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Update documentation of Scalar
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@ -2,7 +2,30 @@ use std::{cmp, f64::consts::PI, hash::Hash, ops};
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use approx::AbsDiffEq;
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use approx::AbsDiffEq;
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/// A scalar
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/// A rational, finite scalar value
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///
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/// This is a wrapper around `f64`. On construction, it checks that the `f64`
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/// value is neither infinite nor NaN. This allows `Scalar` to provide
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/// implementations of [`Eq`], [`Ord`], and [`Hash`], enabling `Scalar` (and
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/// types built on top of it), to be used as keys in hash maps, hash sets, and
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/// similar types.
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///
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/// # Failing `From`/`Into` implementations
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///
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/// Please note that the [`From`]/[`Into`] implementation that convert floating
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/// point numbers into `Scalar` can panic. These conversions call
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/// [`Scalar::from_f64`] internally and panic under the same conditions.
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///
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/// This explicitly goes against the mandate of [`From`]/[`Into`], whose
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/// documentation mandate that implementations must not fail. This is a
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/// deliberate design decision. The intended use case of `Scalar` is math code
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/// that considers non-finite floating point values a bug, not a recoverable
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/// error.
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///
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/// For this use case, having easy conversions available is an advantage, and
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/// explicit `unwrap`/`expect` calls would add nothing. In addition, the mandate
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/// not to fail is not motivated in any way, in the [`From`]/[`Into`]
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/// documentation.
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#[derive(Clone, Copy, Debug, PartialEq)]
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#[derive(Clone, Copy, Debug, PartialEq)]
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pub struct Scalar(f64);
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pub struct Scalar(f64);
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@ -23,6 +46,8 @@ impl Scalar {
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pub const PI: Self = Self(PI);
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pub const PI: Self = Self(PI);
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/// Construct a `Scalar` from an `f64`
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/// Construct a `Scalar` from an `f64`
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///
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/// Panics, if `scalar` is infinite or NaN.
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pub fn from_f64(scalar: f64) -> Self {
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pub fn from_f64(scalar: f64) -> Self {
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if scalar.is_finite() {
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if scalar.is_finite() {
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// `scalar` is neither infinite, nor NaN
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// `scalar` is neither infinite, nor NaN
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