675 lines
20 KiB
Plaintext
675 lines
20 KiB
Plaintext
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ifdef(`enable_mls',`
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#
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# Define sensitivities
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#
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# Each sensitivity has a name and zero or more aliases.
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#
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sensitivity s0;
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sensitivity s1;
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sensitivity s2;
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sensitivity s3;
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sensitivity s4;
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sensitivity s5;
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sensitivity s6;
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sensitivity s7;
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sensitivity s8;
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sensitivity s9;
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sensitivity s10;
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sensitivity s11;
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sensitivity s12;
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sensitivity s13;
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sensitivity s14;
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sensitivity s15;
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#
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# Define the ordering of the sensitivity levels (least to greatest)
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#
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dominance { s0 s1 s2 s3 s4 s5 s6 s7 s8 s9 s10 s11 s12 s13 s14 s15 }
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#
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# Define the categories
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#
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# Each category has a name and zero or more aliases.
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#
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category c0; category c1; category c2; category c3;
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category c4; category c5; category c6; category c7;
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category c8; category c9; category c10; category c11;
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category c12; category c13; category c14; category c15;
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category c16; category c17; category c18; category c19;
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category c20; category c21; category c22; category c23;
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category c24; category c25; category c26; category c27;
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category c28; category c29; category c30; category c31;
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category c32; category c33; category c34; category c35;
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category c36; category c37; category c38; category c39;
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category c40; category c41; category c42; category c43;
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category c44; category c45; category c46; category c47;
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category c48; category c49; category c50; category c51;
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category c52; category c53; category c54; category c55;
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category c56; category c57; category c58; category c59;
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category c60; category c61; category c62; category c63;
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category c64; category c65; category c66; category c67;
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category c68; category c69; category c70; category c71;
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category c72; category c73; category c74; category c75;
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category c76; category c77; category c78; category c79;
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category c80; category c81; category c82; category c83;
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category c84; category c85; category c86; category c87;
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category c88; category c89; category c90; category c91;
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category c92; category c93; category c94; category c95;
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category c96; category c97; category c98; category c99;
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category c100; category c101; category c102; category c103;
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category c104; category c105; category c106; category c107;
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category c108; category c109; category c110; category c111;
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category c112; category c113; category c114; category c115;
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category c116; category c117; category c118; category c119;
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category c120; category c121; category c122; category c123;
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category c124; category c125; category c126; category c127;
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category c128; category c129; category c130; category c131;
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category c132; category c133; category c134; category c135;
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category c136; category c137; category c138; category c139;
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category c140; category c141; category c142; category c143;
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category c144; category c145; category c146; category c147;
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category c148; category c149; category c150; category c151;
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category c152; category c153; category c154; category c155;
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category c156; category c157; category c158; category c159;
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category c160; category c161; category c162; category c163;
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category c164; category c165; category c166; category c167;
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category c168; category c169; category c170; category c171;
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category c172; category c173; category c174; category c175;
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category c176; category c177; category c178; category c179;
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category c180; category c181; category c182; category c183;
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category c184; category c185; category c186; category c187;
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category c188; category c189; category c190; category c191;
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category c192; category c193; category c194; category c195;
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category c196; category c197; category c198; category c199;
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category c200; category c201; category c202; category c203;
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category c204; category c205; category c206; category c207;
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category c208; category c209; category c210; category c211;
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category c212; category c213; category c214; category c215;
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category c216; category c217; category c218; category c219;
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category c220; category c221; category c222; category c223;
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category c224; category c225; category c226; category c227;
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category c228; category c229; category c230; category c231;
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category c232; category c233; category c234; category c235;
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category c236; category c237; category c238; category c239;
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category c240; category c241; category c242; category c243;
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category c244; category c245; category c246; category c247;
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category c248; category c249; category c250; category c251;
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category c252; category c253; category c254; category c255;
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#
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# Each MLS level specifies a sensitivity and zero or more categories which may
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# be associated with that sensitivity.
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#
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level s0:c0.c255;
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level s1:c0.c255;
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level s2:c0.c255;
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level s3:c0.c255;
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level s4:c0.c255;
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level s5:c0.c255;
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level s6:c0.c255;
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level s7:c0.c255;
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level s8:c0.c255;
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level s9:c0.c255;
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level s10:c0.c255;
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level s11:c0.c255;
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level s12:c0.c255;
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level s13:c0.c255;
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level s14:c0.c255;
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level s15:c0.c255;
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#
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# Define the MLS policy
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#
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# mlsconstrain class_set perm_set expression ;
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#
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# mlsvalidatetrans class_set expression ;
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#
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# expression : ( expression )
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# | not expression
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# | expression and expression
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# | expression or expression
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# | u1 op u2
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# | r1 role_mls_op r2
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# | t1 op t2
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# | l1 role_mls_op l2
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# | l1 role_mls_op h2
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# | h1 role_mls_op l2
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# | h1 role_mls_op h2
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# | l1 role_mls_op h1
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# | l2 role_mls_op h2
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# | u1 op names
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# | u2 op names
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# | r1 op names
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# | r2 op names
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# | t1 op names
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# | t2 op names
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# | u3 op names (NOTE: this is only available for mlsvalidatetrans)
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# | r3 op names (NOTE: this is only available for mlsvalidatetrans)
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# | t3 op names (NOTE: this is only available for mlsvalidatetrans)
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#
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# op : == | !=
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# role_mls_op : == | != | eq | dom | domby | incomp
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#
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# names : name | { name_list }
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# name_list : name | name_list name
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#
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#
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# MLS policy for the file classes
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#
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# make sure these file classes are "single level"
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mlsconstrain { file lnk_file fifo_file } { create relabelto }
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( l2 eq h2 );
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# new file labels must be dominated by the relabeling subjects clearance
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mlsconstrain { dir file lnk_file chr_file blk_file sock_file fifo_file } relabelto
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( h1 dom h2 );
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# the file "read" ops (note the check is dominance of the low level)
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mlsconstrain { dir file lnk_file chr_file blk_file sock_file fifo_file } { read getattr execute }
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(( l1 dom l2 ) or
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(( t1 == mlsfilereadtoclr ) and ( h1 dom l2 )) or
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( t1 == mlsfileread ) or
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( t2 == mlstrustedobject ));
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mlsconstrain dir search
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(( l1 dom l2 ) or
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(( t1 == mlsfilereadtoclr ) and ( h1 dom l2 )) or
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( t1 == mlsfileread ) or
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( t2 == mlstrustedobject ));
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# the "single level" file "write" ops
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mlsconstrain { file lnk_file fifo_file } { write create setattr relabelfrom append unlink link rename mounton }
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(( l1 eq l2 ) or
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(( t1 == mlsfilewritetoclr ) and ( h1 dom l2 ) and ( l1 domby l2 )) or
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( t1 == mlsfilewrite ) or
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( t2 == mlstrustedobject ));
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# the "ranged" file "write" ops
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mlsconstrain { dir chr_file blk_file sock_file } { write create setattr relabelfrom append unlink link rename mounton }
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((( l1 dom l2 ) and ( l1 domby h2 )) or
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(( t1 == mlsfilewritetoclr ) and ( h1 dom l2 ) and ( l1 domby l2 )) or
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( t1 == mlsfilewrite ) or
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( t2 == mlstrustedobject ));
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mlsconstrain dir { add_name remove_name reparent rmdir }
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((( l1 dom l2 ) and ( l1 domby h2 )) or
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(( t1 == mlsfilewritetoclr ) and ( h1 dom l2 ) and ( l1 domby l2 )) or
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( t1 == mlsfilewrite ) or
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( t2 == mlstrustedobject ));
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# these access vectors have no MLS restrictions
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# { dir file lnk_file chr_file blk_file sock_file fifo_file } { ioctl lock swapon quotaon }
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#
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# { file chr_file } { execute_no_trans entrypoint execmod }
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# the file upgrade/downgrade rule
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mlsvalidatetrans { dir file lnk_file chr_file blk_file sock_file fifo_file }
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((( l1 eq l2 ) or
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(( t3 == mlsfileupgrade ) and ( l1 domby l2 )) or
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(( t3 == mlsfiledowngrade ) and ( l1 dom l2 )) or
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(( t3 == mlsfiledowngrade ) and ( l1 incomp l2 ))) and
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(( h1 eq h2 ) or
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(( t3 == mlsfileupgrade ) and ( h1 domby h2 )) or
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(( t3 == mlsfiledowngrade ) and ( h1 dom h2 )) or
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(( t3 == mlsfiledowngrade ) and ( h1 incomp h2 ))));
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# create can also require the upgrade/downgrade checks if the creating process
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# has used setfscreate (note that both the high and low level of the object
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# default to the process sensitivity level)
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mlsconstrain { dir file lnk_file chr_file blk_file sock_file fifo_file } create
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((( l1 eq l2 ) or
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(( t1 == mlsfileupgrade ) and ( l1 domby l2 )) or
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(( t1 == mlsfiledowngrade ) and ( l1 dom l2 )) or
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(( t1 == mlsfiledowngrade ) and ( l1 incomp l2 ))) and
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(( l1 eq h2 ) or
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(( t1 == mlsfileupgrade ) and ( l1 domby h2 )) or
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(( t1 == mlsfiledowngrade ) and ( l1 dom h2 )) or
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(( t1 == mlsfiledowngrade ) and ( l1 incomp h2 ))));
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#
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# MLS policy for the filesystem class
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#
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# new filesystem labels must be dominated by the relabeling subjects clearance
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mlsconstrain filesystem relabelto
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( h1 dom h2 );
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# the filesystem "read" ops (implicit single level)
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mlsconstrain filesystem { getattr quotaget }
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(( l1 dom l2 ) or
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(( t1 == mlsfilereadtoclr ) and ( h1 dom l2 )) or
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( t1 == mlsfileread ));
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# all the filesystem "write" ops (implicit single level)
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mlsconstrain filesystem { mount remount unmount relabelfrom quotamod }
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(( l1 eq l2 ) or
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(( t1 == mlsfilewritetoclr ) and ( h1 dom l2 ) and ( l1 domby l2 )) or
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( t1 == mlsfilewrite ));
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# these access vectors have no MLS restrictions
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# filesystem { transition associate }
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#
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# MLS policy for the socket classes
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#
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# new socket labels must be dominated by the relabeling subjects clearance
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mlsconstrain { socket tcp_socket udp_socket rawip_socket netlink_socket packet_socket key_socket unix_stream_socket unix_dgram_socket netlink_route_socket netlink_firewall_socket netlink_tcpdiag_socket netlink_nflog_socket netlink_xfrm_socket netlink_selinux_socket netlink_audit_socket netlink_ip6fw_socket netlink_dnrt_socket } relabelto
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( h1 dom h2 );
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# the socket "read" ops (note the check is dominance of the low level)
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mlsconstrain { socket tcp_socket udp_socket rawip_socket netlink_socket packet_socket key_socket unix_stream_socket unix_dgram_socket netlink_route_socket netlink_firewall_socket netlink_tcpdiag_socket netlink_nflog_socket netlink_xfrm_socket netlink_selinux_socket netlink_audit_socket netlink_ip6fw_socket netlink_dnrt_socket } { read getattr listen accept getopt recvfrom recv_msg }
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(( l1 dom l2 ) or
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(( t1 == mlsnetreadtoclr ) and ( h1 dom l2 )) or
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( t1 == mlsnetread ));
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mlsconstrain { netlink_route_socket netlink_firewall_socket netlink_tcpdiag_socket netlink_xfrm_socket netlink_audit_socket netlink_ip6fw_socket } nlmsg_read
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(( l1 dom l2 ) or
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(( t1 == mlsnetreadtoclr ) and ( h1 dom l2 )) or
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( t1 == mlsnetread ));
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# the socket "write" ops
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mlsconstrain { socket tcp_socket udp_socket rawip_socket netlink_socket packet_socket key_socket unix_stream_socket unix_dgram_socket netlink_route_socket netlink_firewall_socket netlink_tcpdiag_socket netlink_nflog_socket netlink_xfrm_socket netlink_selinux_socket netlink_audit_socket netlink_ip6fw_socket netlink_dnrt_socket } { write setattr relabelfrom connect setopt shutdown }
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((( l1 dom l2 ) and ( l1 domby h2 )) or
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(( t1 == mlsnetwritetoclr ) and ( h1 dom l2 ) and ( l1 domby l2 )) or
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( t1 == mlsnetwrite ));
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# these access vectors have no MLS restrictions
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# { socket tcp_socket udp_socket rawip_socket netlink_socket packet_socket key_socket unix_stream_socket unix_dgram_socket netlink_route_socket netlink_firewall_socket netlink_tcpdiag_socket netlink_nflog_socket netlink_xfrm_socket netlink_selinux_socket netlink_audit_socket netlink_ip6fw_socket netlink_dnrt_socket } { ioctl create lock append bind sendto send_msg name_bind }
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#
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# { tcp_socket udp_socket rawip_socket } node_bind
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#
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# { tcp_socket unix_stream_socket } { connectto newconn acceptfrom }
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#
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# tcp_socket name_connect
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#
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# { netlink_route_socket netlink_firewall_socket netlink_tcpdiag_socket netlink_xfrm_socket netlink_audit_socket netlink_ip6fw_socket } nlmsg_write
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#
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# netlink_audit_socket { nlmsg_relay nlmsg_readpriv }
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#
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# netlink_kobject_uevent_socket *
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#
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#
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# MLS policy for the ipc classes
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#
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# the ipc "read" ops (implicit single level)
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mlsconstrain { ipc sem msgq shm } { getattr read unix_read }
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(( l1 dom l2 ) or
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(( t1 == mlsipcreadtoclr ) and ( h1 dom l2 )) or
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( t1 == mlsipcread ));
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mlsconstrain msg receive
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(( l1 dom l2 ) or
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(( t1 == mlsipcreadtoclr ) and ( h1 dom l2 )) or
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( t1 == mlsipcread ));
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# the ipc "write" ops (implicit single level)
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mlsconstrain { ipc sem msgq shm } { create destroy setattr write unix_write }
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(( l1 eq l2 ) or
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(( t1 == mlsipcwritetoclr ) and ( h1 dom l2 ) and ( l1 domby l2 )) or
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( t1 == mlsipcwrite ));
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mlsconstrain msgq enqueue
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(( l1 eq l2 ) or
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(( t1 == mlsipcwritetoclr ) and ( h1 dom l2 ) and ( l1 domby l2 )) or
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( t1 == mlsipcwrite ));
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mlsconstrain shm lock
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(( l1 eq l2 ) or
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(( t1 == mlsipcwritetoclr ) and ( h1 dom l2 ) and ( l1 domby l2 )) or
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( t1 == mlsipcwrite ));
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mlsconstrain msg send
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(( l1 eq l2 ) or
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(( t1 == mlsipcwritetoclr ) and ( h1 dom l2 ) and ( l1 domby l2 )) or
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( t1 == mlsipcwrite ));
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# these access vectors have no MLS restrictions
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# { ipc sem msgq shm } associate
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#
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# MLS policy for the fd class
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#
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# these access vectors have no MLS restrictions
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# fd use
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#
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# MLS policy for the network object classes
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#
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# the netif/node "read" ops (implicit single level socket doing the read)
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# (note the check is dominance of the low level)
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mlsconstrain { node netif } { tcp_recv udp_recv rawip_recv }
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(( l1 dom l2 ) or ( t1 == mlsnetrecvall ));
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# the netif/node "write" ops (implicit single level socket doing the write)
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mlsconstrain { netif node } { tcp_send udp_send rawip_send }
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(( l1 dom l2 ) and ( l1 domby h2 ));
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# these access vectors have no MLS restrictions
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# node enforce_dest
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#
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# MLS policy for the process class
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#
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# new process labels must be dominated by the relabeling subjects clearance
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# and sensitivity level changes require privilege
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mlsconstrain process transition
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(( h1 dom h2 ) and
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(( l1 eq l2 ) or ( t1 == mlsprocsetsl ) or
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(( t1 == privrangetrans ) and ( t2 == mlsrangetrans ))));
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mlsconstrain process dyntransition
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(( h1 dom h2 ) and
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(( l1 eq l2 ) or ( t1 == mlsprocsetsl )));
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# all the process "read" ops
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mlsconstrain process { getsched getsession getpgid getcap getattr ptrace share }
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(( l1 dom l2 ) or
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(( t1 == mlsprocreadtoclr ) and ( h1 dom l2 )) or
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( t1 == mlsprocread ));
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# all the process "write" ops (note the check is equality on the low level)
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mlsconstrain process { sigkill sigstop signal setsched setpgid setcap setexec setfscreate setcurrent ptrace share }
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(( l1 eq l2 ) or
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(( t1 == mlsprocwritetoclr ) and ( h1 dom l2 ) and ( l1 domby l2 )) or
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( t1 == mlsprocwrite ));
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# these access vectors have no MLS restrictions
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# process { fork sigchld signull noatsecure siginh setrlimit rlimitinh execmem execstack execheap }
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#
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# MLS policy for the security class
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#
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# these access vectors have no MLS restrictions
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# security *
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#
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# MLS policy for the system class
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#
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# these access vectors have no MLS restrictions
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# system *
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#
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# MLS policy for the capability class
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#
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# these access vectors have no MLS restrictions
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# capability *
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#
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# MLS policy for the passwd class
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#
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# these access vectors have no MLS restrictions
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# passwd *
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#
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# MLS policy for the drawable class
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#
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# the drawable "read" ops (implicit single level)
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mlsconstrain drawable { getattr copy }
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(( l1 dom l2 ) or
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(( t1 == mlsxwinreadtoclr ) and ( h1 dom l2 )) or
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( t1 == mlsxwinread ));
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# the drawable "write" ops (implicit single level)
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mlsconstrain drawable { create destroy draw copy }
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(( l1 eq l2 ) or
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(( t1 == mlsxwinwritetoclr ) and ( h1 dom l2 ) and ( l1 domby l2 )) or
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( t1 == mlsxwinwrite ));
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#
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# MLS policy for the gc class
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#
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# the gc "read" ops (implicit single level)
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mlsconstrain gc getattr
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(( l1 dom l2 ) or
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(( t1 == mlsxwinreadtoclr ) and ( h1 dom l2 )) or
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( t1 == mlsxwinread ));
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# the gc "write" ops (implicit single level)
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mlsconstrain gc { create free setattr }
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(( l1 eq l2 ) or
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(( t1 == mlsxwinwritetoclr ) and ( h1 dom l2 ) and ( l1 domby l2 )) or
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( t1 == mlsxwinwrite ));
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#
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# MLS policy for the window class
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#
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# the window "read" ops (implicit single level)
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mlsconstrain window { listprop getattr enumerate mousemotion inputevent drawevent windowchangeevent windowchangerequest serverchangeevent extensionevent }
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(( l1 dom l2 ) or
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(( t1 == mlsxwinreadtoclr ) and ( h1 dom l2 )) or
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( t1 == mlsxwinread ));
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# the window "write" ops (implicit single level)
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mlsconstrain window { addchild create destroy chstack chproplist chprop setattr setfocus move chselection chparent ctrllife transparent clientcomevent }
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(( l1 eq l2 ) or
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(( t1 == mlsxwinwritetoclr ) and ( h1 dom l2 ) and ( l1 domby l2 )) or
|
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( t1 == mlsxwinwrite ) or
|
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( t2 == mlstrustedobject ));
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# these access vectors have no MLS restrictions
|
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# window { map unmap }
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|
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#
|
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# MLS policy for the font class
|
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#
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|
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# the font "read" ops (implicit single level)
|
|
mlsconstrain font { load getattr }
|
|
(( l1 dom l2 ) or
|
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(( t1 == mlsxwinreadtoclr ) and ( h1 dom l2 )) or
|
|
( t1 == mlsxwinread ));
|
|
|
|
# the font "write" ops (implicit single level)
|
|
mlsconstrain font free
|
|
(( l1 eq l2 ) or
|
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(( t1 == mlsxwinwritetoclr ) and ( h1 dom l2 ) and ( l1 domby l2 )) or
|
|
( t1 == mlsxwinwrite ));
|
|
|
|
# these access vectors have no MLS restrictions
|
|
# font use
|
|
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|
|
|
|
|
|
|
#
|
|
# MLS policy for the colormap class
|
|
#
|
|
|
|
# the colormap "read" ops (implicit single level)
|
|
mlsconstrain colormap { list read getattr }
|
|
(( l1 dom l2 ) or
|
|
(( t1 == mlsxwinreadtoclr ) and ( h1 dom l2 )) or
|
|
( t1 == mlsxwinreadcolormap ) or
|
|
( t1 == mlsxwinread ));
|
|
|
|
# the colormap "write" ops (implicit single level)
|
|
mlsconstrain colormap { create free install uninstall store setattr }
|
|
(( l1 eq l2 ) or
|
|
(( t1 == mlsxwinwritetoclr ) and ( h1 dom l2 ) and ( l1 domby l2 )) or
|
|
( t1 == mlsxwinwritecolormap ) or
|
|
( t1 == mlsxwinwrite ));
|
|
|
|
|
|
|
|
|
|
#
|
|
# MLS policy for the property class
|
|
#
|
|
|
|
# the property "read" ops (implicit single level)
|
|
mlsconstrain property { read }
|
|
(( l1 dom l2 ) or
|
|
(( t1 == mlsxwinreadtoclr ) and ( h1 dom l2 )) or
|
|
( t1 == mlsxwinreadproperty ) or
|
|
( t1 == mlsxwinread ));
|
|
|
|
# the property "write" ops (implicit single level)
|
|
mlsconstrain property { create free write }
|
|
(( l1 eq l2 ) or
|
|
(( t1 == mlsxwinwritetoclr ) and ( h1 dom l2 ) and ( l1 domby l2 )) or
|
|
( t1 == mlsxwinwriteproperty ) or
|
|
( t1 == mlsxwinwrite ));
|
|
|
|
|
|
|
|
|
|
#
|
|
# MLS policy for the cursor class
|
|
#
|
|
|
|
# the cursor "write" ops (implicit single level)
|
|
mlsconstrain cursor { create createglyph free assign setattr }
|
|
(( l1 eq l2 ) or
|
|
(( t1 == mlsxwinwritetoclr ) and ( h1 dom l2 ) and ( l1 domby l2 )) or
|
|
( t1 == mlsxwinwrite ));
|
|
|
|
|
|
|
|
|
|
#
|
|
# MLS policy for the xclient class
|
|
#
|
|
|
|
# the xclient "write" ops (implicit single level)
|
|
mlsconstrain xclient kill
|
|
(( l1 eq l2 ) or
|
|
(( t1 == mlsxwinwritetoclr ) and ( h1 dom l2 ) and ( l1 domby l2 )) or
|
|
( t1 == mlsxwinwrite ));
|
|
|
|
|
|
|
|
|
|
#
|
|
# MLS policy for the xinput class
|
|
#
|
|
|
|
# these access vectors have no MLS restrictions
|
|
# xinput ~{ relabelinput setattr }
|
|
|
|
# the xinput "write" ops (implicit single level)
|
|
mlsconstrain xinput { setattr relabelinput }
|
|
(( l1 eq l2 ) or
|
|
(( t1 == mlsxwinwritetoclr ) and ( h1 dom l2 ) and ( l1 domby l2 )) or
|
|
( t1 == mlsxwinwritexinput ) or
|
|
( t1 == mlsxwinwrite ));
|
|
|
|
|
|
|
|
|
|
#
|
|
# MLS policy for the xserver class
|
|
#
|
|
|
|
# these access vectors have no MLS restrictions
|
|
# xserver *
|
|
|
|
|
|
|
|
|
|
#
|
|
# MLS policy for the xextension class
|
|
#
|
|
|
|
# these access vectors have no MLS restrictions
|
|
# xextension { query use }
|
|
|
|
|
|
#
|
|
# MLS policy for the pax class
|
|
#
|
|
|
|
# these access vectors have no MLS restrictions
|
|
# pax { pageexec emutramp mprotect randmmap randexec segmexec }
|
|
|
|
|
|
|
|
|
|
#
|
|
# MLS policy for the dbus class
|
|
#
|
|
|
|
# these access vectors have no MLS restrictions
|
|
# dbus { acquire_svc send_msg }
|
|
|
|
|
|
|
|
|
|
#
|
|
# MLS policy for the nscd class
|
|
#
|
|
|
|
# these access vectors have no MLS restrictions
|
|
# nscd { getpwd getgrp gethost getstat admin shmempwd shmemgrp shmemhost }
|
|
|
|
|
|
|
|
|
|
#
|
|
# MLS policy for the association class
|
|
#
|
|
|
|
# these access vectors have no MLS restrictions
|
|
# association *
|
|
|
|
') dnl end enable_mls
|