2025-02-05 10:03:58 +01:00
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// SPDX-License-Identifier: GPL-2.0-or-later
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/* zebra NS Routines
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* Copyright (C) 2016 Cumulus Networks, Inc.
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* Donald Sharp
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* Copyright (C) 2017/2018 6WIND
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*/
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#include "zebra.h"
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#include "lib/ns.h"
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#include "lib/vrf.h"
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#include "lib/prefix.h"
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#include "lib/memory.h"
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#include "zebra_ns.h"
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#include "zebra_vrf.h"
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#include "rt.h"
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#include "zebra_vxlan.h"
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#include "debug.h"
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#include "zebra_netns_notify.h"
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#include "zebra_netns_id.h"
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#include "zebra_pbr.h"
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#include "zebra_tc.h"
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#include "rib.h"
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#include "table_manager.h"
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#include "zebra_errors.h"
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#include "zebra_dplane.h"
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extern struct zebra_privs_t zserv_privs;
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DEFINE_MTYPE_STATIC(ZEBRA, ZEBRA_NS, "Zebra Name Space");
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static struct zebra_ns *dzns;
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static int zebra_ns_disable_internal(struct zebra_ns *zns, bool complete);
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struct zebra_ns *zebra_ns_lookup(ns_id_t ns_id)
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{
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if (ns_id == NS_DEFAULT)
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return dzns;
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struct zebra_ns *info = (struct zebra_ns *)ns_info_lookup(ns_id);
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return (info == NULL) ? dzns : info;
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}
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static int zebra_ns_new(struct ns *ns)
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{
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struct zebra_ns *zns;
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if (!ns)
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return -1;
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if (IS_ZEBRA_DEBUG_EVENT)
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zlog_info("ZNS %s with id %u (created)", ns->name, ns->ns_id);
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zns = XCALLOC(MTYPE_ZEBRA_NS, sizeof(struct zebra_ns));
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ns->info = zns;
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zns->ns = ns;
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zns->ns_id = ns->ns_id;
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/* Do any needed per-NS data structure allocation. */
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zns->if_table = route_table_init();
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return 0;
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}
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static int zebra_ns_delete(struct ns *ns)
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{
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struct zebra_ns *zns = (struct zebra_ns *)ns->info;
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if (IS_ZEBRA_DEBUG_EVENT)
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zlog_info("ZNS %s with id %u (deleted)", ns->name, ns->ns_id);
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if (!zns)
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return 0;
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XFREE(MTYPE_ZEBRA_NS, ns->info);
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return 0;
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}
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static int zebra_ns_enabled(struct ns *ns)
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{
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struct zebra_ns *zns = ns->info;
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if (IS_ZEBRA_DEBUG_EVENT)
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zlog_info("ZNS %s with id %u (enabled)", ns->name, ns->ns_id);
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if (!zns)
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return 0;
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return zebra_ns_enable(ns->ns_id, (void **)&zns);
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}
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int zebra_ns_disabled(struct ns *ns)
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{
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struct zebra_ns *zns = ns->info;
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if (IS_ZEBRA_DEBUG_EVENT)
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zlog_info("ZNS %s with id %u (disabled)", ns->name, ns->ns_id);
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if (!zns)
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return 0;
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return zebra_ns_disable_internal(zns, true);
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}
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void zebra_ns_startup_continue(struct zebra_dplane_ctx *ctx)
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{
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struct zebra_ns *zns = zebra_ns_lookup(dplane_ctx_get_ns_id(ctx));
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enum zebra_dplane_startup_notifications spot;
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if (!zns) {
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zlog_err("%s: No Namespace associated with %u", __func__,
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dplane_ctx_get_ns_id(ctx));
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return;
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}
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spot = dplane_ctx_get_startup_spot(ctx);
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switch (spot) {
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case ZEBRA_DPLANE_INTERFACES_READ:
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interface_list_tunneldump(zns);
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break;
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case ZEBRA_DPLANE_TUNNELS_READ:
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interface_list_second(zns);
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break;
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case ZEBRA_DPLANE_ADDRESSES_READ:
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route_read(zns);
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vlan_read(zns);
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kernel_read_pbr_rules(zns);
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kernel_read_tc_qdisc(zns);
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break;
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}
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}
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/* Do global enable actions - open sockets, read kernel config etc. */
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int zebra_ns_enable(ns_id_t ns_id, void **info)
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{
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struct zebra_ns *zns = (struct zebra_ns *)(*info);
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zns->ns_id = ns_id;
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kernel_init(zns);
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zebra_dplane_ns_enable(zns, true);
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interface_list(zns);
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return 0;
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}
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/* Common handler for ns disable - this can be called during ns config,
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* or during zebra shutdown.
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*/
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static int zebra_ns_disable_internal(struct zebra_ns *zns, bool complete)
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{
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if (zns->if_table)
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route_table_finish(zns->if_table);
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zns->if_table = NULL;
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zebra_dplane_ns_enable(zns, false /*Disable*/);
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kernel_terminate(zns, complete);
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zns->ns_id = NS_DEFAULT;
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return 0;
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}
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/* During zebra shutdown, do partial cleanup while the async dataplane
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* is still running.
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*/
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int zebra_ns_early_shutdown(struct ns *ns,
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void *param_in __attribute__((unused)),
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void **param_out __attribute__((unused)))
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{
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struct zebra_ns *zns = ns->info;
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if (zns == NULL)
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return 0;
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zebra_ns_disable_internal(zns, false);
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return NS_WALK_CONTINUE;
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}
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2025-02-05 10:17:20 +01:00
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/* During zebra shutdown, do kernel cleanup
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* netlink sockets, ..
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*/
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int zebra_ns_kernel_shutdown(struct ns *ns, void *param_in __attribute__((unused)),
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void **param_out __attribute__((unused)))
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{
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struct zebra_ns *zns = ns->info;
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if (zns == NULL)
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return NS_WALK_CONTINUE;
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kernel_terminate(zns, true);
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return NS_WALK_CONTINUE;
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}
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2025-02-05 10:03:58 +01:00
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/* During zebra shutdown, do final cleanup
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* after all dataplane work is complete.
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*/
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int zebra_ns_final_shutdown(struct ns *ns,
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void *param_in __attribute__((unused)),
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void **param_out __attribute__((unused)))
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{
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struct zebra_ns *zns = ns->info;
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if (zns == NULL)
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2025-02-05 10:17:20 +01:00
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return NS_WALK_CONTINUE;
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2025-02-05 10:03:58 +01:00
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zebra_ns_delete(ns);
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return NS_WALK_CONTINUE;
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}
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int zebra_ns_init(void)
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{
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struct ns *default_ns;
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ns_id_t ns_id;
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ns_id_t ns_id_external;
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struct ns *ns;
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frr_with_privs(&zserv_privs) {
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ns_id = zebra_ns_id_get_default();
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}
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ns_id_external = ns_map_nsid_with_external(ns_id, true);
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ns_init_management(ns_id_external, ns_id);
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ns = ns_get_default();
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if (ns)
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ns->relative_default_ns = ns_id;
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default_ns = ns_lookup(NS_DEFAULT);
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if (!default_ns) {
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flog_err(EC_ZEBRA_NS_NO_DEFAULT,
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"%s: failed to find default ns", __func__);
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exit(EXIT_FAILURE); /* This is non-recoverable */
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}
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/* Do any needed per-NS data structure allocation. */
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zebra_ns_new(default_ns);
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dzns = default_ns->info;
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/* Register zebra VRF callbacks, create and activate default VRF. */
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zebra_vrf_init();
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/* Default NS is activated */
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zebra_ns_enable(ns_id_external, (void **)&dzns);
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if (vrf_is_backend_netns()) {
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ns_add_hook(NS_NEW_HOOK, zebra_ns_new);
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ns_add_hook(NS_ENABLE_HOOK, zebra_ns_enabled);
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ns_add_hook(NS_DISABLE_HOOK, zebra_ns_disabled);
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ns_add_hook(NS_DELETE_HOOK, zebra_ns_delete);
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zebra_ns_notify_parse();
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zebra_ns_notify_init();
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}
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return 0;
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}
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