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Filter: Add operators to pick community components
Add operators that can be used to pick components from pair (standard community) or lc (large community) types. For example: (10, 20).asn --> 10 (10, 20).data --> 20 (10, 20, 30).asn --> 10 (10, 20, 30).data1 --> 20 (10, 20, 30).data2 --> 30 Signed-off-by: Alexander Zubkov <green@qrator.net>
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@ -283,6 +283,7 @@ CF_KEYWORDS(FUNCTION, PRINT, PRINTN, UNSET, RETURN,
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ROA_CHECK, ASN, SRC, DST,
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IS_V4, IS_V6,
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LEN, MAXLEN,
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DATA, DATA1, DATA2,
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DEFINED,
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ADD, DELETE, CONTAINS, RESET,
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PREPEND, FIRST, LAST, LAST_NONAGGREGATED, MATCH,
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@ -789,13 +790,16 @@ term:
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| term '.' RD { $$ = f_new_inst(FI_ROUTE_DISTINGUISHER, $1); }
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| term '.' LEN { $$ = f_new_inst(FI_LENGTH, $1); }
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| term '.' MAXLEN { $$ = f_new_inst(FI_ROA_MAXLEN, $1); }
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| term '.' ASN { $$ = f_new_inst(FI_ROA_ASN, $1); }
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| term '.' ASN { $$ = f_new_inst(FI_ASN, $1); }
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| term '.' SRC { $$ = f_new_inst(FI_NET_SRC, $1); }
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| term '.' DST { $$ = f_new_inst(FI_NET_DST, $1); }
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| term '.' MASK '(' term ')' { $$ = f_new_inst(FI_IP_MASK, $1, $5); }
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| term '.' FIRST { $$ = f_new_inst(FI_AS_PATH_FIRST, $1); }
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| term '.' LAST { $$ = f_new_inst(FI_AS_PATH_LAST, $1); }
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| term '.' LAST_NONAGGREGATED { $$ = f_new_inst(FI_AS_PATH_LAST_NAG, $1); }
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| term '.' DATA { $$ = f_new_inst(FI_PAIR_DATA, $1); }
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| term '.' DATA1 { $$ = f_new_inst(FI_LC_DATA1, $1); }
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| term '.' DATA2 { $$ = f_new_inst(FI_LC_DATA2, $1); }
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/* Communities */
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/* This causes one shift/reduce conflict
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@ -910,14 +910,31 @@
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((net_addr_roa6 *) v1.val.net)->max_pxlen);
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}
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INST(FI_ROA_ASN, 1, 1) { /* Get ROA ASN */
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ARG(1, T_NET);
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if (!net_is_roa(v1.val.net))
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runtime( "ROA expected" );
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INST(FI_ASN, 1, 1) { /* Get ROA ASN or community ASN part */
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ARG_ANY(1);
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RESULT_TYPE(T_INT);
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switch(v1.type)
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{
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case T_NET:
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if (!net_is_roa(v1.val.net))
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runtime( "ROA expected" );
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RESULT(T_INT, i, (v1.val.net->type == NET_ROA4) ?
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((net_addr_roa4 *) v1.val.net)->asn :
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((net_addr_roa6 *) v1.val.net)->asn);
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RESULT_(T_INT, i, (v1.val.net->type == NET_ROA4) ?
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((net_addr_roa4 *) v1.val.net)->asn :
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((net_addr_roa6 *) v1.val.net)->asn);
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break;
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case T_PAIR:
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RESULT_(T_INT, i, v1.val.i >> 16);
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break;
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case T_LC:
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RESULT_(T_INT, i, v1.val.lc.asn);
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break;
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default:
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runtime( "Net, pair or lc expected" );
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}
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}
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INST(FI_IP, 1, 1) { /* Convert prefix to ... */
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@ -951,6 +968,21 @@
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RESULT(T_INT, i, as_path_get_last_nonaggregated(v1.val.ad));
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}
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INST(FI_PAIR_DATA, 1, 1) { /* Get data part from the standard community */
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ARG(1, T_PAIR);
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RESULT(T_INT, i, v1.val.i & 0xFFFF);
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}
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INST(FI_LC_DATA1, 1, 1) { /* Get data1 part from the large community */
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ARG(1, T_LC);
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RESULT(T_INT, i, v1.val.lc.ldp1);
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}
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INST(FI_LC_DATA2, 1, 1) { /* Get data2 part from the large community */
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ARG(1, T_LC);
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RESULT(T_INT, i, v1.val.lc.ldp2);
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}
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INST(FI_RETURN, 1, 1) {
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NEVER_CONSTANT;
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/* Acquire the return value */
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@ -684,6 +684,11 @@ clist l;
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clist l2;
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clist r;
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{
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bt_assert((10, 20).asn = 10);
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bt_assert((10, 20).data = 20);
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bt_assert(p23.asn = 2);
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bt_assert(p23.data = 3);
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l = - empty -;
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bt_assert(l !~ [(*,*)]);
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bt_assert((l ~ [(*,*)]) != (l !~ [(*,*)]));
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@ -940,6 +945,10 @@ lclist r;
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bt_assert(---empty--- = ---empty---);
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bt_assert((10, 20, 30) !~ ---empty---);
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bt_assert((10, 20, 30).asn = 10);
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bt_assert((10, 20, 30).data1 = 20);
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bt_assert((10, 20, 30).data2 = 30);
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ll = --- empty ---;
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ll = add(ll, (ten, 20, 30));
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ll = add(ll, (1000, 2000, 3000));
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