Skip to content
Snippets Groups Projects
chan_h323.c 42.5 KiB
Newer Older
  • Learn to ignore specific revisions
  • /*
     * chan_oh323.c
     *
     * OpenH323 Channel Driver for ASTERISK PBX.
     *			By Jeremy McNamara
     *                      For The NuFone Network 
     *
     * This code has been derived from code created by 
     *		Michael Manousos and Mark Spencer
     *
     * This file is part of the chan_h323 driver for Asterisk
     *
     * chan_h323 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. 
     *
     * chan_h323 is distributed 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., 675 Mass Ave, Cambridge, MA 02139, USA. 
     *
     */
    
    
    #include <stdio.h>
    #include <pthread.h>
    #include <string.h>
    #include <asterisk/lock.h>
    #include <asterisk/logger.h>
    #include <asterisk/channel.h>
    #include <asterisk/channel_pvt.h>
    #include <asterisk/config.h>
    #include <asterisk/module.h>
    #include <asterisk/pbx.h>
    #include <asterisk/options.h>
    #include <asterisk/lock.h>
    #include <asterisk/sched.h>
    #include <asterisk/io.h>
    #include <asterisk/rtp.h>
    #include <asterisk/acl.h>
    #include <asterisk/callerid.h>
    #include <asterisk/cli.h>
    #include <asterisk/dsp.h>
    #include <sys/socket.h>
    #include <net/if.h>
    #include <errno.h>
    #include <unistd.h>
    #include <stdlib.h>
    #include <fcntl.h>
    #include <netdb.h>
    #include <sys/signal.h>
    #include <netinet/ip.h>
    
    
    #include "chan_h323.h"
    
    /** String variables required by ASTERISK */
    static char *type	= "H323";
    static char *desc	= "The NuFone Network's Open H.323 Channel Driver";
    static char *tdesc	= "The NuFone Network's Open H.323 Channel Driver";
    static char *config = "h323.conf";
    
    static char default_context[AST_MAX_EXTENSION];
    
    /** H.323 configuration values */
    static char gatekeeper[100];
    static int	gatekeeper_disable = 1;
    static int	gatekeeper_discover = 0;
    static int  usingGk;
    static int	port = 1720;
    static int	jitter;
    static int  gkroute = 0;
    
    /* Just about everybody seems to support ulaw, so make it a nice default */
    static int capability = AST_FORMAT_ULAW;
    
    /* TOS flag */
    static int tos = 0;
    
    static int dtmfmode = H323_DTMF_RFC2833;
    
    static char secret[50];
    
    /** Private structure of a OpenH323 channel */
    struct oh323_pvt {
    	pthread_mutex_t lock;					/* Channel private lock */
    	call_options_t call_opt;				/* Options to be used during call setup */
    	int	alreadygone;						/* Whether or not we've already been destroyed by or peer */
    	int needdestroy;						/* if we need to be destroyed */
    	call_details_t cd;						/* Call details */
    	struct ast_channel *owner;				/* Who owns us */
    	int capability;							/* Special capability */
    	int nonCodecCapability;
    	int outgoing;							/* Outgoing or incoming call? */
    	int nat;								/* Are we talking to a NAT EP?*/
    	int bridge;								/* Determine of we should native bridge or not*/
    	char exten[AST_MAX_EXTENSION];			/* Requested extension */
    	char context[AST_MAX_EXTENSION];		/* Context where to start */
    	char username[81];						/* H.323 alias using this channel */
    	char accountcode[256];					/* Account code */
    	int amaflags;							/* AMA Flags */
    	char callerid[80];						/* Caller*ID if available */
    	struct ast_rtp *rtp;					/* RTP Session */
    	int dtmfmode;
    	struct ast_dsp *vad;					/* Used for in-band DTMF detection */
    	struct oh323_pvt *next;					/* Next channel in list */
    } *iflist = NULL;
    
    static struct ast_user_list {
    	struct oh323_user *users;
    	pthread_mutex_t lock;
    } userl = { NULL, AST_MUTEX_INITIALIZER };
    
    static struct ast_peer_list {
    	struct oh323_peer *peers;
    	pthread_mutex_t lock;
    } peerl = { NULL, AST_MUTEX_INITIALIZER };
    
    static struct ast_alias_list {
    	struct oh323_alias *aliases;
    	pthread_mutex_t lock;
    } aliasl = { NULL, AST_MUTEX_INITIALIZER };
    
    /** Asterisk RTP stuff*/
    static struct sched_context *sched;
    static struct io_context *io;
    
    /** Protect the interface list (of oh323_pvt's) */
    static pthread_mutex_t iflock = AST_MUTEX_INITIALIZER;
    
    /** Usage counter and associated lock */
    static int usecnt =0;
    static pthread_mutex_t usecnt_lock = AST_MUTEX_INITIALIZER;
    
    /* Protect the monitoring thread, so only one process can kill or start it, and not
       when it's doing something critical. */
    static pthread_mutex_t monlock = AST_MUTEX_INITIALIZER;
    
    /* This is the thread for the monitor which checks for input on the channels
       which are not currently in use.  */
    static pthread_t monitor_thread = 0;
    
    static int restart_monitor(void);
    
    static void __oh323_destroy(struct oh323_pvt *p)
    {
    	struct oh323_pvt *cur, *prev = NULL;
    	
    	if (p->rtp) {
    		ast_rtp_destroy(p->rtp);
    	}
    	
    	/* Unlink us from the owner if we have one */
    	if (p->owner) {
    		ast_pthread_mutex_lock(&p->owner->lock);
    		ast_log(LOG_DEBUG, "Detaching from %s\n", p->owner->name);
    		p->owner->pvt->pvt = NULL;
    		ast_pthread_mutex_unlock(&p->owner->lock);
    	}
    	cur = iflist;
    	while(cur) {
    		if (cur == p) {
    			if (prev)
    				prev->next = cur->next;
    			else
    				iflist = cur->next;
    			break;
    		}
    		prev = cur;
    		cur = cur->next;
    	}
    	if (!cur) {
    		ast_log(LOG_WARNING, "%p is not in list?!?! \n", cur);
    	} else
    		free(p);
    }
    
    static void oh323_destroy(struct oh323_pvt *p)
    {
    	ast_pthread_mutex_lock(&iflock);
    	__oh323_destroy(p);
    	ast_pthread_mutex_unlock(&iflock);
    }
    
    static struct oh323_alias *build_alias(char *name, struct ast_variable *v)
    {
    	struct oh323_alias *alias;
    
    	alias = (struct oh323_alias *)malloc(sizeof(struct oh323_alias));
    
    	if (alias) {
    		memset(alias, 0, sizeof(struct oh323_alias));
    		strncpy(alias->name, name, sizeof(alias->name)-1);
    
    		while (v) {
    			if (!strcasecmp(v->name, "e164")) {
    				strncpy(alias->e164,  v->value, sizeof(alias->e164)-1);
    			} else if (!strcasecmp(v->name, "prefix")) {
    				strncpy(alias->prefix,  v->value, sizeof(alias->prefix)-1);
    			} else if (!strcasecmp(v->name, "context")) {
    				strncpy(alias->context,  v->value, sizeof(alias->context)-1);
    			} else if (!strcasecmp(v->name, "secret")) {
    				strncpy(alias->prefix,  v->value, sizeof(alias->secret)-1);
    			}
    			v = v->next;
    		}
    	}
    	return alias;
    }
    
    static struct oh323_user *build_user(char *name, struct ast_variable *v)
    {
    	struct oh323_user *user;
    	int format;
    	
    	user = (struct oh323_user *)malloc(sizeof(struct oh323_user));
    	if (user) {
    		memset(user, 0, sizeof(struct oh323_user));
    		strncpy(user->name, name, sizeof(user->name)-1);
    		
    		/* set the usage flag to a sane starting value*/
    		user->inUse = 0;
    		/* Assume we can native bridge */
    		user->bridge = 1; 
    
    		while(v) {
    			if (!strcasecmp(v->name, "context")) {
    				strncpy(user->context, v->value, sizeof(user->context)-1);
    			} else if (!strcasecmp(v->name, "bridge")) {
    				user->bridge = ast_true(v->value);
    			} else if (!strcasecmp(v->name, "noFastStart")) {
    				user->noFastStart = ast_true(v->value);
    			} else if (!strcasecmp(v->name, "noH245Tunneling")) {
    				user->noH245Tunneling = ast_true(v->value);
    			} else if (!strcasecmp(v->name, "noSilenceSuppression")) {
    				user->noSilenceSuppression = ast_true(v->value);
    			} else if (!strcasecmp(v->name, "secret")) {
    				strncpy(user->secret, v->value, sizeof(user->secret)-1);
    			} else if (!strcasecmp(v->name, "accountcode")) {
    				strncpy(user->accountcode, v->value, sizeof(user->accountcode)-1);
    			} else if (!strcasecmp(v->name, "incominglimit")) {
    				user->incominglimit = atoi(v->value);
    				if (user->incominglimit < 0)
    					user->incominglimit = 0;
    			} else if (!strcasecmp(v->name, "host")) {
    				if (!strcasecmp(v->value, "dynamic")) {
    					ast_log(LOG_ERROR, "Dynamic host configuration not implemented, yet!\n");
    					free(user);
    					return NULL;
    				} else if (ast_get_ip(&user->addr, v->value)) {
    					free(user);
    					return NULL;
    				} 
    
    				/* Let us know we need to use ip authentication */
    				user->host = 1;
    
    260 261 262 263 264 265 266 267 268 269 270 271 272 273 274 275 276 277 278 279 280 281 282 283 284 285 286 287 288 289 290 291 292 293 294 295 296 297 298 299 300 301 302 303 304 305 306 307 308 309 310 311 312 313 314 315 316 317 318 319 320 321 322 323 324 325 326 327 328 329 330 331 332 333 334 335 336 337 338 339 340 341 342 343 344 345 346 347 348 349 350 351 352 353 354 355 356 357 358 359 360 361 362 363 364 365 366 367 368 369 370 371 372 373 374 375 376 377 378 379 380 381 382 383 384 385 386 387 388 389 390 391 392 393 394 395 396 397 398 399 400 401 402 403 404 405 406 407 408 409 410 411 412 413 414 415 416 417 418 419 420 421 422 423 424 425 426 427 428 429 430 431 432 433 434 435 436 437 438 439 440 441 442 443 444 445 446 447 448 449 450 451 452 453 454 455 456 457 458 459 460 461 462 463 464 465 466 467 468 469 470 471 472 473 474 475 476 477 478 479 480 481 482 483 484 485 486 487 488 489 490 491 492 493 494 495 496 497 498 499 500 501 502 503 504 505 506 507 508 509 510 511 512 513 514 515 516 517 518 519 520 521 522 523 524 525 526 527 528 529 530 531 532 533 534 535 536 537 538 539 540 541 542 543 544 545 546 547 548 549 550 551 552 553 554 555 556 557 558 559 560 561 562 563 564 565 566 567 568 569 570 571 572 573 574 575 576 577 578 579 580 581 582 583 584 585 586 587 588 589 590 591 592 593 594 595 596 597 598 599 600 601 602 603 604 605 606 607 608 609 610 611 612 613 614 615 616 617 618 619 620 621 622 623 624 625 626 627 628 629 630 631 632 633 634 635 636 637 638 639 640 641 642 643 644 645 646 647 648 649 650
    			} else if (!strcasecmp(v->name, "amaflags")) {
    				format = ast_cdr_amaflags2int(v->value);
    				if (format < 0) {
    					ast_log(LOG_WARNING, "Invalid AMA Flags: %s at line %d\n", v->value, v->lineno);
    				} else {
    					user->amaflags = format;
    				}
    			}
    			v = v->next;
    		}
    	}
    	return user;
    }
    
    
    static struct oh323_peer *build_peer(char *name, struct ast_variable *v)
    {
    	struct oh323_peer *peer;
    	struct oh323_peer *prev;
    	int found=0;
    	
    	prev = NULL;
    	ast_pthread_mutex_lock(&peerl.lock);
    	peer = peerl.peers;
    
    	while(peer) {
    		if (!strcasecmp(peer->name, name)) {	
    			break;
    		}
    		prev = peer;
    		peer = peer->next;
    	}
    
    	if (peer) {
    		found++;
    		/* Already in the list, remove it and it will be added back (or FREE'd) */
    		if (prev) {
    			prev->next = peer->next;
    		} else {
    			peerl.peers = peer->next;
    		}
    		ast_pthread_mutex_unlock(&peerl.lock);
     	} else {
    		ast_pthread_mutex_unlock(&peerl.lock);
    		peer = malloc(sizeof(struct oh323_peer));
    		memset(peer, 0, sizeof(struct oh323_peer));
    	}
    	if (peer) {
    		if (!found) {
    			strncpy(peer->name, name, sizeof(peer->name)-1);
    		}
    		
    		/* set the usage flag to a sane starting value*/
    		peer->inUse = 0;
    
    		while(v) {
    			if (!strcasecmp(v->name, "context")) {
    				strncpy(peer->context, v->value, sizeof(peer->context)-1);
    			}  else if (!strcasecmp(v->name, "bridge")) {
    				peer->bridge = ast_true(v->value);
    			} else if (!strcasecmp(v->name, "noFastStart")) {
    				peer->noFastStart = ast_true(v->value);
    			} else if (!strcasecmp(v->name, "noH245Tunneling")) {
    				peer->noH245Tunneling = ast_true(v->value);
    			} else if (!strcasecmp(v->name, "noSilenceSuppression")) {
    				peer->noSilenceSuppression = ast_true(v->value);
    			} else if (!strcasecmp(v->name, "outgoinglimit")) {
    				peer->outgoinglimit = atoi(v->value);
    				if (peer->outgoinglimit > 0)
    					peer->outgoinglimit = 0;
    			} else if (!strcasecmp(v->name, "host")) {
    				if (!strcasecmp(v->value, "dynamic")) {
    					ast_log(LOG_ERROR, "Dynamic host configuration not implemented, yet!\n");
    					free(peer);
    					return NULL;
    				}
    				if (ast_get_ip(&peer->addr, v->value)) {
    						free(peer);
    						return NULL;
    				}
    			} 
    			v=v->next;
    		}
    	}
    	return peer;
    }
    
    
    
    /**
     * Send (play) the specified digit to the channel.
     * 
     */
    static int oh323_digit(struct ast_channel *c, char digit)
    {
    	struct oh323_pvt *p = c->pvt->pvt;
    	if (p && p->rtp && (p->dtmfmode & H323_DTMF_RFC2833)) {
    		ast_rtp_senddigit(p->rtp, digit);
    	}
    	/* If in-band DTMF is desired, send that */
    	if (p->dtmfmode & H323_DTMF_INBAND)
    		h323_send_tone(p->cd.call_token, digit);
    	return 0;
    }
    
    
    /**
     * Make a call over the specified channel to the specified 
     * destination. This function will parse the destination string
     * and determine the address-number to call.
     * Return -1 on error, 0 on success.
     */
    static int oh323_call(struct ast_channel *c, char *dest, int timeout)
    {
    	int res;
    	struct oh323_pvt *p = c->pvt->pvt;
    	char called_addr[256];
    
    
    	ast_log(LOG_DEBUG, "dest=%s, timeout=%d.\n", dest, timeout);
    
    	if ((c->_state != AST_STATE_DOWN) && (c->_state != AST_STATE_RESERVED)) {
    		ast_log(LOG_WARNING, "Line is already in use (%s)\n", c->name);
    		return -1;
    	}
    	
    	/* outgoing call */
    	p->outgoing = 1;
    
    	/* Clear the call token */
    	if ((p->cd).call_token == NULL)
    		(p->cd).call_token = (char *)malloc(128);
    
    	memset((char *)(p->cd).call_token, 0, 128);
    	
    	if (p->cd.call_token == NULL) {
    		ast_log(LOG_ERROR, "Not enough memory.\n");
    		return -1;
    	}
    
    	/* Build the address to call */
    	memset(called_addr, 0, sizeof(dest));
    	memcpy(called_addr, dest, sizeof(called_addr));
    
    	res = h323_make_call(called_addr, &(p->cd), p->call_opt);
    
    	if (res) {
    		printf("h323_make_call failed\n");
    		return -1;
    	}
    
    	ast_setstate(c, AST_STATE_RINGING);
    	return 0;
    }
    
    
    static int oh323_answer(struct ast_channel *c)
    {
    	int res;
    
    	struct oh323_pvt *p = c->pvt->pvt;
    
    	res = h323_answering_call(p->cd.call_token, 0);
    	
    	if (c->_state != AST_STATE_UP)
    		ast_setstate(c, AST_STATE_UP);
    
    	return res;
    }
    
    static int oh323_hangup(struct ast_channel *c)
    {
    	struct oh323_pvt *p = c->pvt->pvt;
    	int needcancel = 0;
    	if (h323debug)
    		ast_log(LOG_DEBUG, "oh323_hangup(%s)\n", c->name);
    	if (!c->pvt->pvt) {
    		ast_log(LOG_DEBUG, "Asked to hangup channel not connected\n");
    		return 0;
    	}
    	ast_pthread_mutex_lock(&p->lock);
    	/* Determine how to disconnect */
    	if (p->owner != c) {
    		ast_log(LOG_WARNING, "Huh?  We aren't the owner?\n");
    		ast_pthread_mutex_unlock(&p->lock);
    		return 0;
    	}
    	if (!c || (c->_state != AST_STATE_UP))
    		needcancel = 1;
    	/* Disconnect */
    	p = c->pvt->pvt;
    	
    	/* Free dsp used for in-band DTMF detection */
    	if (p->vad) {
    		ast_dsp_free(p->vad);
         }
    
    	p->owner = NULL;
    	c->pvt->pvt = NULL;
    
    	/* Start the process if it's not already started */
    	if (!p->alreadygone) {
    		if (h323_clear_call((p->cd).call_token)) 
    			ast_log(LOG_DEBUG, "ClearCall failed.\n");
    		p->needdestroy = 1;
    	}
    
    	
    	ast_pthread_mutex_unlock(&p->lock);
    	return 0;
    }
    
    static struct ast_frame *oh323_rtp_read(struct oh323_pvt *p)
    {
    	/* Retrieve audio/etc from channel.  Assumes p->lock is already held. */
    	struct ast_frame *f;
    	static struct ast_frame null_frame = { AST_FRAME_NULL, };
    	f = ast_rtp_read(p->rtp);
    	/* Don't send RFC2833 if we're not supposed to */
    	if (f && (f->frametype == AST_FRAME_DTMF) && !(p->dtmfmode & H323_DTMF_RFC2833))
    		return &null_frame;
    	if (p->owner) {
    		/* We already hold the channel lock */
    		if (f->frametype == AST_FRAME_VOICE) {
    			if (f->subclass != p->owner->nativeformats) {
    				ast_log(LOG_DEBUG, "Oooh, format changed to %d\n", f->subclass);
    				p->owner->nativeformats = f->subclass;
    				ast_set_read_format(p->owner, p->owner->readformat);
    				ast_set_write_format(p->owner, p->owner->writeformat);
    			}
    		
    			/* Do in-band DTMF detection */
    			if (p->dtmfmode & H323_DTMF_INBAND) {
                       f = ast_dsp_process(p->owner,p->vad,f,0);
    				   if (f->frametype == AST_FRAME_DTMF)
    					ast_log(LOG_DEBUG, "Got in-band digit %c.\n", f->subclass);
                }
    			
    			
    		}
    	}
    	return f;
    }
    
    
    static struct ast_frame  *oh323_read(struct ast_channel *c)
    {
    	struct ast_frame *fr;
    	struct oh323_pvt *p = c->pvt->pvt;
    	ast_pthread_mutex_lock(&p->lock);
    	fr = oh323_rtp_read(p);
    	ast_pthread_mutex_unlock(&p->lock);
    	return fr;
    }
    
    static int oh323_write(struct ast_channel *c, struct ast_frame *frame)
    {
    	struct oh323_pvt *p = c->pvt->pvt;
    	int res = 0;
    	if (frame->frametype != AST_FRAME_VOICE) {
    		if (frame->frametype == AST_FRAME_IMAGE)
    			return 0;
    		else {
    			ast_log(LOG_WARNING, "Can't send %d type frames with H323 write\n", frame->frametype);
    			return 0;
    		}
    	} else {
    		if (!(frame->subclass & c->nativeformats)) {
    			ast_log(LOG_WARNING, "Asked to transmit frame type %d, while native formats is %d (read/write = %d/%d)\n",
    				frame->subclass, c->nativeformats, c->readformat, c->writeformat);
    			return -1;
    		}
    	}
    	if (p) {
    		ast_pthread_mutex_lock(&p->lock);
    		if (p->rtp) {
    			res =  ast_rtp_write(p->rtp, frame);
    		}
    		ast_pthread_mutex_unlock(&p->lock);
    	}
    	return res;
    }
    
    /** FIXME: Can I acutally use this or does Open H.323 take care of everything? */
    static int oh323_indicate(struct ast_channel *c, int condition)
    {
    
    	struct oh323_pvt *p = c->pvt->pvt;
    	
    	switch(condition) {
    	case AST_CONTROL_RINGING:
    		if (c->_state == AST_STATE_RING) {
    		//	transmit_response(p, "180 Ringing", &p->initreq);
    			break;
    		}
    		return -1;
    	case AST_CONTROL_BUSY:
    		if (c->_state != AST_STATE_UP) {
    		//	transmit_response(p, "600 Busy everywhere", &p->initreq);
    			p->alreadygone = 1;
    			ast_softhangup(c, AST_SOFTHANGUP_DEV);
    			break;
    		}
    		return -1;
    	case AST_CONTROL_CONGESTION:
    		if (c->_state != AST_STATE_UP) {
    		//	transmit_response(p, "486 Busy here", &p->initreq);
    			p->alreadygone = 1;
    			ast_softhangup(c, AST_SOFTHANGUP_DEV);
    			break;
    		}
    		return -1;
    	case -1:
    		return -1;
    	default:
    		ast_log(LOG_WARNING, "Don't know how to indicate condition %d\n", condition);
    		return -1;
    	}
    	return 0;
    }
    
    // FIXME: WTF is this? Do I need this???
    static int oh323_fixup(struct ast_channel *oldchan, struct ast_channel *newchan)
    {
    	struct oh323_pvt *p = newchan->pvt->pvt;
    
    	ast_pthread_mutex_lock(&p->lock);
    	if (p->owner != oldchan) {
    		ast_log(LOG_WARNING, "old channel wasn't %p but was %p\n", oldchan, p->owner);
    		return -1;
    	}
    	p->owner = newchan;
    	ast_pthread_mutex_unlock(&p->lock);
    	return 0;
    }
    
    static struct ast_channel *oh323_new(struct oh323_pvt *i, int state, const char *host)
    {
    	struct ast_channel *tmp;
    	int fmt;
    	tmp = ast_channel_alloc(1);
    	
    	if (tmp) {
    		
    		snprintf(tmp->name, sizeof(tmp->name)-1, "H323/%s", host);
    		tmp->nativeformats = i->capability;
    		if (!tmp->nativeformats)
    			tmp->nativeformats = capability;
    		fmt = ast_best_codec(tmp->nativeformats);
    		tmp->type = type;
    		tmp->fds[0] = ast_rtp_fd(i->rtp);
    		ast_setstate(tmp, state);
    		
    		if (state == AST_STATE_RING)
    			tmp->rings = 1;
    		
    		tmp->writeformat = fmt;
    		tmp->pvt->rawwriteformat = fmt;
    		tmp->readformat = fmt;
    		tmp->pvt->rawreadformat = fmt;
    		
    		/* Allocate dsp for in-band DTMF support */
    		if (i->dtmfmode & H323_DTMF_INBAND) {
    			i->vad = ast_dsp_new();
    			ast_dsp_set_features(i->vad, DSP_FEATURE_DTMF_DETECT);
            }
    
    		/* Register the OpenH323 channel's functions. */
    		tmp->pvt->pvt = i;
    		tmp->pvt->send_digit = oh323_digit;
    		tmp->pvt->call = oh323_call;
    		tmp->pvt->hangup = oh323_hangup;
    		tmp->pvt->answer = oh323_answer;
    		tmp->pvt->read = oh323_read;
    		tmp->pvt->write = oh323_write;
    		tmp->pvt->indicate = oh323_indicate;
    		tmp->pvt->fixup = oh323_fixup;
    //		tmp->pvt->bridge = ast_rtp_bridge;
    
    		/*  Set the owner of this channel */
    		i->owner = tmp;
    		
    		ast_pthread_mutex_lock(&usecnt_lock);
    		usecnt++;
    		ast_pthread_mutex_unlock(&usecnt_lock);
    		ast_update_use_count();
    		strncpy(tmp->context, i->context, sizeof(tmp->context)-1);
    		strncpy(tmp->exten, i->exten, sizeof(tmp->exten)-1);		
    		tmp->priority = 1;
    		if (strlen(i->callerid))
    			tmp->callerid = strdup(i->callerid);
    
    Jeremy McNamara's avatar
    Jeremy McNamara committed
    		if (strlen(i->accountcode))
    			strncpy(tmp->accountcode, i->accountcode, sizeof(tmp->accountcode)-1);
    		if (i->amaflags)
    			tmp->amaflags = i->amaflags;
    
    		if (state != AST_STATE_DOWN) {
    			if (ast_pbx_start(tmp)) {
    				ast_log(LOG_WARNING, "Unable to start PBX on %s\n", tmp->name);
    				ast_hangup(tmp);
    				tmp = NULL;
    			}
    		}
    	} else
    		ast_log(LOG_WARNING, "Unable to allocate channel structure\n");
    	return tmp;
    }
    
    static struct oh323_pvt *oh323_alloc(int callid)
    {
    	struct oh323_pvt *p;
    
    	p = malloc(sizeof(struct oh323_pvt));
    	if (!p) {
    		ast_log(LOG_ERROR, "Couldn't allocate private structure. This is bad\n");
    		return NULL;
    	}
    
    	/* Keep track of stuff */
    	memset(p, 0, sizeof(struct oh323_pvt));
    	p->rtp = ast_rtp_new(NULL, NULL);
    	if (!p->rtp) {
    		ast_log(LOG_WARNING, "Unable to create RTP session: %s\n", strerror(errno));
    		free(p);
    		return NULL;
    	}
    	ast_rtp_settos(p->rtp, tos);
    	ast_pthread_mutex_init(&p->lock);
    	
    	p->cd.call_reference = callid;
    	p->bridge = 1;
    	
    	p->dtmfmode = dtmfmode;
    	if (p->dtmfmode & H323_DTMF_RFC2833)
    		p->nonCodecCapability |= AST_RTP_DTMF;
    
    	/* Add to interface list */
    	ast_pthread_mutex_lock(&iflock);
    	p->next = iflist;
    	iflist = p;
    	ast_pthread_mutex_unlock(&iflock);
    	return p;
    }
    
    static struct oh323_pvt *find_call(int call_reference)
    {  
            struct oh323_pvt *p;
    
    		ast_pthread_mutex_lock(&iflock);
            p = iflist; 
    
            while(p) {
                    if (p->cd.call_reference == call_reference) {
                            /* Found the call */						
    						ast_pthread_mutex_unlock(&iflock);
    						return p;
                    }
                    p = p->next; 
            }
            ast_pthread_mutex_unlock(&iflock);
    		return NULL;
            
    }
    
    static struct ast_channel *oh323_request(char *type, int format, void *data)
    {
    
    	int oldformat;
    	struct oh323_pvt *p;
    	struct ast_channel *tmpc = NULL;
    	char *dest = data;
    	char *ext, *host;
    	char tmp[256];
    
    	ast_log(LOG_DEBUG, "type=%s, format=%d, data=%s.\n", type, format, (char *)data);
    
    	oldformat = format;
    	format &= capability;
    	if (!format) {
    		ast_log(LOG_NOTICE, "Asked to get a channel of unsupported format '%d'\n", format);
    		return NULL;
    	}
    	
    	strncpy(tmp, dest, sizeof(tmp) - 1);
    	host = strchr(tmp, '@');
    	if (host) {
    		*host = '\0';
    		host++;
    		ext = tmp;
    	} else {
    		host = tmp;
    		ext = NULL;
    	}
    
    	p = oh323_alloc(0);
    
    	if (!p) {
    		ast_log(LOG_WARNING, "Unable to build pvt data for '%s'\n", (char *)data);
    		return NULL;
    	}
    
    	/* Assign a default capability */
    	p->capability = capability;
    
    	if (p->dtmfmode) {
    		if (p->dtmfmode & H323_DTMF_RFC2833)
    			p->nonCodecCapability |= AST_RTP_DTMF;
    		else
    			p->nonCodecCapability &= ~AST_RTP_DTMF;
    	}
    
    
    	ast_log(LOG_DEBUG, "Host: %s\tUsername: %s\n", host, p->username);
    
    	if (ext)
    		strncpy(p->username, ext, sizeof(p->username) - 1);
    	tmpc = oh323_new(p, AST_STATE_DOWN, host);
    	if (!tmpc)
    		oh323_destroy(p);
    	
    	restart_monitor();
    	
    	return tmpc;
    }
    
    struct oh323_alias *find_alias(const char *source_aliases)
    {
    	struct oh323_alias *a;
    
    	a = aliasl.aliases;
    
    	while(a) {
    
    		if (!strcasecmp(a->name, source_aliases)) {
    			break;
    		}
    		a = a->next;
    	}
    	return a;
    }
    
    struct oh323_user *find_user(const char *source_aliases)
    {
    	struct oh323_user *u;
    
    	u = userl.users;
    
    	while(u) {
    
    		if (!strcasecmp(u->name, source_aliases)) {
    			break;
    		}
    		u = u->next;
    	}
    	return u;
    
    }
    
    struct oh323_peer *find_peer(char *dest_peer)
    {
    	struct oh323_peer *p;
    
    	p = peerl.peers;
    
    	while(p) {
    		if (!strcasecmp(p->name, dest_peer)) {
    			break;
    		}
    		p = p->next;
    	}
    	return p;
    
    }
    
    /**
      * Callback for sending digits from H.323 up to asterisk
      *
      */
    int send_digit(unsigned call_reference, char digit)
    {
    	struct oh323_pvt *p;
    	struct ast_frame f;
    
    	ast_log(LOG_DEBUG, "Recieved Digit: %c\n", digit);
    	p = find_call(call_reference);
    	
    	if (!p) {
    		ast_log(LOG_ERROR, "Private structure not found in send_digit.\n");
    		return -1;
    	}
    	memset(&f, 0, sizeof(f));
    	f.frametype = AST_FRAME_DTMF;
        f.subclass = digit;
        f.datalen = 0;
        f.samples = 300;
    	f.offset = 0;
    	f.data = NULL;
        f.mallocd = 0;
        f.src = "SEND_DIGIT";
       	
    	return ast_queue_frame(p->owner, &f, 1);	
    }
    
    /**
      * Call-back function that gets called when any H.323 connection is made
      *
      * Returns the local RTP port
      */
    int create_connection(unsigned call_reference)
    {	
    	struct oh323_pvt *p;
    	struct sockaddr_in us;
    
    	p = find_call(call_reference);
    
    	if (!p) {
    		ast_log(LOG_ERROR, "Unable to allocate private structure, this is very bad.\n");
    		return -1;
    	}
    
    	/* figure out our local RTP port and tell the H.323 stack about it*/
    	ast_rtp_get_us(p->rtp, &us);
    	return ntohs(us.sin_port);
    }
    
    /**
     *  Call-back function for incoming calls
     *
     *  Returns 1 on success
     */
    
    int setup_incoming_call(call_details_t cd)
    {
    	
    	struct oh323_pvt *p = NULL;
    	struct ast_channel *c = NULL;
    	struct oh323_user *user = NULL;
    	struct oh323_alias *alias = NULL;
    
    	/* allocate the call*/
    	p = oh323_alloc(cd.call_reference);
    
    	if (!p) {
    		ast_log(LOG_ERROR, "Unable to allocate private structure, this is bad.\n");
    		return 0;
    	}
    
    	/* Populate the call details in the private structure */
    	p->cd.call_token = cd.call_token;
    	p->cd.call_source_aliases = cd.call_source_aliases;
    	p->cd.call_dest_alias = cd.call_dest_alias;
    	p->cd.call_source_e164 = cd.call_source_e164;
    	p->cd.call_dest_e164 = cd.call_dest_e164;
    
    	if (h323debug) {
    		printf("	== Setting up Call\n");
    		printf("	   -- Calling party name:  %s\n", p->cd.call_source_aliases);
    		printf("	   -- Calling party number:  %s\n", p->cd.call_source_e164);
    		printf("	   -- Called  party name:  %s\n", p->cd.call_dest_alias);
    		printf("	   -- Called  party number:  %s\n", p->cd.call_dest_e164);
    	}
    
    	/* Decide if we are allowing Gatekeeper routed calls*/
    	if ((!strcasecmp(cd.sourceIp, gatekeeper)) && (gkroute == -1) && (usingGk == 1)) {
    		
    		if (strlen(cd.call_dest_e164)) {
    			strncpy(p->exten, cd.call_dest_e164, sizeof(p->exten)-1);
    			strncpy(p->context, default_context, sizeof(p->context)-1); 
    		} else {
    			alias = find_alias(cd.call_dest_alias);
    		
    			if (!alias) {
    				ast_log(LOG_ERROR, "Call for %s rejected, alias not found\n", cd.call_dest_alias);
    				return 0;
    			}
    			printf("Alias found: %s and %s\n", alias->name, alias->context);
    
    			strncpy(p->exten, alias->name, sizeof(p->exten)-1);
    			strncpy(p->context, alias->context, sizeof(p->context)-1);
    		}
    
    		sprintf(p->callerid, "%s <%s>", p->cd.call_source_aliases, p->cd.call_source_e164);
    
    	} else { 
    		/* Either this call is not from the Gatekeeper 
    		   or we are not allowing gk routed calls */
    		
    		user  = find_user(cd.call_source_aliases);
    		
    		if (!user) {
    			sprintf(p->callerid, "%s <%s>", p->cd.call_source_aliases, p->cd.call_source_e164); 
    			if (strlen(p->cd.call_dest_e164)) {
    				strncpy(p->exten, cd.call_dest_e164, sizeof(p->exten)-1);
    			} else {
    				strncpy(p->exten, cd.call_dest_alias, sizeof(p->exten)-1);		
    			}
    			if (!strlen(default_context)) {
    				ast_log(LOG_ERROR, "Call from user '%s' rejected due to no default context\n", p->cd.call_source_aliases);
    				return 0;
    			}
    			strncpy(p->context, default_context, sizeof(p->context)-1);
    			ast_log(LOG_DEBUG, "Sending %s to context [%s]\n", cd.call_source_aliases, p->context);
    		} else {
    
    			if (user->host) {
    				if (strcasecmp(cd.sourceIp, inet_ntoa(user->addr.sin_addr))){
    
    					
    					if(!strlen(default_context)) {
    						ast_log(LOG_ERROR, "Call from user '%s' rejected due to non-matching IP address of '%s'\n", user->name, cd.sourceIp);
                    		return 0;
    					}
    					strncpy(p->context, default_context, sizeof(p->context)-1);
    					sprintf(p->exten,"i");
    					goto exit;					
    
    			if (user->incominglimit > 0) {
    				if (user->inUse >= user->incominglimit) {
    					ast_log(LOG_ERROR, "Call from user '%s' rejected due to usage limit of %d\n", user->name, user->incominglimit);
    					return 0;
    				}
    			}
    			strncpy(p->context, user->context, sizeof(p->context)-1);
    			p->bridge = user->bridge;
    
    			if (strlen(user->callerid) && strlen(p->callerid)) 
    				strncpy(p->callerid, user->callerid, sizeof(p->callerid) - 1);
    			else
    				sprintf(p->callerid, "%s <%s>", p->cd.call_source_aliases, p->cd.call_source_e164); 
    	
    			if (strlen(p->cd.call_dest_e164)) {
    				strncpy(p->exten, cd.call_dest_e164, sizeof(p->exten)-1);
    			} else {
    				strncpy(p->exten, cd.call_dest_alias, sizeof(p->exten)-1);		
    			}
    
    			if (strlen(user->accountcode)) {
    				strncpy(p->accountcode, user->accountcode, sizeof(p->accountcode)-1);
    
    Jeremy McNamara's avatar
    Jeremy McNamara committed
    			} 
    
    			/* Increment the usage counter */
    			user->inUse++;
    		}