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380 lines
6.0 KiB
Scheme
380 lines
6.0 KiB
Scheme
; -------
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; Tree-Sitter doesn't allow overrides in regards to captures,
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; though it is possible to affect the child node of a captured
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; node. Thus, the approach here is to flip the order so that
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; overrides are unnecessary.
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; -------
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; -------
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; Types
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; -------
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; ---
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; Primitives
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; ---
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(escape_sequence) @constant.character.escape
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(primitive_type) @type.builtin
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(boolean_literal) @constant.builtin.boolean
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(integer_literal) @constant.numeric.integer
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(float_literal) @constant.numeric.float
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(char_literal) @constant.character
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[
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(string_literal)
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(raw_string_literal)
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] @string
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[
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(line_comment)
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(block_comment)
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] @comment
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; ---
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; Extraneous
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; ---
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(self) @variable.builtin
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(enum_variant (identifier) @type.enum.variant)
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(field_initializer
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(field_identifier) @variable.other.member)
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(shorthand_field_initializer
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(identifier) @variable.other.member)
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(shorthand_field_identifier) @variable.other.member
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(lifetime
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"'" @label
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(identifier) @label)
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(loop_label
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"'" @label
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(identifier) @label)
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; ---
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; Punctuation
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; ---
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[
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"::"
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"."
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";"
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","
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] @punctuation.delimiter
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[
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"("
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")"
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"["
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"]"
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"{"
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"}"
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"#"
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] @punctuation.bracket
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(type_arguments
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[
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"<"
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">"
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] @punctuation.bracket)
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(type_parameters
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[
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"<"
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">"
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] @punctuation.bracket)
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(closure_parameters
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"|" @punctuation.bracket)
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; ---
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; Variables
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; ---
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(let_declaration
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pattern: [
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((identifier) @variable)
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((tuple_pattern
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(identifier) @variable))
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])
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; It needs to be anonymous to not conflict with `call_expression` further below.
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(_
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value: (field_expression
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value: (identifier)? @variable
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field: (field_identifier) @variable.other.member))
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(parameter
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pattern: (identifier) @variable.parameter)
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(closure_parameters
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(identifier) @variable.parameter)
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; -------
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; Keywords
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; -------
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(for_expression
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"for" @keyword.control.repeat)
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((identifier) @keyword.control
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(#match? @keyword.control "^yield$"))
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"in" @keyword.control
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[
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"match"
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"if"
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"else"
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] @keyword.control.conditional
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[
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"while"
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"loop"
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] @keyword.control.repeat
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[
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"break"
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"continue"
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"return"
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"await"
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] @keyword.control.return
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"use" @keyword.control.import
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(mod_item "mod" @keyword.control.import !body)
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(use_as_clause "as" @keyword.control.import)
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(type_cast_expression "as" @keyword.operator)
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[
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(crate)
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(super)
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"as"
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"pub"
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"mod"
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"extern"
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"impl"
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"where"
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"trait"
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"for"
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"default"
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"async"
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] @keyword
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[
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"struct"
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"enum"
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"union"
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"type"
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] @keyword.storage.type
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"let" @keyword.storage
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"fn" @keyword.function
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"unsafe" @keyword.special
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"macro_rules!" @function.macro
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(mutable_specifier) @keyword.storage.modifier.mut
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(reference_type "&" @keyword.storage.modifier.ref)
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(self_parameter "&" @keyword.storage.modifier.ref)
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[
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"static"
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"const"
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"ref"
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"move"
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"dyn"
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] @keyword.storage.modifier
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; TODO: variable.mut to highlight mutable identifiers via locals.scm
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; -------
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; Guess Other Types
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; -------
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((identifier) @constant
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(#match? @constant "^[A-Z][A-Z\\d_]*$"))
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; ---
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; PascalCase identifiers in call_expressions (e.g. `Ok()`)
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; are assumed to be enum constructors.
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; ---
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(call_expression
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function: [
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((identifier) @type.enum.variant
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(#match? @type.enum.variant "^[A-Z]"))
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(scoped_identifier
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name: ((identifier) @type.enum.variant
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(#match? @type.enum.variant "^[A-Z]")))
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])
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; ---
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; Assume that types in match arms are enums and not
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; tuple structs. Same for `if let` expressions.
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; ---
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(match_pattern
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(scoped_identifier
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name: (identifier) @constructor))
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(tuple_struct_pattern
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type: [
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((identifier) @constructor)
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(scoped_identifier
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name: (identifier) @constructor)
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])
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(struct_pattern
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type: [
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((type_identifier) @constructor)
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(scoped_type_identifier
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name: (type_identifier) @constructor)
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])
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; ---
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; Other PascalCase identifiers are assumed to be structs.
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; ---
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((identifier) @type
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(#match? @type "^[A-Z]"))
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; -------
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; Functions
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; -------
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(call_expression
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function: [
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((identifier) @function)
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(scoped_identifier
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name: (identifier) @function)
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(field_expression
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field: (field_identifier) @function)
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])
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(generic_function
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function: [
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((identifier) @function)
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(scoped_identifier
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name: (identifier) @function)
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(field_expression
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field: (field_identifier) @function.method)
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])
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(function_item
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name: (identifier) @function)
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(function_signature_item
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name: (identifier) @function)
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; ---
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; Macros
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; ---
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(attribute
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(identifier) @special
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arguments: (token_tree (identifier) @type)
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(#eq? @special "derive")
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)
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(attribute
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(identifier) @function.macro)
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(attribute
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[
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(identifier) @function.macro
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(scoped_identifier
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name: (identifier) @function.macro)
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]
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(token_tree (identifier) @function.macro)?)
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(inner_attribute_item) @attribute
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(macro_definition
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name: (identifier) @function.macro)
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(macro_invocation
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macro: [
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((identifier) @function.macro)
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(scoped_identifier
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name: (identifier) @function.macro)
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]
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"!" @function.macro)
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(metavariable) @variable.parameter
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(fragment_specifier) @type
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; -------
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; Operators
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; -------
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[
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"*"
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"'"
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"->"
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"=>"
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"<="
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"="
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"=="
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"!"
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"!="
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"%"
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"%="
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"&"
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"&="
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"&&"
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"|"
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"|="
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"||"
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"^"
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"^="
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"*"
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"*="
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"-"
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"-="
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"+"
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"+="
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"/"
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"/="
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">"
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"<"
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">="
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">>"
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"<<"
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">>="
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"<<="
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"@"
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".."
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"..="
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"'"
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] @operator
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; -------
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; Paths
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; -------
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(use_declaration
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argument: (identifier) @namespace)
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(use_wildcard
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(identifier) @namespace)
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(extern_crate_declaration
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name: (identifier) @namespace)
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(mod_item
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name: (identifier) @namespace)
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(scoped_use_list
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path: (identifier)? @namespace)
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(use_list
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(identifier) @namespace)
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(use_as_clause
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path: (identifier)? @namespace
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alias: (identifier) @namespace)
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; ---
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; Remaining Paths
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; ---
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(scoped_identifier
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path: (identifier)? @namespace
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name: (identifier) @namespace)
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(scoped_type_identifier
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path: (identifier) @namespace)
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; -------
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; Remaining Identifiers
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; -------
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"?" @special
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(type_identifier) @type
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(identifier) @variable
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(field_identifier) @variable.other.member
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