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@@ -56,13 +56,13 @@ pub type Rational64 = Ratio<i64>;
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pub type BigRational = Ratio<BigInt>;
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impl<T: Clone + Integer> Ratio<T> {
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- /// Creates a ratio representing the integer `t`.
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+ /// Creates a `Ratio` representing the integer `t`.
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#[inline]
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pub fn from_integer(t: T) -> Ratio<T> {
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Ratio::new_raw(t, One::one())
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}
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- /// Creates a ratio without checking for `denom == 0` or reducing.
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+ /// Creates a `Ratio` without checking for `denom == 0` or reducing.
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#[inline]
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pub fn new_raw(numer: T, denom: T) -> Ratio<T> {
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Ratio {
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@@ -71,7 +71,7 @@ impl<T: Clone + Integer> Ratio<T> {
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}
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}
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- /// Create a new Ratio. Fails if `denom == 0`.
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+ /// Creates a new `Ratio`. Fails if `denom == 0`.
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#[inline]
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pub fn new(numer: T, denom: T) -> Ratio<T> {
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if denom == Zero::zero() {
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@@ -82,7 +82,7 @@ impl<T: Clone + Integer> Ratio<T> {
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ret
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}
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- /// Converts to an integer.
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+ /// Converts to an integer, rounding towards zero.
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#[inline]
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pub fn to_integer(&self) -> T {
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self.trunc().numer
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@@ -106,7 +106,7 @@ impl<T: Clone + Integer> Ratio<T> {
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self.denom == One::one()
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}
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- /// Put self into lowest terms, with denom > 0.
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+ /// Puts self into lowest terms, with denom > 0.
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fn reduce(&mut self) {
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let g: T = self.numer.gcd(&self.denom);
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@@ -124,7 +124,10 @@ impl<T: Clone + Integer> Ratio<T> {
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}
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}
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- /// Returns a `reduce`d copy of self.
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+ /// Returns a reduced copy of self.
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+ ///
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+ /// In general, it is not necessary to use this method, as the only
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+ /// method of procuring a non-reduced fraction is through `new_raw`.
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pub fn reduced(&self) -> Ratio<T> {
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let mut ret = self.clone();
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ret.reduce();
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@@ -201,7 +204,9 @@ impl<T: Clone + Integer> Ratio<T> {
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Ratio::from_integer(self.numer.clone() / self.denom.clone())
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}
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- /// Returns the fractional part of a number.
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+ /// Returns the fractional part of a number, with division rounded towards zero.
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+ ///
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+ /// Satisfies `self == self.trunc() + self.fract()`.
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#[inline]
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pub fn fract(&self) -> Ratio<T> {
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Ratio::new_raw(self.numer.clone() % self.denom.clone(), self.denom.clone())
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@@ -209,7 +214,7 @@ impl<T: Clone + Integer> Ratio<T> {
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}
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impl<T: Clone + Integer + PrimInt> Ratio<T> {
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- /// Raises the ratio to the power of an exponent
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+ /// Raises the `Ratio` to the power of an exponent.
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#[inline]
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pub fn pow(&self, expon: i32) -> Ratio<T> {
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match expon.cmp(&0) {
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