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authorGravatar Maxime Dénès <mail@maximedenes.fr>2013-12-30 10:40:39 -0500
committerGravatar Maxime Dénès <mail@maximedenes.fr>2013-12-30 10:40:39 -0500
commitea47086be3b724968053525e8fa795b9cdd77800 (patch)
treeb888ca03e686b4c44984eb72632cdf35f260efce /kernel/reduction.mli
parentf2087508a325bd4dae8be54ea3c6111f6b652775 (diff)
Support for evars and metas in native compiler.
Experimental. Turned out to be much harder to implement than I thought. The main issue is that the reification in the native compiler and the VM is not quite untyped. Indeed, type annotations for lambdas have to be reconstructed. Hence, when reifying an application u = t a1 ... an, the type of t has to be known or reconstructed. It is always possible to do so in plain CIC, when u is in normal form and its type is known. However, with partial terms this may no longer be the case, as in: ?1 a1 ... an. So we also compile and evaluate the type of evars and metas. This still has to be tested more extensively, but the correction of the kernel native conversion (on terms without evars or metas) should not be impacted. Much of this could be reused for the VM.
Diffstat (limited to 'kernel/reduction.mli')
-rw-r--r--kernel/reduction.mli5
1 files changed, 3 insertions, 2 deletions
diff --git a/kernel/reduction.mli b/kernel/reduction.mli
index 6e4634194..2d117cc96 100644
--- a/kernel/reduction.mli
+++ b/kernel/reduction.mli
@@ -55,8 +55,9 @@ val conv_leq_vecti :
val set_vm_conv : (conv_pb -> types conversion_function) -> unit
val vm_conv : conv_pb -> types conversion_function
-val set_nat_conv : (conv_pb -> types conversion_function) -> unit
-val native_conv : conv_pb -> types conversion_function
+val set_nat_conv :
+ (conv_pb -> Nativelambda.evars -> types conversion_function) -> unit
+val native_conv : conv_pb -> Nativelambda.evars -> types conversion_function
val set_default_conv : (conv_pb -> ?l2r:bool -> types conversion_function) -> unit
val default_conv : conv_pb -> ?l2r:bool -> types conversion_function