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/*
 * ip/ip6_neighbor.h: IP6 NS transmit
 *
 * Copyright (c) 2019 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.
 */

#ifndef __IP6_NEIGHBOR_H__
#define __IP6_NEIGHBOR_H__

#include <vlib/vlib.h>
#include <vnet/ip/format.h>
#include <vnet/ip/ip6.h>
#include <vnet/ip/ip6_link.h>
#include <vnet/ip/icmp46_packet.h>
#include <vnet/ethernet/ethernet.h>
#include <vnet/adj/adj_internal.h>

/* Template used to generate IP6 neighbor solicitation packets. */
extern vlib_packet_template_t ip6_neighbor_packet_template;

extern void ip6_neighbor_advertise (vlib_main_t * vm,
				    vnet_main_t * vnm,
				    u32 sw_if_index,
				    const ip6_address_t * addr);

extern void ip6_neighbor_probe_dst (const ip_adjacency_t * adj,
				    const ip6_address_t * dst);

always_inline vlib_buffer_t *
ip6_neighbor_probe (vlib_main_t * vm,
		    vnet_main_t * vnm,
		    const ip_adjacency_t * adj,
		    const ip6_address_t * src, const ip6_address_t * dst)
{
  icmp6_neighbor_solicitation_header_t *h0;
  vnet_hw_interface_t *hw_if0;
  vlib_buffer_t *b0;
  int bogus_length;
  u32 bi0 = 0;

  h0 = vlib_packet_template_get_packet
    (vm, &ip6_neighbor_packet_template, &bi0);
  if (!h0)
    return NULL;;

  b0 = vlib_get_buffer (vm, bi0);

  hw_if0 = vnet_get_sup_hw_interface (vnm, adj->rewrite_header.sw_if_index);

  /*
   * Destination address is a solicited node multicast address.
   * We need to fill in
   * the low 24 bits with low 24 bits of target's address.
   */
  h0->ip.src_address = *src;
  h0->ip.dst_address.as_u8[13] = dst->as_u8[13];
  h0->ip.dst_address.as_u8[14] = dst->as_u8[14];
  h0->ip.dst_address.as_u8[15] = dst->as_u8[15];

  h0->neighbor.target_address = *dst;

  clib_memcpy (h0->link_layer_option.ethernet_address,
	       hw_if0->hw_address, vec_len (hw_if0->hw_address));

  /* $$$$ appears we need this; why is the checksum non-zero? */
  h0->neighbor.icmp.checksum = 0;
  h0->neighbor.icmp.checksum =
    ip6_tcp_udp_icmp_compute_checksum (vm, 0, &h0->ip, &bogus_length);

  ASSERT (bogus_length == 0);
  VLIB_BUFFER_TRACE_TRAJECTORY_INIT (b0);

  vnet_buffer (b0)->sw_if_index[VLIB_TX] = adj->rewrite_header.sw_if_index;

  /* Use the link's mcast adj to ship the packet */
  vnet_buffer (b0)->ip.adj_index[VLIB_TX] =
    ip6_link_get_mcast_adj (adj->rewrite_header.sw_if_index);
  adj = adj_get (vnet_buffer (b0)->ip.adj_index[VLIB_TX]);

  b0->flags |= VNET_BUFFER_F_LOCALLY_ORIGINATED;

  {
    vlib_frame_t *f = vlib_get_frame_to_node (vm, adj->ia_node_index);
    u32 *to_next = vlib_frame_vector_args (f);
    to_next[0] = bi0;
    f->n_vectors = 1;
    vlib_put_frame_to_node (vm, adj->ia_node_index, f);
  }

  return b0;
}

#endif

/*
 * fd.io coding-style-patch-verification: ON
 *
 * Local Variables:
 * eval: (c-set-style "gnu")
 * End:
 */
flags = va_arg (*args, u32); if (flags & VNET_SW_INTERFACE_FLAG_ERROR) s = format (s, "error"); else if (flags & VNET_SW_INTERFACE_FLAG_BOND_SLAVE) s = format (s, "bond-slave"); else { s = format (s, "%s", (flags & VNET_SW_INTERFACE_FLAG_ADMIN_UP) ? "up" : "down"); if (flags & VNET_SW_INTERFACE_FLAG_PUNT) s = format (s, "/punt"); } return s; } u8 * format_vnet_hw_interface_rx_mode (u8 * s, va_list * args) { vnet_hw_interface_rx_mode mode = va_arg (*args, vnet_hw_interface_rx_mode); if (mode == VNET_HW_INTERFACE_RX_MODE_POLLING) return format (s, "polling"); if (mode == VNET_HW_INTERFACE_RX_MODE_INTERRUPT) return format (s, "interrupt"); if (mode == VNET_HW_INTERFACE_RX_MODE_ADAPTIVE) return format (s, "adaptive"); return format (s, "unknown"); } u8 * format_vnet_hw_interface (u8 * s, va_list * args) { vnet_main_t *vnm = va_arg (*args, vnet_main_t *); vnet_hw_interface_t *hi = va_arg (*args, vnet_hw_interface_t *); vnet_hw_interface_class_t *hw_class; vnet_device_class_t *dev_class; int verbose = va_arg (*args, int); u32 indent; if (!hi) return format (s, "%=32s%=6s%=8s%s", "Name", "Idx", "Link", "Hardware"); indent = format_get_indent (s); s = format (s, "%-32v%=6d", hi->name, hi->hw_if_index); if (hi->bond_info == VNET_HW_INTERFACE_BOND_INFO_SLAVE) s = format (s, "%=8s", "slave"); else s = format (s, "%=8s", hi->flags & VNET_HW_INTERFACE_FLAG_LINK_UP ? "up" : "down"); hw_class = vnet_get_hw_interface_class (vnm, hi->hw_class_index); dev_class = vnet_get_device_class (vnm, hi->dev_class_index); if (hi->bond_info && (hi->bond_info != VNET_HW_INTERFACE_BOND_INFO_SLAVE)) { int hw_idx; s = format (s, "Slave-Idx:"); clib_bitmap_foreach (hw_idx, hi->bond_info, s = format (s, " %d", hw_idx)); } else if (dev_class->format_device_name) s = format (s, "%U", dev_class->format_device_name, hi->dev_instance); else s = format (s, "%s%d", dev_class->name, hi->dev_instance); if (verbose) { if (hw_class->format_device) s = format (s, "\n%U%U", format_white_space, indent + 2, hw_class->format_device, hi->hw_if_index, verbose); else { s = format (s, "\n%U%s", format_white_space, indent + 2, hw_class->name); if (hw_class->format_address && vec_len (hi->hw_address) > 0) s = format (s, " address %U", hw_class->format_address, hi->hw_address); } if (dev_class->format_device) s = format (s, "\n%U%U", format_white_space, indent + 2, dev_class->format_device, hi->dev_instance, verbose); } return s; } u8 * format_vnet_sw_interface_name (u8 * s, va_list * args) { vnet_main_t *vnm = va_arg (*args, vnet_main_t *); vnet_sw_interface_t *si = va_arg (*args, vnet_sw_interface_t *); vnet_sw_interface_t *si_sup = vnet_get_sup_sw_interface (vnm, si->sw_if_index); vnet_hw_interface_t *hi_sup; ASSERT (si_sup->type == VNET_SW_INTERFACE_TYPE_HARDWARE); hi_sup = vnet_get_hw_interface (vnm, si_sup->hw_if_index); s = format (s, "%v", hi_sup->name); if (si->type != VNET_SW_INTERFACE_TYPE_HARDWARE) s = format (s, ".%d", si->sub.id); return s; } u8 * format_vnet_sw_if_index_name (u8 * s, va_list * args) { vnet_main_t *vnm = va_arg (*args, vnet_main_t *); u32 sw_if_index = va_arg (*args, u32); vnet_sw_interface_t *si; si = vnet_get_sw_interface_safe (vnm, sw_if_index); if (NULL == si) { return format (s, "DELETED"); } return format (s, "%U", format_vnet_sw_interface_name, vnm, si); } u8 * format_vnet_sw_interface_cntrs (u8 * s, vnet_interface_main_t * im, vnet_sw_interface_t * si) { u32 indent, n_printed; int i, j, n_counters; static vnet_main_t **my_vnet_mains; vec_reset_length (my_vnet_mains); indent = format_get_indent (s); n_printed = 0; { vlib_combined_counter_main_t *cm; vlib_counter_t v, vtotal; u8 *n = 0; for (i = 0; i < vec_len (vnet_mains); i++) { if (vnet_mains[i]) vec_add1 (my_vnet_mains, vnet_mains[i]); } if (vec_len (my_vnet_mains) == 0) vec_add1 (my_vnet_mains, &vnet_main); /* Each vnet_main_t has its own copy of the interface counters */ n_counters = vec_len (im->combined_sw_if_counters); /* rx, tx counters... */ for (j = 0; j < n_counters; j++) { vtotal.packets = 0; vtotal.bytes = 0; for (i = 0; i < vec_len (my_vnet_mains); i++) { im = &my_vnet_mains[i]->interface_main; cm = im->combined_sw_if_counters + j; vlib_get_combined_counter (cm, si->sw_if_index, &v); vtotal.packets += v.packets; vtotal.bytes += v.bytes; } /* Only display non-zero counters. */ if (vtotal.packets == 0) continue; if (n_printed > 0) s = format (s, "\n%U", format_white_space, indent); n_printed += 2; if (n) _vec_len (n) = 0; n = format (n, "%s packets", cm->name); s = format (s, "%-16v%16Ld", n, vtotal.packets); _vec_len (n) = 0; n = format (n, "%s bytes", cm->name); s = format (s, "\n%U%-16v%16Ld", format_white_space, indent, n, vtotal.bytes); } vec_free (n); } { vlib_simple_counter_main_t *cm; u64 v, vtotal; n_counters = vec_len (im->sw_if_counters); for (j = 0; j < n_counters; j++) { vtotal = 0; for (i = 0; i < vec_len (my_vnet_mains); i++) { im = &my_vnet_mains[i]->interface_main; cm = im->sw_if_counters + j; v = vlib_get_simple_counter (cm, si->sw_if_index); vtotal += v; } /* Only display non-zero counters. */ if (vtotal == 0) continue; if (n_printed > 0) s = format (s, "\n%U", format_white_space, indent); n_printed += 1; s = format (s, "%-16s%16Ld", cm->name, vtotal); } } return s; } u8 * format_vnet_sw_interface (u8 * s, va_list * args) { vnet_main_t *vnm = va_arg (*args, vnet_main_t *); vnet_sw_interface_t *si = va_arg (*args, vnet_sw_interface_t *); vnet_interface_main_t *im = &vnm->interface_main; if (!si) return format (s, "%=32s%=5s%=16s%=16s%=16s", "Name", "Idx", "State", "Counter", "Count"); s = format (s, "%-32U%=5d%=16U", format_vnet_sw_interface_name, vnm, si, si->sw_if_index, format_vnet_sw_interface_flags, si->flags); s = format_vnet_sw_interface_cntrs (s, im, si); return s; } u8 * format_vnet_sw_interface_name_override (u8 * s, va_list * args) { vnet_main_t *vnm = va_arg (*args, vnet_main_t *); vnet_sw_interface_t *si = va_arg (*args, vnet_sw_interface_t *); /* caller supplied display name for this interface */ u8 *name = va_arg (*args, u8 *); vnet_interface_main_t *im = &vnm->interface_main; if (!si) return format (s, "%=32s%=5s%=16s%=16s%=16s", "Name", "Idx", "State", "Counter", "Count"); s = format (s, "%-32v%=5d%=16U", name, si->sw_if_index, format_vnet_sw_interface_flags, si->flags); s = format_vnet_sw_interface_cntrs (s, im, si); return s; } uword unformat_vnet_hw_interface (unformat_input_t * input, va_list * args) { vnet_main_t *vnm = va_arg (*args, vnet_main_t *); u32 *hw_if_index = va_arg (*args, u32 *); vnet_interface_main_t *im = &vnm->interface_main; vnet_device_class_t *c; /* Try per device class functions first. */ vec_foreach (c, im->device_classes) { if (c->unformat_device_name && unformat_user (input, c->unformat_device_name, hw_if_index)) return 1; } return unformat_user (input, unformat_hash_vec_string, im->hw_interface_by_name, hw_if_index); } uword unformat_vnet_sw_interface (unformat_input_t * input, va_list * args) { vnet_main_t *vnm = va_arg (*args, vnet_main_t *); u32 *result = va_arg (*args, u32 *); vnet_hw_interface_t *hi; u32 hw_if_index, id, id_specified; u32 sw_if_index; u8 *if_name = 0; uword *p, error = 0; id = ~0; if (unformat (input, "%_%v.%d%_", &if_name, &id) && ((p = hash_get (vnm->interface_main.hw_interface_by_name, if_name)))) { hw_if_index = p[0]; id_specified = 1; } else if (unformat (input, "%U", unformat_vnet_hw_interface, vnm, &hw_if_index)) id_specified = 0; else goto done; hi = vnet_get_hw_interface (vnm, hw_if_index); if (!id_specified) { sw_if_index = hi->sw_if_index; } else { if (!(p = hash_get (hi->sub_interface_sw_if_index_by_id, id))) goto done; sw_if_index = p[0]; } if (!vnet_sw_interface_is_api_visible (vnm, sw_if_index)) goto done; *result = sw_if_index; error = 1; done: vec_free (if_name); return error; } uword unformat_vnet_sw_interface_flags (unformat_input_t * input, va_list * args) { u32 *result = va_arg (*args, u32 *); u32 flags = 0; if (unformat (input, "up")) flags |= VNET_SW_INTERFACE_FLAG_ADMIN_UP; else if (unformat (input, "down")) flags &= ~VNET_SW_INTERFACE_FLAG_ADMIN_UP; else if (unformat (input, "punt")) flags |= VNET_SW_INTERFACE_FLAG_PUNT; else if (unformat (input, "enable")) flags &= ~VNET_SW_INTERFACE_FLAG_PUNT; else return 0; *result = flags; return 1; } uword unformat_vnet_hw_interface_flags (unformat_input_t * input, va_list * args) { u32 *result = va_arg (*args, u32 *); u32 flags = 0; if (unformat (input, "up")) flags |= VNET_HW_INTERFACE_FLAG_LINK_UP; else if (unformat (input, "down")) flags &= ~VNET_HW_INTERFACE_FLAG_LINK_UP; else return 0; *result = flags; return 1; } /* * fd.io coding-style-patch-verification: ON * * Local Variables: * eval: (c-set-style "gnu") * End: */