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Synthesizer.State.ToneModulation |
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Synopsis |
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type Cell sig y = T (sig y) | | interpolateCell :: Read sig y => T a y -> T b y -> (a, b) -> Cell sig y -> y | | data Prototype sig a v = Prototype {} | | makePrototype :: (C a, Read sig v) => Margin -> Margin -> a -> sig v -> Prototype sig a v | | sampledToneCell :: (C a, Transform sig v) => Prototype sig a v -> a -> T a -> ((a, a), Cell sig v) | | oscillatorCells :: (C t, Transform sig y) => Margin -> Margin -> t -> sig y -> (t, T t) -> (T t, T t) -> T ((t, t), Cell sig y) | | checkNonNeg :: (Ord a, C a, Show a) => a -> a | | makeCell :: Transform sig y => Int -> sig y -> Cell sig y | | oscillatorCoords :: C t => Int -> t -> (t, T t) -> (T t, T t) -> T (Coords t) | | limitRelativeShapes :: C t => Margin -> Margin -> Int -> (t, T t) -> (t, T t) | | limitMinRelativeValues :: (C t, Ord t) => t -> (t, T t) -> (t, T t) | | freqsToPhases :: C a => T a -> T a (T a) | | freqsToPhasesSync :: C a => T a -> T a (T a) |
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Documentation |
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interpolateCell :: Read sig y => T a y -> T b y -> (a, b) -> Cell sig y -> y | Source |
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Constructors | Prototype | | protoMarginLeap :: Margin | | protoMarginStep :: Margin | | protoIpOffset :: Int | | protoPeriod :: a | | protoPeriodInt :: Int | | protoShapeLimits :: (a, a) | | protoSignal :: sig v | |
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lazy oscillator
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This function should not be used,
since it requires recomputation of shapes and freqs lists.
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limitMinRelativeValues :: (C t, Ord t) => t -> (t, T t) -> (t, T t) | Source |
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handling of phases as needed for oscillators
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Convert a list of phase steps into a list of momentum phases.
phase is a number in the interval [0,1).
freq contains the phase steps.
The last element is omitted.
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freqsToPhasesSync :: C a => T a -> T a (T a) | Source |
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Like freqsToPhases but the first element is omitted.
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Produced by Haddock version 2.4.2 |