package coq-core
sectionYPositions = computeSectionYPositions($el), 10)"
x-init="setTimeout(() => sectionYPositions = computeSectionYPositions($el), 10)"
>
The Coq Proof Assistant -- Core Binaries and Tools
Install
dune-project
Dependency
Authors
Maintainers
Sources
coq-8.20.1.tar.gz
md5=0cfaa70f569be9494d24c829e6555d46
sha512=8ee967c636b67b22a4f34115871d8f9b9114df309afc9ddf5f61275251088c6e21f6cf745811df75554d30f4cebb6682f23eeb2e88b771330c4b60ce3f6bf5e2
doc/coq-core.interp/Modintern/index.html
Module ModinternSource
Module internalization errors
Source
type module_internalization_error = | NotAModuleNorModtype of Libnames.qualid| NotAModuleType of Libnames.qualid| NotAModule of Libnames.qualid| IncorrectWithInModule| IncorrectModuleApplication
Module expressions and module types are interpreted relatively to possible functor or functor signature arguments. When the input kind is ModAny (i.e. module or module type), we tries to interprete this ast as a module, and in case of failure, as a module type. The returned kind is never ModAny, and it is equal to the input kind when this one isn't ModAny.
Source
type module_struct_expr =
(Constrexpr.universe_decl_expr option * Constrexpr.constr_expr)
Declarations.module_alg_exprSource
val intern_module_ast :
module_kind ->
Constrexpr.module_ast ->
module_struct_expr * Names.ModPath.t * module_kindModule internalization, i.e. from AST to module expression
Source
val interp_module_ast :
Environ.env ->
module_kind ->
Names.ModPath.t ->
module_struct_expr ->
Entries.module_struct_entry * Univ.ContextSet.tModule interpretation, i.e. from module expression to typed module entry
sectionYPositions = computeSectionYPositions($el), 10)"
x-init="setTimeout(() => sectionYPositions = computeSectionYPositions($el), 10)"
>