mirror of
https://github.com/FRRouting/frr.git
synced 2025-04-30 13:37:17 +02:00

Issue: When 514 inerfaces/neighbors are configured, it creates socket error, "Cannot allocate memory", when back to back V6 RA messages are tried to be sent over the socket. This prevents interface, to know its peer's link local address. Socket error comes when 1) try to join ICMPv6 all router multicast group, back to back for all interfaces 2)send back to back RA for all interfaces Fix: 1)For ICMPv6 join case, we check if the interface has already joined all router group, if not try to join. On failure, retry joining after random amount of time determined 1 ms to ICMPV6_JOIN_TIMER_EXP_MS(100 ms) 2) For RA issue case, batch sending of RA mesages using wheel timer Testing: Monitor BGP session running sh bgp summary command Before fix: r1# sh bgp summary IPv4 Unicast Summary: BGP router identifier 192.168.1.1, local AS number 1001 VRF default vrf-id 0 BGP table version 0 RIB entries 0, using 0 bytes of memory Peers 515, using 12 MiB of memory Neighbor V AS MsgRcvd MsgSent TblVer InQ OutQ Up/Down State/PfxRcd PfxSnt Desc r1-eth0 4 1002 89 90 0 0 0 00:07:10 0 0 N/A r1-eth1 4 1002 89 90 0 0 0 00:07:10 0 0 N/A r1-eth2 4 1002 89 90 0 0 0 00:07:10 0 0 N/A r1-eth3 4 1002 89 90 0 0 0 00:07:10 0 0 N/A r1-eth4 4 1002 89 90 0 0 0 00:07:10 0 0 N/A r1-eth5 4 1002 89 90 0 0 0 00:07:10 0 0 N/A …..<snip>... r1-eth252 4 1002 31 29 0 0 0 00:02:08 0 0 N/A r1-eth253 4 1002 31 29 0 0 0 00:02:08 0 0 N/A r1-eth254 4 1002 31 29 0 0 0 00:02:08 0 0 N/A r1-eth255 4 1002 31 29 0 0 0 00:02:08 0 0 N/A r1-eth256 4 0 0 0 0 0 0 never Idle 0 N/A r1-eth257 4 0 0 0 0 0 0 never Idle 0 N/A r1-eth258 4 0 0 0 0 0 0 never Idle 0 N/A r1-eth259 4 0 0 0 0 0 0 never Idle 0 N/A r1-eth260 4 0 0 0 0 0 0 never Idle 0 N/A ……..<snip>….. r1-eth511 4 0 0 0 0 0 0 never Idle 0 N/A r1-eth512 4 0 0 0 0 0 0 never Idle 0 N/A r1-eth513 4 0 0 0 0 0 0 never Idle 0 N/A r1-eth514 4 0 0 0 0 0 0 never Idle 0 N/A After fix: r1# show bgp summary IPv4 Unicast Summary: BGP router identifier 192.168.1.1, local AS number 1001 VRF default vrf-id 0 BGP table version 0 RIB entries 0, using 0 bytes of memory Peers 515, using 12 MiB of memory Neighbor V AS MsgRcvd MsgSent TblVer InQ OutQ Up/Down State/PfxRcd PfxSnt Desc r1-eth0 4 1002 87 87 0 0 0 00:07:04 0 0 N/A r1-eth1 4 1002 87 87 0 0 0 00:07:04 0 0 N/A r1-eth2 4 1002 87 87 0 0 0 00:07:04 0 0 N/A r1-eth3 4 1002 64 67 0 0 0 00:05:09 0 0 N/A r1-eth4 4 1002 87 87 0 0 0 00:07:04 0 0 N/A r1-eth5 4 1002 87 87 0 0 0 00:07:04 0 0 N/A r1-eth6 4 1002 67 70 0 0 0 00:05:22 0 0 N/A r1-eth7 4 1002 87 87 0 0 0 00:07:04 0 0 N/A r1-eth8 4 1002 87 87 0 0 0 00:07:04 0 0 N/A .... r1-eth499 4 1002 43 43 0 0 0 00:03:22 0 0 N/A r1-eth500 4 1002 43 43 0 0 0 00:03:22 0 0 N/A r1-eth501 4 1002 19 22 0 0 0 00:01:21 0 0 N/A r1-eth502 4 1002 43 43 0 0 0 00:03:22 0 0 N/A r1-eth503 4 1002 43 43 0 0 0 00:03:22 0 0 N/A r1-eth504 4 1002 20 23 0 0 0 00:01:30 0 0 N/A r1-eth505 4 1002 43 43 0 0 0 00:03:22 0 0 N/A r1-eth506 4 1002 43 43 0 0 0 00:03:22 0 0 N/A r1-eth507 4 1002 22 25 0 0 0 00:01:39 0 0 N/A r1-eth508 4 1002 43 43 0 0 0 00:03:22 0 0 N/A r1-eth509 4 1002 17 20 0 0 0 00:01:13 0 0 N/A r1-eth510 4 1002 43 43 0 0 0 00:03:22 0 0 N/A r1-eth511 4 1002 43 43 0 0 0 00:03:22 0 0 N/A r1-eth512 4 1002 19 22 0 0 0 00:01:22 0 0 N/A r1-eth513 4 1002 43 43 0 0 0 00:03:22 0 0 N/A r1-eth514 4 1002 43 43 0 0 0 00:03:22 0 0 N/A Signed-off-by: Soumya Roy <souroy@nvidia.com>
359 lines
9.4 KiB
C
359 lines
9.4 KiB
C
// SPDX-License-Identifier: GPL-2.0-or-later
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/* Zebra Router Code.
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* Copyright (C) 2018 Cumulus Networks, Inc.
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* Donald Sharp
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*/
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#include "zebra.h"
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#include <pthread.h>
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#include "lib/frratomic.h"
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#include "zebra_router.h"
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#include "zebra_pbr.h"
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#include "zebra_vxlan.h"
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#include "zebra_mlag.h"
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#include "zebra_nhg.h"
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#include "zebra_neigh.h"
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#include "zebra/zebra_tc.h"
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#include "debug.h"
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#include "zebra_script.h"
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#include "wheel.h"
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DEFINE_MTYPE_STATIC(ZEBRA, RIB_TABLE_INFO, "RIB table info");
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DEFINE_MTYPE_STATIC(ZEBRA, ZEBRA_RT_TABLE, "Zebra VRF table");
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struct zebra_router zrouter = {
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.multipath_num = MULTIPATH_NUM,
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};
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static inline int
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zebra_router_table_entry_compare(const struct zebra_router_table *e1,
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const struct zebra_router_table *e2);
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RB_GENERATE(zebra_router_table_head, zebra_router_table,
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zebra_router_table_entry, zebra_router_table_entry_compare);
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static inline int
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zebra_router_table_entry_compare(const struct zebra_router_table *e1,
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const struct zebra_router_table *e2)
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{
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if (e1->tableid < e2->tableid)
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return -1;
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if (e1->tableid > e2->tableid)
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return 1;
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if (e1->ns_id < e2->ns_id)
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return -1;
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if (e1->ns_id > e2->ns_id)
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return 1;
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if (e1->afi < e2->afi)
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return -1;
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if (e1->afi > e2->afi)
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return 1;
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return (e1->safi - e2->safi);
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}
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struct zebra_router_table *zebra_router_find_zrt(struct zebra_vrf *zvrf,
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uint32_t tableid, afi_t afi,
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safi_t safi)
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{
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struct zebra_router_table finder;
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struct zebra_router_table *zrt;
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memset(&finder, 0, sizeof(finder));
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finder.afi = afi;
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finder.safi = safi;
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finder.tableid = tableid;
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finder.ns_id = zvrf->zns->ns_id;
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zrt = RB_FIND(zebra_router_table_head, &zrouter.tables, &finder);
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return zrt;
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}
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struct zebra_router_table *zebra_router_find_next_zrt(struct zebra_vrf *zvrf,
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uint32_t tableid,
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afi_t afi, safi_t safi)
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{
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struct zebra_router_table finder;
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struct zebra_router_table *zrt;
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memset(&finder, 0, sizeof(finder));
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finder.afi = afi;
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finder.safi = safi;
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finder.tableid = tableid;
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finder.ns_id = zvrf->zns->ns_id;
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zrt = RB_NFIND(zebra_router_table_head, &zrouter.tables, &finder);
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if (zrt->afi == afi && zrt->safi == safi && zrt->tableid == tableid &&
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zrt->ns_id == finder.ns_id)
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zrt = RB_NEXT(zebra_router_table_head, zrt);
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return zrt;
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}
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struct route_table *zebra_router_find_table(struct zebra_vrf *zvrf,
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uint32_t tableid, afi_t afi,
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safi_t safi)
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{
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struct zebra_router_table finder;
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struct zebra_router_table *zrt;
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memset(&finder, 0, sizeof(finder));
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finder.afi = afi;
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finder.safi = safi;
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finder.tableid = tableid;
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finder.ns_id = zvrf->zns->ns_id;
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zrt = RB_FIND(zebra_router_table_head, &zrouter.tables, &finder);
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if (zrt)
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return zrt->table;
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else
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return NULL;
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}
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struct route_table *zebra_router_get_table(struct zebra_vrf *zvrf,
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uint32_t tableid, afi_t afi,
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safi_t safi)
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{
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struct zebra_router_table finder;
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struct zebra_router_table *zrt;
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struct rib_table_info *info;
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memset(&finder, 0, sizeof(finder));
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finder.afi = afi;
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finder.safi = safi;
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finder.tableid = tableid;
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finder.ns_id = zvrf->zns->ns_id;
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zrt = RB_FIND(zebra_router_table_head, &zrouter.tables, &finder);
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if (zrt)
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return zrt->table;
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zrt = XCALLOC(MTYPE_ZEBRA_RT_TABLE, sizeof(*zrt));
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zrt->tableid = tableid;
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zrt->afi = afi;
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zrt->safi = safi;
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zrt->ns_id = zvrf->zns->ns_id;
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zrt->table =
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(afi == AFI_IP6) ? srcdest_table_init() : route_table_init();
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info = XCALLOC(MTYPE_RIB_TABLE_INFO, sizeof(*info));
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info->zvrf = zvrf;
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info->afi = afi;
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info->safi = safi;
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info->table_id = tableid;
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route_table_set_info(zrt->table, info);
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zrt->table->cleanup = zebra_rtable_node_cleanup;
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RB_INSERT(zebra_router_table_head, &zrouter.tables, zrt);
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return zrt->table;
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}
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void zebra_router_show_table_summary(struct vty *vty)
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{
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struct zebra_router_table *zrt;
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vty_out(vty,
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"VRF NS ID VRF ID AFI SAFI Table Count\n");
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vty_out(vty,
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"---------------------------------------------------------------------------\n");
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RB_FOREACH (zrt, zebra_router_table_head, &zrouter.tables) {
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struct rib_table_info *info = route_table_get_info(zrt->table);
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vty_out(vty, "%-16s%5d %9d %7s %15s %8d %10lu\n", info->zvrf->vrf->name,
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zrt->ns_id, info->zvrf->vrf->vrf_id,
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afi2str(zrt->afi), safi2str(zrt->safi),
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zrt->tableid,
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zrt->table->count);
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}
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}
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void zebra_router_sweep_route(void)
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{
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struct zebra_router_table *zrt;
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RB_FOREACH (zrt, zebra_router_table_head, &zrouter.tables) {
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if (zrt->ns_id != NS_DEFAULT)
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continue;
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rib_sweep_table(zrt->table);
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}
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}
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void zebra_router_sweep_nhgs(void)
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{
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zebra_nhg_sweep_table(zrouter.nhgs_id);
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}
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static void zebra_router_free_table(struct zebra_router_table *zrt)
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{
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void *table_info;
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table_info = route_table_get_info(zrt->table);
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route_table_finish(zrt->table);
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RB_REMOVE(zebra_router_table_head, &zrouter.tables, zrt);
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XFREE(MTYPE_RIB_TABLE_INFO, table_info);
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XFREE(MTYPE_ZEBRA_RT_TABLE, zrt);
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}
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void zebra_router_release_table(struct zebra_vrf *zvrf, uint32_t tableid,
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afi_t afi, safi_t safi)
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{
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struct zebra_router_table finder;
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struct zebra_router_table *zrt;
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memset(&finder, 0, sizeof(finder));
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finder.afi = afi;
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finder.safi = safi;
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finder.tableid = tableid;
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finder.ns_id = zvrf->zns->ns_id;
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zrt = RB_FIND(zebra_router_table_head, &zrouter.tables, &finder);
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if (!zrt)
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return;
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zebra_router_free_table(zrt);
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}
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uint32_t zebra_router_get_next_sequence(void)
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{
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return 1
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+ atomic_fetch_add_explicit(&zrouter.sequence_num, 1,
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memory_order_relaxed);
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}
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static inline unsigned int interface_hash_key(const void *arg)
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{
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const struct interface *ifp = arg;
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return ifp->ifindex;
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}
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void zebra_router_terminate(void)
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{
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struct zebra_router_table *zrt, *tmp;
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if (zrouter.ra_wheel) {
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wheel_delete(zrouter.ra_wheel);
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zrouter.ra_wheel = NULL;
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}
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EVENT_OFF(zrouter.t_rib_sweep);
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RB_FOREACH_SAFE (zrt, zebra_router_table_head, &zrouter.tables, tmp)
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zebra_router_free_table(zrt);
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work_queue_free_and_null(&zrouter.ribq);
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meta_queue_free(zrouter.mq, NULL);
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zebra_vxlan_disable();
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zebra_mlag_terminate();
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zebra_neigh_terminate();
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/* Free NHE in ID table only since it has unhashable entries as well */
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hash_iterate(zrouter.nhgs_id, zebra_nhg_hash_free_zero_id, NULL);
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hash_clean_and_free(&zrouter.nhgs_id, zebra_nhg_hash_free);
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hash_clean_and_free(&zrouter.nhgs, NULL);
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hash_clean_and_free(&zrouter.rules_hash, zebra_pbr_rules_free);
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hash_clean_and_free(&zrouter.ipset_entry_hash,
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zebra_pbr_ipset_entry_free);
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hash_clean_and_free(&zrouter.ipset_hash, zebra_pbr_ipset_free);
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hash_clean_and_free(&zrouter.iptable_hash, zebra_pbr_iptable_free);
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hash_clean_and_free(&zrouter.filter_hash, (void (*)(void *)) zebra_tc_filter_free);
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hash_clean_and_free(&zrouter.qdisc_hash, (void (*)(void *)) zebra_tc_qdisc_free);
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hash_clean_and_free(&zrouter.class_hash, (void (*)(void *)) zebra_tc_class_free);
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#ifdef HAVE_SCRIPTING
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zebra_script_destroy();
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#endif
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zebra_vxlan_terminate();
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/* OS-specific deinit */
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kernel_router_terminate();
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}
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bool zebra_router_notify_on_ack(void)
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{
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return !zrouter.asic_offloaded || zrouter.notify_on_ack;
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}
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void zebra_router_init(bool asic_offload, bool notify_on_ack,
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bool v6_with_v4_nexthop)
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{
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zrouter.sequence_num = 0;
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zrouter.protodown_r_bit = FRR_PROTODOWN_REASON_DEFAULT_BIT;
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zrouter.allow_delete = false;
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zrouter.packets_to_process = ZEBRA_ZAPI_PACKETS_TO_PROCESS;
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zrouter.nhg_keep = ZEBRA_DEFAULT_NHG_KEEP_TIMER;
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/*Init V6 RA batching stuffs*/
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zrouter.ra_wheel = wheel_init(zrouter.master, RTADV_TIMER_WHEEL_PERIOD_MS,
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RTADV_TIMER_WHEEL_SLOTS_NO, interface_hash_key, process_rtadv,
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NULL);
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zebra_vxlan_init();
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zebra_mlag_init();
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zebra_neigh_init();
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zrouter.rules_hash = hash_create_size(8, zebra_pbr_rules_hash_key,
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zebra_pbr_rules_hash_equal,
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"Rules Hash");
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zrouter.ipset_hash =
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hash_create_size(8, zebra_pbr_ipset_hash_key,
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zebra_pbr_ipset_hash_equal, "IPset Hash");
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zrouter.ipset_entry_hash = hash_create_size(
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8, zebra_pbr_ipset_entry_hash_key,
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zebra_pbr_ipset_entry_hash_equal, "IPset Hash Entry");
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zrouter.iptable_hash = hash_create_size(8, zebra_pbr_iptable_hash_key,
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zebra_pbr_iptable_hash_equal,
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"IPtable Hash Entry");
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zrouter.nhgs =
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hash_create_size(8, zebra_nhg_hash_key, zebra_nhg_hash_equal,
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"Zebra Router Nexthop Groups");
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zrouter.nhgs_id =
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hash_create_size(8, zebra_nhg_id_key, zebra_nhg_hash_id_equal,
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"Zebra Router Nexthop Groups ID index");
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zrouter.qdisc_hash =
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hash_create_size(8, zebra_tc_qdisc_hash_key,
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zebra_tc_qdisc_hash_equal, "TC (qdisc) Hash");
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zrouter.class_hash = hash_create_size(8, zebra_tc_class_hash_key,
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zebra_tc_class_hash_equal,
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"TC (classes) Hash");
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zrouter.filter_hash = hash_create_size(8, zebra_tc_filter_hash_key,
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zebra_tc_filter_hash_equal,
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"TC (filter) Hash");
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zrouter.asic_offloaded = asic_offload;
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zrouter.notify_on_ack = notify_on_ack;
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zrouter.v6_with_v4_nexthop = v6_with_v4_nexthop;
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/*
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* If you start using asic_notification_nexthop_control
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* come talk to the FRR community about what you are doing
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* We would like to know.
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*/
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#if CONFDATE > 20251231
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CPP_NOTICE(
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"Remove zrouter.asic_notification_nexthop_control as that it's not being maintained or used");
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#endif
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zrouter.asic_notification_nexthop_control = false;
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zrouter.nexthop_weight_scale_value = 254;
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#ifdef HAVE_SCRIPTING
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zebra_script_init();
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#endif
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/* OS-specific init */
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kernel_router_init();
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}
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