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/*
 * Copyright (c) 2016 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.
 */

#undef BIHASH_TYPE
#undef BIHASH_KVP_PER_PAGE
#undef BIHASH_32_64_SVM
#undef BIHASH_ENABLE_STATS
#undef BIHASH_KVP_AT_BUCKET_LEVEL
#undef BIHASH_LAZY_INSTANTIATE
#undef BIHASH_BUCKET_PREFETCH_CACHE_LINES
#undef BIHASH_USE_HEAP

#define BIHASH_TYPE _40_8
#define BIHASH_KVP_PER_PAGE 4
#define BIHASH_KVP_AT_BUCKET_LEVEL 0
#define BIHASH_LAZY_INSTANTIATE 1
#define BIHASH_BUCKET_PREFETCH_CACHE_LINES 1
#define BIHASH_USE_HEAP 1

#ifndef __included_bihash_40_8_h__
#define __included_bihash_40_8_h__

#include <vppinfra/crc32.h>
#include <vppinfra/heap.h>
#include <vppinfra/format.h>
#include <vppinfra/pool.h>
#include <vppinfra/xxhash.h>

typedef struct
{
  u64 key[5];
  u64 value;
} clib_bihash_kv_40_8_t;

static inline int
clib_bihash_is_free_40_8 (const clib_bihash_kv_40_8_t * v)
{
  /* Free values are clib_memset to 0xff, check a bit... */
  if (v->key[0] == ~0ULL && v->value == ~0ULL)
    return 1;
  return 0;
}

static inline u64
clib_bihash_hash_40_8 (const clib_bihash_kv_40_8_t * v)
{
#ifdef clib_crc32c_uses_intrinsics
  return clib_crc32c ((u8 *) v->key, 40);
#else
  u64 tmp = v->key[0] ^ v->key[1] ^ v->key[2] ^ v->key[3] ^ v->key[4];
  return clib_xxhash (tmp);
#endif
}

static inline u8 *
format_bihash_kvp_40_8 (u8 * s, va_list * args)
{
  clib_bihash_kv_40_8_t *v = va_arg (*args, clib_bihash_kv_40_8_t *);

  s = format (s, "key %llu %llu %llu %llu %llu value %llu", v->key[0],
	      v->key[1], v->key[2], v->key[3], v->key[4], v->value);
  return s;
}

static inline int
clib_bihash_key_compare_40_8 (u64 * a, u64 * b)
{
#if defined (CLIB_HAVE_VEC512)
  u64x8 v;
  v = u64x8_load_unaligned (a) ^ u64x8_load_unaligned (b);
  return (u64x8_is_zero_mask (v) & 0x1f) == 0;
#elif defined (CLIB_HAVE_VEC256)
  u64x4 v = { a[4] ^ b[4], 0, 0, 0 };
  v |= u64x4_load_unaligned (a) ^ u64x4_load_unaligned (b);
  return u64x4_is_all_zero (v);
#elif defined(CLIB_HAVE_VEC128) && defined(CLIB_HAVE_VEC128_UNALIGNED_LOAD_STORE)
  u64x2 v = { a[4] ^ b[4], 0 };
  v |= u64x2_load_unaligned (a) ^ u64x2_load_unaligned (b);
  v |= u64x2_load_unaligned (a + 2) ^ u64x2_load_unaligned (b + 2);
  return u64x2_is_all_zero (v);
#else
  return ((a[0] ^ b[0]) | (a[1] ^ b[1]) | (a[2] ^ b[2]) | (a[3] ^ b[3])
	  | (a[4] ^ b[4])) == 0;
#endif
}

#undef __included_bihash_template_h__
#include <vppinfra/bihash_template.h>

#endif /* __included_bihash_40_8_h__ */

/*
 * fd.io coding-style-patch-verification: ON
 *
 * Local Variables:
 * eval: (c-set-style "gnu")
 * End:
 */
pan> * @brief NAT64 IPv4 to IPv6 translation (otside to inside network) */ #include <nat/nat64.h> #include <vnet/ip/ip4_to_ip6.h> #include <vnet/fib/ip4_fib.h> typedef struct { u32 sw_if_index; u32 next_index; } nat64_out2in_trace_t; static u8 * format_nat64_out2in_trace (u8 * s, va_list * args) { CLIB_UNUSED (vlib_main_t * vm) = va_arg (*args, vlib_main_t *); CLIB_UNUSED (vlib_node_t * node) = va_arg (*args, vlib_node_t *); nat64_out2in_trace_t *t = va_arg (*args, nat64_out2in_trace_t *); s = format (s, "NAT64-out2in: sw_if_index %d, next index %d", t->sw_if_index, t->next_index); return s; } vlib_node_registration_t nat64_out2in_node; #define foreach_nat64_out2in_error \ _(UNSUPPORTED_PROTOCOL, "Unsupported protocol") \ _(OUT2IN_PACKETS, "Good out2in packets processed") \ _(NO_TRANSLATION, "No translation") \ _(UNKNOWN, "unknown") typedef enum { #define _(sym,str) NAT64_OUT2IN_ERROR_##sym, foreach_nat64_out2in_error #undef _ NAT64_OUT2IN_N_ERROR, } nat64_out2in_error_t; static char *nat64_out2in_error_strings[] = { #define _(sym,string) string, foreach_nat64_out2in_error #undef _ }; typedef enum { NAT64_OUT2IN_NEXT_LOOKUP, NAT64_OUT2IN_NEXT_DROP, NAT64_OUT2IN_N_NEXT, } nat64_out2in_next_t; typedef struct nat64_out2in_set_ctx_t_ { vlib_buffer_t *b; vlib_main_t *vm; } nat64_out2in_set_ctx_t; static int nat64_out2in_tcp_udp_set_cb (ip4_header_t * ip4, ip6_header_t * ip6, void *arg) { nat64_main_t *nm = &nat64_main; nat64_out2in_set_ctx_t *ctx = arg; nat64_db_bib_entry_t *bibe; nat64_db_st_entry_t *ste; ip46_address_t saddr, daddr; ip6_address_t ip6_saddr; udp_header_t *udp = ip4_next_header (ip4); tcp_header_t *tcp = ip4_next_header (ip4); u8 proto = ip4->protocol; u16 dport = udp->dst_port; u16 sport = udp->src_port; u32 sw_if_index, fib_index; u16 *checksum; ip_csum_t csum; sw_if_index = vnet_buffer (ctx->b)->sw_if_index[VLIB_RX]; fib_index = ip4_fib_table_get_index_for_sw_if_index (sw_if_index); memset (&saddr, 0, sizeof (saddr)); saddr.ip4.as_u32 = ip4->src_address.as_u32; memset (&daddr, 0, sizeof (daddr)); daddr.ip4.as_u32 = ip4->dst_address.as_u32; ste = nat64_db_st_entry_find (&nm->db, &daddr, &saddr, dport, sport, proto, fib_index, 0); if (ste) { bibe = nat64_db_bib_entry_by_index (&nm->db, proto, ste->bibe_index); if (!bibe) return -1; } else { bibe = nat64_db_bib_entry_find (&nm->db, &daddr, dport, proto, fib_index, 0); if (!bibe) return -1; nat64_compose_ip6 (&ip6_saddr, &ip4->src_address, bibe->fib_index); ste = nat64_db_st_entry_create (&nm->db, bibe, &ip6_saddr, &saddr.ip4, sport); } nat64_session_reset_timeout (ste, ctx->vm); ip6->src_address.as_u64[0] = ste->in_r_addr.as_u64[0]; ip6->src_address.as_u64[1] = ste->in_r_addr.as_u64[1]; ip6->dst_address.as_u64[0] = bibe->in_addr.as_u64[0]; ip6->dst_address.as_u64[1] = bibe->in_addr.as_u64[1]; udp->dst_port = bibe->in_port; if (proto == IP_PROTOCOL_UDP) checksum = &udp->checksum; else checksum = &tcp->checksum; csum = ip_csum_sub_even (*checksum, dport); csum = ip_csum_add_even (csum, udp->dst_port); *checksum = ip_csum_fold (csum); vnet_buffer (ctx->b)->sw_if_index[VLIB_TX] = bibe->fib_index; return 0; } static int nat64_out2in_icmp_set_cb (ip4_header_t * ip4, ip6_header_t * ip6, void *arg) { nat64_main_t *nm = &nat64_main; nat64_out2in_set_ctx_t *ctx = arg; nat64_db_bib_entry_t *bibe; nat64_db_st_entry_t *ste; ip46_address_t saddr, daddr; ip6_address_t ip6_saddr; u32 sw_if_index, fib_index; icmp46_header_t *icmp = ip4_next_header (ip4); sw_if_index = vnet_buffer (ctx->b)->sw_if_index[VLIB_RX]; fib_index = ip4_fib_table_get_index_for_sw_if_index (sw_if_index); memset (&saddr, 0, sizeof (saddr)); saddr.ip4.as_u32 = ip4->src_address.as_u32; memset (&daddr, 0, sizeof (daddr)); daddr.ip4.as_u32 = ip4->dst_address.as_u32; if (icmp->type == ICMP6_echo_request || icmp->type == ICMP6_echo_reply) { u16 out_id = ((u16 *) (icmp))[2]; ste = nat64_db_st_entry_find (&nm->db, &daddr, &saddr, out_id, 0, IP_PROTOCOL_ICMP, fib_index, 0); if (ste) { bibe = nat64_db_bib_entry_by_index (&nm->db, IP_PROTOCOL_ICMP, ste->bibe_index); if (!bibe) return -1; } else { bibe = nat64_db_bib_entry_find (&nm->db, &daddr, out_id, IP_PROTOCOL_ICMP, fib_index, 0); if (!bibe) return -1; nat64_compose_ip6 (&ip6_saddr, &ip4->src_address, bibe->fib_index); ste = nat64_db_st_entry_create (&nm->db, bibe, &ip6_saddr, &saddr.ip4, 0); } nat64_session_reset_timeout (ste, ctx->vm); ip6->src_address.as_u64[0] = ste->in_r_addr.as_u64[0]; ip6->src_address.as_u64[1] = ste->in_r_addr.as_u64[1]; ip6->dst_address.as_u64[0] = bibe->in_addr.as_u64[0]; ip6->dst_address.as_u64[1] = bibe->in_addr.as_u64[1]; ((u16 *) (icmp))[2] = bibe->in_port; vnet_buffer (ctx->b)->sw_if_index[VLIB_TX] = bibe->fib_index; } else { ip6_header_t *inner_ip6 = (ip6_header_t *) u8_ptr_add (icmp, 8); nat64_compose_ip6 (&ip6->src_address, &ip4->src_address, vnet_buffer (ctx->b)->sw_if_index[VLIB_TX]); ip6->dst_address.as_u64[0] = inner_ip6->src_address.as_u64[0]; ip6->dst_address.as_u64[1] = inner_ip6->src_address.as_u64[1]; } return 0; } static int nat64_out2in_inner_icmp_set_cb (ip4_header_t * ip4, ip6_header_t * ip6, void *arg) { nat64_main_t *nm = &nat64_main; nat64_out2in_set_ctx_t *ctx = arg; nat64_db_bib_entry_t *bibe; nat64_db_st_entry_t *ste; ip46_address_t saddr, daddr; u32 sw_if_index, fib_index; u8 proto = ip4->protocol; sw_if_index = vnet_buffer (ctx->b)->sw_if_index[VLIB_RX]; fib_index = fib_table_get_index_for_sw_if_index (FIB_PROTOCOL_IP6, sw_if_index); memset (&saddr, 0, sizeof (saddr)); saddr.ip4.as_u32 = ip4->src_address.as_u32; memset (&daddr, 0, sizeof (daddr)); daddr.ip4.as_u32 = ip4->dst_address.as_u32; if (proto == IP_PROTOCOL_ICMP6) { icmp46_header_t *icmp = ip4_next_header (ip4); u16 out_id = ((u16 *) (icmp))[2]; proto = IP_PROTOCOL_ICMP; if (! (icmp->type == ICMP6_echo_request || icmp->type == ICMP6_echo_reply)) return -1; ste = nat64_db_st_entry_find (&nm->db, &saddr, &daddr, out_id, 0, proto, fib_index, 0); if (!ste) return -1; bibe = nat64_db_bib_entry_by_index (&nm->db, proto, ste->bibe_index); if (!bibe) return -1; ip6->dst_address.as_u64[0] = ste->in_r_addr.as_u64[0]; ip6->dst_address.as_u64[1] = ste->in_r_addr.as_u64[1]; ip6->src_address.as_u64[0] = bibe->in_addr.as_u64[0]; ip6->src_address.as_u64[1] = bibe->in_addr.as_u64[1]; ((u16 *) (icmp))[2] = bibe->in_port; vnet_buffer (ctx->b)->sw_if_index[VLIB_TX] = bibe->fib_index; } else { udp_header_t *udp = ip4_next_header (ip4); tcp_header_t *tcp = ip4_next_header (ip4); u16 dport = udp->dst_port; u16 sport = udp->src_port; u16 *checksum; ip_csum_t csum; ste = nat64_db_st_entry_find (&nm->db, &saddr, &daddr, sport, dport, proto, fib_index, 0); if (!ste) return -1; bibe = nat64_db_bib_entry_by_index (&nm->db, proto, ste->bibe_index); if (!bibe) return -1; nat64_compose_ip6 (&ip6->dst_address, &daddr.ip4, bibe->fib_index); ip6->src_address.as_u64[0] = bibe->in_addr.as_u64[0]; ip6->src_address.as_u64[1] = bibe->in_addr.as_u64[1]; udp->src_port = bibe->in_port; if (proto == IP_PROTOCOL_UDP) checksum = &udp->checksum; else checksum = &tcp->checksum; if (*checksum) { csum = ip_csum_sub_even (*checksum, sport); csum = ip_csum_add_even (csum, udp->src_port); *checksum = ip_csum_fold (csum); } vnet_buffer (ctx->b)->sw_if_index[VLIB_TX] = bibe->fib_index; } return 0; } static int nat64_out2in_unk_proto_set_cb (ip4_header_t * ip4, ip6_header_t * ip6, void *arg) { nat64_main_t *nm = &nat64_main; nat64_out2in_set_ctx_t *ctx = arg; nat64_db_bib_entry_t *bibe; nat64_db_st_entry_t *ste; ip46_address_t saddr, daddr; ip6_address_t ip6_saddr; u32 sw_if_index, fib_index; u8 proto = ip4->protocol; sw_if_index = vnet_buffer (ctx->b)->sw_if_index[VLIB_RX]; fib_index = ip4_fib_table_get_index_for_sw_if_index (sw_if_index); memset (&saddr, 0, sizeof (saddr)); saddr.ip4.as_u32 = ip4->src_address.as_u32; memset (&daddr, 0, sizeof (daddr)); daddr.ip4.as_u32 = ip4->dst_address.as_u32; ste = nat64_db_st_entry_find (&nm->db, &daddr, &saddr, 0, 0, proto, fib_index, 0); if (ste) { bibe = nat64_db_bib_entry_by_index (&nm->db, proto, ste->bibe_index); if (!bibe) return -1; } else { bibe = nat64_db_bib_entry_find (&nm->db, &daddr, 0, proto, fib_index, 0); if (!bibe) return -1; nat64_compose_ip6 (&ip6_saddr, &ip4->src_address, bibe->fib_index); ste = nat64_db_st_entry_create (&nm->db, bibe, &ip6_saddr, &saddr.ip4, 0); } nat64_session_reset_timeout (ste, ctx->vm); ip6->src_address.as_u64[0] = ste->in_r_addr.as_u64[0]; ip6->src_address.as_u64[1] = ste->in_r_addr.as_u64[1]; ip6->dst_address.as_u64[0] = bibe->in_addr.as_u64[0]; ip6->dst_address.as_u64[1] = bibe->in_addr.as_u64[1]; vnet_buffer (ctx->b)->sw_if_index[VLIB_TX] = bibe->fib_index; return 0; } static uword nat64_out2in_node_fn (vlib_main_t * vm, vlib_node_runtime_t * node, vlib_frame_t * frame) { u32 n_left_from, *from, *to_next; nat64_out2in_next_t next_index; u32 pkts_processed = 0; from = vlib_frame_vector_args (frame); n_left_from = frame->n_vectors; next_index = node->cached_next_index; while (n_left_from > 0) { u32 n_left_to_next; vlib_get_next_frame (vm, node, next_index, to_next, n_left_to_next); while (n_left_from > 0 && n_left_to_next > 0) { u32 bi0; vlib_buffer_t *b0; u32 next0; ip4_header_t *ip40; u32 proto0; nat64_out2in_set_ctx_t ctx0; /* speculatively enqueue b0 to the current next frame */ bi0 = from[0]; to_next[0] = bi0; from += 1; to_next += 1; n_left_from -= 1; n_left_to_next -= 1; b0 = vlib_get_buffer (vm, bi0); ip40 = vlib_buffer_get_current (b0); ctx0.b = b0; ctx0.vm = vm; next0 = NAT64_OUT2IN_NEXT_LOOKUP; proto0 = ip_proto_to_snat_proto (ip40->protocol); if (proto0 == SNAT_PROTOCOL_ICMP) { if (icmp_to_icmp6 (b0, nat64_out2in_icmp_set_cb, &ctx0, nat64_out2in_inner_icmp_set_cb, &ctx0)) { next0 = NAT64_OUT2IN_NEXT_DROP; b0->error = node->errors[NAT64_OUT2IN_ERROR_NO_TRANSLATION]; goto trace0; } } else if (proto0 == SNAT_PROTOCOL_TCP || proto0 == SNAT_PROTOCOL_UDP) { if (ip4_to_ip6_tcp_udp (b0, nat64_out2in_tcp_udp_set_cb, &ctx0)) { next0 = NAT64_OUT2IN_NEXT_DROP; b0->error = node->errors[NAT64_OUT2IN_ERROR_NO_TRANSLATION]; goto trace0; } } else { if (ip4_to_ip6 (b0, nat64_out2in_unk_proto_set_cb, &ctx0)) { next0 = NAT64_OUT2IN_NEXT_DROP; b0->error = node->errors[NAT64_OUT2IN_ERROR_NO_TRANSLATION]; goto trace0; } } trace0: if (PREDICT_FALSE ((node->flags & VLIB_NODE_FLAG_TRACE) && (b0->flags & VLIB_BUFFER_IS_TRACED))) { nat64_out2in_trace_t *t = vlib_add_trace (vm, node, b0, sizeof (*t)); t->sw_if_index = vnet_buffer (b0)->sw_if_index[VLIB_RX]; t->next_index = next0; } pkts_processed += next0 != NAT64_OUT2IN_NEXT_DROP; /* verify speculative enqueue, maybe switch current next frame */ vlib_validate_buffer_enqueue_x1 (vm, node, next_index, to_next, n_left_to_next, bi0, next0); } vlib_put_next_frame (vm, node, next_index, n_left_to_next); } vlib_node_increment_counter (vm, nat64_out2in_node.index, NAT64_OUT2IN_ERROR_OUT2IN_PACKETS, pkts_processed); return frame->n_vectors; } /* *INDENT-OFF* */ VLIB_REGISTER_NODE (nat64_out2in_node) = { .function = nat64_out2in_node_fn, .name = "nat64-out2in", .vector_size = sizeof (u32), .format_trace = format_nat64_out2in_trace, .type = VLIB_NODE_TYPE_INTERNAL, .n_errors = ARRAY_LEN (nat64_out2in_error_strings), .error_strings = nat64_out2in_error_strings,.n_next_nodes = 2, /* edit / add dispositions here */ .next_nodes = { [NAT64_OUT2IN_NEXT_DROP] = "error-drop", [NAT64_OUT2IN_NEXT_LOOKUP] = "ip6-lookup", }, }; /* *INDENT-ON* */ VLIB_NODE_FUNCTION_MULTIARCH (nat64_out2in_node, nat64_out2in_node_fn); /* * fd.io coding-style-patch-verification: ON * * Local Variables: * eval: (c-set-style "gnu") * End: */