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let test_request_parse ( ) = let env = function | " alpha " -> Q . L " 伪 " | " beta " -> Q . L " 尾 " | " beta . " -> Q . L " 尾 [ dot ] " | " gamma " -> Q . L " 纬 " | " delta " -> Q . L " 未 " | _ -> raise Not_found in expect_parse ~ env " ...
let test_cases = [ " parse " , ` Quick , test_request_parse ; ]
let testable_test_value : Parameters . value Alcotest . testable = Alcotest . int
let testable_test_key : Parameters . key Alcotest . testable = Alcotest . string
let is_resolved p = match Lwt . state p with Return _ -> true | _ -> false
let is_pending p = match Lwt . state p with Sleep -> true | _ -> false
let test_full_requester ( ) = ignore ( init_full_requester ( ) )
let test_full_requester_create _ ( ) = let open Lwt_syntax in let requester = init_full_requester ( ) in let * _ = Test_Requester . inject requester " foo " 1 in let * r = Test_Requester . known requester " foo " in assert_true " injected value is known " r ; Lwt . return_unit
let test_full_requester_create_with_global_input _ ( ) = let open Lwt_syntax in let ( global_input : ( Parameters . key * Parameters . value ) Lwt_watcher . input ) = Lwt_watcher . create_input ( ) in let ( stream , stopper ) = Lwt_watcher . create_stream global_input in let reques...
let test_read_known_read_opt _ ( ) = let open Lwt_syntax in let requester = init_full_requester ( ) in let * b = Test_Requester . known requester " baz " in let * ( ) = lwt_assert_false " empty requester has no values " b in let * r = Test_Requester . read requester " baz " in check...
let test_full_requester_disk_found_value _ ( ) = let open Lwt_syntax in let ( requester , store ) = init_full_requester_disk ( ) in let * b = Test_Requester . known requester " boo " in let * ( ) = lwt_assert_false " empty requester has no values " b in Test_disk_table_hash . add st...
let test_full_requester_fetch_timeout _ ( ) = let open Lwt_syntax in let requester = init_full_requester ( ) in let do_timeout t v = let * res = Test_Requester . fetch ~ timeout : t requester v precheck_pass in check ( tzresults testable_test_value ) " should timeout " ( Error [ Test_Reque...
let test_full_fetch_issues_request _ ( ) = let open Lwt_syntax in let requester = init_full_requester ( ) in Test_request . clear_registered_requests ( ) ; check ( list ( tuple3 unit p2p_peer_id ( list testable_test_key ) ) ) " should have no requests " [ ] ! Test_request . reg...
let test_clear_or_cancel_removes _ ( ) = let open Lwt_syntax in let requester = init_full_requester ( ) in let * r = let * _ = Test_Requester . inject requester " foo " 1 in Test_Requester . known requester " foo " in assert_true " injected value is known " r ; Test_Requester . clea...
let test_clear_or_cancel_cancels _ ( ) = let open Lwt_syntax in let requester = init_full_requester ( ) in let * b = Test_Requester . known requester " foo " in let * ( ) = lwt_assert_false " injected value is not known " b in let f1 = Test_Requester . fetch requester " foo " prechec...
let test_pending_cancelled _ ( ) = let requester = init_full_requester ( ) in assert_false " value is not pending initially " ( Test_Requester . pending requester " foo " ) ; ignore ( Test_Requester . fetch requester " foo " precheck_pass ) ; assert_true " value is pending after...
let test_pending_notified _ ( ) = let open Lwt_syntax in let requester = init_full_requester ( ) in assert_false " value is not pending initially " ( Test_Requester . pending requester " foo " ) ; ignore ( Test_Requester . fetch requester " foo " precheck_pass ) ; assert_true " ...
let test_pending_timeout _ ( ) = let open Lwt_syntax in let requester = init_full_requester ( ) in assert_false " value is not pending initially " ( Test_Requester . pending requester " foo " ) ; let f1 = Test_Requester . fetch ~ timeout : ( WithExceptions . Option . to_exn ~ none...
let test_full_requester_test_simple_watch _ ( ) = let open Lwt_syntax in let requester = init_full_requester ( ) in let ( stream , stopper ) = Test_Requester . watch requester in let f1 = Test_Requester . fetch requester " foo " precheck_pass in let f2 = Test_Requester . fetch requester " ...
let test_full_requester_test_notify_non_fetched_watch _ ( ) = let open Lwt_syntax in let requester = init_full_requester ( ) in let ( stream , stopper ) = Test_Requester . watch requester in let * ( ) = Test_Requester . notify requester P2p_peer . Id . zero " foo " 1 in Lwt_watcher ...
let test_full_requester_test_double_watcher _ ( ) = let open Lwt_syntax in let requester = init_full_requester ( ) in let ( stream1 , stopper1 ) = Test_Requester . watch requester in let ( stream2 , stopper2 ) = Test_Requester . watch requester in let f1 = Test_Requester . fetch requeste...
let test_full_requester_test_inject_memory _ ( ) = let open Lwt_syntax in let req = init_full_requester ( ) in let * b = Test_Requester . inject req " foo " 1 in let * ( ) = lwt_assert_true " Inject is true first time " b in let * b = Test_Requester . inject req " foo " 1 in let ...
let test_full_requester_test_inject_disk _ ( ) = let open Lwt_syntax in let ( req , store ) = init_full_requester_disk ( ) in Test_disk_table_hash . add store " foo " 1 ; let * b = Test_Requester . inject req " foo " 1 in lwt_assert_false " Inject is false when present on disk " b
let test_full_requester_test_inject_requested _ ( ) = let open Lwt_syntax in let req = init_full_requester ( ) in ignore ( Test_Requester . fetch req " foo " precheck_pass ) ; let * b = Test_Requester . inject req " foo " 1 in let * ( ) = lwt_assert_false " Inject is false when a...
let test_full_requester_test_inject _ ( ) = let open Lwt_syntax in let req = init_full_requester ( ) in let * b = Test_Requester . inject req " foo " 1 in let * ( ) = lwt_assert_true " Inject is true as value not in disk / mem / already requested " b in Lwt . return_unit
let test_full_requester_test_notify_invalid _ ( ) = let open Lwt_syntax in let req = init_full_requester ( ) in let * b = Test_Requester . known req " foo " in let * ( ) = lwt_assert_false " fetched value is not known " b in let f1 = Test_Requester . fetch req " foo " precheck_fail i...
let test_full_requester_test_notify_valid _ ( ) = let open Lwt_syntax in let req = init_full_requester ( ) in let f1 = Test_Requester . fetch req " foo " precheck_pass in let * ( ) = Test_Requester . notify req P2p_peer . Id . zero " foo " 1 in let * b = Test_Requester . known req...
let test_full_requester_test_notify_unfetched _ ( ) = let open Lwt_syntax in let req = init_full_requester ( ) in let * ( ) = Test_Requester . notify req P2p_peer . Id . zero " foo " 1 in let * b = Test_Requester . known req " foo " in lwt_assert_false " fetched value is not known ...
let test_full_requester_test_notify_disk_duplicate _ ( ) = let ( req , store ) = init_full_requester_disk ( ) in Test_disk_table_hash . add store " foo " 1 ; ignore ( Test_Requester . fetch req " foo " precheck_pass ) ; Test_Requester . notify req P2p_peer . Id . zero " foo...
let test_full_requester_test_notify_memory_duplicate _ ( ) = let open Lwt_syntax in let req = init_full_requester ( ) in let * _ = Test_Requester . inject req " foo " 1 in ignore ( Test_Requester . fetch req " foo " precheck_pass ) ; Test_Requester . notify req P2p_peer . Id . zer...
let test_full_requester_test_pending_requests _ ( ) = let open Lwt_syntax in let req = init_full_requester ( ) in let check_pending_count msg count = ( check int ) msg count ( Test_Requester . pending_requests req ) in let with_request key k = Lwt . join [ ( let * _ = Test_Requester . ...
let test_full_requester_test_memory_table_length _ ( ) = let open Lwt_syntax in let req = init_full_requester ( ) in ( check int ) " 0 cached values " 0 ( Test_Requester . memory_table_length req ) ; let * _ = Test_Requester . inject req " foo " 1 in ( check int ) " 1 cache...
let test_full_requester_shutdown _ ( ) = let req = init_full_requester ( ) in Test_Requester . shutdown req
let ( ) = Alcotest_lwt . run " tezos - requester " [ ( " all " , [ Alcotest_lwt . test_case_sync " test create : simple " ` Quick test_full_requester ; Alcotest_lwt . test_case " test create : test known " ` Quick test_full_requester_create ; Alcotest_lwt . test_case " ...
let body_length = Alcotest . of_pp Response . Body_length . pp_hum
let check = let alco = Alcotest . result ( Alcotest . of_pp pp_hum ) pp_hum Alcotest . string in fun message ~ expect input -> let actual = Angstrom . parse_string ~ consume : All Httpaf_private . Parse . response input in Alcotest . check alco message expect actual ; ;
let test_parse_valid ( ) = check " OK response without headers " ~ expect ( : Ok ( Response . create ` OK ) OK ) OK " HTTP / 1 . 1 200 OK \ r \ n \ r \ n " ; ; ;
let test_parse_invalid_error ( ) = check " OK response without a status message " ~ expect ( : Error " : char ' ' ) " " HTTP / 1 . 1 200 \ r \ n \ r \ n " ; check " OK response without a status message " ~ expect ( : Error " : status - code empty ) " " HTTP / 1 . ...
let test_body_length ( ) = let check message request_method response ~ expect = let actual = Response . body_length response ~ request_method in Alcotest . check body_length message expect actual in let res status headers = Response . create status ~ headers in check " requested HEAD " ~ expect ( `...
let tests = [ " parse valid " , ` Quick , test_parse_valid ; " parse invalid error " , ` Quick , test_parse_invalid_error ; " body length " , ` Quick , test_body_length ]
type arg = AString of string | ARest of string | ARest_all of string list
let push acc s = acc := s :: ! acc
let f_str acc s = push acc ( AString s )
let f_rest acc s = push acc ( ARest s )
let f_rest_all acc ss = push acc ( ARest_all ss )
let test args = let acc = ref [ ] in Arg . parse_argv ~ current ( : ref 0 ) args Arg . [ " - str " , String ( f_str acc ) , " String ( 1 ) " ; " - rest " , Rest ( f_rest acc ) , " Rest " ; " - rest - all " , Rest_all ( f_rest_all acc ) , " Re...
type arg = AString of string | ARest of string | ARest_all of string list } ] ; ; |
let _ = test [ | " prog " ; " - str " ; " foo " ; " - str " ; " bar " ; " - rest " ; " foobar " ; " - str " ; " foobaz " ] ; ; | [ %% expect { | } ] ; ; |
let _ = test [ | " prog " ; " - str " ; " foo " ; " - str " ; " bar " ; " - rest - all " ; " foobar " ; " - str " ; " foobaz " ] ; ; | [ %% expect { | } ] ; ; |
let _ = test [ | " prog " ; " - str " ; " foo " ; " - str " ; " bar " ; " - rest " ; ] ; ; | [ %% expect { | } ] ; ; |
let _ = test [ | " prog " ; " - str " ; " foo " ; " - str " ; " bar " ; " - rest - all " ; ] ; ; | [ %% expect { | } ] ; ; |
( module struct open Result . Error . Let_syntax module Int_or_string = struct type t = ( int , string ) Result . t [ @@ deriving equal , sexp_of ] end let % expect_test " return " = require_equal [ % here ] ( module Int_or_string ) ( return " error " ) ( Error " error ...
let test_stat _ = let s = make Constants . stat in begin Lwt_main . run Lwt . ( ( Bindings . stat " . " ( addr s ) ) . Generated_bindings . lwt >>= fun ( x , errno ) -> assert_equal 0 x ; assert_equal Signed . SInt . zero errno ; return ( ) ) ; Lwt_main . run Lw...
let test_six_args _ = let open Lwt . Infix in Lwt_main . run ( ( Bindings . sixargs 1 2 3 4 5 6 ) . Generated_bindings . lwt >>= fun ( i , errno ) -> assert_equal ( 1 + 2 + 3 + 4 + 5 + 6 ) i ; Lwt . return ( ) )
let test_no_args _ = let open Lwt . Infix in Lwt_main . run ( ( Bindings . return_10 ( ) ) . Generated_bindings . lwt >>= fun ( i , errno ) -> assert_equal 10 i ; Lwt . return ( ) )
let test_return_void _ = let open Lwt . Infix in Lwt_main . run ( let x_p = allocate_n ~ count : 1 int in ( Bindings . return_void x_p ) . Generated_bindings . lwt >>= fun ( ( ) , errno ) -> assert_equal 10 ( !@ x_p ) ; Lwt . return ( ) )
let suite = " Errno tests " >::: [ " calling stat " >:: test_stat ; " functions with many arguments " >:: test_six_args ; " functions with no arguments " >:: test_no_args ; " functions that return void " >:: test_return_void ; ]
let _ = run_test_tt_main suite
let ten_tez = of_int 10
let test_simple_reveal ( ) = Context . init ~ consensus_threshold : 0 1 >>=? fun ( blk , contracts ) -> let c = WithExceptions . Option . get ~ loc : __LOC__ @@ List . hd contracts in let new_c = Account . new_account ( ) in let new_contract = Alpha_context . Contract . implici...
let test_empty_account_on_reveal ( ) = Context . init ~ consensus_threshold : 0 1 >>=? fun ( blk , contracts ) -> let c = WithExceptions . Option . get ~ loc : __LOC__ @@ List . hd contracts in let new_c = Account . new_account ( ) in let new_contract = Alpha_context . Contract ....
let test_not_enough_found_for_reveal ( ) = Context . init 1 >>=? fun ( blk , contracts ) -> let c = WithExceptions . Option . get ~ loc : __LOC__ @@ List . hd contracts in let new_c = Account . new_account ( ) in let new_contract = Alpha_context . Contract . implicit_contract new_...
let tests = [ Tztest . tztest " simple reveal " ` Quick test_simple_reveal ; Tztest . tztest " empty account on reveal " ` Quick test_empty_account_on_reveal ; Tztest . tztest " not enough found for reveal " ` Quick test_not_enough_found_for_reveal ; ]
module Michelson_signature : Signature . S with type t = Michelson_v1_primitives . prim = struct type t = Michelson_v1_primitives . prim let compare ( x : t ) ( y : t ) = Stdlib . compare x y let hash ( x : t ) = Hashtbl . hash x let pp fmtr prim = Format . fprintf fmtr " % s " ( ...
module Michelson = Micheline_with_hash_consing . Make ( Michelson_signature ) ( struct let initial_size = None end )
module Michelson_path = Path . With_hash_consing ( struct let initial_size = None end )
module Michelson_pattern = Pattern . Make ( Michelson_signature ) ( Michelson ) ( Michelson_path )
module Michelson_rewriter = Rewrite . Make ( Michelson_signature ) ( Michelson ) ( Michelson_path ) ( Michelson_pattern )
let pattern = let open Michelson_pattern in seq ( any . @ any . @ any . @ focus ( prim Michelson_v1_primitives . I_ADDRESS list_empty ) . @ list_any )
let replacement = let open Michelson in seq [ prim Michelson_v1_primitives . I_ADDRESS [ ] [ ] ; prim Michelson_v1_primitives . I_CHAIN_ID [ ] [ ] ; prim Michelson_v1_primitives . I_PAIR [ ] [ ] ; ]
let rewrite_contract : Script_repr . expr -> Script_repr . expr = fun script -> let node = Micheline . root script in let node = Micheline . map_node ( fun _ -> Michelson . default_label ) ( fun h -> h ) node in let focuses = Michelson_rewriter . all_matches pattern node in match focuses w...
let multisig_script_string = " parameter ( pair \ n \ \ ( pair : payload \ n \ \ ( nat % counter ) # counter , used to prevent replay attacks \ n \ \ ( or : action # payload to sign , represents the requested \ action \ n \ \ ( pair : transfer # transfer tokens \ n \ \ ( mute...
let multisig_script : Script_repr . expr = let result = Tezos_micheline . Micheline_parser . no_parsing_error @@ Michelson_v1_parser . parse_toplevel ? check ( : Some true ) multisig_script_string >>? fun parsing_result -> ok parsing_result . Michelson_v1_parser . expanded in match result with ...
let original_script_oracle = " { parameter \ n \ \ ( pair ( pair : payload \ n \ \ ( nat % counter ) \ n \ \ ( or : action \ n \ \ ( pair : transfer ( mutez % amount ) ( contract % dest unit ) ) \ n \ \ ( or ( option % delegate key_hash ) \ n \ \ ( pair % cha...
let original_script = let script = Micheline_printer . printable Michelson_v1_primitives . string_of_prim multisig_script in Format . asprintf " % a " Micheline_printer . print_expr_unwrapped script
let ( ) = assert ( original_script_oracle = original_script )
let pattern_oracle = " Seq ( _ :: _ :: _ :: [ > [ ADDRESS ] ( [ ] ) ] < :: _ ) "
let pattern = Format . asprintf " % a " Michelson_pattern . pp pattern
let ( ) = assert ( pattern_oracle = pattern )
let rewritten_new = rewrite_contract multisig_script
let rewritten_script_oracle = " { parameter \ n \ \ ( pair ( pair : payload \ n \ \ ( nat % counter ) \ n \ \ ( or : action \ n \ \ ( pair : transfer ( mutez % amount ) ( contract % dest unit ) ) \ n \ \ ( or ( option % delegate key_hash ) \ n \ \ ( pair % ch...
let rewritten_script = let script = Micheline_printer . printable Michelson_v1_primitives . string_of_prim rewritten_new in Format . asprintf " % a " Micheline_printer . print_expr_unwrapped script
let ( ) = assert ( rewritten_script_oracle = rewritten_script )
let pp_result ppf r = let pp_ok ppf ( t , tz , count ) = Format . fprintf ppf " ( % a , % a , % d ) " stamp t ( pp_opt ~ pp_v : pp_int ) tz count in let pp_error ppf = function ` RFC3339 ( ( s , e ) , err ) -> Format . fprintf ppf " [ @< 1 >% d -% d :@ [ @%...
let eq_result = let ok ( t , tz , c ) ( t ' , tz ' , c ' ) = Ptime . equal t t ' && tz = tz ' && c = c ' in let r_equal r r ' = match r , r ' with | Ok v , Ok v ' -> ok v v ' | Error e , Error e ' -> e = e ' | _ -> false in eq ~ eq : r_equal ~ pp : pp_r...
let stamp_of_rfc3339 = let p s = Ptime . of_rfc3339 s in ( p $ pp_str @-> ret_get_result pp_result )
let stamp_of_date_time = Ptime . of_date_time $ raw_date_time @-> ret_get_option stamp
let stamp_of_s = ( Ptime . of_float_s $ pp_float @-> ret_get_option stamp )
let stamp_conversions = test " Stamp to RFC 3339 conversions " @@ fun ( ) -> let dt ? space ? frac_s ? tz_offset_s dt = Ptime . to_rfc3339 ? space ? frac_s ? tz_offset_s ( stamp_of_date_time dt ) in let stamp ? space ? frac_s ? tz_offset_s s = Ptime . to_rfc3339 ? space ? frac_s ? tz_o...
let parse = test " RFC 3339 to stamp conversions " @@ fun ( ) -> let edigit = ` Exp_chars [ ' 0 ' ; ' 1 ' ; ' 2 ' ; ' 3 ' ; ' 4 ' ; ' 5 ' ; ' 6 ' ; ' 7 ' ; ' 8 ' ; ' 9 ' ] in let etz = ` Exp_chars [ ' ' ; + ' ' ; -...
let stamp_trips = test " Random stamps to RFC 3339 round trips " @@ fun ( ) -> let stamp_of_posix_s = Ptime . of_float_s $ pp_float @-> ( ret_get_option stamp ) in let trip ? tz_offset_s t = let back = stamp_of_posix_s ( floor ( Ptime . to_float_s t ) ) in let trip , tz , _ = sta...
let suite = suite " Ptime RFC 3339 support " [ stamp_conversions ; parse ; stamp_trips ]
module Node = P2p . Node . Make ( Node_id )
module View = P2p . View . Make ( Node_id ) ( Node )
module Ringcast = P2p_ringcast . Make ( Node_id ) ( Node ) ( View ) ( Msg_id )
let me = Node . init ( u64 16L )
let my_view = View . add ( Node . init ( u64 7L ) ) ( View . add ( Node . init ( u64 11L ) ) ( View . add ( Node . init ( u64 13L ) ) ( View . add ( Node . init ( u64 17L ) ) ( View . add ( Node . init ( u64 19L ) ) ( View . add ( Node . ...
let my_view_str = View . add ( Node . init ( u64 5L ) ) ( View . add ( Node . init ( u64 10L ) ) ( View . add ( Node . init ( u64 20L ) ) ( View . add ( Node . init ( u64 30L ) ) ( View . add ( Node . init ( u64 40L ) ) ( View . add ( Node ...
let my_recvd = View . add ( Node . init ( u64 5L ) ) ( View . add ( Node . init ( u64 10L ) ) ( View . add ( Node . init ( u64 20L ) ) ( View . add ( Node . init ( u64 30L ) ) View . empty ) ) )
let test_gossip _ctx = printf " \ nRINGCAST GOSSIP \ n " ; let view = my_view in let xview = my_view_str in let ( dst , sent , view ) = Ringcast . initiate ~ me ~ view ~ xview ~ view_len ~ xchg_len in let recvd = my_recvd in let dst = match dst with | Some dst -> dst | None -> assert_f...