Commit a8b410e6 authored by Martin Sustrik's avatar Martin Sustrik

lockfree interaction patter for 3 theads implemented

parent 0b5cc026
......@@ -38,7 +38,7 @@ namespace zmq
message_delimiter = 1 << ZMQ_DELIMITER
};
class no_memory : public exception
class no_memory : public std::exception
{
virtual const char *what ()
{
......@@ -46,7 +46,7 @@ namespace zmq
}
};
class invalid_argument : public exception
class invalid_argument : public std::exception
{
virtual const char *what ()
{
......@@ -54,7 +54,7 @@ namespace zmq
}
};
class too_many_threads : public exception
class too_many_threads : public std::exception
{
virtual const char *what ()
{
......@@ -62,7 +62,7 @@ namespace zmq
}
};
class address_in_use : public exception
class address_in_use : public std::exception
{
virtual const char *what ()
{
......
......@@ -7,14 +7,15 @@ libzmq_la_SOURCES = \
atomic_ptr.hpp \
command.hpp \
config.hpp \
context.hpp \
decoder.hpp \
devpoll.hpp \
dispatcher.hpp \
encoder.hpp \
epoll.hpp \
err.hpp \
fd.hpp \
fd_signaler.hpp \
io_object.hpp \
io_thread.hpp \
ip.hpp \
i_api.hpp \
......@@ -31,6 +32,7 @@ libzmq_la_SOURCES = \
poll.hpp \
select.hpp \
simple_semaphore.hpp \
socket_base.hpp \
stdint.hpp \
tcp_connecter.hpp \
tcp_listener.hpp \
......@@ -42,25 +44,29 @@ libzmq_la_SOURCES = \
ypipe.hpp \
ypollset.hpp \
yqueue.hpp \
zmq_listener.hpp \
app_thread.cpp \
context.cpp \
devpoll.hpp \
devpoll.cpp \
dispatcher.cpp \
epoll.cpp \
err.cpp \
fd_signaler.cpp \
io_object.cpp \
io_thread.cpp \
ip.cpp \
kqueue.cpp \
object.cpp \
poll.cpp \
select.cpp \
socket_base.cpp \
tcp_connecter.cpp \
tcp_listener.cpp \
tcp_socket.cpp \
thread.cpp \
uuid.cpp \
ypollset.cpp \
zmq.cpp
zmq.cpp \
zmq_listener.cpp
libzmq_la_LDFLAGS = -version-info 0:0:0
libzmq_la_CXXFLAGS = -Wall -pedantic -Werror @ZMQ_EXTRA_CXXFLAGS@
......
......@@ -17,6 +17,8 @@
along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#include <algorithm>
#include "../include/zmq.h"
#if defined ZMQ_HAVE_WINDOWS
......@@ -26,10 +28,12 @@
#endif
#include "app_thread.hpp"
#include "context.hpp"
#include "i_api.hpp"
#include "dispatcher.hpp"
#include "err.hpp"
#include "pipe.hpp"
#include "config.hpp"
#include "socket_base.hpp"
// If the RDTSC is available we use it to prevent excessive
// polling for commands. The nice thing here is that it will work on any
......@@ -39,8 +43,8 @@
#define ZMQ_DELAY_COMMANDS
#endif
zmq::app_thread_t::app_thread_t (context_t *context_, int thread_slot_) :
object_t (context_, thread_slot_),
zmq::app_thread_t::app_thread_t (dispatcher_t *dispatcher_, int thread_slot_) :
object_t (dispatcher_, thread_slot_),
tid (0),
last_processing_time (0)
{
......@@ -48,13 +52,9 @@ zmq::app_thread_t::app_thread_t (context_t *context_, int thread_slot_) :
zmq::app_thread_t::~app_thread_t ()
{
// Ask all the sockets to start termination, then wait till it is complete.
for (sockets_t::iterator it = sockets.begin (); it != sockets.end (); it ++)
(*it)->stop ();
// Destroy all the sockets owned by this application thread.
for (sockets_t::iterator it = sockets.begin (); it != sockets.end (); it ++)
delete *it;
delete this;
}
zmq::i_signaler *zmq::app_thread_t::get_signaler ()
......@@ -123,9 +123,28 @@ void zmq::app_thread_t::process_commands (bool block_)
for (int i = 0; i != thread_slot_count (); i++) {
if (signals & (ypollset_t::signals_t (1) << i)) {
command_t cmd;
while (context->read (i, get_thread_slot (), &cmd))
while (dispatcher->read (i, get_thread_slot (), &cmd))
cmd.destination->process_command (cmd);
}
}
}
}
zmq::i_api *zmq::app_thread_t::create_socket (int type_)
{
// TODO: type is ignored for the time being.
socket_base_t *s = new socket_base_t (this);
zmq_assert (s);
sockets.push_back (s);
return s;
}
void zmq::app_thread_t::remove_socket (i_api *socket_)
{
// TODO: To speed this up we can possibly use the system where each socket
// holds its index (see I/O scheduler implementation).
sockets_t::iterator it = std::find (sockets.begin (), sockets.end (),
socket_);
zmq_assert (it != sockets.end ());
sockets.erase (it);
}
......@@ -22,7 +22,6 @@
#include <vector>
#include "i_socket.hpp"
#include "stdint.hpp"
#include "object.hpp"
#include "ypollset.hpp"
......@@ -34,7 +33,7 @@ namespace zmq
{
public:
app_thread_t (class context_t *context_, int thread_slot_);
app_thread_t (class dispatcher_t *dispatcher_, int thread_slot_);
~app_thread_t ();
......@@ -42,7 +41,7 @@ namespace zmq
i_signaler *get_signaler ();
// Nota bene: Following two functions are accessed from different
// threads. The caller (context) is responsible for synchronisation
// threads. The caller (dispatcher) is responsible for synchronisation
// of accesses.
// Returns true is current thread is associated with the app thread.
......@@ -56,10 +55,16 @@ namespace zmq
// set to true, returns only after at least one command was processed.
void process_commands (bool block_);
// Create a socket of a specified type.
struct i_api *create_socket (int type_);
// Unregister the socket from the app_thread (called by socket itself).
void remove_socket (struct i_api *socket_);
private:
// All the sockets created from this application thread.
typedef std::vector <i_socket*> sockets_t;
typedef std::vector <struct i_api*> sockets_t;
sockets_t sockets;
// Thread ID associated with this slot.
......
......@@ -35,60 +35,49 @@ namespace zmq
enum type_t
{
stop,
plug,
own,
bind,
head,
tail,
reg,
reg_and_bind,
unreg,
engine,
terminate,
terminate_ack
term_req,
term,
term_ack
} type;
union {
// Sent to I/O thread to let it know that it should
// terminate itself.
struct {
} stop;
// Sent to I/O object to make it register with its I/O thread.
struct {
class pipe_reader_t *reader;
class session_t *peer;
} bind;
} plug;
// Sent to socket to let it know about the newly created object.
struct {
uint64_t bytes;
} tail;
class object_t *object;
} own;
// Sent between objects to establish pipe(s) between them.
struct {
uint64_t bytes;
} head;
struct {
class simple_semaphore_t *smph;
} reg;
struct {
class session_t *peer;
bool flow_in;
bool flow_out;
} reg_and_bind;
struct {
class simple_semaphore_t *smph;
} unreg;
} bind;
// TODO: Engine object won't be deallocated on terminal shutdown
// while the command is still on the fly!
// Sent by I/O object ot the socket to request the shutdown of
// the I/O object.
struct {
class i_engine *engine;
} engine;
class object_t *object;
} term_req;
// Sent by socket to I/O object to start its shutdown.
struct {
} terminate;
} term;
// Sent by I/O object to the socket to acknowledge it has
// shut down.
struct {
} terminate_ack;
} term_ack;
} args;
};
......
......@@ -19,7 +19,7 @@
#include "../include/zmq.h"
#include "context.hpp"
#include "dispatcher.hpp"
#include "i_api.hpp"
#include "app_thread.hpp"
#include "io_thread.hpp"
......@@ -31,7 +31,7 @@
#include "windows.h"
#endif
zmq::context_t::context_t (int app_threads_, int io_threads_)
zmq::dispatcher_t::dispatcher_t (int app_threads_, int io_threads_)
{
#ifdef ZMQ_HAVE_WINDOWS
// Intialise Windows sockets. Note that WSAStartup can be called multiple
......@@ -69,7 +69,7 @@ zmq::context_t::context_t (int app_threads_, int io_threads_)
io_threads [i]->start ();
}
zmq::context_t::~context_t ()
zmq::dispatcher_t::~dispatcher_t ()
{
// Close all application theads, sockets, io_objects etc.
for (app_threads_t::size_type i = 0; i != app_threads.size (); i++)
......@@ -93,12 +93,12 @@ zmq::context_t::~context_t ()
#endif
}
int zmq::context_t::thread_slot_count ()
int zmq::dispatcher_t::thread_slot_count ()
{
return signalers.size ();
}
zmq::i_api *zmq::context_t::create_socket (int type_)
zmq::i_api *zmq::dispatcher_t::create_socket (int type_)
{
threads_sync.lock ();
app_thread_t *thread = choose_app_thread ();
......@@ -106,16 +106,12 @@ zmq::i_api *zmq::context_t::create_socket (int type_)
threads_sync.unlock ();
return NULL;
}
zmq_assert (false);
i_api *s = NULL;
//i_api *s = thread->create_socket (type_);
threads_sync.unlock ();
return s;
return thread->create_socket (type_);
}
zmq::app_thread_t *zmq::context_t::choose_app_thread ()
zmq::app_thread_t *zmq::dispatcher_t::choose_app_thread ()
{
// Check whether thread ID is already assigned. If so, return it.
for (app_threads_t::size_type i = 0; i != app_threads.size (); i++)
......@@ -132,7 +128,7 @@ zmq::app_thread_t *zmq::context_t::choose_app_thread ()
return NULL;
}
zmq::io_thread_t *zmq::context_t::choose_io_thread (uint64_t taskset_)
zmq::io_thread_t *zmq::dispatcher_t::choose_io_thread (uint64_t taskset_)
{
zmq_assert (io_threads.size () > 0);
......
......@@ -17,8 +17,8 @@
along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#ifndef __ZMQ_CONTEXT_HPP_INCLUDED__
#define __ZMQ_CONTEXT_HPP_INCLUDED__
#ifndef __ZMQ_DISPATCHER_HPP_INCLUDED__
#define __ZMQ_DISPATCHER_HPP_INCLUDED__
#include <vector>
#include <map>
......@@ -37,27 +37,27 @@ namespace zmq
// Dispatcher implements bidirectional thread-safe passing of commands
// between N threads. It consists of a ypipes to pass commands and
// signalers to wake up the receiver thread when new commands are
// available. Note that context is inefficient for passing messages
// available. Note that dispatcher is inefficient for passing messages
// within a thread (sender thread = receiver thread). The optimisation is
// not part of the class and should be implemented by individual threads
// (presumably by calling the command handling function directly).
class context_t
class dispatcher_t
{
public:
// Create the context object. Matrix of pipes to communicate between
// Create the dispatcher object. Matrix of pipes to communicate between
// each socket and each I/O thread is created along with appropriate
// signalers.
context_t (int app_threads_, int io_threads_);
dispatcher_t (int app_threads_, int io_threads_);
// To be called to terminate the whole infrastructure (zmq_term).
~context_t ();
~dispatcher_t ();
// Create a socket.
struct i_api *create_socket (int type_);
// Returns number of thread slots in the context. To be used by
// Returns number of thread slots in the dispatcher. To be used by
// individual threads to find out how many distinct signals can be
// received.
int thread_slot_count ();
......@@ -112,8 +112,8 @@ namespace zmq
// Synchronisation of accesses to shared thread data.
mutex_t threads_sync;
context_t (const context_t&);
void operator = (const context_t&);
dispatcher_t (const dispatcher_t&);
void operator = (const dispatcher_t&);
};
}
......
......@@ -80,6 +80,12 @@ namespace zmq
abort ();\
}} while (false)
// Provides convenient way to check for POSIX errors.
#define posix_assert(x) do {\
fprintf (stderr, "%s (%s:%d)\n", strerror (x), __FILE__, __LINE__);\
abort ();\
} while (false)
// Provides convenient way to check for errors from getaddrinfo.
#define gai_assert(x) do { if (x) {\
const char *errstr = gai_strerror (x);\
......
/*
Copyright (c) 2007-2009 FastMQ Inc.
This file is part of 0MQ.
0MQ is free software; you can redistribute it and/or modify it under
the terms of the Lesser GNU 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
Lesser GNU General Public License for more details.
You should have received a copy of the Lesser GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
Copyright (c) 2007-2009 FastMQ Inc.
This file is part of 0MQ.
0MQ is free software; you can redistribute it and/or modify it under
the terms of the Lesser GNU 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
Lesser GNU General Public License for more details.
You should have received a copy of the Lesser GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#ifndef __ZMQ_I_API_HPP_INCLUDED__
......@@ -25,6 +25,8 @@ namespace zmq
struct i_api
{
virtual ~i_api () {}
virtual int bind (const char *addr_, struct zmq_opts *opts_) = 0;
virtual int connect (const char *addr_, struct zmq_opts *opts_) = 0;
virtual int subscribe (const char *criteria_) = 0;
......
/*
Copyright (c) 2007-2009 FastMQ Inc.
This file is part of 0MQ.
0MQ is free software; you can redistribute it and/or modify it under
the terms of the Lesser GNU 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
Lesser GNU General Public License for more details.
You should have received a copy of the Lesser GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#include "io_object.hpp"
zmq::io_object_t::io_object_t (object_t *parent_, object_t *owner_) :
object_t (parent_),
owner (owner_)
{
}
zmq::io_object_t::~io_object_t ()
{
}
void zmq::io_object_t::term ()
{
send_term_req (owner, this);
}
void zmq::io_object_t::process_term ()
{
send_term_ack (owner);
delete this;
}
/*
Copyright (c) 2007-2009 FastMQ Inc.
This file is part of 0MQ.
0MQ is free software; you can redistribute it and/or modify it under
the terms of the Lesser GNU 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
Lesser GNU General Public License for more details.
You should have received a copy of the Lesser GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#ifndef __ZMQ_IO_OBJECT_HPP_INCLUDED__
#define __ZMQ_IO_OBJECT_HPP_INCLUDED__
#include "object.hpp"
namespace zmq
{
class io_object_t : public object_t
{
public:
// I/O object will live in the thread inherited from the parent.
// However, it's lifetime is managed by the owner.
io_object_t (object_t *parent_, object_t *owner_);
protected:
// Ask owner socket to terminate this I/O object. This may not happen
void term ();
// I/O object destroys itself. No point in allowing others to invoke
// the destructor. At the same time, it has to be virtual so that
// generic io_object deallocation mechanism destroys specific type
// of I/O object correctly.
virtual ~io_object_t ();
private:
// Handlers for incoming commands.
void process_term ();
// Socket owning this I/O object. It is responsible for destroying
// it when it's being closed.
object_t *owner;
io_object_t (const io_object_t&);
void operator = (const io_object_t&);
};
}
#endif
......@@ -29,11 +29,11 @@
#include "select.hpp"
#include "devpoll.hpp"
#include "kqueue.hpp"
#include "context.hpp"
#include "dispatcher.hpp"
#include "simple_semaphore.hpp"
zmq::io_thread_t::io_thread_t (context_t *context_, int thread_slot_) :
object_t (context_, thread_slot_)
zmq::io_thread_t::io_thread_t (dispatcher_t *dispatcher_, int thread_slot_) :
object_t (dispatcher_, thread_slot_)
{
#if defined ZMQ_FORCE_SELECT
poller = new select_t;
......@@ -115,7 +115,7 @@ void zmq::io_thread_t::in_event ()
// Read all the commands from particular thread.
command_t cmd;
while (context->read (source_thread_slot, thread_slot, &cmd))
while (dispatcher->read (source_thread_slot, thread_slot, &cmd))
cmd.destination->process_command (cmd);
}
}
......
......@@ -37,7 +37,7 @@ namespace zmq
{
public:
io_thread_t (class context_t *context_, int thread_slot_);
io_thread_t (class dispatcher_t *dispatcher_, int thread_slot_);
// Clean-up. If the thread was started, it's neccessary to call 'stop'
// before invoking destructor. Otherwise the destructor would hang up.
......
......@@ -72,43 +72,47 @@ namespace zmq
namespace zmq
{
class mutex_t
{
public:
inline mutex_t ()
{
int rc = pthread_mutex_init (&mutex, NULL);
errno_assert (rc == 0);
if (rc)
posix_assert (rc);
}
inline ~mutex_t ()
{
int rc = pthread_mutex_destroy (&mutex);
errno_assert (rc == 0);
if (rc)
posix_assert (rc);
}
inline void lock ()
{
int rc = pthread_mutex_lock (&mutex);
errno_assert (rc == 0);
if (rc)
posix_assert (rc);
}
inline void unlock ()
{
int rc = pthread_mutex_unlock (&mutex);
errno_assert (rc == 0);
if (rc)
posix_assert (rc);
}
private:
pthread_mutex_t mutex;
// Disable copy construction and assignment.
// Disable copy construction and assignment.
mutex_t (const mutex_t&);
void operator = (const mutex_t&);
};
}
#endif
......
......@@ -18,19 +18,19 @@
*/
#include "object.hpp"
#include "context.hpp"
#include "dispatcher.hpp"
#include "err.hpp"
#include "io_thread.hpp"
#include "simple_semaphore.hpp"
zmq::object_t::object_t (context_t *context_, int thread_slot_) :
context (context_),
zmq::object_t::object_t (dispatcher_t *dispatcher_, int thread_slot_) :
dispatcher (dispatcher_),
thread_slot (thread_slot_)
{
}
zmq::object_t::object_t (object_t *parent_) :
context (parent_->context),
dispatcher (parent_->dispatcher),
thread_slot (parent_->thread_slot)
{
}
......@@ -41,7 +41,7 @@ zmq::object_t::~object_t ()
int zmq::object_t::thread_slot_count ()
{
return context->thread_slot_count ();
return dispatcher->thread_slot_count ();
}
int zmq::object_t::get_thread_slot ()
......@@ -53,45 +53,32 @@ void zmq::object_t::process_command (command_t &cmd_)
{
switch (cmd_.type) {
case command_t::head:
process_head (cmd_.args.head.bytes);
case command_t::stop:
process_stop ();
break;
case command_t::tail:
process_tail (cmd_.args.tail.bytes);
break;
case command_t::plug:
process_plug ();
return;
case command_t::engine:
process_engine (cmd_.args.engine.engine);
break;
case command_t::own:
process_own (cmd_.args.own.object);
return;
case command_t::bind:
process_bind (cmd_.args.bind.reader, cmd_.args.bind.peer);
break;
case command_t::reg:
process_reg (cmd_.args.reg.smph);
break;
case command_t::reg_and_bind:
process_reg_and_bind (cmd_.args.reg_and_bind.peer,
cmd_.args.reg_and_bind.flow_in, cmd_.args.reg_and_bind.flow_out);
break;
case command_t::unreg:
process_unreg (cmd_.args.unreg.smph);
break;
case command_t::terminate:
process_terminate ();
break;
process_bind ();
return;
case command_t::terminate_ack:
process_terminate_ack ();
break;
case command_t::term_req:
process_term_req (cmd_.args.term_req.object);
return;
case command_t::term:
process_term ();
return;
case command_t::stop:
process_stop ();
case command_t::term_ack:
process_term_ack ();
return;
default:
......@@ -101,7 +88,7 @@ void zmq::object_t::process_command (command_t &cmd_)
zmq::io_thread_t *zmq::object_t::choose_io_thread (uint64_t taskset_)
{
return context->choose_io_thread (taskset_);
return dispatcher->choose_io_thread (taskset_);
}
void zmq::object_t::send_stop ()
......@@ -111,91 +98,56 @@ void zmq::object_t::send_stop ()
command_t cmd;
cmd.destination = this;
cmd.type = command_t::stop;
context->write (thread_slot, thread_slot, cmd);
dispatcher->write (thread_slot, thread_slot, cmd);
}
void zmq::object_t::send_bind (object_t *destination_, pipe_reader_t *reader_,
session_t *peer_)
void zmq::object_t::send_plug (object_t *destination_)
{
command_t cmd;
cmd.destination = destination_;
cmd.type = command_t::bind;
cmd.args.bind.reader = reader_;
cmd.args.bind.peer = peer_;
cmd.type = command_t::plug;
send_command (cmd);
}
void zmq::object_t::send_head (object_t *destination_, uint64_t bytes_)
void zmq::object_t::send_own (object_t *destination_, object_t *object_)
{
command_t cmd;
cmd.destination = destination_;
cmd.type = command_t::head;
cmd.args.head.bytes = bytes_;
cmd.type = command_t::own;
cmd.args.own.object = object_;
send_command (cmd);
}
void zmq::object_t::send_tail (object_t *destination_, uint64_t bytes_)
void zmq::object_t::send_bind (object_t *destination_)
{
command_t cmd;
cmd.destination = destination_;
cmd.type = command_t::tail;
cmd.args.tail.bytes = bytes_;
send_command (cmd);
}
void zmq::object_t::send_reg (object_t *destination_, simple_semaphore_t *smph_)
{
command_t cmd;
cmd.destination = destination_;
cmd.type = command_t::reg;
cmd.args.reg.smph = smph_;
send_command (cmd);
}
void zmq::object_t::send_reg_and_bind (object_t *destination_,
session_t *peer_, bool flow_in_, bool flow_out_)
{
command_t cmd;
cmd.destination = destination_;
cmd.type = command_t::reg_and_bind;
cmd.args.reg_and_bind.peer = peer_;
cmd.args.reg_and_bind.flow_in = flow_in_;
cmd.args.reg_and_bind.flow_out = flow_out_;
send_command (cmd);
}
void zmq::object_t::send_unreg (object_t *destination_,
simple_semaphore_t *smph_)
{
command_t cmd;
cmd.destination = destination_;
cmd.type = command_t::unreg;
cmd.args.unreg.smph = smph_;
cmd.type = command_t::bind;
send_command (cmd);
}
void zmq::object_t::send_engine (object_t *destination_, i_engine *engine_)
void zmq::object_t::send_term_req (object_t *destination_, object_t *object_)
{
command_t cmd;
cmd.destination = destination_;
cmd.type = command_t::engine;
cmd.args.engine.engine = engine_;
cmd.type = command_t::term_req;
cmd.args.term_req.object = object_;
send_command (cmd);
}
void zmq::object_t::send_terminate (object_t *destination_)
void zmq::object_t::send_term (object_t *destination_)
{
command_t cmd;
cmd.destination = destination_;
cmd.type = command_t::terminate;
cmd.type = command_t::term;
send_command (cmd);
}
void zmq::object_t::send_terminate_ack (object_t *destination_)
void zmq::object_t::send_term_ack (object_t *destination_)
{
command_t cmd;
cmd.destination = destination_;
cmd.type = command_t::terminate_ack;
cmd.type = command_t::term_ack;
send_command (cmd);
}
......@@ -204,48 +156,32 @@ void zmq::object_t::process_stop ()
zmq_assert (false);
}
void zmq::object_t::process_bind (pipe_reader_t *reader_, session_t *peer_)
{
zmq_assert (false);
}
void zmq::object_t::process_head (uint64_t bytes_)
{
zmq_assert (false);
}
void zmq::object_t::process_tail (uint64_t bytes_)
{
zmq_assert (false);
}
void zmq::object_t::process_reg (simple_semaphore_t *smph_)
void zmq::object_t::process_plug ()
{
zmq_assert (false);
}
void zmq::object_t::process_reg_and_bind (session_t *session_,
bool flow_in_, bool flow_out_)
void zmq::object_t::process_own (object_t *object_)
{
zmq_assert (false);
}
void zmq::object_t::process_unreg (simple_semaphore_t *smph_)
void zmq::object_t::process_bind ()
{
zmq_assert (false);
}
void zmq::object_t::process_engine (i_engine *engine_)
void zmq::object_t::process_term_req (object_t *object_)
{
zmq_assert (false);
}
void zmq::object_t::process_terminate ()
void zmq::object_t::process_term ()
{
zmq_assert (false);
}
void zmq::object_t::process_terminate_ack ()
void zmq::object_t::process_term_ack ()
{
zmq_assert (false);
}
......@@ -256,6 +192,6 @@ void zmq::object_t::send_command (command_t &cmd_)
if (destination_thread_slot == thread_slot)
cmd_.destination->process_command (cmd_);
else
context->write (thread_slot, destination_thread_slot, cmd_);
dispatcher->write (thread_slot, destination_thread_slot, cmd_);
}
......@@ -32,7 +32,7 @@ namespace zmq
{
public:
object_t (class context_t *context_, int thread_slot_);
object_t (class dispatcher_t *dispatcher_, int thread_slot_);
object_t (object_t *parent_);
~object_t ();
......@@ -42,44 +42,32 @@ namespace zmq
protected:
// Derived object can use following functions to interact with
// global repositories. See context.hpp for function details.
// global repositories. See dispatcher.hpp for function details.
int thread_slot_count ();
class io_thread_t *choose_io_thread (uint64_t taskset_);
// Derived object can use these functions to send commands
// to other objects.
void send_stop ();
void send_bind (object_t *destination_, class pipe_reader_t *reader_,
class session_t *peer_);
void send_head (object_t *destination_, uint64_t bytes_);
void send_tail (object_t *destination_, uint64_t bytes_);
void send_reg (object_t *destination_,
class simple_semaphore_t *smph_);
void send_reg_and_bind (object_t *destination_, class session_t *peer_,
bool flow_in_, bool flow_out_);
void send_unreg (object_t *destination_,
class simple_semaphore_t *smph_);
void send_engine (object_t *destination_, struct i_engine *engine_);
void send_terminate (object_t *destination_);
void send_terminate_ack (object_t *destination_);
void send_plug (object_t *destination_);
void send_own (object_t *destination_, object_t *object_);
void send_bind (object_t *destination_);
void send_term_req (object_t *destination_, object_t *object_);
void send_term (object_t *destination_);
void send_term_ack (object_t *destination_);
// These handlers can be overloaded by the derived objects. They are
// called when command arrives from another thread.
virtual void process_stop ();
virtual void process_bind (class pipe_reader_t *reader_,
class session_t *peer_);
virtual void process_head (uint64_t bytes_);
virtual void process_tail (uint64_t bytes_);
virtual void process_reg (class simple_semaphore_t *smph_);
virtual void process_reg_and_bind (class session_t *peer_,
bool flow_in_, bool flow_out_);
virtual void process_unreg (class simple_semaphore_t *smph_);
virtual void process_engine (struct i_engine *engine_);
virtual void process_terminate ();
virtual void process_terminate_ack ();
virtual void process_plug ();
virtual void process_own (object_t *object_);
virtual void process_bind ();
virtual void process_term_req (object_t *object_);
virtual void process_term ();
virtual void process_term_ack ();
// Pointer to the root of the infrastructure.
class context_t *context;
class dispatcher_t *dispatcher;
// Slot ID of the thread the object belongs to.
int thread_slot;
......
/*
Copyright (c) 2007-2009 FastMQ Inc.
This file is part of 0MQ.
0MQ is free software; you can redistribute it and/or modify it under
the terms of the Lesser GNU 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
Lesser GNU General Public License for more details.
You should have received a copy of the Lesser GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#include <algorithm>
#include "../include/zmq.h"
#include "socket_base.hpp"
#include "app_thread.hpp"
#include "err.hpp"
#include "zmq_listener.hpp"
#include "io_thread.hpp"
zmq::socket_base_t::socket_base_t (app_thread_t *parent_) :
object_t (parent_),
pending_term_acks (0),
app_thread (parent_)
{
}
zmq::socket_base_t::~socket_base_t ()
{
while (true) {
// On third pass of the loop there should be no more I/O objects
// because all connecters and listerners were destroyed during
// the first pass and all engines delivered by delayed 'own' commands
// are destroyed during the second pass.
if (io_objects.empty () && !pending_term_acks)
break;
// Send termination request to all associated I/O objects.
for (io_objects_t::size_type i = 0; i != io_objects.size (); i++)
send_term (io_objects [i]);
// Move the objects to the list of pending term acks.
pending_term_acks += io_objects.size ();
io_objects.clear ();
// Process commands till we get all the termination acknowledgements.
while (pending_term_acks)
app_thread->process_commands (true);
}
}
int zmq::socket_base_t::bind (const char *addr_, struct zmq_opts *opts_)
{
uint64_t taskset = opts_ ? opts_->taskset : 0;
object_t *listener = new zmq_listener_t (choose_io_thread (taskset), this);
send_plug (listener);
send_own (this, listener);
return 0;
}
int zmq::socket_base_t::connect (const char *addr_, struct zmq_opts *opts_)
{
zmq_assert (false);
}
int zmq::socket_base_t::subscribe (const char *criteria_)
{
zmq_assert (false);
}
int zmq::socket_base_t::send (struct zmq_msg *msg_, int flags_)
{
zmq_assert (false);
}
int zmq::socket_base_t::flush ()
{
zmq_assert (false);
}
int zmq::socket_base_t::recv (struct zmq_msg *msg_, int flags_)
{
zmq_assert (false);
}
int zmq::socket_base_t::close ()
{
app_thread->remove_socket (this);
delete this;
return 0;
}
void zmq::socket_base_t::process_own (object_t *object_)
{
io_objects.push_back (object_);
}
void zmq::socket_base_t::process_term_req (object_t *object_)
{
// If I/O object is well and alive ask it to terminate.
// TODO: Following find may produce an unacceptable jitter in
// C10K-style applications. If so, use set instead of vector.
io_objects_t::iterator it = std::find (io_objects.begin (),
io_objects.end (), object_);
if (it != io_objects.end ()) {
pending_term_acks++;
io_objects.erase (it);
send_term (object_);
}
// If not found, we assume that termination request was already sent to
// the object so we can sagely ignore the request.
}
void zmq::socket_base_t::process_term_ack ()
{
zmq_assert (pending_term_acks);
pending_term_acks--;
}
/*
Copyright (c) 2007-2009 FastMQ Inc.
This file is part of 0MQ.
0MQ is free software; you can redistribute it and/or modify it under
the terms of the Lesser GNU 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
Lesser GNU General Public License for more details.
You should have received a copy of the Lesser GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#ifndef __ZMQ_SOCKET_BASE_HPP_INCLUDED__
#define __ZMQ_SOCKET_BASE_HPP_INCLUDED__
#include <vector>
#include "i_api.hpp"
#include "object.hpp"
namespace zmq
{
class socket_base_t : public object_t, public i_api
{
public:
socket_base_t (class app_thread_t *parent_);
~socket_base_t ();
// i_api interface implementation.
int bind (const char *addr_, struct zmq_opts *opts_);
int connect (const char *addr_, struct zmq_opts *opts_);
int subscribe (const char *criteria_);
int send (struct zmq_msg *msg_, int flags_);
int flush ();
int recv (struct zmq_msg *msg_, int flags_);
int close ();
private:
// Handlers for incoming commands.
void process_own (object_t *object_);
void process_term_req (object_t *object_);
void process_term_ack ();
// List of all I/O objects owned by this socket. The socket is
// responsible for deallocating them before it quits.
typedef std::vector <object_t*> io_objects_t;
io_objects_t io_objects;
// Number of I/O objects that were already asked to terminate
// but haven't acknowledged it yet.
int pending_term_acks;
// Application thread the socket lives in.
class app_thread_t *app_thread;
socket_base_t (const socket_base_t&);
void operator = (const socket_base_t&);
};
}
#endif
......@@ -25,7 +25,7 @@
#include "i_api.hpp"
#include "err.hpp"
#include "context.hpp"
#include "dispatcher.hpp"
#include "msg.hpp"
int zmq_msg_init (zmq_msg *msg_)
......@@ -162,27 +162,28 @@ int zmq_msg_type (zmq_msg *msg_)
void *zmq_init (int app_threads_, int io_threads_)
{
// There should be at least a single thread managed by the context.
// There should be at least a single thread managed by the dispatcher.
if (app_threads_ < 0 || io_threads_ < 0 ||
app_threads_ + io_threads_ == 0) {
errno = EINVAL;
return NULL;
}
zmq::context_t *context = new zmq::context_t (app_threads_, io_threads_);
zmq_assert (context);
return (void*) context;
zmq::dispatcher_t *dispatcher = new zmq::dispatcher_t (app_threads_,
io_threads_);
zmq_assert (dispatcher);
return (void*) dispatcher;
}
int zmq_term (void *context_)
int zmq_term (void *dispatcher_)
{
delete (zmq::context_t*) context_;
delete (zmq::dispatcher_t*) dispatcher_;
return 0;
}
void *zmq_socket (void *context_, int type_)
void *zmq_socket (void *dispatcher_, int type_)
{
return (void*) (((zmq::context_t*) context_)->create_socket (type_));
return (void*) (((zmq::dispatcher_t*) dispatcher_)->create_socket (type_));
}
int zmq_close (void *s_)
......
......@@ -17,20 +17,19 @@
along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#ifndef __ZMQ_I_SOCKET_HPP_INCLUDED__
#define __ZMQ_I_SOCKET_HPP_INCLUDED__
#include "zmq_listener.hpp"
#include "err.hpp"
namespace zmq
zmq::zmq_listener_t::zmq_listener_t (object_t *parent_, object_t *owner_) :
io_object_t (parent_, owner_)
{
}
struct i_socket
{
virtual ~i_socket () {};
// Start shutting down the socket.
virtual void stop () = 0;
};
zmq::zmq_listener_t::~zmq_listener_t ()
{
}
#endif
void zmq::zmq_listener_t::process_plug ()
{
// TODO: Register with the I/O thread here.
}
/*
Copyright (c) 2007-2009 FastMQ Inc.
This file is part of 0MQ.
0MQ is free software; you can redistribute it and/or modify it under
the terms of the Lesser GNU 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
Lesser GNU General Public License for more details.
You should have received a copy of the Lesser GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#ifndef __ZMQ_ZMQ_LISTENER_HPP_INCLUDED__
#define __ZMQ_ZMQ_LISTENER_HPP_INCLUDED__
#include "io_object.hpp"
namespace zmq
{
class zmq_listener_t : public io_object_t
{
public:
zmq_listener_t (object_t *parent_, object_t *owner_);
~zmq_listener_t ();
private:
// Handlers for incoming commands.
void process_plug ();
zmq_listener_t (const zmq_listener_t&);
void operator = (const zmq_listener_t&);
};
}
#endif
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