Add test to measure performance of FM modulation and filtering
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@ -32,3 +32,4 @@ src/test/test_compandor
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src/test/test_emphasis
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src/test/test_emphasis
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src/test/test_dms
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src/test/test_dms
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src/test/test_sms
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src/test/test_sms
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src/test/test_performance
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@ -6,7 +6,8 @@ noinst_PROGRAMS = \
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test_compandor \
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test_compandor \
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test_emphasis \
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test_emphasis \
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test_dms \
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test_dms \
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test_sms
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test_sms \
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test_performance
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test_filter_SOURCES = test_filter.c dummy.c
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test_filter_SOURCES = test_filter.c dummy.c
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@ -57,3 +58,12 @@ test_sms_LDADD = \
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$(UHD_LIBS) \
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$(UHD_LIBS) \
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-lm
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-lm
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test_performance_SOURCES = dummy.c test_performance.c
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test_performance_LDADD = \
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$(COMMON_LA) \
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$(top_builddir)/src/common/libcommon.a \
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$(ALSA_LIBS) \
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$(UHD_LIBS) \
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-lm
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@ -0,0 +1,67 @@
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#include <stdio.h>
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#include <stdint.h>
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#include <math.h>
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#include <string.h>
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#include <sys/time.h>
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#include "../common/sample.h"
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#include "../common/filter.h"
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#include "../common/fm_modulation.h"
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#include "../common/debug.h"
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struct timeval start_tv, tv;
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double duration;
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int tot_samples;
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#define T_START() \
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gettimeofday(&start_tv, NULL); \
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tot_samples = 0; \
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while (1) {
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#define T_STOP(what, samples) \
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gettimeofday(&tv, NULL); \
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duration = (double)tv.tv_sec + (double)tv.tv_usec / 1e6; \
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duration -= (double)start_tv.tv_sec + (double)start_tv.tv_usec / 1e6; \
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tot_samples += samples; \
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if (duration >= 0.5) \
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break; \
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} \
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printf("%s: %.3f mega samples/sec\n", what, (double)tot_samples / duration / 1e6); \
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#define SAMPLES 1000
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sample_t samples[SAMPLES];
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float buff[SAMPLES * 2];
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fm_mod_t mod;
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fm_demod_t demod;
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filter_t lp;
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int main(void)
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{
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fm_mod_init(&mod, 50000, 0, 0.333);
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T_START()
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fm_modulate(&mod, samples, SAMPLES, buff);
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T_STOP("FM modulate", SAMPLES)
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fm_demod_init(&demod, 50000, 0, 10000.0);
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T_START()
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fm_demodulate(&demod, samples, SAMPLES, buff);
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T_STOP("FM demodulate", SAMPLES)
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filter_lowpass_init(&lp, 10000.0 / 2.0, 50000, 1);
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T_START()
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filter_process(&lp, samples, SAMPLES);
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T_STOP("low-pass filter (second order)", SAMPLES)
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filter_lowpass_init(&lp, 10000.0 / 2.0, 50000, 2);
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T_START()
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filter_process(&lp, samples, SAMPLES);
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T_STOP("low-pass filter (fourth order)", SAMPLES)
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filter_lowpass_init(&lp, 10000.0 / 2.0, 50000, 4);
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T_START()
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filter_process(&lp, samples, SAMPLES);
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T_STOP("low-pass filter (eigth order)", SAMPLES)
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return 0;
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}
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