diff options
author | Bernhard Schmidt <berni@debian.org> | 2020-09-01 16:52:17 +0200 |
---|---|---|
committer | Bernhard Schmidt <berni@debian.org> | 2020-09-01 16:52:17 +0200 |
commit | 9fc3b98112217f2d92a67977dbde0987cc7a1803 (patch) | |
tree | 29fcc8654ee65d9dd89ade797bea2f3d9dfd9cfd /tests/unit_tests/openvpn | |
parent | a8758c0e03eed188dcb9da0e4fd781a67c25bf1e (diff) | |
parent | 69b02b1f7fd609d84ace13ab04697158de2418a9 (diff) |
Merge branch 'debian/experimental-2.5'
Diffstat (limited to 'tests/unit_tests/openvpn')
-rw-r--r-- | tests/unit_tests/openvpn/Makefile.am | 99 | ||||
-rw-r--r-- | tests/unit_tests/openvpn/Makefile.in | 1321 | ||||
-rw-r--r-- | tests/unit_tests/openvpn/mock_get_random.c | 36 | ||||
-rw-r--r-- | tests/unit_tests/openvpn/test_argv.c | 123 | ||||
-rw-r--r-- | tests/unit_tests/openvpn/test_auth_token.c | 394 | ||||
-rw-r--r-- | tests/unit_tests/openvpn/test_buffer.c | 51 | ||||
-rw-r--r-- | tests/unit_tests/openvpn/test_crypto.c | 158 | ||||
-rw-r--r-- | tests/unit_tests/openvpn/test_ncp.c | 231 | ||||
-rw-r--r-- | tests/unit_tests/openvpn/test_networking.c | 253 | ||||
-rw-r--r-- | tests/unit_tests/openvpn/test_packet_id.c | 41 | ||||
-rw-r--r-- | tests/unit_tests/openvpn/test_tls_crypt.c | 452 |
11 files changed, 1753 insertions, 1406 deletions
diff --git a/tests/unit_tests/openvpn/Makefile.am b/tests/unit_tests/openvpn/Makefile.am index 55e29e4..f0880a6 100644 --- a/tests/unit_tests/openvpn/Makefile.am +++ b/tests/unit_tests/openvpn/Makefile.am @@ -1,26 +1,31 @@ AUTOMAKE_OPTIONS = foreign -check_PROGRAMS= +test_binaries= if HAVE_LD_WRAP_SUPPORT -check_PROGRAMS += argv_testdriver buffer_testdriver +test_binaries += argv_testdriver buffer_testdriver endif -if ENABLE_CRYPTO -check_PROGRAMS += packet_id_testdriver tls_crypt_testdriver +test_binaries += crypto_testdriver packet_id_testdriver auth_token_testdriver ncp_testdriver +if HAVE_LD_WRAP_SUPPORT +test_binaries += tls_crypt_testdriver endif -TESTS = $(check_PROGRAMS) +TESTS = $(test_binaries) +check_PROGRAMS = $(test_binaries) + +if HAVE_SITNL +check_PROGRAMS += networking_testdriver +endif openvpn_includedir = $(top_srcdir)/include openvpn_srcdir = $(top_srcdir)/src/openvpn compat_srcdir = $(top_srcdir)/src/compat -argv_testdriver_CFLAGS = @TEST_CFLAGS@ -I$(openvpn_srcdir) -I$(compat_srcdir) \ - $(OPTIONAL_CRYPTO_CFLAGS) -argv_testdriver_LDFLAGS = @TEST_LDFLAGS@ -L$(openvpn_srcdir) -Wl,--wrap=parse_line \ - $(OPTIONAL_CRYPTO_LIBS) +argv_testdriver_CFLAGS = @TEST_CFLAGS@ -I$(openvpn_srcdir) -I$(compat_srcdir) +argv_testdriver_LDFLAGS = @TEST_LDFLAGS@ -L$(openvpn_srcdir) -Wl,--wrap=parse_line argv_testdriver_SOURCES = test_argv.c mock_msg.c mock_msg.h \ + mock_get_random.c \ $(openvpn_srcdir)/platform.c \ $(openvpn_srcdir)/buffer.c \ $(openvpn_srcdir)/argv.c @@ -28,26 +33,92 @@ argv_testdriver_SOURCES = test_argv.c mock_msg.c mock_msg.h \ buffer_testdriver_CFLAGS = @TEST_CFLAGS@ -I$(openvpn_srcdir) -I$(compat_srcdir) buffer_testdriver_LDFLAGS = @TEST_LDFLAGS@ -L$(openvpn_srcdir) -Wl,--wrap=parse_line buffer_testdriver_SOURCES = test_buffer.c mock_msg.c mock_msg.h \ + mock_get_random.c \ + $(openvpn_srcdir)/platform.c + +crypto_testdriver_CFLAGS = @TEST_CFLAGS@ \ + -I$(openvpn_includedir) -I$(compat_srcdir) -I$(openvpn_srcdir) +crypto_testdriver_LDFLAGS = @TEST_LDFLAGS@ +crypto_testdriver_SOURCES = test_crypto.c mock_msg.c mock_msg.h \ $(openvpn_srcdir)/buffer.c \ + $(openvpn_srcdir)/crypto.c \ + $(openvpn_srcdir)/crypto_mbedtls.c \ + $(openvpn_srcdir)/crypto_openssl.c \ + $(openvpn_srcdir)/otime.c \ + $(openvpn_srcdir)/packet_id.c \ $(openvpn_srcdir)/platform.c packet_id_testdriver_CFLAGS = @TEST_CFLAGS@ \ + -I$(openvpn_includedir) -I$(compat_srcdir) -I$(openvpn_srcdir) +packet_id_testdriver_LDFLAGS = @TEST_LDFLAGS@ +packet_id_testdriver_SOURCES = test_packet_id.c mock_msg.c mock_msg.h \ + mock_get_random.c \ + $(openvpn_srcdir)/buffer.c \ + $(openvpn_srcdir)/otime.c \ + $(openvpn_srcdir)/packet_id.c \ + $(openvpn_srcdir)/platform.c + +tls_crypt_testdriver_CFLAGS = @TEST_CFLAGS@ \ + -I$(openvpn_includedir) -I$(compat_srcdir) -I$(openvpn_srcdir) +tls_crypt_testdriver_LDFLAGS = @TEST_LDFLAGS@ \ + -Wl,--wrap=buffer_read_from_file \ + -Wl,--wrap=buffer_write_file \ + -Wl,--wrap=parse_line \ + -Wl,--wrap=rand_bytes +tls_crypt_testdriver_SOURCES = test_tls_crypt.c mock_msg.c mock_msg.h \ + $(openvpn_srcdir)/argv.c \ + $(openvpn_srcdir)/base64.c \ + $(openvpn_srcdir)/buffer.c \ + $(openvpn_srcdir)/crypto.c \ + $(openvpn_srcdir)/crypto_mbedtls.c \ + $(openvpn_srcdir)/crypto_openssl.c \ + $(openvpn_srcdir)/env_set.c \ + $(openvpn_srcdir)/otime.c \ + $(openvpn_srcdir)/packet_id.c \ + $(openvpn_srcdir)/platform.c \ + $(openvpn_srcdir)/run_command.c + +if HAVE_SITNL +networking_testdriver_CFLAGS = @TEST_CFLAGS@ \ -I$(openvpn_includedir) -I$(compat_srcdir) -I$(openvpn_srcdir) \ $(OPTIONAL_CRYPTO_CFLAGS) -packet_id_testdriver_LDFLAGS = @TEST_LDFLAGS@ \ +networking_testdriver_LDFLAGS = @TEST_LDFLAGS@ -L$(openvpn_srcdir) \ $(OPTIONAL_CRYPTO_LIBS) -packet_id_testdriver_SOURCES = test_packet_id.c mock_msg.c mock_msg.h \ +networking_testdriver_SOURCES = test_networking.c mock_msg.c \ + $(openvpn_srcdir)/networking_sitnl.c \ $(openvpn_srcdir)/buffer.c \ + $(openvpn_srcdir)/crypto.c \ + $(openvpn_srcdir)/crypto_mbedtls.c \ + $(openvpn_srcdir)/crypto_openssl.c \ $(openvpn_srcdir)/otime.c \ $(openvpn_srcdir)/packet_id.c \ $(openvpn_srcdir)/platform.c +endif -tls_crypt_testdriver_CFLAGS = @TEST_CFLAGS@ \ +auth_token_testdriver_CFLAGS = @TEST_CFLAGS@ \ -I$(openvpn_includedir) -I$(compat_srcdir) -I$(openvpn_srcdir) \ $(OPTIONAL_CRYPTO_CFLAGS) -tls_crypt_testdriver_LDFLAGS = @TEST_LDFLAGS@ \ +auth_token_testdriver_LDFLAGS = @TEST_LDFLAGS@ \ $(OPTIONAL_CRYPTO_LIBS) -tls_crypt_testdriver_SOURCES = test_tls_crypt.c mock_msg.c mock_msg.h \ + +auth_token_testdriver_SOURCES = test_auth_token.c mock_msg.c \ + $(openvpn_srcdir)/buffer.c \ + $(openvpn_srcdir)/crypto.c \ + $(openvpn_srcdir)/crypto_mbedtls.c \ + $(openvpn_srcdir)/crypto_openssl.c \ + $(openvpn_srcdir)/otime.c \ + $(openvpn_srcdir)/packet_id.c \ + $(openvpn_srcdir)/platform.c \ + $(openvpn_srcdir)/base64.c + + +ncp_testdriver_CFLAGS = @TEST_CFLAGS@ \ + -I$(openvpn_includedir) -I$(compat_srcdir) -I$(openvpn_srcdir) \ + $(OPTIONAL_CRYPTO_CFLAGS) +ncp_testdriver_LDFLAGS = @TEST_LDFLAGS@ \ + $(OPTIONAL_CRYPTO_LIBS) + +ncp_testdriver_SOURCES = test_ncp.c mock_msg.c \ $(openvpn_srcdir)/buffer.c \ $(openvpn_srcdir)/crypto.c \ $(openvpn_srcdir)/crypto_mbedtls.c \ diff --git a/tests/unit_tests/openvpn/Makefile.in b/tests/unit_tests/openvpn/Makefile.in deleted file mode 100644 index 330aa55..0000000 --- a/tests/unit_tests/openvpn/Makefile.in +++ /dev/null @@ -1,1321 +0,0 @@ -# Makefile.in generated by automake 1.16.1 from Makefile.am. -# @configure_input@ - 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mostlyclean-compile mostlyclean-generic \ - mostlyclean-libtool - -pdf: pdf-am - -pdf-am: - -ps: ps-am - -ps-am: - -uninstall-am: - -.MAKE: check-am install-am install-strip - -.PHONY: CTAGS GTAGS TAGS all all-am am--depfiles check check-TESTS \ - check-am clean clean-checkPROGRAMS clean-generic clean-libtool \ - cscopelist-am ctags ctags-am distclean distclean-compile \ - distclean-generic distclean-libtool distclean-tags distdir dvi \ - dvi-am html html-am info info-am install install-am \ - install-data install-data-am install-dvi install-dvi-am \ - install-exec install-exec-am install-html install-html-am \ - install-info install-info-am install-man install-pdf \ - install-pdf-am install-ps install-ps-am install-strip \ - installcheck installcheck-am installdirs maintainer-clean \ - maintainer-clean-generic mostlyclean mostlyclean-compile \ - mostlyclean-generic mostlyclean-libtool pdf pdf-am ps ps-am \ - tags tags-am uninstall uninstall-am - -.PRECIOUS: Makefile - - -# Tell versions [3.59,3.63) of GNU make to not export all variables. -# Otherwise a system limit (for SysV at least) may be exceeded. -.NOEXPORT: diff --git a/tests/unit_tests/openvpn/mock_get_random.c b/tests/unit_tests/openvpn/mock_get_random.c new file mode 100644 index 0000000..da92a9b --- /dev/null +++ b/tests/unit_tests/openvpn/mock_get_random.c @@ -0,0 +1,36 @@ +/* + * OpenVPN -- An application to securely tunnel IP networks + * over a single UDP port, with support for SSL/TLS-based + * session authentication and key exchange, + * packet encryption, packet authentication, and + * packet compression. + * + * Copyright (C) 2017 Fox Crypto B.V. <openvpn@fox-it.com> + * + * This program is free software; you can redistribute it and/or modify + * it under the terms of the GNU General Public License version 2 + * as published by the Free Software Foundation. + * + * This program is distributed in the hope that it will be useful, + * but WITHOUT ANY WARRANTY; without even the implied warranty of + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the + * GNU General Public License for more details. + * + * You should have received a copy of the GNU General Public License along + * with this program; if not, write to the Free Software Foundation, Inc., + * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. + */ + +#include <stdarg.h> +#include <stddef.h> +#include <stdio.h> +#include <stdlib.h> +#include <setjmp.h> +#include <cmocka.h> + +unsigned long +get_random(void) +{ + /* rand() is not very random, but it's C99 and this is just for testing */ + return rand(); +} diff --git a/tests/unit_tests/openvpn/test_argv.c b/tests/unit_tests/openvpn/test_argv.c index 0fdd3f0..3dc470a 100644 --- a/tests/unit_tests/openvpn/test_argv.c +++ b/tests/unit_tests/openvpn/test_argv.c @@ -9,6 +9,7 @@ #include <setjmp.h> #include <cmocka.h> #include <assert.h> +#include <stdbool.h> #include "argv.h" #include "buffer.h" @@ -38,7 +39,7 @@ argv_printf__multiple_spaces_in_format__parsed_as_one(void **state) argv_printf(&a, " %s %s %d ", PATH1, PATH2, 42); assert_int_equal(a.argc, 3); - argv_reset(&a); + argv_free(&a); } static void @@ -50,7 +51,30 @@ argv_printf_cat__multiple_spaces_in_format__parsed_as_one(void **state) argv_printf_cat(&a, " %s %s", PATH2, PARAM1); assert_int_equal(a.argc, 3); - argv_reset(&a); + argv_free(&a); +} + +static void +argv_printf__embedded_format_directive__replaced_in_output(void **state) +{ + struct argv a = argv_new(); + + argv_printf(&a, "<p1:%s>", PATH1); + assert_int_equal(a.argc, 1); + assert_string_equal(a.argv[0], "<p1:" PATH1 ">"); + + argv_free(&a); +} + +static void +argv_printf__group_sep_in_arg__fail_no_ouput(void **state) +{ + struct argv a = argv_new(); + + assert_false(argv_printf(&a, "tool --do %s", "this\035--harmful")); + assert_int_equal(a.argc, 0); + + argv_free(&a); } static void @@ -58,16 +82,61 @@ argv_printf__combined_path_with_spaces__argc_correct(void **state) { struct argv a = argv_new(); - argv_printf(&a, "%s%sc", PATH1, PATH2); + argv_printf(&a, "%s%s", PATH1, PATH2); assert_int_equal(a.argc, 1); - argv_printf(&a, "%s%sc %d", PATH1, PATH2, 42); + argv_printf(&a, "%s%s %d", PATH1, PATH2, 42); assert_int_equal(a.argc, 2); - argv_printf(&a, "foo %s%sc %s x y", PATH2, PATH1, "foo"); + argv_printf(&a, "foo %s%s %s x y", PATH2, PATH1, "foo"); assert_int_equal(a.argc, 5); - argv_reset(&a); + argv_free(&a); +} + +static void +argv_printf__empty_parameter__argc_correct(void **state) +{ + struct argv a = argv_new(); + + argv_printf(&a, "%s", ""); + assert_int_equal(a.argc, 1); + + argv_printf(&a, "%s %s", PATH1, ""); + assert_int_equal(a.argc, 2); + + argv_printf(&a, "%s %s %s", PATH1, "", PARAM1); + assert_int_equal(a.argc, 3); + + argv_printf(&a, "%s %s %s %s", PATH1, "", "", PARAM1); + assert_int_equal(a.argc, 4); + + argv_printf(&a, "%s %s", "", PARAM1); + assert_int_equal(a.argc, 2); + + argv_free(&a); +} + +static void +argv_printf__long_args__data_correct(void **state) +{ + int i; + struct argv a = argv_new(); + const char *args[] = { + "good_tools_have_good_names_even_though_it_might_impair_typing", + "--long-opt=looooooooooooooooooooooooooooooooooooooooooooooooong", + "--long-cat=loooooooooooooooooooooooooooooooooooooooooooooooooooonger", + "file_with_very_descriptive_filename_that_leaves_no_questions_open.jpg.exe" + }; + + argv_printf(&a, "%s %s %s %s", args[0], args[1], args[2], args[3]); + assert_int_equal(a.argc, 4); + for (i = 0; i < a.argc; i++) + { + assert_string_equal(a.argv[i], args[i]); + } + + argv_free(&a); } static void @@ -78,7 +147,7 @@ argv_parse_cmd__command_string__argc_correct(void **state) argv_parse_cmd(&a, SCRIPT_CMD); assert_int_equal(a.argc, 3); - argv_reset(&a); + argv_free(&a); } static void @@ -90,7 +159,7 @@ argv_parse_cmd__command_and_extra_options__argc_correct(void **state) argv_printf_cat(&a, "bar baz %d %s", 42, PATH1); assert_int_equal(a.argc, 7); - argv_reset(&a); + argv_free(&a); } static void @@ -103,7 +172,21 @@ argv_printf_cat__used_twice__argc_correct(void **state) argv_printf_cat(&a, "foo"); assert_int_equal(a.argc, 5); - argv_reset(&a); + argv_free(&a); +} + +static void +argv_str__empty_argv__empty_output(void **state) +{ + struct argv a = argv_new(); + struct gc_arena gc = gc_new(); + const char *output; + + output = argv_str(&a, &gc, PA_BRACKET); + assert_string_equal(output, ""); + + argv_free(&a); + gc_free(&gc); } static void @@ -113,7 +196,7 @@ argv_str__multiple_argv__correct_output(void **state) struct gc_arena gc = gc_new(); const char *output; - argv_printf(&a, "%s%sc", PATH1, PATH2); + argv_printf(&a, "%s%s", PATH1, PATH2); argv_printf_cat(&a, "%s", PARAM1); argv_printf_cat(&a, "%s", PARAM2); argv_printf_cat(&a, "%d", -1); @@ -121,9 +204,9 @@ argv_str__multiple_argv__correct_output(void **state) argv_printf_cat(&a, "%lu", 1L ); output = argv_str(&a, &gc, PA_BRACKET); assert_string_equal(output, "[" PATH1 PATH2 "] [" PARAM1 "] [" PARAM2 "]" - " [-1] [4294967295] [1]"); + " [-1] [4294967295] [1]"); - argv_reset(&a); + argv_free(&a); gc_free(&gc); } @@ -136,9 +219,9 @@ argv_insert_head__empty_argv__head_only(void **state) b = argv_insert_head(&a, PATH1); assert_int_equal(b.argc, 1); assert_string_equal(b.argv[0], PATH1); - argv_reset(&b); + argv_free(&b); - argv_reset(&a); + argv_free(&a); } static void @@ -151,7 +234,8 @@ argv_insert_head__non_empty_argv__head_added(void **state) argv_printf(&a, "%s", PATH2); b = argv_insert_head(&a, PATH1); assert_int_equal(b.argc, a.argc + 1); - for (i = 0; i < b.argc; i++) { + for (i = 0; i < b.argc; i++) + { if (i == 0) { assert_string_equal(b.argv[i], PATH1); @@ -161,9 +245,9 @@ argv_insert_head__non_empty_argv__head_added(void **state) assert_string_equal(b.argv[i], a.argv[i - 1]); } } - argv_reset(&b); + argv_free(&b); - argv_reset(&a); + argv_free(&a); } int @@ -172,10 +256,15 @@ main(void) const struct CMUnitTest tests[] = { cmocka_unit_test(argv_printf__multiple_spaces_in_format__parsed_as_one), cmocka_unit_test(argv_printf_cat__multiple_spaces_in_format__parsed_as_one), + cmocka_unit_test(argv_printf__embedded_format_directive__replaced_in_output), + cmocka_unit_test(argv_printf__group_sep_in_arg__fail_no_ouput), cmocka_unit_test(argv_printf__combined_path_with_spaces__argc_correct), + cmocka_unit_test(argv_printf__empty_parameter__argc_correct), + cmocka_unit_test(argv_printf__long_args__data_correct), cmocka_unit_test(argv_parse_cmd__command_string__argc_correct), cmocka_unit_test(argv_parse_cmd__command_and_extra_options__argc_correct), cmocka_unit_test(argv_printf_cat__used_twice__argc_correct), + cmocka_unit_test(argv_str__empty_argv__empty_output), cmocka_unit_test(argv_str__multiple_argv__correct_output), cmocka_unit_test(argv_insert_head__non_empty_argv__head_added), }; diff --git a/tests/unit_tests/openvpn/test_auth_token.c b/tests/unit_tests/openvpn/test_auth_token.c new file mode 100644 index 0000000..dbde863 --- /dev/null +++ b/tests/unit_tests/openvpn/test_auth_token.c @@ -0,0 +1,394 @@ +/* + * OpenVPN -- An application to securely tunnel IP networks + * over a single UDP port, with support for SSL/TLS-based + * session authentication and key exchange, + * packet encryption, packet authentication, and + * packet compression. + * + * Copyright (C) 2016-2018 Fox Crypto B.V. <openvpn@fox-it.com> + * + * This program is free software; you can redistribute it and/or modify + * it under the terms of the GNU General Public License version 2 + * as published by the Free Software Foundation. + * + * This program is distributed in the hope that it will be useful, + * but WITHOUT ANY WARRANTY; without even the implied warranty of + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the + * GNU General Public License for more details. + * + * You should have received a copy of the GNU General Public License along + * with this program; if not, write to the Free Software Foundation, Inc., + * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. + */ + +#ifdef HAVE_CONFIG_H +#include "config.h" +#elif defined(_MSC_VER) +#include "config-msvc.h" +#endif + +#include "syshead.h" + +#include <stdio.h> +#include <unistd.h> +#include <stdlib.h> +#include <stdarg.h> +#include <string.h> +#include <setjmp.h> +#include <cmocka.h> + +#include "auth_token.c" + +#include "mock_msg.h" + +struct test_context { + struct tls_multi multi; + struct key_type kt; + struct user_pass up; + struct tls_session session; +}; + +/* Dummy functions that do nothing to mock the functionality */ +void +send_push_reply_auth_token(struct tls_multi *multi) +{ +} + +void +auth_set_client_reason(struct tls_multi *multi, const char *reason) +{ + +} + +static const char *now0key0 = "SESS_ID_AT_0123456789abcdefAAAAAAAAAAAAAAAAAAAAAE5JsQJOVfo8jnI3RL3tBaR5NkE4yPfcylFUHmHSc5Bu"; + +static const char *zeroinline = "-----BEGIN OpenVPN auth-token server key-----\n" + "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA\n" + "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA\n" + "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA=\n" + "-----END OpenVPN auth-token server key-----"; + +static const char *allx01inline = "-----BEGIN OpenVPN auth-token server key-----\n" + "AQEBAQEBAQEBAQEBAQEBAQEBAQEBAQEBAQEBAQEBAQEBAQEBAQEBAQEBAQEBAQEB\n" + "AQEBAQEBAQEBAQEBAQEBAQEBAQEBAQEBAQEBAQEBAQEBAQEBAQEBAQEBAQEBAQEB\n" + "AQEBAQEBAQEBAQEBAQEBAQEBAQEBAQEBAQEBAQEBAQE=\n" + "-----END OpenVPN auth-token server key-----"; + +static const char *random_key = "-----BEGIN OpenVPN auth-token server key-----\n" + "+mmmf7IQ5cymtMVjKYTWk8IOcYanRlpQmV9Tb3EjkHYxueBVDg3yqRgzeBlVGzNLD//rAPiOVhau\n" + "3NDBjNOQB8951bfs7Cc2mYfay92Bh2gRJ5XEM/DMfzCWN+7uU6NWoTTHr4FuojnIQtjtqVAj/JS9\n" + "w+dTSp/vYHl+c7uHd19uVRu/qLqV85+rm4tUGIjO7FfYuwyPqwmhuIsi3hs9QkSimh888FmBpoKY\n" + "/tbKVTJZmSERKti9KEwtV2eVAR0znN5KW7lCB3mHVAhN7bUpcoDjfCzYIFARxwswTFu9gFkwqUMY\n" + "I1KUOgIsVNs4llACioeXplYekWETR+YkJwDc/A==\n" + "-----END OpenVPN auth-token server key-----"; + +static const char *random_token = "SESS_ID_AT_ThhRItzOKNKrh3dfAAAAAFwzHpwAAAAAXDMenDdrq0RoH3dkA1f7O3wO+7kZcx2DusVZrRmFlWQM9HOb"; + + +static int +setup(void **state) +{ + struct test_context *ctx = calloc(1, sizeof(*ctx)); + *state = ctx; + + struct key key = { 0 }; + + ctx->kt = auth_token_kt(); + if (!ctx->kt.digest) + { + return 0; + } + ctx->multi.opt.auth_token_generate = true; + ctx->multi.opt.auth_token_lifetime = 3000; + + ctx->session.opt = calloc(1, sizeof(struct tls_options)); + ctx->session.opt->renegotiate_seconds = 120; + ctx->session.opt->auth_token_lifetime = 3000; + + strcpy(ctx->up.username, "test user name"); + strcpy(ctx->up.password, "ignored"); + + init_key_ctx(&ctx->multi.opt.auth_token_key, &key, &ctx->kt, false, "TEST"); + + now = 0; + return 0; +} + +static int +teardown(void **state) +{ + struct test_context *ctx = (struct test_context *) *state; + + free_key_ctx(&ctx->multi.opt.auth_token_key); + wipe_auth_token(&ctx->multi); + + free(ctx->session.opt); + free(ctx); + + return 0; +} + +static void +auth_token_basic_test(void **state) +{ + struct test_context *ctx = (struct test_context *) *state; + + generate_auth_token(&ctx->up, &ctx->multi); + strcpy(ctx->up.password, ctx->multi.auth_token); + assert_int_equal(verify_auth_token(&ctx->up, &ctx->multi, &ctx->session), + AUTH_TOKEN_HMAC_OK); +} + +static void +auth_token_fail_invalid_key(void **state) +{ + struct test_context *ctx = (struct test_context *) *state; + + generate_auth_token(&ctx->up, &ctx->multi); + strcpy(ctx->up.password, ctx->multi.auth_token); + assert_int_equal(verify_auth_token(&ctx->up, &ctx->multi, &ctx->session), + AUTH_TOKEN_HMAC_OK); + + /* Change auth-token key */ + struct key key; + memset(&key, '1', sizeof(key)); + free_key_ctx(&ctx->multi.opt.auth_token_key); + init_key_ctx(&ctx->multi.opt.auth_token_key, &key, &ctx->kt, false, "TEST"); + + assert_int_equal(verify_auth_token(&ctx->up, &ctx->multi, &ctx->session), 0); + + /* Load original test key again */ + memset(&key, 0, sizeof(key)); + free_key_ctx(&ctx->multi.opt.auth_token_key); + init_key_ctx(&ctx->multi.opt.auth_token_key, &key, &ctx->kt, false, "TEST"); + assert_int_equal(verify_auth_token(&ctx->up, &ctx->multi, &ctx->session), + AUTH_TOKEN_HMAC_OK); + +} + +static void +auth_token_test_timeout(void **state) +{ + struct test_context *ctx = (struct test_context *) *state; + + now = 100000; + generate_auth_token(&ctx->up, &ctx->multi); + strcpy(ctx->up.password, ctx->multi.auth_token); + + /* No time has passed */ + assert_int_equal(verify_auth_token(&ctx->up, &ctx->multi, &ctx->session), + AUTH_TOKEN_HMAC_OK); + + /* Token before validity, should be rejected */ + now = 100000 - 100; + assert_int_equal(verify_auth_token(&ctx->up, &ctx->multi, &ctx->session), + AUTH_TOKEN_HMAC_OK|AUTH_TOKEN_EXPIRED); + + /* Token still in validity, should be accepted */ + now = 100000 + 2*ctx->session.opt->renegotiate_seconds - 20; + assert_int_equal(verify_auth_token(&ctx->up, &ctx->multi, &ctx->session), + AUTH_TOKEN_HMAC_OK); + + /* Token past validity, should be rejected */ + now = 100000 + 2*ctx->session.opt->renegotiate_seconds + 20; + assert_int_equal(verify_auth_token(&ctx->up, &ctx->multi, &ctx->session), + AUTH_TOKEN_HMAC_OK|AUTH_TOKEN_EXPIRED); + + /* Check if the mode for a client that never updates its token works */ + ctx->multi.auth_token_initial = strdup(ctx->up.password); + assert_int_equal(verify_auth_token(&ctx->up, &ctx->multi, &ctx->session), + AUTH_TOKEN_HMAC_OK); + + /* But not when we reached our timeout */ + now = 100000 + ctx->session.opt->auth_token_lifetime + 1; + assert_int_equal(verify_auth_token(&ctx->up, &ctx->multi, &ctx->session), + AUTH_TOKEN_HMAC_OK|AUTH_TOKEN_EXPIRED); + + free(ctx->multi.auth_token_initial); + ctx->multi.auth_token_initial = NULL; + + /* regenerate the token util it hits the expiry */ + now = 100000; + while (now < 100000 + ctx->session.opt->auth_token_lifetime + 1) + { + assert_int_equal(verify_auth_token(&ctx->up, &ctx->multi, &ctx->session), + AUTH_TOKEN_HMAC_OK); + generate_auth_token(&ctx->up, &ctx->multi); + strcpy(ctx->up.password, ctx->multi.auth_token); + now += ctx->session.opt->renegotiate_seconds; + } + + + assert_int_equal(verify_auth_token(&ctx->up, &ctx->multi, &ctx->session), + AUTH_TOKEN_HMAC_OK|AUTH_TOKEN_EXPIRED); + ctx->multi.opt.auth_token_lifetime = 0; + + /* Non expiring token should be fine */ + assert_int_equal(verify_auth_token(&ctx->up, &ctx->multi, &ctx->session), + AUTH_TOKEN_HMAC_OK); +} + +static void +zerohmac(char *token) +{ + char *hmacstart = token + AUTH_TOKEN_SESSION_ID_LEN + + strlen(SESSION_ID_PREFIX) + 2*sizeof(uint64_t); + memset(hmacstart, 0x8d, strlen(hmacstart)); +} + +static void +auth_token_test_known_keys(void **state) +{ + struct test_context *ctx = (struct test_context *) *state; + + now = 0; + /* Preload the session id so the same session id is used here */ + ctx->multi.auth_token = strdup(now0key0); + + /* Zero the hmac part to ensure we have a newly generated token */ + zerohmac(ctx->multi.auth_token); + + generate_auth_token(&ctx->up, &ctx->multi); + + assert_string_equal(now0key0, ctx->multi.auth_token); + + strcpy(ctx->up.password, ctx->multi.auth_token); + assert_int_equal(verify_auth_token(&ctx->up, &ctx->multi, &ctx->session), + AUTH_TOKEN_HMAC_OK); +} + +static const char *lastsesion_statevalue; +void +setenv_str(struct env_set *es, const char *name, const char *value) +{ + if (streq(name, "session_state")) + { + lastsesion_statevalue = value; + } +} + +static void +auth_token_test_empty_user(void **state) +{ + struct test_context *ctx = (struct test_context *) *state; + + CLEAR(ctx->up.username); + now = 0; + + generate_auth_token(&ctx->up, &ctx->multi); + strcpy(ctx->up.password, ctx->multi.auth_token); + assert_int_equal(verify_auth_token(&ctx->up, &ctx->multi, &ctx->session), + AUTH_TOKEN_HMAC_OK); + + now = 100000; + assert_int_equal(verify_auth_token(&ctx->up, &ctx->multi, &ctx->session), + AUTH_TOKEN_HMAC_OK|AUTH_TOKEN_EXPIRED); + strcpy(ctx->up.username, "test user name"); + + now = 0; + assert_int_equal(verify_auth_token(&ctx->up, &ctx->multi, &ctx->session), + AUTH_TOKEN_HMAC_OK|AUTH_TOKEN_VALID_EMPTYUSER); + + strcpy(ctx->up.username, "test user name"); + now = 100000; + assert_int_equal(verify_auth_token(&ctx->up, &ctx->multi, &ctx->session), + AUTH_TOKEN_HMAC_OK|AUTH_TOKEN_EXPIRED|AUTH_TOKEN_VALID_EMPTYUSER); + + zerohmac(ctx->up.password); + assert_int_equal(verify_auth_token(&ctx->up, &ctx->multi, &ctx->session), + 0); +} + +static void +auth_token_test_env(void **state) +{ + struct test_context *ctx = (struct test_context *) *state; + + ctx->multi.auth_token_state_flags = 0; + ctx->multi.auth_token = NULL; + add_session_token_env(&ctx->session, &ctx->multi, &ctx->up); + assert_string_equal(lastsesion_statevalue, "Initial"); + + ctx->multi.auth_token_state_flags = 0; + strcpy(ctx->up.password, now0key0); + add_session_token_env(&ctx->session, &ctx->multi, &ctx->up); + assert_string_equal(lastsesion_statevalue, "Invalid"); + + ctx->multi.auth_token_state_flags = AUTH_TOKEN_HMAC_OK; + add_session_token_env(&ctx->session, &ctx->multi, &ctx->up); + assert_string_equal(lastsesion_statevalue, "Authenticated"); + + ctx->multi.auth_token_state_flags = AUTH_TOKEN_HMAC_OK|AUTH_TOKEN_EXPIRED; + add_session_token_env(&ctx->session, &ctx->multi, &ctx->up); + assert_string_equal(lastsesion_statevalue, "Expired"); + + ctx->multi.auth_token_state_flags = AUTH_TOKEN_HMAC_OK|AUTH_TOKEN_VALID_EMPTYUSER; + add_session_token_env(&ctx->session, &ctx->multi, &ctx->up); + assert_string_equal(lastsesion_statevalue, "AuthenticatedEmptyUser"); + + ctx->multi.auth_token_state_flags = AUTH_TOKEN_HMAC_OK|AUTH_TOKEN_EXPIRED|AUTH_TOKEN_VALID_EMPTYUSER; + add_session_token_env(&ctx->session, &ctx->multi, &ctx->up); + assert_string_equal(lastsesion_statevalue, "ExpiredEmptyUser"); +} + +static void +auth_token_test_random_keys(void **state) +{ + struct test_context *ctx = (struct test_context *) *state; + + now = 0x5c331e9c; + /* Preload the session id so the same session id is used here */ + ctx->multi.auth_token = strdup(random_token); + + free_key_ctx(&ctx->multi.opt.auth_token_key); + auth_token_init_secret(&ctx->multi.opt.auth_token_key, random_key, true); + + /* Zero the hmac part to ensure we have a newly generated token */ + zerohmac(ctx->multi.auth_token); + + generate_auth_token(&ctx->up, &ctx->multi); + + assert_string_equal(random_token, ctx->multi.auth_token); + + strcpy(ctx->up.password, ctx->multi.auth_token); + assert_true(verify_auth_token(&ctx->up, &ctx->multi, &ctx->session)); +} + + +static void +auth_token_test_key_load(void **state) +{ + struct test_context *ctx = (struct test_context *) *state; + + free_key_ctx(&ctx->multi.opt.auth_token_key); + auth_token_init_secret(&ctx->multi.opt.auth_token_key, zeroinline, true); + strcpy(ctx->up.password, now0key0); + assert_true(verify_auth_token(&ctx->up, &ctx->multi, &ctx->session)); + + free_key_ctx(&ctx->multi.opt.auth_token_key); + auth_token_init_secret(&ctx->multi.opt.auth_token_key, allx01inline, true); + assert_false(verify_auth_token(&ctx->up, &ctx->multi, &ctx->session)); +} + +int +main(void) +{ + const struct CMUnitTest tests[] = { + cmocka_unit_test_setup_teardown(auth_token_basic_test, setup, teardown), + cmocka_unit_test_setup_teardown(auth_token_fail_invalid_key, setup, teardown), + cmocka_unit_test_setup_teardown(auth_token_test_known_keys, setup, teardown), + cmocka_unit_test_setup_teardown(auth_token_test_empty_user, setup, teardown), + cmocka_unit_test_setup_teardown(auth_token_test_env, setup, teardown), + cmocka_unit_test_setup_teardown(auth_token_test_random_keys, setup, teardown), + cmocka_unit_test_setup_teardown(auth_token_test_key_load, setup, teardown), + cmocka_unit_test_setup_teardown(auth_token_test_timeout, setup, teardown), + }; + +#if defined(ENABLE_CRYPTO_OPENSSL) + OpenSSL_add_all_algorithms(); +#endif + + int ret = cmocka_run_group_tests_name("auth-token tests", tests, NULL, NULL); + + return ret; +} diff --git a/tests/unit_tests/openvpn/test_buffer.c b/tests/unit_tests/openvpn/test_buffer.c index d083b78..d2188b0 100644 --- a/tests/unit_tests/openvpn/test_buffer.c +++ b/tests/unit_tests/openvpn/test_buffer.c @@ -33,6 +33,7 @@ #include <cmocka.h> #include "buffer.h" +#include "buffer.c" static void test_buffer_strprefix(void **state) @@ -62,7 +63,8 @@ struct test_buffer_list_aggregate_ctx { struct buffer_list *empty_buffers; }; -static int test_buffer_list_setup(void **state) +static int +test_buffer_list_setup(void **state) { struct test_buffer_list_aggregate_ctx *ctx = calloc(1, sizeof(*ctx)); ctx->empty = buffer_list_new(0); @@ -85,7 +87,8 @@ static int test_buffer_list_setup(void **state) return 0; } -static int test_buffer_list_teardown(void **state) +static int +test_buffer_list_teardown(void **state) { struct test_buffer_list_aggregate_ctx *ctx = *state; @@ -197,6 +200,48 @@ test_buffer_list_aggregate_separator_emptybuffers(void **state) assert_int_equal(BLEN(buf), 0); } +static void +test_buffer_free_gc_one(void **state) +{ + struct gc_arena gc = gc_new(); + struct buffer buf = alloc_buf_gc(1024, &gc); + + assert_ptr_equal(gc.list + 1, buf.data); + free_buf_gc(&buf, &gc); + assert_null(gc.list); + + gc_free(&gc); +} + +static void +test_buffer_free_gc_two(void **state) +{ + struct gc_arena gc = gc_new(); + struct buffer buf1 = alloc_buf_gc(1024, &gc); + struct buffer buf2 = alloc_buf_gc(1024, &gc); + struct buffer buf3 = alloc_buf_gc(1024, &gc); + + struct gc_entry *e; + + e = gc.list; + + assert_ptr_equal(e + 1, buf3.data); + assert_ptr_equal(e->next + 1, buf2.data); + assert_ptr_equal(e->next->next + 1, buf1.data); + + free_buf_gc(&buf2, &gc); + + assert_non_null(gc.list); + + while (e) + { + assert_ptr_not_equal(e + 1, buf2.data); + e = e->next; + } + + gc_free(&gc); +} + int main(void) { @@ -226,6 +271,8 @@ main(void) cmocka_unit_test_setup_teardown(test_buffer_list_aggregate_separator_emptybuffers, test_buffer_list_setup, test_buffer_list_teardown), + cmocka_unit_test(test_buffer_free_gc_one), + cmocka_unit_test(test_buffer_free_gc_two), }; return cmocka_run_group_tests_name("buffer", tests, NULL, NULL); diff --git a/tests/unit_tests/openvpn/test_crypto.c b/tests/unit_tests/openvpn/test_crypto.c new file mode 100644 index 0000000..ea9b99b --- /dev/null +++ b/tests/unit_tests/openvpn/test_crypto.c @@ -0,0 +1,158 @@ +/* + * OpenVPN -- An application to securely tunnel IP networks + * over a single UDP port, with support for SSL/TLS-based + * session authentication and key exchange, + * packet encryption, packet authentication, and + * packet compression. + * + * Copyright (C) 2016-2018 Fox Crypto B.V. <openvpn@fox-it.com> + * + * This program is free software; you can redistribute it and/or modify + * it under the terms of the GNU General Public License version 2 + * as published by the Free Software Foundation. + * + * This program is distributed in the hope that it will be useful, + * but WITHOUT ANY WARRANTY; without even the implied warranty of + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the + * GNU General Public License for more details. + * + * You should have received a copy of the GNU General Public License along + * with this program; if not, write to the Free Software Foundation, Inc., + * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. + */ + +#ifdef HAVE_CONFIG_H +#include "config.h" +#elif defined(_MSC_VER) +#include "config-msvc.h" +#endif + +#include "syshead.h" + +#include <stdio.h> +#include <unistd.h> +#include <stdlib.h> +#include <stdarg.h> +#include <string.h> +#include <setjmp.h> +#include <cmocka.h> + +#include "crypto.h" + +#include "mock_msg.h" + +static const char testtext[] = "Dummy text to test PEM encoding"; + +static void +crypto_pem_encode_decode_loopback(void **state) +{ + struct gc_arena gc = gc_new(); + struct buffer src_buf; + buf_set_read(&src_buf, (void *)testtext, sizeof(testtext)); + + uint8_t dec[sizeof(testtext)]; + struct buffer dec_buf; + buf_set_write(&dec_buf, dec, sizeof(dec)); + + struct buffer pem_buf; + + assert_true(crypto_pem_encode("TESTKEYNAME", &pem_buf, &src_buf, &gc)); + assert_true(BLEN(&src_buf) < BLEN(&pem_buf)); + + /* Wrong key name */ + assert_false(crypto_pem_decode("WRONGNAME", &dec_buf, &pem_buf)); + + assert_true(crypto_pem_decode("TESTKEYNAME", &dec_buf, &pem_buf)); + assert_int_equal(BLEN(&src_buf), BLEN(&dec_buf)); + assert_memory_equal(BPTR(&src_buf), BPTR(&dec_buf), BLEN(&src_buf)); + + gc_free(&gc); +} + +static void +test_translate_cipher(const char *ciphername, const char *openvpn_name) +{ + const cipher_kt_t *cipher = cipher_kt_get(ciphername); + + /* Empty cipher is fine */ + if (!cipher) + { + return; + } + + const char *kt_name = cipher_kt_name(cipher); + + assert_string_equal(kt_name, openvpn_name); +} + +static void +test_cipher_names(const char *ciphername, const char *openvpn_name) +{ + struct gc_arena gc = gc_new(); + /* Go through some variants, if the cipher library accepts these, they + * should be normalised to the openvpn name */ + char *upper = string_alloc(ciphername, &gc); + char *lower = string_alloc(ciphername, &gc); + char *random_case = string_alloc(ciphername, &gc); + + for (int i = 0; i < strlen(ciphername); i++) + { + upper[i] = toupper(ciphername[i]); + lower[i] = tolower(ciphername[i]); + if (rand() & 0x1) + { + random_case[i] = upper[i]; + } + else + { + random_case[i] = lower[i]; + } + } + + if (!openvpn_name) + { + openvpn_name = upper; + } + + test_translate_cipher(upper, openvpn_name); + test_translate_cipher(lower, openvpn_name); + test_translate_cipher(random_case, openvpn_name); + test_translate_cipher(ciphername, openvpn_name); + + + gc_free(&gc); +} + +static void +crypto_translate_cipher_names(void **state) +{ + /* Test that a number of ciphers to see that they turn out correctly */ + test_cipher_names("BF-CBC", NULL); + test_cipher_names("BLOWFISH-CBC", "BF-CBC"); + test_cipher_names("Chacha20-Poly1305", NULL); + test_cipher_names("AES-128-GCM", NULL); + test_cipher_names("AES-128-CBC", NULL); + test_cipher_names("CAMELLIA-128-CFB128", "CAMELLIA-128-CFB"); + test_cipher_names("id-aes256-GCM", "AES-256-GCM"); +} + +int +main(void) +{ + const struct CMUnitTest tests[] = { + cmocka_unit_test(crypto_pem_encode_decode_loopback), + cmocka_unit_test(crypto_translate_cipher_names), + }; + +#if defined(ENABLE_CRYPTO_OPENSSL) + OpenSSL_add_all_algorithms(); +#endif + + int ret = cmocka_run_group_tests_name("crypto tests", tests, NULL, NULL); + +#if defined(ENABLE_CRYPTO_OPENSSL) + EVP_cleanup(); +#endif + + return ret; +} diff --git a/tests/unit_tests/openvpn/test_ncp.c b/tests/unit_tests/openvpn/test_ncp.c new file mode 100644 index 0000000..a4334c8 --- /dev/null +++ b/tests/unit_tests/openvpn/test_ncp.c @@ -0,0 +1,231 @@ +/* + * OpenVPN -- An application to securely tunnel IP networks + * over a single UDP port, with support for SSL/TLS-based + * session authentication and key exchange, + * packet encryption, packet authentication, and + * packet compression. + * + * Copyright (C) 2019 Arne Schwabe <arne@rfc2549.org> + * + * This program is free software; you can redistribute it and/or modify + * it under the terms of the GNU General Public License version 2 + * as published by the Free Software Foundation. + * + * This program is distributed in the hope that it will be useful, + * but WITHOUT ANY WARRANTY; without even the implied warranty of + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the + * GNU General Public License for more details. + * + * You should have received a copy of the GNU General Public License along + * with this program; if not, write to the Free Software Foundation, Inc., + * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. + */ + +#ifdef HAVE_CONFIG_H +#include "config.h" +#elif defined(_MSC_VER) +#include "config-msvc.h" +#endif + +#include "syshead.h" + +#include <stdio.h> +#include <unistd.h> +#include <stdlib.h> +#include <stdarg.h> +#include <string.h> +#include <setjmp.h> +#include <cmocka.h> + +#include "ssl_ncp.c" + +/* Defines for use in the tests and the mock parse_line() */ + +const char *bf_chacha = "BF-CBC:CHACHA20-POLY1305"; +const char *aes_ciphers = "AES-256-GCM:AES-128-GCM"; + +static void +test_check_ncp_ciphers_list(void **state) +{ + struct gc_arena gc = gc_new(); + bool have_chacha = cipher_kt_get("CHACHA20-POLY1305"); + + + + assert_string_equal(mutate_ncp_cipher_list(aes_ciphers, &gc), aes_ciphers); + + if (have_chacha) + { + assert_string_equal(mutate_ncp_cipher_list(bf_chacha, &gc), bf_chacha); + assert_string_equal(mutate_ncp_cipher_list("BF-CBC:CHACHA20-POLY1305", &gc), + bf_chacha); + } + else + { + assert_ptr_equal(mutate_ncp_cipher_list(bf_chacha, &gc), NULL); + } + + /* For testing that with OpenSSL 1.1.0+ that also accepts ciphers in + * a different spelling the normalised cipher output is the same */ + bool have_chacha_mixed_case = cipher_kt_get("ChaCha20-Poly1305"); + if (have_chacha_mixed_case) + { + assert_string_equal(mutate_ncp_cipher_list("BF-CBC:ChaCha20-Poly1305", &gc), + bf_chacha); + } + + assert_ptr_equal(mutate_ncp_cipher_list("vollbit", &gc), NULL); + assert_ptr_equal(mutate_ncp_cipher_list("AES-256-GCM:vollbit", &gc), NULL); + assert_ptr_equal(mutate_ncp_cipher_list("", &gc), NULL); + + assert_ptr_equal(mutate_ncp_cipher_list( + "ChaCha20-Poly1305:ChaCha20-Poly1305:ChaCha20-Poly1305:" + "ChaCha20-Poly1305:ChaCha20-Poly1305:ChaCha20-Poly1305:" + "ChaCha20-Poly1305", &gc), NULL); + +#ifdef ENABLE_CRYPTO_OPENSSL + assert_string_equal(mutate_ncp_cipher_list("id-aes128-GCM:id-aes256-GCM", + &gc), "AES-128-GCM:AES-256-GCM"); +#else + assert_string_equal(mutate_ncp_cipher_list("BLOWFISH-CBC", + &gc), "BF-CBC"); +#endif + gc_free(&gc); +} + +static void +test_extract_client_ciphers(void **state) +{ + struct gc_arena gc = gc_new(); + const char *client_peer_info; + const char *peer_list; + + client_peer_info = "foo=bar\nIV_foo=y\nIV_NCP=2"; + peer_list = tls_peer_ncp_list(client_peer_info, &gc); + assert_string_equal(aes_ciphers,peer_list); + assert_true(tls_peer_supports_ncp(client_peer_info)); + + client_peer_info = "foo=bar\nIV_foo=y\nIV_NCP=2\nIV_CIPHERS=BF-CBC"; + peer_list = tls_peer_ncp_list(client_peer_info, &gc); + assert_string_equal("BF-CBC", peer_list); + assert_true(tls_peer_supports_ncp(client_peer_info)); + + client_peer_info = "IV_NCP=2\nIV_CIPHERS=BF-CBC:FOO-BAR\nIV_BAR=7"; + peer_list = tls_peer_ncp_list(client_peer_info, &gc); + assert_string_equal("BF-CBC:FOO-BAR", peer_list); + assert_true(tls_peer_supports_ncp(client_peer_info)); + + client_peer_info = "IV_CIPHERS=BF-CBC:FOO-BAR\nIV_BAR=7"; + peer_list = tls_peer_ncp_list(client_peer_info, &gc); + assert_string_equal("BF-CBC:FOO-BAR", peer_list); + assert_true(tls_peer_supports_ncp(client_peer_info)); + + client_peer_info = "IV_YOLO=NO\nIV_BAR=7"; + peer_list = tls_peer_ncp_list(client_peer_info, &gc); + assert_string_equal("", peer_list); + assert_false(tls_peer_supports_ncp(client_peer_info)); + + peer_list = tls_peer_ncp_list(NULL, &gc); + assert_string_equal("", peer_list); + assert_false(tls_peer_supports_ncp(client_peer_info)); + + gc_free(&gc); +} + +static void +test_poor_man(void **state) +{ + struct gc_arena gc = gc_new(); + char *best_cipher; + + const char *serverlist = "CHACHA20_POLY1305:AES-128-GCM"; + const char *serverlistbfcbc = "CHACHA20_POLY1305:AES-128-GCM:BF-CBC"; + + best_cipher = ncp_get_best_cipher(serverlist, + "IV_YOLO=NO\nIV_BAR=7", + "BF-CBC", &gc); + + assert_ptr_equal(best_cipher, NULL); + + + best_cipher = ncp_get_best_cipher(serverlistbfcbc, + "IV_YOLO=NO\nIV_BAR=7", + "BF-CBC", &gc); + + assert_string_equal(best_cipher, "BF-CBC"); + + + best_cipher = ncp_get_best_cipher(serverlist, + "IV_NCP=1\nIV_BAR=7", + "AES-128-GCM", &gc); + + assert_string_equal(best_cipher, "AES-128-GCM"); + + best_cipher = ncp_get_best_cipher(serverlist, NULL, + "AES-128-GCM", &gc); + + assert_string_equal(best_cipher, "AES-128-GCM"); + + best_cipher = ncp_get_best_cipher(serverlist, NULL,NULL, &gc); + assert_ptr_equal(best_cipher, NULL); + + gc_free(&gc); +} + + +static void +test_ncp_best(void **state) +{ + struct gc_arena gc = gc_new(); + char *best_cipher; + + const char *serverlist = "CHACHA20_POLY1305:AES-128-GCM:AES-256-GCM"; + + best_cipher = ncp_get_best_cipher(serverlist, + "IV_YOLO=NO\nIV_NCP=2\nIV_BAR=7", + "BF-CBC", &gc); + + assert_string_equal(best_cipher, "AES-128-GCM"); + + /* Best cipher is in --cipher of client */ + best_cipher = ncp_get_best_cipher(serverlist, "IV_NCP=2\nIV_BAR=7", + "CHACHA20_POLY1305", &gc); + + assert_string_equal(best_cipher, "CHACHA20_POLY1305"); + + /* Best cipher is in --cipher of client */ + best_cipher = ncp_get_best_cipher(serverlist, "IV_CIPHERS=AES-128-GCM", + "AES-256-CBC", &gc); + + + assert_string_equal(best_cipher, "AES-128-GCM"); + + /* IV_NCP=2 should be ignored if IV_CIPHERS is sent */ + best_cipher = ncp_get_best_cipher(serverlist, + "IV_FOO=7\nIV_CIPHERS=AES-256-GCM\nIV_NCP=2", + "AES-256-CBC", &gc); + + assert_string_equal(best_cipher, "AES-256-GCM"); + + + gc_free(&gc); +} + + + +const struct CMUnitTest ncp_tests[] = { + cmocka_unit_test(test_check_ncp_ciphers_list), + cmocka_unit_test(test_extract_client_ciphers), + cmocka_unit_test(test_poor_man), + cmocka_unit_test(test_ncp_best) +}; + + +int +main(void) +{ +#if defined(ENABLE_CRYPTO_OPENSSL) + OpenSSL_add_all_algorithms(); +#endif + return cmocka_run_group_tests(ncp_tests, NULL, NULL); +} diff --git a/tests/unit_tests/openvpn/test_networking.c b/tests/unit_tests/openvpn/test_networking.c new file mode 100644 index 0000000..e7c148f --- /dev/null +++ b/tests/unit_tests/openvpn/test_networking.c @@ -0,0 +1,253 @@ +#include "config.h" +#include "syshead.h" +#include "networking.h" + + +static char *iface = "dummy0"; + +static int +net__iface_up(bool up) +{ + printf("CMD: ip link set %s %s\n", iface, up ? "up" : "down"); + + return net_iface_up(NULL, iface, up); +} + +static int +net__iface_mtu_set(int mtu) +{ + printf("CMD: ip link set %s mtu %d\n", iface, mtu); + + return net_iface_mtu_set(NULL, iface, mtu); +} + +static int +net__addr_v4_add(const char *addr_str, int prefixlen) +{ + in_addr_t addr; + int ret; + + ret = inet_pton(AF_INET, addr_str, &addr); + if (ret != 1) + { + return -1; + } + + addr = ntohl(addr); + + printf("CMD: ip addr add %s/%d dev %s\n", addr_str, prefixlen, iface); + + return net_addr_v4_add(NULL, iface, &addr, prefixlen); +} + +static int +net__addr_v6_add(const char *addr_str, int prefixlen) +{ + struct in6_addr addr; + int ret; + + ret = inet_pton(AF_INET6, addr_str, &addr); + if (ret != 1) + { + return -1; + } + + printf("CMD: ip -6 addr add %s/%d dev %s\n", addr_str, prefixlen, iface); + + return net_addr_v6_add(NULL, iface, &addr, prefixlen); +} + +static int +net__route_v4_add(const char *dst_str, int prefixlen, int metric) +{ + in_addr_t dst; + int ret; + + if (!dst_str) + { + return -1; + } + + ret = inet_pton(AF_INET, dst_str, &dst); + if (ret != 1) + { + return -1; + } + + dst = ntohl(dst); + + printf("CMD: ip route add %s/%d dev %s", dst_str, prefixlen, iface); + if (metric > 0) + { + printf(" metric %d", metric); + } + printf("\n"); + + return net_route_v4_add(NULL, &dst, prefixlen, NULL, iface, 0, metric); + +} + +static int +net__route_v4_add_gw(const char *dst_str, int prefixlen, const char *gw_str, + int metric) +{ + in_addr_t dst, gw; + int ret; + + if (!dst_str || !gw_str) + { + return -1; + } + + ret = inet_pton(AF_INET, dst_str, &dst); + if (ret != 1) + { + return -1; + } + + ret = inet_pton(AF_INET, gw_str, &gw); + if (ret != 1) + { + return -1; + } + + dst = ntohl(dst); + gw = ntohl(gw); + + printf("CMD: ip route add %s/%d dev %s via %s", dst_str, prefixlen, iface, + gw_str); + if (metric > 0) + { + printf(" metric %d", metric); + } + printf("\n"); + + return net_route_v4_add(NULL, &dst, prefixlen, &gw, iface, 0, metric); +} + +static int +net__route_v6_add(const char *dst_str, int prefixlen, int metric) +{ + struct in6_addr dst; + int ret; + + if (!dst_str) + { + return -1; + } + + ret = inet_pton(AF_INET6, dst_str, &dst); + if (ret != 1) + { + return -1; + } + + printf("CMD: ip -6 route add %s/%d dev %s", dst_str, prefixlen, iface); + if (metric > 0) + { + printf(" metric %d", metric); + } + printf("\n"); + + return net_route_v6_add(NULL, &dst, prefixlen, NULL, iface, 0, metric); + +} + +static int +net__route_v6_add_gw(const char *dst_str, int prefixlen, const char *gw_str, + int metric) +{ + struct in6_addr dst, gw; + int ret; + + if (!dst_str || !gw_str) + { + return -1; + } + + ret = inet_pton(AF_INET6, dst_str, &dst); + if (ret != 1) + { + return -1; + } + + ret = inet_pton(AF_INET6, gw_str, &gw); + if (ret != 1) + { + return -1; + } + + printf("CMD: ip -6 route add %s/%d dev %s via %s", dst_str, prefixlen, + iface, gw_str); + if (metric > 0) + { + printf(" metric %d", metric); + } + printf("\n"); + + return net_route_v6_add(NULL, &dst, prefixlen, &gw, iface, 0, metric); +} + +static void +usage(char *name) +{ + printf("Usage: %s <0-7>\n", name); +} + +int +main(int argc, char *argv[]) +{ + int test; + + if (argc < 2) + { + usage(argv[0]); + return -1; + } + + /* the t_net script can use this command to perform a dry-run test */ + if (strcmp(argv[1], "test") == 0) + { + return 0; + } + + if (argc > 3) + { + iface = argv[2]; + } + + test = atoi(argv[1]); + switch (test) + { + case 0: + return net__iface_up(true); + + case 1: + return net__iface_mtu_set(1281); + + case 2: + return net__addr_v4_add("10.255.255.1", 24); + + case 3: + return net__addr_v6_add("2001::1", 64); + + case 4: + return net__route_v4_add("11.11.11.0", 24, 0); + + case 5: + return net__route_v4_add_gw("11.11.12.0", 24, "10.255.255.2", 0); + + case 6: + return net__route_v6_add("2001:babe:cafe:babe::", 64, 600); + + case 7: + return net__route_v6_add_gw("2001:cafe:babe::", 48, "2001::2", 600); + + default: + printf("invalid test: %d\n", test); + break; + } + + usage(argv[0]); + return -1; +} diff --git a/tests/unit_tests/openvpn/test_packet_id.c b/tests/unit_tests/openvpn/test_packet_id.c index ba420c4..52bceb0 100644 --- a/tests/unit_tests/openvpn/test_packet_id.c +++ b/tests/unit_tests/openvpn/test_packet_id.c @@ -49,9 +49,10 @@ struct test_packet_id_write_data { }; static int -test_packet_id_write_setup(void **state) { +test_packet_id_write_setup(void **state) +{ struct test_packet_id_write_data *data = - calloc(1, sizeof(struct test_packet_id_write_data)); + calloc(1, sizeof(struct test_packet_id_write_data)); if (!data) { @@ -66,7 +67,8 @@ test_packet_id_write_setup(void **state) { } static int -test_packet_id_write_teardown(void **state) { +test_packet_id_write_teardown(void **state) +{ free(*state); return 0; } @@ -155,20 +157,27 @@ test_packet_id_write_long_wrap(void **state) } int -main(void) { +main(void) +{ const struct CMUnitTest tests[] = { - cmocka_unit_test_setup_teardown(test_packet_id_write_short, - test_packet_id_write_setup, test_packet_id_write_teardown), - cmocka_unit_test_setup_teardown(test_packet_id_write_long, - test_packet_id_write_setup, test_packet_id_write_teardown), - cmocka_unit_test_setup_teardown(test_packet_id_write_short_prepend, - test_packet_id_write_setup, test_packet_id_write_teardown), - cmocka_unit_test_setup_teardown(test_packet_id_write_long_prepend, - test_packet_id_write_setup, test_packet_id_write_teardown), - cmocka_unit_test_setup_teardown(test_packet_id_write_short_wrap, - test_packet_id_write_setup, test_packet_id_write_teardown), - cmocka_unit_test_setup_teardown(test_packet_id_write_long_wrap, - test_packet_id_write_setup, test_packet_id_write_teardown), + cmocka_unit_test_setup_teardown(test_packet_id_write_short, + test_packet_id_write_setup, + test_packet_id_write_teardown), + cmocka_unit_test_setup_teardown(test_packet_id_write_long, + test_packet_id_write_setup, + test_packet_id_write_teardown), + cmocka_unit_test_setup_teardown(test_packet_id_write_short_prepend, + test_packet_id_write_setup, + test_packet_id_write_teardown), + cmocka_unit_test_setup_teardown(test_packet_id_write_long_prepend, + test_packet_id_write_setup, + test_packet_id_write_teardown), + cmocka_unit_test_setup_teardown(test_packet_id_write_short_wrap, + test_packet_id_write_setup, + test_packet_id_write_teardown), + cmocka_unit_test_setup_teardown(test_packet_id_write_long_wrap, + test_packet_id_write_setup, + test_packet_id_write_teardown), }; return cmocka_run_group_tests_name("packet_id tests", tests, NULL, NULL); diff --git a/tests/unit_tests/openvpn/test_tls_crypt.c b/tests/unit_tests/openvpn/test_tls_crypt.c index f5618f8..218772e 100644 --- a/tests/unit_tests/openvpn/test_tls_crypt.c +++ b/tests/unit_tests/openvpn/test_tls_crypt.c @@ -27,8 +27,6 @@ #include "config-msvc.h" #endif -#ifdef ENABLE_CRYPTO - #include "syshead.h" #include <stdio.h> @@ -45,9 +43,98 @@ #define TESTBUF_SIZE 128 -const char plaintext_short[1]; +/* Defines for use in the tests and the mock parse_line() */ +#define PATH1 "/s p a c e" +#define PATH2 "/foo bar/baz" +#define PARAM1 "param1" +#define PARAM2 "param two" + +static const char *test_server_key = \ + "-----BEGIN OpenVPN tls-crypt-v2 server key-----\n" + "AAECAwQFBgcICQoLDA0ODxAREhMUFRYXGBkaGxwdHh8gISIjJCUmJygpKissLS4v\n" + "MDEyMzQ1Njc4OTo7PD0+P0BBQkNERUZHSElKS0xNTk9QUVJTVFVWV1hZWltcXV5f\n" + "YGFiY2RlZmdoaWprbG1ub3BxcnN0dXZ3eHl6e3x9fn8=\n" + "-----END OpenVPN tls-crypt-v2 server key-----\n"; + +static const char *test_client_key = \ + "-----BEGIN OpenVPN tls-crypt-v2 client key-----\n" + "AAECAwQFBgcICQoLDA0ODxAREhMUFRYXGBkaGxwdHh8gISIjJCUmJygpKissLS4v\n" + "MDEyMzQ1Njc4OTo7PD0+P0BBQkNERUZHSElKS0xNTk9QUVJTVFVWV1hZWltcXV5f\n" + "YGFiY2RlZmdoaWprbG1ub3BxcnN0dXZ3eHl6e3x9fn+AgYKDhIWGh4iJiouMjY6P\n" + "kJGSk5SVlpeYmZqbnJ2en6ChoqOkpaanqKmqq6ytrq+wsbKztLW2t7i5uru8vb6/\n" + "wMHCw8TFxsfIycrLzM3Oz9DR0tPU1dbX2Nna29zd3t/g4eLj5OXm5+jp6uvs7e7v\n" + "8PHy8/T19vf4+fr7/P3+/xd9pcB0qUYZsWvkrLcfGmzPJPM8a7r0mEWdXwbDadSV\n" + "LHg5bv2TwlmPR3HgaMr8o9LTh9hxUTkrH3S0PfKRNwcso86ua/dBFTyXsM9tg4aw\n" + "3dS6ogH9AkaT+kRRDgNcKWkQCbwmJK2JlfkXHBwbAtmn78AkNuho6QCFqCdqGab3\n" + "zh2vheFqGMPdGpukbFrT3rcO3VLxUeG+RdzXiMTCpJSovFBP1lDkYwYJPnz6daEh\n" + "j0TzJ3BVru9W3CpotdNt7u09knxAfpCxjtrP3semsDew/gTBtcfQ/OoTFyFHnN5k\n" + "RZ+q17SC4nba3Pp8/Fs0+hSbv2tJozoD8SElFq7SIWJsciTYh8q8f5yQxjdt4Wxu\n" + "/Z5wtPCAZ0tOzj4ItTI77fBOYRTfEayzHgEr\n" + "-----END OpenVPN tls-crypt-v2 client key-----\n"; + + +/* Has custom metadata of AABBCCDD (base64) */ +static const char *test_client_key_metadata = \ + "-----BEGIN OpenVPN tls-crypt-v2 client key-----\n" + "AAECAwQFBgcICQoLDA0ODxAREhMUFRYXGBkaGxwdHh8gISIjJCUmJygpKissLS4v\n" + "MDEyMzQ1Njc4OTo7PD0+P0BBQkNERUZHSElKS0xNTk9QUVJTVFVWV1hZWltcXV5f\n" + "YGFiY2RlZmdoaWprbG1ub3BxcnN0dXZ3eHl6e3x9fn+AgYKDhIWGh4iJiouMjY6P\n" + "kJGSk5SVlpeYmZqbnJ2en6ChoqOkpaanqKmqq6ytrq+wsbKztLW2t7i5uru8vb6/\n" + "wMHCw8TFxsfIycrLzM3Oz9DR0tPU1dbX2Nna29zd3t/g4eLj5OXm5+jp6uvs7e7v\n" + "8PHy8/T19vf4+fr7/P3+/2ntp1WCqhcLjJQY/igkjNt3Yb6i0neqFkfrOp2UCDcz\n" + "6RSJtPLZbvOOKUHk2qwxPYUsFCnz/IWV6/ZiLRrabzUpS8oSN1HS6P7qqAdrHKgf\n" + "hVTHasdSf2UdMTPC7HBgnP9Ll0FhKN0h7vSzbbt7QM7wH9mr1ecc/Mt0SYW2lpwA\n" + "aJObYGTyk6hTgWm0g/MLrworLrezTqUHBZzVsu+LDyqLWK1lzJNd66MuNOsGA4YF\n" + "fbCsDh8n3H+Cw1k5YNBZDYYJOtVUgBWXheO6vgoOmqDdI0dAQ3hVo9DE+SkCFjgf\n" + "l4FY2yLEh9ZVZZrl1eD1Owh/X178CkHrBJYl9LNQSyQEKlDGWwBLQ/pY3qtjctr3\n" + "pV62MPQdBo+1lcsjDCJVQA6XUyltas4BKQ==\n" + "-----END OpenVPN tls-crypt-v2 client key-----\n"; + +int +__wrap_parse_line(const char *line, char **p, const int n, const char *file, + const int line_num, int msglevel, struct gc_arena *gc) +{ + p[0] = PATH1 PATH2; + p[1] = PARAM1; + p[2] = PARAM2; + return 3; +} + +bool +__wrap_buffer_write_file(const char *filename, const struct buffer *buf) +{ + const char *pem = BSTR(buf); + check_expected(filename); + check_expected(pem); + + return mock(); +} + +struct buffer +__wrap_buffer_read_from_file(const char *filename, struct gc_arena *gc) +{ + check_expected(filename); -struct test_context { + const char *pem_str = (const char *) mock(); + struct buffer ret = alloc_buf_gc(strlen(pem_str) + 1, gc); + buf_write(&ret, pem_str, strlen(pem_str) + 1); + + return ret; +} + + +/** Predictable random for tests */ +int +__wrap_rand_bytes(uint8_t *output, int len) +{ + for (int i = 0; i < len; i++) + { + output[i] = i; + } + return true; +} + +struct test_tls_crypt_context { struct crypto_options co; struct key_type kt; struct buffer source; @@ -56,8 +143,9 @@ struct test_context { }; static int -setup(void **state) { - struct test_context *ctx = calloc(1, sizeof(*ctx)); +test_tls_crypt_setup(void **state) +{ + struct test_tls_crypt_context *ctx = calloc(1, sizeof(*ctx)); *state = ctx; struct key key = { 0 }; @@ -77,17 +165,21 @@ setup(void **state) { ctx->unwrapped = alloc_buf(TESTBUF_SIZE); /* Write test plaintext */ - buf_write(&ctx->source, plaintext_short, sizeof(plaintext_short)); + const char *plaintext = "1234567890"; + buf_write(&ctx->source, plaintext, strlen(plaintext)); - /* Write dummy opcode and session id */ - buf_write(&ctx->ciphertext, "012345678", 1 + 8); + /* Write test ciphertext */ + const char *ciphertext = "012345678"; + buf_write(&ctx->ciphertext, ciphertext, strlen(ciphertext)); return 0; } static int -teardown(void **state) { - struct test_context *ctx = (struct test_context *) *state; +test_tls_crypt_teardown(void **state) +{ + struct test_tls_crypt_context *ctx = + (struct test_tls_crypt_context *)*state; free_buf(&ctx->source); free_buf(&ctx->ciphertext); @@ -100,7 +192,8 @@ teardown(void **state) { return 0; } -static void skip_if_tls_crypt_not_supported(struct test_context *ctx) +static void +skip_if_tls_crypt_not_supported(struct test_tls_crypt_context *ctx) { if (!ctx->kt.cipher || !ctx->kt.digest) { @@ -112,8 +205,9 @@ static void skip_if_tls_crypt_not_supported(struct test_context *ctx) * Check that short messages are successfully wrapped-and-unwrapped. */ static void -tls_crypt_loopback(void **state) { - struct test_context *ctx = (struct test_context *) *state; +tls_crypt_loopback(void **state) +{ + struct test_tls_crypt_context *ctx = (struct test_tls_crypt_context *) *state; skip_if_tls_crypt_not_supported(ctx); @@ -129,8 +223,9 @@ tls_crypt_loopback(void **state) { * Check that zero-byte messages are successfully wrapped-and-unwrapped. */ static void -tls_crypt_loopback_zero_len(void **state) { - struct test_context *ctx = (struct test_context *) *state; +tls_crypt_loopback_zero_len(void **state) +{ + struct test_tls_crypt_context *ctx = (struct test_tls_crypt_context *) *state; skip_if_tls_crypt_not_supported(ctx); @@ -148,8 +243,9 @@ tls_crypt_loopback_zero_len(void **state) { * Check that max-length messages are successfully wrapped-and-unwrapped. */ static void -tls_crypt_loopback_max_len(void **state) { - struct test_context *ctx = (struct test_context *) *state; +tls_crypt_loopback_max_len(void **state) +{ + struct test_tls_crypt_context *ctx = (struct test_tls_crypt_context *) *state; skip_if_tls_crypt_not_supported(ctx); @@ -169,8 +265,9 @@ tls_crypt_loopback_max_len(void **state) { * Check that too-long messages are gracefully rejected. */ static void -tls_crypt_fail_msg_too_long(void **state) { - struct test_context *ctx = (struct test_context *) *state; +tls_crypt_fail_msg_too_long(void **state) +{ + struct test_tls_crypt_context *ctx = (struct test_tls_crypt_context *) *state; skip_if_tls_crypt_not_supported(ctx); @@ -185,8 +282,9 @@ tls_crypt_fail_msg_too_long(void **state) { * are not accepted. */ static void -tls_crypt_fail_invalid_key(void **state) { - struct test_context *ctx = (struct test_context *) *state; +tls_crypt_fail_invalid_key(void **state) +{ + struct test_tls_crypt_context *ctx = (struct test_tls_crypt_context *) *state; skip_if_tls_crypt_not_supported(ctx); @@ -204,8 +302,9 @@ tls_crypt_fail_invalid_key(void **state) { * Check that replayed packets are not accepted. */ static void -tls_crypt_fail_replay(void **state) { - struct test_context *ctx = (struct test_context *) *state; +tls_crypt_fail_replay(void **state) +{ + struct test_tls_crypt_context *ctx = (struct test_tls_crypt_context *) *state; skip_if_tls_crypt_not_supported(ctx); @@ -223,8 +322,9 @@ tls_crypt_fail_replay(void **state) { * know the packet ID yet. */ static void -tls_crypt_ignore_replay(void **state) { - struct test_context *ctx = (struct test_context *) *state; +tls_crypt_ignore_replay(void **state) +{ + struct test_tls_crypt_context *ctx = (struct test_tls_crypt_context *) *state; skip_if_tls_crypt_not_supported(ctx); @@ -238,22 +338,304 @@ tls_crypt_ignore_replay(void **state) { assert_true(tls_crypt_unwrap(&ctx->ciphertext, &ctx->unwrapped, &ctx->co)); } +struct test_tls_crypt_v2_context { + struct gc_arena gc; + struct key2 server_key2; + struct key_ctx_bi server_keys; + struct key2 client_key2; + struct key_ctx_bi client_key; + struct buffer metadata; + struct buffer unwrapped_metadata; + struct buffer wkc; +}; + +static int +test_tls_crypt_v2_setup(void **state) +{ + struct test_tls_crypt_v2_context *ctx = calloc(1, sizeof(*ctx)); + *state = ctx; + + ctx->gc = gc_new(); + + /* Slightly longer buffers to be able to test too-long data */ + ctx->metadata = alloc_buf_gc(TLS_CRYPT_V2_MAX_METADATA_LEN+16, &ctx->gc); + ctx->unwrapped_metadata = alloc_buf_gc(TLS_CRYPT_V2_MAX_METADATA_LEN+16, + &ctx->gc); + ctx->wkc = alloc_buf_gc(TLS_CRYPT_V2_MAX_WKC_LEN+16, &ctx->gc); + + /* Generate server key */ + rand_bytes((void *)ctx->server_key2.keys, sizeof(ctx->server_key2.keys)); + ctx->server_key2.n = 2; + struct key_type kt = tls_crypt_kt(); + init_key_ctx_bi(&ctx->server_keys, &ctx->server_key2, + KEY_DIRECTION_BIDIRECTIONAL, &kt, + "tls-crypt-v2 server key"); + + /* Generate client key */ + rand_bytes((void *)ctx->client_key2.keys, sizeof(ctx->client_key2.keys)); + ctx->client_key2.n = 2; + + return 0; +} + +static int +test_tls_crypt_v2_teardown(void **state) +{ + struct test_tls_crypt_v2_context *ctx = + (struct test_tls_crypt_v2_context *) *state; + + free_key_ctx_bi(&ctx->server_keys); + free_key_ctx_bi(&ctx->client_key); + + gc_free(&ctx->gc); + + free(ctx); + + return 0; +} + +/** + * Check wrapping and unwrapping a tls-crypt-v2 client key without metadata. + */ +static void +tls_crypt_v2_wrap_unwrap_no_metadata(void **state) +{ + struct test_tls_crypt_v2_context *ctx = + (struct test_tls_crypt_v2_context *) *state; + + struct buffer wrapped_client_key = alloc_buf_gc(TLS_CRYPT_V2_MAX_WKC_LEN, + &ctx->gc); + assert_true(tls_crypt_v2_wrap_client_key(&wrapped_client_key, + &ctx->client_key2, + &ctx->metadata, + &ctx->server_keys.encrypt, + &ctx->gc)); + + struct buffer unwrap_metadata = alloc_buf_gc(TLS_CRYPT_V2_MAX_METADATA_LEN, + &ctx->gc); + struct key2 unwrapped_client_key2 = { 0 }; + assert_true(tls_crypt_v2_unwrap_client_key(&unwrapped_client_key2, + &unwrap_metadata, + wrapped_client_key, + &ctx->server_keys.decrypt)); + + assert_true(0 == memcmp(ctx->client_key2.keys, unwrapped_client_key2.keys, + sizeof(ctx->client_key2.keys))); +} + +/** + * Check wrapping and unwrapping a tls-crypt-v2 client key with maximum length + * metadata. + */ +static void +tls_crypt_v2_wrap_unwrap_max_metadata(void **state) +{ + struct test_tls_crypt_v2_context *ctx = + (struct test_tls_crypt_v2_context *) *state; + + uint8_t *metadata = + buf_write_alloc(&ctx->metadata, TLS_CRYPT_V2_MAX_METADATA_LEN); + assert_true(rand_bytes(metadata, TLS_CRYPT_V2_MAX_METADATA_LEN)); + assert_true(tls_crypt_v2_wrap_client_key(&ctx->wkc, &ctx->client_key2, + &ctx->metadata, + &ctx->server_keys.encrypt, + &ctx->gc)); + + struct buffer unwrap_metadata = alloc_buf_gc(TLS_CRYPT_V2_MAX_METADATA_LEN, + &ctx->gc); + struct key2 unwrapped_client_key2 = { 0 }; + assert_true(tls_crypt_v2_unwrap_client_key(&unwrapped_client_key2, + &unwrap_metadata, ctx->wkc, + &ctx->server_keys.decrypt)); + + assert_true(0 == memcmp(ctx->client_key2.keys, unwrapped_client_key2.keys, + sizeof(ctx->client_key2.keys))); + assert_true(buf_equal(&ctx->metadata, &unwrap_metadata)); + + struct tls_wrap_ctx wrap_ctx = { + .mode = TLS_WRAP_CRYPT, + .tls_crypt_v2_server_key = ctx->server_keys.encrypt, + }; + assert_true(tls_crypt_v2_extract_client_key(&ctx->wkc, &wrap_ctx, NULL)); + tls_wrap_free(&wrap_ctx); +} + +/** + * Check that wrapping a tls-crypt-v2 client key with too long metadata fails + * as expected. + */ +static void +tls_crypt_v2_wrap_too_long_metadata(void **state) +{ + struct test_tls_crypt_v2_context *ctx = + (struct test_tls_crypt_v2_context *) *state; + + assert_true(buf_inc_len(&ctx->metadata, TLS_CRYPT_V2_MAX_METADATA_LEN+1)); + assert_false(tls_crypt_v2_wrap_client_key(&ctx->wkc, &ctx->client_key2, + &ctx->metadata, + &ctx->server_keys.encrypt, + &ctx->gc)); +} + +/** + * Check that unwrapping a tls-crypt-v2 client key with the wrong server key + * fails as expected. + */ +static void +tls_crypt_v2_wrap_unwrap_wrong_key(void **state) +{ + struct test_tls_crypt_v2_context *ctx = + (struct test_tls_crypt_v2_context *) *state; + + assert_true(tls_crypt_v2_wrap_client_key(&ctx->wkc, &ctx->client_key2, + &ctx->metadata, + &ctx->server_keys.encrypt, + &ctx->gc)); + + /* Change server key */ + struct key_type kt = tls_crypt_kt(); + free_key_ctx_bi(&ctx->server_keys); + memset(&ctx->server_key2.keys, 0, sizeof(ctx->server_key2.keys)); + init_key_ctx_bi(&ctx->server_keys, &ctx->server_key2, + KEY_DIRECTION_BIDIRECTIONAL, &kt, + "wrong tls-crypt-v2 server key"); + + + struct key2 unwrapped_client_key2 = { 0 }; + assert_false(tls_crypt_v2_unwrap_client_key(&unwrapped_client_key2, + &ctx->unwrapped_metadata, + ctx->wkc, + &ctx->server_keys.decrypt)); + + const struct key2 zero = { 0 }; + assert_true(0 == memcmp(&unwrapped_client_key2, &zero, sizeof(zero))); + assert_true(0 == BLEN(&ctx->unwrapped_metadata)); +} + +/** + * Check that unwrapping a tls-crypt-v2 client key to a too small metadata + * buffer fails as expected. + */ +static void +tls_crypt_v2_wrap_unwrap_dst_too_small(void **state) +{ + struct test_tls_crypt_v2_context *ctx = + (struct test_tls_crypt_v2_context *) *state; + + uint8_t *metadata = + buf_write_alloc(&ctx->metadata, TLS_CRYPT_V2_MAX_METADATA_LEN); + assert_true(rand_bytes(metadata, TLS_CRYPT_V2_MAX_METADATA_LEN)); + assert_true(tls_crypt_v2_wrap_client_key(&ctx->wkc, &ctx->client_key2, + &ctx->metadata, + &ctx->server_keys.encrypt, + &ctx->gc)); + + struct key2 unwrapped_client_key2 = { 0 }; + struct buffer unwrapped_metadata = + alloc_buf_gc(TLS_CRYPT_V2_MAX_METADATA_LEN-1, &ctx->gc); + assert_false(tls_crypt_v2_unwrap_client_key(&unwrapped_client_key2, + &unwrapped_metadata, ctx->wkc, + &ctx->server_keys.decrypt)); + + const struct key2 zero = { 0 }; + assert_true(0 == memcmp(&unwrapped_client_key2, &zero, sizeof(zero))); + assert_true(0 == BLEN(&ctx->unwrapped_metadata)); +} + +static void +test_tls_crypt_v2_write_server_key_file(void **state) +{ + const char *filename = "testfilename.key"; + + expect_string(__wrap_buffer_write_file, filename, filename); + expect_memory(__wrap_buffer_write_file, pem, test_server_key, + strlen(test_server_key)); + will_return(__wrap_buffer_write_file, true); + + tls_crypt_v2_write_server_key_file(filename); +} + +static void +test_tls_crypt_v2_write_client_key_file(void **state) +{ + const char *filename = "testfilename.key"; + + /* Test writing the client key */ + expect_string(__wrap_buffer_write_file, filename, filename); + expect_memory(__wrap_buffer_write_file, pem, test_client_key, + strlen(test_client_key)); + will_return(__wrap_buffer_write_file, true); + + /* Key generation re-reads the created file as a sanity check */ + expect_string(__wrap_buffer_read_from_file, filename, filename); + will_return(__wrap_buffer_read_from_file, test_client_key); + + tls_crypt_v2_write_client_key_file(filename, NULL, test_server_key, true); +} + +static void +test_tls_crypt_v2_write_client_key_file_metadata(void **state) +{ + const char *filename = "testfilename.key"; + const char *b64metadata = "AABBCCDD"; + + /* Test writing the client key */ + expect_string(__wrap_buffer_write_file, filename, filename); + expect_memory(__wrap_buffer_write_file, pem, test_client_key_metadata, + strlen(test_client_key_metadata)); + will_return(__wrap_buffer_write_file, true); + + /* Key generation re-reads the created file as a sanity check */ + expect_string(__wrap_buffer_read_from_file, filename, filename); + will_return(__wrap_buffer_read_from_file, test_client_key_metadata); + + tls_crypt_v2_write_client_key_file(filename, b64metadata, test_server_key, + true); +} + int -main(void) { +main(void) +{ const struct CMUnitTest tests[] = { - cmocka_unit_test_setup_teardown(tls_crypt_loopback, setup, teardown), + cmocka_unit_test_setup_teardown(tls_crypt_loopback, + test_tls_crypt_setup, + test_tls_crypt_teardown), cmocka_unit_test_setup_teardown(tls_crypt_loopback_zero_len, - setup, teardown), + test_tls_crypt_setup, + test_tls_crypt_teardown), cmocka_unit_test_setup_teardown(tls_crypt_loopback_max_len, - setup, teardown), + test_tls_crypt_setup, + test_tls_crypt_teardown), cmocka_unit_test_setup_teardown(tls_crypt_fail_msg_too_long, - setup, teardown), + test_tls_crypt_setup, + test_tls_crypt_teardown), cmocka_unit_test_setup_teardown(tls_crypt_fail_invalid_key, - setup, teardown), + test_tls_crypt_setup, + test_tls_crypt_teardown), cmocka_unit_test_setup_teardown(tls_crypt_fail_replay, - setup, teardown), + test_tls_crypt_setup, + test_tls_crypt_teardown), cmocka_unit_test_setup_teardown(tls_crypt_ignore_replay, - setup, teardown), + test_tls_crypt_setup, + test_tls_crypt_teardown), + cmocka_unit_test_setup_teardown(tls_crypt_v2_wrap_unwrap_no_metadata, + test_tls_crypt_v2_setup, + test_tls_crypt_v2_teardown), + cmocka_unit_test_setup_teardown(tls_crypt_v2_wrap_unwrap_max_metadata, + test_tls_crypt_v2_setup, + test_tls_crypt_v2_teardown), + cmocka_unit_test_setup_teardown(tls_crypt_v2_wrap_too_long_metadata, + test_tls_crypt_v2_setup, + test_tls_crypt_v2_teardown), + cmocka_unit_test_setup_teardown(tls_crypt_v2_wrap_unwrap_wrong_key, + test_tls_crypt_v2_setup, + test_tls_crypt_v2_teardown), + cmocka_unit_test_setup_teardown(tls_crypt_v2_wrap_unwrap_dst_too_small, + test_tls_crypt_v2_setup, + test_tls_crypt_v2_teardown), + cmocka_unit_test(test_tls_crypt_v2_write_server_key_file), + cmocka_unit_test(test_tls_crypt_v2_write_client_key_file), + cmocka_unit_test(test_tls_crypt_v2_write_client_key_file_metadata), }; #if defined(ENABLE_CRYPTO_OPENSSL) @@ -268,5 +650,3 @@ main(void) { return ret; } - -#endif /* ENABLE_CRYPTO */ |