Only check that StorageLive dominates address-taking.
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@ -7,7 +7,7 @@
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//!
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//! We say a local has a stable address if its address has SSA-like properties:
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//! 1/ It has a single `StorageLive` statement, or none at all (always-live);
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//! 2/ All its uses dominate this `StorageLive` statement.
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//! 2/ This `StorageLive` statement dominates all statements that take this local's address.
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//!
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//! We do not discard borrowed locals from this analysis, as we cannot take their address' address.
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@ -247,7 +247,6 @@ fn visit_local(&mut self, local: Local, ctxt: PlaceContext, loc: Location) {
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// Only record if SSA-like, to avoid growing the vector needlessly.
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self.assignment_order.push(local);
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}
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self.dominators.check_dominates(&mut self.storage_live[local], loc);
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}
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// Anything can happen with raw pointers, so remove them.
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// We do not verify that all uses of the borrow dominate the assignment to `local`,
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@ -264,7 +263,6 @@ fn visit_local(&mut self, local: Local, ctxt: PlaceContext, loc: Location) {
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}
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PlaceContext::NonMutatingUse(_) => {
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self.dominators.check_dominates(&mut self.assignments[local], loc);
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self.dominators.check_dominates(&mut self.storage_live[local], loc);
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self.direct_uses[local] += 1;
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}
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PlaceContext::NonUse(NonUseContext::StorageLive) => {
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@ -283,7 +281,6 @@ fn visit_place(&mut self, place: &Place<'tcx>, ctxt: PlaceContext, loc: Location
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self.visit_projection(place.as_ref(), new_ctxt, loc);
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self.dominators.check_dominates(&mut self.assignments[place.local], loc);
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self.dominators.check_dominates(&mut self.storage_live[place.local], loc);
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}
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return;
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} else {
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