#![cfg(feature = "arbitrary")] use na::{DMatrix, Matrix2, Matrix3x5, Matrix4, Matrix5x3}; quickcheck! { fn bidiagonal(m: DMatrix) -> bool { if m.len() == 0 { return true; } let bidiagonal = m.clone().bidiagonalize(); let (u, d, v_t) = bidiagonal.unpack(); println!("{}{}{}", &u, &d, &v_t); println!("{:.7}{:.7}", &u * &d * &v_t, m); relative_eq!(m, &u * d * &v_t, epsilon = 1.0e-7) } fn bidiagonal_static_5_3(m: Matrix5x3) -> bool { let bidiagonal = m.bidiagonalize(); let (u, d, v_t) = bidiagonal.unpack(); println!("{}{}{}", &u, &d, &v_t); println!("{:.7}{:.7}", &u * &d * &v_t, m); relative_eq!(m, &u * d * &v_t, epsilon = 1.0e-7) } fn bidiagonal_static_3_5(m: Matrix3x5) -> bool { let bidiagonal = m.bidiagonalize(); let (u, d, v_t) = bidiagonal.unpack(); println!("{}{}{}", &u, &d, &v_t); println!("{:.7}{:.7}", &u * &d * &v_t, m); relative_eq!(m, &u * d * &v_t, epsilon = 1.0e-7) } fn bidiagonal_static_square(m: Matrix4) -> bool { let bidiagonal = m.bidiagonalize(); let (u, d, v_t) = bidiagonal.unpack(); println!("{}{}{}", &u, &d, &v_t); println!("{:.7}{:.7}", &u * &d * &v_t, m); relative_eq!(m, &u * d * &v_t, epsilon = 1.0e-7) } fn bidiagonal_static_square_2x2(m: Matrix2) -> bool { let bidiagonal = m.bidiagonalize(); let (u, d, v_t) = bidiagonal.unpack(); println!("{}{}{}", &u, &d, &v_t); println!("{:.7}{:.7}", &u * &d * &v_t, m); relative_eq!(m, &u * d * &v_t, epsilon = 1.0e-7) } }