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-rw-r--r--pd/doc/5.reference/cpole~-help.pd62
1 files changed, 31 insertions, 31 deletions
diff --git a/pd/doc/5.reference/cpole~-help.pd b/pd/doc/5.reference/cpole~-help.pd
index e0df0339..f3ecbaa5 100644
--- a/pd/doc/5.reference/cpole~-help.pd
+++ b/pd/doc/5.reference/cpole~-help.pd
@@ -1,24 +1,8 @@
-#N canvas 281 13 533 567 12;
+#N canvas -10 52 610 611 12;
#X obj 54 90 osc~ 100;
#X msg 62 117 clear;
-#X obj 79 547 lop~;
-#X text 10 550 see also:;
-#X text 333 549 updated for Pd version-0.38;
-#X obj 86 497 rzero~;
-#X obj 37 517 cpole~;
-#X obj 37 497 rpole~;
-#X obj 135 497 rzero_rev~;
-#X obj 86 517 czero~;
-#X obj 135 517 czero_rev~;
-#X text 213 497 real;
-#X text 212 518 complex;
-#X text 34 481 1-pole;
-#X text 83 481 1-zero;
-#X text 133 481 1-zero \, reversed;
-#X text 59 466 summary of raw filters:;
-#X text 73 300 y[n] = y[n-1] + a[n] * x[n];
#X text 12 369 The transfer function is H(Z) = 1/(1 - aZ^-1).;
-#X text 106 116 <-- clear internal state to zero;
+#X text 115 116 <-- clear internal state to zero;
#N canvas 168 90 498 357 test 0;
#X obj 76 78 osc~;
#X floatatom 76 55 5 0 0 0 - - -;
@@ -84,18 +68,17 @@
#X connect 28 0 9 1;
#X connect 29 0 28 0;
#X restore 459 483 pd test;
-#X text 113 550 etc.: user-friendly filters;
#X text 10 387 (Pd also provides a suite of user-friendly filters.
This and other raw filters are provided for situations which the user-friendly
ones can't handle. See Chapter 8 of http://crca.ucsd.edu/~msp/techniques
for an introduction to the necessary theory.);
#X obj 52 7 cpole~;
#X text 114 7 complex one-pole (recursive) filter \, raw;
-#X text 118 91 <-- signal to filter (real part);
-#X text 117 173 <-- signal to filter (imaginary part);
+#X text 132 93 <-- signal to filter (real part);
+#X text 130 173 <-- signal to filter (imaginary part);
#X obj 84 172 sig~;
#X obj 115 197 sig~;
-#X text 149 199 <-- filter coefficient (real part);
+#X text 162 199 <-- filter coefficient (real part);
#X obj 145 219 sig~;
#X obj 53 244 cpole~ 0.9 0.4;
#X text 159 246 <-- creation arguments initialize filter;
@@ -104,16 +87,33 @@ for an introduction to the necessary theory.);
#X text 11 320 where y[n] is the output \, x[n] the input \, and a[n]
the filter coefficient (all complex numbers). The filter is unstable
if/when |a[n]|>1.;
-#X text 8 31 Cpole~ filters a complex audio signal (first two inlets)
+#X text 12 27 Cpole~ filters a complex audio signal (first two inlets)
via a one-pole filter \, whose coefficients are controlled by creation
arguments or by another complex audio signal (remaining two inlets).
;
-#X text 150 144 <-- set internal state (real&imaginary parts);
+#X text 171 143 <-- set internal state (real&imaginary parts);
#X msg 64 143 set 0.6 0.8;
-#X text 179 221 <-- filter coefficient (imaginary part);
-#X connect 0 0 31 0;
-#X connect 1 0 31 0;
-#X connect 27 0 31 1;
-#X connect 28 0 31 2;
-#X connect 30 0 31 3;
-#X connect 38 0 31 0;
+#X text 190 221 <-- filter coefficient (imaginary part);
+#X text 73 300 y[n] = x[n] + a[n] * y[n-1];
+#X obj 97 566 lop~;
+#X text 11 566 see also:;
+#X obj 96 497 rzero~;
+#X obj 36 519 cpole~;
+#X obj 36 497 rpole~;
+#X obj 156 497 rzero_rev~;
+#X obj 96 519 czero~;
+#X obj 156 519 czero_rev~;
+#X text 255 497 real;
+#X text 254 520 complex;
+#X text 33 481 1-pole;
+#X text 93 481 1-zero;
+#X text 143 481 1-zero \, reversed;
+#X text 58 466 summary of raw filters:;
+#X text 137 566 etc.: user-friendly filters;
+#X text 343 583 updated for Pd version 0.42;
+#X connect 0 0 14 0;
+#X connect 1 0 14 0;
+#X connect 10 0 14 1;
+#X connect 11 0 14 2;
+#X connect 13 0 14 3;
+#X connect 21 0 14 0;