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libminijail.c
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/* Copyright (c) 2012 The Chromium OS Authors. All rights reserved.
* Use of this source code is governed by a BSD-style license that can be
* found in the LICENSE file.
*/
#define _BSD_SOURCE
#define _GNU_SOURCE
#include <asm/unistd.h>
#include <ctype.h>
#include <errno.h>
#include <fcntl.h>
#include <grp.h>
#include <inttypes.h>
#include <limits.h>
#include <linux/capability.h>
#include <pwd.h>
#include <sched.h>
#include <signal.h>
#include <stdarg.h>
#include <stdbool.h>
#include <stddef.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <syscall.h>
#include <sys/capability.h>
#include <sys/mount.h>
#include <sys/param.h>
#include <sys/prctl.h>
#include <sys/stat.h>
#include <sys/types.h>
#include <sys/user.h>
#include <sys/utsname.h>
#include <sys/wait.h>
#include <unistd.h>
#include "libminijail.h"
#include "libminijail-private.h"
#include "signal_handler.h"
#include "syscall_filter.h"
#include "util.h"
#ifdef HAVE_SECUREBITS_H
#include <linux/securebits.h>
#else
#define SECURE_ALL_BITS 0x15
#define SECURE_ALL_LOCKS (SECURE_ALL_BITS << 1)
#endif
/* Until these are reliably available in linux/prctl.h */
#ifndef PR_SET_SECCOMP
# define PR_SET_SECCOMP 22
#endif
#ifndef PR_ALT_SYSCALL
# define PR_ALT_SYSCALL 0x43724f53
#endif
/* For seccomp_filter using BPF. */
#ifndef PR_SET_NO_NEW_PRIVS
# define PR_SET_NO_NEW_PRIVS 38
#endif
#ifndef SECCOMP_MODE_FILTER
# define SECCOMP_MODE_FILTER 2 /* uses user-supplied filter. */
#endif
#ifdef USE_SECCOMP_SOFTFAIL
# define SECCOMP_SOFTFAIL 1
#else
# define SECCOMP_SOFTFAIL 0
#endif
#define MAX_CGROUPS 10 /* 10 different controllers supported by Linux. */
struct mountpoint {
char *src;
char *dest;
char *type;
unsigned long flags;
struct mountpoint *next;
};
struct minijail {
/*
* WARNING: if you add a flag here you need to make sure it's
* accounted for in minijail_pre{enter|exec}() below.
*/
struct {
int uid:1;
int gid:1;
int usergroups:1;
int suppl_gids:1;
int caps:1;
int vfs:1;
int enter_vfs:1;
int pids:1;
int ipc:1;
int net:1;
int enter_net:1;
int userns:1;
int seccomp:1;
int remount_proc_ro:1;
int no_new_privs:1;
int seccomp_filter:1;
int log_seccomp_filter:1;
int chroot:1;
int pivot_root:1;
int mount_tmp:1;
int do_init:1;
int pid_file:1;
int cgroups:1;
int alt_syscall:1;
int reset_signal_mask:1;
} flags;
uid_t uid;
gid_t gid;
gid_t usergid;
char *user;
size_t suppl_gid_count;
gid_t *suppl_gid_list;
uint64_t caps;
pid_t initpid;
int mountns_fd;
int netns_fd;
char *chrootdir;
char *pid_file_path;
char *uidmap;
char *gidmap;
size_t filter_len;
struct sock_fprog *filter_prog;
char *alt_syscall_table;
struct mountpoint *mounts_head;
struct mountpoint *mounts_tail;
size_t mounts_count;
char *cgroups[MAX_CGROUPS];
size_t cgroup_count;
};
/*
* Strip out flags meant for the parent.
* We keep things that are not inherited across execve(2) (e.g. capabilities),
* or are easier to set after execve(2) (e.g. seccomp filters).
*/
void minijail_preenter(struct minijail *j)
{
j->flags.vfs = 0;
j->flags.enter_vfs = 0;
j->flags.remount_proc_ro = 0;
j->flags.pids = 0;
j->flags.do_init = 0;
j->flags.pid_file = 0;
j->flags.cgroups = 0;
}
/*
* Strip out flags meant for the child.
* We keep things that are inherited across execve(2).
*/
void minijail_preexec(struct minijail *j)
{
int vfs = j->flags.vfs;
int enter_vfs = j->flags.enter_vfs;
int remount_proc_ro = j->flags.remount_proc_ro;
int userns = j->flags.userns;
if (j->user)
free(j->user);
j->user = NULL;
if (j->suppl_gid_list)
free(j->suppl_gid_list);
j->suppl_gid_list = NULL;
memset(&j->flags, 0, sizeof(j->flags));
/* Now restore anything we meant to keep. */
j->flags.vfs = vfs;
j->flags.enter_vfs = enter_vfs;
j->flags.remount_proc_ro = remount_proc_ro;
j->flags.userns = userns;
/* Note, |pids| will already have been used before this call. */
}
/* Returns true if the kernel version is less than 3.8. */
int seccomp_kernel_support_not_required()
{
int major, minor;
struct utsname uts;
return (uname(&uts) != -1 &&
sscanf(uts.release, "%d.%d", &major, &minor) == 2 &&
((major < 3) || ((major == 3) && (minor < 8))));
}
/* Allow seccomp soft-fail on Android devices with kernel version < 3.8. */
int can_softfail()
{
#if SECCOMP_SOFTFAIL
if (is_android()) {
if (seccomp_kernel_support_not_required())
return 1;
else
return 0;
} else {
return 1;
}
#endif
return 0;
}
/* Minijail API. */
struct minijail API *minijail_new(void)
{
return calloc(1, sizeof(struct minijail));
}
void API minijail_change_uid(struct minijail *j, uid_t uid)
{
if (uid == 0)
die("useless change to uid 0");
j->uid = uid;
j->flags.uid = 1;
}
void API minijail_change_gid(struct minijail *j, gid_t gid)
{
if (gid == 0)
die("useless change to gid 0");
j->gid = gid;
j->flags.gid = 1;
}
void API minijail_set_supplementary_gids(struct minijail *j, size_t size,
const gid_t *list)
{
size_t i;
if (j->flags.usergroups)
die("cannot inherit *and* set supplementary groups");
if (size == 0) {
/* Clear supplementary groups. */
j->suppl_gid_list = NULL;
j->suppl_gid_count = 0;
j->flags.suppl_gids = 1;
return;
}
/* Copy the gid_t array. */
j->suppl_gid_list = calloc(size, sizeof(gid_t));
if (!j->suppl_gid_list) {
die("failed to allocate internal supplementary group array");
}
for (i = 0; i < size; i++) {
j->suppl_gid_list[i] = list[i];
}
j->suppl_gid_count = size;
j->flags.suppl_gids = 1;
}
int API minijail_change_user(struct minijail *j, const char *user)
{
char *buf = NULL;
struct passwd pw;
struct passwd *ppw = NULL;
ssize_t sz = sysconf(_SC_GETPW_R_SIZE_MAX);
if (sz == -1)
sz = 65536; /* your guess is as good as mine... */
/*
* sysconf(_SC_GETPW_R_SIZE_MAX), under glibc, is documented to return
* the maximum needed size of the buffer, so we don't have to search.
*/
buf = malloc(sz);
if (!buf)
return -ENOMEM;
getpwnam_r(user, &pw, buf, sz, &ppw);
/*
* We're safe to free the buffer here. The strings inside |pw| point
* inside |buf|, but we don't use any of them; this leaves the pointers
* dangling but it's safe. |ppw| points at |pw| if getpwnam_r(3) succeeded.
*/
free(buf);
/* getpwnam_r(3) does *not* set errno when |ppw| is NULL. */
if (!ppw)
return -1;
minijail_change_uid(j, ppw->pw_uid);
j->user = strdup(user);
if (!j->user)
return -ENOMEM;
j->usergid = ppw->pw_gid;
return 0;
}
int API minijail_change_group(struct minijail *j, const char *group)
{
char *buf = NULL;
struct group gr;
struct group *pgr = NULL;
ssize_t sz = sysconf(_SC_GETGR_R_SIZE_MAX);
if (sz == -1)
sz = 65536; /* and mine is as good as yours, really */
/*
* sysconf(_SC_GETGR_R_SIZE_MAX), under glibc, is documented to return
* the maximum needed size of the buffer, so we don't have to search.
*/
buf = malloc(sz);
if (!buf)
return -ENOMEM;
getgrnam_r(group, &gr, buf, sz, &pgr);
/*
* We're safe to free the buffer here. The strings inside gr point
* inside buf, but we don't use any of them; this leaves the pointers
* dangling but it's safe. pgr points at gr if getgrnam_r succeeded.
*/
free(buf);
/* getgrnam_r(3) does *not* set errno when |pgr| is NULL. */
if (!pgr)
return -1;
minijail_change_gid(j, pgr->gr_gid);
return 0;
}
void API minijail_use_seccomp(struct minijail *j)
{
j->flags.seccomp = 1;
}
void API minijail_no_new_privs(struct minijail *j)
{
j->flags.no_new_privs = 1;
}
void API minijail_use_seccomp_filter(struct minijail *j)
{
j->flags.seccomp_filter = 1;
}
void API minijail_log_seccomp_filter_failures(struct minijail *j)
{
j->flags.log_seccomp_filter = 1;
}
void API minijail_use_caps(struct minijail *j, uint64_t capmask)
{
j->caps = capmask;
j->flags.caps = 1;
}
void API minijail_reset_signal_mask(struct minijail* j) {
j->flags.reset_signal_mask = 1;
}
void API minijail_namespace_vfs(struct minijail *j)
{
j->flags.vfs = 1;
}
void API minijail_namespace_enter_vfs(struct minijail *j, const char *ns_path)
{
int ns_fd = open(ns_path, O_RDONLY);
if (ns_fd < 0) {
pdie("failed to open namespace '%s'", ns_path);
}
j->mountns_fd = ns_fd;
j->flags.enter_vfs = 1;
}
void API minijail_namespace_pids(struct minijail *j)
{
j->flags.vfs = 1;
j->flags.remount_proc_ro = 1;
j->flags.pids = 1;
j->flags.do_init = 1;
}
void API minijail_namespace_ipc(struct minijail *j)
{
j->flags.ipc = 1;
}
void API minijail_namespace_net(struct minijail *j)
{
j->flags.net = 1;
}
void API minijail_namespace_enter_net(struct minijail *j, const char *ns_path)
{
int ns_fd = open(ns_path, O_RDONLY);
if (ns_fd < 0) {
pdie("failed to open namespace '%s'", ns_path);
}
j->netns_fd = ns_fd;
j->flags.enter_net = 1;
}
void API minijail_remount_proc_readonly(struct minijail *j)
{
j->flags.vfs = 1;
j->flags.remount_proc_ro = 1;
}
void API minijail_namespace_user(struct minijail *j)
{
j->flags.userns = 1;
}
int API minijail_uidmap(struct minijail *j, const char *uidmap)
{
j->uidmap = strdup(uidmap);
if (!j->uidmap)
return -ENOMEM;
char *ch;
for (ch = j->uidmap; *ch; ch++) {
if (*ch == ',')
*ch = '\n';
}
return 0;
}
int API minijail_gidmap(struct minijail *j, const char *gidmap)
{
j->gidmap = strdup(gidmap);
if (!j->gidmap)
return -ENOMEM;
char *ch;
for (ch = j->gidmap; *ch; ch++) {
if (*ch == ',')
*ch = '\n';
}
return 0;
}
void API minijail_inherit_usergroups(struct minijail *j)
{
j->flags.usergroups = 1;
}
void API minijail_run_as_init(struct minijail *j)
{
/*
* Since the jailed program will become 'init' in the new PID namespace,
* Minijail does not need to fork an 'init' process.
*/
j->flags.do_init = 0;
}
int API minijail_enter_chroot(struct minijail *j, const char *dir)
{
if (j->chrootdir)
return -EINVAL;
j->chrootdir = strdup(dir);
if (!j->chrootdir)
return -ENOMEM;
j->flags.chroot = 1;
return 0;
}
int API minijail_enter_pivot_root(struct minijail *j, const char *dir)
{
if (j->chrootdir)
return -EINVAL;
j->chrootdir = strdup(dir);
if (!j->chrootdir)
return -ENOMEM;
j->flags.pivot_root = 1;
return 0;
}
static char *append_external_path(const char *external_path,
const char *path_inside_chroot)
{
char *path;
size_t pathlen;
/* One extra char for '/' and one for '\0', hence + 2. */
pathlen = strlen(path_inside_chroot) + strlen(external_path) + 2;
path = malloc(pathlen);
snprintf(path, pathlen, "%s/%s", external_path, path_inside_chroot);
return path;
}
char API *minijail_get_original_path(struct minijail *j,
const char *path_inside_chroot)
{
struct mountpoint *b;
b = j->mounts_head;
while (b) {
/*
* If |path_inside_chroot| is the exact destination of a
* mount, then the original path is exactly the source of
* the mount.
* for example: "-b /some/path/exe,/chroot/path/exe"
* mount source = /some/path/exe, mount dest =
* /chroot/path/exe Then when getting the original path of
* "/chroot/path/exe", the source of that mount,
* "/some/path/exe" is what should be returned.
*/
if (!strcmp(b->dest, path_inside_chroot))
return strdup(b->src);
/*
* If |path_inside_chroot| is within the destination path of a
* mount, take the suffix of the chroot path relative to the
* mount destination path, and append it to the mount source
* path.
*/
if (!strncmp(b->dest, path_inside_chroot, strlen(b->dest))) {
const char *relative_path =
path_inside_chroot + strlen(b->dest);
return append_external_path(b->src, relative_path);
}
b = b->next;
}
/* If there is a chroot path, append |path_inside_chroot| to that. */
if (j->chrootdir)
return append_external_path(j->chrootdir, path_inside_chroot);
/* No chroot, so the path outside is the same as it is inside. */
return strdup(path_inside_chroot);
}
void API minijail_mount_tmp(struct minijail *j)
{
j->flags.mount_tmp = 1;
}
int API minijail_write_pid_file(struct minijail *j, const char *path)
{
j->pid_file_path = strdup(path);
if (!j->pid_file_path)
return -ENOMEM;
j->flags.pid_file = 1;
return 0;
}
int API minijail_add_to_cgroup(struct minijail *j, const char *path)
{
if (j->cgroup_count >= MAX_CGROUPS)
return -ENOMEM;
j->cgroups[j->cgroup_count] = strdup(path);
if (!j->cgroups[j->cgroup_count])
return -ENOMEM;
j->cgroup_count++;
j->flags.cgroups = 1;
return 0;
}
int API minijail_mount(struct minijail *j, const char *src, const char *dest,
const char *type, unsigned long flags)
{
struct mountpoint *m;
if (*dest != '/')
return -EINVAL;
m = calloc(1, sizeof(*m));
if (!m)
return -ENOMEM;
m->dest = strdup(dest);
if (!m->dest)
goto error;
m->src = strdup(src);
if (!m->src)
goto error;
m->type = strdup(type);
if (!m->type)
goto error;
m->flags = flags;
info("mount %s -> %s type '%s'", src, dest, type);
/*
* Force vfs namespacing so the mounts don't leak out into the
* containing vfs namespace.
*/
minijail_namespace_vfs(j);
if (j->mounts_tail)
j->mounts_tail->next = m;
else
j->mounts_head = m;
j->mounts_tail = m;
j->mounts_count++;
return 0;
error:
free(m->src);
free(m->dest);
free(m);
return -ENOMEM;
}
int API minijail_bind(struct minijail *j, const char *src, const char *dest,
int writeable)
{
unsigned long flags = MS_BIND;
if (!writeable)
flags |= MS_RDONLY;
return minijail_mount(j, src, dest, "", flags);
}
void API minijail_parse_seccomp_filters(struct minijail *j, const char *path)
{
if (prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, NULL)) {
if ((errno == EINVAL) && can_softfail()) {
warn("not loading seccomp filter,"
" seccomp not supported");
j->flags.seccomp_filter = 0;
j->flags.log_seccomp_filter = 0;
j->filter_len = 0;
j->filter_prog = NULL;
j->flags.no_new_privs = 0;
}
}
FILE *file = fopen(path, "r");
if (!file) {
pdie("failed to open seccomp filter file '%s'", path);
}
struct sock_fprog *fprog = malloc(sizeof(struct sock_fprog));
if (compile_filter(file, fprog, j->flags.log_seccomp_filter)) {
die("failed to compile seccomp filter BPF program in '%s'",
path);
}
j->filter_len = fprog->len;
j->filter_prog = fprog;
fclose(file);
}
int API minijail_use_alt_syscall(struct minijail *j, const char *table)
{
j->alt_syscall_table = strdup(table);
if (!j->alt_syscall_table)
return -ENOMEM;
j->flags.alt_syscall = 1;
return 0;
}
struct marshal_state {
size_t available;
size_t total;
char *buf;
};
void marshal_state_init(struct marshal_state *state,
char *buf, size_t available)
{
state->available = available;
state->buf = buf;
state->total = 0;
}
void marshal_append(struct marshal_state *state,
void *src, size_t length)
{
size_t copy_len = MIN(state->available, length);
/* Up to |available| will be written. */
if (copy_len) {
memcpy(state->buf, src, copy_len);
state->buf += copy_len;
state->available -= copy_len;
}
/* |total| will contain the expected length. */
state->total += length;
}
void minijail_marshal_helper(struct marshal_state *state,
const struct minijail *j)
{
struct mountpoint *m = NULL;
size_t i;
marshal_append(state, (char *)j, sizeof(*j));
if (j->user)
marshal_append(state, j->user, strlen(j->user) + 1);
if (j->suppl_gid_list) {
marshal_append(state, j->suppl_gid_list,
j->suppl_gid_count * sizeof(gid_t));
}
if (j->chrootdir)
marshal_append(state, j->chrootdir, strlen(j->chrootdir) + 1);
if (j->alt_syscall_table) {
marshal_append(state, j->alt_syscall_table,
strlen(j->alt_syscall_table) + 1);
}
if (j->flags.seccomp_filter && j->filter_prog) {
struct sock_fprog *fp = j->filter_prog;
marshal_append(state, (char *)fp->filter,
fp->len * sizeof(struct sock_filter));
}
for (m = j->mounts_head; m; m = m->next) {
marshal_append(state, m->src, strlen(m->src) + 1);
marshal_append(state, m->dest, strlen(m->dest) + 1);
marshal_append(state, m->type, strlen(m->type) + 1);
marshal_append(state, (char *)&m->flags, sizeof(m->flags));
}
for (i = 0; i < j->cgroup_count; ++i)
marshal_append(state, j->cgroups[i], strlen(j->cgroups[i]) + 1);
}
size_t API minijail_size(const struct minijail *j)
{
struct marshal_state state;
marshal_state_init(&state, NULL, 0);
minijail_marshal_helper(&state, j);
return state.total;
}
int minijail_marshal(const struct minijail *j, char *buf, size_t available)
{
struct marshal_state state;
marshal_state_init(&state, buf, available);
minijail_marshal_helper(&state, j);
return (state.total > available);
}
/*
* consumebytes: consumes @length bytes from a buffer @buf of length @buflength
* @length Number of bytes to consume
* @buf Buffer to consume from
* @buflength Size of @buf
*
* Returns a pointer to the base of the bytes, or NULL for errors.
*/
void *consumebytes(size_t length, char **buf, size_t *buflength)
{
char *p = *buf;
if (length > *buflength)
return NULL;
*buf += length;
*buflength -= length;
return p;
}
/*
* consumestr: consumes a C string from a buffer @buf of length @length
* @buf Buffer to consume
* @length Length of buffer
*
* Returns a pointer to the base of the string, or NULL for errors.
*/
char *consumestr(char **buf, size_t *buflength)
{
size_t len = strnlen(*buf, *buflength);
if (len == *buflength)
/* There's no null-terminator. */
return NULL;
return consumebytes(len + 1, buf, buflength);
}
int minijail_unmarshal(struct minijail *j, char *serialized, size_t length)
{
size_t i;
size_t count;
int ret = -EINVAL;
if (length < sizeof(*j))
goto out;
memcpy((void *)j, serialized, sizeof(*j));
serialized += sizeof(*j);
length -= sizeof(*j);
/* Potentially stale pointers not used as signals. */
j->mounts_head = NULL;
j->mounts_tail = NULL;
j->filter_prog = NULL;
if (j->user) { /* stale pointer */
char *user = consumestr(&serialized, &length);
if (!user)
goto clear_pointers;
j->user = strdup(user);
if (!j->user)
goto clear_pointers;
}
if (j->suppl_gid_list) { /* stale pointer */
if (j->suppl_gid_count > NGROUPS_MAX) {
goto bad_gid_list;
}
size_t gid_list_size = j->suppl_gid_count * sizeof(gid_t);
void *gid_list_bytes =
consumebytes(gid_list_size, &serialized, &length);
if (!gid_list_bytes)
goto bad_gid_list;
j->suppl_gid_list = calloc(j->suppl_gid_count, sizeof(gid_t));
if (!j->suppl_gid_list)
goto bad_gid_list;
memcpy(j->suppl_gid_list, gid_list_bytes, gid_list_size);
}
if (j->chrootdir) { /* stale pointer */
char *chrootdir = consumestr(&serialized, &length);
if (!chrootdir)
goto bad_chrootdir;
j->chrootdir = strdup(chrootdir);
if (!j->chrootdir)
goto bad_chrootdir;
}
if (j->alt_syscall_table) { /* stale pointer */
char *alt_syscall_table = consumestr(&serialized, &length);
if (!alt_syscall_table)
goto bad_syscall_table;
j->alt_syscall_table = strdup(alt_syscall_table);
if (!j->alt_syscall_table)
goto bad_syscall_table;
}
if (j->flags.seccomp_filter && j->filter_len > 0) {
size_t ninstrs = j->filter_len;
if (ninstrs > (SIZE_MAX / sizeof(struct sock_filter)) ||
ninstrs > USHRT_MAX)
goto bad_filters;
size_t program_len = ninstrs * sizeof(struct sock_filter);
void *program = consumebytes(program_len, &serialized, &length);
if (!program)
goto bad_filters;
j->filter_prog = malloc(sizeof(struct sock_fprog));
if (!j->filter_prog)
goto bad_filters;
j->filter_prog->len = ninstrs;
j->filter_prog->filter = malloc(program_len);
if (!j->filter_prog->filter)
goto bad_filter_prog_instrs;
memcpy(j->filter_prog->filter, program, program_len);
}
count = j->mounts_count;
j->mounts_count = 0;
for (i = 0; i < count; ++i) {
unsigned long *flags;
const char *dest;
const char *type;
const char *src = consumestr(&serialized, &length);
if (!src)
goto bad_mounts;
dest = consumestr(&serialized, &length);
if (!dest)
goto bad_mounts;
type = consumestr(&serialized, &length);
if (!type)
goto bad_mounts;
flags = consumebytes(sizeof(*flags), &serialized, &length);
if (!flags)
goto bad_mounts;
if (minijail_mount(j, src, dest, type, *flags))
goto bad_mounts;
}
count = j->cgroup_count;
j->cgroup_count = 0;
for (i = 0; i < count; ++i) {
char *cgroup = consumestr(&serialized, &length);
if (!cgroup)
goto bad_cgroups;
j->cgroups[i] = strdup(cgroup);
if (!j->cgroups[i])
goto bad_cgroups;
++j->cgroup_count;
}
return 0;
bad_cgroups:
while (j->mounts_head) {
struct mountpoint *m = j->mounts_head;
j->mounts_head = j->mounts_head->next;
free(m->type);
free(m->dest);
free(m->src);
free(m);
}
for (i = 0; i < j->cgroup_count; ++i)
free(j->cgroups[i]);
bad_mounts:
if (j->flags.seccomp_filter && j->filter_len > 0) {
free(j->filter_prog->filter);
free(j->filter_prog);
}
bad_filter_prog_instrs:
if (j->filter_prog)
free(j->filter_prog);
bad_filters:
if (j->alt_syscall_table)
free(j->alt_syscall_table);
bad_syscall_table:
if (j->chrootdir)
free(j->chrootdir);
bad_chrootdir:
if (j->suppl_gid_list)
free(j->suppl_gid_list);
bad_gid_list:
if (j->user)
free(j->user);
clear_pointers:
j->user = NULL;
j->suppl_gid_list = NULL;
j->chrootdir = NULL;
j->alt_syscall_table = NULL;
j->cgroup_count = 0;
out:
return ret;
}
static void write_ugid_mappings(const struct minijail *j)
{
int fd, ret, len;
size_t sz;
char fname[32];
sz = sizeof(fname);
if (j->uidmap) {
ret = snprintf(fname, sz, "/proc/%d/uid_map", j->initpid);
if (ret < 0 || (size_t)ret >= sz)
die("failed to write file name of uid_map");
fd = open(fname, O_WRONLY);
if (fd < 0)
pdie("failed to open '%s'", fname);
len = strlen(j->uidmap);
if (write(fd, j->uidmap, len) < len)
die("failed to set uid_map");
close(fd);
}
if (j->gidmap) {
ret = snprintf(fname, sz, "/proc/%d/gid_map", j->initpid);
if (ret < 0 || (size_t)ret >= sz)
die("failed to write file name of gid_map");
fd = open(fname, O_WRONLY);
if (fd < 0)
pdie("failed to open '%s'", fname);
len = strlen(j->gidmap);
if (write(fd, j->gidmap, len) < len)
die("failed to set gid_map");
close(fd);
}
}
static void parent_setup_complete(int *pipe_fds)
{
close(pipe_fds[0]);
close(pipe_fds[1]);
}
/*
* wait_for_parent_setup: Called by the child process to wait for any
* further parent-side setup to complete before continuing.
*/
static void wait_for_parent_setup(int *pipe_fds)
{
char buf;
close(pipe_fds[1]);
/* Wait for parent to complete setup and close the pipe. */
if (read(pipe_fds[0], &buf, 1) != 0)
die("failed to sync with parent");
close(pipe_fds[0]);
}
static void enter_user_namespace(const struct minijail *j)
{
if (j->uidmap && setresuid(0, 0, 0))
pdie("setresuid");
if (j->gidmap && setresgid(0, 0, 0))
pdie("setresgid");
}
/*
* mount_one: Applies mounts from @m for @j, recursing as needed.
* @j Minijail these mounts are for
* @m Head of list of mounts
*
* Returns 0 for success.
*/
static int mount_one(const struct minijail *j, struct mountpoint *m)
{
int ret;
char *dest;
int remount_ro = 0;
/* |dest| has a leading "/". */
if (asprintf(&dest, "%s%s", j->chrootdir, m->dest) < 0)
return -ENOMEM;
/*