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			380 lines
		
	
	
		
			10 KiB
		
	
	
	
		
			C
		
	
	
		
			Executable File
		
	
	
	
	
			
		
		
	
	
			380 lines
		
	
	
		
			10 KiB
		
	
	
	
		
			C
		
	
	
		
			Executable File
		
	
	
	
	
| /*
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|  * Asterisk -- A telephony toolkit for Linux.
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|  *
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|  * Translate via the use of pseudo channels
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|  * 
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|  * Copyright (C) 1999, Mark Spencer
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|  *
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|  * Mark Spencer <markster@linux-support.net>
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|  *
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|  * This program is free software, distributed under the terms of
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|  * the GNU General Public License
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|  */
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| 
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| #include <asterisk/lock.h>
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| #include <asterisk/channel.h>
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| #include <asterisk/channel_pvt.h>
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| #include <asterisk/logger.h>
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| #include <asterisk/translate.h>
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| #include <asterisk/options.h>
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| #include <asterisk/frame.h>
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| #include <asterisk/sched.h>
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| #include <asterisk/cli.h>
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| #include <asterisk/term.h>
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| #include <sys/socket.h>
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| #include <sys/time.h>
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| #include <unistd.h>
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| #include <stdlib.h>
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| #include <pthread.h>
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| #include <string.h>
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| #include <stdio.h>
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| 
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| /* Uncomment the EXPERIMENTAL_TRANSLATION to enable a more complicated, but probably more
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|    correct way of handling full duplex translation */
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| 
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| /*
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| #define EXPERIMENTAL_TRANSLATION
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| */
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| 
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| /* This could all be done more efficiently *IF* we chained packets together
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|    by default, but it would also complicate virtually every application. */
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|    
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| static ast_mutex_t list_lock = AST_MUTEX_INITIALIZER;
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| static struct ast_translator *list = NULL;
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| 
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| struct ast_translator_dir {
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| 	struct ast_translator *step;	/* Next step translator */
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| 	int cost;						/* Complete cost to destination */
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| };
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| 
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| struct ast_frame_delivery {
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| 	struct ast_frame *f;
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| 	struct ast_channel *chan;
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| 	int fd;
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| 	struct translator_pvt *owner;
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| 	struct ast_frame_delivery *prev;
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| 	struct ast_frame_delivery *next;
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| };
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| 
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| static struct ast_translator_dir tr_matrix[MAX_FORMAT][MAX_FORMAT];
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| 
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| struct ast_trans_pvt {
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| 	struct ast_translator *step;
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| 	struct ast_translator_pvt *state;
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| 	struct ast_trans_pvt *next;
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| };
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| 
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| 
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| static int powerof(int d)
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| {
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| 	int x;
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| 	for (x = 0; x < 32; x++)
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| 		if ((1 << x) & d)
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| 			return x;
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| 	ast_log(LOG_WARNING, "Powerof %d: No power??\n", d);
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| 	return -1;
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| }
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| 
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| void ast_translator_free_path(struct ast_trans_pvt *p)
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| {
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| 	struct ast_trans_pvt *pl;
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| 	while(p) {
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| 		pl = p;
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| 		p = p->next;
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| 		if (pl->state && pl->step->destroy)
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| 			pl->step->destroy(pl->state);
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| 		free(pl);
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| 	}
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| }
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| 
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| struct ast_trans_pvt *ast_translator_build_path(int dest, int source)
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| {
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| 	struct ast_trans_pvt *tmpr = NULL, *tmp = NULL;
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| 	/* One of the hardest parts:  Build a set of translators based upon
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| 	   the given source and destination formats */
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| 	source = powerof(source);
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| 	dest = powerof(dest);
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| 	while(source != dest) {
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| 		if (tr_matrix[source][dest].step) {
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| 			if (tmp) {
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| 				tmp->next = malloc(sizeof(struct ast_trans_pvt));
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| 				tmp = tmp->next;
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| 			} else
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| 				tmp = malloc(sizeof(struct ast_trans_pvt));
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| 
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| 				
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| 			if (tmp) {
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| 				tmp->next = NULL;
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| 				tmp->step = tr_matrix[source][dest].step;
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| 				tmp->state = tmp->step->new();
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| 				if (!tmp->state) {
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| 					ast_log(LOG_WARNING, "Failed to build translator step from %d to %d\n", source, dest);
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| 					free(tmp);
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| 					tmp = NULL;
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| 					return NULL;
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| 				}
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| 				/* Set the root, if it doesn't exist yet... */
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| 				if (!tmpr)
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| 					tmpr = tmp;
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| 				/* Keep going if this isn't the final destination */
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| 				source = tmp->step->dstfmt;
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| 			} else {
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| 				/* XXX This could leak XXX */
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| 				ast_log(LOG_WARNING, "Out of memory\n");
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| 				return NULL;
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| 			}
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| 		} else {
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| 			/* We shouldn't have allocated any memory */
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| 			ast_log(LOG_WARNING, "No translator path from %s to %s\n", 
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| 				ast_getformatname(source), ast_getformatname(dest));
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| 			return NULL;
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| 		}
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| 	}
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| 	return tmpr;
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| }
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| 
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| struct ast_frame *ast_translate(struct ast_trans_pvt *path, struct ast_frame *f, int consume)
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| {
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| 	struct ast_trans_pvt *p;
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| 	struct ast_frame *out;
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| 	p = path;
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| 	/* Feed the first frame into the first translator */
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| 	p->step->framein(p->state, f);
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| 	if (consume)
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| 		ast_frfree(f);
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| 	while(p) {
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| 		out = p->step->frameout(p->state);
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| 		/* If we get nothing out, return NULL */
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| 		if (!out)
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| 			return NULL;
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| 		/* If there is a next state, feed it in there.  If not,
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| 		   return this frame  */
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| 		if (p->next) 
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| 			p->next->step->framein(p->next->state, out);
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| 		else
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| 			return out;
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| 		p = p->next;
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| 	}
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| 	ast_log(LOG_WARNING, "I should never get here...\n");
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| 	return NULL;
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| }
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| 
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| static void rebuild_matrix(void)
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| {
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| 	struct ast_translator *t;
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| 	int changed;
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| 	int x,y,z;
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| 	if (option_debug)
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| 		ast_log(LOG_DEBUG, "Reseting translation matrix\n");
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| 	/* Use the list of translators to build a translation matrix */
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| 	bzero(tr_matrix, sizeof(tr_matrix));
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| 	t = list;
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| 	while(t) {
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| 		if (!tr_matrix[t->srcfmt][t->dstfmt].step ||
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| 		     tr_matrix[t->srcfmt][t->dstfmt].cost > t->cost) {
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| 			tr_matrix[t->srcfmt][t->dstfmt].step = t;
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| 			tr_matrix[t->srcfmt][t->dstfmt].cost = t->cost;
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| 		}
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| 		t = t->next;
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| 	}
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| 	do {
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| 		changed = 0;
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| 		/* Don't you just love O(N^3) operations? */
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| 		for (x=0; x< MAX_FORMAT; x++)				/* For each source format */
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| 			for (y=0; y < MAX_FORMAT; y++) 			/* And each destination format */
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| 				if (x != y)							/* Except ourselves, of course */
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| 					for (z=0; z < MAX_FORMAT; z++) 	/* And each format it might convert to */
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| 						if ((x!=z) && (y!=z)) 		/* Don't ever convert back to us */
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| 							if (tr_matrix[x][y].step && /* We can convert from x to y */
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| 								tr_matrix[y][z].step && /* And from y to z and... */
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| 								(!tr_matrix[x][z].step || 	/* Either there isn't an x->z conversion */
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| 								(tr_matrix[x][y].cost + 
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| 								 tr_matrix[y][z].cost <	/* Or we're cheaper than the existing */
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| 								 tr_matrix[x][z].cost)  /* solution */
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| 							     )) {
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| 								 			/* We can get from x to z via y with a cost that
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| 											   is the sum of the transition from x to y and
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| 											   from y to z */
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| 								 
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| 								 	tr_matrix[x][z].step = tr_matrix[x][y].step;
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| 									tr_matrix[x][z].cost = tr_matrix[x][y].cost + 
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| 														   tr_matrix[y][z].cost;
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| 									if (option_debug)
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| 										ast_log(LOG_DEBUG, "Discovered %d cost path from %s to %s, via %d\n", tr_matrix[x][z].cost, ast_getformatname(x), ast_getformatname(z), y);
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| 									changed++;
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| 								 }
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| 		
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| 	} while (changed);
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| }
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| 
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| static void calc_cost(struct ast_translator *t)
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| {
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| 	int sofar=0;
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| 	struct ast_translator_pvt *pvt;
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| 	struct ast_frame *f, *out;
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| 	struct timeval start, finish;
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| 	int cost;
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| 	/* If they don't make samples, give them a terrible score */
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| 	if (!t->sample) {
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| 		ast_log(LOG_WARNING, "Translator '%s' does not produce sample frames.\n", t->name);
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| 		t->cost = 99999;
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| 		return;
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| 	}
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| 	pvt = t->new();
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| 	if (!pvt) {
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| 		ast_log(LOG_WARNING, "Translator '%s' appears to be broken and will probably fail.\n", t->name);
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| 		t->cost = 99999;
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| 		return;
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| 	}
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| 	gettimeofday(&start, NULL);
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| 	/* Call the encoder until we've processed one second of time */
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| 	while(sofar < 8000) {
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| 		f = t->sample();
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| 		if (!f) {
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| 			ast_log(LOG_WARNING, "Translator '%s' failed to produce a sample frame.\n", t->name);
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| 			t->destroy(pvt);
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| 			t->cost = 99999;
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| 			return;
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| 		}
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| 		t->framein(pvt, f);
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| 		ast_frfree(f);
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| 		while((out = t->frameout(pvt))) {
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| 			sofar += out->samples;
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| 			ast_frfree(out);
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| 		}
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| 	}
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| 	gettimeofday(&finish, NULL);
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| 	t->destroy(pvt);
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| 	cost = (finish.tv_sec - start.tv_sec) * 1000 + (finish.tv_usec - start.tv_usec) / 1000;
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| 	t->cost = cost;
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| 	if (!t->cost)
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| 		t->cost = 1;
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| }
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| 
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| static int show_translation(int fd, int argc, char *argv[])
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| {
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| #define SHOW_TRANS 11
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| 	int x,y;
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| 	char line[80];
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| 	if (argc != 2) 
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| 		return RESULT_SHOWUSAGE;
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| 	ast_cli(fd, "         Translation times between formats (in milliseconds)\n");
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| 	ast_cli(fd, "          Source Format (Rows) Destination Format(Columns)\n\n");
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| 	ast_mutex_lock(&list_lock);
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| 	for (x=-1;x<SHOW_TRANS; x++) {
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| 		strcpy(line, " ");
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| 		for (y=-1;y<SHOW_TRANS;y++) {
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| 			/* Skip MP3 (y = 4) as Destination format */
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| 			if (y != 4 && x >= 0 && y >= 0 && tr_matrix[x][y].step)
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| 				snprintf(line + strlen(line), sizeof(line) - strlen(line), " %6d", tr_matrix[x][y].cost);
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| 			else
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| 				if ((y != 4) && ((x == -1 && y >= 0) || (y == -1 && x >= 0))) {
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| 					snprintf(line + strlen(line), sizeof(line) - strlen(line), 
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| 						" %6s", ast_getformatname(1<<(x+y+1)) );
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| 				} else if (x != -1 && y != -1 && y != 4) {
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| 					snprintf(line + strlen(line), sizeof(line) - strlen(line), "      -");
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| 				} else if (y != 4) {
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| 					snprintf(line + strlen(line), sizeof(line) - strlen(line), "       ");
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| 				}
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| 		}
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| 		snprintf(line + strlen(line), sizeof(line) - strlen(line), "\n");
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| 		ast_cli(fd, line);			
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| 	}
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| 	ast_mutex_unlock(&list_lock);
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| 	return RESULT_SUCCESS;
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| }
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| 
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| static int added_cli = 0;
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| 
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| static char show_trans_usage[] =
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| "Usage: show translation\n"
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| "       Displays known codec translators and the cost associated\n"
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| "with each conversion.\n";
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| 
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| static struct ast_cli_entry show_trans =
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| { { "show", "translation", NULL }, show_translation, "Display translation matrix", show_trans_usage };
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| 
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| int ast_register_translator(struct ast_translator *t)
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| {
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| 	char tmp[80];
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| 	t->srcfmt = powerof(t->srcfmt);
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| 	t->dstfmt = powerof(t->dstfmt);
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| 	if ((t->srcfmt >= MAX_FORMAT) || (t->dstfmt >= MAX_FORMAT)) {
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| 		ast_log(LOG_WARNING, "Format %s is larger than MAX_FORMAT\n", ast_getformatname(t->srcfmt));
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| 		return -1;
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| 	}
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| 	calc_cost(t);
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| 	if (option_verbose > 1)
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| 		ast_verbose(VERBOSE_PREFIX_2 "Registered translator '%s' from format %s to %s, cost %d\n", term_color(tmp, t->name, COLOR_MAGENTA, COLOR_BLACK, sizeof(tmp)), ast_getformatname(1 << t->srcfmt), ast_getformatname(1 << t->dstfmt), t->cost);
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| 	ast_mutex_lock(&list_lock);
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| 	if (!added_cli) {
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| 		ast_cli_register(&show_trans);
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| 		added_cli++;
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| 	}
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| 	t->next = list;
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| 	list = t;
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| 	rebuild_matrix();
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| 	ast_mutex_unlock(&list_lock);
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| 	return 0;
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| }
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| 
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| int ast_unregister_translator(struct ast_translator *t)
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| {
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| 	struct ast_translator *u, *ul = NULL;
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| 	ast_mutex_lock(&list_lock);
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| 	u = list;
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| 	while(u) {
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| 		if (u == t) {
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| 			if (ul)
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| 				ul->next = u->next;
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| 			else
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| 				list = u->next;
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| 			break;
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| 		}
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| 		ul = u;
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| 		u = u->next;
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| 	}
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| 	rebuild_matrix();
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| 	ast_mutex_unlock(&list_lock);
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| 	return (u ? 0 : -1);
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| }
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| 
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| int ast_translator_best_choice(int *dst, int *srcs)
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| {
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| 	/* Calculate our best source format, given costs, and a desired destination */
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| 	int x,y;
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| 	int best=-1;
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| 	int bestdst=0;
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| 	int cur = 1;
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| 	int besttime=999999999;
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| 	ast_mutex_lock(&list_lock);
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| 	for (y=0;y<MAX_FORMAT;y++) {
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| 		if ((cur & *dst) && (cur & *srcs)) {
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| 			/* This is a common format to both.  Pick it if we don't have one already */
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| 			besttime=0;
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| 			bestdst = cur;
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| 			best = cur;
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| 			break;
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| 		}
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| 		if (cur & *dst)
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| 			for (x=0;x<MAX_FORMAT;x++) {
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| 				if (tr_matrix[x][y].step &&	/* There's a step */
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| 			   	 (tr_matrix[x][y].cost < besttime) && /* We're better than what exists now */
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| 					(*srcs & (1 << x)))			/* x is a valid source format */
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| 					{
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| 						best = 1 << x;
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| 						bestdst = cur;
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| 						besttime = tr_matrix[x][y].cost;
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| 					}
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| 			}
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| 		cur = cur << 1;
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| 	}
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| 	if (best > -1) {
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| 		*srcs = best;
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| 		*dst = bestdst;
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| 		best = 0;
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| 	}
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| 	ast_mutex_unlock(&list_lock);
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| 	return best;
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| }
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