final case class DNoiseRing(change: GE = 0.5f, chance: GE = 0.5f, shift: GE = 1, numBits: GE = 8, init: GE = 0) extends SingleOut with DemandRated with IsIndividual with Product with Serializable
Demand rate UGen implementing a Wiard noise ring.
"In latter model synthesizers, digital noise sources began to appear in place of analog ones. Traditionally, a pseudo-random shift register set up for optimal length. By optimal length, it is meant that every state of all available bits will appear at some time, but the order is unknown. Essentially a counter that counts in an unknown order. This represents the maximum state of information "entropy" available for that number of bits. But music has close self-similarity over short periods of time. That is, it repeats itself with changes appearing slowly. This shift register generator is designed to give control of the rate of appearance of new information. It has a tight set of controls over how random it actually is and how fast change occurs." (source: http://mamonu.weebly.com/wiard-noisering.html)
This is a third-party UGen (DEINDUGens).
- change
probability of changing to a new value
- chance
probability of the new value becoming HIGH
- init
initial internal state
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- val chance: GE
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makeUGen(_args: Vec[UGenIn]): UGenInLike
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def
makeUGens: UGenInLike
Abstract method which must be implemented by creating the actual
UGen
s during expansion.Abstract method which must be implemented by creating the actual
UGen
s during expansion. This method is at most called once during graph expansion- returns
the expanded object (depending on the type parameter
U
)
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name: String
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- val numBits: GE
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def
rate: Rate
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- val shift: GE
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