171 lines
3.9 KiB
OCaml
171 lines
3.9 KiB
OCaml
module Type = struct
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type t =
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| Int
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| Float
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| Function
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| External
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| String
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let to_string = function
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| Int -> "int"
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| Float -> "float"
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| String -> "string"
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| Function -> "fun"
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| External -> "external"
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let supertype = function
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| Int -> Some Float
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| _ -> None
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end
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(* simple, untyped AST. *)
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type t =
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| Value of value
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| Var of string
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| Let of string * t
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| Unary of operator * t
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| Binop of t * operator * t
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| Apply of t * t list (* function application *)
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| Set_binop_pre of operator * t
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| Get_binop_pre of operator
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| Set_binop_aso of operator * string
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| Get_binop_aso of operator
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and value =
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| Int of int
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| Float of float
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| String of string
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| Function of string list * t
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| External of string
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| Nop (* return of system operations (will be deprecated) *)
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and operator =
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| Add | Sub | Mul | Div (* arithmetics *)
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| Mod (* modular operation *)
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| Exp (* exponentation *)
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| Negate
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exception Invalid_type of Type.t
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module Value = struct
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type t = value
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let to_string = function
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| Int n -> string_of_int n
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| Float n -> string_of_float n
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| String s -> "\"" ^ s ^ "\""
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| Function (vars, _) ->
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Printf.sprintf "function with %d arguments" @@ List.length vars
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| External f -> "external " ^ f
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| Nop -> "nop"
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let typeof = function
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| Int _ -> Type.Int
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| Float _ -> Type.Float
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| String _ -> Type.String
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| Function _ -> Type.Function
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| External _ -> Type.External
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| Nop -> failwith "Value.typeof"
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let promote = function
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| Int n -> Float (float n)
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| Float n -> Float n
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| _ -> failwith "Value.promote"
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end
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(* operators *)
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module Operator = struct
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type t = operator
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exception Unavailable of t
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let to_string = function
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| Add -> "+"
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| Sub -> "-"
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| Mul -> "*"
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| Div -> "/"
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| Mod -> "%"
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| Exp -> "^"
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| Negate -> "-"
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let negate = function
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| Int n -> Int ~-n
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| Float n -> Float ~-.n
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| _ -> failwith "Operator.negate"
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let vi f a b =
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match a, b with
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| Int a, Int b -> Int (f a b)
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| _ -> raise @@ Invalid_type Int
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let vf f a b =
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match a, b with
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| Float a, Float b -> Float (f a b)
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| _ -> raise @@ Invalid_type Float
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let operators =
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let open Type in
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let ip = Int, Int and fp = Float, Float in
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[
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Add, [ip, vi Int.add; fp, vf Float.add];
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Sub, [ip, vi Int.sub; fp, vf Float.sub];
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Mul, [ip, vi Int.mul; fp, vf Float.mul];
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Div, [ip, vi Int.div; fp, vf Float.div];
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Mod, [ip, vi Int.rem; fp, vf Float.rem];
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Exp, [fp, vf Float.pow];
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]
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|> List.to_seq
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|> Hashtbl.of_seq
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let get_types op =
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match Hashtbl.find_opt operators op with
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| None -> raise @@ Unavailable op
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| Some p -> List.map fst p
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let get_unary = function
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| Negate -> negate
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| op -> raise @@ Unavailable op
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let get_binary op typ =
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Hashtbl.find operators op
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|> List.assoc_opt typ
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end
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let value v = Value v
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let unary op t =
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Unary (op, t)
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let binop left op right =
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Binop (left, op, right)
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(* print ast LISP style. *)
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let print ast =
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let pr = Printf.printf in
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let pv v = pr "%s" @@ Value.to_string v in
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let rec aux = function
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| Value n -> pv n
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| Var v -> pr "%s" v
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| Let (v, e) ->
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pr "(let %s " v; aux e; pr ")"
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| Unary (op, t) ->
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let op = Operator.to_string op in
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pr "(%s " op; aux t; pr ")"
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| Binop (left, op, right) ->
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let op = Operator.to_string op in
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pr "(%s " op; aux left; pr " "; aux right; pr ")"
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| Apply (f, args) ->
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pr "("; List.iter aux @@ f::args; pr ")"
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| Set_binop_pre (op, pre) ->
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pr "(set_pre %s " (Operator.to_string op);
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aux pre;
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pr ")"
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| Get_binop_pre op ->
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pr "(get_pre %s)" (Operator.to_string op)
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| Set_binop_aso (op, aso) ->
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pr "(set_assoc %s %s)" (Operator.to_string op) aso
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| Get_binop_aso op ->
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pr "(get_pre %s)" (Operator.to_string op)
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in
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aux ast; pr "\n"
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