------------------------
627  // We are handling a wait response and the transport handler told
628  // as to retry the request
629  //------------------------------------------------------------------------
630  if( waitSeconds >=0 )
631  {
632  time_t resendTime = ::time( 0 ) + waitSeconds;
633  if( resendTime > pConnectionStarted + pConnectionTimeout )
634  {
635  Log *log = DefaultEnv::GetLog();
636  log->Error( AsyncSockMsg,
637  "[%s] Won't retry kXR_endsess request because would"
638  "reach connection timeout.",
639  pStreamName.c_str() );
640 
642  return false;
643  }
644  else
645  {
646  //--------------------------------------------------------------------
647  // We need to wait before replaying the request
648  //--------------------------------------------------------------------
649  Log *log = DefaultEnv::GetLog();
650  log->Debug( AsyncSockMsg, "[%s] Received a wait response to endsess request, "
651  "will wait for %d seconds before replaying the endsess request",
652  pStreamName.c_str(), waitSeconds );
653  pHSWaitStarted = time( 0 );
654  pHSWaitSeconds = waitSeconds;
655  }
656  return true;
657  }
658  //------------------------------------------------------------------------
659  // We are re-sending a protocol request
660  //------------------------------------------------------------------------
661  else if( pHandShakeData->out )
662  {
663  return SendHSMsg();
664  }
665  }
666 
667  //--------------------------------------------------------------------------
668  // If now is the time to enable encryption
669  //--------------------------------------------------------------------------
670  if( !pSocket->IsEncrypted() &&
672  {
674  if( !st.IsOK() )
675  return false;
676  if ( st.code == suRetry )
677  return true;
678  }
679 
680  //--------------------------------------------------------------------------
681  // Now prepare the next step of the hand-shake procedure
682  //--------------------------------------------------------------------------
683  return HandShakeNextStep( st.IsOK() && st.code == suDone );
684  }
685 
686  //------------------------------------------------------------------------
687  // Prepare the next step of the hand-shake procedure
688  //------------------------------------------------------------------------
690  {
691  //--------------------------------------------------------------------------
692  // We successfully proceeded to the next step
693  //--------------------------------------------------------------------------
694  ++pHandShakeData->step;
695 
696  //--------------------------------------------------------------------------
697  // The hand shake process is done
698  //--------------------------------------------------------------------------
699  if( done )
700  {
701  pHandShakeData.reset();
702  hswriter.reset();
703  hsreader.reset();
704  //------------------------------------------------------------------------
705  // Initialize the request writer & reader
706  //------------------------------------------------------------------------
709  XRootDStatus st;
710  if( !(st = EnableUplink()).IsOK() )
711  {
713  return false;
714  }
715  pHandShakeDone = true;
717  }
718  //--------------------------------------------------------------------------
719  // The transport handler gave us something to write
720  //--------------------------------------------------------------------------
721  else if( pHandShakeData->out )
722  {
723  return SendHSMsg();
724  }
725  return true;
726  }
727 
728  //----------------------------------------------------------------------------
729  // Handle fault
730  //----------------------------------------------------------------------------
732  {
733  Log *log = DefaultEnv::GetLog();
734  log->Error( AsyncSockMsg, "[%s] Socket error encountered: %s",
735  pStreamName.c_str(), st.ToString().c_str() );
736 
737  pStream->OnError( pSubStreamNum, st );
738  }
739 
740  //----------------------------------------------------------------------------
741  // Handle fault while handshaking
742  //----------------------------------------------------------------------------
744  {
745  Log *log = DefaultEnv::GetLog();
746  log->Error( AsyncSockMsg, "[%s] Socket error while handshaking: %s",
747  pStreamName.c_str(), st.ToString().c_str() );
748 
750  }
751 
752  //----------------------------------------------------------------------------
753  // Handle write timeout
754  //----------------------------------------------------------------------------
756  {
758  }
759 
760  //----------------------------------------------------------------------------
761  // Handler read timeout
762  //----------------------------------------------------------------------------
764  {
766  }
767 
768  //----------------------------------------------------------------------------
769  // Handle timeout while handshaking
770  //----------------------------------------------------------------------------
772  {
773  time_t now = time(0);
775  {
777  return false;
778  }
779  return true;
780  }
781 
782  //----------------------------------------------------------------------------
783  // Handle header corruption in case of kXR_status response
784  //----------------------------------------------------------------------------
786  {
787  //--------------------------------------------------------------------------
788  // We need to force a socket error so this is handled in a similar way as
789  // a stream t/o and all requests are retried
790  //--------------------------------------------------------------------------
792  }
793 
794  //----------------------------------------------------------------------------
795  // Carry out the TLS hand-shake
796  //----------------------------------------------------------------------------
798  {
799  Log *log = DefaultEnv::GetLog();
800  log->Debug( AsyncSockMsg, "[%s] TLS hand-shake exchange.", pStreamName.c_str() );
801 
802  XRootDStatus st;
803  if( !( st = pSocket->TlsHandShake( this, pUrl.GetHostName() ) ).IsOK() )
804  {
805  pTlsHandShakeOngoing = false;
807  return st;
808  }
809 
810  if( st.code == suRetry )
811  {
812  pTlsHandShakeOngoing = true;
813  return st;
814  }
815 
816  pTlsHandShakeOngoing = false;
817  log->Info( AsyncSockMsg, "[%s] TLS hand-shake done.", pStreamName.c_str() );
818 
819  return st;
820  }
821 
822  //----------------------------------------------------------------------------
823  // Handle read/write event if we are in the middle of a TLS hand-shake
824  //----------------------------------------------------------------------------
826  {
828  if( !st.IsOK() )
829  return false;
830  if ( st.code == suRetry )
831  return true;
832 
834  *pChannelData ) );
835  }
836 
837  //----------------------------------------------------------------------------
838  // Prepare a HS writer for sending and enable uplink
839  //----------------------------------------------------------------------------
841  {
842  if( !hswriter )
843  {
845  "HS writer object missing!" ) );
846  return false;
847  }
848  //--------------------------------------------------------------------------
849  // We only set a new HS message if this is not a replay due to kXR_wait
850  //--------------------------------------------------------------------------
851  if( !pHSWaitSeconds )
852  {
853  hswriter->Reset( pHandShakeData->out );
854  pHandShakeData->out = nullptr;
855  }
856  //--------------------------------------------------------------------------
857  // otherwise we replay the kXR_endsess request
858  //--------------------------------------------------------------------------
859  else
860  hswriter->Replay();
861  //--------------------------------------------------------------------------
862  // Enable writing so we can replay the HS message
863  //--------------------------------------------------------------------------
864  XRootDStatus st;
865  if( !(st = EnableUplink()).IsOK() )
866  {
868  return false;
869  }
870  return true;
871  }
872 
874  {
875  // It would be more coherent if this could be done in the
876  // transport layer, unfortunately the API does not allow it.
877  kXR_int32 waitSeconds = -1;
878  ServerResponse *rsp = (ServerResponse*)msg->GetBuffer();
879  if( rsp->hdr.status == kXR_wait )
880  waitSeconds = rsp->body.wait.seconds;
881  return waitSeconds;
882  }
883 
884  //----------------------------------------------------------------------------
885  // Check if HS wait time elapsed
886  //----------------------------------------------------------------------------
888  {
889  time_t now = time( 0 );
890  if( now - pHSWaitStarted >= pHSWaitSeconds )
891  {
892  Log *log = DefaultEnv::GetLog();
893  log->Debug( AsyncSockMsg, "[%s] The hand-shake wait time elapsed, will "
894  "replay the endsess request.", pStreamName.c_str() );
895  if( !SendHSMsg() )
896  return false;
897  //------------------------------------------------------------------------
898  // Make sure the wait state is reset
899  //------------------------------------------------------------------------
900  pHSWaitSeconds = 0;
901  pHSWaitStarted = 0;
902  }
903  return true;
904  }
905 
906  //------------------------------------------------------------------------
907  // Get the IP stack
908  //------------------------------------------------------------------------
909  std::string AsyncSocketHandler::GetIpStack() const
910  {
911  std::string ipstack( ( pSockAddr.isIPType( XrdNetAddr::IPType::IPv6 ) &&
912  !pSockAddr.isMapped() ) ? "IPv6" : "IPv4" );
913  return ipstack;
914  }
915 
916  //------------------------------------------------------------------------
917  // Get IP address
918  //------------------------------------------------------------------------
920  {
921  char nameBuff[256];
922  pSockAddr.Format( nameBuff, sizeof(nameBuff), XrdNetAddrInfo::fmtAddr, XrdNetAddrInfo::noPort );
923  return nameBuff;
924  }
925 
926  //------------------------------------------------------------------------
928  //------------------------------------------------------------------------
930  {
931  const char *cstr = pSockAddr.Name();
932  if( !cstr )
933  return std::string();
934  return cstr;
935  }
936 }
union ServerResponse::@0 body
@ kXR_wait
Definition: XProtocol.hh:905
ServerResponseHeader hdr
Definition: XProtocol.hh:1288
int kXR_int32
Definition: XPtypes.hh:89
#define likely(x)
#define unlikely(x)
const char * XrdSysE2T(int errcode)
Definition: XrdSysE2T.cc:104
Utility class encapsulating reading hand-shake response logic.
Utility class encapsulating writing hand-shake request logic.
Utility class encapsulating reading response message logic.
Utility class encapsulating writing request logic.
static std::string ToStreamName(const URL &url, uint16_t strmnb)
Convert Stream object and sub-stream number to stream name.
bool OnReadTimeout() XRD_WARN_UNUSED_RESULT
std::unique_ptr< AsyncHSWriter > hswriter
virtual bool OnConnectionReturn() XRD_WARN_UNUSED_RESULT
bool OnWriteTimeout() XRD_WARN_UNUSED_RESULT
bool OnWrite() XRD_WARN_UNUSED_RESULT
bool OnTimeoutWhileHandshaking() XRD_WARN_UNUSED_RESULT
bool CheckHSWait() XRD_WARN_UNUSED_RESULT
bool EventRead(uint8_t type) XRD_WARN_UNUSED_RESULT
std::unique_ptr< AsyncHSReader > hsreader
bool HandleHandShake(std::unique_ptr< Message > msg) XRD_WARN_UNUSED_RESULT
bool OnWriteWhileHandshaking() XRD_WARN_UNUSED_RESULT
XRootDStatus Close()
Close the connection.
void OnFaultWhileHandshaking(XRootDStatus st)
virtual void Event(uint8_t type, XrdCl::Socket *)
Handle a socket event.
kXR_int32 HandleWaitRsp(Message *rsp)
bool HandShakeNextStep(bool done) XRD_WARN_UNUSED_RESULT
bool OnReadWhileHandshaking() XRD_WARN_UNUSED_RESULT
std::unique_ptr< AsyncMsgWriter > reqwriter
XRootDStatus EnableUplink()
Enable uplink.
std::string GetIpStack() const
Get the IP stack.
bool EventWrite(uint8_t type) XRD_WARN_UNUSED_RESULT
std::string GetHostName()
Get hostname.
std::unique_ptr< AsyncMsgReader > rspreader
XRootDStatus DisableUplink()
Disable uplink.
std::unique_ptr< HandShakeData > pHandShakeData
bool OnRead() XRD_WARN_UNUSED_RESULT
XRootDStatus Connect(time_t timeout)
Connect to the currently set address.
AsyncSocketHandler(const URL &url, Poller *poller, TransportHandler *transport, AnyObject *channelData, uint16_t subStreamNum, Stream *strm)
Constructor.
bool OnTLSHandShake() XRD_WARN_UNUSED_RESULT
bool SendHSMsg() XRD_WARN_UNUSED_RESULT
std::string GetIpAddr()
Get IP address.
const char * GetBuffer(uint32_t offset=0) const
Get the message buffer.
Definition: XrdClBuffer.hh:72
static Log * GetLog()
Get default log.
static Env * GetEnv()
Get default client environment.
bool GetInt(const std::string &key, int &value)
Definition: XrdClEnv.cc:89
Handle diagnostics.
Definition: XrdClLog.hh:101
void Error(uint64_t topic, const char *format,...)
Report an error.
Definition: XrdClLog.cc:231
void Info(uint64_t topic, const char *format,...)
Print an info.
Definition: XrdClLog.cc:265
void Debug(uint64_t topic, const char *format,...)
Print a debug message.
Definition: XrdClLog.cc:282
The message representation used throughout the system.
Definition: XrdClMessage.hh:32
Interface for socket pollers.
Definition: XrdClPoller.hh:87
virtual bool EnableReadNotification(Socket *socket, bool notify, uint16_t timeout=60)=0
virtual bool EnableWriteNotification(Socket *socket, bool notify, uint16_t timeout=60)=0
virtual bool AddSocket(Socket *socket, SocketHandler *handler)=0
virtual bool RemoveSocket(Socket *socket)=0
Remove the socket.
@ ReadTimeOut
Read timeout.
Definition: XrdClPoller.hh:42
@ ReadyToWrite
Writing won't block.
Definition: XrdClPoller.hh:43
@ WriteTimeOut
Write timeout.
Definition: XrdClPoller.hh:44
@ ReadyToRead
New data has arrived.
Definition: XrdClPoller.hh:41
A network socket.
Definition: XrdClSocket.hh:43
std::string GetSockName() const
Get the name of the socket.
Definition: XrdClSocket.cc:632
XRootDStatus Initialize(int family=AF_INET)
Initialize the socket.
Definition: XrdClSocket.cc:63
@ Connected
The socket is connected.
Definition: XrdClSocket.hh:51
@ Connecting
The connection process is in progress.
Definition: XrdClSocket.hh:52
bool IsEncrypted()
Definition: XrdClSocket.cc:867
void SetChannelID(AnyObject *channelID)
Definition: XrdClSocket.hh:246
XRootDStatus ConnectToAddress(const XrdNetAddr &addr, uint16_t timout=10)
Definition: XrdClSocket.cc:212
void Close()
Disconnect.
Definition: XrdClSocket.cc:262
XRootDStatus SetSockOpt(int level, int optname, const void *optval, socklen_t optlen)
Set socket options.
Definition: XrdClSocket.cc:167
XRootDStatus TlsHandShake(AsyncSocketHandler *socketHandler, const std::string &thehost=std::string())
Definition: XrdClSocket.cc:844
uint8_t MapEvent(uint8_t event)
Definition: XrdClSocket.cc:835
const XrdNetAddr * GetServerAddress() const
Get the server address.
Definition: XrdClSocket.hh:237
XRootDStatus Cork()
Definition: XrdClSocket.cc:782
XRootDStatus GetSockOpt(int level, int optname, void *optval, socklen_t *optlen)
Get socket options.
Definition: XrdClSocket.cc:152
SocketStatus GetStatus() const
Get the socket status.
Definition: XrdClSocket.hh:125
void SetStatus(SocketStatus status)
Set socket status - do not use unless you know what you're doing.
Definition: XrdClSocket.hh:133
bool OnReadTimeout(uint16_t subStream) XRD_WARN_UNUSED_RESULT
On read timeout.
void ForceError(XRootDStatus status, bool hush=false)
Force error.
Definition: XrdClStream.cc:914
void OnConnect(uint16_t subStream)
Call back when a message has been reconstructed.
Definition: XrdClStream.cc:623
void OnConnectError(uint16_t subStream, XRootDStatus status)
On connect error.
Definition: XrdClStream.cc:728
bool OnWriteTimeout(uint16_t subStream) XRD_WARN_UNUSED_RESULT
On write timeout.
void DisableIfEmpty(uint16_t subStream)
Disables respective uplink if empty.
Definition: XrdClStream.cc:585
void OnError(uint16_t subStream, XRootDStatus status)
On error.
Definition: XrdClStream.cc:828
const URL * GetURL() const
Get the URL.
Definition: XrdClStream.hh:157
Perform the handshake and the authentication for each physical stream.
virtual bool NeedEncryption(HandShakeData *handShakeData, AnyObject &channelData)=0
virtual void Disconnect(AnyObject &channelData, uint16_t subStreamId)=0
The stream has been disconnected, do the cleanups.
virtual bool HandShakeDone(HandShakeData *handShakeData, AnyObject &channelData)=0
virtual XRootDStatus HandShake(HandShakeData *handShakeData, AnyObject &channelData)=0
HandHake.
URL representation.
Definition: XrdClURL.hh:31
std::string GetHostId() const
Get the host part of the URL (user:password@host:port)
Definition: XrdClURL.hh:99
const std::string & GetHostName() const
Get the name of the target host.
Definition: XrdClURL.hh:170
static const int noPort
Do not add port number.
bool isMapped() const
bool isIPType(IPType ipType) const
int Format(char *bAddr, int bLen, fmtUse fmtType=fmtAuto, int fmtOpts=0)
@ fmtAddr
Address using suitable ipv4 or ipv6 format.
const char * Name(const char *eName=0, const char **eText=0)
int Family() const
const uint16_t suRetry
Definition: XrdClStatus.hh:40
const uint16_t errSocketOptError
Definition: XrdClStatus.hh:76
const int DefaultTCPKeepAliveProbes
const uint16_t stFatal
Fatal error, it's still an error.
Definition: XrdClStatus.hh:33
const uint16_t errPollerError
Definition: XrdClStatus.hh:75
const uint16_t stError
An error occurred that could potentially be retried.
Definition: XrdClStatus.hh:32
const uint16_t errSocketTimeout
Definition: XrdClStatus.hh:73
const uint16_t errInternal
Internal error.
Definition: XrdClStatus.hh:56
const uint16_t stOK
Everything went OK.
Definition: XrdClStatus.hh:31
const int DefaultTimeoutResolution
const uint64_t AsyncSockMsg
const int DefaultTCPKeepAliveInterval
const int DefaultTCPKeepAlive
const uint16_t errConnectionError
Definition: XrdClStatus.hh:78
const int DefaultTCPKeepAliveTime
const uint16_t errSocketError
Definition: XrdClStatus.hh:72
const uint16_t errCorruptedHeader
Definition: XrdClStatus.hh:103
const uint16_t suDone
Definition: XrdClStatus.hh:38
Data structure that carries the handshake information.
uint16_t code
Error type, or additional hints on what to do.
Definition: XrdClStatus.hh:147
uint16_t status
Status of the execution.
Definition: XrdClStatus.hh:146
bool IsOK() const
We're fine.
Definition: XrdClStatus.hh:124
std::string ToString() const
Create a string representation.
Definition: XrdClStatus.cc:97
uint32_t errNo
Errno, if any.
Definition: XrdClStatus.hh:148