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let ( -? ) t1 t2 = t1 -? t2 |> wrap_tzresult |
let ( *? ) t1 t2 = t1 *? t2 |> wrap_tzresult |
let ( /? ) t1 t2 = t1 /? t2 |> wrap_tzresult |
let ( +! ) t1 t2 = match t1 +? t2 with Ok r -> r | Error _ -> Pervasives . failwith " adding tez " |
let ( -! ) t1 t2 = match t1 -? t2 with | Ok r -> r | Error _ -> Pervasives . failwith " subtracting tez " |
let ( *! ) t1 t2 = match t1 *? t2 with | Ok r -> r | Error _ -> Pervasives . failwith " multiplying tez " |
let ( /! ) t1 t2 = match t1 /? t2 with | Ok r -> r | Error _ -> Pervasives . failwith " dividing tez " |
let of_int x = match Tez . of_mutez ( Int64 . mul ( Int64 . of_int x ) 1_000_000L ) with | None -> invalid_arg " tez_of_int " | Some x -> x |
let of_mutez_exn x = match Tez . of_mutez x with None -> invalid_arg " tez_of_mutez " | Some x -> x |
let max_tez = match Tez . of_mutez Int64 . max_int with None -> assert false | Some p -> p |
let fail_on_error = function | Result . Ok ( ) -> ( ) | Result . Error e -> failwith ( Format . asprintf " Ledger error : % a " Ledgerwallet . Transport . pp_error e ) |
let with_connection f = let h = Hidapi . open_id_exn ~ vendor_id ~ product_id in try fail_on_error ( f h ) ; Hidapi . close h with exn -> Hidapi . close h ; raise exn |
let test_open_close ( ) = with_connection ( fun _ -> R . ok ( ) ) |
let test_ping ( ) = with_connection Ledgerwallet . Transport . ping |
let hard x = Int32 . logor x 0x8000_0000l |
let path = [ hard 44l ; hard 1729l ] |
let curves = [ Ed25519 ; Secp256k1 ; Secp256r1 ] |
let msg = Cstruct . of_string " Voulez - vous coucher avec moi , ce soir " ? |
let msg_bytes = Cstruct . to_bytes msg |
let test_getpk h curve = get_public_key h curve path >>| fun pk -> Alcotest . ( check int " pklen " 65 ( Cstruct . len pk ) ) |
let test_getpk ( ) = with_connection ( fun h -> List . iter ( fun x -> fail_on_error ( test_getpk h x ) ) curves ; R . ok ( ) ) |
let test_sign h curve = let open Alcotest in get_public_key h curve path >>= fun pk -> sign h curve path msg >>| fun signature -> match curve with | Ed25519 -> let pk = Tweetnacl . Sign . ( pk_of_cstruct_exn ( Cstruct . sub pk 1 pkbytes ) ) in check bool " sign Ed25519 " true ( Tweetnacl . ... |
let test_sign ( ) = List . iter ( fun curve -> with_connection ( fun h -> test_sign h curve ) ) curves |
let basic = [ " open_close " , ` Quick , test_open_close ; " ping " , ` Quick , test_ping ; " get_public_key " , ` Quick , test_getpk ; " sign " , ` Quick , test_sign ; ] |
let ( ) = Alcotest . run " ledgerwallet . tezos " [ " basic " , basic ; ] |
module Test_tez_repr = struct let test_predefined_values ( ) = let zero_int64 = Tez_repr . to_mutez Tez_repr . zero in Assert . equal_int64 ~ loc : __LOC__ zero_int64 0L >>=? fun ( ) -> let one_mutez_int64 = Tez_repr . to_mutez Tez_repr . one_mutez in Assert . equal_int64 ~ loc : __LOC__... |
let tests = [ tztest " Check if predefined values hold expected values " ` Quick Test_tez_repr . test_predefined_values ; tztest " Tez . substract : basic behaviour " ` Quick Test_tez_repr . test_subtract ; tztest " Tez . substract : underflow case " ` Quick Test_tez_repr . test_sub... |
let in_test_buffer f = Current_buffer . set_temporarily_to_temp_buffer Sync ( fun ( ) -> Point . insert " This is / a test ! buffer with \ nvarious | things to match * against " ; Point . goto_min ( ) ; f ( ) ) ; ; |
let alpha_or_bang = String_of { chars = " [ : alpha ] " :! } |
let number = String_of { chars = " [ 0 - 9 ] " } |
let _ = number let test ~ thing = let found = find thing in let bounds = bounds thing in let bounded_text = Option . map bounds ~ f ( : fun ( start , end_ ) -> Current_buffer . contents ~ start ~ end_ ( ) ) in require_does_not_raise [ % here ] ( fun ( ) -> [ % test_eq : Tex... |
let t = Thread . create ignore ( ) ~ on_uncaught_exn ` : Print_to_stderr in print_s [ % sexp ( t : Thread . t ) ] ; let % bind ( ) = [ % expect { | ( thread ( id 2 ) ) } ] | in Thread . join t ; print_s [ % sexp ( t : Thread . t ) ] ; let % bind ( ... |
let thread_on_uncaught_exn_exe = " . . / bin / thread_on_uncaught_exn . exe " let % bind ( ) = run thread_on_uncaught_exn_exe [ " core " ; " - on - uncaught - exn " ; " print - to - stderr " ] in [ % expect { | About to create thread Start of thread_main Thread joined ;... |
let ( ) = if Sys . os_type = " Win32 " then ignore ( Dl . ( dlopen ~ filename " : clib / libtest_functions . so " ~ flags [ : RTLD_NOW ] ) ) |
let callback_with_pointers = Foreign . foreign " passing_pointers_to_callback " ~ release_runtime_lock : true ( Foreign . funptr ~ runtime_lock : true ( ptr int @-> ptr int @-> returning int ) @-> returning int ) |
module Common_tests ( S : Cstubs . FOREIGN with type ' a result = ' a and type ' a return = ' a ) = struct module M = Functions . Stubs ( S ) let test_release_runtime_lock _ = begin M . initialize_waiters ( ) ; let t1 = Thread . create M . post1_wait2 ( ) in let t2 = Thread ... |
module Foreign_tests = Common_tests ( struct type ' a fn = ' a Ctypes . fn type ' a return = ' a let ( ) @-> = Ctypes . ( ) @-> let returning = Ctypes . returning type ' a result = ' a let foreign name fn = Foreign . foreign name fn ~ release_runtime_lock : true let foreign_valu... |
let test_acquire_runtime_lock _ = begin let f x y = let _ = Gc . full_major ( ) in !@ x + !@ y in let t1 = Thread . create Gc . full_major ( ) in assert ( callback_with_pointers f = 7 ) ; Thread . join t1 end |
let test_acquire_runtime_lock_parallel _ = begin let r = ref None in let g size n = for i = 0 to n do r := Some ( CArray . make float size ~ initial : 0 . 0 ) ; Thread . yield ( ) ; done in let f x y = let _ = Gc . compact ( ) in !@ x + !@ y in let threads = ref [ ] in for ... |
let create_threads_that_call_back = Foreign . foreign " foreign_thread_registration_test " ( Foreign . funptr ~ thread_registration : true ~ runtime_lock : true ( uint64_t @-> returning void ) @-> uint @-> uint @-> returning int ) ~ release_runtime_lock : true |
let test_register_thread _ = begin let n_threads = 25 in let n_callback = 3 in let protect = let m = Mutex . create ( ) in fun f -> Mutex . lock m ; let r = try f ( ) with x -> Mutex . unlock m ; raise x in Mutex . unlock m ; r in let rs = Random . State . make_self_init ( ) in... |
let suite = " Thread tests " >::: [ " test_release_runtime_lock ( foreign ) " >:: Foreign_tests . test_release_runtime_lock ; " test_release_runtime_lock ( stubs ) " >:: Stub_tests . test_release_runtime_lock ; " test_acquire_runtime_lock ( foreign ) " >:: test_acquire_runtime... |
let _ = run_test_tt_main suite |
let sec = Time_ns . Span . of_sec ( module struct let ( ) = check_invariant := true let wait_until_no_unfinished_work t = let rec loop i = if unfinished_work t > 0 then ( Time_ns . pause ( sec 0 . 01 ) ; loop ( i + 1 ) ) in loop 0 ; ; let % expect_test _ = let t = ok_exn ... |
let module P = Thread_safe_pipe in let r , p = P . create ( ) in assert ( try P . write p 13 ~ if_closed : Raise ; false with | _ -> true ) ; let throttle = Throttle . create ~ continue_on_error : false ~ max_concurrent_jobs : 1 in let run_in_thread f = don ' t_wait_for ( Throttle... |
( module ( struct let ( ) = Debug . should_print_backtrace := false open Thread_safe_queue module Private = struct module Uopt = struct include Private . Uopt let % test _ = is_none none let % test _ = is_some ( some ( ) ) end end type nonrec ' a t = ' a t let invariant = invariant l... |
let ( let * ) m f = m >>=? f |
let wrap m = m >|= Environment . wrap_tzresult |
let new_ctxt ( ) = let * ( block , _ ) = Context . init 1 in let * incr = Incremental . begin_construction block in return @@ Incremental . alpha_ctxt incr |
let make_contract ticketer = wrap @@ Lwt . return @@ Contract . of_b58check ticketer |
let make_ex_token ctxt ~ ticketer ~ typ ~ content = let * ( Script_ir_translator . Ex_comparable_ty cty , ctxt ) = let node = Micheline . root @@ Expr . from_string typ in wrap @@ Lwt . return @@ Script_ir_translator . parse_comparable_ty ctxt node in let * ticketer = make_contract ticketer ... |
let make_key ctxt ~ ticketer ~ typ ~ content ~ owner = let * ( ex_token , ctxt ) = make_ex_token ctxt ~ ticketer ~ typ ~ content in let * owner = make_contract owner in let * ( key , ctxt ) = wrap @@ Ticket_balance_key . ticket_balance_key ctxt ~ owner ex_token in return ( key , ctxt )... |
let equal_script_hash ~ loc msg key1 key2 = Assert . equal ~ loc Ticket_hash . equal msg Ticket_hash . pp key1 key2 |
let not_equal_script_hash ~ loc msg key1 key2 = Assert . not_equal ~ loc Ticket_hash . equal msg Ticket_hash . pp key1 key2 |
let assert_keys ~ ticketer1 ~ ticketer2 ~ typ1 ~ typ2 ~ amount1 ~ amount2 ~ content1 ~ content2 ~ owner1 ~ owner2 assert_condition = let * ctxt = new_ctxt ( ) in let * ( key1 , ctxt ) = make_key ctxt ~ ticketer : ticketer1 ~ typ : typ1 ~ content : content1 ~ owner : owner1 in let * ( ... |
let assert_keys_not_equal ~ loc = assert_keys ( fun ( key1 , _ ) ( key2 , _ ) -> not_equal_script_hash ~ loc " Assert that keys are not equal " key1 key2 ) |
let assert_keys_equal ~ loc = assert_keys ( fun ( key1 , _ ) ( key2 , _ ) -> equal_script_hash ~ loc " Assert that keys are equal " key1 key2 ) |
let test_different_amounts ( ) = assert_keys_equal ~ loc : __LOC__ ~ ticketer1 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ ticketer2 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ typ1 " : unit " ~ typ2 " : unit " ~ content1 " : Unit " ~ content2 " : Unit " ~ amount1 : 1 ~... |
let test_different_ticketers ( ) = assert_keys_not_equal ~ loc : __LOC__ ~ ticketer1 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ ticketer2 " : KT1AafHA1C1vk959wvHWBispY9Y2f3fxBUUo " ~ typ1 " : nat " ~ typ2 " : nat " ~ content1 " : 1 " ~ content2 " : 1 " ~ amount1 : 1 ~... |
let test_different_owners ( ) = assert_keys_not_equal ~ loc : __LOC__ ~ ticketer1 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ ticketer2 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ typ1 " : nat " ~ typ2 " : nat " ~ content1 " : 1 " ~ content2 " : 1 " ~ amount1 : 1 ~ am... |
let test_different_content ( ) = assert_keys_not_equal ~ loc : __LOC__ ~ ticketer1 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ ticketer2 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ typ1 " : nat " ~ typ2 " : nat " ~ content1 " : 1 " ~ content2 " : 2 " ~ amount1 : 1 ~ a... |
let test_nat_int ( ) = assert_keys_not_equal ~ loc : __LOC__ ~ ticketer1 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ ticketer2 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ typ1 " : nat " ~ typ2 " : int " ~ content1 " : 1 " ~ content2 " : 1 " ~ amount1 : 1 ~ amount2 : ... |
let test_nat_mutez ( ) = assert_keys_not_equal ~ loc : __LOC__ ~ ticketer1 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ ticketer2 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ typ1 " : nat " ~ typ2 " : mutez " ~ content1 " : 1 " ~ content2 " : 1 " ~ amount1 : 1 ~ amount2... |
let test_bool_nat ( ) = assert_keys_not_equal ~ loc : __LOC__ ~ ticketer1 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ ticketer2 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ typ1 " : bool " ~ typ2 " : nat " ~ content1 " : False " ~ content2 " : 0 " ~ amount1 : 1 ~ amount... |
let test_nat_bytes ( ) = assert_keys_not_equal ~ loc : __LOC__ ~ ticketer1 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ ticketer2 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ typ1 " : nat " ~ typ2 " : bytes " ~ content1 " : 0 " ~ content2 " : 0x " ~ amount1 : 1 ~ amount... |
let test_string_chain_id ( ) = assert_keys_not_equal ~ loc : __LOC__ ~ ticketer1 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ ticketer2 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ typ1 " : string " ~ typ2 " : chain_id " ~ content1 { " :| NetXynUjJNZm7wi " } | ~ content2 { ... |
let test_string_key_hash ( ) = assert_keys_not_equal ~ loc : __LOC__ ~ ticketer1 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ ticketer2 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ typ1 " : string " ~ typ2 " : key_hash " ~ content1 { " :| tz1KqTpEZ7Yob7QbPE4Hy4Wo8fHG8LhKxZSx " } ... |
let test_string_key ( ) = assert_keys_not_equal ~ loc : __LOC__ ~ ticketer1 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ ticketer2 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ typ1 " : string " ~ typ2 " : key " ~ content1 { " :| edpkuBknW28nW72KG6RoHtYW7p12T6GKc7nAbwYX5m8Wd9sDVC9ya... |
let test_string_timestamp ( ) = assert_keys_not_equal ~ loc : __LOC__ ~ ticketer1 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ ticketer2 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ typ1 " : string " ~ typ2 " : timestamp " ~ content1 { " :| 2019 - 09 - 26T10 : 59 : 51Z " ... |
let test_string_address ( ) = assert_keys_not_equal ~ loc : __LOC__ ~ ticketer1 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ ticketer2 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ typ1 " : string " ~ typ2 " : address " ~ content1 { " :| KT1BEqzn5Wx8uJrZNvuS9DVHmLvG9td3fDLi % entry... |
let test_string_signature ( ) = let signature = { " | edsigthTzJ8X7MPmNeEwybRAvdxS1pupqcM5Mk4uCuyZAe7uEk68YpuGDeViW8wSXMrCi5CwoNgqs8V2w8ayB5dMJzrYCHhD8C7 " } | in assert_keys_not_equal ~ loc : __LOC__ ~ ticketer1 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ ticketer2 " : KT1ThEdxfUcWUwqsder... |
let test_annotation_pair ( ) = assert_keys_equal ~ loc : __LOC__ ~ ticketer1 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ ticketer2 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ typ1 " ( : pair int string ) " ~ typ2 { ( :| pair ( int % id ) ( string % name ) ) } | ~ co... |
let test_annotation_or ( ) = assert_keys_equal ~ loc : __LOC__ ~ ticketer1 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ ticketer2 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ typ1 " ( : or int string ) " ~ typ2 { ( :| or ( int % id ) ( string % name ) ) } | ~ content1... |
let test_annotation_type_alias ( ) = assert_keys_equal ~ loc : __LOC__ ~ ticketer1 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ ticketer2 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ typ1 " : int " ~ typ2 " ( : int : int_alias ) " ~ content1 " : 0 " ~ content2 " : 0 " ... |
let test_annotation_pair_or ( ) = assert_keys_equal ~ loc : __LOC__ ~ ticketer1 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ ticketer2 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ typ1 " : pair ( or int string ) int " ~ typ2 { :| pair ( or ( int % id ) ( string % name ) ) ... |
let test_option_none ( ) = assert_keys_not_equal ~ loc : __LOC__ ~ ticketer1 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ ticketer2 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ typ1 " : option int " ~ typ2 " : option nat " ~ content1 { :| None } | ~ content2 { :| None } | ... |
let test_option_some ( ) = assert_keys_not_equal ~ loc : __LOC__ ~ ticketer1 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ ticketer2 " : KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " ~ typ1 " : option int " ~ typ2 " : option nat " ~ content1 { :| Some 0 } | ~ content2 { :| Some 0 } ... |
let tests = [ Tztest . tztest " Test different ticketers " ` Quick test_different_ticketers ; Tztest . tztest " Test different owners " ` Quick test_different_owners ; Tztest . tztest " Test different content " ` Quick test_different_content ; Tztest . tztest " Test different amount... |
let ( let * ) m f = m >>=? f |
let wrap m = m >|= Environment . wrap_tzresult |
let assert_equal_string_list ~ loc msg = Assert . assert_equal_list ~ loc String . equal msg Format . pp_print_string |
let string_list_of_ex_token_diffs ctxt token_diffs = let accum ( xs , ctxt ) ( Ticket_token . Ex_token { ticketer ; contents_type ; contents } , amount ) = let * ( x , ctxt ) = wrap @@ Script_ir_translator . unparse_comparable_data ~ loc ( ) : ctxt Script_ir_translator . Reada... |
let make_ex_token ctxt ~ ticketer ~ type_exp ~ content_exp = let * ( Script_ir_translator . Ex_comparable_ty contents_type , ctxt ) = let node = Micheline . root @@ Expr . from_string type_exp in wrap @@ Lwt . return @@ Script_ir_translator . parse_comparable_ty ctxt node in let * ticketer =... |
let assert_equal_balances ~ loc ctxt given expected = let * ( ctxt , tbs1 ) = List . fold_left_map_es ( fun ctxt ( ( ticketer , content ) , delta ) -> make_ex_token ctxt ~ ticketer ~ type_exp " : string " ~ content_exp ( : Printf . sprintf " % S " content ) >|=? fun ( t... |
let wrap_result res = wrap ( Lwt . return res ) |
let updates_of_key_values ctxt key_values = List . fold_right_es ( fun ( key , value ) ( kvs , ctxt ) -> let * ( key_hash , ctxt ) = wrap ( Script_ir_translator . hash_comparable_data ctxt Script_typed_ir . int_key ( Script_int_repr . of_int key ) ) in return ( { Big_map . ... |
let make_alloc big_map_id alloc updates = Lazy_storage . make Lazy_storage . Kind . Big_map big_map_id ( Update { init = Lazy_storage . Alloc alloc ; updates } ) |
let init ( ) = let * ( block , contracts ) = Context . init 1 in let source = WithExceptions . Option . get ~ loc : __LOC__ @@ List . hd contracts in let * ( operation , originated ) = Op . contract_origination ( B block ) source ~ script : Op . dummy_script in let * block ... |
let setup ctxt contract ~ key_type ~ value_type entries = let * ( ctxt , big_map_id ) = wrap @@ Big_map . fresh ~ temporary : false ctxt in let key_type = Expr . from_string key_type in let value_type = Expr . from_string value_type in let * ( updates , ctxt ) = updates_of_key_values ctxt ... |
let new_big_map ctxt contract ~ key_type ~ value_type entries = let * ( alloc , big_map_id , contract , ctxt ) = setup ctxt contract ~ key_type ~ value_type @@ List . map ( fun ( k , v ) -> ( k , Some v ) ) entries in let storage = Expr . from_string " { } " in let * ctx... |
let alloc_diff ctxt contract ~ key_type ~ value_type entries = let * ( allocations , _ , _ , ctxt ) = setup ctxt contract ~ key_type ~ value_type ( List . map ( fun ( k , v ) -> ( k , Some v ) ) entries ) in return ( allocations , ctxt ) |
let remove_diff ctxt contract ~ key_type ~ value_type ~ existing_entries = let * ( big_map_id , ctxt ) = new_big_map ctxt contract ~ key_type ~ value_type existing_entries in return ( Lazy_storage . make Lazy_storage . Kind . Big_map big_map_id Remove , ctxt ) |
let copy_diff ctxt contract ~ key_type ~ value_type ~ existing_entries ~ updates = let * ( big_map_id , ctxt ) = new_big_map ctxt contract ~ key_type ~ value_type existing_entries in let * ( updates , ctxt ) = updates_of_key_values ctxt updates in let * ( ctxt , new_big_map_id ) = wrap @... |
let existing_diff ctxt contract ~ key_type ~ value_type ~ existing_entries ~ updates = let * ( big_map_id , ctxt ) = new_big_map ctxt contract ~ key_type ~ value_type existing_entries in let * ( updates , ctxt ) = updates_of_key_values ctxt updates in return ( Lazy_storage . make Lazy_storage... |
let test_allocate_new_empty ( ) = let * ( contract , ctxt ) = init ( ) in let * ( diff , ctxt ) = alloc_diff ctxt contract ~ key_type " : int " ~ value_type " : ticket string " [ ] in let * ( diff , ctxt ) = wrap ( Ticket_lazy_storage_diff . ticket_diffs_of_lazy_stor... |
let test_allocate_new_no_tickets ( ) = let * ( contract , ctxt ) = init ( ) in let * ( diff , ctxt ) = alloc_diff ctxt contract ~ key_type " : int " ~ value_type " : string " [ ( 1 , { " | A " } ) ; | ( 2 , { " | B " } ) ; | ( 3 , { " ... |
let test_allocate_new ( ) = let * ( contract , ctxt ) = init ( ) in let * ( diff , ctxt ) = alloc_diff ctxt contract ~ key_type " : int " ~ value_type " : ticket string " [ ( 1 , { | Pair " KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " " red " 1 } ) ; | ( 2 , ... |
let test_remove_big_map ( ) = let * ( contract , ctxt ) = init ( ) in let * ( diff , ctxt ) = remove_diff ctxt contract ~ key_type " : int " ~ value_type " : ticket string " ~ existing_entries : [ ( 1 , { | Pair " KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " " red " 1 ... |
let test_no_updates_to_existing_big_map ( ) = let * ( contract , ctxt ) = init ( ) in let * ( diff , ctxt ) = existing_diff ctxt contract ~ key_type " : int " ~ value_type " : ticket string " ~ existing_entries : [ ( 1 , { | Pair " KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq ... |
let test_update_existing_big_map ( ) = let * ( contract , ctxt ) = init ( ) in let * ( diff , ctxt ) = existing_diff ctxt contract ~ key_type " : int " ~ value_type " : ticket string " ~ existing_entries : [ ( 1 , { | Pair " KT1ThEdxfUcWUwqsdergy3QnbCWGHSUHeHJq " " ... |
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