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-rw-r--r--compiler/InterpreterLoopsMatchCtxs.mli6
1 files changed, 2 insertions, 4 deletions
diff --git a/compiler/InterpreterLoopsMatchCtxs.mli b/compiler/InterpreterLoopsMatchCtxs.mli
index ab585220..cd807358 100644
--- a/compiler/InterpreterLoopsMatchCtxs.mli
+++ b/compiler/InterpreterLoopsMatchCtxs.mli
@@ -13,13 +13,11 @@ open InterpreterLoopsCore
(** Compute various maps linking the abstractions and the borrows/loans they contain.
Parameters:
- - [no_duplicates]: checks that borrows/loans are not referenced more than once
- (see the documentation for {!type:InterpreterLoopsCore.abs_borrows_loans_maps}).
- [explore]: this function is used to filter abstractions.
- [env]
*)
val compute_abs_borrows_loans_maps :
- Meta.span -> bool -> (abs -> bool) -> env -> abs_borrows_loans_maps
+ Meta.span -> (abs -> bool) -> env -> abs_borrows_loans_maps
(** Generic functor to implement matching functions between values, environments,
etc.
@@ -188,7 +186,7 @@ val prepare_match_ctx_with_target :
We want to introduce an abstraction [abs@2], which has the same shape as [abs@fp]
above (the fixed-point abstraction), and which is actually the identity. If we do so,
- we get an environment which is actually also a fixed point (we can collapse
+ we get an environment which is actually also a fixed point (we can reduce
the dummy variables and [abs@1] to actually retrieve the fixed point we
computed, and we use the fact that those values and abstractions can't be
*directly* manipulated unless we end this newly introduced [abs@2], which we