Example #1
0
switch_status_t switch_api_l3_interface_address_add(
    switch_device_t device,
    switch_handle_t interface_handle,
    switch_handle_t vrf_handle,
    switch_ip_addr_t *ip_addr) {
  switch_interface_info_t *info = NULL;
  switch_ip_addr_info_t *ip_info = NULL;
  switch_status_t status = SWITCH_STATUS_SUCCESS;

  UNUSED(device);
  info = switch_api_interface_get(interface_handle);
  if (!info) {
    return SWITCH_STATUS_INVALID_INTERFACE;
  }

  ip_info = switch_malloc(sizeof(switch_ip_addr_info_t), 1);
  if (!ip_info) {
    return SWITCH_STATUS_NO_MEMORY;
  }

  ip_info->vrf_handle = vrf_handle;
  ip_info->default_ip = TRUE;
  ip_info->ip = *ip_addr;

  // append to list and increment member count
  tommy_list_insert_head(&(info->ip_addr), &(ip_info->node), ip_info);
  info->ip_addr_count++;

  return status;
}
Example #2
0
switch_handle_t switch_api_neighbor_entry_add(switch_device_t device,
                                              switch_api_neighbor_t *neighbor) {
  switch_neighbor_info_t *neighbor_info = NULL;
  switch_interface_info_t *intf_info = NULL;
  switch_handle_t handle = SWITCH_API_INVALID_HANDLE;
  switch_status_t status = SWITCH_STATUS_SUCCESS;
  switch_nhop_info_t *nhop_info = NULL;
  switch_spath_info_t *spath_info = NULL;
  switch_handle_t nhop_handle = 0;

  intf_info = switch_api_interface_get(neighbor->interface);
  if (!intf_info) {
    SWITCH_API_ERROR(
        "%s:%d: invalid interface for rewrite!", __FUNCTION__, __LINE__);
    return SWITCH_STATUS_INVALID_INTERFACE;
  }

  handle = switch_neighbor_info_create();
  neighbor_info = switch_neighbor_info_get(handle);
  memcpy(&neighbor_info->neighbor, neighbor, sizeof(switch_api_neighbor_t));

#ifdef SWITCH_PD
  nhop_handle = neighbor->nhop_handle;
  if (neighbor->nhop_handle == SWITCH_API_INVALID_HANDLE) {
    // check for neighbor type
    if (neighbor->neigh_type == SWITCH_API_NEIGHBOR_NONE &&
        neighbor->rw_type == SWITCH_API_NEIGHBOR_RW_TYPE_L3) {
      switch_nhop_key_t nhop_key;
      // allocate nhop and set neighbor handle
      memset(&nhop_key, 0, sizeof(nhop_key));
      nhop_key.ip_addr = neighbor->ip_addr;
      nhop_key.intf_handle = neighbor->interface;
      nhop_key.ip_addr_valid = 1;
      nhop_handle = switch_api_nhop_create(device, &nhop_key);
    }
  }
  if (nhop_handle != SWITCH_API_INVALID_HANDLE && nhop_handle) {
    nhop_info = switch_nhop_get(nhop_handle);
    if (!nhop_info) {
      return SWITCH_API_INVALID_HANDLE;
    }
    spath_info = &(SWITCH_NHOP_SPATH_INFO(nhop_info));
    spath_info->neighbor_handle = handle;
    neighbor_info->neighbor.nhop_handle = nhop_handle;
    status = switch_api_nhop_update(device, nhop_handle);
    status =
        switch_api_neighbor_entry_add_rewrite(device, handle, neighbor_info);
  } else {
    status =
        switch_api_neighbor_entry_add_tunnel_rewrite(device, neighbor_info);
  }
#endif
  if (status != SWITCH_STATUS_SUCCESS) {
    SWITCH_API_ERROR(
        "%s:%d: failed to create neighbor entry!", __FUNCTION__, __LINE__);
  }
  neighbor->nhop_handle = nhop_handle;
  return handle;
}
Example #3
0
switch_status_t switch_api_neighbor_entry_remove(
    switch_device_t device, switch_handle_t neighbor_handle) {
  switch_neighbor_info_t *neighbor_info = NULL;
  switch_api_neighbor_t *neighbor = NULL;
  switch_nhop_info_t *nhop_info = NULL;
  switch_interface_info_t *intf_info = NULL;
  switch_status_t status = SWITCH_STATUS_SUCCESS;

  if (!SWITCH_NEIGHBOR_HANDLE_VALID(neighbor_handle)) {
    return SWITCH_STATUS_INVALID_HANDLE;
  }

  neighbor_info = switch_neighbor_info_get(neighbor_handle);
  if (!neighbor_info) {
    return SWITCH_STATUS_ITEM_NOT_FOUND;
  }
#ifdef SWITCH_PD
  if (neighbor_info->neighbor.nhop_handle) {
    status = switch_pd_rewrite_table_delete_entry(device,
                                                  neighbor_info->rewrite_entry);
    if (status != SWITCH_STATUS_SUCCESS) {
      return status;
    }
    neighbor = &neighbor_info->neighbor;
    intf_info = switch_api_interface_get(neighbor->interface);
    if (!intf_info) {
      SWITCH_API_ERROR("%s:%d invalid interface!", __FUNCTION__, __LINE__);
      return SWITCH_STATUS_INVALID_INTERFACE;
    }
    switch_neighbor_dmac_delete_hash(
        device, intf_info->bd_handle, &neighbor->mac_addr);
  } else {
    status = switch_dmac_rewrite_delete_hash(device,
                                             &neighbor_info->neighbor.mac_addr);
    if (status != SWITCH_STATUS_SUCCESS) {
      return status;
    }
    status = switch_pd_tunnel_rewrite_table_delete_entry(
        device, neighbor_info->rewrite_entry);
    if (status != SWITCH_STATUS_SUCCESS) {
      return status;
    }
  }
#endif
  switch_neighbor_info_delete(neighbor_handle);
  nhop_info = switch_nhop_get(neighbor_info->neighbor.nhop_handle);
  if (nhop_info) {
    nhop_info->u.spath.neighbor_handle = 0;
    status =
        switch_api_nhop_update(device, neighbor_info->neighbor.nhop_handle);
    if (nhop_info->valid == 0) {
      switch_api_nhop_delete(device, neighbor_info->neighbor.nhop_handle);
    }
  }
  return status;
}
Example #4
0
switch_status_t
switch_api_interface_router_mac_handle_get(switch_handle_t intf_handle, uint64_t *value)
{
    switch_interface_info_t           *intf_info = NULL;
    switch_api_interface_info_t       *api_intf_info = NULL;

    intf_info = switch_api_interface_get(intf_handle);
    if (!intf_info) {
        return SWITCH_STATUS_INVALID_INTERFACE;
    }
    api_intf_info = &intf_info->api_intf_info;
    *value = (uint64_t)(api_intf_info->rmac_handle);
    return SWITCH_STATUS_SUCCESS;
}
Example #5
0
switch_status_t
switch_api_nhop_delete(switch_device_t device, switch_handle_t nhop_handle)
{
    switch_nhop_info_t                *nhop_info = NULL;
    switch_interface_info_t           *intf_info = NULL;
    switch_spath_info_t               *spath_info = NULL;
    switch_status_t                    status = SWITCH_STATUS_SUCCESS;

    if (!SWITCH_NHOP_HANDLE_VALID(nhop_handle)) {
        return SWITCH_STATUS_INVALID_HANDLE;
    }

    nhop_info = switch_nhop_get(nhop_handle);
    if (!nhop_info) {
        return SWITCH_STATUS_INVALID_HANDLE;
    }

    if (nhop_info->type != SWITCH_NHOP_INDEX_TYPE_ONE_PATH) {
        return SWITCH_STATUS_INVALID_HANDLE;
    }

    if (nhop_info->ref_count) {
        return SWITCH_STATUS_RESOURCE_IN_USE;
    }

    spath_info = &(SWITCH_NHOP_SPATH_INFO(nhop_info));
    intf_info = switch_api_interface_get(spath_info->nhop_key.intf_handle);
    if (!intf_info) {
        return SWITCH_STATUS_INVALID_INTERFACE;
    }
    nhop_info->valid = 0;
    if(nhop_info->u.spath.neighbor_handle == 0) {
#ifdef SWITCH_PD
        status = switch_pd_nexthop_table_delete_entry(device, spath_info->hw_entry);
        if (status != SWITCH_STATUS_SUCCESS) {
            return status;
        }
        if (SWITCH_INTF_IS_PORT_L3(intf_info) && intf_info->bd_handle) {
            status = switch_pd_urpf_bd_table_delete_entry(device, spath_info->urpf_hw_entry);
            if (status != SWITCH_STATUS_SUCCESS) {
                return status;
            }
        }
#endif
        switch_nhop_delete_hash(spath_info);
        switch_nhop_delete(nhop_handle);
    }
    return SWITCH_STATUS_SUCCESS;
}
Example #6
0
switch_status_t
switch_api_nhop_update(switch_device_t device, switch_handle_t nhop_handle)
{
    switch_nhop_info_t                *nhop_info = NULL;
    switch_interface_info_t           *intf_info = NULL;
    switch_spath_info_t               *spath_info = NULL;
    switch_ifindex_t                   ifindex = 0;
    bool                               flood = FALSE;
    uint32_t                           mc_index = 0;
    switch_status_t                    status = SWITCH_STATUS_SUCCESS;

    if (!SWITCH_NHOP_HANDLE_VALID(nhop_handle)) {
        return SWITCH_STATUS_INVALID_HANDLE;
    }

    nhop_info = switch_nhop_get(nhop_handle);
    if (!nhop_info) {
        return SWITCH_STATUS_INVALID_HANDLE;
    }

    status = switch_nhop_ifindex_get(nhop_handle, &ifindex, &flood, &mc_index);
    if (status != SWITCH_STATUS_SUCCESS) {
        return SWITCH_STATUS_INVALID_HANDLE;
    }

    spath_info = &(SWITCH_NHOP_SPATH_INFO(nhop_info));
    intf_info = switch_api_interface_get(spath_info->nhop_key.intf_handle);
    if (!intf_info) {
        return SWITCH_STATUS_INVALID_INTERFACE;
    }

#ifdef SWITCH_PD
    bool tunnel = (SWITCH_INTF_TYPE(intf_info) == SWITCH_API_INTERFACE_TUNNEL);
    status = switch_pd_nexthop_table_update_entry(device,
                                  handle_to_id(nhop_handle),
                                  handle_to_id(intf_info->bd_handle),
                                  ifindex, flood, mc_index, tunnel,
                                  &spath_info->hw_entry);
    if (status != SWITCH_STATUS_SUCCESS) {
        return SWITCH_API_INVALID_HANDLE;
    }

#endif
    return SWITCH_STATUS_SUCCESS;
}
Example #7
0
switch_status_t switch_api_l3_route_nhop_intf_get(
    switch_device_t device,
    switch_handle_t vrf,
    switch_ip_addr_t *ip_addr,
    switch_handle_t *intf_handle) {
  switch_nhop_info_t *nhop_info = NULL;
  switch_spath_info_t *spath_info = NULL;
  switch_interface_info_t *intf_info = NULL;
  switch_handle_t nhop_handle = SWITCH_API_INVALID_HANDLE;
  switch_status_t status;

  *intf_handle = SWITCH_API_INVALID_HANDLE;

  status = switch_api_l3_route_lookup(device, vrf, ip_addr, &nhop_handle);
  if (status != SWITCH_STATUS_SUCCESS) {
    return SWITCH_STATUS_ITEM_NOT_FOUND;
  }

  nhop_info = switch_nhop_get(nhop_handle);
  if (!nhop_info) {
    return SWITCH_STATUS_ITEM_NOT_FOUND;
  }

  if (nhop_info->type != SWITCH_NHOP_INDEX_TYPE_ONE_PATH) {
    return SWITCH_STATUS_ITEM_NOT_FOUND;
  }

  spath_info = &(SWITCH_NHOP_SPATH_INFO(nhop_info));
  if (!spath_info) {
    return SWITCH_STATUS_ITEM_NOT_FOUND;
  }

  // additional check if intf_handle is valid
  intf_info = switch_api_interface_get(spath_info->nhop_key.intf_handle);
  if (!intf_info) {
    return SWITCH_STATUS_ITEM_NOT_FOUND;
  }

  *intf_handle = spath_info->nhop_key.intf_handle;
  return SWITCH_STATUS_SUCCESS;
}
Example #8
0
switch_status_t
switch_api_interface_router_mac_handle_set(switch_handle_t intf_handle, uint64_t value)
{

    switch_interface_info_t           *intf_info = NULL;
    switch_api_interface_info_t       *api_intf_info = NULL;
    switch_bd_info_t                  *bd_info = NULL;
    switch_rmac_info_t                *rmac_info = NULL;
    switch_handle_t                    rmac_handle = 0;
    switch_handle_t                    bd_handle = 0;
    switch_status_t                    status = SWITCH_STATUS_SUCCESS;

    intf_info = switch_api_interface_get(intf_handle);
    if (!intf_info) {
        return SWITCH_STATUS_INVALID_INTERFACE;
    }

    api_intf_info = &intf_info->api_intf_info;
    if (!SWITCH_INTF_IS_PORT_L3(intf_info)) {
        return SWITCH_STATUS_INVALID_INTERFACE;
    }

    rmac_handle = (switch_handle_t) value;
    rmac_info = switch_api_rmac_info_get_internal(rmac_handle);
    if (!rmac_info) {
        return SWITCH_STATUS_ITEM_NOT_FOUND;
    }

    bd_handle = intf_info->bd_handle;
    bd_info = switch_bd_get(bd_handle);
    if (!bd_info) {
        return SWITCH_STATUS_INVALID_VLAN_ID;
    }

    api_intf_info->rmac_handle = rmac_handle;
    status = switch_bd_router_mac_handle_set(bd_handle, rmac_handle);
    return status;
}
Example #9
0
switch_status_t switch_api_l3_interface_address_delete(
    switch_device_t device,
    switch_handle_t interface_handle,
    switch_handle_t vrf_handle,
    switch_ip_addr_t *ip_addr) {
  switch_interface_info_t *info = NULL;
  switch_ip_addr_info_t *ip_info = NULL;
  tommy_node *node = NULL;

  UNUSED(device);
  UNUSED(vrf_handle);
  info = switch_api_interface_get(interface_handle);
  if (!info) {
    return SWITCH_STATUS_INVALID_INTERFACE;
  }
  // delete from list and decrement member count
  node = tommy_list_head(&(info->ip_addr));
  while (node) {
    ip_info = node->data;
    if (SWITCH_L3_IP_TYPE(ip_info) == ip_addr->type &&
        SWITCH_L3_IP_IPV4_ADDRESS(ip_info) == ip_addr->ip.v4addr) {
      break;
    }
    node = node->next;
  }

  if (!node) {
    return SWITCH_STATUS_ITEM_NOT_FOUND;
  }

  // remove from list
  ip_info = tommy_list_remove_existing(&(info->ip_addr), node);
  info->ip_addr_count--;

  switch_free(ip_info);
  return SWITCH_STATUS_SUCCESS;
}
Example #10
0
switch_status_t
switch_nhop_ifindex_get(switch_handle_t nhop_handle,
                        switch_ifindex_t *ifindex,
                        bool *flood,
                        uint32_t *mc_index)
{
    switch_nhop_info_t                *nhop_info = NULL;
    switch_interface_info_t           *intf_info = NULL;
    switch_neighbor_info_t            *neighbor_info = NULL;
    switch_api_neighbor_t             *neighbor = NULL;
    switch_api_mac_entry_t             mac_entry;
    switch_mac_info_t                 *mac_info = NULL;
    switch_handle_t                    neighbor_handle;
    switch_bd_info_t                  *bd_info = NULL;
    switch_port_info_t                *tmp_port_info = NULL;
    switch_lag_info_t                 *tmp_lag_info = NULL;
    switch_interface_info_t           *tmp_intf_info = NULL;
    switch_api_mac_entry_t            *tmp_mac_entry = NULL;
    switch_handle_type_t               handle_type = 0;
    switch_handle_t                    encap_if;
    switch_spath_info_t               *spath_info = NULL;

    nhop_info = switch_nhop_get(nhop_handle);
    if (!nhop_info) {
        return SWITCH_STATUS_INVALID_HANDLE;
    }

    spath_info = &(SWITCH_NHOP_SPATH_INFO(nhop_info));
    intf_info = switch_api_interface_get(spath_info->nhop_key.intf_handle);
    if (!intf_info) {
        return SWITCH_STATUS_INVALID_HANDLE;
    }

    *ifindex = intf_info->ifindex;
    *flood = FALSE;
    *mc_index = 0;

    if (SWITCH_INTF_TYPE(intf_info) == SWITCH_API_INTERFACE_TUNNEL) {
        encap_if = SWITCH_INTF_TUNNEL_ENCAP_OUT_IF(intf_info);
        intf_info = switch_api_interface_get(encap_if);
        if (!intf_info) {
            return SWITCH_STATUS_INVALID_HANDLE;
        }
        *ifindex = intf_info->ifindex;
        SWITCH_API_TRACE("%s:%d ifindex for tunnel interface: %x",
                         __FUNCTION__, __LINE__, *ifindex);
    }

    if (SWITCH_INTF_TYPE(intf_info) == SWITCH_API_INTERFACE_L3_VLAN) {
        neighbor_handle = spath_info->neighbor_handle;
        if (neighbor_handle == SWITCH_API_INVALID_HANDLE ||
            neighbor_handle == 0) {
            *ifindex = switch_api_cpu_glean_ifindex();
        } else {
            neighbor_info = switch_neighbor_info_get(neighbor_handle);
            if (!neighbor_info) {
                return SWITCH_STATUS_INVALID_HANDLE;
            }
            neighbor = &neighbor_info->neighbor;
            memset(&mac_entry, 0, sizeof(switch_api_mac_entry_t));
            mac_entry.vlan_handle = intf_info->bd_handle;
            memcpy(&mac_entry.mac, &neighbor->mac_addr, ETH_LEN);
            mac_info = switch_mac_table_entry_find(&mac_entry);
            if (!mac_info) {
                bd_info = switch_bd_get(intf_info->bd_handle);
                if (!bd_info) {
                    return SWITCH_STATUS_INVALID_HANDLE;
                }
                *mc_index = handle_to_id(bd_info->uuc_mc_index);
                *flood = TRUE;
            } else {
                tmp_mac_entry = &mac_info->mac_entry;
                handle_type = switch_handle_get_type(tmp_mac_entry->handle);
                switch (handle_type) {
                    case SWITCH_HANDLE_TYPE_PORT:
                        tmp_port_info = switch_api_port_get_internal(tmp_mac_entry->handle);
                        if (!tmp_port_info) {
                            return SWITCH_STATUS_INVALID_HANDLE;
                        }
                        *ifindex = tmp_port_info->ifindex;
                        break;
                    case SWITCH_HANDLE_TYPE_LAG:
                        tmp_lag_info = switch_api_lag_get_internal(tmp_mac_entry->handle);
                        if (!tmp_lag_info) {
                            return SWITCH_STATUS_INVALID_HANDLE;
                        }
                        *ifindex = tmp_lag_info->ifindex;
                        break;
                    case SWITCH_HANDLE_TYPE_INTERFACE:
                        tmp_intf_info = switch_api_interface_get(tmp_mac_entry->handle);
                        if (!tmp_intf_info) {
                            return SWITCH_STATUS_INVALID_HANDLE;
                        }
                        *ifindex = tmp_intf_info->ifindex;
                        break;
                    default:
                        return SWITCH_STATUS_INVALID_HANDLE;
                }
            }
        }
    }
    return SWITCH_STATUS_SUCCESS;
}
Example #11
0
switch_status_t
switch_api_ecmp_member_add(switch_device_t device, switch_handle_t ecmp_handle,
                           uint16_t nhop_count, switch_handle_t *nhop_handle_list)
{
    switch_nhop_info_t                *e_nhop_info = NULL;
    switch_nhop_info_t                *nhop_info = NULL;
    switch_ecmp_info_t                *ecmp_info = NULL;
    switch_ecmp_member_t              *ecmp_member = NULL;
    switch_interface_info_t           *intf_info = NULL;
    switch_spath_info_t               *spath_info = NULL;
    switch_handle_t                    nhop_handle;
    switch_status_t                    status = SWITCH_STATUS_SUCCESS;
    int                                count = 0;

    if (!SWITCH_NHOP_HANDLE_VALID(ecmp_handle)) {
        return SWITCH_STATUS_INVALID_HANDLE;
    }

    e_nhop_info = switch_nhop_get(ecmp_handle);
    if (!e_nhop_info) {
        return SWITCH_STATUS_INVALID_NHOP;
    }
    ecmp_info = &(SWITCH_NHOP_ECMP_INFO(e_nhop_info));

    for (count = 0; count < nhop_count; count++) {
        nhop_handle = nhop_handle_list[count];
        if (!SWITCH_NHOP_HANDLE_VALID(nhop_handle)) {
            return SWITCH_STATUS_INVALID_HANDLE;
        }
        nhop_info = switch_nhop_get(nhop_handle);
        if (!nhop_info) {
            return SWITCH_STATUS_INVALID_NHOP;
        }
        spath_info = &(SWITCH_NHOP_SPATH_INFO(nhop_info));

        ecmp_member = switch_malloc(sizeof(switch_ecmp_member_t), 1);
        if (!ecmp_member) {
            return SWITCH_STATUS_NO_MEMORY;
        }
        ecmp_member->nhop_handle = nhop_handle;
        intf_info = switch_api_interface_get(spath_info->nhop_key.intf_handle);
        if (!intf_info) {
            return SWITCH_STATUS_INVALID_INTERFACE;
        }

        nhop_info->ref_count++;
#ifdef SWITCH_PD
        status = switch_pd_ecmp_member_add(device, ecmp_info->pd_group_hdl, 
                    handle_to_id(ecmp_member->nhop_handle), intf_info,
                    &(ecmp_member->mbr_hdl));
        if (status != SWITCH_STATUS_SUCCESS) {
            return status;
        }
        if (ecmp_info->count == 0) {
            status = switch_pd_ecmp_group_table_add_entry_with_selector(device, 
                    handle_to_id(ecmp_handle),
                    ecmp_info->pd_group_hdl, 
                    &(ecmp_info->hw_entry)); 
            if (status != SWITCH_STATUS_SUCCESS) {
                return status;
            }
        }
        if (SWITCH_INTF_IS_PORT_L3(intf_info) && intf_info->bd_handle) {
            status = switch_pd_urpf_bd_table_add_entry(device, handle_to_id(ecmp_handle),
                                     handle_to_id(intf_info->bd_handle),
                                     &(ecmp_member->urpf_hw_entry));
            if (status != SWITCH_STATUS_SUCCESS) {
                return status;
            }
        }
#endif
        ecmp_info->count++;
        tommy_list_insert_head(&ecmp_info->members, &(ecmp_member->node), ecmp_member);
    }
    return status;
}
Example #12
0
switch_handle_t
switch_api_ecmp_create_with_members(switch_device_t device,
                                    uint32_t member_count,
                                    switch_handle_t *nhop_handle)
{
    switch_nhop_info_t                *nhop_info = NULL;
    switch_spath_info_t               *spath_info = NULL;
    switch_interface_info_t           *intf_info = NULL;
    switch_ecmp_info_t                *ecmp_info = NULL;
    switch_ecmp_member_t              *ecmp_member = NULL;
    switch_handle_t                    ecmp_handle;
    switch_status_t                    status = SWITCH_STATUS_SUCCESS;
    uint32_t                           index = 0;

    ecmp_handle = switch_api_ecmp_create(device);
    nhop_info = switch_nhop_get(ecmp_handle);
    if (!nhop_info) {
        return SWITCH_API_INVALID_HANDLE;
    }

    ecmp_info = &(SWITCH_NHOP_ECMP_INFO(nhop_info));
    tommy_list_init(&ecmp_info->members);

#ifdef SWITCH_PD
    status = switch_pd_ecmp_group_create(device, &(ecmp_info->pd_group_hdl));
    if (status != SWITCH_STATUS_SUCCESS) {
        return SWITCH_API_INVALID_HANDLE;
    }
#endif

    for (index = 0; index < member_count; index++) {
        if (!SWITCH_NHOP_HANDLE_VALID(nhop_handle[index])) {
            return SWITCH_STATUS_INVALID_HANDLE;
        }

        ecmp_member = switch_malloc(sizeof(switch_ecmp_member_t), 1);
        if (!ecmp_member) {
            // TODO: Cleanup memory
            return SWITCH_API_INVALID_HANDLE;
        }
        ecmp_member->nhop_handle = nhop_handle[index];
        ecmp_member->mbr_hdl = 0;

        nhop_info = switch_nhop_get(ecmp_member->nhop_handle);
        if (!nhop_info) {
            return SWITCH_API_INVALID_HANDLE;
        }

        spath_info = &(SWITCH_NHOP_SPATH_INFO(nhop_info));
        intf_info = switch_api_interface_get(spath_info->nhop_key.intf_handle);
        if (!intf_info) {
            return SWITCH_API_INVALID_HANDLE;
        }
        nhop_info->ref_count++;

#ifdef SWITCH_PD
        status = switch_pd_ecmp_member_add(device, ecmp_info->pd_group_hdl, 
                    handle_to_id(ecmp_member->nhop_handle), intf_info,
                    &(ecmp_member->mbr_hdl));
        if (status != SWITCH_STATUS_SUCCESS) {
            return SWITCH_API_INVALID_HANDLE;
        }

        if (SWITCH_INTF_IS_PORT_L3(intf_info) && intf_info->bd_handle) {
            status = switch_pd_urpf_bd_table_add_entry(device, handle_to_id(ecmp_handle),
                                                  handle_to_id(intf_info->bd_handle),
                                                  &(ecmp_member->urpf_hw_entry));
            if (status != SWITCH_STATUS_SUCCESS) {
                return SWITCH_API_INVALID_HANDLE;
            }
        }
#endif
        tommy_list_insert_head(&ecmp_info->members, &(ecmp_member->node), ecmp_member);
    }

#ifdef SWITCH_PD
    status = switch_pd_ecmp_group_table_add_entry_with_selector(device, handle_to_id(ecmp_handle), 
                    ecmp_info->pd_group_hdl, &(ecmp_info->hw_entry));
    if (status != SWITCH_STATUS_SUCCESS) {
        return SWITCH_API_INVALID_HANDLE;
    }
#endif
    ecmp_info->count = member_count;
    if (status != SWITCH_STATUS_SUCCESS) {
        return SWITCH_API_INVALID_HANDLE;
    }
    return ecmp_handle;
}
Example #13
0
switch_status_t
switch_api_stp_port_state_set(switch_device_t device, switch_handle_t stg_handle,
                              switch_handle_t handle, switch_stp_state_t state)
{
    switch_stp_info_t                 *stp_info = NULL;
    switch_interface_info_t           *intf_info = NULL;
    switch_stp_port_entry_t           *port_entry = NULL;
    tommy_node                        *node = NULL;
    switch_status_t                    status = SWITCH_STATUS_SUCCESS;
    switch_handle_t                    intf_handle; 
    switch_handle_type_t               handle_type = 0;
    bool                               new_entry = FALSE;

    if (!SWITCH_STP_HANDLE_VALID(stg_handle)) {
        return SWITCH_STATUS_INVALID_HANDLE;
    }

    if ((!SWITCH_PORT_HANDLE_VALID(handle)) &&
        (!SWITCH_LAG_HANDLE_VALID(handle)) &&
        (!SWITCH_INTERFACE_HANDLE_VALID(handle))) {
        return SWITCH_STATUS_INVALID_HANDLE;
    }

    stp_info = switch_api_stp_get_internal(stg_handle);
    if (!stp_info) {
        return SWITCH_STATUS_INVALID_HANDLE;
    }

    handle_type = switch_handle_get_type(handle);
    intf_handle = handle;
    if (handle_type == SWITCH_HANDLE_TYPE_PORT ||
        handle_type == SWITCH_HANDLE_TYPE_LAG) {
        status = switch_interface_handle_get(
                             handle,
                             0x0,
                             &intf_handle);
        if (status != SWITCH_STATUS_SUCCESS) {
            SWITCH_API_ERROR("stp port state set failed");
            return status;
        }
    }

    intf_info = switch_api_interface_get(intf_handle);
    if (!intf_info) {
        return SWITCH_STATUS_INVALID_INTERFACE;
    }

    if (SWITCH_INTF_IS_PORT_L3(intf_info)) {
        return SWITCH_STATUS_INVALID_INTERFACE;
    }

    node = tommy_list_head(&stp_info->port_list);
    while (node) {
        port_entry = node->data;
        if (port_entry->intf_handle == intf_handle) {
            port_entry->intf_state = state;
            break;
        }
        node = node->next;
    }

    if (state == SWITCH_PORT_STP_STATE_NONE) {
        if (!node) {
            return SWITCH_STATUS_ITEM_NOT_FOUND;
        }
        status = switch_stp_update_flood_list(device, stg_handle, intf_handle, state);
        status = switch_pd_spanning_tree_table_delete_entry(device, port_entry->hw_entry);
        tommy_list_remove_existing(&(stp_info->port_list), &(port_entry->node));
        switch_free(port_entry);
    } else {
        if (!node) {
            new_entry = TRUE;
            port_entry = switch_malloc(sizeof(switch_stp_port_entry_t), 1);
            if (!port_entry) {
                return SWITCH_STATUS_NO_MEMORY;
            }
            memset(port_entry, 0, sizeof(switch_stp_port_entry_t));
            port_entry->intf_handle = intf_handle;
            port_entry->intf_state = state;
            tommy_list_insert_head(&(stp_info->port_list),
                                   &(port_entry->node), port_entry);
        }

        status = switch_stp_update_flood_list(device, stg_handle, intf_handle, state);

        if (new_entry) {
            status = switch_pd_spanning_tree_table_add_entry(device,
                                        handle_to_id(stg_handle),
                                        intf_info->ifindex,
                                        port_entry->intf_state,
                                        &port_entry->hw_entry);
        } else {
            status = switch_pd_spanning_tree_table_update_entry(device,
                                        handle_to_id(stg_handle),
                                        intf_info->ifindex,
                                        port_entry->intf_state,
                                        port_entry->hw_entry);
        }
    }
    return status;
}
Example #14
0
switch_status_t
switch_api_stp_port_state_clear(switch_device_t device, switch_handle_t stg_handle,
                                switch_handle_t handle)
{
    switch_stp_info_t                 *stp_info = NULL;
    switch_interface_info_t           *intf_info = NULL;
    switch_stp_port_entry_t           *port_entry = NULL;
    tommy_node                        *node = NULL;
    switch_status_t                    status = SWITCH_STATUS_SUCCESS;
    switch_handle_t                    intf_handle = 0; 
    switch_handle_type_t               handle_type = 0;

    if (!SWITCH_STP_HANDLE_VALID(stg_handle)) {
        return SWITCH_STATUS_INVALID_HANDLE;
    }

    if ((!SWITCH_PORT_HANDLE_VALID(handle)) &&
        (!SWITCH_LAG_HANDLE_VALID(handle)) &&
        (!SWITCH_INTERFACE_HANDLE_VALID(handle))) {
        return SWITCH_STATUS_INVALID_HANDLE;
    }

    stp_info = switch_api_stp_get_internal(stg_handle);
    if (!stp_info) {
        return SWITCH_STATUS_INVALID_HANDLE;
    }

    handle_type = switch_handle_get_type(handle);
    intf_handle = handle;
    if (handle_type == SWITCH_HANDLE_TYPE_PORT ||
        handle_type == SWITCH_HANDLE_TYPE_LAG) {
        status = switch_interface_handle_get(
                             handle,
                             0x0,
                             &intf_handle);
        if (status != SWITCH_STATUS_SUCCESS) {
            SWITCH_API_ERROR("stp port state clear failed");
            return status;
        }
    }

    intf_info = switch_api_interface_get(intf_handle);
    if (!intf_info) {
        return SWITCH_STATUS_INVALID_INTERFACE;
    }

    if (SWITCH_INTF_IS_PORT_L3(intf_info)) {
        return SWITCH_STATUS_INVALID_INTERFACE;
    }

    node = tommy_list_head(&(stp_info->port_list));
    while (node) {
        port_entry = node->data;
        if (port_entry->intf_handle == intf_handle) {
            break;
        }
        node = node->next;
    }
    if (!node) {
        return SWITCH_STATUS_ITEM_NOT_FOUND;
    }

    tommy_list_remove_existing(&(stp_info->port_list), &(port_entry->node));
    switch_free(port_entry);
    return status;
}
Example #15
0
switch_status_t switch_api_neighbor_entry_add_rewrite(
    switch_device_t device,
    switch_handle_t neighbor_handle,
    switch_neighbor_info_t *neighbor_info) {
  switch_status_t status = SWITCH_STATUS_SUCCESS;
  uint16_t nhop_index = 0;
  switch_api_neighbor_t *neighbor = NULL;
  switch_interface_info_t *intf_info = NULL;
  switch_tunnel_info_t *tunnel_info = NULL;
  uint16_t tunnel_index = 0;
  switch_encap_type_t encap_type = 0;
  uint16_t bd = 0;

  neighbor = &neighbor_info->neighbor;
  nhop_index = handle_to_id(neighbor->nhop_handle);

  intf_info = switch_api_interface_get(neighbor->interface);
  if (!intf_info) {
    SWITCH_API_ERROR("%s:%d invalid interface!", __FUNCTION__, __LINE__);
    return SWITCH_STATUS_INVALID_INTERFACE;
  }
  if (intf_info->ln_bd_handle) {
    bd = handle_to_id(intf_info->ln_bd_handle);
  } else {
    bd = handle_to_id(intf_info->bd_handle);
  }
  if (neighbor->neigh_type == SWITCH_API_NEIGHBOR_MPLS_SWAP_L2VPN ||
      neighbor->neigh_type == SWITCH_API_NEIGHBOR_MPLS_SWAP_L3VPN ||
      neighbor->neigh_type == SWITCH_API_NEIGHBOR_MPLS_SWAP_PUSH_L2VPN ||
      neighbor->neigh_type == SWITCH_API_NEIGHBOR_MPLS_SWAP_PUSH_L3VPN ||
      neighbor->neigh_type == SWITCH_API_NEIGHBOR_MPLS_PUSH_L2VPN ||
      neighbor->neigh_type == SWITCH_API_NEIGHBOR_MPLS_PUSH_L3VPN) {
    tunnel_index = handle_to_id(neighbor->interface);
    status = switch_pd_rewrite_table_mpls_rewrite_add_entry(
        device,
        bd,
        nhop_index,
        tunnel_index,
        neighbor->neigh_type,
        neighbor->mac_addr,
        neighbor->mpls_label,
        neighbor->header_count,
        &neighbor_info->rewrite_entry);
  } else if (SWITCH_INTF_TYPE(intf_info) == SWITCH_API_INTERFACE_TUNNEL) {
    tunnel_index = handle_to_id(neighbor->interface);
    tunnel_info = &(SWITCH_INTF_TUNNEL_INFO(intf_info));
    if (tunnel_info->encap_mode == SWITCH_API_TUNNEL_ENCAP_MODE_IP) {
      encap_type = SWITCH_INTF_TUNNEL_ENCAP_TYPE(intf_info);
      status = switch_pd_rewrite_table_tunnel_rewrite_add_entry(
          device,
          bd,
          nhop_index,
          neighbor->mac_addr,
          neighbor->neigh_type,
          neighbor->rw_type,
          tunnel_index,
          encap_type,
          &neighbor_info->rewrite_entry);
    }
  } else {
    status = switch_pd_rewrite_table_unicast_rewrite_add_entry(
        device,
        bd,
        nhop_index,
        neighbor->mac_addr,
        neighbor->rw_type,
        &neighbor_info->rewrite_entry);
  }
  switch_neighbor_dmac_insert_hash(
      device, intf_info->bd_handle, &neighbor->mac_addr, neighbor_handle);

  if (status != SWITCH_STATUS_SUCCESS) {
    SWITCH_API_ERROR(
        "%s:%d: Unable to add unicast rewrite entry!.", __FUNCTION__, __LINE__);
  }
  return status;
}
Example #16
0
switch_status_t
switch_api_ecmp_member_delete(switch_device_t device, switch_handle_t ecmp_handle,
                              uint16_t nhop_count, switch_handle_t *nhop_handle_list)
{
    switch_nhop_info_t                *nhop_info = NULL;
    switch_nhop_info_t                *e_nhop_info = NULL;
    switch_spath_info_t               *spath_info = NULL;
    switch_interface_info_t           *intf_info = NULL;
    switch_ecmp_info_t                *ecmp_info = NULL;
    switch_ecmp_member_t              *ecmp_member = NULL;
    tommy_node                        *node = NULL;
    switch_handle_t                    nhop_handle;
    switch_status_t                    status = SWITCH_STATUS_SUCCESS;
    int                                count = 0;

    if (!SWITCH_NHOP_HANDLE_VALID(ecmp_handle)) {
        return SWITCH_STATUS_INVALID_HANDLE;
    }

    e_nhop_info = switch_nhop_get(ecmp_handle);
    if (!e_nhop_info) {
        return SWITCH_STATUS_INVALID_NHOP;
    }
    for (count = 0; count < nhop_count; count++) {
        nhop_handle = nhop_handle_list[count];
        if (!SWITCH_NHOP_HANDLE_VALID(nhop_handle)) {
            return SWITCH_STATUS_INVALID_HANDLE;
        }
        nhop_info = switch_nhop_get(nhop_handle);
        if (!nhop_info) {
            return SWITCH_STATUS_INVALID_NHOP;
        }
        spath_info = &(SWITCH_NHOP_SPATH_INFO(nhop_info));
        ecmp_info = &(SWITCH_NHOP_ECMP_INFO(e_nhop_info));
        node = tommy_list_head(&(ecmp_info->members));
        while (node) {
            ecmp_member = (switch_ecmp_member_t *) node->data;
            if (ecmp_member->nhop_handle == nhop_handle) {
                break;
            }
            node = node->next;
        }

        if (!node) {
            return SWITCH_STATUS_ITEM_NOT_FOUND;
        }
        intf_info = switch_api_interface_get(spath_info->nhop_key.intf_handle);
        if (!intf_info) {
            return SWITCH_STATUS_INVALID_INTERFACE;
        }

        nhop_info->ref_count--;
#if SWITCH_PD
        if (ecmp_info->count == 1) {
            status = switch_pd_ecmp_group_table_delete_entry(device, ecmp_info->hw_entry);
            if (status != SWITCH_STATUS_SUCCESS) {
                return status;
            }
        }
        status = switch_pd_ecmp_member_delete(device, ecmp_info->pd_group_hdl, 
                                              ecmp_member->mbr_hdl);
        if (status != SWITCH_STATUS_SUCCESS) {
            return status;
        }
        if (SWITCH_INTF_IS_PORT_L3(intf_info) && intf_info->bd_handle) {
            status = switch_pd_urpf_bd_table_delete_entry(device, ecmp_member->urpf_hw_entry);
            if (status != SWITCH_STATUS_SUCCESS) {
                return status;
            }
        }
#endif
        ecmp_info->count--;
        ecmp_member = tommy_list_remove_existing(&(ecmp_info->members), node);
        switch_free(ecmp_member);
    }
    return status;
}
Example #17
0
switch_status_t switch_api_packet_net_filter_rx_create(
    switch_device_t device,
    switch_packet_rx_key_t *rx_key,
    switch_packet_rx_action_t *rx_action) {
  switch_hostif_info_t *hostif_info = NULL;
  switch_lag_info_t *lag_info = NULL;
  switch_port_info_t *port_info = NULL;
  switch_packet_rx_entry_t rx_entry;
  switch_packet_rx_info_t *rx_info = NULL;
  switch_handle_type_t handle_type = 0;
  switch_interface_info_t *intf_info = NULL;
  switch_handle_t bd_handle = 0;
  switch_bd_info_t *bd_info = NULL;
  switch_ifindex_t ifindex = 0;
  switch_status_t status = SWITCH_STATUS_SUCCESS;

  if (!rx_key || !rx_action) {
    SWITCH_API_ERROR("filter rx create failed. invalid params");
    return SWITCH_STATUS_INVALID_PARAMETER;
  }

  memset(&rx_entry, 0x0, sizeof(rx_entry));

  if (rx_key->port_lag_valid) {
    handle_type = switch_handle_get_type(rx_key->port_lag_handle);
    if (handle_type == SWITCH_HANDLE_TYPE_LAG) {
      lag_info = switch_api_lag_get_internal(rx_key->port_lag_handle);
      if (!lag_info) {
        SWITCH_API_ERROR("invalid lag handle");
        return SWITCH_STATUS_INVALID_HANDLE;
      }
      ifindex = lag_info->ifindex;
    } else {
      port_info = switch_api_port_get_internal(rx_key->port_lag_handle);
      if (!port_info) {
        SWITCH_API_ERROR("invalid port handle");
        return SWITCH_STATUS_INVALID_HANDLE;
      }
      ifindex = port_info->ifindex;
    }
    rx_entry.ifindex_valid = TRUE;
  }

  if (rx_key->handle_valid) {
    bd_handle = rx_key->handle;
    handle_type = switch_handle_get_type(rx_key->handle);
    if (handle_type == SWITCH_HANDLE_TYPE_INTERFACE) {
      intf_info = switch_api_interface_get(rx_key->handle);
      if (!intf_info) {
        SWITCH_API_ERROR("intf_handle %lx is invalid", rx_key->handle);
        return SWITCH_STATUS_INVALID_HANDLE;
      }
      if (!SWITCH_INTF_IS_PORT_L3(intf_info)) {
        SWITCH_API_ERROR("intf_handle %lx is not l3", rx_key->handle);
        return SWITCH_STATUS_INVALID_HANDLE;
      }
      bd_handle = intf_info->bd_handle;
    }

    bd_info = switch_bd_get(bd_handle);
    if (!bd_info) {
      SWITCH_API_ERROR("bd derivation failed %lx", rx_key->handle);
      return SWITCH_STATUS_INVALID_HANDLE;
    }
    rx_entry.bd_valid = TRUE;
  }

  if (rx_action->hostif_handle) {
    hostif_info = switch_hostif_get(rx_action->hostif_handle);
    if (!hostif_info) {
      SWITCH_API_ERROR("invalid hostif handle");
      return SWITCH_STATUS_INVALID_HANDLE;
    }
  }

  rx_entry.bd = handle_to_id(bd_handle);
  rx_entry.ifindex = ifindex;
  rx_entry.port_valid = rx_key->port_valid;
  rx_entry.port = handle_to_id(rx_key->port_handle);
  rx_entry.reason_code_valid = rx_key->reason_code_valid;
  rx_entry.reason_code = rx_key->reason_code;
  rx_entry.reason_code_mask = rx_key->reason_code_mask;
  rx_entry.priority = rx_key->priority;

  rx_info = switch_malloc(sizeof(switch_packet_rx_info_t), 0x1);
  if (!rx_info) {
    SWITCH_API_ERROR("port %lx port_lag %lx handle %lx malloc failed",
                     rx_key->port_handle,
                     rx_key->port_lag_handle,
                     rx_key->handle);
    return SWITCH_STATUS_NO_MEMORY;
  }

  memset(rx_info, 0x0, sizeof(switch_packet_rx_info_t));
  memcpy(&rx_info->rx_entry, &rx_entry, sizeof(rx_entry));
  rx_info->vlan_id = rx_action->vlan_id;
  rx_info->vlan_action = rx_action->vlan_action;
  if (hostif_info) {
    rx_info->intf_fd = hostif_info->intf_fd;
  }

  SWITCH_API_INFO(
      "net_filter_rx_create: port 0x%lx, port_lag_hdl = 0x%lx, "
      "if_bd_hdl 0x%lx, rcode 0x%x, rcode_mask 0x%x "
      "vlan_id %d, fd %d, action %d\n",
      rx_key->port_valid ? rx_key->port_handle : 0,
      rx_key->port_lag_valid ? rx_key->port_lag_handle : 0,
      rx_key->handle_valid ? rx_key->handle : 0,
      rx_key->reason_code_valid ? rx_key->reason_code : 0,
      rx_key->reason_code_mask,
      rx_info->vlan_id,
      rx_info->vlan_action,
      rx_info->intf_fd);
  /*
   * Adding an element to the list results in sorting the list.
   * tommy does not have a way to compare and insert the elements
   */
  tommy_list_insert_head(&packet_rx_filter_list, &(rx_info->node), rx_info);
  tommy_list_sort(&packet_rx_filter_list,
                  switch_packet_rx_filter_priority_compare);
  return status;
}
Example #18
0
switch_status_t switch_api_packet_net_filter_tx_create(
    switch_device_t device,
    switch_packet_tx_key_t *tx_key,
    switch_packet_tx_action_t *tx_action) {
  switch_packet_tx_entry_t tx_entry;
  switch_packet_tx_info_t *tx_info = NULL;
  switch_hostif_info_t *hostif_info = NULL;
  switch_handle_t bd_handle = 0;
  switch_interface_info_t *intf_info = NULL;
  switch_handle_type_t handle_type = 0;
  switch_bd_info_t *bd_info = NULL;
  switch_status_t status = SWITCH_STATUS_SUCCESS;

  if (!tx_key || !tx_action) {
    SWITCH_API_ERROR("filter tx create failed. invalid params");
    return SWITCH_STATUS_INVALID_PARAMETER;
  }

  if (tx_key->handle_valid) {
    hostif_info = switch_hostif_get(tx_key->hostif_handle);
    if (!hostif_info) {
      SWITCH_API_ERROR("invalid hostif handle");
      return SWITCH_STATUS_INVALID_HANDLE;
    }
  }

  memset(&tx_entry, 0x0, sizeof(tx_entry));
  if (tx_key->handle_valid) {
    tx_entry.intf_fd = hostif_info->intf_fd;
  }
  tx_entry.fd_valid = tx_key->handle_valid;
  tx_entry.vlan_id = tx_key->vlan_id;
  tx_entry.vlan_valid = tx_key->vlan_valid;
  tx_entry.priority = tx_key->priority;

  tx_info = switch_malloc(sizeof(switch_packet_tx_info_t), 0x1);
  if (!tx_info) {
    SWITCH_API_ERROR("hif %lx vlan %x malloc failure",
                     tx_key->hostif_handle,
                     tx_key->vlan_id);
    return SWITCH_STATUS_NO_MEMORY;
  }

  if (tx_action->bypass_flags != SWITCH_BYPASS_ALL) {
    bd_handle = tx_action->handle;

    handle_type = switch_handle_get_type(tx_action->handle);
    if (handle_type == SWITCH_HANDLE_TYPE_INTERFACE) {
      intf_info = switch_api_interface_get(tx_action->handle);
      if (!intf_info) {
        SWITCH_API_ERROR("intf_handle %lx is invalid", tx_action->handle);
        return SWITCH_STATUS_INVALID_HANDLE;
      }
      if (!SWITCH_INTF_IS_PORT_L3(intf_info)) {
        SWITCH_API_ERROR("intf_handle %lx is not l3", tx_action->handle);
        return SWITCH_STATUS_INVALID_HANDLE;
      }
      bd_handle = intf_info->bd_handle;
    }

    bd_info = switch_bd_get(bd_handle);
    if (!bd_info) {
      SWITCH_API_ERROR(
          "hif %lx vlan %x invalid bd", tx_key->hostif_handle, tx_key->vlan_id);
      return SWITCH_STATUS_INVALID_HANDLE;
    }
  }

  memcpy(&tx_info->tx_entry, &tx_entry, sizeof(tx_entry));
  tx_info->bd = handle_to_id(bd_handle);
  tx_info->bypass_flags = tx_action->bypass_flags;
  tx_info->port = handle_to_id(tx_action->port_handle);

  SWITCH_API_INFO(
      "net_filter_tx_create: hostif 0x%lx, vlan_id = %d, fd 0x%x, bypass "
      "0x%x\n",
      tx_key->hostif_handle,
      tx_key->vlan_valid ? tx_key->vlan_id : 0xFFF,
      tx_entry.intf_fd,
      tx_info->bypass_flags);

  tommy_list_insert_head(&packet_tx_filter_list, &(tx_info->node), tx_info);
  tommy_list_sort(&packet_tx_filter_list,
                  switch_packet_tx_filter_priority_compare);
  return status;
}
Example #19
0
switch_status_t switch_api_packet_net_filter_rx_delete(
    switch_device_t device, switch_packet_rx_key_t *rx_key) {
  switch_lag_info_t *lag_info = NULL;
  switch_port_info_t *port_info = NULL;
  switch_packet_rx_entry_t *tmp_rx_entry = NULL;
  switch_packet_rx_entry_t rx_entry;
  switch_packet_rx_info_t *tmp_rx_info = NULL;
  switch_handle_type_t handle_type = 0;
  switch_interface_info_t *intf_info = NULL;
  switch_handle_t bd_handle = 0;
  switch_bd_info_t *bd_info = NULL;
  tommy_node *node = NULL;
  bool node_found = FALSE;
  switch_status_t status = SWITCH_STATUS_SUCCESS;

  if (!rx_key) {
    SWITCH_API_ERROR("filter rx delete failed. invalid params");
    return SWITCH_STATUS_INVALID_PARAMETER;
  }

  memset(&rx_entry, 0, sizeof(switch_packet_rx_entry_t));

  if (rx_key->port_lag_valid && rx_key->port_lag_handle) {
    handle_type = switch_handle_get_type(rx_key->port_lag_handle);
    if (handle_type == SWITCH_HANDLE_TYPE_LAG) {
      lag_info = switch_api_lag_get_internal(rx_key->port_lag_handle);
      if (!lag_info) {
        SWITCH_API_ERROR("invalid lag handle");
        return SWITCH_STATUS_INVALID_HANDLE;
      }
      rx_entry.ifindex = lag_info->ifindex;
    } else {
      port_info = switch_api_port_get_internal(rx_key->port_lag_handle);
      if (!port_info) {
        SWITCH_API_ERROR("invalid port handle");
        return SWITCH_STATUS_INVALID_HANDLE;
      }
      rx_entry.ifindex = port_info->ifindex;
    }
  }

  if (rx_key->handle_valid) {
    bd_handle = rx_key->handle;
    handle_type = switch_handle_get_type(rx_key->handle);
    if (handle_type == SWITCH_HANDLE_TYPE_INTERFACE) {
      intf_info = switch_api_interface_get(rx_key->handle);
      if (!intf_info) {
        SWITCH_API_ERROR("intf_handle %lx is invalid", rx_key->handle);
        return SWITCH_STATUS_INVALID_HANDLE;
      }
      if (!SWITCH_INTF_IS_PORT_L3(intf_info)) {
        SWITCH_API_ERROR("intf_handle %lx is not l3", rx_key->handle);
        return SWITCH_STATUS_INVALID_HANDLE;
      }
      bd_handle = intf_info->bd_handle;
    }
    bd_info = switch_bd_get(bd_handle);
    if (!bd_info) {
      SWITCH_API_ERROR("bd derivation failed %lx", rx_key->handle);
      return SWITCH_STATUS_INVALID_HANDLE;
    }
    rx_entry.bd = handle_to_id(bd_handle);
  }

  if (rx_entry.port_valid) {
    rx_entry.port = handle_to_id(rx_key->port_handle);
  }
  rx_entry.bd_valid = rx_key->handle_valid;
  rx_entry.reason_code = rx_key->reason_code;

  node = tommy_list_head(&packet_rx_filter_list);
  while (node) {
    tmp_rx_info = (switch_packet_rx_info_t *)node->data;
    tmp_rx_entry = &tmp_rx_info->rx_entry;
    if (switch_packet_rx_filter_match(tmp_rx_entry, &rx_entry)) {
      node_found = TRUE;
      break;
    }
    node = node->next;
  }

  if (!node_found) {
    SWITCH_API_ERROR("tx filter delete failed. node find failed");
    return SWITCH_STATUS_ITEM_NOT_FOUND;
  }

  tommy_list_remove_existing(&packet_rx_filter_list, node);

  switch_free(tmp_rx_info);
  return status;
}
Example #20
0
switch_handle_t
switch_api_nhop_create(switch_device_t device, switch_nhop_key_t *nhop_key)
{
    switch_handle_t                    nhop_handle;
    switch_nhop_info_t                *nhop_info = NULL;
    switch_interface_info_t           *intf_info = NULL;
    switch_spath_info_t               *spath_info = NULL;
    switch_ifindex_t                   ifindex = 0;
    bool                               flood = FALSE;
    uint32_t                           mc_index = 0;
    switch_status_t                    status = SWITCH_STATUS_SUCCESS;

    if (!SWITCH_INTERFACE_HANDLE_VALID(nhop_key->intf_handle)) {
        return SWITCH_STATUS_INVALID_HANDLE;
    }

    intf_info = switch_api_interface_get(nhop_key->intf_handle);
    if (!intf_info) {
        return SWITCH_API_INVALID_HANDLE;
    }

    if((nhop_handle = switch_api_nhop_handle_get(nhop_key)) == SWITCH_API_INVALID_HANDLE) {
        nhop_handle = switch_nhop_create();
    } else {
        nhop_info = switch_nhop_get(nhop_handle);
        if (!nhop_info) {
            return SWITCH_API_INVALID_HANDLE;
        }
        return nhop_handle;
    }
    nhop_info = switch_nhop_get(nhop_handle);
    if (!nhop_info) {
        return SWITCH_API_INVALID_HANDLE;
    }
    nhop_info->type = SWITCH_NHOP_INDEX_TYPE_ONE_PATH;
    spath_info = &(SWITCH_NHOP_SPATH_INFO(nhop_info));
    spath_info->nhop_key.intf_handle = nhop_key->intf_handle;
    intf_info->nhop_handle = nhop_handle;
    nhop_info->valid = 1;

    status = switch_nhop_ifindex_get(nhop_handle, &ifindex, &flood, &mc_index);
    if (status != SWITCH_STATUS_SUCCESS) {
        return SWITCH_API_INVALID_HANDLE;
    }

#ifdef SWITCH_PD
    bool tunnel = (SWITCH_INTF_TYPE(intf_info) == SWITCH_API_INTERFACE_TUNNEL);
    status = switch_pd_nexthop_table_add_entry(device,
                                  handle_to_id(nhop_handle),
                                  handle_to_id(intf_info->bd_handle),
                                  ifindex, flood, mc_index, tunnel,
                                  &spath_info->hw_entry);
    if (status != SWITCH_STATUS_SUCCESS) {
        return SWITCH_API_INVALID_HANDLE;
    }

    if (SWITCH_INTF_IS_PORT_L3(intf_info) && intf_info->bd_handle) {
        status = switch_pd_urpf_bd_table_add_entry(device, handle_to_id(nhop_handle),
                                     handle_to_id(intf_info->bd_handle),
                                     &spath_info->urpf_hw_entry);
        if (status != SWITCH_STATUS_SUCCESS) {
            return SWITCH_API_INVALID_HANDLE;
        }
    }
#endif
    if (nhop_key->ip_addr_valid) {
        switch_nhop_insert_hash(spath_info, nhop_key, nhop_handle);
    }
    return nhop_handle;
}
Example #21
0
switch_status_t switch_api_neighbor_entry_add_tunnel_rewrite(
    switch_device_t device, switch_neighbor_info_t *neighbor_info) {
  switch_interface_info_t *intf_info = NULL;
  switch_api_neighbor_t *neighbor = NULL;
  switch_status_t status = SWITCH_STATUS_SUCCESS;
  uint16_t smac_index = 1;
  uint16_t dmac_index = 0;
  uint16_t sip_index = 0;
  uint16_t dip_index = 0;
  switch_handle_t vrf_handle = 0;
  switch_ip_encap_t *ip_encap = NULL;
  switch_mpls_encap_t *mpls_encap = NULL;
  switch_tunnel_info_t *tunnel_info = NULL;
  switch_ip_addr_t *src_ip = NULL;
  switch_ip_addr_t *dst_ip = NULL;
  switch_encap_type_t encap_type = SWITCH_API_ENCAP_TYPE_NONE;

  neighbor = &neighbor_info->neighbor;
  intf_info = switch_api_interface_get(neighbor->interface);
  if (!intf_info) {
    SWITCH_API_ERROR(
        "%s:%d: invalid interface for tunnel rewrite!", __FUNCTION__, __LINE__);
    return SWITCH_STATUS_INVALID_INTERFACE;
  }

  tunnel_info = &(SWITCH_INTF_TUNNEL_INFO(intf_info));
  dmac_index = switch_dmac_rewrite_insert_hash(device, &neighbor->mac_addr);

  if (tunnel_info->encap_mode == SWITCH_API_TUNNEL_ENCAP_MODE_IP) {
    ip_encap = &(SWITCH_INTF_TUNNEL_IP_ENCAP(intf_info));
    vrf_handle = ip_encap->vrf_handle;
    encap_type = SWITCH_INTF_TUNNEL_ENCAP_TYPE(intf_info);

    src_ip = &ip_encap->src_ip;
    sip_index =
        switch_tunnel_src_vtep_index_get(vrf_handle, encap_type, src_ip);

    dst_ip = &ip_encap->dst_ip;
    dip_index =
        switch_tunnel_dst_vtep_index_get(vrf_handle, encap_type, dst_ip);

    status = switch_pd_tunnel_rewrite_table_add_entry(
        device,
        handle_to_id(neighbor->interface),
        sip_index,
        dip_index,
        smac_index,
        dmac_index,
        &neighbor_info->rewrite_entry);
  } else if (tunnel_info->encap_mode == SWITCH_API_TUNNEL_ENCAP_MODE_MPLS) {
    mpls_encap = &(SWITCH_INTF_TUNNEL_MPLS_ENCAP(intf_info));
    status = switch_pd_tunnel_rewrite_table_mpls_add_entry(
        device,
        handle_to_id(neighbor->interface),
        smac_index,
        dmac_index,
        mpls_encap,
        &neighbor_info->rewrite_entry);
  }

  if (status != SWITCH_STATUS_SUCCESS) {
    SWITCH_API_ERROR(
        "%s:%d unable to add tunnel rewrite entry", __FUNCTION__, __LINE__);
    return status;
  }

  return status;
}