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path: root/src/vnet/session/session_rules_table.c
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/*
 * Copyright (c) 2017 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/session/mma_16.h>
#include <vnet/session/mma_template.c>
#include <vnet/session/mma_40.h>
#include <vnet/session/mma_template.c>
#include <vnet/session/session_rules_table.h>
#include <vnet/session/transport.h>

u32
session_rule_tag_key_index (u32 ri, u8 is_ip4)
{
  return ((ri << 1) | is_ip4);
}

void
session_rule_tag_key_index_parse (u32 rti_key, u32 * ri, u8 * is_ip4)
{
  *is_ip4 = rti_key & 1;
  *ri = rti_key >> 1;
}

u8 *
session_rules_table_rule_tag (session_rules_table_t * srt, u32 ri, u8 is_ip4)
{
  uword *tip;
  session_rule_tag_t *rt;

  tip =
    hash_get (srt->tags_by_rules, session_rule_tag_key_index (ri, is_ip4));
  if (tip)
    {
      rt = pool_elt_at_index (srt->rule_tags, *tip);
      return rt->tag;
    }
  return 0;
}

void
session_rules_table_del_tag (session_rules_table_t * srt, u8 * tag, u8 is_ip4)
{
  uword *rip, *rtip;
  session_rule_tag_t *rt;
  u32 rti_key;

  if (tag == 0)
    return;
  rip = hash_get_mem (srt->rules_by_tag, tag);
  if (!rip)
    {
      clib_warning ("tag has no rule associated");
      return;
    }
  rti_key = session_rule_tag_key_index (*rip, is_ip4);
  rtip = hash_get (srt->tags_by_rules, rti_key);
  if (!rtip)
    {
      clib_warning ("rule has no tag associated");
      return;
    }
  rt = pool_elt_at_index (srt->rule_tags, *rtip);
  ASSERT (rt);
  hash_unset_mem (srt->rules_by_tag, tag);
  hash_unset (srt->tags_by_rules, rti_key);
  pool_put (srt->rule_tags, rt);
}

void
session_rules_table_add_tag (session_rules_table_t * srt, u8 * tag,
			     u32 rule_index, u8 is_ip4)
{
  uword *rip;
  session_rule_tag_t *rt;
  u32 rti_key;

  if (tag == 0)
    return;
  rip = hash_get_mem (srt->rules_by_tag, tag);
  if (rip)
    session_rules_table_del_tag (srt, tag, is_ip4);
  pool_get (srt->rule_tags, rt);
  rt->tag = vec_dup (tag);
  hash_set_mem (srt->rules_by_tag, rt->tag, rule_index);
  rti_key = session_rule_tag_key_index (rule_index, is_ip4);
  hash_set (srt->tags_by_rules, rti_key, rt - srt->rule_tags);
}

u32
session_rules_table_rule_for_tag (session_rules_table_t * srt, u8 * tag)
{
  uword *rp;
  if (tag == 0)
    return SESSION_RULES_TABLE_INVALID_INDEX;
  rp = hash_get_mem (srt->rules_by_tag, tag);
  return (rp == 0 ? SESSION_RULES_TABLE_INVALID_INDEX : *rp);
}

static void
fib_pref_normalize (fib_prefix_t * pref)
{
  if (pref->fp_proto == FIB_PROTOCOL_IP4)
    ip4_address_normalize (&pref->fp_addr.ip4, pref->fp_len);
  else
    ip6_address_normalize (&pref->fp_addr.ip6, pref->fp_len);
}

u8 *
format_session_rule4 (u8 * s, va_list * args)
{
  session_rules_table_t *srt = va_arg (*args, session_rules_table_t *);
  mma_rule_16_t *sr = va_arg (*args, mma_rule_16_t *);
  session_mask_or_match_4_t *mask, *match;
  mma_rules_table_16_t *srt4;
  u8 *tag = 0, *null_tag = format (0, "none");
  u32 ri;
  int i;

  srt4 = &srt->session_rules_tables_16;
  ri = mma_rules_table_rule_index_16 (srt4, sr);
  tag = session_rules_table_rule_tag (srt, ri, 1);
  match = (session_mask_or_match_4_t *) & sr->match;
  mask = (session_mask_or_match_4_t *) & sr->mask;

  s = format (s, "[%d] rule: %U/%d %d %U/%d %d action: %d tag: %v", ri,
	      format_ip4_address, &match->lcl_ip,
	      ip4_mask_to_preflen (&mask->lcl_ip),
	      clib_net_to_host_u16 (match->lcl_port), format_ip4_address,
	      &match->rmt_ip, ip4_mask_to_preflen (&mask->rmt_ip),
	      clib_net_to_host_u16 (match->rmt_port), sr->action_index,
	      tag ? tag : null_tag);
  if (vec_len (sr->next_indices))
    {
      s = format (s, "\n    children: ");
      for (i = 0; i < vec_len (sr->next_indices); i++)
	s = format (s, "%d ", sr->next_indices[i]);
    }
  vec_free (null_tag);
  return s;
}

u8 *
format_session_rule6 (u8 * s, va_list * args)
{
  session_rules_table_t *srt = va_arg (*args, session_rules_table_t *);
  mma_rule_40_t *sr = va_arg (*args, mma_rule_40_t *);
  session_mask_or_match_6_t *mask, *match;
  mma_rules_table_40_t *srt6;
  u8 *tag = 0, *null_tag = format (0, "none");
  u32 ri;
  int i;

  srt6 = &srt->session_rules_tables_40;
  ri = mma_rules_table_rule_index_40 (srt6, sr);
  tag = session_rules_table_rule_tag (srt, ri, 0);
  match = (session_mask_or_match_6_t *) & sr->match;
  mask = (session_mask_or_match_6_t *) & sr->mask;

  s = format (s, "[%d] rule: %U/%d %d %U/%d %d action: %d tag: %v", ri,
	      format_ip6_address, &match->lcl_ip,
	      ip6_mask_to_preflen (&mask->lcl_ip),
	      clib_net_to_host_u16 (match->lcl_port), format_ip6_address,
	      &match->rmt_ip, ip6_mask_to_preflen (&mask->rmt_ip),
	      clib_net_to_host_u16 (match->rmt_port), sr->action_index,
	      tag ? tag : null_tag);
  if (vec_len (sr->next_indices))
    {
      s = format (s, "\n    children: ");
      for (i = 0; i < vec_len (sr->next_indices); i++)
	s = format (s, "%d ", sr->next_indices[i]);
    }
  vec_free (null_tag);
  return s;
}

void *
session_rules_table_get (session_rules_table_t * srt, u8 fib_proto)
{
  if (fib_proto == FIB_PROTOCOL_IP4)
    return &srt->session_rules_tables_16;
  else if (fib_proto == FIB_PROTOCOL_IP6)
    return &srt->session_rules_tables_40;
  return 0;
}

int
rule_cmp_16 (mma_rule_16_t * rule1, mma_rule_16_t * rule2)
{
  session_mask_or_match_4_t *m1, *m2;

  m1 = (session_mask_or_match_4_t *) & rule1->max_match;
  m2 = (session_mask_or_match_4_t *) & rule2->max_match;
  if (m1->rmt_ip.as_u32 != m2->rmt_ip.as_u32)
    return (m1->rmt_ip.as_u32 < m2->rmt_ip.as_u32 ? -1 : 1);
  if (m1->lcl_ip.as_u32 != m2->lcl_ip.as_u32)
    return (m1->lcl_ip.as_u32 < m2->lcl_ip.as_u32 ? -1 : 1);
  if (m1->rmt_port != m2->rmt_port)
    return (m1->rmt_port < m2->rmt_port ? -1 : 1);
  if (m1->lcl_port != m2->lcl_port)
    return (m1->lcl_port < m2->lcl_port ? -1 : 1);
  return 0;
}

int
rule_cmp_40 (mma_rule_40_t * rule1, mma_rule_40_t * rule2)
{
  session_mask_or_match_6_t *r1, *r2;
  r1 = (session_mask_or_match_6_t *) & rule1->max_match;
  r2 = (session_mask_or_match_6_t *) & rule2->max_match;
  if (r1->rmt_ip.as_u64[0] != r2->rmt_ip.as_u64[0])
    return (r1->rmt_ip.as_u64[0] < r2->rmt_ip.as_u64[0] ? -1 : 1);
  if (r1->rmt_ip.as_u64[1] != r2->rmt_ip.as_u64[1])
    return (r1->rmt_ip.as_u64[1] < r2->rmt_ip.as_u64[1] ? -1 : 1);
  if (r1->lcl_ip.as_u64[0] != r2->lcl_ip.as_u64[0])
    return (r1->lcl_ip.as_u64[0] < r2->lcl_ip.as_u64[0] ? -1 : 1);
  if (r1->lcl_ip.as_u64[1] != r2->lcl_ip.as_u64[1])
    return (r1->lcl_ip.as_u64[1] < r2->lcl_ip.as_u64[1]) ? -1 : 1;
  if (r1->rmt_port != r2->rmt_port)
    return (r1->rmt_port < r2->rmt_port ? -1 : 1);
  if (r1->lcl_port != r2->lcl_port)
    return (r1->lcl_port < r2->lcl_port ? -1 : 1);
  return 0;
}

void
session_rules_table_init_rule_16 (mma_rule_16_t * rule,
				  fib_prefix_t * lcl, u16 lcl_port,
				  fib_prefix_t * rmt, u16 rmt_port)
{
  session_mask_or_match_4_t *match, *mask, *max_match;
  fib_pref_normalize (lcl);
  fib_pref_normalize (rmt);
  match = (session_mask_or_match_4_t *) & rule->match;
  match->lcl_ip.as_u32 = lcl->fp_addr.ip4.as_u32;
  match->rmt_ip.as_u32 = rmt->fp_addr.ip4.as_u32;
  match->lcl_port = lcl_port;
  match->rmt_port = rmt_port;
  mask = (session_mask_or_match_4_t *) & rule->mask;
  ip4_preflen_to_mask (lcl->fp_len, &mask->lcl_ip);
  ip4_preflen_to_mask (rmt->fp_len, &mask->rmt_ip);
  mask->lcl_port = lcl_port == 0 ? 0 : (u16) ~ 0;
  mask->rmt_port = rmt_port == 0 ? 0 : (u16) ~ 0;
  max_match = (session_mask_or_match_4_t *) & rule->max_match;
  ip4_prefix_max_address_host_order (&rmt->fp_addr.ip4, rmt->fp_len,
				     &max_match->rmt_ip);
  ip4_prefix_max_address_host_order (&lcl->fp_addr.ip4, lcl->fp_len,
				     &max_match->lcl_ip);
  max_match->lcl_port = lcl_port == 0 ? (u16) ~ 0 : lcl_port;
  max_match->rmt_port = rmt_port == 0 ? (u16) ~ 0 : rmt_port;
}

void
session_rules_table_init_rule_40 (mma_rule_40_t * rule,
				  fib_prefix_t * lcl, u16 lcl_port,
				  fib_prefix_t * rmt, u16 rmt_port)
{
  session_mask_or_match_6_t *match, *mask, *max_match;
  fib_pref_normalize (lcl);
  fib_pref_normalize (rmt);
  match = (session_mask_or_match_6_t *) & rule->match;
  clib_memcpy_fast (&match->lcl_ip, &lcl->fp_addr.ip6,
		    sizeof (match->lcl_ip));
  clib_memcpy_fast (&match->rmt_ip, &rmt->fp_addr.ip6,
		    sizeof (match->rmt_ip));
  match->lcl_port = lcl_port;
  match->rmt_port = rmt_port;
  mask = (session_mask_or_match_6_t *) & rule->mask;
  ip6_preflen_to_mask (lcl->fp_len, &mask->lcl_ip);
  ip6_preflen_to_mask (rmt->fp_len, &mask->rmt_ip);
  mask->lcl_port = lcl_port == 0 ? 0 : (u16) ~ 0;
  mask->rmt_port = rmt_port == 0 ? 0 : (u16) ~ 0;
  max_match = (session_mask_or_match_6_t *) & rule->max_match;
  ip6_prefix_max_address_host_order (&rmt->fp_addr.ip6, rmt->fp_len,
				     &max_match->rmt_ip);
  ip6_prefix_max_address_host_order (&lcl->fp_addr.ip6, lcl->fp_len,
				     &max_match->lcl_ip);
  max_match->lcl_port = lcl_port == 0 ? (u16) ~ 0 : lcl_port;
  max_match->rmt_port = rmt_port == 0 ? (u16) ~ 0 : rmt_port;
}

mma_rule_16_t *
session_rules_table_alloc_rule_16 (mma_rules_table_16_t * srt,
				   fib_prefix_t * lcl, u16 lcl_port,
				   fib_prefix_t * rmt, u16 rmt_port)
{
  mma_rule_16_t *rule = 0;
  rule = mma_rules_table_rule_alloc_16 (srt);
  session_rules_table_init_rule_16 (rule, lcl, lcl_port, rmt, rmt_port);
  return rule;
}

mma_rule_40_t *
session_rules_table_alloc_rule_40 (mma_rules_table_40_t * srt,
				   fib_prefix_t * lcl, u16 lcl_port,
				   fib_prefix_t * rmt, u16 rmt_port)
{
  mma_rule_40_t *rule;
  rule = mma_rules_table_rule_alloc_40 (srt);
  session_rules_table_init_rule_40 (rule, lcl, lcl_port, rmt, rmt_port);
  return rule;
}

u32
session_rules_table_lookup_rule4 (session_rules_table_t * srt,
				  ip4_address_t * lcl_ip,
				  ip4_address_t * rmt_ip, u16 lcl_port,
				  u16 rmt_port)
{
  mma_rules_table_16_t *srt4 = &srt->session_rules_tables_16;
  session_mask_or_match_4_t key = {
    .lcl_ip.as_u32 = lcl_ip->as_u32,
    .rmt_ip.as_u32 = rmt_ip->as_u32,
    .lcl_port = lcl_port,
    .rmt_port = rmt_port,
  };
  return mma_rules_table_lookup_rule_16 (srt4,
					 (mma_mask_or_match_16_t *) & key,
					 srt4->root_index);
}

u32
session_rules_table_lookup4 (session_rules_table_t * srt,
			     ip4_address_t * lcl_ip, ip4_address_t * rmt_ip,
			     u16 lcl_port, u16 rmt_port)
{
  mma_rules_table_16_t *srt4 = &srt->session_rules_tables_16;
  session_mask_or_match_4_t key = {
    .lcl_ip.as_u32 = lcl_ip->as_u32,
    .rmt_ip.as_u32 = rmt_ip->as_u32,
    .lcl_port = lcl_port,
    .rmt_port = rmt_port,
  };
  return mma_rules_table_lookup_16 (srt4, (mma_mask_or_match_16_t *) & key,
				    srt4->root_index);
}

u32
session_rules_table_lookup_rule6 (session_rules_table_t * srt,
				  ip6_address_t * lcl_ip,
				  ip6_address_t * rmt_ip, u16 lcl_port,
				  u16 rmt_port)
{
  mma_rules_table_40_t *srt6 = &srt->session_rules_tables_40;
  session_mask_or_match_6_t key = {
    .lcl_port = lcl_port,
    .rmt_port = rmt_port,
  };
  clib_memcpy_fast (&key.lcl_ip, lcl_ip, sizeof (*lcl_ip));
  clib_memcpy_fast (&key.rmt_ip, rmt_ip, sizeof (*rmt_ip));
  return mma_rules_table_lookup_rule_40 (srt6,
					 (mma_mask_or_match_40_t *) & key,
					 srt6->root_index);
}

u32
session_rules_table_lookup6 (session_rules_table_t * srt,
			     ip6_address_t * lcl_ip, ip6_address_t * rmt_ip,
			     u16 lcl_port, u16 rmt_port)
{
  mma_rules_table_40_t *srt6 = &srt->session_rules_tables_40;
  session_mask_or_match_6_t key = {
    .lcl_port = lcl_port,
    .rmt_port = rmt_port,
  };
  clib_memcpy_fast (&key.lcl_ip, lcl_ip, sizeof (*lcl_ip));
  clib_memcpy_fast (&key.rmt_ip, rmt_ip, sizeof (*rmt_ip));
  return mma_rules_table_lookup_40 (srt6, (mma_mask_or_match_40_t *) & key,
				    srt6->root_index);
}

/**
 * Add/delete session rule
 *
 * @param srt table where rule should be added
 * @param args rule arguments
 *
 * @return 0 if success, clib_error_t error otherwise
 */
clib_error_t *
session_rules_table_add_del (session_rules_table_t * srt,
			     session_rule_table_add_del_args_t * args)
{
  u8 fib_proto = args->rmt.fp_proto, *rt;
  u32 ri_from_tag, ri;
  int rv;

  ri_from_tag = session_rules_table_rule_for_tag (srt, args->tag);
  if (args->is_add && ri_from_tag != SESSION_RULES_TABLE_INVALID_INDEX)
    return clib_error_return_code (0, VNET_API_ERROR_INVALID_VALUE, 0,
				   "tag exists");

  if (fib_proto == FIB_PROTOCOL_IP4)
    {
      mma_rules_table_16_t *srt4;
      srt4 = &srt->session_rules_tables_16;
      if (args->is_add)
	{
	  mma_rule_16_t *rule4;
	  rule4 = session_rules_table_alloc_rule_16 (srt4, &args->lcl,
						     args->lcl_port,
						     &args->rmt,
						     args->rmt_port);
	  rule4->action_index = args->action_index;
	  rv = mma_rules_table_add_rule_16 (srt4, rule4);
	  if (!rv)
	    {
	      ri = mma_rules_table_rule_index_16 (srt4, rule4);
	      session_rules_table_add_tag (srt, args->tag, ri, 1);
	    }
	  else
	    {
	      ri = session_rules_table_lookup_rule4 (srt,
						     &args->lcl.fp_addr.ip4,
						     &args->rmt.fp_addr.ip4,
						     args->lcl_port,
						     args->rmt_port);
	      if (ri != SESSION_RULES_TABLE_INVALID_INDEX)
		{
		  rt = session_rules_table_rule_tag (srt, ri, 1);
		  session_rules_table_del_tag (srt, rt, 1);
		  session_rules_table_add_tag (srt, args->tag, ri, 1);
		}
	    }
	}
      else
	{
	  mma_rule_16_t *rule;
	  if (ri_from_tag != SESSION_RULES_TABLE_INVALID_INDEX)
	    {
	      rule = mma_rules_table_get_rule_16 (srt4, ri_from_tag);
	      mma_rules_table_del_rule_16 (srt4, rule, srt4->root_index);
	      session_rules_table_del_tag (srt, args->tag, 1);
	    }
	  else
	    {
	      mma_rule_16_t _rule;
	      rule = &_rule;
	      clib_memset (rule, 0, sizeof (*rule));
	      session_rules_table_init_rule_16 (rule, &args->lcl,
						args->lcl_port, &args->rmt,
						args->rmt_port);
	      mma_rules_table_del_rule_16 (srt4, rule, srt4->root_index);
	    }
	}
    }
  else if (fib_proto == FIB_PROTOCOL_IP6)
    {
      mma_rules_table_40_t *srt6;
      mma_rule_40_t *rule6;
      srt6 = &srt->session_rules_tables_40;
      if (args->is_add)
	{
	  rule6 = session_rules_table_alloc_rule_40 (srt6, &args->lcl,
						     args->lcl_port,
						     &args->rmt,
						     args->rmt_port);
	  rule6->action_index = args->action_index;
	  rv = mma_rules_table_add_rule_40 (srt6, rule6);
	  if (!rv)
	    {
	      ri = mma_rules_table_rule_index_40 (srt6, rule6);
	      session_rules_table_add_tag (srt, args->tag, ri, 0);
	    }
	  else
	    {
	      ri = session_rules_table_lookup_rule6 (srt,
						     &args->lcl.fp_addr.ip6,
						     &args->rmt.fp_addr.ip6,
						     args->lcl_port,
						     args->rmt_port);
	      if (ri != SESSION_RULES_TABLE_INVALID_INDEX)
		{
		  rt = session_rules_table_rule_tag (srt, ri, 0);
		  session_rules_table_del_tag (srt, rt, 1);
		  session_rules_table_add_tag (srt, args->tag, ri, 0);
		}
	    }
	}
      else
	{
	  mma_rule_40_t *rule;
	  if (ri_from_tag != SESSION_RULES_TABLE_INVALID_INDEX)
	    {
	      rule = mma_rules_table_get_rule_40 (srt6, ri_from_tag);
	      mma_rules_table_del_rule_40 (srt6, rule, srt6->root_index);
	      session_rules_table_del_tag (srt, args->tag, 0);
	    }
	  else
	    {
	      mma_rule_40_t _rule;
	      rule = &_rule;
	      clib_memset (rule, 0, sizeof (*rule));
	      session_rules_table_init_rule_40 (rule, &args->lcl,
						args->lcl_port, &args->rmt,
						args->rmt_port);
	      mma_rules_table_del_rule_40 (srt6, rule, srt6->root_index);
	    }
	}
    }
  else
    return clib_error_return_code (0, VNET_API_ERROR_INVALID_VALUE_2, 0,
				   "invalid fib proto");
  return 0;
}

void
session_rules_table_init (session_rules_table_t * srt)
{
  mma_rules_table_16_t *srt4;
  mma_rules_table_40_t *srt6;
  mma_rule_16_t *rule4;
  mma_rule_40_t *rule6;
  fib_prefix_t null_prefix;

  clib_memset (&null_prefix, 0, sizeof (null_prefix));

  srt4 = &srt->session_rules_tables_16;
  rule4 = session_rules_table_alloc_rule_16 (srt4, &null_prefix, 0,
					     &null_prefix, 0);
  rule4->action_index = SESSION_RULES_TABLE_INVALID_INDEX;
  srt4->root_index = mma_rules_table_rule_index_16 (srt4, rule4);
  srt4->rule_cmp_fn = rule_cmp_16;

  srt6 = &srt->session_rules_tables_40;
  rule6 = session_rules_table_alloc_rule_40 (srt6, &null_prefix, 0,
					     &null_prefix, 0);
  rule6->action_index = SESSION_RULES_TABLE_INVALID_INDEX;
  srt6->root_index = mma_rules_table_rule_index_40 (srt6, rule6);
  srt6->rule_cmp_fn = rule_cmp_40;

  srt->rules_by_tag = hash_create_vec (0, sizeof (u8), sizeof (uword));
  srt->tags_by_rules = hash_create (0, sizeof (uword));
}

void
session_rules_table_show_rule (vlib_main_t * vm, session_rules_table_t * srt,
			       ip46_address_t * lcl_ip, u16 lcl_port,
			       ip46_address_t * rmt_ip, u16 rmt_port,
			       u8 is_ip4)
{
  mma_rules_table_16_t *srt4;
  mma_rules_table_40_t *srt6;
  mma_rule_16_t *sr4;
  mma_rule_40_t *sr6;
  u32 ri;

  if (is_ip4)
    {
      srt4 = session_rules_table_get (srt, FIB_PROTOCOL_IP4);
      session_mask_or_match_4_t key = {
	.lcl_ip.as_u32 = lcl_ip->ip4.as_u32,
	.rmt_ip.as_u32 = rmt_ip->ip4.as_u32,
	.lcl_port = lcl_port,
	.rmt_port = rmt_port,
      };
      ri =
	mma_rules_table_lookup_rule_16 (srt4,
					(mma_mask_or_match_16_t *) & key,
					srt4->root_index);
      sr4 = mma_rules_table_get_rule_16 (srt4, ri);
      vlib_cli_output (vm, "%U", format_session_rule4, srt, sr4);
    }
  else
    {
      srt6 = session_rules_table_get (srt, FIB_PROTOCOL_IP6);
      session_mask_or_match_6_t key = {
	.lcl_port = lcl_port,
	.rmt_port = rmt_port,
      };
      clib_memcpy_fast (&key.lcl_ip, &lcl_ip->ip6, sizeof (lcl_ip->ip6));
      clib_memcpy_fast (&key.rmt_ip, &rmt_ip->ip6, sizeof (rmt_ip->ip6));
      ri = mma_rules_table_lookup_rule_40 (srt6,
					   (mma_mask_or_match_40_t *) & key,
					   srt6->root_index);
      sr6 = mma_rules_table_get_rule_40 (srt6, ri);
      vlib_cli_output (vm, "%U", format_session_rule6, srt, sr6);
    }
}

void
session_rules_table_cli_dump (vlib_main_t * vm, session_rules_table_t * srt,
			      u8 fib_proto)
{
  if (fib_proto == FIB_PROTOCOL_IP4)
    {
      mma_rules_table_16_t *srt4;
      mma_rule_16_t *sr4;
      srt4 = &srt->session_rules_tables_16;
      vlib_cli_output (vm, "IP4 rules");

      /* *INDENT-OFF* */
      pool_foreach(sr4, srt4->rules, ({
	vlib_cli_output (vm, "%U", format_session_rule4, srt, sr4);
      }));
      /* *INDENT-ON* */

    }
  else if (fib_proto == FIB_PROTOCOL_IP6)
    {
      mma_rules_table_40_t *srt6;
      mma_rule_40_t *sr6;
      srt6 = &srt->session_rules_tables_40;
      vlib_cli_output (vm, "IP6 rules");

      /* *INDENT-OFF* */
      pool_foreach(sr6, srt6->rules, ({
        vlib_cli_output (vm, "%U", format_session_rule6, srt, sr6);
      }));
      /* *INDENT-ON* */

    }
}

/*
 * fd.io coding-style-patch-verification: ON
 *
 * Local Variables:
 * eval: (c-set-style "gnu")
 * End:
 */
n class="p">), in6_ptop(peer_ip)) oid = pkt[DHCP6OptIfaceId] cll = pkt[DHCP6OptClientLinkLayerAddr] self.assertEqual(cll.optlen, 8) self.assertEqual(cll.lltype, 1) self.assertEqual(cll.clladdr, peer_mac) id_len = len(vpn_id) if fib_id != 0: self.assertEqual(id_len, 0) vss = pkt[DHCP6OptVSS] self.assertEqual(vss.optlen, 8) self.assertEqual(vss.type, 1) # the OUI and FIB-id are really 3 and 4 bytes resp. # but the tested range is small self.assertEqual(six.byte2int(vss.data[0:1]), 0) self.assertEqual(six.byte2int(vss.data[1:2]), 0) self.assertEqual(six.byte2int(vss.data[2:3]), oui) self.assertEqual(six.byte2int(vss.data[3:4]), 0) self.assertEqual(six.byte2int(vss.data[4:5]), 0) self.assertEqual(six.byte2int(vss.data[5:6]), 0) self.assertEqual(six.byte2int(vss.data[6:7]), fib_id) if id_len > 0: self.assertEqual(oui, 0) vss = pkt[DHCP6OptVSS] self.assertEqual(vss.optlen, id_len + 1) self.assertEqual(vss.type, 0) self.assertEqual(vss.data[0:id_len].decode("ascii"), vpn_id) # the relay message should be an encoded Solicit msg = pkt[DHCP6OptRelayMsg] sol = DHCP6_Solicit() self.assertEqual(msg.optlen, len(sol)) self.assertEqual(sol, msg[1]) def verify_dhcp6_advert(self, pkt, intf, peer): ether = pkt[Ether] self.assertEqual(ether.dst, "ff:ff:ff:ff:ff:ff") self.assertEqual(ether.src, intf.local_mac) ip = pkt[IPv6] self.assertEqual(in6_ptop(ip.dst), in6_ptop(peer)) self.assertEqual(in6_ptop(ip.src), in6_ptop(intf.local_ip6)) udp = pkt[UDP] self.assertEqual(udp.dport, DHCP6_SERVER_PORT) self.assertEqual(udp.sport, DHCP6_CLIENT_PORT) # not sure why this is not decoding # adv = pkt[DHCP6_Advertise] def wait_for_no_route(self, address, length, n_tries=50, s_time=1): while n_tries: if not find_route(self, address, length): return True n_tries = n_tries - 1 self.sleep(s_time) return False def test_dhcp_proxy(self): """DHCPv4 Proxy""" # # Verify no response to DHCP request without DHCP config # p_disc_vrf0 = ( Ether(dst="ff:ff:ff:ff:ff:ff", src=self.pg3.remote_mac) / IP(src="0.0.0.0", dst="255.255.255.255") / UDP(sport=DHCP4_CLIENT_PORT, dport=DHCP4_SERVER_PORT) / BOOTP(op=1) / DHCP(options=[("message-type", "discover"), ("end")]) ) pkts_disc_vrf0 = [p_disc_vrf0] p_disc_vrf1 = ( Ether(dst="ff:ff:ff:ff:ff:ff", src=self.pg4.remote_mac) / IP(src="0.0.0.0", dst="255.255.255.255") / UDP(sport=DHCP4_CLIENT_PORT, dport=DHCP4_SERVER_PORT) / BOOTP(op=1) / DHCP(options=[("message-type", "discover"), ("end")]) ) pkts_disc_vrf1 = [p_disc_vrf1] p_disc_vrf2 = ( Ether(dst="ff:ff:ff:ff:ff:ff", src=self.pg5.remote_mac) / IP(src="0.0.0.0", dst="255.255.255.255") / UDP(sport=DHCP4_CLIENT_PORT, dport=DHCP4_SERVER_PORT) / BOOTP(op=1) / DHCP(options=[("message-type", "discover"), ("end")]) ) pkts_disc_vrf2 = [p_disc_vrf2] self.send_and_assert_no_replies( self.pg3, pkts_disc_vrf0, "DHCP with no configuration" ) self.send_and_assert_no_replies( self.pg4, pkts_disc_vrf1, "DHCP with no configuration" ) self.send_and_assert_no_replies( self.pg5, pkts_disc_vrf2, "DHCP with no configuration" ) # # Enable DHCP proxy in VRF 0 # server_addr = self.pg0.remote_ip4 src_addr = self.pg0.local_ip4 Proxy = VppDHCPProxy(self, server_addr, src_addr, rx_vrf_id=0) Proxy.add_vpp_config() # # Discover packets from the client are dropped because there is no # IP address configured on the client facing interface # self.send_and_assert_no_replies( self.pg3, pkts_disc_vrf0, "Discover DHCP no relay address" ) # # Inject a response from the server # dropped, because there is no IP addrees on the # client interfce to fill in the option. # p = ( Ether(dst=self.pg0.local_mac, src=self.pg0.remote_mac) / IP(src=self.pg0.remote_ip4, dst=self.pg0.local_ip4) / UDP(sport=DHCP4_SERVER_PORT, dport=DHCP4_SERVER_PORT) / BOOTP(op=1) / DHCP(options=[("message-type", "offer"), ("end")]) ) pkts = [p] self.send_and_assert_no_replies(self.pg3, pkts, "Offer DHCP no relay address") # # configure an IP address on the client facing interface # self.pg3.config_ip4() # # Try again with a discover packet # Rx'd packet should be to the server address and from the configured # source address # UDP source ports are unchanged # we've no option 82 config so that should be absent # self.pg3.add_stream(pkts_disc_vrf0) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg0.get_capture(1) rx = rx[0] option_82 = self.verify_relayed_dhcp_discover(rx, self.pg0, src_intf=self.pg3) # # Create an DHCP offer reply from the server with a correctly formatted # option 82. i.e. send back what we just captured # The offer, sent mcast to the client, still has option 82. # p = ( Ether(dst=self.pg0.local_mac, src=self.pg0.remote_mac) / IP(src=self.pg0.remote_ip4, dst=self.pg0.local_ip4) / UDP(sport=DHCP4_SERVER_PORT, dport=DHCP4_SERVER_PORT) / BOOTP(op=1) / DHCP( options=[ ("message-type", "offer"), ("relay_agent_Information", option_82), ("end"), ] ) ) pkts = [p] self.pg0.add_stream(pkts) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg3.get_capture(1) rx = rx[0] self.verify_dhcp_offer(rx, self.pg3) # # Bogus Option 82: # # 1. not our IP address = not checked by VPP? so offer is replayed # to client bad_ip = option_82[0:8] + scapy.compat.chb(33) + option_82[9:] p = ( Ether(dst=self.pg0.local_mac, src=self.pg0.remote_mac) / IP(src=self.pg0.remote_ip4, dst=self.pg0.local_ip4) / UDP(sport=DHCP4_SERVER_PORT, dport=DHCP4_SERVER_PORT) / BOOTP(op=1) / DHCP( options=[ ("message-type", "offer"), ("relay_agent_Information", bad_ip), ("end"), ] ) ) pkts = [p] self.send_and_assert_no_replies( self.pg0, pkts, "DHCP offer option 82 bad address" ) # 2. Not a sw_if_index VPP knows bad_if_index = option_82[0:2] + scapy.compat.chb(33) + option_82[3:] p = ( Ether(dst=self.pg0.local_mac, src=self.pg0.remote_mac) / IP(src=self.pg0.remote_ip4, dst=self.pg0.local_ip4) / UDP(sport=DHCP4_SERVER_PORT, dport=DHCP4_SERVER_PORT) / BOOTP(op=1) / DHCP( options=[ ("message-type", "offer"), ("relay_agent_Information", bad_if_index), ("end"), ] ) ) pkts = [p] self.send_and_assert_no_replies( self.pg0, pkts, "DHCP offer option 82 bad if index" ) # # Send a DHCP request in VRF 1. should be dropped. # self.send_and_assert_no_replies( self.pg4, pkts_disc_vrf1, "DHCP with no configuration VRF 1" ) # # Delete the DHCP config in VRF 0 # Should now drop requests. # Proxy.remove_vpp_config() self.send_and_assert_no_replies( self.pg3, pkts_disc_vrf0, "DHCP config removed VRF 0" ) self.send_and_assert_no_replies( self.pg4, pkts_disc_vrf1, "DHCP config removed VRF 1" ) # # Add DHCP config for VRF 1 & 2 # server_addr1 = self.pg1.remote_ip4 src_addr1 = self.pg1.local_ip4 Proxy1 = VppDHCPProxy( self, server_addr1, src_addr1, rx_vrf_id=1, server_vrf_id=1 ) Proxy1.add_vpp_config() server_addr2 = self.pg2.remote_ip4 src_addr2 = self.pg2.local_ip4 Proxy2 = VppDHCPProxy( self, server_addr2, src_addr2, rx_vrf_id=2, server_vrf_id=2 ) Proxy2.add_vpp_config() # # Confim DHCP requests ok in VRF 1 & 2. # - dropped on IP config on client interface # self.send_and_assert_no_replies( self.pg4, pkts_disc_vrf1, "DHCP config removed VRF 1" ) self.send_and_assert_no_replies( self.pg5, pkts_disc_vrf2, "DHCP config removed VRF 2" ) # # configure an IP address on the client facing interface # self.pg4.config_ip4() self.pg4.add_stream(pkts_disc_vrf1) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg1.get_capture(1) rx = rx[0] self.verify_relayed_dhcp_discover(rx, self.pg1, src_intf=self.pg4) self.pg5.config_ip4() self.pg5.add_stream(pkts_disc_vrf2) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg2.get_capture(1) rx = rx[0] self.verify_relayed_dhcp_discover(rx, self.pg2, src_intf=self.pg5) # # Add VSS config # table=1, vss_type=1, vpn_index=1, oui=4 # table=2, vss_type=0, vpn_id = "ip4-table-2" self.vapi.dhcp_proxy_set_vss(tbl_id=1, vss_type=1, vpn_index=1, oui=4, is_add=1) self.vapi.dhcp_proxy_set_vss( tbl_id=2, vss_type=0, vpn_ascii_id="ip4-table-2", is_add=1 ) self.pg4.add_stream(pkts_disc_vrf1) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg1.get_capture(1) rx = rx[0] self.verify_relayed_dhcp_discover( rx, self.pg1, src_intf=self.pg4, fib_id=1, oui=4 ) self.pg5.add_stream(pkts_disc_vrf2) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg2.get_capture(1) rx = rx[0] self.verify_relayed_dhcp_discover( rx, self.pg2, src_intf=self.pg5, vpn_id="ip4-table-2" ) # # Add a second DHCP server in VRF 1 # expect clients messages to be relay to both configured servers # self.pg1.generate_remote_hosts(2) server_addr12 = self.pg1.remote_hosts[1].ip4 Proxy12 = VppDHCPProxy( self, server_addr12, src_addr, rx_vrf_id=1, server_vrf_id=1 ) Proxy12.add_vpp_config() # # We'll need an ARP entry for the server to send it packets # arp_entry = VppNeighbor( self, self.pg1.sw_if_index, self.pg1.remote_hosts[1].mac, self.pg1.remote_hosts[1].ip4, ) arp_entry.add_vpp_config() # # Send a discover from the client. expect two relayed messages # The frist packet is sent to the second server # We're not enforcing that here, it's just the way it is. # self.pg4.add_stream(pkts_disc_vrf1) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg1.get_capture(2) option_82 = self.verify_relayed_dhcp_discover( rx[0], self.pg1, src_intf=self.pg4, dst_mac=self.pg1.remote_hosts[1].mac, dst_ip=self.pg1.remote_hosts[1].ip4, fib_id=1, oui=4, ) self.verify_relayed_dhcp_discover( rx[1], self.pg1, src_intf=self.pg4, fib_id=1, oui=4 ) # # Send both packets back. Client gets both. # p1 = ( Ether(dst=self.pg1.local_mac, src=self.pg1.remote_mac) / IP(src=self.pg1.remote_ip4, dst=self.pg1.local_ip4) / UDP(sport=DHCP4_SERVER_PORT, dport=DHCP4_SERVER_PORT) / BOOTP(op=1) / DHCP( options=[ ("message-type", "offer"), ("relay_agent_Information", option_82), ("end"), ] ) ) p2 = ( Ether(dst=self.pg1.local_mac, src=self.pg1.remote_mac) / IP(src=self.pg1.remote_hosts[1].ip4, dst=self.pg1.local_ip4) / UDP(sport=DHCP4_SERVER_PORT, dport=DHCP4_SERVER_PORT) / BOOTP(op=1) / DHCP( options=[ ("message-type", "offer"), ("relay_agent_Information", option_82), ("end"), ] ) ) pkts = [p1, p2] self.pg1.add_stream(pkts) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg4.get_capture(2) self.verify_dhcp_offer(rx[0], self.pg4, fib_id=1, oui=4) self.verify_dhcp_offer(rx[1], self.pg4, fib_id=1, oui=4) # # Ensure offers from non-servers are dropeed # p2 = ( Ether(dst=self.pg1.local_mac, src=self.pg1.remote_mac) / IP(src="8.8.8.8", dst=self.pg1.local_ip4) / UDP(sport=DHCP4_SERVER_PORT, dport=DHCP4_SERVER_PORT) / BOOTP(op=1) / DHCP( options=[ ("message-type", "offer"), ("relay_agent_Information", option_82), ("end"), ] ) ) self.send_and_assert_no_replies(self.pg1, p2, "DHCP offer from non-server") # # Ensure only the discover is sent to multiple servers # p_req_vrf1 = ( Ether(dst="ff:ff:ff:ff:ff:ff", src=self.pg4.remote_mac) / IP(src="0.0.0.0", dst="255.255.255.255") / UDP(sport=DHCP4_CLIENT_PORT, dport=DHCP4_SERVER_PORT) / BOOTP(op=1) / DHCP(options=[("message-type", "request"), ("end")]) ) self.pg4.add_stream(p_req_vrf1) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg1.get_capture(1) # # Remove the second DHCP server # Proxy12.remove_vpp_config() # # Test we can still relay with the first # self.pg4.add_stream(pkts_disc_vrf1) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg1.get_capture(1) rx = rx[0] self.verify_relayed_dhcp_discover( rx, self.pg1, src_intf=self.pg4, fib_id=1, oui=4 ) # # Remove the VSS config # relayed DHCP has default vlaues in the option. # self.vapi.dhcp_proxy_set_vss(tbl_id=1, is_add=0) self.vapi.dhcp_proxy_set_vss(tbl_id=2, is_add=0) self.pg4.add_stream(pkts_disc_vrf1) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg1.get_capture(1) rx = rx[0] self.verify_relayed_dhcp_discover(rx, self.pg1, src_intf=self.pg4) # # remove DHCP config to cleanup # Proxy1.remove_vpp_config() Proxy2.remove_vpp_config() self.send_and_assert_no_replies(self.pg3, pkts_disc_vrf0, "DHCP cleanup VRF 0") self.send_and_assert_no_replies(self.pg4, pkts_disc_vrf1, "DHCP cleanup VRF 1") self.send_and_assert_no_replies(self.pg5, pkts_disc_vrf2, "DHCP cleanup VRF 2") self.pg3.unconfig_ip4() self.pg4.unconfig_ip4() self.pg5.unconfig_ip4() def test_dhcp6_proxy(self): """DHCPv6 Proxy""" # # Verify no response to DHCP request without DHCP config # dhcp_solicit_dst = "ff02::1:2" dhcp_solicit_src_vrf0 = mk_ll_addr(self.pg3.remote_mac) dhcp_solicit_src_vrf1 = mk_ll_addr(self.pg4.remote_mac) dhcp_solicit_src_vrf2 = mk_ll_addr(self.pg5.remote_mac) server_addr_vrf0 = self.pg0.remote_ip6 src_addr_vrf0 = self.pg0.local_ip6 server_addr_vrf1 = self.pg1.remote_ip6 src_addr_vrf1 = self.pg1.local_ip6 server_addr_vrf2 = self.pg2.remote_ip6 src_addr_vrf2 = self.pg2.local_ip6 dmac = in6_getnsmac(inet_pton(socket.AF_INET6, dhcp_solicit_dst)) p_solicit_vrf0 = ( Ether(dst=dmac, src=self.pg3.remote_mac) / IPv6(src=dhcp_solicit_src_vrf0, dst=dhcp_solicit_dst) / UDP(sport=DHCP6_SERVER_PORT, dport=DHCP6_CLIENT_PORT) / DHCP6_Solicit() ) p_solicit_vrf1 = ( Ether(dst=dmac, src=self.pg4.remote_mac) / IPv6(src=dhcp_solicit_src_vrf1, dst=dhcp_solicit_dst) / UDP(sport=DHCP6_SERVER_PORT, dport=DHCP6_CLIENT_PORT) / DHCP6_Solicit() ) p_solicit_vrf2 = ( Ether(dst=dmac, src=self.pg5.remote_mac) / IPv6(src=dhcp_solicit_src_vrf2, dst=dhcp_solicit_dst) / UDP(sport=DHCP6_SERVER_PORT, dport=DHCP6_CLIENT_PORT) / DHCP6_Solicit() ) self.send_and_assert_no_replies( self.pg3, p_solicit_vrf0, "DHCP with no configuration" ) self.send_and_assert_no_replies( self.pg4, p_solicit_vrf1, "DHCP with no configuration" ) self.send_and_assert_no_replies( self.pg5, p_solicit_vrf2, "DHCP with no configuration" ) # # DHCPv6 config in VRF 0. # Packets still dropped because the client facing interface has no # IPv6 config # Proxy = VppDHCPProxy( self, server_addr_vrf0, src_addr_vrf0, rx_vrf_id=0, server_vrf_id=0 ) Proxy.add_vpp_config() self.send_and_assert_no_replies( self.pg3, p_solicit_vrf0, "DHCP with no configuration" ) self.send_and_assert_no_replies( self.pg4, p_solicit_vrf1, "DHCP with no configuration" ) # # configure an IP address on the client facing interface # self.pg3.config_ip6() # # Now the DHCP requests are relayed to the server # self.pg3.add_stream(p_solicit_vrf0) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg0.get_capture(1) self.verify_dhcp6_solicit( rx[0], self.pg0, dhcp_solicit_src_vrf0, self.pg3.remote_mac ) # # Exception cases for rejected relay responses # # 1 - not a relay reply p_adv_vrf0 = ( Ether(dst=self.pg0.local_mac, src=self.pg0.remote_mac) / IPv6(dst=self.pg0.local_ip6, src=self.pg0.remote_ip6) / UDP(sport=DHCP6_SERVER_PORT, dport=DHCP6_SERVER_PORT) / DHCP6_Advertise() ) self.send_and_assert_no_replies(self.pg3, p_adv_vrf0, "DHCP6 not a relay reply") # 2 - no relay message option p_adv_vrf0 = ( Ether(dst=self.pg0.local_mac, src=self.pg0.remote_mac) / IPv6(dst=self.pg0.local_ip6, src=self.pg0.remote_ip6) / UDP(sport=DHCP6_SERVER_PORT, dport=DHCP6_SERVER_PORT) / DHCP6_RelayReply() / DHCP6_Advertise() ) self.send_and_assert_no_replies( self.pg3, p_adv_vrf0, "DHCP not a relay message" ) # 3 - no circuit ID p_adv_vrf0 = ( Ether(dst=self.pg0.local_mac, src=self.pg0.remote_mac) / IPv6(dst=self.pg0.local_ip6, src=self.pg0.remote_ip6) / UDP(sport=DHCP6_SERVER_PORT, dport=DHCP6_SERVER_PORT) / DHCP6_RelayReply() / DHCP6OptRelayMsg(optlen=0) / DHCP6_Advertise() ) self.send_and_assert_no_replies(self.pg3, p_adv_vrf0, "DHCP6 no circuit ID") # 4 - wrong circuit ID p_adv_vrf0 = ( Ether(dst=self.pg0.local_mac, src=self.pg0.remote_mac) / IPv6(dst=self.pg0.local_ip6, src=self.pg0.remote_ip6) / UDP(sport=DHCP6_SERVER_PORT, dport=DHCP6_SERVER_PORT) / DHCP6_RelayReply() / DHCP6OptIfaceId(optlen=4, ifaceid="\x00\x00\x00\x05") / DHCP6OptRelayMsg(optlen=0) / DHCP6_Advertise() ) self.send_and_assert_no_replies(self.pg3, p_adv_vrf0, "DHCP6 wrong circuit ID") # # Send the relay response (the advertisement) # - no peer address p_adv_vrf0 = ( Ether(dst=self.pg0.local_mac, src=self.pg0.remote_mac) / IPv6(dst=self.pg0.local_ip6, src=self.pg0.remote_ip6) / UDP(sport=DHCP6_SERVER_PORT, dport=DHCP6_SERVER_PORT) / DHCP6_RelayReply() / DHCP6OptIfaceId(optlen=4, ifaceid="\x00\x00\x00\x04") / DHCP6OptRelayMsg(optlen=0) / DHCP6_Advertise(trid=1) / DHCP6OptStatusCode(statuscode=0) ) pkts_adv_vrf0 = [p_adv_vrf0] self.pg0.add_stream(pkts_adv_vrf0) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg3.get_capture(1) self.verify_dhcp6_advert(rx[0], self.pg3, "::") # # Send the relay response (the advertisement) # - with peer address p_adv_vrf0 = ( Ether(dst=self.pg0.local_mac, src=self.pg0.remote_mac) / IPv6(dst=self.pg0.local_ip6, src=self.pg0.remote_ip6) / UDP(sport=DHCP6_SERVER_PORT, dport=DHCP6_SERVER_PORT) / DHCP6_RelayReply(peeraddr=dhcp_solicit_src_vrf0) / DHCP6OptIfaceId(optlen=4, ifaceid="\x00\x00\x00\x04") / DHCP6OptRelayMsg(optlen=0) / DHCP6_Advertise(trid=1) / DHCP6OptStatusCode(statuscode=0) ) pkts_adv_vrf0 = [p_adv_vrf0] self.pg0.add_stream(pkts_adv_vrf0) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg3.get_capture(1) self.verify_dhcp6_advert(rx[0], self.pg3, dhcp_solicit_src_vrf0) # # Add all the config for VRF 1 & 2 # Proxy1 = VppDHCPProxy( self, server_addr_vrf1, src_addr_vrf1, rx_vrf_id=1, server_vrf_id=1 ) Proxy1.add_vpp_config() self.pg4.config_ip6() Proxy2 = VppDHCPProxy( self, server_addr_vrf2, src_addr_vrf2, rx_vrf_id=2, server_vrf_id=2 ) Proxy2.add_vpp_config() self.pg5.config_ip6() # # VRF 1 solicit # self.pg4.add_stream(p_solicit_vrf1) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg1.get_capture(1) self.verify_dhcp6_solicit( rx[0], self.pg1, dhcp_solicit_src_vrf1, self.pg4.remote_mac ) # # VRF 2 solicit # self.pg5.add_stream(p_solicit_vrf2) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg2.get_capture(1) self.verify_dhcp6_solicit( rx[0], self.pg2, dhcp_solicit_src_vrf2, self.pg5.remote_mac ) # # VRF 1 Advert # p_adv_vrf1 = ( Ether(dst=self.pg1.local_mac, src=self.pg1.remote_mac) / IPv6(dst=self.pg1.local_ip6, src=self.pg1.remote_ip6) / UDP(sport=DHCP6_SERVER_PORT, dport=DHCP6_SERVER_PORT) / DHCP6_RelayReply(peeraddr=dhcp_solicit_src_vrf1) / DHCP6OptIfaceId(optlen=4, ifaceid="\x00\x00\x00\x05") / DHCP6OptRelayMsg(optlen=0) / DHCP6_Advertise(trid=1) / DHCP6OptStatusCode(statuscode=0) ) pkts_adv_vrf1 = [p_adv_vrf1] self.pg1.add_stream(pkts_adv_vrf1) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg4.get_capture(1) self.verify_dhcp6_advert(rx[0], self.pg4, dhcp_solicit_src_vrf1) # # Add VSS config # self.vapi.dhcp_proxy_set_vss( tbl_id=1, vss_type=1, oui=4, vpn_index=1, is_ipv6=1, is_add=1 ) self.vapi.dhcp_proxy_set_vss( tbl_id=2, vss_type=0, vpn_ascii_id="IPv6-table-2", is_ipv6=1, is_add=1 ) self.pg4.add_stream(p_solicit_vrf1) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg1.get_capture(1) self.verify_dhcp6_solicit( rx[0], self.pg1, dhcp_solicit_src_vrf1, self.pg4.remote_mac, fib_id=1, oui=4 ) self.pg5.add_stream(p_solicit_vrf2) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg2.get_capture(1) self.verify_dhcp6_solicit( rx[0], self.pg2, dhcp_solicit_src_vrf2, self.pg5.remote_mac, vpn_id="IPv6-table-2", ) # # Remove the VSS config # relayed DHCP has default vlaues in the option. # self.vapi.dhcp_proxy_set_vss(tbl_id=1, is_ipv6=1, is_add=0) self.pg4.add_stream(p_solicit_vrf1) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg1.get_capture(1) self.verify_dhcp6_solicit( rx[0], self.pg1, dhcp_solicit_src_vrf1, self.pg4.remote_mac ) # # Add a second DHCP server in VRF 1 # expect clients messages to be relay to both configured servers # self.pg1.generate_remote_hosts(2) server_addr12 = self.pg1.remote_hosts[1].ip6 Proxy12 = VppDHCPProxy( self, server_addr12, src_addr_vrf1, rx_vrf_id=1, server_vrf_id=1 ) Proxy12.add_vpp_config() # # We'll need an ND entry for the server to send it packets # nd_entry = VppNeighbor( self, self.pg1.sw_if_index, self.pg1.remote_hosts[1].mac, self.pg1.remote_hosts[1].ip6, ) nd_entry.add_vpp_config() # # Send a discover from the client. expect two relayed messages # The frist packet is sent to the second server # We're not enforcing that here, it's just the way it is. # self.pg4.add_stream(p_solicit_vrf1) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg1.get_capture(2) self.verify_dhcp6_solicit( rx[0], self.pg1, dhcp_solicit_src_vrf1, self.pg4.remote_mac ) self.verify_dhcp6_solicit( rx[1], self.pg1, dhcp_solicit_src_vrf1, self.pg4.remote_mac, dst_mac=self.pg1.remote_hosts[1].mac, dst_ip=self.pg1.remote_hosts[1].ip6, ) # # Send both packets back. Client gets both. # p1 = ( Ether(dst=self.pg1.local_mac, src=self.pg1.remote_mac) / IPv6(dst=self.pg1.local_ip6, src=self.pg1.remote_ip6) / UDP(sport=DHCP6_SERVER_PORT, dport=DHCP6_SERVER_PORT) / DHCP6_RelayReply(peeraddr=dhcp_solicit_src_vrf1) / DHCP6OptIfaceId(optlen=4, ifaceid="\x00\x00\x00\x05") / DHCP6OptRelayMsg(optlen=0) / DHCP6_Advertise(trid=1) / DHCP6OptStatusCode(statuscode=0) ) p2 = ( Ether(dst=self.pg1.local_mac, src=self.pg1.remote_hosts[1].mac) / IPv6(dst=self.pg1.local_ip6, src=self.pg1._remote_hosts[1].ip6) / UDP(sport=DHCP6_SERVER_PORT, dport=DHCP6_SERVER_PORT) / DHCP6_RelayReply(peeraddr=dhcp_solicit_src_vrf1) / DHCP6OptIfaceId(optlen=4, ifaceid="\x00\x00\x00\x05") / DHCP6OptRelayMsg(optlen=0) / DHCP6_Advertise(trid=1) / DHCP6OptStatusCode(statuscode=0) ) pkts = [p1, p2] self.pg1.add_stream(pkts) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg4.get_capture(2) self.verify_dhcp6_advert(rx[0], self.pg4, dhcp_solicit_src_vrf1) self.verify_dhcp6_advert(rx[1], self.pg4, dhcp_solicit_src_vrf1) # # Ensure only solicit messages are duplicated # p_request_vrf1 = ( Ether(dst=dmac, src=self.pg4.remote_mac) / IPv6(src=dhcp_solicit_src_vrf1, dst=dhcp_solicit_dst) / UDP(sport=DHCP6_SERVER_PORT, dport=DHCP6_CLIENT_PORT) / DHCP6_Request() ) self.pg4.add_stream(p_request_vrf1) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg1.get_capture(1) # # Test we drop DHCP packets from addresses that are not configured as # DHCP servers # p2 = ( Ether(dst=self.pg1.local_mac, src=self.pg1.remote_hosts[1].mac) / IPv6(dst=self.pg1.local_ip6, src="3001::1") / UDP(sport=DHCP6_SERVER_PORT, dport=DHCP6_SERVER_PORT) / DHCP6_RelayReply(peeraddr=dhcp_solicit_src_vrf1) / DHCP6OptIfaceId(optlen=4, ifaceid="\x00\x00\x00\x05") / DHCP6OptRelayMsg(optlen=0) / DHCP6_Advertise(trid=1) / DHCP6OptStatusCode(statuscode=0) ) self.send_and_assert_no_replies(self.pg1, p2, "DHCP6 not from server") # # Remove the second DHCP server # Proxy12.remove_vpp_config() # # Test we can still relay with the first # self.pg4.add_stream(p_solicit_vrf1) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg1.get_capture(1) self.verify_dhcp6_solicit( rx[0], self.pg1, dhcp_solicit_src_vrf1, self.pg4.remote_mac ) # # Cleanup # Proxy.remove_vpp_config() Proxy1.remove_vpp_config() Proxy2.remove_vpp_config() self.pg3.unconfig_ip6() self.pg4.unconfig_ip6() self.pg5.unconfig_ip6() def test_dhcp_client(self): """DHCP Client""" vdscp = VppEnum.vl_api_ip_dscp_t hostname = "universal-dp" self.pg_enable_capture(self.pg_interfaces) # # Configure DHCP client on PG3 and capture the discover sent # Client = VppDHCPClient(self, self.pg3.sw_if_index, hostname) Client.add_vpp_config() self.assertTrue(Client.query_vpp_config()) rx = self.pg3.get_capture(1) self.verify_orig_dhcp_discover(rx[0], self.pg3, hostname) # # Send back on offer, expect the request # p_offer = ( Ether(dst=self.pg3.local_mac, src=self.pg3.remote_mac) / IP(src=self.pg3.remote_ip4, dst="255.255.255.255") / UDP(sport=DHCP4_SERVER_PORT, dport=DHCP4_CLIENT_PORT) / BOOTP( op=1, yiaddr=self.pg3.local_ip4, chaddr=mac_pton(self.pg3.local_mac) ) / DHCP( options=[ ("message-type", "offer"), ("server_id", self.pg3.remote_ip4), "end", ] ) ) self.pg3.add_stream(p_offer) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg3.get_capture(1) self.verify_orig_dhcp_request(rx[0], self.pg3, hostname, self.pg3.local_ip4) # # Send an acknowledgment # p_ack = ( Ether(dst=self.pg3.local_mac, src=self.pg3.remote_mac) / IP(src=self.pg3.remote_ip4, dst="255.255.255.255") / UDP(sport=DHCP4_SERVER_PORT, dport=DHCP4_CLIENT_PORT) / BOOTP( op=1, yiaddr=self.pg3.local_ip4, chaddr=mac_pton(self.pg3.local_mac) ) / DHCP( options=[ ("message-type", "ack"), ("subnet_mask", "255.255.255.0"), ("router", self.pg3.remote_ip4), ("server_id", self.pg3.remote_ip4), ("lease_time", 43200), "end", ] ) ) self.pg3.add_stream(p_ack) self.pg_enable_capture(self.pg_interfaces) self.pg_start() # # We'll get an ARP request for the router address # rx = self.pg3.get_capture(1) self.assertEqual(rx[0][ARP].pdst, self.pg3.remote_ip4) self.pg_enable_capture(self.pg_interfaces) # # At the end of this procedure there should be a connected route # in the FIB # self.assertTrue(find_route(self, self.pg3.local_ip4, 24)) self.assertTrue(find_route(self, self.pg3.local_ip4, 32)) # # remove the DHCP config # Client.remove_vpp_config() # # and now the route should be gone # self.assertFalse(find_route(self, self.pg3.local_ip4, 32)) self.assertFalse(find_route(self, self.pg3.local_ip4, 24)) # # Start the procedure again. this time have VPP send the client-ID # and set the DSCP value # self.pg3.admin_down() self.sleep(1) self.pg3.admin_up() Client.set_client( self.pg3.sw_if_index, hostname, id=self.pg3.local_mac, dscp=vdscp.IP_API_DSCP_EF, ) Client.add_vpp_config() rx = self.pg3.get_capture(1) self.verify_orig_dhcp_discover( rx[0], self.pg3, hostname, self.pg3.local_mac, dscp=vdscp.IP_API_DSCP_EF ) # TODO: VPP DHCP client should not accept DHCP OFFER message with # the XID (Transaction ID) not matching the XID of the most recent # DHCP DISCOVERY message. # Such DHCP OFFER message must be silently discarded - RFC2131. # Reported in Jira ticket: VPP-99 self.pg3.add_stream(p_offer) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg3.get_capture(1) self.verify_orig_dhcp_request( rx[0], self.pg3, hostname, self.pg3.local_ip4, dscp=vdscp.IP_API_DSCP_EF ) # # unicast the ack to the offered address # p_ack = ( Ether(dst=self.pg3.local_mac, src=self.pg3.remote_mac) / IP(src=self.pg3.remote_ip4, dst=self.pg3.local_ip4) / UDP(sport=DHCP4_SERVER_PORT, dport=DHCP4_CLIENT_PORT) / BOOTP( op=1, yiaddr=self.pg3.local_ip4, chaddr=mac_pton(self.pg3.local_mac) ) / DHCP( options=[ ("message-type", "ack"), ("subnet_mask", "255.255.255.0"), ("router", self.pg3.remote_ip4), ("server_id", self.pg3.remote_ip4), ("lease_time", 43200), "end", ] ) ) self.pg3.add_stream(p_ack) self.pg_enable_capture(self.pg_interfaces) self.pg_start() # # We'll get an ARP request for the router address # rx = self.pg3.get_capture(1) self.assertEqual(rx[0][ARP].pdst, self.pg3.remote_ip4) self.pg_enable_capture(self.pg_interfaces) # # At the end of this procedure there should be a connected route # in the FIB # self.assertTrue(find_route(self, self.pg3.local_ip4, 32)) self.assertTrue(find_route(self, self.pg3.local_ip4, 24)) # # remove the DHCP config # Client.remove_vpp_config() self.assertFalse(find_route(self, self.pg3.local_ip4, 32)) self.assertFalse(find_route(self, self.pg3.local_ip4, 24)) # # Rince and repeat, this time with VPP configured not to set # the braodcast flag in the discover and request messages, # and for the server to unicast the responses. # # Configure DHCP client on PG3 and capture the discover sent # Client.set_client(self.pg3.sw_if_index, hostname, set_broadcast_flag=False) Client.add_vpp_config() rx = self.pg3.get_capture(1) self.verify_orig_dhcp_discover(rx[0], self.pg3, hostname, broadcast=False) # # Send back on offer, unicasted to the offered address. # Expect the request. # p_offer = ( Ether(dst=self.pg3.local_mac, src=self.pg3.remote_mac) / IP(src=self.pg3.remote_ip4, dst=self.pg3.local_ip4) / UDP(sport=DHCP4_SERVER_PORT, dport=DHCP4_CLIENT_PORT) / BOOTP( op=1, yiaddr=self.pg3.local_ip4, chaddr=mac_pton(self.pg3.local_mac) ) / DHCP( options=[ ("message-type", "offer"), ("server_id", self.pg3.remote_ip4), "end", ] ) ) self.pg3.add_stream(p_offer) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg3.get_capture(1) self.verify_orig_dhcp_request( rx[0], self.pg3, hostname, self.pg3.local_ip4, broadcast=False ) # # Send an acknowledgment, the lease renewal time is 2 seconds # so we should expect the renew straight after # p_ack = ( Ether(dst=self.pg3.local_mac, src=self.pg3.remote_mac) / IP(src=self.pg3.remote_ip4, dst=self.pg3.local_ip4) / UDP(sport=DHCP4_SERVER_PORT, dport=DHCP4_CLIENT_PORT) / BOOTP( op=1, yiaddr=self.pg3.local_ip4, chaddr=mac_pton(self.pg3.local_mac) ) / DHCP( options=[ ("message-type", "ack"), ("subnet_mask", "255.255.255.0"), ("router", self.pg3.remote_ip4), ("server_id", self.pg3.remote_ip4), ("lease_time", 43200), ("renewal_time", 2), "end", ] ) ) self.pg3.add_stream(p_ack) self.pg_enable_capture(self.pg_interfaces) self.pg_start() # # We'll get an ARP request for the router address # rx = self.pg3.get_capture(1) self.assertEqual(rx[0][ARP].pdst, self.pg3.remote_ip4) self.pg_enable_capture(self.pg_interfaces) # # At the end of this procedure there should be a connected route # in the FIB # self.assertTrue(find_route(self, self.pg3.local_ip4, 24)) self.assertTrue(find_route(self, self.pg3.local_ip4, 32)) # # read the DHCP client details from a dump # clients = self.vapi.dhcp_client_dump() self.assertEqual(clients[0].client.sw_if_index, self.pg3.sw_if_index) self.assertEqual(clients[0].lease.sw_if_index, self.pg3.sw_if_index) self.assertEqual(clients[0].client.hostname, hostname) self.assertEqual(clients[0].lease.hostname, hostname) # 0 = DISCOVER, 1 = REQUEST, 2 = BOUND self.assertEqual(clients[0].lease.state, 2) self.assertEqual(clients[0].lease.mask_width, 24) self.assertEqual(str(clients[0].lease.router_address), self.pg3.remote_ip4) self.assertEqual(str(clients[0].lease.host_address), self.pg3.local_ip4) # # wait for the unicasted renewal # the first attempt will be an ARP packet, since we have not yet # responded to VPP's request # self.logger.info(self.vapi.cli("sh dhcp client intfc pg3 verbose")) rx = self.pg3.get_capture(1, timeout=10) self.assertEqual(rx[0][ARP].pdst, self.pg3.remote_ip4) # respond to the arp p_arp = Ether(dst=self.pg3.local_mac, src=self.pg3.remote_mac) / ARP( op="is-at", hwdst=self.pg3.local_mac, hwsrc=self.pg3.remote_mac, pdst=self.pg3.local_ip4, psrc=self.pg3.remote_ip4, ) self.pg3.add_stream(p_arp) self.pg_enable_capture(self.pg_interfaces) self.pg_start() # the next packet is the unicasted renewal rx = self.pg3.get_capture(1, timeout=10) self.verify_orig_dhcp_request( rx[0], self.pg3, hostname, self.pg3.local_ip4, l2_bc=False, broadcast=False ) # send an ACK with different data from the original offer * self.pg3.generate_remote_hosts(4) p_ack = ( Ether(dst=self.pg3.local_mac, src=self.pg3.remote_mac) / IP(src=self.pg3.remote_ip4, dst=self.pg3.local_ip4) / UDP(sport=DHCP4_SERVER_PORT, dport=DHCP4_CLIENT_PORT) / BOOTP( op=1, yiaddr=self.pg3.remote_hosts[3].ip4, chaddr=mac_pton(self.pg3.local_mac), ) / DHCP( options=[ ("message-type", "ack"), ("subnet_mask", "255.255.255.0"), ("router", self.pg3.remote_hosts[1].ip4), ("server_id", self.pg3.remote_hosts[2].ip4), ("lease_time", 43200), ("renewal_time", 2), "end", ] ) ) self.pg3.add_stream(p_ack) self.pg_enable_capture(self.pg_interfaces) self.pg_start() # # read the DHCP client details from a dump # clients = self.vapi.dhcp_client_dump() self.assertEqual(clients[0].client.sw_if_index, self.pg3.sw_if_index) self.assertEqual(clients[0].lease.sw_if_index, self.pg3.sw_if_index) self.assertEqual(clients[0].client.hostname, hostname) self.assertEqual(clients[0].lease.hostname, hostname) # 0 = DISCOVER, 1 = REQUEST, 2 = BOUND self.assertEqual(clients[0].lease.state, 2) self.assertEqual(clients[0].lease.mask_width, 24) self.assertEqual( str(clients[0].lease.router_address), self.pg3.remote_hosts[1].ip4 ) self.assertEqual( str(clients[0].lease.host_address), self.pg3.remote_hosts[3].ip4 ) # # remove the DHCP config # Client.remove_vpp_config() # # and now the route should be gone # self.assertFalse(find_route(self, self.pg3.local_ip4, 32)) self.assertFalse(find_route(self, self.pg3.local_ip4, 24)) # # Start the procedure again. Use requested lease time option. # this time wait for the lease to expire and the client to # self-destruct # hostname += "-2" self.pg3.admin_down() self.sleep(1) self.pg3.admin_up() self.pg_enable_capture(self.pg_interfaces) Client.set_client(self.pg3.sw_if_index, hostname) Client.add_vpp_config() rx = self.pg3.get_capture(1) self.verify_orig_dhcp_discover(rx[0], self.pg3, hostname) # # Send back on offer with requested lease time, expect the request # lease_time = 1 p_offer = ( Ether(dst=self.pg3.local_mac, src=self.pg3.remote_mac) / IP(src=self.pg3.remote_ip4, dst="255.255.255.255") / UDP(sport=DHCP4_SERVER_PORT, dport=DHCP4_CLIENT_PORT) / BOOTP( op=1, yiaddr=self.pg3.local_ip4, chaddr=mac_pton(self.pg3.local_mac) ) / DHCP( options=[ ("message-type", "offer"), ("server_id", self.pg3.remote_ip4), ("lease_time", lease_time), "end", ] ) ) self.pg3.add_stream(p_offer) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg3.get_capture(1) self.verify_orig_dhcp_request(rx[0], self.pg3, hostname, self.pg3.local_ip4) # # Send an acknowledgment # p_ack = ( Ether(dst=self.pg3.local_mac, src=self.pg3.remote_mac) / IP(src=self.pg3.remote_ip4, dst="255.255.255.255") / UDP(sport=DHCP4_SERVER_PORT, dport=DHCP4_CLIENT_PORT) / BOOTP( op=1, yiaddr=self.pg3.local_ip4, chaddr=mac_pton(self.pg3.local_mac) ) / DHCP( options=[ ("message-type", "ack"), ("subnet_mask", "255.255.255.0"), ("router", self.pg3.remote_ip4), ("server_id", self.pg3.remote_ip4), ("lease_time", lease_time), "end", ] ) ) self.pg3.add_stream(p_ack) self.pg_enable_capture(self.pg_interfaces) self.pg_start() # # We'll get an ARP request for the router address # rx = self.pg3.get_capture(1) self.assertEqual(rx[0][ARP].pdst, self.pg3.remote_ip4) # # At the end of this procedure there should be a connected route # in the FIB # self.assertTrue(find_route(self, self.pg3.local_ip4, 32)) self.assertTrue(find_route(self, self.pg3.local_ip4, 24)) # # the route should be gone after the lease expires # self.assertTrue(self.wait_for_no_route(self.pg3.local_ip4, 32)) self.assertTrue(self.wait_for_no_route(self.pg3.local_ip4, 24)) # # remove the DHCP config # Client.remove_vpp_config() def test_dhcp_client_vlan(self): """DHCP Client w/ VLAN""" vdscp = VppEnum.vl_api_ip_dscp_t vqos = VppEnum.vl_api_qos_source_t hostname = "universal-dp" self.pg_enable_capture(self.pg_interfaces) vlan_100 = VppDot1QSubint(self, self.pg3, 100) vlan_100.admin_up() output = [scapy.compat.chb(4)] * 256 os = b"".join(output) rows = [{"outputs": os}, {"outputs": os}, {"outputs": os}, {"outputs": os}] qem1 = VppQosEgressMap(self, 1, rows).add_vpp_config() qm1 = VppQosMark( self, vlan_100, qem1, vqos.QOS_API_SOURCE_VLAN ).add_vpp_config() # # Configure DHCP client on PG3 and capture the discover sent # Client = VppDHCPClient( self, vlan_100.sw_if_index, hostname, dscp=vdscp.IP_API_DSCP_EF ) Client.add_vpp_config() rx = self.pg3.get_capture(1) self.assertEqual(rx[0][Dot1Q].vlan, 100) self.assertEqual(rx[0][Dot1Q].prio, 2) self.verify_orig_dhcp_discover( rx[0], self.pg3, hostname, dscp=vdscp.IP_API_DSCP_EF ) if __name__ == "__main__": unittest.main(testRunner=VppTestRunner)