#N canvas 15 38 859 491 10; #N canvas 0 0 450 300 graph1 0; #X array line 441 float 0; #X coords 0 1 440 -1 200 140 1; #X restore 319 322 graph; #X obj 151 306 line~; #X obj 100 352 tabwrite~ line; #X obj 186 217 t b; #X msg 151 186 1 2.1542; #X floatatom 216 122 5 0 0 0 - - -; #X msg 151 158 set 1 \$1; #X obj 100 107 t b; #X obj 472 56 loadbang; #X obj 216 90 / 44.1; #X obj 364 73 samplerate~; #X text 268 121 msecs; #X text 315 270 See how the [delay]ed peak always lands on a blocksize boundary?; #X msg 186 270 0 2; #X obj 363 96 / 1000; #X msg 100 158 bang; #X obj 186 246 del 1; #X msg 472 79 \; line resize 441 \; line xticks 0 64 8 \; line xlabel 1.1 0 64 128 192 256 320 384 \; pd dsp 1; #X obj 216 68 nbx 5 16 -1e+37 1e+37 0 0 empty empty Samples 0 -8 1 10 -260818 -1 -1 95 256; #X text 72 31 If we set Samples to small (< 64) \, line~ generates no output anymore; #X connect 1 0 2 0; #X connect 3 0 16 0; #X connect 4 0 1 0; #X connect 4 0 3 0; #X connect 5 0 6 0; #X connect 5 0 16 1; #X connect 6 0 4 0; #X connect 7 0 15 0; #X connect 8 0 17 0; #X connect 8 0 10 0; #X connect 9 0 5 0; #X connect 9 0 7 0; #X connect 10 0 14 0; #X connect 13 0 1 0; #X connect 14 0 9 1; #X connect 15 0 4 0; #X connect 15 0 2 0; #X connect 16 0 13 0; #X connect 18 0 9 0;