aboutsummaryrefslogtreecommitdiffstats
path: root/src/plugins/avf/output.c
blob: d5e71d528abfedbcbd7f58521f35502d767b2def (plain)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
/*
 *------------------------------------------------------------------
 * Copyright (c) 2018 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 <vlib/vlib.h>
#include <vlib/unix/unix.h>
#include <vlib/pci/pci.h>
#include <vnet/ethernet/ethernet.h>
#include <vnet/devices/devices.h>

#include <avf/avf.h>

#define AVF_TXQ_DESC_CMD(x)             (1 << (x + 4))
#define AVF_TXQ_DESC_CMD_EOP		AVF_TXQ_DESC_CMD(0)
#define AVF_TXQ_DESC_CMD_RS		AVF_TXQ_DESC_CMD(1)
#define AVF_TXQ_DESC_CMD_RSV		AVF_TXQ_DESC_CMD(2)

static_always_inline u8
avf_tx_desc_get_dtyp (avf_tx_desc_t * d)
{
  return d->qword[1] & 0x0f;
}

uword
CLIB_MULTIARCH_FN (avf_interface_tx) (vlib_main_t * vm,
				      vlib_node_runtime_t * node,
				      vlib_frame_t * frame)
{
  avf_main_t *am = &avf_main;
  vnet_interface_output_runtime_t *rd = (void *) node->runtime_data;
  avf_device_t *ad = pool_elt_at_index (am->devices, rd->dev_instance);
  u32 thread_index = vlib_get_thread_index ();
  u8 qid = thread_index;
  avf_txq_t *txq = vec_elt_at_index (ad->txqs, qid % ad->num_queue_pairs);
  avf_tx_desc_t *d0, *d1, *d2, *d3;
  u32 *buffers = vlib_frame_args (frame);
  u32 bi0, bi1, bi2, bi3;
  u16 n_left = frame->n_vectors;
  vlib_buffer_t *b0, *b1, *b2, *b3;
  u16 mask = txq->size - 1;
  u64 bits = (AVF_TXQ_DESC_CMD_EOP | AVF_TXQ_DESC_CMD_RS |
	      AVF_TXQ_DESC_CMD_RSV);

  clib_spinlock_lock_if_init (&txq->lock);

  /* release cosumed bufs */
  if (txq->n_bufs)
    {
      u16 first, slot, n_free = 0;
      first = slot = (txq->next - txq->n_bufs) & mask;
      d0 = txq->descs + slot;
      while (n_free < txq->n_bufs && avf_tx_desc_get_dtyp (d0) == 0x0F)
	{
	  n_free++;
	  slot = (slot + 1) & mask;
	  d0 = txq->descs + slot;
	}

      if (n_free)
	{
	  txq->n_bufs -= n_free;;
	  vlib_buffer_free_from_ring (vm, txq->bufs, first, txq->size,
				      n_free);
	}
    }

  while (n_left >= 7)
    {
      u16 slot0, slot1, slot2, slot3;

      vlib_prefetch_buffer_with_index (vm, buffers[4], LOAD);
      vlib_prefetch_buffer_with_index (vm, buffers[5], LOAD);
      vlib_prefetch_buffer_with_index (vm, buffers[6], LOAD);
      vlib_prefetch_buffer_with_index (vm, buffers[7], LOAD);

      slot0 = txq->next;
      slot1 = (txq->next + 1) & mask;
      slot2 = (txq->next + 2) & mask;
      slot3 = (txq->next + 3) & mask;

      d0 = txq->descs + slot0;
      d1 = txq->descs + slot1;
      d2 = txq->descs + slot2;
      d3 = txq->descs + slot3;

      bi0 = buffers[0];
      bi1 = buffers[1];
      bi2 = buffers[2];
      bi3 = buffers[3];

      txq->bufs[slot0] = bi0;
      txq->bufs[slot1] = bi1;
      txq->bufs[slot2] = bi2;
      txq->bufs[slot3] = bi3;
      b0 = vlib_get_buffer (vm, bi0);
      b1 = vlib_get_buffer (vm, bi1);
      b2 = vlib_get_buffer (vm, bi2);
      b3 = vlib_get_buffer (vm, bi3);

#if 0
      d->qword[0] = vlib_get_buffer_data_physical_address (vm, bi0) +
	b0->current_data;
#else
      d0->qword[0] = pointer_to_uword (b0->data) + b0->current_data;
      d1->qword[0] = pointer_to_uword (b1->data) + b1->current_data;
      d2->qword[0] = pointer_to_uword (b2->data) + b2->current_data;
      d3->qword[0] = pointer_to_uword (b3->data) + b3->current_data;

#endif
      d0->qword[1] = ((u64) b0->current_length) << 34 | bits;
      d1->qword[1] = ((u64) b1->current_length) << 34 | bits;
      d2->qword[1] = ((u64) b2->current_length) << 34 | bits;
      d3->qword[1] = ((u64) b3->current_length) << 34 | bits;

      txq->next = (txq->next + 4) & mask;
      txq->n_bufs += 4;
      buffers += 4;
      n_left -= 4;
    }

  while (n_left)
    {
      d0 = txq->descs + txq->next;
      bi0 = buffers[0];
      txq->bufs[txq->next] = bi0;
      b0 = vlib_get_buffer (vm, bi0);

#if 0
      d->qword[0] = vlib_get_buffer_data_physical_address (vm, bi0) +
	b0->current_data;
#else
      d0->qword[0] = pointer_to_uword (b0->data) + b0->current_data;
#endif
      d0->qword[1] = (((u64) b0->current_length) << 34) | bits;

      txq->next = (txq->next + 1) & mask;
      txq->n_bufs++;
      buffers++;
      n_left--;
    }
  CLIB_MEMORY_BARRIER ();
  *(txq->qtx_tail) = txq->next;

  clib_spinlock_unlock_if_init (&txq->lock);

  return frame->n_vectors - n_left;
}

#ifndef CLIB_MARCH_VARIANT
#if __x86_64__
vlib_node_function_t __clib_weak avf_interface_tx_avx512;
vlib_node_function_t __clib_weak avf_interface_tx_avx2;
static void __clib_constructor
avf_interface_tx_multiarch_select (void)
{
  if (avf_interface_tx_avx512 && clib_cpu_supports_avx512f ())
    avf_device_class.tx_function = avf_interface_tx_avx512;
  else if (avf_interface_tx_avx2 && clib_cpu_supports_avx2 ())
    avf_device_class.tx_function = avf_interface_tx_avx2;
}
#endif
#endif

/*
 * fd.io coding-style-patch-verification: ON
 *
 * Local Variables:
 * eval: (c-set-style "gnu")
 * End:
 */
/span>) { vlib_smp_unsafe_warning(); mfib_table->mft_total_route_counts--; switch (prefix->fp_proto) { case FIB_PROTOCOL_IP4: ip4_mfib_table_entry_remove(&mfib_table->v4, &prefix->fp_grp_addr.ip4, &prefix->fp_src_addr.ip4, prefix->fp_len); break; case FIB_PROTOCOL_IP6: ip6_mfib_table_entry_remove(&mfib_table->v6, &prefix->fp_grp_addr.ip6, &prefix->fp_src_addr.ip6, prefix->fp_len); break; case FIB_PROTOCOL_MPLS: ASSERT(0); break; } mfib_entry_unlock(fib_entry_index); } static void mfib_table_entry_insert (mfib_table_t *mfib_table, const mfib_prefix_t *prefix, fib_node_index_t mfib_entry_index) { vlib_smp_unsafe_warning(); mfib_entry_lock(mfib_entry_index); mfib_table->mft_total_route_counts++; switch (prefix->fp_proto) { case FIB_PROTOCOL_IP4: ip4_mfib_table_entry_insert(&mfib_table->v4, &prefix->fp_grp_addr.ip4, &prefix->fp_src_addr.ip4, prefix->fp_len, mfib_entry_index); break; case FIB_PROTOCOL_IP6: ip6_mfib_table_entry_insert(&mfib_table->v6, &prefix->fp_grp_addr.ip6, &prefix->fp_src_addr.ip6, prefix->fp_len, mfib_entry_index); break; case FIB_PROTOCOL_MPLS: break; } } fib_node_index_t mfib_table_entry_update (u32 fib_index, const mfib_prefix_t *prefix, mfib_source_t source, fib_rpf_id_t rpf_id, mfib_entry_flags_t entry_flags) { fib_node_index_t mfib_entry_index; mfib_table_t *mfib_table; mfib_table = mfib_table_get(fib_index, prefix->fp_proto); mfib_entry_index = mfib_table_lookup_exact_match_i(mfib_table, prefix); if (FIB_NODE_INDEX_INVALID == mfib_entry_index) { if (MFIB_ENTRY_FLAG_NONE != entry_flags) { /* * update to a non-existing entry with non-zero flags */ mfib_entry_index = mfib_entry_create(fib_index, source, prefix, rpf_id, entry_flags); mfib_table_entry_insert(mfib_table, prefix, mfib_entry_index); } /* * else * the entry doesn't exist and the request is to set no flags * the result would be an entry that doesn't exist - so do nothing */ } else { mfib_entry_lock(mfib_entry_index); if (mfib_entry_update(mfib_entry_index, source, entry_flags, rpf_id, INDEX_INVALID)) { /* * this update means we can now remove the entry. */ mfib_table_entry_remove(mfib_table, prefix, mfib_entry_index); } mfib_entry_unlock(mfib_entry_index); } return (mfib_entry_index); } fib_node_index_t mfib_table_entry_path_update (u32 fib_index, const mfib_prefix_t *prefix, mfib_source_t source, const fib_route_path_t *rpath, mfib_itf_flags_t itf_flags) { fib_node_index_t mfib_entry_index; mfib_table_t *mfib_table; mfib_table = mfib_table_get(fib_index, prefix->fp_proto); mfib_entry_index = mfib_table_lookup_exact_match_i(mfib_table, prefix); if (FIB_NODE_INDEX_INVALID == mfib_entry_index) { mfib_entry_index = mfib_entry_create(fib_index, source, prefix, MFIB_RPF_ID_NONE, MFIB_ENTRY_FLAG_NONE); mfib_table_entry_insert(mfib_table, prefix, mfib_entry_index); } mfib_entry_path_update(mfib_entry_index, source, rpath, itf_flags); return (mfib_entry_index); } void mfib_table_entry_path_remove (u32 fib_index, const mfib_prefix_t *prefix, mfib_source_t source, const fib_route_path_t *rpath) { fib_node_index_t mfib_entry_index; mfib_table_t *mfib_table; mfib_table = mfib_table_get(fib_index, prefix->fp_proto); mfib_entry_index = mfib_table_lookup_exact_match_i(mfib_table, prefix); if (FIB_NODE_INDEX_INVALID == mfib_entry_index) { /* * removing an etry that does not exist. i'll allow it. */ } else { int no_more_sources; /* * don't nobody go nowhere */ mfib_entry_lock(mfib_entry_index); no_more_sources = mfib_entry_path_remove(mfib_entry_index, source, rpath); if (no_more_sources) { /* * last source gone. remove from the table */ mfib_table_entry_remove(mfib_table, prefix, mfib_entry_index); } mfib_entry_unlock(mfib_entry_index); } } fib_node_index_t mfib_table_entry_special_add (u32 fib_index, const mfib_prefix_t *prefix, mfib_source_t source, mfib_entry_flags_t entry_flags, index_t rep_dpo) { fib_node_index_t mfib_entry_index; mfib_table_t *mfib_table; mfib_table = mfib_table_get(fib_index, prefix->fp_proto); mfib_entry_index = mfib_table_lookup_exact_match_i(mfib_table, prefix); if (FIB_NODE_INDEX_INVALID == mfib_entry_index) { mfib_entry_index = mfib_entry_create(fib_index, source, prefix, MFIB_RPF_ID_NONE, MFIB_ENTRY_FLAG_NONE); mfib_table_entry_insert(mfib_table, prefix, mfib_entry_index); } mfib_entry_update(mfib_entry_index, source, (MFIB_ENTRY_FLAG_EXCLUSIVE | entry_flags), MFIB_RPF_ID_NONE, rep_dpo); return (mfib_entry_index); } static void mfib_table_entry_delete_i (u32 fib_index, fib_node_index_t mfib_entry_index, const mfib_prefix_t *prefix, mfib_source_t source) { mfib_table_t *mfib_table; mfib_table = mfib_table_get(fib_index, prefix->fp_proto); /* * don't nobody go nowhere */ mfib_entry_lock(mfib_entry_index); if (mfib_entry_delete(mfib_entry_index, source)) { /* * last source gone. remove from the table */ mfib_table_entry_remove(mfib_table, prefix, mfib_entry_index); } /* * else * still has sources, leave it be. */ mfib_entry_unlock(mfib_entry_index); } void mfib_table_entry_delete (u32 fib_index, const mfib_prefix_t *prefix, mfib_source_t source) { fib_node_index_t mfib_entry_index; mfib_entry_index = mfib_table_lookup_exact_match(fib_index, prefix); if (FIB_NODE_INDEX_INVALID == mfib_entry_index) { /* * removing an etry that does not exist. * i'll allow it, but i won't like it. */ clib_warning("%U not in FIB", format_mfib_prefix, prefix); } else { mfib_table_entry_delete_i(fib_index, mfib_entry_index, prefix, source); } } void mfib_table_entry_delete_index (fib_node_index_t mfib_entry_index, mfib_source_t source) { mfib_prefix_t prefix; mfib_entry_get_prefix(mfib_entry_index, &prefix); mfib_table_entry_delete_i(mfib_entry_get_fib_index(mfib_entry_index), mfib_entry_index, &prefix, source); } u32 mfib_table_get_index_for_sw_if_index (fib_protocol_t proto, u32 sw_if_index) { switch (proto) { case FIB_PROTOCOL_IP4: return (ip4_mfib_table_get_index_for_sw_if_index(sw_if_index)); case FIB_PROTOCOL_IP6: return (ip6_mfib_table_get_index_for_sw_if_index(sw_if_index)); case FIB_PROTOCOL_MPLS: ASSERT(0); break; } return (~0); } u32 mfib_table_find (fib_protocol_t proto, u32 table_id) { switch (proto) { case FIB_PROTOCOL_IP4: return (ip4_mfib_index_from_table_id(table_id)); case FIB_PROTOCOL_IP6: return (ip6_mfib_index_from_table_id(table_id)); case FIB_PROTOCOL_MPLS: ASSERT(0); break; } return (~0); } static u32 mfib_table_find_or_create_and_lock_i (fib_protocol_t proto, u32 table_id, mfib_source_t src, const u8 *name) { mfib_table_t *mfib_table; fib_node_index_t fi; switch (proto) { case FIB_PROTOCOL_IP4: fi = ip4_mfib_table_find_or_create_and_lock(table_id, src); break; case FIB_PROTOCOL_IP6: fi = ip6_mfib_table_find_or_create_and_lock(table_id, src); break; case FIB_PROTOCOL_MPLS: default: return (~0); } mfib_table = mfib_table_get(fi, proto); if (NULL == mfib_table->mft_desc) { if (name && name[0]) { mfib_table->mft_desc = format(NULL, "%s", name); } else { mfib_table->mft_desc = format(NULL, "%U-VRF:%d", format_fib_protocol, proto, table_id); } } return (fi); } u32 mfib_table_find_or_create_and_lock (fib_protocol_t proto, u32 table_id, mfib_source_t src) { return (mfib_table_find_or_create_and_lock_i(proto, table_id, src, NULL)); } u32 mfib_table_find_or_create_and_lock_w_name (fib_protocol_t proto, u32 table_id, mfib_source_t src, const u8 *name) { return (mfib_table_find_or_create_and_lock_i(proto, table_id, src, name)); } /** * @brief Table flush context. Store the indicies of matching FIB entries * that need to be removed. */ typedef struct mfib_table_flush_ctx_t_ { /** * The list of entries to flush */ fib_node_index_t *mftf_entries; /** * The source we are flushing */ mfib_source_t mftf_source; } mfib_table_flush_ctx_t; static int mfib_table_flush_cb (fib_node_index_t mfib_entry_index, void *arg) { mfib_table_flush_ctx_t *ctx = arg; if (mfib_entry_is_sourced(mfib_entry_index, ctx->mftf_source)) { vec_add1(ctx->mftf_entries, mfib_entry_index); } return (1); } void mfib_table_flush (u32 mfib_index, fib_protocol_t proto, mfib_source_t source) { fib_node_index_t *mfib_entry_index; mfib_table_flush_ctx_t ctx = { .mftf_entries = NULL, .mftf_source = source, }; mfib_table_walk(mfib_index, proto, mfib_table_flush_cb, &ctx); vec_foreach(mfib_entry_index, ctx.mftf_entries) { mfib_table_entry_delete_index(*mfib_entry_index, source); } vec_free(ctx.mftf_entries); } static void mfib_table_destroy (mfib_table_t *mfib_table) { vec_free(mfib_table->mft_desc); switch (mfib_table->mft_proto) { case FIB_PROTOCOL_IP4: ip4_mfib_table_destroy(&mfib_table->v4); break; case FIB_PROTOCOL_IP6: ip6_mfib_table_destroy(&mfib_table->v6); break; case FIB_PROTOCOL_MPLS: ASSERT(0); break; } } void mfib_table_unlock (u32 fib_index, fib_protocol_t proto, mfib_source_t source) { mfib_table_t *mfib_table; mfib_table = mfib_table_get(fib_index, proto); mfib_table->mft_locks[source]--; mfib_table->mft_locks[MFIB_TABLE_TOTAL_LOCKS]--; if (0 == mfib_table->mft_locks[source]) { /* * The source no longer needs the table. flush any routes * from it just in case */ mfib_table_flush(fib_index, proto, source); } if (0 == mfib_table->mft_locks[MFIB_TABLE_TOTAL_LOCKS]) { /* * no more locak from any source - kill it */ mfib_table_destroy(mfib_table); } } void mfib_table_lock (u32 fib_index, fib_protocol_t proto, mfib_source_t source) { mfib_table_t *mfib_table; mfib_table = mfib_table_get(fib_index, proto); mfib_table->mft_locks[source]++; mfib_table->mft_locks[MFIB_TABLE_TOTAL_LOCKS]++; } void mfib_table_walk (u32 fib_index, fib_protocol_t proto, mfib_table_walk_fn_t fn, void *ctx) { switch (proto) { case FIB_PROTOCOL_IP4: ip4_mfib_table_walk(ip4_mfib_get(fib_index), fn, ctx); break; case FIB_PROTOCOL_IP6: ip6_mfib_table_walk(ip6_mfib_get(fib_index), fn, ctx); break; case FIB_PROTOCOL_MPLS: break; } } u8* format_mfib_table_name (u8* s, va_list *ap) { fib_node_index_t fib_index = va_arg(*ap, fib_node_index_t); fib_protocol_t proto = va_arg(*ap, int); // int promotion mfib_table_t *mfib_table; mfib_table = mfib_table_get(fib_index, proto); s = format(s, "%v", mfib_table->mft_desc); return (s); } u8 * format_mfib_table_memory (u8 *s, va_list *args) { s = format(s, "%U", format_ip4_mfib_table_memory); s = format(s, "%U", format_ip6_mfib_table_memory); return (s); } static clib_error_t * mfib_module_init (vlib_main_t * vm) { clib_error_t * error; mfib_entry_module_init(); mfib_signal_module_init(); if ((error = vlib_call_init_function (vm, fib_module_init))) return (error); if ((error = vlib_call_init_function (vm, rn_module_init))) return (error); return (error); } VLIB_INIT_FUNCTION(mfib_module_init);