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The result of looking at "grep -F -B2 '*fill*' busybox_unstripped.map" text data bss dec hex filename 829901 4086 1904 835891 cc133 busybox_before 829665 4086 1904 835655 cc047 busybox Signed-off-by: Denys Vlasenko <vda.linux@googlemail.com>
292 lines
8.1 KiB
C
292 lines
8.1 KiB
C
/* vi: set sw=4 ts=4: */
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/*
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* Mini nsenter implementation for busybox.
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*
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* Copyright (C) 2016 by Bartosz Golaszewski <bartekgola@gmail.com>
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*
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* Licensed under GPLv2 or later, see file LICENSE in this source tree.
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*/
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//config:config NSENTER
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//config: bool "nsenter"
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//config: default y
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//config: select PLATFORM_LINUX
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//config: help
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//config: Run program with namespaces of other processes.
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//config:
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//config:config FEATURE_NSENTER_LONG_OPTS
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//config: bool "Enable long options"
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//config: default y
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//config: depends on NSENTER && LONG_OPTS
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//config: help
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//config: Support long options for the nsenter applet. This makes
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//config: the busybox implementation more compatible with upstream.
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//applet:IF_NSENTER(APPLET(nsenter, BB_DIR_USR_BIN, BB_SUID_DROP))
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//kbuild:lib-$(CONFIG_NSENTER) += nsenter.o
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//usage:#define nsenter_trivial_usage
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//usage: "[OPTIONS] [PROG [ARGS]]"
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//usage:#if ENABLE_FEATURE_NSENTER_LONG_OPTS
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//usage:#define nsenter_full_usage "\n"
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//usage: "\n -t, --target=PID Target process to get namespaces from"
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//usage: "\n -m, --mount[=FILE] Enter mount namespace"
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//usage: "\n -u, --uts[=FILE] Enter UTS namespace (hostname etc)"
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//usage: "\n -i, --ipc[=FILE] Enter System V IPC namespace"
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//usage: "\n -n, --net[=FILE] Enter network namespace"
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//usage: "\n -p, --pid[=FILE] Enter pid namespace"
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//usage: "\n -U, --user[=FILE] Enter user namespace"
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//usage: "\n -S, --setuid=UID Set uid in entered namespace"
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//usage: "\n -G, --setgid=GID Set gid in entered namespace"
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//usage: "\n --preserve-credentials Don't touch uids or gids"
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//usage: "\n -r, --root[=DIR] Set root directory"
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//usage: "\n -w, --wd[=DIR] Set working directory"
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//usage: "\n -F, --no-fork Don't fork before exec'ing PROG"
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//usage:#else
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//usage:#define nsenter_full_usage "\n"
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//usage: "\n -t PID Target process to get namespaces from"
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//usage: "\n -m[FILE] Enter mount namespace"
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//usage: "\n -u[FILE] Enter UTS namespace (hostname etc)"
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//usage: "\n -i[FILE] Enter System V IPC namespace"
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//usage: "\n -n[FILE] Enter network namespace"
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//usage: "\n -p[FILE] Enter pid namespace"
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//usage: "\n -U[FILE] Enter user namespace"
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//usage: "\n -S UID Set uid in entered namespace"
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//usage: "\n -G GID Set gid in entered namespace"
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//usage: "\n -r[DIR] Set root directory"
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//usage: "\n -w[DIR] Set working directory"
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//usage: "\n -F Don't fork before exec'ing PROG"
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//usage:#endif
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#include <sched.h>
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#ifndef CLONE_NEWUTS
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# define CLONE_NEWUTS 0x04000000
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#endif
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#ifndef CLONE_NEWIPC
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# define CLONE_NEWIPC 0x08000000
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#endif
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#ifndef CLONE_NEWUSER
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# define CLONE_NEWUSER 0x10000000
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#endif
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#ifndef CLONE_NEWPID
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# define CLONE_NEWPID 0x20000000
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#endif
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#ifndef CLONE_NEWNET
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# define CLONE_NEWNET 0x40000000
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#endif
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#include "libbb.h"
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struct namespace_descr {
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int flag; /* value passed to setns() */
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char ns_nsfile8[8]; /* "ns/" + namespace file in process' procfs entry */
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};
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struct namespace_ctx {
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char *path; /* optional path to a custom ns file */
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int fd; /* opened namespace file descriptor */
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};
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enum {
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OPT_user = 1 << 0,
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OPT_ipc = 1 << 1,
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OPT_uts = 1 << 2,
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OPT_network = 1 << 3,
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OPT_pid = 1 << 4,
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OPT_mount = 1 << 5,
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OPT_target = 1 << 6,
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OPT_setuid = 1 << 7,
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OPT_setgid = 1 << 8,
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OPT_root = 1 << 9,
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OPT_wd = 1 << 10,
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OPT_nofork = 1 << 11,
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OPT_prescred = (1 << 12) * ENABLE_FEATURE_NSENTER_LONG_OPTS,
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};
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enum {
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NS_USR_POS = 0,
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NS_IPC_POS,
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NS_UTS_POS,
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NS_NET_POS,
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NS_PID_POS,
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NS_MNT_POS,
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NS_COUNT,
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};
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/*
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* The order is significant in nsenter.
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* The user namespace comes first, so that it is entered first.
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* This gives an unprivileged user the potential to enter other namespaces.
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*/
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static const struct namespace_descr ns_list[] = {
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{ CLONE_NEWUSER, "ns/user", },
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{ CLONE_NEWIPC, "ns/ipc", },
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{ CLONE_NEWUTS, "ns/uts", },
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{ CLONE_NEWNET, "ns/net", },
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{ CLONE_NEWPID, "ns/pid", },
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{ CLONE_NEWNS, "ns/mnt", },
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};
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/*
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* Upstream nsenter doesn't support the short option for --preserve-credentials
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*/
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static const char opt_str[] ALIGN1 = "U::i::u::n::p::m::""t+S+G+r::w::F";
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#if ENABLE_FEATURE_NSENTER_LONG_OPTS
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static const char nsenter_longopts[] ALIGN1 =
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"user\0" Optional_argument "U"
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"ipc\0" Optional_argument "i"
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"uts\0" Optional_argument "u"
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"network\0" Optional_argument "n"
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"pid\0" Optional_argument "p"
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"mount\0" Optional_argument "m"
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"target\0" Required_argument "t"
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"setuid\0" Required_argument "S"
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"setgid\0" Required_argument "G"
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"root\0" Optional_argument "r"
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"wd\0" Optional_argument "w"
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"no-fork\0" No_argument "F"
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"preserve-credentials\0" No_argument "\xff"
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;
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#endif
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/*
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* Open a file and return the new descriptor. If a full path is provided in
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* fs_path, then the file to which it points is opened. Otherwise (fd_path is
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* NULL) the routine builds a path to a procfs file using the following
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* template: '/proc/<target_pid>/<target_file>'.
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*/
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static int open_by_path_or_target(const char *path,
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pid_t target_pid, const char *target_file)
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{
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char proc_path_buf[sizeof("/proc/%u/1234567890") + sizeof(int)*3];
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if (!path) {
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if (target_pid == 0) {
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/* Example:
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* "nsenter -p PROG" - neither -pFILE nor -tPID given.
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*/
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bb_show_usage();
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}
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snprintf(proc_path_buf, sizeof(proc_path_buf),
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"/proc/%u/%s", (unsigned)target_pid, target_file);
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path = proc_path_buf;
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}
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return xopen(path, O_RDONLY);
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}
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int nsenter_main(int argc, char **argv) MAIN_EXTERNALLY_VISIBLE;
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int nsenter_main(int argc UNUSED_PARAM, char **argv)
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{
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int i;
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unsigned int opts;
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const char *root_dir_str = NULL;
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const char *wd_str = NULL;
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struct namespace_ctx ns_ctx_list[NS_COUNT];
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int setgroups_failed;
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int root_fd, wd_fd;
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int target_pid = 0;
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int uid = 0;
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int gid = 0;
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memset(ns_ctx_list, 0, sizeof(ns_ctx_list));
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IF_FEATURE_NSENTER_LONG_OPTS(applet_long_options = nsenter_longopts);
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opts = getopt32(argv, opt_str,
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&ns_ctx_list[NS_USR_POS].path,
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&ns_ctx_list[NS_IPC_POS].path,
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&ns_ctx_list[NS_UTS_POS].path,
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&ns_ctx_list[NS_NET_POS].path,
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&ns_ctx_list[NS_PID_POS].path,
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&ns_ctx_list[NS_MNT_POS].path,
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&target_pid, &uid, &gid,
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&root_dir_str, &wd_str
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);
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argv += optind;
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root_fd = wd_fd = -1;
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if (opts & OPT_root)
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root_fd = open_by_path_or_target(root_dir_str,
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target_pid, "root");
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if (opts & OPT_wd)
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wd_fd = open_by_path_or_target(wd_str, target_pid, "cwd");
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for (i = 0; i < NS_COUNT; i++) {
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const struct namespace_descr *ns = &ns_list[i];
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struct namespace_ctx *ns_ctx = &ns_ctx_list[i];
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ns_ctx->fd = -1;
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if (opts & (1 << i))
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ns_ctx->fd = open_by_path_or_target(ns_ctx->path,
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target_pid, ns->ns_nsfile8);
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}
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/*
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* Entering the user namespace without --preserve-credentials implies
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* --setuid & --setgid and clearing root's groups.
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*/
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setgroups_failed = 0;
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if ((opts & OPT_user) && !(opts & OPT_prescred)) {
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opts |= (OPT_setuid | OPT_setgid);
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/*
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* We call setgroups() before and after setns() and only
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* bail-out if it fails twice.
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*/
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setgroups_failed = (setgroups(0, NULL) < 0);
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}
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for (i = 0; i < NS_COUNT; i++) {
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const struct namespace_descr *ns = &ns_list[i];
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struct namespace_ctx *ns_ctx = &ns_ctx_list[i];
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if (ns_ctx->fd < 0)
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continue;
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if (setns(ns_ctx->fd, ns->flag)) {
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bb_perror_msg_and_die(
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"setns(): can't reassociate to namespace '%s'",
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ns->ns_nsfile8 + 3 /* skip over "ns/" */
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);
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}
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close(ns_ctx->fd); /* should close fds, to not confuse exec'ed PROG */
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/*ns_ctx->fd = -1;*/
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}
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if (root_fd >= 0) {
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if (wd_fd < 0) {
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/*
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* Save the current working directory if we're not
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* changing it.
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*/
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wd_fd = xopen(".", O_RDONLY);
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}
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xfchdir(root_fd);
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xchroot(".");
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close(root_fd);
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/*root_fd = -1;*/
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}
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if (wd_fd >= 0) {
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xfchdir(wd_fd);
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close(wd_fd);
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/*wd_fd = -1;*/
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}
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/*
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* Entering the pid namespace implies forking unless it's been
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* explicitly requested by the user not to.
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*/
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if (!(opts & OPT_nofork) && (opts & OPT_pid)) {
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xvfork_parent_waits_and_exits();
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/* Child continues */
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}
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if (opts & OPT_setgid) {
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if (setgroups(0, NULL) < 0 && setgroups_failed)
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bb_perror_msg_and_die("setgroups");
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xsetgid(gid);
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}
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if (opts & OPT_setuid)
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xsetuid(uid);
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exec_prog_or_SHELL(argv);
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}
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