600 lines
6.7 KiB
Plaintext
600 lines
6.7 KiB
Plaintext
#
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# Define common prefixes for access vectors
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#
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# common common_name { permission_name ... }
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#
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# Define a common prefix for file access vectors.
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#
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common file
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{
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ioctl
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read
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write
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create
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getattr
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setattr
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lock
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relabelfrom
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relabelto
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append
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unlink
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link
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rename
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execute
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swapon
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quotaon
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mounton
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}
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#
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# Define a common prefix for socket access vectors.
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#
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common socket
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{
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# inherited from file
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ioctl
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read
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write
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create
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getattr
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setattr
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lock
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relabelfrom
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relabelto
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append
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# socket-specific
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bind
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connect
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listen
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accept
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getopt
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setopt
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shutdown
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recvfrom
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sendto
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recv_msg
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send_msg
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name_bind
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}
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#
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# Define a common prefix for ipc access vectors.
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#
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common ipc
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{
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create
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destroy
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getattr
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setattr
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read
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write
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associate
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unix_read
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unix_write
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}
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#
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# Define the access vectors.
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#
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# class class_name [ inherits common_name ] { permission_name ... }
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#
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# Define the access vector interpretation for file-related objects.
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#
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class filesystem
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{
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mount
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remount
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unmount
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getattr
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relabelfrom
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relabelto
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transition
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associate
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quotamod
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quotaget
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}
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class dir
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inherits file
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{
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add_name
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remove_name
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reparent
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search
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rmdir
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}
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class file
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inherits file
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{
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execute_no_trans
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entrypoint
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execmod
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}
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class lnk_file
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inherits file
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class chr_file
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inherits file
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{
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execute_no_trans
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entrypoint
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execmod
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}
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class blk_file
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inherits file
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class sock_file
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inherits file
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class fifo_file
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inherits file
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class fd
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{
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use
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}
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#
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# Define the access vector interpretation for network-related objects.
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#
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class socket
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inherits socket
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class tcp_socket
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inherits socket
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{
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connectto
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newconn
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acceptfrom
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node_bind
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}
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class udp_socket
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inherits socket
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{
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node_bind
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}
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class rawip_socket
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inherits socket
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{
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node_bind
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}
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class node
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{
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tcp_recv
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tcp_send
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udp_recv
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udp_send
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rawip_recv
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rawip_send
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enforce_dest
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}
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class netif
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{
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tcp_recv
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tcp_send
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udp_recv
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udp_send
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rawip_recv
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rawip_send
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}
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class netlink_socket
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inherits socket
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class packet_socket
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inherits socket
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class key_socket
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inherits socket
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class unix_stream_socket
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inherits socket
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{
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connectto
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newconn
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acceptfrom
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}
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class unix_dgram_socket
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inherits socket
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#
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# Define the access vector interpretation for process-related objects
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#
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class process
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{
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fork
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transition
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sigchld # commonly granted from child to parent
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sigkill # cannot be caught or ignored
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sigstop # cannot be caught or ignored
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signull # for kill(pid, 0)
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signal # all other signals
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ptrace
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getsched
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setsched
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getsession
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getpgid
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setpgid
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getcap
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setcap
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share
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getattr
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setexec
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setfscreate
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noatsecure
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siginh
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setrlimit
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rlimitinh
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dyntransition
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setcurrent
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execmem
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}
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#
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# Define the access vector interpretation for ipc-related objects
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#
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class ipc
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inherits ipc
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class sem
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inherits ipc
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class msgq
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inherits ipc
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{
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enqueue
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}
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class msg
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{
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send
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receive
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}
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class shm
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inherits ipc
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{
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lock
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}
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#
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# Define the access vector interpretation for the security server.
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#
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class security
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{
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compute_av
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compute_create
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compute_member
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check_context
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load_policy
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compute_relabel
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compute_user
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setenforce # was avc_toggle in system class
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setbool
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setsecparam
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setcheckreqprot
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}
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#
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# Define the access vector interpretation for system operations.
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#
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class system
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{
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ipc_info
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syslog_read
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syslog_mod
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syslog_console
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}
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#
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# Define the access vector interpretation for controling capabilies
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#
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class capability
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{
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# The capabilities are defined in include/linux/capability.h
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# Care should be taken to ensure that these are consistent with
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# those definitions. (Order matters)
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chown
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dac_override
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dac_read_search
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fowner
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fsetid
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kill
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setgid
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setuid
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setpcap
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linux_immutable
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net_bind_service
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net_broadcast
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net_admin
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net_raw
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ipc_lock
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ipc_owner
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sys_module
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sys_rawio
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sys_chroot
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sys_ptrace
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sys_pacct
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sys_admin
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sys_boot
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sys_nice
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sys_resource
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sys_time
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sys_tty_config
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mknod
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lease
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audit_write
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audit_control
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}
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#
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# Define the access vector interpretation for controlling
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# changes to passwd information.
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#
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class passwd
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{
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passwd # change another user passwd
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chfn # change another user finger info
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chsh # change another user shell
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rootok # pam_rootok check (skip auth)
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crontab # crontab on another user
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}
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#
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# SE-X Windows stuff
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#
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class drawable
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{
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create
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destroy
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draw
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copy
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getattr
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}
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class gc
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{
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create
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free
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getattr
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setattr
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}
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class window
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{
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addchild
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create
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destroy
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map
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unmap
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chstack
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chproplist
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chprop
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listprop
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getattr
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setattr
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setfocus
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move
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chselection
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chparent
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ctrllife
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enumerate
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transparent
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mousemotion
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clientcomevent
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inputevent
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drawevent
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windowchangeevent
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windowchangerequest
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serverchangeevent
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extensionevent
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}
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class font
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{
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load
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free
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getattr
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use
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}
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class colormap
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{
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create
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free
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install
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uninstall
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list
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read
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store
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getattr
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setattr
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}
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class property
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{
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create
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free
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read
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write
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}
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class cursor
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{
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create
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createglyph
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free
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assign
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setattr
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}
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class xclient
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{
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kill
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}
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class xinput
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{
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lookup
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getattr
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setattr
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setfocus
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warppointer
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activegrab
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passivegrab
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ungrab
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bell
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mousemotion
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relabelinput
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}
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class xserver
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{
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screensaver
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gethostlist
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sethostlist
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getfontpath
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setfontpath
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getattr
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grab
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ungrab
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}
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class xextension
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{
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query
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use
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}
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#
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# Define the access vector interpretation for controlling
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# PaX flags
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#
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class pax
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{
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pageexec # Paging based non-executable pages
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emutramp # Emulate trampolines
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mprotect # Restrict mprotect()
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randmmap # Randomize mmap() base
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randexec # Randomize ET_EXEC base
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segmexec # Segmentation based non-executable pages
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}
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#
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# Extended Netlink classes
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#
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class netlink_route_socket
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inherits socket
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{
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nlmsg_read
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nlmsg_write
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}
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class netlink_firewall_socket
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inherits socket
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{
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nlmsg_read
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nlmsg_write
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}
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class netlink_tcpdiag_socket
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inherits socket
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{
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nlmsg_read
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nlmsg_write
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}
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class netlink_nflog_socket
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inherits socket
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class netlink_xfrm_socket
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inherits socket
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{
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nlmsg_read
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nlmsg_write
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}
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class netlink_selinux_socket
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inherits socket
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class netlink_audit_socket
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inherits socket
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{
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nlmsg_read
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nlmsg_write
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}
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class netlink_ip6fw_socket
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inherits socket
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{
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nlmsg_read
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nlmsg_write
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}
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class netlink_dnrt_socket
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inherits socket
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# Define the access vector interpretation for controlling
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# access and communication through the D-BUS messaging
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# system.
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#
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class dbus
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{
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acquire_svc
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send_msg
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}
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# Define the access vector interpretation for controlling
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# access through the name service cache daemon (nscd).
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#
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class nscd
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{
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getpwd
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getgrp
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gethost
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getstat
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admin
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shmempwd
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shmemgrp
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shmemhost
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}
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# Define the access vector interpretation for controlling
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# access to IPSec network data by association
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#
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class association
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{
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sendto
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recvfrom
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}
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