blob: 79b3a9ad3ea2fef38db1777aedc2b5ffe66850cd [file] [log] [blame]
/* $Id: confsample.c 4537 2013-06-19 06:47:43Z riza $ */
/*
* Copyright (C) 2008-2011 Teluu Inc. (http://www.teluu.com)
* Copyright (C) 2003-2008 Benny Prijono <benny@prijono.org>
*
* 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., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
*/
#include <pjmedia.h>
#include <pjlib-util.h> /* pj_getopt */
#include <pjlib.h>
#include <stdlib.h> /* atoi() */
#include <stdio.h>
#include "util.h"
/**
* \page page_pjmedia_samples_confsample_c Samples: Using Conference Bridge
*
* Sample to mix multiple files in the conference bridge and play the
* result to sound device.
*
* This file is pjsip-apps/src/samples/confsample.c
*
* \includelineno confsample.c
*/
/* For logging purpose. */
#define THIS_FILE "confsample.c"
/* Shall we put recorder in the conference */
#define RECORDER 1
static const char *desc =
" FILE: \n"
" \n"
" confsample.c \n"
" \n"
" PURPOSE: \n"
" \n"
" Demonstrate how to use conference bridge. \n"
" \n"
" USAGE: \n"
" \n"
" confsample [options] [file1.wav] [file2.wav] ... \n"
" \n"
" options: \n"
SND_USAGE
" \n"
" fileN.wav are optional WAV files to be connected to the conference \n"
" bridge. The WAV files MUST have single channel (mono) and 16 bit PCM \n"
" samples. It can have arbitrary sampling rate. \n"
" \n"
" DESCRIPTION: \n"
" \n"
" Here we create a conference bridge, with at least one port (port zero \n"
" is always created for the sound device). \n"
" \n"
" If WAV files are specified, the WAV file player ports will be connected \n"
" to slot starting from number one in the bridge. The WAV files can have \n"
" arbitrary sampling rate; the bridge will convert it to its clock rate. \n"
" However, the files MUST have a single audio channel only (i.e. mono). \n";
/*
* Prototypes:
*/
/* List the ports in the conference bridge */
static void conf_list(pjmedia_conf *conf, pj_bool_t detail);
/* Display VU meter */
static void monitor_level(pjmedia_conf *conf, int slot, int dir, int dur);
/* Show usage */
static void usage(void)
{
puts("");
puts(desc);
}
/* Input simple string */
static pj_bool_t input(const char *title, char *buf, pj_size_t len)
{
char *p;
printf("%s (empty to cancel): ", title); fflush(stdout);
if (fgets(buf, (int)len, stdin) == NULL)
return PJ_FALSE;
/* Remove trailing newlines. */
for (p=buf; ; ++p) {
if (*p=='\r' || *p=='\n') *p='\0';
else if (!*p) break;
}
if (!*buf)
return PJ_FALSE;
return PJ_TRUE;
}
/*****************************************************************************
* main()
*/
int main(int argc, char *argv[])
{
int dev_id = -1;
int clock_rate = CLOCK_RATE;
int channel_count = NCHANNELS;
int samples_per_frame = NSAMPLES;
int bits_per_sample = NBITS;
pj_caching_pool cp;
pjmedia_endpt *med_endpt;
pj_pool_t *pool;
pjmedia_conf *conf;
int i, port_count, file_count;
pjmedia_port **file_port; /* Array of file ports */
pjmedia_port *rec_port = NULL; /* Wav writer port */
char tmp[10];
pj_status_t status;
/* Must init PJLIB first: */
status = pj_init();
PJ_ASSERT_RETURN(status == PJ_SUCCESS, 1);
/* Get command line options. */
if (get_snd_options(THIS_FILE, argc, argv, &dev_id, &clock_rate,
&channel_count, &samples_per_frame, &bits_per_sample))
{
usage();
return 1;
}
/* Must create a pool factory before we can allocate any memory. */
pj_caching_pool_init(&cp, &pj_pool_factory_default_policy, 0);
/*
* Initialize media endpoint.
* This will implicitly initialize PJMEDIA too.
*/
status = pjmedia_endpt_create(&cp.factory, NULL, 1, &med_endpt);
PJ_ASSERT_RETURN(status == PJ_SUCCESS, 1);
/* Create memory pool to allocate memory */
pool = pj_pool_create( &cp.factory, /* pool factory */
"wav", /* pool name. */
4000, /* init size */
4000, /* increment size */
NULL /* callback on error */
);
file_count = argc - pj_optind;
port_count = file_count + 1 + RECORDER;
/* Create the conference bridge.
* With default options (zero), the bridge will create an instance of
* sound capture and playback device and connect them to slot zero.
*/
status = pjmedia_conf_create( pool, /* pool to use */
port_count,/* number of ports */
clock_rate,
channel_count,
samples_per_frame,
bits_per_sample,
0, /* options */
&conf /* result */
);
if (status != PJ_SUCCESS) {
app_perror(THIS_FILE, "Unable to create conference bridge", status);
return 1;
}
#if RECORDER
status = pjmedia_wav_writer_port_create( pool, "confrecord.wav",
clock_rate, channel_count,
samples_per_frame,
bits_per_sample, 0, 0,
&rec_port);
if (status != PJ_SUCCESS) {
app_perror(THIS_FILE, "Unable to create WAV writer", status);
return 1;
}
pjmedia_conf_add_port(conf, pool, rec_port, NULL, NULL);
#endif
/* Create file ports. */
file_port = pj_pool_alloc(pool, file_count * sizeof(pjmedia_port*));
for (i=0; i<file_count; ++i) {
/* Load the WAV file to file port. */
status = pjmedia_wav_player_port_create(
pool, /* pool. */
argv[i+pj_optind], /* filename */
0, /* use default ptime */
0, /* flags */
0, /* buf size */
&file_port[i] /* result */
);
if (status != PJ_SUCCESS) {
char title[80];
pj_ansi_sprintf(title, "Unable to use %s", argv[i+pj_optind]);
app_perror(THIS_FILE, title, status);
usage();
return 1;
}
/* Add the file port to conference bridge */
status = pjmedia_conf_add_port( conf, /* The bridge */
pool, /* pool */
file_port[i], /* port to connect */
NULL, /* Use port's name */
NULL /* ptr for slot # */
);
if (status != PJ_SUCCESS) {
app_perror(THIS_FILE, "Unable to add conference port", status);
return 1;
}
}
/*
* All ports are set up in the conference bridge.
* But at this point, no media will be flowing since no ports are
* "connected". User must connect the port manually.
*/
/* Dump memory usage */
dump_pool_usage(THIS_FILE, &cp);
/* Sleep to allow log messages to flush */
pj_thread_sleep(100);
/*
* UI Menu:
*/
for (;;) {
char tmp1[10];
char tmp2[10];
char *err;
int src, dst, level, dur;
puts("");
conf_list(conf, 0);
puts("");
puts("Menu:");
puts(" s Show ports details");
puts(" c Connect one port to another");
puts(" d Disconnect port connection");
puts(" t Adjust signal level transmitted (tx) to a port");
puts(" r Adjust signal level received (rx) from a port");
puts(" v Display VU meter for a particular port");
puts(" q Quit");
puts("");
printf("Enter selection: "); fflush(stdout);
if (fgets(tmp, sizeof(tmp), stdin) == NULL)
break;
switch (tmp[0]) {
case 's':
puts("");
conf_list(conf, 1);
break;
case 'c':
puts("");
puts("Connect source port to destination port");
if (!input("Enter source port number", tmp1, sizeof(tmp1)) )
continue;
src = strtol(tmp1, &err, 10);
if (*err || src < 0 || src >= port_count) {
puts("Invalid slot number");
continue;
}
if (!input("Enter destination port number", tmp2, sizeof(tmp2)) )
continue;
dst = strtol(tmp2, &err, 10);
if (*err || dst < 0 || dst >= port_count) {
puts("Invalid slot number");
continue;
}
status = pjmedia_conf_connect_port(conf, src, dst, 0);
if (status != PJ_SUCCESS)
app_perror(THIS_FILE, "Error connecting port", status);
break;
case 'd':
puts("");
puts("Disconnect port connection");
if (!input("Enter source port number", tmp1, sizeof(tmp1)) )
continue;
src = strtol(tmp1, &err, 10);
if (*err || src < 0 || src >= port_count) {
puts("Invalid slot number");
continue;
}
if (!input("Enter destination port number", tmp2, sizeof(tmp2)) )
continue;
dst = strtol(tmp2, &err, 10);
if (*err || dst < 0 || dst >= port_count) {
puts("Invalid slot number");
continue;
}
status = pjmedia_conf_disconnect_port(conf, src, dst);
if (status != PJ_SUCCESS)
app_perror(THIS_FILE, "Error connecting port", status);
break;
case 't':
puts("");
puts("Adjust transmit level of a port");
if (!input("Enter port number", tmp1, sizeof(tmp1)) )
continue;
src = strtol(tmp1, &err, 10);
if (*err || src < 0 || src >= port_count) {
puts("Invalid slot number");
continue;
}
if (!input("Enter level (-128 to >127, 0 for normal)",
tmp2, sizeof(tmp2)) )
continue;
level = strtol(tmp2, &err, 10);
if (*err || level < -128) {
puts("Invalid level");
continue;
}
status = pjmedia_conf_adjust_tx_level( conf, src, level);
if (status != PJ_SUCCESS)
app_perror(THIS_FILE, "Error adjusting level", status);
break;
case 'r':
puts("");
puts("Adjust receive level of a port");
if (!input("Enter port number", tmp1, sizeof(tmp1)) )
continue;
src = strtol(tmp1, &err, 10);
if (*err || src < 0 || src >= port_count) {
puts("Invalid slot number");
continue;
}
if (!input("Enter level (-128 to >127, 0 for normal)",
tmp2, sizeof(tmp2)) )
continue;
level = strtol(tmp2, &err, 10);
if (*err || level < -128) {
puts("Invalid level");
continue;
}
status = pjmedia_conf_adjust_rx_level( conf, src, level);
if (status != PJ_SUCCESS)
app_perror(THIS_FILE, "Error adjusting level", status);
break;
case 'v':
puts("");
puts("Display VU meter");
if (!input("Enter port number to monitor", tmp1, sizeof(tmp1)) )
continue;
src = strtol(tmp1, &err, 10);
if (*err || src < 0 || src >= port_count) {
puts("Invalid slot number");
continue;
}
if (!input("Enter r for rx level or t for tx level", tmp2, sizeof(tmp2)))
continue;
if (tmp2[0] != 'r' && tmp2[0] != 't') {
puts("Invalid option");
continue;
}
if (!input("Duration to monitor (in seconds)", tmp1, sizeof(tmp1)) )
continue;
dur = strtol(tmp1, &err, 10);
if (*err) {
puts("Invalid duration number");
continue;
}
monitor_level(conf, src, tmp2[0], dur);
break;
case 'q':
goto on_quit;
default:
printf("Invalid input character '%c'\n", tmp[0]);
break;
}
}
on_quit:
/* Start deinitialization: */
/* Destroy conference bridge */
status = pjmedia_conf_destroy( conf );
PJ_ASSERT_RETURN(status == PJ_SUCCESS, 1);
/* Destroy file ports */
for (i=0; i<file_count; ++i) {
status = pjmedia_port_destroy( file_port[i]);
PJ_ASSERT_RETURN(status == PJ_SUCCESS, 1);
}
/* Destroy recorder port */
if (rec_port)
pjmedia_port_destroy(rec_port);
/* Release application pool */
pj_pool_release( pool );
/* Destroy media endpoint. */
pjmedia_endpt_destroy( med_endpt );
/* Destroy pool factory */
pj_caching_pool_destroy( &cp );
/* Shutdown PJLIB */
pj_shutdown();
/* Done. */
return 0;
}
/*
* List the ports in conference bridge
*/
static void conf_list(pjmedia_conf *conf, int detail)
{
enum { MAX_PORTS = 32 };
unsigned i, count;
pjmedia_conf_port_info info[MAX_PORTS];
printf("Conference ports:\n");
count = PJ_ARRAY_SIZE(info);
pjmedia_conf_get_ports_info(conf, &count, info);
for (i=0; i<count; ++i) {
char txlist[4*MAX_PORTS];
unsigned j;
pjmedia_conf_port_info *port_info = &info[i];
txlist[0] = '\0';
for (j=0; j<port_info->listener_cnt; ++j) {
char s[10];
pj_ansi_sprintf(s, "#%d ", port_info->listener_slots[j]);
pj_ansi_strcat(txlist, s);
}
if (txlist[0] == '\0') {
txlist[0] = '-';
txlist[1] = '\0';
}
if (!detail) {
printf("Port #%02d %-25.*s transmitting to: %s\n",
port_info->slot,
(int)port_info->name.slen,
port_info->name.ptr,
txlist);
} else {
unsigned tx_level, rx_level;
pjmedia_conf_get_signal_level(conf, port_info->slot,
&tx_level, &rx_level);
printf("Port #%02d:\n"
" Name : %.*s\n"
" Sampling rate : %d Hz\n"
" Samples per frame : %d\n"
" Frame time : %d ms\n"
" Signal level adjustment : tx=%d, rx=%d\n"
" Current signal level : tx=%u, rx=%u\n"
" Transmitting to ports : %s\n\n",
port_info->slot,
(int)port_info->name.slen,
port_info->name.ptr,
port_info->clock_rate,
port_info->samples_per_frame,
port_info->samples_per_frame*1000/port_info->clock_rate,
port_info->tx_adj_level,
port_info->rx_adj_level,
tx_level,
rx_level,
txlist);
}
}
puts("");
}
/*
* Display VU meter
*/
static void monitor_level(pjmedia_conf *conf, int slot, int dir, int dur)
{
enum { SLEEP = 20, SAMP_CNT = 2};
pj_status_t status;
int i, total_count;
unsigned level, samp_cnt;
puts("");
printf("Displaying VU meter for port %d for about %d seconds\n",
slot, dur);
total_count = dur * 1000 / SLEEP;
level = 0;
samp_cnt = 0;
for (i=0; i<total_count; ++i) {
unsigned tx_level, rx_level;
int j, length;
char meter[21];
/* Poll the volume every 20 msec */
status = pjmedia_conf_get_signal_level(conf, slot,
&tx_level, &rx_level);
if (status != PJ_SUCCESS) {
app_perror(THIS_FILE, "Unable to read level", status);
return;
}
level += (dir=='r' ? rx_level : tx_level);
++samp_cnt;
/* Accumulate until we have enough samples */
if (samp_cnt < SAMP_CNT) {
pj_thread_sleep(SLEEP);
continue;
}
/* Get average */
level = level / samp_cnt;
/* Draw bar */
length = 20 * level / 255;
for (j=0; j<length; ++j)
meter[j] = '#';
for (; j<20; ++j)
meter[j] = ' ';
meter[20] = '\0';
printf("Port #%02d %cx level: [%s] %d \r",
slot, dir, meter, level);
/* Next.. */
samp_cnt = 0;
level = 0;
pj_thread_sleep(SLEEP);
}
puts("");
}