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#N canvas 340 22 822 659 10;
#X msg 644 355 \; pd dsp 1;
#X msg 329 451 0 \, 360 5000;
#X obj 122 592 earplug~ 270 -25;
#X floatatom 327 287 5 0 0 0 - - -;
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#X obj 260 129 cputime;
#X obj 260 33 loadbang;
#X obj 260 80 metro 1000;
#X msg 260 61 1;
#X obj 260 108 t b b;
#X obj 260 170 * 0.1;
#X obj 260 150 int;
#X text 331 203 comment;
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#X coords 0 1 100 -1 120 20 1;
#X restore 531 31 graph;
#X msg 723 355 \; pd dsp 0;
#X text 24 18 earplug~ - convolution binaural filter;
#X text 23 49 This filter utilizes HRTF measurements (compact set)
of KEMAR Dummy-Head Microphone (http://sound.media.mit.edu/KEMAR.html)
;
#X obj 532 186 soundfiler;
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#X array table 23376 float 0;
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#X restore 657 272 graph;
#X obj 122 343 tabplay~ table;
#X obj 327 329 line 0 1;
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#X obj 328 396 pack 0 50;
#X msg 331 508 0 \, 360 5000;
#X obj 331 533 line 0 1;
#X obj 329 476 line 0 50;
#X text 646 391 audio on;
#X obj 120 206 tabplay~ table;
#X obj 120 236 dac~;
#X text 27 89 The impulse response data "earplug_data.txt" must be
in the same path as this external. Must use headphone to hear effective
filter effects. Fitler could be DSP intensive due to convolution.;
#X msg 164 181 stop;
#X text 11 237 original --->;
#X obj 122 619 dac~ 1 2;
#X text 24 590 filtered --->;
#X msg 172 311 stop;
#X msg 122 311 bang;
#X msg 117 181 bang;
#X text 405 507 <---a better circle;
#X text 404 451 <--- circle with noise;
#X text 327 558 avoid zipper noise: uase small line grain;
#X text 361 284 <--- azimuth: 0 - 360 (degrees);
#X text 361 376 <--- elevation: -40 - 90 (degrees);
#X text 115 162 start;
#X text 120 292 start;
#X obj 532 103 openpanel;
#X obj 532 83 bng 15 250 50 0 empty empty empty 17 7 0 10 -204786 -1
-1;
#X text 553 82 <- open a soundfile;
#X obj 218 295 noise~;
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1;
#X text 226 273 for testing:;
#X obj 218 343 *~ 0;
#X msg 532 124 read -resize \$1 table;
#X msg 541 163 read -resize ../../sound/voice.wav table;
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