Documentation

Lean.Attributes

@[inline]
abbrev Lean.AttrM (α : Type) :
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    You can tag attributes with the 'local' or 'scoped' kind. For example: attribute [local myattr, scoped yourattr, theirattr].

    This is used to indicate how an attribute should be scoped.

    • local means that the attribute should only be applied in the current scope and forgotten once the current section, namespace, or file is closed.
    • scoped means that the attribute should only be applied while the namespace is open.
    • global means that the attribute should always be applied.

    Note that the attribute handler (AttributeImpl.add) is responsible for interpreting the kind and making sure that these kinds are respected.

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        Low level attribute registration function.

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        Helper methods for decoding the parameters of builtin attributes that are defined before Lean.Parser. We have the following ones:

        @[builtin_attr_parser] def simple     := leading_parser ident >> optional ident >> optional priorityParser
        /- We can't use `simple` for `class`, `instance`, `export` and `macro` because they are  keywords. -/
        @[builtin_attr_parser] def «class»    := leading_parser "class"
        @[builtin_attr_parser] def «instance» := leading_parser "instance" >> optional priorityParser
        @[builtin_attr_parser] def «macro»    := leading_parser "macro " >> ident
        

        Note that we need the parsers for class, instance, and macros because they are keywords.

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        Tag attributes are simple and efficient. They are useful for marking declarations in the modules where they were defined.

        The startup cost for this kind of attribute is very small since addImportedFn is a constant function.

        They provide the predicate tagAttr.hasTag env decl which returns true iff declaration decl is tagged in the environment env.

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          A TagAttribute variant where we can attach parameters to attributes. It is slightly more expensive and consumes a little bit more memory than TagAttribute.

          They provide the function pAttr.getParam env decl which returns some p iff declaration decl contains the attribute pAttr with parameter p.

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            • Lean.instInhabitedParametricAttribute = { default := { attr := default, ext := default } }
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              structure Lean.EnumAttributes (α : Type) :

              Given a list [a₁, ..., a_n] of elements of type α, EnumAttributes provides an attribute Attr_i for associating a value a_i with an declaration. α is usually an enumeration type. Note that whenever we register an EnumAttributes, we create n attributes, but only one environment extension.

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                • Lean.instInhabitedEnumAttributes = { default := { attrs := default, ext := default } }
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                def Lean.EnumAttributes.getValue {α : Type} [inst : Inhabited α] (attr : Lean.EnumAttributes α) (env : Lean.Environment) (decl : Lean.Name) :
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                Attribute extension and builders. We use builders to implement attribute factories for parser categories.

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                @[implemented_by Lean.mkAttributeImplOfConstantUnsafe]
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                @[export lean_is_attribute]

                Return true iff n is the name of a registered attribute.

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                Return the name of all registered attributes.

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                @[export lean_attribute_application_time]
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                def Lean.Attribute.erase (declName : Lean.Name) (attrName : Lean.Name) :
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                @[export lean_update_env_attributes]

                updateEnvAttributes implementation

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                @[export lean_get_num_attributes]

                getNumBuiltinAttributes implementation

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