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/*
 * gaim
 *
 * Copyright (C) 1998-1999, Mark Spencer <markster@marko.net>
 * Copyright (C) 2002-2004, Wilmer van der Gaast, Jelmer Vernooij
 *
 * This program is free software; you can redistribute it and/or modify
 * it under the terms of the GNU General Public License as published by
 * the Free Software Foundation; either version 2 of the License, or
 * (at your option) any later version.
 *
 * This program 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
 * GNU General Public License for more details.
 *
 * You should have received a copy of the GNU General Public License
 * along with this program; if not, write to the Free Software
 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA  02110-1301  USA
 *
 */

#define BITLBEE_CORE
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <sys/types.h>
#include <sys/socket.h>
#include <netdb.h>
#include <netinet/in.h>
#include <arpa/inet.h>
#include <unistd.h>
#include <fcntl.h>
#include <errno.h>
#include "nogaim.h"
#include "proxy.h"
#include "base64.h"

char proxyhost[128] = "";
int proxyport = 0;
int proxytype = PROXY_NONE;
char proxyuser[128] = "";
char proxypass[128] = "";

/* Some systems don't know this one. It's not essential, so set it to 0 then. */
#ifndef AI_NUMERICSERV
#define AI_NUMERICSERV 0
#endif
#ifndef AI_ADDRCONFIG
#define AI_ADDRCONFIG 0
#endif

struct PHB {
	b_event_handler func, proxy_func;
	gpointer data, proxy_data;
	char *host;
	int port;
	int fd;
	gint inpa;
	struct addrinfo *gai, *gai_cur;
};

static int proxy_connect_none(const char *host, unsigned short port_, struct PHB *phb);

static gboolean gaim_io_connected(gpointer data, gint source, b_input_condition cond)
{
	struct PHB *phb = data;
	socklen_t len;
	int error = ETIMEDOUT;

	len = sizeof(error);

	if (getsockopt(source, SOL_SOCKET, SO_ERROR, &error, &len) < 0 || error) {
		if ((phb->gai_cur = phb->gai_cur->ai_next)) {
			int new_fd;
			b_event_remove(phb->inpa);
			if ((new_fd = proxy_connect_none(NULL, 0, phb))) {
				b_event_remove(phb->inpa);
				closesocket(source);
				dup2(new_fd, source);
				closesocket(new_fd);
				phb->inpa = b_input_add(source, B_EV_IO_WRITE, gaim_io_connected, phb);
				return FALSE;
			}
		}
		freeaddrinfo(phb->gai);
		closesocket(source);
		b_event_remove(phb->inpa);
		phb->inpa = 0;
		if (phb->proxy_func) {
			phb->proxy_func(phb->proxy_data, -1, B_EV_IO_READ);
		} else {
			phb->func(phb->data, -1, B_EV_IO_READ);
			g_free(phb);
		}
		return FALSE;
	}
	freeaddrinfo(phb->gai);
	sock_make_blocking(source);
	b_event_remove(phb->inpa);
	phb->inpa = 0;
	if (phb->proxy_func) {
		phb->proxy_func(phb->proxy_data, source, B_EV_IO_READ);
	} else {
		phb->func(phb->data, source, B_EV_IO_READ);
		g_free(phb);
	}

	return FALSE;
}

static int proxy_connect_none(const char *host, unsigned short port_, struct PHB *phb)
{
	struct sockaddr_in me;
	int fd = -1;

	if (phb->gai_cur == NULL) {
		int ret;
		char port[6];
		struct addrinfo hints;

		g_snprintf(port, sizeof(port), "%d", port_);

		memset(&hints, 0, sizeof(struct addrinfo));
		hints.ai_family = AF_UNSPEC;
		hints.ai_socktype = SOCK_STREAM;
		hints.ai_flags = AI_ADDRCONFIG | AI_NUMERICSERV;

		if (!(ret = getaddrinfo(host, port, &hints, &phb->gai))) {
			phb->gai_cur = phb->gai;
		} else {
			event_debug("gai(): %s\n", gai_strerror(ret));
		}
	}

	for (; phb->gai_cur; phb->gai_cur = phb->gai_cur->ai_next) {
		if ((fd = socket(phb->gai_cur->ai_family, phb->gai_cur->ai_socktype, phb->gai_cur->ai_protocol)) < 0) {
			event_debug("socket failed: %d\n", errno);
			continue;
		}

		sock_make_nonblocking(fd);

		if (global.conf->iface_out) {
			me.sin_family = AF_INET;
			me.sin_port = 0;
			me.sin_addr.s_addr = inet_addr(global.conf->iface_out);

			if (bind(fd, (struct sockaddr *) &me, sizeof(me)) != 0) {
				event_debug("bind( %d, \"%s\" ) failure\n", fd, global.conf->iface_out);
			}
		}

		event_debug("proxy_connect_none( \"%s\", %d ) = %d\n", host, port_, fd);

		if (connect(fd, phb->gai_cur->ai_addr, phb->gai_cur->ai_addrlen) < 0 && !sockerr_again()) {
			event_debug("connect failed: %s\n", strerror(errno));
			closesocket(fd);
			fd = -1;
			continue;
		} else {
			phb->inpa = b_input_add(fd, B_EV_IO_WRITE, gaim_io_connected, phb);
			phb->fd = fd;

			break;
		}
	}

	if (fd < 0 && host) {
		g_free(phb);
	}

	return fd;
}


/* Connecting to HTTP proxies */

#define HTTP_GOODSTRING "HTTP/1.0 200"
#define HTTP_GOODSTRING2 "HTTP/1.1 200"

static gboolean http_canread(gpointer data, gint source, b_input_condition cond)
{
	int nlc = 0;
	int pos = 0;
	struct PHB *phb = data;
	char inputline[8192];

	b_event_remove(phb->inpa);

	while ((pos < sizeof(inputline) - 1) && (nlc != 2) && (read(source, &inputline[pos++], 1) == 1)) {
		if (inputline[pos - 1] == '\n') {
			nlc++;
		} else if (inputline[pos - 1] != '\r') {
			nlc = 0;
		}
	}
	inputline[pos] = '\0';

	if ((memcmp(HTTP_GOODSTRING, inputline, strlen(HTTP_GOODSTRING)) == 0) ||
	    (memcmp(HTTP_GOODSTRING2, inputline, strlen(HTTP_GOODSTRING2)) == 0)) {
		phb->func(phb->data, source, B_EV_IO_READ);
		g_free(phb->host);
		g_free(phb);
		return FALSE;
	}

	close(source);
	phb->func(phb->data, -1, B_EV_IO_READ);
	g_free(phb->host);
	g_free(phb);

	return FALSE;
}

static gboolean http_canwrite(gpointer data, gint source, b_input_condition cond)
{
	char cmd[384];
	struct PHB *phb = data;
	socklen_t len;
	int error = ETIMEDOUT;

	if (phb->inpa > 0) {
		b_event_remove(phb->inpa);
	}
	len = sizeof(error);
	if (getsockopt(source, SOL_SOCKET, SO_ERROR, &error, &len) < 0) {
		close(source);
		phb->func(phb->data, -1, B_EV_IO_READ);
		g_free(phb->host);
		g_free(phb);
		return FALSE;
	}
	sock_make_blocking(source);

	g_snprintf(cmd, sizeof(cmd), "CONNECT %s:%d HTTP/1.1\r\nHost: %s:%d\r\n", phb->host, phb->port,
	           phb->host, phb->port);
	if (send(source, cmd, strlen(cmd), 0) < 0) {
		close(source);
		phb->func(phb->data, -1, B_EV_IO_READ);
		g_free(phb->host);
		g_free(phb);
		return FALSE;
	}

	if (strlen(proxyuser) > 0) {
		char *t1, *t2;
		t1 = g_strdup_printf("%s:%s", proxyuser, proxypass);
		t2 = tobase64(t1);
		g_free(t1);
		g_snprintf(cmd, sizeof(cmd), "Proxy-Authorization: Basic %s\r\n", t2);
		g_free(t2);
		if (send(source, cmd, strlen(cmd), 0) < 0) {
			close(source);
			phb->func(phb->data, -1, B_EV_IO_READ);
			g_free(phb->host);
			g_free(phb);
			return FALSE;
		}
	}

	g_snprintf(cmd, sizeof(cmd), "\r\n");
	if (send(source, cmd, strlen(cmd), 0) < 0) {
		close(source);
		phb->func(phb->data, -1, B_EV_IO_READ);
		g_free(phb->host);
		g_free(phb);
		return FALSE;
	}

	phb->inpa = b_input_add(source, B_EV_IO_READ, http_canread, phb);

	return FALSE;
}

static int proxy_connect_http(const char *host, unsigned short port, struct PHB *phb)
{
	phb->host = g_strdup(host);
	phb->port = port;
	phb->proxy_func = http_canwrite;
	phb->proxy_data = phb;

	return(proxy_connect_none(proxyhost, proxyport, phb));
}


/* Connecting to SOCKS4 proxies */

static gboolean s4_canread(gpointer data, gint source, b_input_condition cond)
{
	unsigned char packet[12];
	struct PHB *phb = data;

	b_event_remove(phb->inpa);

	memset(packet, 0, sizeof(packet));
	if (read(source, packet, 9) >= 4 && packet[1] == 90) {
		phb->func(phb->data, source, B_EV_IO_READ);
		g_free(phb->host);
		g_free(phb);
		return FALSE;
	}

	close(source);
	phb->func(phb->data, -1, B_EV_IO_READ);
	g_free(phb->host);
	g_free(phb);

	return FALSE;
}

static gboolean s4_canwrite(gpointer data, gint source, b_input_condition cond)
{
	unsigned char packet[12];
	struct hostent *hp;
	struct PHB *phb = data;
	socklen_t len;
	int error = ETIMEDOUT;

	if (phb->inpa > 0) {
		b_event_remove(phb->inpa);
	}
	len = sizeof(error);
	if (getsockopt(source, SOL_SOCKET, SO_ERROR, &error, &len) < 0) {
		close(source);
		phb->func(phb->data, -1, B_EV_IO_READ);
		g_free(phb->host);
		g_free(phb);
		return FALSE;
	}
	sock_make_blocking(source);

	/* XXX does socks4 not support host name lookups by the proxy? */
	if (!(hp = gethostbyname(phb->host))) {
		close(source);
		phb->func(phb->data, -1, B_EV_IO_READ);
		g_free(phb->host);
		g_free(phb);
		return FALSE;
	}

	packet[0] = 4;
	packet[1] = 1;
	packet[2] = phb->port >> 8;
	packet[3] = phb->port & 0xff;
	packet[4] = (unsigned char) (hp->h_addr_list[0])[0];
	packet[5] = (unsigned char) (hp->h_addr_list[0])[1];
	packet[6] = (unsigned char) (hp->h_addr_list[0])[2];
	packet[7] = (unsigned char) (hp->h_addr_list[0])[3];
	packet[8] = 0;
	if (write(source, packet, 9) != 9) {
		close(source);
		phb->func(phb->data, -1, B_EV_IO_READ);
		g_free(phb->host);
		g_free(phb);
		return FALSE;
	}

	phb->inpa = b_input_add(source, B_EV_IO_READ, s4_canread, phb);

	return FALSE;
}

static int proxy_connect_socks4(const char *host, unsigned short port, struct PHB *phb)
{
	phb->host = g_strdup(host);
	phb->port = port;
	phb->proxy_func = s4_canwrite;
	phb->proxy_data = phb;

	return(proxy_connect_none(proxyhost, proxyport, phb));
}


/* Connecting to SOCKS5 proxies */

static gboolean s5_canread_again(gpointer data, gint source, b_input_condition cond)
{
	unsigned char buf[512];
	struct PHB *phb = data;

	b_event_remove(phb->inpa);

	if (read(source, buf, 10) < 10) {
		close(source);
		phb->func(phb->data, -1, B_EV_IO_READ);
		g_free(phb->host);
		g_free(phb);
		return FALSE;
	}
	if ((buf[0] != 0x05) || (buf[1] != 0x00)) {
		close(source);
		phb->func(phb->data, -1, B_EV_IO_READ);
		g_free(phb->host);
		g_free(phb);
		return FALSE;
	}

	phb->func(phb->data, source, B_EV_IO_READ);
	g_free(phb->host);
	g_free(phb);

	return FALSE;
}

static void s5_sendconnect(gpointer data, gint source)
{
	unsigned char buf[512];
	struct PHB *phb = data;
	int hlen = strlen(phb->host);

	buf[0] = 0x05;
	buf[1] = 0x01;          /* CONNECT */
	buf[2] = 0x00;          /* reserved */
	buf[3] = 0x03;          /* address type -- host name */
	buf[4] = hlen;
	memcpy(buf + 5, phb->host, hlen);
	buf[5 + strlen(phb->host)] = phb->port >> 8;
	buf[5 + strlen(phb->host) + 1] = phb->port & 0xff;

	if (write(source, buf, (5 + strlen(phb->host) + 2)) < (5 + strlen(phb->host) + 2)) {
		close(source);
		phb->func(phb->data, -1, B_EV_IO_READ);
		g_free(phb->host);
		g_free(phb);
		return;
	}

	phb->inpa = b_input_add(source, B_EV_IO_READ, s5_canread_again, phb);
}

static gboolean s5_readauth(gpointer data, gint source, b_input_condition cond)
{
	unsigned char buf[512];
	struct PHB *phb = data;

	b_event_remove(phb->inpa);

	if (read(source, buf, 2) < 2) {
		close(source);
		phb->func(phb->data, -1, B_EV_IO_READ);
		g_free(phb->host);
		g_free(phb);
		return FALSE;
	}

	if ((buf[0] != 0x01) || (buf[1] != 0x00)) {
		close(source);
		phb->func(phb->data, -1, B_EV_IO_READ);
		g_free(phb->host);
		g_free(phb);
		return FALSE;
	}

	s5_sendconnect(phb, source);

	return FALSE;
}

static gboolean s5_canread(gpointer data, gint source, b_input_condition cond)
{
	unsigned char buf[512];
	struct PHB *phb = data;

	b_event_remove(phb->inpa);

	if (read(source, buf, 2) < 2) {
		close(source);
		phb->func(phb->data, -1, B_EV_IO_READ);
		g_free(phb->host);
		g_free(phb);
		return FALSE;
	}

	if ((buf[0] != 0x05) || (buf[1] == 0xff)) {
		close(source);
		phb->func(phb->data, -1, B_EV_IO_READ);
		g_free(phb->host);
		g_free(phb);
		return FALSE;
	}

	if (buf[1] == 0x02) {
		unsigned int i = strlen(proxyuser), j = strlen(proxypass);
		buf[0] = 0x01;  /* version 1 */
		buf[1] = i;
		memcpy(buf + 2, proxyuser, i);
		buf[2 + i] = j;
		memcpy(buf + 2 + i + 1, proxypass, j);
		if (write(source, buf, 3 + i + j) < 3 + i + j) {
			close(source);
			phb->func(phb->data, -1, B_EV_IO_READ);
			g_free(phb->host);
			g_free(phb);
			return FALSE;
		}

		phb->inpa = b_input_add(source, B_EV_IO_READ, s5_readauth, phb);
	} else {
		s5_sendconnect(phb, source);
	}

	return FALSE;
}

static gboolean s5_canwrite(gpointer data, gint source, b_input_condition cond)
{
	unsigned char buf[512];
	int i;
	struct PHB *phb = data;
	socklen_t len;
	int error = ETIMEDOUT;

	if (phb->inpa > 0) {
		b_event_remove(phb->inpa);
	}
	len = sizeof(error);
	if (getsockopt(source, SOL_SOCKET, SO_ERROR, &error, &len) < 0) {
		close(source);
		phb->func(phb->data, -1, B_EV_IO_READ);
		g_free(phb->host);
		g_free(phb);
		return FALSE;
	}
	sock_make_blocking(source);

	i = 0;
	buf[0] = 0x05;          /* SOCKS version 5 */
	if (proxyuser[0]) {
		buf[1] = 0x02;  /* two methods */
		buf[2] = 0x00;  /* no authentication */
		buf[3] = 0x02;  /* username/password authentication */
		i = 4;
	} else {
		buf[1] = 0x01;
		buf[2] = 0x00;
		i = 3;
	}

	if (write(source, buf, i) < i) {
		close(source);
		phb->func(phb->data, -1, B_EV_IO_READ);
		g_free(phb->host);
		g_free(phb);
		return FALSE;
	}

	phb->inpa = b_input_add(source, B_EV_IO_READ, s5_canread, phb);

	return FALSE;
}

static int proxy_connect_socks5(const char *host, unsigned short port, struct PHB *phb)
{
	phb->host = g_strdup(host);
	phb->port = port;
	phb->proxy_func = s5_canwrite;
	phb->proxy_data = phb;

	return(proxy_connect_none(proxyhost, proxyport, phb));
}


/* Export functions */

int proxy_connect(const char *host, int port, b_event_handler func, gpointer data)
{
	struct PHB *phb;

	if (!host || port <= 0 || !func || strlen(host) > 128) {
		return -1;
	}

	phb = g_new0(struct PHB, 1);
	phb->func = func;
	phb->data = data;

	if (proxytype == PROXY_NONE || !proxyhost[0] || proxyport <= 0) {
		return proxy_connect_none(host, port, phb);
	} else if (proxytype == PROXY_HTTP) {
		return proxy_connect_http(host, port, phb);
	} else if (proxytype == PROXY_SOCKS4) {
		return proxy_connect_socks4(host, port, phb);
	} else if (proxytype == PROXY_SOCKS5) {
		return proxy_connect_socks5(host, port, phb);
	}

	g_free(phb);
	return -1;
}
> g_new0( char, len + 1 ); for( i = 0; cmd[i]; i ++ ) { if( cmd[i+1] == NULL && strchr( cmd[i], ' ' ) != NULL ) strcat( s, ":" ); strcat( s, cmd[i] ); if( cmd[i+1] ) strcat( s, " " ); } strcat( s, "\r\n" ); return s; } void irc_write( irc_t *irc, char *format, ... ) { va_list params; va_start( params, format ); irc_vawrite( irc, format, params ); va_end( params ); return; } void irc_write_all( int now, char *format, ... ) { va_list params; GSList *temp; va_start( params, format ); temp = irc_connection_list; while( temp != NULL ) { irc_t *irc = temp->data; if( now ) { g_free( irc->sendbuffer ); irc->sendbuffer = g_strdup( "\r\n" ); } irc_vawrite( temp->data, format, params ); if( now ) { bitlbee_io_current_client_write( irc, irc->fd, B_EV_IO_WRITE ); } temp = temp->next; } va_end( params ); return; } void irc_vawrite( irc_t *irc, char *format, va_list params ) { int size; char line[IRC_MAX_LINE+1]; /* Don't try to write anything new anymore when shutting down. */ if( irc->status & USTATUS_SHUTDOWN ) return; memset( line, 0, sizeof( line ) ); g_vsnprintf( line, IRC_MAX_LINE - 2, format, params ); strip_newlines( line ); if( irc->oconv != (GIConv) -1 ) { gsize bytes_read, bytes_written; char *conv; conv = g_convert_with_iconv( line, -1, irc->oconv, &bytes_read, &bytes_written, NULL ); if( bytes_read == strlen( line ) ) strncpy( line, conv, IRC_MAX_LINE - 2 ); g_free( conv ); } g_strlcat( line, "\r\n", IRC_MAX_LINE + 1 ); if( irc->sendbuffer != NULL ) { size = strlen( irc->sendbuffer ) + strlen( line ); irc->sendbuffer = g_renew ( char, irc->sendbuffer, size + 1 ); strcpy( ( irc->sendbuffer + strlen( irc->sendbuffer ) ), line ); } else { irc->sendbuffer = g_strdup(line); } if( irc->w_watch_source_id == 0 ) { /* If the buffer is empty we can probably write, so call the write event handler immediately. If it returns TRUE, it should be called again, so add the event to the queue. If it's FALSE, we emptied the buffer and saved ourselves some work in the event queue. */ /* Really can't be done as long as the code doesn't do error checking very well: if( bitlbee_io_current_client_write( irc, irc->fd, B_EV_IO_WRITE ) ) */ /* So just always do it via the event handler. */ irc->w_watch_source_id = b_input_add( irc->fd, B_EV_IO_WRITE, bitlbee_io_current_client_write, irc ); } return; } /* Flush sendbuffer if you can. If it fails, fail silently and let some I/O event handler clean up. */ void irc_flush( irc_t *irc ) { ssize_t n; size_t len; if( irc->sendbuffer == NULL ) return; len = strlen( irc->sendbuffer ); if( ( n = send( irc->fd, irc->sendbuffer, len, 0 ) ) == len ) { g_free( irc->sendbuffer ); irc->sendbuffer = NULL; b_event_remove( irc->w_watch_source_id ); irc->w_watch_source_id = 0; } else if( n > 0 ) { char *s = g_strdup( irc->sendbuffer + n ); g_free( irc->sendbuffer ); irc->sendbuffer = s; } /* Otherwise something went wrong and we don't currently care what the error was. We may or may not succeed later, we were just trying to flush the buffer immediately. */ } /* Meant for takeover functionality. Transfer an IRC connection to a different socket. */ void irc_switch_fd( irc_t *irc, int fd ) { irc_write( irc, "ERROR :Transferring session to a new connection" ); irc_flush( irc ); /* Write it now or forget about it forever. */ if( irc->sendbuffer ) { b_event_remove( irc->w_watch_source_id ); irc->w_watch_source_id = 0; g_free( irc->sendbuffer ); irc->sendbuffer = NULL; } b_event_remove( irc->r_watch_source_id ); closesocket( irc->fd ); irc->fd = fd; irc->r_watch_source_id = b_input_add( irc->fd, B_EV_IO_READ, bitlbee_io_current_client_read, irc ); } void irc_sync( irc_t *irc ) { GSList *l; irc_write( irc, ":%s!%s@%s MODE %s :+%s", irc->user->nick, irc->user->user, irc->user->host, irc->user->nick, irc->umode ); for( l = irc->channels; l; l = l->next ) { irc_channel_t *ic = l->data; if( ic->flags & IRC_CHANNEL_JOINED ) irc_send_join( ic, irc->user ); } } void irc_desync( irc_t *irc ) { GSList *l; for( l = irc->channels; l; l = l->next ) irc_channel_del_user( l->data, irc->user, IRC_CDU_KICK, "Switching to old session" ); irc_write( irc, ":%s!%s@%s MODE %s :-%s", irc->user->nick, irc->user->user, irc->user->host, irc->user->nick, irc->umode ); } int irc_check_login( irc_t *irc ) { if( irc->user->user && irc->user->nick ) { if( global.conf->authmode == AUTHMODE_CLOSED && !( irc->status & USTATUS_AUTHORIZED ) ) { irc_send_num( irc, 464, ":This server is password-protected." ); return 0; } else { irc_channel_t *ic; irc_user_t *iu = irc->user; irc->user = irc_user_new( irc, iu->nick ); irc->user->user = iu->user; irc->user->host = iu->host; irc->user->fullname = iu->fullname; irc->user->f = &irc_user_self_funcs; g_free( iu->nick ); g_free( iu ); if( global.conf->runmode == RUNMODE_FORKDAEMON || global.conf->runmode == RUNMODE_DAEMON ) ipc_to_master_str( "CLIENT %s %s :%s\r\n", irc->user->host, irc->user->nick, irc->user->fullname ); irc->status |= USTATUS_LOGGED_IN; irc_send_login( irc ); irc->umode[0] = '\0'; irc_umode_set( irc, "+" UMODE, TRUE ); ic = irc->default_channel = irc_channel_new( irc, ROOT_CHAN ); irc_channel_set_topic( ic, CONTROL_TOPIC, irc->root ); set_setstr( &ic->set, "auto_join", "true" ); irc_channel_auto_joins( irc, NULL ); irc->root->last_channel = irc->default_channel; irc_usermsg( irc, "Welcome to the BitlBee gateway!\n\n" "If you've never used BitlBee before, please do read the help " "information using the \x02help\x02 command. Lots of FAQs are " "answered there.\n" "If you already have an account on this server, just use the " "\x02identify\x02 command to identify yourself." ); /* This is for bug #209 (use PASS to identify to NickServ). */ if( irc->password != NULL ) { char *send_cmd[] = { "identify", g_strdup( irc->password ), NULL }; irc_setpass( irc, NULL ); root_command( irc, send_cmd ); g_free( send_cmd[1] ); } return 1; } } else { /* More information needed. */ return 0; } } /* TODO: This is a mess, but this function is a bit too complicated to be converted to something more generic. */ void irc_umode_set( irc_t *irc, const char *s, gboolean allow_priv ) { /* allow_priv: Set to 0 if s contains user input, 1 if you want to set a "privileged" mode (+o, +R, etc). */ char m[128], st = 1; const char *t; int i; char changes[512], *p, st2 = 2; char badflag = 0; memset( m, 0, sizeof( m ) ); for( t = irc->umode; *t; t ++ ) if( *t < sizeof( m ) ) m[(int)*t] = 1; p = changes; for( t = s; *t; t ++ ) { if( *t == '+' || *t == '-' ) st = *t == '+'; else if( ( st == 0 && ( !strchr( UMODES_KEEP, *t ) || allow_priv ) ) || ( st == 1 && strchr( UMODES, *t ) ) || ( st == 1 && allow_priv && strchr( UMODES_PRIV, *t ) ) ) { if( m[(int)*t] != st) { if( st != st2 ) st2 = st, *p++ = st ? '+' : '-'; *p++ = *t; } m[(int)*t] = st; } else badflag = 1; } *p = '\0'; memset( irc->umode, 0, sizeof( irc->umode ) ); for( i = 'A'; i <= 'z' && strlen( irc->umode ) < ( sizeof( irc->umode ) - 1 ); i ++ ) if( m[i] ) irc->umode[strlen(irc->umode)] = i; if( badflag ) irc_send_num( irc, 501, ":Unknown MODE flag" ); if( *changes ) irc_write( irc, ":%s!%s@%s MODE %s :%s", irc->user->nick, irc->user->user, irc->user->host, irc->user->nick, changes ); } /* Returns 0 if everything seems to be okay, a number >0 when there was a timeout. The number returned is the number of seconds we received no pongs from the user. When not connected yet, we don't ping but drop the connection when the user fails to connect in IRC_LOGIN_TIMEOUT secs. */ static gboolean irc_userping( gpointer _irc, gint fd, b_input_condition cond ) { irc_t *irc = _irc; int rv = 0; if( !( irc->status & USTATUS_LOGGED_IN ) ) { if( gettime() > ( irc->last_pong + IRC_LOGIN_TIMEOUT ) ) rv = gettime() - irc->last_pong; } else { if( ( gettime() > ( irc->last_pong + global.conf->ping_interval ) ) && !irc->pinging ) { irc_write( irc, "PING :%s", IRC_PING_STRING ); irc->pinging = 1; } else if( gettime() > ( irc->last_pong + global.conf->ping_timeout ) ) { rv = gettime() - irc->last_pong; } } if( rv > 0 ) { irc_abort( irc, 0, "Ping Timeout: %d seconds", rv ); return FALSE; } return TRUE; } static char *set_eval_charset( set_t *set, char *value ) { irc_t *irc = (irc_t*) set->data; char *test; gsize test_bytes = 0; GIConv ic, oc; if( g_strcasecmp( value, "none" ) == 0 ) value = g_strdup( "utf-8" ); if( ( oc = g_iconv_open( value, "utf-8" ) ) == (GIConv) -1 ) { return NULL; } /* Do a test iconv to see if the user picked an IRC-compatible charset (for example utf-16 goes *horribly* wrong). */ if( ( test = g_convert_with_iconv( " ", 1, oc, NULL, &test_bytes, NULL ) ) == NULL || test_bytes > 1 ) { g_free( test ); g_iconv_close( oc ); irc_usermsg( irc, "Unsupported character set: The IRC protocol " "only supports 8-bit character sets." ); return NULL; } g_free( test ); if( ( ic = g_iconv_open( "utf-8", value ) ) == (GIConv) -1 ) { g_iconv_close( oc ); return NULL; } if( irc->iconv != (GIConv) -1 ) g_iconv_close( irc->iconv ); if( irc->oconv != (GIConv) -1 ) g_iconv_close( irc->oconv ); irc->iconv = ic; irc->oconv = oc; return value; } /* Mostly meant for upgrades. If one of these is set to the non-default, set show_users of all channels to something with the same effect. */ static char *set_eval_bw_compat( set_t *set, char *value ) { irc_t *irc = set->data; char *val; GSList *l; irc_usermsg( irc, "Setting `%s' is obsolete, use the `show_users' " "channel setting instead.", set->key ); if( strcmp( set->key, "away_devoice" ) == 0 && !bool2int( value ) ) val = "online,away"; else if( strcmp( set->key, "show_offline" ) == 0 && bool2int( value ) ) val = "online@,away+,offline"; else return SET_INVALID; for( l = irc->channels; l; l = l->next ) { irc_channel_t *ic = l->data; /* No need to check channel type, if the setting doesn't exist it will just be ignored. */ set_setstr( &ic->set, "show_users", val ); } return SET_INVALID; }