Planet
navi homePPSaboutscreenshotsdownloaddevelopmentforum

source: orxonox.OLD/branches/proxy/src/lib/network/message_manager.cc @ 9526

Last change on this file since 9526 was 9526, checked in by patrick, 18 years ago

relay disabled, more debug

File size: 15.5 KB
Line 
1/*
2   orxonox - the future of 3D-vertical-scrollers
3
4   Copyright (C) 2004 orx
5
6   This program is free software; you can redistribute it and/or modify
7   it under the terms of the GNU General Public License as published by
8   the Free Software Foundation; either version 2, or (at your option)
9   any later version.
10
11   ### File Specific:
12   main-programmer: Christoph Renner
13   co-programmer: ...
14*/
15
16//#define DEBUG_SPECIAL_MODULE DEBUG_MODULE_
17
18#include "message_manager.h"
19
20#include "network_stream.h"
21#include "shared_network_data.h"
22#include "converter.h"
23#include <cassert>
24
25
26
27MessageManager* MessageManager::singletonRef = NULL;
28
29
30/**
31 * standard constructor
32*/
33MessageManager::MessageManager ()
34{
35  this->setClassID( CL_MESSAGE_MANAGER, "MessageManager" );
36  newNumber = 1;
37  setSynchronized( true );
38}
39
40
41/**
42 * standard deconstructor
43*/
44MessageManager::~MessageManager ()
45{
46  for ( MessageQueue::iterator it = outgoingMessageQueue.begin(); it != outgoingMessageQueue.end(); it++ )
47  {
48    for ( std::list<NetworkMessage>::iterator it2 = it->second.messages.begin(); it2 != it->second.messages.end(); it2++ )
49    {
50      if ( it2->data )
51      {
52        delete [] it2->data;
53        it2->data = NULL;
54      }
55    }
56
57    it->second.messages.clear();
58    it->second.toAck.clear();
59  }
60
61  outgoingMessageQueue.clear();
62
63  this->messageHandlerMap.clear();
64
65  MessageManager::singletonRef = NULL;
66}
67
68/**
69 * get the diff to last acked state of userId
70 *
71 * this class does not use the normal SynchronizeableVars for zynchronisation. instead
72 * it defines its own protocol
73 *
74 * @param userId user to create diff for
75 * @param data buffer to copy diff in
76 * @param maxLength max bytes to copy into data
77 * @param stateId id of current state
78 * @param fromStateId the reference state for the delta state
79 * @param priorityTH tells getStateDiff to not send element with priority \< priorityTH
80 * @return n bytes copied into data
81 */
82int MessageManager::getStateDiff( int userId, byte * data, int maxLength, int stateId, int fromStateId, int priorityTH )
83{
84  int i = 0;
85  int n;
86
87  n = Converter::intToByteArray( outgoingMessageQueue[userId].toAck.size(), data + i, maxLength );
88  i += n;
89  assert( n == INTSIZE );
90
91  for ( std::list<int>::iterator it = outgoingMessageQueue[userId].toAck.begin(); it != outgoingMessageQueue[userId].toAck.end(); it++)
92  {
93    n = Converter::intToByteArray( *it, data + i, maxLength );
94    i += n;
95    assert( n == INTSIZE );
96  }
97
98  outgoingMessageQueue[userId].toAck.clear();
99
100  n = Converter::intToByteArray( outgoingMessageQueue[userId].messages.size(), data + i, maxLength );
101  i += n;
102  assert( n == INTSIZE );
103
104  // write the message down, a message has this structure:
105  //   | data_length | serial_number | message_type | source_id | dest_id | ...data... |
106  //      4byte        4byte            4byte         4byte      4byte     data_length
107  for ( std::list<NetworkMessage>::iterator it = outgoingMessageQueue[userId].messages.begin(); it != outgoingMessageQueue[userId].messages.end(); it++ )
108  {
109    // send data length
110    n = Converter::intToByteArray( it->length, data + i, maxLength );
111    i += n;
112    assert( n == INTSIZE );
113
114    // send serial number
115    n = Converter::intToByteArray( it->number, data + i, maxLength );
116    i += n;
117    assert( n == INTSIZE );
118
119    // send message type
120    n = Converter::intToByteArray( it->messageType, data + i, maxLength );
121    i += n;
122    assert( n == INTSIZE );
123
124    // send sender id
125    n = Converter::intToByteArray( it->senderId, data + i, maxLength );
126    i += n;
127    assert( n == INTSIZE );
128
129    // send destination id
130    n = Converter::intToByteArray( it->destinationId, data + i, maxLength );
131    i += n;
132    assert( n == INTSIZE );
133
134    // send receiver type
135    n = Converter::intToByteArray( it->recieverType, data + i, maxLength );
136    i += n;
137    assert( n == INTSIZE );
138
139    // and copy the data
140    assert( i + it->length <= maxLength );
141    memcpy( data + i, it->data, it->length );
142    i += it->length;
143  }
144
145  return i;
146}
147
148/**
149 * sets a new state out of a diff created on another host
150 * @param userId hostId of user who send me that diff
151 * @param data pointer to diff
152 * @param length length of diff
153 * @param stateId id of current state
154 * @param fromStateId id of the base state id
155 * @return number bytes read
156 * @todo check for permissions
157 */
158int MessageManager::setStateDiff( int userId, byte * data, int length, int stateId, int fromStateId )
159{
160  int i = 0;
161  int n;
162
163  int nAcks;
164
165
166  assert( i + INTSIZE <= length );
167  n = Converter::byteArrayToInt( data + i, &nAcks );
168  assert( n == INTSIZE );
169  i += n;
170
171  std::list<int> acks;
172
173  int number;
174
175  for ( int j = 0; j < nAcks; j++ )
176  {
177    assert( i + INTSIZE <= length );
178    n = Converter::byteArrayToInt( data + i, &number );
179    assert( n == INTSIZE );
180    i += n;
181
182    acks.push_back( number );
183  }
184
185  int nMessages;
186
187  assert( i + INTSIZE <= length );
188  n = Converter::byteArrayToInt( data + i, &nMessages );
189  assert( n == INTSIZE );
190  i += n;
191
192  int messageLength, messageType;
193  int senderId, destinationId, recieverType;
194
195  // now go through all newly received messages and assemble them
196  for ( int j = 0; j < nMessages; j++ )
197  {
198    // read the length
199    assert( i + INTSIZE <= length );
200    n = Converter::byteArrayToInt( data + i, &messageLength );
201    assert( n == INTSIZE );
202    i += n;
203
204    // read the serial number
205    assert( i + INTSIZE <= length );
206    n = Converter::byteArrayToInt( data + i, &number );
207    assert( n == INTSIZE );
208    i += n;
209
210    // read the message type
211    assert( i + INTSIZE <= length );
212    n = Converter::byteArrayToInt( data + i, &messageType );
213    assert( n == INTSIZE );
214    i += n;
215
216    // read the sender id
217    assert( i + INTSIZE <= length );
218    n = Converter::byteArrayToInt( data + i, &senderId );
219    assert( n == INTSIZE );
220    i += n;
221
222    //read the destination id
223    assert( i + INTSIZE <= length );
224    n = Converter::byteArrayToInt( data + i, &destinationId);
225    assert( n == INTSIZE );
226    i += n;
227
228    // read the receiver type
229    assert( i + INTSIZE <= length );
230    n = Converter::byteArrayToInt( data + i, &recieverType);
231    assert( n == INTSIZE );
232    i += n;
233
234    if ( number > 0 )
235      outgoingMessageQueue[userId].toAck.push_back( number );
236
237    assert( i + messageLength <= length );
238    // make sure there is a message handler for this message type
239    assert( messageHandlerMap.find( (MessageType)messageType ) != messageHandlerMap.end() );
240
241
242    if ( std::find( outgoingMessageQueue[userId].recievedMessages.begin(), outgoingMessageQueue[userId].recievedMessages.end(), number ) ==
243         outgoingMessageQueue[userId].recievedMessages.end() )
244    {
245
246      // find out if this message is addressed for this client too
247      if( messageType == RT_ALL_BUT_ME ||
248          messageType == RT_ALL_ME ||
249          messageType == RT_NOT_USER && SharedNetworkData::getInstance()->getHostID() != destinationId ||
250          messageType == RT_USER  && SharedNetworkData::getInstance()->getHostID() == destinationId ||
251          messageType == RT_SERVER && SharedNetworkData::getInstance()->isMasterServer())
252      {
253
254      // call the handler function and handle errors
255        if ( !(*(messageHandlerMap[(MessageType)messageType].cb))( (MessageType)messageType, data + i, messageLength,
256                 messageHandlerMap[(MessageType)messageType].someData, senderId, destinationId ) )
257        {
258        // if the message is not handled correctly, bush it back to the incoming packets
259          NetworkMessage msg;
260
261          msg.data = new byte[messageLength];
262          memcpy( msg.data, data + i, messageLength );
263          msg.length = messageLength;
264          msg.messageType = (MessageType)messageType;
265          msg.number = userId;
266          msg.senderId = senderId;
267          msg.recieverType = (RecieverType)recieverType;
268          msg.destinationId = destinationId;
269
270          incomingMessageQueue.push_back( msg );
271        }
272      // save the serial number for ack signaling
273        outgoingMessageQueue[userId].recievedMessages.push_back( number );
274        PRINTF(0)("<<< MessageManager: got msg with type: %i, from sender %i, to rec: %i\n", messageType, senderId, destinationId);
275      }
276      // or else forward the message to the other servers
277      else
278      {
279        // forwarding the messages but only if its not a client
280        if( !SharedNetworkData::getInstance()->isClient())
281        {
282          PRINTF(0)("===========>> Forwarding Message msg with type: %i, from sender %i, to rec: %i\n", messageType, senderId, destinationId);
283          NetworkMessage msg;
284
285          msg.data = new byte[messageLength];
286          memcpy( msg.data, data + i, messageLength );
287          msg.length = messageLength;
288          msg.messageType = (MessageType)messageType;
289          msg.number = userId;
290          msg.senderId = senderId;
291          msg.destinationId = destinationId;
292          msg.recieverType = (RecieverType)recieverType;
293
294//           this->sendMessage(msg.messageType, msg.data, msg.length, msg.recieverType, msg.destinationId, MP_HIGHBANDWIDTH);
295        }
296      }
297    }
298
299    i += messageLength;
300  }
301
302  // now call the message handlers with the new message
303  //TODO maybe handle incomingMessage in tick function. else local messages will not be handled if no clients are connected
304  for ( std::list<NetworkMessage>::iterator it = incomingMessageQueue.begin(); it != incomingMessageQueue.end();  )
305  {
306    if ( (*(messageHandlerMap[it->messageType].cb))( it->messageType, it->data, it->length, messageHandlerMap[it->messageType].someData,
307                                                     /*it->number, */it->senderId, it->destinationId ) )
308    {
309      std::list<NetworkMessage>::iterator delIt = it;
310      if ( it->data )
311        delete it->data;
312      it++;
313      incomingMessageQueue.erase( delIt );
314      continue;
315    }
316    it++;
317  }
318
319  //walk throu message queue and remove acked messages
320  for ( std::list<NetworkMessage>::iterator it = outgoingMessageQueue[userId].messages.begin(); it != outgoingMessageQueue[userId].messages.end();  )
321  {
322    if ( std::find( acks.begin(), acks.end(), it->number) != acks.end() )
323    {
324      std::list<NetworkMessage>::iterator delIt = it;
325      it++;
326      outgoingMessageQueue[userId].messages.erase( delIt );
327      continue;
328    }
329    it++;
330  }
331
332  //TODO find bether way. maybe with timestamp
333  if ( outgoingMessageQueue[userId].recievedMessages.size() > 1000 )
334  {
335    for ( int j = 0; j < outgoingMessageQueue[userId].recievedMessages.size() - 1000; j++ )
336      outgoingMessageQueue[userId].recievedMessages.erase( outgoingMessageQueue[userId].recievedMessages.begin() );
337  }
338
339  return i;
340}
341
342
343
344/**
345 * clean up memory reserved for user
346 * @param userId userid
347 */
348void MessageManager::cleanUpUser( int userId )
349{
350  if ( outgoingMessageQueue.find( userId ) == outgoingMessageQueue.end() )
351    return;
352
353  for ( std::list<NetworkMessage>::iterator it = outgoingMessageQueue[userId].messages.begin(); it != outgoingMessageQueue[userId].messages.end(); it++ )
354  {
355    if ( it->data )
356      delete it->data;
357    it->data = NULL;
358  }
359
360  outgoingMessageQueue[userId].toAck.clear();
361
362  outgoingMessageQueue.erase( userId );
363}
364
365/**
366 * registers function to handle messages with id messageType. someData is passed to callbackfuntion
367 * @param messageType message id to handle
368 * @param cb function pointer to callback function
369 * @param someData this pointer is passed to callback function without modification
370 * @return true on success
371 */
372bool MessageManager::registerMessageHandler( MessageType messageType, MessageCallback cb, void * someData )
373{
374  MessageHandler messageHandler;
375
376  messageHandler.cb = cb;
377  messageHandler.messageType = messageType;
378  messageHandler.someData = someData;
379
380  messageHandlerMap[messageType] = messageHandler;
381
382  return true;
383}
384
385/**
386 * initializes buffers for user
387 * @param userId userId
388 */
389void MessageManager::initUser( int userId )
390{
391  // just do something so map creates a new entry
392  outgoingMessageQueue[userId].toAck.clear();
393  //assert( outgoingMessageQueue[userId].messages.size() == 0 );
394}
395
396/**
397 * send a message to one or more clients
398 * recieverType:
399 *               RT_ALL send to all users. reciever is ignored
400 *               RT_USER send only to reciever
401 *               RT_NOT_USER send to all but reciever
402 *
403 * @param messageType message id
404 * @param data pointer to data
405 * @param dataLength length of data
406 * @param recieverType type of the receiver
407 * @param reciever the userId of the receiver if needed (depends on the ReceiverType)
408 */
409void MessageManager::sendMessage( MessageType messageType, byte * data, int dataLength, RecieverType recieverType, int reciever, MessagePriority messagePriority )
410{
411  PRINTF(0)(" >>> MessageManager: sending msg with type: %i, recieverType: %i, reciever %i\n", messageType, recieverType, reciever);
412
413  // go through all outgoing message queues and add the message if its appropriate
414  for ( MessageQueue::iterator it = this->outgoingMessageQueue.begin(); it != this->outgoingMessageQueue.end(); it++ )
415  {
416
417    // relay server special handling
418    if( SharedNetworkData::getInstance()->isMasterServer() && SharedNetworkData::getInstance()->isUserProxyServerActive(it->first))
419    {
420      NetworkMessage msg;
421
422      msg.data = new byte[dataLength];
423      memcpy( msg.data, data, dataLength );
424      msg.length = dataLength;
425      msg.messageType = messageType;
426      msg.number = this->newNumber++;
427      msg.senderId = SharedNetworkData::getInstance()->getHostID();
428      msg.destinationId = reciever;
429      msg.recieverType = recieverType;
430      msg.priority = messagePriority;
431
432      it->second.messages.push_back( msg );
433    }
434    // proxy server to master server
435    else if( SharedNetworkData::getInstance()->isProxyServerActive() && SharedNetworkData::getInstance()->isUserMasterServer(it->first))
436    {
437      NetworkMessage msg;
438
439      msg.data = new byte[dataLength];
440      memcpy( msg.data, data, dataLength );
441      msg.length = dataLength;
442      msg.messageType = messageType;
443      msg.number = this->newNumber++;
444      msg.senderId = SharedNetworkData::getInstance()->getHostID();
445      msg.destinationId = reciever;
446      msg.recieverType = recieverType;
447      msg.priority = messagePriority;
448
449      it->second.messages.push_back( msg );
450    }
451    // check for every node if the message is for it also
452    else if (
453         recieverType == RT_ALL_ME ||
454         recieverType == RT_ALL_BUT_ME ||
455         recieverType == RT_USER && it->first == reciever ||
456         recieverType == RT_NOT_USER && it->first != reciever ||
457         recieverType == RT_SERVER && getNetworkStream()->isUserMasterServer( it->first ) ||
458         recieverType == RT_SERVER && getNetworkStream()->isUserProxyServerActive( it->first )
459       )
460    {
461      NetworkMessage msg;
462
463      msg.data = new byte[dataLength];
464      memcpy( msg.data, data, dataLength );
465      msg.length = dataLength;
466      msg.messageType = messageType;
467      msg.number = this->newNumber++;
468      msg.senderId = SharedNetworkData::getInstance()->getHostID();
469      msg.destinationId = reciever;
470      msg.recieverType = recieverType;
471      msg.priority = messagePriority;
472
473      it->second.messages.push_back( msg );
474    }
475
476
477  }
478
479
480  // if the message is also for myself, handle it here
481  if ( recieverType == RT_ALL_ME )
482  {
483    NetworkMessage msg;
484
485    msg.data = new byte[dataLength];
486    memcpy( msg.data, data, dataLength );
487    msg.length = dataLength;
488    msg.messageType = messageType;
489    msg.number = SharedNetworkData::getInstance()->getHostID();
490    msg.senderId = SharedNetworkData::getInstance()->getHostID();
491    msg.destinationId = reciever;
492    msg.recieverType = recieverType;
493    msg.priority = messagePriority;
494
495    incomingMessageQueue.push_back( msg );
496  }
497}
498
499
Note: See TracBrowser for help on using the repository browser.