Documented Mux9 node.
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@ -43,36 +43,52 @@ impl Mux9 {
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}
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}
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}
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}
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pub const slct : &'static str =
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pub const slct : &'static str =
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"Mux9 slct\n\nRange: (0..1)\n";
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"Mux9 slct\nSelects the input that is routed to the output 'sig'.\
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But only if this input is actually connected. If there is no \
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connection, the 't_rst', 't_up' and 't_down' inputs are used to \
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control the current routing. The maximum routed input is determined \
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by the 'in_cnt' setting.\nRange: (0..1)";
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pub const t_rst : &'static str =
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pub const t_rst : &'static str =
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"Mux9 t_rst\n\nRange: (-1..1)\n";
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"Mux9 t_rst\nResets the internal routing to the first input 'in_1'.\
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Keep in mind: This input is only used if 'slct' is not connected.\
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\nRange: (-1..1)\n";
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pub const t_up : &'static str =
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pub const t_up : &'static str =
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"Mux9 t_up\n\nRange: (-1..1)\n";
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"Mux9 t_up\nIncreases the internal routing to the next input port.\
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If the last input (depending on the 'in_cnt' setting) was selected\
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if will wrap around to 'in_1'.\
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Keep in mind: This input is only used if 'slct' is not connected.\
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\nRange: (-1..1)\n";
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pub const t_down : &'static str =
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pub const t_down : &'static str =
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"Mux9 t_down\n\nRange: (-1..1)\n";
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"Mux9 t_down\nDecreases the internal routing to the previous input \
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port (eg. 'in_3' => 'in_2'). If 'in_1' as selected, then it will \
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wrap around to the highest possible input port (depending on the \
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'in_cnt' setting).\
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Keep in mind: This input is only used if 'slct' is not connected.\
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\nRange: (-1..1)\n";
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pub const in_1 : &'static str =
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pub const in_1 : &'static str =
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"Mux9 in_1\n\nRange: (-1..1)\n";
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"Mux9 in_1\nInput port 1.\nRange: (-1..1)\n";
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pub const in_2 : &'static str =
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pub const in_2 : &'static str =
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"Mux9 in_2\n\nRange: (-1..1)\n";
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"Mux9 in_2\nInput port 2.\nRange: (-1..1)\n";
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pub const in_3 : &'static str =
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pub const in_3 : &'static str =
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"Mux9 in_3\n\nRange: (-1..1)\n";
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"Mux9 in_3\nInput port 3.\nRange: (-1..1)\n";
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pub const in_4 : &'static str =
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pub const in_4 : &'static str =
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"Mux9 in_4\n\nRange: (-1..1)\n";
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"Mux9 in_4\nInput port 4.\nRange: (-1..1)\n";
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pub const in_5 : &'static str =
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pub const in_5 : &'static str =
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"Mux9 in_5\n\nRange: (-1..1)\n";
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"Mux9 in_5\nInput port 5.\nRange: (-1..1)\n";
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pub const in_6 : &'static str =
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pub const in_6 : &'static str =
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"Mux9 in_6\n\nRange: (-1..1)\n";
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"Mux9 in_6\nInput port 6.\nRange: (-1..1)\n";
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pub const in_7 : &'static str =
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pub const in_7 : &'static str =
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"Mux9 in_7\n\nRange: (-1..1)\n";
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"Mux9 in_7\nInput port 7.\nRange: (-1..1)\n";
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pub const in_8 : &'static str =
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pub const in_8 : &'static str =
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"Mux9 in_8\n\nRange: (-1..1)\n";
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"Mux9 in_8\nInput port 8.\nRange: (-1..1)\n";
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pub const in_9 : &'static str =
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pub const in_9 : &'static str =
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"Mux9 in_9\n\nRange: (-1..1)\n";
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"Mux9 in_9\nInput port 9.\nRange: (-1..1)\n";
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pub const in_cnt : &'static str =
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pub const in_cnt : &'static str =
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"Mux9 in_cnt\nThe number of inputs that are routed to the output. \
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"Mux9 in_cnt\nThe number of inputs that are routed to the output. \
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This will limit the number of maximally used inputs.\n";
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This will limit the number of maximally used inputs.\n";
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pub const sig : &'static str =
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pub const sig : &'static str =
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"Mux9 sig\n\nRange: (-1..1)\n";
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"Mux9 sig\nThe currently selected input port will be presented on \
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this output port.\nRange: (-1..1)\n";
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pub const DESC : &'static str =
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pub const DESC : &'static str =
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r#"9 Ch. Multiplexer
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r#"9 Ch. Multiplexer
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@ -95,6 +111,16 @@ The 'in_cnt' parameter allows selecting the number of routed input channels.
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The opposite of this node is the 'Demux9', which demultiplexes or routes
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The opposite of this node is the 'Demux9', which demultiplexes or routes
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the one input signal to one of the 9 outputs.
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the one input signal to one of the 9 outputs.
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Tip:
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An interesting use case for this node is to use it as (up to) 9 step
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control signal sequencer. Leave the 'in_1' to 'in_9' ports unconnected
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and dial in the desired value via the parameter knobs. This can lead to
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interesting results. Even more interesting it can become if you stack
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multiple 'Demux9' in series and connect just some of the input ports
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for slightly changing sequences. Attach a slew limiter node (eg. 'LSlew'
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or 'ESlew') if less harsh transitions between the input routings is
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desired.
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"#;
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"#;
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}
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}
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