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src/test/test-socket-util.c
536 строк
20 KB
Zbigniew Jędrzejewski-Szmek
test-socket-util: convert to new ASSERT macros
03 июл 2026, 17:09
03 июл 2026, 17:09
713a2cf
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/* SPDX-License-Identifier: LGPL-2.1-or-later */ #include <fcntl.h> #include <grp.h> #include <linux/pkt_sched.h> #include <netinet/ip.h> #include <sys/stat.h> #include <unistd.h> #include "alloc-util.h" #include "escape.h" #include "fd-util.h" #include "fs-util.h" #include "in-addr-util.h" #include "iovec-util.h" #include "log.h" #include "path-util.h" #include "pidref.h" #include "process-util.h" #include "random-util.h" #include "rm-rf.h" #include "socket-util.h" #include "tests.h" #include "tmpfile-util.h" #include "user-util.h" assert_cc(SUN_PATH_LEN == 108); TEST(ifname_valid) { ASSERT_TRUE(ifname_valid("foo")); ASSERT_TRUE(ifname_valid("eth0")); ASSERT_FALSE(ifname_valid("0")); ASSERT_FALSE(ifname_valid("99")); ASSERT_TRUE(ifname_valid("a99")); ASSERT_TRUE(ifname_valid("99a")); ASSERT_FALSE(ifname_valid(NULL)); ASSERT_FALSE(ifname_valid("")); ASSERT_FALSE(ifname_valid(" ")); ASSERT_FALSE(ifname_valid(" foo")); ASSERT_FALSE(ifname_valid("bar\n")); ASSERT_FALSE(ifname_valid(".")); ASSERT_FALSE(ifname_valid("..")); ASSERT_TRUE(ifname_valid("foo.bar")); ASSERT_FALSE(ifname_valid("x:y")); ASSERT_TRUE(ifname_valid_full("xxxxxxxxxxxxxxx", 0)); ASSERT_FALSE(ifname_valid_full("xxxxxxxxxxxxxxxx", 0)); ASSERT_TRUE(ifname_valid_full("xxxxxxxxxxxxxxxx", IFNAME_VALID_ALTERNATIVE)); ASSERT_TRUE(ifname_valid_full("xxxxxxxxxxxxxxxx", IFNAME_VALID_ALTERNATIVE)); ASSERT_FALSE(ifname_valid_full("999", IFNAME_VALID_ALTERNATIVE)); ASSERT_TRUE(ifname_valid_full("999", IFNAME_VALID_ALTERNATIVE | IFNAME_VALID_NUMERIC)); ASSERT_FALSE(ifname_valid_full("0", IFNAME_VALID_ALTERNATIVE | IFNAME_VALID_NUMERIC)); } static void test_socket_print_unix_one(const char *in, size_t len_in, const char *expected) { _cleanup_free_ char *out = NULL, *c = NULL; ASSERT_LE(len_in, SUN_PATH_LEN); SocketAddress a = { .sockaddr = { .un = { .sun_family = AF_UNIX } }, .size = offsetof(struct sockaddr_un, sun_path) + len_in, .type = SOCK_STREAM, }; memcpy(a.sockaddr.un.sun_path, in, len_in); ASSERT_OK(socket_address_print(&a, &out)); ASSERT_NOT_NULL(c = cescape(in)); log_info("\"%s\" → \"%s\" (expect \"%s\")", in, out, expected); ASSERT_STREQ(out, expected); } TEST(socket_print_unix) { /* Some additional tests for abstract addresses which we don't parse */ test_socket_print_unix_one("\0\0\0\0", 4, "@\\000\\000\\000"); test_socket_print_unix_one("@abs", 5, "@abs"); test_socket_print_unix_one("\n", 2, "\\n"); test_socket_print_unix_one("", 1, "<unnamed>"); test_socket_print_unix_one("\0", 1, "<unnamed>"); test_socket_print_unix_one("\0_________________________there's 108 characters in this string_____________________________________________", 108, "@_________________________there\\'s 108 characters in this string_____________________________________________"); test_socket_print_unix_one("////////////////////////////////////////////////////////////////////////////////////////////////////////////", 108, "////////////////////////////////////////////////////////////////////////////////////////////////////////////"); test_socket_print_unix_one("\0\a\b\n\255", 6, "@\\a\\b\\n\\255\\000"); } TEST(sockaddr_equal) { union sockaddr_union a = { .in.sin_family = AF_INET, .in.sin_port = 0, .in.sin_addr.s_addr = htobe32(INADDR_ANY), }; union sockaddr_union b = { .in.sin_family = AF_INET, .in.sin_port = 0, .in.sin_addr.s_addr = htobe32(INADDR_ANY), }; union sockaddr_union c = { .in.sin_family = AF_INET, .in.sin_port = 0, .in.sin_addr.s_addr = htobe32(1234), }; union sockaddr_union d = { .in6.sin6_family = AF_INET6, .in6.sin6_port = 0, .in6.sin6_addr = IN6ADDR_ANY_INIT, }; union sockaddr_union e = { .vm.svm_family = AF_VSOCK, .vm.svm_port = 0, .vm.svm_cid = VMADDR_CID_ANY, }; ASSERT_TRUE(sockaddr_equal(&a, &a)); ASSERT_TRUE(sockaddr_equal(&a, &b)); ASSERT_TRUE(sockaddr_equal(&d, &d)); ASSERT_TRUE(sockaddr_equal(&e, &e)); ASSERT_FALSE(sockaddr_equal(&a, &c)); ASSERT_FALSE(sockaddr_equal(&b, &c)); ASSERT_FALSE(sockaddr_equal(&a, &e)); } TEST(sockaddr_un_len) { static const struct sockaddr_un fs = { .sun_family = AF_UNIX, .sun_path = "/foo/bar/waldo", }; static const struct sockaddr_un abstract = { .sun_family = AF_UNIX, .sun_path = "\0foobar", }; ASSERT_EQ(sockaddr_un_len(&fs), offsetof(struct sockaddr_un, sun_path) + strlen(fs.sun_path) + 1); ASSERT_EQ(sockaddr_un_len(&abstract), offsetof(struct sockaddr_un, sun_path) + 1 + strlen(abstract.sun_path + 1)); } TEST(in_addr_is_multicast) { union in_addr_union a, b; int f; ASSERT_OK(in_addr_from_string_auto("192.168.3.11", &f, &a)); ASSERT_OK_EQ(in_addr_is_multicast(f, &a), 0); ASSERT_OK(in_addr_from_string_auto("224.0.0.1", &f, &a)); ASSERT_OK_EQ(in_addr_is_multicast(f, &a), 1); ASSERT_OK(in_addr_from_string_auto("FF01:0:0:0:0:0:0:1", &f, &b)); ASSERT_OK_EQ(in_addr_is_multicast(f, &b), 1); ASSERT_OK(in_addr_from_string_auto("2001:db8::c:69b:aeff:fe53:743e", &f, &b)); ASSERT_OK_EQ(in_addr_is_multicast(f, &b), 0); } TEST(getpeercred_getpeergroups) { int r; r = ASSERT_OK(pidref_safe_fork("(getpeercred)", FORK_DEATHSIG_SIGTERM|FORK_LOG|FORK_WAIT, NULL)); if (r == 0) { static const gid_t gids[] = { 3, 4, 5, 6, 7 }; gid_t *test_gids; size_t n_test_gids; uid_t test_uid; gid_t test_gid; struct ucred ucred; int pair[2] = EBADF_PAIR; if (geteuid() == 0 && !userns_has_single_user()) { test_uid = 1; test_gid = 2; test_gids = (gid_t*) gids; n_test_gids = ELEMENTSOF(gids); ASSERT_OK(fully_set_uid_gid(test_uid, test_gid, test_gids, n_test_gids)); } else { test_uid = getuid(); test_gid = getgid(); int ngroups_max = ASSERT_OK_POSITIVE(sysconf_ngroups_max()); test_gids = newa(gid_t, ngroups_max); r = ASSERT_OK_ERRNO(getgroups(ngroups_max, test_gids)); n_test_gids = (size_t) r; } ASSERT_OK_ERRNO(socketpair(AF_UNIX, SOCK_STREAM, 0, pair)); ASSERT_OK(getpeercred(pair[0], &ucred)); ASSERT_EQ(ucred.uid, test_uid); ASSERT_EQ(ucred.gid, test_gid); ASSERT_EQ(ucred.pid, getpid_cached()); { _cleanup_free_ gid_t *peer_groups = NULL; r = ASSERT_OK_OR(getpeergroups(pair[0], &peer_groups), -EOPNOTSUPP, -ENOPROTOOPT); if (r >= 0) { ASSERT_EQ((size_t) r, n_test_gids); ASSERT_EQ(memcmp(peer_groups, test_gids, sizeof(gid_t) * n_test_gids), 0); } } safe_close_pair(pair); _exit(EXIT_SUCCESS); } } TEST(passfd_read) { static const char file_contents[] = "test contents for passfd"; _cleanup_close_pair_ int pair[2] = EBADF_PAIR; int r; ASSERT_OK_ERRNO(socketpair(AF_UNIX, SOCK_DGRAM, 0, pair)); r = ASSERT_OK(pidref_safe_fork("(passfd_read)", FORK_DEATHSIG_SIGTERM|FORK_LOG|FORK_WAIT, NULL)); if (r == 0) { /* Child */ pair[0] = safe_close(pair[0]); char tmpfile[] = "/tmp/test-socket-util-passfd-read-XXXXXX"; ASSERT_OK_ZERO(write_tmpfile(tmpfile, file_contents)); _cleanup_close_ int tmpfd = ASSERT_OK_ERRNO(open(tmpfile, O_RDONLY)); ASSERT_OK_ERRNO(unlink(tmpfile)); ASSERT_OK_ZERO(send_one_fd(pair[1], tmpfd, MSG_DONTWAIT)); _exit(EXIT_SUCCESS); } /* Parent */ char buf[64]; struct iovec iov = IOVEC_MAKE(buf, sizeof(buf)-1); _cleanup_close_ int fd = -EBADF; pair[1] = safe_close(pair[1]); ASSERT_OK_ZERO(receive_one_fd_iov(pair[0], &iov, 1, MSG_DONTWAIT, &fd)); ASSERT_OK(fd); ssize_t n = ASSERT_OK_ERRNO(read(fd, buf, sizeof(buf)-1)); buf[n] = 0; ASSERT_STREQ(buf, file_contents); } TEST(passfd_contents_read) { _cleanup_close_pair_ int pair[2] = EBADF_PAIR; static const char file_contents[] = "test contents in the file"; static const char wire_contents[] = "test contents on the wire"; int r; ASSERT_OK_ERRNO(socketpair(AF_UNIX, SOCK_DGRAM, 0, pair)); r = ASSERT_OK(pidref_safe_fork("(passfd_contents_read)", FORK_DEATHSIG_SIGTERM|FORK_LOG|FORK_WAIT, NULL)); if (r == 0) { /* Child */ struct iovec iov = IOVEC_MAKE_STRING(wire_contents); char tmpfile[] = "/tmp/test-socket-util-passfd-contents-read-XXXXXX"; pair[0] = safe_close(pair[0]); ASSERT_OK_ZERO(write_tmpfile(tmpfile, file_contents)); _cleanup_close_ int tmpfd = ASSERT_OK_ERRNO(open(tmpfile, O_RDONLY)); ASSERT_OK_ERRNO(unlink(tmpfile)); ASSERT_OK_POSITIVE(send_one_fd_iov(pair[1], tmpfd, &iov, 1, MSG_DONTWAIT)); _exit(EXIT_SUCCESS); } /* Parent */ char buf[64]; struct iovec iov = IOVEC_MAKE(buf, sizeof(buf)-1); _cleanup_close_ int fd = -EBADF; ssize_t k; pair[1] = safe_close(pair[1]); k = ASSERT_OK_POSITIVE(receive_one_fd_iov(pair[0], &iov, 1, MSG_DONTWAIT, &fd)); buf[k] = 0; ASSERT_STREQ(buf, wire_contents); ASSERT_OK(fd); r = ASSERT_OK_ERRNO(read(fd, buf, sizeof(buf)-1)); buf[r] = 0; ASSERT_STREQ(buf, file_contents); } TEST(receive_nopassfd) { _cleanup_close_pair_ int pair[2] = EBADF_PAIR; static const char wire_contents[] = "no fd passed here"; int r; ASSERT_OK_ERRNO(socketpair(AF_UNIX, SOCK_DGRAM, 0, pair)); r = ASSERT_OK(pidref_safe_fork("(receive_nopassfd)", FORK_DEATHSIG_SIGTERM|FORK_LOG|FORK_WAIT, NULL)); if (r == 0) { /* Child */ struct iovec iov = IOVEC_MAKE_STRING(wire_contents); pair[0] = safe_close(pair[0]); ASSERT_OK_POSITIVE(send_one_fd_iov(pair[1], -1, &iov, 1, MSG_DONTWAIT)); _exit(EXIT_SUCCESS); } /* Parent */ char buf[64]; struct iovec iov = IOVEC_MAKE(buf, sizeof(buf)-1); int fd = -999; ssize_t k; pair[1] = safe_close(pair[1]); k = ASSERT_OK_POSITIVE(receive_one_fd_iov(pair[0], &iov, 1, MSG_DONTWAIT, &fd)); buf[k] = 0; ASSERT_STREQ(buf, wire_contents); /* no fd passed here, confirm it was reset */ ASSERT_EQ(fd, -EBADF); } TEST(send_nodata_nofd) { _cleanup_close_pair_ int pair[2] = EBADF_PAIR; int r; ASSERT_OK_ERRNO(socketpair(AF_UNIX, SOCK_DGRAM, 0, pair)); r = ASSERT_OK(pidref_safe_fork("(send_nodata_nofd)", FORK_DEATHSIG_SIGTERM|FORK_LOG|FORK_WAIT, NULL)); if (r == 0) { /* Child */ pair[0] = safe_close(pair[0]); ASSERT_ERROR(send_one_fd_iov(pair[1], -1, NULL, 0, MSG_DONTWAIT), EINVAL); _exit(EXIT_SUCCESS); } /* Parent */ char buf[64]; struct iovec iov = IOVEC_MAKE(buf, sizeof(buf)-1); int fd = -999; pair[1] = safe_close(pair[1]); /* recvmsg() will return errno EAGAIN if nothing was sent */ ASSERT_ERROR(receive_one_fd_iov(pair[0], &iov, 1, MSG_DONTWAIT, &fd), EAGAIN); /* receive_one_fd_iov returned error, so confirm &fd wasn't touched */ ASSERT_EQ(fd, -999); } TEST(send_emptydata) { _cleanup_close_pair_ int pair[2] = EBADF_PAIR; int r; ASSERT_OK_ERRNO(socketpair(AF_UNIX, SOCK_DGRAM, 0, pair)); r = ASSERT_OK(pidref_safe_fork("(send_emptydata)", FORK_DEATHSIG_SIGTERM|FORK_LOG|FORK_WAIT, NULL)); if (r == 0) { /* Child */ pair[0] = safe_close(pair[0]); /* This will succeed, since iov is set. */ ASSERT_OK_ZERO(send_one_fd_iov(pair[1], -1, &iovec_empty, 1, MSG_DONTWAIT)); _exit(EXIT_SUCCESS); } /* Parent */ char buf[64]; struct iovec iov = IOVEC_MAKE(buf, sizeof(buf)-1); int fd = -999; pair[1] = safe_close(pair[1]); /* receive_one_fd_iov() returns -EIO if an fd is not found and no data was returned. */ ASSERT_ERROR(receive_one_fd_iov(pair[0], &iov, 1, MSG_DONTWAIT, &fd), EIO); /* receive_one_fd_iov returned error, so confirm &fd wasn't touched */ ASSERT_EQ(fd, -999); } TEST(flush_accept) { _cleanup_close_ int listen_stream, listen_dgram, listen_seqpacket, connect_stream, connect_dgram, connect_seqpacket; static const union sockaddr_union sa = { .un.sun_family = AF_UNIX }; union sockaddr_union lsa; socklen_t l; ASSERT_OK_ERRNO(listen_stream = socket(AF_UNIX, SOCK_STREAM|SOCK_CLOEXEC|SOCK_NONBLOCK, 0)); ASSERT_OK_ERRNO(listen_dgram = socket(AF_UNIX, SOCK_DGRAM|SOCK_CLOEXEC|SOCK_NONBLOCK, 0)); ASSERT_OK_ERRNO(listen_seqpacket = socket(AF_UNIX, SOCK_SEQPACKET|SOCK_CLOEXEC|SOCK_NONBLOCK, 0)); ASSERT_FAIL(flush_accept(listen_stream)); ASSERT_FAIL(flush_accept(listen_dgram)); ASSERT_FAIL(flush_accept(listen_seqpacket)); ASSERT_OK_ERRNO(bind(listen_stream, &sa.sa, sizeof(sa_family_t))); ASSERT_OK_ERRNO(bind(listen_dgram, &sa.sa, sizeof(sa_family_t))); ASSERT_OK_ERRNO(bind(listen_seqpacket, &sa.sa, sizeof(sa_family_t))); ASSERT_FAIL(flush_accept(listen_stream)); ASSERT_FAIL(flush_accept(listen_dgram)); ASSERT_FAIL(flush_accept(listen_seqpacket)); ASSERT_OK_ERRNO(listen(listen_stream, SOMAXCONN_DELUXE)); ASSERT_FAIL(listen(listen_dgram, SOMAXCONN_DELUXE)); ASSERT_OK_ERRNO(listen(listen_seqpacket, SOMAXCONN_DELUXE)); ASSERT_OK(flush_accept(listen_stream)); ASSERT_FAIL(flush_accept(listen_dgram)); ASSERT_OK(flush_accept(listen_seqpacket)); ASSERT_OK_ERRNO(connect_stream = socket(AF_UNIX, SOCK_STREAM|SOCK_CLOEXEC|SOCK_NONBLOCK, 0)); ASSERT_OK_ERRNO(connect_dgram = socket(AF_UNIX, SOCK_DGRAM|SOCK_CLOEXEC|SOCK_NONBLOCK, 0)); ASSERT_OK_ERRNO(connect_seqpacket = socket(AF_UNIX, SOCK_SEQPACKET|SOCK_CLOEXEC|SOCK_NONBLOCK, 0)); l = sizeof(lsa); ASSERT_OK_ERRNO(getsockname(listen_stream, &lsa.sa, &l)); ASSERT_OK_ERRNO(connect(connect_stream, &lsa.sa, l)); l = sizeof(lsa); ASSERT_OK_ERRNO(getsockname(listen_dgram, &lsa.sa, &l)); ASSERT_OK_ERRNO(connect(connect_dgram, &lsa.sa, l)); l = sizeof(lsa); ASSERT_OK_ERRNO(getsockname(listen_seqpacket, &lsa.sa, &l)); ASSERT_OK_ERRNO(connect(connect_seqpacket, &lsa.sa, l)); ASSERT_OK(flush_accept(listen_stream)); ASSERT_FAIL(flush_accept(listen_dgram)); ASSERT_OK(flush_accept(listen_seqpacket)); } TEST(ipv6_enabled) { log_info("IPv6 supported: %s", yes_no(socket_ipv6_is_supported())); log_info("IPv6 enabled: %s", yes_no(socket_ipv6_is_enabled())); } TEST(sockaddr_un_set_path) { _cleanup_(rm_rf_physical_and_freep) char *t = NULL; _cleanup_(unlink_and_freep) char *sh = NULL; _cleanup_free_ char *j = NULL; union sockaddr_union sa; _cleanup_close_ int fd1, fd2, fd3; ASSERT_OK(mkdtemp_malloc("/tmp/aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaXXXXXX", &t)); ASSERT_GT(strlen(t), SUN_PATH_LEN); ASSERT_NOT_NULL(j = path_join(t, "sock")); ASSERT_ERROR(sockaddr_un_set_path(&sa.un, j), ENAMETOOLONG); /* too long for AF_UNIX socket */ ASSERT_OK_ERRNO(asprintf(&sh, "/tmp/%" PRIx64, random_u64())); ASSERT_OK_ERRNO(symlink(t, sh)); /* create temporary symlink, to access it anyway */ free(j); ASSERT_NOT_NULL(j = path_join(sh, "sock")); ASSERT_OK(sockaddr_un_set_path(&sa.un, j)); ASSERT_OK_ERRNO(fd1 = socket(AF_UNIX, SOCK_STREAM|SOCK_CLOEXEC, 0)); ASSERT_OK_ERRNO(bind(fd1, &sa.sa, sockaddr_len(&sa))); ASSERT_OK_ERRNO(listen(fd1, 1)); sh = unlink_and_free(sh); /* remove temporary symlink */ ASSERT_OK_ERRNO(fd2 = socket(AF_UNIX, SOCK_STREAM|SOCK_CLOEXEC, 0)); ASSERT_ERROR_ERRNO(connect(fd2, &sa.sa, sockaddr_len(&sa)), ENOENT); /* we removed the symlink, must fail */ free(j); ASSERT_NOT_NULL(j = path_join(t, "sock")); ASSERT_OK_ERRNO(fd3 = open(j, O_CLOEXEC|O_PATH|O_NOFOLLOW)); ASSERT_OK(sockaddr_un_set_path(&sa.un, FORMAT_PROC_FD_PATH(fd3))); /* connect via O_PATH instead, circumventing 108ch limit */ ASSERT_OK_ERRNO(connect(fd2, &sa.sa, sockaddr_len(&sa))); } TEST(getpeerpidref) { _cleanup_close_pair_ int fd[2] = EBADF_PAIR; ASSERT_OK(socketpair(AF_UNIX, SOCK_STREAM|SOCK_CLOEXEC, 0, fd)); _cleanup_(pidref_done) PidRef pidref0 = PIDREF_NULL, pidref1 = PIDREF_NULL, pidref_self = PIDREF_NULL, pidref_pid1 = PIDREF_NULL; ASSERT_OK(getpeerpidref(fd[0], &pidref0)); ASSERT_OK(getpeerpidref(fd[1], &pidref1)); ASSERT_OK(pidref_set_self(&pidref_self)); ASSERT_OK(pidref_set_pid(&pidref_pid1, 1)); ASSERT_TRUE(pidref_equal(&pidref0, &pidref1)); ASSERT_TRUE(pidref_equal(&pidref0, &pidref_self)); ASSERT_TRUE(pidref_equal(&pidref1, &pidref_self)); ASSERT_TRUE(!pidref_equal(&pidref_self, &pidref_pid1)); ASSERT_TRUE(!pidref_equal(&pidref1, &pidref_pid1)); ASSERT_TRUE(!pidref_equal(&pidref0, &pidref_pid1)); } TEST(tos_to_priority) { ASSERT_EQ(tos_to_priority(IPTOS_CLASS_CS7), TC_PRIO_CONTROL); ASSERT_EQ(tos_to_priority(IPTOS_CLASS_CS6), TC_PRIO_CONTROL); ASSERT_EQ(tos_to_priority(IPTOS_CLASS_CS5), TC_PRIO_INTERACTIVE); ASSERT_EQ(tos_to_priority(IPTOS_CLASS_CS4), TC_PRIO_INTERACTIVE); ASSERT_EQ(tos_to_priority(IPTOS_CLASS_CS3), TC_PRIO_INTERACTIVE_BULK); ASSERT_EQ(tos_to_priority(IPTOS_CLASS_CS2), TC_PRIO_INTERACTIVE_BULK); ASSERT_EQ(tos_to_priority(IPTOS_CLASS_CS1), TC_PRIO_BULK); ASSERT_EQ(tos_to_priority(IPTOS_CLASS_CS0), TC_PRIO_BESTEFFORT); /* check if lower bits are correctly filtered. */ ASSERT_EQ(tos_to_priority(IPTOS_CLASS_CS7 | IPTOS_LOWDELAY), TC_PRIO_CONTROL); ASSERT_EQ(tos_to_priority(IPTOS_CLASS_CS1 | IPTOS_LOWCOST), TC_PRIO_BULK); ASSERT_EQ(tos_to_priority(0x00), TC_PRIO_BESTEFFORT); ASSERT_EQ(tos_to_priority(0xff), TC_PRIO_CONTROL); } TEST(socket_xattr_supported) { int r; r = socket_xattr_supported(); ASSERT_OK(r); log_info("Extended attributes on socket inodes supported: %s", yes_no(r)); /* A second call must agree with the first. */ ASSERT_EQ(socket_xattr_supported(), r); } DEFINE_TEST_MAIN(LOG_DEBUG);