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|
/*
* lxc: linux Container library
*
* (C) Copyright IBM Corp. 2007, 2008
*
* Authors:
* Daniel Lezcano <dlezcano at fr.ibm.com>
*
* This library is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* This library is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with this library; if not, write to the Free Software
* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
*/
#include "config.h"
#include <stdio.h>
#undef _GNU_SOURCE
#include <string.h>
#include <stdlib.h>
#include <dirent.h>
#include <errno.h>
#include <unistd.h>
#include <signal.h>
#include <fcntl.h>
#include <termios.h>
#include <sys/param.h>
#include <sys/file.h>
#include <sys/mount.h>
#include <sys/stat.h>
#include <sys/types.h>
#include <sys/prctl.h>
#include <sys/types.h>
#include <sys/capability.h>
#include <sys/wait.h>
#include <sys/un.h>
#include <sys/poll.h>
#ifdef HAVE_SYS_SIGNALFD_H
# include <sys/signalfd.h>
#else
/* assume kernel headers are too old */
#include <stdint.h>
struct signalfd_siginfo
{
uint32_t ssi_signo;
int32_t ssi_errno;
int32_t ssi_code;
uint32_t ssi_pid;
uint32_t ssi_uid;
int32_t ssi_fd;
uint32_t ssi_tid;
uint32_t ssi_band;
uint32_t ssi_overrun;
uint32_t ssi_trapno;
int32_t ssi_status;
int32_t ssi_int;
uint64_t ssi_ptr;
uint64_t ssi_utime;
uint64_t ssi_stime;
uint64_t ssi_addr;
uint8_t __pad[48];
};
# ifndef __NR_signalfd4
/* assume kernel headers are too old */
# if __i386__
# define __NR_signalfd4 327
# elif __x86_64__
# define __NR_signalfd4 289
# elif __powerpc__
# define __NR_signalfd4 313
# elif __s390x__
# define __NR_signalfd4 322
# endif
#endif
# ifndef __NR_signalfd
/* assume kernel headers are too old */
# if __i386__
# define __NR_signalfd 321
# elif __x86_64__
# define __NR_signalfd 282
# elif __powerpc__
# define __NR_signalfd 305
# elif __s390x__
# define __NR_signalfd 316
# endif
#endif
int signalfd(int fd, const sigset_t *mask, int flags)
{
int retval;
retval = syscall (__NR_signalfd4, fd, mask, _NSIG / 8, flags);
if (errno == ENOSYS && flags == 0)
retval = syscall (__NR_signalfd, fd, mask, _NSIG / 8);
return retval;
}
#endif
#if !HAVE_DECL_PR_CAPBSET_DROP
#define PR_CAPBSET_DROP 24
#endif
#include "start.h"
#include "conf.h"
#include "log.h"
#include "cgroup.h"
#include "error.h"
#include "af_unix.h"
#include "mainloop.h"
#include "utils.h"
#include "utmp.h"
#include "monitor.h"
#include "commands.h"
#include "console.h"
#include "sync.h"
#include "namespace.h"
lxc_log_define(lxc_start, lxc);
static int match_fd(int fd)
{
return (fd == 0 || fd == 1 || fd == 2);
}
int lxc_check_inherited(struct lxc_conf *conf, int fd_to_ignore)
{
struct dirent dirent, *direntp;
int fd, fddir;
DIR *dir;
restart:
dir = opendir("/proc/self/fd");
if (!dir) {
WARN("failed to open directory: %m");
return -1;
}
fddir = dirfd(dir);
while (!readdir_r(dir, &dirent, &direntp)) {
if (!direntp)
break;
if (!strcmp(direntp->d_name, "."))
continue;
if (!strcmp(direntp->d_name, ".."))
continue;
fd = atoi(direntp->d_name);
if (fd == fddir || fd == lxc_log_fd || fd == fd_to_ignore)
continue;
if (match_fd(fd))
continue;
if (conf->close_all_fds) {
close(fd);
closedir(dir);
INFO("closed inherited fd %d", fd);
goto restart;
}
WARN("inherited fd %d", fd);
}
closedir(dir); /* cannot fail */
return 0;
}
static int setup_signal_fd(sigset_t *oldmask)
{
sigset_t mask;
int fd;
/* Block everything except serious error signals */
if (sigfillset(&mask) ||
sigdelset(&mask, SIGILL) ||
sigdelset(&mask, SIGSEGV) ||
sigdelset(&mask, SIGBUS) ||
sigprocmask(SIG_BLOCK, &mask, oldmask)) {
SYSERROR("failed to set signal mask");
return -1;
}
fd = signalfd(-1, &mask, 0);
if (fd < 0) {
SYSERROR("failed to create the signal fd");
return -1;
}
if (fcntl(fd, F_SETFD, FD_CLOEXEC)) {
SYSERROR("failed to set sigfd to close-on-exec");
close(fd);
return -1;
}
DEBUG("sigchild handler set");
return fd;
}
static int signal_handler(int fd, void *data,
struct lxc_epoll_descr *descr)
{
struct signalfd_siginfo siginfo;
int ret;
pid_t *pid = data;
ret = read(fd, &siginfo, sizeof(siginfo));
if (ret < 0) {
ERROR("failed to read signal info");
return -1;
}
if (ret != sizeof(siginfo)) {
ERROR("unexpected siginfo size");
return -1;
}
if (siginfo.ssi_signo != SIGCHLD) {
kill(*pid, siginfo.ssi_signo);
INFO("forwarded signal %d to pid %d", siginfo.ssi_signo, *pid);
return 0;
}
if (siginfo.ssi_code == CLD_STOPPED ||
siginfo.ssi_code == CLD_CONTINUED) {
INFO("container init process was stopped/continued");
return 0;
}
/* more robustness, protect ourself from a SIGCHLD sent
* by a process different from the container init
*/
if (siginfo.ssi_pid != *pid) {
WARN("invalid pid for SIGCHLD");
return 0;
}
DEBUG("container init process exited");
return 1;
}
int lxc_pid_callback(int fd, struct lxc_request *request,
struct lxc_handler *handler)
{
struct lxc_answer answer;
int ret;
answer.pid = handler->pid;
answer.ret = 0;
ret = send(fd, &answer, sizeof(answer), 0);
if (ret < 0) {
WARN("failed to send answer to the peer");
return -1;
}
if (ret != sizeof(answer)) {
ERROR("partial answer sent");
return -1;
}
return 0;
}
int lxc_set_state(const char *name, struct lxc_handler *handler, lxc_state_t state)
{
handler->state = state;
lxc_monitor_send_state(name, state);
return 0;
}
int lxc_poll(const char *name, struct lxc_handler *handler)
{
int sigfd = handler->sigfd;
int pid = handler->pid;
struct lxc_epoll_descr descr;
if (lxc_mainloop_open(&descr)) {
ERROR("failed to create mainloop");
goto out_sigfd;
}
if (lxc_mainloop_add_handler(&descr, sigfd, signal_handler, &pid)) {
ERROR("failed to add handler for the signal");
goto out_mainloop_open;
}
if (lxc_console_mainloop_add(&descr, handler)) {
ERROR("failed to add console handler to mainloop");
goto out_mainloop_open;
}
if (lxc_command_mainloop_add(name, &descr, handler)) {
ERROR("failed to add command handler to mainloop");
goto out_mainloop_open;
}
if (handler->conf->need_utmp_watch) {
if (lxc_utmp_mainloop_add(&descr, handler)) {
ERROR("failed to add utmp handler to mainloop");
goto out_mainloop_open;
}
}
return lxc_mainloop(&descr);
out_mainloop_open:
lxc_mainloop_close(&descr);
out_sigfd:
close(sigfd);
return -1;
}
extern int lxc_caps_check(void);
struct lxc_handler *lxc_init(const char *name, struct lxc_conf *conf)
{
struct lxc_handler *handler;
if (!lxc_caps_check()) {
ERROR("Not running with sufficient privilege");
return NULL;
}
handler = malloc(sizeof(*handler));
if (!handler)
return NULL;
memset(handler, 0, sizeof(*handler));
handler->conf = conf;
handler->name = strdup(name);
if (!handler->name) {
ERROR("failed to allocate memory");
goto out_free;
}
/* Begin the set the state to STARTING*/
if (lxc_set_state(name, handler, STARTING)) {
ERROR("failed to set state '%s'", lxc_state2str(STARTING));
goto out_free_name;
}
if (lxc_create_tty(name, conf)) {
ERROR("failed to create the ttys");
goto out_aborting;
}
if (lxc_create_console(conf)) {
ERROR("failed to create console");
goto out_delete_tty;
}
/* the signal fd has to be created before forking otherwise
* if the child process exits before we setup the signal fd,
* the event will be lost and the command will be stuck */
handler->sigfd = setup_signal_fd(&handler->oldmask);
if (handler->sigfd < 0) {
ERROR("failed to set sigchild fd handler");
goto out_delete_console;
}
INFO("'%s' is initialized", name);
return handler;
out_delete_console:
lxc_delete_console(&conf->console);
out_delete_tty:
lxc_delete_tty(&conf->tty_info);
out_aborting:
lxc_set_state(name, handler, ABORTING);
out_free_name:
free(handler->name);
handler->name = NULL;
out_free:
free(handler);
return NULL;
}
void lxc_fini(const char *name, struct lxc_handler *handler)
{
/* The STOPPING state is there for future cleanup code
* which can take awhile
*/
lxc_set_state(name, handler, STOPPING);
lxc_set_state(name, handler, STOPPED);
/* reset mask set by setup_signal_fd */
if (sigprocmask(SIG_SETMASK, &handler->oldmask, NULL))
WARN("failed to restore sigprocmask");
lxc_delete_console(&handler->conf->console);
lxc_delete_tty(&handler->conf->tty_info);
free(handler->name);
free(handler);
}
void lxc_abort(const char *name, struct lxc_handler *handler)
{
lxc_set_state(name, handler, ABORTING);
if (handler->pid > 0)
kill(handler->pid, SIGKILL);
}
#include <sys/reboot.h>
#include <linux/reboot.h>
/*
* reboot(LINUX_REBOOT_CMD_CAD_ON) will return -EINVAL
* in a child pid namespace if container reboot support exists.
* Otherwise, it will either succeed or return -EPERM.
*/
static int container_reboot_supported(void *arg)
{
int *cmd = arg;
int ret;
ret = reboot(*cmd);
if (ret == -1 && errno == EINVAL)
return 1;
return 0;
}
static int must_drop_cap_sys_boot(void)
{
FILE *f = fopen("/proc/sys/kernel/ctrl-alt-del", "r");
int ret, cmd, v;
long stack_size = 4096;
void *stack = alloca(stack_size) + stack_size;
int status;
pid_t pid;
if (!f) {
DEBUG("failed to open /proc/sys/kernel/ctrl-alt-del");
return 1;
}
ret = fscanf(f, "%d", &v);
fclose(f);
if (ret != 1) {
DEBUG("Failed to read /proc/sys/kernel/ctrl-alt-del");
return 1;
}
cmd = v ? LINUX_REBOOT_CMD_CAD_ON : LINUX_REBOOT_CMD_CAD_OFF;
pid = clone(container_reboot_supported, stack, CLONE_NEWPID | SIGCHLD, &cmd);
if (pid < 0) {
SYSERROR("failed to clone\n");
return -1;
}
if (wait(&status) < 0) {
SYSERROR("unexpected wait error: %m\n");
return -1;
}
if (WEXITSTATUS(status) != 1)
return 1;
return 0;
}
static int do_start(void *data)
{
struct lxc_handler *handler = data;
if (sigprocmask(SIG_SETMASK, &handler->oldmask, NULL)) {
SYSERROR("failed to set sigprocmask");
return -1;
}
/* This prctl must be before the synchro, so if the parent
* dies before we set the parent death signal, we will detect
* its death with the synchro right after, otherwise we have
* a window where the parent can exit before we set the pdeath
* signal leading to a unsupervized container.
*/
if (prctl(PR_SET_PDEATHSIG, SIGKILL, 0, 0, 0)) {
SYSERROR("failed to set pdeath signal");
return -1;
}
lxc_sync_fini_parent(handler);
/* Tell the parent task it can begin to configure the
* container and wait for it to finish
*/
if (lxc_sync_barrier_parent(handler, LXC_SYNC_CONFIGURE))
return -1;
if (must_drop_cap_sys_boot()) {
if (prctl(PR_CAPBSET_DROP, CAP_SYS_BOOT, 0, 0, 0)) {
SYSERROR("failed to remove CAP_SYS_BOOT capability");
return -1;
}
handler->conf->need_utmp_watch = 1;
DEBUG("Dropped cap_sys_boot\n");
} else {
DEBUG("Not dropping cap_sys_boot or watching utmp\n");
handler->conf->need_utmp_watch = 0;
}
/* Setup the container, ip, names, utsname, ... */
if (lxc_setup(handler->name, handler->conf)) {
ERROR("failed to setup the container");
goto out_warn_father;
}
close(handler->sigfd);
/* after this call, we are in error because this
* ops should not return as it execs */
if (handler->ops->start(handler, handler->data))
return -1;
out_warn_father:
lxc_sync_wake_parent(handler, LXC_SYNC_POST_CONFIGURE);
return -1;
}
int lxc_spawn(struct lxc_handler *handler)
{
int clone_flags;
int failed_before_rename = 0;
const char *name = handler->name;
if (lxc_sync_init(handler))
return -1;
clone_flags = CLONE_NEWUTS|CLONE_NEWPID|CLONE_NEWIPC|CLONE_NEWNS;
if (!lxc_list_empty(&handler->conf->network)) {
clone_flags |= CLONE_NEWNET;
/* Find gateway addresses from the link device, which is
* no longer accessible inside the container. Do this
* before creating network interfaces, since goto
* out_delete_net does not work before lxc_clone. */
if (lxc_find_gateway_addresses(handler)) {
ERROR("failed to find gateway addresses");
lxc_sync_fini(handler);
return -1;
}
/* that should be done before the clone because we will
* fill the netdev index and use them in the child
*/
if (lxc_create_network(handler)) {
ERROR("failed to create the network");
lxc_sync_fini(handler);
return -1;
}
}
/* Create a process in a new set of namespaces */
handler->pid = lxc_clone(do_start, handler, clone_flags);
if (handler->pid < 0) {
SYSERROR("failed to fork into a new namespace");
goto out_delete_net;
}
lxc_sync_fini_child(handler);
if (lxc_sync_wait_child(handler, LXC_SYNC_CONFIGURE))
failed_before_rename = 1;
if (lxc_cgroup_create(name, handler->pid))
goto out_delete_net;
if (failed_before_rename)
goto out_delete_net;
/* Create the network configuration */
if (clone_flags & CLONE_NEWNET) {
if (lxc_assign_network(&handler->conf->network, handler->pid)) {
ERROR("failed to create the configured network");
goto out_delete_net;
}
}
/* Tell the child to continue its initialization and wait for
* it to exec or return an error
*/
if (lxc_sync_barrier_child(handler, LXC_SYNC_POST_CONFIGURE))
return -1;
if (handler->ops->post_start(handler, handler->data))
goto out_abort;
if (lxc_set_state(name, handler, RUNNING)) {
ERROR("failed to set state to %s",
lxc_state2str(RUNNING));
goto out_abort;
}
lxc_sync_fini(handler);
return 0;
out_delete_net:
if (clone_flags & CLONE_NEWNET)
lxc_delete_network(&handler->conf->network);
out_abort:
lxc_abort(name, handler);
lxc_sync_fini(handler);
return -1;
}
int __lxc_start(const char *name, struct lxc_conf *conf,
struct lxc_operations* ops, void *data)
{
struct lxc_handler *handler;
int err = -1;
int status;
handler = lxc_init(name, conf);
if (!handler) {
ERROR("failed to initialize the container");
return -1;
}
handler->ops = ops;
handler->data = data;
err = lxc_spawn(handler);
if (err) {
ERROR("failed to spawn '%s'", name);
goto out_fini;
}
err = lxc_poll(name, handler);
if (err) {
ERROR("mainloop exited with an error");
goto out_abort;
}
while (waitpid(handler->pid, &status, 0) < 0 && errno == EINTR)
continue;
/*
* If the child process exited but was not signaled,
* it didn't call reboot. This should mean it was an
* lxc-execute which simply exited. In any case, treat
* it as a 'halt'
*/
if (WIFSIGNALED(status)) {
switch(WTERMSIG(status)) {
case SIGINT: /* halt */
DEBUG("Container halting");
break;
case SIGHUP: /* reboot */
DEBUG("Container rebooting");
handler->conf->reboot = 1;
break;
default:
DEBUG("unknown exit status for init: %d\n", WTERMSIG(status));
break;
}
}
err = lxc_error_set_and_log(handler->pid, status);
out_fini:
lxc_cgroup_destroy(name);
lxc_fini(name, handler);
return err;
out_abort:
lxc_abort(name, handler);
goto out_fini;
}
struct start_args {
char *const *argv;
};
static int start(struct lxc_handler *handler, void* data)
{
struct start_args *arg = data;
NOTICE("exec'ing '%s'", arg->argv[0]);
execvp(arg->argv[0], arg->argv);
SYSERROR("failed to exec %s", arg->argv[0]);
return 0;
}
static int post_start(struct lxc_handler *handler, void* data)
{
struct start_args *arg = data;
NOTICE("'%s' started with pid '%d'", arg->argv[0], handler->pid);
return 0;
}
static struct lxc_operations start_ops = {
.start = start,
.post_start = post_start
};
int lxc_start(const char *name, char *const argv[], struct lxc_conf *conf)
{
struct start_args start_arg = {
.argv = argv,
};
if (lxc_check_inherited(conf, -1))
return -1;
conf->need_utmp_watch = 1;
return __lxc_start(name, conf, &start_ops, &start_arg);
}
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