here is my humble interpretation of mathieus idea.

Attachment: randombeatz.pd
Description: Binary data


Attachment: list-shuffle.pd
Description: Binary data



Am 05.03.2009 um 12:21 schrieb YOhannes:

thanks guys,

i made a simple patch based on mathieus idea. (see attachment)
i like to apply more control on listlength, without
specifying it, like i would have to with [list-equalize].

now, depending on the devisor of 2, with my master-sequence
of lets say 2000 (ms) i get lists with very small and very big values.

for example:
15.625 1.95312 3.90625 1.95312 500 250 1000 31.25 62.5 7.8125 125

any ideas how to get smoother/smaller differences between the list- items?

thanks. j

#N canvas 437 216 195 346 10;
#X obj -72 146 urn;
#X obj -72 96 iter;
#X obj -72 24 inlet;
#X obj -72 173 pack 0 0;
#X obj -72 293 outlet;
#X msg 12 100 clear;
#X obj -72 120 t b a;
#X obj -72 61 t l l b;
#X obj -72 259 zl group;
#X obj 10 126 list length;
#X obj -72 238 pipe;
#X obj -72 216 unpack 0 0;
#X obj -72 194 zl rev;
#X connect 0 0 3 0;
#X connect 1 0 6 0;
#X connect 2 0 7 0;
#X connect 3 0 12 0;
#X connect 5 0 0 0;
#X connect 6 0 0 0;
#X connect 6 1 3 1;
#X connect 7 0 1 0;
#X connect 7 1 9 0;
#X connect 7 2 5 0;
#X connect 8 0 4 0;
#X connect 9 0 0 1;
#X connect 9 0 8 1;
#X connect 10 0 8 0;
#X connect 11 0 10 0;
#X connect 11 1 10 1;
#X connect 12 0 11 0;
#N canvas 91 22 294 416 10;
#X obj 35 0 loadbang;
#X obj 111 27 bng 15 250 50 0 empty empty empty 17 7 0 10 -262144 -1
-1;
#X obj 111 53 random 2;
#X obj 179 243 t f f;
#X obj 111 192 f;
#X obj 111 279 list-extend;
#X obj 77 307 list;
#X text -31 137 master(ms);
#X obj 77 337 shakeitt;
#X obj 77 359 print that;
#X obj -22 1 inlet;
#X obj 111 1 inlet;
#X obj 153 337 list-accum;
#X floatatom 153 360 5 0 0 0 - - -;
#X obj 111 74 route 0 1;
#X obj 179 192 f;
#X msg 35 139 2000;
#X obj 111 96 t b b b;
#X obj 179 214 / 2;
#X msg -22 27 set \$1;
#X text 14 359 slave(ms);
#X connect 0 0 16 0;
#X connect 1 0 2 0;
#X connect 2 0 14 0;
#X connect 3 0 5 0;
#X connect 3 1 4 1;
#X connect 3 1 15 1;
#X connect 4 0 5 0;
#X connect 5 0 6 1;
#X connect 6 0 8 0;
#X connect 6 0 12 0;
#X connect 8 0 9 0;
#X connect 10 0 19 0;
#X connect 11 0 1 0;
#X connect 12 0 13 0;
#X connect 14 0 17 0;
#X connect 14 1 15 0;
#X connect 15 0 18 0;
#X connect 16 0 15 1;
#X connect 16 0 4 1;
#X connect 17 0 16 0;
#X connect 17 0 6 0;
#X connect 17 1 5 1;
#X connect 17 2 4 0;
#X connect 18 0 3 0;
#X connect 19 0 16 0;
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