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path: root/src/vnet/session/application_worker.c
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/*
 * 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.
 */

#include <vnet/session/application.h>
#include <vnet/session/application_interface.h>
#include <vnet/session/session.h>

/**
 * Pool of workers associated to apps
 */
static app_worker_t *app_workers;

app_worker_t *
app_worker_alloc (application_t * app)
{
  app_worker_t *app_wrk;
  pool_get (app_workers, app_wrk);
  clib_memset (app_wrk, 0, sizeof (*app_wrk));
  app_wrk->wrk_index = app_wrk - app_workers;
  app_wrk->app_index = app->app_index;
  app_wrk->wrk_map_index = ~0;
  app_wrk->connects_seg_manager = APP_INVALID_SEGMENT_MANAGER_INDEX;
  app_wrk->first_segment_manager = APP_INVALID_SEGMENT_MANAGER_INDEX;
  APP_DBG ("New app %v worker %u", app_get_name (app), app_wrk->wrk_index);
  return app_wrk;
}

app_worker_t *
app_worker_get (u32 wrk_index)
{
  return pool_elt_at_index (app_workers, wrk_index);
}

app_worker_t *
app_worker_get_if_valid (u32 wrk_index)
{
  if (pool_is_free_index (app_workers, wrk_index))
    return 0;
  return pool_elt_at_index (app_workers, wrk_index);
}

void
app_worker_free (app_worker_t * app_wrk)
{
  application_t *app = application_get (app_wrk->app_index);
  vnet_unlisten_args_t _a, *a = &_a;
  u64 handle, *handles = 0;
  segment_manager_t *sm;
  u32 sm_index;
  int i;
  app_listener_t *al;
  session_t *ls;

  /*
   *  Listener cleanup
   */

  /* *INDENT-OFF* */
  hash_foreach (handle, sm_index, app_wrk->listeners_table, ({
    ls = listen_session_get_from_handle (handle);
    al = app_listener_get (app, ls->al_index);
    vec_add1 (handles, app_listener_handle (al));
    sm = segment_manager_get (sm_index);
    sm->app_wrk_index = SEGMENT_MANAGER_INVALID_APP_INDEX;
  }));
  /* *INDENT-ON* */

  for (i = 0; i < vec_len (handles); i++)
    {
      a->app_index = app->app_index;
      a->wrk_map_index = app_wrk->wrk_map_index;
      a->handle = handles[i];
      /* seg manager is removed when unbind completes */
      (void) vnet_unlisten (a);
    }

  /*
   * Connects segment manager cleanup
   */

  if (app_wrk->connects_seg_manager != APP_INVALID_SEGMENT_MANAGER_INDEX)
    {
      sm = segment_manager_get (app_wrk->connects_seg_manager);
      sm->app_wrk_index = SEGMENT_MANAGER_INVALID_APP_INDEX;
      sm->first_is_protected = 0;
      segment_manager_init_del (sm);
    }

  /* If first segment manager is used by a listener */
  if (app_wrk->first_segment_manager != APP_INVALID_SEGMENT_MANAGER_INDEX
      && app_wrk->first_segment_manager != app_wrk->connects_seg_manager)
    {
      sm = segment_manager_get (app_wrk->first_segment_manager);
      sm->first_is_protected = 0;
      sm->app_wrk_index = SEGMENT_MANAGER_INVALID_APP_INDEX;
      /* .. and has no fifos, e.g. it might be used for redirected sessions,
       * remove it */
      if (!segment_manager_has_fifos (sm))
	segment_manager_del (sm);
    }

  pool_put (app_workers, app_wrk);
  if (CLIB_DEBUG)
    clib_memset (app_wrk, 0xfe, sizeof (*app_wrk));
}

application_t *
app_worker_get_app (u32 wrk_index)
{
  app_worker_t *app_wrk;
  app_wrk = app_worker_get_if_valid (wrk_index);
  if (!app_wrk)
    return 0;
  return application_get_if_valid (app_wrk->app_index);
}

static segment_manager_t *
app_worker_alloc_segment_manager (app_worker_t * app_wrk)
{
  segment_manager_t *sm = 0;

  /* If the first segment manager is not in use, don't allocate a new one */
  if (app_wrk->first_segment_manager != APP_INVALID_SEGMENT_MANAGER_INDEX
      && app_wrk->first_segment_manager_in_use == 0)
    {
      sm = segment_manager_get (app_wrk->first_segment_manager);
      app_wrk->first_segment_manager_in_use = 1;
      return sm;
    }

  sm = segment_manager_new ();
  sm->app_wrk_index = app_wrk->wrk_index;

  return sm;
}

static int
app_worker_alloc_session_fifos (segment_manager_t * sm, session_t * s)
{
  svm_fifo_t *rx_fifo = 0, *tx_fifo = 0;
  u32 fifo_segment_index;
  int rv;

  if ((rv = segment_manager_alloc_session_fifos (sm, &rx_fifo, &tx_fifo,
						 &fifo_segment_index)))
    return rv;

  rx_fifo->master_session_index = s->session_index;
  rx_fifo->master_thread_index = s->thread_index;

  tx_fifo->master_session_index = s->session_index;
  tx_fifo->master_thread_index = s->thread_index;

  s->rx_fifo = rx_fifo;
  s->tx_fifo = tx_fifo;
  return 0;
}

int
app_worker_init_listener (app_worker_t * app_wrk, session_t * ls)
{
  segment_manager_t *sm;

  /* Allocate segment manager. All sessions derived out of a listen session
   * have fifos allocated by the same segment manager. */
  if (!(sm = app_worker_alloc_segment_manager (app_wrk)))
    return -1;

  /* Keep track of the segment manager for the listener or this worker */
  hash_set (app_wrk->listeners_table, listen_session_get_handle (ls),
	    segment_manager_index (sm));

  if (session_transport_service_type (ls) == TRANSPORT_SERVICE_CL)
    {
      if (!ls->rx_fifo && app_worker_alloc_session_fifos (sm, ls))
	return -1;
    }
  return 0;
}

int
app_worker_start_listen (app_worker_t * app_wrk,
			 app_listener_t * app_listener)
{
  session_t *ls;

  if (clib_bitmap_get (app_listener->workers, app_wrk->wrk_map_index))
    return VNET_API_ERROR_ADDRESS_IN_USE;

  app_listener->workers = clib_bitmap_set (app_listener->workers,
					   app_wrk->wrk_map_index, 1);

  if (app_listener->session_index != SESSION_INVALID_INDEX)
    {
      ls = session_get (app_listener->session_index, 0);
      if (app_worker_init_listener (app_wrk, ls))
	return -1;
    }

  if (app_listener->local_index != SESSION_INVALID_INDEX)
    {
      ls = session_get (app_listener->local_index, 0);
      if (app_worker_init_listener (app_wrk, ls))
	return -1;
    }

  return 0;
}

static void
app_worker_stop_listen_session (app_worker_t * app_wrk, session_t * ls)
{
  session_handle_t handle;
  segment_manager_t *sm;
  uword *sm_indexp;

  handle = listen_session_get_handle (ls);
  sm_indexp = hash_get (app_wrk->listeners_table, handle);
  if (PREDICT_FALSE (!sm_indexp))
    return;

  sm = segment_manager_get (*sm_indexp);
  if (app_wrk->first_segment_manager == *sm_indexp)
    {
      /* Delete sessions but don't remove segment manager */
      app_wrk->first_segment_manager_in_use = 0;
      segment_manager_del_sessions (sm);
    }
  else
    {
      segment_manager_init_del (sm);
    }
  hash_unset (app_wrk->listeners_table, handle);
}

int
app_worker_stop_listen (app_worker_t * app_wrk, app_listener_t * al)
{
  session_t *ls;

  if (!clib_bitmap_get (al->workers, app_wrk->wrk_map_index))
    return 0;

  if (al->session_index != SESSION_INVALID_INDEX)
    {
      ls = listen_session_get (al->session_index);
      app_worker_stop_listen_session (app_wrk, ls);
    }

  if (al->local_index != SESSION_INVALID_INDEX)
    {
      ls = listen_session_get (al->local_index);
      app_worker_stop_listen_session (app_wrk, ls);
    }

  clib_bitmap_set_no_check (al->workers, app_wrk->wrk_map_index, 0);
  if (clib_bitmap_is_zero (al->workers))
    app_listener_cleanup (al);

  return 0;
}

int
app_worker_init_accepted (session_t * s)
{
  app_worker_t *app_wrk;
  segment_manager_t *sm;
  session_t *listener;

  listener = listen_session_get (s->listener_index);
  app_wrk = application_listener_select_worker (listener);
  s->app_wrk_index = app_wrk->wrk_index;

  sm = app_worker_get_listen_segment_manager (app_wrk, listener);
  if (app_worker_alloc_session_fifos (sm, s))
    return -1;

  return 0;
}

int
app_worker_accept_notify (app_worker_t * app_wrk, session_t * s)
{
  application_t *app = application_get (app_wrk->app_index);
  return app->cb_fns.session_accept_callback (s);
}

int
app_worker_init_connected (app_worker_t * app_wrk, session_t * s)
{
  application_t *app = application_get (app_wrk->app_index);
  segment_manager_t *sm;

  /* Allocate fifos for session, unless the app is a builtin proxy */
  if (!application_is_builtin_proxy (app))
    {
      sm = app_worker_get_connect_segment_manager (app_wrk);
      if (app_worker_alloc_session_fifos (sm, s))
	return -1;
    }
  return 0;
}

int
app_worker_connect_notify (app_worker_t * app_wrk, session_t * s, u32 opaque)
{
  application_t *app = application_get (app_wrk->app_index);
  return app->cb_fns.session_connected_callback (app_wrk->wrk_index, opaque,
						 s, s == 0 /* is_fail */ );
}

int
app_worker_own_session (app_worker_t * app_wrk, session_t * s)
{
  segment_manager_t *sm;
  svm_fifo_t *rxf, *txf;

  if (s->session_state == SESSION_STATE_LISTENING)
    return application_change_listener_owner (s, app_wrk);

  s->app_wrk_index = app_wrk->wrk_index;

  rxf = s->rx_fifo;
  txf = s->tx_fifo;

  if (!rxf || !txf)
    return 0;

  s->rx_fifo = 0;
  s->tx_fifo = 0;

  sm = app_worker_get_or_alloc_connect_segment_manager (app_wrk);
  if (app_worker_alloc_session_fifos (sm, s))
    return -1;

  if (!svm_fifo_is_empty (rxf))
    {
      clib_memcpy_fast (s->rx_fifo->data, rxf->data, rxf->nitems);
      s->rx_fifo->head = rxf->head;
      s->rx_fifo->tail = rxf->tail;
      s->rx_fifo->cursize = rxf->cursize;
    }

  if (!svm_fifo_is_empty (txf))
    {
      clib_memcpy_fast (s->tx_fifo->data, txf->data, txf->nitems);
      s->tx_fifo->head = txf->head;
      s->tx_fifo->tail = txf->tail;
      s->tx_fifo->cursize = txf->cursize;
    }

  segment_manager_dealloc_fifos (rxf, txf);

  return 0;
}

int
app_worker_connect_session (app_worker_t * app, session_endpoint_t * sep,
			    u32 api_context)
{
  int rv;

  /* Make sure we have a segment manager for connects */
  app_worker_alloc_connects_segment_manager (app);

  if ((rv = session_open (app->wrk_index, sep, api_context)))
    return rv;

  return 0;
}

int
app_worker_alloc_connects_segment_manager (app_worker_t * app_wrk)
{
  segment_manager_t *sm;

  if (app_wrk->connects_seg_manager == APP_INVALID_SEGMENT_MANAGER_INDEX)
    {
      sm = app_worker_alloc_segment_manager (app_wrk);
      if (sm == 0)
	return -1;
      app_wrk->connects_seg_manager = segment_manager_index (sm);
    }
  return 0;
}

segment_manager_t *
app_worker_get_connect_segment_manager (app_worker_t * app)
{
  ASSERT (app->connects_seg_manager != (u32) ~ 0);
  return segment_manager_get (app->connects_seg_manager);
}

segment_manager_t *
app_worker_get_or_alloc_connect_segment_manager (app_worker_t * app_wrk)
{
  if (app_wrk->connects_seg_manager == (u32) ~ 0)
    app_worker_alloc_connects_segment_manager (app_wrk);
  return segment_manager_get (app_wrk->connects_seg_manager);
}

segment_manager_t *
app_worker_get_listen_segment_manager (app_worker_t * app,
				       session_t * listener)
{
  uword *smp;
  smp = hash_get (app->listeners_table, listen_session_get_handle (listener));
  ASSERT (smp != 0);
  return segment_manager_get (*smp);
}

session_t *
app_worker_first_listener (app_worker_t * app_wrk, u8 fib_proto,
			   u8 transport_proto)
{
  session_t *listener;
  u64 handle;
  u32 sm_index;
  u8 sst;

  sst = session_type_from_proto_and_ip (transport_proto,
					fib_proto == FIB_PROTOCOL_IP4);

  /* *INDENT-OFF* */
   hash_foreach (handle, sm_index, app_wrk->listeners_table, ({
     listener = listen_session_get_from_handle (handle);
     if (listener->session_type == sst
	 && listener->enqueue_epoch != SESSION_PROXY_LISTENER_INDEX)
       return listener;
   }));
  /* *INDENT-ON* */

  return 0;
}

session_t *
app_worker_proxy_listener (app_worker_t * app_wrk, u8 fib_proto,
			   u8 transport_proto)
{
  session_t *listener;
  u64 handle;
  u32 sm_index;
  u8 sst;

  sst = session_type_from_proto_and_ip (transport_proto,
					fib_proto == FIB_PROTOCOL_IP4);

  /* *INDENT-OFF* */
   hash_foreach (handle, sm_index, app_wrk->listeners_table, ({
     listener = listen_session_get_from_handle (handle);
     if (listener->session_type == sst
	 && listener->enqueue_epoch == SESSION_PROXY_LISTENER_INDEX)
       return listener;
   }));
  /* *INDENT-ON* */

  return 0;
}

/**
 * Send an API message to the external app, to map new segment
 */
int
app_worker_add_segment_notify (app_worker_t * app_wrk, u64 segment_handle)
{
  application_t *app = application_get (app_wrk->app_index);
  return app->cb_fns.add_segment_callback (app_wrk->api_client_index,
					   segment_handle);
}

int
app_worker_del_segment_notify (app_worker_t * app_wrk, u64 segment_handle)
{
  application_t *app = application_get (app_wrk->app_index);
  return app->cb_fns.del_segment_callback (app_wrk->api_client_index,
					   segment_handle);
}

static inline u8
app_worker_application_is_builtin (app_worker_t * app_wrk)
{
  return app_wrk->app_is_builtin;
}

static inline int
app_enqueue_evt (svm_msg_q_t * mq, svm_msg_q_msg_t * msg, u8 lock)
{
  if (PREDICT_FALSE (svm_msg_q_is_full (mq)))
    {
      clib_warning ("evt q full");
      svm_msg_q_free_msg (mq, msg);
      if (lock)
	svm_msg_q_unlock (mq);
      return -1;
    }

  if (lock)
    {
      svm_msg_q_add_and_unlock (mq, msg);
      return 0;
    }

  /* Even when not locking the ring, we must wait for queue mutex */
  if (svm_msg_q_add (mq, msg, SVM_Q_WAIT))
    {
      clib_warning ("msg q add returned");
      return -1;
    }
  return 0;
}

static inline int
app_send_io_evt_rx (app_worker_t * app_wrk, session_t * s, u8 lock)
{
  session_event_t *evt;
  svm_msg_q_msg_t msg;
  svm_msg_q_t *mq;

  if (PREDICT_FALSE (s->session_state != SESSION_STATE_READY
		     && s->session_state != SESSION_STATE_LISTENING))
    {
      /* Session is closed so app will never clean up. Flush rx fifo */
      if (s->session_state == SESSION_STATE_CLOSED)
	svm_fifo_dequeue_drop_all (s->rx_fifo);
      return 0;
    }

  if (app_worker_application_is_builtin (app_wrk))
    {
      application_t *app = application_get (app_wrk->app_index);
      return app->cb_fns.builtin_app_rx_callback (s);
    }

  if (svm_fifo_has_event (s->rx_fifo) || svm_fifo_is_empty (s->rx_fifo))
    return 0;

  mq = app_wrk->event_queue;
  if (lock)
    svm_msg_q_lock (mq);

  if (PREDICT_FALSE (svm_msg_q_ring_is_full (mq, SESSION_MQ_IO_EVT_RING)))
    {
      clib_warning ("evt q rings full");
      if (lock)
	svm_msg_q_unlock (mq);
      return -1;
    }

  msg = svm_msg_q_alloc_msg_w_ring (mq, SESSION_MQ_IO_EVT_RING);
  ASSERT (!svm_msg_q_msg_is_invalid (&msg));

  evt = (session_event_t *) svm_msg_q_msg_data (mq, &msg);
  evt->fifo = s->rx_fifo;
  evt->event_type = SESSION_IO_EVT_RX;

  (void) svm_fifo_set_event (s->rx_fifo);

  if (app_enqueue_evt (mq, &msg, lock))
    return -1;
  return 0;
}

static inline int
app_send_io_evt_tx (app_worker_t * app_wrk, session_t * s, u8 lock)
{
  svm_msg_q_t *mq;
  session_event_t *evt;
  svm_msg_q_msg_t msg;

  if (app_worker_application_is_builtin (app_wrk))
    return 0;

  mq = app_wrk->event_queue;
  if (lock)
    svm_msg_q_lock (mq);

  if (PREDICT_FALSE (svm_msg_q_ring_is_full (mq, SESSION_MQ_IO_EVT_RING)))
    {
      clib_warning ("evt q rings full");
      if (lock)
	svm_msg_q_unlock (mq);
      return -1;
    }

  msg = svm_msg_q_alloc_msg_w_ring (mq, SESSION_MQ_IO_EVT_RING);
  ASSERT (!svm_msg_q_msg_is_invalid (&msg));

  evt = (session_event_t *) svm_msg_q_msg_data (mq, &msg);
  evt->event_type = SESSION_IO_EVT_TX;
  evt->fifo = s->tx_fifo;

  return app_enqueue_evt (mq, &msg, lock);
}

/* *INDENT-OFF* */
typedef int (app_send_evt_handler_fn) (app_worker_t *app,
				       session_t *s,
				       u8 lock);
static app_send_evt_handler_fn * const app_send_evt_handler_fns[3] = {
    app_send_io_evt_rx,
    0,
    app_send_io_evt_tx,
};
/* *INDENT-ON* */

/**
 * Send event to application
 *
 * Logic from queue perspective is non-blocking. If there's
 * not enough space to enqueue a message, we return.
 */
int
app_worker_send_event (app_worker_t * app, session_t * s, u8 evt_type)
{
  ASSERT (app && evt_type <= SESSION_IO_EVT_TX);
  return app_send_evt_handler_fns[evt_type] (app, s, 0 /* lock */ );
}

/**
 * Send event to application
 *
 * Logic from queue perspective is blocking. However, if queue is full,
 * we return.
 */
int
app_worker_lock_and_send_event (app_worker_t * app, session_t * s,
				u8 evt_type)
{
  return app_send_evt_handler_fns[evt_type] (app, s, 1 /* lock */ );
}

u8 *
format_app_worker_listener (u8 * s, va_list * args)
{
  app_worker_t *app_wrk = va_arg (*args, app_worker_t *);
  u64 handle = va_arg (*args, u64);
  u32 sm_index = va_arg (*args, u32);
  int verbose = va_arg (*args, int);
  session_t *listener;
  const u8 *app_name;
  u8 *str;

  if (!app_wrk)
    {
      if (verbose)
	s = format (s, "%-40s%-25s%=10s%-15s%-15s%-10s", "Connection", "App",
		    "Wrk", "API Client", "ListenerID", "SegManager");
      else
	s = format (s, "%-40s%-25s%=10s", "Connection", "App", "Wrk");

      return s;
    }

  app_name = application_name_from_index (app_wrk->app_index);
  listener = listen_session_get_from_handle (handle);
  str = format (0, "%U", format_session, listener, verbose);

  if (verbose)
    {
      char buf[32];
      sprintf (buf, "%u(%u)", app_wrk->wrk_map_index, app_wrk->wrk_index);
      s = format (s, "%-40s%-25s%=10s%-15u%-15u%-10u", str, app_name,
		  buf, app_wrk->api_client_index, handle, sm_index);
    }
  else
    s = format (s, "%-40s%-25s%=10u", str, app_name, app_wrk->wrk_map_index);

  return s;
}

u8 *
format_app_worker (u8 * s, va_list * args)
{
  app_worker_t *app_wrk = va_arg (*args, app_worker_t *);
  u32 indent = 1;

  s = format (s, "%U wrk-index %u app-index %u map-index %u "
	      "api-client-index %d\n", format_white_space, indent,
	      app_wrk->wrk_index, app_wrk->app_index, app_wrk->wrk_map_index,
	      app_wrk->api_client_index);
  return s;
}

void
app_worker_format_connects (app_worker_t * app_wrk, int verbose)
{
  svm_fifo_segment_private_t *fifo_segment;
  vlib_main_t *vm = vlib_get_main ();
  segment_manager_t *sm;
  const u8 *app_name;
  u8 *s = 0;

  /* Header */
  if (!app_wrk)
    {
      if (verbose)
	vlib_cli_output (vm, "%-40s%-20s%-15s%-10s", "Connection", "App",
			 "API Client", "SegManager");
      else
	vlib_cli_output (vm, "%-40s%-20s", "Connection", "App");
      return;
    }

  if (app_wrk->connects_seg_manager == (u32) ~ 0)
    return;

  app_name = application_name_from_index (app_wrk->app_index);

  /* Across all fifo segments */
  sm = segment_manager_get (app_wrk->connects_seg_manager);

  /* *INDENT-OFF* */
  segment_manager_foreach_segment_w_lock (fifo_segment, sm, ({
    svm_fifo_t *fifo;
    u8 *str;

    fifo = svm_fifo_segment_get_fifo_list (fifo_segment);
    while (fifo)
      {
        u32 session_index, thread_index;
        session_t *session;

        session_index = fifo->master_session_index;
        thread_index = fifo->master_thread_index;

        session = session_get (session_index, thread_index);
        str = format (0, "%U", format_session, session, verbose);

        if (verbose)
          s = format (s, "%-40s%-20s%-15u%-10u", str, app_name,
                      app_wrk->api_client_index, app_wrk->connects_seg_manager);
        else
          s = format (s, "%-40s%-20s", str, app_name);

        vlib_cli_output (vm, "%v", s);
        vec_reset_length (s);
        vec_free (str);

        fifo = fifo->next;
      }
    vec_free (s);
  }));
  /* *INDENT-ON* */
}

/*
 * fd.io coding-style-patch-verification: ON
 *
 * Local Variables:
 * eval: (c-set-style "gnu")
 * End:
 */
an class="p">, hi->dev_class_index); if (!dev_class->redistribute) helper_flags &= ~VNET_INTERFACE_SET_FLAGS_HELPER_WANT_REDISTRIBUTE; } /* set the flags now before invoking the registered clients * so that the state they query is consistent with the state here notified */ old_flags = si->flags; si->flags &= ~mask; si->flags |= flags; if ((flags | old_flags) & VNET_SW_INTERFACE_FLAG_ADMIN_UP) error = call_elf_section_interface_callbacks (vnm, sw_if_index, flags, vnm->sw_interface_admin_up_down_functions); if (error) { /* restore flags on error */ si->flags = old_flags; goto done; } if (si->type == VNET_SW_INTERFACE_TYPE_HARDWARE) { vnet_hw_interface_t *hi = vnet_get_hw_interface (vnm, si->hw_if_index); vnet_hw_interface_class_t *hw_class = vnet_get_hw_interface_class (vnm, hi->hw_class_index); vnet_device_class_t *dev_class = vnet_get_device_class (vnm, hi->dev_class_index); if ((flags & VNET_SW_INTERFACE_FLAG_ADMIN_UP) && (si->flags & VNET_SW_INTERFACE_FLAG_ERROR)) { error = clib_error_return (0, "Interface in the error state"); goto done; } /* update si admin up flag in advance if we are going admin down */ if (!(flags & VNET_SW_INTERFACE_FLAG_ADMIN_UP)) si->flags &= ~VNET_SW_INTERFACE_FLAG_ADMIN_UP; if (dev_class->admin_up_down_function && (error = dev_class->admin_up_down_function (vnm, si->hw_if_index, flags))) { /* restore si admin up flag to it's original state on errors */ si->flags = old_flags; goto done; } if (hw_class->admin_up_down_function && (error = hw_class->admin_up_down_function (vnm, si->hw_if_index, flags))) { /* restore si admin up flag to it's original state on errors */ si->flags = old_flags; goto done; } /* Admin down implies link down. */ if (!(flags & VNET_SW_INTERFACE_FLAG_ADMIN_UP) && (hi->flags & VNET_HW_INTERFACE_FLAG_LINK_UP)) vnet_hw_interface_set_flags_helper (vnm, si->hw_if_index, hi->flags & ~VNET_HW_INTERFACE_FLAG_LINK_UP, helper_flags); vnet_hw_if_update_runtime_data (vnm, si->hw_if_index); } } si->flags &= ~mask; si->flags |= flags; done: if (error) log_err ("sw_set_flags_helper: %U", format_clib_error, error); return error; } clib_error_t * vnet_hw_interface_set_flags (vnet_main_t * vnm, u32 hw_if_index, vnet_hw_interface_flags_t flags) { log_debug ("hw_set_flags: hw_if_index %u flags 0x%x", hw_if_index, flags); return vnet_hw_interface_set_flags_helper (vnm, hw_if_index, flags, VNET_INTERFACE_SET_FLAGS_HELPER_WANT_REDISTRIBUTE); } clib_error_t * vnet_sw_interface_set_flags (vnet_main_t * vnm, u32 sw_if_index, vnet_sw_interface_flags_t flags) { log_debug ("sw_set_flags: sw_if_index %u flags 0x%x", sw_if_index, flags); return vnet_sw_interface_set_flags_helper (vnm, sw_if_index, flags, VNET_INTERFACE_SET_FLAGS_HELPER_WANT_REDISTRIBUTE); } void vnet_sw_interface_admin_up (vnet_main_t * vnm, u32 sw_if_index) { u32 flags = vnet_sw_interface_get_flags (vnm, sw_if_index); log_debug ("sw_admin_up: sw_if_index %u", sw_if_index); if (!(flags & VNET_SW_INTERFACE_FLAG_ADMIN_UP)) { flags |= VNET_SW_INTERFACE_FLAG_ADMIN_UP; vnet_sw_interface_set_flags (vnm, sw_if_index, flags); } } void vnet_sw_interface_admin_down (vnet_main_t * vnm, u32 sw_if_index) { u32 flags = vnet_sw_interface_get_flags (vnm, sw_if_index); log_debug ("sw_admin_down: sw_if_index %u", sw_if_index); if (flags & VNET_SW_INTERFACE_FLAG_ADMIN_UP) { flags &= ~(VNET_SW_INTERFACE_FLAG_ADMIN_UP); vnet_sw_interface_set_flags (vnm, sw_if_index, flags); } } static void vnet_if_update_lookup_tables (vnet_main_t *vnm, u32 sw_if_index) { vnet_interface_main_t *im = &vnm->interface_main; vnet_hw_interface_t *hi = vnet_get_sup_hw_interface (vnm, sw_if_index); vec_validate_init_empty (im->hw_if_index_by_sw_if_index, sw_if_index, ~0); vec_validate_init_empty (im->if_out_arc_end_next_index_by_sw_if_index, sw_if_index, ~0); im->hw_if_index_by_sw_if_index[sw_if_index] = hi->hw_if_index; im->if_out_arc_end_next_index_by_sw_if_index[sw_if_index] = hi->if_out_arc_end_node_next_index; } static u32 vnet_create_sw_interface_no_callbacks (vnet_main_t * vnm, vnet_sw_interface_t * template) { vnet_interface_main_t *im = &vnm->interface_main; vnet_sw_interface_t *sw; u32 sw_if_index; pool_get (im->sw_interfaces, sw); sw_if_index = sw - im->sw_interfaces; sw[0] = template[0]; sw->flags = 0; sw->sw_if_index = sw_if_index; if (sw->type == VNET_SW_INTERFACE_TYPE_HARDWARE) sw->sup_sw_if_index = sw->sw_if_index; /* Allocate counters for this interface. */ { u32 i; vnet_interface_counter_lock (im); for (i = 0; i < vec_len (im->sw_if_counters); i++) { vlib_validate_simple_counter (&im->sw_if_counters[i], sw_if_index); vlib_zero_simple_counter (&im->sw_if_counters[i], sw_if_index); } for (i = 0; i < vec_len (im->combined_sw_if_counters); i++) { vlib_validate_combined_counter (&im->combined_sw_if_counters[i], sw_if_index); vlib_zero_combined_counter (&im->combined_sw_if_counters[i], sw_if_index); } vnet_interface_counter_unlock (im); } vnet_if_update_lookup_tables (vnm, sw_if_index); return sw_if_index; } clib_error_t * vnet_create_sw_interface (vnet_main_t * vnm, vnet_sw_interface_t * template, u32 * sw_if_index) { vnet_interface_main_t *im = &vnm->interface_main; clib_error_t *error; vnet_hw_interface_t *hi; vnet_device_class_t *dev_class; if (template->sub.eth.flags.two_tags == 1 && template->sub.eth.flags.exact_match == 1 && (template->sub.eth.flags.inner_vlan_id_any == 1 || template->sub.eth.flags.outer_vlan_id_any == 1)) { char *str = "inner-dot1q any exact-match is unsupported"; error = clib_error_return (0, str); log_err ("create_sw_interface: %s", str); return error; } hi = vnet_get_sup_hw_interface (vnm, template->sup_sw_if_index); dev_class = vnet_get_device_class (vnm, hi->dev_class_index); if (template->type == VNET_SW_INTERFACE_TYPE_SUB && dev_class->subif_add_del_function) { error = dev_class->subif_add_del_function (vnm, hi->hw_if_index, (struct vnet_sw_interface_t *) template, 1); if (error) return error; } *sw_if_index = vnet_create_sw_interface_no_callbacks (vnm, template); error = vnet_sw_interface_set_flags_helper (vnm, *sw_if_index, template->flags, VNET_INTERFACE_SET_FLAGS_HELPER_IS_CREATE); if (error) { /* undo the work done by vnet_create_sw_interface_no_callbacks() */ log_err ("create_sw_interface: set flags failed\n %U", format_clib_error, error); vnet_sw_interface_t *sw = pool_elt_at_index (im->sw_interfaces, *sw_if_index); pool_put (im->sw_interfaces, sw); } else { vnet_sw_interface_t *sw = pool_elt_at_index (im->sw_interfaces, *sw_if_index); log_debug ("create_sw_interface: interface %U (sw_if_index %u) created", format_vnet_sw_interface_name, vnm, sw, *sw_if_index); } return error; } void vnet_delete_sw_interface (vnet_main_t * vnm, u32 sw_if_index) { vnet_interface_main_t *im = &vnm->interface_main; vnet_sw_interface_t *sw = pool_elt_at_index (im->sw_interfaces, sw_if_index); log_debug ("delete_sw_interface: sw_if_index %u, name '%U'", sw_if_index, format_vnet_sw_if_index_name, vnm, sw_if_index); /* Check if the interface has config and is removed from L2 BD or XConnect */ vnet_clear_sw_interface_tag (vnm, sw_if_index); /* Bring down interface in case it is up. */ if (sw->flags != 0) vnet_sw_interface_set_flags (vnm, sw_if_index, /* flags */ 0); call_sw_interface_add_del_callbacks (vnm, sw_if_index, /* is_create */ 0); pool_put (im->sw_interfaces, sw); } static clib_error_t * call_sw_interface_mtu_change_callbacks (vnet_main_t * vnm, u32 sw_if_index) { return call_elf_section_interface_callbacks (vnm, sw_if_index, 0, vnm->sw_interface_mtu_change_functions); } void vnet_sw_interface_set_mtu (vnet_main_t * vnm, u32 sw_if_index, u32 mtu) { vnet_sw_interface_t *si = vnet_get_sw_interface (vnm, sw_if_index); if (si->mtu[VNET_MTU_L3] != mtu) { si->mtu[VNET_MTU_L3] = mtu; log_debug ("set_mtu: interface %U, new mtu %u", format_vnet_sw_if_index_name, vnm, sw_if_index, mtu); call_sw_interface_mtu_change_callbacks (vnm, sw_if_index); } } void vnet_sw_interface_set_protocol_mtu (vnet_main_t * vnm, u32 sw_if_index, u32 mtu[]) { vnet_sw_interface_t *si = vnet_get_sw_interface (vnm, sw_if_index); bool changed = false; int i; for (i = 0; i < VNET_N_MTU; i++) { if (si->mtu[i] != mtu[i]) { si->mtu[i] = mtu[i]; changed = true; } } /* Notify interested parties */ if (changed) { log_debug ("set_protocol_mtu: interface %U l3 %u ip4 %u ip6 %u mpls %u", format_vnet_sw_if_index_name, vnm, sw_if_index, mtu[VNET_MTU_L3], mtu[VNET_MTU_IP4], mtu[VNET_MTU_IP6], mtu[VNET_MTU_MPLS]); call_sw_interface_mtu_change_callbacks (vnm, sw_if_index); } } void vnet_sw_interface_ip_directed_broadcast (vnet_main_t * vnm, u32 sw_if_index, u8 enable) { vnet_sw_interface_t *si; si = vnet_get_sw_interface (vnm, sw_if_index); if (enable) si->flags |= VNET_SW_INTERFACE_FLAG_DIRECTED_BCAST; else si->flags &= ~VNET_SW_INTERFACE_FLAG_DIRECTED_BCAST; ip4_directed_broadcast (sw_if_index, enable); } /* * Reflect a change in hardware MTU on protocol MTUs */ static walk_rc_t sw_interface_walk_callback (vnet_main_t * vnm, u32 sw_if_index, void *ctx) { u32 *link_mtu = ctx; vnet_sw_interface_set_mtu (vnm, sw_if_index, *link_mtu); return WALK_CONTINUE; } void vnet_hw_interface_set_mtu (vnet_main_t * vnm, u32 hw_if_index, u32 mtu) { vnet_hw_interface_t *hi = vnet_get_hw_interface (vnm, hw_if_index); if (hi->max_packet_bytes != mtu) { hi->max_packet_bytes = mtu; ethernet_set_flags (vnm, hw_if_index, ETHERNET_INTERFACE_FLAG_MTU); vnet_hw_interface_walk_sw (vnm, hw_if_index, sw_interface_walk_callback, &mtu); } } static void setup_tx_node (vlib_main_t * vm, u32 node_index, vnet_device_class_t * dev_class) { vlib_node_t *n = vlib_get_node (vm, node_index); n->format_trace = dev_class->format_tx_trace; vlib_register_errors (vm, node_index, dev_class->tx_function_n_errors, dev_class->tx_function_error_strings, dev_class->tx_function_error_counters); } static void setup_output_node (vlib_main_t * vm, u32 node_index, vnet_hw_interface_class_t * hw_class) { vlib_node_t *n = vlib_get_node (vm, node_index); n->format_buffer = hw_class->format_header; n->unformat_buffer = hw_class->unformat_header; } void vnet_reset_interface_l3_output_node (vlib_main_t *vm, u32 sw_if_index) { vnet_set_interface_l3_output_node (vm, sw_if_index, (u8 *) "interface-output"); } void vnet_set_interface_l3_output_node (vlib_main_t *vm, u32 sw_if_index, u8 *output_node) { vlib_node_t *l3_node; l3_node = vlib_get_node_by_name (vm, output_node); static char *arcs[] = { "ip4-output", "ip6-output", "mpls-output", "ethernet-output", }; u8 a; for (a = 0; a < ARRAY_LEN (arcs); a++) { u8 arc = vnet_get_feature_arc_index (arcs[a]); vnet_feature_modify_end_node (arc, sw_if_index, l3_node->index); } } /* Register an interface instance. */ u32 vnet_register_interface (vnet_main_t * vnm, u32 dev_class_index, u32 dev_instance, u32 hw_class_index, u32 hw_instance) { vnet_interface_main_t *im = &vnm->interface_main; vnet_hw_interface_t *hw; vnet_device_class_t *dev_class = vnet_get_device_class (vnm, dev_class_index); vnet_hw_interface_class_t *hw_class = vnet_get_hw_interface_class (vnm, hw_class_index); vlib_main_t *vm = vnm->vlib_main; vnet_feature_config_main_t *fcm; vnet_config_main_t *cm; u32 hw_index, i; char *tx_node_name = NULL, *output_node_name = NULL; vlib_node_t *if_out_node = vlib_get_node (vm, vnet_interface_output_node.index); pool_get (im->hw_interfaces, hw); clib_memset (hw, 0, sizeof (*hw)); hw->trace_classify_table_index = ~0; hw_index = hw - im->hw_interfaces; hw->hw_if_index = hw_index; hw->default_rx_mode = VNET_HW_IF_RX_MODE_POLLING; if (hw_class->tx_hash_fn_type == VNET_HASH_FN_TYPE_ETHERNET || hw_class->tx_hash_fn_type == VNET_HASH_FN_TYPE_IP) hw->hf = vnet_hash_default_function (hw_class->tx_hash_fn_type); if (dev_class->format_device_name) hw->name = format (0, "%U", dev_class->format_device_name, dev_instance); else if (hw_class->format_interface_name) hw->name = format (0, "%U", hw_class->format_interface_name, dev_instance); else hw->name = format (0, "%s%x", hw_class->name, dev_instance); if (!im->hw_interface_by_name) im->hw_interface_by_name = hash_create_vec ( /* size */ 0, sizeof (hw->name[0]), sizeof (uword)); hash_set_mem (im->hw_interface_by_name, hw->name, hw_index); /* Make hardware interface point to software interface. */ { vnet_sw_interface_t sw = { .type = VNET_SW_INTERFACE_TYPE_HARDWARE, .flood_class = VNET_FLOOD_CLASS_NORMAL, .hw_if_index = hw_index }; hw->sw_if_index = vnet_create_sw_interface_no_callbacks (vnm, &sw); } hw->dev_class_index = dev_class_index; hw->dev_instance = dev_instance; hw->hw_class_index = hw_class_index; hw->hw_instance = hw_instance; hw->max_rate_bits_per_sec = 0; hw->min_packet_bytes = 0; vnet_sw_interface_set_mtu (vnm, hw->sw_if_index, 0); if (dev_class->tx_function == 0 && dev_class->tx_fn_registrations == 0) goto no_output_nodes; /* No output/tx nodes to create */ tx_node_name = (char *) format (0, "%v-tx", hw->name); output_node_name = (char *) format (0, "%v-output", hw->name); /* If we have previously deleted interface nodes, re-use them. */ if (vec_len (im->deleted_hw_interface_nodes) > 0) { vnet_hw_interface_nodes_t *hn; vlib_node_t *node; vlib_node_runtime_t *nrt; hn = vec_end (im->deleted_hw_interface_nodes) - 1; hw->tx_node_index = hn->tx_node_index; hw->output_node_index = hn->output_node_index; vlib_node_rename (vm, hw->tx_node_index, "%v", tx_node_name); vlib_node_rename (vm, hw->output_node_index, "%v", output_node_name); foreach_vlib_main () { vnet_interface_output_runtime_t *rt; rt = vlib_node_get_runtime_data (this_vlib_main, hw->output_node_index); ASSERT (rt->is_deleted == 1); rt->is_deleted = 0; rt->hw_if_index = hw_index; rt->sw_if_index = hw->sw_if_index; rt->dev_instance = hw->dev_instance; rt = vlib_node_get_runtime_data (this_vlib_main, hw->tx_node_index); rt->hw_if_index = hw_index; rt->sw_if_index = hw->sw_if_index; rt->dev_instance = hw->dev_instance; } /* The new class may differ from the old one. * Functions have to be updated. */ node = vlib_get_node (vm, hw->output_node_index); node->format_trace = format_vnet_interface_output_trace; node->node_fn_registrations = if_out_node->node_fn_registrations; node->function = if_out_node->function; foreach_vlib_main () { nrt = vlib_node_get_runtime (this_vlib_main, hw->output_node_index); nrt->function = node->function; vlib_node_runtime_perf_counter (this_vlib_main, nrt, 0, 0, 0, VLIB_NODE_RUNTIME_PERF_RESET); } node = vlib_get_node (vm, hw->tx_node_index); if (dev_class->tx_fn_registrations) { node->node_fn_registrations = dev_class->tx_fn_registrations; node->function = vlib_node_get_preferred_node_fn_variant ( vm, dev_class->tx_fn_registrations); } else node->function = dev_class->tx_function; node->format_trace = dev_class->format_tx_trace; foreach_vlib_main () { nrt = vlib_node_get_runtime (this_vlib_main, hw->tx_node_index); nrt->function = node->function; vlib_node_runtime_perf_counter (this_vlib_main, nrt, 0, 0, 0, VLIB_NODE_RUNTIME_PERF_RESET); } _vec_len (im->deleted_hw_interface_nodes) -= 1; } else { vlib_node_registration_t r; vnet_interface_output_runtime_t rt = { .hw_if_index = hw_index, .sw_if_index = hw->sw_if_index, .dev_instance = hw->dev_instance, .is_deleted = 0, }; clib_memset (&r, 0, sizeof (r)); r.type = VLIB_NODE_TYPE_INTERNAL; r.runtime_data = &rt; r.runtime_data_bytes = sizeof (rt); r.scalar_size = sizeof (vnet_hw_if_tx_frame_t); r.vector_size = sizeof (u32); r.flags = VLIB_NODE_FLAG_IS_OUTPUT; r.name = tx_node_name; if (dev_class->tx_fn_registrations) { r.function = 0; r.node_fn_registrations = dev_class->tx_fn_registrations; } else r.function = dev_class->tx_function; hw->tx_node_index = vlib_register_node (vm, &r); vlib_node_add_named_next_with_slot (vm, hw->tx_node_index, "error-drop", VNET_INTERFACE_TX_NEXT_DROP); r.flags = 0; r.name = output_node_name; r.format_trace = format_vnet_interface_output_trace; if (if_out_node->node_fn_registrations) { r.function = 0; r.node_fn_registrations = if_out_node->node_fn_registrations; } else r.function = if_out_node->function; { static char *e[] = { "interface is down", "interface is deleted", "no tx queue available", }; r.n_errors = ARRAY_LEN (e); r.error_strings = e; } hw->output_node_index = vlib_register_node (vm, &r); vlib_node_add_named_next_with_slot (vm, hw->output_node_index, "error-drop", VNET_INTERFACE_OUTPUT_NEXT_DROP); vlib_node_add_next_with_slot (vm, hw->output_node_index, hw->tx_node_index, VNET_INTERFACE_OUTPUT_NEXT_TX); /* add interface to the list of "output-interface" feature arc start nodes and clone nexts from 1st interface if it exists */ fcm = vnet_feature_get_config_main (im->output_feature_arc_index); cm = &fcm->config_main; i = vec_len (cm->start_node_indices); vec_validate (cm->start_node_indices, i); cm->start_node_indices[i] = hw->output_node_index; if (hw_index) { /* copy nexts from 1st interface */ vnet_hw_interface_t *first_hw; vlib_node_t *first_node; first_hw = vnet_get_hw_interface (vnm, /* hw_if_index */ 0); first_node = vlib_get_node (vm, first_hw->output_node_index); /* 1st 2 nexts are already added above */ for (i = 2; i < vec_len (first_node->next_nodes); i++) vlib_node_add_next_with_slot (vm, hw->output_node_index, first_node->next_nodes[i], i); } } hw->if_out_arc_end_node_next_index = vlib_node_add_next ( vm, vnet_interface_output_arc_end_node.index, hw->tx_node_index); vnet_if_update_lookup_tables (vnm, hw->sw_if_index); setup_output_node (vm, hw->output_node_index, hw_class); setup_tx_node (vm, hw->tx_node_index, dev_class); no_output_nodes: /* Call all up/down callbacks with zero flags when interface is created. */ vnet_sw_interface_set_flags_helper (vnm, hw->sw_if_index, /* flags */ 0, VNET_INTERFACE_SET_FLAGS_HELPER_IS_CREATE); vnet_hw_interface_set_flags_helper (vnm, hw_index, /* flags */ 0, VNET_INTERFACE_SET_FLAGS_HELPER_IS_CREATE); vec_free (tx_node_name); vec_free (output_node_name); return hw_index; } void vnet_delete_hw_interface (vnet_main_t * vnm, u32 hw_if_index) { vnet_interface_main_t *im = &vnm->interface_main; vnet_hw_interface_t *hw = vnet_get_hw_interface (vnm, hw_if_index); vlib_main_t *vm = vnm->vlib_main; vnet_device_class_t *dev_class = vnet_get_device_class (vnm, hw->dev_class_index); /* If it is up, mark it down. */ if (hw->flags != 0) vnet_hw_interface_set_flags (vnm, hw_if_index, /* flags */ 0); /* Call delete callbacks. */ call_hw_interface_add_del_callbacks (vnm, hw_if_index, /* is_create */ 0); /* delete rx & tx queues */ vnet_hw_if_unregister_all_rx_queues (vnm, hw_if_index); vnet_hw_if_unregister_all_tx_queues (vnm, hw_if_index); vnet_hw_if_update_runtime_data (vnm, hw_if_index); /* Delete any sub-interfaces. */ { u32 id, sw_if_index; /* *INDENT-OFF* */ hash_foreach (id, sw_if_index, hw->sub_interface_sw_if_index_by_id, ({ vnet_sw_interface_t *si = vnet_get_sw_interface (vnm, sw_if_index); u64 sup_and_sub_key = ((u64) (si->sup_sw_if_index) << 32) | (u64) si->sub.id; hash_unset_mem_free (&im->sw_if_index_by_sup_and_sub, &sup_and_sub_key); vnet_delete_sw_interface (vnm, sw_if_index); })); hash_free (hw->sub_interface_sw_if_index_by_id); /* *INDENT-ON* */ } /* Delete software interface corresponding to hardware interface. */ vnet_delete_sw_interface (vnm, hw->sw_if_index); if (dev_class->tx_function) { /* Put output/tx nodes into recycle pool */ vnet_hw_interface_nodes_t *dn; foreach_vlib_main () { vnet_interface_output_runtime_t *rt = vlib_node_get_runtime_data (this_vlib_main, hw->output_node_index); /* Mark node runtime as deleted so output node (if called) * will drop packets. */ rt->is_deleted = 1; } vlib_node_rename (vm, hw->output_node_index, "interface-%d-output-deleted", hw_if_index); vlib_node_rename (vm, hw->tx_node_index, "interface-%d-tx-deleted", hw_if_index); vec_add2 (im->deleted_hw_interface_nodes, dn, 1); dn->tx_node_index = hw->tx_node_index; dn->output_node_index = hw->output_node_index; } hash_unset_mem (im->hw_interface_by_name, hw->name); vec_free (hw->name); vec_free (hw->hw_address); vec_free (hw->output_node_thread_runtimes); pool_put (im->hw_interfaces, hw); } void vnet_hw_interface_walk_sw (vnet_main_t * vnm, u32 hw_if_index, vnet_hw_sw_interface_walk_t fn, void *ctx) { vnet_hw_interface_t *hi; u32 id, sw_if_index; hi = vnet_get_hw_interface (vnm, hw_if_index); /* the super first, then the sub interfaces */ if (WALK_STOP == fn (vnm, hi->sw_if_index, ctx)) return; /* *INDENT-OFF* */ hash_foreach (id, sw_if_index, hi->sub_interface_sw_if_index_by_id, ({ if (WALK_STOP == fn (vnm, sw_if_index, ctx)) break; })); /* *INDENT-ON* */ } void vnet_hw_interface_walk (vnet_main_t * vnm, vnet_hw_interface_walk_t fn, void *ctx) { vnet_interface_main_t *im; vnet_hw_interface_t *hi; im = &vnm->interface_main; /* *INDENT-OFF* */ pool_foreach (hi, im->hw_interfaces) { if (WALK_STOP == fn(vnm, hi->hw_if_index, ctx)) break; } /* *INDENT-ON* */ } void vnet_sw_interface_walk (vnet_main_t * vnm, vnet_sw_interface_walk_t fn, void *ctx) { vnet_interface_main_t *im; vnet_sw_interface_t *si; im = &vnm->interface_main; /* *INDENT-OFF* */ pool_foreach (si, im->sw_interfaces) { if (WALK_STOP == fn (vnm, si, ctx)) break; } /* *INDENT-ON* */ } void vnet_hw_interface_init_for_class (vnet_main_t * vnm, u32 hw_if_index, u32 hw_class_index, u32 hw_instance) { vnet_hw_interface_t *hi = vnet_get_hw_interface (vnm, hw_if_index); vnet_hw_interface_class_t *hc = vnet_get_hw_interface_class (vnm, hw_class_index); hi->hw_class_index = hw_class_index; hi->hw_instance = hw_instance; setup_output_node (vnm->vlib_main, hi->output_node_index, hc); } static clib_error_t * vnet_hw_interface_set_class_helper (vnet_main_t * vnm, u32 hw_if_index, u32 hw_class_index, u32 redistribute) { vnet_hw_interface_t *hi = vnet_get_hw_interface (vnm, hw_if_index); vnet_sw_interface_t *si = vnet_get_sw_interface (vnm, hi->sw_if_index); vnet_hw_interface_class_t *old_class = vnet_get_hw_interface_class (vnm, hi->hw_class_index); vnet_hw_interface_class_t *new_class = vnet_get_hw_interface_class (vnm, hw_class_index); vnet_device_class_t *dev_class = vnet_get_device_class (vnm, hi->dev_class_index); clib_error_t *error = 0; /* New class equals old class? Nothing to do. */ if (hi->hw_class_index == hw_class_index) return 0; /* No need (and incorrect since admin up flag may be set) to do error checking when receiving unserialize message. */ if (redistribute) { if (si->flags & VNET_SW_INTERFACE_FLAG_ADMIN_UP) return clib_error_return (0, "%v must be admin down to change class from %s to %s", hi->name, old_class->name, new_class->name); /* Make sure interface supports given class. */ if ((new_class->is_valid_class_for_interface && !new_class->is_valid_class_for_interface (vnm, hw_if_index, hw_class_index)) || (dev_class->is_valid_class_for_interface && !dev_class->is_valid_class_for_interface (vnm, hw_if_index, hw_class_index))) return clib_error_return (0, "%v class cannot be changed from %s to %s", hi->name, old_class->name, new_class->name); } if (old_class->hw_class_change) old_class->hw_class_change (vnm, hw_if_index, old_class->index, new_class->index); vnet_hw_interface_init_for_class (vnm, hw_if_index, new_class->index, /* instance */ ~0); if (new_class->hw_class_change) new_class->hw_class_change (vnm, hw_if_index, old_class->index, new_class->index); if (dev_class->hw_class_change) dev_class->hw_class_change (vnm, hw_if_index, new_class->index); return error; } clib_error_t * vnet_hw_interface_set_class (vnet_main_t * vnm, u32 hw_if_index, u32 hw_class_index) { return vnet_hw_interface_set_class_helper (vnm, hw_if_index, hw_class_index, /* redistribute */ 1); } static int vnet_hw_interface_rx_redirect_to_node_helper (vnet_main_t * vnm, u32 hw_if_index, u32 node_index, u32 redistribute) { vnet_hw_interface_t *hi = vnet_get_hw_interface (vnm, hw_if_index); vnet_device_class_t *dev_class = vnet_get_device_class (vnm, hi->dev_class_index); if (dev_class->rx_redirect_to_node) { dev_class->rx_redirect_to_node (vnm, hw_if_index, node_index); return 0; } return VNET_API_ERROR_UNIMPLEMENTED; } int vnet_hw_interface_rx_redirect_to_node (vnet_main_t * vnm, u32 hw_if_index, u32 node_index) { return vnet_hw_interface_rx_redirect_to_node_helper (vnm, hw_if_index, node_index, 1 /* redistribute */ ); } word vnet_sw_interface_compare (vnet_main_t * vnm, uword sw_if_index0, uword sw_if_index1) { vnet_sw_interface_t *sup0 = vnet_get_sup_sw_interface (vnm, sw_if_index0); vnet_sw_interface_t *sup1 = vnet_get_sup_sw_interface (vnm, sw_if_index1); vnet_hw_interface_t *h0 = vnet_get_hw_interface (vnm, sup0->hw_if_index); vnet_hw_interface_t *h1 = vnet_get_hw_interface (vnm, sup1->hw_if_index); if (h0 != h1) return vec_cmp (h0->name, h1->name); return (word) h0->hw_instance - (word) h1->hw_instance; } word vnet_hw_interface_compare (vnet_main_t * vnm, uword hw_if_index0, uword hw_if_index1) { vnet_hw_interface_t *h0 = vnet_get_hw_interface (vnm, hw_if_index0); vnet_hw_interface_t *h1 = vnet_get_hw_interface (vnm, hw_if_index1); if (h0 != h1) return vec_cmp (h0->name, h1->name); return (word) h0->hw_instance - (word) h1->hw_instance; } int vnet_sw_interface_is_p2p (vnet_main_t * vnm, u32 sw_if_index) { vnet_sw_interface_t *si = vnet_get_sw_interface (vnm, sw_if_index); if ((si->type == VNET_SW_INTERFACE_TYPE_P2P) || (si->type == VNET_SW_INTERFACE_TYPE_PIPE)) return 1; vnet_hw_interface_t *hw = vnet_get_sup_hw_interface (vnm, sw_if_index); vnet_hw_interface_class_t *hc = vnet_get_hw_interface_class (vnm, hw->hw_class_index); return (hc->flags & VNET_HW_INTERFACE_CLASS_FLAG_P2P); } int vnet_sw_interface_is_nbma (vnet_main_t * vnm, u32 sw_if_index) { vnet_hw_interface_t *hw = vnet_get_sup_hw_interface (vnm, sw_if_index); vnet_hw_interface_class_t *hc = vnet_get_hw_interface_class (vnm, hw->hw_class_index); return (hc->flags & VNET_HW_INTERFACE_CLASS_FLAG_NBMA); } clib_error_t * vnet_sw_interface_supports_addressing (vnet_main_t *vnm, u32 sw_if_index) { if (sw_if_index == 0) { return clib_error_create ( "local0 interface doesn't support IP addressing"); } if (vnet_sw_interface_is_sub (vnm, sw_if_index)) { vnet_sw_interface_t *si; si = vnet_get_sw_interface_or_null (vnm, sw_if_index); if (si && si->type == VNET_SW_INTERFACE_TYPE_SUB && si->sub.eth.flags.exact_match == 0) { return clib_error_create ( "sub-interface without exact-match doesn't support IP addressing"); } } return NULL; } clib_error_t * vnet_interface_init (vlib_main_t * vm) { vnet_main_t *vnm = vnet_get_main (); vnet_interface_main_t *im = &vnm->interface_main; vlib_buffer_t *b = 0; vnet_buffer_opaque_t *o = 0; clib_error_t *error; /* * Keep people from shooting themselves in the foot. */ if (sizeof (b->opaque) != sizeof (vnet_buffer_opaque_t)) { #define _(a) if (sizeof(o->a) > sizeof (o->unused)) \ clib_warning \ ("FATAL: size of opaque union subtype %s is %d (max %d)", \ #a, sizeof(o->a), sizeof (o->unused)); foreach_buffer_opaque_union_subtype; #undef _ return clib_error_return (0, "FATAL: size of vlib buffer opaque %d, size of vnet opaque %d", sizeof (b->opaque), sizeof (vnet_buffer_opaque_t)); } clib_spinlock_init (&im->sw_if_counter_lock); clib_spinlock_lock (&im->sw_if_counter_lock); /* should be no need */ vec_validate (im->sw_if_counters, VNET_N_SIMPLE_INTERFACE_COUNTER - 1); #define _(E,n,p) \ im->sw_if_counters[VNET_INTERFACE_COUNTER_##E].name = #n; \ im->sw_if_counters[VNET_INTERFACE_COUNTER_##E].stat_segment_name = "/" #p "/" #n; foreach_simple_interface_counter_name #undef _ vec_validate (im->combined_sw_if_counters, VNET_N_COMBINED_INTERFACE_COUNTER - 1); #define _(E,n,p) \ im->combined_sw_if_counters[VNET_INTERFACE_COUNTER_##E].name = #n; \ im->combined_sw_if_counters[VNET_INTERFACE_COUNTER_##E].stat_segment_name = "/" #p "/" #n; foreach_combined_interface_counter_name #undef _ clib_spinlock_unlock (&im->sw_if_counter_lock); im->device_class_by_name = hash_create_string ( /* size */ 0, sizeof (uword)); { vnet_device_class_t *c; c = vnm->device_class_registrations; while (c) { c->index = vec_len (im->device_classes); hash_set_mem (im->device_class_by_name, c->name, c->index); /* to avoid confusion, please remove ".tx_function" statement from VNET_DEVICE_CLASS() if using function candidates */ ASSERT (c->tx_fn_registrations == 0 || c->tx_function == 0); if (c->tx_fn_registrations) c->tx_function = vlib_node_get_preferred_node_fn_variant ( vm, c->tx_fn_registrations); vec_add1 (im->device_classes, c[0]); c = c->next_class_registration; } } im->hw_interface_class_by_name = hash_create_string ( /* size */ 0, sizeof (uword)); im->rxq_index_by_hw_if_index_and_queue_id = hash_create_mem (0, sizeof (u64), sizeof (u32)); im->txq_index_by_hw_if_index_and_queue_id = hash_create_mem (0, sizeof (u64), sizeof (u32)); im->sw_if_index_by_sup_and_sub = hash_create_mem (0, sizeof (u64), sizeof (uword)); { vnet_hw_interface_class_t *c; c = vnm->hw_interface_class_registrations; while (c) { c->index = vec_len (im->hw_interface_classes); hash_set_mem (im->hw_interface_class_by_name, c->name, c->index); if (NULL == c->build_rewrite) c->build_rewrite = default_build_rewrite; if (NULL == c->update_adjacency) c->update_adjacency = default_update_adjacency; vec_add1 (im->hw_interface_classes, c[0]); c = c->next_class_registration; } } /* init per-thread data */ vec_validate_aligned (im->per_thread_data, vlib_num_workers (), CLIB_CACHE_LINE_BYTES); if ((error = vlib_call_init_function (vm, vnet_interface_cli_init))) return error; vnm->interface_tag_by_sw_if_index = hash_create (0, sizeof (uword)); return 0; } VLIB_INIT_FUNCTION (vnet_interface_init); /* Kludge to renumber interface names [only!] */ int vnet_interface_name_renumber (u32 sw_if_index, u32 new_show_dev_instance) { int rv; vnet_main_t *vnm = vnet_get_main (); vnet_interface_main_t *im = &vnm->interface_main; vnet_hw_interface_t *hi = vnet_get_sup_hw_interface (vnm, sw_if_index); vnet_device_class_t *dev_class = vnet_get_device_class (vnm, hi->dev_class_index); if (dev_class->name_renumber == 0 || dev_class->format_device_name == 0) return VNET_API_ERROR_UNIMPLEMENTED; rv = dev_class->name_renumber (hi, new_show_dev_instance); if (rv) return rv; hash_unset_mem (im->hw_interface_by_name, hi->name); vec_free (hi->name); /* Use the mapping we set up to call it Ishmael */ hi->name = format (0, "%U", dev_class->format_device_name, hi->dev_instance); hash_set_mem (im->hw_interface_by_name, hi->name, hi->hw_if_index); return rv; } clib_error_t * vnet_rename_interface (vnet_main_t * vnm, u32 hw_if_index, char *new_name) { vnet_interface_main_t *im = &vnm->interface_main; vlib_main_t *vm = vnm->vlib_main; vnet_hw_interface_t *hw; u8 *old_name; clib_error_t *error = 0; hw = vnet_get_hw_interface (vnm, hw_if_index); if (!hw) { return clib_error_return (0, "unable to find hw interface for index %u", hw_if_index); } old_name = hw->name; /* set new hw->name */ hw->name = format (0, "%s", new_name); /* remove the old name to hw_if_index mapping and install the new one */ hash_unset_mem (im->hw_interface_by_name, old_name); hash_set_mem (im->hw_interface_by_name, hw->name, hw_if_index); /* rename tx/output nodes */ vlib_node_rename (vm, hw->tx_node_index, "%v-tx", hw->name); vlib_node_rename (vm, hw->output_node_index, "%v-output", hw->name); /* free the old name vector */ vec_free (old_name); return error; } clib_error_t * vnet_hw_interface_add_del_mac_address (vnet_main_t * vnm, u32 hw_if_index, const u8 * mac_address, u8 is_add) { clib_error_t *error = 0; vnet_hw_interface_t *hi = vnet_get_hw_interface (vnm, hw_if_index); vnet_device_class_t *dev_class = vnet_get_device_class (vnm, hi->dev_class_index); if (!hi->hw_address) { error = clib_error_return (0, "Secondary MAC Addresses not supported for interface index %u", hw_if_index); goto done; } if (dev_class->mac_addr_add_del_function) error = dev_class->mac_addr_add_del_function (hi, mac_address, is_add); if (!error) { vnet_hw_interface_class_t *hw_class; hw_class = vnet_get_hw_interface_class (vnm, hi->hw_class_index); if (NULL != hw_class->mac_addr_add_del_function) error = hw_class->mac_addr_add_del_function (hi, mac_address, is_add); } /* If no errors, add to the list of secondary MACs on the ethernet intf */ if (!error) ethernet_interface_add_del_address (&ethernet_main, hw_if_index, mac_address, is_add); done: if (error) log_err ("hw_add_del_mac_address: %U", format_clib_error, error); return error; } static clib_error_t * vnet_hw_interface_change_mac_address_helper (vnet_main_t * vnm, u32 hw_if_index, const u8 * mac_address) { clib_error_t *error = 0; vnet_hw_interface_t *hi = vnet_get_hw_interface (vnm, hw_if_index); if (hi->hw_address) { u8 *old_address = vec_dup (hi->hw_address); vnet_device_class_t *dev_class = vnet_get_device_class (vnm, hi->dev_class_index); if (dev_class->mac_addr_change_function) { error = dev_class->mac_addr_change_function (hi, old_address, mac_address); } if (!error) { vnet_hw_interface_class_t *hw_class; hw_class = vnet_get_hw_interface_class (vnm, hi->hw_class_index); if (NULL != hw_class->mac_addr_change_function) hw_class->mac_addr_change_function (hi, old_address, mac_address); } else { error = clib_error_return (0, "MAC Address Change is not supported on this interface"); } vec_free (old_address); } else { error = clib_error_return (0, "mac address change is not supported for interface index %u", hw_if_index); } return error; } clib_error_t * vnet_hw_interface_change_mac_address (vnet_main_t * vnm, u32 hw_if_index, const u8 * mac_address) { return vnet_hw_interface_change_mac_address_helper (vnm, hw_if_index, mac_address); } static int vnet_sw_interface_check_table_same (u32 unnumbered_sw_if_index, u32 ip_sw_if_index) { if (ip4_main.fib_index_by_sw_if_index[unnumbered_sw_if_index] != ip4_main.fib_index_by_sw_if_index[ip_sw_if_index]) return VNET_API_ERROR_UNEXPECTED_INTF_STATE; if (ip4_main.mfib_index_by_sw_if_index[unnumbered_sw_if_index] != ip4_main.mfib_index_by_sw_if_index[ip_sw_if_index]) return VNET_API_ERROR_UNEXPECTED_INTF_STATE; if (ip6_main.fib_index_by_sw_if_index[unnumbered_sw_if_index] != ip6_main.fib_index_by_sw_if_index[ip_sw_if_index]) return VNET_API_ERROR_UNEXPECTED_INTF_STATE; if (ip6_main.mfib_index_by_sw_if_index[unnumbered_sw_if_index] != ip6_main.mfib_index_by_sw_if_index[ip_sw_if_index]) return VNET_API_ERROR_UNEXPECTED_INTF_STATE; return 0; } /* update the unnumbered state of an interface*/ int vnet_sw_interface_update_unnumbered (u32 unnumbered_sw_if_index, u32 ip_sw_if_index, u8 enable) { vnet_main_t *vnm = vnet_get_main (); vnet_sw_interface_t *si; u32 was_unnum; int rv = 0; si = vnet_get_sw_interface (vnm, unnumbered_sw_if_index); was_unnum = (si->flags & VNET_SW_INTERFACE_FLAG_UNNUMBERED); if (enable) { rv = vnet_sw_interface_check_table_same (unnumbered_sw_if_index, ip_sw_if_index); if (rv != 0) return rv; si->flags |= VNET_SW_INTERFACE_FLAG_UNNUMBERED; si->unnumbered_sw_if_index = ip_sw_if_index; ip4_main.lookup_main.if_address_pool_index_by_sw_if_index [unnumbered_sw_if_index] = ip4_main. lookup_main.if_address_pool_index_by_sw_if_index[ip_sw_if_index]; ip6_main. lookup_main.if_address_pool_index_by_sw_if_index [unnumbered_sw_if_index] = ip6_main. lookup_main.if_address_pool_index_by_sw_if_index[ip_sw_if_index]; } else { /* * Unless the interface is actually unnumbered, don't * smash e.g. if_address_pool_index_by_sw_if_index */ if (si->flags & VNET_SW_INTERFACE_FLAG_UNNUMBERED) { si->flags &= ~(VNET_SW_INTERFACE_FLAG_UNNUMBERED); si->unnumbered_sw_if_index = (u32) ~0; ip4_main.lookup_main .if_address_pool_index_by_sw_if_index[unnumbered_sw_if_index] = ~0; ip6_main.lookup_main .if_address_pool_index_by_sw_if_index[unnumbered_sw_if_index] = ~0; } } if (was_unnum != (si->flags & VNET_SW_INTERFACE_FLAG_UNNUMBERED)) { ip4_sw_interface_enable_disable (unnumbered_sw_if_index, enable); ip6_sw_interface_enable_disable (unnumbered_sw_if_index, enable); } return 0; } vnet_l3_packet_type_t vnet_link_to_l3_proto (vnet_link_t link) { switch (link) { case VNET_LINK_IP4: return (VNET_L3_PACKET_TYPE_IP4); case VNET_LINK_IP6: return (VNET_L3_PACKET_TYPE_IP6); case VNET_LINK_MPLS: return (VNET_L3_PACKET_TYPE_MPLS); case VNET_LINK_ARP: return (VNET_L3_PACKET_TYPE_ARP); case VNET_LINK_ETHERNET: case VNET_LINK_NSH: ASSERT (0); break; } ASSERT (0); return (0); } vnet_mtu_t vnet_link_to_mtu (vnet_link_t link) { switch (link) { case VNET_LINK_IP4: return (VNET_MTU_IP4); case VNET_LINK_IP6: return (VNET_MTU_IP6); case VNET_LINK_MPLS: return (VNET_MTU_MPLS); default: return (VNET_MTU_L3); } } u8 * default_build_rewrite (vnet_main_t * vnm, u32 sw_if_index, vnet_link_t link_type, const void *dst_address) { return (NULL); } void default_update_adjacency (vnet_main_t * vnm, u32 sw_if_index, u32 ai) { ip_adjacency_t *adj; adj = adj_get (ai); switch (adj->lookup_next_index) { case IP_LOOKUP_NEXT_GLEAN: adj_glean_update_rewrite (ai); break; case IP_LOOKUP_NEXT_ARP: case IP_LOOKUP_NEXT_BCAST: /* * default rewrite in neighbour adj */ adj_nbr_update_rewrite (ai, ADJ_NBR_REWRITE_FLAG_COMPLETE, vnet_build_rewrite_for_sw_interface (vnm, sw_if_index, adj_get_link_type (ai), NULL)); break; case IP_LOOKUP_NEXT_MCAST: /* * mcast traffic also uses default rewrite string with no mcast * switch time updates. */ adj_mcast_update_rewrite (ai, vnet_build_rewrite_for_sw_interface (vnm, sw_if_index, adj_get_link_type (ai), NULL), 0); break; case IP_LOOKUP_NEXT_DROP: case IP_LOOKUP_NEXT_PUNT: case IP_LOOKUP_NEXT_LOCAL: case IP_LOOKUP_NEXT_REWRITE: case IP_LOOKUP_NEXT_MCAST_MIDCHAIN: case IP_LOOKUP_NEXT_MIDCHAIN: case IP_LOOKUP_NEXT_ICMP_ERROR: case IP_LOOKUP_N_NEXT: ASSERT (0); break; } } clib_error_t * vnet_hw_interface_set_rss_queues (vnet_main_t * vnm, vnet_hw_interface_t * hi, clib_bitmap_t * bitmap) { clib_error_t *error = 0; vnet_device_class_t *dev_class = vnet_get_device_class (vnm, hi->dev_class_index); if (dev_class->set_rss_queues_function) { if (clib_bitmap_count_set_bits (bitmap) == 0) { error = clib_error_return (0, "must assign at least one valid rss queue"); goto done; } error = dev_class->set_rss_queues_function (vnm, hi, bitmap); } else { error = clib_error_return (0, "setting rss queues is not supported on this interface"); } if (!error) { clib_bitmap_free (hi->rss_queues); hi->rss_queues = clib_bitmap_dup (bitmap); } done: if (error) log_err ("hw_set_rss_queues: %U", format_clib_error, error); return error; } int collect_detailed_interface_stats_flag = 0; void collect_detailed_interface_stats_flag_set (void) { collect_detailed_interface_stats_flag = 1; } void collect_detailed_interface_stats_flag_clear (void) { collect_detailed_interface_stats_flag = 0; } static clib_error_t * collect_detailed_interface_stats_cli (vlib_main_t * vm, unformat_input_t * input, vlib_cli_command_t * cmd) { unformat_input_t _line_input, *line_input = &_line_input; clib_error_t *error = NULL; /* Get a line of input. */ if (!unformat_user (input, unformat_line_input, line_input)) return clib_error_return (0, "expected enable | disable"); while (unformat_check_input (line_input) != UNFORMAT_END_OF_INPUT) { if (unformat (line_input, "enable") || unformat (line_input, "on")) collect_detailed_interface_stats_flag_set (); else if (unformat (line_input, "disable") || unformat (line_input, "off")) collect_detailed_interface_stats_flag_clear (); else { error = clib_error_return (0, "unknown input `%U'", format_unformat_error, line_input); goto done; } } done: unformat_free (line_input); return error; } /* *INDENT-OFF* */ VLIB_CLI_COMMAND (collect_detailed_interface_stats_command, static) = { .path = "interface collect detailed-stats", .short_help = "interface collect detailed-stats <enable|disable>", .function = collect_detailed_interface_stats_cli, }; /* *INDENT-ON* */ /* * fd.io coding-style-patch-verification: ON * * Local Variables: * eval: (c-set-style "gnu") * End: */