mirror of
https://gitlab.nic.cz/labs/bird.git
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4c553c5a5b
This is a major change of how the filters are interpreted. If everything works how it should, it should not affect you unless you are hacking the filters themselves. Anyway, this change should make a huge improvement in the filter performance as previous benchmarks showed that our major problem lies in the recursion itself. There are also some changes in nest and protocols, related mostly to spreading const declarations throughout the whole BIRD and also to refactored dynamic attribute definitions. The need of these came up during the whole work and it is too difficult to split out these not-so-related changes.
147 lines
5.0 KiB
Plaintext
147 lines
5.0 KiB
Plaintext
/*
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* BIRD -- Babel Configuration
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*
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* Copyright (c) 2015-2016 Toke Hoiland-Jorgensen
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* (c) 2016--2017 Ondrej Zajicek <santiago@crfreenet.org>
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* (c) 2016--2017 CZ.NIC z.s.p.o.
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*
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* Can be freely distributed and used under the terms of the GNU GPL.
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*/
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CF_HDR
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#include "proto/babel/babel.h"
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#include "nest/iface.h"
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CF_DEFINES
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#define BABEL_CFG ((struct babel_config *) this_proto)
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#define BABEL_IFACE ((struct babel_iface_config *) this_ipatt)
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CF_DECLS
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CF_KEYWORDS(BABEL, INTERFACE, METRIC, RXCOST, HELLO, UPDATE, INTERVAL, PORT,
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TYPE, WIRED, WIRELESS, RX, TX, BUFFER, PRIORITY, LENGTH, CHECK, LINK,
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NEXT, HOP, IPV4, IPV6, BABEL_METRIC, SHOW, INTERFACES, NEIGHBORS,
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ENTRIES, RANDOMIZE, ROUTER, ID)
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CF_GRAMMAR
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proto: babel_proto ;
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babel_proto_start: proto_start BABEL
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{
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this_proto = proto_config_new(&proto_babel, $1);
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init_list(&BABEL_CFG->iface_list);
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BABEL_CFG->hold_time = 1 S_;
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};
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babel_proto_item:
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proto_item
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| proto_channel
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| INTERFACE babel_iface
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| RANDOMIZE ROUTER ID bool { BABEL_CFG->randomize_router_id = $4; }
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;
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babel_proto_opts:
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/* empty */
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| babel_proto_opts babel_proto_item ';'
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;
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babel_proto:
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babel_proto_start proto_name '{' babel_proto_opts '}';
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babel_iface_start:
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{
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this_ipatt = cfg_allocz(sizeof(struct babel_iface_config));
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add_tail(&BABEL_CFG->iface_list, NODE this_ipatt);
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init_list(&this_ipatt->ipn_list);
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BABEL_IFACE->port = BABEL_PORT;
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BABEL_IFACE->type = BABEL_IFACE_TYPE_WIRED;
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BABEL_IFACE->limit = BABEL_HELLO_LIMIT;
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BABEL_IFACE->tx_tos = IP_PREC_INTERNET_CONTROL;
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BABEL_IFACE->tx_priority = sk_priority_control;
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BABEL_IFACE->check_link = 1;
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};
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babel_iface_finish:
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{
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if (BABEL_IFACE->type == BABEL_IFACE_TYPE_WIRELESS)
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{
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if (!BABEL_IFACE->hello_interval)
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BABEL_IFACE->hello_interval = BABEL_HELLO_INTERVAL_WIRELESS;
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if (!BABEL_IFACE->rxcost)
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BABEL_IFACE->rxcost = BABEL_RXCOST_WIRELESS;
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}
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else
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{
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if (!BABEL_IFACE->hello_interval)
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BABEL_IFACE->hello_interval = BABEL_HELLO_INTERVAL_WIRED;
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if (!BABEL_IFACE->rxcost)
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BABEL_IFACE->rxcost = BABEL_RXCOST_WIRED;
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}
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/* Make sure we do not overflow the 16-bit centisec fields */
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if (!BABEL_IFACE->update_interval)
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BABEL_IFACE->update_interval = MIN_(BABEL_IFACE->hello_interval*BABEL_UPDATE_INTERVAL_FACTOR, BABEL_MAX_INTERVAL);
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BABEL_IFACE->ihu_interval = MIN_(BABEL_IFACE->hello_interval*BABEL_IHU_INTERVAL_FACTOR, BABEL_MAX_INTERVAL);
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BABEL_CFG->hold_time = MAX_(BABEL_CFG->hold_time, BABEL_IFACE->update_interval*BABEL_HOLD_TIME_FACTOR);
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};
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babel_iface_item:
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| PORT expr { BABEL_IFACE->port = $2; if (($2<1) || ($2>65535)) cf_error("Invalid port number"); }
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| RXCOST expr { BABEL_IFACE->rxcost = $2; if (($2<1) || ($2>65535)) cf_error("Invalid rxcost"); }
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| LIMIT expr { BABEL_IFACE->limit = $2; if (($2<1) || ($2>16)) cf_error("Limit must be in range 1-16"); }
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| TYPE WIRED { BABEL_IFACE->type = BABEL_IFACE_TYPE_WIRED; }
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| TYPE WIRELESS { BABEL_IFACE->type = BABEL_IFACE_TYPE_WIRELESS; }
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| HELLO INTERVAL expr_us { BABEL_IFACE->hello_interval = $3; if (($3<BABEL_MIN_INTERVAL) || ($3>BABEL_MAX_INTERVAL)) cf_error("Hello interval must be in range 10 ms - 655 s"); }
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| UPDATE INTERVAL expr_us { BABEL_IFACE->update_interval = $3; if (($3<BABEL_MIN_INTERVAL) || ($3>BABEL_MAX_INTERVAL)) cf_error("Update interval must be in range 10 ms - 655 s"); }
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| RX BUFFER expr { BABEL_IFACE->rx_buffer = $3; if (($3<256) || ($3>65535)) cf_error("RX buffer must be in range 256-65535"); }
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| TX LENGTH expr { BABEL_IFACE->tx_length = $3; if (($3<256) || ($3>65535)) cf_error("TX length must be in range 256-65535"); }
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| TX tos { BABEL_IFACE->tx_tos = $2; }
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| TX PRIORITY expr { BABEL_IFACE->tx_priority = $3; }
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| CHECK LINK bool { BABEL_IFACE->check_link = $3; }
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| NEXT HOP IPV4 ipa { BABEL_IFACE->next_hop_ip4 = $4; if (!ipa_is_ip4($4)) cf_error("Must be an IPv4 address"); }
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| NEXT HOP IPV6 ipa { BABEL_IFACE->next_hop_ip6 = $4; if (!ipa_is_ip6($4)) cf_error("Must be an IPv6 address"); }
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;
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babel_iface_opts:
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/* empty */
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| babel_iface_opts babel_iface_item ';'
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;
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babel_iface_opt_list:
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/* empty */
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| '{' babel_iface_opts '}'
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;
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babel_iface:
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babel_iface_start iface_patt_list_nopx babel_iface_opt_list babel_iface_finish;
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dynamic_attr: BABEL_METRIC { $$ = f_new_dynamic_attr(EAF_TYPE_INT, 0, T_INT, EA_BABEL_METRIC); } ;
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CF_CLI_HELP(SHOW BABEL, ..., [[Show information about Babel protocol]]);
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CF_CLI(SHOW BABEL INTERFACES, optsym opttext, [<name>] [\"<interface>\"], [[Show information about Babel interfaces]])
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{ babel_show_interfaces(proto_get_named($4, &proto_babel), $5); };
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CF_CLI(SHOW BABEL NEIGHBORS, optsym opttext, [<name>] [\"<interface>\"], [[Show information about Babel neighbors]])
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{ babel_show_neighbors(proto_get_named($4, &proto_babel), $5); };
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CF_CLI(SHOW BABEL ENTRIES, optsym opttext, [<name>], [[Show information about Babel prefix entries]])
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{ babel_show_entries(proto_get_named($4, &proto_babel)); };
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CF_CLI(SHOW BABEL ROUTES, optsym opttext, [<name>], [[Show information about Babel route entries]])
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{ babel_show_routes(proto_get_named($4, &proto_babel)); };
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CF_CODE
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CF_END
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