Class

de.sciss.fscape.graph

SegModPhasor

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final case class SegModPhasor(freqN: GE, phase: GE = 0.0) extends SingleOut with Product with Serializable

A phasor UGen that takes new frequency values at the beginning of each cycle. It can be used to implement the 'segmod' program of Döbereiner and Lorenz. In contrast, LFSaw continuously reads frequency values, it output values go from zero to one, and the phase argument is only used internally (the output signal always starts at zero).

To turn this, for example, into a sine oscillator, you can use (SegModPhasor(...) * 2 * math.Pi).sin.

Warning: passing in zero frequencies will halt the process. XXX TODO

freqN

normalized frequency (f/sr). One value per output cycle is read. Also note that the UGen terminates when the freqN signal ends. Thus, to use a constant frequency, wrap it in a DC or DC(...).take.

phase

phase offset in radians. The phase offset is only used internally to determine when to change the frequency. For example, with a phase of 0.25, when the output phase reaches 0.25, the next frequency value is read. With the default phase of 0.0, a frequency value is read after one complete cycle (output reaches 1.0).

Linear Supertypes
Serializable, Serializable, SingleOut, SomeOut[StreamOut], GE.Lazy, GE, UGenSource[UGenInLike, StreamOut], Expander[UGenInLike], Lazy, Product, Equals, AnyRef, Any
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  1. SegModPhasor
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  4. SingleOut
  5. SomeOut
  6. Lazy
  7. GE
  8. UGenSource
  9. Expander
  10. Lazy
  11. Product
  12. Equals
  13. AnyRef
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Instance Constructors

  1. new SegModPhasor(freqN: GE, phase: GE = 0.0)

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    freqN

    normalized frequency (f/sr). One value per output cycle is read. Also note that the UGen terminates when the freqN signal ends. Thus, to use a constant frequency, wrap it in a DC or DC(...).take.

    phase

    phase offset in radians. The phase offset is only used internally to determine when to change the frequency. For example, with a phase of 0.25, when the output phase reaches 0.25, the next frequency value is read. With the default phase of 0.0, a frequency value is read after one complete cycle (output reaches 1.0).

Value Members

  1. final def !=(arg0: Any): Boolean

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    AnyRef → Any
  2. final def ##(): Int

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    AnyRef → Any
  3. final def ==(arg0: Any): Boolean

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    AnyRef → Any
  4. final def asInstanceOf[T0]: T0

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    Any
  5. def clone(): AnyRef

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    Attributes
    protected[java.lang]
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    AnyRef
    Annotations
    @throws( ... )
  6. final def eq(arg0: AnyRef): Boolean

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  7. def finalize(): Unit

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    protected[java.lang]
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    AnyRef
    Annotations
    @throws( classOf[java.lang.Throwable] )
  8. val freqN: GE

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    normalized frequency (f/sr).

    normalized frequency (f/sr). One value per output cycle is read. Also note that the UGen terminates when the freqN signal ends. Thus, to use a constant frequency, wrap it in a DC or DC(...).take.

  9. final def getClass(): Class[_]

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    Definition Classes
    AnyRef → Any
  10. final def isInstanceOf[T0]: Boolean

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    Definition Classes
    Any
  11. def makeUGen(args: IndexedSeq[UGenIn])(implicit b: Builder): UGenInLike

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    Attributes
    protected
    Definition Classes
    SegModPhasorUGenSource
  12. def makeUGens(implicit b: Builder): UGenInLike

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    Abstract method which must be implemented by creating the actual UGens during expansion.

    Abstract method which must be implemented by creating the actual UGens during expansion. This method is at most called once during graph expansion

    returns

    the expanded object (depending on the type parameter U)

    Attributes
    protected
    Definition Classes
    SegModPhasorExpander
  13. final def name: String

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    Definition Classes
    UGenSource
  14. final def ne(arg0: AnyRef): Boolean

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    AnyRef
  15. final def notify(): Unit

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    Definition Classes
    AnyRef
  16. final def notifyAll(): Unit

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    Definition Classes
    AnyRef
  17. val phase: GE

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    phase offset in radians.

    phase offset in radians. The phase offset is only used internally to determine when to change the frequency. For example, with a phase of 0.25, when the output phase reaches 0.25, the next frequency value is read. With the default phase of 0.0, a frequency value is read after one complete cycle (output reaches 1.0).

  18. final def synchronized[T0](arg0: ⇒ T0): T0

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    Definition Classes
    AnyRef
  19. final def wait(): Unit

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    @throws( ... )
  20. final def wait(arg0: Long, arg1: Int): Unit

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    @throws( ... )
  21. final def wait(arg0: Long): Unit

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Inherited from Serializable

Inherited from Serializable

Inherited from SingleOut

Inherited from SomeOut[StreamOut]

Inherited from GE.Lazy

Inherited from GE

Inherited from UGenSource[UGenInLike, StreamOut]

Inherited from Expander[UGenInLike]

Inherited from Lazy

Inherited from Product

Inherited from Equals

Inherited from AnyRef

Inherited from Any

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