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@ -5,48 +5,9 @@ generally just *weakening* of types, largely focused around pointers and
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lifetimes. They mostly exist to make Rust "just work" in more cases, and are
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lifetimes. They mostly exist to make Rust "just work" in more cases, and are
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largely harmless.
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largely harmless.
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Here's all the kinds of coercion:
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For an exhaustive list of all the types of coercions, see the [Coercion types] section on the reference.
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Coercion is allowed between the following types:
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## Cases where coercions do not perform
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* Transitivity: `T_1` to `T_3` where `T_1` coerces to `T_2` and `T_2` coerces to
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`T_3`
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* Pointer Weakening:
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* `&mut T` to `&T`
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* `*mut T` to `*const T`
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* `&T` to `*const T`
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* `&mut T` to `*mut T`
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* Unsizing: `T` to `U` if `T` implements `CoerceUnsized<U>`
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* Deref coercion: Expression `&x` of type `&T` to `&*x` of type `&U` if `T` derefs to `U` (i.e. `T: Deref<Target=U>`)
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* Non-capturing closure to a function pointer ([RFC 1558], e.g. `|| 8usize` to `fn() -> usize`)
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[RFC 1558]: https://rust-lang.github.io/rfcs/1558-closure-to-fn-coercion.html
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`CoerceUnsized<Pointer<U>> for Pointer<T> where T: Unsize<U>` is implemented
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for all pointer types (including smart pointers like Box and Rc). Unsize is
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only implemented automatically, and enables the following transformations:
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* `[T; n]` => `[T]`
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* `T` => `dyn Trait` where `T: Trait`
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* `Foo<..., T, ...>` => `Foo<..., U, ...>` where:
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* `T: Unsize<U>`
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* `Foo` is a struct
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* Only the last field of `Foo` has type involving `T`
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* `T` is not part of the type of any other fields
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* `Bar<T>: Unsize<Bar<U>>`, if the last field of `Foo` has type `Bar<T>`
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Coercions occur at a *coercion site*. Any location that is explicitly typed
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will cause a coercion to its type. If inference is necessary, the coercion will
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not be performed. Exhaustively, the coercion sites for an expression `e` to
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type `U` are:
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* let statements, statics, and consts: `let x: U = e`
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* Arguments to functions: `takes_a_U(e)`
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* Any expression that will be returned: `fn foo() -> U { e }`
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* Struct literals: `Foo { some_u: e }`
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* Array literals: `let x: [U; 10] = [e, ..]`
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* Tuple literals: `let x: (U, ..) = (e, ..)`
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* The last expression in a block: `let x: U = { ..; e }`
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Note that we do not perform coercions when matching traits (except for
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Note that we do not perform coercions when matching traits (except for
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receivers, see below). If there is an impl for some type `U` and `T` coerces to
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receivers, see below). If there is an impl for some type `U` and `T` coerces to
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@ -69,18 +30,17 @@ fn main() {
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```text
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```text
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error[E0277]: the trait bound `&mut i32: Trait` is not satisfied
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error[E0277]: the trait bound `&mut i32: Trait` is not satisfied
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--> src/main.rs:9:5
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--> src/main.rs:9:9
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3 | fn foo<X: Trait>(t: X) {}
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| ----- required by this bound in `foo`
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...
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9 | foo(t);
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9 | foo(t);
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| ^^^ the trait `Trait` is not implemented for `&mut i32`
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| ^ the trait `Trait` is not implemented for `&mut i32`
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= help: the following implementations were found:
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= help: the following implementations were found:
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<&'a i32 as Trait>
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<&'a i32 as Trait>
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note: required by `foo`
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= note: `Trait` is implemented for `&i32`, but not for `&mut i32`
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--> src/main.rs:3:1
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3 | fn foo<X: Trait>(t: X) {}
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| ^^^^^^^^^^^^^^^^^^^^^^
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error: aborting due to previous error
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```
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```
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[Coercion types]: ../reference/type-coercions.html#coercion-types
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