mirror of
https://github.com/RetroShare/RetroShare.git
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c23407cae3
git-svn-id: http://svn.code.sf.net/p/retroshare/code/trunk@2001 b45a01b8-16f6-495d-af2f-9b41ad6348cc
528 lines
13 KiB
C++
528 lines
13 KiB
C++
/*
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* "$Id: pqissludp.cc,v 1.16 2007-02-18 21:46:49 rmf24 Exp $"
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*
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* 3P/PQI network interface for RetroShare.
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*
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* Copyright 2004-2006 by Robert Fernie.
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Library General Public
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* License Version 2 as published by the Free Software Foundation.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Library General Public License for more details.
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*
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* You should have received a copy of the GNU Library General Public
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* License along with this library; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307
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* USA.
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*
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* Please report all bugs and problems to "retroshare@lunamutt.com".
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*
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*/
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#include "pqi/pqissludp.h"
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#include "pqi/pqinetwork.h"
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#include "tcponudp/tou.h"
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#include "tcponudp/bio_tou.h"
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#include <errno.h>
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#include <openssl/err.h>
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#include <sstream>
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#include "util/rsdebug.h"
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#include "util/rsnet.h"
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const int pqissludpzone = 3144;
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/* a final timeout, to ensure this never blocks completely
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* 300 secs to complete udp/tcp/ssl connection.
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* This is long as the udp connect can take some time.
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*/
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static const uint32_t PQI_SSLUDP_DEF_CONN_PERIOD = 300; /* 5 minutes? */
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/********** PQI SSL UDP STUFF **************************************/
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pqissludp::pqissludp(PQInterface *parent, p3ConnectMgr *cm)
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:pqissl(NULL, parent, cm), tou_bio(NULL),
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listen_checktime(0), mConnectPeriod(PQI_SSLUDP_DEF_CONN_PERIOD)
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{
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sockaddr_clear(&remote_addr);
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return;
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}
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pqissludp::~pqissludp()
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{
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rslog(RSL_ALERT, pqissludpzone,
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"pqissludp::~pqissludp -> destroying pqissludp");
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/* must call reset from here, so that the
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* virtual functions will still work.
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* -> as they stop working in base class destructor.
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*
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* This means that reset() will be called twice, but this should
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* be harmless.
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*/
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stoplistening(); /* remove from p3proxy listenqueue */
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reset();
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if (tou_bio) // this should be in the reset?
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{
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BIO_free(tou_bio);
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}
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return;
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}
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int pqissludp::reset()
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{
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/* reset for next time.*/
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return pqissl::reset();
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}
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/* <===================== UDP Difference *******************/
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// The Proxy Version takes a few more step
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//
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// connectInterface is sent via message from the proxy.
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// and is set here.
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/* <===================== UDP Difference *******************/
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int pqissludp::attach()
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{
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sockfd = tou_socket(0,0,0);
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if (0 > sockfd)
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{
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rslog(RSL_WARNING, pqissludpzone,
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"pqissludp::attach() failed to create a socket");
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return -1;
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}
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// setup remote address
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rslog(RSL_WARNING, pqissludpzone,
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"pqissludp::attach() Opened Local Udp Socket");
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return 1;
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}
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// The Address determination is done centrally
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int pqissludp::Initiate_Connection()
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{
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int err;
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attach(); /* open socket */
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remote_addr.sin_family = AF_INET;
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rslog(RSL_DEBUG_BASIC, pqissludpzone,
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"pqissludp::Initiate_Connection() Attempting Outgoing Connection....");
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/* decide if we're active or passive */
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if (PeerId() < mConnMgr->getOwnId())
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{
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sslmode = PQISSL_ACTIVE;
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}
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else
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{
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sslmode = PQISSL_PASSIVE;
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}
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if (waiting != WAITING_DELAY)
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{
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rslog(RSL_WARNING, pqissludpzone,
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"pqissludp::Initiate_Connection() Already Attempt in Progress!");
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return -1;
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}
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if (sockfd < 0)
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{
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rslog(RSL_ALERT, pqissludpzone,
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"pqissludp::Initiate_Connection() Socket Creation Failed!");
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waiting = WAITING_FAIL_INTERFACE;
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return -1;
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}
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rslog(RSL_DEBUG_BASIC, pqissludpzone,
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"pqissludp::Initiate_Connection() Opening Socket");
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{
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std::ostringstream out;
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out << "pqissludp::Initiate_Connection() ";
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out << "Connecting To: " << PeerId();
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out << " via: " << inet_ntoa(remote_addr.sin_addr) << ":";
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out << ntohs(remote_addr.sin_port) << " ";
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if (sslmode)
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{
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out << "ACTIVE Connect (SSL_Connect)";
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}
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else
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{
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out << "PASSIVE Connect (SSL_Accept)";
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}
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rslog(RSL_WARNING, pqissludpzone, out.str());
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}
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if (remote_addr.sin_addr.s_addr == 0)
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{
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std::ostringstream out;
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out << "pqissludp::Initiate_Connection() ";
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out << "Invalid (0.0.0.0) Remote Address,";
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out << " Aborting Connect.";
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out << std::endl;
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rslog(RSL_WARNING, pqissludpzone, out.str());
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waiting = WAITING_FAIL_INTERFACE;
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reset();
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return -1;
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}
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mTimeoutTS = time(NULL) + mConnectTimeout;
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//std::cerr << "Setting Connect Timeout " << mConnectTimeout << " Seconds into Future " << std::endl;
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//std::cerr << " Connect Period is:" << mConnectPeriod << std::endl;
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/* <===================== UDP Difference *******************/
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if (0 != (err = tou_connect(sockfd, (struct sockaddr *) &remote_addr,
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sizeof(remote_addr), mConnectPeriod)))
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/* <===================== UDP Difference *******************/
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{
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int tou_err = tou_errno(sockfd);
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std::ostringstream out;
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out << "pqissludp::Initiate_Connection()";
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if ((tou_err == EINPROGRESS) || (tou_err == EAGAIN))
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{
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// set state to waiting.....
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waiting = WAITING_SOCK_CONNECT;
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out << " EINPROGRESS Waiting for Socket Connection";
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rslog(RSL_WARNING, pqissludpzone, out.str());
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return 0;
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}
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else if ((tou_err == ENETUNREACH) || (tou_err == ETIMEDOUT))
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{
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out << "ENETUNREACHABLE: cert: " << PeerId();
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out << std::endl;
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// Then send unreachable message.
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waiting = WAITING_FAIL_INTERFACE;
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net_unreachable |= net_attempt;
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}
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out << "Error: Connection Failed: " << tou_err;
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out << " - " << socket_errorType(tou_err) << std::endl;
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rslog(RSL_WARNING, pqissludpzone, out.str());
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reset();
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return -1;
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}
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else
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{
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rslog(RSL_DEBUG_BASIC, pqissludpzone,
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"pqissludp::Init_Connection() connect returned 0");
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}
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waiting = WAITING_SOCK_CONNECT;
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rslog(RSL_DEBUG_BASIC, pqissludpzone,
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"pqissludp::Initiate_Connection() Waiting for Socket Connect");
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return 1;
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}
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/********* VERY DIFFERENT **********/
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int pqissludp::Basic_Connection_Complete()
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{
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rslog(RSL_DEBUG_BASIC, pqissludpzone,
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"pqissludp::Basic_Connection_Complete()...");
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if (time(NULL) > mTimeoutTS)
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{
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std::ostringstream out;
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out << "pqissludp::Basic_Connection_Complete() Connection Timed Out. ";
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out << "Peer: " << PeerId() << " Timeout: ";
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out << mConnectTimeout;
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rslog(RSL_WARNING, pqissludpzone, out.str());
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/* as sockfd is valid, this should close it all up */
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reset();
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return -1;
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}
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if (waiting != WAITING_SOCK_CONNECT)
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{
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rslog(RSL_DEBUG_BASIC, pqissludpzone,
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"pqissludp::Basic_Connection_Complete() Wrong Mode");
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return -1;
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}
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/* new approach is to check for an error */
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/* check for an error */
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int err;
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if (0 != (err = tou_errno(sockfd)))
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{
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if (err == EINPROGRESS)
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{
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std::ostringstream out;
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out << "pqissludp::Basic_Connection_Complete() ";
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out << "EINPROGRESS: cert: " << PeerId();
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rslog(RSL_DEBUG_BASIC, pqissludpzone, out.str());
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}
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else if ((err == ENETUNREACH) || (err == ETIMEDOUT))
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{
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std::ostringstream out;
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out << "pqissludp::Basic_Connection_Complete() ";
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out << "ENETUNREACH/ETIMEDOUT: cert: ";
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out << PeerId();
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rslog(RSL_WARNING, pqissludpzone, out.str());
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/* is the second one needed? */
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std::ostringstream out2;
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out2 << "pqissludp::Basic_Connection_Complete() ";
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out2 << "Error: Connection Failed: " << err;
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out2 << " - " << socket_errorType(err);
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rslog(RSL_DEBUG_BASIC, pqissludpzone, out2.str());
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net_unreachable |= net_attempt;
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reset();
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// Then send unreachable message.
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waiting = WAITING_FAIL_INTERFACE;
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return -1;
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}
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}
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/* <===================== UDP Difference *******************/
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if (tou_connected(sockfd))
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/* <===================== UDP Difference *******************/
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{
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std::ostringstream out;
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out << "pqissludp::Basic_Connection_Complete() ";
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out << "Connection Complete: cert: ";
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out << PeerId();
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rslog(RSL_WARNING, pqissludpzone, out.str());
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return 1;
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}
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else
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{
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// not ready return -1;
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rslog(RSL_DEBUG_BASIC, pqissludpzone,
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"pqissludp::Basic_Connection_Complete() Not Yet Ready!");
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return 0;
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}
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return -1;
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}
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/* New Internal Functions required to generalise tcp/udp version
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* of the programs
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*/
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// used everywhere
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int pqissludp::net_internal_close(int fd)
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{
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rslog(RSL_ALERT, pqissludpzone,
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"pqissludp::net_internal_close() -> tou_close()");
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return tou_close(fd);
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}
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// install udp BIO.
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int pqissludp::net_internal_SSL_set_fd(SSL *ssl, int fd)
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{
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rslog(RSL_DEBUG_BASIC, pqissludpzone,
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"pqissludp::net_internal_SSL_set_fd()");
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/* create the bio's */
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tou_bio =BIO_new(BIO_s_tou_socket());
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/* attach the fd's to the BIO's */
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BIO_set_fd(tou_bio, fd, BIO_NOCLOSE);
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SSL_set_bio(ssl, tou_bio, tou_bio);
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return 1;
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}
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int pqissludp::net_internal_fcntl_nonblock(int fd)
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{
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rslog(RSL_DEBUG_BASIC, pqissludpzone,
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"pqissludp::net_internal_fcntl_nonblock()");
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return 0;
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}
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/* These are identical to pqinetssl version */
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//int pqissludp::status()
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int pqissludp::tick()
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{
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pqissl::tick();
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return 1;
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}
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// listen fns call the udpproxy.
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int pqissludp::listen()
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{
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{
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std::ostringstream out;
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out << "pqissludp::listen() (NULLOP)";
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rslog(RSL_DEBUG_BASIC, pqissludpzone, out.str());
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}
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return 1; //udpproxy->listen();
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}
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int pqissludp::stoplistening()
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{
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{
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std::ostringstream out;
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out << "pqissludp::stoplistening() (NULLOP)";
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rslog(RSL_DEBUG_BASIC, pqissludpzone, out.str());
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}
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return 1; //udpproxy->stoplistening();
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}
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bool pqissludp::connect_parameter(uint32_t type, uint32_t value)
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{
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//std::cerr << "pqissludp::connect_parameter() type: " << type << "value: " << value << std::endl;
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if (type == NET_PARAM_CONNECT_PERIOD)
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{
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std::ostringstream out;
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out << "pqissludp::connect_parameter() Peer: " << PeerId() << " PERIOD: " << value;
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rslog(RSL_WARNING, pqissludpzone, out.str());
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mConnectPeriod = value;
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return true;
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}else if (type == NET_PARAM_CONNECT_DELAY)
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{
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std::ostringstream out;
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out << "pqissludp::connect_parameter() Peer: " << PeerId() << " DELAY: " << value;
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rslog(RSL_WARNING, pqissludpzone, out.str());
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mConnectDelay = value;
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return true;
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}
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else if (type == NET_PARAM_CONNECT_TIMEOUT)
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{
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std::ostringstream out;
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out << "pqissludp::connect_parameter() Peer: " << PeerId() << " TIMEOUT: " << value;
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rslog(RSL_WARNING, pqissludpzone, out.str());
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mConnectTimeout = value;
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return true;
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}
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return pqissl::connect_parameter(type, value);
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}
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/********** PQI STREAMER OVERLOADING *********************************/
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bool pqissludp::moretoread()
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{
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{
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std::ostringstream out;
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out << "pqissludp::moretoread()";
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out << " polling socket (" << sockfd << ")";
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rslog(RSL_DEBUG_ALL, pqissludpzone, out.str());
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}
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/* check for more to read first ... if nothing... check error
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*/
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/* <===================== UDP Difference *******************/
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if (tou_maxread(sockfd))
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/* <===================== UDP Difference *******************/
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{
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rslog(RSL_DEBUG_BASIC, pqissludpzone,
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"pqissludp::moretoread() Data to Read!");
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return 1;
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}
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/* else check the error */
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rslog(RSL_DEBUG_ALL, pqissludpzone,
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"pqissludp::moretoread() No Data to Read!");
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int err;
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if (0 != (err = tou_errno(sockfd)))
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{
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if ((err == EAGAIN) || (err == EINPROGRESS))
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{
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std::ostringstream out;
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out << "pqissludp::moretoread() ";
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out << "EAGAIN/EINPROGRESS: cert " << PeerId();
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rslog(RSL_DEBUG_BASIC, pqissludpzone, out.str());
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return 0;
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}
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else if ((err == ENETUNREACH) || (err == ETIMEDOUT))
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{
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std::ostringstream out;
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out << "pqissludp::moretoread() ";
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out << "ENETUNREACH/ETIMEDOUT: cert ";
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out << PeerId();
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rslog(RSL_WARNING, pqissludpzone, out.str());
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}
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else if (err == EBADF)
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{
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std::ostringstream out;
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out << "pqissludp::moretoread() ";
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out << "EBADF: cert ";
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out << PeerId();
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rslog(RSL_WARNING, pqissludpzone, out.str());
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}
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else
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{
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std::ostringstream out;
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out << "pqissludp::moretoread() ";
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out << " Unknown ERROR: " << err << ": cert ";
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out << PeerId();
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rslog(RSL_WARNING, pqissludpzone, out.str());
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}
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reset();
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return 0;
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}
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/* otherwise - not error - strange! */
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rslog(RSL_DEBUG_BASIC, pqissludpzone,
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"pqissludp::moretoread() No Data + No Error (really nothing)");
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return 0;
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}
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bool pqissludp::cansend()
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{
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rslog(RSL_DEBUG_ALL, pqissludpzone,
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"pqissludp::cansend() polling socket!");
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/* <===================== UDP Difference *******************/
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return (0 < tou_maxwrite(sockfd));
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/* <===================== UDP Difference *******************/
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}
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