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authorTycho <work.tycho+git@gmail.com>2014-01-20 18:21:47 +0100
committerTycho <work.tycho+git@gmail.com>2014-01-20 18:21:47 +0100
commit16375f6aad355333d1d3aff6140cdb4439a9b62f (patch)
treeeb4192092b928e90aebaf914288d12c9cafaf5a5 /src/OSSupport/SocketThreads.h
parentAdded Inifile and OSSupport Linking (diff)
parentAPIDump: Added notes about objects across cWorld's task execution. (diff)
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Diffstat (limited to '')
-rw-r--r--src/OSSupport/SocketThreads.h82
1 files changed, 45 insertions, 37 deletions
diff --git a/src/OSSupport/SocketThreads.h b/src/OSSupport/SocketThreads.h
index 858729c49..9e1947ab6 100644
--- a/src/OSSupport/SocketThreads.h
+++ b/src/OSSupport/SocketThreads.h
@@ -7,19 +7,20 @@
/*
Additional details:
-When a client is terminating a connection:
-- they call the StopReading() method to disable callbacks for the incoming data
-- they call the Write() method to queue any outstanding outgoing data
-- they call the QueueClose() method to queue the socket to close after outgoing data has been sent.
-When a socket slot is marked as having no callback, it is kept alive until its outgoing data queue is empty and its m_ShouldClose flag is set.
-This means that the socket can be written to several times before finally closing it via QueueClose()
+When a client wants to terminate the connection, they call the RemoveClient() function. This calls the
+callback one last time to read all the available outgoing data, putting it in the slot's m_OutgoingData
+buffer. Then it marks the slot as having no callback. The socket is kept alive until its outgoing data
+queue is empty, then shutdown is called on it and finally the socket is closed after a timeout.
+If at any time within this the remote end closes the socket, then the socket is closed directly.
+As soon as the socket is closed, the slot is finally removed from the SocketThread.
+The graph in $/docs/SocketThreads States.gv shows the state-machine transitions of the slot.
*/
-/// How many clients should one thread handle? (must be less than FD_SETSIZE for your platform)
+/** How many clients should one thread handle? (must be less than FD_SETSIZE for your platform) */
#define MAX_SLOTS 63
@@ -27,8 +28,6 @@ This means that the socket can be written to several times before finally closin
#pragma once
-#ifndef CSOCKETTHREADS_H_INCLUDED
-#define CSOCKETTHREADS_H_INCLUDED
#include "Socket.h"
#include "IsThread.h"
@@ -64,13 +63,13 @@ public:
// Force a virtual destructor in all subclasses:
virtual ~cCallback() {}
- /// Called when data is received from the remote party
+ /** Called when data is received from the remote party */
virtual void DataReceived(const char * a_Data, int a_Size) = 0;
- /// Called when data can be sent to remote party; the function is supposed to append outgoing data to a_Data
+ /** Called when data can be sent to remote party; the function is supposed to *append* outgoing data to a_Data */
virtual void GetOutgoingData(AString & a_Data) = 0;
- /// Called when the socket has been closed for any reason
+ /** Called when the socket has been closed for any reason */
virtual void SocketClosed(void) = 0;
} ;
@@ -78,24 +77,21 @@ public:
cSocketThreads(void);
~cSocketThreads();
- /// Add a (socket, client) pair for processing, data from a_Socket is to be sent to a_Client; returns true if successful
+ /** Add a (socket, client) pair for processing, data from a_Socket is to be sent to a_Client; returns true if successful */
bool AddClient(const cSocket & a_Socket, cCallback * a_Client);
- /// Remove the associated socket and the client from processing. The socket is left to send its data and is removed only after all its m_OutgoingData is sent
+ /** Remove the associated socket and the client from processing.
+ The socket is left to send its last outgoing data and is removed only after all its m_Outgoing is sent
+ and after the socket is properly shutdown (unless the remote disconnects before that)
+ */
void RemoveClient(const cCallback * a_Client);
- /// Notify the thread responsible for a_Client that the client has something to write
+ /** Notify the thread responsible for a_Client that the client has something to write */
void NotifyWrite(const cCallback * a_Client);
- /// Puts a_Data into outgoing data queue for a_Client
+ /** Puts a_Data into outgoing data queue for a_Client */
void Write(const cCallback * a_Client, const AString & a_Data);
- /// Stops reading from the client - when this call returns, no more calls to the callbacks are made
- void StopReading(const cCallback * a_Client);
-
- /// Queues the client for closing, as soon as its outgoing data is sent
- void QueueClose(const cCallback * a_Client);
-
private:
class cSocketThread :
@@ -114,13 +110,10 @@ private:
void AddClient (const cSocket & a_Socket, cCallback * a_Client); // Takes ownership of the socket
bool RemoveClient(const cCallback * a_Client); // Returns true if removed, false if not found
- bool RemoveSocket(const cSocket * a_Socket); // Returns true if removed, false if not found
bool HasClient (const cCallback * a_Client) const;
bool HasSocket (const cSocket * a_Socket) const;
bool NotifyWrite (const cCallback * a_Client); // Returns true if client handled by this thread
bool Write (const cCallback * a_Client, const AString & a_Data); // Returns true if client handled by this thread
- bool StopReading (const cCallback * a_Client); // Returns true if client handled by this thread
- bool QueueClose (const cCallback * a_Client); // Returns true if client handled by this thread
bool Start(void); // Hide the cIsThread's Start method, we need to provide our own startup to create the control socket
@@ -134,24 +127,45 @@ private:
cSocket m_ControlSocket1;
cSocket m_ControlSocket2;
- // Socket-client-packetqueues triplets.
+ // Socket-client-dataqueues-state quadruplets.
// Manipulation with these assumes that the parent's m_CS is locked
struct sSlot
{
- cSocket m_Socket; // The socket is primarily owned by this
+ /** The socket is primarily owned by this object */
+ cSocket m_Socket;
+
+ /** The callback to call for events. May be NULL */
cCallback * m_Client;
- AString m_Outgoing; // If sending writes only partial data, the rest is stored here for another send
- bool m_ShouldClose; // If true, the socket is to be closed after sending all outgoing data
- bool m_ShouldCallClient; // If true, the client callbacks are called. Set to false in StopReading()
+
+ /** If sending writes only partial data, the rest is stored here for another send.
+ Also used when the slot is being removed to store the last batch of outgoing data. */
+ AString m_Outgoing;
+
+ enum eState
+ {
+ ssNormal, ///< Normal read / write operations
+ ssWritingRestOut, ///< The client callback was removed, continue to send outgoing data
+ ssShuttingDown, ///< The last outgoing data has been sent, the socket has called shutdown()
+ ssShuttingDown2, ///< The shutdown has been done at least 1 thread loop ago (timeout detection)
+ ssRemoteClosed, ///< The remote end has closed the connection (and we still have a client callback)
+ } m_State;
} ;
+
sSlot m_Slots[MAX_SLOTS];
int m_NumSlots; // Number of slots actually used
virtual void Execute(void) override;
- void PrepareSet (fd_set * a_Set, cSocket::xSocket & a_Highest); // Puts all sockets into the set, along with m_ControlSocket1
+ /** Puts all sockets into the set, along with m_ControlSocket1.
+ Only sockets that are able to send and receive data are put in the Set.
+ Is a_IsForWriting is true, the ssWritingRestOut sockets are added as well. */
+ void PrepareSet(fd_set * a_Set, cSocket::xSocket & a_Highest, bool a_IsForWriting);
+
void ReadFromSockets(fd_set * a_Read); // Reads from sockets indicated in a_Read
void WriteToSockets (fd_set * a_Write); // Writes to sockets indicated in a_Write
+
+ /** Removes those slots in ssShuttingDown2 state, sets those with ssShuttingDown state to ssShuttingDown2 */
+ void CleanUpShutSockets(void);
} ;
typedef std::list<cSocketThread *> cSocketThreadList;
@@ -164,9 +178,3 @@ private:
-
-#endif // CSOCKETTHREADS_H_INCLUDED
-
-
-
-