14d8e940e6
Signed-off-by: Jon Simons <jon@jonsimons.org> Reviewed-by: Andreas Schneider <asn@cryptomilk.org>
378 строки
11 KiB
C
378 строки
11 KiB
C
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#include <sys/types.h>
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#ifndef _WIN32
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#define _POSIX_PTHREAD_SEMANTICS
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#include <pwd.h>
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#endif
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#define LIBSSH_STATIC
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#include <libssh/priv.h>
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#include "torture.h"
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#include "misc.c"
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#include "error.c"
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#define TORTURE_TEST_DIR "/usr/local/bin/truc/much/.."
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static int setup(void **state)
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{
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ssh_session session = ssh_new();
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*state = session;
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return 0;
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}
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static int teardown(void **state)
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{
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ssh_free(*state);
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return 0;
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}
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static void torture_get_user_home_dir(void **state) {
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#ifndef _WIN32
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struct passwd *pwd = getpwuid(getuid());
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#endif /* _WIN32 */
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char *user;
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(void) state;
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user = ssh_get_user_home_dir();
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assert_false(user == NULL);
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#ifndef _WIN32
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assert_string_equal(user, pwd->pw_dir);
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#endif /* _WIN32 */
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SAFE_FREE(user);
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}
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static void torture_basename(void **state) {
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char *path;
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(void) state;
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path=ssh_basename(TORTURE_TEST_DIR "/test");
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assert_true(path != NULL);
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assert_string_equal(path, "test");
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SAFE_FREE(path);
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path=ssh_basename(TORTURE_TEST_DIR "/test/");
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assert_true(path != NULL);
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assert_string_equal(path, "test");
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SAFE_FREE(path);
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}
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static void torture_dirname(void **state) {
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char *path;
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(void) state;
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path=ssh_dirname(TORTURE_TEST_DIR "/test");
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assert_true(path != NULL);
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assert_string_equal(path, TORTURE_TEST_DIR );
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SAFE_FREE(path);
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path=ssh_dirname(TORTURE_TEST_DIR "/test/");
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assert_true(path != NULL);
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assert_string_equal(path, TORTURE_TEST_DIR);
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SAFE_FREE(path);
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}
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static void torture_ntohll(void **state) {
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uint64_t value = 0x0123456789abcdef;
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uint32_t sample = 1;
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unsigned char *ptr = (unsigned char *) &sample;
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uint64_t check;
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(void) state;
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if (ptr[0] == 1){
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/* we're in little endian */
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check = 0xefcdab8967452301;
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} else {
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/* big endian */
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check = value;
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}
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value = ntohll(value);
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assert_true(value == check);
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}
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#ifdef _WIN32
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static void torture_path_expand_tilde_win(void **state) {
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char *d;
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(void) state;
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d = ssh_path_expand_tilde("~\\.ssh");
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assert_false(d == NULL);
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print_message("Expanded path: %s\n", d);
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free(d);
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d = ssh_path_expand_tilde("/guru/meditation");
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assert_string_equal(d, "/guru/meditation");
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free(d);
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}
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#else /* _WIN32 */
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static void torture_path_expand_tilde_unix(void **state) {
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char h[256];
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char *d;
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char *user;
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char *home;
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(void) state;
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user = getenv("USER");
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if (user == NULL){
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user = getenv("LOGNAME");
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}
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assert_non_null(user);
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home = getenv("HOME");
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assert_non_null(home);
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snprintf(h, 256 - 1, "%s/.ssh", home);
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d = ssh_path_expand_tilde("~/.ssh");
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assert_non_null(d);
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assert_string_equal(d, h);
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free(d);
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d = ssh_path_expand_tilde("/guru/meditation");
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assert_non_null(d);
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assert_string_equal(d, "/guru/meditation");
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free(d);
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snprintf(h, 256 - 1, "~%s/.ssh", user);
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d = ssh_path_expand_tilde(h);
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assert_non_null(d);
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snprintf(h, 256 - 1, "%s/.ssh", home);
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assert_string_equal(d, h);
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free(d);
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}
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#endif /* _WIN32 */
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static void torture_path_expand_escape(void **state) {
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ssh_session session = *state;
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const char *s = "%d/%h/by/%r";
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char *e;
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session->opts.sshdir = strdup("guru");
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session->opts.host = strdup("meditation");
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session->opts.username = strdup("root");
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e = ssh_path_expand_escape(session, s);
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assert_non_null(e);
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assert_string_equal(e, "guru/meditation/by/root");
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free(e);
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}
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static void torture_path_expand_known_hosts(void **state) {
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ssh_session session = *state;
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char *tmp;
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session->opts.sshdir = strdup("/home/guru/.ssh");
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tmp = ssh_path_expand_escape(session, "%d/known_hosts");
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assert_non_null(tmp);
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assert_string_equal(tmp, "/home/guru/.ssh/known_hosts");
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free(tmp);
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}
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static void torture_timeout_elapsed(void **state){
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struct ssh_timestamp ts;
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(void) state;
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ssh_timestamp_init(&ts);
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usleep(50000);
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assert_true(ssh_timeout_elapsed(&ts,25));
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assert_false(ssh_timeout_elapsed(&ts,30000));
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assert_false(ssh_timeout_elapsed(&ts,75));
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assert_true(ssh_timeout_elapsed(&ts,0));
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assert_false(ssh_timeout_elapsed(&ts,-1));
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}
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static void torture_timeout_update(void **state){
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struct ssh_timestamp ts;
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(void) state;
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ssh_timestamp_init(&ts);
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usleep(50000);
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assert_int_equal(ssh_timeout_update(&ts,25), 0);
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assert_in_range(ssh_timeout_update(&ts,30000),29000,29960);
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assert_in_range(ssh_timeout_update(&ts,75),1,40);
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assert_int_equal(ssh_timeout_update(&ts,0),0);
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assert_int_equal(ssh_timeout_update(&ts,-1),-1);
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}
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static void torture_ssh_analyze_banner(void **state) {
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int rc = 0;
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int ssh1 = 0;
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int ssh2 = 0;
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ssh_session session = NULL;
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(void) state;
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#define reset_banner_test() \
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do { \
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rc = 0; \
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ssh1 = 0; \
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ssh2 = 0; \
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ssh_free(session); \
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session = ssh_new(); \
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assert_non_null(session); \
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} while (0)
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#define assert_banner_rejected(is_server) \
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do { \
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rc = ssh_analyze_banner(session, is_server, &ssh1, &ssh2); \
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assert_int_not_equal(0, rc); \
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} while (0);
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#define assert_client_banner_rejected(banner) \
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do { \
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reset_banner_test(); \
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session->clientbanner = strdup(banner); \
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assert_non_null(session->clientbanner); \
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assert_banner_rejected(1 /*server*/); \
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SAFE_FREE(session->clientbanner); \
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} while (0)
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#define assert_server_banner_rejected(banner) \
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do { \
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reset_banner_test(); \
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session->serverbanner = strdup(banner); \
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assert_non_null(session->serverbanner); \
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assert_banner_rejected(0 /*client*/); \
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SAFE_FREE(session->serverbanner); \
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} while (0)
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#define assert_banner_accepted(is_server, expected_ssh1, expected_ssh2) \
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do { \
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rc = ssh_analyze_banner(session, is_server, &ssh1, &ssh2); \
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assert_int_equal(0, rc); \
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assert_int_equal(expected_ssh1, ssh1); \
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assert_int_equal(expected_ssh2, ssh2); \
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} while (0)
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#define assert_client_banner_accepted(banner, e1, e2) \
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do { \
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reset_banner_test(); \
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session->clientbanner = strdup(banner); \
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assert_non_null(session->clientbanner); \
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assert_banner_accepted(1 /*server*/, e1, e2); \
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SAFE_FREE(session->clientbanner); \
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} while (0)
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#define assert_server_banner_accepted(banner, e1, e2) \
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do { \
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reset_banner_test(); \
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session->serverbanner = strdup(banner); \
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assert_non_null(session->serverbanner); \
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assert_banner_accepted(0 /*client*/, e1, e2); \
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SAFE_FREE(session->serverbanner); \
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} while (0)
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/* no banner is set */
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reset_banner_test();
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assert_banner_rejected(0 /*client*/);
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reset_banner_test();
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assert_banner_rejected(1 /*server*/);
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/* banner is too short */
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assert_client_banner_rejected("abc");
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assert_server_banner_rejected("abc");
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/* banner doesn't start "SSH-" */
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assert_client_banner_rejected("abc-2.0");
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assert_server_banner_rejected("abc-2.0");
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/* SSH v1 */
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assert_client_banner_accepted("SSH-1.0", 1, 0);
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assert_server_banner_accepted("SSH-1.0", 1, 0);
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/* SSH v1.9 gets counted as both v1 and v2 */
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assert_client_banner_accepted("SSH-1.9", 1, 1);
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assert_server_banner_accepted("SSH-1.9", 1, 1);
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/* SSH v2 */
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assert_client_banner_accepted("SSH-2.0", 0, 1);
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assert_server_banner_accepted("SSH-2.0", 0, 1);
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/* OpenSSH banners: too short to extract major and minor versions */
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assert_client_banner_accepted("SSH-2.0-OpenSSH", 0, 1);
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assert_int_equal(0, session->openssh);
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assert_server_banner_accepted("SSH-2.0-OpenSSH", 0, 1);
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assert_int_equal(0, session->openssh);
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/* OpenSSH banners: big enough to extract major and minor versions */
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assert_client_banner_accepted("SSH-2.0-OpenSSH_5.9p1", 0, 1);
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assert_int_equal(SSH_VERSION_INT(5, 9, 0), session->openssh);
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assert_server_banner_accepted("SSH-2.0-OpenSSH_5.9p1", 0, 1);
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assert_int_equal(SSH_VERSION_INT(5, 9, 0), session->openssh);
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assert_client_banner_accepted("SSH-2.0-OpenSSH_1.99", 0, 1);
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assert_int_equal(SSH_VERSION_INT(1, 99, 0), session->openssh);
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assert_server_banner_accepted("SSH-2.0-OpenSSH_1.99", 0, 1);
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assert_int_equal(SSH_VERSION_INT(1, 99, 0), session->openssh);
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/* OpenSSH banners: major, minor version limits */
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reset_banner_test();
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assert_client_banner_rejected("SSH-2.0-OpenSSH_0.99p1");
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reset_banner_test();
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assert_server_banner_rejected("SSH-2.0-OpenSSH_0.99p1");
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reset_banner_test();
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assert_client_banner_rejected("SSH-2.0-OpenSSH_1.101p1");
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reset_banner_test();
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assert_server_banner_rejected("SSH-2.0-OpenSSH_1.101p1");
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/* OpenSSH banners: bogus major */
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reset_banner_test();
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assert_client_banner_rejected("SSH-2.0-OpenSSH_X.9p1");
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reset_banner_test();
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assert_server_banner_rejected("SSH-2.0-OpenSSH_X.9p1");
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/* OpenSSH banners: bogus minor */
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#if 0 /* these don't pass */
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reset_banner_test();
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assert_server_banner_rejected("SSH-2.0-OpenSSH_5.Yp1");
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reset_banner_test();
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assert_client_banner_rejected("SSH-2.0-OpenSSH_5.Yp1");
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#endif /* these don't pass */
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/* OpenSSH banners: ssh-keyscan(1) */
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#if 0 /* these don't pass */
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assert_client_banner_accepted("SSH-2.0-OpenSSH-keyscan", 0, 1);
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assert_int_equal(0, session->openssh);
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assert_server_banner_accepted("SSH-2.0-OpenSSH-keyscan", 0, 1);
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assert_int_equal(0, session->openssh);
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#endif /* these don't pass */
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ssh_free(session);
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}
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int torture_run_tests(void) {
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int rc;
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struct CMUnitTest tests[] = {
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cmocka_unit_test(torture_get_user_home_dir),
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cmocka_unit_test(torture_basename),
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cmocka_unit_test(torture_dirname),
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cmocka_unit_test(torture_ntohll),
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#ifdef _WIN32
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cmocka_unit_test(torture_path_expand_tilde_win),
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#else
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cmocka_unit_test(torture_path_expand_tilde_unix),
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#endif
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cmocka_unit_test_setup_teardown(torture_path_expand_escape, setup, teardown),
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cmocka_unit_test_setup_teardown(torture_path_expand_known_hosts, setup, teardown),
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cmocka_unit_test(torture_timeout_elapsed),
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cmocka_unit_test(torture_timeout_update),
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cmocka_unit_test(torture_ssh_analyze_banner),
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};
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ssh_init();
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torture_filter_tests(tests);
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rc = cmocka_run_group_tests(tests, NULL, NULL);
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ssh_finalize();
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return rc;
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}
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