307 lines
9.9 KiB
Mathematica
307 lines
9.9 KiB
Mathematica
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% tfdmdv.m
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%
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% Octave script that tests the C port of the FDMDV modem. This script loads
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% the output of unittest/tfdmdv.c and compares it to the output of the
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% reference versions of the same functions written in Octave.
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%
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% Copyright David Rowe 2012
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% This program is distributed under the terms of the GNU General Public License
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% Version 2
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%
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fdmdv; % load modem code
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% Generate reference vectors using Octave implementation of FDMDV modem
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global passes;
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global fails;
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passes = fails = 0;
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frames = 25;
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prev_tx_symbols = ones(Nc+1,1);
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prev_rx_symbols = ones(Nc+1,1);
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foff_phase_rect = 1;
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coarse_fine = 0;
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fest_state = 0;
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channel = [];
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channel_count = 0;
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next_nin = M;
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sig_est = zeros(Nc+1,1);
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noise_est = zeros(Nc+1,1);
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% Octave outputs we want to collect for comparison to C version
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tx_bits_log = [];
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tx_symbols_log = [];
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tx_baseband_log = [];
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tx_fdm_log = [];
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pilot_baseband1_log = [];
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pilot_baseband2_log = [];
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pilot_lpf1_log = [];
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pilot_lpf2_log = [];
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S1_log = [];
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S2_log = [];
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foff_coarse_log = [];
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foff_fine_log = [];
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foff_log = [];
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rx_baseband_log = [];
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rx_filt_log = [];
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env_log = [];
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rx_timing_log = [];
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rx_symbols_log = [];
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rx_bits_log = [];
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sync_bit_log = [];
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coarse_fine_log = [];
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nin_log = [];
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sig_est_log = [];
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noise_est_log = [];
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for f=1:frames
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% modulator
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tx_bits = get_test_bits(Nc*Nb);
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tx_bits_log = [tx_bits_log tx_bits];
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tx_symbols = bits_to_qpsk(prev_tx_symbols, tx_bits, 'dqpsk');
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prev_tx_symbols = tx_symbols;
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tx_symbols_log = [tx_symbols_log tx_symbols];
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tx_baseband = tx_filter(tx_symbols);
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tx_baseband_log = [tx_baseband_log tx_baseband];
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tx_fdm = fdm_upconvert(tx_baseband);
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tx_fdm_log = [tx_fdm_log tx_fdm];
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% channel
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nin = next_nin;
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%nin = 120;
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%nin = M;
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%if (f == 3)
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% nin = 120;
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%elseif (f == 4)
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% nin = 200;
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%else
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% nin = M;
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%end
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channel = [channel real(tx_fdm)];
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channel_count += M;
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rx_fdm = channel(1:nin);
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channel = channel(nin+1:channel_count);
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channel_count -= nin;
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% demodulator
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[pilot prev_pilot pilot_lut_index prev_pilot_lut_index] = get_pilot(pilot_lut_index, prev_pilot_lut_index, nin);
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[foff_coarse S1 S2] = rx_est_freq_offset(rx_fdm, pilot, prev_pilot, nin);
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if coarse_fine == 0
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foff = foff_coarse;
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end
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foff_coarse_log = [foff_coarse_log foff_coarse];
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pilot_baseband1_log = [pilot_baseband1_log pilot_baseband1];
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pilot_baseband2_log = [pilot_baseband2_log pilot_baseband2];
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pilot_lpf1_log = [pilot_lpf1_log pilot_lpf1];
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pilot_lpf2_log = [pilot_lpf2_log pilot_lpf2];
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S1_log = [S1_log S1];
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S2_log = [S2_log S2];
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foff_rect = exp(j*2*pi*foff/Fs);
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for i=1:nin
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foff_phase_rect *= foff_rect';
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rx_fdm_fcorr(i) = rx_fdm(i)*foff_phase_rect;
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end
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rx_baseband = fdm_downconvert(rx_fdm_fcorr, nin);
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rx_baseband_log = [rx_baseband_log rx_baseband];
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rx_filt = rx_filter(rx_baseband, nin);
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rx_filt_log = [rx_filt_log rx_filt];
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[rx_symbols rx_timing env] = rx_est_timing(rx_filt, rx_baseband, nin);
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env_log = [env_log env];
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rx_timing_log = [rx_timing_log rx_timing];
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rx_symbols_log = [rx_symbols_log rx_symbols];
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next_nin = M;
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if rx_timing > 2*M/P
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next_nin += M/P;
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end
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if rx_timing < 0;
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next_nin -= M/P;
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end
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nin_log = [nin_log nin];
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[rx_bits sync_bit foff_fine pd] = qpsk_to_bits(prev_rx_symbols, rx_symbols, 'dqpsk');
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[sig_est noise_est] = snr_update(sig_est, noise_est, pd);
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sig_est_log = [sig_est_log sig_est];
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noise_est_log = [noise_est_log noise_est];
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prev_rx_symbols = rx_symbols;
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rx_bits_log = [rx_bits_log rx_bits];
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foff_fine_log = [foff_fine_log foff_fine];
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sync_bit_log = [sync_bit_log sync_bit];
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foff -= 0.5*foff_fine;
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foff_log = [foff_log foff];
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% freq est state machine
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[coarse_fine fest_state] = freq_state(sync_bit, fest_state);
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coarse_fine_log = [coarse_fine_log coarse_fine];
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end
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% Compare to the output from the C version
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load ../unittest/tfdmdv_out.txt
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% Helper functions to plot output of C verson and difference between Octave and C versions
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function stem_sig_and_error(plotnum, subplotnum, sig, error, titlestr, axisvec)
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figure(plotnum)
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subplot(subplotnum)
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stem(sig);
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hold on;
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stem(error,'g');
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hold off;
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if nargin == 6
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axis(axisvec);
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end
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title(titlestr);
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endfunction
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function plot_sig_and_error(plotnum, subplotnum, sig, error, titlestr, axisvec)
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figure(plotnum)
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subplot(subplotnum)
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plot(sig);
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hold on;
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plot(error,'g');
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hold off;
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if nargin == 6
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axis(axisvec);
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end
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title(titlestr);
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endfunction
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% ---------------------------------------------------------------------------------------
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% Plot output and test each C function
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% ---------------------------------------------------------------------------------------
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% fdmdv_get_test_bits() & bits_to_dqpsk_symbols()
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n = 28;
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stem_sig_and_error(1, 211, tx_bits_log_c(1:n), tx_bits_log(1:n) - tx_bits_log_c(1:n), 'tx bits', [1 n -1.5 1.5])
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stem_sig_and_error(1, 212, real(tx_symbols_log_c(1:n/2)), real(tx_symbols_log(1:n/2) - tx_symbols_log_c(1:n/2)), 'tx symbols real', [1 n/2 -1.5 1.5])
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% tx_filter()
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diff = tx_baseband_log - tx_baseband_log_c;
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c=15;
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plot_sig_and_error(2, 211, real(tx_baseband_log_c(c,:)), real(sum(diff)), 'tx baseband real')
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plot_sig_and_error(2, 212, imag(tx_baseband_log_c(c,:)), imag(sum(diff)), 'tx baseband imag')
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% fdm_upconvert()
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plot_sig_and_error(3, 211, real(tx_fdm_log_c), real(tx_fdm_log - tx_fdm_log_c), 'tx fdm real')
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plot_sig_and_error(3, 212, imag(tx_fdm_log_c), imag(tx_fdm_log - tx_fdm_log_c), 'tx fdm imag')
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% generate_pilot_lut()
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plot_sig_and_error(4, 211, real(pilot_lut_c), real(pilot_lut - pilot_lut_c), 'pilot lut real')
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plot_sig_and_error(4, 212, imag(pilot_lut_c), imag(pilot_lut - pilot_lut_c), 'pilot lut imag')
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% rx_est_freq_offset()
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st=1; en = 3*Npilotbaseband;
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plot_sig_and_error(5, 211, real(pilot_baseband1_log(st:en)), real(pilot_baseband1_log(st:en) - pilot_baseband1_log_c(st:en)), 'pilot baseband1 real' )
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plot_sig_and_error(5, 212, real(pilot_baseband2_log(st:en)), real(pilot_baseband2_log(st:en) - pilot_baseband2_log_c(st:en)), 'pilot baseband2 real' )
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st=1; en = 3*Npilotlpf;
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plot_sig_and_error(6, 211, real(pilot_lpf1_log(st:en)), real(pilot_lpf1_log(st:en) - pilot_lpf1_log_c(st:en)), 'pilot lpf1 real' )
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plot_sig_and_error(6, 212, real(pilot_lpf2_log(st:en)), real(pilot_lpf2_log(st:en) - pilot_lpf2_log_c(st:en)), 'pilot lpf2 real' )
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plot_sig_and_error(7, 211, real(S1_log), real(S1_log - S1_log_c), 'S1 real' )
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plot_sig_and_error(7, 212, imag(S1_log), imag(S1_log - S1_log_c), 'S1 imag' )
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plot_sig_and_error(8, 211, real(S2_log), real(S2_log - S2_log_c), 'S2 real' )
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plot_sig_and_error(8, 212, imag(S2_log), imag(S2_log - S2_log_c), 'S2 imag' )
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plot_sig_and_error(9, 211, foff_coarse_log, foff_coarse_log - foff_coarse_log_c, 'Coarse Freq Offset' )
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plot_sig_and_error(9, 212, foff_fine_log, foff_fine_log - foff_fine_log_c, 'Fine Freq Offset' )
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plot_sig_and_error(10, 211, foff_log, foff_log - foff_log_c, 'Freq Offset' )
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plot_sig_and_error(10, 212, coarse_fine_log, coarse_fine_log - coarse_fine_log_c, 'Freq Est Coarse(0) Fine(1)', [1 frames -0.5 1.5] )
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c=15;
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plot_sig_and_error(11, 211, real(rx_baseband_log(c,:)), real(rx_baseband_log(c,:) - rx_baseband_log_c(c,:)), 'Rx baseband real' )
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plot_sig_and_error(11, 212, imag(rx_baseband_log(c,:)), imag(rx_baseband_log(c,:) - rx_baseband_log_c(c,:)), 'Rx baseband imag' )
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plot_sig_and_error(12, 211, real(rx_filt_log(c,:)), real(rx_filt_log(c,:) - rx_filt_log_c(c,:)), 'Rx filt real' )
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plot_sig_and_error(12, 212, imag(rx_filt_log(c,:)), imag(rx_filt_log(c,:) - rx_filt_log_c(c,:)), 'Rx filt imag' )
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st=1; en=3*Nt*P;
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plot_sig_and_error(13, 211, env_log(st:en), env_log(st:en) - env_log_c(st:en), 'env' )
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stem_sig_and_error(13, 212, real(rx_symbols_log(c,:)), real(rx_symbols_log(c,:) - rx_symbols_log_c(c,:)), 'rx symbols' )
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st=10*28;
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en = 12*28;
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plot_sig_and_error(14, 211, rx_timing_log, rx_timing_log - rx_timing_log_c, 'Rx Timing' )
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stem_sig_and_error(14, 212, sync_bit_log_c, sync_bit_log - sync_bit_log_c, 'Sync bit', [1 n -1.5 1.5])
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stem_sig_and_error(15, 211, rx_bits_log_c(st:en), rx_bits_log(st:en) - rx_bits_log_c(st:en), 'RX bits', [1 en-st -1.5 1.5])
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stem_sig_and_error(15, 212, nin_log_c, nin_log - nin_log_c, 'nin')
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c = 1;
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plot_sig_and_error(16, 211, sig_est_log(c,:), sig_est_log(c,:) - sig_est_log_c(c,:), 'sig est for SNR' )
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plot_sig_and_error(16, 212, noise_est_log(c,:), noise_est_log(c,:) - noise_est_log_c(c,:), 'noise est for SNR' )
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% ---------------------------------------------------------------------------------------
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% AUTOMATED CHECKS ------------------------------------------
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% ---------------------------------------------------------------------------------------
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function check(a, b, test_name)
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global passes;
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global fails;
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[m n] = size(a);
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printf("%s", test_name);
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for i=1:(25-length(test_name))
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printf(".");
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end
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printf(": ");
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if sum(abs(a - b))/n < 1E-3
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printf("OK\n");
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passes++;
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else
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printf("FAIL\n");
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fails++;
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end
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endfunction
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check(tx_bits_log, tx_bits_log_c, 'tx_bits');
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check(tx_symbols_log, tx_symbols_log_c, 'tx_symbols');
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check(tx_baseband_log, tx_baseband_log_c, 'tx_baseband');
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check(tx_fdm_log, tx_fdm_log_c, 'tx_fdm');
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check(pilot_lut, pilot_lut_c, 'pilot_lut');
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check(pilot_baseband1_log, pilot_baseband1_log_c, 'pilot lpf1');
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check(pilot_baseband2_log, pilot_baseband2_log_c, 'pilot lpf2');
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check(S1_log, S1_log_c, 'S1');
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check(S2_log, S2_log_c, 'S2');
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check(foff_coarse_log, foff_coarse_log_c, 'foff_coarse');
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check(foff_fine_log, foff_fine_log_c, 'foff_fine');
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check(foff_log, foff_log_c, 'foff');
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check(rx_baseband_log, rx_baseband_log_c, 'rx baseband');
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check(rx_filt_log, rx_filt_log_c, 'rx filt');
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check(env_log, env_log_c, 'env');
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check(rx_timing_log, rx_timing_log_c, 'rx_timing');
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check(rx_symbols_log, rx_symbols_log_c, 'rx_symbols');
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check(rx_bits_log, rx_bits_log_c, 'rx bits');
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check(sync_bit_log, sync_bit_log_c, 'sync bit');
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check(coarse_fine_log, coarse_fine_log_c, 'coarse_fine');
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check(nin_log, nin_log_c, 'nin');
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check(sig_est_log, sig_est_log_c, 'sig_est');
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check(noise_est_log, noise_est_log_c, 'noise_est');
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printf("\npasses: %d fails: %d\n", passes, fails);
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