forked from Mirrors/freeswitch
4a7bbf4ec6
although quite a few things have changed in the test suite
379 lines
12 KiB
C
379 lines
12 KiB
C
/*
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* SpanDSP - a series of DSP components for telephony
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*
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* power_meter_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) 2003 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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/*! \page power_meter_tests_page Power meter tests
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\section power_meter_tests_page_sec_1 What does it do?
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These tests assess the accuracy of power meters built from the power meter module.
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Both tones and noise are used to check the meter's behaviour.
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\section power_meter_tests_page_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 <unistd.h>
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#include <memory.h>
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#include <float.h>
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#include <time.h>
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#include <sndfile.h>
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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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#include "spandsp.h"
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#include "spandsp-sim.h"
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#define IN_FILE_NAME "../test-data/local/short_nb_voice.wav"
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#define OUT_FILE_NAME "power_meter_tests.wav"
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static int power_surge_detector_tests(void)
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{
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SNDFILE *outhandle;
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power_surge_detector_state_t *sig;
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int i;
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int sample;
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int16_t amp[8000];
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int16_t amp_out[2*8000];
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awgn_state_t *awgnx;
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int32_t phase_rate;
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uint32_t phase_acc;
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int16_t phase_scale;
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float signal_power;
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int32_t signal_level;
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int signal_present;
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int prev_signal_present;
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int ok;
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int extremes[4];
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if ((outhandle = sf_open_telephony_write(OUT_FILE_NAME, 2)) == NULL)
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{
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fprintf(stderr, " Cannot create audio file '%s'\n", OUT_FILE_NAME);
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exit(2);
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}
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sig = power_surge_detector_init(NULL, -50.0f, 5.0f);
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prev_signal_present = FALSE;
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phase_rate = dds_phase_rate(450.0f);
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phase_acc = 0;
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phase_scale = dds_scaling_dbm0(-33.0f);
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awgnx = awgn_init_dbm0(NULL, 1234567, -45.0f);
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extremes[0] = 8001;
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extremes[1] = -1;
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extremes[2] = 8001;
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extremes[3] = -1;
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for (sample = 0; sample < 800000; sample += 8000)
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{
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ok = 0;
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for (i = 0; i < 8000; i++)
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{
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amp[i] = awgn(awgnx);
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if (i < 4000)
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amp[i] += dds_mod(&phase_acc, phase_rate, phase_scale, 0);
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signal_level = power_surge_detector(sig, amp[i]);
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signal_present = (signal_level != 0);
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if (prev_signal_present != signal_present)
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{
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signal_power = power_surge_detector_current_dbm0(sig);
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if (signal_present)
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{
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if (ok == 0 && i >= 0 && i < 25)
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ok = 1;
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if (extremes[0] > i)
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extremes[0] = i;
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if (extremes[1] < i)
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extremes[1] = i;
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printf("On at %f (%fdBm0)\n", (sample + i)/8000.0, signal_power);
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}
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else
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{
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if (ok == 1 && i >= 4000 + 0 && i < 4000 + 35)
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ok = 2;
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if (extremes[2] > i)
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extremes[2] = i;
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if (extremes[3] < i)
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extremes[3] = i;
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printf("Off at %f (%fdBm0)\n", (sample + i)/8000.0, signal_power);
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}
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prev_signal_present = signal_present;
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}
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amp_out[2*i] = amp[i];
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amp_out[2*i + 1] = signal_present*5000;
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}
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sf_writef_short(outhandle, amp_out, 8000);
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if (ok != 2
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||
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extremes[0] < 1
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||
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extremes[1] > 30
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extremes[2] < 4001
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extremes[3] > 4030)
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{
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printf(" Surge not detected correctly (%d)\n", ok);
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exit(2);
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}
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}
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if (sf_close_telephony(outhandle))
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{
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fprintf(stderr, " Cannot close audio file '%s'\n", OUT_FILE_NAME);
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exit(2);
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}
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printf("Min on %d, max on %d, min off %d, max off %d\n", extremes[0], extremes[1], extremes[2], extremes[3]);
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return 0;
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}
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/*- End of function --------------------------------------------------------*/
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static int power_surge_detector_file_test(const char *file)
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{
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SNDFILE *inhandle;
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SNDFILE *outhandle;
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int inframes;
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power_surge_detector_state_t *sig;
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int i;
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int16_t amp[8000];
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int16_t amp_out[2*8000];
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int sample;
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float signal_power;
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int32_t signal_level;
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int signal_present;
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int prev_signal_present;
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if ((inhandle = sf_open_telephony_read(file, 1)) == NULL)
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{
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printf(" Cannot open audio file '%s'\n", file);
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exit(2);
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}
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if ((outhandle = sf_open_telephony_write(OUT_FILE_NAME, 1)) == NULL)
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{
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fprintf(stderr, " Cannot create audio file '%s'\n", OUT_FILE_NAME);
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exit(2);
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}
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sig = power_surge_detector_init(NULL, -50.0f, 6.0f);
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prev_signal_present = FALSE;
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sample = 0;
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while ((inframes = sf_readf_short(inhandle, amp, 8000)))
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{
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for (i = 0; i < inframes; i++)
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{
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signal_level = power_surge_detector(sig, amp[i]);
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signal_present = (signal_level != 0);
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if (prev_signal_present != signal_present)
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{
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signal_power = power_surge_detector_current_dbm0(sig);
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if (signal_present)
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printf("On at %f (%fdBm0)\n", (sample + i)/8000.0, signal_power);
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else
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printf("Off at %f (%fdBm0)\n", (sample + i)/8000.0, signal_power);
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prev_signal_present = signal_present;
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}
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amp_out[2*i] = amp[i];
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amp_out[2*i + 1] = signal_present*5000;
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}
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sf_writef_short(outhandle, amp_out, inframes);
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sample += inframes;
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}
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if (sf_close_telephony(inhandle))
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{
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fprintf(stderr, " Cannot close audio file '%s'\n", file);
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exit(2);
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}
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if (sf_close_telephony(outhandle))
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{
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fprintf(stderr, " Cannot close audio file '%s'\n", OUT_FILE_NAME);
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exit(2);
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}
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return 0;
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}
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/*- End of function --------------------------------------------------------*/
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static int power_meter_tests(void)
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{
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awgn_state_t noise_source;
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power_meter_t meter;
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tone_gen_descriptor_t tone_desc;
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tone_gen_state_t gen;
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int i;
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int idum = 1234567;
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int16_t amp[1000];
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int len;
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int32_t level;
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power_meter_init(&meter, 7);
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printf("Testing with zero in the power register\n");
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printf("Power: expected %fdBm0, got %fdBm0\n", -90.169f, power_meter_current_dbm0(&meter));
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printf("Power: expected %fdBOv, got %fdBOv\n", -96.329f, power_meter_current_dbov(&meter));
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printf("Testing with a square wave 10dB from maximum\n");
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for (i = 0; i < 1000; i++)
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{
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amp[i] = (i & 1) ? 10362 : -10362;
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level = power_meter_update(&meter, amp[i]);
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//printf("%12d %fdBm0 %fdBov\n", level, power_meter_current_dbm0(&meter), power_meter_current_dbov(&meter));
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}
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printf("Level: expected %" PRId32 "/%" PRId32 ", got %" PRId32 "\n", power_meter_level_dbov(-10.0f), power_meter_level_dbm0(-10.0f + DBM0_MAX_POWER), level);
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printf("Power: expected %fdBm0, got %fdBm0\n", -10.0f + DBM0_MAX_POWER, power_meter_current_dbm0(&meter));
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printf("Power: expected %fdBOv, got %fdBOv\n", -10.0f, power_meter_current_dbov(&meter));
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if (level < power_meter_level_dbov(-10.0f)*0.99f
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level > power_meter_level_dbov(-10.0f)*1.01f)
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{
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printf("Test failed (level)\n");
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exit(2);
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}
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if (0.1f < fabsf(power_meter_current_dbm0(&meter) + 10.0f - DBM0_MAX_POWER))
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{
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printf("Test failed (dBm0)\n");
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exit(2);
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}
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if (0.1f < fabsf(power_meter_current_dbov(&meter) + 10.0))
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{
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printf("Test failed (dBOv)\n");
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exit(2);
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}
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printf("Testing with a sine wave tone 10dB from maximum\n");
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tone_gen_descriptor_init(&tone_desc,
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1000,
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-4,
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0,
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1,
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1,
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0,
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0,
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0,
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TRUE);
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tone_gen_init(&gen, &tone_desc);
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len = tone_gen(&gen, amp, 1000);
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for (i = 0; i < len; i++)
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{
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level = power_meter_update(&meter, amp[i]);
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//printf("%12d %fdBm0 %fdBov\n", level, power_meter_current_dbm0(&meter), power_meter_current_dbov(&meter));
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}
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printf("Level: expected %" PRId32 "/%" PRId32 ", got %" PRId32 "\n", power_meter_level_dbov(-10.0f), power_meter_level_dbm0(-10.0f + DBM0_MAX_POWER), level);
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printf("Power: expected %fdBm0, got %fdBm0\n", -10.0f + DBM0_MAX_POWER, power_meter_current_dbm0(&meter));
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printf("Power: expected %fdBOv, got %fdBOv\n", -10.0f, power_meter_current_dbov(&meter));
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if (level < power_meter_level_dbov(-10.0f)*0.95f
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level > power_meter_level_dbov(-10.0f)*1.05f)
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{
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printf("Test failed (level)\n");
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exit(2);
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}
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if (0.2f < fabsf(power_meter_current_dbm0(&meter) + 10.0f - DBM0_MAX_POWER))
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{
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printf("Test failed (dBm0)\n");
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exit(2);
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}
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if (0.2f < fabsf(power_meter_current_dbov(&meter) + 10.0))
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{
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printf("Test failed (dBOv)\n");
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exit(2);
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}
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printf("Testing with AWGN 10dB from maximum\n");
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awgn_init_dbov(&noise_source, idum, -10.0f);
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for (i = 0; i < 1000; i++)
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amp[i] = awgn(&noise_source);
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for (i = 0; i < 1000; i++)
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{
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level = power_meter_update(&meter, amp[i]);
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//printf("%12d %fdBm0 %fdBov\n", level, power_meter_current_dbm0(&meter), power_meter_current_dbov(&meter));
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}
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printf("Level: expected %" PRId32 "/%" PRId32 ", got %" PRId32 "\n", power_meter_level_dbov(-10.0f), power_meter_level_dbm0(-10.0f + DBM0_MAX_POWER), level);
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printf("Power: expected %fdBm0, got %fdBm0\n", -10.0f + DBM0_MAX_POWER, power_meter_current_dbm0(&meter));
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printf("Power: expected %fdBOv, got %fdBOv\n", -10.0f, power_meter_current_dbov(&meter));
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if (level < power_meter_level_dbov(-10.0f)*0.95f
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level > power_meter_level_dbov(-10.0f)*1.05f)
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{
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printf("Test failed (level)\n");
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exit(2);
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}
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if (0.2f < fabsf(power_meter_current_dbm0(&meter) + 10.0f - DBM0_MAX_POWER))
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{
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printf("Test failed (dBm0)\n");
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exit(2);
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}
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if (0.2f < fabsf(power_meter_current_dbov(&meter) + 10.0f))
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{
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printf("Test failed (dBOv)\n");
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exit(2);
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}
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return 0;
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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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int basic_tests;
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int decode;
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int opt;
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const char *in_file;
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basic_tests = TRUE;
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decode = FALSE;
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in_file = IN_FILE_NAME;
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while ((opt = getopt(argc, argv, "d:")) != -1)
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{
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switch (opt)
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{
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case 'd':
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in_file = optarg;
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basic_tests = FALSE;
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decode = TRUE;
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break;
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default:
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//usage();
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exit(2);
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}
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}
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if (basic_tests)
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{
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power_meter_tests();
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power_surge_detector_tests();
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}
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if (decode)
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{
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power_surge_detector_file_test(in_file);
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}
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printf("Tests passed\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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