TCP/TCPListener.m
author Jens Alfke <jens@mooseyard.com>
Tue Jul 15 09:37:15 2008 -0700 (2008-07-15)
changeset 24 ab88e3ee5726
parent 8 6f539dd9921c
child 26 cb9cdf247239
permissions -rwxr-xr-x
Fixed a memory leak by adding a -dealloc method to HostAddress. (Thanks to Mark Onyschuk)
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//
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//  TCPListener.m
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//  MYNetwork
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//
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//  Created by Jens Alfke on 5/10/08.
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//  Copyright 2008 Jens Alfke. All rights reserved.
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//  Portions based on TCPServer class from Apple's "CocoaEcho" sample code.
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#import "TCPListener.h"
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#import "TCPConnection.h"
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#import "Logging.h"
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#import "Test.h"
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#import "ExceptionUtils.h"
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#import "IPAddress.h"
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#include <sys/socket.h>
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#include <netinet/in.h>
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#include <unistd.h>
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static void TCPListenerAcceptCallBack(CFSocketRef socket, CFSocketCallBackType type, 
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                                      CFDataRef address, const void *data, void *info);
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@interface TCPListener()
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- (void) _openBonjour;
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- (void) _closeBonjour;
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@property BOOL bonjourPublished;
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@property NSInteger bonjourError;
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- (void) _updateTXTRecord;
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@end
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@implementation TCPListener
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- (id) initWithPort: (UInt16)port
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{
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    self = [super init];
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    if (self != nil) {
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        _port = port;
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    }
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    return self;
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}
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- (void) dealloc 
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{
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    [self close];
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    LogTo(TCP,@"DEALLOC %@",self);
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    [super dealloc];
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}
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@synthesize delegate=_delegate, port=_port, useIPv6=_useIPv6,
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            bonjourServiceType=_bonjourServiceType,
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            bonjourPublished=_bonjourPublished, bonjourError=_bonjourError,
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            bonjourService=_netService,
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            pickAvailablePort=_pickAvailablePort;
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- (NSString*) description
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{
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    return $sprintf(@"%@[port %hu]",self.class,_port);
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}
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// Stores the last error from CFSocketCreate or CFSocketSetAddress into *outError.
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static void* getLastCFSocketError( NSError **outError ) {
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    if( outError )
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        *outError = [NSError errorWithDomain: NSPOSIXErrorDomain code: errno userInfo: nil];
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    return NULL;
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}
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// Closes a socket (if it's not already NULL), and returns NULL to assign to it.
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static CFSocketRef closeSocket( CFSocketRef socket ) {
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    if( socket ) {
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        CFSocketInvalidate(socket);
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        CFRelease(socket);
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    }
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    return NULL;
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}
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// opens a socket of a given protocol, either ipv4 or ipv6.
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- (CFSocketRef) _openProtocol: (SInt32) protocolFamily 
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                      address: (struct sockaddr*)address
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                        error: (NSError**)error
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{
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    CFSocketContext socketCtxt = {0, self, NULL, NULL, NULL};
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    CFSocketRef socket = CFSocketCreate(kCFAllocatorDefault, PF_INET, SOCK_STREAM, IPPROTO_TCP,
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                                        kCFSocketAcceptCallBack, &TCPListenerAcceptCallBack, &socketCtxt);
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    if( ! socket ) 
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        return getLastCFSocketError(error);   // CFSocketCreate leaves error code in errno
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    int yes = 1;
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    setsockopt(CFSocketGetNative(socket), SOL_SOCKET, SO_REUSEADDR, (void *)&yes, sizeof(yes));
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    NSData *addressData = [NSData dataWithBytes:address length:address->sa_len];
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    if (kCFSocketSuccess != CFSocketSetAddress(socket, (CFDataRef)addressData)) {
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        getLastCFSocketError(error);
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        return closeSocket(socket);
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    }
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    // set up the run loop source for the socket
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    CFRunLoopRef cfrl = CFRunLoopGetCurrent();
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    CFRunLoopSourceRef source = CFSocketCreateRunLoopSource(kCFAllocatorDefault, socket, 0);
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    CFRunLoopAddSource(cfrl, source, kCFRunLoopCommonModes);
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    CFRelease(source);
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    return socket;
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}
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- (BOOL) _failedToOpen: (NSError*)error
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{
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    LogTo(TCP,@"%@ failed to open: %@",self,error);
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    [self tellDelegate: @selector(listener:failedToOpen:) withObject: error];
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    return NO;
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}
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- (BOOL) open: (NSError**)outError 
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{
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    // set up the IPv4 endpoint; if port is 0, this will cause the kernel to choose a port for us
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    do{
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        struct sockaddr_in addr4;
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        memset(&addr4, 0, sizeof(addr4));
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        addr4.sin_len = sizeof(addr4);
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        addr4.sin_family = AF_INET;
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        addr4.sin_port = htons(_port);
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        addr4.sin_addr.s_addr = htonl(INADDR_ANY);
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        NSError *error;
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        _ipv4socket = [self _openProtocol: PF_INET address: (struct sockaddr*)&addr4 error: &error];
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        if( ! _ipv4socket ) {
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            if( error.code==EADDRINUSE && _pickAvailablePort && _port<0xFFFF ) {
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                LogTo(BLIPVerbose,@"%@: port busy, trying %hu...",self,_port+1);
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                self.port += 1;        // try the next port
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            } else {
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                if( outError ) *outError = error;
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                return [self _failedToOpen: error];
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            }
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        }
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    }while( ! _ipv4socket );
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    if (0 == _port) {
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        // now that the binding was successful, we get the port number 
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        NSData *addr = [(NSData *)CFSocketCopyAddress(_ipv4socket) autorelease];
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        const struct sockaddr_in *addr4 = addr.bytes;
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        self.port = ntohs(addr4->sin_port);
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    }
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    if( _useIPv6 ) {
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        // set up the IPv6 endpoint
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        struct sockaddr_in6 addr6;
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        memset(&addr6, 0, sizeof(addr6));
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        addr6.sin6_len = sizeof(addr6);
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        addr6.sin6_family = AF_INET6;
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        addr6.sin6_port = htons(_port);
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        memcpy(&(addr6.sin6_addr), &in6addr_any, sizeof(addr6.sin6_addr));
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        _ipv6socket = [self _openProtocol: PF_INET6 address: (struct sockaddr*)&addr6 error: outError];
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        if( ! _ipv6socket ) {
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            _ipv4socket = closeSocket(_ipv4socket);
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            return [self _failedToOpen: *outError];
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        }
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    }
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    [self _openBonjour];
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    LogTo(TCP,@"%@ is open",self);
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    [self tellDelegate: @selector(listenerDidOpen:) withObject: nil];
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    return YES;
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}
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- (BOOL) open
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{
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    return [self open: nil];
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}
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- (void) close 
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{
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    if( _ipv4socket ) {
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        [self _closeBonjour];
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        _ipv4socket = closeSocket(_ipv4socket);
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        _ipv6socket = closeSocket(_ipv6socket);
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        LogTo(BLIP,@"%@ is closed",self);
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        [self tellDelegate: @selector(listenerDidClose:) withObject: nil];
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    }
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}
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- (BOOL) isOpen
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{
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    return _ipv4socket != NULL;
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}
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#pragma mark -
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#pragma mark ACCEPTING CONNECTIONS:
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@synthesize connectionClass = _connectionClass;
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- (BOOL) acceptConnection: (CFSocketNativeHandle)socket
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{
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    IPAddress *addr = [IPAddress addressOfSocket: socket];
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    if( ! addr )
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        return NO;
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    if( [_delegate respondsToSelector: @selector(listener:shouldAcceptConnectionFrom:)]
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       && ! [_delegate listener: self shouldAcceptConnectionFrom: addr] )
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        return NO;
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    Assert(_connectionClass);
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    TCPConnection *conn = [[self.connectionClass alloc] initIncomingFromSocket: socket
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                                                                      listener: self];
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    if( ! conn )
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        return NO;
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    if( _sslProperties ) {
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        conn.SSLProperties = _sslProperties;
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        [conn setSSLProperty: $true forKey: (id)kCFStreamSSLIsServer];
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    }
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    [conn open];
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    [self tellDelegate: @selector(listener:didAcceptConnection:) withObject: conn];
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    return YES;
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}
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static void TCPListenerAcceptCallBack(CFSocketRef socket, CFSocketCallBackType type, CFDataRef address, const void *data, void *info) 
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{
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    TCPListener *server = (TCPListener *)info;
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    if (kCFSocketAcceptCallBack == type) { 
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        CFSocketNativeHandle nativeSocketHandle = *(CFSocketNativeHandle *)data;
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        BOOL accepted = NO;
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        @try{
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            accepted = [server acceptConnection: nativeSocketHandle];
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        }catchAndReport(@"TCPListenerAcceptCallBack");
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        if( ! accepted )
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            close(nativeSocketHandle);
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    }
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}
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#pragma mark -
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#pragma mark BONJOUR:
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- (void) _openBonjour
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{
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    if( self.isOpen && _bonjourServiceType && !_netService) {
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        // instantiate the NSNetService object that will advertise on our behalf.
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        _netService = [[NSNetService alloc] initWithDomain: @"local." 
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                                                      type: _bonjourServiceType
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                                                      name: _bonjourServiceName ?:@""
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                                                      port: _port];
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        if( _netService ) {
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            [_netService setDelegate:self];
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            if( _bonjourTXTRecord )
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                [self _updateTXTRecord];
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            [_netService publish];
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        } else {
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            self.bonjourError = -1;
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            Warn(@"%@: Failed to create NSNetService",self);
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        }
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    }
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}
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- (void) _closeBonjour
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{
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    if( _netService ) {
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        [_netService stop];
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        [_netService release];
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        _netService = nil;
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        self.bonjourPublished = NO;
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    }
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    if( self.bonjourError )
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        self.bonjourError = 0;
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}
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- (NSString*) bonjourServiceName {return _bonjourServiceName;}
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- (void) setBonjourServiceName: (NSString*)name
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{
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    if( ! $equal(name,_bonjourServiceName) ) {
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        [self _closeBonjour];
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        setObj(&_bonjourServiceName,name);
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        [self _openBonjour];
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    }
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}
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- (NSDictionary*) bonjourTXTRecord
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{
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    return _bonjourTXTRecord;
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}
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- (void) setBonjourTXTRecord: (NSDictionary*)txt
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{
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    if( ifSetObj(&_bonjourTXTRecord,txt) )
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        [self _updateTXTRecord];
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}
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- (void) _updateTXTRecord
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{
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    if( _netService ) {
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        NSData *data;
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        if( _bonjourTXTRecord ) {
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            data = [NSNetService dataFromTXTRecordDictionary: _bonjourTXTRecord];
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            if( data )
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                LogTo(BLIP,@"%@: Set %u-byte TXT record", self,data.length);
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            else
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                Warn(@"TCPListener: Couldn't convert txt dict to data: %@",_bonjourTXTRecord);
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        } else
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            data = nil;
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        [_netService setTXTRecordData: data];
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    }
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}
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- (void)netServiceWillPublish:(NSNetService *)sender
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{
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    LogTo(BLIP,@"%@: Advertising %@",self,sender);
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    self.bonjourPublished = YES;
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}
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- (void)netService:(NSNetService *)sender didNotPublish:(NSDictionary *)errorDict
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{
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    self.bonjourError = [[errorDict objectForKey:NSNetServicesErrorCode] intValue];
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    LogTo(BLIP,@"%@: Failed to advertise %@: error %i",self,sender,self.bonjourError);
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    [_netService release];
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    _netService = nil;
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}
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- (void)netServiceDidStop:(NSNetService *)sender
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{
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    LogTo(BLIP,@"%@: Stopped advertising %@",self,sender);
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    self.bonjourPublished = NO;
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    [_netService release];
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    _netService = nil;
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}
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@end
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/*
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 Copyright (c) 2008, Jens Alfke <jens@mooseyard.com>. All rights reserved.
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 Redistribution and use in source and binary forms, with or without modification, are permitted
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 provided that the following conditions are met:
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 * Redistributions of source code must retain the above copyright notice, this list of conditions
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 and the following disclaimer.
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 * Redistributions in binary form must reproduce the above copyright notice, this list of conditions
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 and the following disclaimer in the documentation and/or other materials provided with the
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 distribution.
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 THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR
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 IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND 
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 FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRI-
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 BUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
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 (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR 
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  PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 
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 CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF 
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 THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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 */