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IlukFactorization

Struct IlukFactorization 

Source
pub struct IlukFactorization<T: GpuFloat> {
    pub lu: CsrMatrix<T>,
    pub diag_inv: Vec<T>,
    pub fill_level: usize,
}
Expand description

ILU(k) factorization result stored as combined L\U in CSR.

L is unit lower triangular (diagonal = 1, stored implicitly) and U is upper triangular (diagonal stored explicitly). Both share the CSR storage lu.

Fields§

§lu: CsrMatrix<T>

Combined L\U factors in CSR format. Lower triangle contains L (without unit diagonal). Upper triangle (including diagonal) contains U.

§diag_inv: Vec<T>

Inverse of the diagonal of U, for efficient forward/backward solve.

§fill_level: usize

The fill level used to compute this factorization.

Implementations§

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impl<T: GpuFloat> IlukFactorization<T>

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pub fn compute( _handle: &SparseHandle, matrix: &CsrMatrix<T>, config: &IlukConfig, ) -> SparseResult<Self>

Compute ILU(k) from a CSR matrix.

§Arguments
  • _handle – Sparse handle (reserved for GPU path).
  • matrix – Square CSR matrix to factor.
  • config – ILU(k) configuration (fill level).
§Errors

Returns SparseError::DimensionMismatch if the matrix is not square. Returns SparseError::SingularMatrix if a zero pivot is encountered.

Source

pub fn apply(&self, r: &[T], z: &mut [T]) -> SparseResult<()>

Apply as preconditioner: solve (L*U)*z = r.

Forward solve L*y = r then backward solve U*z = y.

§Arguments
  • r – Right-hand side vector (host, length n).
  • z – Output vector (host, length n).
§Errors

Returns SparseError::DimensionMismatch if vector lengths are wrong.

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