MuFreeModule

Struct MuFreeModule 

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pub struct MuFreeModule<const U: bool, A: MuAlgebra<U>> {
    algebra: Arc<A>,
    name: String,
    min_degree: i32,
    gen_names: OnceBiVec<Vec<String>>,
    gen_deg_idx_to_internal_idx: OnceBiVec<usize>,
    num_gens: OnceBiVec<usize>,
    basis_element_to_opgen: OnceBiVec<OnceVec<OperationGeneratorPair>>,
    generator_to_index: OnceBiVec<OnceVec<usize>>,
}
Expand description

A free module.

A free module is uniquely determined by its list of generators. The generators are listed in increasing degrees, and the index in this list is the internal index.

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§algebra: Arc<A>§name: String§min_degree: i32§gen_names: OnceBiVec<Vec<String>>§gen_deg_idx_to_internal_idx: OnceBiVec<usize>

degree -> internal index of first generator in degree

§num_gens: OnceBiVec<usize>§basis_element_to_opgen: OnceBiVec<OnceVec<OperationGeneratorPair>>§generator_to_index: OnceBiVec<OnceVec<usize>>

degree -> internal_gen_idx -> the offset of the generator in degree

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impl<const U: bool, A: MuAlgebra<U>> MuFreeModule<U, A>

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pub fn new(algebra: Arc<A>, name: String, min_degree: i32) -> Self

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impl<const U: bool, A: MuAlgebra<U>> MuFreeModule<U, A>

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pub fn gen_names(&self) -> &OnceBiVec<Vec<String>>

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pub fn number_of_gens_in_degree(&self, degree: i32) -> usize

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pub fn add_generators( &self, degree: i32, num_gens: usize, names: Option<Vec<String>>, )

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pub fn internal_generator_offset( &self, degree: i32, internal_gen_idx: usize, ) -> usize

Given a generator (gen_deg, gen_idx), find the first index in degree degree with elements from the generator.

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pub fn iter_gens(&self, degree: i32) -> impl Iterator<Item = (i32, usize)> + '_

Iterate the degrees and indices of each generator up to degree degree.

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pub fn iter_gen_offsets<const N: usize>( &self, degree: [i32; N], ) -> impl Iterator<Item = GeneratorData<N>> + '_

Iterate the degrees and offsets of each generator up to degree degree.

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pub fn generator_offset( &self, degree: i32, gen_deg: i32, gen_idx: usize, ) -> usize

Given a generator (gen_deg, gen_idx), find the first index in degree degree with elements from the generator.

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pub fn operation_generator_to_index( &self, op_deg: i32, op_idx: usize, gen_deg: i32, gen_idx: usize, ) -> usize

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pub fn index_to_op_gen( &self, degree: i32, index: usize, ) -> &OperationGeneratorPair

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pub fn extend_by_zero(&self, degree: i32)

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pub fn slice_vector<'a>( &self, degree: i32, gen_degree: i32, gen_index: usize, v: FpSlice<'a>, ) -> FpSlice<'a>

Given a vector that represents an element in degree degree, slice it to the part that represents the terms that correspond to the specified generator.

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pub fn iter_slices<'a>( &'a self, degree: i32, slice: FpSlice<'a>, ) -> impl Iterator<Item = (i32, usize, i32, FpSlice<'a>)> + 'a

Given an element in a degree, iterate through the slices corresponding to each generator. Each item of the iterator is (gen_degree, gen_index, op_degree, slice). This skips slices that are zero length.

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impl<const U: bool, A: MuAlgebra<U>> Display for MuFreeModule<U, A>

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fn fmt(&self, f: &mut Formatter<'_>) -> Result

Formats the value using the given formatter. Read more
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impl<const U: bool, A: MuAlgebra<U>> Module for MuFreeModule<U, A>

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type Algebra = A

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fn algebra(&self) -> Arc<A>

The algebra the module is over.
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fn min_degree(&self) -> i32

The minimum degree of the module, which is required to be bounded below
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fn max_computed_degree(&self) -> i32

The maximum t for which the module is fully defined at t. See Module documentation for more details.
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fn max_generator_degree(&self) -> Option<i32>

Maximum degree of a generator under the Steenrod action. Every element in higher degree must be obtainable from applying a Steenrod action to a lower degree element.
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fn compute_basis(&self, max_degree: i32)

Compute internal data of the module so that we can query information up to degree degree. This should be run by the user whenever they want to query such information. Read more
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fn dimension(&self, degree: i32) -> usize

The dimension of a module at the given degree
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fn basis_element_to_string(&self, degree: i32, idx: usize) -> String

The name of a basis element. This is useful for debugging and printing results.
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fn act_on_basis( &self, result: FpSliceMut<'_>, coeff: u32, op_degree: i32, op_index: usize, mod_degree: i32, mod_index: usize, )

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fn act( &self, result: FpSliceMut<'_>, coeff: u32, op_degree: i32, op_index: usize, input_degree: i32, input: FpSlice<'_>, )

The length of input need not be equal to the dimension of the module in said degree. Missing entries are interpreted to be 0, while extra entries must be zero. Read more
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fn is_unit(&self) -> bool

Whether this is the unit module.
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fn prime(&self) -> ValidPrime

The prime the module is over, which should be equal to the prime of the algebra.
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fn max_degree(&self) -> Option<i32>

max_degree is the a degree such that if t > max_degree, then self.dimension(t) = 0.
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fn total_dimension(&self) -> usize

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fn act_by_element( &self, result: FpSliceMut<'_>, coeff: u32, op_degree: i32, op: FpSlice<'_>, input_degree: i32, input: FpSlice<'_>, )

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fn act_by_element_on_basis( &self, result: FpSliceMut<'_>, coeff: u32, op_degree: i32, op: FpSlice<'_>, input_degree: i32, input_index: usize, )

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fn element_to_string(&self, degree: i32, element: FpSlice<'_>) -> String

Gives the name of an element. The default implementation is derived from Module::basis_element_to_string in the obvious way.
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impl<const U: bool, M: Module> ZeroHomomorphism<MuFreeModule<U, <M as Module>::Algebra>, M> for MuFreeModuleHomomorphism<U, M>
where M::Algebra: MuAlgebra<U>,

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fn zero_homomorphism( source: Arc<MuFreeModule<U, M::Algebra>>, target: Arc<M>, degree_shift: i32, ) -> Self

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impl<const U: bool, A: MuAlgebra<U>> ZeroModule for MuFreeModule<U, A>

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fn zero_module(algebra: Arc<A>, min_degree: i32) -> Self

Auto Trait Implementations§

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impl<const U: bool, A> !Freeze for MuFreeModule<U, A>

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impl<const U: bool, A> RefUnwindSafe for MuFreeModule<U, A>
where A: RefUnwindSafe,

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impl<const U: bool, A> Send for MuFreeModule<U, A>

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impl<const U: bool, A> Sync for MuFreeModule<U, A>

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impl<const U: bool, A> Unpin for MuFreeModule<U, A>

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impl<const U: bool, A> !UnwindSafe for MuFreeModule<U, A>

Blanket Implementations§

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impl<T> Any for T
where T: 'static + ?Sized,

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fn type_id(&self) -> TypeId

Gets the TypeId of self. Read more
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impl<T> Borrow<T> for T
where T: ?Sized,

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fn borrow(&self) -> &T

Immutably borrows from an owned value. Read more
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impl<T> BorrowMut<T> for T
where T: ?Sized,

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fn borrow_mut(&mut self) -> &mut T

Mutably borrows from an owned value. Read more
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impl<T> From<T> for T

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fn from(t: T) -> T

Returns the argument unchanged.

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impl<T, U> Into<U> for T
where U: From<T>,

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fn into(self) -> U

Calls U::from(self).

That is, this conversion is whatever the implementation of From<T> for U chooses to do.

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impl<T> IntoEither for T

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fn into_either(self, into_left: bool) -> Either<Self, Self>

Converts self into a Left variant of Either<Self, Self> if into_left is true. Converts self into a Right variant of Either<Self, Self> otherwise. Read more
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fn into_either_with<F>(self, into_left: F) -> Either<Self, Self>
where F: FnOnce(&Self) -> bool,

Converts self into a Left variant of Either<Self, Self> if into_left(&self) returns true. Converts self into a Right variant of Either<Self, Self> otherwise. Read more
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impl<T> Pointable for T

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const ALIGN: usize

The alignment of pointer.
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type Init = T

The type for initializers.
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unsafe fn init(init: <T as Pointable>::Init) -> usize

Initializes a with the given initializer. Read more
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unsafe fn deref<'a>(ptr: usize) -> &'a T

Dereferences the given pointer. Read more
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unsafe fn deref_mut<'a>(ptr: usize) -> &'a mut T

Mutably dereferences the given pointer. Read more
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unsafe fn drop(ptr: usize)

Drops the object pointed to by the given pointer. Read more
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impl<T> ToString for T
where T: Display + ?Sized,

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fn to_string(&self) -> String

Converts the given value to a String. Read more
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impl<T, U> TryFrom<U> for T
where U: Into<T>,

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type Error = Infallible

The type returned in the event of a conversion error.
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fn try_from(value: U) -> Result<T, <T as TryFrom<U>>::Error>

Performs the conversion.
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impl<T, U> TryInto<U> for T
where U: TryFrom<T>,

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type Error = <U as TryFrom<T>>::Error

The type returned in the event of a conversion error.
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fn try_into(self) -> Result<U, <U as TryFrom<T>>::Error>

Performs the conversion.
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impl<V, T> VZip<V> for T
where V: MultiLane<T>,

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fn vzip(self) -> V