Expect more book errors
[tiger.ml.git] / compiler / src / lib / tiger / tiger_semant.ml
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1module List = ListLabels
2
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3module A = Tiger_absyn
4module Env = Tiger_env
5module E = Tiger_error
cbb4ffb6 6module Symbol = Tiger_symbol
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7module Translate = Tiger_translate
8module Type = Tiger_env_type
9module Value = Tiger_env_value
10
11(* The only reason for having this seemingly-superfluous inner module is to
12 * have this nice signature as a summary of what each function does. *)
13module Semant : sig
14 type expty =
15 { exp : Translate.exp
16 ; ty : Type.t
17 }
18
19 (* Violating normal naming convention just to make it easier to follow
20 * Appel's
21 *)
22 val transExp : env:Env.t -> A.exp -> expty
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23
24 (* transVar does not seem to be needed, as trvar handles all our cases.
25 * Am I wrong?
26 *
27 * val transVar : env:Env.t -> A.var -> expty
28 *
29 *)
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30end = struct
31 type expty =
32 { exp : Translate.exp
33 ; ty : Type.t
34 }
35
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36 let rec actual_ty ty ~pos =
37 match ty with
38 | Type.Name (name, ty_opt_ref) ->
39 (match !ty_opt_ref with
40 | None ->
41 E.raise (E.Unknown_type {ty_id=name; pos})
42 | Some ty ->
43 actual_ty ty ~pos
44 )
45 | Type.Unit
46 | Type.Nil
47 | Type.Int
48 | Type.String
49 | Type.Record _
50 | Type.Array _ ->
51 ty
52
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53 let return ty = {exp = (); ty}
54 let return_unit = return Type.Unit
55 let return_nil = return Type.Nil
56 let return_int = return Type.Int
57 let return_string = return Type.String
155ee327 58
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59 let env_get_typ ~sym ~env ~pos : Type.t =
60 match Env.get_typ env sym with
61 | Some ty -> ty
62 | None -> E.raise (E.Unknown_type {ty_id=sym; pos})
63
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64 let env_get_typ_actual ~sym ~env ~pos : Type.t =
65 actual_ty (env_get_typ ~sym ~env ~pos) ~pos
66
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67 let env_get_val ~sym ~env ~pos : Value.t =
68 match Env.get_val env sym with
69 | Some ty -> ty
70 | None -> E.raise (E.Unknown_id {id=sym; pos})
71
72 let check_same {exp=_; ty=ty_left} {exp=_; ty=ty_right} ~pos : unit =
73 if Type.is_equal ty_left ty_right then
74 ()
75 else
76 E.raise (E.Wrong_type {expected=ty_left; given=ty_right; pos})
77
78 let check_int expty ~pos : unit =
cbb4ffb6 79 check_same return_int expty ~pos
978cb41c 80
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81 let rec transExp ~env exp =
82 let rec trexp exp =
83 (match exp with
84 | A.NilExp ->
85 return_nil
86 | A.IntExp _ ->
87 return_int
88 | A.StringExp {string=_; _} ->
89 return_string
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90 | A.CallExp {func; args; pos} ->
91 (match env_get_val ~sym:func ~env ~pos with
92 | Value.Fun {formals; result} ->
93 List.iter2 formals args ~f:(fun ty_expected exp_given ->
cbb4ffb6 94 check_same (return (actual_ty ~pos ty_expected)) (trexp exp_given) ~pos;
978cb41c 95 );
cbb4ffb6 96 return (actual_ty ~pos result)
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97 | Value.Var _ ->
98 E.raise (E.Id_not_a_function {id=func; pos})
99 )
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100 | A.OpExp {oper; left; right; pos} ->
101 trop oper ~left ~right ~pos
0ed7a07c 102 | A.RecordExp {fields=field_exps; typ; pos} ->
cbb4ffb6 103 let ty = env_get_typ_actual ~sym:typ ~env ~pos in
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104 Type.if_record
105 ty
106 ~f:(fun field_tys ->
107 List.iter field_exps ~f:(fun (field, exp, pos) ->
108 (match List.assoc_opt field field_tys with
109 | Some field_ty ->
cbb4ffb6 110 check_same (return (actual_ty ~pos field_ty)) (trexp exp) ~pos
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111 | None ->
112 E.raise
113 (E.No_such_field_in_record {field; record=ty; pos})
114 )
115 )
116 )
117 ~otherwise:(fun () ->
118 E.raise (E.Wrong_type_used_as_record {ty_id=typ; ty; pos})
119 );
cbb4ffb6 120 return (actual_ty ~pos ty)
9d8471b2 121 | A.SeqExp [] ->
523e2b06 122 return_unit
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123 | A.SeqExp exps ->
124 let last xs =
125 xs
126 |> List.rev (* Yes, redundant, but clean-looking ;-P *)
127 |> List.hd (* Empty is matched in above SeqExp match case *)
128 in
129 exps
cbb4ffb6 130 |> List.map ~f:(fun (exp, _) -> trexp exp)
9d8471b2 131 |> last
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132 | A.AssignExp {var; exp; pos} ->
133 check_same (trvar var) (trexp exp) ~pos;
134 (* TODO: Add var->exp to val env? *)
135 return_unit
136 | A.IfExp {test; then'; else'; pos} ->
137 (* test : must be int, because we have no bool *)
138 (* then : must equal else *)
139 (* else : must equal then or be None *)
140 check_int (trexp test) ~pos;
141 (match (trexp then', else') with
142 | expty_then, None ->
143 expty_then
144 | expty_then, Some else' ->
145 let expty_else = trexp else' in
146 check_same expty_then expty_else ~pos;
147 expty_then
148 )
149 | A.WhileExp {test; body; pos} ->
150 (* test : must be int, because we have no bool *)
151 check_int (trexp test) ~pos;
152 ignore (trexp body); (* Only care if a type-error is raised *)
153 return_unit
154 | A.ForExp {var; lo; hi; body; pos; escape=_} ->
155 check_int (trexp lo) ~pos;
156 check_int (trexp hi) ~pos;
157 (* Only care if a type-error is raised *)
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158 let env = Env.set_val env var (Value.Var {ty = Type.Int}) in
159 ignore (transExp ~env body);
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160 return_unit
161 | A.BreakExp _ ->
162 return_unit
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163 | A.LetExp {decs; body; pos=_} ->
164 (* (1) decs augment env *)
165 (* (2) body checked against the new env *)
166 let env =
167 List.fold_left decs ~init:env ~f:(fun env dec -> transDec dec ~env)
168 in
169 transExp body ~env
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170 | A.ArrayExp {typ; size; init; pos} ->
171 check_int (trexp size) ~pos;
cbb4ffb6 172 let ty = env_get_typ_actual ~sym:typ ~env ~pos in
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173 Type.if_array
174 ty
175 ~f:(fun ty_elements ->
cbb4ffb6 176 check_same (return (actual_ty ~pos ty_elements)) (trexp init) ~pos
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177 )
178 ~otherwise:(fun () ->
179 E.raise (E.Wrong_type_used_as_array {ty_id=typ; ty; pos})
180 );
cbb4ffb6 181 return (actual_ty ~pos ty)
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182 | A.VarExp var ->
183 trvar var
184 )
185 and trvar =
186 (function
187 | A.SimpleVar {symbol=sym; pos} ->
188 (match env_get_val ~sym ~env ~pos with
189 | Value.Fun _ -> E.raise (E.Id_is_a_function {id=sym; pos})
cbb4ffb6 190 | Value.Var {ty} -> return (actual_ty ~pos ty)
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191 )
192 | A.FieldVar {var; symbol; pos} ->
193 let {exp=_; ty} = trvar var in
194 Type.if_record
195 ty
196 ~f:(fun fields ->
197 (match List.assoc_opt symbol fields with
198 | None ->
199 E.raise
200 (E.No_such_field_in_record {field=symbol; record=ty; pos})
201 | Some ty ->
cbb4ffb6 202 return (actual_ty ~pos ty)
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203 )
204 )
205 ~otherwise:(fun () -> E.raise (E.Exp_not_a_record {ty; pos}))
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206 | A.SubscriptVar {var; exp; pos} ->
207 let {exp=_; ty} = trvar var in
208 check_int (trexp exp) ~pos;
209 Type.if_array
210 ty
cbb4ffb6 211 ~f:(fun ty_elements -> return (actual_ty ~pos ty_elements))
161a300d 212 ~otherwise:(fun () -> E.raise (E.Exp_not_an_array {ty; pos}))
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213 )
214 and trop oper ~left ~right ~pos =
cbb4ffb6 215 (* TODO: Refactor trop - all opers return bool/int *)
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216 let expty_left = trexp left in
217 let expty_right = trexp right in
218 check_same expty_left expty_right ~pos;
219 let {exp=_; ty} = expty_left in
220 let module T = Type in
221 (match oper with
222 (* Arithmetic: int *)
223 | A.PlusOp
224 | A.MinusOp
225 | A.TimesOp
226 | A.DivideOp ->
227 check_int expty_left ~pos;
228 return_int
229 (* Equality: int, string, array, record *)
230 | A.EqOp
231 | A.NeqOp ->
232 if (T.is_int ty)
233 || (T.is_string ty)
234 || (T.is_array ty)
235 || (T.is_record ty)
236 then
cbb4ffb6 237 return_int (* Because we have no bool type *)
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238 else
239 E.raise (E.Invalid_operand_type
240 { oper
241 ; valid = ["int"; "string"; "array"; "record"]
242 ; given = ty
243 ; pos
244 })
245 (* Order: int, string *)
246 | A.LtOp
247 | A.LeOp
248 | A.GtOp
249 | A.GeOp ->
250 if (T.is_int ty)
251 || (T.is_string ty)
252 then
cbb4ffb6 253 return_int (* Because we have no bool type *)
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254 else
255 E.raise (E.Invalid_operand_type
256 { oper
257 ; valid = ["int"; "string"]
258 ; given = ty
259 ; pos
260 })
261 )
262 in
263 trexp exp
862e5c05 264 and transDec ~(env : Env.t) (dec : A.dec) : Env.t =
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265 (match dec with
266 | A.VarDec {name; typ=typ_opt; init; pos=pos_outter; escape=_} ->
267 let ty =
268 (match (typ_opt, transExp ~env init) with
269 | None, {ty; exp=()} ->
270 ty
271 | Some (sym, pos_inner), expty_init ->
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272 let ty = env_get_typ_actual ~sym ~env ~pos:pos_inner in
273 check_same (return ty) expty_init ~pos:pos_outter;
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274 ty
275 )
276 in
277 Env.set_val env name (Value.Var {ty})
0324a942 278 | A.TypeDecs typedecs ->
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279 let env =
280 List.fold_left typedecs ~init:env ~f:(
281 fun env (A.TypeDec {name; ty=_; pos=_}) ->
282 Env.set_typ env name (Type.Name (name, ref None))
283 )
284 in
285 List.iter typedecs ~f:(fun (A.TypeDec {name; ty=ty_exp; pos}) ->
286 let ty = transTy ~env ty_exp in
287 (match env_get_typ ~sym:name ~env ~pos with
288 | Type.Name (name, ty_opt_ref) ->
289 ty_opt_ref := Some ty
290 | Type.Unit
291 | Type.Nil
292 | Type.Int
293 | Type.String
294 | Type.Record _
295 | Type.Array _ ->
296 ()
297 )
298 );
299 env
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300 | A.FunDecs fundecs ->
301 List.fold_left fundecs ~init:env ~f:(
302 fun env (A.FunDec {name; params; result; body; pos=_}) ->
303 let (env_for_body, formals_in_reverse_order) =
304 List.fold_left params ~init:(env, []) ~f:(
305 fun (env, formals) (A.Field {name; escape=_; typ; pos}) ->
cbb4ffb6 306 let ty = env_get_typ_actual ~env ~sym:typ ~pos in
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307 let env = Env.set_val env name (Value.Var {ty}) in
308 (env, ty :: formals)
309 )
310 in
311 (* ignore because we only care if an exception is raised *)
312 ignore (transExp ~env:env_for_body body);
313 let formals = List.rev formals_in_reverse_order in
314 let result =
315 match result with
316 | None ->
317 Type.Unit
318 | Some (sym, pos) ->
cbb4ffb6 319 env_get_typ_actual ~sym ~env ~pos
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320 in
321 Env.set_val env name (Value.Fun {formals; result})
322 )
8744eb3a 323 )
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324 and transTy ~(env : Env.t) (ty_exp : A.ty) : Type.t =
325 (match ty_exp with
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326 | A.NameTy {symbol=sym; pos} ->
327 env_get_typ ~sym ~env ~pos
328 | A.RecordTy fields ->
329 let fields =
330 List.map fields ~f:(fun (A.Field {name; escape=_; typ; pos}) ->
331 let ty = env_get_typ ~sym:typ ~env ~pos in
332 (name, ty)
333 )
334 in
335 Type.new_record fields
336 | A.ArrayTy {symbol=sym; pos} ->
337 let element_ty = env_get_typ ~sym ~env ~pos in
338 Type.new_array element_ty
339 )
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340end
341
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342open Semant
343
155ee327 344let transProg absyn =
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345 let {exp = _; ty = _} = transExp absyn ~env:Env.base in
346 ()
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