Commit 58063a75 authored by Simon Giesecke's avatar Simon Giesecke

Problem: ipc_connector_t data members not conforming to naming conventions

Solution: add underscore prefix to data members
parent 4d362887
...@@ -58,30 +58,30 @@ zmq::ipc_connecter_t::ipc_connecter_t (class io_thread_t *io_thread_, ...@@ -58,30 +58,30 @@ zmq::ipc_connecter_t::ipc_connecter_t (class io_thread_t *io_thread_,
bool delayed_start_) : bool delayed_start_) :
own_t (io_thread_, options_), own_t (io_thread_, options_),
io_object_t (io_thread_), io_object_t (io_thread_),
addr (addr_), _addr (addr_),
s (retired_fd), _s (retired_fd),
handle_valid (false), _handle_valid (false),
delayed_start (delayed_start_), _delayed_start (delayed_start_),
timer_started (false), _timer_started (false),
session (session_), _session (session_),
current_reconnect_ivl (options.reconnect_ivl) _current_reconnect_ivl (options.reconnect_ivl)
{ {
zmq_assert (addr); zmq_assert (_addr);
zmq_assert (addr->protocol == protocol_name::ipc); zmq_assert (_addr->protocol == protocol_name::ipc);
addr->to_string (endpoint); _addr->to_string (_endpoint);
socket = session->get_socket (); _socket = _session->get_socket ();
} }
zmq::ipc_connecter_t::~ipc_connecter_t () zmq::ipc_connecter_t::~ipc_connecter_t ()
{ {
zmq_assert (!timer_started); zmq_assert (!_timer_started);
zmq_assert (!handle_valid); zmq_assert (!_handle_valid);
zmq_assert (s == retired_fd); zmq_assert (_s == retired_fd);
} }
void zmq::ipc_connecter_t::process_plug () void zmq::ipc_connecter_t::process_plug ()
{ {
if (delayed_start) if (_delayed_start)
add_reconnect_timer (); add_reconnect_timer ();
else else
start_connecting (); start_connecting ();
...@@ -89,17 +89,17 @@ void zmq::ipc_connecter_t::process_plug () ...@@ -89,17 +89,17 @@ void zmq::ipc_connecter_t::process_plug ()
void zmq::ipc_connecter_t::process_term (int linger_) void zmq::ipc_connecter_t::process_term (int linger_)
{ {
if (timer_started) { if (_timer_started) {
cancel_timer (reconnect_timer_id); cancel_timer (reconnect_timer_id);
timer_started = false; _timer_started = false;
} }
if (handle_valid) { if (_handle_valid) {
rm_fd (handle); rm_fd (_handle);
handle_valid = false; _handle_valid = false;
} }
if (s != retired_fd) if (_s != retired_fd)
close (); close ();
own_t::process_term (linger_); own_t::process_term (linger_);
...@@ -116,8 +116,8 @@ void zmq::ipc_connecter_t::in_event () ...@@ -116,8 +116,8 @@ void zmq::ipc_connecter_t::in_event ()
void zmq::ipc_connecter_t::out_event () void zmq::ipc_connecter_t::out_event ()
{ {
fd_t fd = connect (); fd_t fd = connect ();
rm_fd (handle); rm_fd (_handle);
handle_valid = false; _handle_valid = false;
// Handle the error condition by attempt to reconnect. // Handle the error condition by attempt to reconnect.
if (fd == retired_fd) { if (fd == retired_fd) {
...@@ -127,22 +127,22 @@ void zmq::ipc_connecter_t::out_event () ...@@ -127,22 +127,22 @@ void zmq::ipc_connecter_t::out_event ()
} }
// Create the engine object for this connection. // Create the engine object for this connection.
stream_engine_t *engine = stream_engine_t *engine =
new (std::nothrow) stream_engine_t (fd, options, endpoint); new (std::nothrow) stream_engine_t (fd, options, _endpoint);
alloc_assert (engine); alloc_assert (engine);
// Attach the engine to the corresponding session object. // Attach the engine to the corresponding session object.
send_attach (session, engine); send_attach (_session, engine);
// Shut the connecter down. // Shut the connecter down.
terminate (); terminate ();
socket->event_connected (endpoint, fd); _socket->event_connected (_endpoint, fd);
} }
void zmq::ipc_connecter_t::timer_event (int id_) void zmq::ipc_connecter_t::timer_event (int id_)
{ {
zmq_assert (id_ == reconnect_timer_id); zmq_assert (id_ == reconnect_timer_id);
timer_started = false; _timer_started = false;
start_connecting (); start_connecting ();
} }
...@@ -153,22 +153,22 @@ void zmq::ipc_connecter_t::start_connecting () ...@@ -153,22 +153,22 @@ void zmq::ipc_connecter_t::start_connecting ()
// Connect may succeed in synchronous manner. // Connect may succeed in synchronous manner.
if (rc == 0) { if (rc == 0) {
handle = add_fd (s); _handle = add_fd (_s);
handle_valid = true; _handle_valid = true;
out_event (); out_event ();
} }
// Connection establishment may be delayed. Poll for its completion. // Connection establishment may be delayed. Poll for its completion.
else if (rc == -1 && errno == EINPROGRESS) { else if (rc == -1 && errno == EINPROGRESS) {
handle = add_fd (s); _handle = add_fd (_s);
handle_valid = true; _handle_valid = true;
set_pollout (handle); set_pollout (_handle);
socket->event_connect_delayed (endpoint, zmq_errno ()); _socket->event_connect_delayed (_endpoint, zmq_errno ());
} }
// Handle any other error condition by eventual reconnect. // Handle any other error condition by eventual reconnect.
else { else {
if (s != retired_fd) if (_s != retired_fd)
close (); close ();
add_reconnect_timer (); add_reconnect_timer ();
} }
...@@ -179,8 +179,8 @@ void zmq::ipc_connecter_t::add_reconnect_timer () ...@@ -179,8 +179,8 @@ void zmq::ipc_connecter_t::add_reconnect_timer ()
if (options.reconnect_ivl != -1) { if (options.reconnect_ivl != -1) {
int rc_ivl = get_new_reconnect_ivl (); int rc_ivl = get_new_reconnect_ivl ();
add_timer (rc_ivl, reconnect_timer_id); add_timer (rc_ivl, reconnect_timer_id);
socket->event_connect_retried (endpoint, rc_ivl); _socket->event_connect_retried (_endpoint, rc_ivl);
timer_started = true; _timer_started = true;
} }
} }
...@@ -188,16 +188,16 @@ int zmq::ipc_connecter_t::get_new_reconnect_ivl () ...@@ -188,16 +188,16 @@ int zmq::ipc_connecter_t::get_new_reconnect_ivl ()
{ {
// The new interval is the current interval + random value. // The new interval is the current interval + random value.
int this_interval = int this_interval =
current_reconnect_ivl + (generate_random () % options.reconnect_ivl); _current_reconnect_ivl + (generate_random () % options.reconnect_ivl);
// Only change the current reconnect interval if the maximum reconnect // Only change the current reconnect interval if the maximum reconnect
// interval was set and if it's larger than the reconnect interval. // interval was set and if it's larger than the reconnect interval.
if (options.reconnect_ivl_max > 0 if (options.reconnect_ivl_max > 0
&& options.reconnect_ivl_max > options.reconnect_ivl) { && options.reconnect_ivl_max > options.reconnect_ivl) {
// Calculate the next interval // Calculate the next interval
current_reconnect_ivl = current_reconnect_ivl * 2; _current_reconnect_ivl = _current_reconnect_ivl * 2;
if (current_reconnect_ivl >= options.reconnect_ivl_max) { if (_current_reconnect_ivl >= options.reconnect_ivl_max) {
current_reconnect_ivl = options.reconnect_ivl_max; _current_reconnect_ivl = options.reconnect_ivl_max;
} }
} }
return this_interval; return this_interval;
...@@ -205,19 +205,19 @@ int zmq::ipc_connecter_t::get_new_reconnect_ivl () ...@@ -205,19 +205,19 @@ int zmq::ipc_connecter_t::get_new_reconnect_ivl ()
int zmq::ipc_connecter_t::open () int zmq::ipc_connecter_t::open ()
{ {
zmq_assert (s == retired_fd); zmq_assert (_s == retired_fd);
// Create the socket. // Create the socket.
s = open_socket (AF_UNIX, SOCK_STREAM, 0); _s = open_socket (AF_UNIX, SOCK_STREAM, 0);
if (s == -1) if (_s == -1)
return -1; return -1;
// Set the non-blocking flag. // Set the non-blocking flag.
unblock_socket (s); unblock_socket (_s);
// Connect to the remote peer. // Connect to the remote peer.
int rc = ::connect (s, addr->resolved.ipc_addr->addr (), int rc = ::connect (_s, _addr->resolved.ipc_addr->addr (),
addr->resolved.ipc_addr->addrlen ()); _addr->resolved.ipc_addr->addrlen ());
// Connect was successful immediately. // Connect was successful immediately.
if (rc == 0) if (rc == 0)
...@@ -236,11 +236,11 @@ int zmq::ipc_connecter_t::open () ...@@ -236,11 +236,11 @@ int zmq::ipc_connecter_t::open ()
int zmq::ipc_connecter_t::close () int zmq::ipc_connecter_t::close ()
{ {
zmq_assert (s != retired_fd); zmq_assert (_s != retired_fd);
int rc = ::close (s); int rc = ::close (_s);
errno_assert (rc == 0); errno_assert (rc == 0);
socket->event_closed (endpoint, s); _socket->event_closed (_endpoint, _s);
s = retired_fd; _s = retired_fd;
return 0; return 0;
} }
...@@ -254,7 +254,7 @@ zmq::fd_t zmq::ipc_connecter_t::connect () ...@@ -254,7 +254,7 @@ zmq::fd_t zmq::ipc_connecter_t::connect ()
#else #else
socklen_t len = sizeof (err); socklen_t len = sizeof (err);
#endif #endif
int rc = getsockopt (s, SOL_SOCKET, SO_ERROR, int rc = getsockopt (_s, SOL_SOCKET, SO_ERROR,
reinterpret_cast<char *> (&err), &len); reinterpret_cast<char *> (&err), &len);
if (rc == -1) { if (rc == -1) {
if (errno == ENOPROTOOPT) if (errno == ENOPROTOOPT)
...@@ -272,8 +272,8 @@ zmq::fd_t zmq::ipc_connecter_t::connect () ...@@ -272,8 +272,8 @@ zmq::fd_t zmq::ipc_connecter_t::connect ()
return retired_fd; return retired_fd;
} }
fd_t result = s; fd_t result = _s;
s = retired_fd; _s = retired_fd;
return result; return result;
} }
......
...@@ -96,35 +96,35 @@ class ipc_connecter_t : public own_t, public io_object_t ...@@ -96,35 +96,35 @@ class ipc_connecter_t : public own_t, public io_object_t
fd_t connect (); fd_t connect ();
// Address to connect to. Owned by session_base_t. // Address to connect to. Owned by session_base_t.
const address_t *addr; const address_t *_addr;
// Underlying socket. // Underlying socket.
fd_t s; fd_t _s;
// Handle corresponding to the listening socket. // Handle corresponding to the listening socket.
handle_t handle; handle_t _handle;
// If true file descriptor is registered with the poller and 'handle' // If true file descriptor is registered with the poller and 'handle'
// contains valid value. // contains valid value.
bool handle_valid; bool _handle_valid;
// If true, connecter is waiting a while before trying to connect. // If true, connecter is waiting a while before trying to connect.
const bool delayed_start; const bool _delayed_start;
// True iff a timer has been started. // True iff a timer has been started.
bool timer_started; bool _timer_started;
// Reference to the session we belong to. // Reference to the session we belong to.
zmq::session_base_t *session; zmq::session_base_t *_session;
// Current reconnect ivl, updated for backoff strategy // Current reconnect ivl, updated for backoff strategy
int current_reconnect_ivl; int _current_reconnect_ivl;
// String representation of endpoint to connect to // String representation of endpoint to connect to
std::string endpoint; std::string _endpoint;
// Socket // Socket
zmq::socket_base_t *socket; zmq::socket_base_t *_socket;
ipc_connecter_t (const ipc_connecter_t &); ipc_connecter_t (const ipc_connecter_t &);
const ipc_connecter_t &operator= (const ipc_connecter_t &); const ipc_connecter_t &operator= (const ipc_connecter_t &);
......
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