Packages

otpbp

7.3.4
7.18.0 7.16.1 7.15.0 7.14.0 7.13.0 7.12.0 7.11.0 7.10.2 7.9.3 7.9.2 7.9.1 7.8.7 7.8.6 7.8.5 7.8.4 7.7.1 7.7.0 7.6.3 7.6.2 7.6.1 7.6.0 7.5.1 7.5.0 7.4.0 7.3.4 7.3.3 7.3.2 7.3.1 7.3.0 7.2.0 7.1.1 7.1.0 7.0.4 7.0.3 7.0.2 7.0.1 6.26.0 6.25.0 6.24.0 6.23.0 6.22.2 6.21.3 6.21.2 6.21.1 6.20.2 6.19.1 6.19.0 6.18.3 6.18.2 6.18.1 6.18.0 6.17.1 6.17.0 6.16.0 6.15.4 6.15.3 6.15.2 6.15.1 6.15.0 6.14.0 6.13.5 6.13.4 6.13.3 6.13.2 6.13.1 6.13.0 6.12.0 6.11.2 6.11.1 6.10.0 6.9.2 6.9.1 6.9.0 6.8.0 6.7.1 6.7.0 6.6.4 6.6.3 6.6.2 6.6.1 6.6.0 6.5.0 6.4.0 6.3.3 6.3.2 6.3.1 6.3.0 6.2.1 6.2.0 6.1.0 6.0.0 5.39.0 5.38.0 5.37.0 5.36.0 5.35.2 5.34.3 5.34.2 5.34.1 5.33.1 5.32.1 5.32.0 5.31.3 5.31.2 5.31.1 5.31.0 5.30.1 5.30.0 5.29.0 5.28.4 5.28.3 5.28.2 5.28.1 5.28.0 5.27.0 5.26.5 5.26.4 5.26.3 5.26.2 5.26.1 5.26.0 5.25.0 5.24.2 5.24.1 5.23.0 5.22.2 5.22.1 5.22.0 5.21.0 5.20.1 5.20.0 5.19.4 5.19.3 5.19.2 5.19.1 5.19.0 5.18.0 5.17.0 5.16.3 5.16.1 5.16.0 5.15.1 5.15.0 5.14.0 5.13.1 5.13.0 5.12.1 5.12.0 5.11.2 5.11.1 5.10.1 5.10.0 5.9.0 5.8.0 5.7.0 5.6.1 5.6.0 5.5.0 5.4.2 5.4.1 5.4.0 5.3.0 5.2.2 5.2.1 5.2.0 5.1.2 5.1.1 4.79.0 4.78.0 4.77.0 4.76.2 4.75.3 4.75.2 4.75.1 4.74.0 4.73.1 4.73.0 4.72.3 4.72.2 4.72.1 4.72.0 4.71.1 4.71.0 4.70.0 4.69.4 4.69.3 4.69.2 4.69.1 4.69.0 4.68.0 4.67.5 4.67.4 4.67.3 4.67.2 4.67.0 4.66.0 4.65.2 4.65.1 4.64.0 4.63.2 4.63.1 4.63.0 4.62.0 4.61.1 4.61.0 4.60.4 4.60.3 4.60.2 4.60.1 4.60.0 4.59.0 4.58.0 4.57.2 4.57.1 4.57.0 4.56.2 4.56.1 4.56.0 4.55.0 4.54.0 4.53.0 4.52.1 4.52.0 4.51.3 4.51.2 4.51.0 4.50.0 4.49.3 4.49.2

OTP backports

Current section

Files

Jump to
otpbp src otpbp_public_key.erl
Raw

src/otpbp_public_key.erl

-module(otpbp_public_key).
-compile({parse_transform, otpbp_pt}).
-include_lib("public_key/include/OTP-PUB-KEY.hrl").
-ifndef(HAVE_public_key__cacerts_clear_0).
% OTP 25.0
-export([cacerts_clear/0]).
-endif.
-ifndef(HAVE_public_key__cacerts_get_0).
% OTP 25.0
-export([cacerts_get/0]).
-endif.
-ifndef(HAVE_public_key__cacerts_load_0).
% OTP 25.0
-export([cacerts_load/0]).
-endif.
-ifndef(HAVE_public_key__cacerts_load_1).
% OTP 25.0
-export([cacerts_load/1]).
-endif.
-ifndef(HAVE_public_key__encrypt_private_3).
% OTP 26.0
-export([encrypt_private/3]).
-endif.
-ifndef(HAVE_public_key__encrypt_public_3).
% OTP 26.0
-export([encrypt_public/3]).
-endif.
-ifndef(HAVE_public_key__pkix_hash_type_1).
% OTP 23.0
-export([pkix_hash_type/1]).
-endif.
-ifndef(HAVE_public_key__pkix_subject_id_1).
% OTP 23.1
-export([pkix_subject_id/1]).
-endif.
-ifndef(HAVE_public_key__pkix_verify_hostname_match_fun_1).
% OTP 21.0
-export([pkix_verify_hostname_match_fun/1]).
-endif.
-ifndef(HAVE_public_key__cacerts_clear_0).
cacerts_clear() -> pubkey_os_cacerts:clear().
-endif.
-ifndef(HAVE_public_key__cacerts_get_0).
cacerts_get() -> pubkey_os_cacerts:get().
-endif.
-ifndef(HAVE_public_key__cacerts_load_0).
cacerts_load() -> pubkey_os_cacerts:load().
-endif.
-ifndef(HAVE_public_key__cacerts_load_1).
cacerts_load(File) -> pubkey_os_cacerts:load([File]).
-endif.
-ifndef(HAVE_public_key__encrypt_private_3).
encrypt_private(PlainText, #'RSAPrivateKey'{modulus = N, publicExponent = E, privateExponent = D} = Key, Options)
when is_binary(PlainText), is_integer(N), is_integer(E), is_integer(D), is_list(Options) ->
crypto:private_encrypt(rsa, PlainText, format_rsa_private_key(Key), default_options(Options)).
-compile({inline, format_rsa_private_key/1}).
format_rsa_private_key(#'RSAPrivateKey'{modulus = N, publicExponent = E, privateExponent = D, prime1 = P1, prime2 = P2,
exponent1 = E1, exponent2 = E2, coefficient = C})
when is_integer(N), is_integer(E), is_integer(D) ->
if
is_integer(P1), is_integer(P2), is_integer(E1), is_integer(E2), is_integer(C) -> [E, N, D, P1, P2, E1, E2, C];
true -> [E, N, D]
end.
-ifndef(NEED_default_options_1).
-define(NEED_default_options_1, true).
-endif.
-endif.
-ifndef(HAVE_public_key__encrypt_public_3).
encrypt_public(PlainText, #'RSAPublicKey'{modulus = N, publicExponent = E}, Options)
when is_binary(PlainText), is_list(Options) ->
crypto:public_encrypt(rsa, PlainText, [E, N], default_options(Options)).
-ifndef(NEED_default_options_1).
-define(NEED_default_options_1, true).
-endif.
-endif.
-ifndef(HAVE_public_key__pkix_hash_type_1).
pkix_hash_type(?'id-sha1') -> sha;
pkix_hash_type(?'id-sha512') -> sha512;
pkix_hash_type(?'id-sha384') -> sha384;
pkix_hash_type(?'id-sha256') -> sha256;
pkix_hash_type('id-sha224') -> sha224;
pkix_hash_type('id-md5') -> md5.
-endif.
-ifndef(HAVE_public_key__pkix_subject_id_1).
pkix_subject_id(#'OTPCertificate'{} = OtpCert) -> pubkey_cert:subject_id(OtpCert);
pkix_subject_id(Cert) when is_binary(Cert) -> pubkey_cert:subject_id(public_key:pkix_decode_cert(Cert, otp)).
-endif.
-ifndef(HAVE_public_key__pkix_verify_hostname_match_fun_1).
pkix_verify_hostname_match_fun(https) ->
fun({dns_id, [_|_] = FQDN}, {dNSName, [_|_] = Name}) -> verify_hostname_match_wildcard(FQDN, Name);
(_, _) -> default
end.
-compile({inline, verify_hostname_match_wildcard/2}).
verify_hostname_match_wildcard(FQDN, Name) ->
[[F1|Fs], [N1|Ns]] = [string:tokens(to_lower_ascii(S), ".") || S <- [FQDN, Name]],
match_wild(F1, N1) andalso Fs =:= Ns.
to_lower_ascii(S) when is_list(S) -> lists:map(fun to_lower_ascii/1, S);
to_lower_ascii({T, _} = X) when T =:= ip; T =:= iPAddress -> X;
to_lower_ascii({T, S}) -> {T, to_lower_ascii(S)};
to_lower_ascii(C) when C >= $A, C =< $Z -> C + ($a - $A);
to_lower_ascii(C) -> C.
match_wild(A, [$*|B]) -> match_wild_sfx(lists:reverse(A), lists:reverse(B));
match_wild([C|A], [C|B]) -> match_wild(A, B);
match_wild(A, B) -> A =:= [] andalso B =:= [].
match_wild_sfx([$*|_], _) -> false; % Bad name (no wildcards allowed)
match_wild_sfx(_, [$*|_]) -> false; % Bad pattern (no more wildcards allowed)
match_wild_sfx([A|Ar], [A|Br]) -> match_wild_sfx(Ar, Br);
match_wild_sfx(Ar, []) -> not lists:member($*, Ar); % Chk for bad name (= wildcards)
match_wild_sfx(_, _) -> false.
-endif.
-ifdef(NEED_default_options_1).
default_options([]) -> [{rsa_padding, rsa_pkcs1_padding}];
default_options(Opts) ->
set_padding(case proplists:get_value(rsa_pad, Opts) of
undefined ->
case proplists:get_value(rsa_padding, Opts) of
undefined ->
case lists:dropwhile(fun erlang:is_tuple/1, Opts) of
[Pad|_] -> Pad;
[] -> rsa_pkcs1_padding
end;
Pad -> Pad
end;
Pad -> Pad
end,
Opts).
set_padding(Pad, Opts) -> [{rsa_padding, Pad}|[V || {T, _} = V <- Opts, T =/= rsa_padding, T =/= rsa_pad]].
-endif.