LCOV - code coverage report
Current view: top level - test - test-fd-util.c (source / functions) Hit Total Coverage
Test: main_coverage.info Lines: 167 209 79.9 %
Date: 2019-08-22 15:41:25 Functions: 12 12 100.0 %

          Line data    Source code
       1             : /* SPDX-License-Identifier: LGPL-2.1+ */
       2             : 
       3             : #include <fcntl.h>
       4             : #include <unistd.h>
       5             : 
       6             : #include "alloc-util.h"
       7             : #include "fd-util.h"
       8             : #include "fileio.h"
       9             : #include "macro.h"
      10             : #include "memory-util.h"
      11             : #include "path-util.h"
      12             : #include "process-util.h"
      13             : #include "random-util.h"
      14             : #include "serialize.h"
      15             : #include "string-util.h"
      16             : #include "tests.h"
      17             : #include "tmpfile-util.h"
      18             : 
      19           1 : static void test_close_many(void) {
      20             :         int fds[3];
      21           1 :         char name0[] = "/tmp/test-close-many.XXXXXX";
      22           1 :         char name1[] = "/tmp/test-close-many.XXXXXX";
      23           1 :         char name2[] = "/tmp/test-close-many.XXXXXX";
      24             : 
      25           1 :         fds[0] = mkostemp_safe(name0);
      26           1 :         fds[1] = mkostemp_safe(name1);
      27           1 :         fds[2] = mkostemp_safe(name2);
      28             : 
      29           1 :         close_many(fds, 2);
      30             : 
      31           1 :         assert_se(fcntl(fds[0], F_GETFD) == -1);
      32           1 :         assert_se(fcntl(fds[1], F_GETFD) == -1);
      33           1 :         assert_se(fcntl(fds[2], F_GETFD) >= 0);
      34             : 
      35           1 :         safe_close(fds[2]);
      36             : 
      37           1 :         unlink(name0);
      38           1 :         unlink(name1);
      39           1 :         unlink(name2);
      40           1 : }
      41             : 
      42           1 : static void test_close_nointr(void) {
      43           1 :         char name[] = "/tmp/test-test-close_nointr.XXXXXX";
      44             :         int fd;
      45             : 
      46           1 :         fd = mkostemp_safe(name);
      47           1 :         assert_se(fd >= 0);
      48           1 :         assert_se(close_nointr(fd) >= 0);
      49           1 :         assert_se(close_nointr(fd) < 0);
      50             : 
      51           1 :         unlink(name);
      52           1 : }
      53             : 
      54           1 : static void test_same_fd(void) {
      55           1 :         _cleanup_close_pair_ int p[2] = { -1, -1 };
      56           1 :         _cleanup_close_ int a = -1, b = -1, c = -1;
      57             : 
      58           1 :         assert_se(pipe2(p, O_CLOEXEC) >= 0);
      59           1 :         assert_se((a = fcntl(p[0], F_DUPFD, 3)) >= 0);
      60           1 :         assert_se((b = open("/dev/null", O_RDONLY|O_CLOEXEC)) >= 0);
      61           1 :         assert_se((c = fcntl(a, F_DUPFD, 3)) >= 0);
      62             : 
      63           1 :         assert_se(same_fd(p[0], p[0]) > 0);
      64           1 :         assert_se(same_fd(p[1], p[1]) > 0);
      65           1 :         assert_se(same_fd(a, a) > 0);
      66           1 :         assert_se(same_fd(b, b) > 0);
      67             : 
      68           1 :         assert_se(same_fd(a, p[0]) > 0);
      69           1 :         assert_se(same_fd(p[0], a) > 0);
      70           1 :         assert_se(same_fd(c, p[0]) > 0);
      71           1 :         assert_se(same_fd(p[0], c) > 0);
      72           1 :         assert_se(same_fd(a, c) > 0);
      73           1 :         assert_se(same_fd(c, a) > 0);
      74             : 
      75           1 :         assert_se(same_fd(p[0], p[1]) == 0);
      76           1 :         assert_se(same_fd(p[1], p[0]) == 0);
      77           1 :         assert_se(same_fd(p[0], b) == 0);
      78           1 :         assert_se(same_fd(b, p[0]) == 0);
      79           1 :         assert_se(same_fd(p[1], a) == 0);
      80           1 :         assert_se(same_fd(a, p[1]) == 0);
      81           1 :         assert_se(same_fd(p[1], b) == 0);
      82           1 :         assert_se(same_fd(b, p[1]) == 0);
      83             : 
      84           1 :         assert_se(same_fd(a, b) == 0);
      85           1 :         assert_se(same_fd(b, a) == 0);
      86           1 : }
      87             : 
      88           1 : static void test_open_serialization_fd(void) {
      89           1 :         _cleanup_close_ int fd = -1;
      90             : 
      91           1 :         fd = open_serialization_fd("test");
      92           1 :         assert_se(fd >= 0);
      93             : 
      94           1 :         assert_se(write(fd, "test\n", 5) == 5);
      95           1 : }
      96             : 
      97           9 : static void test_acquire_data_fd_one(unsigned flags) {
      98             :         char wbuffer[196*1024 - 7];
      99             :         char rbuffer[sizeof(wbuffer)];
     100             :         int fd;
     101             : 
     102           9 :         fd = acquire_data_fd("foo", 3, flags);
     103           9 :         assert_se(fd >= 0);
     104             : 
     105           9 :         zero(rbuffer);
     106           9 :         assert_se(read(fd, rbuffer, sizeof(rbuffer)) == 3);
     107           9 :         assert_se(streq(rbuffer, "foo"));
     108             : 
     109           9 :         fd = safe_close(fd);
     110             : 
     111           9 :         fd = acquire_data_fd("", 0, flags);
     112           9 :         assert_se(fd >= 0);
     113             : 
     114           9 :         zero(rbuffer);
     115           9 :         assert_se(read(fd, rbuffer, sizeof(rbuffer)) == 0);
     116           9 :         assert_se(streq(rbuffer, ""));
     117             : 
     118           9 :         fd = safe_close(fd);
     119             : 
     120           9 :         random_bytes(wbuffer, sizeof(wbuffer));
     121             : 
     122           9 :         fd = acquire_data_fd(wbuffer, sizeof(wbuffer), flags);
     123           9 :         assert_se(fd >= 0);
     124             : 
     125           9 :         zero(rbuffer);
     126           9 :         assert_se(read(fd, rbuffer, sizeof(rbuffer)) == sizeof(rbuffer));
     127           9 :         assert_se(memcmp(rbuffer, wbuffer, sizeof(rbuffer)) == 0);
     128             : 
     129           9 :         fd = safe_close(fd);
     130           9 : }
     131             : 
     132           1 : static void test_acquire_data_fd(void) {
     133             : 
     134           1 :         test_acquire_data_fd_one(0);
     135           1 :         test_acquire_data_fd_one(ACQUIRE_NO_DEV_NULL);
     136           1 :         test_acquire_data_fd_one(ACQUIRE_NO_MEMFD);
     137           1 :         test_acquire_data_fd_one(ACQUIRE_NO_DEV_NULL|ACQUIRE_NO_MEMFD);
     138           1 :         test_acquire_data_fd_one(ACQUIRE_NO_PIPE);
     139           1 :         test_acquire_data_fd_one(ACQUIRE_NO_DEV_NULL|ACQUIRE_NO_PIPE);
     140           1 :         test_acquire_data_fd_one(ACQUIRE_NO_MEMFD|ACQUIRE_NO_PIPE);
     141           1 :         test_acquire_data_fd_one(ACQUIRE_NO_DEV_NULL|ACQUIRE_NO_MEMFD|ACQUIRE_NO_PIPE);
     142           1 :         test_acquire_data_fd_one(ACQUIRE_NO_DEV_NULL|ACQUIRE_NO_MEMFD|ACQUIRE_NO_PIPE|ACQUIRE_NO_TMPFILE);
     143           1 : }
     144             : 
     145           1 : static void test_fd_move_above_stdio(void) {
     146             :         int original_stdin, new_fd;
     147             : 
     148           1 :         original_stdin = fcntl(0, F_DUPFD, 3);
     149           1 :         assert_se(original_stdin >= 3);
     150           1 :         assert_se(close_nointr(0) != EBADF);
     151             : 
     152           1 :         new_fd = open("/dev/null", O_RDONLY);
     153           1 :         assert_se(new_fd == 0);
     154             : 
     155           1 :         new_fd = fd_move_above_stdio(new_fd);
     156           1 :         assert_se(new_fd >= 3);
     157             : 
     158           1 :         assert_se(dup(original_stdin) == 0);
     159           1 :         assert_se(close_nointr(original_stdin) != EBADF);
     160           1 :         assert_se(close_nointr(new_fd) != EBADF);
     161           1 : }
     162             : 
     163           1 : static void test_rearrange_stdio(void) {
     164             :         pid_t pid;
     165             :         int r;
     166             : 
     167           1 :         r = safe_fork("rearrange", FORK_WAIT|FORK_LOG, &pid);
     168           1 :         assert_se(r >= 0);
     169             : 
     170           1 :         if (r == 0) {
     171           0 :                 _cleanup_free_ char *path = NULL;
     172             :                 char buffer[10];
     173             : 
     174             :                 /* Child */
     175             : 
     176           0 :                 safe_close(STDERR_FILENO); /* Let's close an fd < 2, to make it more interesting */
     177             : 
     178           0 :                 assert_se(rearrange_stdio(-1, -1, -1) >= 0);
     179             : 
     180           0 :                 assert_se(fd_get_path(STDIN_FILENO, &path) >= 0);
     181           0 :                 assert_se(path_equal(path, "/dev/null"));
     182           0 :                 path = mfree(path);
     183             : 
     184           0 :                 assert_se(fd_get_path(STDOUT_FILENO, &path) >= 0);
     185           0 :                 assert_se(path_equal(path, "/dev/null"));
     186           0 :                 path = mfree(path);
     187             : 
     188           0 :                 assert_se(fd_get_path(STDOUT_FILENO, &path) >= 0);
     189           0 :                 assert_se(path_equal(path, "/dev/null"));
     190           0 :                 path = mfree(path);
     191             : 
     192           0 :                 safe_close(STDIN_FILENO);
     193           0 :                 safe_close(STDOUT_FILENO);
     194           0 :                 safe_close(STDERR_FILENO);
     195             : 
     196             :                 {
     197             :                         int pair[2];
     198           0 :                         assert_se(pipe(pair) >= 0);
     199           0 :                         assert_se(pair[0] == 0);
     200           0 :                         assert_se(pair[1] == 1);
     201           0 :                         assert_se(fd_move_above_stdio(0) == 3);
     202             :                 }
     203           0 :                 assert_se(open("/dev/full", O_WRONLY|O_CLOEXEC) == 0);
     204           0 :                 assert_se(acquire_data_fd("foobar", 6, 0) == 2);
     205             : 
     206           0 :                 assert_se(rearrange_stdio(2, 0, 1) >= 0);
     207             : 
     208           0 :                 assert_se(write(1, "x", 1) < 0 && errno == ENOSPC);
     209           0 :                 assert_se(write(2, "z", 1) == 1);
     210           0 :                 assert_se(read(3, buffer, sizeof(buffer)) == 1);
     211           0 :                 assert_se(buffer[0] == 'z');
     212           0 :                 assert_se(read(0, buffer, sizeof(buffer)) == 6);
     213           0 :                 assert_se(memcmp(buffer, "foobar", 6) == 0);
     214             : 
     215           0 :                 assert_se(rearrange_stdio(-1, 1, 2) >= 0);
     216           0 :                 assert_se(write(1, "a", 1) < 0 && errno == ENOSPC);
     217           0 :                 assert_se(write(2, "y", 1) == 1);
     218           0 :                 assert_se(read(3, buffer, sizeof(buffer)) == 1);
     219           0 :                 assert_se(buffer[0] == 'y');
     220             : 
     221           0 :                 assert_se(fd_get_path(0, &path) >= 0);
     222           0 :                 assert_se(path_equal(path, "/dev/null"));
     223           0 :                 path = mfree(path);
     224             : 
     225           0 :                 _exit(EXIT_SUCCESS);
     226             :         }
     227           1 : }
     228             : 
     229           4 : static void assert_equal_fd(int fd1, int fd2) {
     230             : 
     231           2 :         for (;;) {
     232             :                 uint8_t a[4096], b[4096];
     233             :                 ssize_t x, y;
     234             : 
     235           4 :                 x = read(fd1, a, sizeof(a));
     236           4 :                 assert(x >= 0);
     237             : 
     238           4 :                 y = read(fd2, b, sizeof(b));
     239           4 :                 assert(y >= 0);
     240             : 
     241           4 :                 assert(x == y);
     242             : 
     243           4 :                 if (x == 0)
     244           2 :                         break;
     245             : 
     246           2 :                 assert(memcmp(a, b, x) == 0);
     247             :         }
     248           2 : }
     249             : 
     250           1 : static void test_fd_duplicate_data_fd(void) {
     251           1 :         _cleanup_close_ int fd1 = -1, fd2 = -1;
     252           1 :         _cleanup_(close_pairp) int sfd[2] = { -1, -1 };
     253           1 :         _cleanup_(sigkill_waitp) pid_t pid = -1;
     254             :         uint64_t i, j;
     255             :         int r;
     256             : 
     257           1 :         fd1 = open("/etc/fstab", O_RDONLY|O_CLOEXEC);
     258           1 :         if (fd1 >= 0) {
     259             : 
     260           1 :                 fd2 = fd_duplicate_data_fd(fd1);
     261           1 :                 assert_se(fd2 >= 0);
     262             : 
     263           1 :                 assert_se(lseek(fd1, 0, SEEK_SET) == 0);
     264           1 :                 assert_equal_fd(fd1, fd2);
     265             :         }
     266             : 
     267           1 :         fd1 = safe_close(fd1);
     268           1 :         fd2 = safe_close(fd2);
     269             : 
     270           1 :         fd1 = acquire_data_fd("hallo", 6,  0);
     271           1 :         assert_se(fd1 >= 0);
     272             : 
     273           1 :         fd2 = fd_duplicate_data_fd(fd1);
     274           1 :         assert_se(fd2 >= 0);
     275             : 
     276           1 :         safe_close(fd1);
     277           1 :         fd1 = acquire_data_fd("hallo", 6,  0);
     278           1 :         assert_se(fd1 >= 0);
     279             : 
     280           1 :         assert_equal_fd(fd1, fd2);
     281             : 
     282           1 :         fd1 = safe_close(fd1);
     283           1 :         fd2 = safe_close(fd2);
     284             : 
     285           1 :         assert_se(socketpair(AF_UNIX, SOCK_STREAM|SOCK_CLOEXEC, 0, sfd) >= 0);
     286             : 
     287           1 :         r = safe_fork("(sd-pipe)", FORK_RESET_SIGNALS|FORK_DEATHSIG|FORK_LOG, &pid);
     288           1 :         assert_se(r >= 0);
     289             : 
     290           1 :         if (r == 0) {
     291             :                 /* child */
     292             : 
     293           0 :                 sfd[0] = safe_close(sfd[0]);
     294             : 
     295           0 :                 for (i = 0; i < 1536*1024 / sizeof(uint64_t); i++)
     296           0 :                         assert_se(write(sfd[1], &i, sizeof(i)) == sizeof(i));
     297             : 
     298           0 :                 sfd[1] = safe_close(sfd[1]);
     299             : 
     300           0 :                 _exit(EXIT_SUCCESS);
     301             :         }
     302             : 
     303           1 :         sfd[1] = safe_close(sfd[1]);
     304             : 
     305           1 :         fd2 = fd_duplicate_data_fd(sfd[0]);
     306           1 :         assert_se(fd2 >= 0);
     307             : 
     308      196609 :         for (i = 0; i < 1536*1024 / sizeof(uint64_t); i++) {
     309      196608 :                 assert_se(read(fd2, &j, sizeof(j)) == sizeof(j));
     310      196608 :                 assert_se(i == j);
     311             :         }
     312             : 
     313           1 :         assert_se(read(fd2, &j, sizeof(j)) == 0);
     314           1 : }
     315             : 
     316           1 : static void test_read_nr_open(void) {
     317           1 :         log_info("nr-open: %i", read_nr_open());
     318           1 : }
     319             : 
     320           1 : int main(int argc, char *argv[]) {
     321             : 
     322           1 :         test_setup_logging(LOG_DEBUG);
     323             : 
     324           1 :         test_close_many();
     325           1 :         test_close_nointr();
     326           1 :         test_same_fd();
     327           1 :         test_open_serialization_fd();
     328           1 :         test_acquire_data_fd();
     329           1 :         test_fd_move_above_stdio();
     330           1 :         test_rearrange_stdio();
     331           1 :         test_fd_duplicate_data_fd();
     332           1 :         test_read_nr_open();
     333             : 
     334           1 :         return 0;
     335             : }

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