[Gridflow-cvs] [svn] commit: r6519 - /trunk/doc/flow_classes/#for-help.pd

svn-gridflow at artengine.ca svn-gridflow at artengine.ca
Thu Feb 3 19:49:00 EST 2011


Author: matju
Date: Thu Feb  3 19:49:00 2011
New Revision: 6519

Log:
complete help

Modified:
    trunk/doc/flow_classes/#for-help.pd

Modified: trunk/doc/flow_classes/#for-help.pd
==============================================================================
--- trunk/doc/flow_classes/#for-help.pd (original)
+++ trunk/doc/flow_classes/#for-help.pd Thu Feb  3 19:49:00 2011
@@ -20,45 +20,43 @@
 #X text 26 38 When given scalar bounds \, works like a regular [for]
 object plugged to a [#import] tuned for a Dim(size) where size is the
 number of values produced by a bang to that [for].;
-#X text 232 669 Sets the upper bound;
-#X text 232 691 Sets the step value;
-#X text 232 753 The result of the operation is a single dimension grid
+#X text 232 841 The result of the operation is a single dimension grid
 in the case of scalar values and variable dimensions for vectors.;
 #X obj 0 0 doc_h;
 #X obj 3 551 doc_i 3;
 #X obj 3 419 doc_c 3;
 #X text 232 581 activate object (send output);
 #X text 232 603 Sets the lower bound and activate;
-#X text 232 647 Sets the lower bound without activating;
+#X text 232 669 Sets the lower bound without activating;
 #X text 26 84 When given vector bounds \, will work like any number
 of [for] objects producing all possible combinations of their values
 in the proper order. (try it below);
 #X text 27 132 the formula for knowing the size of the output will
 be is floor((to-from)/step).;
-#X obj 14 753 doc_oo 0;
+#X obj 14 841 doc_oo 0;
 #X obj 14 506 doc_cc 2;
 #X text 232 625 the three arguments at once;
 #X obj 14 449 doc_cc 0;
 #X obj 14 484 doc_cc 1;
 #X obj 14 581 doc_ii 0;
-#X obj 3 723 doc_o 1;
-#X obj 14 669 doc_ii 1;
-#X obj 14 691 doc_ii 2;
+#X obj 3 811 doc_o 1;
+#X obj 14 757 doc_ii 1;
+#X obj 14 779 doc_ii 2;
 #X text 11 177 With scalar bounds:;
 #X text 262 158 With vector bounds:;
 #X obj 97 625 doc_m i0 list;
 #X obj 97 581 doc_m i0 bang;
-#X obj 97 647 doc_m i0 set;
+#X obj 97 669 doc_m i0 set;
 #X obj 97 449 doc_m c0 grid;
 #X obj 97 484 doc_m c1 grid;
 #X obj 97 506 doc_m c2 grid;
 #X obj 97 603 doc_m i0 grid;
-#X obj 97 669 doc_m i1 grid;
-#X obj 97 691 doc_m i2 grid;
-#X obj 0 831 doc_f;
+#X obj 97 757 doc_m i1 grid;
+#X obj 97 779 doc_m i2 grid;
+#X obj 0 919 doc_f;
 #X obj 264 247 #for (0 0) (8 3) (1 1);
-#X obj 97 753 doc_m o0 grid;
-#X obj 3 811 doc_also;
+#X obj 97 841 doc_m o0 grid;
+#X obj 3 899 doc_also;
 #X obj 428 273 #for (0 0) (8 3);
 #X obj 428 255 bng 15 250 50 0 empty empty empty 17 7 0 10 -262144
 -1 -1;
@@ -67,24 +65,39 @@
 #X text 447 252 new shortcut: default step;
 #X text 232 506 Step value (default: whichever series of ones fits
 with the other grids);
+#X obj 232 757 doc_same 1;
+#X obj 232 779 doc_same 2;
+#X obj 232 691 doc_same 0;
+#X obj 97 647 doc_m i0 from;
+#X obj 97 735 doc_m i0 to;
+#X obj 97 713 doc_m i0 step;
+#X obj 232 647 doc_same 0;
+#X obj 232 735 doc_same 1;
+#X obj 232 713 doc_same 2;
+#X obj 103 899 for;
 #X connect 0 0 7 0;
 #X connect 1 0 7 1;
 #X connect 2 0 7 2;
 #X connect 7 0 3 0;
-#X connect 9 0 50 0;
-#X connect 10 0 50 2;
-#X connect 11 0 50 1;
-#X connect 40 1 31 0;
-#X connect 41 1 24 0;
-#X connect 42 1 26 0;
-#X connect 43 1 13 0;
-#X connect 44 1 12 0;
-#X connect 45 1 57 0;
-#X connect 46 1 25 0;
-#X connect 47 1 18 0;
-#X connect 48 1 19 0;
-#X connect 50 0 8 0;
-#X connect 51 1 20 0;
-#X connect 53 0 8 0;
-#X connect 54 0 53 0;
-#X connect 55 0 50 0;
+#X connect 9 0 48 0;
+#X connect 10 0 48 2;
+#X connect 11 0 48 1;
+#X connect 38 1 29 0;
+#X connect 39 1 22 0;
+#X connect 40 1 24 0;
+#X connect 40 1 58 0;
+#X connect 41 1 13 0;
+#X connect 42 1 12 0;
+#X connect 43 1 55 0;
+#X connect 44 1 23 0;
+#X connect 45 1 56 0;
+#X connect 46 1 57 0;
+#X connect 48 0 8 0;
+#X connect 49 1 18 0;
+#X connect 50 1 65 0;
+#X connect 51 0 8 0;
+#X connect 52 0 51 0;
+#X connect 53 0 48 0;
+#X connect 59 1 62 0;
+#X connect 60 1 63 0;
+#X connect 61 1 64 0;



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