Commit 7c1dca54 authored by Martin Sustrik's avatar Martin Sustrik

Session classes merged into a single class

Removal of ZMQ_IDENTITY resulted in various session classes doing
almost the same thing. This patch merges the classes into a single
class.
Signed-off-by: 's avatarMartin Sustrik <sustrik@250bpm.com>
parent f716b571
......@@ -12,7 +12,6 @@ libzmq_la_SOURCES = \
clock.hpp \
command.hpp \
config.hpp \
connect_session.hpp \
ctx.hpp \
decoder.hpp \
devpoll.hpp \
......@@ -64,7 +63,6 @@ libzmq_la_SOURCES = \
tcp_listener.hpp \
tcp_socket.hpp \
thread.hpp \
transient_session.hpp \
trie.hpp \
windows.hpp \
wire.hpp \
......@@ -79,7 +77,6 @@ libzmq_la_SOURCES = \
zmq_listener.hpp \
clock.cpp \
ctx.cpp \
connect_session.cpp \
decoder.cpp \
devpoll.cpp \
dist.cpp \
......@@ -122,7 +119,6 @@ libzmq_la_SOURCES = \
tcp_listener.cpp \
tcp_socket.cpp \
thread.cpp \
transient_session.cpp \
trie.cpp \
xpub.cpp \
xrep.cpp \
......
/*
Copyright (c) 2007-2011 iMatix Corporation
Copyright (c) 2007-2011 Other contributors as noted in the AUTHORS file
This file is part of 0MQ.
0MQ is free software; you can redistribute it and/or modify it under
the terms of the GNU Lesser General Public License as published by
the Free Software Foundation; either version 3 of the License, or
(at your option) any later version.
0MQ 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 Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#include "connect_session.hpp"
#include "zmq_connecter.hpp"
#include "pgm_sender.hpp"
#include "pgm_receiver.hpp"
#include "err.hpp"
zmq::connect_session_t::connect_session_t (class io_thread_t *io_thread_,
class socket_base_t *socket_, const options_t &options_,
const char *protocol_, const char *address_) :
session_t (io_thread_, socket_, options_),
protocol (protocol_),
address (address_)
{
}
zmq::connect_session_t::~connect_session_t ()
{
}
void zmq::connect_session_t::process_plug ()
{
// Start connection process immediately.
start_connecting (false);
}
void zmq::connect_session_t::start_connecting (bool wait_)
{
// Choose I/O thread to run connecter in. Given that we are already
// running in an I/O thread, there must be at least one available.
io_thread_t *io_thread = choose_io_thread (options.affinity);
zmq_assert (io_thread);
// Create the connecter object.
// Both TCP and IPC transports are using the same infrastructure.
if (protocol == "tcp" || protocol == "ipc") {
zmq_connecter_t *connecter = new (std::nothrow) zmq_connecter_t (
io_thread, this, options, protocol.c_str (), address.c_str (),
wait_);
alloc_assert (connecter);
launch_child (connecter);
return;
}
#if defined ZMQ_HAVE_OPENPGM
// Both PGM and EPGM transports are using the same infrastructure.
if (protocol == "pgm" || protocol == "epgm") {
// For EPGM transport with UDP encapsulation of PGM is used.
bool udp_encapsulation = (protocol == "epgm");
// At this point we'll create message pipes to the session straight
// away. There's no point in delaying it as no concept of 'connect'
// exists with PGM anyway.
if (options.type == ZMQ_PUB || options.type == ZMQ_XPUB) {
// PGM sender.
pgm_sender_t *pgm_sender = new (std::nothrow) pgm_sender_t (
io_thread, options);
alloc_assert (pgm_sender);
int rc = pgm_sender->init (udp_encapsulation, address.c_str ());
zmq_assert (rc == 0);
send_attach (this, pgm_sender);
}
else if (options.type == ZMQ_SUB || options.type == ZMQ_XSUB) {
// PGM receiver.
pgm_receiver_t *pgm_receiver = new (std::nothrow) pgm_receiver_t (
io_thread, options);
alloc_assert (pgm_receiver);
int rc = pgm_receiver->init (udp_encapsulation, address.c_str ());
zmq_assert (rc == 0);
send_attach (this, pgm_receiver);
}
else
zmq_assert (false);
return;
}
#endif
zmq_assert (false);
}
bool zmq::connect_session_t::xattached ()
{
return true;
}
bool zmq::connect_session_t::xdetached ()
{
// Reconnect.
start_connecting (true);
// Don't tear the session down.
return true;
}
/*
Copyright (c) 2007-2011 iMatix Corporation
Copyright (c) 2007-2011 Other contributors as noted in the AUTHORS file
This file is part of 0MQ.
0MQ is free software; you can redistribute it and/or modify it under
the terms of the GNU Lesser General Public License as published by
the Free Software Foundation; either version 3 of the License, or
(at your option) any later version.
0MQ 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 Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#ifndef __ZMQ_CONNECT_SESSION_HPP_INCLUDED__
#define __ZMQ_CONNECT_SESSION_HPP_INCLUDED__
#include <string>
#include "session.hpp"
namespace zmq
{
// Connect session contains an address to connect to. On disconnect it
// attempts to reconnect.
class connect_session_t : public session_t
{
public:
connect_session_t (class io_thread_t *io_thread_,
class socket_base_t *socket_, const options_t &options_,
const char *protocol_, const char *address_);
~connect_session_t ();
private:
// Handlers for events from session base class.
bool xattached ();
bool xdetached ();
// Start the connection process.
void start_connecting (bool wait_);
// Command handlers.
void process_plug ();
// Address to connect to.
std::string protocol;
std::string address;
connect_session_t (const connect_session_t&);
const connect_session_t &operator = (const connect_session_t&);
};
}
#endif
......@@ -22,13 +22,13 @@
#include <string.h>
#include "decoder.hpp"
#include "i_engine.hpp"
#include "session.hpp"
#include "wire.hpp"
#include "err.hpp"
zmq::decoder_t::decoder_t (size_t bufsize_, int64_t maxmsgsize_) :
decoder_base_t <decoder_t> (bufsize_),
sink (NULL),
session (NULL),
maxmsgsize (maxmsgsize_)
{
int rc = in_progress.init ();
......@@ -44,9 +44,9 @@ zmq::decoder_t::~decoder_t ()
errno_assert (rc == 0);
}
void zmq::decoder_t::set_sink (i_engine_sink *sink_)
void zmq::decoder_t::set_session (session_t *session_)
{
sink = sink_;
session = session_;
}
bool zmq::decoder_t::one_byte_size_ready ()
......@@ -136,7 +136,7 @@ bool zmq::decoder_t::message_ready ()
{
// Message is completely read. Push it further and start reading
// new message. (in_progress is a 0-byte message after this point.)
if (!sink || !sink->write (&in_progress))
if (!session || !session->write (&in_progress))
return false;
next_step (tmpbuf, 1, &decoder_t::one_byte_size_ready);
......
......@@ -184,7 +184,7 @@ namespace zmq
decoder_t (size_t bufsize_, int64_t maxmsgsize_);
~decoder_t ();
void set_sink (struct i_engine_sink *sink_);
void set_session (class session_t *session_);
private:
......@@ -193,7 +193,7 @@ namespace zmq
bool flags_ready ();
bool message_ready ();
struct i_engine_sink *sink;
class session_t *session;
unsigned char tmpbuf [8];
msg_t in_progress;
......
......@@ -19,12 +19,12 @@
*/
#include "encoder.hpp"
#include "i_engine.hpp"
#include "session.hpp"
#include "wire.hpp"
zmq::encoder_t::encoder_t (size_t bufsize_) :
encoder_base_t <encoder_t> (bufsize_),
sink (NULL)
session (NULL)
{
int rc = in_progress.init ();
errno_assert (rc == 0);
......@@ -39,9 +39,9 @@ zmq::encoder_t::~encoder_t ()
errno_assert (rc == 0);
}
void zmq::encoder_t::set_sink (i_engine_sink *sink_)
void zmq::encoder_t::set_session (session_t *session_)
{
sink = sink_;
session = session_;
}
bool zmq::encoder_t::size_ready ()
......@@ -62,7 +62,7 @@ bool zmq::encoder_t::message_ready ()
// Note that new state is set only if write is successful. That way
// unsuccessful write will cause retry on the next state machine
// invocation.
if (!sink || !sink->read (&in_progress)) {
if (!session || !session->read (&in_progress)) {
rc = in_progress.init ();
errno_assert (rc == 0);
return false;
......
......@@ -163,14 +163,14 @@ namespace zmq
encoder_t (size_t bufsize_);
~encoder_t ();
void set_sink (struct i_engine_sink *sink_);
void set_session (class session_t *session_);
private:
bool size_ready ();
bool message_ready ();
struct i_engine_sink *sink;
class session_t *session;
msg_t in_progress;
unsigned char tmpbuf [10];
......
......@@ -32,7 +32,7 @@ namespace zmq
// Plug the engine to the session.
virtual void plug (class io_thread_t *io_thread_,
struct i_engine_sink *sink_) = 0;
class session_t *session_) = 0;
// Unplug the engine from the session.
virtual void unplug () = 0;
......@@ -50,25 +50,6 @@ namespace zmq
virtual void activate_out () = 0;
};
// Abstract interface to be implemented by engine sinks such as sessions.
struct i_engine_sink
{
virtual ~i_engine_sink () {}
// Engine asks for a message to send to the network.
virtual bool read (class msg_t *msg_) = 0;
// Engine received message from the network and sends it further on.
virtual bool write (class msg_t *msg_) = 0;
// Flush all the previously written messages.
virtual void flush () = 0;
// Engine is dead. Drop all the references to it.
virtual void detach () = 0;
};
}
#endif
......@@ -29,9 +29,10 @@
#endif
#include "pgm_receiver.hpp"
#include "err.hpp"
#include "session.hpp"
#include "stdint.hpp"
#include "wire.hpp"
#include "err.hpp"
zmq::pgm_receiver_t::pgm_receiver_t (class io_thread_t *parent_,
const options_t &options_) :
......@@ -39,7 +40,7 @@ zmq::pgm_receiver_t::pgm_receiver_t (class io_thread_t *parent_,
has_rx_timer (false),
pgm_socket (true, options_),
options (options_),
sink (NULL),
session (NULL),
mru_decoder (NULL),
pending_bytes (0)
{
......@@ -56,7 +57,7 @@ int zmq::pgm_receiver_t::init (bool udp_encapsulation_, const char *network_)
return pgm_socket.init (udp_encapsulation_, network_);
}
void zmq::pgm_receiver_t::plug (io_thread_t *io_thread_, i_engine_sink *sink_)
void zmq::pgm_receiver_t::plug (io_thread_t *io_thread_, session_t *session_)
{
// Retrieve PGM fds and start polling.
int socket_fd;
......@@ -67,7 +68,7 @@ void zmq::pgm_receiver_t::plug (io_thread_t *io_thread_, i_engine_sink *sink_)
set_pollin (pipe_handle);
set_pollin (socket_handle);
sink = sink_;
session = session_;
// If there are any subscriptions already queued in the session, drop them.
drop_subscriptions ();
......@@ -93,7 +94,7 @@ void zmq::pgm_receiver_t::unplug ()
rm_fd (socket_handle);
rm_fd (pipe_handle);
sink = NULL;
session = NULL;
}
void zmq::pgm_receiver_t::terminate ()
......@@ -220,7 +221,7 @@ void zmq::pgm_receiver_t::in_event ()
it->second.decoder = new (std::nothrow) decoder_t (0,
options.maxmsgsize);
alloc_assert (it->second.decoder);
it->second.decoder->set_sink (sink);
it->second.decoder->set_session (session);
}
mru_decoder = it->second.decoder;
......@@ -246,7 +247,7 @@ void zmq::pgm_receiver_t::in_event ()
}
// Flush any messages decoder may have produced.
sink->flush ();
session->flush ();
}
void zmq::pgm_receiver_t::timer_event (int token)
......@@ -261,7 +262,7 @@ void zmq::pgm_receiver_t::timer_event (int token)
void zmq::pgm_receiver_t::drop_subscriptions ()
{
msg_t msg;
while (sink->read (&msg))
while (session->read (&msg))
msg.close ();
}
......
......@@ -52,7 +52,7 @@ namespace zmq
int init (bool udp_encapsulation_, const char *network_);
// i_engine interface implementation.
void plug (class io_thread_t *io_thread_, struct i_engine_sink *sink_);
void plug (class io_thread_t *io_thread_, class session_t *session_);
void unplug ();
void terminate ();
void activate_in ();
......@@ -105,7 +105,7 @@ namespace zmq
options_t options;
// Associated session.
i_engine_sink *sink;
class session_t *session;
// Most recently used decoder.
decoder_t *mru_decoder;
......
......@@ -30,6 +30,7 @@
#include "io_thread.hpp"
#include "pgm_sender.hpp"
#include "session.hpp"
#include "err.hpp"
#include "wire.hpp"
#include "stdint.hpp"
......@@ -61,7 +62,7 @@ int zmq::pgm_sender_t::init (bool udp_encapsulation_, const char *network_)
return rc;
}
void zmq::pgm_sender_t::plug (io_thread_t *io_thread_, i_engine_sink *sink_)
void zmq::pgm_sender_t::plug (io_thread_t *io_thread_, session_t *session_)
{
// Alocate 2 fds for PGM socket.
int downlink_socket_fd = 0;
......@@ -69,7 +70,7 @@ void zmq::pgm_sender_t::plug (io_thread_t *io_thread_, i_engine_sink *sink_)
int rdata_notify_fd = 0;
int pending_notify_fd = 0;
encoder.set_sink (sink_);
encoder.set_session (session_);
// Fill fds from PGM transport and add them to the poller.
pgm_socket.get_sender_fds (&downlink_socket_fd, &uplink_socket_fd,
......@@ -94,9 +95,9 @@ void zmq::pgm_sender_t::plug (io_thread_t *io_thread_, i_engine_sink *sink_)
// subscribe for all the messages.
msg_t msg;
msg.init ();
bool ok = sink_->write (&msg);
bool ok = session_->write (&msg);
zmq_assert (ok);
sink_->flush ();
session_->flush ();
}
void zmq::pgm_sender_t::unplug ()
......@@ -115,7 +116,7 @@ void zmq::pgm_sender_t::unplug ()
rm_fd (uplink_handle);
rm_fd (rdata_notify_handle);
rm_fd (pending_notify_handle);
encoder.set_sink (NULL);
encoder.set_session (NULL);
}
void zmq::pgm_sender_t::terminate ()
......
......@@ -50,7 +50,7 @@ namespace zmq
int init (bool udp_encapsulation_, const char *network_);
// i_engine interface implementation.
void plug (class io_thread_t *io_thread_, struct i_engine_sink *sink_);
void plug (class io_thread_t *io_thread_, class session_t *session_);
void unplug ();
void terminate ();
void activate_in ();
......
......@@ -24,11 +24,16 @@
#include "err.hpp"
#include "pipe.hpp"
#include "likely.hpp"
#include "zmq_connecter.hpp"
#include "pgm_sender.hpp"
#include "pgm_receiver.hpp"
zmq::session_t::session_t (class io_thread_t *io_thread_,
class socket_base_t *socket_, const options_t &options_) :
zmq::session_t::session_t (class io_thread_t *io_thread_, bool connect_,
class socket_base_t *socket_, const options_t &options_,
const char *protocol_, const char *address_) :
own_t (io_thread_, options_),
io_object_t (io_thread_),
connect (connect_),
pipe (NULL),
incomplete_in (false),
pending (false),
......@@ -37,6 +42,10 @@ zmq::session_t::session_t (class io_thread_t *io_thread_,
io_thread (io_thread_),
has_linger_timer (false)
{
if (protocol_)
protocol = protocol_;
if (address_)
address = address_;
}
zmq::session_t::~session_t ()
......@@ -157,6 +166,8 @@ void zmq::session_t::hiccuped (pipe_t *pipe_)
void zmq::session_t::process_plug ()
{
if (connect)
start_connecting (false);
}
void zmq::session_t::process_attach (i_engine *engine_)
......@@ -169,12 +180,6 @@ void zmq::session_t::process_attach (i_engine *engine_)
return;
}
// Trigger the notfication event about the attachment.
if (!attached ()) {
delete engine_;
return;
}
// Create the pipe if it does not exist yet.
if (!pipe && !is_terminating ()) {
object_t *parents [2] = {this, socket};
......@@ -271,25 +276,87 @@ void zmq::session_t::timer_event (int id_)
pipe->terminate (false);
}
bool zmq::session_t::attached ()
{
return xattached ();
}
void zmq::session_t::detached ()
{
if (!xdetached ()) {
// Derived session type have asked for session termination.
// Transient session self-destructs after peer disconnects.
if (!connect) {
terminate ();
return;
}
// Reconnect.
start_connecting (true);
// For subscriber sockets we hiccup the inbound pipe, which will cause
// the socket object to resend all the subscriptions.
if (pipe && (options.type == ZMQ_SUB || options.type == ZMQ_XSUB))
pipe->hiccup ();
}
void zmq::session_t::start_connecting (bool wait_)
{
zmq_assert (connect);
// Choose I/O thread to run connecter in. Given that we are already
// running in an I/O thread, there must be at least one available.
io_thread_t *io_thread = choose_io_thread (options.affinity);
zmq_assert (io_thread);
// Create the connecter object.
// Both TCP and IPC transports are using the same infrastructure.
if (protocol == "tcp" || protocol == "ipc") {
zmq_connecter_t *connecter = new (std::nothrow) zmq_connecter_t (
io_thread, this, options, protocol.c_str (), address.c_str (),
wait_);
alloc_assert (connecter);
launch_child (connecter);
return;
}
#if defined ZMQ_HAVE_OPENPGM
// Both PGM and EPGM transports are using the same infrastructure.
if (protocol == "pgm" || protocol == "epgm") {
// For EPGM transport with UDP encapsulation of PGM is used.
bool udp_encapsulation = (protocol == "epgm");
// At this point we'll create message pipes to the session straight
// away. There's no point in delaying it as no concept of 'connect'
// exists with PGM anyway.
if (options.type == ZMQ_PUB || options.type == ZMQ_XPUB) {
// PGM sender.
pgm_sender_t *pgm_sender = new (std::nothrow) pgm_sender_t (
io_thread, options);
alloc_assert (pgm_sender);
int rc = pgm_sender->init (udp_encapsulation, address.c_str ());
zmq_assert (rc == 0);
send_attach (this, pgm_sender);
}
else if (options.type == ZMQ_SUB || options.type == ZMQ_XSUB) {
// PGM receiver.
pgm_receiver_t *pgm_receiver = new (std::nothrow) pgm_receiver_t (
io_thread, options);
alloc_assert (pgm_receiver);
int rc = pgm_receiver->init (udp_encapsulation, address.c_str ());
zmq_assert (rc == 0);
send_attach (this, pgm_receiver);
}
else
zmq_assert (false);
return;
}
#endif
zmq_assert (false);
}
......@@ -21,6 +21,8 @@
#ifndef __ZMQ_SESSION_HPP_INCLUDED__
#define __ZMQ_SESSION_HPP_INCLUDED__
#include <string>
#include "own.hpp"
#include "i_engine.hpp"
#include "io_object.hpp"
......@@ -32,18 +34,18 @@ namespace zmq
class session_t :
public own_t,
public io_object_t,
public i_engine_sink,
public i_pipe_events
{
public:
session_t (class io_thread_t *io_thread_,
class socket_base_t *socket_, const options_t &options_);
session_t (class io_thread_t *io_thread_, bool connect_,
class socket_base_t *socket_, const options_t &options_,
const char *protocol_, const char *address_);
// To be used once only, when creating the session.
void attach_pipe (class pipe_t *pipe_);
// i_engine_sink interface implementation.
// Following functions are the interface exposed towards the engine.
bool read (msg_t *msg_);
bool write (msg_t *msg_);
void flush ();
......@@ -55,22 +57,12 @@ namespace zmq
void hiccuped (class pipe_t *pipe_);
void terminated (class pipe_t *pipe_);
protected:
// Events from the engine. Attached is triggered when session is
// attached to a peer. The function can reject the new peer by
// returning false. Detached is triggered at the beginning of
// the termination process when session is about to be detached from
// the peer. If it returns false, session will be terminated.
// To be overloaded by the derived session type.
virtual bool xattached () = 0;
virtual bool xdetached () = 0;
private:
~session_t ();
private:
void start_connecting (bool wait_);
bool attached ();
void detached ();
// Handlers for incoming commands.
......@@ -88,6 +80,10 @@ namespace zmq
// Call this function to move on with the delayed process_term.
void proceed_with_term ();
// If true, this session (re)connects to the peer. Otherwise, it's
// a transient session created by the listener.
bool connect;
// Pipe connecting the session to its socket.
class pipe_t *pipe;
......@@ -115,6 +111,10 @@ namespace zmq
// True is linger timer is running.
bool has_linger_timer;
// Protocol and address to use when connecting.
std::string protocol;
std::string address;
session_t (const session_t&);
const session_t &operator = (const session_t&);
};
......
......@@ -37,7 +37,7 @@
#include "zmq_listener.hpp"
#include "zmq_connecter.hpp"
#include "io_thread.hpp"
#include "connect_session.hpp"
#include "session.hpp"
#include "config.hpp"
#include "clock.hpp"
#include "pipe.hpp"
......@@ -441,8 +441,8 @@ int zmq::socket_base_t::connect (const char *addr_)
}
// Create session.
connect_session_t *session = new (std::nothrow) connect_session_t (
io_thread, this, options, protocol.c_str (), address.c_str ());
session_t *session = new (std::nothrow) session_t (
io_thread, true, this, options, protocol.c_str (), address.c_str ());
alloc_assert (session);
// Create a bi-directional pipe.
......
/*
Copyright (c) 2007-2011 iMatix Corporation
Copyright (c) 2007-2011 Other contributors as noted in the AUTHORS file
This file is part of 0MQ.
0MQ is free software; you can redistribute it and/or modify it under
the terms of the GNU Lesser General Public License as published by
the Free Software Foundation; either version 3 of the License, or
(at your option) any later version.
0MQ 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 Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#include "transient_session.hpp"
zmq::transient_session_t::transient_session_t (class io_thread_t *io_thread_,
class socket_base_t *socket_, const options_t &options_) :
session_t (io_thread_, socket_, options_)
{
}
zmq::transient_session_t::~transient_session_t ()
{
}
bool zmq::transient_session_t::xattached ()
{
// Transient session is always valid.
return true;
}
bool zmq::transient_session_t::xdetached ()
{
// There's no way to reestablish a transient session. Tear it down.
return false;
}
/*
Copyright (c) 2007-2011 iMatix Corporation
Copyright (c) 2007-2011 Other contributors as noted in the AUTHORS file
This file is part of 0MQ.
0MQ is free software; you can redistribute it and/or modify it under
the terms of the GNU Lesser General Public License as published by
the Free Software Foundation; either version 3 of the License, or
(at your option) any later version.
0MQ 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 Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#ifndef __ZMQ_TRANSIENT_SESSION_HPP_INCLUDED__
#define __ZMQ_TRANSIENT_SESSION_HPP_INCLUDED__
#include "session.hpp"
namespace zmq
{
// Transient session is created by the listener when the connected peer
// stays anonymous. Transient session is destroyed on disconnect.
class transient_session_t : public session_t
{
public:
transient_session_t (class io_thread_t *io_thread_,
class socket_base_t *socket_, const options_t &options_);
~transient_session_t ();
private:
// Handlers for events from session base class.
bool xattached ();
bool xdetached ();
transient_session_t (const transient_session_t&);
const transient_session_t &operator = (const transient_session_t&);
};
}
#endif
......@@ -29,6 +29,7 @@
#include "zmq_engine.hpp"
#include "zmq_connecter.hpp"
#include "io_thread.hpp"
#include "session.hpp"
#include "config.hpp"
#include "err.hpp"
......@@ -39,8 +40,8 @@ zmq::zmq_engine_t::zmq_engine_t (fd_t fd_, const options_t &options_) :
outpos (NULL),
outsize (0),
encoder (out_batch_size),
sink (NULL),
ephemeral_sink (NULL),
session (NULL),
leftover_session (NULL),
options (options_),
plugged (false)
{
......@@ -54,18 +55,18 @@ zmq::zmq_engine_t::~zmq_engine_t ()
zmq_assert (!plugged);
}
void zmq::zmq_engine_t::plug (io_thread_t *io_thread_, i_engine_sink *sink_)
void zmq::zmq_engine_t::plug (io_thread_t *io_thread_, session_t *session_)
{
zmq_assert (!plugged);
plugged = true;
ephemeral_sink = NULL;
leftover_session = NULL;
// Connect to session/init object.
zmq_assert (!sink);
zmq_assert (sink_);
encoder.set_sink (sink_);
decoder.set_sink (sink_);
sink = sink_;
// Connect to session object.
zmq_assert (!session);
zmq_assert (session_);
encoder.set_session (session_);
decoder.set_session (session_);
session = session_;
// Connect to I/O threads poller object.
io_object_t::plug (io_thread_);
......@@ -88,11 +89,11 @@ void zmq::zmq_engine_t::unplug ()
// Disconnect from I/O threads poller object.
io_object_t::unplug ();
// Disconnect from init/session object.
encoder.set_sink (NULL);
decoder.set_sink (NULL);
ephemeral_sink = sink;
sink = NULL;
// Disconnect from session object.
encoder.set_session (NULL);
decoder.set_session (NULL);
leftover_session = session;
session = NULL;
}
void zmq::zmq_engine_t::terminate ()
......@@ -133,9 +134,7 @@ void zmq::zmq_engine_t::in_event ()
// Stop polling for input if we got stuck.
if (processed < insize) {
// This may happen if queue limits are in effect or when
// init object reads all required information from the socket
// and rejects to read more data.
// This may happen if queue limits are in effect.
if (plugged)
reset_pollin (handle);
}
......@@ -148,13 +147,13 @@ void zmq::zmq_engine_t::in_event ()
// Flush all messages the decoder may have produced.
// If IO handler has unplugged engine, flush transient IO handler.
if (unlikely (!plugged)) {
zmq_assert (ephemeral_sink);
ephemeral_sink->flush ();
zmq_assert (leftover_session);
leftover_session->flush ();
} else {
sink->flush ();
session->flush ();
}
if (sink && disconnection)
if (session && disconnection)
error ();
}
......@@ -168,8 +167,8 @@ void zmq::zmq_engine_t::out_event ()
// If IO handler has unplugged engine, flush transient IO handler.
if (unlikely (!plugged)) {
zmq_assert (ephemeral_sink);
ephemeral_sink->flush ();
zmq_assert (leftover_session);
leftover_session->flush ();
return;
}
......@@ -218,8 +217,8 @@ void zmq::zmq_engine_t::activate_in ()
void zmq::zmq_engine_t::error ()
{
zmq_assert (sink);
sink->detach ();
zmq_assert (session);
session->detach ();
unplug ();
delete this;
}
......@@ -43,7 +43,7 @@ namespace zmq
~zmq_engine_t ();
// i_engine interface implementation.
void plug (class io_thread_t *io_thread_, struct i_engine_sink *sink_);
void plug (class io_thread_t *io_thread_, class session_t *session_);
void unplug ();
void terminate ();
void activate_in ();
......@@ -69,10 +69,11 @@ namespace zmq
size_t outsize;
encoder_t encoder;
i_engine_sink *sink;
// The session this engine is attached to.
class session_t *session;
// Detached transient sink.
i_engine_sink *ephemeral_sink;
// Detached transient session.
class session_t *leftover_session;
options_t options;
......
......@@ -21,9 +21,9 @@
#include <new>
#include "zmq_listener.hpp"
#include "transient_session.hpp"
#include "zmq_engine.hpp"
#include "io_thread.hpp"
#include "session.hpp"
#include "err.hpp"
zmq::zmq_listener_t::zmq_listener_t (io_thread_t *io_thread_,
......@@ -74,8 +74,8 @@ void zmq::zmq_listener_t::in_event ()
zmq_assert (io_thread);
// Create and launch a session object.
transient_session_t *session = new (std::nothrow)
transient_session_t (io_thread, socket, options);
session_t *session = new (std::nothrow)
session_t (io_thread, false, socket, options, NULL, NULL);
alloc_assert (session);
session->inc_seqnum ();
launch_child (session);
......
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