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Minor cleanups
BTW, 'prefices' is hypercorrection, as 'prefix' is from 'praefixum' with plural 'praefixa'.
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@ -1196,27 +1196,29 @@ foot).
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This type can hold a network prefix consisting of IP address, prefix
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length and several other values. This is the key in route tables.
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Prefices may be of several types, which can be determined by the special
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operator <cf/.type/ of type <m/enum/. The type may be:
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Prefixes may be of several types, which can be determined by the special
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operator <cf/.type/. The type may be:
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<cf/NET_IP4/ and <cf/NET_IP6/ prefices hold an IP prefix. The literals are
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written as <cf><m/ipaddress//<m/pxlen/</cf>,
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<cf/NET_IP4/ and <cf/NET_IP6/ prefixes hold an IP prefix. The literals
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are written as <cf><m/ipaddress//<m/pxlen/</cf>,
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or <cf><m>ipaddress</m>/<m>netmask</m></cf>. There are two special
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operators on IP prefices: <cf/.ip/ which extracts the IP address from the
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pair, and <cf/.len/, which separates prefix length from the pair.
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operators on IP prefixes: <cf/.ip/ which extracts the IP address from
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the pair, and <cf/.len/, which separates prefix length from the pair.
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So <cf>1.2.0.0/16.len = 16</cf> is true.
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<cf/NET_VPN4/ and <cf/NET_VPN6/ prefices hold an IP prefix with
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VPN Route Distinguisher (<rfc id="4364">). They support the same special
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operators as IP prefices, and also <cf/.rd/ which extracts the Route Distinguisher.
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Their literals are written as <cf><m/vpnrd/ <m/ipprefix/</cf>
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<cf/NET_VPN4/ and <cf/NET_VPN6/ prefixes hold an IP prefix with VPN
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Route Distinguisher (<rfc id="4364">). They support the same special
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operators as IP prefixes, and also <cf/.rd/ which extracts the Route
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Distinguisher. Their literals are written
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as <cf><m/vpnrd/ <m/ipprefix/</cf>
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<cf/NET_ROA4/ and <cf/NET_ROA6/ prefices hold an IP prefix range together
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with an ASN. They support the same special operators as IP prefices, and also
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<cf/.maxlen/ which extracts maximal prefix length, and <cf/.asn/ which extracts the ASN.
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<cf/NET_ROA4/ and <cf/NET_ROA6/ prefixes hold an IP prefix range
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together with an ASN. They support the same special operators as IP
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prefixes, and also <cf/.maxlen/ which extracts maximal prefix length,
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and <cf/.asn/ which extracts the ASN.
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<cf/NET_FLOW4/ and <cf/NET_FLOW6/ hold an IP prefix together with
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a flowspec rule. Filters currently don't support flowspec parsing.
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<cf/NET_FLOW4/ and <cf/NET_FLOW6/ hold an IP prefix together with a
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flowspec rule. Filters currently don't support flowspec parsing.
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<tag><label id="type-ec">ec</tag>
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This is a specialized type used to represent BGP extended community
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@ -1227,11 +1227,10 @@ interpret(struct f_inst *what)
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ONEARG;
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if (v1.type != T_NET)
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runtime( "Prefix expected" );
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res.type = T_RD;
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if ((1 << v1.val.net->type) & (NB_VPN4 | NB_VPN6))
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res.val.ec = net_rd(v1.val.net);
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else
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if (!net_is_vpn(v1.val.net))
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runtime( "VPN address expected" );
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res.type = T_RD;
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res.val.ec = net_rd(v1.val.net);
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break;
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case P('a','f'): /* Get first ASN from AS PATH */
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ONEARG;
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@ -81,14 +81,14 @@ net_format(const net_addr *N, char *buf, int buflen)
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case NET_VPN4:
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{
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int c = rd_format(n->vpn4.rd, buf, buflen);
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buf += c; buflen -= c;
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ADVANCE(buf, buflen, c);
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return bsnprintf(buf, buflen, " %I4/%d", n->vpn4.prefix, n->vpn4.pxlen);
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}
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case NET_VPN6:
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{
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/* XXX: RD format is specified for VPN4; not found any for VPN6, reusing the same as for VPN4 */
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int c = rd_format(n->vpn6.rd, buf, buflen);
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buf += c; buflen -= c;
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ADVANCE(buf, buflen, c);
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return bsnprintf(buf, buflen, " %I6/%d", n->vpn6.prefix, n->vpn6.pxlen);
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}
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case NET_ROA4:
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