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refactor: Split ast into ast/syntax and ast/print
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@@ -1,33 +1,35 @@
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(* lib/ast.ml *)
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(* lib/ast/print.ml *)
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type binary_operator = Add | Substract | Multiply | Divide
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type expression =
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| IntegerLiteral of int
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| BinaryExpression of binary_operator * expression * expression
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type statement = ExpressionStatement of expression
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type source_file = SourceFile of statement list
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(* Print AST *)
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open Syntax
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(** [string_of_binary_operator op] returns a string representation of the binary operator [op]. *)
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let string_of_binary_operator = function
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| Add -> "Add"
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| Substract -> "Substract"
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| Multiply -> "Multiply"
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| Divide -> "Divide"
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(** [string_of_unary_operator op] returns a string representation of the unary operator [op]. *)
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let string_of_unary_operator = function Negate -> "Negate"
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(** [string_of_expression e] returns a string representation of the expression [e]. *)
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let rec string_of_expression = function
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| IntegerLiteral i -> "IntegerLiteral(" ^ string_of_int i ^ ")"
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| UnaryExpression (op, e) ->
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"UnaryExpression("
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^ string_of_unary_operator op
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^ ", " ^ string_of_expression e ^ ")"
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| BinaryExpression (op, e1, e2) ->
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"BinaryExpression("
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^ string_of_binary_operator op
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^ ", " ^ string_of_expression e1 ^ ", " ^ string_of_expression e2 ^ ")"
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(** [string_of_statement s] returns a string representation of the statement [s]. *)
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let string_of_statement = function
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| ExpressionStatement e ->
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"ExpressionStatement(" ^ string_of_expression e ^ ")"
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(** [string_of_source_file f] returns a string representation of the source file [f]. *)
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let string_of_source_file = function
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| SourceFile stmts ->
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let stmt_strings = List.map string_of_statement stmts in
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@@ -0,0 +1,12 @@
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(* lib/ast/syntax.ml *)
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type binary_operator = Add | Substract | Multiply | Divide
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type unary_operator = Negate
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type expression =
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| IntegerLiteral of int
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| UnaryExpression of unary_operator * expression
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| BinaryExpression of binary_operator * expression * expression
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type statement = ExpressionStatement of expression
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type source_file = SourceFile of statement list
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