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selftests: cgroup: Test open-time cgroup namespace usage for migration checks
When a task is writing to an fd opened by a different task, the perm check should use the cgroup namespace of the latter task. Add a test for it. Tested-by: Michal Koutný <mkoutny@suse.com> Signed-off-by: Tejun Heo <tj@kernel.org>
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@ -1,11 +1,14 @@
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/* SPDX-License-Identifier: GPL-2.0 */
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#define _GNU_SOURCE
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#include <linux/limits.h>
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#include <linux/sched.h>
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#include <sys/types.h>
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#include <sys/mman.h>
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#include <sys/wait.h>
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#include <unistd.h>
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#include <fcntl.h>
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#include <sched.h>
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#include <stdio.h>
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#include <errno.h>
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#include <signal.h>
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@ -741,6 +744,99 @@ cleanup:
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return ret;
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}
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struct lesser_ns_open_thread_arg {
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const char *path;
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int fd;
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int err;
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};
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static int lesser_ns_open_thread_fn(void *arg)
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{
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struct lesser_ns_open_thread_arg *targ = arg;
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targ->fd = open(targ->path, O_RDWR);
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targ->err = errno;
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return 0;
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}
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/*
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* cgroup migration permission check should be performed based on the cgroup
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* namespace at the time of open instead of write.
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*/
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static int test_cgcore_lesser_ns_open(const char *root)
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{
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static char stack[65536];
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const uid_t test_euid = 65534; /* usually nobody, any !root is fine */
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int ret = KSFT_FAIL;
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char *cg_test_a = NULL, *cg_test_b = NULL;
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char *cg_test_a_procs = NULL, *cg_test_b_procs = NULL;
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int cg_test_b_procs_fd = -1;
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struct lesser_ns_open_thread_arg targ = { .fd = -1 };
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pid_t pid;
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int status;
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cg_test_a = cg_name(root, "cg_test_a");
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cg_test_b = cg_name(root, "cg_test_b");
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if (!cg_test_a || !cg_test_b)
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goto cleanup;
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cg_test_a_procs = cg_name(cg_test_a, "cgroup.procs");
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cg_test_b_procs = cg_name(cg_test_b, "cgroup.procs");
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if (!cg_test_a_procs || !cg_test_b_procs)
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goto cleanup;
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if (cg_create(cg_test_a) || cg_create(cg_test_b))
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goto cleanup;
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if (cg_enter_current(cg_test_b))
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goto cleanup;
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if (chown(cg_test_a_procs, test_euid, -1) ||
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chown(cg_test_b_procs, test_euid, -1))
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goto cleanup;
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targ.path = cg_test_b_procs;
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pid = clone(lesser_ns_open_thread_fn, stack + sizeof(stack),
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CLONE_NEWCGROUP | CLONE_FILES | CLONE_VM | SIGCHLD,
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&targ);
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if (pid < 0)
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goto cleanup;
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if (waitpid(pid, &status, 0) < 0)
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goto cleanup;
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if (!WIFEXITED(status))
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goto cleanup;
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cg_test_b_procs_fd = targ.fd;
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if (cg_test_b_procs_fd < 0)
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goto cleanup;
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if (cg_enter_current(cg_test_a))
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goto cleanup;
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if ((status = write(cg_test_b_procs_fd, "0", 1)) >= 0 || errno != ENOENT)
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goto cleanup;
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ret = KSFT_PASS;
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cleanup:
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cg_enter_current(root);
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if (cg_test_b_procs_fd >= 0)
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close(cg_test_b_procs_fd);
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if (cg_test_b)
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cg_destroy(cg_test_b);
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if (cg_test_a)
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cg_destroy(cg_test_a);
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free(cg_test_b_procs);
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free(cg_test_a_procs);
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free(cg_test_b);
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free(cg_test_a);
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return ret;
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}
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#define T(x) { x, #x }
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struct corecg_test {
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int (*fn)(const char *root);
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@ -757,6 +853,7 @@ struct corecg_test {
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T(test_cgcore_thread_migration),
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T(test_cgcore_destroy),
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T(test_cgcore_lesser_euid_open),
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T(test_cgcore_lesser_ns_open),
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};
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#undef T
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