cyphesis/server/CommClient.cpp
Alistair Riddoch 75a4d3be91 Remove explicit calls to close
The underlying socket is closed in the skstream destructor.
The two calls were unnecessary already, but completely so given
that neither are needed.
2012-07-26 09:43:16 +01:00

222 lines
6.6 KiB
C++

// Cyphesis Online RPG Server and AI Engine
// Copyright (C) 2000,2001 Alistair Riddoch
//
// This program is free software; you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation; either version 2 of the License, or
// (at your option) any later version.
//
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License for more details.
//
// You should have received a copy of the GNU General Public License
// along with this program; if not, write to the Free Software Foundation,
// Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
// $Id$
#include "CommClient.h"
#include "CommServer.h"
#include "common/log.h"
#include "common/debug.h"
#include "common/compose.hpp"
#include "common/Router.h"
#include <Atlas/Objects/Operation.h>
#include <Atlas/Objects/Encoder.h>
#include <Atlas/Net/Stream.h>
#include <Atlas/Codec.h>
#include <iostream>
#include <sstream>
#include <stdexcept>
static const bool debug_flag = false;
CommClient::CommClient(CommServer & svr, const std::string & name, int fd) :
CommStreamClient(svr, fd), Idle(svr),
m_codec(NULL), m_encoder(NULL), m_connection(NULL),
m_connectTime(svr.time())
{
m_clientIos.setTimeout(0,1000);
m_negotiate = new Atlas::Net::StreamAccept("cyphesis " + name, m_clientIos);
}
CommClient::CommClient(CommServer & svr, const std::string & name) :
CommStreamClient(svr), Idle(svr),
m_codec(NULL), m_encoder(NULL), m_connection(NULL),
m_connectTime(svr.time())
{
m_clientIos.setTimeout(0,1000);
m_negotiate = new Atlas::Net::StreamConnect("cyphesis " + name, m_clientIos);
}
CommClient::~CommClient()
{
delete m_connection;
delete m_negotiate;
delete m_encoder;
delete m_codec;
}
void CommClient::setup(Router * connection)
{
debug( std::cout << "Negotiating started" << std::endl << std::flush; );
// Create the server side negotiator
m_connection = connection;
m_negotiate->poll(false);
m_clientIos << std::flush;
}
int CommClient::negotiate()
{
debug(std::cout << "Negotiating... " << std::flush;);
// poll and check if negotiation is complete
m_negotiate->poll();
if (m_negotiate->getState() == Atlas::Negotiate::IN_PROGRESS) {
return 0;
}
debug(std::cout << "done" << std::endl;);
// Check if negotiation failed
if (m_negotiate->getState() == Atlas::Negotiate::FAILED) {
log(NOTICE, "Failed to negotiate");
return -1;
}
// Negotiation was successful
// Get the codec that negotiation established
m_codec = m_negotiate->getCodec(*this);
// Create a new encoder to send high level objects to the codec
m_encoder = new Atlas::Objects::ObjectsEncoder(*m_codec);
// This should always be sent at the beginning of a session
m_codec->streamBegin();
// Acceptor is now finished with
delete m_negotiate;
m_negotiate = NULL;
return 0;
}
int CommClient::operation(const Atlas::Objects::Operation::RootOperation & op)
{
assert(m_connection != 0);
OpVector reply;
long serialno = op->getSerialno();
m_connection->operation(op, reply);
OpVector::const_iterator Iend = reply.end();
for(OpVector::const_iterator I = reply.begin(); I != Iend; ++I) {
debug(std::cout << "sending " << (*I)->getParents().front() << " reply" << std::endl << std::flush;);
if (!op->isDefaultSerialno()) {
// Should we respect existing refnos?
if ((*I)->isDefaultRefno()) {
(*I)->setRefno(serialno);
}
}
if (send(*I) != 0) {
return -1;
}
}
return 0;
}
void CommClient::dispatch()
{
DispatchQueue::const_iterator Iend = m_opQueue.end();
for(DispatchQueue::const_iterator I = m_opQueue.begin(); I != Iend; ++I) {
debug(std::cout << "dispatching " << (*I)->getParents().front() << " op" << std::endl << std::flush;);
if (operation(*I) != 0) {
return;
}
}
m_opQueue.clear();
}
void CommClient::objectArrived(const Atlas::Objects::Root & obj)
{
Atlas::Objects::Operation::RootOperation op = Atlas::Objects::smart_dynamic_cast<Atlas::Objects::Operation::RootOperation>(obj);
if (!op.isValid()) {
const std::list<std::string> & parents = obj->getParents();
if (parents.empty()) {
log(ERROR, String::compose("Object of type \"%1\" with no parent "
"arrived from client",
obj->getObjtype()));
} else {
log(ERROR, String::compose("Object of type \"%1\" with parent "
"\"%2\" arrived from client",
obj->getObjtype(),
obj->getParents().front()));
}
return;
}
debug(std::cout << "A " << op->getParents().front() << " op from client!" << std::endl << std::flush;);
m_opQueue.push_back(op);
}
void CommClient::idle(time_t t)
{
if (m_negotiate != 0) {
if ((t - m_connectTime) > 10) {
log(NOTICE, "Client disconnected because of negotiation timeout.");
m_clientIos.shutdown();
}
}
}
int CommClient::read()
{
if (m_codec != NULL) {
m_codec->poll();
return 0;
} else {
return negotiate();
}
}
int CommClient::send(const Atlas::Objects::Operation::RootOperation & op)
{
if (!isOpen()) {
log(ERROR, "Writing to closed client");
return -1;
}
if (m_clientIos.fail()) {
return -1;
}
if (m_encoder == 0) {
log(ERROR, "Encoder not initialized");
return -1;
}
m_encoder->streamObjectsMessage(op);
struct timeval tv = {0, 0};
fd_set sfds;
int cfd = m_clientIos.getSocket();
FD_ZERO(&sfds);
FD_SET(cfd, &sfds);
if (select(++cfd, NULL, &sfds, NULL, &tv) > 0) {
// We only flush to the client if the client is ready
m_clientIos << std::flush;
} else {
debug(std::cout << "Client not ready" << std::endl << std::flush;);
}
// This timeout should only occur if the client was really not
// ready
if (m_clientIos.timeout()) {
log(NOTICE, "Client disconnected because of write timeout.");
m_clientIos.shutdown();
m_clientIos.setstate(std::iostream::failbit);
return -1;
}
return 0;
}