pub struct Polyrhythm {
pub base: UnsignedIntegerType,
pub components: Vec<UnsignedIntegerType>,
pub tempo: Option<UnsignedIntegerType>,
pub cycle: UnsignedIntegerType,
/* private fields */
}Expand description
A repeating polyrhythm defined by a base meter and subdivision voices.
Fields§
§base: UnsignedIntegerTypeBeats per measure (e.g. 4 for 4/4 time)
components: Vec<UnsignedIntegerType>Subdivisions (e.g. [3, 4] for a 3:4 polyrhythm)
tempo: Option<UnsignedIntegerType>Tempo in BPM. None means no tempo has been assigned yet.
cycle: UnsignedIntegerTypeTotal ticks per measure (lcm of subdivisions)
Implementations§
Source§impl Polyrhythm
impl Polyrhythm
Sourcepub fn new(
base: UnsignedIntegerType,
subdivisions: &[UnsignedIntegerType],
) -> Result<Self>
pub fn new( base: UnsignedIntegerType, subdivisions: &[UnsignedIntegerType], ) -> Result<Self>
Creates a polyrhythm from a base meter and nonzero subdivisions.
Sourcepub fn from_time_signature(
beats_per_measure: UnsignedIntegerType,
tempo: UnsignedIntegerType,
subdivisions: &[UnsignedIntegerType],
) -> Result<Self>
pub fn from_time_signature( beats_per_measure: UnsignedIntegerType, tempo: UnsignedIntegerType, subdivisions: &[UnsignedIntegerType], ) -> Result<Self>
Creates a polyrhythm from a time-signature numerator, tempo, and subdivision voices.
Sourcepub fn with_tempo(self, tempo: UnsignedIntegerType) -> Result<Self>
pub fn with_tempo(self, tempo: UnsignedIntegerType) -> Result<Self>
Returns this polyrhythm with a nonzero tempo in beats per minute.
Sourcepub fn set_tempo(&mut self, tempo: UnsignedIntegerType) -> Result<()>
pub fn set_tempo(&mut self, tempo: UnsignedIntegerType) -> Result<()>
Sets the tempo in beats per minute.
Sourcepub fn tempo(&self) -> Option<UnsignedIntegerType>
pub fn tempo(&self) -> Option<UnsignedIntegerType>
Returns the tempo in beats per minute.
Returns None when the polyrhythm was constructed without a tempo and
Self::set_tempo has not been called.
Sourcepub fn components(&self) -> &[UnsignedIntegerType] ⓘ
pub fn components(&self) -> &[UnsignedIntegerType] ⓘ
Returns the subdivision voices.
Sourcepub fn current_tick(&self) -> UnsignedIntegerType
pub fn current_tick(&self) -> UnsignedIntegerType
Returns the current iterator tick.
Sourcepub fn component_intervals(&self) -> Vec<UnsignedIntegerType> ⓘ
pub fn component_intervals(&self) -> Vec<UnsignedIntegerType> ⓘ
Returns the tick interval for each subdivision voice.
Sourcepub fn measure_duration(&self) -> Result<FloatType>
pub fn measure_duration(&self) -> Result<FloatType>
Returns the duration of one measure (in seconds)
Sourcepub fn tick_duration(&self) -> Result<FloatType>
pub fn tick_duration(&self) -> Result<FloatType>
Returns the duration of one tick (smallest subdivision unit) in seconds.
Sourcepub fn cycle_len(&self) -> UnsignedIntegerType
pub fn cycle_len(&self) -> UnsignedIntegerType
Returns the number of ticks in one full cycle.
Sourcepub fn beat_timings(&self) -> Result<Vec<Vec<FloatType>>>
pub fn beat_timings(&self) -> Result<Vec<Vec<FloatType>>>
Returns beat timings (in seconds) for each subdivision voice over one full measure.
Sourcepub fn events(&self) -> Result<Vec<PolyrhythmEvent>>
pub fn events(&self) -> Result<Vec<PolyrhythmEvent>>
Returns all tick events in one full cycle.
Sourcepub fn hit_events(&self) -> Result<Vec<PolyrhythmEvent>>
pub fn hit_events(&self) -> Result<Vec<PolyrhythmEvent>>
Returns only events where at least one component triggers.
Sourcepub fn ratio_tones(&self) -> Vec<PolyrhythmRatioTone>
pub fn ratio_tones(&self) -> Vec<PolyrhythmRatioTone>
Returns ratio-derived chord tones for the subdivision components.
Components are first reduced by their greatest common divisor. The
smallest reduced component is treated as the root ratio, and each
remaining component is mapped to the nearest twelve-tone semitone
offset using 12 * log2(component / root).
Sourcepub fn ratio_pitches<T>(&self, base: T) -> Result<Vec<Pitch>>
pub fn ratio_pitches<T>(&self, base: T) -> Result<Vec<Pitch>>
Returns ratio-derived pitches above base.
Sourcepub fn ratio_chord<T>(&self, base: T) -> Result<Chord>
pub fn ratio_chord<T>(&self, base: T) -> Result<Chord>
Converts subdivision ratios into a chord above base.
Sourcepub fn analysis(&self) -> Result<PolyrhythmAnalysis>
pub fn analysis(&self) -> Result<PolyrhythmAnalysis>
Returns timing and ratio analysis for one cycle.
Sourcepub fn coincidence_ticks(
&self,
min_simultaneous: usize,
) -> Vec<UnsignedIntegerType> ⓘ
pub fn coincidence_ticks( &self, min_simultaneous: usize, ) -> Vec<UnsignedIntegerType> ⓘ
Returns ticks where at least min_simultaneous components trigger.
Trait Implementations§
Source§impl Clone for Polyrhythm
impl Clone for Polyrhythm
1.0.0 · Source§fn clone_from(&mut self, source: &Self)
fn clone_from(&mut self, source: &Self)
source. Read moreSource§impl Debug for Polyrhythm
impl Debug for Polyrhythm
Source§impl Iterator for Polyrhythm
impl Iterator for Polyrhythm
Source§fn next(&mut self) -> Option<Self::Item>
fn next(&mut self) -> Option<Self::Item>
Advances the polyrhythm by one tick. Returns the current tick and a vector indicating which subdivision triggers a beat.
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Auto Trait Implementations§
impl Freeze for Polyrhythm
impl RefUnwindSafe for Polyrhythm
impl Send for Polyrhythm
impl Sync for Polyrhythm
impl Unpin for Polyrhythm
impl UnsafeUnpin for Polyrhythm
impl UnwindSafe for Polyrhythm
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fn dedup_by<Cmp>( self, cmp: Cmp, ) -> CoalesceBy<Self, DedupPred2CoalescePred<Cmp>, NoCount>
§fn dedup_with_count(
self,
) -> CoalesceBy<Self, DedupPredWithCount2CoalescePred<DedupEq>, WithCount>where
Self: Sized,
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self,
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Self: Sized,
§fn dedup_by_with_count<Cmp>(
self,
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§fn duplicates(self) -> DuplicatesBy<Self, Self::Item, ById>
fn duplicates(self) -> DuplicatesBy<Self, Self::Item, ById>
§fn duplicates_by<V, F>(self, f: F) -> DuplicatesBy<Self, V, ByFn<F>>
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§fn unique(self) -> Unique<Self>
fn unique(self) -> Unique<Self>
§fn unique_by<V, F>(self, f: F) -> UniqueBy<Self, V, F>
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§fn peeking_take_while<F>(&mut self, accept: F) -> PeekingTakeWhile<'_, Self, F>
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true, including the element for which the predicate
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§fn array_combinations<const K: usize>(
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§fn combinations(self, k: usize) -> CombinationsGeneric<Self, Vec<usize>>
fn combinations(self, k: usize) -> CombinationsGeneric<Self, Vec<usize>>
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self,
k: usize,
) -> CombinationsWithReplacement<Self>
fn combinations_with_replacement( self, k: usize, ) -> CombinationsWithReplacement<Self>
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§fn powerset(self) -> Powerset<Self>
fn powerset(self) -> Powerset<Self>
§fn pad_using<F>(self, min: usize, f: F) -> PadUsing<Self, F>
fn pad_using<F>(self, min: usize, f: F) -> PadUsing<Self, F>
min by filling missing elements using a closure f. Read more§fn with_position(self) -> WithPosition<Self>where
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§fn update<F>(self, updater: F) -> Update<Self, F>
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§fn next_array<const N: usize>(&mut self) -> Option<[Self::Item; N]>where
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§fn collect_array<const N: usize>(self) -> Option<[Self::Item; N]>where
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§fn next_tuple<T>(&mut self) -> Option<T>
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§fn collect_tuple<T>(self) -> Option<T>
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§fn find_position<P>(&mut self, pred: P) -> Option<(usize, Self::Item)>
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§fn find_or_last<P>(self, predicate: P) -> Option<Self::Item>
fn find_or_last<P>(self, predicate: P) -> Option<Self::Item>
§fn find_or_first<P>(self, predicate: P) -> Option<Self::Item>
fn find_or_first<P>(self, predicate: P) -> Option<Self::Item>
§fn contains<Q>(&mut self, query: &Q) -> bool
fn contains<Q>(&mut self, query: &Q) -> bool
true if the given item is present in this iterator. Read more§fn all_equal_value(
&mut self,
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§fn all_unique(&mut self) -> bool
fn all_unique(&mut self) -> bool
§fn dropping(self, n: usize) -> Selfwhere
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fn dropping(self, n: usize) -> Selfwhere
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n elements from the iterator eagerly,
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Self: Sized + DoubleEndedIterator,
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.collect_vec() is simply a type specialization of Iterator::collect,
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fn try_collect<T, U, E>(self) -> Result<U, E>
§fn set_from<'a, A, J>(&mut self, from: J) -> usize
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self from the from iterator,
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sep. Read more§fn fold_ok<A, E, B, F>(&mut self, start: B, f: F) -> Result<B, E>
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Result values from an iterator. Read more§fn fold_options<A, B, F>(&mut self, start: B, f: F) -> Option<B>
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§fn tree_fold1<F>(self, f: F) -> Option<Self::Item>
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.tree_reduce().§fn fold_while<B, F>(&mut self, init: B, f: F) -> FoldWhile<B>
fn fold_while<B, F>(&mut self, init: B, f: F) -> FoldWhile<B>
§fn product1<P>(self) -> Option<P>
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§fn sorted_unstable(self) -> IntoIter<Self::Item>
fn sorted_unstable(self) -> IntoIter<Self::Item>
§fn sorted_unstable_by<F>(self, cmp: F) -> IntoIter<Self::Item>
fn sorted_unstable_by<F>(self, cmp: F) -> IntoIter<Self::Item>
§fn sorted_unstable_by_key<K, F>(self, f: F) -> IntoIter<Self::Item>
fn sorted_unstable_by_key<K, F>(self, f: F) -> IntoIter<Self::Item>
§fn sorted(self) -> IntoIter<Self::Item>
fn sorted(self) -> IntoIter<Self::Item>
§fn sorted_by<F>(self, cmp: F) -> IntoIter<Self::Item>
fn sorted_by<F>(self, cmp: F) -> IntoIter<Self::Item>
§fn sorted_by_key<K, F>(self, f: F) -> IntoIter<Self::Item>
fn sorted_by_key<K, F>(self, f: F) -> IntoIter<Self::Item>
§fn sorted_by_cached_key<K, F>(self, f: F) -> IntoIter<Self::Item>
fn sorted_by_cached_key<K, F>(self, f: F) -> IntoIter<Self::Item>
§fn k_smallest(self, k: usize) -> IntoIter<Self::Item>
fn k_smallest(self, k: usize) -> IntoIter<Self::Item>
§fn k_smallest_by<F>(self, k: usize, cmp: F) -> IntoIter<Self::Item>
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§fn k_smallest_by_key<F, K>(self, k: usize, key: F) -> IntoIter<Self::Item>
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§fn k_smallest_relaxed(self, k: usize) -> IntoIter<Self::Item>
fn k_smallest_relaxed(self, k: usize) -> IntoIter<Self::Item>
§fn k_smallest_relaxed_by<F>(self, k: usize, cmp: F) -> IntoIter<Self::Item>
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§fn k_smallest_relaxed_by_key<F, K>(
self,
k: usize,
key: F,
) -> IntoIter<Self::Item>
fn k_smallest_relaxed_by_key<F, K>( self, k: usize, key: F, ) -> IntoIter<Self::Item>
§fn k_largest(self, k: usize) -> IntoIter<Self::Item>
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§fn k_largest_by<F>(self, k: usize, cmp: F) -> IntoIter<Self::Item>
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§fn k_largest_by_key<F, K>(self, k: usize, key: F) -> IntoIter<Self::Item>
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§fn k_largest_relaxed(self, k: usize) -> IntoIter<Self::Item>
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§fn k_largest_relaxed_by<F>(self, k: usize, cmp: F) -> IntoIter<Self::Item>
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§fn k_largest_relaxed_by_key<F, K>(
self,
k: usize,
key: F,
) -> IntoIter<Self::Item>
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§fn tail(self, n: usize) -> IntoIter<Self::Item>where
Self: Sized,
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n elements. Read more§fn partition_map<A, B, F, L, R>(self, predicate: F) -> (A, B)
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Iterator::partition, each partition may
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Results into one list of all the Ok elements
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fn into_group_map_by<K, V, F>(self, f: F) -> HashMap<K, Vec<V>>
HashMap of keys mapped to Vecs of values. The key is specified
in the closure. The values are taken from the input iterator. Read more§fn into_grouping_map<K, V>(self) -> GroupingMap<Self>
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self,
key_mapper: F,
) -> GroupingMap<MapSpecialCase<Self, GroupingMapFn<F>>>
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GroupingMap to be used later with one of the efficient
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fn min_set_by<F>(self, compare: F) -> Vec<Self::Item>
§fn min_set_by_key<K, F>(self, key: F) -> Vec<Self::Item>
fn min_set_by_key<K, F>(self, key: F) -> Vec<Self::Item>
§fn max_set_by<F>(self, compare: F) -> Vec<Self::Item>
fn max_set_by<F>(self, compare: F) -> Vec<Self::Item>
§fn max_set_by_key<K, F>(self, key: F) -> Vec<Self::Item>
fn max_set_by_key<K, F>(self, key: F) -> Vec<Self::Item>
§fn minmax(self) -> MinMaxResult<Self::Item>
fn minmax(self) -> MinMaxResult<Self::Item>
§fn minmax_by_key<K, F>(self, key: F) -> MinMaxResult<Self::Item>
fn minmax_by_key<K, F>(self, key: F) -> MinMaxResult<Self::Item>
§fn minmax_by<F>(self, compare: F) -> MinMaxResult<Self::Item>
fn minmax_by<F>(self, compare: F) -> MinMaxResult<Self::Item>
§fn position_max(self) -> Option<usize>
fn position_max(self) -> Option<usize>
§fn position_max_by_key<K, F>(self, key: F) -> Option<usize>
fn position_max_by_key<K, F>(self, key: F) -> Option<usize>
§fn position_max_by<F>(self, compare: F) -> Option<usize>
fn position_max_by<F>(self, compare: F) -> Option<usize>
§fn position_min(self) -> Option<usize>
fn position_min(self) -> Option<usize>
§fn position_min_by_key<K, F>(self, key: F) -> Option<usize>
fn position_min_by_key<K, F>(self, key: F) -> Option<usize>
§fn position_min_by<F>(self, compare: F) -> Option<usize>
fn position_min_by<F>(self, compare: F) -> Option<usize>
§fn position_minmax(self) -> MinMaxResult<usize>
fn position_minmax(self) -> MinMaxResult<usize>
§fn position_minmax_by_key<K, F>(self, key: F) -> MinMaxResult<usize>
fn position_minmax_by_key<K, F>(self, key: F) -> MinMaxResult<usize>
§fn position_minmax_by<F>(self, compare: F) -> MinMaxResult<usize>
fn position_minmax_by<F>(self, compare: F) -> MinMaxResult<usize>
§fn exactly_one(self) -> Result<Self::Item, ExactlyOneError<Self>>where
Self: Sized,
fn exactly_one(self) -> Result<Self::Item, ExactlyOneError<Self>>where
Self: Sized,
§fn at_most_one(self) -> Result<Option<Self::Item>, ExactlyOneError<Self>>where
Self: Sized,
fn at_most_one(self) -> Result<Option<Self::Item>, ExactlyOneError<Self>>where
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Ok(None) will be returned. If the iterator yields
exactly one element, that element will be returned, otherwise an error will be returned
containing an iterator that has the same output as the input iterator. Read more§fn multipeek(self) -> MultiPeek<Self>where
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fn multipeek(self) -> MultiPeek<Self>where
Self: Sized,
.next()
values without advancing the base iterator. Read more§fn counts(self) -> HashMap<Self::Item, usize>
fn counts(self) -> HashMap<Self::Item, usize>
HashMap which
contains each item that appears in the iterator and the number
of times it appears. Read more§fn counts_by<K, F>(self, f: F) -> HashMap<K, usize>
fn counts_by<K, F>(self, f: F) -> HashMap<K, usize>
HashMap which
contains each item that appears in the iterator and the number
of times it appears,
determining identity using a keying function. Read more