#N canvas 373 175 643 500 10; #X obj 6 73 bng 50 950 50 1 foo5_snd foo5_rcv empty 63 2 0 12 -262131 -260818 -143491; #N canvas 0 22 458 308 graph4 0; #X array sinesweepsResp 441000 float 2; #X coords 0 1 441000 -1 600 140 1; #X restore 14 332 graph; #X text 221 13 RealSimPLE Project; #X text 238 25 Edgar Berdahl; #X text 258 37 6/10/07; #X obj 336 286 soundfiler; #X obj 335 206 bng 50 950 50 1 foo5_snd foo5_rcv empty 63 2 0 12 -171392 -260818 -143491; #X text 84 0 sinesweeps.pd from the Impulse Response Measurement Toolbox ; #X obj 14 149 tabwrite~ sinesweepsResp; #N canvas 193 70 480 164 load-table 0; #X obj 223 83 soundfiler; #X obj 222 7 loadbang; #X text 19 117 This is how the Golay codes are read from disk.; #X obj 10 7 table sinesweeps 441000; #X msg 223 33 read sinesweeps.wav sinesweeps; #X connect 1 0 4 0; #X connect 4 0 0 0; #X restore 439 286 pd load-table; #X msg 336 263 write -wave Resp.wav sinesweepsResp; #X text 389 223 Write Response To Disk; #X text 60 91 Record Response To The Sine Sweeps; #X obj 6 170 tabplay~ sinesweeps; #X obj 6 293 dac~ 1 2; #X obj 26 216 hsl 128 15 0 1 0 0 empty empty empty -2 -6 0 8 -262144 -1 -1 1400 1; #X obj 6 238 *~; #X floatatom 37 236 5 0 0 0 - - -; #X text 26 200 Output Volume; #X obj 14 128 adc~ 1; #X connect 0 0 8 0; #X connect 0 0 13 0; #X connect 6 0 10 0; #X connect 10 0 5 0; #X connect 13 0 16 0; #X connect 15 0 16 1; #X connect 15 0 17 0; #X connect 16 0 14 0; #X connect 16 0 14 1; #X connect 19 0 8 0;