forked from mirrors/nixpkgs
176 lines
4.5 KiB
Ruby
Executable file
176 lines
4.5 KiB
Ruby
Executable file
#!/usr/bin/env ruby
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# Bind mounts hierarchy: [from, to (relative)]
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# If 'to' is nil, path will be the same
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mounts = [ ['/nix/store', nil],
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['/dev', nil],
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['/proc', nil],
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['/sys', nil],
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['/etc', 'host-etc'],
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['/home', nil],
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['/var', nil],
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['/run', nil],
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['/root', nil],
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].map! { |x| [ x[0], x[1].nil? ? x[0].sub(/^\/*/, '') : x[1] ] }
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# Create directories
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mkdirs = ['tmp',
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]
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# Symlinks: [from, to (dir)]
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symlinks =
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# /etc symlinks: [file name, prefix in host-etc]
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[ ['passwd', ''],
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['group', ''],
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['shadow', ''],
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['hosts', ''],
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['resolv.conf', ''],
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['nsswitch.conf', ''],
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['pam.d', 'static'],
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['fonts/fonts.conf', 'static'],
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['fonts/conf.d/00-nixos.conf', 'static'],
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].map! { |x| [ "host-etc/#{x[1]}/#{x[0]}", "etc/#{File.dirname x[0]}" ] }
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require 'tmpdir'
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require 'fileutils'
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require 'pathname'
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require 'set'
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require 'fiddle'
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def write_file(path, str)
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File.open(path, 'w') { |file| file.write str }
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end
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# Import C standard library and several needed calls
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$libc = Fiddle.dlopen nil
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def make_fcall(name, args, output)
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c = Fiddle::Function.new $libc[name], args, output
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lambda do |*args|
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ret = c.call *args
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raise SystemCallError.new Fiddle.last_error if ret < 0
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return ret
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end
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end
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$fork = make_fcall 'fork', [], Fiddle::TYPE_INT
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CLONE_NEWNS = 0x00020000
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CLONE_NEWUSER = 0x10000000
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$unshare = make_fcall 'unshare', [Fiddle::TYPE_INT], Fiddle::TYPE_INT
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MS_BIND = 0x1000
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MS_REC = 0x4000
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$mount = make_fcall 'mount', [Fiddle::TYPE_VOIDP,
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Fiddle::TYPE_VOIDP,
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Fiddle::TYPE_VOIDP,
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Fiddle::TYPE_LONG,
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Fiddle::TYPE_VOIDP],
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Fiddle::TYPE_INT
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# Read command line args
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abort "Usage: chrootenv swdir program args..." unless ARGV.length >= 2
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swdir = Pathname.new ARGV[0]
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execp = ARGV.drop 1
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# Create temporary directory for root and chdir
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root = Dir.mktmpdir 'chrootenv'
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# Fork process; we need this to do a proper cleanup because
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# child process will chroot into temporary directory.
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# We use imported 'fork' instead of native to overcome
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# CRuby's meddling with threads; this should be safe because
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# we don't use threads at all.
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$cpid = $fork.call
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if $cpid == 0
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# Save user UID and GID
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uid = Process.uid
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gid = Process.gid
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# Create new mount and user namespaces
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# CLONE_NEWUSER requires a program to be non-threaded, hence
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# native fork above.
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$unshare.call CLONE_NEWNS | CLONE_NEWUSER
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# Map users and groups to the parent namespace
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write_file '/proc/self/setgroups', 'deny'
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write_file '/proc/self/uid_map', "#{uid} #{uid} 1"
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write_file '/proc/self/gid_map', "#{gid} #{gid} 1"
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# Do mkdirs
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mkdirs.each { |x| FileUtils.mkdir_p x }
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# Do rbind mounts.
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mounts.each do |x|
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to = "#{root}/#{x[1]}"
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FileUtils.mkdir_p to
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$mount.call x[0], to, nil, MS_BIND | MS_REC, nil
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end
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# Chroot!
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Dir.chroot root
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Dir.chdir '/'
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# Do symlinks
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symlinks.each do |x|
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FileUtils.mkdir_p x[1]
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FileUtils.ln_s x[0], x[1]
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end
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# Symlink swdir hierarchy
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mount_dirs = Set.new mounts.map { |x| Pathname.new x[1] }
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link_swdir = lambda do |swdir, prefix|
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swdir.find do |path|
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rel = prefix.join path.relative_path_from(swdir)
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# Don't symlink anything in binded or symlinked directories
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Find.prune if mount_dirs.include? rel or rel.symlink?
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if not rel.directory?
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# File does not exist; make a symlink and bail out
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rel.make_symlink path
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Find.prune
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end
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# Recursively follow symlinks
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link_swdir.call path.readlink, rel if path.symlink?
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end
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end
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link_swdir.call swdir, Pathname.new('')
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# New environment
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oldenv = ENV.to_h
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ENV.replace({ 'PS1' => oldenv['PS1'],
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'TERM' => oldenv['TERM'],
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'DISPLAY' => oldenv['DISPLAY'],
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'HOME' => oldenv['HOME'],
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'PATH' => '/bin:/sbin',
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'XDG_RUNTIME_DIR' => oldenv['XDG_RUNTIME_DIR'],
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})
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# Finally, exec!
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exec *execp
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end
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# Wait for a child. If we catch a signal, resend it to child and continue
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# waiting.
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def wait_child
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begin
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Process.wait
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# Return child's exit code
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if $?.exited?
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exit $?.exitstatus
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else
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exit 1
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end
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rescue SignalException => e
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Process.kill e.signo, $cpid
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wait_child
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end
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end
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begin
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wait_child
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ensure
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# Cleanup
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FileUtils.rm_rf root, secure: true
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end
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