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let test_sha256 ( ) = let open Hash . SHA256 in let run ( value , msg ) = let d = digest msg in Alcotest . ( check bytes " sha256 " value d ) in List . iter run [ ( sha256_expected_value , msg ) ; ( sha256_rand_expected_value , randmsg ) ]
let test_sha256_seq ( ) = let open Hash . SHA256 in let one_update ( ) = let run ( value , msg ) = let st = init ( ) in update st msg ; let d = finish st in Alcotest . ( check bytes " sha256 " value d ) in List . iter run [ ( sha256_expected_value , msg ) ; ( sha256_ra...
let test_sha512 ( ) = let resp = of_hex " b4686c597b48c05f9d79f933611343e00985967c16f81a301269c75065ed05067dc547b1b36ec1822cc19a78df691e30fdb739ffb6b2a0ea6533ff20a2202e51 " in let digest = Hash . SHA512 . digest msg in Alcotest . ( check bytes " sha512 " resp digest )
let test_hmac_sha256 ( ) = let key = Bytes . of_string " key " in let msg = Bytes . of_string " The quick brown fox jumps over the lazy dog " in let resp = of_hex " f7bc83f430538424b13298e6aa6fb143ef4d59a14946175997479dbc2d1a3cd8 " in let digest = Hash . SHA256 . HMAC . digest ~ key ~ m...
let test_hmac_sha512 ( ) = let vectors = [ ( Bytes . of_string " key " , Bytes . of_string " The quick brown fox jumps over the lazy dog " , of_hex " b42af09057bac1e2d41708e48a902e09b5ff7f12ab428a4fe86653c73dd248fb82f948a549f7b791a5b41915ee4d1ec3935357e4e2317250d0372afa2ebeeb3a " ) ; (...
let test_sha3_256 ( ) = let resp = of_hex " c0bc8a6fc1d24c6d8aba95294d86159807aacb95eff450367e807c76fdf98037 " in let digest = Hash . SHA3_256 . digest msg in Alcotest . ( check bytes " sha3_256 " resp digest )
let test_sha3_512 ( ) = let resp = of_hex " 5d64d3ef8598612744af86fb24d9ad792e0064544a97c149ff8aaedf35c2717d105a2ae191aa11e08c525c28433687c044a8e81271ab9a668ba531091823dfe7 " in let digest = Hash . SHA3_512 . digest msg in Alcotest . ( check bytes " sha3_512 " resp digest )
let test_keccak_256 ( ) = let resp = of_hex " 9f3afe7d35d9bbc4efd98252357e73e85ce1234a48603a063bb7079174aafa68 " in let digest = Hash . Keccak_256 . digest msg in Alcotest . ( check bytes " keccak_256 " resp digest )
let is_js_of_ocaml_backend = match Sys . backend_type with | Other " js_of_ocaml " -> true | Native | Bytecode | Other _ -> false
let hash = [ ( " hmac_sha256 " , ` Quick , test_hmac_sha256 ) ; ( " hmac_sha512 " , ` Quick , test_hmac_sha512 ) ; ( " sha256 " , ` Quick , test_sha256 ) ; ( " sha512 " , ` Quick , test_sha512 ) ; ( " sha3_256 " , ` Quick , test_sha3_256 ) ...
let test_blake2b_direct { data_in ; data_key ; data_out } = let ( Blake2b . Hash h ) = Blake2b . direct ? key : data_key ( Bytes . concat Bytes . empty data_in ) ( Bytes . length data_out ) in Alcotest . ( check bytes " blake2b_direct " data_out h )
let blake2b_tests = List . mapi ( fun i v -> ( string_of_int i , ` Quick , fun ( ) -> test_blake2b_direct v ) ) vectors
let test_secretbox ( ) = let open Secretbox in let key = genkey ( ) in let nonce = Nonce . gen ( ) in let cmsg = Bytes . create ( msglen + 16 ) in secretbox ~ key ~ nonce ~ msg ~ cmsg ; let decrypted_msg = Bytes . create msglen in Alcotest . ( check bool " secretbox_open " tru...
let secretbox = [ ( " secretbox " , ` Quick , test_secretbox ) ]
let test_box ( ) = let open Box in let ( pk , sk ) = keypair ( ) in let k = dh pk sk in let nonce = Nonce . gen ( ) in let msg_orig = msg in let cmsg = Bytes . create ( msglen + tagbytes ) in box ~ k ~ nonce ~ msg : msg_orig ~ cmsg ; let decrypted_msg = Bytes . create msglen i...
let box = [ ( " box " , ` Quick , test_box ) ]
let test_keypair_ed25519 ( ) = let seed = Hacl . Rand . gen 32 in match ( sk_of_bytes seed , sk_of_bytes seed ) with | ( Some sk , Some sk ' ) -> let pk = neuterize sk in let pk ' = neuterize sk ' in Alcotest . ( check bool " of_seed " true ( Ed25519 . equal pk pk ' ) ) ...
let test_sign_ed25519 ( ) = let ( pk , sk ) = keypair ( ) in let signature = sign ~ sk ~ msg in Alcotest . ( check bool " verify " true ( verify ~ pk ~ msg ~ signature ) )
let test_public_ed25519 ( ) = let ( pk , sk ) = keypair ( ) in let pk ' = to_bytes pk in let ppk = to_bytes ( neuterize pk ) in let psk = to_bytes ( neuterize sk ) in Alcotest . ( check bytes " public " pk ' ppk ) ; Alcotest . ( check bytes " public " pk ' psk )
let ed25519 = [ ( " keypair " , ` Quick , test_keypair_ed25519 ) ; ( " sign " , ` Quick , test_sign_ed25519 ) ; ( " public " , ` Quick , test_public_ed25519 ) ; ]
let check_p256_bytes_secret = Alcotest . testable ( fun fmt bytes -> Format . fprintf fmt " % S " ( Bytes . to_string ( P256 . to_bytes bytes ) ) ) P256 . equal
let check_p256_bytes_public = Alcotest . testable ( fun fmt bytes -> Format . fprintf fmt " % S " ( Bytes . to_string ( P256 . to_bytes bytes ) ) ) P256 . equal
let test_export_p256 ( ) = let ( pk , sk ) = keypair ( ) in let sk_bytes = to_bytes sk in let pk_bytes = to_bytes pk in Alcotest . ( check int __LOC__ sk_size ( Bytes . length sk_bytes ) ) ; Alcotest . ( check int __LOC__ pk_size ( Bytes . length pk_bytes ) ) ; match ( ...
let test_export_p256 ( ) = for _i = 0 to nb_iterations - 1 do test_export_p256 ( ) done
let test_write_key_p256 ( ) = let ( pk , sk ) = keypair ( ) in let sk_bytes = to_bytes sk in let pk_bytes = to_bytes pk in let sk_buf = Bytes . create sk_size in let pk_buf = Bytes . create pk_size in blit_to_bytes sk sk_buf ; blit_to_bytes pk pk_buf ; Alcotest . ( check bytes " write_...
let test_write_key_pos_p256 ( ) = let pos = 42 in let ( pk , sk ) = keypair ( ) in let sk_bytes = to_bytes sk in let pk_bytes = to_bytes pk in let sk_buf = Bytes . create ( sk_size + pos ) in let pk_buf = Bytes . create ( pk_size + pos ) in blit_to_bytes ~ pos sk sk_buf ; blit_to_...
let test_write_key_with_ledger ( ) = let ( pk , _ ) = keypair ( ) in let pk_bytes = to_bytes pk in let buf = Bytes . create ( pk_size + 1 ) in match pk_of_bytes pk_bytes with | None -> Stdlib . failwith " Impossible to read P256 public key from Ledger " | Some pk -> TzEndian . set...
let test_write_key_p256 ( ) = for _i = 0 to nb_iterations - 1 do test_write_key_p256 ( ) ; test_write_key_pos_p256 ( ) ; test_write_key_with_ledger ( ) done
let test_keypair_p256 ( ) = let ( pk , sk ) = keypair ( ) in let pk ' = neuterize sk in Alcotest . ( check bytes " keccak_256 " ( P256 . to_bytes pk ) ( P256 . to_bytes pk ' ) )
let test_keypair_p256 ( ) = for _i = 0 to nb_iterations - 1 do test_keypair_p256 ( ) done
let test_sign_p256 ( ) = let ( pk , sk ) = keypair ( ) in let signature = sign ~ sk ~ msg in Alcotest . ( check bool " sign_p256 " true ( verify ~ pk ~ msg ~ signature ) )
let test_sign_p256 ( ) = for _i = 0 to nb_iterations - 1 do test_sign_p256 ( ) done
let test_vectors_p256 ( ) = let msgs = List . map of_hex Vectors_p256 . msgs in let keys = List . map ( fun ( sk , pk ) -> match ( sk_of_bytes ( of_hex sk ) , pk_of_bytes ( of_hex pk ) ) with | ( Some sk , Some pk ) -> ( sk , pk ) | _ -> Alcotest . fail " invalid...
let p256 = [ ( " export " , ` Quick , test_export_p256 ) ; ( " write_key " , ` Quick , test_write_key_p256 ) ; ( " keypair " , ` Quick , test_keypair_p256 ) ; ( " sign " , ` Quick , test_sign_p256 ) ; ( " test_vectors " , ` Quick , test_vect...
let tests = [ ( " hash " , hash ) ; ( " blake2b " , blake2b_tests ) ; ( " secretbox " , secretbox ) ; ( " box " , box ) ; ( " ed25519 " , ed25519 ) ; ( " p256 " , p256 ) ; ]
let ( ) = Alcotest . run " tezos - crypto " tests
module Hist = struct type t = { tbl : ( int , int ) Hashtbl . t ; mutable n_samples : int ; } let create ( ) : t = { tbl = Hashtbl . create 32 ; n_samples = 0 } let add self x = Hashtbl . replace self . tbl x ( 1 + try Hashtbl . find self . tbl x with _ -> 0 ) ; ...
let t_int n1 n2 = Printf . printf " test hash_int on % d --% d \ n " n1 n2 ; let count = Hashtbl . create 128 in for i = n1 to n2 do Printf . printf " % shash % d " …%! reset_line i ; let h = H . int i in Hashtbl . replace count h ( 1 + CCHashtbl . get_or count h ~ default : 0 ...
let ( ) = t_int 0 2_000_000 ; t_int ( - 4_000_000 ) ( - 3_500_000 ) ; ( )
module IntESHashtbl = Support . Lib . Hashtbl . Make_es ( struct type t = int let equal x y = x = y let hash x = x end )
let test_add_remove _ _ = let t = IntESHashtbl . create 2 in let * r = IntESHashtbl . find_or_make t 0 ( fun ( ) -> return_ok 0 ) in match r with | Error _ -> Assert . fail " Ok 0 " " Error _ " " find_or_make " | Ok n -> ( if not ( n = 0 ) then Assert . fail " Ok 0...
let test_add_add _ _ = let t = IntESHashtbl . create 2 in let * _ = IntESHashtbl . find_or_make t 0 ( fun ( ) -> return_ok 0 ) in let * _ = IntESHashtbl . find_or_make t 0 ( fun ( ) -> return_ok 1 ) in match IntESHashtbl . find t 0 with | None -> Assert . fail " Some ( ...
let test_length _ _ = let t = IntESHashtbl . create 2 in let * _ = IntESHashtbl . find_or_make t 0 ( fun ( ) -> Lwt . return_ok 0 ) in let * _ = IntESHashtbl . find_or_make t 1 ( fun ( ) -> Lwt . return_ok 1 ) in let * _ = IntESHashtbl . find_or_make t 2 ( fun ( ) ...
let test_self_clean _ _ = let t = IntESHashtbl . create 2 in let * _ = IntESHashtbl . find_or_make t 0 ( fun ( ) -> Lwt . return ( Ok 0 ) ) in let * _ = IntESHashtbl . find_or_make t 1 ( fun ( ) -> Lwt . return ( Error [ ] ) ) in let * _ = IntESHashtbl . find_o...
let test_order _ _ = let t = IntESHashtbl . create 2 in let ( wter , wker ) = Lwt . task ( ) in let world = ref [ ] in let p_a = let * r_a = IntESHashtbl . find_or_make t 0 ( fun ( ) -> let * r = wter in world := " a_inner " :: ! world ; Lwt . return r ) in world :=...
let tests = [ Alcotest_lwt . test_case " add_remove " ` Quick test_add_remove ; Alcotest_lwt . test_case " add_add " ` Quick test_add_add ; Alcotest_lwt . test_case " length " ` Quick test_length ; Alcotest_lwt . test_case " self_clean " ` Quick test_self_clean ; Alcotest_lwt ...
let ( ) = Alcotest_lwt . run " hashtbl " [ ( " hashtbl - lwt " , tests ) ] |> Lwt_main . run
let ( ) = Int_conversions . sexp_of_int_style := ` Underscores let test x = let t = Hashtbl . create ( module Int ) ~ size : 16 ~ growth_allowed : false in for i = 0 to x - 1 do Hashtbl . add_exn t ~ key : i ~ data ( : i * 7 ) done ; let if_found a b = assert ( a = b ) in ...
module Hash_heap = Hash_heap . Make ( Int )
let ( @? ) s b = require [ % here ] b ~ if_false_then_print_s ( : lazy [ % message s ] )
let s = [ 1 ; 2 ; 3 ; 4 ; 5 ; 6 ; 7 ; 8 ; 9 ; 10 ; 11 ]
let make ( ) = let h = Hash_heap . create Int . compare in List . iter s ~ f ( : fun i -> match Hash_heap . push h ~ key : i ~ data : i with | ` Ok -> ( ) | ` Key_already_present -> assert false ) ; h ; ;
let z = string_of_int let t = make ( ) in List . iter s ~ f ( : fun i -> z i @? [ % equal : int option ] ( Hash_heap . find t i ) ( Some i ) ) ; ; let t = make ( ) in List . iter s ~ f ( : fun i -> ( " top " ^ z i ) @? [ % equal : int option ] ( Hash_hea...
module Hq_arg = struct include String let hash ( x : t ) = Hashtbl . hash x let sexp_of_t = Sexplib . Conv . sexp_of_string end
module Hq = Hash_queue . Make ( Hq_arg ) let hq = Hq . create ( ) in let inv ( ) = Hq . invariant hq in inv ( ) ; assert ( Hq . is_empty hq ) ; assert ( Option . is_none ( Hq . dequeue_front hq ) ) ; assert ( try ignore ( Hq . dequeue_front_exn hq : int ) ; fa...
let test_enqueue_fn ( back_or_front : [ ` back | ` front ] ) enqueue_fn = let hq , hq ' = Hq . create ( ) , Hq . create ( ) in let n = 10 in for i = 1 to n do assert ( Poly . ( = ) ( Hq . enqueue hq back_or_front ( string_of_int i ) i ) ` Ok ) ; assert ( ...
( module struct let run_test first_contents second_contents ~ expect = let of_list lst = let s = create ( module String ) in List . iter lst ~ f ( : add s ) ; s in let s1 = of_list first_contents in let s2 = of_list second_contents in let expect = of_list expect in let result = inter s1 s2 in it...
module String_hash = GLib . Hash_table . Make ( struct type key = char let key = char type value = char let value = char let key_destroy_func = None let value_destroy_func = None end )
let build_hash_sample ( ) = let h = String_hash . create Core . str_hash Core . str_equal in let france = str_to_chr_ptr " france " in let paris = str_to_chr_ptr " paris " in let ( ) = String_hash . insert h france paris in let allemagne = str_to_chr_ptr " allemagne " in let berlin = ...
let test_hash_table_create_insert_size test_ctxt = let h = build_hash_sample ( ) in let s = String_hash . size h in let s_ref = Unsigned . UInt . of_int 2 in let printer = Unsigned . UInt . to_string in assert_equal ~ printer s_ref s
let test_hash_table_lookup test_ctxt = let h = build_hash_sample ( ) in let espagne = str_to_chr_ptr " espagne " in let ( ) = match String_hash . lookup h espagne with | Some _ -> let msg " = Lookup bad key : this should not have been reached " in assert_equal ~ msg false true | None -> ( ...
let test_hash_table_lookup_extended test_ctxt = let h = build_hash_sample ( ) in let espagne = str_to_chr_ptr " espagne " in let ( ) = match String_hash . lookup_extended h espagne with | Some _ -> let msg " = Lookup bad key : this should not have been reached " in assert_equal ~ msg false t...
let test_hash_table_foreach test_ctxt = let h = build_hash_sample ( ) in let buf = ref " " in let ( ) = String_hash . foreach h ( fun k v -> let key = chr_ptr_to_str k in let value = chr_ptr_to_str v in buf := String . concat " " [ ! buf ; key ; value ] ) in let printer = fun s...
let test_int_hash_table_create_full test_ctxt = let counter_key = ref 0 in let counter_val = ref 0 in let module Int_hash_wth_destroy = GLib . Hash_table . Make ( struct type key = int let key = int type value = int let value = int let key_destroy_func = Some ( fun v -> counter_key := ( ! counte...
let test_int64_hash_table_create_full test_ctxt = let counter_key = ref ( Int64 . zero ) in let counter_val = ref ( Int64 . zero ) in let module Int64_hash_wth_destroy = GLib . Hash_table . Make ( struct type key = int64 let key = int64_t type value = int64 let value = int64_t let key_destroy_...
let tests = " GLib2 Hash_table module tests " >::: [ " Test hash table create / insert / size " >:: test_hash_table_create_insert_size ; " Test hash table lookup " >:: test_hash_table_lookup ; " Test hash table lookup_extended " >:: test_hash_table_lookup_extended ; " Test hash table fo...
module StringResponse = Cohttp . Response . Make ( String_io . M )
let aes = Alcotest . check Alcotest . string
let aeso = Alcotest . check Alcotest . ( option string )
let t_credentials = Alcotest . testable ( fun fmt c -> let sexp = Cohttp . Auth . sexp_of_credential c in Sexplib0 . Sexp . pp_hum fmt sexp ) ( = )
let valid_auth ( ) = let auth = ` Basic ( " Aladdin " , " open sesame " ) in let h = H . add_authorization ( H . init ( ) ) auth in let digest = H . get h " authorization " in aeso " valid_auth 1 " digest ( Some " Basic QWxhZGRpbjpvcGVuIHNlc2FtZQ " ) ; == Alcote...
let valid_set_cookie ( ) = let c = Cohttp . Cookie . Set_cookie_hdr . make ~ expiration ` : Session ~ path " :/ foo / bar " ~ domain " : ocaml . org " ~ secure : true ~ http_only : true ( " key " , " value " ) in let k , v = Cohttp . Cookie . Set_cookie_hdr . se...
let cookie_printer x = String . concat " ; " ( List . map ( fun ( x , y ) -> x ^ " " : ^ y ) x )
let t_cookies = Alcotest . ( list ( pair string string ) )
let cookie_with_eq_val ( ) = let cookies = [ ( " test " , " me " ) = ] in let k , v = Cohttp . Cookie . Cookie_hdr . serialize cookies in let h = Cohttp . Header . of_list [ ( k , v ) ] in let cookies = Cohttp . Cookie . Cookie_hdr . extract h in Alcotest . chec...
let ignores_empty_cookie ( ) = let cookies = [ ( " foo " , " bar " ) ] in let k , v = Cohttp . Cookie . Cookie_hdr . serialize cookies in let v = " ; " ^ v in let h = Cohttp . Header . of_list [ ( k , v ) ] in let cookies = Cohttp . Cookie . Cookie_hdr . ex...
let valid_cookie ( ) = let cookies = [ ( " foo " , " bar " ) ; ( " a " , " b " ) ] in let k , v = Cohttp . Cookie . Cookie_hdr . serialize cookies in aes " key " " cookie " k ; aes " value " " foo = bar ; a = b " v ; let h = Cohttp . Header . ...
let opt_printer f = function | None -> " nothing " | Some x -> Printf . sprintf " ' % s ' " ( f x )
let get_media_type ( ) = let mt = " foo / bar ; charset = UTF - 8 " in let header = Cohttp . Header . init_with " content - type " mt in Alcotest . check Alcotest . ( option string ) " media type " ( Some " foo / bar " ) ( Cohttp . Header . get_media_type header )
module Content_range = struct let h1 = H . of_list [ ( " Content - Length " , " 123 " ) ] let h2 = H . of_list [ ( " Content - Range " , " bytes 200 - 300 / 1000 " ) ] let aeio = Alcotest . ( check ( option int64 ) ) let none ( ) = aeio " none " Non...
let t_links = Alcotest . testable ( fun fmt links -> Format . pp_print_list ~ pp_sep : Format . pp_print_newline ( fun fmt l -> Format . fprintf fmt " % s " ( Link . to_string l ) ) fmt links ) ( = )
let headers_of_response test_name response_string = String_io . M . ( StringResponse . read ( String_io . open_in response_string ) >>= function | ` Ok resp -> Cohttp . Response . headers resp | _ -> failwith ( test_name ^ " response parse failed " ) )
let get_resp lines = " HTTP / 1 . 1 200 OK \ r \ n " ^ String . concat " \ r \ n " lines ^ " \ r \ n \ r \ n "
let empty_uri = Uri . of_string " "
let link_simple ( ) = let next_tgt = " / page / 2 " in let resp = get_resp [ " Link : " < ^ next_tgt ^ " ; > rel = next " ] in let headers = headers_of_response " link_simple " resp in Alcotest . check t_links " link_simple " Link . [ { context = empty_uri ; arc = ...
let link_multi_rel ( ) = let next_tgt = " / page / 2 " in let resp = get_resp [ " Link : " < ^ next_tgt ^ " ; > rel " =\ next last " " \ ] in let headers = headers_of_response " link_multi_rel " resp in Alcotest . check t_links " link_multi_rel " Link . [ { contex...
let link_multi_line ( ) = let self_tgt = " / page / 1 " in let next_tgt = " / page / 2 " in let resp = get_resp [ " Link : " < ^ next_tgt ^ " ; > rel " =\ next " " ; \ " Link : " < ^ self_tgt ^ " ; > rel = self " ; ] in let headers = headers_of_respons...
let link_multi_multi ( ) = let next_tgt = " / page / 2 " in let last_tgt = " / page / 3 " in let resp = get_resp [ " Link : " < ^ next_tgt ^ " ; > rel " =\ next " , \ " < ^ last_tgt ^ " ; > rel = last " ] in let headers = headers_of_response " link_multi_mu...
let link_rel_uri ( ) = let uri_tgt = " / page / 2 " in let uri_s = " http :// example . com / a , valid ; uri " in let resp = get_resp [ " Link : " < ^ uri_tgt ^ " ; > rel " =\ next " ^ uri_s ^ " " ; \ hreflang = en " ] in let headers = headers_of_response "...
let link_anchor ( ) = let anchor = " / page / 2 " in let target = " / page / 1 " in let resp = get_resp [ " Link : " < ^ target ^ " ; > anchor " " =\ ^ anchor ^ " " ; \ rel = prev " ] in let headers = headers_of_response " link_rel_uri " resp in Alcotest . ...
let link_rev ( ) = let anchor = " / page / 2 " in let resp = get_resp [ " Link : " < ^ anchor ^ " ; > rev = prev " ] in let headers = headers_of_response " link_rev " resp in Alcotest . check t_links " link_multi_line " Link . [ { context = Uri . of_string anchor ; ...
let link_media ( ) = let target = " / page / 2 " in let resp = get_resp [ " Link : " < ^ target ^ " ; > media = screen " ] in let headers = headers_of_response " link_media " resp in Alcotest . check t_links " link_media " Link . [ { context = empty_uri ; arc = Arc...
let link_media_complex ( ) = let target = " / page / 2 " in let resp = get_resp [ " Link : " < ^ target ^ " ; > media " =\ screen , print and dpi < 200 " " \ ] in let headers = headers_of_response " link_media_complex " resp in Alcotest . check t_links " t_links " L...
let link_title ( ) = let target = " / page / 2 " in let resp = get_resp [ " Link : " < ^ target ^ " ; > title " =\ Next " ; !\ rel = next " ] in let headers = headers_of_response " link_title " resp in Alcotest . check t_links " link_title " Link . [ { context ...
let link_title_star ( ) = let target = " / page / 2 " in let resp = get_resp [ " Link : " < ^ target ^ " ; > title *= UTF - 8 ' en ' Next ; ! rel = next " ] in let headers = headers_of_response " link_title_star " resp in Alcotest . check t_links " link_title_star " ...
let link_type_token ( ) = let target = " / page / 2 " in let resp = get_resp [ " Link : " < ^ target ^ " ; > type = text / html ; rel = next " ] in let headers = headers_of_response " link_type_token " resp in Alcotest . check t_links " link_type_token " Link . [ { ...
let link_type_quoted ( ) = let target = " / page / 2 " in let resp = get_resp [ " Link : " < ^ target ^ " ; > type " =\ text / html " ; \ rel = next " ] in let headers = headers_of_response " link_type_quoted " resp in Alcotest . check t_links " link_type_quoted " L...
let link_ext ( ) = let target = " / page / 2 " in let resp = get_resp [ " Link : " < ^ target ^ " ; > see = saw ; rel = next " ] in let headers = headers_of_response " link_ext " resp in Alcotest . check t_links " link_ext " Link . [ { context = empty_uri ; arc ...
let link_ext_star ( ) = let target = " / page / 2 " in let resp = get_resp [ " Link : " < ^ target ^ " ; > zig ' ' *= zag ; rel = next " ] in let headers = headers_of_response " link_ext " resp in Alcotest . check t_links " link_ext_star " Link . [ { context = ...
let trim_ws ( ) = let resp = get_resp [ " Age : 281 " ] in let headers = headers_of_response " trim whitespace " resp in aeso " trim_ws " ( H . get headers " age " ) ( Some " 281 " )