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316 lines
7.8 KiB
Scheme
316 lines
7.8 KiB
Scheme
;; Constants, Comments, and Literals
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(comment) @comment.line
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(multilineComment) @comment.block
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(docComment) @comment.block.documentation
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(multilineDocComment) @comment.block.documentation
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; comments
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[(literal) (generalizedLit)] @constant
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[(nil_lit)] @constant.builtin
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[(bool_lit)] @constant.builtin.boolean
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[(char_lit)] @constant.character
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[(char_esc_seq) (str_esc_seq)] @constant.character.escape
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[(custom_numeric_lit)] @constant.numeric
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[(int_lit) (int_suffix)] @constant.numeric.integer
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[(float_lit) (float_suffix)] @constant.numeric.float
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; literals
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; note: somewhat irritatingly for testing, lits have the same syntax highlighting as types
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[
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(str_lit)
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(triplestr_lit)
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(rstr_lit)
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(generalized_str_lit)
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(generalized_triplestr_lit)
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(interpolated_str_lit)
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(interpolated_triplestr_lit)
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] @string
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; [] @string.regexp
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; string literals
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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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".}"
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"#["
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"]#"
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] @punctuation.bracket
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(interpolated_str_lit "&" @punctuation.special)
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(interpolated_str_lit "{" @punctuation.special)
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(interpolated_str_lit "}" @punctuation.special)
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; punctuation
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[
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"and"
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"or"
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"xor"
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"not"
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"in"
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"notin"
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"is"
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"isnot"
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"div"
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"mod"
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"shl"
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"shr"
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] @keyword.operator
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; operators: we list them explicitly to deliminate them from symbolic operators
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[(operator) (opr) "="] @operator
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; all operators (must come after @keyword.operator)
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(pragma) @attribute
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; pragmas
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;; Imports and Exports
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(importStmt
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(keyw) @keyword.control.import
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(expr (primary (symbol) @namespace))?
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(expr (primary (arrayConstr (exprColonExprList (exprColonExpr (expr (primary (symbol) @namespace)))))))?)
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(exportStmt
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(keyw) @keyword.control.import
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(expr (primary (symbol) @namespace))?
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(expr (primary (arrayConstr (exprColonExprList (exprColonExpr (expr (primary (symbol) @namespace)))))))?)
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(fromStmt
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(keyw) @keyword.control.import
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(expr (primary (symbol) @namespace))?
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(expr (primary (arrayConstr (exprColonExprList (exprColonExpr (expr (primary (symbol) @namespace)))))))?)
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(includeStmt
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(keyw) @keyword.control.import
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(expr (primary (symbol) @namespace))?
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(expr (primary (arrayConstr (exprColonExprList (exprColonExpr (expr (primary (symbol) @namespace)))))))?)
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(importExceptStmt
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(keyw) @keyword.control.import
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(expr (primary (symbol) @namespace))?
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(expr (primary (arrayConstr (exprColonExprList (exprColonExpr (expr (primary (symbol) @namespace)))))))?)
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; import statements
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; yeah, this is a bit gross.
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;; Control Flow
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(ifStmt (keyw) @keyword.control.conditional)
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(whenStmt (keyw) @keyword.control.conditional)
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(elifStmt (keyw) @keyword.control.conditional)
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(elseStmt (keyw) @keyword.control.conditional)
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(caseStmt (keyw) @keyword.control.conditional)
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(ofBranch (keyw) @keyword.control.conditional)
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(inlineIfStmt (keyw) @keyword.control.conditional)
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(inlineWhenStmt (keyw) @keyword.control.conditional)
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; conditional statements
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; todo: do block
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(forStmt
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. (keyw) @keyword.control.repeat
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. (symbol) @variable
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. (keyw) @keyword.control.repeat)
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(whileStmt (keyw) @keyword.control.repeat)
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; loop statements
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(returnStmt (keyw) @keyword.control.repeat)
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(yieldStmt (keyw) @keyword.control.repeat)
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(discardStmt (keyw) @keyword.control.repeat)
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(breakStmt (keyw) @keyword.control.repeat)
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(continueStmt (keyw) @keyword.control.repeat)
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; control flow statements
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(raiseStmt (keyw) @keyword.control.exception)
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(tryStmt (keyw) @keyword.control.exception)
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(tryExceptStmt (keyw) @keyword.control.exception)
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(tryFinallyStmt (keyw) @keyword.control.exception)
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(inlineTryStmt (keyw) @keyword.control.exception)
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; (inlineTryExceptStmt (keyw) @keyword.control.exception)
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; (inlineTryFinallyStmt (keyw) @keyword.control.exception)
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; exception handling statements
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(staticStmt (keyw) @keyword)
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(deferStmt (keyw) @keyword)
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(asmStmt (keyw) @keyword)
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(bindStmt (keyw) @keyword)
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(mixinStmt (keyw) @keyword)
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; miscellaneous blocks
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(blockStmt
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(keyw) @keyword.control
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(symbol) @label)
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; block statements
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;; Types and Type Declarations
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(typeDef
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(keyw) @keyword.storage.type
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(symbol) @type)
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; names of new types type declarations
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(exprColonEqExpr
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. (expr (primary (symbol) @variable))
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. (expr (primary (symbol) @type)))
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; variables in inline tuple declarations
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(primarySuffix
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(indexSuffix
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(exprColonEqExprList
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(exprColonEqExpr
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(expr
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(primary
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(symbol) @type))))))
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; nested types in brackets, i.e. seq[string]
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(primaryTypeDef (symbol) @type)
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; primary types of type declarations (NOT nested types)
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(primaryTypeDef (primaryPrefix (keyw) @type))
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; for consistency
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(primaryTypeDesc (symbol) @type)
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; type annotations, on declarations or in objects
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(primaryTypeDesc (primaryPrefix (keyw) @type))
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; var types etc
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(genericParamList (genericParam (symbol) @type))
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; types in generic blocks
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(enumDecl (keyw) @keyword.storage.type)
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(enumElement (symbol) @type.enum.variant)
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; enum declarations and elements
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(tupleDecl (keyw) @keyword.storage.type)
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; tuple declarations
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(objectDecl (keyw) @keyword.storage.type)
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(objectPart (symbol) @variable.other.member)
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; object declarations and fields
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(objectCase
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(keyw) @keyword.control.conditional
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(symbol) @variable.other.member)
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(objectBranch (keyw) @keyword.control.conditional)
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(objectElif (keyw) @keyword.control.conditional)
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(objectElse (keyw) @keyword.control.conditional)
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(objectWhen (keyw) @keyword.control.conditional)
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; variant objects
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(conceptDecl (keyw) @keyword.storage.type)
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(conceptParam (keyw) @type)
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(conceptParam (symbol) @variable)
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; concept declarations, parameters, and qualifiers on those parameters
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((expr
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(primary (symbol))
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(operator) @operator
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(primary (symbol) @type))
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(#match? @operator "is"))
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((exprStmt
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(primary (symbol))
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(operator) @operator
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(primary (symbol) @type))
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(#match? @operator "is"))
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; symbols likely to be types: "x is t" means t is either a type or a type variable
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; distinct?
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;; Functions
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(routine
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. (keyw) @keyword.function
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. (symbol) @function)
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; function declarations
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(routineExpr (keyw) @keyword.function)
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; discarded function
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(routineExprTypeDesc (keyw) @keyword.function)
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; function declarations as types
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(primary
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. (symbol) @function.call
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. (primarySuffix (functionCall)))
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; regular function calls
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(primary
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. (symbol) @function.call
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. (primarySuffix (cmdCall)))
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; function calls without parenthesis
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(primary
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(primarySuffix (qualifiedSuffix (symbol) @function.call))
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. (primarySuffix (functionCall)))
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; uniform function call syntax calls
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(primary
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(primarySuffix (qualifiedSuffix (symbol) @function.call))
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. (primarySuffix (cmdCall)))
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; just in case
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(primary
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(symbol) @constructor
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(primarySuffix (objectConstr)))
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; object constructor
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; does not appear to be a way to distinguish these without verbatium matching
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; [] @function.builtin
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; [] @function.method
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; [] @function.macro
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; [] @function.special
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;; Variables
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(paramList (paramColonEquals (symbol) @variable.parameter))
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; parameter identifiers
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(identColon (ident) @variable.other.member)
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; named parts of tuples
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(symbolColonExpr (symbol) @variable)
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; object constructor parameters
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(symbolEqExpr (symbol) @variable)
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; named parameters
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(variable
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(keyw) @keyword.storage.type
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(declColonEquals (symbol) @variable))
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; let, var, const expressions
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((primary (symbol) @variable.builtin)
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(#match? @variable.builtin "result"))
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; `result` is an implicit builtin variable inside function scopes
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((primary (symbol) @type)
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(#match? @type "^[A-Z]"))
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; assume PascalCase identifiers to be types
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((primary
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(primarySuffix
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(qualifiedSuffix
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(symbol) @type)))
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(#match? @type "^[A-Z]"))
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; assume PascalCase member variables to be enum entries
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(primary (symbol) @variable)
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; overzealous, matches variables
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(primary (primarySuffix (qualifiedSuffix (symbol) @variable.other.member)))
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; overzealous, matches member variables: i.e. x in foo.x
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(keyw) @keyword
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; more specific matches are done above whenever possible
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