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-#X msg 255 135 1 1 1 1 1 1 1 1 1;
-#X obj 255 113 loadbang;
-#X obj 255 157 #redim (3 3);
-#X obj 43 158 #in;
-#X obj 43 241 #out window;
-#X obj 103 723 #contrast;
-#X obj 169 723 #posterize;
-#X obj 241 723 #solarize;
-#X obj 307 723 #layer;
-#X obj 43 183 #convolve \, op ^ \, fold + \, seed 0;
-#X text 14 28 [#convolve] is used to perform various transformations
-on images such as blurring \, sharpening \, finding edges \, embossing
-\, cellular automata and many others.;
-#X text 232 316 This is the convolution grid and it gets stored in
-the other object. If rows2 and/or columns 2 are odd numbers \, then
-the centre of convolution is the middle of the convolution grid. If
-they are even numbers \, then the chosen centre will be slightly more
-to the left and/or to the top \, because the actual middle is between
-celle of the grid.;
-#X obj 3 723 doc_also;
-#X obj 14 691 doc_oo 0;
-#X obj 14 443 doc_ii 0;
-#X obj 14 629 doc_ii 1;
-#X text 155 216 here ^ is the parallel operator \, fold is indicated
-by + and 0 is its base (seed).;
-#X obj 14 316 doc_cc 0;
-#X text 232 691 Resulting image.;
-#X text 232 443 Splits the incoming grid into dim(rest...) parts \,
-for each of those parts at (y \, x). A rectangle of such parts \, centered
-around (y \, x) is combined with the convolution grid like a [#] of
-operation op_para. Then each such result is folded like [#fold] of
-operation op_fold and specified base. The results are assembled into
-a grid that is sent to the outlet. Near the borders of the grid \,
-coordinates wrap around. this means the whole grid has to be received
-before production of the next grid starts.;
-#X text 232 629 same as arg 0;
-#X msg 43 135 open scissors.jpg \, bang;
-#X obj 0 0 doc_h;
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-#X obj 97 691 doc_m o0 grid;
-#X obj 97 589 doc_m i0 op numop;
-#X obj 97 569 doc_m i0 fold numop;
-#X obj 97 609 doc_m i0 seed grid;
-#X obj 97 316 doc_m c0 grid;
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-#X connect 3 0 10 1;
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