Add a basic multisig contract
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208
src/test/basic_multisig_tests.ml
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208
src/test/basic_multisig_tests.ml
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open Trace
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open Test_helpers
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let file = "./contracts/basic_multisig/multisig.ligo"
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let mfile = "./contracts/basic_multisig/multisig.mligo"
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let refile = "./contracts/basic_multisig/multisig.religo"
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let type_file f s =
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let%bind typed,state = Ligo.Compile.Utils.type_file f s (Contract "main") in
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ok @@ (typed,state)
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let get_program f st =
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let s = ref None in
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fun () -> match !s with
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| Some s -> ok s
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| None -> (
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let%bind program = type_file f st in
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s := Some program ;
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ok program
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)
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let compile_main f s () =
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let%bind typed_prg,_ = type_file f s in
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let%bind mini_c_prg = Ligo.Compile.Of_typed.compile typed_prg in
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let%bind michelson_prg = Ligo.Compile.Of_mini_c.aggregate_and_compile_contract mini_c_prg "main" in
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let%bind (_contract: Tezos_utils.Michelson.michelson) =
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(* fails if the given entry point is not a valid contract *)
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Ligo.Compile.Of_michelson.build_contract michelson_prg in
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ok ()
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open Ast_imperative
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let init_storage threshold counter pkeys =
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let keys = List.map
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(fun el ->
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let (_,pk_str,_) = str_keys el in
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e_key @@ pk_str)
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pkeys in
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e_record_ez [
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("id" , e_string "MULTISIG" ) ;
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("counter" , e_nat counter ) ;
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("threshold" , e_nat threshold) ;
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("auth" , e_typed_list keys (t_key ())) ;
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]
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let (first_owner , first_contract) =
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let open Proto_alpha_utils.Memory_proto_alpha in
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let id = List.nth dummy_environment.identities 0 in
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let kt = id.implicit_contract in
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Protocol.Alpha_context.Contract.to_b58check kt , kt
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let bad_contract () =
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let title = (thunk ("Not a contract")) in
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let message () = Format.asprintf "" in
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let data = [
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] in
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error ~data title message ()
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let op_list =
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let open Memory_proto_alpha.Protocol.Alpha_context in
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let source : Contract.t = first_contract in
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let%bind operation =
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let parameters : Script.lazy_expr = Script.unit_parameter in
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let entrypoint = "default" in
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let open Proto_alpha_utils in
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let%bind destination = Trace.trace_alpha_tzresult (bad_contract) @@
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Contract.of_b58check "tz1PpDGHRXFQq3sYDuH8EpLWzPm5PFpe1sLE"
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in
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ok @@ Transaction {amount=Tez.zero; parameters; entrypoint; destination} in
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ok @@ (e_typed_list [e_literal (Literal_operation (Internal_operation {source;operation;nonce=0}))] (t_operation ()))
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let empty_payload = e_unit ()
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let chain_id_zero = e_chain_id @@ Tezos_crypto.Base58.simple_encode
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Tezos_base__TzPervasives.Chain_id.b58check_encoding
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Tezos_base__TzPervasives.Chain_id.zero
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(* sign the message 'msg' with 'keys', if 'is_valid'=false the providid signature will be incorrect *)
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let params counter payload keys is_validl f s =
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let%bind program,_ = get_program f s () in
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let aux = fun acc (key,is_valid) ->
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let (_,_pk,sk) = key in
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let (pkh,_,_) = str_keys key in
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let msg = e_tuple
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[ payload ;
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e_nat counter ;
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e_string (if is_valid then "MULTISIG" else "XX") ;
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chain_id_zero ] in
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let%bind signature = sign_message program msg sk in
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ok @@ (e_pair (e_key_hash pkh) (e_signature signature))::acc in
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let%bind signed_msgs = Trace.bind_fold_list aux [] (List.rev @@ List.combine keys is_validl) in
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ok @@ e_record_ez [
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("counter" , e_nat counter ) ;
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("payload" , payload) ;
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("signatures" , e_typed_list signed_msgs (t_pair (t_key_hash (),t_signature ())) ) ;
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]
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(* Provide one valid signature when the threshold is two of two keys *)
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let not_enough_1_of_2 f s () =
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let%bind program = get_program f s () in
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let exp_failwith = "Not enough signatures passed the check" in
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let keys = gen_keys () in
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let%bind test_params = params 0 empty_payload [keys] [true] f s in
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let options = Proto_alpha_utils.Memory_proto_alpha.make_options ~sender:first_contract () in
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let%bind () = expect_string_failwith
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program ~options "main" (e_pair test_params (init_storage 2 0 [keys;gen_keys()])) exp_failwith in
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ok ()
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let unmatching_counter f s () =
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let%bind program = get_program f s () in
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let exp_failwith = "Counters does not match" in
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let keys = gen_keys () in
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let%bind test_params = params 1 empty_payload [keys] [true] f s in
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let%bind () = expect_string_failwith
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program "main" (e_pair test_params (init_storage 1 0 [keys])) exp_failwith in
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ok ()
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(* Provide one invalid signature (correct key but incorrect signature)
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when the threshold is one of one key *)
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let invalid_1_of_1 f s () =
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let%bind program = get_program f s () in
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let exp_failwith = "Invalid signature" in
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let keys = [gen_keys ()] in
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let%bind test_params = params 0 empty_payload keys [false] f s in
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let%bind () = expect_string_failwith
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program "main" (e_pair test_params (init_storage 1 0 keys)) exp_failwith in
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ok ()
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(* Provide one valid signature when the threshold is one of one key *)
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let valid_1_of_1 f s () =
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let%bind program = get_program f s () in
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let%bind op_list = op_list in
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let keys = gen_keys () in
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let%bind () = expect_eq_n_trace_aux [0;1;2] program "main"
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(fun n ->
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let%bind params = params n empty_payload [keys] [true] f s in
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ok @@ e_pair params (init_storage 1 n [keys])
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)
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(fun n ->
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ok @@ e_pair op_list (init_storage 1 (n+1) [keys])
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) in
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ok ()
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(* Provive two valid signatures when the threshold is two of three keys *)
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let valid_2_of_3 f s () =
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let%bind program = get_program f s () in
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let%bind op_list = op_list in
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let param_keys = [gen_keys (); gen_keys ()] in
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let st_keys = param_keys @ [gen_keys ()] in
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let%bind () = expect_eq_n_trace_aux [0;1;2] program "main"
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(fun n ->
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let%bind params = params n empty_payload param_keys [true;true] f s in
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ok @@ e_pair params (init_storage 2 n st_keys)
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)
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(fun n ->
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ok @@ e_pair op_list (init_storage 2 (n+1) st_keys)
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) in
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ok ()
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(* Provide one invalid signature and two valid signatures when the threshold is two of three keys *)
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let invalid_3_of_3 f s () =
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let%bind program = get_program f s () in
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let valid_keys = [gen_keys() ; gen_keys()] in
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let invalid_key = gen_keys () in
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let param_keys = valid_keys @ [invalid_key] in
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let st_keys = valid_keys @ [gen_keys ()] in
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let%bind test_params = params 0 empty_payload param_keys [false;true;true] f s in
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let exp_failwith = "Invalid signature" in
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let%bind () = expect_string_failwith
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program "main" (e_pair test_params (init_storage 2 0 st_keys)) exp_failwith in
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ok ()
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(* Provide two valid signatures when the threshold is three of three keys *)
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let not_enough_2_of_3 f s () =
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let%bind program = get_program f s() in
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let valid_keys = [gen_keys() ; gen_keys()] in
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let st_keys = gen_keys () :: valid_keys in
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let%bind test_params = params 0 empty_payload (valid_keys) [true;true] f s in
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let exp_failwith = "Not enough signatures passed the check" in
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let%bind () = expect_string_failwith
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program "main" (e_pair test_params (init_storage 3 0 st_keys)) exp_failwith in
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ok ()
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let main = test_suite "Basic Multisig" [
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test "compile" (compile_main file "pascaligo");
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test "unmatching_counter" (unmatching_counter file "pascaligo");
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test "valid_1_of_1" (valid_1_of_1 file "pascaligo");
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test "invalid_1_of_1" (invalid_1_of_1 file "pascaligo");
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test "not_enough_signature" (not_enough_1_of_2 file "pascaligo");
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test "valid_2_of_3" (valid_2_of_3 file "pascaligo");
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test "invalid_3_of_3" (invalid_3_of_3 file "pascaligo");
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test "not_enough_2_of_3" (not_enough_2_of_3 file "pascaligo");
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test "compile (mligo)" (compile_main mfile "cameligo");
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test "unmatching_counter (mligo)" (unmatching_counter mfile "cameligo");
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test "valid_1_of_1 (mligo)" (valid_1_of_1 mfile "cameligo");
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test "invalid_1_of_1 (mligo)" (invalid_1_of_1 mfile "cameligo");
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test "not_enough_signature (mligo)" (not_enough_1_of_2 mfile "cameligo");
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test "valid_2_of_3 (mligo)" (valid_2_of_3 mfile "cameligo");
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test "invalid_3_of_3 (mligo)" (invalid_3_of_3 mfile "cameligo");
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test "not_enough_2_of_3 (mligo)" (not_enough_2_of_3 mfile "cameligo");
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test "compile (religo)" (compile_main refile "reasonligo");
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test "unmatching_counter (religo)" (unmatching_counter refile "reasonligo");
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test "valid_1_of_1 (religo)" (valid_1_of_1 refile "reasonligo");
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test "invalid_1_of_1 (religo)" (invalid_1_of_1 refile "reasonligo");
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test "not_enough_signature (religo)" (not_enough_1_of_2 refile "reasonligo");
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test "valid_2_of_3 (religo)" (valid_2_of_3 refile "reasonligo");
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test "invalid_3_of_3 (religo)" (invalid_3_of_3 refile "reasonligo");
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test "not_enough_2_of_3 (religo)" (not_enough_2_of_3 refile "reasonligo");
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]
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5
src/test/contracts/basic_multisig/config.ligo
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5
src/test/contracts/basic_multisig/config.ligo
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type c_counter_type is nat
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type c_payload_type is unit
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const c_address : address =
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("tz1PpDGHRXFQq3sYDuH8EpLWzPm5PFpe1sLE": address)
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5
src/test/contracts/basic_multisig/config.mligo
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5
src/test/contracts/basic_multisig/config.mligo
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type c_counter_type = nat
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type c_payload_type = unit
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let c_address : address =
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("tz1PpDGHRXFQq3sYDuH8EpLWzPm5PFpe1sLE": address)
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71
src/test/contracts/basic_multisig/multisig.ligo
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71
src/test/contracts/basic_multisig/multisig.ligo
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#include "config.ligo"
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// storage type
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type counter is c_counter_type
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type threshold is c_counter_type
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type authorized_keys is list (key)
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type storage is
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record [
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id : string;
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counter : counter;
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threshold : threshold;
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auth : authorized_keys
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]
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// I/O types
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type payload is c_payload_type
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type signatures is list (key_hash * signature)
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type parameter is
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record [
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counter : counter;
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payload : payload;
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signatures : signatures
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]
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type return is list (operation) * storage
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function main (const p : parameter; const s : storage) : return is
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block {
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var payload: payload := p.payload;
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if p.counter =/= s.counter then
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failwith ("Counters does not match")
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else {
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const packed_payload : bytes =
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Bytes.pack ((payload, p.counter, s.id, Tezos.chain_id));
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var valid : nat := 0n;
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var pkh_sigs : signatures := p.signatures;
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for key in list s.auth block {
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case pkh_sigs of
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nil -> skip
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| pkh_sig # tl -> block {
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if pkh_sig.0 = Crypto.hash_key (key) then block {
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pkh_sigs := tl;
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if Crypto.check (key, pkh_sig.1, packed_payload)
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then valid := valid + 1n
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else failwith ("Invalid signature")
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}
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else skip
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}
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end
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};
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if valid < s.threshold then
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failwith ("Not enough signatures passed the check")
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else s.counter := s.counter + 1n
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};
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const contract_opt : option (contract(payload)) = Tezos.get_contract_opt(c_address);
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var op : list(operation) := nil;
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case contract_opt of
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| Some (c) -> op := list [Tezos.transaction (payload, 0tez, c)]
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| None -> failwith ("Contract not found")
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end;
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} with (op, s)
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65
src/test/contracts/basic_multisig/multisig.mligo
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65
src/test/contracts/basic_multisig/multisig.mligo
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#include "config.mligo"
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// storage type
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type counter = c_counter_type
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type threshold = c_counter_type
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type authorized_keys = key list
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type storage = {
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id : string;
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counter : counter;
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threshold : threshold;
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auth : authorized_keys
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}
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// I/O types
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type payload = c_payload_type
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type signatures = (key_hash * signature) list
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type parameter = {
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counter : counter;
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payload : payload;
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signatures : signatures
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}
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type return = operation list * storage
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let main (p, s : parameter * storage) : return =
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let payload : payload = p.payload in
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let s =
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if p.counter <> s.counter then
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(failwith "Counters does not match" : storage)
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else
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let packed_payload : bytes =
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Bytes.pack (payload, p.counter, s.id, Tezos.chain_id) in
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let valid : nat = 0n in
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let keys : authorized_keys = s.auth in
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let aux =
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fun (vk, pkh_sig: (nat * authorized_keys)*(key_hash * signature)) ->
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let valid, keys = vk in
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match keys with
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| [] -> vk
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| key::keys ->
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if pkh_sig.0 = Crypto.hash_key key
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then
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let valid =
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if Crypto.check key pkh_sig.1 packed_payload
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||||||
|
then valid + 1n
|
||||||
|
else (failwith "Invalid signature" : nat)
|
||||||
|
in valid, keys
|
||||||
|
else valid, keys in
|
||||||
|
let valid, keys =
|
||||||
|
List.fold aux p.signatures (valid, keys) in
|
||||||
|
if valid < s.threshold then
|
||||||
|
(failwith ("Not enough signatures passed the check") : storage)
|
||||||
|
else {s with counter = s.counter + 1n}
|
||||||
|
in
|
||||||
|
let contract_opt : payload contract option = Tezos.get_contract_opt(c_address) in
|
||||||
|
let op = match contract_opt with
|
||||||
|
Some (c) -> [Tezos.transaction payload 0tez c]
|
||||||
|
| None -> (failwith ("Contract not found") : operation list)
|
||||||
|
in
|
||||||
|
op, s
|
74
src/test/contracts/basic_multisig/multisig.religo
Normal file
74
src/test/contracts/basic_multisig/multisig.religo
Normal file
@ -0,0 +1,74 @@
|
|||||||
|
#include "config.mligo"
|
||||||
|
|
||||||
|
// storage type
|
||||||
|
|
||||||
|
type counter = c_counter_type
|
||||||
|
type threshold = c_counter_type
|
||||||
|
type authorized_keys = list (key);
|
||||||
|
|
||||||
|
type storage = {
|
||||||
|
id : string,
|
||||||
|
counter : counter,
|
||||||
|
threshold : threshold,
|
||||||
|
auth : authorized_keys
|
||||||
|
};
|
||||||
|
|
||||||
|
// I/O types
|
||||||
|
|
||||||
|
type payload = c_payload_type
|
||||||
|
type dummy = (key_hash,signature);
|
||||||
|
type signatures = list ((key_hash,signature)); /* Waiting to be fixed */
|
||||||
|
|
||||||
|
type parameter = {
|
||||||
|
counter : counter,
|
||||||
|
payload : payload,
|
||||||
|
signatures : signatures
|
||||||
|
};
|
||||||
|
|
||||||
|
type return = (list (operation),storage);
|
||||||
|
|
||||||
|
let main = ((p, s): (parameter, storage)) : return =>
|
||||||
|
{
|
||||||
|
let payload : payload = p.payload;
|
||||||
|
let s =
|
||||||
|
if (p.counter != s.counter) {
|
||||||
|
(failwith ("Counters does not match") : storage);
|
||||||
|
} else {
|
||||||
|
let packed_payload : bytes =
|
||||||
|
Bytes.pack ((payload, p.counter, s.id, Tezos.chain_id));
|
||||||
|
let valid : nat = 0n;
|
||||||
|
let keys : authorized_keys = s.auth;
|
||||||
|
let aux = ((vk, pkh_sig) :
|
||||||
|
((nat, authorized_keys), (key_hash, signature)))
|
||||||
|
: (nat, authorized_keys) => {
|
||||||
|
let (valid, keys) = vk;
|
||||||
|
switch (keys) {
|
||||||
|
| [] => vk;
|
||||||
|
| [key, ...keys] =>
|
||||||
|
if (pkh_sig[0] == Crypto.hash_key (key)) {
|
||||||
|
let valid =
|
||||||
|
if (Crypto.check (key, pkh_sig[1], packed_payload)) {
|
||||||
|
valid + 1n;
|
||||||
|
}
|
||||||
|
else { (failwith ("Invalid signature") : nat) };
|
||||||
|
(valid, keys);
|
||||||
|
}
|
||||||
|
else { (valid, keys); };
|
||||||
|
};
|
||||||
|
};
|
||||||
|
let (valid, keys) =
|
||||||
|
List.fold (aux, p.signatures, (valid, keys));
|
||||||
|
if (valid < s.threshold) {
|
||||||
|
(failwith ("Not enough signatures passed the check") : storage);
|
||||||
|
}
|
||||||
|
else {
|
||||||
|
{...s,counter : s.counter + 1n};
|
||||||
|
};
|
||||||
|
};
|
||||||
|
let contract_opt : option (contract (payload)) = Tezos.get_contract_opt(c_address);
|
||||||
|
let op = switch (contract_opt) {
|
||||||
|
| Some (c) => [Tezos.transaction(payload, 0tez, c)]
|
||||||
|
| None => (failwith ("Contract not found") : list (operation))
|
||||||
|
};
|
||||||
|
(op,s)
|
||||||
|
};
|
@ -6,6 +6,7 @@
|
|||||||
simple-utils
|
simple-utils
|
||||||
ligo
|
ligo
|
||||||
alcotest
|
alcotest
|
||||||
|
tezos-utils
|
||||||
tezos-crypto
|
tezos-crypto
|
||||||
)
|
)
|
||||||
(preprocess
|
(preprocess
|
||||||
|
@ -13,6 +13,7 @@ let () =
|
|||||||
Id_tests.main ;
|
Id_tests.main ;
|
||||||
Id_tests_p.main ;
|
Id_tests_p.main ;
|
||||||
Id_tests_r.main ;
|
Id_tests_r.main ;
|
||||||
|
Basic_multisig_tests.main;
|
||||||
Multisig_tests.main ;
|
Multisig_tests.main ;
|
||||||
Multisig_v2_tests.main ;
|
Multisig_v2_tests.main ;
|
||||||
Replaceable_id_tests.main ;
|
Replaceable_id_tests.main ;
|
||||||
|
Loading…
Reference in New Issue
Block a user