187 lines
4.2 KiB
C
187 lines
4.2 KiB
C
// SPDX-License-Identifier: GPL-2.0-or-later
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/*
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* Copyright (C) 2020 Cyril Hrubis <chrubis@suse.cz>
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*/
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/*\
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* [Description]
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*
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* Call shmctl() with SHM_INFO flag and check that:
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*
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* * The returned index points to a valid SHM by calling SHM_STAT_ANY
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* * Also count that valid indexes < returned max index sums up to used_ids
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* * And the data are consistent with /proc/sysvipc/shm
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*
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* There is a possible race between the call to the shmctl() and read from the
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* proc file so this test cannot be run in parallel with any IPC testcases that
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* adds or removes SHM segments.
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*
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* Note what we create a SHM segment in the test setup to make sure that there
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* is at least one during the testrun.
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*/
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#define _GNU_SOURCE
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#include <stdio.h>
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#include <pwd.h>
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#include "tst_test.h"
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#include "tst_safe_sysv_ipc.h"
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#include "libnewipc.h"
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#include "lapi/shm.h"
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#define SHM_SIZE 2048
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static int shm_id = -1;
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static uid_t nobody_uid, root_uid;
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static struct tcases {
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uid_t *uid;
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char *desc;
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} tests[] = {
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{&nobody_uid, "with nobody user"},
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{&root_uid, "with root user"}
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};
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static void parse_proc_sysvipc(struct shm_info *info)
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{
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int page_size = getpagesize();
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FILE *f = fopen("/proc/sysvipc/shm", "r");
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int used_ids = 0;
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int shmid_max = 0;
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unsigned long shm_rss = 0;
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unsigned long shm_swp = 0;
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unsigned long shm_tot = 0;
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/* Eat header */
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for (;;) {
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int c = fgetc(f);
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if (c == '\n' || c == EOF)
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break;
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}
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int shmid, size, rss, swap;
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/*
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* Sum rss, swap and size for all elements listed, which should equal
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* the data returned in the shm_info structure.
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*
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* Note that the size has to be rounded up to nearest multiple of page
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* size.
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*/
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while (fscanf(f, "%*i %i %*i %i %*i %*i %*i %*i %*i %*i %*i %*i %*i %*i %i %i",
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&shmid, &size, &rss, &swap) > 0) {
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used_ids++;
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shm_rss += rss/page_size;
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shm_swp += swap/page_size;
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shm_tot += (size + page_size - 1) / page_size;
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if (shmid > shmid_max)
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shmid_max = shmid;
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}
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if (info->used_ids != used_ids) {
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tst_res(TFAIL, "used_ids = %i, expected %i",
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info->used_ids, used_ids);
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} else {
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tst_res(TPASS, "used_ids = %i", used_ids);
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}
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if (info->shm_rss != shm_rss) {
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tst_res(TFAIL, "shm_rss = %li, expected %li",
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info->shm_rss, shm_rss);
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} else {
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tst_res(TPASS, "shm_rss = %li", shm_rss);
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}
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if (info->shm_swp != shm_swp) {
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tst_res(TFAIL, "shm_swp = %li, expected %li",
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info->shm_swp, shm_swp);
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} else {
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tst_res(TPASS, "shm_swp = %li", shm_swp);
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}
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if (info->shm_tot != shm_tot) {
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tst_res(TFAIL, "shm_tot = %li, expected %li",
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info->shm_tot, shm_tot);
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} else {
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tst_res(TPASS, "shm_tot = %li", shm_tot);
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}
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fclose(f);
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}
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static void verify_shminfo(unsigned int n)
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{
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struct tcases *tc = &tests[n];
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struct shm_info info;
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struct shmid_ds ds;
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int i, shmid, cnt = 0;
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tst_res(TINFO, "Test SHM_STAT_ANY %s", tc->desc);
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SAFE_SETEUID(*tc->uid);
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TEST(shmctl(0, SHM_INFO, (struct shmid_ds *)&info));
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if (TST_RET == -1) {
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tst_res(TFAIL | TTERRNO, "shmctl(0, SHM_INFO, ...)");
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return;
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}
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shmid = shmctl(TST_RET, SHM_STAT_ANY, &ds);
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if (shmid == -1) {
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tst_res(TFAIL | TERRNO, "SHM_INFO haven't returned a valid index");
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} else {
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tst_res(TPASS,
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"SHM_INFO returned valid index %li maps to shmid %i",
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TST_RET, shmid);
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}
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for (i = 0; i <= TST_RET; i++) {
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if (shmctl(i, SHM_STAT_ANY, &ds) != -1)
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cnt++;
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}
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if (cnt == info.used_ids) {
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tst_res(TPASS, "Counted used = %i", cnt);
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} else {
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tst_res(TFAIL, "Counted used = %i, used_ids = %i",
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cnt, info.used_ids);
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}
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parse_proc_sysvipc(&info);
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}
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static void setup(void)
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{
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struct passwd *ltpuser = SAFE_GETPWNAM("nobody");
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struct shmid_ds temp_ds;
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nobody_uid = ltpuser->pw_uid;
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root_uid = 0;
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shm_id = SAFE_SHMGET(IPC_PRIVATE, SHM_SIZE, IPC_CREAT | SHM_RW);
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TEST(shmctl(shm_id, SHM_STAT_ANY, &temp_ds));
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if (TST_RET == -1) {
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if (TST_ERR == EINVAL)
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tst_brk(TCONF, "kernel doesn't support SHM_STAT_ANY");
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else
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tst_brk(TBROK | TTERRNO,
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"Current environment doesn't permit SHM_STAT_ANY");
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}
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}
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static void cleanup(void)
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{
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if (shm_id >= 0)
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SAFE_SHMCTL(shm_id, IPC_RMID, NULL);
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}
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static struct tst_test test = {
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.setup = setup,
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.cleanup = cleanup,
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.test = verify_shminfo,
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.tcnt = ARRAY_SIZE(tests),
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.needs_root = 1,
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};
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