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#N canvas 567 104 476 357 10;
#X obj 5 2 cnv 15 450 20 empty empty [curve_exp] 2 11 1 18 -233017 -66577
0;
#X msg 422 3 pddp;
#X text 27 300 (C) Copyright 2004 Hans-Christoph Steiner <hans@at.or.at>
;
#X text 244 314 released under the GNU GPL;
#X text 98 271 For more info:;
#X obj 202 269 pddp_open all_about_curve_mapping;
#X floatatom 25 123 8 0 0 0 - - -;
#X floatatom 25 184 8 0 0 0 - - -;
#X obj 28 201 hsl 200 15 0 1 0 0 empty empty empty 22 8 1 12 -262144
-1 -1 0 1;
#X obj 28 103 hsl 200 15 0 1 0 0 empty empty empty 22 8 1 12 -261681
-1 -1 0 1;
#N canvas 0 22 450 300 graph1 0;
#X array curve_exp 100 float 0;
#X coords 0 1 99 0 100 100 1;
#X restore 321 111 graph;
#N canvas 266 69 331 321 draw_array 0;
#X msg 57 52 bang;
#X obj 57 73 until;
#X text 88 52 start;
#X obj 57 95 f;
#X obj 86 95 + 1;
#X obj 132 97 sel 0;
#X obj 86 117 mod 100;
#X obj 57 150 t f f;
#X obj 94 177 s array_index;
#X obj 170 262 r array_index;
#X obj 57 13 loadbang;
#X obj 57 207 / 100;
#X text 99 207 mapping output range: 0 to 1;
#X obj 56 283 tabwrite curve_exp;
#X obj 56 233 curve_exp;
#X connect 0 0 1 0;
#X connect 1 0 3 0;
#X connect 3 0 4 0;
#X connect 3 0 7 0;
#X connect 4 0 6 0;
#X connect 5 0 1 1;
#X connect 6 0 3 1;
#X connect 6 0 5 0;
#X connect 7 0 11 0;
#X connect 7 1 8 0;
#X connect 9 0 13 1;
#X connect 10 0 0 0;
#X connect 11 0 14 0;
#X connect 14 0 13 0;
#X restore 321 78 pd draw_array;
#X text 17 39 This object maps the input range to a exponential curve
\, the inverse of a logarithmic curve.;
#X obj 25 153 curve_exp;
#X connect 6 0 13 0;
#X connect 7 0 8 0;
#X connect 9 0 6 0;
#X connect 13 0 7 0;