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use integer::Integer;
impl Integer {
/// Returns the number of trailing zeros in the binary expansion of an [`Integer`]
/// (equivalently, the multiplicity of 2 in its prime factorization), or `None` is the
/// [`Integer`] is 0.
///
/// # Worst-case complexity
/// $T(n) = O(n)$
///
/// $M(n) = O(1)$
///
/// where $T$ is time, $M$ is additional memory, and $n$ is `self.significant_bits()`.
///
/// # Examples
/// ```
/// extern crate malachite_base;
///
/// use malachite_base::num::arithmetic::traits::Pow;
/// use malachite_base::num::basic::traits::Zero;
/// use malachite_nz::integer::Integer;
///
/// assert_eq!(Integer::ZERO.trailing_zeros(), None);
/// assert_eq!(Integer::from(3).trailing_zeros(), Some(0));
/// assert_eq!(Integer::from(-72).trailing_zeros(), Some(3));
/// assert_eq!(Integer::from(100).trailing_zeros(), Some(2));
/// assert_eq!((-Integer::from(10u32).pow(12)).trailing_zeros(), Some(12));
/// ```
pub fn trailing_zeros(&self) -> Option<u64> {
self.abs.trailing_zeros()
}
}