/* * Copyright (c) Wipro Technologies Ltd, 2002. All Rights Reserved. * * This program is free software; you can redistribute it and/or modify it * under the terms of version 2 of the GNU General Public License as * published by the Free Software Foundation. * * This program is distributed in the hope that it would be useful, but * WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. * * You should have received a copy of the GNU General Public License along * with this program; if not, write the Free Software Foundation, Inc., * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. * */ /************************************************************************** * * TEST IDENTIFIER : munlock01 * * EXECUTED BY : root / superuser * * TEST TITLE : Basic test for munlock(2) * * TEST CASE TOTAL : 4 * * AUTHOR : Nirmala Devi Dhanasekar * * SIGNALS * Uses SIGUSR1 to pause before test if option set. * (See the parse_opts(3) man page). * * DESCRIPTION * This is a Phase I test for the munlock(2) system call. * It is intended to provide a limited exposure of the system call. * * Setup: * Setup signal handling. * Pause for SIGUSR1 if option specified. * * Test: * Loop if the proper options are given. * Execute system call * Check return code, if system call failed (return=-1) * Log the errno and Issue a FAIL message. * Otherwise, Issue a PASS message. * * Cleanup: * Print errno log and/or timing stats if options given * * USAGE: * munlock01 [-c n] [-e] [-i n] [-I x] [-p x] [-t] * where, -c n : Run n copies concurrently * -e : Turn on errno logging. * -h : Show this help screen * -i n : Execute test n times. * -I x : Execute test for x seconds. * -p : Pause for SIGUSR1 before starting * -P x : Pause for x seconds between iterations. * -t : Turn on syscall timing. * * RESTRICTIONS * Must be root/superuser to run it. *****************************************************************************/ #include #include #include #include "test.h" void setup(); void setup1(int); void cleanup(); char *TCID = "munlock01"; int TST_TOTAL = 4; void *addr1; struct test_case_t { void **addr; int len; void (*setupfunc) (); } TC[] = { { &addr1, 1, setup1}, { &addr1, 1024, setup1}, { &addr1, 1024 * 1024, setup1}, { &addr1, 1024 * 1024 * 10, setup1} }; int main(int ac, char **av) { int lc, i; tst_parse_opts(ac, av, NULL, NULL); setup(); /* check looping state */ for (lc = 0; TEST_LOOPING(lc); lc++) { tst_count = 0; for (i = 0; i < TST_TOTAL; i++) { if (TC[i].setupfunc != NULL) TC[i].setupfunc(i); TEST(munlock(*(TC[i].addr), TC[i].len)); /* check return code */ if (TEST_RETURN == -1) { tst_resm(TFAIL | TTERRNO, "mlock(%p, %d) Failed with " "return=%ld", TC[i].addr, TC[i].len, TEST_RETURN); } else { tst_resm(TPASS, "test %d passed length = %d", i, TC[i].len); } } } /* cleanup and exit */ cleanup(); tst_exit(); } void setup1(int i) { addr1 = malloc(TC[i].len); if (addr1 == NULL) tst_brkm(TFAIL, cleanup, "malloc failed"); TEST(mlock(*(TC[i].addr), TC[i].len)); /* check return code */ if (TEST_RETURN == -1) { tst_brkm(TFAIL | TTERRNO, cleanup, "mlock(%p, %d) Failed with return=%ld", TC[i].addr, TC[i].len, TEST_RETURN); } } /* setup() - performs all ONE TIME setup for this test. */ void setup(void) { tst_require_root(); tst_sig(NOFORK, DEF_HANDLER, cleanup); TEST_PAUSE; } /* * cleanup() - performs all ONE TIME cleanup for this test at * completion or premature exit. */ void cleanup(void) { }