145 lines
5.0 KiB
OCaml
145 lines
5.0 KiB
OCaml
open Mini_c.Types
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open Proto_alpha_utils.Memory_proto_alpha
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open X
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open Proto_alpha_utils.Trace
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open Protocol
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open Script_typed_ir
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open Script_ir_translator
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let rec translate_value (Ex_typed_value (ty, value)) : value result =
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match (ty, value) with
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| Pair_t ((a_ty, _, _), (b_ty, _, _), _ , _), (a, b) -> (
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let%bind a = translate_value @@ Ex_typed_value(a_ty, a) in
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let%bind b = translate_value @@ Ex_typed_value(b_ty, b) in
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ok @@ D_pair(a, b)
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)
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| Union_t ((a_ty, _), _, _ , _), L a -> (
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let%bind a = translate_value @@ Ex_typed_value(a_ty, a) in
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ok @@ D_left a
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)
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| Union_t (_, (b_ty, _), _ , _), R b -> (
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let%bind b = translate_value @@ Ex_typed_value(b_ty, b) in
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ok @@ D_right b
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)
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| (Int_t _), n ->
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let%bind n =
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trace_option (simple_error "too big to fit an int") @@
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Alpha_context.Script_int.to_int n in
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ok @@ D_int n
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| (Nat_t _), n ->
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let%bind n =
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trace_option (simple_error "too big to fit an int") @@
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Alpha_context.Script_int.to_int n in
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ok @@ D_nat n
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| (Chain_id_t _), id ->
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let str = Tezos_crypto.Base58.simple_encode
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(Tezos_base__TzPervasives.Chain_id.b58check_encoding)
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id in
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ok @@ D_string str
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| (Key_hash_t _ ), n ->
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ok @@ D_string (Signature.Public_key_hash.to_b58check n)
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| (Key_t _ ), n ->
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ok @@ D_string (Signature.Public_key.to_b58check n)
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| (Signature_t _ ), n ->
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ok @@ D_string (Signature.to_b58check n)
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| (Timestamp_t _), n ->
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let n =
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Z.to_int @@
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Alpha_context.Script_timestamp.to_zint n in
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ok @@ D_timestamp n
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| (Mutez_t _), n ->
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let%bind n =
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generic_try (simple_error "too big to fit an int") @@
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(fun () -> Int64.to_int @@ Alpha_context.Tez.to_mutez n) in
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ok @@ D_mutez n
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| (Bool_t _), b ->
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ok @@ D_bool b
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| (String_t _), s ->
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ok @@ D_string s
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| (Bytes_t _), b ->
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ok @@ D_bytes b
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| (Address_t _), (s , _) ->
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ok @@ D_string (Alpha_context.Contract.to_b58check s)
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| (Unit_t _), () ->
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ok @@ D_unit
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| (Option_t _), None ->
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ok @@ D_none
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| (Option_t (o_ty, _, _)), Some s ->
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let%bind s' = translate_value @@ Ex_typed_value (o_ty, s) in
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ok @@ D_some s'
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| (Map_t (k_cty, v_ty, _ , _)), m ->
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let k_ty = Script_ir_translator.ty_of_comparable_ty k_cty in
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let lst =
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let aux k v acc = (k, v) :: acc in
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let lst = Script_ir_translator.map_fold aux m [] in
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List.rev lst in
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let%bind lst' =
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let aux (k, v) =
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let%bind k' = translate_value (Ex_typed_value (k_ty, k)) in
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let%bind v' = translate_value (Ex_typed_value (v_ty, v)) in
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ok (k', v')
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in
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bind_map_list aux lst
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in
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ok @@ D_map lst'
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| (Big_map_t (k_cty, v_ty, _)), m ->
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let k_ty = Script_ir_translator.ty_of_comparable_ty k_cty in
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let lst =
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let aux k v acc = (k, v) :: acc in
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let lst = Script_ir_translator.map_fold aux m.diff [] in
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List.rev lst in
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let%bind lst' =
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let aux orig (k, v) =
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let%bind k' = translate_value (Ex_typed_value (k_ty, k)) in
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let orig_rem = List.remove_assoc k' orig in
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match v with
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| Some vadd ->
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let%bind v' = translate_value (Ex_typed_value (v_ty, vadd)) in
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if (List.mem_assoc k' orig) then ok @@ (k', v')::orig_rem
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else ok @@ (k', v')::orig
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| None -> ok orig_rem in
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bind_fold_list aux [] lst in
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ok @@ D_big_map lst'
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| (List_t (ty, _ , _)), lst ->
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let%bind lst' =
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let aux = fun t -> translate_value (Ex_typed_value (ty, t)) in
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bind_map_list aux lst
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in
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ok @@ D_list lst'
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| (Set_t (ty, _)), (module S) -> (
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let lst = S.OPS.elements S.boxed in
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let lst' =
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let aux acc cur = cur :: acc in
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let lst = List.fold_left aux lst [] in
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List.rev lst in
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let%bind lst'' =
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let aux = fun t -> translate_value (Ex_typed_value (ty_of_comparable_ty ty, t)) in
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bind_map_list aux lst'
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in
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ok @@ D_set lst''
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)
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| (Operation_t _) , (op , _) ->
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ok @@ D_operation op
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| (Lambda_t _ as ty) , _ ->
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let%bind m_ty =
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trace_tzresult_lwt (simple_error "unparsing unrecognized data") @@
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Proto_alpha_utils.Memory_proto_alpha.unparse_michelson_ty ty in
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let pp_lambda =
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Format.asprintf "[lambda of type: %a ]" Michelson.pp m_ty in
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ok @@ D_string pp_lambda
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| ty, v ->
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let%bind error =
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let%bind m_data =
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trace_tzresult_lwt (simple_error "unparsing unrecognized data") @@
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Proto_alpha_utils.Memory_proto_alpha.unparse_michelson_data ty v in
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let%bind m_ty =
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trace_tzresult_lwt (simple_error "unparsing unrecognized data") @@
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Proto_alpha_utils.Memory_proto_alpha.unparse_michelson_ty ty in
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let error_content () =
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Format.asprintf "%a : %a"
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Michelson.pp m_data
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Michelson.pp m_ty in
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ok @@ (fun () -> error (thunk "this value can't be transpiled back yet") error_content ())
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in
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fail error
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