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| author | Jonathan Turner <jonathandturner@users.noreply.github.com> | 2016-08-31 06:29:08 -0700 |
|---|---|---|
| committer | GitHub <noreply@github.com> | 2016-08-31 06:29:08 -0700 |
| commit | 2bfb20f392c6a51ded93e7342fd8c4b163bf8160 (patch) | |
| tree | 3e6b0dc918b36243601e999517bca94f2dcef8c0 /src/libcore | |
| parent | 45ca620383ce8f9a5de33c09096bcfddd55fd3d1 (diff) | |
| parent | 8ca9fa11f9a04a7ffa4cded6775336d55268e7ac (diff) | |
| download | rust-2bfb20f392c6a51ded93e7342fd8c4b163bf8160.tar.gz rust-2bfb20f392c6a51ded93e7342fd8c4b163bf8160.zip | |
Rollup merge of #35926 - matthew-piziak:bit-or-xor-examples, r=GuillaumeGomez
add evocative examples for `BitOr` and `BitXor` These are exactly equivalent to PR #35809, with one caveat: I do not believe there is a non-bitwise binary XOR operator in Rust, so here it's expressed as `(a || b) && !(a && b)`. Alternative decompositions are `(a && !b) || (!a && b)` and `(a || b) && (!a || !b)`. Let me know if you think one of those would be clearer. r? @GuillaumeGomez
Diffstat (limited to 'src/libcore')
| -rw-r--r-- | src/libcore/ops.rs | 99 |
1 files changed, 81 insertions, 18 deletions
diff --git a/src/libcore/ops.rs b/src/libcore/ops.rs index 14aa2ba3bd4..041a6c62f2f 100644 --- a/src/libcore/ops.rs +++ b/src/libcore/ops.rs @@ -948,25 +948,55 @@ bitand_impl! { bool usize u8 u16 u32 u64 isize i8 i16 i32 i64 } /// /// # Examples /// -/// A trivial implementation of `BitOr`. When `Foo | Foo` happens, it ends up -/// calling `bitor`, and therefore, `main` prints `Bitwise Or-ing!`. +/// In this example, the `|` operator is lifted to a trivial `Scalar` type. /// /// ``` /// use std::ops::BitOr; /// -/// struct Foo; +/// #[derive(Debug, PartialEq)] +/// struct Scalar(bool); /// -/// impl BitOr for Foo { -/// type Output = Foo; +/// impl BitOr for Scalar { +/// type Output = Self; /// -/// fn bitor(self, _rhs: Foo) -> Foo { -/// println!("Bitwise Or-ing!"); -/// self +/// // rhs is the "right-hand side" of the expression `a | b` +/// fn bitor(self, rhs: Self) -> Self { +/// Scalar(self.0 | rhs.0) +/// } +/// } +/// +/// fn main() { +/// assert_eq!(Scalar(true) | Scalar(true), Scalar(true)); +/// assert_eq!(Scalar(true) | Scalar(false), Scalar(true)); +/// assert_eq!(Scalar(false) | Scalar(true), Scalar(true)); +/// assert_eq!(Scalar(false) | Scalar(false), Scalar(false)); +/// } +/// ``` +/// +/// In this example, the `BitOr` trait is implemented for a `BooleanVector` +/// struct. +/// +/// ``` +/// use std::ops::BitOr; +/// +/// #[derive(Debug, PartialEq)] +/// struct BooleanVector(Vec<bool>); +/// +/// impl BitOr for BooleanVector { +/// type Output = Self; +/// +/// fn bitor(self, BooleanVector(rhs): Self) -> Self { +/// let BooleanVector(lhs) = self; +/// assert_eq!(lhs.len(), rhs.len()); +/// BooleanVector(lhs.iter().zip(rhs.iter()).map(|(x, y)| *x || *y).collect()) /// } /// } /// /// fn main() { -/// Foo | Foo; +/// let bv1 = BooleanVector(vec![true, true, false, false]); +/// let bv2 = BooleanVector(vec![true, false, true, false]); +/// let expected = BooleanVector(vec![true, true, true, false]); +/// assert_eq!(bv1 | bv2, expected); /// } /// ``` #[lang = "bitor"] @@ -1001,25 +1031,58 @@ bitor_impl! { bool usize u8 u16 u32 u64 isize i8 i16 i32 i64 } /// /// # Examples /// -/// A trivial implementation of `BitXor`. When `Foo ^ Foo` happens, it ends up -/// calling `bitxor`, and therefore, `main` prints `Bitwise Xor-ing!`. +/// In this example, the `^` operator is lifted to a trivial `Scalar` type. /// /// ``` /// use std::ops::BitXor; /// -/// struct Foo; +/// #[derive(Debug, PartialEq)] +/// struct Scalar(bool); /// -/// impl BitXor for Foo { -/// type Output = Foo; +/// impl BitXor for Scalar { +/// type Output = Self; /// -/// fn bitxor(self, _rhs: Foo) -> Foo { -/// println!("Bitwise Xor-ing!"); -/// self +/// // rhs is the "right-hand side" of the expression `a ^ b` +/// fn bitxor(self, rhs: Self) -> Self { +/// Scalar(self.0 ^ rhs.0) +/// } +/// } +/// +/// fn main() { +/// assert_eq!(Scalar(true) ^ Scalar(true), Scalar(false)); +/// assert_eq!(Scalar(true) ^ Scalar(false), Scalar(true)); +/// assert_eq!(Scalar(false) ^ Scalar(true), Scalar(true)); +/// assert_eq!(Scalar(false) ^ Scalar(false), Scalar(false)); +/// } +/// ``` +/// +/// In this example, the `BitXor` trait is implemented for a `BooleanVector` +/// struct. +/// +/// ``` +/// use std::ops::BitXor; +/// +/// #[derive(Debug, PartialEq)] +/// struct BooleanVector(Vec<bool>); +/// +/// impl BitXor for BooleanVector { +/// type Output = Self; +/// +/// fn bitxor(self, BooleanVector(rhs): Self) -> Self { +/// let BooleanVector(lhs) = self; +/// assert_eq!(lhs.len(), rhs.len()); +/// BooleanVector(lhs.iter() +/// .zip(rhs.iter()) +/// .map(|(x, y)| (*x || *y) && !(*x && *y)) +/// .collect()) /// } /// } /// /// fn main() { -/// Foo ^ Foo; +/// let bv1 = BooleanVector(vec![true, true, false, false]); +/// let bv2 = BooleanVector(vec![true, false, true, false]); +/// let expected = BooleanVector(vec![false, true, true, false]); +/// assert_eq!(bv1 ^ bv2, expected); /// } /// ``` #[lang = "bitxor"] |
