New upstream version 18.11-rc1
[deb_dpdk.git] / lib / librte_flow_classify / rte_flow_classify.c
1 /* SPDX-License-Identifier: BSD-3-Clause
2  * Copyright(c) 2017 Intel Corporation
3  */
4
5 #include <rte_compat.h>
6 #include <rte_flow_classify.h>
7 #include "rte_flow_classify_parse.h"
8 #include <rte_flow_driver.h>
9 #include <rte_table_acl.h>
10 #include <stdbool.h>
11
12 int librte_flow_classify_logtype;
13
14 static uint32_t unique_id = 1;
15
16 enum rte_flow_classify_table_type table_type
17         = RTE_FLOW_CLASSIFY_TABLE_TYPE_NONE;
18
19 struct rte_flow_classify_table_entry {
20         /* meta-data for classify rule */
21         uint32_t rule_id;
22
23         /* Flow action */
24         struct classify_action action;
25 };
26
27 struct rte_cls_table {
28         /* Input parameters */
29         struct rte_table_ops ops;
30         uint32_t entry_size;
31         enum rte_flow_classify_table_type type;
32
33         /* Handle to the low-level table object */
34         void *h_table;
35 };
36
37 #define RTE_FLOW_CLASSIFIER_MAX_NAME_SZ 256
38
39 struct rte_flow_classifier {
40         /* Input parameters */
41         char name[RTE_FLOW_CLASSIFIER_MAX_NAME_SZ];
42         int socket_id;
43
44         /* Internal */
45         /* ntuple_filter */
46         struct rte_eth_ntuple_filter ntuple_filter;
47
48         /* classifier tables */
49         struct rte_cls_table tables[RTE_FLOW_CLASSIFY_TABLE_MAX];
50         uint32_t table_mask;
51         uint32_t num_tables;
52
53         uint16_t nb_pkts;
54         struct rte_flow_classify_table_entry
55                 *entries[RTE_PORT_IN_BURST_SIZE_MAX];
56 } __rte_cache_aligned;
57
58 enum {
59         PROTO_FIELD_IPV4,
60         SRC_FIELD_IPV4,
61         DST_FIELD_IPV4,
62         SRCP_FIELD_IPV4,
63         DSTP_FIELD_IPV4,
64         NUM_FIELDS_IPV4
65 };
66
67 struct acl_keys {
68         struct rte_table_acl_rule_add_params key_add; /* add key */
69         struct rte_table_acl_rule_delete_params key_del; /* delete key */
70 };
71
72 struct classify_rules {
73         enum rte_flow_classify_rule_type type;
74         union {
75                 struct rte_flow_classify_ipv4_5tuple ipv4_5tuple;
76         } u;
77 };
78
79 struct rte_flow_classify_rule {
80         uint32_t id; /* unique ID of classify rule */
81         enum rte_flow_classify_table_type tbl_type; /* rule table */
82         struct classify_rules rules; /* union of rules */
83         union {
84                 struct acl_keys key;
85         } u;
86         int key_found;   /* rule key found in table */
87         struct rte_flow_classify_table_entry entry;  /* rule meta data */
88         void *entry_ptr; /* handle to the table entry for rule meta data */
89 };
90
91 int __rte_experimental
92 rte_flow_classify_validate(
93                    struct rte_flow_classifier *cls,
94                    const struct rte_flow_attr *attr,
95                    const struct rte_flow_item pattern[],
96                    const struct rte_flow_action actions[],
97                    struct rte_flow_error *error)
98 {
99         struct rte_flow_item *items;
100         parse_filter_t parse_filter;
101         uint32_t item_num = 0;
102         uint32_t i = 0;
103         int ret;
104
105         if (error == NULL)
106                 return -EINVAL;
107
108         if (cls == NULL) {
109                 RTE_FLOW_CLASSIFY_LOG(ERR,
110                         "%s: rte_flow_classifier parameter is NULL\n",
111                         __func__);
112                 return -EINVAL;
113         }
114
115         if (!attr) {
116                 rte_flow_error_set(error, EINVAL,
117                                    RTE_FLOW_ERROR_TYPE_ATTR,
118                                    NULL, "NULL attribute.");
119                 return -EINVAL;
120         }
121
122         if (!pattern) {
123                 rte_flow_error_set(error,
124                         EINVAL, RTE_FLOW_ERROR_TYPE_ITEM_NUM,
125                         NULL, "NULL pattern.");
126                 return -EINVAL;
127         }
128
129         if (!actions) {
130                 rte_flow_error_set(error, EINVAL,
131                                    RTE_FLOW_ERROR_TYPE_ACTION_NUM,
132                                    NULL, "NULL action.");
133                 return -EINVAL;
134         }
135
136         memset(&cls->ntuple_filter, 0, sizeof(cls->ntuple_filter));
137
138         /* Get the non-void item number of pattern */
139         while ((pattern + i)->type != RTE_FLOW_ITEM_TYPE_END) {
140                 if ((pattern + i)->type != RTE_FLOW_ITEM_TYPE_VOID)
141                         item_num++;
142                 i++;
143         }
144         item_num++;
145
146         items = malloc(item_num * sizeof(struct rte_flow_item));
147         if (!items) {
148                 rte_flow_error_set(error, ENOMEM,
149                                 RTE_FLOW_ERROR_TYPE_ITEM_NUM,
150                                 NULL, "No memory for pattern items.");
151                 return -ENOMEM;
152         }
153
154         memset(items, 0, item_num * sizeof(struct rte_flow_item));
155         classify_pattern_skip_void_item(items, pattern);
156
157         parse_filter = classify_find_parse_filter_func(items);
158         if (!parse_filter) {
159                 rte_flow_error_set(error, EINVAL,
160                                 RTE_FLOW_ERROR_TYPE_ITEM,
161                                 pattern, "Unsupported pattern");
162                 free(items);
163                 return -EINVAL;
164         }
165
166         ret = parse_filter(attr, items, actions, &cls->ntuple_filter, error);
167         free(items);
168         return ret;
169 }
170
171
172 #define uint32_t_to_char(ip, a, b, c, d) do {\
173                 *a = (unsigned char)(ip >> 24 & 0xff);\
174                 *b = (unsigned char)(ip >> 16 & 0xff);\
175                 *c = (unsigned char)(ip >> 8 & 0xff);\
176                 *d = (unsigned char)(ip & 0xff);\
177         } while (0)
178
179 static inline void
180 print_acl_ipv4_key_add(struct rte_table_acl_rule_add_params *key)
181 {
182         unsigned char a, b, c, d;
183
184         printf("%s:    0x%02hhx/0x%hhx ", __func__,
185                 key->field_value[PROTO_FIELD_IPV4].value.u8,
186                 key->field_value[PROTO_FIELD_IPV4].mask_range.u8);
187
188         uint32_t_to_char(key->field_value[SRC_FIELD_IPV4].value.u32,
189                         &a, &b, &c, &d);
190         printf(" %hhu.%hhu.%hhu.%hhu/0x%x ", a, b, c, d,
191                         key->field_value[SRC_FIELD_IPV4].mask_range.u32);
192
193         uint32_t_to_char(key->field_value[DST_FIELD_IPV4].value.u32,
194                         &a, &b, &c, &d);
195         printf("%hhu.%hhu.%hhu.%hhu/0x%x ", a, b, c, d,
196                         key->field_value[DST_FIELD_IPV4].mask_range.u32);
197
198         printf("%hu : 0x%x %hu : 0x%x",
199                 key->field_value[SRCP_FIELD_IPV4].value.u16,
200                 key->field_value[SRCP_FIELD_IPV4].mask_range.u16,
201                 key->field_value[DSTP_FIELD_IPV4].value.u16,
202                 key->field_value[DSTP_FIELD_IPV4].mask_range.u16);
203
204         printf(" priority: 0x%x\n", key->priority);
205 }
206
207 static inline void
208 print_acl_ipv4_key_delete(struct rte_table_acl_rule_delete_params *key)
209 {
210         unsigned char a, b, c, d;
211
212         printf("%s: 0x%02hhx/0x%hhx ", __func__,
213                 key->field_value[PROTO_FIELD_IPV4].value.u8,
214                 key->field_value[PROTO_FIELD_IPV4].mask_range.u8);
215
216         uint32_t_to_char(key->field_value[SRC_FIELD_IPV4].value.u32,
217                         &a, &b, &c, &d);
218         printf(" %hhu.%hhu.%hhu.%hhu/0x%x ", a, b, c, d,
219                         key->field_value[SRC_FIELD_IPV4].mask_range.u32);
220
221         uint32_t_to_char(key->field_value[DST_FIELD_IPV4].value.u32,
222                         &a, &b, &c, &d);
223         printf("%hhu.%hhu.%hhu.%hhu/0x%x ", a, b, c, d,
224                         key->field_value[DST_FIELD_IPV4].mask_range.u32);
225
226         printf("%hu : 0x%x %hu : 0x%x\n",
227                 key->field_value[SRCP_FIELD_IPV4].value.u16,
228                 key->field_value[SRCP_FIELD_IPV4].mask_range.u16,
229                 key->field_value[DSTP_FIELD_IPV4].value.u16,
230                 key->field_value[DSTP_FIELD_IPV4].mask_range.u16);
231 }
232
233 static int
234 rte_flow_classifier_check_params(struct rte_flow_classifier_params *params)
235 {
236         if (params == NULL) {
237                 RTE_FLOW_CLASSIFY_LOG(ERR,
238                         "%s: Incorrect value for parameter params\n", __func__);
239                 return -EINVAL;
240         }
241
242         /* name */
243         if (params->name == NULL) {
244                 RTE_FLOW_CLASSIFY_LOG(ERR,
245                         "%s: Incorrect value for parameter name\n", __func__);
246                 return -EINVAL;
247         }
248
249         /* socket */
250         if (params->socket_id < 0) {
251                 RTE_FLOW_CLASSIFY_LOG(ERR,
252                         "%s: Incorrect value for parameter socket_id\n",
253                         __func__);
254                 return -EINVAL;
255         }
256
257         return 0;
258 }
259
260 struct rte_flow_classifier * __rte_experimental
261 rte_flow_classifier_create(struct rte_flow_classifier_params *params)
262 {
263         struct rte_flow_classifier *cls;
264         int ret;
265
266         /* Check input parameters */
267         ret = rte_flow_classifier_check_params(params);
268         if (ret != 0) {
269                 RTE_FLOW_CLASSIFY_LOG(ERR,
270                         "%s: flow classifier params check failed (%d)\n",
271                         __func__, ret);
272                 return NULL;
273         }
274
275         /* Allocate memory for the flow classifier */
276         cls = rte_zmalloc_socket("FLOW_CLASSIFIER",
277                         sizeof(struct rte_flow_classifier),
278                         RTE_CACHE_LINE_SIZE, params->socket_id);
279
280         if (cls == NULL) {
281                 RTE_FLOW_CLASSIFY_LOG(ERR,
282                         "%s: flow classifier memory allocation failed\n",
283                         __func__);
284                 return NULL;
285         }
286
287         /* Save input parameters */
288         snprintf(cls->name, RTE_FLOW_CLASSIFIER_MAX_NAME_SZ, "%s",
289                         params->name);
290
291         cls->socket_id = params->socket_id;
292
293         return cls;
294 }
295
296 static void
297 rte_flow_classify_table_free(struct rte_cls_table *table)
298 {
299         if (table->ops.f_free != NULL)
300                 table->ops.f_free(table->h_table);
301 }
302
303 int __rte_experimental
304 rte_flow_classifier_free(struct rte_flow_classifier *cls)
305 {
306         uint32_t i;
307
308         /* Check input parameters */
309         if (cls == NULL) {
310                 RTE_FLOW_CLASSIFY_LOG(ERR,
311                         "%s: rte_flow_classifier parameter is NULL\n",
312                         __func__);
313                 return -EINVAL;
314         }
315
316         /* Free tables */
317         for (i = 0; i < cls->num_tables; i++) {
318                 struct rte_cls_table *table = &cls->tables[i];
319
320                 rte_flow_classify_table_free(table);
321         }
322
323         /* Free flow classifier memory */
324         rte_free(cls);
325
326         return 0;
327 }
328
329 static int
330 rte_table_check_params(struct rte_flow_classifier *cls,
331                 struct rte_flow_classify_table_params *params)
332 {
333         if (cls == NULL) {
334                 RTE_FLOW_CLASSIFY_LOG(ERR,
335                         "%s: flow classifier parameter is NULL\n",
336                         __func__);
337                 return -EINVAL;
338         }
339         if (params == NULL) {
340                 RTE_FLOW_CLASSIFY_LOG(ERR, "%s: params parameter is NULL\n",
341                         __func__);
342                 return -EINVAL;
343         }
344
345         /* ops */
346         if (params->ops == NULL) {
347                 RTE_FLOW_CLASSIFY_LOG(ERR, "%s: params->ops is NULL\n",
348                         __func__);
349                 return -EINVAL;
350         }
351
352         if (params->ops->f_create == NULL) {
353                 RTE_FLOW_CLASSIFY_LOG(ERR,
354                         "%s: f_create function pointer is NULL\n", __func__);
355                 return -EINVAL;
356         }
357
358         if (params->ops->f_lookup == NULL) {
359                 RTE_FLOW_CLASSIFY_LOG(ERR,
360                         "%s: f_lookup function pointer is NULL\n", __func__);
361                 return -EINVAL;
362         }
363
364         /* De we have room for one more table? */
365         if (cls->num_tables == RTE_FLOW_CLASSIFY_TABLE_MAX) {
366                 RTE_FLOW_CLASSIFY_LOG(ERR,
367                         "%s: Incorrect value for num_tables parameter\n",
368                         __func__);
369                 return -EINVAL;
370         }
371
372         return 0;
373 }
374
375 int __rte_experimental
376 rte_flow_classify_table_create(struct rte_flow_classifier *cls,
377         struct rte_flow_classify_table_params *params)
378 {
379         struct rte_cls_table *table;
380         void *h_table;
381         uint32_t entry_size;
382         int ret;
383
384         /* Check input arguments */
385         ret = rte_table_check_params(cls, params);
386         if (ret != 0)
387                 return ret;
388
389         /* calculate table entry size */
390         entry_size = sizeof(struct rte_flow_classify_table_entry);
391
392         /* Create the table */
393         h_table = params->ops->f_create(params->arg_create, cls->socket_id,
394                 entry_size);
395         if (h_table == NULL) {
396                 RTE_FLOW_CLASSIFY_LOG(ERR, "%s: Table creation failed\n",
397                         __func__);
398                 return -EINVAL;
399         }
400
401         /* Commit current table to the classifier */
402         table = &cls->tables[cls->num_tables];
403         table->type = params->type;
404         cls->num_tables++;
405
406         /* Save input parameters */
407         memcpy(&table->ops, params->ops, sizeof(struct rte_table_ops));
408
409         /* Initialize table internal data structure */
410         table->entry_size = entry_size;
411         table->h_table = h_table;
412
413         return 0;
414 }
415
416 static struct rte_flow_classify_rule *
417 allocate_acl_ipv4_5tuple_rule(struct rte_flow_classifier *cls)
418 {
419         struct rte_flow_classify_rule *rule;
420         int log_level;
421
422         rule = malloc(sizeof(struct rte_flow_classify_rule));
423         if (!rule)
424                 return rule;
425
426         memset(rule, 0, sizeof(struct rte_flow_classify_rule));
427         rule->id = unique_id++;
428         rule->rules.type = RTE_FLOW_CLASSIFY_RULE_TYPE_IPV4_5TUPLE;
429
430         /* key add values */
431         rule->u.key.key_add.priority = cls->ntuple_filter.priority;
432         rule->u.key.key_add.field_value[PROTO_FIELD_IPV4].mask_range.u8 =
433                         cls->ntuple_filter.proto_mask;
434         rule->u.key.key_add.field_value[PROTO_FIELD_IPV4].value.u8 =
435                         cls->ntuple_filter.proto;
436         rule->rules.u.ipv4_5tuple.proto = cls->ntuple_filter.proto;
437         rule->rules.u.ipv4_5tuple.proto_mask = cls->ntuple_filter.proto_mask;
438
439         rule->u.key.key_add.field_value[SRC_FIELD_IPV4].mask_range.u32 =
440                         cls->ntuple_filter.src_ip_mask;
441         rule->u.key.key_add.field_value[SRC_FIELD_IPV4].value.u32 =
442                         cls->ntuple_filter.src_ip;
443         rule->rules.u.ipv4_5tuple.src_ip_mask = cls->ntuple_filter.src_ip_mask;
444         rule->rules.u.ipv4_5tuple.src_ip = cls->ntuple_filter.src_ip;
445
446         rule->u.key.key_add.field_value[DST_FIELD_IPV4].mask_range.u32 =
447                         cls->ntuple_filter.dst_ip_mask;
448         rule->u.key.key_add.field_value[DST_FIELD_IPV4].value.u32 =
449                         cls->ntuple_filter.dst_ip;
450         rule->rules.u.ipv4_5tuple.dst_ip_mask = cls->ntuple_filter.dst_ip_mask;
451         rule->rules.u.ipv4_5tuple.dst_ip = cls->ntuple_filter.dst_ip;
452
453         rule->u.key.key_add.field_value[SRCP_FIELD_IPV4].mask_range.u16 =
454                         cls->ntuple_filter.src_port_mask;
455         rule->u.key.key_add.field_value[SRCP_FIELD_IPV4].value.u16 =
456                         cls->ntuple_filter.src_port;
457         rule->rules.u.ipv4_5tuple.src_port_mask =
458                         cls->ntuple_filter.src_port_mask;
459         rule->rules.u.ipv4_5tuple.src_port = cls->ntuple_filter.src_port;
460
461         rule->u.key.key_add.field_value[DSTP_FIELD_IPV4].mask_range.u16 =
462                         cls->ntuple_filter.dst_port_mask;
463         rule->u.key.key_add.field_value[DSTP_FIELD_IPV4].value.u16 =
464                         cls->ntuple_filter.dst_port;
465         rule->rules.u.ipv4_5tuple.dst_port_mask =
466                         cls->ntuple_filter.dst_port_mask;
467         rule->rules.u.ipv4_5tuple.dst_port = cls->ntuple_filter.dst_port;
468
469         log_level = rte_log_get_level(librte_flow_classify_logtype);
470
471         if (log_level == RTE_LOG_DEBUG)
472                 print_acl_ipv4_key_add(&rule->u.key.key_add);
473
474         /* key delete values */
475         memcpy(&rule->u.key.key_del.field_value[PROTO_FIELD_IPV4],
476                &rule->u.key.key_add.field_value[PROTO_FIELD_IPV4],
477                NUM_FIELDS_IPV4 * sizeof(struct rte_acl_field));
478
479         if (log_level == RTE_LOG_DEBUG)
480                 print_acl_ipv4_key_delete(&rule->u.key.key_del);
481
482         return rule;
483 }
484
485 struct rte_flow_classify_rule * __rte_experimental
486 rte_flow_classify_table_entry_add(struct rte_flow_classifier *cls,
487                 const struct rte_flow_attr *attr,
488                 const struct rte_flow_item pattern[],
489                 const struct rte_flow_action actions[],
490                 int *key_found,
491                 struct rte_flow_error *error)
492 {
493         struct rte_flow_classify_rule *rule;
494         struct rte_flow_classify_table_entry *table_entry;
495         struct classify_action *action;
496         uint32_t i;
497         int ret;
498
499         if (!error)
500                 return NULL;
501
502         if (key_found == NULL) {
503                 rte_flow_error_set(error, EINVAL,
504                                 RTE_FLOW_ERROR_TYPE_UNSPECIFIED,
505                                 NULL, "NULL key_found.");
506                 return NULL;
507         }
508
509         /* parse attr, pattern and actions */
510         ret = rte_flow_classify_validate(cls, attr, pattern, actions, error);
511         if (ret < 0)
512                 return NULL;
513
514         switch (table_type) {
515         case RTE_FLOW_CLASSIFY_TABLE_ACL_IP4_5TUPLE:
516                 rule = allocate_acl_ipv4_5tuple_rule(cls);
517                 if (!rule)
518                         return NULL;
519                 rule->tbl_type = table_type;
520                 cls->table_mask |= table_type;
521                 break;
522         default:
523                 return NULL;
524         }
525
526         action = classify_get_flow_action();
527         table_entry = &rule->entry;
528         table_entry->rule_id = rule->id;
529         table_entry->action.action_mask = action->action_mask;
530
531         /* Copy actions */
532         if (action->action_mask & (1LLU << RTE_FLOW_ACTION_TYPE_COUNT)) {
533                 memcpy(&table_entry->action.act.counter, &action->act.counter,
534                                 sizeof(table_entry->action.act.counter));
535         }
536         if (action->action_mask & (1LLU << RTE_FLOW_ACTION_TYPE_MARK)) {
537                 memcpy(&table_entry->action.act.mark, &action->act.mark,
538                                 sizeof(table_entry->action.act.mark));
539         }
540
541         for (i = 0; i < cls->num_tables; i++) {
542                 struct rte_cls_table *table = &cls->tables[i];
543
544                 if (table->type == table_type) {
545                         if (table->ops.f_add != NULL) {
546                                 ret = table->ops.f_add(
547                                         table->h_table,
548                                         &rule->u.key.key_add,
549                                         &rule->entry,
550                                         &rule->key_found,
551                                         &rule->entry_ptr);
552                                 if (ret) {
553                                         free(rule);
554                                         return NULL;
555                                 }
556
557                         *key_found = rule->key_found;
558                         }
559
560                         return rule;
561                 }
562         }
563         free(rule);
564         return NULL;
565 }
566
567 int __rte_experimental
568 rte_flow_classify_table_entry_delete(struct rte_flow_classifier *cls,
569                 struct rte_flow_classify_rule *rule)
570 {
571         uint32_t i;
572         int ret = -EINVAL;
573
574         if (!cls || !rule)
575                 return ret;
576         enum rte_flow_classify_table_type tbl_type = rule->tbl_type;
577
578         for (i = 0; i < cls->num_tables; i++) {
579                 struct rte_cls_table *table = &cls->tables[i];
580
581                 if (table->type == tbl_type) {
582                         if (table->ops.f_delete != NULL) {
583                                 ret = table->ops.f_delete(table->h_table,
584                                                 &rule->u.key.key_del,
585                                                 &rule->key_found,
586                                                 &rule->entry);
587
588                                 return ret;
589                         }
590                 }
591         }
592         free(rule);
593         return ret;
594 }
595
596 static int
597 flow_classifier_lookup(struct rte_flow_classifier *cls,
598                 struct rte_cls_table *table,
599                 struct rte_mbuf **pkts,
600                 const uint16_t nb_pkts)
601 {
602         int ret = -EINVAL;
603         uint64_t pkts_mask;
604         uint64_t lookup_hit_mask;
605
606         pkts_mask = RTE_LEN2MASK(nb_pkts, uint64_t);
607         ret = table->ops.f_lookup(table->h_table,
608                 pkts, pkts_mask, &lookup_hit_mask,
609                 (void **)cls->entries);
610
611         if (!ret && lookup_hit_mask)
612                 cls->nb_pkts = nb_pkts;
613         else
614                 cls->nb_pkts = 0;
615
616         return ret;
617 }
618
619 static int
620 action_apply(struct rte_flow_classifier *cls,
621                 struct rte_flow_classify_rule *rule,
622                 struct rte_flow_classify_stats *stats)
623 {
624         struct rte_flow_classify_ipv4_5tuple_stats *ntuple_stats;
625         struct rte_flow_classify_table_entry *entry = &rule->entry;
626         uint64_t count = 0;
627         uint32_t action_mask = entry->action.action_mask;
628         int i, ret = -EINVAL;
629
630         if (action_mask & (1LLU << RTE_FLOW_ACTION_TYPE_COUNT)) {
631                 for (i = 0; i < cls->nb_pkts; i++) {
632                         if (rule->id == cls->entries[i]->rule_id)
633                                 count++;
634                 }
635                 if (count) {
636                         ret = 0;
637                         ntuple_stats = stats->stats;
638                         ntuple_stats->counter1 = count;
639                         ntuple_stats->ipv4_5tuple = rule->rules.u.ipv4_5tuple;
640                 }
641         }
642         return ret;
643 }
644
645 int __rte_experimental
646 rte_flow_classifier_query(struct rte_flow_classifier *cls,
647                 struct rte_mbuf **pkts,
648                 const uint16_t nb_pkts,
649                 struct rte_flow_classify_rule *rule,
650                 struct rte_flow_classify_stats *stats)
651 {
652         enum rte_flow_classify_table_type tbl_type;
653         uint32_t i;
654         int ret = -EINVAL;
655
656         if (!cls || !rule || !stats || !pkts  || nb_pkts == 0)
657                 return ret;
658
659         tbl_type = rule->tbl_type;
660         for (i = 0; i < cls->num_tables; i++) {
661                 struct rte_cls_table *table = &cls->tables[i];
662
663                         if (table->type == tbl_type) {
664                                 ret = flow_classifier_lookup(cls, table,
665                                                 pkts, nb_pkts);
666                                 if (!ret) {
667                                         ret = action_apply(cls, rule, stats);
668                                         return ret;
669                                 }
670                         }
671         }
672         return ret;
673 }
674
675 RTE_INIT(librte_flow_classify_init_log)
676 {
677         librte_flow_classify_logtype =
678                 rte_log_register("lib.flow_classify");
679         if (librte_flow_classify_logtype >= 0)
680                 rte_log_set_level(librte_flow_classify_logtype, RTE_LOG_INFO);
681 }