connection.c 26.6 KB
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/* $OpenLDAP$ */
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/*
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 * Copyright 1998-2000 The OpenLDAP Foundation, All Rights Reserved.
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 * COPYING RESTRICTIONS APPLY, see COPYRIGHT file
 */

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#include "portable.h"
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#include <stdio.h>
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#include <limits.h>
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#include <ac/socket.h>
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#include <ac/errno.h>
#include <ac/signal.h>
#include <ac/string.h>
#include <ac/time.h>

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#include "ldap_pvt.h"

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#include "slap.h"

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/* protected by connections_mutex */
static ldap_pvt_thread_mutex_t connections_mutex;
static Connection *connections = NULL;
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static unsigned long conn_nextid = 0;
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/* structure state (protected by connections_mutex) */
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#define SLAP_C_UNINITIALIZED	0x00	/* MUST BE ZERO (0) */
#define SLAP_C_UNUSED			0x01
#define SLAP_C_USED				0x02
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/* connection state (protected by c_mutex ) */
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#define SLAP_C_INVALID			0x00	/* MUST BE ZERO (0) */
#define SLAP_C_INACTIVE			0x01	/* zero threads */
#define SLAP_C_ACTIVE			0x02	/* one or more threads */
#define SLAP_C_BINDING			0x03	/* binding */
#define SLAP_C_CLOSING			0x04	/* closing */
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const char *
connection_state2str( int state )
{
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	switch( state ) {
	case SLAP_C_INVALID:	return "!";		
	case SLAP_C_INACTIVE:	return "|";		
	case SLAP_C_ACTIVE:		return "";			
	case SLAP_C_BINDING:	return "B";
	case SLAP_C_CLOSING:	return "C";			
	}

	return "?";
}

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static Connection* connection_get( ber_socket_t s );
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static int connection_input( Connection *c );
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static void connection_close( Connection *c );
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static int connection_op_activate( Connection *conn, Operation *op );
static int connection_resched( Connection *conn );
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static void connection_abandon( Connection *conn );
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static void connection_destroy( Connection *c );
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struct co_arg {
	Connection	*co_conn;
	Operation	*co_op;
};

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/*
 * Initialize connection management infrastructure.
 */
int connections_init(void)
{
	assert( connections == NULL );

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	if( connections != NULL) {
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		Debug( LDAP_DEBUG_ANY, "connections_init: already initialized.\n",
			0, 0, 0 );
		return -1;
	}

	/* should check return of every call */
	ldap_pvt_thread_mutex_init( &connections_mutex );

	connections = (Connection *) calloc( dtblsize, sizeof(Connection) );

	if( connections == NULL ) {
		Debug( LDAP_DEBUG_ANY,
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			"connections_init: allocation (%d*%ld) of connection array failed\n",
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			dtblsize, (long) sizeof(Connection), 0 );
		return -1;
	}

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    assert( connections[0].c_struct_state == SLAP_C_UNINITIALIZED );
    assert( connections[dtblsize-1].c_struct_state == SLAP_C_UNINITIALIZED );

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	/*
	 * per entry initialization of the Connection array initialization
	 * will be done by connection_init()
	 */ 

	return 0;
}

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/*
 * Destroy connection management infrastructure.
 */
int connections_destroy(void)
{
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	ber_socket_t i;
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	/* should check return of every call */

	if( connections == NULL) {
		Debug( LDAP_DEBUG_ANY, "connections_destroy: nothing to destroy.\n",
			0, 0, 0 );
		return -1;
	}

	for ( i = 0; i < dtblsize; i++ ) {
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		if( connections[i].c_struct_state != SLAP_C_UNINITIALIZED ) {
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			ber_sockbuf_free( connections[i].c_sb );
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			ldap_pvt_thread_mutex_destroy( &connections[i].c_mutex );
			ldap_pvt_thread_mutex_destroy( &connections[i].c_write_mutex );
			ldap_pvt_thread_cond_destroy( &connections[i].c_write_cv );
		}
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	}

	free( connections );
	connections = NULL;

	ldap_pvt_thread_mutex_destroy( &connections_mutex );
	return 0;
}

/*
 * shutdown all connections
 */
int connections_shutdown(void)
{
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	ber_socket_t i;
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	ldap_pvt_thread_mutex_lock( &connections_mutex );

	for ( i = 0; i < dtblsize; i++ ) {
		if( connections[i].c_struct_state != SLAP_C_USED ) {
			continue;
		}

		ldap_pvt_thread_mutex_lock( &connections[i].c_mutex );
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		/* connections_mutex and c_mutex are locked */
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		connection_closing( &connections[i] );
		connection_close( &connections[i] );
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		ldap_pvt_thread_mutex_unlock( &connections[i].c_mutex );
	}

	ldap_pvt_thread_mutex_unlock( &connections_mutex );
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	return 0;
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}

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/*
 * Timeout idle connections.
 */
int connections_timeout_idle(time_t now)
{
	int i = 0;
	int connindex;
	Connection* c;

	ldap_pvt_thread_mutex_lock( &connections_mutex );

 	for( c = connection_first( &connindex );
		c != NULL;
		c = connection_next( c, &connindex ) )
	{
		if( difftime( c->c_activitytime+global_idletimeout, now) < 0 ) {
			/* close it */
			connection_closing( c );
			connection_close( c );
			i++;
		}
	}
	connection_done( c );

	ldap_pvt_thread_mutex_unlock( &connections_mutex );

	return i;
}

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static Connection* connection_get( ber_socket_t s )
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{
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	/* connections_mutex should be locked by caller */

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	Connection *c;

	Debug( LDAP_DEBUG_ARGS,
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		"connection_get(%ld)\n",
		(long) s, 0, 0 );
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	assert( connections != NULL );

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	if(s == AC_SOCKET_INVALID) {
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		return NULL;
	}

#ifndef HAVE_WINSOCK
	c = &connections[s];
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	assert( c->c_struct_state != SLAP_C_UNINITIALIZED );
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#else
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	c = NULL;
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	{
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		ber_socket_t i, sd;
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		for(i=0; i<dtblsize; i++) {
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			ber_sockbuf_ctrl( connections[i].c_sb,
				LBER_SB_OPT_GET_FD, &sd );

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			if( connections[i].c_struct_state == SLAP_C_UNINITIALIZED ) {
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				assert( connections[i].c_conn_state == SLAP_C_INVALID );
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				assert( connections[i].c_sb == 0 );
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				break;
			}

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			if( connections[i].c_struct_state == SLAP_C_UNUSED ) {
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				assert( connections[i].c_conn_state == SLAP_C_INVALID );
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				assert( sd == AC_SOCKET_INVALID );
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				continue;
			}

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			/* state can actually change from used -> unused by resched,
			 * so don't assert details here.
			 */
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			if( sd == s ) {
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				c = &connections[i];
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				break;
			}
		}
	}
#endif
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	if( c != NULL ) {
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		ber_socket_t	sd;

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		ldap_pvt_thread_mutex_lock( &c->c_mutex );

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		ber_sockbuf_ctrl( c->c_sb, LBER_SB_OPT_GET_FD, &sd );
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		if( c->c_struct_state != SLAP_C_USED ) {
			/* connection must have been closed due to resched */
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			assert( c->c_conn_state == SLAP_C_INVALID );
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			assert( sd == AC_SOCKET_INVALID );
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			Debug( LDAP_DEBUG_TRACE,
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				"connection_get(%d): connection not used\n",
				s, 0, 0 );
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			ldap_pvt_thread_mutex_unlock( &c->c_mutex );
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			return NULL;
		}

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		Debug( LDAP_DEBUG_TRACE,
			"connection_get(%d): got connid=%ld\n",
			s, c->c_connid, 0 );
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		c->c_n_get++;

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		assert( c->c_struct_state == SLAP_C_USED );
		assert( c->c_conn_state != SLAP_C_INVALID );
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		assert( sd != AC_SOCKET_INVALID );
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    	c->c_activitytime = slap_get_time();
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	}
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	return c;
}

static void connection_return( Connection *c )
{
	ldap_pvt_thread_mutex_unlock( &c->c_mutex );
}

long connection_init(
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	ber_socket_t s,
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	const char* url,
	const char* dnsname,
	const char* peername,
	const char* sockname,
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	int use_tls,
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	slap_ssf_t ssf,
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	char *authid )
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{
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	unsigned long id;
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	Connection *c;
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	assert( connections != NULL );

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	assert( dnsname != NULL );
	assert( peername != NULL );
	assert( sockname != NULL );

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#ifndef HAVE_TLS
	assert( !use_tls );
#endif

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	if( s == AC_SOCKET_INVALID ) {
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        Debug( LDAP_DEBUG_ANY,
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			"connection_init(%ld): invalid.\n",
			(long) s, 0, 0 );
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		return -1;
	}

	assert( s >= 0 );
#ifndef HAVE_WINSOCK
	assert( s < dtblsize );
#endif

	ldap_pvt_thread_mutex_lock( &connections_mutex );

#ifndef HAVE_WINSOCK
	c = &connections[s];

#else
	{
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		unsigned int i;
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		c = NULL;

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        for( i=0; i < dtblsize; i++) {
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	    	ber_socket_t	sd;
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            if( connections[i].c_struct_state == SLAP_C_UNINITIALIZED ) {
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                assert( connections[i].c_sb == 0 );
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                c = &connections[i];
                break;
            }

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			sd = AC_SOCKET_INVALID;
			if (connections[i].c_sb != NULL)
	    		ber_sockbuf_ctrl( connections[i].c_sb, LBER_SB_OPT_GET_FD, &sd );
	    
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            if( connections[i].c_struct_state == SLAP_C_UNUSED ) {
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                assert( sd == AC_SOCKET_INVALID );
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                c = &connections[i];
                break;
            }

            assert( connections[i].c_struct_state == SLAP_C_USED );
            assert( connections[i].c_conn_state != SLAP_C_INVALID );
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            assert( sd != AC_SOCKET_INVALID );
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        }

        if( c == NULL ) {
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        	Debug( LDAP_DEBUG_ANY,
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				"connection_init(%d): connection table full (%d/%d)\n",
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				s, i, dtblsize);
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            ldap_pvt_thread_mutex_unlock( &connections_mutex );
            return -1;
        }
    }
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#endif

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    assert( c != NULL );
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    if( c->c_struct_state == SLAP_C_UNINITIALIZED ) {
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		c->c_authmech = NULL;
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        c->c_dn = NULL;
        c->c_cdn = NULL;
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		c->c_listener_url = NULL;
		c->c_peer_domain = NULL;
        c->c_peer_name = NULL;
        c->c_sock_name = NULL;

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        c->c_ops = NULL;
        c->c_pending_ops = NULL;
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		c->c_sasl_bind_mech = NULL;
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		c->c_sasl_context = NULL;
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		c->c_sasl_extra = NULL;
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        c->c_sb = ber_sockbuf_alloc( );
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		c->c_currentber = NULL;
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        /* should check status of thread calls */
        ldap_pvt_thread_mutex_init( &c->c_mutex );
        ldap_pvt_thread_mutex_init( &c->c_write_mutex );
        ldap_pvt_thread_cond_init( &c->c_write_cv );
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        c->c_struct_state = SLAP_C_UNUSED;
    }
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    ldap_pvt_thread_mutex_lock( &c->c_mutex );
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    assert( c->c_struct_state == SLAP_C_UNUSED );
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	assert( c->c_authmech == NULL );
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    assert(	c->c_dn == NULL );
    assert(	c->c_cdn == NULL );
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    assert( c->c_listener_url == NULL );
    assert( c->c_peer_domain == NULL );
    assert( c->c_peer_name == NULL );
    assert( c->c_sock_name == NULL );
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    assert( c->c_ops == NULL );
    assert( c->c_pending_ops == NULL );
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	assert( c->c_sasl_bind_mech == NULL );
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	assert( c->c_sasl_context == NULL );
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	assert( c->c_sasl_extra == NULL );
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	assert( c->c_currentber == NULL );
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	c->c_listener_url = ch_strdup( url  );
	c->c_peer_domain = ch_strdup( dnsname  );
    c->c_peer_name = ch_strdup( peername  );
    c->c_sock_name = ch_strdup( sockname );
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    c->c_n_ops_received = 0;
    c->c_n_ops_executing = 0;
    c->c_n_ops_pending = 0;
    c->c_n_ops_completed = 0;
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	c->c_n_get = 0;
	c->c_n_read = 0;
	c->c_n_write = 0;
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	/* assume LDAPv3 until bind */
	c->c_protocol = LDAP_VERSION3;

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    c->c_activitytime = c->c_starttime = slap_get_time();
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    ber_sockbuf_add_io( c->c_sb, &ber_sockbuf_io_tcp, LBER_SBIOD_LEVEL_PROVIDER,
	(void *)&s );
    ber_sockbuf_add_io( c->c_sb, &ber_sockbuf_io_readahead,
	LBER_SBIOD_LEVEL_PROVIDER, NULL );
#ifdef LDAP_DEBUG
    ber_sockbuf_add_io( c->c_sb, &ber_sockbuf_io_debug, INT_MAX, NULL );
#endif
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    if( ber_sockbuf_ctrl( c->c_sb, LBER_SB_OPT_SET_NONBLOCK, c /* non-NULL */ ) < 0 ) {
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        Debug( LDAP_DEBUG_ANY,
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            "connection_init(%d, %s): set nonblocking failed\n",
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            s, c->c_peer_name, 0 );
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    }
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    id = c->c_connid = conn_nextid++;
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    c->c_conn_state = SLAP_C_INACTIVE;
    c->c_struct_state = SLAP_C_USED;
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#ifdef HAVE_TLS
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    if ( use_tls ) {
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	    c->c_is_tls = 1;
	    c->c_needs_tls_accept = 1;
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    } else {
	    c->c_is_tls = 0;
	    c->c_needs_tls_accept = 0;
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    }
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#endif
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	slap_sasl_open( c );
	slap_sasl_external( c, ssf, authid );
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    ldap_pvt_thread_mutex_unlock( &c->c_mutex );
    ldap_pvt_thread_mutex_unlock( &connections_mutex );
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    backend_connection_init(c);

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    return id;
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}

static void
connection_destroy( Connection *c )
{
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	/* note: connections_mutex should be locked by caller */
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    ber_socket_t	sd;
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    assert( connections != NULL );
    assert( c != NULL );
    assert( c->c_struct_state != SLAP_C_UNUSED );
    assert( c->c_conn_state != SLAP_C_INVALID );
    assert( c->c_ops == NULL );
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    backend_connection_destroy(c);

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    c->c_protocol = 0;
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    c->c_connid = -1;
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    c->c_activitytime = c->c_starttime = 0;
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	if(c->c_authmech != NULL ) {
		free(c->c_authmech);
		c->c_authmech = NULL;
	}
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    if(c->c_dn != NULL) {
        free(c->c_dn);
        c->c_dn = NULL;
    }
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	if(c->c_cdn != NULL) {
		free(c->c_cdn);
		c->c_cdn = NULL;
	}
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	if(c->c_listener_url != NULL) {
		free(c->c_listener_url);
		c->c_listener_url = NULL;
	}
	if(c->c_peer_domain != NULL) {
		free(c->c_peer_domain);
		c->c_peer_domain = NULL;
	}
	if(c->c_peer_name != NULL) {
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#ifdef LDAP_PF_lOCAL
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		/*
		 * If peer was a domain socket, unlink. Mind you,
		 * they may be un-named. Should we leave this to
		 * the client?
		 */
		if (strncmp(c->c_peer_name, "PATH=", 5) == 0) {
			char *path = c->c_peer_name + 5;
			if (path != '\0') {
				(void)unlink(path);
			}
		}
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#endif /* LDAP_PF_LOCAL */
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		free(c->c_peer_name);
		c->c_peer_name = NULL;
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	}
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	if(c->c_sock_name != NULL) {
		free(c->c_sock_name);
		c->c_sock_name = NULL;
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	}

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	c->c_sasl_bind_in_progress = 0;
	if(c->c_sasl_bind_mech != NULL) {
		free(c->c_sasl_bind_mech);
		c->c_sasl_bind_mech = NULL;
	}
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	slap_sasl_close( c );
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	if ( c->c_currentber != NULL ) {
		ber_free( c->c_currentber, 1 );
		c->c_currentber = NULL;
	}

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	ber_sockbuf_ctrl( c->c_sb, LBER_SB_OPT_GET_FD, &sd );
	if ( sd != AC_SOCKET_INVALID ) {
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		slapd_remove( sd, 0 );
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		Statslog( LDAP_DEBUG_STATS,
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		    "conn=%ld fd=%d closed\n",
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			c->c_connid, sd, 0, 0, 0 );
	}

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   	ber_sockbuf_free( c->c_sb );
	c->c_sb = ber_sockbuf_alloc( );
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    c->c_conn_state = SLAP_C_INVALID;
    c->c_struct_state = SLAP_C_UNUSED;
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}

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int connection_state_closing( Connection *c )
{
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	/* c_mutex must be locked by caller */

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	int state;
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	assert( c != NULL );
	assert( c->c_struct_state == SLAP_C_USED );

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	state = c->c_conn_state;

	assert( state != SLAP_C_INVALID );

	return state == SLAP_C_CLOSING;
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}

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static void connection_abandon( Connection *c )
{
	/* c_mutex must be locked by caller */

	Operation *o;

	for( o = c->c_ops; o != NULL; o = o->o_next ) {
		ldap_pvt_thread_mutex_lock( &o->o_abandonmutex );
		o->o_abandon = 1;
		ldap_pvt_thread_mutex_unlock( &o->o_abandonmutex );
	}

	/* remove pending operations */
	for( o = slap_op_pop( &c->c_pending_ops );
		o != NULL;
		o = slap_op_pop( &c->c_pending_ops ) )
	{
		slap_op_free( o );
	}
}

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void connection_closing( Connection *c )
{
	assert( connections != NULL );
	assert( c != NULL );
	assert( c->c_struct_state == SLAP_C_USED );
	assert( c->c_conn_state != SLAP_C_INVALID );

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	/* c_mutex must be locked by caller */

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	if( c->c_conn_state != SLAP_C_CLOSING ) {
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		ber_socket_t	sd;

		ber_sockbuf_ctrl( c->c_sb, LBER_SB_OPT_GET_FD, &sd );
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		Debug( LDAP_DEBUG_TRACE,
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			"connection_closing: readying conn=%ld sd=%d for close\n",
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			c->c_connid, sd, 0 );
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		/* update state to closing */
		c->c_conn_state = SLAP_C_CLOSING;

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		/* don't listen on this port anymore */
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		slapd_clr_read( sd, 1 );
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		/* abandon active operations */
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		connection_abandon( c );
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		/* wake write blocked operations */
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		slapd_clr_write( sd, 1 );
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		ldap_pvt_thread_cond_signal( &c->c_write_cv );
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	}
}

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static void connection_close( Connection *c )
{
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	ber_socket_t	sd;

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	assert( connections != NULL );
	assert( c != NULL );
	assert( c->c_struct_state == SLAP_C_USED );
	assert( c->c_conn_state == SLAP_C_CLOSING );

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	/* note: connections_mutex and c_mutex should be locked by caller */
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	ber_sockbuf_ctrl( c->c_sb, LBER_SB_OPT_GET_FD, &sd );
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	if( c->c_ops != NULL ) {
		Debug( LDAP_DEBUG_TRACE,
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			"connection_close: deferring conn=%ld sd=%d\n",
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			c->c_connid, sd, 0 );
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		return;
	}

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	Debug( LDAP_DEBUG_TRACE, "connection_close: conn=%ld sd=%d\n",
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		c->c_connid, sd, 0 );
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	connection_destroy( c );
}

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unsigned long connections_nextid(void)
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{
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	unsigned long id;
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	assert( connections != NULL );

	ldap_pvt_thread_mutex_lock( &connections_mutex );

	id = conn_nextid;

	ldap_pvt_thread_mutex_unlock( &connections_mutex );

	return id;
}

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Connection* connection_first( ber_socket_t *index )
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{
	assert( connections != NULL );
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	assert( index != NULL );
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	ldap_pvt_thread_mutex_lock( &connections_mutex );

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	*index = 0;
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	return connection_next(NULL, index);
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}

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Connection* connection_next( Connection *c, ber_socket_t *index )
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{
	assert( connections != NULL );
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	assert( index != NULL );
	assert( *index <= dtblsize );
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	if( c != NULL ) {
		ldap_pvt_thread_mutex_unlock( &c->c_mutex );
	}

	c = NULL;

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	for(; *index < dtblsize; (*index)++) {
		if( connections[*index].c_struct_state == SLAP_C_UNINITIALIZED ) {
			assert( connections[*index].c_conn_state == SLAP_C_INVALID );
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#ifndef HAVE_WINSOCK
			continue;
#else
			break;
#endif
		}

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		if( connections[*index].c_struct_state == SLAP_C_USED ) {
			assert( connections[*index].c_conn_state != SLAP_C_INVALID );
			c = &connections[(*index)++];
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			break;
		}

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		assert( connections[*index].c_struct_state == SLAP_C_UNUSED );
		assert( connections[*index].c_conn_state == SLAP_C_INVALID );
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	}

	if( c != NULL ) {
		ldap_pvt_thread_mutex_lock( &c->c_mutex );
	}

	return c;
}

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void connection_done( Connection *c )
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{
	assert( connections != NULL );

	if( c != NULL ) {
		ldap_pvt_thread_mutex_unlock( &c->c_mutex );
	}

	ldap_pvt_thread_mutex_unlock( &connections_mutex );
}

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/*
 * connection_activity - handle the request operation op on connection
 * conn.  This routine figures out what kind of operation it is and
 * calls the appropriate stub to handle it.
 */

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static void *
connection_operation( void *arg_v )
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{
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	int rc;
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	struct co_arg	*arg = arg_v;
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	ber_tag_t tag = arg->co_op->o_tag;
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	Connection *conn = arg->co_conn;
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	ldap_pvt_thread_mutex_lock( &num_ops_mutex );
	num_ops_initiated++;
	ldap_pvt_thread_mutex_unlock( &num_ops_mutex );
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	if( conn->c_sasl_bind_in_progress && tag != LDAP_REQ_BIND ) {
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		Debug( LDAP_DEBUG_ANY, "connection_operation: "
			"error: SASL bind in progress (tag=%ld).\n",
			(long) tag, 0, 0 );
		send_ldap_result( conn, arg->co_op,
			rc = LDAP_OPERATIONS_ERROR,
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			NULL, "SASL bind in progress", NULL, NULL );
		goto operations_error;
	}

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	switch ( tag ) {
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	case LDAP_REQ_BIND:
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		rc = do_bind( conn, arg->co_op );
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		break;

	case LDAP_REQ_UNBIND:
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		rc = do_unbind( conn, arg->co_op );
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		break;

	case LDAP_REQ_ADD:
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		rc = do_add( conn, arg->co_op );
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		break;

	case LDAP_REQ_DELETE:
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		rc = do_delete( conn, arg->co_op );
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		break;

	case LDAP_REQ_MODRDN:
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		rc = do_modrdn( conn, arg->co_op );
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		break;

	case LDAP_REQ_MODIFY:
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		rc = do_modify( conn, arg->co_op );
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		break;

	case LDAP_REQ_COMPARE:
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		rc = do_compare( conn, arg->co_op );
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		break;

	case LDAP_REQ_SEARCH:
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		rc = do_search( conn, arg->co_op );
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		break;

	case LDAP_REQ_ABANDON:
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		rc = do_abandon( conn, arg->co_op );
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		break;

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	case LDAP_REQ_EXTENDED:
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		rc = do_extended( conn, arg->co_op );
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		break;

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	default:
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		Debug( LDAP_DEBUG_ANY, "unknown LDAP request 0x%lx\n",
		    tag, 0, 0 );
		arg->co_op->o_tag = LBER_ERROR;
		send_ldap_disconnect( conn, arg->co_op,
			LDAP_PROTOCOL_ERROR, "unknown LDAP request" );
		rc = -1;
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		break;
	}

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	if( rc == SLAPD_DISCONNECT ) tag = LBER_ERROR;
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operations_error:
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	ldap_pvt_thread_mutex_lock( &num_ops_mutex );
	num_ops_completed++;
	ldap_pvt_thread_mutex_unlock( &num_ops_mutex );
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	ldap_pvt_thread_mutex_lock( &conn->c_mutex );
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	conn->c_n_ops_executing--;
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	conn->c_n_ops_completed++;
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	slap_op_remove( &conn->c_ops, arg->co_op );
	slap_op_free( arg->co_op );
	arg->co_op = NULL;
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	arg->co_conn = NULL;
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	free( (char *) arg );
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	arg = NULL;
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	switch( tag ) {
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	case LBER_ERROR:
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	case LDAP_REQ_UNBIND:
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		/* c_mutex is locked */
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		connection_closing( conn );
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		break;

	case LDAP_REQ_BIND:
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		conn->c_sasl_bind_in_progress =
			rc == LDAP_SASL_BIND_IN_PROGRESS ? 1 : 0;

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		if( conn->c_conn_state == SLAP_C_BINDING) {
			conn->c_conn_state = SLAP_C_ACTIVE;
		}
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	}

	connection_resched( conn );

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	ldap_pvt_thread_mutex_unlock( &conn->c_mutex );

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	return NULL;
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}

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int connection_read(ber_socket_t s)
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{
	int rc = 0;
	Connection *c;
	assert( connections != NULL );

	ldap_pvt_thread_mutex_lock( &connections_mutex );

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	/* get (locked) connection */
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	c = connection_get( s );
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	if( c == NULL ) {
		Debug( LDAP_DEBUG_ANY,
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			"connection_read(%ld): no connection!\n",
			(long) s, 0, 0 );
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		slapd_remove(s, 0);

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		ldap_pvt_thread_mutex_unlock( &connections_mutex );
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		return -1;
	}

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	c->c_n_read++;

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	if( c->c_conn_state == SLAP_C_CLOSING ) {
		Debug( LDAP_DEBUG_TRACE,
			"connection_read(%d): closing, ignoring input for id=%ld\n",
			s, c->c_connid, 0 );

		connection_return( c );
		ldap_pvt_thread_mutex_unlock( &connections_mutex );
		return 0;
	}

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	Debug( LDAP_DEBUG_TRACE,
		"connection_read(%d): checking for input on id=%ld\n",
		s, c->c_connid, 0 );

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#ifdef HAVE_TLS
	if ( c->c_is_tls && c->c_needs_tls_accept ) {
		rc = ldap_pvt_tls_accept( c->c_sb, NULL );
		if ( rc < 0 ) {
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			struct timeval tv;
			fd_set rfd;

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			Debug( LDAP_DEBUG_TRACE,
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				"connection_read(%d): TLS accept error "
				"error=%d id=%ld, closing\n",
				s, rc, c->c_connid );
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			c->c_needs_tls_accept = 0;
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			/* connections_mutex and c_mutex are locked */
			connection_closing( c );
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			/* Drain input before close, to allow SSL error codes
			 * to propagate to client. */
			FD_ZERO(&rfd);
			FD_SET(s, &rfd);
			for (rc=1; rc>0;)
			{
			    tv.tv_sec = 1;
			    tv.tv_usec = 0;
			    rc = select(s+1, &rfd, NULL, NULL, &tv);
			    if (rc == 1)
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				ber_sockbuf_ctrl( c->c_sb, LBER_SB_OPT_DRAIN,
				    NULL);
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			}
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			connection_close( c );
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		} else if ( rc == 0 ) {
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			void *ssl;
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			slap_ssf_t ssf;
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			char *authid;

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			c->c_needs_tls_accept = 0;
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			/* we need to let SASL know */
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			ssl = (void *)ldap_pvt_tls_sb_handle( c->c_sb );
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			ssf = (slap_ssf_t) ldap_pvt_tls_get_strength( ssl );
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			authid = (char *)ldap_pvt_tls_get_peer( ssl );
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			slap_sasl_external( c, ssf, authid );
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		}
		connection_return( c );
		ldap_pvt_thread_mutex_unlock( &connections_mutex );
		return 0;
	}
#endif

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#ifdef HAVE_CYRUS_SASL
	if ( c->c_sasl_layers ) {
		c->c_sasl_layers = 0;

		rc = ldap_pvt_sasl_install( c->c_sb,  c->c_sasl_context );

		if( rc != LDAP_SUCCESS ) {
			Debug( LDAP_DEBUG_TRACE,
				"connection_read(%d): SASL install error "
				"error=%d id=%ld, closing\n",
				s, rc, c->c_connid );

			/* connections_mutex and c_mutex are locked */
			connection_closing( c );
			connection_close( c );
			connection_return( c );
			ldap_pvt_thread_mutex_unlock( &connections_mutex );
			return 0;
		}
	}
#endif

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#define CONNECTION_INPUT_LOOP 1

#ifdef DATA_READY_LOOP
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	while( !rc && ber_sockbuf_ctrl( c->c_sb, LBER_SB_DATA_READY, NULL ) )
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#elif CONNECTION_INPUT_LOOP
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	while(!rc)
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#endif
	{
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		/* How do we do this without getting into a busy loop ? */
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		rc = connection_input( c );
	}

	if( rc < 0 ) {
		Debug( LDAP_DEBUG_TRACE,
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			"connection_read(%d): input error=%d id=%ld, closing.\n",
			s, rc, c->c_connid );
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		/* connections_mutex and c_mutex are locked */
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		connection_closing( c );
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		connection_close( c );
	}

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	if ( ber_sockbuf_ctrl( c->c_sb, LBER_SB_OPT_NEEDS_READ, NULL ) )
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		slapd_set_read( s, 1 );
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	if ( ber_sockbuf_ctrl( c->c_sb, LBER_SB_OPT_NEEDS_WRITE, NULL ) )
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		slapd_set_write( s, 1 );
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	connection_return( c );
	ldap_pvt_thread_mutex_unlock( &connections_mutex );
	return 0;
}

static int
connection_input(
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    Connection *conn
)
{
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	Operation *op;
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	ber_tag_t	tag;
	ber_len_t	len;
	ber_int_t	msgid;
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	BerElement	*ber;

	if ( conn->c_currentber == NULL && (conn->c_currentber = ber_alloc())
	    == NULL ) {
		Debug( LDAP_DEBUG_ANY, "ber_alloc failed\n", 0, 0, 0 );
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		return -1;
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	}

	errno = 0;
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	tag = ber_get_next( conn->c_sb, &len, conn->c_currentber );
	if ( tag != LDAP_TAG_MESSAGE ) {
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		int err = errno;
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		ber_socket_t	sd;

		ber_sockbuf_ctrl( conn->c_sb, LBER_SB_OPT_GET_FD, &sd );
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		Debug( LDAP_DEBUG_TRACE,
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			"ber_get_next on fd %d failed errno=%d (%s)\n",
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			sd, err, sock_errstr(err) );
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		if ( err != EWOULDBLOCK && err != EAGAIN ) {
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			/* log, close and send error */
			ber_free( conn->c_currentber, 1 );
			conn->c_currentber = NULL;

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