Files
why3/plugins/python/py_main.ml
2018-02-14 23:06:34 +01:00

381 lines
14 KiB
OCaml

(********************************************************************)
(* *)
(* The Why3 Verification Platform / The Why3 Development Team *)
(* Copyright 2010-2018 -- Inria - CNRS - Paris-Sud University *)
(* *)
(* This software is distributed under the terms of the GNU Lesser *)
(* General Public License version 2.1, with the special exception *)
(* on linking described in file LICENSE. *)
(* *)
(********************************************************************)
open Why3
open Mlw_module
open Py_ast
open Ptree
open Stdlib
let debug = Debug.register_flag "python"
~desc:"mini-python plugin debug flag"
let () = Debug.set_flag Dterm.debug_ignore_unused_var
let mk_id ~loc name =
{ id_str = name; id_lab = []; id_loc = loc }
let infix ~loc s = Qident (mk_id ~loc (Ident.infix s))
let prefix ~loc s = Qident (mk_id ~loc (Ident.prefix s))
let mixfix ~loc s = Qident (mk_id ~loc (Ident.mixfix s))
let mk_expr ~loc d =
{ expr_desc = d; expr_loc = loc }
let mk_term ~loc d =
{ term_desc = d; term_loc = loc }
let mk_pat ~loc d =
{ pat_desc = d; pat_loc = loc }
let mk_unit ~loc =
mk_expr ~loc (Etuple [])
let mk_var ~loc id =
mk_expr ~loc (Eident (Qident id))
let mk_tvar ~loc id =
mk_term ~loc (Tident (Qident id))
let mk_ref ~loc e =
mk_expr ~loc (Eidapp (Qident (mk_id ~loc "ref"), [e]))
let deref_id ~loc id =
mk_expr ~loc (Eidapp (prefix ~loc "!", [mk_expr ~loc (Eident (Qident id))]))
let array_set ~loc a i v =
mk_expr ~loc (Eidapp (mixfix ~loc "[]<-", [a; i; v]))
let constant ~loc i =
mk_expr ~loc (Econst (Number.const_of_int i))
let constant_s ~loc s =
mk_expr ~loc (Econst (Number.(ConstInt { ic_negative = false ; ic_abs = int_literal_dec s})))
let len ~loc =
Qident (mk_id ~loc "len")
let break ~loc =
Qident (mk_id ~loc "Break")
let break_handler ~loc =
[break ~loc, None, mk_unit ~loc]
let return ~loc =
Qident (mk_id ~loc "Return")
let return_handler ~loc =
let x = mk_id ~loc "x" in
[return ~loc, Some (mk_pat ~loc (Pvar x)), mk_var ~loc x]
let array_make ~loc n v =
mk_expr ~loc (Eidapp (Qdot (Qident (mk_id ~loc "Array"), mk_id ~loc "make"),
[n; v]))
let empty_spec = {
sp_pre = [];
sp_post = [];
sp_xpost = [];
sp_reads = [];
sp_writes = [];
sp_variant = [];
sp_checkrw = false;
sp_diverge = false;
}
type env = {
vars: ident Mstr.t;
for_index: int;
}
let empty_env =
{ vars = Mstr.empty;
for_index = 0; }
let add_var env id =
{ env with vars = Mstr.add id.id_str id env.vars }
let for_vars ~loc env =
let i = env.for_index in
let env = { env with for_index = i + 1 } in
let i = string_of_int env.for_index in
mk_id ~loc ("for index " ^ i ), mk_id ~loc ("for list " ^ i), env
(* dereference all variables from the environment *)
let deref env t =
let deref _ ({id_loc=loc} as id) t =
let tid = mk_term ~loc (Tident (Qident id)) in
let tid = mk_term ~loc (Tidapp (prefix ~loc "!", [tid])) in
mk_term ~loc:t.term_loc (Tlet (id, tid, t)) in
Mstr.fold deref env.vars t
let loop_annotation env a =
{ loop_invariant = List.map (deref env) a.loop_invariant;
loop_variant = List.map (fun (t, o) -> deref env t, o) a.loop_variant }
let add_loop_invariant i a =
{ a with loop_invariant = i :: a.loop_invariant }
let stmt_of_decl = function Dstmt s -> s | _ -> invalid_arg "not a statement"
let rec has_stmt p = function
| Dstmt s -> p s || begin match s.stmt_desc with
| Sbreak | Sreturn _ | Sassign _ | Slabel _
| Seval _ | Sset _ | Sassert _ | Swhile _ -> false
| Sif (_, bl1, bl2) -> has_stmtl p bl1 || has_stmtl p bl2
| Sfor (_, _, _, bl) -> has_stmtl p bl end
| _ -> false
and has_stmtl p bl = List.exists (has_stmt p) bl
let has_breakl = has_stmtl (fun s -> s.stmt_desc = Sbreak)
let has_returnl = has_stmtl (function { stmt_desc = Sreturn _ } -> true | _ -> false)
let rec expr_has_call id e = match e.Py_ast.expr_desc with
| Enone | Ebool _ | Eint _ | Estring _ | Py_ast.Eident _ -> false
| Emake (e1, e2) | Eget (e1, e2) | Ebinop (_, e1, e2) ->
expr_has_call id e1 || expr_has_call id e2
| Eunop (_, e1) -> expr_has_call id e1
| Ecall (f, el) -> id.id_str = f.id_str || List.exists (expr_has_call id) el
| Elist el -> List.exists (expr_has_call id) el
let rec stmt_has_call id s = match s.stmt_desc with
| Sbreak | Slabel _ | Sassert _ -> false
| Sreturn e | Sassign (_, e) | Seval e -> expr_has_call id e
| Sset (e1, e2, e3) ->
expr_has_call id e1 || expr_has_call id e2 || expr_has_call id e3
| Sif (e, s1, s2) -> expr_has_call id e || block_has_call id s1 || block_has_call id s2
| Sfor (_, e, _, s) | Swhile (e, _, s) -> expr_has_call id e || block_has_call id s
and block_has_call id = has_stmtl (stmt_has_call id)
let rec expr env {Py_ast.expr_loc = loc; Py_ast.expr_desc = d } = match d with
| Py_ast.Enone ->
mk_unit ~loc
| Py_ast.Ebool b ->
mk_expr ~loc (if b then Etrue else Efalse)
| Py_ast.Eint s ->
constant_s ~loc s
| Py_ast.Estring _s ->
mk_unit ~loc (*FIXME*)
| Py_ast.Eident id ->
if not (Mstr.mem id.id_str env.vars) then
Loc.errorm ~loc "unbound variable %s" id.id_str;
deref_id ~loc id
| Py_ast.Ebinop (op, e1, e2) ->
let e1 = expr env e1 in
let e2 = expr env e2 in
mk_expr ~loc (match op with
| Py_ast.Band -> Elazy (e1, LazyAnd, e2)
| Py_ast.Bor -> Elazy (e1, LazyOr, e2)
| Py_ast.Badd -> Eidapp (infix ~loc "+", [e1; e2])
| Py_ast.Bsub -> Eidapp (infix ~loc "-", [e1; e2])
| Py_ast.Bmul -> Eidapp (infix ~loc "*", [e1; e2])
| Py_ast.Bdiv -> Eidapp (Qident (mk_id ~loc "div"), [e1; e2])
| Py_ast.Bmod -> Eidapp (Qident (mk_id ~loc "mod"), [e1; e2])
| Py_ast.Beq -> Eidapp (infix ~loc "=", [e1; e2])
| Py_ast.Bneq -> Eidapp (infix ~loc "<>", [e1; e2])
| Py_ast.Blt -> Eidapp (infix ~loc "<", [e1; e2])
| Py_ast.Ble -> Eidapp (infix ~loc "<=", [e1; e2])
| Py_ast.Bgt -> Eidapp (infix ~loc ">", [e1; e2])
| Py_ast.Bge -> Eidapp (infix ~loc ">=", [e1; e2])
)
| Py_ast.Eunop (Py_ast.Uneg, e) ->
mk_expr ~loc (Eidapp (prefix ~loc "-", [expr env e]))
| Py_ast.Eunop (Py_ast.Unot, e) ->
mk_expr ~loc (Eidapp (Qident (mk_id ~loc "not"), [expr env e]))
| Py_ast.Ecall ({id_str="print"}, el) ->
let eval res e =
mk_expr ~loc (Elet (mk_id ~loc "_", Gnone, expr env e, res)) in
List.fold_left eval (mk_unit ~loc) el
| Py_ast.Ecall (id, el) ->
mk_expr ~loc (Eidapp (Qident id, List.map (expr env) el))
| Py_ast.Emake (e1, e2) -> (* [e1]*e2 *)
array_make ~loc (expr env e2) (expr env e1)
| Py_ast.Elist [] ->
array_make ~loc (constant ~loc 0) (constant ~loc 0)
| Py_ast.Elist el ->
let n = List.length el in
let n = constant ~loc n in
let id = mk_id ~loc "new array" in
mk_expr ~loc (Elet (id, Gnone, array_make ~loc n (constant ~loc 0),
let i = ref (-1) in
let init seq e =
incr i; let i = constant ~loc !i in
let assign = array_set ~loc (mk_var ~loc id) i (expr env e) in
mk_expr ~loc (Esequence (assign, seq)) in
List.fold_left init (mk_var ~loc id) el))
| Py_ast.Eget (e1, e2) ->
mk_expr ~loc (Eidapp (mixfix ~loc "[]", [expr env e1; expr env e2]))
let post env (loc, l) =
loc, List.map (fun (pat, t) -> pat, deref env t) l
let spec env sp =
assert (sp.sp_xpost = [] && sp.sp_reads = [] && sp.sp_writes = []
&& sp.sp_variant = []);
{ sp with
sp_pre = List.map (deref env) sp.sp_pre;
sp_post = List.map (post env) sp.sp_post }
let no_params ~loc = [loc, None, false, Some (PTtuple [])]
let rec stmt env ({Py_ast.stmt_loc = loc; Py_ast.stmt_desc = d } as s) =
match d with
| Py_ast.Seval e ->
expr env e
| Py_ast.Sif (e, s1, s2) ->
mk_expr ~loc (Eif (expr env e, block env ~loc s1, block env ~loc s2))
| Py_ast.Sreturn e ->
mk_expr ~loc (Eraise (return ~loc, Some (expr env e)))
| Py_ast.Sassign (id, e) ->
let e = expr env e in
if Mstr.mem id.id_str env.vars then
let x = let loc = id.id_loc in mk_expr ~loc (Eident (Qident id)) in
mk_expr ~loc (Einfix (x, mk_id ~loc "infix :=", e))
else
block env ~loc [Dstmt s]
| Py_ast.Sset (e1, e2, e3) ->
array_set ~loc (expr env e1) (expr env e2) (expr env e3)
| Py_ast.Sassert (k, t) ->
mk_expr ~loc (Eassert (k, deref env t))
| Py_ast.Swhile (e, ann, s) ->
let loop = mk_expr ~loc
(Ewhile (expr env e, loop_annotation env ann, block env ~loc s)) in
if has_breakl s then mk_expr ~loc (Etry (loop, break_handler ~loc))
else loop
| Py_ast.Sbreak ->
mk_expr ~loc (Eraise (break ~loc, None))
| Py_ast.Slabel _ ->
mk_unit ~loc (* ignore lonely marks *)
(* make a special case for
for id in range(e1, e2):
*)
| Py_ast.Sfor (id, {Py_ast.expr_desc=Ecall ({id_str="range"}, [e1;e2])},
inv, body) ->
let inv = List.map (deref env) inv in
let e_to = expr env e2 in
let ub = mk_expr ~loc (Eidapp (infix ~loc "-", [e_to;constant ~loc 1])) in
mk_expr ~loc (Efor (id, expr env e1, To, ub, inv,
mk_expr ~loc (Elet (id, Gnone, mk_ref ~loc (mk_var ~loc id),
let env = add_var env id in
block ~loc env body))))
(* otherwise, translate
for id in e:
#@ invariant inv
body
to
let l = e in
for i = 0 to len(l)-1 do
invariant { let id = l[i] in I }
let id = ref l[i] in
body
done
*)
| Py_ast.Sfor (id, e, inv, body) ->
let i, l, env = for_vars ~loc env in
let e = expr env e in
mk_expr ~loc (Elet (l, Gnone, e, (* evaluate e only once *)
let lb = constant ~loc 0 in
let lenl = mk_expr ~loc (Eidapp (len ~loc, [mk_var ~loc l])) in
let ub = mk_expr ~loc (Eidapp (infix ~loc "-", [lenl;constant ~loc 1])) in
let invariant inv =
let loc = inv.term_loc in
let li = mk_term ~loc
(Tidapp (mixfix ~loc "[]", [mk_tvar ~loc l; mk_tvar ~loc i])) in
mk_term ~loc (Tlet (id, li, deref env inv)) in
mk_expr ~loc (Efor (i, lb, To, ub, List.map invariant inv,
let li = mk_expr ~loc
(Eidapp (mixfix ~loc "[]", [mk_var ~loc l; mk_var ~loc i])) in
mk_expr ~loc (Elet (id, Gnone, mk_ref ~loc li,
let env = add_var env id in
block ~loc env body
))))))
and block env ~loc = function
| [] ->
mk_unit ~loc
| Dstmt { stmt_loc = loc; stmt_desc = Slabel id } :: sl ->
mk_expr ~loc (Emark (id, block env ~loc sl))
| Dstmt { Py_ast.stmt_loc = loc; stmt_desc = Py_ast.Sassign (id, e) } :: sl
when not (Mstr.mem id.id_str env.vars) ->
let e = expr env e in (* check e *before* adding id to environment *)
let env = add_var env id in
mk_expr ~loc (Elet (id, Gnone, mk_ref ~loc e, block env ~loc sl))
| Dstmt ({ Py_ast.stmt_loc = loc } as s) :: sl ->
let s = stmt env s in
if sl = [] then s else mk_expr ~loc (Esequence (s, block env ~loc sl))
| Ddef (id, idl, sp, bl) :: sl ->
let lam = def (id, idl, sp, bl) in
let s = block env ~loc sl in
if block_has_call id bl then mk_expr ~loc (Erec ([id, Gnone, lam], s))
else mk_expr ~loc (Efun (id, Gnone, lam, s))
| (Dimport _ | Py_ast.Dlogic _) :: sl ->
block env ~loc sl
(* f(x1,...,xn): body
let f x1 ... xn =
let x1 = ref x1 in ... let xn = ref xn in
try body with Return x -> x *)
and def (id, idl, sp, bl) =
let loc = id.id_loc in
let env = empty_env in
let env = List.fold_left add_var env idl in
let body = block env ~loc bl in
let body = if has_returnl bl then
mk_expr ~loc (Etry (body, return_handler ~loc)) else body in
let local bl id =
let loc = id.id_loc in
mk_expr ~loc (Elet (id, Gnone, mk_ref ~loc (mk_var ~loc id), bl)) in
let body = List.fold_left local body idl in
let param id = id.id_loc, Some id, false, None in
let params = if idl = [] then no_params ~loc else List.map param idl in
params, None, body, sp
let fresh_type_var =
let r = ref 0 in
fun loc -> incr r;
PTtyvar ({ id_str = "a" ^ string_of_int !r; id_loc = loc; id_lab = [] }, false)
let logic_param id =
id.id_loc, Some id, false, fresh_type_var id.id_loc
let logic inc = function
| Py_ast.Dlogic (func, id, idl) ->
let d = { ld_loc = id.id_loc;
ld_ident = id;
ld_params = List.map logic_param idl;
ld_type = if func then Some (fresh_type_var id.id_loc) else None;
ld_def = None } in
inc.new_decl id.id_loc (Dlogic [d])
| _ -> ()
let translate ~loc inc dl =
List.iter (logic inc) dl;
let fd = (no_params ~loc, None, block empty_env ~loc dl, empty_spec) in
let main = Dfun (mk_id ~loc "main", Gnone, fd) in
inc.new_pdecl loc main
let read_channel env path file c =
let f = Py_lexer.parse file c in
Debug.dprintf debug "%s parsed successfully.@." file;
let file = Filename.basename file in
let file = Filename.chop_extension file in
let name = Strings.capitalize file in
Debug.dprintf debug "building module %s.@." name;
let inc = Mlw_typing.open_file env path in
let loc = Why3.Loc.user_position file 0 0 0 in
inc.open_module (mk_id ~loc name);
let use_import (f, m) =
let q = Qdot (Qident (mk_id ~loc f), mk_id ~loc m) in
let use = {use_theory = q; use_import = Some (true, m) }, None in
inc.use_clone loc use in
List.iter use_import
["int", "Int"; "ref", "Refint"; "python", "Python"];
translate ~loc inc f;
inc.close_module ();
let mm, _ as res = Mlw_typing.close_file () in
if path = [] && Debug.test_flag debug then begin
let add_m _ m modm = Ident.Mid.add m.mod_theory.Theory.th_name m modm in
let modm = Mstr.fold add_m mm Ident.Mid.empty in
let print_m _ m = Format.eprintf
"@[<hov 2>module %a@\n%a@]@\nend@\n@." Pretty.print_th m.mod_theory
(Pp.print_list Pp.newline2 Mlw_pretty.print_pdecl) m.mod_decls in
Ident.Mid.iter print_m modm
end;
res
let () =
Env.register_format mlw_language "python" ["py"] read_channel
~desc:"mini-Python format"