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72865317 1/*
ff073a71 2 * Copyright (c) 2009, 2010, 2011, 2012, 2013, 2014 Nicira, Inc.
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3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at:
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17#include <config.h>
db73f716 18#include "dpif-netdev.h"
72865317 19
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20#include <ctype.h>
21#include <errno.h>
22#include <fcntl.h>
23#include <inttypes.h>
72865317 24#include <netinet/in.h>
9d82ec47 25#include <sys/socket.h>
7f3adc00 26#include <net/if.h>
cdee00fd 27#include <stdint.h>
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28#include <stdlib.h>
29#include <string.h>
30#include <sys/ioctl.h>
31#include <sys/stat.h>
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32#include <unistd.h>
33
59e6d833 34#include "cmap.h"
72865317 35#include "csum.h"
e14deea0 36#include "dp-packet.h"
614c4892 37#include "dpif.h"
72865317 38#include "dpif-provider.h"
614c4892 39#include "dummy.h"
36956a7d 40#include "dynamic-string.h"
afae68b1 41#include "fat-rwlock.h"
72865317 42#include "flow.h"
9f361d6b 43#include "cmap.h"
6c3eee82 44#include "latch.h"
72865317 45#include "list.h"
0de8783a 46#include "match.h"
8c301900 47#include "meta-flow.h"
72865317 48#include "netdev.h"
8617afff 49#include "netdev-dpdk.h"
de281153 50#include "netdev-vport.h"
cdee00fd 51#include "netlink.h"
f094af7b 52#include "odp-execute.h"
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53#include "odp-util.h"
54#include "ofp-print.h"
55#include "ofpbuf.h"
5a034064 56#include "ovs-numa.h"
61e7deb1 57#include "ovs-rcu.h"
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58#include "packets.h"
59#include "poll-loop.h"
0de8783a 60#include "pvector.h"
26c6b6cd 61#include "random.h"
d33ed218 62#include "seq.h"
462278db 63#include "shash.h"
0cbfe35d 64#include "sset.h"
72865317 65#include "timeval.h"
a36de779 66#include "tnl-arp-cache.h"
74cc3969 67#include "unixctl.h"
72865317 68#include "util.h"
e6211adc 69#include "openvswitch/vlog.h"
5136ce49 70
d98e6007 71VLOG_DEFINE_THIS_MODULE(dpif_netdev);
72865317 72
8bb113da 73#define FLOW_DUMP_MAX_BATCH 50
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74/* Use per thread recirc_depth to prevent recirculation loop. */
75#define MAX_RECIRC_DEPTH 5
76DEFINE_STATIC_PER_THREAD_DATA(uint32_t, recirc_depth, 0)
e4cfed38 77
72865317 78/* Configuration parameters. */
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79enum { MAX_FLOWS = 65536 }; /* Maximum number of flows in flow table. */
80
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81/* Protects against changes to 'dp_netdevs'. */
82static struct ovs_mutex dp_netdev_mutex = OVS_MUTEX_INITIALIZER;
83
84/* Contains all 'struct dp_netdev's. */
85static struct shash dp_netdevs OVS_GUARDED_BY(dp_netdev_mutex)
86 = SHASH_INITIALIZER(&dp_netdevs);
87
623540e4 88static struct vlog_rate_limit upcall_rl = VLOG_RATE_LIMIT_INIT(600, 600);
6b31e073 89
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90static struct odp_support dp_netdev_support = {
91 .max_mpls_depth = SIZE_MAX,
92 .recirc = true,
93};
94
79df317f 95/* Stores a miniflow with inline values */
9bbf1c3d 96
9bbf1c3d 97struct netdev_flow_key {
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98 uint32_t hash; /* Hash function differs for different users. */
99 uint32_t len; /* Length of the following miniflow (incl. map). */
0de8783a 100 struct miniflow mf;
8fd47924 101 uint64_t buf[FLOW_MAX_PACKET_U64S];
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102};
103
104/* Exact match cache for frequently used flows
105 *
106 * The cache uses a 32-bit hash of the packet (which can be the RSS hash) to
107 * search its entries for a miniflow that matches exactly the miniflow of the
0de8783a 108 * packet. It stores the 'dpcls_rule' (rule) that matches the miniflow.
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109 *
110 * A cache entry holds a reference to its 'dp_netdev_flow'.
111 *
112 * A miniflow with a given hash can be in one of EM_FLOW_HASH_SEGS different
113 * entries. The 32-bit hash is split into EM_FLOW_HASH_SEGS values (each of
114 * them is EM_FLOW_HASH_SHIFT bits wide and the remainder is thrown away). Each
115 * value is the index of a cache entry where the miniflow could be.
116 *
117 *
118 * Thread-safety
119 * =============
120 *
121 * Each pmd_thread has its own private exact match cache.
122 * If dp_netdev_input is not called from a pmd thread, a mutex is used.
123 */
124
fc82e877 125#define EM_FLOW_HASH_SHIFT 13
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126#define EM_FLOW_HASH_ENTRIES (1u << EM_FLOW_HASH_SHIFT)
127#define EM_FLOW_HASH_MASK (EM_FLOW_HASH_ENTRIES - 1)
128#define EM_FLOW_HASH_SEGS 2
129
130struct emc_entry {
9bbf1c3d 131 struct dp_netdev_flow *flow;
0de8783a 132 struct netdev_flow_key key; /* key.hash used for emc hash value. */
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133};
134
135struct emc_cache {
136 struct emc_entry entries[EM_FLOW_HASH_ENTRIES];
67ad54cb 137 int sweep_idx; /* For emc_cache_slow_sweep(). */
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138};
139
140/* Iterate in the exact match cache through every entry that might contain a
141 * miniflow with hash 'HASH'. */
142#define EMC_FOR_EACH_POS_WITH_HASH(EMC, CURRENT_ENTRY, HASH) \
143 for (uint32_t i__ = 0, srch_hash__ = (HASH); \
144 (CURRENT_ENTRY) = &(EMC)->entries[srch_hash__ & EM_FLOW_HASH_MASK], \
145 i__ < EM_FLOW_HASH_SEGS; \
146 i__++, srch_hash__ >>= EM_FLOW_HASH_SHIFT)
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147\f
148/* Simple non-wildcarding single-priority classifier. */
149
150struct dpcls {
151 struct cmap subtables_map;
152 struct pvector subtables;
153};
9bbf1c3d 154
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155/* A rule to be inserted to the classifier. */
156struct dpcls_rule {
157 struct cmap_node cmap_node; /* Within struct dpcls_subtable 'rules'. */
158 struct netdev_flow_key *mask; /* Subtable's mask. */
159 struct netdev_flow_key flow; /* Matching key. */
160 /* 'flow' must be the last field, additional space is allocated here. */
161};
162
163static void dpcls_init(struct dpcls *);
164static void dpcls_destroy(struct dpcls *);
165static void dpcls_insert(struct dpcls *, struct dpcls_rule *,
166 const struct netdev_flow_key *mask);
167static void dpcls_remove(struct dpcls *, struct dpcls_rule *);
168static bool dpcls_lookup(const struct dpcls *cls,
169 const struct netdev_flow_key keys[],
170 struct dpcls_rule **rules, size_t cnt);
171\f
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172/* Datapath based on the network device interface from netdev.h.
173 *
174 *
175 * Thread-safety
176 * =============
177 *
178 * Some members, marked 'const', are immutable. Accessing other members
179 * requires synchronization, as noted in more detail below.
180 *
181 * Acquisition order is, from outermost to innermost:
182 *
183 * dp_netdev_mutex (global)
59e6d833 184 * port_mutex
8a4e3a85 185 */
72865317 186struct dp_netdev {
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187 const struct dpif_class *const class;
188 const char *const name;
6b31e073 189 struct dpif *dpif;
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190 struct ovs_refcount ref_cnt;
191 atomic_flag destroyed;
72865317 192
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193 /* Ports.
194 *
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195 * Protected by RCU. Take the mutex to add or remove ports. */
196 struct ovs_mutex port_mutex;
197 struct cmap ports;
d33ed218 198 struct seq *port_seq; /* Incremented whenever a port changes. */
6c3eee82 199
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200 /* Protects access to ofproto-dpif-upcall interface during revalidator
201 * thread synchronization. */
202 struct fat_rwlock upcall_rwlock;
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203 upcall_callback *upcall_cb; /* Callback function for executing upcalls. */
204 void *upcall_aux;
6b31e073 205
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206 /* Stores all 'struct dp_netdev_pmd_thread's. */
207 struct cmap poll_threads;
208
209 /* Protects the access of the 'struct dp_netdev_pmd_thread'
210 * instance for non-pmd thread. */
211 struct ovs_mutex non_pmd_mutex;
212
213 /* Each pmd thread will store its pointer to
214 * 'struct dp_netdev_pmd_thread' in 'per_pmd_key'. */
215 ovsthread_key_t per_pmd_key;
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216
217 /* Number of rx queues for each dpdk interface and the cpu mask
218 * for pin of pmd threads. */
219 size_t n_dpdk_rxqs;
220 char *pmd_cmask;
a36de779 221 uint64_t last_tnl_conf_seq;
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222};
223
8a4e3a85 224static struct dp_netdev_port *dp_netdev_lookup_port(const struct dp_netdev *dp,
59e6d833 225 odp_port_t);
ff073a71 226
51852a57 227enum dp_stat_type {
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228 DP_STAT_EXACT_HIT, /* Packets that had an exact match (emc). */
229 DP_STAT_MASKED_HIT, /* Packets that matched in the flow table. */
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230 DP_STAT_MISS, /* Packets that did not match. */
231 DP_STAT_LOST, /* Packets not passed up to the client. */
232 DP_N_STATS
233};
234
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235enum pmd_cycles_counter_type {
236 PMD_CYCLES_POLLING, /* Cycles spent polling NICs. */
237 PMD_CYCLES_PROCESSING, /* Cycles spent processing packets */
238 PMD_N_CYCLES
239};
240
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241/* A port in a netdev-based datapath. */
242struct dp_netdev_port {
35303d71 243 odp_port_t port_no;
72865317 244 struct netdev *netdev;
efa2bcbb 245 struct cmap_node node; /* Node in dp_netdev's 'ports'. */
4b609110 246 struct netdev_saved_flags *sf;
55c955bd 247 struct netdev_rxq **rxq;
b284085e 248 struct ovs_refcount ref_cnt;
0cbfe35d 249 char *type; /* Port type as requested by user. */
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250};
251
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252/* Contained by struct dp_netdev_flow's 'stats' member. */
253struct dp_netdev_flow_stats {
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254 atomic_llong used; /* Last used time, in monotonic msecs. */
255 atomic_ullong packet_count; /* Number of packets matched. */
256 atomic_ullong byte_count; /* Number of bytes matched. */
257 atomic_uint16_t tcp_flags; /* Bitwise-OR of seen tcp_flags values. */
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258};
259
260/* A flow in 'dp_netdev_pmd_thread's 'flow_table'.
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261 *
262 *
263 * Thread-safety
264 * =============
265 *
266 * Except near the beginning or ending of its lifespan, rule 'rule' belongs to
1c1e46ed 267 * its pmd thread's classifier. The text below calls this classifier 'cls'.
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268 *
269 * Motivation
270 * ----------
271 *
272 * The thread safety rules described here for "struct dp_netdev_flow" are
273 * motivated by two goals:
274 *
275 * - Prevent threads that read members of "struct dp_netdev_flow" from
276 * reading bad data due to changes by some thread concurrently modifying
277 * those members.
278 *
279 * - Prevent two threads making changes to members of a given "struct
280 * dp_netdev_flow" from interfering with each other.
281 *
282 *
283 * Rules
284 * -----
285 *
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286 * A flow 'flow' may be accessed without a risk of being freed during an RCU
287 * grace period. Code that needs to hold onto a flow for a while
288 * should try incrementing 'flow->ref_cnt' with dp_netdev_flow_ref().
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289 *
290 * 'flow->ref_cnt' protects 'flow' from being freed. It doesn't protect the
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291 * flow from being deleted from 'cls' and it doesn't protect members of 'flow'
292 * from modification.
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293 *
294 * Some members, marked 'const', are immutable. Accessing other members
295 * requires synchronization, as noted in more detail below.
296 */
72865317 297struct dp_netdev_flow {
11e5cf1f 298 const struct flow flow; /* Unmasked flow that created this entry. */
8a4e3a85 299 /* Hash table index by unmasked flow. */
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300 const struct cmap_node node; /* In owning dp_netdev_pmd_thread's */
301 /* 'flow_table'. */
70e5ed6f 302 const ovs_u128 ufid; /* Unique flow identifier. */
bd5131ba 303 const unsigned pmd_id; /* The 'core_id' of pmd thread owning this */
1c1e46ed 304 /* flow. */
72865317 305
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306 /* Number of references.
307 * The classifier owns one reference.
308 * Any thread trying to keep a rule from being freed should hold its own
309 * reference. */
310 struct ovs_refcount ref_cnt;
311
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312 bool dead;
313
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314 /* Statistics. */
315 struct dp_netdev_flow_stats stats;
8a4e3a85 316
45c626a3 317 /* Actions. */
61e7deb1 318 OVSRCU_TYPE(struct dp_netdev_actions *) actions;
0de8783a 319
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320 /* While processing a group of input packets, the datapath uses the next
321 * member to store a pointer to the output batch for the flow. It is
322 * reset after the batch has been sent out (See dp_netdev_queue_batches(),
323 * packet_batch_init() and packet_batch_execute()). */
324 struct packet_batch *batch;
325
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326 /* Packet classification. */
327 struct dpcls_rule cr; /* In owning dp_netdev's 'cls'. */
328 /* 'cr' must be the last member. */
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329};
330
ed79f89a 331static void dp_netdev_flow_unref(struct dp_netdev_flow *);
9bbf1c3d 332static bool dp_netdev_flow_ref(struct dp_netdev_flow *);
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333static int dpif_netdev_flow_from_nlattrs(const struct nlattr *, uint32_t,
334 struct flow *);
8a4e3a85 335
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336/* A set of datapath actions within a "struct dp_netdev_flow".
337 *
338 *
339 * Thread-safety
340 * =============
341 *
45c626a3 342 * A struct dp_netdev_actions 'actions' is protected with RCU. */
a84cb64a 343struct dp_netdev_actions {
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344 /* These members are immutable: they do not change during the struct's
345 * lifetime. */
a84cb64a 346 unsigned int size; /* Size of 'actions', in bytes. */
9ff55ae2 347 struct nlattr actions[]; /* Sequence of OVS_ACTION_ATTR_* attributes. */
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348};
349
350struct dp_netdev_actions *dp_netdev_actions_create(const struct nlattr *,
351 size_t);
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352struct dp_netdev_actions *dp_netdev_flow_get_actions(
353 const struct dp_netdev_flow *);
354static void dp_netdev_actions_free(struct dp_netdev_actions *);
a84cb64a 355
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356/* Contained by struct dp_netdev_pmd_thread's 'stats' member. */
357struct dp_netdev_pmd_stats {
358 /* Indexed by DP_STAT_*. */
eb94da30 359 atomic_ullong n[DP_N_STATS];
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360};
361
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362/* Contained by struct dp_netdev_pmd_thread's 'cycle' member. */
363struct dp_netdev_pmd_cycles {
364 /* Indexed by PMD_CYCLES_*. */
365 atomic_ullong n[PMD_N_CYCLES];
366};
367
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368/* PMD: Poll modes drivers. PMD accesses devices via polling to eliminate
369 * the performance overhead of interrupt processing. Therefore netdev can
370 * not implement rx-wait for these devices. dpif-netdev needs to poll
371 * these device to check for recv buffer. pmd-thread does polling for
1c1e46ed 372 * devices assigned to itself.
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373 *
374 * DPDK used PMD for accessing NIC.
375 *
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376 * Note, instance with cpu core id NON_PMD_CORE_ID will be reserved for
377 * I/O of all non-pmd threads. There will be no actual thread created
378 * for the instance.
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379 *
380 * Each struct has its own flow table and classifier. Packets received
381 * from managed ports are looked up in the corresponding pmd thread's
382 * flow table, and are executed with the found actions.
383 * */
65f13b50 384struct dp_netdev_pmd_thread {
6c3eee82 385 struct dp_netdev *dp;
1c1e46ed 386 struct ovs_refcount ref_cnt; /* Every reference must be refcount'ed. */
65f13b50 387 struct cmap_node node; /* In 'dp->poll_threads'. */
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388
389 pthread_cond_t cond; /* For synchronizing pmd thread reload. */
390 struct ovs_mutex cond_mutex; /* Mutex for condition variable. */
391
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392 /* Per thread exact-match cache. Note, the instance for cpu core
393 * NON_PMD_CORE_ID can be accessed by multiple threads, and thusly
394 * need to be protected (e.g. by 'dp_netdev_mutex'). All other
395 * instances will only be accessed by its own pmd thread. */
9bbf1c3d 396 struct emc_cache flow_cache;
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397
398 /* Classifier and Flow-Table.
399 *
400 * Writers of 'flow_table' must take the 'flow_mutex'. Corresponding
401 * changes to 'cls' must be made while still holding the 'flow_mutex'.
402 */
403 struct ovs_mutex flow_mutex;
404 struct dpcls cls;
405 struct cmap flow_table OVS_GUARDED; /* Flow table. */
406
407 /* Statistics. */
408 struct dp_netdev_pmd_stats stats;
409
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410 /* Cycles counters */
411 struct dp_netdev_pmd_cycles cycles;
412
413 /* Used to count cicles. See 'cycles_counter_end()' */
414 unsigned long long last_cycles;
415
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416 struct latch exit_latch; /* For terminating the pmd thread. */
417 atomic_uint change_seq; /* For reloading pmd ports. */
6c3eee82 418 pthread_t thread;
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419 int index; /* Idx of this pmd thread among pmd*/
420 /* threads on same numa node. */
bd5131ba 421 unsigned core_id; /* CPU core id of this pmd thread. */
65f13b50 422 int numa_id; /* numa node id of this pmd thread. */
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423 int tx_qid; /* Queue id used by this pmd thread to
424 * send packets on all netdevs */
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425
426 /* Only a pmd thread can write on its own 'cycles' and 'stats'.
427 * The main thread keeps 'stats_zero' and 'cycles_zero' as base
428 * values and subtracts them from 'stats' and 'cycles' before
429 * reporting to the user */
430 unsigned long long stats_zero[DP_N_STATS];
431 uint64_t cycles_zero[PMD_N_CYCLES];
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432};
433
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434#define PMD_INITIAL_SEQ 1
435
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436/* Interface to netdev-based datapath. */
437struct dpif_netdev {
438 struct dpif dpif;
439 struct dp_netdev *dp;
d33ed218 440 uint64_t last_port_seq;
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441};
442
8a4e3a85 443static int get_port_by_number(struct dp_netdev *dp, odp_port_t port_no,
59e6d833 444 struct dp_netdev_port **portp);
8a4e3a85 445static int get_port_by_name(struct dp_netdev *dp, const char *devname,
59e6d833 446 struct dp_netdev_port **portp);
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447static void dp_netdev_free(struct dp_netdev *)
448 OVS_REQUIRES(dp_netdev_mutex);
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449static int do_add_port(struct dp_netdev *dp, const char *devname,
450 const char *type, odp_port_t port_no)
59e6d833 451 OVS_REQUIRES(dp->port_mutex);
c40b890f 452static void do_del_port(struct dp_netdev *dp, struct dp_netdev_port *)
59e6d833 453 OVS_REQUIRES(dp->port_mutex);
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454static int dpif_netdev_open(const struct dpif_class *, const char *name,
455 bool create, struct dpif **);
65f13b50 456static void dp_netdev_execute_actions(struct dp_netdev_pmd_thread *pmd,
e14deea0 457 struct dp_packet **, int c,
41ccaa24 458 bool may_steal,
4edb9ae9 459 const struct nlattr *actions,
e4cfed38 460 size_t actions_len);
65f13b50 461static void dp_netdev_input(struct dp_netdev_pmd_thread *,
e14deea0 462 struct dp_packet **, int cnt);
41ccaa24 463
6b31e073 464static void dp_netdev_disable_upcall(struct dp_netdev *);
accf8626 465void dp_netdev_pmd_reload_done(struct dp_netdev_pmd_thread *pmd);
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466static void dp_netdev_configure_pmd(struct dp_netdev_pmd_thread *pmd,
467 struct dp_netdev *dp, int index,
bd5131ba 468 unsigned core_id, int numa_id);
1c1e46ed 469static void dp_netdev_destroy_pmd(struct dp_netdev_pmd_thread *pmd);
f2eee189 470static void dp_netdev_set_nonpmd(struct dp_netdev *dp);
b19befae 471static struct dp_netdev_pmd_thread *dp_netdev_get_pmd(struct dp_netdev *dp,
bd5131ba 472 unsigned core_id);
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473static struct dp_netdev_pmd_thread *
474dp_netdev_pmd_get_next(struct dp_netdev *dp, struct cmap_position *pos);
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475static void dp_netdev_destroy_all_pmds(struct dp_netdev *dp);
476static void dp_netdev_del_pmds_on_numa(struct dp_netdev *dp, int numa_id);
477static void dp_netdev_set_pmds_on_numa(struct dp_netdev *dp, int numa_id);
f2eee189 478static void dp_netdev_reset_pmd_threads(struct dp_netdev *dp);
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479static bool dp_netdev_pmd_try_ref(struct dp_netdev_pmd_thread *pmd);
480static void dp_netdev_pmd_unref(struct dp_netdev_pmd_thread *pmd);
481static void dp_netdev_pmd_flow_flush(struct dp_netdev_pmd_thread *pmd);
72865317 482
67ad54cb 483static inline bool emc_entry_alive(struct emc_entry *ce);
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484static void emc_clear_entry(struct emc_entry *ce);
485
486static void
487emc_cache_init(struct emc_cache *flow_cache)
488{
489 int i;
490
8fd47924 491 BUILD_ASSERT(offsetof(struct miniflow, values) == sizeof(uint64_t));
caeb4906 492
67ad54cb 493 flow_cache->sweep_idx = 0;
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494 for (i = 0; i < ARRAY_SIZE(flow_cache->entries); i++) {
495 flow_cache->entries[i].flow = NULL;
0de8783a 496 flow_cache->entries[i].key.hash = 0;
caeb4906 497 flow_cache->entries[i].key.len
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498 = offsetof(struct miniflow, values);
499 flow_cache->entries[i].key.mf.map = 0;
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500 }
501}
502
503static void
504emc_cache_uninit(struct emc_cache *flow_cache)
505{
506 int i;
507
508 for (i = 0; i < ARRAY_SIZE(flow_cache->entries); i++) {
509 emc_clear_entry(&flow_cache->entries[i]);
510 }
511}
512
67ad54cb
AW
513/* Check and clear dead flow references slowly (one entry at each
514 * invocation). */
515static void
516emc_cache_slow_sweep(struct emc_cache *flow_cache)
517{
518 struct emc_entry *entry = &flow_cache->entries[flow_cache->sweep_idx];
519
520 if (!emc_entry_alive(entry)) {
521 emc_clear_entry(entry);
522 }
523 flow_cache->sweep_idx = (flow_cache->sweep_idx + 1) & EM_FLOW_HASH_MASK;
524}
525
c4ea7529
BP
526/* Returns true if 'dpif' is a netdev or dummy dpif, false otherwise. */
527bool
528dpif_is_netdev(const struct dpif *dpif)
529{
530 return dpif->dpif_class->open == dpif_netdev_open;
531}
532
72865317
BP
533static struct dpif_netdev *
534dpif_netdev_cast(const struct dpif *dpif)
535{
c4ea7529 536 ovs_assert(dpif_is_netdev(dpif));
72865317
BP
537 return CONTAINER_OF(dpif, struct dpif_netdev, dpif);
538}
539
540static struct dp_netdev *
541get_dp_netdev(const struct dpif *dpif)
542{
543 return dpif_netdev_cast(dpif)->dp;
544}
6553d06b
DDP
545\f
546enum pmd_info_type {
547 PMD_INFO_SHOW_STATS, /* show how cpu cycles are spent */
548 PMD_INFO_CLEAR_STATS /* set the cycles count to 0 */
549};
550
551static void
552pmd_info_show_stats(struct ds *reply,
553 struct dp_netdev_pmd_thread *pmd,
554 unsigned long long stats[DP_N_STATS],
555 uint64_t cycles[PMD_N_CYCLES])
556{
557 unsigned long long total_packets = 0;
558 uint64_t total_cycles = 0;
559 int i;
560
561 /* These loops subtracts reference values ('*_zero') from the counters.
562 * Since loads and stores are relaxed, it might be possible for a '*_zero'
563 * value to be more recent than the current value we're reading from the
564 * counter. This is not a big problem, since these numbers are not
565 * supposed to be too accurate, but we should at least make sure that
566 * the result is not negative. */
567 for (i = 0; i < DP_N_STATS; i++) {
568 if (stats[i] > pmd->stats_zero[i]) {
569 stats[i] -= pmd->stats_zero[i];
570 } else {
571 stats[i] = 0;
572 }
573
574 if (i != DP_STAT_LOST) {
575 /* Lost packets are already included in DP_STAT_MISS */
576 total_packets += stats[i];
577 }
578 }
579
580 for (i = 0; i < PMD_N_CYCLES; i++) {
581 if (cycles[i] > pmd->cycles_zero[i]) {
582 cycles[i] -= pmd->cycles_zero[i];
583 } else {
584 cycles[i] = 0;
585 }
586
587 total_cycles += cycles[i];
588 }
589
590 ds_put_cstr(reply, (pmd->core_id == NON_PMD_CORE_ID)
591 ? "main thread" : "pmd thread");
592
593 if (pmd->numa_id != OVS_NUMA_UNSPEC) {
594 ds_put_format(reply, " numa_id %d", pmd->numa_id);
595 }
d5c199ea 596 if (pmd->core_id != OVS_CORE_UNSPEC && pmd->core_id != NON_PMD_CORE_ID) {
bd5131ba 597 ds_put_format(reply, " core_id %u", pmd->core_id);
6553d06b
DDP
598 }
599 ds_put_cstr(reply, ":\n");
600
601 ds_put_format(reply,
602 "\temc hits:%llu\n\tmegaflow hits:%llu\n"
603 "\tmiss:%llu\n\tlost:%llu\n",
604 stats[DP_STAT_EXACT_HIT], stats[DP_STAT_MASKED_HIT],
605 stats[DP_STAT_MISS], stats[DP_STAT_LOST]);
606
607 if (total_cycles == 0) {
608 return;
609 }
610
611 ds_put_format(reply,
612 "\tpolling cycles:%"PRIu64" (%.02f%%)\n"
613 "\tprocessing cycles:%"PRIu64" (%.02f%%)\n",
614 cycles[PMD_CYCLES_POLLING],
615 cycles[PMD_CYCLES_POLLING] / (double)total_cycles * 100,
616 cycles[PMD_CYCLES_PROCESSING],
617 cycles[PMD_CYCLES_PROCESSING] / (double)total_cycles * 100);
618
619 if (total_packets == 0) {
620 return;
621 }
622
623 ds_put_format(reply,
624 "\tavg cycles per packet: %.02f (%"PRIu64"/%llu)\n",
625 total_cycles / (double)total_packets,
626 total_cycles, total_packets);
627
628 ds_put_format(reply,
629 "\tavg processing cycles per packet: "
630 "%.02f (%"PRIu64"/%llu)\n",
631 cycles[PMD_CYCLES_PROCESSING] / (double)total_packets,
632 cycles[PMD_CYCLES_PROCESSING], total_packets);
633}
634
635static void
636pmd_info_clear_stats(struct ds *reply OVS_UNUSED,
637 struct dp_netdev_pmd_thread *pmd,
638 unsigned long long stats[DP_N_STATS],
639 uint64_t cycles[PMD_N_CYCLES])
640{
641 int i;
642
643 /* We cannot write 'stats' and 'cycles' (because they're written by other
644 * threads) and we shouldn't change 'stats' (because they're used to count
645 * datapath stats, which must not be cleared here). Instead, we save the
646 * current values and subtract them from the values to be displayed in the
647 * future */
648 for (i = 0; i < DP_N_STATS; i++) {
649 pmd->stats_zero[i] = stats[i];
650 }
651 for (i = 0; i < PMD_N_CYCLES; i++) {
652 pmd->cycles_zero[i] = cycles[i];
653 }
654}
655
656static void
657dpif_netdev_pmd_info(struct unixctl_conn *conn, int argc, const char *argv[],
658 void *aux)
659{
660 struct ds reply = DS_EMPTY_INITIALIZER;
661 struct dp_netdev_pmd_thread *pmd;
662 struct dp_netdev *dp = NULL;
663 enum pmd_info_type type = *(enum pmd_info_type *) aux;
664
665 ovs_mutex_lock(&dp_netdev_mutex);
666
667 if (argc == 2) {
668 dp = shash_find_data(&dp_netdevs, argv[1]);
669 } else if (shash_count(&dp_netdevs) == 1) {
670 /* There's only one datapath */
671 dp = shash_first(&dp_netdevs)->data;
672 }
673
674 if (!dp) {
675 ovs_mutex_unlock(&dp_netdev_mutex);
676 unixctl_command_reply_error(conn,
677 "please specify an existing datapath");
678 return;
679 }
680
681 CMAP_FOR_EACH (pmd, node, &dp->poll_threads) {
682 unsigned long long stats[DP_N_STATS];
683 uint64_t cycles[PMD_N_CYCLES];
684 int i;
685
686 /* Read current stats and cycle counters */
687 for (i = 0; i < ARRAY_SIZE(stats); i++) {
688 atomic_read_relaxed(&pmd->stats.n[i], &stats[i]);
689 }
690 for (i = 0; i < ARRAY_SIZE(cycles); i++) {
691 atomic_read_relaxed(&pmd->cycles.n[i], &cycles[i]);
692 }
693
694 if (type == PMD_INFO_CLEAR_STATS) {
695 pmd_info_clear_stats(&reply, pmd, stats, cycles);
696 } else if (type == PMD_INFO_SHOW_STATS) {
697 pmd_info_show_stats(&reply, pmd, stats, cycles);
698 }
699 }
700
701 ovs_mutex_unlock(&dp_netdev_mutex);
702
703 unixctl_command_reply(conn, ds_cstr(&reply));
704 ds_destroy(&reply);
705}
706\f
707static int
708dpif_netdev_init(void)
709{
710 static enum pmd_info_type show_aux = PMD_INFO_SHOW_STATS,
711 clear_aux = PMD_INFO_CLEAR_STATS;
712
713 unixctl_command_register("dpif-netdev/pmd-stats-show", "[dp]",
714 0, 1, dpif_netdev_pmd_info,
715 (void *)&show_aux);
716 unixctl_command_register("dpif-netdev/pmd-stats-clear", "[dp]",
717 0, 1, dpif_netdev_pmd_info,
718 (void *)&clear_aux);
719 return 0;
720}
72865317 721
2197d7ab 722static int
2240af25
DDP
723dpif_netdev_enumerate(struct sset *all_dps,
724 const struct dpif_class *dpif_class)
2197d7ab
GL
725{
726 struct shash_node *node;
727
97be1538 728 ovs_mutex_lock(&dp_netdev_mutex);
2197d7ab 729 SHASH_FOR_EACH(node, &dp_netdevs) {
2240af25
DDP
730 struct dp_netdev *dp = node->data;
731 if (dpif_class != dp->class) {
732 /* 'dp_netdevs' contains both "netdev" and "dummy" dpifs.
733 * If the class doesn't match, skip this dpif. */
734 continue;
735 }
2197d7ab
GL
736 sset_add(all_dps, node->name);
737 }
97be1538 738 ovs_mutex_unlock(&dp_netdev_mutex);
5279f8fd 739
2197d7ab
GL
740 return 0;
741}
742
add90f6f
EJ
743static bool
744dpif_netdev_class_is_dummy(const struct dpif_class *class)
745{
746 return class != &dpif_netdev_class;
747}
748
0aeaabc8
JP
749static const char *
750dpif_netdev_port_open_type(const struct dpif_class *class, const char *type)
751{
752 return strcmp(type, "internal") ? type
add90f6f 753 : dpif_netdev_class_is_dummy(class) ? "dummy"
0aeaabc8
JP
754 : "tap";
755}
756
72865317
BP
757static struct dpif *
758create_dpif_netdev(struct dp_netdev *dp)
759{
462278db 760 uint16_t netflow_id = hash_string(dp->name, 0);
72865317 761 struct dpif_netdev *dpif;
72865317 762
6a8267c5 763 ovs_refcount_ref(&dp->ref_cnt);
72865317 764
72865317 765 dpif = xmalloc(sizeof *dpif);
614c4892 766 dpif_init(&dpif->dpif, dp->class, dp->name, netflow_id >> 8, netflow_id);
72865317 767 dpif->dp = dp;
d33ed218 768 dpif->last_port_seq = seq_read(dp->port_seq);
72865317
BP
769
770 return &dpif->dpif;
771}
772
4e022ec0
AW
773/* Choose an unused, non-zero port number and return it on success.
774 * Return ODPP_NONE on failure. */
775static odp_port_t
e44768b7 776choose_port(struct dp_netdev *dp, const char *name)
59e6d833 777 OVS_REQUIRES(dp->port_mutex)
e44768b7 778{
4e022ec0 779 uint32_t port_no;
e44768b7
JP
780
781 if (dp->class != &dpif_netdev_class) {
782 const char *p;
783 int start_no = 0;
784
785 /* If the port name begins with "br", start the number search at
786 * 100 to make writing tests easier. */
787 if (!strncmp(name, "br", 2)) {
788 start_no = 100;
789 }
790
791 /* If the port name contains a number, try to assign that port number.
792 * This can make writing unit tests easier because port numbers are
793 * predictable. */
794 for (p = name; *p != '\0'; p++) {
795 if (isdigit((unsigned char) *p)) {
796 port_no = start_no + strtol(p, NULL, 10);
ff073a71
BP
797 if (port_no > 0 && port_no != odp_to_u32(ODPP_NONE)
798 && !dp_netdev_lookup_port(dp, u32_to_odp(port_no))) {
4e022ec0 799 return u32_to_odp(port_no);
e44768b7
JP
800 }
801 break;
802 }
803 }
804 }
805
ff073a71
BP
806 for (port_no = 1; port_no <= UINT16_MAX; port_no++) {
807 if (!dp_netdev_lookup_port(dp, u32_to_odp(port_no))) {
4e022ec0 808 return u32_to_odp(port_no);
e44768b7
JP
809 }
810 }
811
4e022ec0 812 return ODPP_NONE;
e44768b7
JP
813}
814
72865317 815static int
614c4892
BP
816create_dp_netdev(const char *name, const struct dpif_class *class,
817 struct dp_netdev **dpp)
8a4e3a85 818 OVS_REQUIRES(dp_netdev_mutex)
72865317
BP
819{
820 struct dp_netdev *dp;
821 int error;
72865317 822
462278db 823 dp = xzalloc(sizeof *dp);
8a4e3a85
BP
824 shash_add(&dp_netdevs, name, dp);
825
826 *CONST_CAST(const struct dpif_class **, &dp->class) = class;
827 *CONST_CAST(const char **, &dp->name) = xstrdup(name);
6a8267c5 828 ovs_refcount_init(&dp->ref_cnt);
1a65ba85 829 atomic_flag_clear(&dp->destroyed);
8a4e3a85 830
59e6d833
BP
831 ovs_mutex_init(&dp->port_mutex);
832 cmap_init(&dp->ports);
d33ed218 833 dp->port_seq = seq_create();
6b31e073
RW
834 fat_rwlock_init(&dp->upcall_rwlock);
835
836 /* Disable upcalls by default. */
837 dp_netdev_disable_upcall(dp);
623540e4 838 dp->upcall_aux = NULL;
6b31e073 839 dp->upcall_cb = NULL;
e44768b7 840
65f13b50
AW
841 cmap_init(&dp->poll_threads);
842 ovs_mutex_init_recursive(&dp->non_pmd_mutex);
843 ovsthread_key_create(&dp->per_pmd_key, NULL);
844
f2eee189
AW
845 dp_netdev_set_nonpmd(dp);
846 dp->n_dpdk_rxqs = NR_QUEUE;
65f13b50 847
59e6d833 848 ovs_mutex_lock(&dp->port_mutex);
4e022ec0 849 error = do_add_port(dp, name, "internal", ODPP_LOCAL);
59e6d833 850 ovs_mutex_unlock(&dp->port_mutex);
72865317
BP
851 if (error) {
852 dp_netdev_free(dp);
462278db 853 return error;
72865317
BP
854 }
855
a36de779 856 dp->last_tnl_conf_seq = seq_read(tnl_conf_seq);
462278db 857 *dpp = dp;
72865317
BP
858 return 0;
859}
860
861static int
614c4892 862dpif_netdev_open(const struct dpif_class *class, const char *name,
4a387741 863 bool create, struct dpif **dpifp)
72865317 864{
462278db 865 struct dp_netdev *dp;
5279f8fd 866 int error;
462278db 867
97be1538 868 ovs_mutex_lock(&dp_netdev_mutex);
462278db
BP
869 dp = shash_find_data(&dp_netdevs, name);
870 if (!dp) {
5279f8fd 871 error = create ? create_dp_netdev(name, class, &dp) : ENODEV;
72865317 872 } else {
5279f8fd
BP
873 error = (dp->class != class ? EINVAL
874 : create ? EEXIST
875 : 0);
876 }
877 if (!error) {
878 *dpifp = create_dpif_netdev(dp);
6b31e073 879 dp->dpif = *dpifp;
72865317 880 }
97be1538 881 ovs_mutex_unlock(&dp_netdev_mutex);
462278db 882
5279f8fd 883 return error;
72865317
BP
884}
885
88ace79b
DDP
886static void
887dp_netdev_destroy_upcall_lock(struct dp_netdev *dp)
888 OVS_NO_THREAD_SAFETY_ANALYSIS
889{
890 /* Check that upcalls are disabled, i.e. that the rwlock is taken */
891 ovs_assert(fat_rwlock_tryrdlock(&dp->upcall_rwlock));
892
893 /* Before freeing a lock we should release it */
894 fat_rwlock_unlock(&dp->upcall_rwlock);
895 fat_rwlock_destroy(&dp->upcall_rwlock);
896}
897
8a4e3a85
BP
898/* Requires dp_netdev_mutex so that we can't get a new reference to 'dp'
899 * through the 'dp_netdevs' shash while freeing 'dp'. */
1ba530f4
BP
900static void
901dp_netdev_free(struct dp_netdev *dp)
8a4e3a85 902 OVS_REQUIRES(dp_netdev_mutex)
1ba530f4 903{
59e6d833 904 struct dp_netdev_port *port;
4ad28026 905
8a4e3a85
BP
906 shash_find_and_delete(&dp_netdevs, dp->name);
907
65f13b50 908 dp_netdev_destroy_all_pmds(dp);
8bd89cdc 909 cmap_destroy(&dp->poll_threads);
65f13b50
AW
910 ovs_mutex_destroy(&dp->non_pmd_mutex);
911 ovsthread_key_delete(dp->per_pmd_key);
6c3eee82 912
59e6d833 913 ovs_mutex_lock(&dp->port_mutex);
a532e683 914 CMAP_FOR_EACH (port, node, &dp->ports) {
c40b890f 915 do_del_port(dp, port);
1ba530f4 916 }
59e6d833 917 ovs_mutex_unlock(&dp->port_mutex);
51852a57 918
d33ed218 919 seq_destroy(dp->port_seq);
59e6d833 920 cmap_destroy(&dp->ports);
88ace79b
DDP
921
922 /* Upcalls must be disabled at this point */
923 dp_netdev_destroy_upcall_lock(dp);
9bbf1c3d 924
f2eee189 925 free(dp->pmd_cmask);
8a4e3a85 926 free(CONST_CAST(char *, dp->name));
72865317
BP
927 free(dp);
928}
929
8a4e3a85
BP
930static void
931dp_netdev_unref(struct dp_netdev *dp)
932{
933 if (dp) {
934 /* Take dp_netdev_mutex so that, if dp->ref_cnt falls to zero, we can't
935 * get a new reference to 'dp' through the 'dp_netdevs' shash. */
936 ovs_mutex_lock(&dp_netdev_mutex);
24f83812 937 if (ovs_refcount_unref_relaxed(&dp->ref_cnt) == 1) {
8a4e3a85
BP
938 dp_netdev_free(dp);
939 }
940 ovs_mutex_unlock(&dp_netdev_mutex);
941 }
942}
943
72865317
BP
944static void
945dpif_netdev_close(struct dpif *dpif)
946{
947 struct dp_netdev *dp = get_dp_netdev(dpif);
5279f8fd 948
8a4e3a85 949 dp_netdev_unref(dp);
72865317
BP
950 free(dpif);
951}
952
953static int
7dab847a 954dpif_netdev_destroy(struct dpif *dpif)
72865317
BP
955{
956 struct dp_netdev *dp = get_dp_netdev(dpif);
5279f8fd 957
6a8267c5 958 if (!atomic_flag_test_and_set(&dp->destroyed)) {
24f83812 959 if (ovs_refcount_unref_relaxed(&dp->ref_cnt) == 1) {
6a8267c5
BP
960 /* Can't happen: 'dpif' still owns a reference to 'dp'. */
961 OVS_NOT_REACHED();
962 }
963 }
5279f8fd 964
72865317
BP
965 return 0;
966}
967
eb94da30
DDP
968/* Add 'n' to the atomic variable 'var' non-atomically and using relaxed
969 * load/store semantics. While the increment is not atomic, the load and
970 * store operations are, making it impossible to read inconsistent values.
971 *
972 * This is used to update thread local stats counters. */
973static void
974non_atomic_ullong_add(atomic_ullong *var, unsigned long long n)
975{
976 unsigned long long tmp;
977
978 atomic_read_relaxed(var, &tmp);
979 tmp += n;
980 atomic_store_relaxed(var, tmp);
981}
982
72865317 983static int
a8d9304d 984dpif_netdev_get_stats(const struct dpif *dpif, struct dpif_dp_stats *stats)
72865317
BP
985{
986 struct dp_netdev *dp = get_dp_netdev(dpif);
1c1e46ed 987 struct dp_netdev_pmd_thread *pmd;
8a4e3a85 988
1c1e46ed
AW
989 stats->n_flows = stats->n_hit = stats->n_missed = stats->n_lost = 0;
990 CMAP_FOR_EACH (pmd, node, &dp->poll_threads) {
eb94da30 991 unsigned long long n;
1c1e46ed 992 stats->n_flows += cmap_count(&pmd->flow_table);
eb94da30 993
abcf3ef4
DDP
994 atomic_read_relaxed(&pmd->stats.n[DP_STAT_MASKED_HIT], &n);
995 stats->n_hit += n;
996 atomic_read_relaxed(&pmd->stats.n[DP_STAT_EXACT_HIT], &n);
eb94da30
DDP
997 stats->n_hit += n;
998 atomic_read_relaxed(&pmd->stats.n[DP_STAT_MISS], &n);
999 stats->n_missed += n;
1000 atomic_read_relaxed(&pmd->stats.n[DP_STAT_LOST], &n);
1001 stats->n_lost += n;
51852a57 1002 }
1ce3fa06 1003 stats->n_masks = UINT32_MAX;
847108dc 1004 stats->n_mask_hit = UINT64_MAX;
5279f8fd 1005
72865317
BP
1006 return 0;
1007}
1008
e4cfed38 1009static void
65f13b50 1010dp_netdev_reload_pmd__(struct dp_netdev_pmd_thread *pmd)
e4cfed38 1011{
65f13b50
AW
1012 int old_seq;
1013
accf8626
AW
1014 if (pmd->core_id == NON_PMD_CORE_ID) {
1015 return;
1016 }
1017
1018 ovs_mutex_lock(&pmd->cond_mutex);
65f13b50 1019 atomic_add_relaxed(&pmd->change_seq, 1, &old_seq);
accf8626
AW
1020 ovs_mutex_cond_wait(&pmd->cond, &pmd->cond_mutex);
1021 ovs_mutex_unlock(&pmd->cond_mutex);
65f13b50 1022}
e4cfed38 1023
65f13b50
AW
1024/* Causes all pmd threads to reload its tx/rx devices.
1025 * Must be called after adding/removing ports. */
1026static void
1027dp_netdev_reload_pmds(struct dp_netdev *dp)
1028{
1029 struct dp_netdev_pmd_thread *pmd;
e4cfed38 1030
65f13b50
AW
1031 CMAP_FOR_EACH (pmd, node, &dp->poll_threads) {
1032 dp_netdev_reload_pmd__(pmd);
84067a4c 1033 }
e4cfed38
PS
1034}
1035
59e6d833
BP
1036static uint32_t
1037hash_port_no(odp_port_t port_no)
1038{
1039 return hash_int(odp_to_u32(port_no), 0);
1040}
1041
72865317 1042static int
c3827f61 1043do_add_port(struct dp_netdev *dp, const char *devname, const char *type,
4e022ec0 1044 odp_port_t port_no)
59e6d833 1045 OVS_REQUIRES(dp->port_mutex)
72865317 1046{
4b609110 1047 struct netdev_saved_flags *sf;
72865317
BP
1048 struct dp_netdev_port *port;
1049 struct netdev *netdev;
2499a8ce 1050 enum netdev_flags flags;
0cbfe35d 1051 const char *open_type;
72865317 1052 int error;
55c955bd 1053 int i;
72865317 1054
17050610
BP
1055 /* Reject devices already in 'dp'. */
1056 if (!get_port_by_name(dp, devname, &port)) {
1057 return EEXIST;
1058 }
72865317
BP
1059
1060 /* Open and validate network device. */
0aeaabc8 1061 open_type = dpif_netdev_port_open_type(dp->class, type);
0cbfe35d 1062 error = netdev_open(devname, open_type, &netdev);
72865317
BP
1063 if (error) {
1064 return error;
1065 }
72865317
BP
1066 /* XXX reject non-Ethernet devices */
1067
2499a8ce
AC
1068 netdev_get_flags(netdev, &flags);
1069 if (flags & NETDEV_LOOPBACK) {
1070 VLOG_ERR("%s: cannot add a loopback device", devname);
1071 netdev_close(netdev);
1072 return EINVAL;
1073 }
1074
5a034064
AW
1075 if (netdev_is_pmd(netdev)) {
1076 int n_cores = ovs_numa_get_n_cores();
1077
1078 if (n_cores == OVS_CORE_UNSPEC) {
1079 VLOG_ERR("%s, cannot get cpu core info", devname);
1080 return ENOENT;
1081 }
1082 /* There can only be ovs_numa_get_n_cores() pmd threads,
3bcc10c0
DDP
1083 * so creates a txq for each, and one extra for the non
1084 * pmd threads. */
1085 error = netdev_set_multiq(netdev, n_cores + 1, dp->n_dpdk_rxqs);
7251515e 1086 if (error && (error != EOPNOTSUPP)) {
5a034064
AW
1087 VLOG_ERR("%s, cannot set multiq", devname);
1088 return errno;
1089 }
1090 }
e4cfed38 1091 port = xzalloc(sizeof *port);
35303d71 1092 port->port_no = port_no;
e4cfed38 1093 port->netdev = netdev;
55c955bd 1094 port->rxq = xmalloc(sizeof *port->rxq * netdev_n_rxq(netdev));
e4cfed38 1095 port->type = xstrdup(type);
55c955bd
PS
1096 for (i = 0; i < netdev_n_rxq(netdev); i++) {
1097 error = netdev_rxq_open(netdev, &port->rxq[i], i);
1098 if (error
1099 && !(error == EOPNOTSUPP && dpif_netdev_class_is_dummy(dp->class))) {
1100 VLOG_ERR("%s: cannot receive packets on this network device (%s)",
1101 devname, ovs_strerror(errno));
1102 netdev_close(netdev);
16bea12c
TG
1103 free(port->type);
1104 free(port->rxq);
1105 free(port);
55c955bd
PS
1106 return error;
1107 }
7b6b0ef4
BP
1108 }
1109
4b609110 1110 error = netdev_turn_flags_on(netdev, NETDEV_PROMISC, &sf);
72865317 1111 if (error) {
55c955bd
PS
1112 for (i = 0; i < netdev_n_rxq(netdev); i++) {
1113 netdev_rxq_close(port->rxq[i]);
1114 }
72865317 1115 netdev_close(netdev);
16bea12c 1116 free(port->type);
f7791740 1117 free(port->rxq);
e4cfed38 1118 free(port);
72865317
BP
1119 return error;
1120 }
4b609110 1121 port->sf = sf;
e4cfed38 1122
f7d63652
AW
1123 ovs_refcount_init(&port->ref_cnt);
1124 cmap_insert(&dp->ports, &port->node, hash_port_no(port_no));
1125
e4cfed38 1126 if (netdev_is_pmd(netdev)) {
65f13b50
AW
1127 dp_netdev_set_pmds_on_numa(dp, netdev_get_numa_id(netdev));
1128 dp_netdev_reload_pmds(dp);
e4cfed38 1129 }
d33ed218 1130 seq_change(dp->port_seq);
72865317
BP
1131
1132 return 0;
1133}
1134
247527db
BP
1135static int
1136dpif_netdev_port_add(struct dpif *dpif, struct netdev *netdev,
4e022ec0 1137 odp_port_t *port_nop)
247527db
BP
1138{
1139 struct dp_netdev *dp = get_dp_netdev(dpif);
3aa30359
BP
1140 char namebuf[NETDEV_VPORT_NAME_BUFSIZE];
1141 const char *dpif_port;
4e022ec0 1142 odp_port_t port_no;
5279f8fd 1143 int error;
247527db 1144
59e6d833 1145 ovs_mutex_lock(&dp->port_mutex);
3aa30359 1146 dpif_port = netdev_vport_get_dpif_port(netdev, namebuf, sizeof namebuf);
4e022ec0 1147 if (*port_nop != ODPP_NONE) {
ff073a71
BP
1148 port_no = *port_nop;
1149 error = dp_netdev_lookup_port(dp, *port_nop) ? EBUSY : 0;
232dfa4a 1150 } else {
3aa30359 1151 port_no = choose_port(dp, dpif_port);
5279f8fd 1152 error = port_no == ODPP_NONE ? EFBIG : 0;
232dfa4a 1153 }
5279f8fd 1154 if (!error) {
247527db 1155 *port_nop = port_no;
5279f8fd 1156 error = do_add_port(dp, dpif_port, netdev_get_type(netdev), port_no);
247527db 1157 }
59e6d833 1158 ovs_mutex_unlock(&dp->port_mutex);
5279f8fd
BP
1159
1160 return error;
72865317
BP
1161}
1162
1163static int
4e022ec0 1164dpif_netdev_port_del(struct dpif *dpif, odp_port_t port_no)
72865317
BP
1165{
1166 struct dp_netdev *dp = get_dp_netdev(dpif);
5279f8fd
BP
1167 int error;
1168
59e6d833 1169 ovs_mutex_lock(&dp->port_mutex);
c40b890f
BP
1170 if (port_no == ODPP_LOCAL) {
1171 error = EINVAL;
1172 } else {
1173 struct dp_netdev_port *port;
1174
1175 error = get_port_by_number(dp, port_no, &port);
1176 if (!error) {
1177 do_del_port(dp, port);
1178 }
1179 }
59e6d833 1180 ovs_mutex_unlock(&dp->port_mutex);
5279f8fd
BP
1181
1182 return error;
72865317
BP
1183}
1184
1185static bool
4e022ec0 1186is_valid_port_number(odp_port_t port_no)
72865317 1187{
ff073a71
BP
1188 return port_no != ODPP_NONE;
1189}
1190
1191static struct dp_netdev_port *
1192dp_netdev_lookup_port(const struct dp_netdev *dp, odp_port_t port_no)
1193{
1194 struct dp_netdev_port *port;
1195
59e6d833 1196 CMAP_FOR_EACH_WITH_HASH (port, node, hash_port_no(port_no), &dp->ports) {
35303d71 1197 if (port->port_no == port_no) {
ff073a71
BP
1198 return port;
1199 }
1200 }
1201 return NULL;
72865317
BP
1202}
1203
1204static int
1205get_port_by_number(struct dp_netdev *dp,
4e022ec0 1206 odp_port_t port_no, struct dp_netdev_port **portp)
72865317
BP
1207{
1208 if (!is_valid_port_number(port_no)) {
1209 *portp = NULL;
1210 return EINVAL;
1211 } else {
ff073a71 1212 *portp = dp_netdev_lookup_port(dp, port_no);
72865317
BP
1213 return *portp ? 0 : ENOENT;
1214 }
1215}
1216
b284085e
PS
1217static void
1218port_ref(struct dp_netdev_port *port)
1219{
1220 if (port) {
1221 ovs_refcount_ref(&port->ref_cnt);
1222 }
1223}
1224
a1fdee13
AW
1225static bool
1226port_try_ref(struct dp_netdev_port *port)
1227{
1228 if (port) {
1229 return ovs_refcount_try_ref_rcu(&port->ref_cnt);
1230 }
1231
1232 return false;
1233}
1234
59e6d833
BP
1235static void
1236port_unref(struct dp_netdev_port *port)
1237{
24f83812 1238 if (port && ovs_refcount_unref_relaxed(&port->ref_cnt) == 1) {
accf8626
AW
1239 int n_rxq = netdev_n_rxq(port->netdev);
1240 int i;
1241
1242 netdev_close(port->netdev);
1243 netdev_restore_flags(port->sf);
1244
1245 for (i = 0; i < n_rxq; i++) {
1246 netdev_rxq_close(port->rxq[i]);
1247 }
1248 free(port->rxq);
1249 free(port->type);
1250 free(port);
b284085e
PS
1251 }
1252}
1253
72865317
BP
1254static int
1255get_port_by_name(struct dp_netdev *dp,
1256 const char *devname, struct dp_netdev_port **portp)
59e6d833 1257 OVS_REQUIRES(dp->port_mutex)
72865317
BP
1258{
1259 struct dp_netdev_port *port;
1260
a532e683 1261 CMAP_FOR_EACH (port, node, &dp->ports) {
3efb6063 1262 if (!strcmp(netdev_get_name(port->netdev), devname)) {
72865317
BP
1263 *portp = port;
1264 return 0;
1265 }
1266 }
1267 return ENOENT;
1268}
1269
65f13b50
AW
1270static int
1271get_n_pmd_threads_on_numa(struct dp_netdev *dp, int numa_id)
1272{
1273 struct dp_netdev_pmd_thread *pmd;
1274 int n_pmds = 0;
1275
1276 CMAP_FOR_EACH (pmd, node, &dp->poll_threads) {
1277 if (pmd->numa_id == numa_id) {
1278 n_pmds++;
1279 }
1280 }
1281
1282 return n_pmds;
1283}
1284
1285/* Returns 'true' if there is a port with pmd netdev and the netdev
1286 * is on numa node 'numa_id'. */
1287static bool
1288has_pmd_port_for_numa(struct dp_netdev *dp, int numa_id)
1289{
1290 struct dp_netdev_port *port;
1291
1292 CMAP_FOR_EACH (port, node, &dp->ports) {
1293 if (netdev_is_pmd(port->netdev)
1294 && netdev_get_numa_id(port->netdev) == numa_id) {
1295 return true;
1296 }
1297 }
1298
1299 return false;
1300}
1301
1302
c40b890f
BP
1303static void
1304do_del_port(struct dp_netdev *dp, struct dp_netdev_port *port)
59e6d833 1305 OVS_REQUIRES(dp->port_mutex)
72865317 1306{
35303d71 1307 cmap_remove(&dp->ports, &port->node, hash_odp_port(port->port_no));
d33ed218 1308 seq_change(dp->port_seq);
e4cfed38 1309 if (netdev_is_pmd(port->netdev)) {
65f13b50
AW
1310 int numa_id = netdev_get_numa_id(port->netdev);
1311
1312 /* If there is no netdev on the numa node, deletes the pmd threads
1313 * for that numa. Else, just reloads the queues. */
1314 if (!has_pmd_port_for_numa(dp, numa_id)) {
1315 dp_netdev_del_pmds_on_numa(dp, numa_id);
1316 }
1317 dp_netdev_reload_pmds(dp);
e4cfed38 1318 }
72865317 1319
b284085e 1320 port_unref(port);
72865317
BP
1321}
1322
1323static void
4c738a8d
BP
1324answer_port_query(const struct dp_netdev_port *port,
1325 struct dpif_port *dpif_port)
72865317 1326{
3efb6063 1327 dpif_port->name = xstrdup(netdev_get_name(port->netdev));
0cbfe35d 1328 dpif_port->type = xstrdup(port->type);
35303d71 1329 dpif_port->port_no = port->port_no;
72865317
BP
1330}
1331
1332static int
4e022ec0 1333dpif_netdev_port_query_by_number(const struct dpif *dpif, odp_port_t port_no,
4c738a8d 1334 struct dpif_port *dpif_port)
72865317
BP
1335{
1336 struct dp_netdev *dp = get_dp_netdev(dpif);
1337 struct dp_netdev_port *port;
1338 int error;
1339
1340 error = get_port_by_number(dp, port_no, &port);
4afba28d 1341 if (!error && dpif_port) {
4c738a8d 1342 answer_port_query(port, dpif_port);
72865317 1343 }
5279f8fd 1344
72865317
BP
1345 return error;
1346}
1347
1348static int
1349dpif_netdev_port_query_by_name(const struct dpif *dpif, const char *devname,
4c738a8d 1350 struct dpif_port *dpif_port)
72865317
BP
1351{
1352 struct dp_netdev *dp = get_dp_netdev(dpif);
1353 struct dp_netdev_port *port;
1354 int error;
1355
59e6d833 1356 ovs_mutex_lock(&dp->port_mutex);
72865317 1357 error = get_port_by_name(dp, devname, &port);
4afba28d 1358 if (!error && dpif_port) {
4c738a8d 1359 answer_port_query(port, dpif_port);
72865317 1360 }
59e6d833 1361 ovs_mutex_unlock(&dp->port_mutex);
5279f8fd 1362
72865317
BP
1363 return error;
1364}
1365
61e7deb1
BP
1366static void
1367dp_netdev_flow_free(struct dp_netdev_flow *flow)
1368{
61e7deb1 1369 dp_netdev_actions_free(dp_netdev_flow_get_actions(flow));
61e7deb1
BP
1370 free(flow);
1371}
1372
ed79f89a
DDP
1373static void dp_netdev_flow_unref(struct dp_netdev_flow *flow)
1374{
1375 if (ovs_refcount_unref_relaxed(&flow->ref_cnt) == 1) {
1376 ovsrcu_postpone(dp_netdev_flow_free, flow);
1377 }
1378}
1379
70e5ed6f
JS
1380static uint32_t
1381dp_netdev_flow_hash(const ovs_u128 *ufid)
1382{
1383 return ufid->u32[0];
1384}
1385
72865317 1386static void
1c1e46ed
AW
1387dp_netdev_pmd_remove_flow(struct dp_netdev_pmd_thread *pmd,
1388 struct dp_netdev_flow *flow)
1389 OVS_REQUIRES(pmd->flow_mutex)
72865317 1390{
9f361d6b 1391 struct cmap_node *node = CONST_CAST(struct cmap_node *, &flow->node);
2c0ea78f 1392
1c1e46ed
AW
1393 dpcls_remove(&pmd->cls, &flow->cr);
1394 cmap_remove(&pmd->flow_table, node, dp_netdev_flow_hash(&flow->ufid));
9bbf1c3d 1395 flow->dead = true;
ed79f89a
DDP
1396
1397 dp_netdev_flow_unref(flow);
72865317
BP
1398}
1399
1400static void
1c1e46ed 1401dp_netdev_pmd_flow_flush(struct dp_netdev_pmd_thread *pmd)
72865317 1402{
78c8df12 1403 struct dp_netdev_flow *netdev_flow;
72865317 1404
1c1e46ed
AW
1405 ovs_mutex_lock(&pmd->flow_mutex);
1406 CMAP_FOR_EACH (netdev_flow, node, &pmd->flow_table) {
1407 dp_netdev_pmd_remove_flow(pmd, netdev_flow);
72865317 1408 }
1c1e46ed 1409 ovs_mutex_unlock(&pmd->flow_mutex);
72865317
BP
1410}
1411
1412static int
1413dpif_netdev_flow_flush(struct dpif *dpif)
1414{
1415 struct dp_netdev *dp = get_dp_netdev(dpif);
1c1e46ed
AW
1416 struct dp_netdev_pmd_thread *pmd;
1417
1418 CMAP_FOR_EACH (pmd, node, &dp->poll_threads) {
1419 dp_netdev_pmd_flow_flush(pmd);
1420 }
5279f8fd 1421
72865317
BP
1422 return 0;
1423}
1424
b0ec0f27 1425struct dp_netdev_port_state {
59e6d833 1426 struct cmap_position position;
4c738a8d 1427 char *name;
b0ec0f27
BP
1428};
1429
1430static int
1431dpif_netdev_port_dump_start(const struct dpif *dpif OVS_UNUSED, void **statep)
1432{
1433 *statep = xzalloc(sizeof(struct dp_netdev_port_state));
1434 return 0;
1435}
1436
72865317 1437static int
b0ec0f27 1438dpif_netdev_port_dump_next(const struct dpif *dpif, void *state_,
4c738a8d 1439 struct dpif_port *dpif_port)
72865317 1440{
b0ec0f27 1441 struct dp_netdev_port_state *state = state_;
72865317 1442 struct dp_netdev *dp = get_dp_netdev(dpif);
59e6d833 1443 struct cmap_node *node;
ff073a71 1444 int retval;
72865317 1445
59e6d833 1446 node = cmap_next_position(&dp->ports, &state->position);
ff073a71
BP
1447 if (node) {
1448 struct dp_netdev_port *port;
5279f8fd 1449
ff073a71
BP
1450 port = CONTAINER_OF(node, struct dp_netdev_port, node);
1451
1452 free(state->name);
1453 state->name = xstrdup(netdev_get_name(port->netdev));
1454 dpif_port->name = state->name;
1455 dpif_port->type = port->type;
35303d71 1456 dpif_port->port_no = port->port_no;
ff073a71
BP
1457
1458 retval = 0;
1459 } else {
1460 retval = EOF;
72865317 1461 }
5279f8fd 1462
ff073a71 1463 return retval;
b0ec0f27
BP
1464}
1465
1466static int
4c738a8d 1467dpif_netdev_port_dump_done(const struct dpif *dpif OVS_UNUSED, void *state_)
b0ec0f27 1468{
4c738a8d
BP
1469 struct dp_netdev_port_state *state = state_;
1470 free(state->name);
b0ec0f27
BP
1471 free(state);
1472 return 0;
72865317
BP
1473}
1474
1475static int
67a4917b 1476dpif_netdev_port_poll(const struct dpif *dpif_, char **devnamep OVS_UNUSED)
72865317
BP
1477{
1478 struct dpif_netdev *dpif = dpif_netdev_cast(dpif_);
d33ed218 1479 uint64_t new_port_seq;
5279f8fd
BP
1480 int error;
1481
d33ed218
BP
1482 new_port_seq = seq_read(dpif->dp->port_seq);
1483 if (dpif->last_port_seq != new_port_seq) {
1484 dpif->last_port_seq = new_port_seq;
5279f8fd 1485 error = ENOBUFS;
72865317 1486 } else {
5279f8fd 1487 error = EAGAIN;
72865317 1488 }
5279f8fd
BP
1489
1490 return error;
72865317
BP
1491}
1492
1493static void
1494dpif_netdev_port_poll_wait(const struct dpif *dpif_)
1495{
1496 struct dpif_netdev *dpif = dpif_netdev_cast(dpif_);
5279f8fd 1497
d33ed218 1498 seq_wait(dpif->dp->port_seq, dpif->last_port_seq);
8a4e3a85
BP
1499}
1500
1501static struct dp_netdev_flow *
0de8783a 1502dp_netdev_flow_cast(const struct dpcls_rule *cr)
8a4e3a85
BP
1503{
1504 return cr ? CONTAINER_OF(cr, struct dp_netdev_flow, cr) : NULL;
72865317
BP
1505}
1506
9bbf1c3d
DDP
1507static bool dp_netdev_flow_ref(struct dp_netdev_flow *flow)
1508{
1509 return ovs_refcount_try_ref_rcu(&flow->ref_cnt);
1510}
1511
79df317f
DDP
1512/* netdev_flow_key utilities.
1513 *
1514 * netdev_flow_key is basically a miniflow. We use these functions
1515 * (netdev_flow_key_clone, netdev_flow_key_equal, ...) instead of the miniflow
1516 * functions (miniflow_clone_inline, miniflow_equal, ...), because:
1517 *
1518 * - Since we are dealing exclusively with miniflows created by
1519 * miniflow_extract(), if the map is different the miniflow is different.
1520 * Therefore we can be faster by comparing the map and the miniflow in a
1521 * single memcmp().
1522 * _ netdev_flow_key's miniflow has always inline values.
1523 * - These functions can be inlined by the compiler.
1524 *
1525 * The following assertions make sure that what we're doing with miniflow is
1526 * safe
1527 */
8fd47924 1528BUILD_ASSERT_DECL(offsetof(struct miniflow, values) == sizeof(uint64_t));
79df317f
DDP
1529
1530/* Given the number of bits set in the miniflow map, returns the size of the
caeb4906 1531 * 'netdev_flow_key.mf' */
79df317f
DDP
1532static inline uint32_t
1533netdev_flow_key_size(uint32_t flow_u32s)
1534{
8fd47924 1535 return offsetof(struct miniflow, values) + MINIFLOW_VALUES_SIZE(flow_u32s);
79df317f
DDP
1536}
1537
79df317f
DDP
1538static inline bool
1539netdev_flow_key_equal(const struct netdev_flow_key *a,
0de8783a
JR
1540 const struct netdev_flow_key *b)
1541{
caeb4906
JR
1542 /* 'b->len' may be not set yet. */
1543 return a->hash == b->hash && !memcmp(&a->mf, &b->mf, a->len);
0de8783a
JR
1544}
1545
1546/* Used to compare 'netdev_flow_key' in the exact match cache to a miniflow.
1547 * The maps are compared bitwise, so both 'key->mf' 'mf' must have been
1548 * generated by miniflow_extract. */
1549static inline bool
1550netdev_flow_key_equal_mf(const struct netdev_flow_key *key,
1551 const struct miniflow *mf)
79df317f 1552{
caeb4906 1553 return !memcmp(&key->mf, mf, key->len);
79df317f
DDP
1554}
1555
1556static inline void
1557netdev_flow_key_clone(struct netdev_flow_key *dst,
0de8783a
JR
1558 const struct netdev_flow_key *src)
1559{
caeb4906
JR
1560 memcpy(dst, src,
1561 offsetof(struct netdev_flow_key, mf) + src->len);
0de8783a
JR
1562}
1563
1564/* Slow. */
1565static void
1566netdev_flow_key_from_flow(struct netdev_flow_key *dst,
1567 const struct flow *src)
1568{
cf62fa4c 1569 struct dp_packet packet;
0de8783a 1570 uint64_t buf_stub[512 / 8];
0de8783a 1571
cf62fa4c
PS
1572 dp_packet_use_stub(&packet, buf_stub, sizeof buf_stub);
1573 pkt_metadata_from_flow(&packet.md, src);
0de8783a 1574 flow_compose(&packet, src);
cf62fa4c
PS
1575 miniflow_extract(&packet, &dst->mf);
1576 dp_packet_uninit(&packet);
0de8783a
JR
1577
1578 dst->len = netdev_flow_key_size(count_1bits(dst->mf.map));
1579 dst->hash = 0; /* Not computed yet. */
1580}
1581
1582/* Initialize a netdev_flow_key 'mask' from 'match'. */
1583static inline void
1584netdev_flow_mask_init(struct netdev_flow_key *mask,
1585 const struct match *match)
1586{
d70e8c28 1587 const uint64_t *mask_u64 = (const uint64_t *) &match->wc.masks;
8fd47924 1588 uint64_t *dst = mask->mf.values;
0de8783a
JR
1589 uint64_t map, mask_map = 0;
1590 uint32_t hash = 0;
1591 int n;
1592
1593 /* Only check masks that make sense for the flow. */
1594 map = flow_wc_map(&match->flow);
1595
1596 while (map) {
1597 uint64_t rm1bit = rightmost_1bit(map);
1598 int i = raw_ctz(map);
1599
d70e8c28 1600 if (mask_u64[i]) {
0de8783a 1601 mask_map |= rm1bit;
d70e8c28
JR
1602 *dst++ = mask_u64[i];
1603 hash = hash_add64(hash, mask_u64[i]);
0de8783a
JR
1604 }
1605 map -= rm1bit;
1606 }
1607
0de8783a
JR
1608 mask->mf.map = mask_map;
1609
aae7c34f 1610 hash = hash_add64(hash, mask_map);
0de8783a 1611
8fd47924 1612 n = dst - mask->mf.values;
0de8783a 1613
d70e8c28 1614 mask->hash = hash_finish(hash, n * 8);
0de8783a
JR
1615 mask->len = netdev_flow_key_size(n);
1616}
1617
1618/* Initializes 'dst' as a copy of 'src' masked with 'mask'. */
1619static inline void
1620netdev_flow_key_init_masked(struct netdev_flow_key *dst,
1621 const struct flow *flow,
1622 const struct netdev_flow_key *mask)
79df317f 1623{
8fd47924
JR
1624 uint64_t *dst_u64 = dst->mf.values;
1625 const uint64_t *mask_u64 = mask->mf.values;
0de8783a 1626 uint32_t hash = 0;
d70e8c28 1627 uint64_t value;
0de8783a
JR
1628
1629 dst->len = mask->len;
0de8783a
JR
1630 dst->mf.map = mask->mf.map;
1631
1632 FLOW_FOR_EACH_IN_MAP(value, flow, mask->mf.map) {
d70e8c28
JR
1633 *dst_u64 = value & *mask_u64++;
1634 hash = hash_add64(hash, *dst_u64++);
0de8783a 1635 }
8fd47924 1636 dst->hash = hash_finish(hash, (dst_u64 - dst->mf.values) * 8);
0de8783a
JR
1637}
1638
d70e8c28 1639/* Iterate through all netdev_flow_key u64 values specified by 'MAP' */
8fd47924
JR
1640#define NETDEV_FLOW_KEY_FOR_EACH_IN_MAP(VALUE, KEY, MAP) \
1641 for (struct mf_for_each_in_map_aux aux__ \
1642 = { (KEY)->mf.values, (KEY)->mf.map, MAP }; \
1643 mf_get_next_in_map(&aux__, &(VALUE)); \
0de8783a
JR
1644 )
1645
1646/* Returns a hash value for the bits of 'key' where there are 1-bits in
1647 * 'mask'. */
1648static inline uint32_t
1649netdev_flow_key_hash_in_mask(const struct netdev_flow_key *key,
1650 const struct netdev_flow_key *mask)
1651{
8fd47924 1652 const uint64_t *p = mask->mf.values;
0de8783a 1653 uint32_t hash = 0;
d70e8c28 1654 uint64_t key_u64;
0de8783a 1655
d70e8c28
JR
1656 NETDEV_FLOW_KEY_FOR_EACH_IN_MAP(key_u64, key, mask->mf.map) {
1657 hash = hash_add64(hash, key_u64 & *p++);
0de8783a
JR
1658 }
1659
8fd47924 1660 return hash_finish(hash, (p - mask->mf.values) * 8);
79df317f
DDP
1661}
1662
9bbf1c3d
DDP
1663static inline bool
1664emc_entry_alive(struct emc_entry *ce)
1665{
1666 return ce->flow && !ce->flow->dead;
1667}
1668
1669static void
1670emc_clear_entry(struct emc_entry *ce)
1671{
1672 if (ce->flow) {
1673 dp_netdev_flow_unref(ce->flow);
1674 ce->flow = NULL;
1675 }
1676}
1677
1678static inline void
1679emc_change_entry(struct emc_entry *ce, struct dp_netdev_flow *flow,
0de8783a 1680 const struct netdev_flow_key *key)
9bbf1c3d
DDP
1681{
1682 if (ce->flow != flow) {
1683 if (ce->flow) {
1684 dp_netdev_flow_unref(ce->flow);
1685 }
1686
1687 if (dp_netdev_flow_ref(flow)) {
1688 ce->flow = flow;
1689 } else {
1690 ce->flow = NULL;
1691 }
1692 }
0de8783a
JR
1693 if (key) {
1694 netdev_flow_key_clone(&ce->key, key);
9bbf1c3d
DDP
1695 }
1696}
1697
1698static inline void
0de8783a 1699emc_insert(struct emc_cache *cache, const struct netdev_flow_key *key,
9bbf1c3d
DDP
1700 struct dp_netdev_flow *flow)
1701{
1702 struct emc_entry *to_be_replaced = NULL;
1703 struct emc_entry *current_entry;
1704
0de8783a
JR
1705 EMC_FOR_EACH_POS_WITH_HASH(cache, current_entry, key->hash) {
1706 if (netdev_flow_key_equal(&current_entry->key, key)) {
9bbf1c3d 1707 /* We found the entry with the 'mf' miniflow */
0de8783a 1708 emc_change_entry(current_entry, flow, NULL);
9bbf1c3d
DDP
1709 return;
1710 }
1711
1712 /* Replacement policy: put the flow in an empty (not alive) entry, or
1713 * in the first entry where it can be */
1714 if (!to_be_replaced
1715 || (emc_entry_alive(to_be_replaced)
1716 && !emc_entry_alive(current_entry))
0de8783a 1717 || current_entry->key.hash < to_be_replaced->key.hash) {
9bbf1c3d
DDP
1718 to_be_replaced = current_entry;
1719 }
1720 }
1721 /* We didn't find the miniflow in the cache.
1722 * The 'to_be_replaced' entry is where the new flow will be stored */
1723
0de8783a 1724 emc_change_entry(to_be_replaced, flow, key);
9bbf1c3d
DDP
1725}
1726
1727static inline struct dp_netdev_flow *
0de8783a 1728emc_lookup(struct emc_cache *cache, const struct netdev_flow_key *key)
9bbf1c3d
DDP
1729{
1730 struct emc_entry *current_entry;
1731
0de8783a
JR
1732 EMC_FOR_EACH_POS_WITH_HASH(cache, current_entry, key->hash) {
1733 if (current_entry->key.hash == key->hash
1734 && emc_entry_alive(current_entry)
1735 && netdev_flow_key_equal_mf(&current_entry->key, &key->mf)) {
9bbf1c3d 1736
0de8783a 1737 /* We found the entry with the 'key->mf' miniflow */
9bbf1c3d
DDP
1738 return current_entry->flow;
1739 }
1740 }
1741
1742 return NULL;
1743}
1744
72865317 1745static struct dp_netdev_flow *
1c1e46ed
AW
1746dp_netdev_pmd_lookup_flow(const struct dp_netdev_pmd_thread *pmd,
1747 const struct netdev_flow_key *key)
2c0ea78f 1748{
8a4e3a85 1749 struct dp_netdev_flow *netdev_flow;
0de8783a 1750 struct dpcls_rule *rule;
2c0ea78f 1751
1c1e46ed 1752 dpcls_lookup(&pmd->cls, key, &rule, 1);
4f150744 1753 netdev_flow = dp_netdev_flow_cast(rule);
2c0ea78f 1754
8a4e3a85 1755 return netdev_flow;
2c0ea78f
GS
1756}
1757
1758static struct dp_netdev_flow *
1c1e46ed
AW
1759dp_netdev_pmd_find_flow(const struct dp_netdev_pmd_thread *pmd,
1760 const ovs_u128 *ufidp, const struct nlattr *key,
1761 size_t key_len)
72865317 1762{
1763b4b8 1763 struct dp_netdev_flow *netdev_flow;
70e5ed6f
JS
1764 struct flow flow;
1765 ovs_u128 ufid;
1766
1767 /* If a UFID is not provided, determine one based on the key. */
1768 if (!ufidp && key && key_len
1769 && !dpif_netdev_flow_from_nlattrs(key, key_len, &flow)) {
1c1e46ed 1770 dpif_flow_hash(pmd->dp->dpif, &flow, sizeof flow, &ufid);
70e5ed6f
JS
1771 ufidp = &ufid;
1772 }
72865317 1773
70e5ed6f
JS
1774 if (ufidp) {
1775 CMAP_FOR_EACH_WITH_HASH (netdev_flow, node, dp_netdev_flow_hash(ufidp),
1c1e46ed 1776 &pmd->flow_table) {
bdd7ecf5 1777 if (ovs_u128_equals(&netdev_flow->ufid, ufidp)) {
70e5ed6f
JS
1778 return netdev_flow;
1779 }
72865317
BP
1780 }
1781 }
8a4e3a85 1782
72865317
BP
1783 return NULL;
1784}
1785
1786static void
eb94da30 1787get_dpif_flow_stats(const struct dp_netdev_flow *netdev_flow_,
1763b4b8 1788 struct dpif_flow_stats *stats)
feebdea2 1789{
eb94da30
DDP
1790 struct dp_netdev_flow *netdev_flow;
1791 unsigned long long n;
1792 long long used;
1793 uint16_t flags;
1794
1795 netdev_flow = CONST_CAST(struct dp_netdev_flow *, netdev_flow_);
1796
1797 atomic_read_relaxed(&netdev_flow->stats.packet_count, &n);
1798 stats->n_packets = n;
1799 atomic_read_relaxed(&netdev_flow->stats.byte_count, &n);
1800 stats->n_bytes = n;
1801 atomic_read_relaxed(&netdev_flow->stats.used, &used);
1802 stats->used = used;
1803 atomic_read_relaxed(&netdev_flow->stats.tcp_flags, &flags);
1804 stats->tcp_flags = flags;
72865317
BP
1805}
1806
7af12bd7
JS
1807/* Converts to the dpif_flow format, using 'key_buf' and 'mask_buf' for
1808 * storing the netlink-formatted key/mask. 'key_buf' may be the same as
1809 * 'mask_buf'. Actions will be returned without copying, by relying on RCU to
1810 * protect them. */
6fe09f8c 1811static void
70e5ed6f 1812dp_netdev_flow_to_dpif_flow(const struct dp_netdev_flow *netdev_flow,
7af12bd7 1813 struct ofpbuf *key_buf, struct ofpbuf *mask_buf,
64bb477f 1814 struct dpif_flow *flow, bool terse)
6fe09f8c 1815{
64bb477f
JS
1816 if (terse) {
1817 memset(flow, 0, sizeof *flow);
1818 } else {
1819 struct flow_wildcards wc;
1820 struct dp_netdev_actions *actions;
1821 size_t offset;
5262eea1
JG
1822 struct odp_flow_key_parms odp_parms = {
1823 .flow = &netdev_flow->flow,
1824 .mask = &wc.masks,
2494ccd7 1825 .support = dp_netdev_support,
5262eea1 1826 };
64bb477f
JS
1827
1828 miniflow_expand(&netdev_flow->cr.mask->mf, &wc.masks);
1829
1830 /* Key */
6fd6ed71 1831 offset = key_buf->size;
64bb477f 1832 flow->key = ofpbuf_tail(key_buf);
5262eea1
JG
1833 odp_parms.odp_in_port = netdev_flow->flow.in_port.odp_port;
1834 odp_flow_key_from_flow(&odp_parms, key_buf);
6fd6ed71 1835 flow->key_len = key_buf->size - offset;
64bb477f
JS
1836
1837 /* Mask */
6fd6ed71 1838 offset = mask_buf->size;
64bb477f 1839 flow->mask = ofpbuf_tail(mask_buf);
5262eea1 1840 odp_parms.odp_in_port = wc.masks.in_port.odp_port;
ec1f6f32 1841 odp_parms.key_buf = key_buf;
5262eea1 1842 odp_flow_key_from_mask(&odp_parms, mask_buf);
6fd6ed71 1843 flow->mask_len = mask_buf->size - offset;
64bb477f
JS
1844
1845 /* Actions */
1846 actions = dp_netdev_flow_get_actions(netdev_flow);
1847 flow->actions = actions->actions;
1848 flow->actions_len = actions->size;
1849 }
6fe09f8c 1850
70e5ed6f
JS
1851 flow->ufid = netdev_flow->ufid;
1852 flow->ufid_present = true;
1c1e46ed 1853 flow->pmd_id = netdev_flow->pmd_id;
6fe09f8c
JS
1854 get_dpif_flow_stats(netdev_flow, &flow->stats);
1855}
1856
36956a7d 1857static int
8c301900
JR
1858dpif_netdev_mask_from_nlattrs(const struct nlattr *key, uint32_t key_len,
1859 const struct nlattr *mask_key,
1860 uint32_t mask_key_len, const struct flow *flow,
1861 struct flow *mask)
1862{
1863 if (mask_key_len) {
80e44883
BP
1864 enum odp_key_fitness fitness;
1865
ec1f6f32
JG
1866 fitness = odp_flow_key_to_mask(mask_key, mask_key_len, key, key_len,
1867 mask, flow);
80e44883 1868 if (fitness) {
8c301900
JR
1869 /* This should not happen: it indicates that
1870 * odp_flow_key_from_mask() and odp_flow_key_to_mask()
1871 * disagree on the acceptable form of a mask. Log the problem
1872 * as an error, with enough details to enable debugging. */
1873 static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
1874
1875 if (!VLOG_DROP_ERR(&rl)) {
1876 struct ds s;
1877
1878 ds_init(&s);
1879 odp_flow_format(key, key_len, mask_key, mask_key_len, NULL, &s,
1880 true);
80e44883
BP
1881 VLOG_ERR("internal error parsing flow mask %s (%s)",
1882 ds_cstr(&s), odp_key_fitness_to_string(fitness));
8c301900
JR
1883 ds_destroy(&s);
1884 }
1885
1886 return EINVAL;
1887 }
8c301900
JR
1888 } else {
1889 enum mf_field_id id;
1890 /* No mask key, unwildcard everything except fields whose
1891 * prerequisities are not met. */
1892 memset(mask, 0x0, sizeof *mask);
1893
1894 for (id = 0; id < MFF_N_IDS; ++id) {
1895 /* Skip registers and metadata. */
1896 if (!(id >= MFF_REG0 && id < MFF_REG0 + FLOW_N_REGS)
1897 && id != MFF_METADATA) {
1898 const struct mf_field *mf = mf_from_id(id);
1899 if (mf_are_prereqs_ok(mf, flow)) {
1900 mf_mask_field(mf, mask);
1901 }
1902 }
1903 }
1904 }
1905
f3f750e5
BP
1906 /* Force unwildcard the in_port.
1907 *
1908 * We need to do this even in the case where we unwildcard "everything"
1909 * above because "everything" only includes the 16-bit OpenFlow port number
1910 * mask->in_port.ofp_port, which only covers half of the 32-bit datapath
1911 * port number mask->in_port.odp_port. */
1912 mask->in_port.odp_port = u32_to_odp(UINT32_MAX);
1913
8c301900
JR
1914 return 0;
1915}
1916
1917static int
1918dpif_netdev_flow_from_nlattrs(const struct nlattr *key, uint32_t key_len,
1919 struct flow *flow)
36956a7d 1920{
586ddea5
BP
1921 odp_port_t in_port;
1922
8c301900 1923 if (odp_flow_key_to_flow(key, key_len, flow)) {
36956a7d 1924 /* This should not happen: it indicates that odp_flow_key_from_flow()
8c301900
JR
1925 * and odp_flow_key_to_flow() disagree on the acceptable form of a
1926 * flow. Log the problem as an error, with enough details to enable
1927 * debugging. */
36956a7d
BP
1928 static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
1929
1930 if (!VLOG_DROP_ERR(&rl)) {
1931 struct ds s;
1932
1933 ds_init(&s);
8c301900 1934 odp_flow_format(key, key_len, NULL, 0, NULL, &s, true);
36956a7d
BP
1935 VLOG_ERR("internal error parsing flow key %s", ds_cstr(&s));
1936 ds_destroy(&s);
1937 }
1938
1939 return EINVAL;
1940 }
1941
586ddea5
BP
1942 in_port = flow->in_port.odp_port;
1943 if (!is_valid_port_number(in_port) && in_port != ODPP_NONE) {
18886b60
BP
1944 return EINVAL;
1945 }
1946
36956a7d
BP
1947 return 0;
1948}
1949
72865317 1950static int
6fe09f8c 1951dpif_netdev_flow_get(const struct dpif *dpif, const struct dpif_flow_get *get)
72865317
BP
1952{
1953 struct dp_netdev *dp = get_dp_netdev(dpif);
1763b4b8 1954 struct dp_netdev_flow *netdev_flow;
1c1e46ed 1955 struct dp_netdev_pmd_thread *pmd;
bd5131ba
DDP
1956 unsigned pmd_id = get->pmd_id == PMD_ID_NULL
1957 ? NON_PMD_CORE_ID : get->pmd_id;
70e5ed6f 1958 int error = 0;
8a4e3a85 1959
1c1e46ed
AW
1960 pmd = dp_netdev_get_pmd(dp, pmd_id);
1961 if (!pmd) {
1962 return EINVAL;
1963 }
1964
1965 netdev_flow = dp_netdev_pmd_find_flow(pmd, get->ufid, get->key,
1966 get->key_len);
1763b4b8 1967 if (netdev_flow) {
70e5ed6f 1968 dp_netdev_flow_to_dpif_flow(netdev_flow, get->buffer, get->buffer,
64bb477f 1969 get->flow, false);
70e5ed6f 1970 } else {
5279f8fd 1971 error = ENOENT;
72865317 1972 }
1c1e46ed
AW
1973 dp_netdev_pmd_unref(pmd);
1974
bc4a05c6 1975
5279f8fd 1976 return error;
72865317
BP
1977}
1978
0de8783a 1979static struct dp_netdev_flow *
1c1e46ed
AW
1980dp_netdev_flow_add(struct dp_netdev_pmd_thread *pmd,
1981 struct match *match, const ovs_u128 *ufid,
ae2ceebd 1982 const struct nlattr *actions, size_t actions_len)
1c1e46ed 1983 OVS_REQUIRES(pmd->flow_mutex)
72865317 1984{
0de8783a
JR
1985 struct dp_netdev_flow *flow;
1986 struct netdev_flow_key mask;
ed79f89a 1987
0de8783a
JR
1988 netdev_flow_mask_init(&mask, match);
1989 /* Make sure wc does not have metadata. */
1990 ovs_assert(!(mask.mf.map & (MINIFLOW_MAP(metadata) | MINIFLOW_MAP(regs))));
679ba04c 1991
0de8783a 1992 /* Do not allocate extra space. */
caeb4906 1993 flow = xmalloc(sizeof *flow - sizeof flow->cr.flow.mf + mask.len);
1c1e46ed 1994 memset(&flow->stats, 0, sizeof flow->stats);
0de8783a 1995 flow->dead = false;
11e5cf1f 1996 flow->batch = NULL;
bd5131ba 1997 *CONST_CAST(unsigned *, &flow->pmd_id) = pmd->core_id;
0de8783a 1998 *CONST_CAST(struct flow *, &flow->flow) = match->flow;
70e5ed6f 1999 *CONST_CAST(ovs_u128 *, &flow->ufid) = *ufid;
0de8783a 2000 ovs_refcount_init(&flow->ref_cnt);
0de8783a 2001 ovsrcu_set(&flow->actions, dp_netdev_actions_create(actions, actions_len));
2c0ea78f 2002
0de8783a 2003 netdev_flow_key_init_masked(&flow->cr.flow, &match->flow, &mask);
1c1e46ed 2004 dpcls_insert(&pmd->cls, &flow->cr, &mask);
72865317 2005
4c75aaab
EJ
2006 cmap_insert(&pmd->flow_table, CONST_CAST(struct cmap_node *, &flow->node),
2007 dp_netdev_flow_hash(&flow->ufid));
2008
623540e4 2009 if (OVS_UNLIKELY(VLOG_IS_DBG_ENABLED())) {
0de8783a 2010 struct match match;
623540e4
EJ
2011 struct ds ds = DS_EMPTY_INITIALIZER;
2012
0de8783a
JR
2013 match.flow = flow->flow;
2014 miniflow_expand(&flow->cr.mask->mf, &match.wc.masks);
2015
623540e4 2016 ds_put_cstr(&ds, "flow_add: ");
70e5ed6f
JS
2017 odp_format_ufid(ufid, &ds);
2018 ds_put_cstr(&ds, " ");
0de8783a 2019 match_format(&match, &ds, OFP_DEFAULT_PRIORITY);
623540e4
EJ
2020 ds_put_cstr(&ds, ", actions:");
2021 format_odp_actions(&ds, actions, actions_len);
2022
2023 VLOG_DBG_RL(&upcall_rl, "%s", ds_cstr(&ds));
2024
2025 ds_destroy(&ds);
2026 }
2027
0de8783a 2028 return flow;
72865317
BP
2029}
2030
72865317 2031static int
89625d1e 2032dpif_netdev_flow_put(struct dpif *dpif, const struct dpif_flow_put *put)
72865317
BP
2033{
2034 struct dp_netdev *dp = get_dp_netdev(dpif);
1763b4b8 2035 struct dp_netdev_flow *netdev_flow;
0de8783a 2036 struct netdev_flow_key key;
1c1e46ed 2037 struct dp_netdev_pmd_thread *pmd;
ae2ceebd 2038 struct match match;
70e5ed6f 2039 ovs_u128 ufid;
bd5131ba
DDP
2040 unsigned pmd_id = put->pmd_id == PMD_ID_NULL
2041 ? NON_PMD_CORE_ID : put->pmd_id;
36956a7d
BP
2042 int error;
2043
ae2ceebd 2044 error = dpif_netdev_flow_from_nlattrs(put->key, put->key_len, &match.flow);
8c301900
JR
2045 if (error) {
2046 return error;
2047 }
2048 error = dpif_netdev_mask_from_nlattrs(put->key, put->key_len,
2049 put->mask, put->mask_len,
ae2ceebd 2050 &match.flow, &match.wc.masks);
36956a7d
BP
2051 if (error) {
2052 return error;
2053 }
0de8783a 2054
1c1e46ed
AW
2055 pmd = dp_netdev_get_pmd(dp, pmd_id);
2056 if (!pmd) {
2057 return EINVAL;
2058 }
2059
0de8783a
JR
2060 /* Must produce a netdev_flow_key for lookup.
2061 * This interface is no longer performance critical, since it is not used
2062 * for upcall processing any more. */
2063 netdev_flow_key_from_flow(&key, &match.flow);
72865317 2064
70e5ed6f
JS
2065 if (put->ufid) {
2066 ufid = *put->ufid;
2067 } else {
2068 dpif_flow_hash(dpif, &match.flow, sizeof match.flow, &ufid);
2069 }
2070
1c1e46ed
AW
2071 ovs_mutex_lock(&pmd->flow_mutex);
2072 netdev_flow = dp_netdev_pmd_lookup_flow(pmd, &key);
1763b4b8 2073 if (!netdev_flow) {
89625d1e 2074 if (put->flags & DPIF_FP_CREATE) {
1c1e46ed 2075 if (cmap_count(&pmd->flow_table) < MAX_FLOWS) {
89625d1e
BP
2076 if (put->stats) {
2077 memset(put->stats, 0, sizeof *put->stats);
feebdea2 2078 }
1c1e46ed 2079 dp_netdev_flow_add(pmd, &match, &ufid, put->actions,
70e5ed6f 2080 put->actions_len);
0de8783a 2081 error = 0;
72865317 2082 } else {
5279f8fd 2083 error = EFBIG;
72865317
BP
2084 }
2085 } else {
5279f8fd 2086 error = ENOENT;
72865317
BP
2087 }
2088 } else {
2c0ea78f 2089 if (put->flags & DPIF_FP_MODIFY
ae2ceebd 2090 && flow_equal(&match.flow, &netdev_flow->flow)) {
8a4e3a85
BP
2091 struct dp_netdev_actions *new_actions;
2092 struct dp_netdev_actions *old_actions;
2093
2094 new_actions = dp_netdev_actions_create(put->actions,
2095 put->actions_len);
2096
61e7deb1
BP
2097 old_actions = dp_netdev_flow_get_actions(netdev_flow);
2098 ovsrcu_set(&netdev_flow->actions, new_actions);
679ba04c 2099
a84cb64a
BP
2100 if (put->stats) {
2101 get_dpif_flow_stats(netdev_flow, put->stats);
2102 }
2103 if (put->flags & DPIF_FP_ZERO_STATS) {
97447f55
DDP
2104 /* XXX: The userspace datapath uses thread local statistics
2105 * (for flows), which should be updated only by the owning
2106 * thread. Since we cannot write on stats memory here,
2107 * we choose not to support this flag. Please note:
2108 * - This feature is currently used only by dpctl commands with
2109 * option --clear.
2110 * - Should the need arise, this operation can be implemented
2111 * by keeping a base value (to be update here) for each
2112 * counter, and subtracting it before outputting the stats */
2113 error = EOPNOTSUPP;
72865317 2114 }
8a4e3a85 2115
61e7deb1 2116 ovsrcu_postpone(dp_netdev_actions_free, old_actions);
2c0ea78f 2117 } else if (put->flags & DPIF_FP_CREATE) {
5279f8fd 2118 error = EEXIST;
2c0ea78f
GS
2119 } else {
2120 /* Overlapping flow. */
2121 error = EINVAL;
72865317
BP
2122 }
2123 }
1c1e46ed
AW
2124 ovs_mutex_unlock(&pmd->flow_mutex);
2125 dp_netdev_pmd_unref(pmd);
5279f8fd
BP
2126
2127 return error;
72865317
BP
2128}
2129
72865317 2130static int
b99d3cee 2131dpif_netdev_flow_del(struct dpif *dpif, const struct dpif_flow_del *del)
72865317
BP
2132{
2133 struct dp_netdev *dp = get_dp_netdev(dpif);
1763b4b8 2134 struct dp_netdev_flow *netdev_flow;
1c1e46ed 2135 struct dp_netdev_pmd_thread *pmd;
bd5131ba
DDP
2136 unsigned pmd_id = del->pmd_id == PMD_ID_NULL
2137 ? NON_PMD_CORE_ID : del->pmd_id;
70e5ed6f 2138 int error = 0;
72865317 2139
1c1e46ed
AW
2140 pmd = dp_netdev_get_pmd(dp, pmd_id);
2141 if (!pmd) {
2142 return EINVAL;
2143 }
2144
2145 ovs_mutex_lock(&pmd->flow_mutex);
2146 netdev_flow = dp_netdev_pmd_find_flow(pmd, del->ufid, del->key,
2147 del->key_len);
1763b4b8 2148 if (netdev_flow) {
b99d3cee 2149 if (del->stats) {
1763b4b8 2150 get_dpif_flow_stats(netdev_flow, del->stats);
feebdea2 2151 }
1c1e46ed 2152 dp_netdev_pmd_remove_flow(pmd, netdev_flow);
72865317 2153 } else {
5279f8fd 2154 error = ENOENT;
72865317 2155 }
1c1e46ed
AW
2156 ovs_mutex_unlock(&pmd->flow_mutex);
2157 dp_netdev_pmd_unref(pmd);
5279f8fd
BP
2158
2159 return error;
72865317
BP
2160}
2161
ac64794a
BP
2162struct dpif_netdev_flow_dump {
2163 struct dpif_flow_dump up;
1c1e46ed
AW
2164 struct cmap_position poll_thread_pos;
2165 struct cmap_position flow_pos;
2166 struct dp_netdev_pmd_thread *cur_pmd;
d2ad7ef1
JS
2167 int status;
2168 struct ovs_mutex mutex;
e723fd32
JS
2169};
2170
ac64794a
BP
2171static struct dpif_netdev_flow_dump *
2172dpif_netdev_flow_dump_cast(struct dpif_flow_dump *dump)
72865317 2173{
ac64794a 2174 return CONTAINER_OF(dump, struct dpif_netdev_flow_dump, up);
e723fd32
JS
2175}
2176
ac64794a 2177static struct dpif_flow_dump *
64bb477f 2178dpif_netdev_flow_dump_create(const struct dpif *dpif_, bool terse)
e723fd32 2179{
ac64794a 2180 struct dpif_netdev_flow_dump *dump;
e723fd32 2181
1c1e46ed 2182 dump = xzalloc(sizeof *dump);
ac64794a 2183 dpif_flow_dump_init(&dump->up, dpif_);
64bb477f 2184 dump->up.terse = terse;
ac64794a
BP
2185 ovs_mutex_init(&dump->mutex);
2186
2187 return &dump->up;
e723fd32
JS
2188}
2189
2190static int
ac64794a 2191dpif_netdev_flow_dump_destroy(struct dpif_flow_dump *dump_)
e723fd32 2192{
ac64794a 2193 struct dpif_netdev_flow_dump *dump = dpif_netdev_flow_dump_cast(dump_);
e723fd32 2194
ac64794a
BP
2195 ovs_mutex_destroy(&dump->mutex);
2196 free(dump);
704a1e09
BP
2197 return 0;
2198}
2199
ac64794a
BP
2200struct dpif_netdev_flow_dump_thread {
2201 struct dpif_flow_dump_thread up;
2202 struct dpif_netdev_flow_dump *dump;
8bb113da
RW
2203 struct odputil_keybuf keybuf[FLOW_DUMP_MAX_BATCH];
2204 struct odputil_keybuf maskbuf[FLOW_DUMP_MAX_BATCH];
ac64794a
BP
2205};
2206
2207static struct dpif_netdev_flow_dump_thread *
2208dpif_netdev_flow_dump_thread_cast(struct dpif_flow_dump_thread *thread)
2209{
2210 return CONTAINER_OF(thread, struct dpif_netdev_flow_dump_thread, up);
2211}
2212
2213static struct dpif_flow_dump_thread *
2214dpif_netdev_flow_dump_thread_create(struct dpif_flow_dump *dump_)
2215{
2216 struct dpif_netdev_flow_dump *dump = dpif_netdev_flow_dump_cast(dump_);
2217 struct dpif_netdev_flow_dump_thread *thread;
2218
2219 thread = xmalloc(sizeof *thread);
2220 dpif_flow_dump_thread_init(&thread->up, &dump->up);
2221 thread->dump = dump;
2222 return &thread->up;
2223}
2224
2225static void
2226dpif_netdev_flow_dump_thread_destroy(struct dpif_flow_dump_thread *thread_)
2227{
2228 struct dpif_netdev_flow_dump_thread *thread
2229 = dpif_netdev_flow_dump_thread_cast(thread_);
2230
2231 free(thread);
2232}
2233
704a1e09 2234static int
ac64794a 2235dpif_netdev_flow_dump_next(struct dpif_flow_dump_thread *thread_,
8bb113da 2236 struct dpif_flow *flows, int max_flows)
ac64794a
BP
2237{
2238 struct dpif_netdev_flow_dump_thread *thread
2239 = dpif_netdev_flow_dump_thread_cast(thread_);
2240 struct dpif_netdev_flow_dump *dump = thread->dump;
8bb113da 2241 struct dp_netdev_flow *netdev_flows[FLOW_DUMP_MAX_BATCH];
8bb113da
RW
2242 int n_flows = 0;
2243 int i;
14608a15 2244
ac64794a 2245 ovs_mutex_lock(&dump->mutex);
8bb113da 2246 if (!dump->status) {
1c1e46ed
AW
2247 struct dpif_netdev *dpif = dpif_netdev_cast(thread->up.dpif);
2248 struct dp_netdev *dp = get_dp_netdev(&dpif->dpif);
2249 struct dp_netdev_pmd_thread *pmd = dump->cur_pmd;
2250 int flow_limit = MIN(max_flows, FLOW_DUMP_MAX_BATCH);
2251
2252 /* First call to dump_next(), extracts the first pmd thread.
2253 * If there is no pmd thread, returns immediately. */
2254 if (!pmd) {
2255 pmd = dp_netdev_pmd_get_next(dp, &dump->poll_thread_pos);
2256 if (!pmd) {
2257 ovs_mutex_unlock(&dump->mutex);
2258 return n_flows;
8bb113da 2259
8bb113da 2260 }
d2ad7ef1 2261 }
1c1e46ed
AW
2262
2263 do {
2264 for (n_flows = 0; n_flows < flow_limit; n_flows++) {
2265 struct cmap_node *node;
2266
2267 node = cmap_next_position(&pmd->flow_table, &dump->flow_pos);
2268 if (!node) {
2269 break;
2270 }
2271 netdev_flows[n_flows] = CONTAINER_OF(node,
2272 struct dp_netdev_flow,
2273 node);
2274 }
2275 /* When finishing dumping the current pmd thread, moves to
2276 * the next. */
2277 if (n_flows < flow_limit) {
2278 memset(&dump->flow_pos, 0, sizeof dump->flow_pos);
2279 dp_netdev_pmd_unref(pmd);
2280 pmd = dp_netdev_pmd_get_next(dp, &dump->poll_thread_pos);
2281 if (!pmd) {
2282 dump->status = EOF;
2283 break;
2284 }
2285 }
2286 /* Keeps the reference to next caller. */
2287 dump->cur_pmd = pmd;
2288
2289 /* If the current dump is empty, do not exit the loop, since the
2290 * remaining pmds could have flows to be dumped. Just dumps again
2291 * on the new 'pmd'. */
2292 } while (!n_flows);
8a4e3a85 2293 }
ac64794a 2294 ovs_mutex_unlock(&dump->mutex);
ac64794a 2295
8bb113da
RW
2296 for (i = 0; i < n_flows; i++) {
2297 struct odputil_keybuf *maskbuf = &thread->maskbuf[i];
2298 struct odputil_keybuf *keybuf = &thread->keybuf[i];
2299 struct dp_netdev_flow *netdev_flow = netdev_flows[i];
2300 struct dpif_flow *f = &flows[i];
7af12bd7 2301 struct ofpbuf key, mask;
8bb113da 2302
7af12bd7
JS
2303 ofpbuf_use_stack(&key, keybuf, sizeof *keybuf);
2304 ofpbuf_use_stack(&mask, maskbuf, sizeof *maskbuf);
64bb477f
JS
2305 dp_netdev_flow_to_dpif_flow(netdev_flow, &key, &mask, f,
2306 dump->up.terse);
8bb113da 2307 }
feebdea2 2308
8bb113da 2309 return n_flows;
72865317
BP
2310}
2311
2312static int
758c456d 2313dpif_netdev_execute(struct dpif *dpif, struct dpif_execute *execute)
65f13b50 2314 OVS_NO_THREAD_SAFETY_ANALYSIS
72865317
BP
2315{
2316 struct dp_netdev *dp = get_dp_netdev(dpif);
65f13b50 2317 struct dp_netdev_pmd_thread *pmd;
cf62fa4c 2318 struct dp_packet *pp;
72865317 2319
cf62fa4c
PS
2320 if (dp_packet_size(execute->packet) < ETH_HEADER_LEN ||
2321 dp_packet_size(execute->packet) > UINT16_MAX) {
72865317
BP
2322 return EINVAL;
2323 }
2324
65f13b50
AW
2325 /* Tries finding the 'pmd'. If NULL is returned, that means
2326 * the current thread is a non-pmd thread and should use
b19befae 2327 * dp_netdev_get_pmd(dp, NON_PMD_CORE_ID). */
65f13b50
AW
2328 pmd = ovsthread_getspecific(dp->per_pmd_key);
2329 if (!pmd) {
b19befae 2330 pmd = dp_netdev_get_pmd(dp, NON_PMD_CORE_ID);
65f13b50
AW
2331 }
2332
2333 /* If the current thread is non-pmd thread, acquires
2334 * the 'non_pmd_mutex'. */
2335 if (pmd->core_id == NON_PMD_CORE_ID) {
2336 ovs_mutex_lock(&dp->non_pmd_mutex);
433330a8 2337 ovs_mutex_lock(&dp->port_mutex);
65f13b50 2338 }
1c1e46ed 2339
cf62fa4c 2340 pp = execute->packet;
41ccaa24 2341 dp_netdev_execute_actions(pmd, &pp, 1, false, execute->actions,
9bbf1c3d 2342 execute->actions_len);
65f13b50 2343 if (pmd->core_id == NON_PMD_CORE_ID) {
1c1e46ed 2344 dp_netdev_pmd_unref(pmd);
433330a8 2345 ovs_mutex_unlock(&dp->port_mutex);
65f13b50
AW
2346 ovs_mutex_unlock(&dp->non_pmd_mutex);
2347 }
8a4e3a85 2348
758c456d 2349 return 0;
72865317
BP
2350}
2351
1a0c894a
BP
2352static void
2353dpif_netdev_operate(struct dpif *dpif, struct dpif_op **ops, size_t n_ops)
2354{
2355 size_t i;
2356
2357 for (i = 0; i < n_ops; i++) {
2358 struct dpif_op *op = ops[i];
2359
2360 switch (op->type) {
2361 case DPIF_OP_FLOW_PUT:
2362 op->error = dpif_netdev_flow_put(dpif, &op->u.flow_put);
2363 break;
2364
2365 case DPIF_OP_FLOW_DEL:
2366 op->error = dpif_netdev_flow_del(dpif, &op->u.flow_del);
2367 break;
2368
2369 case DPIF_OP_EXECUTE:
2370 op->error = dpif_netdev_execute(dpif, &op->u.execute);
2371 break;
6fe09f8c
JS
2372
2373 case DPIF_OP_FLOW_GET:
2374 op->error = dpif_netdev_flow_get(dpif, &op->u.flow_get);
2375 break;
1a0c894a
BP
2376 }
2377 }
2378}
2379
f2eee189
AW
2380/* Returns true if the configuration for rx queues or cpu mask
2381 * is changed. */
2382static bool
2383pmd_config_changed(const struct dp_netdev *dp, size_t rxqs, const char *cmask)
2384{
2385 if (dp->n_dpdk_rxqs != rxqs) {
2386 return true;
2387 } else {
2388 if (dp->pmd_cmask != NULL && cmask != NULL) {
2389 return strcmp(dp->pmd_cmask, cmask);
2390 } else {
2391 return (dp->pmd_cmask != NULL || cmask != NULL);
2392 }
2393 }
2394}
2395
2396/* Resets pmd threads if the configuration for 'rxq's or cpu mask changes. */
2397static int
2398dpif_netdev_pmd_set(struct dpif *dpif, unsigned int n_rxqs, const char *cmask)
2399{
2400 struct dp_netdev *dp = get_dp_netdev(dpif);
2401
2402 if (pmd_config_changed(dp, n_rxqs, cmask)) {
2403 struct dp_netdev_port *port;
2404
2405 dp_netdev_destroy_all_pmds(dp);
2406
2407 CMAP_FOR_EACH (port, node, &dp->ports) {
2408 if (netdev_is_pmd(port->netdev)) {
2409 int i, err;
2410
2411 /* Closes the existing 'rxq's. */
2412 for (i = 0; i < netdev_n_rxq(port->netdev); i++) {
2413 netdev_rxq_close(port->rxq[i]);
2414 port->rxq[i] = NULL;
2415 }
2416
2417 /* Sets the new rx queue config. */
3bcc10c0
DDP
2418 err = netdev_set_multiq(port->netdev,
2419 ovs_numa_get_n_cores() + 1,
f2eee189 2420 n_rxqs);
7251515e 2421 if (err && (err != EOPNOTSUPP)) {
f2eee189
AW
2422 VLOG_ERR("Failed to set dpdk interface %s rx_queue to:"
2423 " %u", netdev_get_name(port->netdev),
2424 n_rxqs);
2425 return err;
2426 }
2427
2428 /* If the set_multiq() above succeeds, reopens the 'rxq's. */
2429 port->rxq = xrealloc(port->rxq, sizeof *port->rxq
2430 * netdev_n_rxq(port->netdev));
2431 for (i = 0; i < netdev_n_rxq(port->netdev); i++) {
2432 netdev_rxq_open(port->netdev, &port->rxq[i], i);
2433 }
2434 }
2435 }
2436 dp->n_dpdk_rxqs = n_rxqs;
2437
2438 /* Reconfigures the cpu mask. */
2439 ovs_numa_set_cpu_mask(cmask);
2440 free(dp->pmd_cmask);
2441 dp->pmd_cmask = cmask ? xstrdup(cmask) : NULL;
2442
2443 /* Restores the non-pmd. */
2444 dp_netdev_set_nonpmd(dp);
2445 /* Restores all pmd threads. */
2446 dp_netdev_reset_pmd_threads(dp);
2447 }
2448
2449 return 0;
2450}
2451
5bf93d67
EJ
2452static int
2453dpif_netdev_queue_to_priority(const struct dpif *dpif OVS_UNUSED,
2454 uint32_t queue_id, uint32_t *priority)
2455{
2456 *priority = queue_id;
2457 return 0;
2458}
2459
72865317 2460\f
9ff55ae2
DDP
2461/* Creates and returns a new 'struct dp_netdev_actions', whose actions are
2462 * a copy of the 'ofpacts_len' bytes of 'ofpacts'. */
a84cb64a
BP
2463struct dp_netdev_actions *
2464dp_netdev_actions_create(const struct nlattr *actions, size_t size)
2465{
2466 struct dp_netdev_actions *netdev_actions;
2467
9ff55ae2
DDP
2468 netdev_actions = xmalloc(sizeof *netdev_actions + size);
2469 memcpy(netdev_actions->actions, actions, size);
a84cb64a
BP
2470 netdev_actions->size = size;
2471
2472 return netdev_actions;
2473}
2474
a84cb64a 2475struct dp_netdev_actions *
61e7deb1 2476dp_netdev_flow_get_actions(const struct dp_netdev_flow *flow)
a84cb64a 2477{
61e7deb1 2478 return ovsrcu_get(struct dp_netdev_actions *, &flow->actions);
a84cb64a
BP
2479}
2480
61e7deb1
BP
2481static void
2482dp_netdev_actions_free(struct dp_netdev_actions *actions)
a84cb64a 2483{
61e7deb1 2484 free(actions);
a84cb64a
BP
2485}
2486\f
55e3ca97
DDP
2487static inline unsigned long long
2488cycles_counter(void)
2489{
2490#ifdef DPDK_NETDEV
2491 return rte_get_tsc_cycles();
2492#else
2493 return 0;
2494#endif
2495}
2496
2497/* Fake mutex to make sure that the calls to cycles_count_* are balanced */
2498extern struct ovs_mutex cycles_counter_fake_mutex;
2499
2500/* Start counting cycles. Must be followed by 'cycles_count_end()' */
2501static inline void
2502cycles_count_start(struct dp_netdev_pmd_thread *pmd)
2503 OVS_ACQUIRES(&cycles_counter_fake_mutex)
2504 OVS_NO_THREAD_SAFETY_ANALYSIS
2505{
2506 pmd->last_cycles = cycles_counter();
2507}
2508
2509/* Stop counting cycles and add them to the counter 'type' */
2510static inline void
2511cycles_count_end(struct dp_netdev_pmd_thread *pmd,
2512 enum pmd_cycles_counter_type type)
2513 OVS_RELEASES(&cycles_counter_fake_mutex)
2514 OVS_NO_THREAD_SAFETY_ANALYSIS
2515{
2516 unsigned long long interval = cycles_counter() - pmd->last_cycles;
2517
2518 non_atomic_ullong_add(&pmd->cycles.n[type], interval);
2519}
e4cfed38 2520
5794e276 2521static void
65f13b50 2522dp_netdev_process_rxq_port(struct dp_netdev_pmd_thread *pmd,
9bbf1c3d
DDP
2523 struct dp_netdev_port *port,
2524 struct netdev_rxq *rxq)
e4cfed38 2525{
cd159f1a 2526 struct dp_packet *packets[NETDEV_MAX_BURST];
8cbf4f47 2527 int error, cnt;
e4cfed38 2528
55e3ca97 2529 cycles_count_start(pmd);
8cbf4f47 2530 error = netdev_rxq_recv(rxq, packets, &cnt);
55e3ca97 2531 cycles_count_end(pmd, PMD_CYCLES_POLLING);
e4cfed38 2532 if (!error) {
41ccaa24 2533 int i;
3c33f0ff
JR
2534
2535 *recirc_depth_get() = 0;
41ccaa24
PS
2536
2537 /* XXX: initialize md in netdev implementation. */
2538 for (i = 0; i < cnt; i++) {
35303d71 2539 pkt_metadata_init(&packets[i]->md, port->port_no);
41ccaa24 2540 }
55e3ca97 2541 cycles_count_start(pmd);
41ccaa24 2542 dp_netdev_input(pmd, packets, cnt);
55e3ca97 2543 cycles_count_end(pmd, PMD_CYCLES_PROCESSING);
e4cfed38 2544 } else if (error != EAGAIN && error != EOPNOTSUPP) {
3c33f0ff 2545 static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
e4cfed38
PS
2546
2547 VLOG_ERR_RL(&rl, "error receiving data from %s: %s",
3c33f0ff 2548 netdev_get_name(port->netdev), ovs_strerror(error));
e4cfed38
PS
2549 }
2550}
2551
a36de779
PS
2552/* Return true if needs to revalidate datapath flows. */
2553static bool
e4cfed38
PS
2554dpif_netdev_run(struct dpif *dpif)
2555{
2556 struct dp_netdev_port *port;
2557 struct dp_netdev *dp = get_dp_netdev(dpif);
b19befae
AW
2558 struct dp_netdev_pmd_thread *non_pmd = dp_netdev_get_pmd(dp,
2559 NON_PMD_CORE_ID);
a36de779 2560 uint64_t new_tnl_seq;
e4cfed38 2561
65f13b50 2562 ovs_mutex_lock(&dp->non_pmd_mutex);
a532e683 2563 CMAP_FOR_EACH (port, node, &dp->ports) {
55c955bd
PS
2564 if (!netdev_is_pmd(port->netdev)) {
2565 int i;
2566
2567 for (i = 0; i < netdev_n_rxq(port->netdev); i++) {
65f13b50 2568 dp_netdev_process_rxq_port(non_pmd, port, port->rxq[i]);
55c955bd 2569 }
e4cfed38
PS
2570 }
2571 }
65f13b50 2572 ovs_mutex_unlock(&dp->non_pmd_mutex);
1c1e46ed
AW
2573 dp_netdev_pmd_unref(non_pmd);
2574
a36de779
PS
2575 tnl_arp_cache_run();
2576 new_tnl_seq = seq_read(tnl_conf_seq);
2577
2578 if (dp->last_tnl_conf_seq != new_tnl_seq) {
2579 dp->last_tnl_conf_seq = new_tnl_seq;
2580 return true;
2581 }
2582 return false;
e4cfed38
PS
2583}
2584
2585static void
2586dpif_netdev_wait(struct dpif *dpif)
2587{
2588 struct dp_netdev_port *port;
2589 struct dp_netdev *dp = get_dp_netdev(dpif);
2590
59e6d833 2591 ovs_mutex_lock(&dp_netdev_mutex);
a532e683 2592 CMAP_FOR_EACH (port, node, &dp->ports) {
55c955bd
PS
2593 if (!netdev_is_pmd(port->netdev)) {
2594 int i;
2595
2596 for (i = 0; i < netdev_n_rxq(port->netdev); i++) {
2597 netdev_rxq_wait(port->rxq[i]);
2598 }
e4cfed38
PS
2599 }
2600 }
59e6d833 2601 ovs_mutex_unlock(&dp_netdev_mutex);
a36de779 2602 seq_wait(tnl_conf_seq, dp->last_tnl_conf_seq);
e4cfed38
PS
2603}
2604
f7791740 2605struct rxq_poll {
e4cfed38 2606 struct dp_netdev_port *port;
55c955bd 2607 struct netdev_rxq *rx;
e4cfed38
PS
2608};
2609
2610static int
65f13b50 2611pmd_load_queues(struct dp_netdev_pmd_thread *pmd,
f7791740 2612 struct rxq_poll **ppoll_list, int poll_cnt)
e4cfed38 2613{
f7791740 2614 struct rxq_poll *poll_list = *ppoll_list;
e4cfed38 2615 struct dp_netdev_port *port;
65f13b50 2616 int n_pmds_on_numa, index, i;
e4cfed38
PS
2617
2618 /* Simple scheduler for netdev rx polling. */
e4cfed38 2619 for (i = 0; i < poll_cnt; i++) {
65f13b50 2620 port_unref(poll_list[i].port);
e4cfed38
PS
2621 }
2622
2623 poll_cnt = 0;
65f13b50 2624 n_pmds_on_numa = get_n_pmd_threads_on_numa(pmd->dp, pmd->numa_id);
e4cfed38
PS
2625 index = 0;
2626
65f13b50 2627 CMAP_FOR_EACH (port, node, &pmd->dp->ports) {
a1fdee13
AW
2628 /* Calls port_try_ref() to prevent the main thread
2629 * from deleting the port. */
2630 if (port_try_ref(port)) {
65f13b50
AW
2631 if (netdev_is_pmd(port->netdev)
2632 && netdev_get_numa_id(port->netdev) == pmd->numa_id) {
a1fdee13
AW
2633 int i;
2634
2635 for (i = 0; i < netdev_n_rxq(port->netdev); i++) {
65f13b50 2636 if ((index % n_pmds_on_numa) == pmd->index) {
a1fdee13
AW
2637 poll_list = xrealloc(poll_list,
2638 sizeof *poll_list * (poll_cnt + 1));
2639
2640 port_ref(port);
2641 poll_list[poll_cnt].port = port;
2642 poll_list[poll_cnt].rx = port->rxq[i];
2643 poll_cnt++;
2644 }
2645 index++;
55c955bd 2646 }
e4cfed38 2647 }
a1fdee13
AW
2648 /* Unrefs the port_try_ref(). */
2649 port_unref(port);
e4cfed38
PS
2650 }
2651 }
2652
e4cfed38
PS
2653 *ppoll_list = poll_list;
2654 return poll_cnt;
2655}
2656
6c3eee82 2657static void *
e4cfed38 2658pmd_thread_main(void *f_)
6c3eee82 2659{
65f13b50 2660 struct dp_netdev_pmd_thread *pmd = f_;
e4cfed38 2661 unsigned int lc = 0;
f7791740 2662 struct rxq_poll *poll_list;
84067a4c 2663 unsigned int port_seq = PMD_INITIAL_SEQ;
e4cfed38
PS
2664 int poll_cnt;
2665 int i;
6c3eee82 2666
e4cfed38
PS
2667 poll_cnt = 0;
2668 poll_list = NULL;
2669
65f13b50
AW
2670 /* Stores the pmd thread's 'pmd' to 'per_pmd_key'. */
2671 ovsthread_setspecific(pmd->dp->per_pmd_key, pmd);
2672 pmd_thread_setaffinity_cpu(pmd->core_id);
e4cfed38 2673reload:
65f13b50
AW
2674 emc_cache_init(&pmd->flow_cache);
2675 poll_cnt = pmd_load_queues(pmd, &poll_list, poll_cnt);
6c3eee82 2676
7dd671f0
MK
2677 /* List port/core affinity */
2678 for (i = 0; i < poll_cnt; i++) {
2679 VLOG_INFO("Core %d processing port \'%s\'\n", pmd->core_id, netdev_get_name(poll_list[i].port->netdev));
2680 }
2681
accf8626
AW
2682 /* Signal here to make sure the pmd finishes
2683 * reloading the updated configuration. */
2684 dp_netdev_pmd_reload_done(pmd);
2685
e4cfed38 2686 for (;;) {
6c3eee82
BP
2687 int i;
2688
e4cfed38 2689 for (i = 0; i < poll_cnt; i++) {
65f13b50 2690 dp_netdev_process_rxq_port(pmd, poll_list[i].port, poll_list[i].rx);
e4cfed38
PS
2691 }
2692
2693 if (lc++ > 1024) {
84067a4c 2694 unsigned int seq;
6c3eee82 2695
e4cfed38 2696 lc = 0;
84067a4c 2697
67ad54cb 2698 emc_cache_slow_sweep(&pmd->flow_cache);
84067a4c
JR
2699 ovsrcu_quiesce();
2700
65f13b50 2701 atomic_read_relaxed(&pmd->change_seq, &seq);
84067a4c
JR
2702 if (seq != port_seq) {
2703 port_seq = seq;
6c3eee82
BP
2704 break;
2705 }
2706 }
e4cfed38 2707 }
6c3eee82 2708
65f13b50 2709 emc_cache_uninit(&pmd->flow_cache);
9bbf1c3d 2710
65f13b50 2711 if (!latch_is_set(&pmd->exit_latch)){
e4cfed38
PS
2712 goto reload;
2713 }
6c3eee82 2714
e4cfed38
PS
2715 for (i = 0; i < poll_cnt; i++) {
2716 port_unref(poll_list[i].port);
6c3eee82 2717 }
6c3eee82 2718
accf8626
AW
2719 dp_netdev_pmd_reload_done(pmd);
2720
e4cfed38 2721 free(poll_list);
6c3eee82
BP
2722 return NULL;
2723}
2724
6b31e073
RW
2725static void
2726dp_netdev_disable_upcall(struct dp_netdev *dp)
2727 OVS_ACQUIRES(dp->upcall_rwlock)
2728{
2729 fat_rwlock_wrlock(&dp->upcall_rwlock);
2730}
2731
2732static void
2733dpif_netdev_disable_upcall(struct dpif *dpif)
2734 OVS_NO_THREAD_SAFETY_ANALYSIS
2735{
2736 struct dp_netdev *dp = get_dp_netdev(dpif);
2737 dp_netdev_disable_upcall(dp);
2738}
2739
2740static void
2741dp_netdev_enable_upcall(struct dp_netdev *dp)
2742 OVS_RELEASES(dp->upcall_rwlock)
2743{
2744 fat_rwlock_unlock(&dp->upcall_rwlock);
2745}
2746
2747static void
2748dpif_netdev_enable_upcall(struct dpif *dpif)
2749 OVS_NO_THREAD_SAFETY_ANALYSIS
2750{
2751 struct dp_netdev *dp = get_dp_netdev(dpif);
2752 dp_netdev_enable_upcall(dp);
2753}
2754
accf8626
AW
2755void
2756dp_netdev_pmd_reload_done(struct dp_netdev_pmd_thread *pmd)
2757{
2758 ovs_mutex_lock(&pmd->cond_mutex);
2759 xpthread_cond_signal(&pmd->cond);
2760 ovs_mutex_unlock(&pmd->cond_mutex);
2761}
2762
1c1e46ed
AW
2763/* Finds and refs the dp_netdev_pmd_thread on core 'core_id'. Returns
2764 * the pointer if succeeds, otherwise, NULL.
2765 *
2766 * Caller must unrefs the returned reference. */
65f13b50 2767static struct dp_netdev_pmd_thread *
bd5131ba 2768dp_netdev_get_pmd(struct dp_netdev *dp, unsigned core_id)
65f13b50
AW
2769{
2770 struct dp_netdev_pmd_thread *pmd;
55847abe 2771 const struct cmap_node *pnode;
65f13b50 2772
b19befae 2773 pnode = cmap_find(&dp->poll_threads, hash_int(core_id, 0));
1c1e46ed
AW
2774 if (!pnode) {
2775 return NULL;
2776 }
65f13b50
AW
2777 pmd = CONTAINER_OF(pnode, struct dp_netdev_pmd_thread, node);
2778
1c1e46ed 2779 return dp_netdev_pmd_try_ref(pmd) ? pmd : NULL;
65f13b50
AW
2780}
2781
f2eee189
AW
2782/* Sets the 'struct dp_netdev_pmd_thread' for non-pmd threads. */
2783static void
2784dp_netdev_set_nonpmd(struct dp_netdev *dp)
2785{
2786 struct dp_netdev_pmd_thread *non_pmd;
2787
2788 non_pmd = xzalloc(sizeof *non_pmd);
2789 dp_netdev_configure_pmd(non_pmd, dp, 0, NON_PMD_CORE_ID,
2790 OVS_NUMA_UNSPEC);
2791}
2792
1c1e46ed
AW
2793/* Caller must have valid pointer to 'pmd'. */
2794static bool
2795dp_netdev_pmd_try_ref(struct dp_netdev_pmd_thread *pmd)
2796{
2797 return ovs_refcount_try_ref_rcu(&pmd->ref_cnt);
2798}
2799
2800static void
2801dp_netdev_pmd_unref(struct dp_netdev_pmd_thread *pmd)
2802{
2803 if (pmd && ovs_refcount_unref(&pmd->ref_cnt) == 1) {
2804 ovsrcu_postpone(dp_netdev_destroy_pmd, pmd);
2805 }
2806}
2807
2808/* Given cmap position 'pos', tries to ref the next node. If try_ref()
2809 * fails, keeps checking for next node until reaching the end of cmap.
2810 *
2811 * Caller must unrefs the returned reference. */
2812static struct dp_netdev_pmd_thread *
2813dp_netdev_pmd_get_next(struct dp_netdev *dp, struct cmap_position *pos)
2814{
2815 struct dp_netdev_pmd_thread *next;
2816
2817 do {
2818 struct cmap_node *node;
2819
2820 node = cmap_next_position(&dp->poll_threads, pos);
2821 next = node ? CONTAINER_OF(node, struct dp_netdev_pmd_thread, node)
2822 : NULL;
2823 } while (next && !dp_netdev_pmd_try_ref(next));
2824
2825 return next;
2826}
2827
3bcc10c0
DDP
2828static int
2829core_id_to_qid(unsigned core_id)
2830{
2831 if (core_id != NON_PMD_CORE_ID) {
2832 return core_id;
2833 } else {
2834 return ovs_numa_get_n_cores();
2835 }
2836}
2837
65f13b50 2838/* Configures the 'pmd' based on the input argument. */
6c3eee82 2839static void
65f13b50 2840dp_netdev_configure_pmd(struct dp_netdev_pmd_thread *pmd, struct dp_netdev *dp,
bd5131ba 2841 int index, unsigned core_id, int numa_id)
65f13b50
AW
2842{
2843 pmd->dp = dp;
2844 pmd->index = index;
2845 pmd->core_id = core_id;
3bcc10c0 2846 pmd->tx_qid = core_id_to_qid(core_id);
65f13b50 2847 pmd->numa_id = numa_id;
1c1e46ed
AW
2848
2849 ovs_refcount_init(&pmd->ref_cnt);
65f13b50
AW
2850 latch_init(&pmd->exit_latch);
2851 atomic_init(&pmd->change_seq, PMD_INITIAL_SEQ);
accf8626
AW
2852 xpthread_cond_init(&pmd->cond, NULL);
2853 ovs_mutex_init(&pmd->cond_mutex);
1c1e46ed
AW
2854 ovs_mutex_init(&pmd->flow_mutex);
2855 dpcls_init(&pmd->cls);
2856 cmap_init(&pmd->flow_table);
65f13b50
AW
2857 /* init the 'flow_cache' since there is no
2858 * actual thread created for NON_PMD_CORE_ID. */
2859 if (core_id == NON_PMD_CORE_ID) {
2860 emc_cache_init(&pmd->flow_cache);
2861 }
2862 cmap_insert(&dp->poll_threads, CONST_CAST(struct cmap_node *, &pmd->node),
2863 hash_int(core_id, 0));
2864}
2865
1c1e46ed
AW
2866static void
2867dp_netdev_destroy_pmd(struct dp_netdev_pmd_thread *pmd)
2868{
2869 dp_netdev_pmd_flow_flush(pmd);
2870 dpcls_destroy(&pmd->cls);
2871 cmap_destroy(&pmd->flow_table);
2872 ovs_mutex_destroy(&pmd->flow_mutex);
2873 latch_destroy(&pmd->exit_latch);
2874 xpthread_cond_destroy(&pmd->cond);
2875 ovs_mutex_destroy(&pmd->cond_mutex);
2876 free(pmd);
2877}
2878
2879/* Stops the pmd thread, removes it from the 'dp->poll_threads',
2880 * and unrefs the struct. */
65f13b50
AW
2881static void
2882dp_netdev_del_pmd(struct dp_netdev_pmd_thread *pmd)
6c3eee82 2883{
65f13b50 2884 /* Uninit the 'flow_cache' since there is
1c1e46ed 2885 * no actual thread uninit it for NON_PMD_CORE_ID. */
65f13b50
AW
2886 if (pmd->core_id == NON_PMD_CORE_ID) {
2887 emc_cache_uninit(&pmd->flow_cache);
2888 } else {
2889 latch_set(&pmd->exit_latch);
2890 dp_netdev_reload_pmd__(pmd);
2891 ovs_numa_unpin_core(pmd->core_id);
2892 xpthread_join(pmd->thread, NULL);
2893 }
2894 cmap_remove(&pmd->dp->poll_threads, &pmd->node, hash_int(pmd->core_id, 0));
1c1e46ed 2895 dp_netdev_pmd_unref(pmd);
65f13b50 2896}
6c3eee82 2897
65f13b50
AW
2898/* Destroys all pmd threads. */
2899static void
2900dp_netdev_destroy_all_pmds(struct dp_netdev *dp)
2901{
2902 struct dp_netdev_pmd_thread *pmd;
2903
2904 CMAP_FOR_EACH (pmd, node, &dp->poll_threads) {
2905 dp_netdev_del_pmd(pmd);
6c3eee82 2906 }
65f13b50 2907}
6c3eee82 2908
65f13b50
AW
2909/* Deletes all pmd threads on numa node 'numa_id'. */
2910static void
2911dp_netdev_del_pmds_on_numa(struct dp_netdev *dp, int numa_id)
2912{
2913 struct dp_netdev_pmd_thread *pmd;
6c3eee82 2914
65f13b50
AW
2915 CMAP_FOR_EACH (pmd, node, &dp->poll_threads) {
2916 if (pmd->numa_id == numa_id) {
2917 dp_netdev_del_pmd(pmd);
2918 }
6c3eee82 2919 }
65f13b50 2920}
6c3eee82 2921
65f13b50
AW
2922/* Checks the numa node id of 'netdev' and starts pmd threads for
2923 * the numa node. */
2924static void
2925dp_netdev_set_pmds_on_numa(struct dp_netdev *dp, int numa_id)
2926{
2927 int n_pmds;
e4cfed38 2928
65f13b50
AW
2929 if (!ovs_numa_numa_id_is_valid(numa_id)) {
2930 VLOG_ERR("Cannot create pmd threads due to numa id (%d)"
2931 "invalid", numa_id);
2932 return ;
2933 }
2934
2935 n_pmds = get_n_pmd_threads_on_numa(dp, numa_id);
2936
2937 /* If there are already pmd threads created for the numa node
2938 * in which 'netdev' is on, do nothing. Else, creates the
2939 * pmd threads for the numa node. */
2940 if (!n_pmds) {
2941 int can_have, n_unpinned, i;
2942
2943 n_unpinned = ovs_numa_get_n_unpinned_cores_on_numa(numa_id);
2944 if (!n_unpinned) {
2945 VLOG_ERR("Cannot create pmd threads due to out of unpinned "
2946 "cores on numa node");
2947 return;
2948 }
6c3eee82 2949
f2eee189
AW
2950 /* If cpu mask is specified, uses all unpinned cores, otherwise
2951 * tries creating NR_PMD_THREADS pmd threads. */
2952 can_have = dp->pmd_cmask ? n_unpinned : MIN(n_unpinned, NR_PMD_THREADS);
65f13b50
AW
2953 for (i = 0; i < can_have; i++) {
2954 struct dp_netdev_pmd_thread *pmd = xzalloc(sizeof *pmd);
bd5131ba 2955 unsigned core_id = ovs_numa_get_unpinned_core_on_numa(numa_id);
e4cfed38 2956
65f13b50
AW
2957 dp_netdev_configure_pmd(pmd, dp, i, core_id, numa_id);
2958 /* Each thread will distribute all devices rx-queues among
2959 * themselves. */
2960 pmd->thread = ovs_thread_create("pmd", pmd_thread_main, pmd);
2961 }
2962 VLOG_INFO("Created %d pmd threads on numa node %d", can_have, numa_id);
6c3eee82
BP
2963 }
2964}
e4cfed38 2965
6c3eee82 2966\f
f2eee189
AW
2967/* Called after pmd threads config change. Restarts pmd threads with
2968 * new configuration. */
2969static void
2970dp_netdev_reset_pmd_threads(struct dp_netdev *dp)
2971{
2972 struct dp_netdev_port *port;
2973
2974 CMAP_FOR_EACH (port, node, &dp->ports) {
2975 if (netdev_is_pmd(port->netdev)) {
2976 int numa_id = netdev_get_numa_id(port->netdev);
2977
2978 dp_netdev_set_pmds_on_numa(dp, numa_id);
2979 }
2980 }
2981}
2982
b5cbbcf6
AZ
2983static char *
2984dpif_netdev_get_datapath_version(void)
2985{
2986 return xstrdup("<built-in>");
2987}
2988
72865317 2989static void
1c1e46ed 2990dp_netdev_flow_used(struct dp_netdev_flow *netdev_flow, int cnt, int size,
11bfdadd 2991 uint16_t tcp_flags, long long now)
72865317 2992{
eb94da30 2993 uint16_t flags;
72865317 2994
eb94da30
DDP
2995 atomic_store_relaxed(&netdev_flow->stats.used, now);
2996 non_atomic_ullong_add(&netdev_flow->stats.packet_count, cnt);
2997 non_atomic_ullong_add(&netdev_flow->stats.byte_count, size);
2998 atomic_read_relaxed(&netdev_flow->stats.tcp_flags, &flags);
2999 flags |= tcp_flags;
3000 atomic_store_relaxed(&netdev_flow->stats.tcp_flags, flags);
51852a57
BP
3001}
3002
3003static void
1c1e46ed
AW
3004dp_netdev_count_packet(struct dp_netdev_pmd_thread *pmd,
3005 enum dp_stat_type type, int cnt)
51852a57 3006{
eb94da30 3007 non_atomic_ullong_add(&pmd->stats.n[type], cnt);
51852a57
BP
3008}
3009
623540e4 3010static int
e14deea0 3011dp_netdev_upcall(struct dp_netdev_pmd_thread *pmd, struct dp_packet *packet_,
7af12bd7 3012 struct flow *flow, struct flow_wildcards *wc, ovs_u128 *ufid,
623540e4
EJ
3013 enum dpif_upcall_type type, const struct nlattr *userdata,
3014 struct ofpbuf *actions, struct ofpbuf *put_actions)
3015{
1c1e46ed 3016 struct dp_netdev *dp = pmd->dp;
623540e4 3017
623540e4
EJ
3018 if (OVS_UNLIKELY(!dp->upcall_cb)) {
3019 return ENODEV;
3020 }
3021
3022 if (OVS_UNLIKELY(!VLOG_DROP_DBG(&upcall_rl))) {
3023 struct ds ds = DS_EMPTY_INITIALIZER;
623540e4 3024 char *packet_str;
cf62fa4c 3025 struct ofpbuf key;
5262eea1
JG
3026 struct odp_flow_key_parms odp_parms = {
3027 .flow = flow,
3028 .mask = &wc->masks,
3029 .odp_in_port = flow->in_port.odp_port,
2494ccd7 3030 .support = dp_netdev_support,
5262eea1 3031 };
623540e4
EJ
3032
3033 ofpbuf_init(&key, 0);
5262eea1 3034 odp_flow_key_from_flow(&odp_parms, &key);
cf62fa4c
PS
3035 packet_str = ofp_packet_to_string(dp_packet_data(packet_),
3036 dp_packet_size(packet_));
623540e4 3037
6fd6ed71 3038 odp_flow_key_format(key.data, key.size, &ds);
623540e4
EJ
3039
3040 VLOG_DBG("%s: %s upcall:\n%s\n%s", dp->name,
3041 dpif_upcall_type_to_string(type), ds_cstr(&ds), packet_str);
3042
3043 ofpbuf_uninit(&key);
3044 free(packet_str);
6fd6ed71 3045
623540e4
EJ
3046 ds_destroy(&ds);
3047 }
3048
cf62fa4c 3049 return dp->upcall_cb(packet_, flow, ufid, pmd->core_id, type, userdata,
1c1e46ed 3050 actions, wc, put_actions, dp->upcall_aux);
623540e4
EJ
3051}
3052
9bbf1c3d 3053static inline uint32_t
048963aa
DDP
3054dpif_netdev_packet_get_rss_hash(struct dp_packet *packet,
3055 const struct miniflow *mf)
9bbf1c3d 3056{
048963aa 3057 uint32_t hash, recirc_depth;
9bbf1c3d 3058
2bc1bbd2 3059 hash = dp_packet_get_rss_hash(packet);
9bbf1c3d
DDP
3060 if (OVS_UNLIKELY(!hash)) {
3061 hash = miniflow_hash_5tuple(mf, 0);
2bc1bbd2 3062 dp_packet_set_rss_hash(packet, hash);
9bbf1c3d 3063 }
048963aa
DDP
3064
3065 /* The RSS hash must account for the recirculation depth to avoid
3066 * collisions in the exact match cache */
3067 recirc_depth = *recirc_depth_get_unsafe();
3068 if (OVS_UNLIKELY(recirc_depth)) {
3069 hash = hash_finish(hash, recirc_depth);
3070 dp_packet_set_rss_hash(packet, hash);
3071 }
9bbf1c3d
DDP
3072 return hash;
3073}
3074
567bbb2e 3075struct packet_batch {
8cbf4f47
DDP
3076 unsigned int packet_count;
3077 unsigned int byte_count;
3078 uint16_t tcp_flags;
3079
3080 struct dp_netdev_flow *flow;
3081
cd159f1a 3082 struct dp_packet *packets[NETDEV_MAX_BURST];
8cbf4f47
DDP
3083};
3084
3085static inline void
e14deea0 3086packet_batch_update(struct packet_batch *batch, struct dp_packet *packet,
9bbf1c3d 3087 const struct miniflow *mf)
8cbf4f47
DDP
3088{
3089 batch->tcp_flags |= miniflow_get_tcp_flags(mf);
3090 batch->packets[batch->packet_count++] = packet;
cf62fa4c 3091 batch->byte_count += dp_packet_size(packet);
8cbf4f47
DDP
3092}
3093
3094static inline void
41ccaa24 3095packet_batch_init(struct packet_batch *batch, struct dp_netdev_flow *flow)
8cbf4f47 3096{
11e5cf1f 3097 flow->batch = batch;
8cbf4f47 3098
11e5cf1f 3099 batch->flow = flow;
8cbf4f47
DDP
3100 batch->packet_count = 0;
3101 batch->byte_count = 0;
3102 batch->tcp_flags = 0;
8cbf4f47
DDP
3103}
3104
3105static inline void
65f13b50 3106packet_batch_execute(struct packet_batch *batch,
abcf3ef4 3107 struct dp_netdev_pmd_thread *pmd,
11bfdadd 3108 long long now)
8cbf4f47
DDP
3109{
3110 struct dp_netdev_actions *actions;
3111 struct dp_netdev_flow *flow = batch->flow;
3112
11e5cf1f 3113 dp_netdev_flow_used(flow, batch->packet_count, batch->byte_count,
11bfdadd 3114 batch->tcp_flags, now);
8cbf4f47
DDP
3115
3116 actions = dp_netdev_flow_get_actions(flow);
3117
65f13b50 3118 dp_netdev_execute_actions(pmd, batch->packets, batch->packet_count, true,
41ccaa24 3119 actions->actions, actions->size);
8cbf4f47
DDP
3120}
3121
8aaa125d 3122static inline void
e14deea0 3123dp_netdev_queue_batches(struct dp_packet *pkt,
9bbf1c3d 3124 struct dp_netdev_flow *flow, const struct miniflow *mf,
8aaa125d 3125 struct packet_batch *batches, size_t *n_batches)
9bbf1c3d 3126{
8aaa125d 3127 struct packet_batch *batch = flow->batch;
11e5cf1f
DDP
3128
3129 if (OVS_LIKELY(batch)) {
3130 packet_batch_update(batch, pkt, mf);
8aaa125d 3131 return;
9bbf1c3d
DDP
3132 }
3133
3134 batch = &batches[(*n_batches)++];
41ccaa24 3135 packet_batch_init(batch, flow);
9bbf1c3d 3136 packet_batch_update(batch, pkt, mf);
9bbf1c3d
DDP
3137}
3138
3139static inline void
e14deea0 3140dp_packet_swap(struct dp_packet **a, struct dp_packet **b)
9bbf1c3d 3141{
e14deea0 3142 struct dp_packet *tmp = *a;
9bbf1c3d
DDP
3143 *a = *b;
3144 *b = tmp;
3145}
3146
3147/* Try to process all ('cnt') the 'packets' using only the exact match cache
8aaa125d
DDP
3148 * 'flow_cache'. If a flow is not found for a packet 'packets[i]', the
3149 * miniflow is copied into 'keys' and the packet pointer is moved at the
3150 * beginning of the 'packets' array.
9bbf1c3d
DDP
3151 *
3152 * The function returns the number of packets that needs to be processed in the
3153 * 'packets' array (they have been moved to the beginning of the vector).
3154 */
3155static inline size_t
e14deea0 3156emc_processing(struct dp_netdev_pmd_thread *pmd, struct dp_packet **packets,
8aaa125d
DDP
3157 size_t cnt, struct netdev_flow_key *keys,
3158 struct packet_batch batches[], size_t *n_batches)
72865317 3159{
65f13b50 3160 struct emc_cache *flow_cache = &pmd->flow_cache;
8aaa125d
DDP
3161 struct netdev_flow_key key;
3162 size_t i, notfound_cnt = 0;
8cbf4f47 3163
84d6d5eb 3164 for (i = 0; i < cnt; i++) {
9bbf1c3d 3165 struct dp_netdev_flow *flow;
9bbf1c3d 3166
cf62fa4c 3167 if (OVS_UNLIKELY(dp_packet_size(packets[i]) < ETH_HEADER_LEN)) {
e14deea0 3168 dp_packet_delete(packets[i]);
84d6d5eb
EJ
3169 continue;
3170 }
8cbf4f47 3171
72a5e2b8
DDP
3172 if (i != cnt - 1) {
3173 /* Prefetch next packet data */
3174 OVS_PREFETCH(dp_packet_data(packets[i+1]));
3175 }
3176
cf62fa4c 3177 miniflow_extract(packets[i], &key.mf);
0de8783a 3178 key.len = 0; /* Not computed yet. */
048963aa 3179 key.hash = dpif_netdev_packet_get_rss_hash(packets[i], &key.mf);
9bbf1c3d 3180
0de8783a 3181 flow = emc_lookup(flow_cache, &key);
8aaa125d
DDP
3182 if (OVS_LIKELY(flow)) {
3183 dp_netdev_queue_batches(packets[i], flow, &key.mf, batches,
3184 n_batches);
3185 } else {
9bbf1c3d 3186 if (i != notfound_cnt) {
e14deea0 3187 dp_packet_swap(&packets[i], &packets[notfound_cnt]);
9bbf1c3d
DDP
3188 }
3189
3190 keys[notfound_cnt++] = key;
3191 }
3192 }
3193
8aaa125d 3194 dp_netdev_count_packet(pmd, DP_STAT_EXACT_HIT, cnt - notfound_cnt);
4f150744 3195
9bbf1c3d
DDP
3196 return notfound_cnt;
3197}
3198
3199static inline void
65f13b50 3200fast_path_processing(struct dp_netdev_pmd_thread *pmd,
e14deea0 3201 struct dp_packet **packets, size_t cnt,
8aaa125d
DDP
3202 struct netdev_flow_key *keys,
3203 struct packet_batch batches[], size_t *n_batches)
9bbf1c3d 3204{
1a0d5831 3205#if !defined(__CHECKER__) && !defined(_WIN32)
9bbf1c3d
DDP
3206 const size_t PKT_ARRAY_SIZE = cnt;
3207#else
1a0d5831 3208 /* Sparse or MSVC doesn't like variable length array. */
cd159f1a 3209 enum { PKT_ARRAY_SIZE = NETDEV_MAX_BURST };
9bbf1c3d 3210#endif
0de8783a 3211 struct dpcls_rule *rules[PKT_ARRAY_SIZE];
65f13b50
AW
3212 struct dp_netdev *dp = pmd->dp;
3213 struct emc_cache *flow_cache = &pmd->flow_cache;
8aaa125d 3214 int miss_cnt = 0, lost_cnt = 0;
9bbf1c3d 3215 bool any_miss;
8aaa125d 3216 size_t i;
9bbf1c3d
DDP
3217
3218 for (i = 0; i < cnt; i++) {
0de8783a
JR
3219 /* Key length is needed in all the cases, hash computed on demand. */
3220 keys[i].len = netdev_flow_key_size(count_1bits(keys[i].mf.map));
9bbf1c3d 3221 }
1c1e46ed 3222 any_miss = !dpcls_lookup(&pmd->cls, keys, rules, cnt);
623540e4
EJ
3223 if (OVS_UNLIKELY(any_miss) && !fat_rwlock_tryrdlock(&dp->upcall_rwlock)) {
3224 uint64_t actions_stub[512 / 8], slow_stub[512 / 8];
3225 struct ofpbuf actions, put_actions;
7af12bd7 3226 ovs_u128 ufid;
623540e4
EJ
3227
3228 ofpbuf_use_stub(&actions, actions_stub, sizeof actions_stub);
3229 ofpbuf_use_stub(&put_actions, slow_stub, sizeof slow_stub);
3230
3231 for (i = 0; i < cnt; i++) {
0de8783a 3232 struct dp_netdev_flow *netdev_flow;
623540e4 3233 struct ofpbuf *add_actions;
0de8783a 3234 struct match match;
623540e4
EJ
3235 int error;
3236
0de8783a 3237 if (OVS_LIKELY(rules[i])) {
623540e4
EJ
3238 continue;
3239 }
3240
3241 /* It's possible that an earlier slow path execution installed
0de8783a 3242 * a rule covering this flow. In this case, it's a lot cheaper
623540e4 3243 * to catch it here than execute a miss. */
1c1e46ed 3244 netdev_flow = dp_netdev_pmd_lookup_flow(pmd, &keys[i]);
623540e4 3245 if (netdev_flow) {
0de8783a 3246 rules[i] = &netdev_flow->cr;
623540e4
EJ
3247 continue;
3248 }
3249
60fc3b7b
DDP
3250 miss_cnt++;
3251
0de8783a 3252 miniflow_expand(&keys[i].mf, &match.flow);
623540e4
EJ
3253
3254 ofpbuf_clear(&actions);
3255 ofpbuf_clear(&put_actions);
3256
7af12bd7 3257 dpif_flow_hash(dp->dpif, &match.flow, sizeof match.flow, &ufid);
1c1e46ed 3258 error = dp_netdev_upcall(pmd, packets[i], &match.flow, &match.wc,
7af12bd7 3259 &ufid, DPIF_UC_MISS, NULL, &actions,
0de8783a 3260 &put_actions);
623540e4 3261 if (OVS_UNLIKELY(error && error != ENOSPC)) {
7ad20cbd 3262 dp_packet_delete(packets[i]);
60fc3b7b 3263 lost_cnt++;
623540e4
EJ
3264 continue;
3265 }
3266
3267 /* We can't allow the packet batching in the next loop to execute
3268 * the actions. Otherwise, if there are any slow path actions,
3269 * we'll send the packet up twice. */
41ccaa24 3270 dp_netdev_execute_actions(pmd, &packets[i], 1, true,
6fd6ed71 3271 actions.data, actions.size);
623540e4 3272
6fd6ed71 3273 add_actions = put_actions.size ? &put_actions : &actions;
0de8783a
JR
3274 if (OVS_LIKELY(error != ENOSPC)) {
3275 /* XXX: There's a race window where a flow covering this packet
3276 * could have already been installed since we last did the flow
3277 * lookup before upcall. This could be solved by moving the
3278 * mutex lock outside the loop, but that's an awful long time
3279 * to be locking everyone out of making flow installs. If we
3280 * move to a per-core classifier, it would be reasonable. */
1c1e46ed
AW
3281 ovs_mutex_lock(&pmd->flow_mutex);
3282 netdev_flow = dp_netdev_pmd_lookup_flow(pmd, &keys[i]);
0de8783a 3283 if (OVS_LIKELY(!netdev_flow)) {
1c1e46ed 3284 netdev_flow = dp_netdev_flow_add(pmd, &match, &ufid,
6fd6ed71
PS
3285 add_actions->data,
3286 add_actions->size);
0de8783a 3287 }
1c1e46ed 3288 ovs_mutex_unlock(&pmd->flow_mutex);
0de8783a 3289
0de8783a 3290 emc_insert(flow_cache, &keys[i], netdev_flow);
623540e4 3291 }
623540e4
EJ
3292 }
3293
3294 ofpbuf_uninit(&actions);
3295 ofpbuf_uninit(&put_actions);
3296 fat_rwlock_unlock(&dp->upcall_rwlock);
60fc3b7b 3297 dp_netdev_count_packet(pmd, DP_STAT_LOST, lost_cnt);
ac8c2081 3298 } else if (OVS_UNLIKELY(any_miss)) {
ac8c2081 3299 for (i = 0; i < cnt; i++) {
0de8783a 3300 if (OVS_UNLIKELY(!rules[i])) {
e14deea0 3301 dp_packet_delete(packets[i]);
8aaa125d
DDP
3302 lost_cnt++;
3303 miss_cnt++;
ac8c2081
DDP
3304 }
3305 }
623540e4 3306 }
84d6d5eb 3307
8cbf4f47 3308 for (i = 0; i < cnt; i++) {
e14deea0 3309 struct dp_packet *packet = packets[i];
84d6d5eb 3310 struct dp_netdev_flow *flow;
8cbf4f47 3311
0de8783a 3312 if (OVS_UNLIKELY(!rules[i])) {
84d6d5eb
EJ
3313 continue;
3314 }
3315
84d6d5eb 3316 flow = dp_netdev_flow_cast(rules[i]);
0de8783a 3317
0de8783a 3318 emc_insert(flow_cache, &keys[i], flow);
8aaa125d 3319 dp_netdev_queue_batches(packet, flow, &keys[i].mf, batches, n_batches);
8cbf4f47
DDP
3320 }
3321
8aaa125d
DDP
3322 dp_netdev_count_packet(pmd, DP_STAT_MASKED_HIT, cnt - miss_cnt);
3323 dp_netdev_count_packet(pmd, DP_STAT_MISS, miss_cnt);
3324 dp_netdev_count_packet(pmd, DP_STAT_LOST, lost_cnt);
72865317
BP
3325}
3326
adcf00ba 3327static void
65f13b50 3328dp_netdev_input(struct dp_netdev_pmd_thread *pmd,
e14deea0 3329 struct dp_packet **packets, int cnt)
9bbf1c3d 3330{
1a0d5831 3331#if !defined(__CHECKER__) && !defined(_WIN32)
9bbf1c3d
DDP
3332 const size_t PKT_ARRAY_SIZE = cnt;
3333#else
1a0d5831 3334 /* Sparse or MSVC doesn't like variable length array. */
cd159f1a 3335 enum { PKT_ARRAY_SIZE = NETDEV_MAX_BURST };
9bbf1c3d
DDP
3336#endif
3337 struct netdev_flow_key keys[PKT_ARRAY_SIZE];
8aaa125d 3338 struct packet_batch batches[PKT_ARRAY_SIZE];
11bfdadd 3339 long long now = time_msec();
8aaa125d 3340 size_t newcnt, n_batches, i;
9bbf1c3d 3341
8aaa125d
DDP
3342 n_batches = 0;
3343 newcnt = emc_processing(pmd, packets, cnt, keys, batches, &n_batches);
9bbf1c3d 3344 if (OVS_UNLIKELY(newcnt)) {
8aaa125d
DDP
3345 fast_path_processing(pmd, packets, newcnt, keys, batches, &n_batches);
3346 }
3347
603f2ce0
EJ
3348 for (i = 0; i < n_batches; i++) {
3349 batches[i].flow->batch = NULL;
3350 }
3351
8aaa125d
DDP
3352 for (i = 0; i < n_batches; i++) {
3353 packet_batch_execute(&batches[i], pmd, now);
9bbf1c3d
DDP
3354 }
3355}
3356
9080a111 3357struct dp_netdev_execute_aux {
65f13b50 3358 struct dp_netdev_pmd_thread *pmd;
9080a111
JR
3359};
3360
6b31e073 3361static void
623540e4
EJ
3362dpif_netdev_register_upcall_cb(struct dpif *dpif, upcall_callback *cb,
3363 void *aux)
6b31e073
RW
3364{
3365 struct dp_netdev *dp = get_dp_netdev(dpif);
623540e4 3366 dp->upcall_aux = aux;
6b31e073
RW
3367 dp->upcall_cb = cb;
3368}
3369
ac8c2081 3370static void
3bcc10c0 3371dp_netdev_drop_packets(struct dp_packet **packets, int cnt, bool may_steal)
ac8c2081 3372{
ac8c2081 3373 if (may_steal) {
a36de779
PS
3374 int i;
3375
ac8c2081 3376 for (i = 0; i < cnt; i++) {
e14deea0 3377 dp_packet_delete(packets[i]);
ac8c2081
DDP
3378 }
3379 }
3380}
3381
a36de779
PS
3382static int
3383push_tnl_action(const struct dp_netdev *dp,
3384 const struct nlattr *attr,
e14deea0 3385 struct dp_packet **packets, int cnt)
a36de779
PS
3386{
3387 struct dp_netdev_port *tun_port;
3388 const struct ovs_action_push_tnl *data;
3389
3390 data = nl_attr_get(attr);
3391
3392 tun_port = dp_netdev_lookup_port(dp, u32_to_odp(data->tnl_port));
3393 if (!tun_port) {
3394 return -EINVAL;
3395 }
3396 netdev_push_header(tun_port->netdev, packets, cnt, data);
3397
3398 return 0;
3399}
3400
3401static void
28e2fa02
DDP
3402dp_netdev_clone_pkt_batch(struct dp_packet **dst_pkts,
3403 struct dp_packet **src_pkts, int cnt)
a36de779
PS
3404{
3405 int i;
3406
3407 for (i = 0; i < cnt; i++) {
28e2fa02 3408 dst_pkts[i] = dp_packet_clone(src_pkts[i]);
a36de779
PS
3409 }
3410}
3411
9080a111 3412static void
e14deea0 3413dp_execute_cb(void *aux_, struct dp_packet **packets, int cnt,
09f9da0b 3414 const struct nlattr *a, bool may_steal)
8a4e3a85 3415 OVS_NO_THREAD_SAFETY_ANALYSIS
9080a111
JR
3416{
3417 struct dp_netdev_execute_aux *aux = aux_;
623540e4 3418 uint32_t *depth = recirc_depth_get();
28e2fa02
DDP
3419 struct dp_netdev_pmd_thread *pmd = aux->pmd;
3420 struct dp_netdev *dp = pmd->dp;
09f9da0b 3421 int type = nl_attr_type(a);
8a4e3a85 3422 struct dp_netdev_port *p;
8cbf4f47 3423 int i;
9080a111 3424
09f9da0b
JR
3425 switch ((enum ovs_action_attr)type) {
3426 case OVS_ACTION_ATTR_OUTPUT:
623540e4 3427 p = dp_netdev_lookup_port(dp, u32_to_odp(nl_attr_get_u32(a)));
26a5075b 3428 if (OVS_LIKELY(p)) {
3bcc10c0 3429 netdev_send(p->netdev, pmd->tx_qid, packets, cnt, may_steal);
ac8c2081 3430 return;
8a4e3a85 3431 }
09f9da0b
JR
3432 break;
3433
a36de779
PS
3434 case OVS_ACTION_ATTR_TUNNEL_PUSH:
3435 if (*depth < MAX_RECIRC_DEPTH) {
cd159f1a 3436 struct dp_packet *tnl_pkt[NETDEV_MAX_BURST];
a36de779
PS
3437 int err;
3438
3439 if (!may_steal) {
3440 dp_netdev_clone_pkt_batch(tnl_pkt, packets, cnt);
3441 packets = tnl_pkt;
3442 }
3443
3444 err = push_tnl_action(dp, a, packets, cnt);
3445 if (!err) {
3446 (*depth)++;
3447 dp_netdev_input(pmd, packets, cnt);
3448 (*depth)--;
3449 } else {
3450 dp_netdev_drop_packets(tnl_pkt, cnt, !may_steal);
3451 }
3452 return;
3453 }
3454 break;
3455
3456 case OVS_ACTION_ATTR_TUNNEL_POP:
3457 if (*depth < MAX_RECIRC_DEPTH) {
3458 odp_port_t portno = u32_to_odp(nl_attr_get_u32(a));
3459
3460 p = dp_netdev_lookup_port(dp, portno);
3461 if (p) {
cd159f1a 3462 struct dp_packet *tnl_pkt[NETDEV_MAX_BURST];
a36de779
PS
3463 int err;
3464
3465 if (!may_steal) {
3466 dp_netdev_clone_pkt_batch(tnl_pkt, packets, cnt);
3467 packets = tnl_pkt;
3468 }
3469
3470 err = netdev_pop_header(p->netdev, packets, cnt);
3471 if (!err) {
3472
3473 for (i = 0; i < cnt; i++) {
3474 packets[i]->md.in_port.odp_port = portno;
3475 }
3476
3477 (*depth)++;
3478 dp_netdev_input(pmd, packets, cnt);
3479 (*depth)--;
3480 } else {
3481 dp_netdev_drop_packets(tnl_pkt, cnt, !may_steal);
3482 }
3483 return;
3484 }
3485 }
3486 break;
3487
623540e4
EJ
3488 case OVS_ACTION_ATTR_USERSPACE:
3489 if (!fat_rwlock_tryrdlock(&dp->upcall_rwlock)) {
3490 const struct nlattr *userdata;
3491 struct ofpbuf actions;
3492 struct flow flow;
7af12bd7 3493 ovs_u128 ufid;
4fc65926 3494
623540e4
EJ
3495 userdata = nl_attr_find_nested(a, OVS_USERSPACE_ATTR_USERDATA);
3496 ofpbuf_init(&actions, 0);
8cbf4f47 3497
623540e4
EJ
3498 for (i = 0; i < cnt; i++) {
3499 int error;
3500
3501 ofpbuf_clear(&actions);
3502
cf62fa4c 3503 flow_extract(packets[i], &flow);
7af12bd7 3504 dpif_flow_hash(dp->dpif, &flow, sizeof flow, &ufid);
1c1e46ed 3505 error = dp_netdev_upcall(pmd, packets[i], &flow, NULL, &ufid,
7af12bd7 3506 DPIF_UC_ACTION, userdata,&actions,
623540e4
EJ
3507 NULL);
3508 if (!error || error == ENOSPC) {
ac8c2081 3509 dp_netdev_execute_actions(pmd, &packets[i], 1, may_steal,
6fd6ed71 3510 actions.data, actions.size);
ac8c2081 3511 } else if (may_steal) {
e14deea0 3512 dp_packet_delete(packets[i]);
623540e4 3513 }
db73f716 3514 }
623540e4
EJ
3515 ofpbuf_uninit(&actions);
3516 fat_rwlock_unlock(&dp->upcall_rwlock);
6b31e073 3517
ac8c2081
DDP
3518 return;
3519 }
09f9da0b 3520 break;
572f732a 3521
adcf00ba
AZ
3522 case OVS_ACTION_ATTR_RECIRC:
3523 if (*depth < MAX_RECIRC_DEPTH) {
cd159f1a 3524 struct dp_packet *recirc_pkts[NETDEV_MAX_BURST];
572f732a 3525
28e2fa02
DDP
3526 if (!may_steal) {
3527 dp_netdev_clone_pkt_batch(recirc_pkts, packets, cnt);
3528 packets = recirc_pkts;
3529 }
8cbf4f47 3530
28e2fa02
DDP
3531 for (i = 0; i < cnt; i++) {
3532 packets[i]->md.recirc_id = nl_attr_get_u32(a);
8cbf4f47 3533 }
28e2fa02
DDP
3534
3535 (*depth)++;
3536 dp_netdev_input(pmd, packets, cnt);
adcf00ba
AZ
3537 (*depth)--;
3538
ac8c2081 3539 return;
adcf00ba 3540 }
ac8c2081
DDP
3541
3542 VLOG_WARN("Packet dropped. Max recirculation depth exceeded.");
572f732a 3543 break;
572f732a 3544
09f9da0b
JR
3545 case OVS_ACTION_ATTR_PUSH_VLAN:
3546 case OVS_ACTION_ATTR_POP_VLAN:
3547 case OVS_ACTION_ATTR_PUSH_MPLS:
3548 case OVS_ACTION_ATTR_POP_MPLS:
3549 case OVS_ACTION_ATTR_SET:
6d670e7f 3550 case OVS_ACTION_ATTR_SET_MASKED:
09f9da0b 3551 case OVS_ACTION_ATTR_SAMPLE:
53e1d6f1 3552 case OVS_ACTION_ATTR_HASH:
09f9da0b
JR
3553 case OVS_ACTION_ATTR_UNSPEC:
3554 case __OVS_ACTION_ATTR_MAX:
3555 OVS_NOT_REACHED();
da546e07 3556 }
ac8c2081
DDP
3557
3558 dp_netdev_drop_packets(packets, cnt, may_steal);
98403001
BP
3559}
3560
4edb9ae9 3561static void
65f13b50 3562dp_netdev_execute_actions(struct dp_netdev_pmd_thread *pmd,
e14deea0 3563 struct dp_packet **packets, int cnt,
41ccaa24 3564 bool may_steal,
9080a111 3565 const struct nlattr *actions, size_t actions_len)
72865317 3566{
41ccaa24 3567 struct dp_netdev_execute_aux aux = { pmd };
9080a111 3568
41ccaa24 3569 odp_execute_actions(&aux, packets, cnt, may_steal, actions,
8cbf4f47 3570 actions_len, dp_execute_cb);
72865317
BP
3571}
3572
3573const struct dpif_class dpif_netdev_class = {
72865317 3574 "netdev",
6553d06b 3575 dpif_netdev_init,
2197d7ab 3576 dpif_netdev_enumerate,
0aeaabc8 3577 dpif_netdev_port_open_type,
72865317
BP
3578 dpif_netdev_open,
3579 dpif_netdev_close,
7dab847a 3580 dpif_netdev_destroy,
e4cfed38
PS
3581 dpif_netdev_run,
3582 dpif_netdev_wait,
72865317 3583 dpif_netdev_get_stats,
72865317
BP
3584 dpif_netdev_port_add,
3585 dpif_netdev_port_del,
3586 dpif_netdev_port_query_by_number,
3587 dpif_netdev_port_query_by_name,
98403001 3588 NULL, /* port_get_pid */
b0ec0f27
BP
3589 dpif_netdev_port_dump_start,
3590 dpif_netdev_port_dump_next,
3591 dpif_netdev_port_dump_done,
72865317
BP
3592 dpif_netdev_port_poll,
3593 dpif_netdev_port_poll_wait,
72865317 3594 dpif_netdev_flow_flush,
ac64794a
BP
3595 dpif_netdev_flow_dump_create,
3596 dpif_netdev_flow_dump_destroy,
3597 dpif_netdev_flow_dump_thread_create,
3598 dpif_netdev_flow_dump_thread_destroy,
704a1e09 3599 dpif_netdev_flow_dump_next,
1a0c894a 3600 dpif_netdev_operate,
6b31e073
RW
3601 NULL, /* recv_set */
3602 NULL, /* handlers_set */
f2eee189 3603 dpif_netdev_pmd_set,
5bf93d67 3604 dpif_netdev_queue_to_priority,
6b31e073
RW
3605 NULL, /* recv */
3606 NULL, /* recv_wait */
3607 NULL, /* recv_purge */
3608 dpif_netdev_register_upcall_cb,
3609 dpif_netdev_enable_upcall,
3610 dpif_netdev_disable_upcall,
b5cbbcf6 3611 dpif_netdev_get_datapath_version,
72865317 3612};
614c4892 3613
74cc3969
BP
3614static void
3615dpif_dummy_change_port_number(struct unixctl_conn *conn, int argc OVS_UNUSED,
3616 const char *argv[], void *aux OVS_UNUSED)
3617{
59e6d833
BP
3618 struct dp_netdev_port *old_port;
3619 struct dp_netdev_port *new_port;
74cc3969 3620 struct dp_netdev *dp;
ff073a71 3621 odp_port_t port_no;
74cc3969 3622
8a4e3a85 3623 ovs_mutex_lock(&dp_netdev_mutex);
74cc3969
BP
3624 dp = shash_find_data(&dp_netdevs, argv[1]);
3625 if (!dp || !dpif_netdev_class_is_dummy(dp->class)) {
8a4e3a85 3626 ovs_mutex_unlock(&dp_netdev_mutex);
74cc3969
BP
3627 unixctl_command_reply_error(conn, "unknown datapath or not a dummy");
3628 return;
3629 }
8a4e3a85
BP
3630 ovs_refcount_ref(&dp->ref_cnt);
3631 ovs_mutex_unlock(&dp_netdev_mutex);
74cc3969 3632
59e6d833
BP
3633 ovs_mutex_lock(&dp->port_mutex);
3634 if (get_port_by_name(dp, argv[2], &old_port)) {
74cc3969 3635 unixctl_command_reply_error(conn, "unknown port");
8a4e3a85 3636 goto exit;
74cc3969
BP
3637 }
3638
ff073a71
BP
3639 port_no = u32_to_odp(atoi(argv[3]));
3640 if (!port_no || port_no == ODPP_NONE) {
74cc3969 3641 unixctl_command_reply_error(conn, "bad port number");
8a4e3a85 3642 goto exit;
74cc3969 3643 }
ff073a71 3644 if (dp_netdev_lookup_port(dp, port_no)) {
74cc3969 3645 unixctl_command_reply_error(conn, "port number already in use");
8a4e3a85 3646 goto exit;
74cc3969 3647 }
59e6d833
BP
3648
3649 /* Remove old port. */
35303d71 3650 cmap_remove(&dp->ports, &old_port->node, hash_port_no(old_port->port_no));
59e6d833
BP
3651 ovsrcu_postpone(free, old_port);
3652
3653 /* Insert new port (cmap semantics mean we cannot re-insert 'old_port'). */
3654 new_port = xmemdup(old_port, sizeof *old_port);
35303d71 3655 new_port->port_no = port_no;
59e6d833
BP
3656 cmap_insert(&dp->ports, &new_port->node, hash_port_no(port_no));
3657
d33ed218 3658 seq_change(dp->port_seq);
74cc3969 3659 unixctl_command_reply(conn, NULL);
8a4e3a85
BP
3660
3661exit:
59e6d833 3662 ovs_mutex_unlock(&dp->port_mutex);
8a4e3a85 3663 dp_netdev_unref(dp);
74cc3969
BP
3664}
3665
c40b890f
BP
3666static void
3667dpif_dummy_delete_port(struct unixctl_conn *conn, int argc OVS_UNUSED,
3668 const char *argv[], void *aux OVS_UNUSED)
3669{
3670 struct dp_netdev_port *port;
3671 struct dp_netdev *dp;
3672
3673 ovs_mutex_lock(&dp_netdev_mutex);
3674 dp = shash_find_data(&dp_netdevs, argv[1]);
3675 if (!dp || !dpif_netdev_class_is_dummy(dp->class)) {
3676 ovs_mutex_unlock(&dp_netdev_mutex);
3677 unixctl_command_reply_error(conn, "unknown datapath or not a dummy");
3678 return;
3679 }
3680 ovs_refcount_ref(&dp->ref_cnt);
3681 ovs_mutex_unlock(&dp_netdev_mutex);
3682
3683 ovs_mutex_lock(&dp->port_mutex);
3684 if (get_port_by_name(dp, argv[2], &port)) {
3685 unixctl_command_reply_error(conn, "unknown port");
35303d71 3686 } else if (port->port_no == ODPP_LOCAL) {
c40b890f
BP
3687 unixctl_command_reply_error(conn, "can't delete local port");
3688 } else {
3689 do_del_port(dp, port);
3690 unixctl_command_reply(conn, NULL);
3691 }
3692 ovs_mutex_unlock(&dp->port_mutex);
3693
3694 dp_netdev_unref(dp);
3695}
3696
0cbfe35d
BP
3697static void
3698dpif_dummy_register__(const char *type)
3699{
3700 struct dpif_class *class;
3701
3702 class = xmalloc(sizeof *class);
3703 *class = dpif_netdev_class;
3704 class->type = xstrdup(type);
3705 dp_register_provider(class);
3706}
3707
8420c7ad
BP
3708static void
3709dpif_dummy_override(const char *type)
3710{
3711 if (!dp_unregister_provider(type)) {
3712 dpif_dummy_register__(type);
3713 }
3714}
3715
614c4892 3716void
8420c7ad 3717dpif_dummy_register(enum dummy_level level)
614c4892 3718{
8420c7ad 3719 if (level == DUMMY_OVERRIDE_ALL) {
0cbfe35d
BP
3720 struct sset types;
3721 const char *type;
3722
3723 sset_init(&types);
3724 dp_enumerate_types(&types);
3725 SSET_FOR_EACH (type, &types) {
8420c7ad 3726 dpif_dummy_override(type);
0cbfe35d
BP
3727 }
3728 sset_destroy(&types);
8420c7ad
BP
3729 } else if (level == DUMMY_OVERRIDE_SYSTEM) {
3730 dpif_dummy_override("system");
614c4892 3731 }
0cbfe35d
BP
3732
3733 dpif_dummy_register__("dummy");
74cc3969
BP
3734
3735 unixctl_command_register("dpif-dummy/change-port-number",
74467d5c 3736 "dp port new-number",
74cc3969 3737 3, 3, dpif_dummy_change_port_number, NULL);
74467d5c 3738 unixctl_command_register("dpif-dummy/delete-port", "dp port",
c40b890f 3739 2, 2, dpif_dummy_delete_port, NULL);
614c4892 3740}
0de8783a
JR
3741\f
3742/* Datapath Classifier. */
3743
3744/* A set of rules that all have the same fields wildcarded. */
3745struct dpcls_subtable {
3746 /* The fields are only used by writers. */
3747 struct cmap_node cmap_node OVS_GUARDED; /* Within dpcls 'subtables_map'. */
3748
3749 /* These fields are accessed by readers. */
3750 struct cmap rules; /* Contains "struct dpcls_rule"s. */
3751 struct netdev_flow_key mask; /* Wildcards for fields (const). */
3752 /* 'mask' must be the last field, additional space is allocated here. */
3753};
3754
3755/* Initializes 'cls' as a classifier that initially contains no classification
3756 * rules. */
3757static void
3758dpcls_init(struct dpcls *cls)
3759{
3760 cmap_init(&cls->subtables_map);
3761 pvector_init(&cls->subtables);
3762}
3763
3764static void
3765dpcls_destroy_subtable(struct dpcls *cls, struct dpcls_subtable *subtable)
3766{
3767 pvector_remove(&cls->subtables, subtable);
3768 cmap_remove(&cls->subtables_map, &subtable->cmap_node,
3769 subtable->mask.hash);
3770 cmap_destroy(&subtable->rules);
3771 ovsrcu_postpone(free, subtable);
3772}
3773
3774/* Destroys 'cls'. Rules within 'cls', if any, are not freed; this is the
3775 * caller's responsibility.
3776 * May only be called after all the readers have been terminated. */
3777static void
3778dpcls_destroy(struct dpcls *cls)
3779{
3780 if (cls) {
3781 struct dpcls_subtable *subtable;
3782
3783 CMAP_FOR_EACH (subtable, cmap_node, &cls->subtables_map) {
3784 dpcls_destroy_subtable(cls, subtable);
3785 }
3786 cmap_destroy(&cls->subtables_map);
3787 pvector_destroy(&cls->subtables);
3788 }
3789}
3790
3791static struct dpcls_subtable *
3792dpcls_create_subtable(struct dpcls *cls, const struct netdev_flow_key *mask)
3793{
3794 struct dpcls_subtable *subtable;
3795
3796 /* Need to add one. */
caeb4906
JR
3797 subtable = xmalloc(sizeof *subtable
3798 - sizeof subtable->mask.mf + mask->len);
0de8783a
JR
3799 cmap_init(&subtable->rules);
3800 netdev_flow_key_clone(&subtable->mask, mask);
3801 cmap_insert(&cls->subtables_map, &subtable->cmap_node, mask->hash);
3802 pvector_insert(&cls->subtables, subtable, 0);
802f84ff 3803 pvector_publish(&cls->subtables);
0de8783a
JR
3804
3805 return subtable;
3806}
3807
3808static inline struct dpcls_subtable *
3809dpcls_find_subtable(struct dpcls *cls, const struct netdev_flow_key *mask)
3810{
3811 struct dpcls_subtable *subtable;
3812
3813 CMAP_FOR_EACH_WITH_HASH (subtable, cmap_node, mask->hash,
3814 &cls->subtables_map) {
3815 if (netdev_flow_key_equal(&subtable->mask, mask)) {
3816 return subtable;
3817 }
3818 }
3819 return dpcls_create_subtable(cls, mask);
3820}
3821
3822/* Insert 'rule' into 'cls'. */
3823static void
3824dpcls_insert(struct dpcls *cls, struct dpcls_rule *rule,
3825 const struct netdev_flow_key *mask)
3826{
3827 struct dpcls_subtable *subtable = dpcls_find_subtable(cls, mask);
3828
3829 rule->mask = &subtable->mask;
3830 cmap_insert(&subtable->rules, &rule->cmap_node, rule->flow.hash);
3831}
3832
3833/* Removes 'rule' from 'cls', also destructing the 'rule'. */
3834static void
3835dpcls_remove(struct dpcls *cls, struct dpcls_rule *rule)
3836{
3837 struct dpcls_subtable *subtable;
3838
3839 ovs_assert(rule->mask);
3840
3841 INIT_CONTAINER(subtable, rule->mask, mask);
3842
3843 if (cmap_remove(&subtable->rules, &rule->cmap_node, rule->flow.hash)
3844 == 0) {
3845 dpcls_destroy_subtable(cls, subtable);
802f84ff 3846 pvector_publish(&cls->subtables);
0de8783a
JR
3847 }
3848}
3849
3850/* Returns true if 'target' satisifies 'key' in 'mask', that is, if each 1-bit
3851 * in 'mask' the values in 'key' and 'target' are the same.
3852 *
3853 * Note: 'key' and 'mask' have the same mask, and 'key' is already masked. */
3854static inline bool
3855dpcls_rule_matches_key(const struct dpcls_rule *rule,
3856 const struct netdev_flow_key *target)
3857{
8fd47924
JR
3858 const uint64_t *keyp = rule->flow.mf.values;
3859 const uint64_t *maskp = rule->mask->mf.values;
d70e8c28 3860 uint64_t target_u64;
0de8783a 3861
d70e8c28
JR
3862 NETDEV_FLOW_KEY_FOR_EACH_IN_MAP(target_u64, target, rule->flow.mf.map) {
3863 if (OVS_UNLIKELY((target_u64 & *maskp++) != *keyp++)) {
0de8783a
JR
3864 return false;
3865 }
3866 }
3867 return true;
3868}
3869
3870/* For each miniflow in 'flows' performs a classifier lookup writing the result
3871 * into the corresponding slot in 'rules'. If a particular entry in 'flows' is
3872 * NULL it is skipped.
3873 *
3874 * This function is optimized for use in the userspace datapath and therefore
3875 * does not implement a lot of features available in the standard
3876 * classifier_lookup() function. Specifically, it does not implement
3877 * priorities, instead returning any rule which matches the flow.
3878 *
3879 * Returns true if all flows found a corresponding rule. */
3880static bool
3881dpcls_lookup(const struct dpcls *cls, const struct netdev_flow_key keys[],
3882 struct dpcls_rule **rules, const size_t cnt)
3883{
3884 /* The batch size 16 was experimentally found faster than 8 or 32. */
3885 typedef uint16_t map_type;
3886#define MAP_BITS (sizeof(map_type) * CHAR_BIT)
3887
3888#if !defined(__CHECKER__) && !defined(_WIN32)
3889 const int N_MAPS = DIV_ROUND_UP(cnt, MAP_BITS);
3890#else
cd159f1a 3891 enum { N_MAPS = DIV_ROUND_UP(NETDEV_MAX_BURST, MAP_BITS) };
0de8783a
JR
3892#endif
3893 map_type maps[N_MAPS];
3894 struct dpcls_subtable *subtable;
3895
3896 memset(maps, 0xff, sizeof maps);
3897 if (cnt % MAP_BITS) {
3898 maps[N_MAPS - 1] >>= MAP_BITS - cnt % MAP_BITS; /* Clear extra bits. */
3899 }
3900 memset(rules, 0, cnt * sizeof *rules);
3901
3902 PVECTOR_FOR_EACH (subtable, &cls->subtables) {
3903 const struct netdev_flow_key *mkeys = keys;
3904 struct dpcls_rule **mrules = rules;
3905 map_type remains = 0;
3906 int m;
3907
3908 BUILD_ASSERT_DECL(sizeof remains == sizeof *maps);
3909
3910 for (m = 0; m < N_MAPS; m++, mkeys += MAP_BITS, mrules += MAP_BITS) {
3911 uint32_t hashes[MAP_BITS];
3912 const struct cmap_node *nodes[MAP_BITS];
3913 unsigned long map = maps[m];
3914 int i;
3915
3916 if (!map) {
3917 continue; /* Skip empty maps. */
3918 }
3919
3920 /* Compute hashes for the remaining keys. */
3ee6026a 3921 ULLONG_FOR_EACH_1(i, map) {
0de8783a
JR
3922 hashes[i] = netdev_flow_key_hash_in_mask(&mkeys[i],
3923 &subtable->mask);
3924 }
3925 /* Lookup. */
3926 map = cmap_find_batch(&subtable->rules, map, hashes, nodes);
3927 /* Check results. */
3ee6026a 3928 ULLONG_FOR_EACH_1(i, map) {
0de8783a
JR
3929 struct dpcls_rule *rule;
3930
3931 CMAP_NODE_FOR_EACH (rule, cmap_node, nodes[i]) {
3932 if (OVS_LIKELY(dpcls_rule_matches_key(rule, &mkeys[i]))) {
3933 mrules[i] = rule;
3934 goto next;
3935 }
3936 }
3ee6026a 3937 ULLONG_SET0(map, i); /* Did not match. */
0de8783a
JR
3938 next:
3939 ; /* Keep Sparse happy. */
3940 }
3941 maps[m] &= ~map; /* Clear the found rules. */
3942 remains |= maps[m];
3943 }
3944 if (!remains) {
3945 return true; /* All found. */
3946 }
3947 }
3948 return false; /* Some misses. */
3949}