2008-09-03 19:02:00 +00:00
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/*
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* SpanDSP - a series of DSP components for telephony
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*
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* sig_tone_tests.c
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*
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* Written by Steve Underwood <steveu@coppice.org>
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*
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* Copyright (C) 2004 Steve Underwood
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*
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* All rights reserved.
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License version 2, as
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* published by the Free Software Foundation.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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*
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2009-06-18 06:13:59 +00:00
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* $Id: sig_tone_tests.c,v 1.25 2009/05/30 15:23:14 steveu Exp $
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2008-09-03 19:02:00 +00:00
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*/
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/*! \file */
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/*! \page sig_tone_tests_page The signaling tone processor tests
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\section sig_tone_tests_sec_1 What does it do?
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???.
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\section sig_tone_tests_sec_2 How does it work?
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???.
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*/
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#if defined(HAVE_CONFIG_H)
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#include "config.h"
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#endif
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#include <stdlib.h>
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#include <stdio.h>
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#include <memory.h>
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2009-06-18 06:13:59 +00:00
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#include <sndfile.h>
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2008-09-03 19:02:00 +00:00
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2009-01-28 04:48:03 +00:00
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//#if defined(WITH_SPANDSP_INTERNALS)
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#define SPANDSP_EXPOSE_INTERNAL_STRUCTURES
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//#endif
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2008-09-03 19:02:00 +00:00
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#include "spandsp.h"
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#include "spandsp-sim.h"
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#define OUT_FILE_NAME "sig_tone.wav"
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#define SAMPLES_PER_CHUNK 160
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static int sampleno = 0;
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static int tone_1_present = 0;
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static int tone_2_present = 0;
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static int ping = 0;
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void map_frequency_response(sig_tone_rx_state_t *s);
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static int tx_handler(void *user_data, int what)
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{
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//printf("What - %d\n", what);
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if ((what & SIG_TONE_UPDATE_REQUEST))
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{
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printf("Tx: update request\n");
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/* The signaling processor wants to know what to do next */
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if (sampleno < ms_to_samples(100))
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{
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/* 100ms off-hook */
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printf("100ms off-hook - %d samples\n", 800 - sampleno);
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return 0x02 | ((ms_to_samples(100) - sampleno) << 16);
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}
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else if (sampleno < ms_to_samples(600))
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{
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/* 500ms idle */
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printf("500ms idle - %d samples\n", ms_to_samples(600) - sampleno);
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return 0x02 | SIG_TONE_1_PRESENT | ((ms_to_samples(600) - sampleno) << 16);
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}
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else if (sampleno < ms_to_samples(700))
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{
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/* 100ms seize */
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printf("100ms seize - %d samples\n", ms_to_samples(700) - sampleno);
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return 0x02 | ((ms_to_samples(700) - sampleno) << 16);
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}
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else if (sampleno < ms_to_samples(1700))
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{
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if (ping)
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{
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printf("33ms break - %d samples\n", ms_to_samples(33));
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ping = !ping;
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return 0x02 | (ms_to_samples(33) << 16);
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}
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else
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{
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printf("67ms make - %d samples\n", ms_to_samples(67));
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ping = !ping;
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return 0x02 | SIG_TONE_1_PRESENT | (ms_to_samples(67) << 16);
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}
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/*endif*/
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}
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else
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{
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return 0x02 | SIG_TONE_1_PRESENT | ((ms_to_samples(700) - sampleno) << 16) | SIG_TONE_TX_PASSTHROUGH;
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}
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/*endif*/
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}
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/*endif*/
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return 0;
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}
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/*- End of function --------------------------------------------------------*/
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static int rx_handler(void *user_data, int what)
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{
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//printf("What - %d\n", what);
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if ((what & SIG_TONE_1_CHANGE))
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{
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tone_1_present = what & SIG_TONE_1_PRESENT;
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printf("Rx: tone 1 is %s after %d samples\n", (tone_1_present) ? "on" : "off", (what >> 16) & 0xFFFF);
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}
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/*endif*/
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if ((what & SIG_TONE_2_CHANGE))
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{
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tone_2_present = what & SIG_TONE_2_PRESENT;
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printf("Rx: tone 2 is %s after %d samples\n", (tone_2_present) ? "on" : "off", (what >> 16) & 0xFFFF);
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}
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/*endif*/
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return 0;
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}
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/*- End of function --------------------------------------------------------*/
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void map_frequency_response(sig_tone_rx_state_t *s)
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{
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int16_t buf[8192];
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awgn_state_t noise_source;
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int i;
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int f;
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uint32_t phase_acc;
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int32_t phase_rate;
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int32_t scaling;
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double sum;
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/* Things like noise don't highlight the frequency response of the high Q notch
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very well. We use a slowly swept frequency to check it. */
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awgn_init_dbm0(&noise_source, 1234567, -10.0f);
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for (f = 1; f < 4000; f++)
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{
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phase_rate = dds_phase_rate(f);
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scaling = dds_scaling_dbm0(-10);
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phase_acc = 0;
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for (i = 0; i < 8192; i++)
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buf[i] = dds_mod(&phase_acc, phase_rate, scaling, 0);
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/*endfor*/
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sig_tone_rx(s, buf, 8192);
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sum = 0.0;
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for (i = 1000; i < 8192; i++)
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sum += (double) buf[i]*(double) buf[i];
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/*endfor*/
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sum = sqrt(sum);
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printf("%7d %f\n", f, sum);
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}
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/*endfor*/
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}
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/*- End of function --------------------------------------------------------*/
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int main(int argc, char *argv[])
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{
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int16_t amp[SAMPLES_PER_CHUNK];
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int16_t out_amp[2*SAMPLES_PER_CHUNK];
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2009-06-18 06:13:59 +00:00
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SNDFILE *outhandle;
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2008-09-03 19:02:00 +00:00
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int outframes;
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int i;
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int type;
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int rx_samples;
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int tx_samples;
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sig_tone_tx_state_t tx_state;
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sig_tone_rx_state_t rx_state;
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awgn_state_t noise_source;
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codec_munge_state_t *munge;
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2009-06-18 06:13:59 +00:00
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if ((outhandle = sf_open_telephony_write(OUT_FILE_NAME, 2)) == NULL)
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2008-09-03 19:02:00 +00:00
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{
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2009-06-18 06:13:59 +00:00
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fprintf(stderr, " Cannot create audio file '%s'\n", OUT_FILE_NAME);
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2008-09-03 19:02:00 +00:00
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exit(2);
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}
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/*endif*/
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awgn_init_dbm0(&noise_source, 1234567, -10.0f);
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for (type = 1; type <= 3; type++)
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{
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sampleno = 0;
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tone_1_present = 0;
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tone_2_present = 0;
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ping = 0;
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munge = NULL;
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switch (type)
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{
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case 1:
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printf("2280Hz tests.\n");
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munge = codec_munge_init(MUNGE_CODEC_ALAW, 0);
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sig_tone_tx_init(&tx_state, SIG_TONE_2280HZ, tx_handler, NULL);
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sig_tone_rx_init(&rx_state, SIG_TONE_2280HZ, rx_handler, NULL);
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rx_state.current_rx_tone |= SIG_TONE_RX_PASSTHROUGH;
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break;
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case 2:
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printf("26000Hz tests.\n");
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munge = codec_munge_init(MUNGE_CODEC_ULAW, 0);
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sig_tone_tx_init(&tx_state, SIG_TONE_2600HZ, tx_handler, NULL);
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sig_tone_rx_init(&rx_state, SIG_TONE_2600HZ, rx_handler, NULL);
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rx_state.current_rx_tone |= SIG_TONE_RX_PASSTHROUGH;
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break;
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case 3:
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printf("2400Hz/26000Hz tests.\n");
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munge = codec_munge_init(MUNGE_CODEC_ULAW, 0);
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sig_tone_tx_init(&tx_state, SIG_TONE_2400HZ_2600HZ, tx_handler, NULL);
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sig_tone_rx_init(&rx_state, SIG_TONE_2400HZ_2600HZ, rx_handler, NULL);
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rx_state.current_rx_tone |= SIG_TONE_RX_PASSTHROUGH;
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break;
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}
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/*endswitch*/
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//map_frequency_response(&rx_state);
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for (sampleno = 0; sampleno < 20000; sampleno += SAMPLES_PER_CHUNK)
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{
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for (i = 0; i < SAMPLES_PER_CHUNK; i++)
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amp[i] = awgn(&noise_source);
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/*endfor*/
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tx_samples = sig_tone_tx(&tx_state, amp, SAMPLES_PER_CHUNK);
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for (i = 0; i < tx_samples; i++)
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out_amp[2*i] = amp[i];
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/*endfor*/
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codec_munge(munge, amp, tx_samples);
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rx_samples = sig_tone_rx(&rx_state, amp, tx_samples);
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for (i = 0; i < rx_samples; i++)
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out_amp[2*i + 1] = amp[i];
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/*endfor*/
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2009-06-18 06:13:59 +00:00
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outframes = sf_writef_short(outhandle, out_amp, rx_samples);
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2008-09-03 19:02:00 +00:00
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if (outframes != rx_samples)
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{
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2009-06-18 06:13:59 +00:00
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fprintf(stderr, " Error writing audio file\n");
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2008-09-03 19:02:00 +00:00
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exit(2);
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}
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/*endif*/
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}
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/*endfor*/
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}
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/*endfor*/
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2009-06-18 06:13:59 +00:00
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if (sf_close(outhandle) != 0)
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2008-09-03 19:02:00 +00:00
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{
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2009-06-18 06:13:59 +00:00
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fprintf(stderr, " Cannot close audio file '%s'\n", OUT_FILE_NAME);
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2008-09-03 19:02:00 +00:00
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exit(2);
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}
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/*endif*/
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printf("Tests completed.\n");
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return 0;
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}
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/*- End of function --------------------------------------------------------*/
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/*- End of file ------------------------------------------------------------*/
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