146 lines
5.4 KiB
Rust
146 lines
5.4 KiB
Rust
//! From the NLL RFC: "The deep [aka 'supporting'] prefixes for an
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//! place are formed by stripping away fields and derefs, except that
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//! we stop when we reach the deref of a shared reference. [...] "
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//!
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//! "Shallow prefixes are found by stripping away fields, but stop at
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//! any dereference. So: writing a path like `a` is illegal if `a.b`
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//! is borrowed. But: writing `a` is legal if `*a` is borrowed,
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//! whether or not `a` is a shared or mutable reference. [...] "
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use super::MirBorrowckCtxt;
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use rustc_hir as hir;
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use rustc_middle::mir::{Body, PlaceRef, ProjectionElem};
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use rustc_middle::ty::{self, TyCtxt};
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pub trait IsPrefixOf<'tcx> {
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fn is_prefix_of(&self, other: PlaceRef<'tcx>) -> bool;
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}
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impl<'tcx> IsPrefixOf<'tcx> for PlaceRef<'tcx> {
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fn is_prefix_of(&self, other: PlaceRef<'tcx>) -> bool {
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self.local == other.local
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&& self.projection.len() <= other.projection.len()
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&& self.projection == &other.projection[..self.projection.len()]
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}
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}
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pub(super) struct Prefixes<'cx, 'tcx> {
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body: &'cx Body<'tcx>,
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tcx: TyCtxt<'tcx>,
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kind: PrefixSet,
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next: Option<PlaceRef<'tcx>>,
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}
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#[derive(Copy, Clone, PartialEq, Eq, Debug)]
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pub(super) enum PrefixSet {
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/// Doesn't stop until it returns the base case (a Local or
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/// Static prefix).
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All,
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/// Stops at any dereference.
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Shallow,
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/// Stops at the deref of a shared reference.
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Supporting,
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}
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impl<'cx, 'tcx> MirBorrowckCtxt<'cx, 'tcx> {
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/// Returns an iterator over the prefixes of `place`
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/// (inclusive) from longest to smallest, potentially
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/// terminating the iteration early based on `kind`.
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pub(super) fn prefixes(
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&self,
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place_ref: PlaceRef<'tcx>,
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kind: PrefixSet,
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) -> Prefixes<'cx, 'tcx> {
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Prefixes { next: Some(place_ref), kind, body: self.body, tcx: self.infcx.tcx }
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}
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}
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impl<'cx, 'tcx> Iterator for Prefixes<'cx, 'tcx> {
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type Item = PlaceRef<'tcx>;
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fn next(&mut self) -> Option<Self::Item> {
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let mut cursor = self.next?;
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// Post-processing `place`: Enqueue any remaining
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// work. Also, `place` may not be a prefix itself, but
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// may hold one further down (e.g., we never return
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// downcasts here, but may return a base of a downcast).
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'cursor: loop {
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match cursor.last_projection() {
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None => {
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self.next = None;
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return Some(cursor);
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}
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Some((cursor_base, elem)) => {
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match elem {
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ProjectionElem::Field(_ /*field*/, _ /*ty*/) => {
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// FIXME: add union handling
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self.next = Some(cursor_base);
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return Some(cursor);
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}
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ProjectionElem::Downcast(..)
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| ProjectionElem::Subslice { .. }
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| ProjectionElem::ConstantIndex { .. }
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| ProjectionElem::Index(_) => {
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cursor = cursor_base;
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continue 'cursor;
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}
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ProjectionElem::Deref => {
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// (handled below)
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}
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}
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assert_eq!(elem, ProjectionElem::Deref);
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match self.kind {
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PrefixSet::Shallow => {
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// Shallow prefixes are found by stripping away
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// fields, but stop at *any* dereference.
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// So we can just stop the traversal now.
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self.next = None;
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return Some(cursor);
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}
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PrefixSet::All => {
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// All prefixes: just blindly enqueue the base
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// of the projection.
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self.next = Some(cursor_base);
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return Some(cursor);
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}
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PrefixSet::Supporting => {
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// Fall through!
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}
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}
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assert_eq!(self.kind, PrefixSet::Supporting);
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// Supporting prefixes: strip away fields and
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// derefs, except we stop at the deref of a shared
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// reference.
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let ty = cursor_base.ty(self.body, self.tcx).ty;
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match ty.kind() {
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ty::RawPtr(_) | ty::Ref(_ /*rgn*/, _ /*ty*/, hir::Mutability::Not) => {
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// don't continue traversing over derefs of raw pointers or shared
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// borrows.
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self.next = None;
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return Some(cursor);
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}
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ty::Ref(_ /*rgn*/, _ /*ty*/, hir::Mutability::Mut) => {
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self.next = Some(cursor_base);
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return Some(cursor);
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}
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ty::Adt(..) if ty.is_box() => {
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self.next = Some(cursor_base);
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return Some(cursor);
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}
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_ => panic!("unknown type fed to Projection Deref."),
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}
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}
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}
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}
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}
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}
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