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path: root/src/plugins/unittest/punt_test.c
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/*
 * Copyright (c) 2018 Cisco and/or its affiliates.
 * Licensed under the Apache License, Version 2.0 (the "License");
 * you may not use this file except in compliance with the License.
 * You may obtain a copy of the License at:
 *
 *     http://www.apache.org/licenses/LICENSE-2.0
 *
 * Unless required by applicable law or agreed to in writing, software
 * distributed under the License is distributed on an "AS IS" BASIS,
 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
 * See the License for the specific language governing permissions and
 * limitations under the License.
 */

#include <vnet/vnet.h>
#include <vnet/adj/rewrite.h>
#include <vnet/ethernet/ethernet.h>
#include <vnet/adj/adj.h>
#include <vnet/ip/ip.h>

typedef enum punt_next_t_
{
  PUNT_NEXT_DROP,
  PUNT_N_NEXT,
} punt_next_t;

typedef struct punt_trace_t_
{
  vlib_punt_reason_t pt_reason;
} punt_trace_t;

#define SW_IF_INDEX_PG0 1
#define SW_IF_INDEX_PG1 2

index_t *adjs[FIB_PROTOCOL_IP_MAX];

static vlib_punt_reason_t punt_reason_v4, punt_reason_v6;
static vlib_punt_hdl_t punt_hdl;

static u8 *
format_punt_trace (u8 * s, va_list * args)
{
  CLIB_UNUSED (vlib_main_t * vm) = va_arg (*args, vlib_main_t *);
  CLIB_UNUSED (vlib_node_t * node) = va_arg (*args, vlib_node_t *);
  punt_trace_t *t = va_arg (*args, punt_trace_t *);

  s = format (s, "punt: %U", format_vlib_punt_reason, t->pt_reason);

  return s;
}

always_inline uword
punt_test_fwd (vlib_main_t * vm,
	       vlib_node_runtime_t * node,
	       vlib_frame_t * frame, fib_protocol_t fproto, u32 sw_if_index)
{
  u32 n_left_from, *from, *to_next, next_index;

  from = vlib_frame_vector_args (frame);
  n_left_from = frame->n_vectors;
  next_index = node->cached_next_index;

  while (n_left_from > 0)
    {
      u32 n_left_to_next;

      vlib_get_next_frame (vm, node, next_index, to_next, n_left_to_next);

      while (n_left_from > 0 && n_left_to_next > 0)
	{
	  ip_adjacency_t *adj0;
	  vlib_buffer_t *b0;
	  void *ip0;
	  index_t ai0;
	  u32 bi0;

	  bi0 = to_next[0] = from[0];
	  from += 1;
	  to_next += 1;
	  n_left_to_next -= 1;
	  n_left_from -= 1;

	  b0 = vlib_get_buffer (vm, bi0);
	  vnet_buffer (b0)->sw_if_index[VLIB_TX] = sw_if_index;
	  ai0 = adjs[fproto][sw_if_index];

	  adj0 = adj_get (ai0);
	  ip0 = vlib_buffer_get_current (b0);

	  vlib_buffer_advance (b0, -adj0->rewrite_header.data_bytes);
	  vnet_rewrite_one_header (adj0[0], ip0, sizeof (ethernet_header_t));

	  vlib_validate_buffer_enqueue_x1 (vm, node, next_index,
					   to_next, n_left_to_next, bi0, 0);
	}
      vlib_put_next_frame (vm, node, next_index, n_left_to_next);
    }

  return frame->n_vectors;
}

always_inline uword
punt_test_pg0_ip4 (vlib_main_t * vm,
		   vlib_node_runtime_t * node, vlib_frame_t * frame)
{
  return (punt_test_fwd (vm, node, frame, FIB_PROTOCOL_IP4, SW_IF_INDEX_PG0));
}

always_inline uword
punt_test_pg1_ip4 (vlib_main_t * vm,
		   vlib_node_runtime_t * node, vlib_frame_t * frame)
{
  return (punt_test_fwd (vm, node, frame, FIB_PROTOCOL_IP4, SW_IF_INDEX_PG1));
}

always_inline uword
punt_test_pg0_ip6 (vlib_main_t * vm,
		   vlib_node_runtime_t * node, vlib_frame_t * frame)
{
  return (punt_test_fwd (vm, node, frame, FIB_PROTOCOL_IP6, SW_IF_INDEX_PG0));
}

always_inline uword
punt_test_pg1_ip6 (vlib_main_t * vm,
		   vlib_node_runtime_t * node, vlib_frame_t * frame)
{
  return (punt_test_fwd (vm, node, frame, FIB_PROTOCOL_IP6, SW_IF_INDEX_PG1));
}

/* *INDENT-OFF* */
VLIB_REGISTER_NODE (punt_test_pg0_ip4_node) = {
  .function = punt_test_pg0_ip4,
  .name = "punt-test-pg0-ip4",
  .vector_size = sizeof (u32),
  .format_trace = format_punt_trace,
};
VLIB_REGISTER_NODE (punt_test_pg1_ip4_node) = {
  .function = punt_test_pg1_ip4,
  .name = "punt-test-pg1-ip4",
  .vector_size = sizeof (u32),
  .format_trace = format_punt_trace,
};
VLIB_REGISTER_NODE (punt_test_pg0_ip6_node) = {
  .function = punt_test_pg0_ip6,
  .name = "punt-test-pg0-ip6",
  .vector_size = sizeof (u32),
  .format_trace = format_punt_trace,
};
VLIB_REGISTER_NODE (punt_test_pg1_ip6_node) = {
  .function = punt_test_pg1_ip6,
  .name = "punt-test-pg1-ip6",
  .vector_size = sizeof (u32),
  .format_trace = format_punt_trace,
};
/* *INDENT-ON* */

typedef struct punt_feat_trace_t_
{
  vlib_punt_reason_t pt_reason;
} punt_feat_trace_t;

always_inline uword
punt_test_feat_inline (vlib_main_t * vm,
		       vlib_node_runtime_t * node,
		       vlib_frame_t * frame, u8 is_ip4)
{
  u32 n_left_from, *from, *to_next, next_index;

  from = vlib_frame_vector_args (frame);
  n_left_from = frame->n_vectors;
  next_index = node->cached_next_index;

  while (n_left_from > 0)
    {
      u32 n_left_to_next;

      vlib_get_next_frame (vm, node, next_index, to_next, n_left_to_next);

      while (n_left_from > 0 && n_left_to_next > 0)
	{
	  vlib_buffer_t *b0;
	  u32 bi0, next0;

	  bi0 = to_next[0] = from[0];
	  from += 1;
	  to_next += 1;
	  n_left_to_next -= 1;
	  n_left_from -= 1;
	  next0 = 0;

	  b0 = vlib_get_buffer (vm, bi0);

	  if (is_ip4)
	    b0->punt_reason = punt_reason_v4;
	  else
	    b0->punt_reason = punt_reason_v6;

	  if (PREDICT_FALSE (b0->flags & VLIB_BUFFER_IS_TRACED))
	    {
	      punt_feat_trace_t *t;

	      b0 = vlib_get_buffer (vm, bi0);

	      t = vlib_add_trace (vm, node, b0, sizeof (*t));
	      t->pt_reason = b0->punt_reason;
	    }
	  vlib_validate_buffer_enqueue_x1 (vm, node, next_index,
					   to_next, n_left_to_next,
					   bi0, next0);
	}
      vlib_put_next_frame (vm, node, next_index, n_left_to_next);
    }

  return frame->n_vectors;
}

static u8 *
format_punt_feat_trace (u8 * s, va_list * args)
{
  CLIB_UNUSED (vlib_main_t * vm) = va_arg (*args, vlib_main_t *);
  CLIB_UNUSED (vlib_node_t * node) = va_arg (*args, vlib_node_t *);
  punt_feat_trace_t *t = va_arg (*args, punt_feat_trace_t *);

  s = format (s, "reason: %U", format_vlib_punt_reason, t->pt_reason);

  return s;
}

always_inline uword
punt_test_feat_ip4 (vlib_main_t * vm,
		    vlib_node_runtime_t * node, vlib_frame_t * frame)
{
  return (punt_test_feat_inline (vm, node, frame, 1));
}

always_inline uword
punt_test_feat_ip6 (vlib_main_t * vm,
		    vlib_node_runtime_t * node, vlib_frame_t * frame)
{
  return (punt_test_feat_inline (vm, node, frame, 0));
}

/* *INDENT-OFF* */
VLIB_REGISTER_NODE (punt_test_feat_ip6_node) = {
  .function = punt_test_feat_ip6,
  .name = "punt-test-feat-ip6",
  .vector_size = sizeof (u32),
  .format_trace = format_punt_feat_trace,
  .n_next_nodes = 1,
  .next_nodes = {
    [0] = "punt-dispatch"
  }
};
VLIB_REGISTER_NODE (punt_test_feat_ip4_node) = {
  .function = punt_test_feat_ip4,
  .name = "punt-test-feat-ip4",
  .vector_size = sizeof (u32),
  .format_trace = format_punt_feat_trace,
  .n_next_nodes = 1,
  .next_nodes = {
    [0] = "punt-dispatch"
  }
};
VNET_FEATURE_INIT (punt_test_feat_ip6_feature, static) =
{
  .arc_name = "ip6-unicast",
  .node_name = "punt-test-feat-ip6",
};
VNET_FEATURE_INIT (punt_test_feat_ip4_feature, static) =
{
  .arc_name = "ip4-unicast",
  .node_name = "punt-test-feat-ip4",
};
/* *INDENT-ON* */

static clib_error_t *
punt_test (vlib_main_t * vm,
	   unformat_input_t * input, vlib_cli_command_t * cmd_arg)
{
  ip46_address_t ip46 = ip46_address_initializer;
  fib_protocol_t fproto;
  vnet_main_t *vnm;
  u32 sw_if_index;
  int rc;

  vnm = vnet_get_main ();
  fproto = FIB_PROTOCOL_IP4;

  if (unformat (input, "%U", unformat_vnet_sw_interface, vnm, &sw_if_index))
    {
      vlib_node_t *from;

      if (unformat (input, "%U", unformat_ip4_address, &ip46.ip4))
	{
	  fproto = FIB_PROTOCOL_IP4;
	}
      else if (unformat (input, "%U", unformat_ip6_address, &ip46.ip6))
	{
	  fproto = FIB_PROTOCOL_IP6;
	}
      else if (unformat (input, "clear"))
	{
	  vnet_feature_enable_disable ("ip4-unicast",
				       "punt-test-feat-ip4",
				       sw_if_index, 0, NULL, 0);
	  vnet_feature_enable_disable ("ip6-unicast",
				       "punt-test-feat-ip6",
				       sw_if_index, 0, NULL, 0);
	  return NULL;
	}
      else
	{
	  /*
	   * allocate a client and a reason
	   */
	  punt_hdl = vlib_punt_client_register ("test");

	  rc =
	    vlib_punt_reason_alloc (punt_hdl, "reason-v4",
				    NULL, NULL, &punt_reason_v4);
	  rc |=
	    vlib_punt_reason_alloc (punt_hdl, "reason-v6",
				    NULL, NULL, &punt_reason_v6);
	  ASSERT (!rc);

	  vnet_feature_enable_disable ("ip4-unicast",
				       "punt-test-feat-ip4",
				       sw_if_index, 1, NULL, 0);
	  vnet_feature_enable_disable ("ip6-unicast",
				       "punt-test-feat-ip6",
				       sw_if_index, 1, NULL, 0);
	  return NULL;
	}

      if (SW_IF_INDEX_PG0 == sw_if_index)
	{
	  if (FIB_PROTOCOL_IP4 == fproto)
	    {
	      /*
	       * register the node that will forward the punted packet
	       */
	      vlib_punt_register (punt_hdl, punt_reason_v4,
				  "punt-test-pg0-ip4");
	      from = vlib_get_node_by_name (vm, (u8 *) "punt-test-pg0-ip4");
	    }
	  else
	    {
	      vlib_punt_register (punt_hdl, punt_reason_v6,
				  "punt-test-pg0-ip6");
	      from = vlib_get_node_by_name (vm, (u8 *) "punt-test-pg0-ip6");
	    }
	}
      else
	{
	  if (FIB_PROTOCOL_IP4 == fproto)
	    {
	      vlib_punt_register (punt_hdl, punt_reason_v4,
				  "punt-test-pg1-ip4");
	      from = vlib_get_node_by_name (vm, (u8 *) "punt-test-pg1-ip4");
	    }
	  else
	    {
	      vlib_punt_register (punt_hdl, punt_reason_v6,
				  "punt-test-pg1-ip6");
	      from = vlib_get_node_by_name (vm, (u8 *) "punt-test-pg1-ip6");
	    }
	}

      vlib_node_add_next (vm, from->index,
			  vnet_tx_node_index_for_sw_interface
			  (vnm, sw_if_index));

      vec_validate (adjs[fproto], sw_if_index);

      adjs[fproto][sw_if_index] = adj_nbr_find (fproto,
						fib_proto_to_link (fproto),
						&ip46, sw_if_index);
    }

  return (NULL);
}

/* *INDENT-OFF* */
VLIB_CLI_COMMAND (test_fib_command, static) =
{
  .path = "test punt",
  .short_help = "punt unit tests - DO NOT RUN ON A LIVE SYSTEM",
  .function = punt_test,
};
/* *INDENT-ON* */

/*
 * fd.io coding-style-patch-verification: ON
 *
 * Local Variables:
 * eval: (c-set-style "gnu")
 * End:
 */
lass="p">[i]->sw_if_index] = 0; ip6_main.mfib_index_by_sw_if_index[tm->hw[i]->sw_if_index] = 0; error = vnet_sw_interface_set_flags(vnet_get_main(), tm->hw[i]->sw_if_index, VNET_SW_INTERFACE_FLAG_ADMIN_UP); MFIB_TEST((NULL == error), "UP interface %d", i); } /* * re-eval after the inevitable realloc */ for (i = 0; i < ninterfaces; i++) { tm->hw[i] = vnet_get_hw_interface(vnet_get_main(), tm->hw_if_indicies[i]); } return (0); } #define MFIB_TEST_REP(_cond, _comment, _args...) \ { \ if (!MFIB_TEST_I(_cond, _comment, ##_args)) { \ return (0); \ } \ } static int mfib_test_validate_rep_v (const replicate_t *rep, u16 n_buckets, va_list ap) { const dpo_id_t *dpo; adj_index_t ai; dpo_type_t dt; int bucket; MFIB_TEST_REP((n_buckets == rep->rep_n_buckets), "n_buckets = %d", rep->rep_n_buckets); for (bucket = 0; bucket < n_buckets; bucket++) { dt = va_arg(ap, int); // type promotion ai = va_arg(ap, adj_index_t); dpo = replicate_get_bucket_i(rep, bucket); MFIB_TEST_REP((dt == dpo->dpoi_type), "bucket %d stacks on %U", bucket, format_dpo_type, dpo->dpoi_type); if (DPO_RECEIVE != dt) { MFIB_TEST_REP((ai == dpo->dpoi_index), "bucket %d stacks on %U", bucket, format_dpo_id, dpo, 0); } } return (!0); } static fib_forward_chain_type_t fib_forw_chain_type_from_fib_proto (fib_protocol_t proto) { switch (proto) { case FIB_PROTOCOL_IP4: return (FIB_FORW_CHAIN_TYPE_UNICAST_IP4); case FIB_PROTOCOL_IP6: return (FIB_FORW_CHAIN_TYPE_UNICAST_IP6); default: break; } ASSERT(0); return (0); } static int mfib_test_entry (fib_node_index_t fei, mfib_entry_flags_t eflags, u16 n_buckets, ...) { const mfib_entry_t *mfe; const replicate_t *rep; mfib_prefix_t pfx; va_list ap; int res; va_start(ap, n_buckets); mfe = mfib_entry_get(fei); mfib_entry_get_prefix(fei, &pfx); MFIB_TEST_REP((eflags == mfe->mfe_flags), "%U has %U expect %U", format_mfib_prefix, &pfx, format_mfib_entry_flags, mfe->mfe_flags, format_mfib_entry_flags, eflags); if (0 == n_buckets) { MFIB_TEST_REP((DPO_DROP == mfe->mfe_rep.dpoi_type), "%U links to %U", format_mfib_prefix, &pfx, format_dpo_id, &mfe->mfe_rep, 0); res = !0; } else { dpo_id_t tmp = DPO_INVALID; mfib_entry_contribute_forwarding( fei, fib_forw_chain_type_from_fib_proto(pfx.fp_proto), &tmp); rep = replicate_get(tmp.dpoi_index); MFIB_TEST_REP((DPO_REPLICATE == tmp.dpoi_type), "%U links to %U", format_mfib_prefix, &pfx, format_dpo_type, tmp.dpoi_type); res = mfib_test_validate_rep_v(rep, n_buckets, ap); dpo_reset(&tmp); } va_end(ap); return (res); } static int mfib_test_entry_itf (fib_node_index_t fei, u32 sw_if_index, mfib_itf_flags_t flags) { const mfib_entry_t *mfe; const mfib_itf_t *mfi; mfib_prefix_t pfx; mfe = mfib_entry_get(fei); mfi = mfib_entry_get_itf(mfe, sw_if_index); mfib_entry_get_prefix(fei, &pfx); MFIB_TEST_REP((NULL != mfi), "%U has interface %d", format_mfib_prefix, &pfx, sw_if_index); MFIB_TEST_REP((flags == mfi->mfi_flags), "%U interface %d has flags %U expect %U", format_mfib_prefix, &pfx, sw_if_index, format_mfib_itf_flags, flags, format_mfib_itf_flags, mfi->mfi_flags); return (!0); } static int mfib_test_entry_no_itf (fib_node_index_t fei, u32 sw_if_index) { const mfib_entry_t *mfe; const mfib_itf_t *mfi; mfib_prefix_t pfx; mfe = mfib_entry_get(fei); mfi = mfib_entry_get_itf(mfe, sw_if_index); mfib_entry_get_prefix(fei, &pfx); MFIB_TEST_REP((NULL == mfi), "%U has no interface %d", format_mfib_prefix, &pfx, sw_if_index); return (!0); } static int mfib_test_i (fib_protocol_t PROTO, vnet_link_t LINKT, const mfib_prefix_t *pfx_no_forward, const mfib_prefix_t *pfx_s_g, const mfib_prefix_t *pfx_star_g_1, const mfib_prefix_t *pfx_star_g_2, const mfib_prefix_t *pfx_star_g_3, const mfib_prefix_t *pfx_star_g_slash_m) { fib_node_index_t mfei, mfei_dflt, mfei_no_f, mfei_s_g, mfei_g_1, mfei_g_2, mfei_g_3, mfei_g_m; u32 fib_index, n_entries, n_itfs, n_reps, n_pls; fib_node_index_t ai_1, ai_2, ai_3; test_main_t *tm; mfib_prefix_t all_1s; memset(&all_1s, 0xfd, sizeof(all_1s)); n_entries = pool_elts(mfib_entry_pool); n_itfs = pool_elts(mfib_itf_pool); n_reps = pool_elts(replicate_pool); n_pls = fib_path_list_pool_size(); tm = &test_main; ai_1 = adj_mcast_add_or_lock(PROTO, LINKT, tm->hw[1]->sw_if_index); ai_2 = adj_mcast_add_or_lock(PROTO, LINKT, tm->hw[2]->sw_if_index); ai_3 = adj_mcast_add_or_lock(PROTO, LINKT, tm->hw[3]->sw_if_index); MFIB_TEST(3 == adj_mcast_db_size(), "3 MCAST adjs"); /* Find or create FIB table 11 */ fib_index = mfib_table_find_or_create_and_lock(PROTO, 11); mfib_prefix_t pfx_dft = { .fp_len = 0, .fp_proto = PROTO, }; mfei_dflt = mfib_table_lookup_exact_match(fib_index, &pfx_dft); MFIB_TEST(FIB_NODE_INDEX_INVALID != mfei_dflt, "(*,*) presnet"); MFIB_TEST(mfib_test_entry(mfei_dflt, MFIB_ENTRY_FLAG_DROP, 0), "(*,*) no replcaitions"); MFIB_TEST(FIB_NODE_INDEX_INVALID != mfei_dflt, "(*,*) presnet"); MFIB_TEST(mfib_test_entry(mfei_dflt, MFIB_ENTRY_FLAG_DROP, 0), "(*,*) no replcaitions"); fib_route_path_t path_via_if0 = { .frp_proto = PROTO, .frp_addr = zero_addr, .frp_sw_if_index = tm->hw[0]->sw_if_index, .frp_fib_index = ~0, .frp_weight = 0, .frp_flags = 0, }; mfib_table_entry_path_update(fib_index, pfx_no_forward, MFIB_SOURCE_API, &path_via_if0, MFIB_ITF_FLAG_ACCEPT); mfei_no_f = mfib_table_lookup_exact_match(fib_index, pfx_no_forward); MFIB_TEST(mfib_test_entry(mfei_no_f, MFIB_ENTRY_FLAG_NONE, 0), "%U no replcaitions", format_mfib_prefix, pfx_no_forward); MFIB_TEST_NS(mfib_test_entry_itf(mfei_no_f, tm->hw[0]->sw_if_index, MFIB_ITF_FLAG_ACCEPT)); fib_route_path_t path_via_if1 = { .frp_proto = PROTO, .frp_addr = zero_addr, .frp_sw_if_index = tm->hw[1]->sw_if_index, .frp_fib_index = ~0, .frp_weight = 0, .frp_flags = 0, }; fib_route_path_t path_via_if2 = { .frp_proto = PROTO, .frp_addr = zero_addr, .frp_sw_if_index = tm->hw[2]->sw_if_index, .frp_fib_index = ~0, .frp_weight = 0, .frp_flags = 0, }; fib_route_path_t path_via_if3 = { .frp_proto = PROTO, .frp_addr = zero_addr, .frp_sw_if_index = tm->hw[3]->sw_if_index, .frp_fib_index = ~0, .frp_weight = 0, .frp_flags = 0, }; fib_route_path_t path_for_us = { .frp_proto = PROTO, .frp_addr = zero_addr, .frp_sw_if_index = 0xffffffff, .frp_fib_index = ~0, .frp_weight = 0, .frp_flags = FIB_ROUTE_PATH_LOCAL, }; /* * An (S,G) with 1 accepting and 3 forwarding paths */ mfib_table_entry_path_update(fib_index, pfx_s_g, MFIB_SOURCE_API, &path_via_if0, MFIB_ITF_FLAG_ACCEPT); mfib_table_entry_path_update(fib_index, pfx_s_g, MFIB_SOURCE_API, &path_via_if1, MFIB_ITF_FLAG_FORWARD); mfib_table_entry_path_update(fib_index, pfx_s_g, MFIB_SOURCE_API, &path_via_if2, MFIB_ITF_FLAG_FORWARD); mfib_table_entry_path_update(fib_index, pfx_s_g, MFIB_SOURCE_API, &path_via_if3, (MFIB_ITF_FLAG_FORWARD | MFIB_ITF_FLAG_NEGATE_SIGNAL)); mfei_s_g = mfib_table_lookup_exact_match(fib_index, pfx_s_g); MFIB_TEST(FIB_NODE_INDEX_INVALID != mfei_s_g, "%U present", format_mfib_prefix, pfx_s_g); MFIB_TEST(mfib_test_entry(mfei_s_g, MFIB_ENTRY_FLAG_NONE, 3, DPO_ADJACENCY_MCAST, ai_1, DPO_ADJACENCY_MCAST, ai_2, DPO_ADJACENCY_MCAST, ai_3), "%U replicate ok", format_mfib_prefix, pfx_s_g); MFIB_TEST_NS(mfib_test_entry_itf(mfei_s_g, tm->hw[0]->sw_if_index, MFIB_ITF_FLAG_ACCEPT)); MFIB_TEST_NS(mfib_test_entry_itf(mfei_s_g, tm->hw[1]->sw_if_index, MFIB_ITF_FLAG_FORWARD)); MFIB_TEST_NS(mfib_test_entry_itf(mfei_s_g, tm->hw[2]->sw_if_index, MFIB_ITF_FLAG_FORWARD)); MFIB_TEST_NS(mfib_test_entry_itf(mfei_s_g, tm->hw[3]->sw_if_index, (MFIB_ITF_FLAG_FORWARD | MFIB_ITF_FLAG_NEGATE_SIGNAL))); /* * A (*,G), which the same G as the (S,G). * different paths. test our LPM. */ mfei_g_1 = mfib_table_entry_path_update(fib_index, pfx_star_g_1, MFIB_SOURCE_API, &path_via_if0, MFIB_ITF_FLAG_ACCEPT); mfib_table_entry_path_update(fib_index, pfx_star_g_1, MFIB_SOURCE_API, &path_via_if1, MFIB_ITF_FLAG_FORWARD); /* * test we find the *,G and S,G via LPM and exact matches */ mfei = mfib_table_lookup_exact_match(fib_index, pfx_star_g_1); MFIB_TEST(mfei == mfei_g_1, "%U found via exact match", format_mfib_prefix, pfx_star_g_1); MFIB_TEST(mfib_test_entry(mfei, MFIB_ENTRY_FLAG_NONE, 1, DPO_ADJACENCY_MCAST, ai_1), "%U replicate ok", format_mfib_prefix, pfx_star_g_1); mfei = mfib_table_lookup(fib_index, pfx_star_g_1); MFIB_TEST(mfei == mfei_g_1, "%U found via LP match", format_mfib_prefix, pfx_star_g_1); MFIB_TEST(mfib_test_entry(mfei, MFIB_ENTRY_FLAG_NONE, 1, DPO_ADJACENCY_MCAST, ai_1), "%U replicate ok", format_mfib_prefix, pfx_star_g_1); mfei = mfib_table_lookup_exact_match(fib_index, pfx_s_g); MFIB_TEST(mfei == mfei_s_g, "%U found via exact match", format_mfib_prefix, pfx_s_g); MFIB_TEST(mfib_test_entry(mfei, MFIB_ENTRY_FLAG_NONE, 3, DPO_ADJACENCY_MCAST, ai_1, DPO_ADJACENCY_MCAST, ai_2, DPO_ADJACENCY_MCAST, ai_3), "%U replicate OK", format_mfib_prefix, pfx_s_g); mfei = mfib_table_lookup(fib_index, pfx_s_g); MFIB_TEST(mfei == mfei_s_g, "%U found via LP match", format_mfib_prefix, pfx_s_g); MFIB_TEST(mfib_test_entry(mfei, MFIB_ENTRY_FLAG_NONE, 3, DPO_ADJACENCY_MCAST, ai_1, DPO_ADJACENCY_MCAST, ai_2, DPO_ADJACENCY_MCAST, ai_3), "%U replicate OK", format_mfib_prefix, pfx_s_g); /* * A (*,G/m), which the same root G as the (*,G). * different paths. test our LPM. */ mfei_g_m = mfib_table_entry_path_update(fib_index, pfx_star_g_slash_m, MFIB_SOURCE_API, &path_via_if2, MFIB_ITF_FLAG_ACCEPT); mfib_table_entry_path_update(fib_index, pfx_star_g_slash_m, MFIB_SOURCE_API, &path_via_if3, MFIB_ITF_FLAG_FORWARD); /* * test we find the (*,G/m), (*,G) and (S,G) via LPM and exact matches */ mfei = mfib_table_lookup_exact_match(fib_index, pfx_star_g_1); MFIB_TEST((mfei_g_1 == mfei), "%U found via DP LPM: %d", format_mfib_prefix, pfx_star_g_1, mfei); MFIB_TEST(mfib_test_entry(mfei, MFIB_ENTRY_FLAG_NONE, 1, DPO_ADJACENCY_MCAST, ai_1), "%U replicate ok", format_mfib_prefix, pfx_star_g_1); mfei = mfib_table_lookup(fib_index, pfx_star_g_1); MFIB_TEST(mfib_test_entry(mfei, MFIB_ENTRY_FLAG_NONE, 1, DPO_ADJACENCY_MCAST, ai_1), "%U replicate ok", format_mfib_prefix, pfx_star_g_1); mfei = mfib_table_lookup_exact_match(fib_index, pfx_s_g); MFIB_TEST(mfib_test_entry(mfei, MFIB_ENTRY_FLAG_NONE, 3, DPO_ADJACENCY_MCAST, ai_1, DPO_ADJACENCY_MCAST, ai_2, DPO_ADJACENCY_MCAST, ai_3), "%U replicate OK", format_mfib_prefix, pfx_s_g); mfei = mfib_table_lookup(fib_index, pfx_s_g); MFIB_TEST(mfib_test_entry(mfei, MFIB_ENTRY_FLAG_NONE, 3, DPO_ADJACENCY_MCAST, ai_1, DPO_ADJACENCY_MCAST, ai_2, DPO_ADJACENCY_MCAST, ai_3), "%U replicate OK", format_mfib_prefix, pfx_s_g); mfei = mfib_table_lookup_exact_match(fib_index, pfx_star_g_slash_m); MFIB_TEST(mfei = mfei_g_m, "%U Found via exact match", format_mfib_prefix, pfx_star_g_slash_m); MFIB_TEST(mfib_test_entry(mfei, MFIB_ENTRY_FLAG_NONE, 1, DPO_ADJACENCY_MCAST, ai_3), "%U replicate OK", format_mfib_prefix, pfx_star_g_slash_m); MFIB_TEST(mfei_g_m == mfib_table_lookup(fib_index, pfx_star_g_slash_m), "%U found via LPM", format_mfib_prefix, pfx_star_g_slash_m); /* * Add a for-us path */ mfei = mfib_table_entry_path_update(fib_index, pfx_s_g, MFIB_SOURCE_API, &path_for_us, MFIB_ITF_FLAG_FORWARD); MFIB_TEST(mfib_test_entry(mfei, MFIB_ENTRY_FLAG_NONE, 4, DPO_ADJACENCY_MCAST, ai_1, DPO_ADJACENCY_MCAST, ai_2, DPO_ADJACENCY_MCAST, ai_3, DPO_RECEIVE, 0), "%U replicate OK", format_mfib_prefix, pfx_s_g); /* * remove a for-us path */ mfib_table_entry_path_remove(fib_index, pfx_s_g, MFIB_SOURCE_API, &path_for_us); MFIB_TEST(mfib_test_entry(mfei, MFIB_ENTRY_FLAG_NONE, 3, DPO_ADJACENCY_MCAST, ai_1, DPO_ADJACENCY_MCAST, ai_2, DPO_ADJACENCY_MCAST, ai_3), "%U replicate OK", format_mfib_prefix, pfx_s_g); /* * update an existing forwarding path to be only accepting * - expect it to be removed from the replication set. */ mfib_table_entry_path_update(fib_index, pfx_s_g, MFIB_SOURCE_API, &path_via_if3, MFIB_ITF_FLAG_ACCEPT); MFIB_TEST(mfib_test_entry(mfei, MFIB_ENTRY_FLAG_NONE, 2, DPO_ADJACENCY_MCAST, ai_1, DPO_ADJACENCY_MCAST, ai_2), "%U replicate OK", format_mfib_prefix, pfx_s_g); MFIB_TEST_NS(mfib_test_entry_itf(mfei, tm->hw[0]->sw_if_index, MFIB_ITF_FLAG_ACCEPT)); MFIB_TEST_NS(mfib_test_entry_itf(mfei, tm->hw[1]->sw_if_index, MFIB_ITF_FLAG_FORWARD)); MFIB_TEST_NS(mfib_test_entry_itf(mfei, tm->hw[2]->sw_if_index, MFIB_ITF_FLAG_FORWARD)); MFIB_TEST_NS(mfib_test_entry_itf(mfei, tm->hw[3]->sw_if_index, MFIB_ITF_FLAG_ACCEPT)); /* * Make the path forwarding again * - expect it to be added back to the replication set */ mfib_table_entry_path_update(fib_index, pfx_s_g, MFIB_SOURCE_API, &path_via_if3, (MFIB_ITF_FLAG_FORWARD | MFIB_ITF_FLAG_ACCEPT | MFIB_ITF_FLAG_NEGATE_SIGNAL)); mfei = mfib_table_lookup_exact_match(fib_index, pfx_s_g); MFIB_TEST(mfib_test_entry(mfei, MFIB_ENTRY_FLAG_NONE, 3, DPO_ADJACENCY_MCAST, ai_1, DPO_ADJACENCY_MCAST, ai_2, DPO_ADJACENCY_MCAST, ai_3), "%U replicate OK", format_mfib_prefix, pfx_s_g); MFIB_TEST_NS(mfib_test_entry_itf(mfei, tm->hw[0]->sw_if_index, MFIB_ITF_FLAG_ACCEPT)); MFIB_TEST_NS(mfib_test_entry_itf(mfei, tm->hw[1]->sw_if_index, MFIB_ITF_FLAG_FORWARD)); MFIB_TEST_NS(mfib_test_entry_itf(mfei, tm->hw[2]->sw_if_index, MFIB_ITF_FLAG_FORWARD)); MFIB_TEST_NS(mfib_test_entry_itf(mfei, tm->hw[3]->sw_if_index, (MFIB_ITF_FLAG_FORWARD | MFIB_ITF_FLAG_ACCEPT | MFIB_ITF_FLAG_NEGATE_SIGNAL))); /* * update flags on the entry */ mfib_table_entry_update(fib_index, pfx_s_g, MFIB_SOURCE_API, MFIB_ENTRY_FLAG_SIGNAL); MFIB_TEST(mfib_test_entry(mfei, MFIB_ENTRY_FLAG_SIGNAL, 3, DPO_ADJACENCY_MCAST, ai_1, DPO_ADJACENCY_MCAST, ai_2, DPO_ADJACENCY_MCAST, ai_3), "%U replicate OK", format_mfib_prefix, pfx_s_g); /* * remove paths */ mfib_table_entry_path_remove(fib_index, pfx_s_g, MFIB_SOURCE_API, &path_via_if3); MFIB_TEST(mfib_test_entry(mfei, MFIB_ENTRY_FLAG_SIGNAL, 2, DPO_ADJACENCY_MCAST, ai_1, DPO_ADJACENCY_MCAST, ai_2), "%U replicate OK", format_mfib_prefix, pfx_s_g); MFIB_TEST_NS(mfib_test_entry_itf(mfei, tm->hw[0]->sw_if_index, MFIB_ITF_FLAG_ACCEPT)); MFIB_TEST_NS(mfib_test_entry_itf(mfei, tm->hw[1]->sw_if_index, MFIB_ITF_FLAG_FORWARD)); MFIB_TEST_NS(mfib_test_entry_itf(mfei, tm->hw[2]->sw_if_index, MFIB_ITF_FLAG_FORWARD)); MFIB_TEST_NS(mfib_test_entry_no_itf(mfei, tm->hw[3]->sw_if_index)); mfib_table_entry_path_remove(fib_index, pfx_s_g, MFIB_SOURCE_API, &path_via_if1); MFIB_TEST(mfib_test_entry(mfei, MFIB_ENTRY_FLAG_SIGNAL, 1, DPO_ADJACENCY_MCAST, ai_2), "%U replicate OK", format_mfib_prefix, pfx_s_g); MFIB_TEST_NS(mfib_test_entry_itf(mfei, tm->hw[0]->sw_if_index, MFIB_ITF_FLAG_ACCEPT)); MFIB_TEST_NS(mfib_test_entry_itf(mfei, tm->hw[2]->sw_if_index, MFIB_ITF_FLAG_FORWARD)); MFIB_TEST_NS(mfib_test_entry_no_itf(mfei, tm->hw[3]->sw_if_index)); /* * remove the accpeting only interface */ mfib_table_entry_path_remove(fib_index, pfx_s_g, MFIB_SOURCE_API, &path_via_if0); MFIB_TEST(mfib_test_entry(mfei, MFIB_ENTRY_FLAG_SIGNAL, 1, DPO_ADJACENCY_MCAST, ai_2), "%U replicate OK", format_mfib_prefix, pfx_s_g); MFIB_TEST_NS(mfib_test_entry_itf(mfei, tm->hw[2]->sw_if_index, MFIB_ITF_FLAG_FORWARD)); MFIB_TEST_NS(mfib_test_entry_no_itf(mfei, tm->hw[0]->sw_if_index)); MFIB_TEST_NS(mfib_test_entry_no_itf(mfei, tm->hw[1]->sw_if_index)); MFIB_TEST_NS(mfib_test_entry_no_itf(mfei, tm->hw[3]->sw_if_index)); /* * remove the last path, the entry still has flags so it remains */ mfib_table_entry_path_remove(fib_index, pfx_s_g, MFIB_SOURCE_API, &path_via_if2); MFIB_TEST(mfib_test_entry(mfei, MFIB_ENTRY_FLAG_SIGNAL, 0), "%U no replications", format_mfib_prefix, pfx_s_g); /* * update flags on the entry */ mfib_table_entry_update(fib_index, pfx_s_g, MFIB_SOURCE_API, (MFIB_ENTRY_FLAG_SIGNAL | MFIB_ENTRY_FLAG_CONNECTED)); MFIB_TEST(mfib_test_entry(mfei, (MFIB_ENTRY_FLAG_SIGNAL | MFIB_ENTRY_FLAG_CONNECTED), 0), "%U no replications", format_mfib_prefix, pfx_s_g); /* * An entry with a NS interface */ mfei_g_2 = mfib_table_entry_path_update(fib_index, pfx_star_g_2, MFIB_SOURCE_API, &path_via_if0, (MFIB_ITF_FLAG_ACCEPT | MFIB_ITF_FLAG_NEGATE_SIGNAL)); MFIB_TEST(mfib_test_entry(mfei_g_2, MFIB_ENTRY_FLAG_NONE, 0), "%U No replications", format_mfib_prefix, pfx_star_g_2); /* * Simulate a signal from the data-plane */ { mfib_entry_t *mfe; mfib_itf_t *mfi; mfe = mfib_entry_get(mfei_g_2); mfi = mfib_entry_get_itf(mfe, path_via_if0.frp_sw_if_index); mfib_signal_push(mfe, mfi, NULL); } /* * An entry with a NS interface */ mfei_g_3 = mfib_table_entry_path_update(fib_index, pfx_star_g_3, MFIB_SOURCE_API, &path_via_if0, (MFIB_ITF_FLAG_ACCEPT | MFIB_ITF_NEGATE_SIGNAL)); MFIB_TEST(mfib_test_entry(mfei_g_3, MFIB_ENTRY_FLAG_NONE, 0), "%U No replications", format_mfib_prefix, pfx_star_g_3); /* * Simulate a signal from the data-plane */ { mfib_entry_t *mfe; mfib_itf_t *mfi; mfe = mfib_entry_get(mfei_g_3); mfi = mfib_entry_get_itf(mfe, path_via_if0.frp_sw_if_index); mfib_signal_push(mfe, mfi, NULL); } if (FIB_PROTOCOL_IP6 == PROTO) { /* * All the entries are present. let's ensure we can find them all * via exact and longest prefix matches. */ /* * A source address we will never match */ ip6_address_t src = { .as_u64[0] = clib_host_to_net_u64(0x3001000000000000), .as_u64[1] = clib_host_to_net_u64(0xffffffffffffffff), }; /* * Find the (*,G/m) */ MFIB_TEST((mfei_g_m == ip6_mfib_table_lookup2( ip6_mfib_get(fib_index), &src, &pfx_star_g_slash_m->fp_grp_addr.ip6)), "%U found via DP LPM grp=%U", format_mfib_prefix, pfx_star_g_slash_m, format_ip6_address, &pfx_star_g_slash_m->fp_grp_addr.ip6); ip6_address_t tmp = pfx_star_g_slash_m->fp_grp_addr.ip6; tmp.as_u8[15] = 0xff; MFIB_TEST((mfei_g_m == ip6_mfib_table_lookup2( ip6_mfib_get(fib_index), &pfx_s_g->fp_src_addr.ip6, &tmp)), "%U found via DP LPM grp=%U", format_mfib_prefix, pfx_star_g_slash_m, format_ip6_address, &tmp); /* * Find the (S,G). */ mfei = ip6_mfib_table_lookup2(ip6_mfib_get(fib_index), &pfx_s_g->fp_src_addr.ip6, &pfx_s_g->fp_grp_addr.ip6); MFIB_TEST((mfei_s_g == mfei), "%U found via DP LPM: %d", format_mfib_prefix, pfx_s_g, mfei); /* * Find the 3 (*,G) s */ mfei = ip6_mfib_table_lookup2(ip6_mfib_get(fib_index), &src, &pfx_star_g_1->fp_grp_addr.ip6); MFIB_TEST((mfei_g_1 == mfei), "%U found via DP LPM: %d", format_mfib_prefix, pfx_star_g_1, mfei); mfei = ip6_mfib_table_lookup2(ip6_mfib_get(fib_index), &src, &pfx_star_g_2->fp_grp_addr.ip6); MFIB_TEST((mfei_g_2 == mfei), "%U found via DP LPM: %d", format_mfib_prefix, pfx_star_g_2, mfei); mfei = ip6_mfib_table_lookup2(ip6_mfib_get(fib_index), &src, &pfx_star_g_3->fp_grp_addr.ip6); MFIB_TEST((mfei_g_3 == mfei), "%U found via DP LPM: %d", format_mfib_prefix, pfx_star_g_3, mfei); } /* * remove flags on the entry. This is the last of the * state associated with the entry, so now it goes. */ mfib_table_entry_update(fib_index, pfx_s_g, MFIB_SOURCE_API, MFIB_ENTRY_FLAG_NONE); mfei = mfib_table_lookup_exact_match(fib_index, pfx_s_g); MFIB_TEST(FIB_NODE_INDEX_INVALID == mfei, "%U gone", format_mfib_prefix, pfx_s_g); /* * remove the last path on the no forward entry - the last entry */ mfib_table_entry_path_remove(fib_index, pfx_no_forward, MFIB_SOURCE_API, &path_via_if0); mfei = mfib_table_lookup_exact_match(fib_index, pfx_no_forward); MFIB_TEST(FIB_NODE_INDEX_INVALID == mfei, "%U gone", format_mfib_prefix, pfx_no_forward); /* * hard delete the (*,232.1.1.1) */ mfib_table_entry_delete(fib_index, pfx_star_g_1, MFIB_SOURCE_API); mfei = mfib_table_lookup_exact_match(fib_index, pfx_star_g_1); MFIB_TEST(FIB_NODE_INDEX_INVALID == mfei, "%U gone", format_mfib_prefix, pfx_star_g_1); /* * remove the entry whilst the signal is pending */ mfib_table_entry_delete(fib_index, pfx_star_g_2, MFIB_SOURCE_API); mfei = mfib_table_lookup_exact_match(fib_index, pfx_star_g_2); MFIB_TEST(FIB_NODE_INDEX_INVALID == mfei, "%U Gone", format_mfib_prefix, pfx_star_g_2); mfib_table_entry_delete(fib_index, pfx_star_g_3, MFIB_SOURCE_API); mfei = mfib_table_lookup_exact_match(fib_index, pfx_star_g_3); MFIB_TEST(FIB_NODE_INDEX_INVALID == mfei, "%U Gone", format_mfib_prefix, pfx_star_g_3); mfib_table_entry_delete(fib_index, pfx_star_g_slash_m, MFIB_SOURCE_API); mfei = mfib_table_lookup_exact_match(fib_index, pfx_star_g_slash_m); MFIB_TEST(FIB_NODE_INDEX_INVALID == mfei, "%U Gone", format_mfib_prefix, pfx_star_g_slash_m); /* * Add a prefix as a special/exclusive route */ dpo_id_t td = DPO_INVALID; index_t repi = replicate_create(1, fib_proto_to_dpo(PROTO)); dpo_set(&td, DPO_ADJACENCY_MCAST, fib_proto_to_dpo(PROTO), ai_2); replicate_set_bucket(repi, 0, &td); mfei = mfib_table_entry_special_add(fib_index, pfx_star_g_3, MFIB_SOURCE_SRv6, MFIB_ENTRY_FLAG_ACCEPT_ALL_ITF, repi); MFIB_TEST(mfib_test_entry(mfei, (MFIB_ENTRY_FLAG_ACCEPT_ALL_ITF | MFIB_ENTRY_FLAG_EXCLUSIVE), 1, DPO_ADJACENCY_MCAST, ai_2), "%U exclusive replicate OK", format_mfib_prefix, pfx_star_g_3); /* * update a special/exclusive route */ index_t repi2 = replicate_create(1, fib_proto_to_dpo(PROTO)); dpo_set(&td, DPO_ADJACENCY_MCAST, fib_proto_to_dpo(PROTO), ai_1); replicate_set_bucket(repi2, 0, &td); mfei = mfib_table_entry_special_add(fib_index, pfx_star_g_3, MFIB_SOURCE_SRv6, MFIB_ENTRY_FLAG_ACCEPT_ALL_ITF, repi2); MFIB_TEST(mfib_test_entry(mfei, (MFIB_ENTRY_FLAG_ACCEPT_ALL_ITF | MFIB_ENTRY_FLAG_EXCLUSIVE), 1, DPO_ADJACENCY_MCAST, ai_1), "%U exclusive update replicate OK", format_mfib_prefix, pfx_star_g_3); mfib_table_entry_delete(fib_index, pfx_star_g_3, MFIB_SOURCE_SRv6); dpo_reset(&td); /* * Unlock the table - it's the last lock so should be gone thereafter */ mfib_table_unlock(fib_index, PROTO); MFIB_TEST((FIB_NODE_INDEX_INVALID == mfib_table_find(PROTO, fib_index)), "MFIB table %d gone", fib_index); adj_unlock(ai_1); adj_unlock(ai_2); adj_unlock(ai_3); /* * test we've leaked no resources */ MFIB_TEST(0 == adj_mcast_db_size(), "%d MCAST adjs", adj_mcast_db_size()); MFIB_TEST(n_pls == fib_path_list_pool_size(), "%d=%d path-lists", n_pls, fib_path_list_pool_size()); MFIB_TEST(n_reps == pool_elts(replicate_pool), "%d=%d replicates", n_reps, pool_elts(replicate_pool)); MFIB_TEST(n_entries == pool_elts(mfib_entry_pool), " No more entries %d!=%d", n_entries, pool_elts(mfib_entry_pool)); MFIB_TEST(n_itfs == pool_elts(mfib_itf_pool), " No more Interfaces %d!=%d", n_itfs, pool_elts(mfib_itf_pool)); return (0); } static int mfib_test_v4 (void) { const mfib_prefix_t pfx_224_s_8 = { .fp_len = 8, .fp_proto = FIB_PROTOCOL_IP4, .fp_grp_addr = { .ip4.as_u32 = clib_host_to_net_u32(0xe0000000), } }; const mfib_prefix_t pfx_1_1_1_1_c_239_1_1_1 = { .fp_len = 64, .fp_proto = FIB_PROTOCOL_IP4, .fp_grp_addr = { .ip4.as_u32 = clib_host_to_net_u32(0xef010101), }, .fp_src_addr = { .ip4.as_u32 = clib_host_to_net_u32(0x01010101), }, }; const mfib_prefix_t pfx_239_1_1_1 = { .fp_len = 32, .fp_proto = FIB_PROTOCOL_IP4, .fp_grp_addr = { .ip4.as_u32 = clib_host_to_net_u32(0xef010101), }, .fp_src_addr = { .ip4.as_u32 = 0, }, }; const mfib_prefix_t pfx_239_1_1_2 = { .fp_len = 32, .fp_proto = FIB_PROTOCOL_IP4, .fp_grp_addr = { .ip4.as_u32 = clib_host_to_net_u32(0xef010102), }, .fp_src_addr = { .ip4.as_u32 = 0, }, }; const mfib_prefix_t pfx_239_1_1_3 = { .fp_len = 32, .fp_proto = FIB_PROTOCOL_IP4, .fp_grp_addr = { .ip4.as_u32 = clib_host_to_net_u32(0xef010103), }, .fp_src_addr = { .ip4.as_u32 = 0, }, }; const mfib_prefix_t pfx_239 = { .fp_len = 8, .fp_proto = FIB_PROTOCOL_IP4, .fp_grp_addr = { .ip4.as_u32 = clib_host_to_net_u32(0xef000000), }, .fp_src_addr = { .ip4.as_u32 = 0, }, }; return (mfib_test_i(FIB_PROTOCOL_IP4, VNET_LINK_IP4, &pfx_224_s_8, &pfx_1_1_1_1_c_239_1_1_1, &pfx_239_1_1_1, &pfx_239_1_1_2, &pfx_239_1_1_3, &pfx_239)); } static int mfib_test_v6 (void) { const mfib_prefix_t pfx_ffd_s_12 = { .fp_len = 12, .fp_proto = FIB_PROTOCOL_IP6, .fp_grp_addr = { .ip6.as_u64[0] = clib_host_to_net_u64(0xffd0000000000000), } }; const mfib_prefix_t pfx_2001_1_c_ff_1 = { .fp_len = 256, .fp_proto = FIB_PROTOCOL_IP6, .fp_grp_addr = { .ip6.as_u64[0] = clib_host_to_net_u64(0xff01000000000000), .ip6.as_u64[1] = clib_host_to_net_u64(0x0000000000000001), }, .fp_src_addr = { .ip6.as_u64[0] = clib_host_to_net_u64(0x2001000000000000), .ip6.as_u64[1] = clib_host_to_net_u64(0x0000000000000001), }, }; const mfib_prefix_t pfx_ff_1 = { .fp_len = 128, .fp_proto = FIB_PROTOCOL_IP6, .fp_grp_addr = { .ip6.as_u64[0] = clib_host_to_net_u64(0xff01000000000000), .ip6.as_u64[1] = clib_host_to_net_u64(0x0000000000000001), }, }; const mfib_prefix_t pfx_ff_2 = { .fp_len = 128, .fp_proto = FIB_PROTOCOL_IP6, .fp_grp_addr = { .ip6.as_u64[0] = clib_host_to_net_u64(0xff01000000000000), .ip6.as_u64[1] = clib_host_to_net_u64(0x0000000000000002), }, }; const mfib_prefix_t pfx_ff_3 = { /* * this is the ALL DHCP routers address */ .fp_len = 128, .fp_proto = FIB_PROTOCOL_IP6, .fp_grp_addr = { .ip6.as_u64[0] = clib_host_to_net_u64(0xff02000100000000), .ip6.as_u64[1] = clib_host_to_net_u64(0x0000000000000002), }, }; const mfib_prefix_t pfx_ff = { .fp_len = 16, .fp_proto = FIB_PROTOCOL_IP6, .fp_grp_addr = { .ip6.as_u64[0] = clib_host_to_net_u64(0xff01000000000000), .ip6.as_u64[1] = clib_host_to_net_u64(0x0000000000000000), }, }; return (mfib_test_i(FIB_PROTOCOL_IP6, VNET_LINK_IP6, &pfx_ffd_s_12, &pfx_2001_1_c_ff_1, &pfx_ff_1, &pfx_ff_2, &pfx_ff_3, &pfx_ff)); } static clib_error_t * mfib_test (vlib_main_t * vm, unformat_input_t * input, vlib_cli_command_t * cmd_arg) { int res = 0; res += mfib_test_mk_intf(4); res += mfib_test_v4(); res += mfib_test_v6(); if (res) { return clib_error_return(0, "MFIB Unit Test Failed"); } else { return (NULL); } } VLIB_CLI_COMMAND (test_fib_command, static) = { .path = "test mfib", .short_help = "mfib unit tests - DO NOT RUN ON A LIVE SYSTEM", .function = mfib_test, }; clib_error_t * mfib_test_init (vlib_main_t *vm) { return 0; } VLIB_INIT_FUNCTION (mfib_test_init);