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matlab/compressor/cmp_eval.m
T
2023-06-11 06:45:16 +02:00

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Matlab

## Copyright (C) 2020 Jens
##
## 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 3 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, see
## <https://www.gnu.org/licenses/>.
## -*- texinfo -*-
## @deftypefn {} {@var{retval} =} eq_eval (@var{input1}, @var{input2})
##
## @seealso{}
##
## Exapmple: cmp_eval("snip.wav", 0.25, -40, 18);
## @end deftypefn
## Author: Jens <jens@orion>
## Created: 2020-06-22
function cmp_eval (filename_in, R, lev_knee_dB, gain_makeup_dB)
fs = 48000
[x, fs] = audioread(filename_in);
N = size(x)(1)
num_channels = size(x)(2)
filename_out = to_filename_out(filename_in, "out");
time_look_ahead = 0.01;
time_attack = 0.01;
time_release = 1.0;
n_look_ahead = round(time_look_ahead*fs);
h_dly = [zeros(1, n_look_ahead-1) 1];
x_dly = filter(h_dly, 1, x);
alpha_a = 5/(time_attack*fs);
alpha_r = 5/(time_release*fs);
lev = level_detect(x, alpha_a, alpha_r);
lev_dB = max(-120, 20*log10(lev));
k_makeup_gain = 10^(gain_makeup_dB/20);
#gain1 = min(8, (1/8)./(lev+0.1));
[lev_out_dB, gain2_dB] = cmp_gain(R, lev_knee_dB, lev_dB);
gain2 = 10.^(gain2_dB/20);
#y1 = gain1.*x_dly * 2;
y2 = gain2.*x_dly * k_makeup_gain;
#audiowrite(to_filename_out(filename_in, "gain1"), gain1, fs)
audiowrite(to_filename_out(filename_in, "gain2"), gain2, fs)
#audiowrite(to_filename_out(filename_in, "out1"), y1, fs)
audiowrite(to_filename_out(filename_in, "out2"), y2, fs)
audiowrite(to_filename_out(filename_in, "lev"), lev, fs)
gain_out = [];
gain_in = [];
for g=0:0.1:1,
gain_out = [gain_out cmp_gain(R, g, 0.01)];
gain_in = [gain_in g];
endfor
plot(gain_in, gain_out); grid();
endfunction