/** * Find a matching client SUBSCRIBE to the incoming notify. NOTIFY requests are matched to such * SUBSCRIBE requests if they contain the same "Call-ID", a "To" header "tag" parameter which * matches the "From" header "tag" parameter of the SUBSCRIBE, and the same "Event" header field. * Rules for comparisons of the "Event" headers are described in section 7.2.1. If a matching * NOTIFY request contains a "Subscription-State" of "active" or "pending", it creates a new * subscription and a new dialog (unless they have already been created by a matching response, as * described above). * * @param notifyMessage */ public SIPClientTransaction findSubscribeTransaction(SIPRequest notifyMessage) { synchronized (clientTransactions) { Iterator<SIPClientTransaction> it = clientTransactions.iterator(); String thisToTag = notifyMessage.getTo().getTag(); if (thisToTag == null) return null; Event eventHdr = (Event) notifyMessage.getHeader(EventHeader.NAME); if (eventHdr == null) return null; while (it.hasNext()) { SIPClientTransaction ct = (SIPClientTransaction) it.next(); // SIPRequest sipRequest = ct.getOriginalRequest(); String fromTag = ct.from.getTag(); Event hisEvent = ct.event; // Event header is mandatory but some slopply clients // dont include it. if (hisEvent == null) continue; if (ct.method.equals(Request.SUBSCRIBE) && fromTag.equalsIgnoreCase(thisToTag) && hisEvent != null && eventHdr.match(hisEvent) && notifyMessage.getCallId().getCallId().equalsIgnoreCase(ct.callId.getCallId())) return ct; } } return null; }
/** Hash table for quick lookup of transactions. */ protected void addTransactionHash(SIPTransaction sipTransaction) { SIPRequest sipRequest = sipTransaction.getOriginalRequest(); // Via via = sipRequest.getTopmostVia(); // Cannot cache old style requests. /** * if (via.getBranch() == null || ! via.getBranch().toUpperCase().startsWith * (SIPConstants.BRANCH_MAGIC_COOKIE.toUpperCase())){ return; } */ if (sipTransaction instanceof SIPClientTransaction) { synchronized (clientTransactionTable) { String key = sipRequest.getTransactionId(); clientTransactionTable.put(key, sipTransaction); } } else { synchronized (serverTransactionTable) { String key = sipRequest.getTransactionId(); serverTransactionTable.put(key, sipTransaction); } } }
/** * Gets invoked by the parser as a callback on successful message parsing (i.e. no parser errors). * * @param sipMessage Mesage to process (this calls the application for processing the message). */ public void processMessage(SIPMessage sipMessage) throws Exception { try { if (sipMessage.getFrom() == null || // sipMessage.getFrom().getTag() == null || sipMessage.getTo() == null || sipMessage.getCallId() == null || sipMessage.getCSeq() == null || sipMessage.getViaHeaders() == null) { String badmsg = sipMessage.encode(); if (LogWriter.needsLogging) { stack.logWriter.logMessage("bad message " + badmsg); stack.logWriter.logMessage(">>> Dropped Bad Msg"); } stack.logBadMessage(badmsg); return; } ViaList viaList = sipMessage.getViaHeaders(); // For a request // first via header tells where the message is coming from. // For response, this has already been recorded in the outgoing // message. if (sipMessage instanceof SIPRequest) { Via v = (Via) viaList.first(); if (v.hasPort()) { this.peerPort = v.getPort(); } else this.peerPort = 5061; this.peerProtocol = v.getTransport(); try { this.peerAddress = mySock.getInetAddress(); // Check to see if the received parameter matches // the peer address and tag it appropriately. // Bug fix by [email protected] // Should record host address not host name // bug fix by Joost Yervante Damand if (!v.getSentBy().getInetAddress().equals(this.peerAddress)) { v.setParameter(Via.RECEIVED, this.peerAddress.getHostAddress()); // @@@ hagai v.setParameter(Via.RPORT, new Integer(this.peerPort).toString()); } } catch (java.net.UnknownHostException ex) { // Could not resolve the sender address. if (LogWriter.needsLogging) { stack.logWriter.logMessage("Rejecting message -- could not resolve Via Address"); } return; } catch (java.text.ParseException ex) { InternalErrorHandler.handleException(ex); } // Use this for outgoing messages as well. if (!this.isCached) { ((TLSMessageProcessor) this.messageProcessor).cacheMessageChannel(this); this.isCached = true; String key = IOHandler.makeKey(mySock.getInetAddress(), this.peerPort); stack.ioHandler.putSocket(key, mySock); } } // Foreach part of the request header, fetch it and process it long receptionTime = System.currentTimeMillis(); // if (sipMessage instanceof SIPRequest) { // This is a request - process the request. SIPRequest sipRequest = (SIPRequest) sipMessage; // Create a new sever side request processor for this // message and let it handle the rest. if (LogWriter.needsLogging) { stack.logWriter.logMessage("----Processing Message---"); } // Check for reasonable size - reject message // if it is too long. if (stack.getMaxMessageSize() > 0 && sipRequest.getSize() + (sipRequest.getContentLength() == null ? 0 : sipRequest.getContentLength().getContentLength()) > stack.getMaxMessageSize()) { SIPResponse sipResponse = sipRequest.createResponse(SIPResponse.MESSAGE_TOO_LARGE); byte[] resp = sipResponse.encodeAsBytes(); this.sendMessage(resp, false); throw new Exception("Message size exceeded"); } ServerRequestInterface sipServerRequest = stack.newSIPServerRequest(sipRequest, this); sipServerRequest.processRequest(sipRequest, this); if (this.stack.serverLog.needsLogging(ServerLog.TRACE_MESSAGES)) { if (sipServerRequest.getProcessingInfo() == null) { stack.serverLog.logMessage( sipMessage, sipRequest.getViaHost() + ":" + sipRequest.getViaPort(), stack.getHostAddress() + ":" + stack.getPort(this.getTransport()), false, receptionTime); } else { this.stack.serverLog.logMessage( sipMessage, sipRequest.getViaHost() + ":" + sipRequest.getViaPort(), stack.getHostAddress() + ":" + stack.getPort(this.getTransport()), sipServerRequest.getProcessingInfo(), false, receptionTime); } } } else { SIPResponse sipResponse = (SIPResponse) sipMessage; // This is a response message - process it. // Check the size of the response. // If it is too large dump it silently. if (stack.getMaxMessageSize() > 0 && sipResponse.getSize() + (sipResponse.getContentLength() == null ? 0 : sipResponse.getContentLength().getContentLength()) > stack.getMaxMessageSize()) { if (LogWriter.needsLogging) this.stack.logWriter.logMessage("Message size exceeded"); return; } ServerResponseInterface sipServerResponse = stack.newSIPServerResponse(sipResponse, this); sipServerResponse.processResponse(sipResponse, this); } } finally { } }
/** * Handles a new SIP request. It finds a server transaction to handle this message. If none * exists, it creates a new transaction. * * @param requestReceived Request to handle. * @param requestMessageChannel Channel that received message. * @return A server transaction. */ protected ServerRequestInterface newSIPServerRequest( SIPRequest requestReceived, MessageChannel requestMessageChannel) { // Iterator through all server transactions Iterator<SIPServerTransaction> transactionIterator; // Next transaction in the set SIPServerTransaction nextTransaction; // Transaction to handle this request SIPServerTransaction currentTransaction; String key = requestReceived.getTransactionId(); currentTransaction = (SIPServerTransaction) serverTransactionTable.get(key); if (currentTransaction == null || !currentTransaction.isMessagePartOfTransaction(requestReceived)) { // Loop through all server transactions synchronized (serverTransactions) { transactionIterator = serverTransactions.iterator(); currentTransaction = null; while (transactionIterator.hasNext() && currentTransaction == null) { nextTransaction = (SIPServerTransaction) transactionIterator.next(); // If this transaction should handle this request, if (nextTransaction.isMessagePartOfTransaction(requestReceived)) { // Mark this transaction as the one // to handle this message currentTransaction = nextTransaction; } } // If no transaction exists to handle this message if (currentTransaction == null) { currentTransaction = findPendingTransaction(requestReceived); if (currentTransaction != null) return currentTransaction; currentTransaction = createServerTransaction(requestMessageChannel); currentTransaction.setOriginalRequest(requestReceived); if (!isDialogCreated(requestReceived.getMethod())) { // Dialog is not created - can we find the state? // If so, then create a transaction and add it. String dialogId = requestReceived.getDialogId(true); SIPDialog dialog = getDialog(dialogId); // Sequence numbers are supposed to increment. // avoid processing old sequence numbers and // delivering the same request up to the // application if the request has already been seen. // Special handling applies to ACK processing. if (dialog != null && (requestReceived.getMethod().equals(Request.ACK) || requestReceived.getCSeq().getSequenceNumber() > dialog.getRemoteSequenceNumber())) { // Found a dialog. if (LogWriter.needsLogging) logWriter.logMessage("adding server transaction " + currentTransaction); serverTransactions.add(0, currentTransaction); addTransactionHash(currentTransaction); currentTransaction.startTransactionTimer(); currentTransaction.isMapped = true; } } else { // Create the transaction but dont map it. String dialogId = requestReceived.getDialogId(true); SIPDialog dialog = getDialog(dialogId); // This is a dialog creating request that is part of an // existing dialog (eg. re-Invite). Re-invites get a non // null server transaction Id (unlike the original // invite). if (dialog != null && requestReceived.getCSeq().getSequenceNumber() > dialog.getRemoteSequenceNumber()) { currentTransaction.map(); if (LogWriter.needsLogging) logWriter.logMessage("adding server transaction " + currentTransaction); serverTransactions.add(0, currentTransaction); addTransactionHash(currentTransaction); currentTransaction.startTransactionTimer(); currentTransaction.toListener = true; } } } } } // Set ths transaction's encapsulated request // interface from the superclass currentTransaction.setRequestInterface( super.newSIPServerRequest(requestReceived, currentTransaction)); return currentTransaction; }
/** * Actually proces the parsed message. * * @param sipMessage */ public void processMessage(SIPMessage sipMessage) { if (sipMessage instanceof SIPRequest) { SIPRequest sipRequest = (SIPRequest) sipMessage; // This is a request - process it. // So far so good -- we will commit this message if // all processing is OK. if (sipStack.logWriter.isLoggingEnabled(ServerLog.TRACE_MESSAGES)) { this.sipStack.serverLog.logMessage( sipMessage, this.getPeerHostPort().toString(), this.getHost() + ":" + this.myPort, false, receptionTime); } ServerRequestInterface sipServerRequest = sipStack.newSIPServerRequest(sipRequest, this); // Drop it if there is no request returned if (sipServerRequest == null) { if (sipStack.isLoggingEnabled()) { this.sipStack.logWriter.logWarning("Null request interface returned -- dropping request"); } return; } if (sipStack.isLoggingEnabled()) this.sipStack.logWriter.logDebug( "About to process " + sipRequest.getFirstLine() + "/" + sipServerRequest); try { sipServerRequest.processRequest(sipRequest, this); } finally { if (sipServerRequest instanceof SIPTransaction) { SIPServerTransaction sipServerTx = (SIPServerTransaction) sipServerRequest; if (!sipServerTx.passToListener()) { ((SIPTransaction) sipServerRequest).releaseSem(); } } } if (sipStack.isLoggingEnabled()) this.sipStack.logWriter.logDebug( "Done processing " + sipRequest.getFirstLine() + "/" + sipServerRequest); // So far so good -- we will commit this message if // all processing is OK. } else { // Handle a SIP Reply message. SIPResponse sipResponse = (SIPResponse) sipMessage; try { sipResponse.checkHeaders(); } catch (ParseException ex) { if (sipStack.isLoggingEnabled()) sipStack.logWriter.logError( "Dropping Badly formatted response message >>> " + sipResponse); return; } ServerResponseInterface sipServerResponse = sipStack.newSIPServerResponse(sipResponse, this); if (sipServerResponse != null) { try { if (sipServerResponse instanceof SIPClientTransaction && !((SIPClientTransaction) sipServerResponse).checkFromTag(sipResponse)) { if (sipStack.isLoggingEnabled()) sipStack.logWriter.logError( "Dropping response message with invalid tag >>> " + sipResponse); return; } sipServerResponse.processResponse(sipResponse, this); } finally { if (sipServerResponse instanceof SIPTransaction && !((SIPTransaction) sipServerResponse).passToListener()) ((SIPTransaction) sipServerResponse).releaseSem(); } // Normal processing of message. } else { if (sipStack.isLoggingEnabled()) { this.sipStack.logWriter.logDebug("null sipServerResponse!"); } } } }
/** * Logs the specified message and details to the packet logging service if enabled. * * @param message the message to log * @param sender determines whether we are the origin of this message. */ private void logPacket(SIPMessage message, boolean sender) { try { PacketLoggingService packetLogging = SipActivator.getPacketLogging(); if (packetLogging == null || !packetLogging.isLoggingEnabled(PacketLoggingService.ProtocolName.SIP) /* Via not present in CRLF packet on TCP - causes NPE */ || message.getTopmostVia() == null) return; String transport = message.getTopmostVia().getTransport(); boolean isTransportUDP = transport.equalsIgnoreCase("UDP"); byte[] srcAddr; int srcPort; byte[] dstAddr; int dstPort; // if addresses are not set use empty byte array with length // equals to the other address or just empty // byte array with length 4 (ipv4 0.0.0.0) if (sender) { if (!isTransportUDP) { InetSocketAddress localAddress = getLocalAddressForDestination( message.getRemoteAddress(), message.getRemotePort(), message.getLocalAddress(), transport); srcPort = localAddress.getPort(); srcAddr = localAddress.getAddress().getAddress(); } else { srcPort = message.getLocalPort(); if (message.getLocalAddress() != null) srcAddr = message.getLocalAddress().getAddress(); else if (message.getRemoteAddress() != null) srcAddr = new byte[message.getRemoteAddress().getAddress().length]; else srcAddr = new byte[4]; } dstPort = message.getRemotePort(); if (message.getRemoteAddress() != null) dstAddr = message.getRemoteAddress().getAddress(); else dstAddr = new byte[srcAddr.length]; } else { if (!isTransportUDP) { InetSocketAddress dstAddress = getLocalAddressForDestination( message.getRemoteAddress(), message.getRemotePort(), message.getLocalAddress(), transport); dstPort = dstAddress.getPort(); dstAddr = dstAddress.getAddress().getAddress(); } else { dstPort = message.getLocalPort(); if (message.getLocalAddress() != null) dstAddr = message.getLocalAddress().getAddress(); else if (message.getRemoteAddress() != null) dstAddr = new byte[message.getRemoteAddress().getAddress().length]; else dstAddr = new byte[4]; } srcPort = message.getRemotePort(); if (message.getRemoteAddress() != null) srcAddr = message.getRemoteAddress().getAddress(); else srcAddr = new byte[dstAddr.length]; } byte[] msg = null; if (message instanceof SIPRequest) { SIPRequest req = (SIPRequest) message; if (req.getMethod().equals(SIPRequest.MESSAGE) && message.getContentTypeHeader() != null && message.getContentTypeHeader().getContentType().equalsIgnoreCase("text")) { int len = req.getContentLength().getContentLength(); if (len > 0) { SIPRequest newReq = (SIPRequest) req.clone(); byte[] newContent = new byte[len]; Arrays.fill(newContent, (byte) '.'); newReq.setMessageContent(newContent); msg = newReq.toString().getBytes("UTF-8"); } } } if (msg == null) { msg = message.toString().getBytes("UTF-8"); } packetLogging.logPacket( PacketLoggingService.ProtocolName.SIP, srcAddr, srcPort, dstAddr, dstPort, isTransportUDP ? PacketLoggingService.TransportName.UDP : PacketLoggingService.TransportName.TCP, sender, msg); } catch (Throwable e) { logger.error("Cannot obtain message body", e); } }