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/* SPDX-License-Identifier: Apache-2.0
 * Copyright(c) 2024 Cisco Systems, Inc.
 */

#ifndef SRC_VNET_TLS_TLS_RECORD_H__
#define SRC_VNET_TLS_TLS_RECORD_H__

#include <vppinfra/clib.h>
#include <vppinfra/error.h>

/**
 * TLS record types as per rfc8446#appendix-B.1
 */
#define foreach_tls_content_type                                              \
  _ (INVALID, 0)                                                              \
  _ (CHANGE_CIPHER_SPEC, 20)                                                  \
  _ (ALERT, 21)                                                               \
  _ (HANDSHAKE, 22)                                                           \
  _ (APPLICATION_DATA, 23)                                                    \
  _ (HEARTBEAT, 24) /* RFC 6520 */

typedef enum tls_record_type_
{
#define _(sym, val) TLS_REC_##sym = val,
  foreach_tls_content_type
#undef _
} __clib_packed tls_record_type_t;

typedef struct tls_protocol_version_
{
  u8 major;
  u8 minor;
} __clib_packed tls_protocol_version_t;

#define TLS_MAJOR_VERSION     3
#define TLS_MINOR_VERSION_MIN 0 /**< SSLv3 */
#define TLS_MINOR_VERSION_MAX 4 /**< TLS1.3 */

typedef struct tls_record_header_
{
  tls_record_type_t type;	  /**< content type */
  tls_protocol_version_t version; /**< version (deprecated) */
  u16 length;			  /**< fragment length */
  u8 fragment[0];		  /**< fragment/payload */
} __clib_packed tls_record_header_t;

#define TLS_FRAGMENT_MAX_LEN (1 << 14) /**< 16KB rfc8446 */
/** rfc5246 (TLS1.2) allows 2048 bytes of protection */
#define TLS12_FRAGMENT_MAX_ENC_LEN (TLS_FRAGMENT_MAX_LEN + (2 << 10))
#define TLS13_FRAGMENT_MAX_ENC_LEN (TLS_FRAGMENT_MAX_LEN + 256)
#define TLS_FRAGMENT_MAX_ENC_LEN   TLS12_FRAGMENT_MAX_ENC_LEN

/*
 * Handshake message types as per rfc8446#appendix-B.3
 */
#define foreach_tls_handshake_type                                            \
  _ (HELLO_REQUEST, 0)                                                        \
  _ (CLIENT_HELLO, 1)                                                         \
  _ (SERVER_HELLO, 2)                                                         \
  _ (HELLO_VERIFY_REQUEST, 3)                                                 \
  _ (NEW_SESSION_TICKET, 4)                                                   \
  _ (END_OF_EARLY_DATA, 5)                                                    \
  _ (HELLO_RETRY_REQUEST, 6)                                                  \
  _ (ENCRYPTED_EXTENSIONS, 8)                                                 \
  _ (CERTIFICATE, 11)                                                         \
  _ (SERVER_KEY_EXCHANGE, 12)                                                 \
  _ (CERTIFICATE_REQUEST, 13)                                                 \
  _ (SERVER_HELLO_DONE, 14)                                                   \
  _ (CERTIFICATE_VERIFY, 15)                                                  \
  _ (CLIENT_KEY_EXCHANGE, 16)                                                 \
  _ (FINISHED, 20)                                                            \
  _ (CERTIFICATE_URL, 21)                                                     \
  _ (CERTIFICATE_STATUS, 22)                                                  \
  _ (SUPPLEMENTAL_DATA, 23)                                                   \
  _ (KEY_UPDATE, 24)                                                          \
  _ (MESSAGE_HASH, 254)

typedef enum tls_handshake_type_
{
#define _(sym, val) TLS_HS_##sym = val,
  foreach_tls_handshake_type
#undef _
} tls_handshake_type_t;

typedef struct
{
  u32 msg_type : 8; /**< message type */
  u32 length : 24;  /**< message length */
  u8 message[0];    /**< message contents */
} __clib_packed tls_handshake_msg_t;

static inline u32
tls_handshake_message_len (tls_handshake_msg_t *msg)
{
  u8 *p = (u8 *) msg;
  return p[1] << 16 | p[2] << 8 | p[3];
}

/**
 * https://www.iana.org/assignments/tls-extensiontype-values/tls-extensiontype-values.xhtml
 */
#define foreach_tls_hanshake_extensions                                       \
  _ (SERVER_NAME, 0)                                                          \
  _ (MAX_FRAGMENT_LENGTH, 1)                                                  \
  _ (STATUS_REQUEST, 5)                                                       \
  _ (SUPPORTED_GROUPS, 10)                                                    \
  _ (EC_POINT_FORMATS, 11)                                                    \
  _ (SIGNATURE_ALGORITHMS, 13)                                                \
  _ (APPLICATION_LAYER_PROTOCOL_NEGOTIATION, 16)                              \
  _ (SIGNED_CERTIFICATE_TIMESTAMP, 18)                                        \
  _ (CLIENT_CERTIFICATE_TYPE, 19)                                             \
  _ (SERVER_CERTIFICATE_TYPE, 20)                                             \
  _ (PADDING, 21)                                                             \
  _ (TOKEN_BINDING, 24)                                                       \
  _ (RECORD_SIZE_LIMIT, 28)                                                   \
  _ (SESSION_TICKET, 35)                                                      \
  _ (PRE_SHARED_KEY, 41)                                                      \
  _ (EARLY_DATA, 42)                                                          \
  _ (SUPPORTED_VERSIONS, 43)                                                  \
  _ (COOKIE, 44)                                                              \
  _ (PSK_KEY_EXCHANGE_MODES, 45)                                              \
  _ (CERTIFICATE_AUTHORITIES, 47)                                             \
  _ (OID_FILTERS, 48)                                                         \
  _ (SIGNATURE_ALGORITHMS_CERT, 50)                                           \
  _ (POST_HANDSHAKE_AUTH, 49)                                                 \
  _ (KEY_SHARE, 51)                                                           \
  _ (CONNECTION_ID, 54)                                                       \
  _ (QUIC_TRANSPORT_PARAMETERS, 57)                                           \
  _ (TICKET_REQUEST, 58)                                                      \
  _ (DNSSEC_CHAIN, 59)

typedef enum tls_handshake_extension_type_
{
#define _(sym, val) TLS_EXT_##sym = val,
  foreach_tls_hanshake_extensions
#undef _
} tls_handshake_ext_type_t;

/* Base struct for all extensions */
typedef struct tls_handshake_ext_
{
  tls_handshake_ext_type_t type;
  u8 extension[0];
} tls_handshake_ext_t;

typedef struct tls_handshake_ext_server_name_
{
  u8 name_type;
  u8 *host_name;
} tls_handshake_ext_sni_sn_t;

typedef struct tls_handshake_ext_sni_
{
  tls_handshake_ext_t ext;
  tls_handshake_ext_sni_sn_t *names;
} tls_handshake_ext_sni_t;

/* FQDN length as per rfc1035 */
#define TLS_EXT_SNI_MAX_LEN 255

#define foreach_tls_handshake_parse_error                                     \
  _ (OK, "ok")                                                                \
  _ (WANT_MORE, "want_more")                                                  \
  _ (UNSUPPORTED, "unsupported")                                              \
  _ (INVALID_LEN, "invalid_len")                                              \
  _ (SESSION_ID_LEN, "session_id_len")                                        \
  _ (CIPHER_SUITE_LEN, "cipher_suite_len")                                    \
  _ (COMPRESSION_METHOD, "compression_method")                                \
  _ (EXTENSIONS_LEN, "extensions_len")                                        \
  _ (EXT_SNI_NAME_TYPE, "ext_sni_name_type")                                  \
  _ (EXT_SNI_LEN, "ext_sni_len")

typedef enum tls_handshake_parse_error_
{
#define _(sym, str) TLS_HS_PARSE_ERR_##sym,
  foreach_tls_handshake_parse_error
#undef _
} tls_handshake_parse_error_t;

typedef struct tls_hanshake_ext_info_
{
  tls_handshake_ext_type_t type;
  u16 len;
  u8 *data;
} tls_handshake_ext_info_t;

typedef struct tls_handshake_msg_info_
{
  tls_handshake_type_t type;
  u32 len;
  u8 legacy_session_id_len;
  u8 *legacy_session_id;
  u16 cipher_suite_len;
  u8 *cipher_suites;
  u16 extensions_len;
  u8 *extensions;
} tls_handshake_msg_info_t;

static inline u8
tls_record_type_is_valid (tls_record_type_t type)
{
  switch (type)
    {
    case TLS_REC_CHANGE_CIPHER_SPEC:
    case TLS_REC_ALERT:
    case TLS_REC_HANDSHAKE:
    case TLS_REC_APPLICATION_DATA:
    case TLS_REC_HEARTBEAT:
      return 1;
    default:
      return 0;
    }
}

static inline u8
tls_record_hdr_is_valid (tls_record_header_t rec_hdr)
{
  u16 rec_len;

  if (!tls_record_type_is_valid (rec_hdr.type))
    return 0;

  /* Support for SSLv3 and TLS1.0 to TLS1.3 */
  if (rec_hdr.version.major != TLS_MAJOR_VERSION)
    return 0;

  rec_len = clib_net_to_host_u16 (rec_hdr.length);
  if (rec_len == 0 || rec_len > TLS_FRAGMENT_MAX_ENC_LEN)
    return 0;

  return 1;
}

tls_handshake_parse_error_t
tls_handshake_message_try_parse (u8 *msg, int len,
				 tls_handshake_msg_info_t *info);
tls_handshake_parse_error_t
tls_hanshake_extensions_parse (tls_handshake_msg_info_t *info,
			       tls_handshake_ext_info_t **exts);
tls_handshake_parse_error_t
tls_hanshake_extensions_try_parse (tls_handshake_msg_info_t *info,
				   tls_handshake_ext_info_t *req_exts,
				   u32 n_reqs);
tls_handshake_parse_error_t
tls_handshake_ext_parse (tls_handshake_ext_info_t *ext_info,
			 tls_handshake_ext_t *ext);
void tls_handshake_ext_free (tls_handshake_ext_t *ext);

#endif /* SRC_VNET_TLS_TLS_RECORD_H__ */
lass="n">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; u32 sw_if_index0; u32 fib_index0, ft_index0, rt_index0; vnet_classify_table_3_t *ft0, *rt0; vnet_classify_entry_3_t *fe0, *re0; classify_data_or_mask_t *h0; u8 was_found0; ip4_fib_t *fib0; sticky_hash_session_t *s; u32 tmp; /* 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); sw_if_index0 = vnet_buffer (b0)->sw_if_index[VLIB_RX]; next0 = mp->cached_next_index; h0 = vlib_buffer_get_current (b0); /* Add forward and reverse entries for this flow */ clib_memcpy (mp->fdata, h0, sizeof (mp->fdata)); clib_memcpy (mp->rdata, h0, sizeof (mp->rdata)); h0 = (classify_data_or_mask_t *) (mp->rdata); /* swap src + dst addresses to form reverse data */ tmp = h0->ip.src_address.as_u32; h0->ip.src_address.as_u32 = h0->ip.dst_address.as_u32; h0->ip.dst_address.as_u32 = tmp; /* dig up fwd + rev tables */ fib_index0 = vec_elt (im->fib_index_by_sw_if_index, sw_if_index0); fib0 = vec_elt_at_index (im->fibs, fib_index0); ft_index0 = fib0->fwd_classify_table_index; rt_index0 = fib0->rev_classify_table_index; ft0 = (vnet_classify_table_3_t *) pool_elt_at_index (cm->tables, ft_index0); rt0 = (vnet_classify_table_3_t *) pool_elt_at_index (cm->tables, rt_index0); fe0 = vnet_classify_find_or_add_entry_3 (ft0, mp->fdata, &was_found0); fe0->next_index = L2_INPUT_CLASSIFY_NEXT_IP4_INPUT; fe0->advance = sizeof (ethernet_header_t); re0 = vnet_classify_find_or_add_entry_3 (rt0, mp->rdata, 0); re0->next_index = L2_INPUT_CLASSIFY_NEXT_IP4_INPUT; /* $$$ FIXME */ re0->advance = sizeof (ethernet_header_t); /* Note: we could get a whole vector of misses for the same sess */ if (was_found0 == 0) { pool_get (mp->sessions, s); fe0->opaque_index = s - mp->sessions; re0->opaque_index = s - mp->sessions; s->fwd_entry_index = fe0 - ft0->entries; s->rev_entry_index = re0 - rt0->entries; s->fib_index = fib_index0; } if (PREDICT_FALSE ((node->flags & VLIB_NODE_FLAG_TRACE) && (b0->flags & VLIB_BUFFER_IS_TRACED))) { sticky_hash_miss_trace_t *t = vlib_add_trace (vm, node, b0, sizeof (*t)); t->sw_if_index = sw_if_index0; t->next_index = next0; } em->counters[node_counter_base_index + STICKY_HASH_MISS_ERROR_MISSES] += 1; vlib_buffer_advance (b0, sizeof (ethernet_header_t)); /* 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); } return frame->n_vectors; } /* *INDENT-OFF* */ VLIB_REGISTER_NODE (sticky_hash_miss_node) = { .function = sticky_hash_miss_node_fn, .name = "sticky-hash-miss", .vector_size = sizeof (u32), .format_trace = format_sticky_hash_miss_trace, .type = VLIB_NODE_TYPE_INTERNAL, .n_errors = ARRAY_LEN(sticky_hash_miss_error_strings), .error_strings = sticky_hash_miss_error_strings, .n_next_nodes = STICKY_HASH_MISS_N_NEXT, /* edit / add dispositions here */ .next_nodes = { [STICKY_HASH_MISS_NEXT_IP4_INPUT] = "ip4-input", }, }; /* *INDENT-ON* */ clib_error_t * sticky_hash_miss_init (vlib_main_t * vm) { sticky_hash_main_t *mp = &sticky_hash_main; mp->vlib_main = vm; mp->vnet_main = vnet_get_main (); mp->vnet_classify_main = &vnet_classify_main; mp->l2_input_classify_main = &l2_input_classify_main; return 0; } VLIB_INIT_FUNCTION (sticky_hash_miss_init); static int ip4_sticky_hash_enable_disable (sticky_hash_main_t * mp, u32 fwd_sw_if_index, u8 * fwd_mask, u32 rev_sw_if_index, u8 * rev_mask, u32 nbuckets, int enable_disable) { ip4_main_t *im = &ip4_main; u32 fib_index; ip4_fib_t *fib; vnet_classify_main_t *cm = mp->vnet_classify_main; l2_input_classify_main_t *l2cm = mp->l2_input_classify_main; vnet_classify_table_3_t *ft, *rt; fib_index = vec_elt (im->fib_index_by_sw_if_index, fwd_sw_if_index); fib = vec_elt_at_index (im->fibs, fib_index); if (fib->fwd_classify_table_index == ~0) { /* Set up forward table */ ft = (vnet_classify_table_3_t *) vnet_classify_new_table (cm, fwd_mask, nbuckets, 0 /* skip */ , 3 /* match */ ); fib->fwd_classify_table_index = ft - (vnet_classify_table_3_t *) cm->tables; mp->fwd_miss_next_index = vlib_node_add_next (mp->vlib_main, l2_input_classify_node.index, sticky_hash_miss_node.index); ft->miss_next_index = mp->fwd_miss_next_index; /* Set up reverse table */ rt = (vnet_classify_table_3_t *) vnet_classify_new_table (cm, rev_mask, nbuckets, 0 /* skip */ , 3 /* match */ ); fib->rev_classify_table_index = rt - (vnet_classify_table_3_t *) cm->tables; } vec_validate (l2cm->classify_table_index_by_sw_if_index[L2_INPUT_CLASSIFY_TABLE_IP4], fwd_sw_if_index); vec_validate (l2cm->classify_table_index_by_sw_if_index[L2_INPUT_CLASSIFY_TABLE_IP6], fwd_sw_if_index); vec_validate (l2cm->classify_table_index_by_sw_if_index[L2_INPUT_CLASSIFY_TABLE_OTHER], fwd_sw_if_index); l2cm->classify_table_index_by_sw_if_index[L2_INPUT_CLASSIFY_TABLE_IP4] [fwd_sw_if_index] = fib->fwd_classify_table_index; l2cm->classify_table_index_by_sw_if_index[L2_INPUT_CLASSIFY_TABLE_IP6] [fwd_sw_if_index] = ~0; l2cm->classify_table_index_by_sw_if_index[L2_INPUT_CLASSIFY_TABLE_OTHER] [fwd_sw_if_index] = ~0; vec_validate (l2cm->classify_table_index_by_sw_if_index[L2_INPUT_CLASSIFY_TABLE_IP4], rev_sw_if_index); vec_validate (l2cm->classify_table_index_by_sw_if_index[L2_INPUT_CLASSIFY_TABLE_IP6], rev_sw_if_index); vec_validate (l2cm->classify_table_index_by_sw_if_index[L2_INPUT_CLASSIFY_TABLE_OTHER], rev_sw_if_index); l2cm->classify_table_index_by_sw_if_index[L2_INPUT_CLASSIFY_TABLE_IP4] [rev_sw_if_index] = fib->rev_classify_table_index; l2cm->classify_table_index_by_sw_if_index[L2_INPUT_CLASSIFY_TABLE_IP6] [rev_sw_if_index] = ~0; l2cm->classify_table_index_by_sw_if_index[L2_INPUT_CLASSIFY_TABLE_OTHER] [rev_sw_if_index] = ~0; vnet_l2_input_classify_enable_disable (fwd_sw_if_index, enable_disable); vnet_l2_input_classify_enable_disable (rev_sw_if_index, enable_disable); return 0; } static clib_error_t * ip4_sticky_hash_init_command_fn (vlib_main_t * vm, unformat_input_t * input, vlib_cli_command_t * cmd) { u32 fwd_sw_if_index = ~0, rev_sw_if_index = ~0; int enable_disable = 1; u32 nbuckets = 2; int rv; sticky_hash_main_t *mp = &sticky_hash_main; classify_data_or_mask_t fwd_mask, rev_mask; u8 *fm = 0, *rm = 0; while (unformat_check_input (input) != UNFORMAT_END_OF_INPUT) { if (unformat (input, "fwd %U", unformat_vnet_sw_interface, mp->vnet_main, &fwd_sw_if_index)) ; if (unformat (input, "rev %U", unformat_vnet_sw_interface, mp->vnet_main, &rev_sw_if_index)) ; else if (unformat (input, "nbuckets %d", &nbuckets)) ; else if (unformat (input, "disable")) enable_disable = 0; else break; } nbuckets = 1 << max_log2 (nbuckets); if (fwd_sw_if_index == ~0) return clib_error_return (0, "fwd interface not set"); if (rev_sw_if_index == ~0) return clib_error_return (0, "rev interface not set"); if (!is_pow2 (nbuckets)) return clib_error_return (0, "nbuckets %d not a power of 2", nbuckets); ASSERT (sizeof (fwd_mask) <= 3 * sizeof (u32x4)); /* Mask on src/dst address, depending on direction */ memset (&fwd_mask, 0, sizeof (fwd_mask)); memset (&fwd_mask.ip.src_address, 0xff, 4); memset (&rev_mask, 0, sizeof (rev_mask)); memset (&rev_mask.ip.dst_address, 0xff, 4); vec_validate (fm, 3 * sizeof (u32x4) - 1); vec_validate (rm, 3 * sizeof (u32x4) - 1); clib_memcpy (fm, &fwd_mask, sizeof (fwd_mask)); clib_memcpy (rm, &rev_mask, sizeof (rev_mask)); rv = ip4_sticky_hash_enable_disable (mp, fwd_sw_if_index, fm, rev_sw_if_index, rm, nbuckets, enable_disable); vec_free (fm); vec_free (rm); switch (rv) { case 0: return 0; default: return clib_error_return (0, "ip4_sticky_hash_enable_disable returned %d", rv); } return 0; } /* *INDENT-OFF* */ VLIB_CLI_COMMAND (sticky_hash_init_command, static) = { .path = "ip sticky classify", .short_help = "ip sticky classify fwd <intfc> rev <intfc> " "[nbuckets <nn>][disable]", .function = ip4_sticky_hash_init_command_fn, }; /* *INDENT-ON* */ u8 * format_sticky_hash_session (u8 * s, va_list * args) { sticky_hash_main_t *mp = va_arg (*args, sticky_hash_main_t *); sticky_hash_session_t *session = va_arg (*args, sticky_hash_session_t *); vnet_classify_table_3_t *t; vnet_classify_entry_3_t *e; ip4_main_t *im = &ip4_main; vnet_classify_main_t *cm = mp->vnet_classify_main; ip4_fib_t *fib; classify_data_or_mask_t *match; fib = vec_elt_at_index (im->fibs, session->fib_index); t = (vnet_classify_table_3_t *) pool_elt_at_index (cm->tables, fib->fwd_classify_table_index); e = pool_elt_at_index (t->entries, session->fwd_entry_index); match = (classify_data_or_mask_t *) (e->key); s = format (s, "[%6d] fwd src %U next index %d session %d fib %d\n" " hits %lld last-heard %.6f\n", e - t->entries, format_ip4_address, &match->ip.src_address, e->next_index, e->opaque_index, fib->table_id, e->hits, e->last_heard); if (e->opaque_index != session - mp->sessions) s = format (s, "WARNING: forward session index mismatch!\n"); t = (vnet_classify_table_3_t *) pool_elt_at_index (cm->tables, fib->rev_classify_table_index); e = pool_elt_at_index (t->entries, session->rev_entry_index); match = (classify_data_or_mask_t *) (e->key); s = format (s, "[%6d] rev dst %U next index %d session %d\n" " hits %lld last-heard %.6f\n", e - t->entries, format_ip4_address, &match->ip.dst_address, e->next_index, e->opaque_index, e->hits, e->last_heard); if (e->opaque_index != session - mp->sessions) s = format (s, "WARNING: reverse session index mismatch!\n"); s = format (s, "---------\n"); return s; } static clib_error_t * show_ip4_sticky_hash_command_fn (vlib_main_t * vm, unformat_input_t * input, vlib_cli_command_t * cmd) { sticky_hash_main_t *mp = &sticky_hash_main; sticky_hash_session_t *s; int verbose = 0; int dump_classifier_tables = 0; ip4_fib_t *fib; ip4_main_t *im4 = &ip4_main; vnet_classify_main_t *cm = mp->vnet_classify_main; while (unformat_check_input (input) != UNFORMAT_END_OF_INPUT) { if (unformat (input, "verbose")) verbose = 1; else if (unformat (input, "dump-tables") || unformat (input, "dump-classifier-tables")) dump_classifier_tables = 1; else break; } if (pool_elts (mp->sessions) == 0) vlib_cli_output (vm, "No ip sticky hash sessions"); vlib_cli_output (vm, "%d active sessions\n", pool_elts (mp->sessions)); vec_foreach (fib, im4->fibs) { if (fib->fwd_classify_table_index != ~0) vlib_cli_output (vm, "fib %d fwd table: \n%U", fib->table_id, format_classify_table, cm, pool_elt_at_index (cm->tables, fib->fwd_classify_table_index), dump_classifier_tables); if (fib->rev_classify_table_index != ~0) vlib_cli_output (vm, "fib %d rev table: \n%U", fib->table_id, format_classify_table, cm, pool_elt_at_index (cm->tables, fib->rev_classify_table_index), dump_classifier_tables); } if (verbose) { /* *INDENT-OFF* */ pool_foreach (s, mp->sessions, ({ vlib_cli_output (vm, "%U", format_sticky_hash_session, mp, s); })); /* *INDENT-ON* */ } return 0; } /* *INDENT-OFF* */ VLIB_CLI_COMMAND (show_sticky_hash_command, static) = { .path = "show sticky classify", .short_help = "Display sticky classifier tables", .function = show_ip4_sticky_hash_command_fn, }; /* *INDENT-ON* */ /* * fd.io coding-style-patch-verification: ON * * Local Variables: * eval: (c-set-style "gnu") * End: */