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5ee891cfea
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@ -503,8 +503,37 @@ impl<'a, 'gcx, 'tcx> MemCategorizationContext<'a, 'gcx, 'tcx> {
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self.resolve_type_vars_or_error(expr.hir_id, self.tables.expr_ty_adjusted_opt(expr))
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}
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/// Returns the type of value that this pattern matches against.
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/// Some non-obvious cases:
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///
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/// - a `ref x` binding matches against a value of type `T` and gives
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/// `x` the type `&T`; we return `T`.
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/// - a pattern with implicit derefs (thanks to default binding
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/// modes #42640) may look like `Some(x)` but in fact have
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/// implicit deref patterns attached (e.g., it is really
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/// `&Some(x)`). In that case, we return the "outermost" type
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/// (e.g., `&Option<T>).
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fn pat_ty(&self, pat: &hir::Pat) -> McResult<Ty<'tcx>> {
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// Check for implicit `&` types wrapping the pattern; note
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// that these are never attached to binding patterns, so
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// actually this is somewhat "disjoint" from the code below
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// that aims to account for `ref x`.
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if let Some(vec) = self.tables.pat_adjustments().get(pat.hir_id) {
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if let Some(first_ty) = vec.first() {
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debug!("pat_ty(pat={:?}) found adjusted ty `{:?}`", pat, first_ty);
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return Ok(first_ty);
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}
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}
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self.pat_ty_unadjusted(pat)
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}
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/// Like `pat_ty`, but ignores implicit `&` patterns.
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fn pat_ty_unadjusted(&self, pat: &hir::Pat) -> McResult<Ty<'tcx>> {
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let base_ty = self.node_ty(pat.hir_id)?;
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debug!("pat_ty(pat={:?}) base_ty={:?}", pat, base_ty);
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// This code detects whether we are looking at a `ref x`,
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// and if so, figures out what the type *being borrowed* is.
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let ret_ty = match pat.node {
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@ -531,8 +560,8 @@ impl<'a, 'gcx, 'tcx> MemCategorizationContext<'a, 'gcx, 'tcx> {
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}
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_ => base_ty,
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};
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debug!("pat_ty(pat={:?}) base_ty={:?} ret_ty={:?}",
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pat, base_ty, ret_ty);
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debug!("pat_ty(pat={:?}) ret_ty={:?}", pat, ret_ty);
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Ok(ret_ty)
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}
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@ -1246,7 +1275,7 @@ impl<'a, 'gcx, 'tcx> MemCategorizationContext<'a, 'gcx, 'tcx> {
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self.tcx.adt_def(enum_def).variant_with_id(def_id).fields.len())
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}
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Def::StructCtor(_, CtorKind::Fn) => {
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match self.pat_ty(&pat)?.sty {
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match self.pat_ty_unadjusted(&pat)?.sty {
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ty::TyAdt(adt_def, _) => {
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(cmt, adt_def.non_enum_variant().fields.len())
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}
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@ -1297,7 +1326,7 @@ impl<'a, 'gcx, 'tcx> MemCategorizationContext<'a, 'gcx, 'tcx> {
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PatKind::Tuple(ref subpats, ddpos) => {
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// (p1, ..., pN)
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let expected_len = match self.pat_ty(&pat)?.sty {
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let expected_len = match self.pat_ty_unadjusted(&pat)?.sty {
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ty::TyTuple(ref tys) => tys.len(),
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ref ty => span_bug!(pat.span, "tuple pattern unexpected type {:?}", ty),
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};
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@ -0,0 +1,34 @@
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// Copyright 2017 The Rust Project Developers. See the COPYRIGHT
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// file at the top-level directory of this distribution and at
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// http://rust-lang.org/COPYRIGHT.
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//
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// Licensed under the Apache License, Version 2.0 <LICENSE-APACHE or
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// http://www.apache.org/licenses/LICENSE-2.0> or the MIT license
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// <LICENSE-MIT or http://opensource.org/licenses/MIT>, at your
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// option. This file may not be copied, modified, or distributed
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// except according to those terms.
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#[derive(Copy, Clone, Debug, Eq, PartialEq)]
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pub struct Foo {
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}
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impl Foo {
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fn get(&self) -> Option<&Result<String, String>> {
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None
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}
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fn mutate(&mut self) { }
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}
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fn main() {
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let mut foo = Foo { };
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// foo.get() returns type Option<&Result<String, String>>, so
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// using `string` keeps borrow of `foo` alive. Hence calling
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// `foo.mutate()` should be an error.
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while let Some(Ok(string)) = foo.get() {
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foo.mutate();
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//~^ ERROR cannot borrow `foo` as mutable
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println!("foo={:?}", *string);
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}
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}
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@ -0,0 +1,13 @@
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error[E0502]: cannot borrow `foo` as mutable because it is also borrowed as immutable
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--> $DIR/borrowck-issue-49631.rs:30:9
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LL | while let Some(Ok(string)) = foo.get() {
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| --- - immutable borrow ends here
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| |
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| immutable borrow occurs here
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LL | foo.mutate();
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| ^^^ mutable borrow occurs here
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error: aborting due to previous error
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For more information about this error, try `rustc --explain E0502`.
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