net/mlx5: support flow aging
[dpdk.git] / drivers / net / mlx5 / mlx5.c
1 /* SPDX-License-Identifier: BSD-3-Clause
2  * Copyright 2015 6WIND S.A.
3  * Copyright 2015 Mellanox Technologies, Ltd
4  */
5
6 #include <stddef.h>
7 #include <unistd.h>
8 #include <string.h>
9 #include <stdint.h>
10 #include <stdlib.h>
11 #include <errno.h>
12 #include <net/if.h>
13 #include <sys/mman.h>
14 #include <linux/rtnetlink.h>
15
16 /* Verbs header. */
17 /* ISO C doesn't support unnamed structs/unions, disabling -pedantic. */
18 #ifdef PEDANTIC
19 #pragma GCC diagnostic ignored "-Wpedantic"
20 #endif
21 #include <infiniband/verbs.h>
22 #ifdef PEDANTIC
23 #pragma GCC diagnostic error "-Wpedantic"
24 #endif
25
26 #include <rte_malloc.h>
27 #include <rte_ethdev_driver.h>
28 #include <rte_ethdev_pci.h>
29 #include <rte_pci.h>
30 #include <rte_bus_pci.h>
31 #include <rte_common.h>
32 #include <rte_kvargs.h>
33 #include <rte_rwlock.h>
34 #include <rte_spinlock.h>
35 #include <rte_string_fns.h>
36 #include <rte_alarm.h>
37
38 #include <mlx5_glue.h>
39 #include <mlx5_devx_cmds.h>
40 #include <mlx5_common.h>
41 #include <mlx5_common_mp.h>
42
43 #include "mlx5_defs.h"
44 #include "mlx5.h"
45 #include "mlx5_utils.h"
46 #include "mlx5_rxtx.h"
47 #include "mlx5_autoconf.h"
48 #include "mlx5_mr.h"
49 #include "mlx5_flow.h"
50 #include "rte_pmd_mlx5.h"
51
52 /* Device parameter to enable RX completion queue compression. */
53 #define MLX5_RXQ_CQE_COMP_EN "rxq_cqe_comp_en"
54
55 /* Device parameter to enable RX completion entry padding to 128B. */
56 #define MLX5_RXQ_CQE_PAD_EN "rxq_cqe_pad_en"
57
58 /* Device parameter to enable padding Rx packet to cacheline size. */
59 #define MLX5_RXQ_PKT_PAD_EN "rxq_pkt_pad_en"
60
61 /* Device parameter to enable Multi-Packet Rx queue. */
62 #define MLX5_RX_MPRQ_EN "mprq_en"
63
64 /* Device parameter to configure log 2 of the number of strides for MPRQ. */
65 #define MLX5_RX_MPRQ_LOG_STRIDE_NUM "mprq_log_stride_num"
66
67 /* Device parameter to configure log 2 of the stride size for MPRQ. */
68 #define MLX5_RX_MPRQ_LOG_STRIDE_SIZE "mprq_log_stride_size"
69
70 /* Device parameter to limit the size of memcpy'd packet for MPRQ. */
71 #define MLX5_RX_MPRQ_MAX_MEMCPY_LEN "mprq_max_memcpy_len"
72
73 /* Device parameter to set the minimum number of Rx queues to enable MPRQ. */
74 #define MLX5_RXQS_MIN_MPRQ "rxqs_min_mprq"
75
76 /* Device parameter to configure inline send. Deprecated, ignored.*/
77 #define MLX5_TXQ_INLINE "txq_inline"
78
79 /* Device parameter to limit packet size to inline with ordinary SEND. */
80 #define MLX5_TXQ_INLINE_MAX "txq_inline_max"
81
82 /* Device parameter to configure minimal data size to inline. */
83 #define MLX5_TXQ_INLINE_MIN "txq_inline_min"
84
85 /* Device parameter to limit packet size to inline with Enhanced MPW. */
86 #define MLX5_TXQ_INLINE_MPW "txq_inline_mpw"
87
88 /*
89  * Device parameter to configure the number of TX queues threshold for
90  * enabling inline send.
91  */
92 #define MLX5_TXQS_MIN_INLINE "txqs_min_inline"
93
94 /*
95  * Device parameter to configure the number of TX queues threshold for
96  * enabling vectorized Tx, deprecated, ignored (no vectorized Tx routines).
97  */
98 #define MLX5_TXQS_MAX_VEC "txqs_max_vec"
99
100 /* Device parameter to enable multi-packet send WQEs. */
101 #define MLX5_TXQ_MPW_EN "txq_mpw_en"
102
103 /*
104  * Device parameter to force doorbell register mapping
105  * to non-cahed region eliminating the extra write memory barrier.
106  */
107 #define MLX5_TX_DB_NC "tx_db_nc"
108
109 /*
110  * Device parameter to include 2 dsegs in the title WQEBB.
111  * Deprecated, ignored.
112  */
113 #define MLX5_TXQ_MPW_HDR_DSEG_EN "txq_mpw_hdr_dseg_en"
114
115 /*
116  * Device parameter to limit the size of inlining packet.
117  * Deprecated, ignored.
118  */
119 #define MLX5_TXQ_MAX_INLINE_LEN "txq_max_inline_len"
120
121 /*
122  * Device parameter to enable hardware Tx vector.
123  * Deprecated, ignored (no vectorized Tx routines anymore).
124  */
125 #define MLX5_TX_VEC_EN "tx_vec_en"
126
127 /* Device parameter to enable hardware Rx vector. */
128 #define MLX5_RX_VEC_EN "rx_vec_en"
129
130 /* Allow L3 VXLAN flow creation. */
131 #define MLX5_L3_VXLAN_EN "l3_vxlan_en"
132
133 /* Activate DV E-Switch flow steering. */
134 #define MLX5_DV_ESW_EN "dv_esw_en"
135
136 /* Activate DV flow steering. */
137 #define MLX5_DV_FLOW_EN "dv_flow_en"
138
139 /* Enable extensive flow metadata support. */
140 #define MLX5_DV_XMETA_EN "dv_xmeta_en"
141
142 /* Activate Netlink support in VF mode. */
143 #define MLX5_VF_NL_EN "vf_nl_en"
144
145 /* Enable extending memsegs when creating a MR. */
146 #define MLX5_MR_EXT_MEMSEG_EN "mr_ext_memseg_en"
147
148 /* Select port representors to instantiate. */
149 #define MLX5_REPRESENTOR "representor"
150
151 /* Device parameter to configure the maximum number of dump files per queue. */
152 #define MLX5_MAX_DUMP_FILES_NUM "max_dump_files_num"
153
154 /* Configure timeout of LRO session (in microseconds). */
155 #define MLX5_LRO_TIMEOUT_USEC "lro_timeout_usec"
156
157 /*
158  * Device parameter to configure the total data buffer size for a single
159  * hairpin queue (logarithm value).
160  */
161 #define MLX5_HP_BUF_SIZE "hp_buf_log_sz"
162
163 #ifndef HAVE_IBV_MLX5_MOD_MPW
164 #define MLX5DV_CONTEXT_FLAGS_MPW_ALLOWED (1 << 2)
165 #define MLX5DV_CONTEXT_FLAGS_ENHANCED_MPW (1 << 3)
166 #endif
167
168 #ifndef HAVE_IBV_MLX5_MOD_CQE_128B_COMP
169 #define MLX5DV_CONTEXT_FLAGS_CQE_128B_COMP (1 << 4)
170 #endif
171
172 static const char *MZ_MLX5_PMD_SHARED_DATA = "mlx5_pmd_shared_data";
173
174 /* Shared memory between primary and secondary processes. */
175 struct mlx5_shared_data *mlx5_shared_data;
176
177 /* Spinlock for mlx5_shared_data allocation. */
178 static rte_spinlock_t mlx5_shared_data_lock = RTE_SPINLOCK_INITIALIZER;
179
180 /* Process local data for secondary processes. */
181 static struct mlx5_local_data mlx5_local_data;
182
183 /** Driver-specific log messages type. */
184 int mlx5_logtype;
185
186 /** Data associated with devices to spawn. */
187 struct mlx5_dev_spawn_data {
188         uint32_t ifindex; /**< Network interface index. */
189         uint32_t max_port; /**< IB device maximal port index. */
190         uint32_t ibv_port; /**< IB device physical port index. */
191         int pf_bond; /**< bonding device PF index. < 0 - no bonding */
192         struct mlx5_switch_info info; /**< Switch information. */
193         struct ibv_device *ibv_dev; /**< Associated IB device. */
194         struct rte_eth_dev *eth_dev; /**< Associated Ethernet device. */
195         struct rte_pci_device *pci_dev; /**< Backend PCI device. */
196 };
197
198 static LIST_HEAD(, mlx5_ibv_shared) mlx5_ibv_list = LIST_HEAD_INITIALIZER();
199 static pthread_mutex_t mlx5_ibv_list_mutex = PTHREAD_MUTEX_INITIALIZER;
200
201 static struct mlx5_indexed_pool_config mlx5_ipool_cfg[] = {
202 #ifdef HAVE_IBV_FLOW_DV_SUPPORT
203         {
204                 .size = sizeof(struct mlx5_flow_dv_encap_decap_resource),
205                 .trunk_size = 64,
206                 .grow_trunk = 3,
207                 .grow_shift = 2,
208                 .need_lock = 0,
209                 .release_mem_en = 1,
210                 .malloc = rte_malloc_socket,
211                 .free = rte_free,
212                 .type = "mlx5_encap_decap_ipool",
213         },
214         {
215                 .size = sizeof(struct mlx5_flow_dv_push_vlan_action_resource),
216                 .trunk_size = 64,
217                 .grow_trunk = 3,
218                 .grow_shift = 2,
219                 .need_lock = 0,
220                 .release_mem_en = 1,
221                 .malloc = rte_malloc_socket,
222                 .free = rte_free,
223                 .type = "mlx5_push_vlan_ipool",
224         },
225         {
226                 .size = sizeof(struct mlx5_flow_dv_tag_resource),
227                 .trunk_size = 64,
228                 .grow_trunk = 3,
229                 .grow_shift = 2,
230                 .need_lock = 0,
231                 .release_mem_en = 1,
232                 .malloc = rte_malloc_socket,
233                 .free = rte_free,
234                 .type = "mlx5_tag_ipool",
235         },
236         {
237                 .size = sizeof(struct mlx5_flow_dv_port_id_action_resource),
238                 .trunk_size = 64,
239                 .grow_trunk = 3,
240                 .grow_shift = 2,
241                 .need_lock = 0,
242                 .release_mem_en = 1,
243                 .malloc = rte_malloc_socket,
244                 .free = rte_free,
245                 .type = "mlx5_port_id_ipool",
246         },
247         {
248                 .size = sizeof(struct mlx5_flow_tbl_data_entry),
249                 .trunk_size = 64,
250                 .grow_trunk = 3,
251                 .grow_shift = 2,
252                 .need_lock = 0,
253                 .release_mem_en = 1,
254                 .malloc = rte_malloc_socket,
255                 .free = rte_free,
256                 .type = "mlx5_jump_ipool",
257         },
258 #endif
259         {
260                 .size = sizeof(struct mlx5_flow_meter),
261                 .trunk_size = 64,
262                 .grow_trunk = 3,
263                 .grow_shift = 2,
264                 .need_lock = 0,
265                 .release_mem_en = 1,
266                 .malloc = rte_malloc_socket,
267                 .free = rte_free,
268                 .type = "mlx5_meter_ipool",
269         },
270         {
271                 .size = sizeof(struct mlx5_flow_mreg_copy_resource),
272                 .trunk_size = 64,
273                 .grow_trunk = 3,
274                 .grow_shift = 2,
275                 .need_lock = 0,
276                 .release_mem_en = 1,
277                 .malloc = rte_malloc_socket,
278                 .free = rte_free,
279                 .type = "mlx5_mcp_ipool",
280         },
281         {
282                 .size = (sizeof(struct mlx5_hrxq) + MLX5_RSS_HASH_KEY_LEN),
283                 .trunk_size = 64,
284                 .grow_trunk = 3,
285                 .grow_shift = 2,
286                 .need_lock = 0,
287                 .release_mem_en = 1,
288                 .malloc = rte_malloc_socket,
289                 .free = rte_free,
290                 .type = "mlx5_hrxq_ipool",
291         },
292         {
293                 .size = sizeof(struct mlx5_flow_handle),
294                 .trunk_size = 64,
295                 .grow_trunk = 3,
296                 .grow_shift = 2,
297                 .need_lock = 0,
298                 .release_mem_en = 1,
299                 .malloc = rte_malloc_socket,
300                 .free = rte_free,
301                 .type = "mlx5_flow_handle_ipool",
302         },
303         {
304                 .size = sizeof(struct rte_flow),
305                 .trunk_size = 4096,
306                 .need_lock = 1,
307                 .release_mem_en = 1,
308                 .malloc = rte_malloc_socket,
309                 .free = rte_free,
310                 .type = "rte_flow_ipool",
311         },
312 };
313
314
315 #define MLX5_FLOW_MIN_ID_POOL_SIZE 512
316 #define MLX5_ID_GENERATION_ARRAY_FACTOR 16
317
318 #define MLX5_FLOW_TABLE_HLIST_ARRAY_SIZE 4096
319 #define MLX5_TAGS_HLIST_ARRAY_SIZE 8192
320
321 /**
322  * Allocate ID pool structure.
323  *
324  * @param[in] max_id
325  *   The maximum id can be allocated from the pool.
326  *
327  * @return
328  *   Pointer to pool object, NULL value otherwise.
329  */
330 struct mlx5_flow_id_pool *
331 mlx5_flow_id_pool_alloc(uint32_t max_id)
332 {
333         struct mlx5_flow_id_pool *pool;
334         void *mem;
335
336         pool = rte_zmalloc("id pool allocation", sizeof(*pool),
337                            RTE_CACHE_LINE_SIZE);
338         if (!pool) {
339                 DRV_LOG(ERR, "can't allocate id pool");
340                 rte_errno  = ENOMEM;
341                 return NULL;
342         }
343         mem = rte_zmalloc("", MLX5_FLOW_MIN_ID_POOL_SIZE * sizeof(uint32_t),
344                           RTE_CACHE_LINE_SIZE);
345         if (!mem) {
346                 DRV_LOG(ERR, "can't allocate mem for id pool");
347                 rte_errno  = ENOMEM;
348                 goto error;
349         }
350         pool->free_arr = mem;
351         pool->curr = pool->free_arr;
352         pool->last = pool->free_arr + MLX5_FLOW_MIN_ID_POOL_SIZE;
353         pool->base_index = 0;
354         pool->max_id = max_id;
355         return pool;
356 error:
357         rte_free(pool);
358         return NULL;
359 }
360
361 /**
362  * Release ID pool structure.
363  *
364  * @param[in] pool
365  *   Pointer to flow id pool object to free.
366  */
367 void
368 mlx5_flow_id_pool_release(struct mlx5_flow_id_pool *pool)
369 {
370         rte_free(pool->free_arr);
371         rte_free(pool);
372 }
373
374 /**
375  * Generate ID.
376  *
377  * @param[in] pool
378  *   Pointer to flow id pool.
379  * @param[out] id
380  *   The generated ID.
381  *
382  * @return
383  *   0 on success, error value otherwise.
384  */
385 uint32_t
386 mlx5_flow_id_get(struct mlx5_flow_id_pool *pool, uint32_t *id)
387 {
388         if (pool->curr == pool->free_arr) {
389                 if (pool->base_index == pool->max_id) {
390                         rte_errno  = ENOMEM;
391                         DRV_LOG(ERR, "no free id");
392                         return -rte_errno;
393                 }
394                 *id = ++pool->base_index;
395                 return 0;
396         }
397         *id = *(--pool->curr);
398         return 0;
399 }
400
401 /**
402  * Release ID.
403  *
404  * @param[in] pool
405  *   Pointer to flow id pool.
406  * @param[out] id
407  *   The generated ID.
408  *
409  * @return
410  *   0 on success, error value otherwise.
411  */
412 uint32_t
413 mlx5_flow_id_release(struct mlx5_flow_id_pool *pool, uint32_t id)
414 {
415         uint32_t size;
416         uint32_t size2;
417         void *mem;
418
419         if (pool->curr == pool->last) {
420                 size = pool->curr - pool->free_arr;
421                 size2 = size * MLX5_ID_GENERATION_ARRAY_FACTOR;
422                 MLX5_ASSERT(size2 > size);
423                 mem = rte_malloc("", size2 * sizeof(uint32_t), 0);
424                 if (!mem) {
425                         DRV_LOG(ERR, "can't allocate mem for id pool");
426                         rte_errno  = ENOMEM;
427                         return -rte_errno;
428                 }
429                 memcpy(mem, pool->free_arr, size * sizeof(uint32_t));
430                 rte_free(pool->free_arr);
431                 pool->free_arr = mem;
432                 pool->curr = pool->free_arr + size;
433                 pool->last = pool->free_arr + size2;
434         }
435         *pool->curr = id;
436         pool->curr++;
437         return 0;
438 }
439
440 /**
441  * Initialize the shared aging list information per port.
442  *
443  * @param[in] sh
444  *   Pointer to mlx5_ibv_shared object.
445  */
446 static void
447 mlx5_flow_aging_init(struct mlx5_ibv_shared *sh)
448 {
449         uint32_t i;
450         struct mlx5_age_info *age_info;
451
452         for (i = 0; i < sh->max_port; i++) {
453                 age_info = &sh->port[i].age_info;
454                 age_info->flags = 0;
455                 TAILQ_INIT(&age_info->aged_counters);
456                 rte_spinlock_init(&age_info->aged_sl);
457                 MLX5_AGE_SET(age_info, MLX5_AGE_TRIGGER);
458         }
459 }
460
461 /**
462  * Initialize the counters management structure.
463  *
464  * @param[in] sh
465  *   Pointer to mlx5_ibv_shared object to free
466  */
467 static void
468 mlx5_flow_counters_mng_init(struct mlx5_ibv_shared *sh)
469 {
470         uint8_t i, age;
471
472         sh->cmng.age = 0;
473         TAILQ_INIT(&sh->cmng.flow_counters);
474         for (age = 0; age < RTE_DIM(sh->cmng.ccont[0]); ++age) {
475                 for (i = 0; i < RTE_DIM(sh->cmng.ccont); ++i)
476                         TAILQ_INIT(&sh->cmng.ccont[i][age].pool_list);
477         }
478 }
479
480 /**
481  * Destroy all the resources allocated for a counter memory management.
482  *
483  * @param[in] mng
484  *   Pointer to the memory management structure.
485  */
486 static void
487 mlx5_flow_destroy_counter_stat_mem_mng(struct mlx5_counter_stats_mem_mng *mng)
488 {
489         uint8_t *mem = (uint8_t *)(uintptr_t)mng->raws[0].data;
490
491         LIST_REMOVE(mng, next);
492         claim_zero(mlx5_devx_cmd_destroy(mng->dm));
493         claim_zero(mlx5_glue->devx_umem_dereg(mng->umem));
494         rte_free(mem);
495 }
496
497 /**
498  * Close and release all the resources of the counters management.
499  *
500  * @param[in] sh
501  *   Pointer to mlx5_ibv_shared object to free.
502  */
503 static void
504 mlx5_flow_counters_mng_close(struct mlx5_ibv_shared *sh)
505 {
506         struct mlx5_counter_stats_mem_mng *mng;
507         uint8_t i, age = 0;
508         int j;
509         int retries = 1024;
510
511         rte_errno = 0;
512         while (--retries) {
513                 rte_eal_alarm_cancel(mlx5_flow_query_alarm, sh);
514                 if (rte_errno != EINPROGRESS)
515                         break;
516                 rte_pause();
517         }
518
519         for (age = 0; age < RTE_DIM(sh->cmng.ccont[0]); ++age) {
520                 for (i = 0; i < RTE_DIM(sh->cmng.ccont); ++i) {
521                         struct mlx5_flow_counter_pool *pool;
522                         uint32_t batch = !!(i % 2);
523
524                         if (!sh->cmng.ccont[i][age].pools)
525                                 continue;
526                         pool = TAILQ_FIRST(&sh->cmng.ccont[i][age].pool_list);
527                         while (pool) {
528                                 if (batch) {
529                                         if (pool->min_dcs)
530                                                 claim_zero
531                                                 (mlx5_devx_cmd_destroy
532                                                 (pool->min_dcs));
533                                 }
534                                 for (j = 0; j < MLX5_COUNTERS_PER_POOL; ++j) {
535                                         if (MLX5_POOL_GET_CNT(pool, j)->action)
536                                                 claim_zero
537                                                 (mlx5_glue->destroy_flow_action
538                                                  (MLX5_POOL_GET_CNT
539                                                   (pool, j)->action));
540                                         if (!batch && MLX5_GET_POOL_CNT_EXT
541                                             (pool, j)->dcs)
542                                                 claim_zero(mlx5_devx_cmd_destroy
543                                                           (MLX5_GET_POOL_CNT_EXT
544                                                           (pool, j)->dcs));
545                                 }
546                                 TAILQ_REMOVE(&sh->cmng.ccont[i][age].pool_list,
547                                         pool, next);
548                                 rte_free(pool);
549                                 pool = TAILQ_FIRST
550                                         (&sh->cmng.ccont[i][age].pool_list);
551                         }
552                         rte_free(sh->cmng.ccont[i][age].pools);
553                 }
554         }
555         mng = LIST_FIRST(&sh->cmng.mem_mngs);
556         while (mng) {
557                 mlx5_flow_destroy_counter_stat_mem_mng(mng);
558                 mng = LIST_FIRST(&sh->cmng.mem_mngs);
559         }
560         memset(&sh->cmng, 0, sizeof(sh->cmng));
561 }
562
563 /**
564  * Initialize the flow resources' indexed mempool.
565  *
566  * @param[in] sh
567  *   Pointer to mlx5_ibv_shared object.
568  * @param[in] sh
569  *   Pointer to user dev config.
570  */
571 static void
572 mlx5_flow_ipool_create(struct mlx5_ibv_shared *sh,
573                        const struct mlx5_dev_config *config __rte_unused)
574 {
575         uint8_t i;
576
577 #ifdef HAVE_IBV_FLOW_DV_SUPPORT
578         /*
579          * While DV is supported, user chooses the verbs mode,
580          * the mlx5 flow handle size is different with the
581          * MLX5_FLOW_HANDLE_VERBS_SIZE.
582          */
583         if (!config->dv_flow_en)
584                 mlx5_ipool_cfg[MLX5_IPOOL_MLX5_FLOW].size =
585                                         MLX5_FLOW_HANDLE_VERBS_SIZE;
586 #endif
587         for (i = 0; i < MLX5_IPOOL_MAX; ++i)
588                 sh->ipool[i] = mlx5_ipool_create(&mlx5_ipool_cfg[i]);
589 }
590
591 /**
592  * Release the flow resources' indexed mempool.
593  *
594  * @param[in] sh
595  *   Pointer to mlx5_ibv_shared object.
596  */
597 static void
598 mlx5_flow_ipool_destroy(struct mlx5_ibv_shared *sh)
599 {
600         uint8_t i;
601
602         for (i = 0; i < MLX5_IPOOL_MAX; ++i)
603                 mlx5_ipool_destroy(sh->ipool[i]);
604 }
605
606 /**
607  * Extract pdn of PD object using DV API.
608  *
609  * @param[in] pd
610  *   Pointer to the verbs PD object.
611  * @param[out] pdn
612  *   Pointer to the PD object number variable.
613  *
614  * @return
615  *   0 on success, error value otherwise.
616  */
617 #ifdef HAVE_IBV_FLOW_DV_SUPPORT
618 static int
619 mlx5_get_pdn(struct ibv_pd *pd __rte_unused, uint32_t *pdn __rte_unused)
620 {
621         struct mlx5dv_obj obj;
622         struct mlx5dv_pd pd_info;
623         int ret = 0;
624
625         obj.pd.in = pd;
626         obj.pd.out = &pd_info;
627         ret = mlx5_glue->dv_init_obj(&obj, MLX5DV_OBJ_PD);
628         if (ret) {
629                 DRV_LOG(DEBUG, "Fail to get PD object info");
630                 return ret;
631         }
632         *pdn = pd_info.pdn;
633         return 0;
634 }
635 #endif /* HAVE_IBV_FLOW_DV_SUPPORT */
636
637 static int
638 mlx5_config_doorbell_mapping_env(const struct mlx5_dev_config *config)
639 {
640         char *env;
641         int value;
642
643         MLX5_ASSERT(rte_eal_process_type() == RTE_PROC_PRIMARY);
644         /* Get environment variable to store. */
645         env = getenv(MLX5_SHUT_UP_BF);
646         value = env ? !!strcmp(env, "0") : MLX5_ARG_UNSET;
647         if (config->dbnc == MLX5_ARG_UNSET)
648                 setenv(MLX5_SHUT_UP_BF, MLX5_SHUT_UP_BF_DEFAULT, 1);
649         else
650                 setenv(MLX5_SHUT_UP_BF,
651                        config->dbnc == MLX5_TXDB_NCACHED ? "1" : "0", 1);
652         return value;
653 }
654
655 static void
656 mlx5_restore_doorbell_mapping_env(int value)
657 {
658         MLX5_ASSERT(rte_eal_process_type() == RTE_PROC_PRIMARY);
659         /* Restore the original environment variable state. */
660         if (value == MLX5_ARG_UNSET)
661                 unsetenv(MLX5_SHUT_UP_BF);
662         else
663                 setenv(MLX5_SHUT_UP_BF, value ? "1" : "0", 1);
664 }
665
666 /**
667  * Allocate shared IB device context. If there is multiport device the
668  * master and representors will share this context, if there is single
669  * port dedicated IB device, the context will be used by only given
670  * port due to unification.
671  *
672  * Routine first searches the context for the specified IB device name,
673  * if found the shared context assumed and reference counter is incremented.
674  * If no context found the new one is created and initialized with specified
675  * IB device context and parameters.
676  *
677  * @param[in] spawn
678  *   Pointer to the IB device attributes (name, port, etc).
679  * @param[in] config
680  *   Pointer to device configuration structure.
681  *
682  * @return
683  *   Pointer to mlx5_ibv_shared object on success,
684  *   otherwise NULL and rte_errno is set.
685  */
686 static struct mlx5_ibv_shared *
687 mlx5_alloc_shared_ibctx(const struct mlx5_dev_spawn_data *spawn,
688                         const struct mlx5_dev_config *config)
689 {
690         struct mlx5_ibv_shared *sh;
691         int dbmap_env;
692         int err = 0;
693         uint32_t i;
694 #ifdef HAVE_IBV_FLOW_DV_SUPPORT
695         struct mlx5_devx_tis_attr tis_attr = { 0 };
696 #endif
697
698         MLX5_ASSERT(spawn);
699         /* Secondary process should not create the shared context. */
700         MLX5_ASSERT(rte_eal_process_type() == RTE_PROC_PRIMARY);
701         pthread_mutex_lock(&mlx5_ibv_list_mutex);
702         /* Search for IB context by device name. */
703         LIST_FOREACH(sh, &mlx5_ibv_list, next) {
704                 if (!strcmp(sh->ibdev_name, spawn->ibv_dev->name)) {
705                         sh->refcnt++;
706                         goto exit;
707                 }
708         }
709         /* No device found, we have to create new shared context. */
710         MLX5_ASSERT(spawn->max_port);
711         sh = rte_zmalloc("ethdev shared ib context",
712                          sizeof(struct mlx5_ibv_shared) +
713                          spawn->max_port *
714                          sizeof(struct mlx5_ibv_shared_port),
715                          RTE_CACHE_LINE_SIZE);
716         if (!sh) {
717                 DRV_LOG(ERR, "shared context allocation failure");
718                 rte_errno  = ENOMEM;
719                 goto exit;
720         }
721         /*
722          * Configure environment variable "MLX5_BF_SHUT_UP"
723          * before the device creation. The rdma_core library
724          * checks the variable at device creation and
725          * stores the result internally.
726          */
727         dbmap_env = mlx5_config_doorbell_mapping_env(config);
728         /* Try to open IB device with DV first, then usual Verbs. */
729         errno = 0;
730         sh->ctx = mlx5_glue->dv_open_device(spawn->ibv_dev);
731         if (sh->ctx) {
732                 sh->devx = 1;
733                 DRV_LOG(DEBUG, "DevX is supported");
734                 /* The device is created, no need for environment. */
735                 mlx5_restore_doorbell_mapping_env(dbmap_env);
736         } else {
737                 /* The environment variable is still configured. */
738                 sh->ctx = mlx5_glue->open_device(spawn->ibv_dev);
739                 err = errno ? errno : ENODEV;
740                 /*
741                  * The environment variable is not needed anymore,
742                  * all device creation attempts are completed.
743                  */
744                 mlx5_restore_doorbell_mapping_env(dbmap_env);
745                 if (!sh->ctx)
746                         goto error;
747                 DRV_LOG(DEBUG, "DevX is NOT supported");
748         }
749         err = mlx5_glue->query_device_ex(sh->ctx, NULL, &sh->device_attr);
750         if (err) {
751                 DRV_LOG(DEBUG, "ibv_query_device_ex() failed");
752                 goto error;
753         }
754         sh->refcnt = 1;
755         sh->max_port = spawn->max_port;
756         strncpy(sh->ibdev_name, sh->ctx->device->name,
757                 sizeof(sh->ibdev_name));
758         strncpy(sh->ibdev_path, sh->ctx->device->ibdev_path,
759                 sizeof(sh->ibdev_path));
760         pthread_mutex_init(&sh->intr_mutex, NULL);
761         /*
762          * Setting port_id to max unallowed value means
763          * there is no interrupt subhandler installed for
764          * the given port index i.
765          */
766         for (i = 0; i < sh->max_port; i++) {
767                 sh->port[i].ih_port_id = RTE_MAX_ETHPORTS;
768                 sh->port[i].devx_ih_port_id = RTE_MAX_ETHPORTS;
769         }
770         sh->pd = mlx5_glue->alloc_pd(sh->ctx);
771         if (sh->pd == NULL) {
772                 DRV_LOG(ERR, "PD allocation failure");
773                 err = ENOMEM;
774                 goto error;
775         }
776 #ifdef HAVE_IBV_FLOW_DV_SUPPORT
777         if (sh->devx) {
778                 err = mlx5_get_pdn(sh->pd, &sh->pdn);
779                 if (err) {
780                         DRV_LOG(ERR, "Fail to extract pdn from PD");
781                         goto error;
782                 }
783                 sh->td = mlx5_devx_cmd_create_td(sh->ctx);
784                 if (!sh->td) {
785                         DRV_LOG(ERR, "TD allocation failure");
786                         err = ENOMEM;
787                         goto error;
788                 }
789                 tis_attr.transport_domain = sh->td->id;
790                 sh->tis = mlx5_devx_cmd_create_tis(sh->ctx, &tis_attr);
791                 if (!sh->tis) {
792                         DRV_LOG(ERR, "TIS allocation failure");
793                         err = ENOMEM;
794                         goto error;
795                 }
796         }
797         sh->flow_id_pool = mlx5_flow_id_pool_alloc
798                                         ((1 << HAIRPIN_FLOW_ID_BITS) - 1);
799         if (!sh->flow_id_pool) {
800                 DRV_LOG(ERR, "can't create flow id pool");
801                 err = ENOMEM;
802                 goto error;
803         }
804 #endif /* HAVE_IBV_FLOW_DV_SUPPORT */
805         /*
806          * Once the device is added to the list of memory event
807          * callback, its global MR cache table cannot be expanded
808          * on the fly because of deadlock. If it overflows, lookup
809          * should be done by searching MR list linearly, which is slow.
810          *
811          * At this point the device is not added to the memory
812          * event list yet, context is just being created.
813          */
814         err = mlx5_mr_btree_init(&sh->share_cache.cache,
815                                  MLX5_MR_BTREE_CACHE_N * 2,
816                                  spawn->pci_dev->device.numa_node);
817         if (err) {
818                 err = rte_errno;
819                 goto error;
820         }
821         mlx5_flow_aging_init(sh);
822         mlx5_flow_counters_mng_init(sh);
823         mlx5_flow_ipool_create(sh, config);
824         /* Add device to memory callback list. */
825         rte_rwlock_write_lock(&mlx5_shared_data->mem_event_rwlock);
826         LIST_INSERT_HEAD(&mlx5_shared_data->mem_event_cb_list,
827                          sh, mem_event_cb);
828         rte_rwlock_write_unlock(&mlx5_shared_data->mem_event_rwlock);
829         /* Add context to the global device list. */
830         LIST_INSERT_HEAD(&mlx5_ibv_list, sh, next);
831 exit:
832         pthread_mutex_unlock(&mlx5_ibv_list_mutex);
833         return sh;
834 error:
835         pthread_mutex_unlock(&mlx5_ibv_list_mutex);
836         MLX5_ASSERT(sh);
837         if (sh->tis)
838                 claim_zero(mlx5_devx_cmd_destroy(sh->tis));
839         if (sh->td)
840                 claim_zero(mlx5_devx_cmd_destroy(sh->td));
841         if (sh->pd)
842                 claim_zero(mlx5_glue->dealloc_pd(sh->pd));
843         if (sh->ctx)
844                 claim_zero(mlx5_glue->close_device(sh->ctx));
845         if (sh->flow_id_pool)
846                 mlx5_flow_id_pool_release(sh->flow_id_pool);
847         rte_free(sh);
848         MLX5_ASSERT(err > 0);
849         rte_errno = err;
850         return NULL;
851 }
852
853 /**
854  * Free shared IB device context. Decrement counter and if zero free
855  * all allocated resources and close handles.
856  *
857  * @param[in] sh
858  *   Pointer to mlx5_ibv_shared object to free
859  */
860 static void
861 mlx5_free_shared_ibctx(struct mlx5_ibv_shared *sh)
862 {
863         pthread_mutex_lock(&mlx5_ibv_list_mutex);
864 #ifdef RTE_LIBRTE_MLX5_DEBUG
865         /* Check the object presence in the list. */
866         struct mlx5_ibv_shared *lctx;
867
868         LIST_FOREACH(lctx, &mlx5_ibv_list, next)
869                 if (lctx == sh)
870                         break;
871         MLX5_ASSERT(lctx);
872         if (lctx != sh) {
873                 DRV_LOG(ERR, "Freeing non-existing shared IB context");
874                 goto exit;
875         }
876 #endif
877         MLX5_ASSERT(sh);
878         MLX5_ASSERT(sh->refcnt);
879         /* Secondary process should not free the shared context. */
880         MLX5_ASSERT(rte_eal_process_type() == RTE_PROC_PRIMARY);
881         if (--sh->refcnt)
882                 goto exit;
883         /* Remove from memory callback device list. */
884         rte_rwlock_write_lock(&mlx5_shared_data->mem_event_rwlock);
885         LIST_REMOVE(sh, mem_event_cb);
886         rte_rwlock_write_unlock(&mlx5_shared_data->mem_event_rwlock);
887         /* Release created Memory Regions. */
888         mlx5_mr_release_cache(&sh->share_cache);
889         /* Remove context from the global device list. */
890         LIST_REMOVE(sh, next);
891         /*
892          *  Ensure there is no async event handler installed.
893          *  Only primary process handles async device events.
894          **/
895         mlx5_flow_counters_mng_close(sh);
896         mlx5_flow_ipool_destroy(sh);
897         MLX5_ASSERT(!sh->intr_cnt);
898         if (sh->intr_cnt)
899                 mlx5_intr_callback_unregister
900                         (&sh->intr_handle, mlx5_dev_interrupt_handler, sh);
901 #ifdef HAVE_MLX5_DEVX_ASYNC_SUPPORT
902         if (sh->devx_intr_cnt) {
903                 if (sh->intr_handle_devx.fd)
904                         rte_intr_callback_unregister(&sh->intr_handle_devx,
905                                           mlx5_dev_interrupt_handler_devx, sh);
906                 if (sh->devx_comp)
907                         mlx5dv_devx_destroy_cmd_comp(sh->devx_comp);
908         }
909 #endif
910         pthread_mutex_destroy(&sh->intr_mutex);
911         if (sh->pd)
912                 claim_zero(mlx5_glue->dealloc_pd(sh->pd));
913         if (sh->tis)
914                 claim_zero(mlx5_devx_cmd_destroy(sh->tis));
915         if (sh->td)
916                 claim_zero(mlx5_devx_cmd_destroy(sh->td));
917         if (sh->ctx)
918                 claim_zero(mlx5_glue->close_device(sh->ctx));
919         if (sh->flow_id_pool)
920                 mlx5_flow_id_pool_release(sh->flow_id_pool);
921         rte_free(sh);
922 exit:
923         pthread_mutex_unlock(&mlx5_ibv_list_mutex);
924 }
925
926 /**
927  * Destroy table hash list and all the root entries per domain.
928  *
929  * @param[in] priv
930  *   Pointer to the private device data structure.
931  */
932 static void
933 mlx5_free_table_hash_list(struct mlx5_priv *priv)
934 {
935         struct mlx5_ibv_shared *sh = priv->sh;
936         struct mlx5_flow_tbl_data_entry *tbl_data;
937         union mlx5_flow_tbl_key table_key = {
938                 {
939                         .table_id = 0,
940                         .reserved = 0,
941                         .domain = 0,
942                         .direction = 0,
943                 }
944         };
945         struct mlx5_hlist_entry *pos;
946
947         if (!sh->flow_tbls)
948                 return;
949         pos = mlx5_hlist_lookup(sh->flow_tbls, table_key.v64);
950         if (pos) {
951                 tbl_data = container_of(pos, struct mlx5_flow_tbl_data_entry,
952                                         entry);
953                 MLX5_ASSERT(tbl_data);
954                 mlx5_hlist_remove(sh->flow_tbls, pos);
955                 rte_free(tbl_data);
956         }
957         table_key.direction = 1;
958         pos = mlx5_hlist_lookup(sh->flow_tbls, table_key.v64);
959         if (pos) {
960                 tbl_data = container_of(pos, struct mlx5_flow_tbl_data_entry,
961                                         entry);
962                 MLX5_ASSERT(tbl_data);
963                 mlx5_hlist_remove(sh->flow_tbls, pos);
964                 rte_free(tbl_data);
965         }
966         table_key.direction = 0;
967         table_key.domain = 1;
968         pos = mlx5_hlist_lookup(sh->flow_tbls, table_key.v64);
969         if (pos) {
970                 tbl_data = container_of(pos, struct mlx5_flow_tbl_data_entry,
971                                         entry);
972                 MLX5_ASSERT(tbl_data);
973                 mlx5_hlist_remove(sh->flow_tbls, pos);
974                 rte_free(tbl_data);
975         }
976         mlx5_hlist_destroy(sh->flow_tbls, NULL, NULL);
977 }
978
979 /**
980  * Initialize flow table hash list and create the root tables entry
981  * for each domain.
982  *
983  * @param[in] priv
984  *   Pointer to the private device data structure.
985  *
986  * @return
987  *   Zero on success, positive error code otherwise.
988  */
989 static int
990 mlx5_alloc_table_hash_list(struct mlx5_priv *priv)
991 {
992         struct mlx5_ibv_shared *sh = priv->sh;
993         char s[MLX5_HLIST_NAMESIZE];
994         int err = 0;
995
996         MLX5_ASSERT(sh);
997         snprintf(s, sizeof(s), "%s_flow_table", priv->sh->ibdev_name);
998         sh->flow_tbls = mlx5_hlist_create(s, MLX5_FLOW_TABLE_HLIST_ARRAY_SIZE);
999         if (!sh->flow_tbls) {
1000                 DRV_LOG(ERR, "flow tables with hash creation failed.\n");
1001                 err = ENOMEM;
1002                 return err;
1003         }
1004 #ifndef HAVE_MLX5DV_DR
1005         /*
1006          * In case we have not DR support, the zero tables should be created
1007          * because DV expect to see them even if they cannot be created by
1008          * RDMA-CORE.
1009          */
1010         union mlx5_flow_tbl_key table_key = {
1011                 {
1012                         .table_id = 0,
1013                         .reserved = 0,
1014                         .domain = 0,
1015                         .direction = 0,
1016                 }
1017         };
1018         struct mlx5_flow_tbl_data_entry *tbl_data = rte_zmalloc(NULL,
1019                                                           sizeof(*tbl_data), 0);
1020
1021         if (!tbl_data) {
1022                 err = ENOMEM;
1023                 goto error;
1024         }
1025         tbl_data->entry.key = table_key.v64;
1026         err = mlx5_hlist_insert(sh->flow_tbls, &tbl_data->entry);
1027         if (err)
1028                 goto error;
1029         rte_atomic32_init(&tbl_data->tbl.refcnt);
1030         rte_atomic32_inc(&tbl_data->tbl.refcnt);
1031         table_key.direction = 1;
1032         tbl_data = rte_zmalloc(NULL, sizeof(*tbl_data), 0);
1033         if (!tbl_data) {
1034                 err = ENOMEM;
1035                 goto error;
1036         }
1037         tbl_data->entry.key = table_key.v64;
1038         err = mlx5_hlist_insert(sh->flow_tbls, &tbl_data->entry);
1039         if (err)
1040                 goto error;
1041         rte_atomic32_init(&tbl_data->tbl.refcnt);
1042         rte_atomic32_inc(&tbl_data->tbl.refcnt);
1043         table_key.direction = 0;
1044         table_key.domain = 1;
1045         tbl_data = rte_zmalloc(NULL, sizeof(*tbl_data), 0);
1046         if (!tbl_data) {
1047                 err = ENOMEM;
1048                 goto error;
1049         }
1050         tbl_data->entry.key = table_key.v64;
1051         err = mlx5_hlist_insert(sh->flow_tbls, &tbl_data->entry);
1052         if (err)
1053                 goto error;
1054         rte_atomic32_init(&tbl_data->tbl.refcnt);
1055         rte_atomic32_inc(&tbl_data->tbl.refcnt);
1056         return err;
1057 error:
1058         mlx5_free_table_hash_list(priv);
1059 #endif /* HAVE_MLX5DV_DR */
1060         return err;
1061 }
1062
1063 /**
1064  * Initialize DR related data within private structure.
1065  * Routine checks the reference counter and does actual
1066  * resources creation/initialization only if counter is zero.
1067  *
1068  * @param[in] priv
1069  *   Pointer to the private device data structure.
1070  *
1071  * @return
1072  *   Zero on success, positive error code otherwise.
1073  */
1074 static int
1075 mlx5_alloc_shared_dr(struct mlx5_priv *priv)
1076 {
1077         struct mlx5_ibv_shared *sh = priv->sh;
1078         char s[MLX5_HLIST_NAMESIZE];
1079         int err = 0;
1080
1081         if (!sh->flow_tbls)
1082                 err = mlx5_alloc_table_hash_list(priv);
1083         else
1084                 DRV_LOG(DEBUG, "sh->flow_tbls[%p] already created, reuse\n",
1085                         (void *)sh->flow_tbls);
1086         if (err)
1087                 return err;
1088         /* Create tags hash list table. */
1089         snprintf(s, sizeof(s), "%s_tags", sh->ibdev_name);
1090         sh->tag_table = mlx5_hlist_create(s, MLX5_TAGS_HLIST_ARRAY_SIZE);
1091         if (!sh->tag_table) {
1092                 DRV_LOG(ERR, "tags with hash creation failed.\n");
1093                 err = ENOMEM;
1094                 goto error;
1095         }
1096 #ifdef HAVE_MLX5DV_DR
1097         void *domain;
1098
1099         if (sh->dv_refcnt) {
1100                 /* Shared DV/DR structures is already initialized. */
1101                 sh->dv_refcnt++;
1102                 priv->dr_shared = 1;
1103                 return 0;
1104         }
1105         /* Reference counter is zero, we should initialize structures. */
1106         domain = mlx5_glue->dr_create_domain(sh->ctx,
1107                                              MLX5DV_DR_DOMAIN_TYPE_NIC_RX);
1108         if (!domain) {
1109                 DRV_LOG(ERR, "ingress mlx5dv_dr_create_domain failed");
1110                 err = errno;
1111                 goto error;
1112         }
1113         sh->rx_domain = domain;
1114         domain = mlx5_glue->dr_create_domain(sh->ctx,
1115                                              MLX5DV_DR_DOMAIN_TYPE_NIC_TX);
1116         if (!domain) {
1117                 DRV_LOG(ERR, "egress mlx5dv_dr_create_domain failed");
1118                 err = errno;
1119                 goto error;
1120         }
1121         pthread_mutex_init(&sh->dv_mutex, NULL);
1122         sh->tx_domain = domain;
1123 #ifdef HAVE_MLX5DV_DR_ESWITCH
1124         if (priv->config.dv_esw_en) {
1125                 domain  = mlx5_glue->dr_create_domain
1126                         (sh->ctx, MLX5DV_DR_DOMAIN_TYPE_FDB);
1127                 if (!domain) {
1128                         DRV_LOG(ERR, "FDB mlx5dv_dr_create_domain failed");
1129                         err = errno;
1130                         goto error;
1131                 }
1132                 sh->fdb_domain = domain;
1133                 sh->esw_drop_action = mlx5_glue->dr_create_flow_action_drop();
1134         }
1135 #endif
1136         sh->pop_vlan_action = mlx5_glue->dr_create_flow_action_pop_vlan();
1137 #endif /* HAVE_MLX5DV_DR */
1138         sh->dv_refcnt++;
1139         priv->dr_shared = 1;
1140         return 0;
1141 error:
1142         /* Rollback the created objects. */
1143         if (sh->rx_domain) {
1144                 mlx5_glue->dr_destroy_domain(sh->rx_domain);
1145                 sh->rx_domain = NULL;
1146         }
1147         if (sh->tx_domain) {
1148                 mlx5_glue->dr_destroy_domain(sh->tx_domain);
1149                 sh->tx_domain = NULL;
1150         }
1151         if (sh->fdb_domain) {
1152                 mlx5_glue->dr_destroy_domain(sh->fdb_domain);
1153                 sh->fdb_domain = NULL;
1154         }
1155         if (sh->esw_drop_action) {
1156                 mlx5_glue->destroy_flow_action(sh->esw_drop_action);
1157                 sh->esw_drop_action = NULL;
1158         }
1159         if (sh->pop_vlan_action) {
1160                 mlx5_glue->destroy_flow_action(sh->pop_vlan_action);
1161                 sh->pop_vlan_action = NULL;
1162         }
1163         if (sh->tag_table) {
1164                 /* tags should be destroyed with flow before. */
1165                 mlx5_hlist_destroy(sh->tag_table, NULL, NULL);
1166                 sh->tag_table = NULL;
1167         }
1168         mlx5_free_table_hash_list(priv);
1169         return err;
1170 }
1171
1172 /**
1173  * Destroy DR related data within private structure.
1174  *
1175  * @param[in] priv
1176  *   Pointer to the private device data structure.
1177  */
1178 static void
1179 mlx5_free_shared_dr(struct mlx5_priv *priv)
1180 {
1181         struct mlx5_ibv_shared *sh;
1182
1183         if (!priv->dr_shared)
1184                 return;
1185         priv->dr_shared = 0;
1186         sh = priv->sh;
1187         MLX5_ASSERT(sh);
1188 #ifdef HAVE_MLX5DV_DR
1189         MLX5_ASSERT(sh->dv_refcnt);
1190         if (sh->dv_refcnt && --sh->dv_refcnt)
1191                 return;
1192         if (sh->rx_domain) {
1193                 mlx5_glue->dr_destroy_domain(sh->rx_domain);
1194                 sh->rx_domain = NULL;
1195         }
1196         if (sh->tx_domain) {
1197                 mlx5_glue->dr_destroy_domain(sh->tx_domain);
1198                 sh->tx_domain = NULL;
1199         }
1200 #ifdef HAVE_MLX5DV_DR_ESWITCH
1201         if (sh->fdb_domain) {
1202                 mlx5_glue->dr_destroy_domain(sh->fdb_domain);
1203                 sh->fdb_domain = NULL;
1204         }
1205         if (sh->esw_drop_action) {
1206                 mlx5_glue->destroy_flow_action(sh->esw_drop_action);
1207                 sh->esw_drop_action = NULL;
1208         }
1209 #endif
1210         if (sh->pop_vlan_action) {
1211                 mlx5_glue->destroy_flow_action(sh->pop_vlan_action);
1212                 sh->pop_vlan_action = NULL;
1213         }
1214         pthread_mutex_destroy(&sh->dv_mutex);
1215 #endif /* HAVE_MLX5DV_DR */
1216         if (sh->tag_table) {
1217                 /* tags should be destroyed with flow before. */
1218                 mlx5_hlist_destroy(sh->tag_table, NULL, NULL);
1219                 sh->tag_table = NULL;
1220         }
1221         mlx5_free_table_hash_list(priv);
1222 }
1223
1224 /**
1225  * Initialize shared data between primary and secondary process.
1226  *
1227  * A memzone is reserved by primary process and secondary processes attach to
1228  * the memzone.
1229  *
1230  * @return
1231  *   0 on success, a negative errno value otherwise and rte_errno is set.
1232  */
1233 static int
1234 mlx5_init_shared_data(void)
1235 {
1236         const struct rte_memzone *mz;
1237         int ret = 0;
1238
1239         rte_spinlock_lock(&mlx5_shared_data_lock);
1240         if (mlx5_shared_data == NULL) {
1241                 if (rte_eal_process_type() == RTE_PROC_PRIMARY) {
1242                         /* Allocate shared memory. */
1243                         mz = rte_memzone_reserve(MZ_MLX5_PMD_SHARED_DATA,
1244                                                  sizeof(*mlx5_shared_data),
1245                                                  SOCKET_ID_ANY, 0);
1246                         if (mz == NULL) {
1247                                 DRV_LOG(ERR,
1248                                         "Cannot allocate mlx5 shared data");
1249                                 ret = -rte_errno;
1250                                 goto error;
1251                         }
1252                         mlx5_shared_data = mz->addr;
1253                         memset(mlx5_shared_data, 0, sizeof(*mlx5_shared_data));
1254                         rte_spinlock_init(&mlx5_shared_data->lock);
1255                 } else {
1256                         /* Lookup allocated shared memory. */
1257                         mz = rte_memzone_lookup(MZ_MLX5_PMD_SHARED_DATA);
1258                         if (mz == NULL) {
1259                                 DRV_LOG(ERR,
1260                                         "Cannot attach mlx5 shared data");
1261                                 ret = -rte_errno;
1262                                 goto error;
1263                         }
1264                         mlx5_shared_data = mz->addr;
1265                         memset(&mlx5_local_data, 0, sizeof(mlx5_local_data));
1266                 }
1267         }
1268 error:
1269         rte_spinlock_unlock(&mlx5_shared_data_lock);
1270         return ret;
1271 }
1272
1273 /**
1274  * Retrieve integer value from environment variable.
1275  *
1276  * @param[in] name
1277  *   Environment variable name.
1278  *
1279  * @return
1280  *   Integer value, 0 if the variable is not set.
1281  */
1282 int
1283 mlx5_getenv_int(const char *name)
1284 {
1285         const char *val = getenv(name);
1286
1287         if (val == NULL)
1288                 return 0;
1289         return atoi(val);
1290 }
1291
1292 /**
1293  * Verbs callback to allocate a memory. This function should allocate the space
1294  * according to the size provided residing inside a huge page.
1295  * Please note that all allocation must respect the alignment from libmlx5
1296  * (i.e. currently sysconf(_SC_PAGESIZE)).
1297  *
1298  * @param[in] size
1299  *   The size in bytes of the memory to allocate.
1300  * @param[in] data
1301  *   A pointer to the callback data.
1302  *
1303  * @return
1304  *   Allocated buffer, NULL otherwise and rte_errno is set.
1305  */
1306 static void *
1307 mlx5_alloc_verbs_buf(size_t size, void *data)
1308 {
1309         struct mlx5_priv *priv = data;
1310         void *ret;
1311         size_t alignment = sysconf(_SC_PAGESIZE);
1312         unsigned int socket = SOCKET_ID_ANY;
1313
1314         if (priv->verbs_alloc_ctx.type == MLX5_VERBS_ALLOC_TYPE_TX_QUEUE) {
1315                 const struct mlx5_txq_ctrl *ctrl = priv->verbs_alloc_ctx.obj;
1316
1317                 socket = ctrl->socket;
1318         } else if (priv->verbs_alloc_ctx.type ==
1319                    MLX5_VERBS_ALLOC_TYPE_RX_QUEUE) {
1320                 const struct mlx5_rxq_ctrl *ctrl = priv->verbs_alloc_ctx.obj;
1321
1322                 socket = ctrl->socket;
1323         }
1324         MLX5_ASSERT(data != NULL);
1325         ret = rte_malloc_socket(__func__, size, alignment, socket);
1326         if (!ret && size)
1327                 rte_errno = ENOMEM;
1328         return ret;
1329 }
1330
1331 /**
1332  * Verbs callback to free a memory.
1333  *
1334  * @param[in] ptr
1335  *   A pointer to the memory to free.
1336  * @param[in] data
1337  *   A pointer to the callback data.
1338  */
1339 static void
1340 mlx5_free_verbs_buf(void *ptr, void *data __rte_unused)
1341 {
1342         MLX5_ASSERT(data != NULL);
1343         rte_free(ptr);
1344 }
1345
1346 /**
1347  * DPDK callback to add udp tunnel port
1348  *
1349  * @param[in] dev
1350  *   A pointer to eth_dev
1351  * @param[in] udp_tunnel
1352  *   A pointer to udp tunnel
1353  *
1354  * @return
1355  *   0 on valid udp ports and tunnels, -ENOTSUP otherwise.
1356  */
1357 int
1358 mlx5_udp_tunnel_port_add(struct rte_eth_dev *dev __rte_unused,
1359                          struct rte_eth_udp_tunnel *udp_tunnel)
1360 {
1361         MLX5_ASSERT(udp_tunnel != NULL);
1362         if (udp_tunnel->prot_type == RTE_TUNNEL_TYPE_VXLAN &&
1363             udp_tunnel->udp_port == 4789)
1364                 return 0;
1365         if (udp_tunnel->prot_type == RTE_TUNNEL_TYPE_VXLAN_GPE &&
1366             udp_tunnel->udp_port == 4790)
1367                 return 0;
1368         return -ENOTSUP;
1369 }
1370
1371 /**
1372  * Initialize process private data structure.
1373  *
1374  * @param dev
1375  *   Pointer to Ethernet device structure.
1376  *
1377  * @return
1378  *   0 on success, a negative errno value otherwise and rte_errno is set.
1379  */
1380 int
1381 mlx5_proc_priv_init(struct rte_eth_dev *dev)
1382 {
1383         struct mlx5_priv *priv = dev->data->dev_private;
1384         struct mlx5_proc_priv *ppriv;
1385         size_t ppriv_size;
1386
1387         /*
1388          * UAR register table follows the process private structure. BlueFlame
1389          * registers for Tx queues are stored in the table.
1390          */
1391         ppriv_size =
1392                 sizeof(struct mlx5_proc_priv) + priv->txqs_n * sizeof(void *);
1393         ppriv = rte_malloc_socket("mlx5_proc_priv", ppriv_size,
1394                                   RTE_CACHE_LINE_SIZE, dev->device->numa_node);
1395         if (!ppriv) {
1396                 rte_errno = ENOMEM;
1397                 return -rte_errno;
1398         }
1399         ppriv->uar_table_sz = ppriv_size;
1400         dev->process_private = ppriv;
1401         return 0;
1402 }
1403
1404 /**
1405  * Un-initialize process private data structure.
1406  *
1407  * @param dev
1408  *   Pointer to Ethernet device structure.
1409  */
1410 static void
1411 mlx5_proc_priv_uninit(struct rte_eth_dev *dev)
1412 {
1413         if (!dev->process_private)
1414                 return;
1415         rte_free(dev->process_private);
1416         dev->process_private = NULL;
1417 }
1418
1419 /**
1420  * DPDK callback to close the device.
1421  *
1422  * Destroy all queues and objects, free memory.
1423  *
1424  * @param dev
1425  *   Pointer to Ethernet device structure.
1426  */
1427 static void
1428 mlx5_dev_close(struct rte_eth_dev *dev)
1429 {
1430         struct mlx5_priv *priv = dev->data->dev_private;
1431         unsigned int i;
1432         int ret;
1433
1434         DRV_LOG(DEBUG, "port %u closing device \"%s\"",
1435                 dev->data->port_id,
1436                 ((priv->sh->ctx != NULL) ? priv->sh->ctx->device->name : ""));
1437         /* In case mlx5_dev_stop() has not been called. */
1438         mlx5_dev_interrupt_handler_uninstall(dev);
1439         mlx5_dev_interrupt_handler_devx_uninstall(dev);
1440         /*
1441          * If default mreg copy action is removed at the stop stage,
1442          * the search will return none and nothing will be done anymore.
1443          */
1444         mlx5_flow_stop_default(dev);
1445         mlx5_traffic_disable(dev);
1446         /*
1447          * If all the flows are already flushed in the device stop stage,
1448          * then this will return directly without any action.
1449          */
1450         mlx5_flow_list_flush(dev, &priv->flows, true);
1451         mlx5_flow_meter_flush(dev, NULL);
1452         /* Free the intermediate buffers for flow creation. */
1453         mlx5_flow_free_intermediate(dev);
1454         /* Prevent crashes when queues are still in use. */
1455         dev->rx_pkt_burst = removed_rx_burst;
1456         dev->tx_pkt_burst = removed_tx_burst;
1457         rte_wmb();
1458         /* Disable datapath on secondary process. */
1459         mlx5_mp_req_stop_rxtx(dev);
1460         if (priv->rxqs != NULL) {
1461                 /* XXX race condition if mlx5_rx_burst() is still running. */
1462                 usleep(1000);
1463                 for (i = 0; (i != priv->rxqs_n); ++i)
1464                         mlx5_rxq_release(dev, i);
1465                 priv->rxqs_n = 0;
1466                 priv->rxqs = NULL;
1467         }
1468         if (priv->txqs != NULL) {
1469                 /* XXX race condition if mlx5_tx_burst() is still running. */
1470                 usleep(1000);
1471                 for (i = 0; (i != priv->txqs_n); ++i)
1472                         mlx5_txq_release(dev, i);
1473                 priv->txqs_n = 0;
1474                 priv->txqs = NULL;
1475         }
1476         mlx5_proc_priv_uninit(dev);
1477         if (priv->mreg_cp_tbl)
1478                 mlx5_hlist_destroy(priv->mreg_cp_tbl, NULL, NULL);
1479         mlx5_mprq_free_mp(dev);
1480         mlx5_free_shared_dr(priv);
1481         if (priv->rss_conf.rss_key != NULL)
1482                 rte_free(priv->rss_conf.rss_key);
1483         if (priv->reta_idx != NULL)
1484                 rte_free(priv->reta_idx);
1485         if (priv->config.vf)
1486                 mlx5_nl_mac_addr_flush(priv->nl_socket_route, mlx5_ifindex(dev),
1487                                        dev->data->mac_addrs,
1488                                        MLX5_MAX_MAC_ADDRESSES, priv->mac_own);
1489         if (priv->nl_socket_route >= 0)
1490                 close(priv->nl_socket_route);
1491         if (priv->nl_socket_rdma >= 0)
1492                 close(priv->nl_socket_rdma);
1493         if (priv->vmwa_context)
1494                 mlx5_vlan_vmwa_exit(priv->vmwa_context);
1495         ret = mlx5_hrxq_verify(dev);
1496         if (ret)
1497                 DRV_LOG(WARNING, "port %u some hash Rx queue still remain",
1498                         dev->data->port_id);
1499         ret = mlx5_ind_table_obj_verify(dev);
1500         if (ret)
1501                 DRV_LOG(WARNING, "port %u some indirection table still remain",
1502                         dev->data->port_id);
1503         ret = mlx5_rxq_obj_verify(dev);
1504         if (ret)
1505                 DRV_LOG(WARNING, "port %u some Rx queue objects still remain",
1506                         dev->data->port_id);
1507         ret = mlx5_rxq_verify(dev);
1508         if (ret)
1509                 DRV_LOG(WARNING, "port %u some Rx queues still remain",
1510                         dev->data->port_id);
1511         ret = mlx5_txq_obj_verify(dev);
1512         if (ret)
1513                 DRV_LOG(WARNING, "port %u some Verbs Tx queue still remain",
1514                         dev->data->port_id);
1515         ret = mlx5_txq_verify(dev);
1516         if (ret)
1517                 DRV_LOG(WARNING, "port %u some Tx queues still remain",
1518                         dev->data->port_id);
1519         ret = mlx5_flow_verify(dev);
1520         if (ret)
1521                 DRV_LOG(WARNING, "port %u some flows still remain",
1522                         dev->data->port_id);
1523         if (priv->sh) {
1524                 /*
1525                  * Free the shared context in last turn, because the cleanup
1526                  * routines above may use some shared fields, like
1527                  * mlx5_nl_mac_addr_flush() uses ibdev_path for retrieveing
1528                  * ifindex if Netlink fails.
1529                  */
1530                 mlx5_free_shared_ibctx(priv->sh);
1531                 priv->sh = NULL;
1532         }
1533         if (priv->domain_id != RTE_ETH_DEV_SWITCH_DOMAIN_ID_INVALID) {
1534                 unsigned int c = 0;
1535                 uint16_t port_id;
1536
1537                 MLX5_ETH_FOREACH_DEV(port_id, priv->pci_dev) {
1538                         struct mlx5_priv *opriv =
1539                                 rte_eth_devices[port_id].data->dev_private;
1540
1541                         if (!opriv ||
1542                             opriv->domain_id != priv->domain_id ||
1543                             &rte_eth_devices[port_id] == dev)
1544                                 continue;
1545                         ++c;
1546                         break;
1547                 }
1548                 if (!c)
1549                         claim_zero(rte_eth_switch_domain_free(priv->domain_id));
1550         }
1551         memset(priv, 0, sizeof(*priv));
1552         priv->domain_id = RTE_ETH_DEV_SWITCH_DOMAIN_ID_INVALID;
1553         /*
1554          * Reset mac_addrs to NULL such that it is not freed as part of
1555          * rte_eth_dev_release_port(). mac_addrs is part of dev_private so
1556          * it is freed when dev_private is freed.
1557          */
1558         dev->data->mac_addrs = NULL;
1559 }
1560
1561 const struct eth_dev_ops mlx5_dev_ops = {
1562         .dev_configure = mlx5_dev_configure,
1563         .dev_start = mlx5_dev_start,
1564         .dev_stop = mlx5_dev_stop,
1565         .dev_set_link_down = mlx5_set_link_down,
1566         .dev_set_link_up = mlx5_set_link_up,
1567         .dev_close = mlx5_dev_close,
1568         .promiscuous_enable = mlx5_promiscuous_enable,
1569         .promiscuous_disable = mlx5_promiscuous_disable,
1570         .allmulticast_enable = mlx5_allmulticast_enable,
1571         .allmulticast_disable = mlx5_allmulticast_disable,
1572         .link_update = mlx5_link_update,
1573         .stats_get = mlx5_stats_get,
1574         .stats_reset = mlx5_stats_reset,
1575         .xstats_get = mlx5_xstats_get,
1576         .xstats_reset = mlx5_xstats_reset,
1577         .xstats_get_names = mlx5_xstats_get_names,
1578         .fw_version_get = mlx5_fw_version_get,
1579         .dev_infos_get = mlx5_dev_infos_get,
1580         .read_clock = mlx5_read_clock,
1581         .dev_supported_ptypes_get = mlx5_dev_supported_ptypes_get,
1582         .vlan_filter_set = mlx5_vlan_filter_set,
1583         .rx_queue_setup = mlx5_rx_queue_setup,
1584         .rx_hairpin_queue_setup = mlx5_rx_hairpin_queue_setup,
1585         .tx_queue_setup = mlx5_tx_queue_setup,
1586         .tx_hairpin_queue_setup = mlx5_tx_hairpin_queue_setup,
1587         .rx_queue_release = mlx5_rx_queue_release,
1588         .tx_queue_release = mlx5_tx_queue_release,
1589         .flow_ctrl_get = mlx5_dev_get_flow_ctrl,
1590         .flow_ctrl_set = mlx5_dev_set_flow_ctrl,
1591         .mac_addr_remove = mlx5_mac_addr_remove,
1592         .mac_addr_add = mlx5_mac_addr_add,
1593         .mac_addr_set = mlx5_mac_addr_set,
1594         .set_mc_addr_list = mlx5_set_mc_addr_list,
1595         .mtu_set = mlx5_dev_set_mtu,
1596         .vlan_strip_queue_set = mlx5_vlan_strip_queue_set,
1597         .vlan_offload_set = mlx5_vlan_offload_set,
1598         .reta_update = mlx5_dev_rss_reta_update,
1599         .reta_query = mlx5_dev_rss_reta_query,
1600         .rss_hash_update = mlx5_rss_hash_update,
1601         .rss_hash_conf_get = mlx5_rss_hash_conf_get,
1602         .filter_ctrl = mlx5_dev_filter_ctrl,
1603         .rx_descriptor_status = mlx5_rx_descriptor_status,
1604         .tx_descriptor_status = mlx5_tx_descriptor_status,
1605         .rxq_info_get = mlx5_rxq_info_get,
1606         .txq_info_get = mlx5_txq_info_get,
1607         .rx_burst_mode_get = mlx5_rx_burst_mode_get,
1608         .tx_burst_mode_get = mlx5_tx_burst_mode_get,
1609         .rx_queue_count = mlx5_rx_queue_count,
1610         .rx_queue_intr_enable = mlx5_rx_intr_enable,
1611         .rx_queue_intr_disable = mlx5_rx_intr_disable,
1612         .is_removed = mlx5_is_removed,
1613         .udp_tunnel_port_add  = mlx5_udp_tunnel_port_add,
1614         .get_module_info = mlx5_get_module_info,
1615         .get_module_eeprom = mlx5_get_module_eeprom,
1616         .hairpin_cap_get = mlx5_hairpin_cap_get,
1617         .mtr_ops_get = mlx5_flow_meter_ops_get,
1618 };
1619
1620 /* Available operations from secondary process. */
1621 static const struct eth_dev_ops mlx5_dev_sec_ops = {
1622         .stats_get = mlx5_stats_get,
1623         .stats_reset = mlx5_stats_reset,
1624         .xstats_get = mlx5_xstats_get,
1625         .xstats_reset = mlx5_xstats_reset,
1626         .xstats_get_names = mlx5_xstats_get_names,
1627         .fw_version_get = mlx5_fw_version_get,
1628         .dev_infos_get = mlx5_dev_infos_get,
1629         .rx_descriptor_status = mlx5_rx_descriptor_status,
1630         .tx_descriptor_status = mlx5_tx_descriptor_status,
1631         .rxq_info_get = mlx5_rxq_info_get,
1632         .txq_info_get = mlx5_txq_info_get,
1633         .rx_burst_mode_get = mlx5_rx_burst_mode_get,
1634         .tx_burst_mode_get = mlx5_tx_burst_mode_get,
1635         .get_module_info = mlx5_get_module_info,
1636         .get_module_eeprom = mlx5_get_module_eeprom,
1637 };
1638
1639 /* Available operations in flow isolated mode. */
1640 const struct eth_dev_ops mlx5_dev_ops_isolate = {
1641         .dev_configure = mlx5_dev_configure,
1642         .dev_start = mlx5_dev_start,
1643         .dev_stop = mlx5_dev_stop,
1644         .dev_set_link_down = mlx5_set_link_down,
1645         .dev_set_link_up = mlx5_set_link_up,
1646         .dev_close = mlx5_dev_close,
1647         .promiscuous_enable = mlx5_promiscuous_enable,
1648         .promiscuous_disable = mlx5_promiscuous_disable,
1649         .allmulticast_enable = mlx5_allmulticast_enable,
1650         .allmulticast_disable = mlx5_allmulticast_disable,
1651         .link_update = mlx5_link_update,
1652         .stats_get = mlx5_stats_get,
1653         .stats_reset = mlx5_stats_reset,
1654         .xstats_get = mlx5_xstats_get,
1655         .xstats_reset = mlx5_xstats_reset,
1656         .xstats_get_names = mlx5_xstats_get_names,
1657         .fw_version_get = mlx5_fw_version_get,
1658         .dev_infos_get = mlx5_dev_infos_get,
1659         .dev_supported_ptypes_get = mlx5_dev_supported_ptypes_get,
1660         .vlan_filter_set = mlx5_vlan_filter_set,
1661         .rx_queue_setup = mlx5_rx_queue_setup,
1662         .rx_hairpin_queue_setup = mlx5_rx_hairpin_queue_setup,
1663         .tx_queue_setup = mlx5_tx_queue_setup,
1664         .tx_hairpin_queue_setup = mlx5_tx_hairpin_queue_setup,
1665         .rx_queue_release = mlx5_rx_queue_release,
1666         .tx_queue_release = mlx5_tx_queue_release,
1667         .flow_ctrl_get = mlx5_dev_get_flow_ctrl,
1668         .flow_ctrl_set = mlx5_dev_set_flow_ctrl,
1669         .mac_addr_remove = mlx5_mac_addr_remove,
1670         .mac_addr_add = mlx5_mac_addr_add,
1671         .mac_addr_set = mlx5_mac_addr_set,
1672         .set_mc_addr_list = mlx5_set_mc_addr_list,
1673         .mtu_set = mlx5_dev_set_mtu,
1674         .vlan_strip_queue_set = mlx5_vlan_strip_queue_set,
1675         .vlan_offload_set = mlx5_vlan_offload_set,
1676         .filter_ctrl = mlx5_dev_filter_ctrl,
1677         .rx_descriptor_status = mlx5_rx_descriptor_status,
1678         .tx_descriptor_status = mlx5_tx_descriptor_status,
1679         .rxq_info_get = mlx5_rxq_info_get,
1680         .txq_info_get = mlx5_txq_info_get,
1681         .rx_burst_mode_get = mlx5_rx_burst_mode_get,
1682         .tx_burst_mode_get = mlx5_tx_burst_mode_get,
1683         .rx_queue_intr_enable = mlx5_rx_intr_enable,
1684         .rx_queue_intr_disable = mlx5_rx_intr_disable,
1685         .is_removed = mlx5_is_removed,
1686         .get_module_info = mlx5_get_module_info,
1687         .get_module_eeprom = mlx5_get_module_eeprom,
1688         .hairpin_cap_get = mlx5_hairpin_cap_get,
1689         .mtr_ops_get = mlx5_flow_meter_ops_get,
1690 };
1691
1692 /**
1693  * Verify and store value for device argument.
1694  *
1695  * @param[in] key
1696  *   Key argument to verify.
1697  * @param[in] val
1698  *   Value associated with key.
1699  * @param opaque
1700  *   User data.
1701  *
1702  * @return
1703  *   0 on success, a negative errno value otherwise and rte_errno is set.
1704  */
1705 static int
1706 mlx5_args_check(const char *key, const char *val, void *opaque)
1707 {
1708         struct mlx5_dev_config *config = opaque;
1709         unsigned long tmp;
1710
1711         /* No-op, port representors are processed in mlx5_dev_spawn(). */
1712         if (!strcmp(MLX5_REPRESENTOR, key))
1713                 return 0;
1714         errno = 0;
1715         tmp = strtoul(val, NULL, 0);
1716         if (errno) {
1717                 rte_errno = errno;
1718                 DRV_LOG(WARNING, "%s: \"%s\" is not a valid integer", key, val);
1719                 return -rte_errno;
1720         }
1721         if (strcmp(MLX5_RXQ_CQE_COMP_EN, key) == 0) {
1722                 config->cqe_comp = !!tmp;
1723         } else if (strcmp(MLX5_RXQ_CQE_PAD_EN, key) == 0) {
1724                 config->cqe_pad = !!tmp;
1725         } else if (strcmp(MLX5_RXQ_PKT_PAD_EN, key) == 0) {
1726                 config->hw_padding = !!tmp;
1727         } else if (strcmp(MLX5_RX_MPRQ_EN, key) == 0) {
1728                 config->mprq.enabled = !!tmp;
1729         } else if (strcmp(MLX5_RX_MPRQ_LOG_STRIDE_NUM, key) == 0) {
1730                 config->mprq.stride_num_n = tmp;
1731         } else if (strcmp(MLX5_RX_MPRQ_LOG_STRIDE_SIZE, key) == 0) {
1732                 config->mprq.stride_size_n = tmp;
1733         } else if (strcmp(MLX5_RX_MPRQ_MAX_MEMCPY_LEN, key) == 0) {
1734                 config->mprq.max_memcpy_len = tmp;
1735         } else if (strcmp(MLX5_RXQS_MIN_MPRQ, key) == 0) {
1736                 config->mprq.min_rxqs_num = tmp;
1737         } else if (strcmp(MLX5_TXQ_INLINE, key) == 0) {
1738                 DRV_LOG(WARNING, "%s: deprecated parameter,"
1739                                  " converted to txq_inline_max", key);
1740                 config->txq_inline_max = tmp;
1741         } else if (strcmp(MLX5_TXQ_INLINE_MAX, key) == 0) {
1742                 config->txq_inline_max = tmp;
1743         } else if (strcmp(MLX5_TXQ_INLINE_MIN, key) == 0) {
1744                 config->txq_inline_min = tmp;
1745         } else if (strcmp(MLX5_TXQ_INLINE_MPW, key) == 0) {
1746                 config->txq_inline_mpw = tmp;
1747         } else if (strcmp(MLX5_TXQS_MIN_INLINE, key) == 0) {
1748                 config->txqs_inline = tmp;
1749         } else if (strcmp(MLX5_TXQS_MAX_VEC, key) == 0) {
1750                 DRV_LOG(WARNING, "%s: deprecated parameter, ignored", key);
1751         } else if (strcmp(MLX5_TXQ_MPW_EN, key) == 0) {
1752                 config->mps = !!tmp;
1753         } else if (strcmp(MLX5_TX_DB_NC, key) == 0) {
1754                 if (tmp != MLX5_TXDB_CACHED &&
1755                     tmp != MLX5_TXDB_NCACHED &&
1756                     tmp != MLX5_TXDB_HEURISTIC) {
1757                         DRV_LOG(ERR, "invalid Tx doorbell "
1758                                      "mapping parameter");
1759                         rte_errno = EINVAL;
1760                         return -rte_errno;
1761                 }
1762                 config->dbnc = tmp;
1763         } else if (strcmp(MLX5_TXQ_MPW_HDR_DSEG_EN, key) == 0) {
1764                 DRV_LOG(WARNING, "%s: deprecated parameter, ignored", key);
1765         } else if (strcmp(MLX5_TXQ_MAX_INLINE_LEN, key) == 0) {
1766                 DRV_LOG(WARNING, "%s: deprecated parameter,"
1767                                  " converted to txq_inline_mpw", key);
1768                 config->txq_inline_mpw = tmp;
1769         } else if (strcmp(MLX5_TX_VEC_EN, key) == 0) {
1770                 DRV_LOG(WARNING, "%s: deprecated parameter, ignored", key);
1771         } else if (strcmp(MLX5_RX_VEC_EN, key) == 0) {
1772                 config->rx_vec_en = !!tmp;
1773         } else if (strcmp(MLX5_L3_VXLAN_EN, key) == 0) {
1774                 config->l3_vxlan_en = !!tmp;
1775         } else if (strcmp(MLX5_VF_NL_EN, key) == 0) {
1776                 config->vf_nl_en = !!tmp;
1777         } else if (strcmp(MLX5_DV_ESW_EN, key) == 0) {
1778                 config->dv_esw_en = !!tmp;
1779         } else if (strcmp(MLX5_DV_FLOW_EN, key) == 0) {
1780                 config->dv_flow_en = !!tmp;
1781         } else if (strcmp(MLX5_DV_XMETA_EN, key) == 0) {
1782                 if (tmp != MLX5_XMETA_MODE_LEGACY &&
1783                     tmp != MLX5_XMETA_MODE_META16 &&
1784                     tmp != MLX5_XMETA_MODE_META32) {
1785                         DRV_LOG(ERR, "invalid extensive "
1786                                      "metadata parameter");
1787                         rte_errno = EINVAL;
1788                         return -rte_errno;
1789                 }
1790                 config->dv_xmeta_en = tmp;
1791         } else if (strcmp(MLX5_MR_EXT_MEMSEG_EN, key) == 0) {
1792                 config->mr_ext_memseg_en = !!tmp;
1793         } else if (strcmp(MLX5_MAX_DUMP_FILES_NUM, key) == 0) {
1794                 config->max_dump_files_num = tmp;
1795         } else if (strcmp(MLX5_LRO_TIMEOUT_USEC, key) == 0) {
1796                 config->lro.timeout = tmp;
1797         } else if (strcmp(MLX5_CLASS_ARG_NAME, key) == 0) {
1798                 DRV_LOG(DEBUG, "class argument is %s.", val);
1799         } else if (strcmp(MLX5_HP_BUF_SIZE, key) == 0) {
1800                 config->log_hp_size = tmp;
1801         } else {
1802                 DRV_LOG(WARNING, "%s: unknown parameter", key);
1803                 rte_errno = EINVAL;
1804                 return -rte_errno;
1805         }
1806         return 0;
1807 }
1808
1809 /**
1810  * Parse device parameters.
1811  *
1812  * @param config
1813  *   Pointer to device configuration structure.
1814  * @param devargs
1815  *   Device arguments structure.
1816  *
1817  * @return
1818  *   0 on success, a negative errno value otherwise and rte_errno is set.
1819  */
1820 static int
1821 mlx5_args(struct mlx5_dev_config *config, struct rte_devargs *devargs)
1822 {
1823         const char **params = (const char *[]){
1824                 MLX5_RXQ_CQE_COMP_EN,
1825                 MLX5_RXQ_CQE_PAD_EN,
1826                 MLX5_RXQ_PKT_PAD_EN,
1827                 MLX5_RX_MPRQ_EN,
1828                 MLX5_RX_MPRQ_LOG_STRIDE_NUM,
1829                 MLX5_RX_MPRQ_LOG_STRIDE_SIZE,
1830                 MLX5_RX_MPRQ_MAX_MEMCPY_LEN,
1831                 MLX5_RXQS_MIN_MPRQ,
1832                 MLX5_TXQ_INLINE,
1833                 MLX5_TXQ_INLINE_MIN,
1834                 MLX5_TXQ_INLINE_MAX,
1835                 MLX5_TXQ_INLINE_MPW,
1836                 MLX5_TXQS_MIN_INLINE,
1837                 MLX5_TXQS_MAX_VEC,
1838                 MLX5_TXQ_MPW_EN,
1839                 MLX5_TXQ_MPW_HDR_DSEG_EN,
1840                 MLX5_TXQ_MAX_INLINE_LEN,
1841                 MLX5_TX_DB_NC,
1842                 MLX5_TX_VEC_EN,
1843                 MLX5_RX_VEC_EN,
1844                 MLX5_L3_VXLAN_EN,
1845                 MLX5_VF_NL_EN,
1846                 MLX5_DV_ESW_EN,
1847                 MLX5_DV_FLOW_EN,
1848                 MLX5_DV_XMETA_EN,
1849                 MLX5_MR_EXT_MEMSEG_EN,
1850                 MLX5_REPRESENTOR,
1851                 MLX5_MAX_DUMP_FILES_NUM,
1852                 MLX5_LRO_TIMEOUT_USEC,
1853                 MLX5_CLASS_ARG_NAME,
1854                 MLX5_HP_BUF_SIZE,
1855                 NULL,
1856         };
1857         struct rte_kvargs *kvlist;
1858         int ret = 0;
1859         int i;
1860
1861         if (devargs == NULL)
1862                 return 0;
1863         /* Following UGLY cast is done to pass checkpatch. */
1864         kvlist = rte_kvargs_parse(devargs->args, params);
1865         if (kvlist == NULL) {
1866                 rte_errno = EINVAL;
1867                 return -rte_errno;
1868         }
1869         /* Process parameters. */
1870         for (i = 0; (params[i] != NULL); ++i) {
1871                 if (rte_kvargs_count(kvlist, params[i])) {
1872                         ret = rte_kvargs_process(kvlist, params[i],
1873                                                  mlx5_args_check, config);
1874                         if (ret) {
1875                                 rte_errno = EINVAL;
1876                                 rte_kvargs_free(kvlist);
1877                                 return -rte_errno;
1878                         }
1879                 }
1880         }
1881         rte_kvargs_free(kvlist);
1882         return 0;
1883 }
1884
1885 static struct rte_pci_driver mlx5_driver;
1886
1887 /**
1888  * PMD global initialization.
1889  *
1890  * Independent from individual device, this function initializes global
1891  * per-PMD data structures distinguishing primary and secondary processes.
1892  * Hence, each initialization is called once per a process.
1893  *
1894  * @return
1895  *   0 on success, a negative errno value otherwise and rte_errno is set.
1896  */
1897 static int
1898 mlx5_init_once(void)
1899 {
1900         struct mlx5_shared_data *sd;
1901         struct mlx5_local_data *ld = &mlx5_local_data;
1902         int ret = 0;
1903
1904         if (mlx5_init_shared_data())
1905                 return -rte_errno;
1906         sd = mlx5_shared_data;
1907         MLX5_ASSERT(sd);
1908         rte_spinlock_lock(&sd->lock);
1909         switch (rte_eal_process_type()) {
1910         case RTE_PROC_PRIMARY:
1911                 if (sd->init_done)
1912                         break;
1913                 LIST_INIT(&sd->mem_event_cb_list);
1914                 rte_rwlock_init(&sd->mem_event_rwlock);
1915                 rte_mem_event_callback_register("MLX5_MEM_EVENT_CB",
1916                                                 mlx5_mr_mem_event_cb, NULL);
1917                 ret = mlx5_mp_init_primary(MLX5_MP_NAME,
1918                                            mlx5_mp_primary_handle);
1919                 if (ret)
1920                         goto out;
1921                 sd->init_done = true;
1922                 break;
1923         case RTE_PROC_SECONDARY:
1924                 if (ld->init_done)
1925                         break;
1926                 ret = mlx5_mp_init_secondary(MLX5_MP_NAME,
1927                                              mlx5_mp_secondary_handle);
1928                 if (ret)
1929                         goto out;
1930                 ++sd->secondary_cnt;
1931                 ld->init_done = true;
1932                 break;
1933         default:
1934                 break;
1935         }
1936 out:
1937         rte_spinlock_unlock(&sd->lock);
1938         return ret;
1939 }
1940
1941 /**
1942  * Configures the minimal amount of data to inline into WQE
1943  * while sending packets.
1944  *
1945  * - the txq_inline_min has the maximal priority, if this
1946  *   key is specified in devargs
1947  * - if DevX is enabled the inline mode is queried from the
1948  *   device (HCA attributes and NIC vport context if needed).
1949  * - otherwise L2 mode (18 bytes) is assumed for ConnectX-4/4 Lx
1950  *   and none (0 bytes) for other NICs
1951  *
1952  * @param spawn
1953  *   Verbs device parameters (name, port, switch_info) to spawn.
1954  * @param config
1955  *   Device configuration parameters.
1956  */
1957 static void
1958 mlx5_set_min_inline(struct mlx5_dev_spawn_data *spawn,
1959                     struct mlx5_dev_config *config)
1960 {
1961         if (config->txq_inline_min != MLX5_ARG_UNSET) {
1962                 /* Application defines size of inlined data explicitly. */
1963                 switch (spawn->pci_dev->id.device_id) {
1964                 case PCI_DEVICE_ID_MELLANOX_CONNECTX4:
1965                 case PCI_DEVICE_ID_MELLANOX_CONNECTX4VF:
1966                         if (config->txq_inline_min <
1967                                        (int)MLX5_INLINE_HSIZE_L2) {
1968                                 DRV_LOG(DEBUG,
1969                                         "txq_inline_mix aligned to minimal"
1970                                         " ConnectX-4 required value %d",
1971                                         (int)MLX5_INLINE_HSIZE_L2);
1972                                 config->txq_inline_min = MLX5_INLINE_HSIZE_L2;
1973                         }
1974                         break;
1975                 }
1976                 goto exit;
1977         }
1978         if (config->hca_attr.eth_net_offloads) {
1979                 /* We have DevX enabled, inline mode queried successfully. */
1980                 switch (config->hca_attr.wqe_inline_mode) {
1981                 case MLX5_CAP_INLINE_MODE_L2:
1982                         /* outer L2 header must be inlined. */
1983                         config->txq_inline_min = MLX5_INLINE_HSIZE_L2;
1984                         goto exit;
1985                 case MLX5_CAP_INLINE_MODE_NOT_REQUIRED:
1986                         /* No inline data are required by NIC. */
1987                         config->txq_inline_min = MLX5_INLINE_HSIZE_NONE;
1988                         config->hw_vlan_insert =
1989                                 config->hca_attr.wqe_vlan_insert;
1990                         DRV_LOG(DEBUG, "Tx VLAN insertion is supported");
1991                         goto exit;
1992                 case MLX5_CAP_INLINE_MODE_VPORT_CONTEXT:
1993                         /* inline mode is defined by NIC vport context. */
1994                         if (!config->hca_attr.eth_virt)
1995                                 break;
1996                         switch (config->hca_attr.vport_inline_mode) {
1997                         case MLX5_INLINE_MODE_NONE:
1998                                 config->txq_inline_min =
1999                                         MLX5_INLINE_HSIZE_NONE;
2000                                 goto exit;
2001                         case MLX5_INLINE_MODE_L2:
2002                                 config->txq_inline_min =
2003                                         MLX5_INLINE_HSIZE_L2;
2004                                 goto exit;
2005                         case MLX5_INLINE_MODE_IP:
2006                                 config->txq_inline_min =
2007                                         MLX5_INLINE_HSIZE_L3;
2008                                 goto exit;
2009                         case MLX5_INLINE_MODE_TCP_UDP:
2010                                 config->txq_inline_min =
2011                                         MLX5_INLINE_HSIZE_L4;
2012                                 goto exit;
2013                         case MLX5_INLINE_MODE_INNER_L2:
2014                                 config->txq_inline_min =
2015                                         MLX5_INLINE_HSIZE_INNER_L2;
2016                                 goto exit;
2017                         case MLX5_INLINE_MODE_INNER_IP:
2018                                 config->txq_inline_min =
2019                                         MLX5_INLINE_HSIZE_INNER_L3;
2020                                 goto exit;
2021                         case MLX5_INLINE_MODE_INNER_TCP_UDP:
2022                                 config->txq_inline_min =
2023                                         MLX5_INLINE_HSIZE_INNER_L4;
2024                                 goto exit;
2025                         }
2026                 }
2027         }
2028         /*
2029          * We get here if we are unable to deduce
2030          * inline data size with DevX. Try PCI ID
2031          * to determine old NICs.
2032          */
2033         switch (spawn->pci_dev->id.device_id) {
2034         case PCI_DEVICE_ID_MELLANOX_CONNECTX4:
2035         case PCI_DEVICE_ID_MELLANOX_CONNECTX4VF:
2036         case PCI_DEVICE_ID_MELLANOX_CONNECTX4LX:
2037         case PCI_DEVICE_ID_MELLANOX_CONNECTX4LXVF:
2038                 config->txq_inline_min = MLX5_INLINE_HSIZE_L2;
2039                 config->hw_vlan_insert = 0;
2040                 break;
2041         case PCI_DEVICE_ID_MELLANOX_CONNECTX5:
2042         case PCI_DEVICE_ID_MELLANOX_CONNECTX5VF:
2043         case PCI_DEVICE_ID_MELLANOX_CONNECTX5EX:
2044         case PCI_DEVICE_ID_MELLANOX_CONNECTX5EXVF:
2045                 /*
2046                  * These NICs support VLAN insertion from WQE and
2047                  * report the wqe_vlan_insert flag. But there is the bug
2048                  * and PFC control may be broken, so disable feature.
2049                  */
2050                 config->hw_vlan_insert = 0;
2051                 config->txq_inline_min = MLX5_INLINE_HSIZE_NONE;
2052                 break;
2053         default:
2054                 config->txq_inline_min = MLX5_INLINE_HSIZE_NONE;
2055                 break;
2056         }
2057 exit:
2058         DRV_LOG(DEBUG, "min tx inline configured: %d", config->txq_inline_min);
2059 }
2060
2061 /**
2062  * Configures the metadata mask fields in the shared context.
2063  *
2064  * @param [in] dev
2065  *   Pointer to Ethernet device.
2066  */
2067 static void
2068 mlx5_set_metadata_mask(struct rte_eth_dev *dev)
2069 {
2070         struct mlx5_priv *priv = dev->data->dev_private;
2071         struct mlx5_ibv_shared *sh = priv->sh;
2072         uint32_t meta, mark, reg_c0;
2073
2074         reg_c0 = ~priv->vport_meta_mask;
2075         switch (priv->config.dv_xmeta_en) {
2076         case MLX5_XMETA_MODE_LEGACY:
2077                 meta = UINT32_MAX;
2078                 mark = MLX5_FLOW_MARK_MASK;
2079                 break;
2080         case MLX5_XMETA_MODE_META16:
2081                 meta = reg_c0 >> rte_bsf32(reg_c0);
2082                 mark = MLX5_FLOW_MARK_MASK;
2083                 break;
2084         case MLX5_XMETA_MODE_META32:
2085                 meta = UINT32_MAX;
2086                 mark = (reg_c0 >> rte_bsf32(reg_c0)) & MLX5_FLOW_MARK_MASK;
2087                 break;
2088         default:
2089                 meta = 0;
2090                 mark = 0;
2091                 MLX5_ASSERT(false);
2092                 break;
2093         }
2094         if (sh->dv_mark_mask && sh->dv_mark_mask != mark)
2095                 DRV_LOG(WARNING, "metadata MARK mask mismatche %08X:%08X",
2096                                  sh->dv_mark_mask, mark);
2097         else
2098                 sh->dv_mark_mask = mark;
2099         if (sh->dv_meta_mask && sh->dv_meta_mask != meta)
2100                 DRV_LOG(WARNING, "metadata META mask mismatche %08X:%08X",
2101                                  sh->dv_meta_mask, meta);
2102         else
2103                 sh->dv_meta_mask = meta;
2104         if (sh->dv_regc0_mask && sh->dv_regc0_mask != reg_c0)
2105                 DRV_LOG(WARNING, "metadata reg_c0 mask mismatche %08X:%08X",
2106                                  sh->dv_meta_mask, reg_c0);
2107         else
2108                 sh->dv_regc0_mask = reg_c0;
2109         DRV_LOG(DEBUG, "metadata mode %u", priv->config.dv_xmeta_en);
2110         DRV_LOG(DEBUG, "metadata MARK mask %08X", sh->dv_mark_mask);
2111         DRV_LOG(DEBUG, "metadata META mask %08X", sh->dv_meta_mask);
2112         DRV_LOG(DEBUG, "metadata reg_c0 mask %08X", sh->dv_regc0_mask);
2113 }
2114
2115 /**
2116  * Allocate page of door-bells and register it using DevX API.
2117  *
2118  * @param [in] dev
2119  *   Pointer to Ethernet device.
2120  *
2121  * @return
2122  *   Pointer to new page on success, NULL otherwise.
2123  */
2124 static struct mlx5_devx_dbr_page *
2125 mlx5_alloc_dbr_page(struct rte_eth_dev *dev)
2126 {
2127         struct mlx5_priv *priv = dev->data->dev_private;
2128         struct mlx5_devx_dbr_page *page;
2129
2130         /* Allocate space for door-bell page and management data. */
2131         page = rte_calloc_socket(__func__, 1, sizeof(struct mlx5_devx_dbr_page),
2132                                  RTE_CACHE_LINE_SIZE, dev->device->numa_node);
2133         if (!page) {
2134                 DRV_LOG(ERR, "port %u cannot allocate dbr page",
2135                         dev->data->port_id);
2136                 return NULL;
2137         }
2138         /* Register allocated memory. */
2139         page->umem = mlx5_glue->devx_umem_reg(priv->sh->ctx, page->dbrs,
2140                                               MLX5_DBR_PAGE_SIZE, 0);
2141         if (!page->umem) {
2142                 DRV_LOG(ERR, "port %u cannot umem reg dbr page",
2143                         dev->data->port_id);
2144                 rte_free(page);
2145                 return NULL;
2146         }
2147         return page;
2148 }
2149
2150 /**
2151  * Find the next available door-bell, allocate new page if needed.
2152  *
2153  * @param [in] dev
2154  *   Pointer to Ethernet device.
2155  * @param [out] dbr_page
2156  *   Door-bell page containing the page data.
2157  *
2158  * @return
2159  *   Door-bell address offset on success, a negative error value otherwise.
2160  */
2161 int64_t
2162 mlx5_get_dbr(struct rte_eth_dev *dev, struct mlx5_devx_dbr_page **dbr_page)
2163 {
2164         struct mlx5_priv *priv = dev->data->dev_private;
2165         struct mlx5_devx_dbr_page *page = NULL;
2166         uint32_t i, j;
2167
2168         LIST_FOREACH(page, &priv->dbrpgs, next)
2169                 if (page->dbr_count < MLX5_DBR_PER_PAGE)
2170                         break;
2171         if (!page) { /* No page with free door-bell exists. */
2172                 page = mlx5_alloc_dbr_page(dev);
2173                 if (!page) /* Failed to allocate new page. */
2174                         return (-1);
2175                 LIST_INSERT_HEAD(&priv->dbrpgs, page, next);
2176         }
2177         /* Loop to find bitmap part with clear bit. */
2178         for (i = 0;
2179              i < MLX5_DBR_BITMAP_SIZE && page->dbr_bitmap[i] == UINT64_MAX;
2180              i++)
2181                 ; /* Empty. */
2182         /* Find the first clear bit. */
2183         MLX5_ASSERT(i < MLX5_DBR_BITMAP_SIZE);
2184         j = rte_bsf64(~page->dbr_bitmap[i]);
2185         page->dbr_bitmap[i] |= (1 << j);
2186         page->dbr_count++;
2187         *dbr_page = page;
2188         return (((i * 64) + j) * sizeof(uint64_t));
2189 }
2190
2191 /**
2192  * Release a door-bell record.
2193  *
2194  * @param [in] dev
2195  *   Pointer to Ethernet device.
2196  * @param [in] umem_id
2197  *   UMEM ID of page containing the door-bell record to release.
2198  * @param [in] offset
2199  *   Offset of door-bell record in page.
2200  *
2201  * @return
2202  *   0 on success, a negative error value otherwise.
2203  */
2204 int32_t
2205 mlx5_release_dbr(struct rte_eth_dev *dev, uint32_t umem_id, uint64_t offset)
2206 {
2207         struct mlx5_priv *priv = dev->data->dev_private;
2208         struct mlx5_devx_dbr_page *page = NULL;
2209         int ret = 0;
2210
2211         LIST_FOREACH(page, &priv->dbrpgs, next)
2212                 /* Find the page this address belongs to. */
2213                 if (page->umem->umem_id == umem_id)
2214                         break;
2215         if (!page)
2216                 return -EINVAL;
2217         page->dbr_count--;
2218         if (!page->dbr_count) {
2219                 /* Page not used, free it and remove from list. */
2220                 LIST_REMOVE(page, next);
2221                 if (page->umem)
2222                         ret = -mlx5_glue->devx_umem_dereg(page->umem);
2223                 rte_free(page);
2224         } else {
2225                 /* Mark in bitmap that this door-bell is not in use. */
2226                 offset /= MLX5_DBR_SIZE;
2227                 int i = offset / 64;
2228                 int j = offset % 64;
2229
2230                 page->dbr_bitmap[i] &= ~(1 << j);
2231         }
2232         return ret;
2233 }
2234
2235 int
2236 rte_pmd_mlx5_get_dyn_flag_names(char *names[], unsigned int n)
2237 {
2238         static const char *const dynf_names[] = {
2239                 RTE_PMD_MLX5_FINE_GRANULARITY_INLINE,
2240                 RTE_MBUF_DYNFLAG_METADATA_NAME
2241         };
2242         unsigned int i;
2243
2244         if (n < RTE_DIM(dynf_names))
2245                 return -ENOMEM;
2246         for (i = 0; i < RTE_DIM(dynf_names); i++) {
2247                 if (names[i] == NULL)
2248                         return -EINVAL;
2249                 strcpy(names[i], dynf_names[i]);
2250         }
2251         return RTE_DIM(dynf_names);
2252 }
2253
2254 /**
2255  * Check sibling device configurations.
2256  *
2257  * Sibling devices sharing the Infiniband device context
2258  * should have compatible configurations. This regards
2259  * representors and bonding slaves.
2260  *
2261  * @param priv
2262  *   Private device descriptor.
2263  * @param config
2264  *   Configuration of the device is going to be created.
2265  *
2266  * @return
2267  *   0 on success, EINVAL otherwise
2268  */
2269 static int
2270 mlx5_dev_check_sibling_config(struct mlx5_priv *priv,
2271                               struct mlx5_dev_config *config)
2272 {
2273         struct mlx5_ibv_shared *sh = priv->sh;
2274         struct mlx5_dev_config *sh_conf = NULL;
2275         uint16_t port_id;
2276
2277         MLX5_ASSERT(sh);
2278         /* Nothing to compare for the single/first device. */
2279         if (sh->refcnt == 1)
2280                 return 0;
2281         /* Find the device with shared context. */
2282         MLX5_ETH_FOREACH_DEV(port_id, priv->pci_dev) {
2283                 struct mlx5_priv *opriv =
2284                         rte_eth_devices[port_id].data->dev_private;
2285
2286                 if (opriv && opriv != priv && opriv->sh == sh) {
2287                         sh_conf = &opriv->config;
2288                         break;
2289                 }
2290         }
2291         if (!sh_conf)
2292                 return 0;
2293         if (sh_conf->dv_flow_en ^ config->dv_flow_en) {
2294                 DRV_LOG(ERR, "\"dv_flow_en\" configuration mismatch"
2295                              " for shared %s context", sh->ibdev_name);
2296                 rte_errno = EINVAL;
2297                 return rte_errno;
2298         }
2299         if (sh_conf->dv_xmeta_en ^ config->dv_xmeta_en) {
2300                 DRV_LOG(ERR, "\"dv_xmeta_en\" configuration mismatch"
2301                              " for shared %s context", sh->ibdev_name);
2302                 rte_errno = EINVAL;
2303                 return rte_errno;
2304         }
2305         return 0;
2306 }
2307 /**
2308  * Spawn an Ethernet device from Verbs information.
2309  *
2310  * @param dpdk_dev
2311  *   Backing DPDK device.
2312  * @param spawn
2313  *   Verbs device parameters (name, port, switch_info) to spawn.
2314  * @param config
2315  *   Device configuration parameters.
2316  *
2317  * @return
2318  *   A valid Ethernet device object on success, NULL otherwise and rte_errno
2319  *   is set. The following errors are defined:
2320  *
2321  *   EBUSY: device is not supposed to be spawned.
2322  *   EEXIST: device is already spawned
2323  */
2324 static struct rte_eth_dev *
2325 mlx5_dev_spawn(struct rte_device *dpdk_dev,
2326                struct mlx5_dev_spawn_data *spawn,
2327                struct mlx5_dev_config config)
2328 {
2329         const struct mlx5_switch_info *switch_info = &spawn->info;
2330         struct mlx5_ibv_shared *sh = NULL;
2331         struct ibv_port_attr port_attr;
2332         struct mlx5dv_context dv_attr = { .comp_mask = 0 };
2333         struct rte_eth_dev *eth_dev = NULL;
2334         struct mlx5_priv *priv = NULL;
2335         int err = 0;
2336         unsigned int hw_padding = 0;
2337         unsigned int mps;
2338         unsigned int cqe_comp;
2339         unsigned int cqe_pad = 0;
2340         unsigned int tunnel_en = 0;
2341         unsigned int mpls_en = 0;
2342         unsigned int swp = 0;
2343         unsigned int mprq = 0;
2344         unsigned int mprq_min_stride_size_n = 0;
2345         unsigned int mprq_max_stride_size_n = 0;
2346         unsigned int mprq_min_stride_num_n = 0;
2347         unsigned int mprq_max_stride_num_n = 0;
2348         struct rte_ether_addr mac;
2349         char name[RTE_ETH_NAME_MAX_LEN];
2350         int own_domain_id = 0;
2351         uint16_t port_id;
2352         unsigned int i;
2353 #ifdef HAVE_MLX5DV_DR_DEVX_PORT
2354         struct mlx5dv_devx_port devx_port = { .comp_mask = 0 };
2355 #endif
2356
2357         /* Determine if this port representor is supposed to be spawned. */
2358         if (switch_info->representor && dpdk_dev->devargs) {
2359                 struct rte_eth_devargs eth_da;
2360
2361                 err = rte_eth_devargs_parse(dpdk_dev->devargs->args, &eth_da);
2362                 if (err) {
2363                         rte_errno = -err;
2364                         DRV_LOG(ERR, "failed to process device arguments: %s",
2365                                 strerror(rte_errno));
2366                         return NULL;
2367                 }
2368                 for (i = 0; i < eth_da.nb_representor_ports; ++i)
2369                         if (eth_da.representor_ports[i] ==
2370                             (uint16_t)switch_info->port_name)
2371                                 break;
2372                 if (i == eth_da.nb_representor_ports) {
2373                         rte_errno = EBUSY;
2374                         return NULL;
2375                 }
2376         }
2377         /* Build device name. */
2378         if (spawn->pf_bond <  0) {
2379                 /* Single device. */
2380                 if (!switch_info->representor)
2381                         strlcpy(name, dpdk_dev->name, sizeof(name));
2382                 else
2383                         snprintf(name, sizeof(name), "%s_representor_%u",
2384                                  dpdk_dev->name, switch_info->port_name);
2385         } else {
2386                 /* Bonding device. */
2387                 if (!switch_info->representor)
2388                         snprintf(name, sizeof(name), "%s_%s",
2389                                  dpdk_dev->name, spawn->ibv_dev->name);
2390                 else
2391                         snprintf(name, sizeof(name), "%s_%s_representor_%u",
2392                                  dpdk_dev->name, spawn->ibv_dev->name,
2393                                  switch_info->port_name);
2394         }
2395         /* check if the device is already spawned */
2396         if (rte_eth_dev_get_port_by_name(name, &port_id) == 0) {
2397                 rte_errno = EEXIST;
2398                 return NULL;
2399         }
2400         DRV_LOG(DEBUG, "naming Ethernet device \"%s\"", name);
2401         if (rte_eal_process_type() == RTE_PROC_SECONDARY) {
2402                 struct mlx5_mp_id mp_id;
2403
2404                 eth_dev = rte_eth_dev_attach_secondary(name);
2405                 if (eth_dev == NULL) {
2406                         DRV_LOG(ERR, "can not attach rte ethdev");
2407                         rte_errno = ENOMEM;
2408                         return NULL;
2409                 }
2410                 eth_dev->device = dpdk_dev;
2411                 eth_dev->dev_ops = &mlx5_dev_sec_ops;
2412                 err = mlx5_proc_priv_init(eth_dev);
2413                 if (err)
2414                         return NULL;
2415                 mp_id.port_id = eth_dev->data->port_id;
2416                 strlcpy(mp_id.name, MLX5_MP_NAME, RTE_MP_MAX_NAME_LEN);
2417                 /* Receive command fd from primary process */
2418                 err = mlx5_mp_req_verbs_cmd_fd(&mp_id);
2419                 if (err < 0)
2420                         return NULL;
2421                 /* Remap UAR for Tx queues. */
2422                 err = mlx5_tx_uar_init_secondary(eth_dev, err);
2423                 if (err)
2424                         return NULL;
2425                 /*
2426                  * Ethdev pointer is still required as input since
2427                  * the primary device is not accessible from the
2428                  * secondary process.
2429                  */
2430                 eth_dev->rx_pkt_burst = mlx5_select_rx_function(eth_dev);
2431                 eth_dev->tx_pkt_burst = mlx5_select_tx_function(eth_dev);
2432                 return eth_dev;
2433         }
2434         /*
2435          * Some parameters ("tx_db_nc" in particularly) are needed in
2436          * advance to create dv/verbs device context. We proceed the
2437          * devargs here to get ones, and later proceed devargs again
2438          * to override some hardware settings.
2439          */
2440         err = mlx5_args(&config, dpdk_dev->devargs);
2441         if (err) {
2442                 err = rte_errno;
2443                 DRV_LOG(ERR, "failed to process device arguments: %s",
2444                         strerror(rte_errno));
2445                 goto error;
2446         }
2447         sh = mlx5_alloc_shared_ibctx(spawn, &config);
2448         if (!sh)
2449                 return NULL;
2450         config.devx = sh->devx;
2451 #ifdef HAVE_MLX5DV_DR_ACTION_DEST_DEVX_TIR
2452         config.dest_tir = 1;
2453 #endif
2454 #ifdef HAVE_IBV_MLX5_MOD_SWP
2455         dv_attr.comp_mask |= MLX5DV_CONTEXT_MASK_SWP;
2456 #endif
2457         /*
2458          * Multi-packet send is supported by ConnectX-4 Lx PF as well
2459          * as all ConnectX-5 devices.
2460          */
2461 #ifdef HAVE_IBV_DEVICE_TUNNEL_SUPPORT
2462         dv_attr.comp_mask |= MLX5DV_CONTEXT_MASK_TUNNEL_OFFLOADS;
2463 #endif
2464 #ifdef HAVE_IBV_DEVICE_STRIDING_RQ_SUPPORT
2465         dv_attr.comp_mask |= MLX5DV_CONTEXT_MASK_STRIDING_RQ;
2466 #endif
2467         mlx5_glue->dv_query_device(sh->ctx, &dv_attr);
2468         if (dv_attr.flags & MLX5DV_CONTEXT_FLAGS_MPW_ALLOWED) {
2469                 if (dv_attr.flags & MLX5DV_CONTEXT_FLAGS_ENHANCED_MPW) {
2470                         DRV_LOG(DEBUG, "enhanced MPW is supported");
2471                         mps = MLX5_MPW_ENHANCED;
2472                 } else {
2473                         DRV_LOG(DEBUG, "MPW is supported");
2474                         mps = MLX5_MPW;
2475                 }
2476         } else {
2477                 DRV_LOG(DEBUG, "MPW isn't supported");
2478                 mps = MLX5_MPW_DISABLED;
2479         }
2480 #ifdef HAVE_IBV_MLX5_MOD_SWP
2481         if (dv_attr.comp_mask & MLX5DV_CONTEXT_MASK_SWP)
2482                 swp = dv_attr.sw_parsing_caps.sw_parsing_offloads;
2483         DRV_LOG(DEBUG, "SWP support: %u", swp);
2484 #endif
2485         config.swp = !!swp;
2486 #ifdef HAVE_IBV_DEVICE_STRIDING_RQ_SUPPORT
2487         if (dv_attr.comp_mask & MLX5DV_CONTEXT_MASK_STRIDING_RQ) {
2488                 struct mlx5dv_striding_rq_caps mprq_caps =
2489                         dv_attr.striding_rq_caps;
2490
2491                 DRV_LOG(DEBUG, "\tmin_single_stride_log_num_of_bytes: %d",
2492                         mprq_caps.min_single_stride_log_num_of_bytes);
2493                 DRV_LOG(DEBUG, "\tmax_single_stride_log_num_of_bytes: %d",
2494                         mprq_caps.max_single_stride_log_num_of_bytes);
2495                 DRV_LOG(DEBUG, "\tmin_single_wqe_log_num_of_strides: %d",
2496                         mprq_caps.min_single_wqe_log_num_of_strides);
2497                 DRV_LOG(DEBUG, "\tmax_single_wqe_log_num_of_strides: %d",
2498                         mprq_caps.max_single_wqe_log_num_of_strides);
2499                 DRV_LOG(DEBUG, "\tsupported_qpts: %d",
2500                         mprq_caps.supported_qpts);
2501                 DRV_LOG(DEBUG, "device supports Multi-Packet RQ");
2502                 mprq = 1;
2503                 mprq_min_stride_size_n =
2504                         mprq_caps.min_single_stride_log_num_of_bytes;
2505                 mprq_max_stride_size_n =
2506                         mprq_caps.max_single_stride_log_num_of_bytes;
2507                 mprq_min_stride_num_n =
2508                         mprq_caps.min_single_wqe_log_num_of_strides;
2509                 mprq_max_stride_num_n =
2510                         mprq_caps.max_single_wqe_log_num_of_strides;
2511         }
2512 #endif
2513         if (RTE_CACHE_LINE_SIZE == 128 &&
2514             !(dv_attr.flags & MLX5DV_CONTEXT_FLAGS_CQE_128B_COMP))
2515                 cqe_comp = 0;
2516         else
2517                 cqe_comp = 1;
2518         config.cqe_comp = cqe_comp;
2519 #ifdef HAVE_IBV_MLX5_MOD_CQE_128B_PAD
2520         /* Whether device supports 128B Rx CQE padding. */
2521         cqe_pad = RTE_CACHE_LINE_SIZE == 128 &&
2522                   (dv_attr.flags & MLX5DV_CONTEXT_FLAGS_CQE_128B_PAD);
2523 #endif
2524 #ifdef HAVE_IBV_DEVICE_TUNNEL_SUPPORT
2525         if (dv_attr.comp_mask & MLX5DV_CONTEXT_MASK_TUNNEL_OFFLOADS) {
2526                 tunnel_en = ((dv_attr.tunnel_offloads_caps &
2527                               MLX5DV_RAW_PACKET_CAP_TUNNELED_OFFLOAD_VXLAN) &&
2528                              (dv_attr.tunnel_offloads_caps &
2529                               MLX5DV_RAW_PACKET_CAP_TUNNELED_OFFLOAD_GRE) &&
2530                              (dv_attr.tunnel_offloads_caps &
2531                               MLX5DV_RAW_PACKET_CAP_TUNNELED_OFFLOAD_GENEVE));
2532         }
2533         DRV_LOG(DEBUG, "tunnel offloading is %ssupported",
2534                 tunnel_en ? "" : "not ");
2535 #else
2536         DRV_LOG(WARNING,
2537                 "tunnel offloading disabled due to old OFED/rdma-core version");
2538 #endif
2539         config.tunnel_en = tunnel_en;
2540 #ifdef HAVE_IBV_DEVICE_MPLS_SUPPORT
2541         mpls_en = ((dv_attr.tunnel_offloads_caps &
2542                     MLX5DV_RAW_PACKET_CAP_TUNNELED_OFFLOAD_CW_MPLS_OVER_GRE) &&
2543                    (dv_attr.tunnel_offloads_caps &
2544                     MLX5DV_RAW_PACKET_CAP_TUNNELED_OFFLOAD_CW_MPLS_OVER_UDP));
2545         DRV_LOG(DEBUG, "MPLS over GRE/UDP tunnel offloading is %ssupported",
2546                 mpls_en ? "" : "not ");
2547 #else
2548         DRV_LOG(WARNING, "MPLS over GRE/UDP tunnel offloading disabled due to"
2549                 " old OFED/rdma-core version or firmware configuration");
2550 #endif
2551         config.mpls_en = mpls_en;
2552         /* Check port status. */
2553         err = mlx5_glue->query_port(sh->ctx, spawn->ibv_port, &port_attr);
2554         if (err) {
2555                 DRV_LOG(ERR, "port query failed: %s", strerror(err));
2556                 goto error;
2557         }
2558         if (port_attr.link_layer != IBV_LINK_LAYER_ETHERNET) {
2559                 DRV_LOG(ERR, "port is not configured in Ethernet mode");
2560                 err = EINVAL;
2561                 goto error;
2562         }
2563         if (port_attr.state != IBV_PORT_ACTIVE)
2564                 DRV_LOG(DEBUG, "port is not active: \"%s\" (%d)",
2565                         mlx5_glue->port_state_str(port_attr.state),
2566                         port_attr.state);
2567         /* Allocate private eth device data. */
2568         priv = rte_zmalloc("ethdev private structure",
2569                            sizeof(*priv),
2570                            RTE_CACHE_LINE_SIZE);
2571         if (priv == NULL) {
2572                 DRV_LOG(ERR, "priv allocation failure");
2573                 err = ENOMEM;
2574                 goto error;
2575         }
2576         priv->sh = sh;
2577         priv->ibv_port = spawn->ibv_port;
2578         priv->pci_dev = spawn->pci_dev;
2579         priv->mtu = RTE_ETHER_MTU;
2580         priv->mp_id.port_id = port_id;
2581         strlcpy(priv->mp_id.name, MLX5_MP_NAME, RTE_MP_MAX_NAME_LEN);
2582 #ifndef RTE_ARCH_64
2583         /* Initialize UAR access locks for 32bit implementations. */
2584         rte_spinlock_init(&priv->uar_lock_cq);
2585         for (i = 0; i < MLX5_UAR_PAGE_NUM_MAX; i++)
2586                 rte_spinlock_init(&priv->uar_lock[i]);
2587 #endif
2588         /* Some internal functions rely on Netlink sockets, open them now. */
2589         priv->nl_socket_rdma = mlx5_nl_init(NETLINK_RDMA);
2590         priv->nl_socket_route = mlx5_nl_init(NETLINK_ROUTE);
2591         priv->representor = !!switch_info->representor;
2592         priv->master = !!switch_info->master;
2593         priv->domain_id = RTE_ETH_DEV_SWITCH_DOMAIN_ID_INVALID;
2594         priv->vport_meta_tag = 0;
2595         priv->vport_meta_mask = 0;
2596         priv->pf_bond = spawn->pf_bond;
2597 #ifdef HAVE_MLX5DV_DR_DEVX_PORT
2598         /*
2599          * The DevX port query API is implemented. E-Switch may use
2600          * either vport or reg_c[0] metadata register to match on
2601          * vport index. The engaged part of metadata register is
2602          * defined by mask.
2603          */
2604         if (switch_info->representor || switch_info->master) {
2605                 devx_port.comp_mask = MLX5DV_DEVX_PORT_VPORT |
2606                                       MLX5DV_DEVX_PORT_MATCH_REG_C_0;
2607                 err = mlx5_glue->devx_port_query(sh->ctx, spawn->ibv_port,
2608                                                  &devx_port);
2609                 if (err) {
2610                         DRV_LOG(WARNING,
2611                                 "can't query devx port %d on device %s",
2612                                 spawn->ibv_port, spawn->ibv_dev->name);
2613                         devx_port.comp_mask = 0;
2614                 }
2615         }
2616         if (devx_port.comp_mask & MLX5DV_DEVX_PORT_MATCH_REG_C_0) {
2617                 priv->vport_meta_tag = devx_port.reg_c_0.value;
2618                 priv->vport_meta_mask = devx_port.reg_c_0.mask;
2619                 if (!priv->vport_meta_mask) {
2620                         DRV_LOG(ERR, "vport zero mask for port %d"
2621                                      " on bonding device %s",
2622                                      spawn->ibv_port, spawn->ibv_dev->name);
2623                         err = ENOTSUP;
2624                         goto error;
2625                 }
2626                 if (priv->vport_meta_tag & ~priv->vport_meta_mask) {
2627                         DRV_LOG(ERR, "invalid vport tag for port %d"
2628                                      " on bonding device %s",
2629                                      spawn->ibv_port, spawn->ibv_dev->name);
2630                         err = ENOTSUP;
2631                         goto error;
2632                 }
2633         }
2634         if (devx_port.comp_mask & MLX5DV_DEVX_PORT_VPORT) {
2635                 priv->vport_id = devx_port.vport_num;
2636         } else if (spawn->pf_bond >= 0) {
2637                 DRV_LOG(ERR, "can't deduce vport index for port %d"
2638                              " on bonding device %s",
2639                              spawn->ibv_port, spawn->ibv_dev->name);
2640                 err = ENOTSUP;
2641                 goto error;
2642         } else {
2643                 /* Suppose vport index in compatible way. */
2644                 priv->vport_id = switch_info->representor ?
2645                                  switch_info->port_name + 1 : -1;
2646         }
2647 #else
2648         /*
2649          * Kernel/rdma_core support single E-Switch per PF configurations
2650          * only and vport_id field contains the vport index for
2651          * associated VF, which is deduced from representor port name.
2652          * For example, let's have the IB device port 10, it has
2653          * attached network device eth0, which has port name attribute
2654          * pf0vf2, we can deduce the VF number as 2, and set vport index
2655          * as 3 (2+1). This assigning schema should be changed if the
2656          * multiple E-Switch instances per PF configurations or/and PCI
2657          * subfunctions are added.
2658          */
2659         priv->vport_id = switch_info->representor ?
2660                          switch_info->port_name + 1 : -1;
2661 #endif
2662         /* representor_id field keeps the unmodified VF index. */
2663         priv->representor_id = switch_info->representor ?
2664                                switch_info->port_name : -1;
2665         /*
2666          * Look for sibling devices in order to reuse their switch domain
2667          * if any, otherwise allocate one.
2668          */
2669         MLX5_ETH_FOREACH_DEV(port_id, priv->pci_dev) {
2670                 const struct mlx5_priv *opriv =
2671                         rte_eth_devices[port_id].data->dev_private;
2672
2673                 if (!opriv ||
2674                     opriv->sh != priv->sh ||
2675                         opriv->domain_id ==
2676                         RTE_ETH_DEV_SWITCH_DOMAIN_ID_INVALID)
2677                         continue;
2678                 priv->domain_id = opriv->domain_id;
2679                 break;
2680         }
2681         if (priv->domain_id == RTE_ETH_DEV_SWITCH_DOMAIN_ID_INVALID) {
2682                 err = rte_eth_switch_domain_alloc(&priv->domain_id);
2683                 if (err) {
2684                         err = rte_errno;
2685                         DRV_LOG(ERR, "unable to allocate switch domain: %s",
2686                                 strerror(rte_errno));
2687                         goto error;
2688                 }
2689                 own_domain_id = 1;
2690         }
2691         /* Override some values set by hardware configuration. */
2692         mlx5_args(&config, dpdk_dev->devargs);
2693         err = mlx5_dev_check_sibling_config(priv, &config);
2694         if (err)
2695                 goto error;
2696         config.hw_csum = !!(sh->device_attr.device_cap_flags_ex &
2697                             IBV_DEVICE_RAW_IP_CSUM);
2698         DRV_LOG(DEBUG, "checksum offloading is %ssupported",
2699                 (config.hw_csum ? "" : "not "));
2700 #if !defined(HAVE_IBV_DEVICE_COUNTERS_SET_V42) && \
2701         !defined(HAVE_IBV_DEVICE_COUNTERS_SET_V45)
2702         DRV_LOG(DEBUG, "counters are not supported");
2703 #endif
2704 #if !defined(HAVE_IBV_FLOW_DV_SUPPORT) || !defined(HAVE_MLX5DV_DR)
2705         if (config.dv_flow_en) {
2706                 DRV_LOG(WARNING, "DV flow is not supported");
2707                 config.dv_flow_en = 0;
2708         }
2709 #endif
2710         config.ind_table_max_size =
2711                 sh->device_attr.rss_caps.max_rwq_indirection_table_size;
2712         /*
2713          * Remove this check once DPDK supports larger/variable
2714          * indirection tables.
2715          */
2716         if (config.ind_table_max_size > (unsigned int)ETH_RSS_RETA_SIZE_512)
2717                 config.ind_table_max_size = ETH_RSS_RETA_SIZE_512;
2718         DRV_LOG(DEBUG, "maximum Rx indirection table size is %u",
2719                 config.ind_table_max_size);
2720         config.hw_vlan_strip = !!(sh->device_attr.raw_packet_caps &
2721                                   IBV_RAW_PACKET_CAP_CVLAN_STRIPPING);
2722         DRV_LOG(DEBUG, "VLAN stripping is %ssupported",
2723                 (config.hw_vlan_strip ? "" : "not "));
2724         config.hw_fcs_strip = !!(sh->device_attr.raw_packet_caps &
2725                                  IBV_RAW_PACKET_CAP_SCATTER_FCS);
2726         DRV_LOG(DEBUG, "FCS stripping configuration is %ssupported",
2727                 (config.hw_fcs_strip ? "" : "not "));
2728 #if defined(HAVE_IBV_WQ_FLAG_RX_END_PADDING)
2729         hw_padding = !!sh->device_attr.rx_pad_end_addr_align;
2730 #elif defined(HAVE_IBV_WQ_FLAGS_PCI_WRITE_END_PADDING)
2731         hw_padding = !!(sh->device_attr.device_cap_flags_ex &
2732                         IBV_DEVICE_PCI_WRITE_END_PADDING);
2733 #endif
2734         if (config.hw_padding && !hw_padding) {
2735                 DRV_LOG(DEBUG, "Rx end alignment padding isn't supported");
2736                 config.hw_padding = 0;
2737         } else if (config.hw_padding) {
2738                 DRV_LOG(DEBUG, "Rx end alignment padding is enabled");
2739         }
2740         config.tso = (sh->device_attr.tso_caps.max_tso > 0 &&
2741                       (sh->device_attr.tso_caps.supported_qpts &
2742                        (1 << IBV_QPT_RAW_PACKET)));
2743         if (config.tso)
2744                 config.tso_max_payload_sz = sh->device_attr.tso_caps.max_tso;
2745         /*
2746          * MPW is disabled by default, while the Enhanced MPW is enabled
2747          * by default.
2748          */
2749         if (config.mps == MLX5_ARG_UNSET)
2750                 config.mps = (mps == MLX5_MPW_ENHANCED) ? MLX5_MPW_ENHANCED :
2751                                                           MLX5_MPW_DISABLED;
2752         else
2753                 config.mps = config.mps ? mps : MLX5_MPW_DISABLED;
2754         DRV_LOG(INFO, "%sMPS is %s",
2755                 config.mps == MLX5_MPW_ENHANCED ? "enhanced " :
2756                 config.mps == MLX5_MPW ? "legacy " : "",
2757                 config.mps != MLX5_MPW_DISABLED ? "enabled" : "disabled");
2758         if (config.cqe_comp && !cqe_comp) {
2759                 DRV_LOG(WARNING, "Rx CQE compression isn't supported");
2760                 config.cqe_comp = 0;
2761         }
2762         if (config.cqe_pad && !cqe_pad) {
2763                 DRV_LOG(WARNING, "Rx CQE padding isn't supported");
2764                 config.cqe_pad = 0;
2765         } else if (config.cqe_pad) {
2766                 DRV_LOG(INFO, "Rx CQE padding is enabled");
2767         }
2768         if (config.devx) {
2769                 priv->counter_fallback = 0;
2770                 err = mlx5_devx_cmd_query_hca_attr(sh->ctx, &config.hca_attr);
2771                 if (err) {
2772                         err = -err;
2773                         goto error;
2774                 }
2775                 if (!config.hca_attr.flow_counters_dump)
2776                         priv->counter_fallback = 1;
2777 #ifndef HAVE_IBV_DEVX_ASYNC
2778                 priv->counter_fallback = 1;
2779 #endif
2780                 if (priv->counter_fallback)
2781                         DRV_LOG(INFO, "Use fall-back DV counter management");
2782                 /* Check for LRO support. */
2783                 if (config.dest_tir && config.hca_attr.lro_cap &&
2784                     config.dv_flow_en) {
2785                         /* TBD check tunnel lro caps. */
2786                         config.lro.supported = config.hca_attr.lro_cap;
2787                         DRV_LOG(DEBUG, "Device supports LRO");
2788                         /*
2789                          * If LRO timeout is not configured by application,
2790                          * use the minimal supported value.
2791                          */
2792                         if (!config.lro.timeout)
2793                                 config.lro.timeout =
2794                                 config.hca_attr.lro_timer_supported_periods[0];
2795                         DRV_LOG(DEBUG, "LRO session timeout set to %d usec",
2796                                 config.lro.timeout);
2797                 }
2798 #if defined(HAVE_MLX5DV_DR) && defined(HAVE_MLX5_DR_CREATE_ACTION_FLOW_METER)
2799                 if (config.hca_attr.qos.sup && config.hca_attr.qos.srtcm_sup &&
2800                     config.dv_flow_en) {
2801                         uint8_t reg_c_mask =
2802                                 config.hca_attr.qos.flow_meter_reg_c_ids;
2803                         /*
2804                          * Meter needs two REG_C's for color match and pre-sfx
2805                          * flow match. Here get the REG_C for color match.
2806                          * REG_C_0 and REG_C_1 is reserved for metadata feature.
2807                          */
2808                         reg_c_mask &= 0xfc;
2809                         if (__builtin_popcount(reg_c_mask) < 1) {
2810                                 priv->mtr_en = 0;
2811                                 DRV_LOG(WARNING, "No available register for"
2812                                         " meter.");
2813                         } else {
2814                                 priv->mtr_color_reg = ffs(reg_c_mask) - 1 +
2815                                                       REG_C_0;
2816                                 priv->mtr_en = 1;
2817                                 priv->mtr_reg_share =
2818                                       config.hca_attr.qos.flow_meter_reg_share;
2819                                 DRV_LOG(DEBUG, "The REG_C meter uses is %d",
2820                                         priv->mtr_color_reg);
2821                         }
2822                 }
2823 #endif
2824         }
2825         if (config.mprq.enabled && mprq) {
2826                 if (config.mprq.stride_num_n &&
2827                     (config.mprq.stride_num_n > mprq_max_stride_num_n ||
2828                      config.mprq.stride_num_n < mprq_min_stride_num_n)) {
2829                         config.mprq.stride_num_n =
2830                                 RTE_MIN(RTE_MAX(MLX5_MPRQ_STRIDE_NUM_N,
2831                                                 mprq_min_stride_num_n),
2832                                         mprq_max_stride_num_n);
2833                         DRV_LOG(WARNING,
2834                                 "the number of strides"
2835                                 " for Multi-Packet RQ is out of range,"
2836                                 " setting default value (%u)",
2837                                 1 << config.mprq.stride_num_n);
2838                 }
2839                 if (config.mprq.stride_size_n &&
2840                     (config.mprq.stride_size_n > mprq_max_stride_size_n ||
2841                      config.mprq.stride_size_n < mprq_min_stride_size_n)) {
2842                         config.mprq.stride_size_n =
2843                                 RTE_MIN(RTE_MAX(MLX5_MPRQ_STRIDE_SIZE_N,
2844                                                 mprq_min_stride_size_n),
2845                                         mprq_max_stride_size_n);
2846                         DRV_LOG(WARNING,
2847                                 "the size of a stride"
2848                                 " for Multi-Packet RQ is out of range,"
2849                                 " setting default value (%u)",
2850                                 1 << config.mprq.stride_size_n);
2851                 }
2852                 config.mprq.min_stride_size_n = mprq_min_stride_size_n;
2853                 config.mprq.max_stride_size_n = mprq_max_stride_size_n;
2854         } else if (config.mprq.enabled && !mprq) {
2855                 DRV_LOG(WARNING, "Multi-Packet RQ isn't supported");
2856                 config.mprq.enabled = 0;
2857         }
2858         if (config.max_dump_files_num == 0)
2859                 config.max_dump_files_num = 128;
2860         eth_dev = rte_eth_dev_allocate(name);
2861         if (eth_dev == NULL) {
2862                 DRV_LOG(ERR, "can not allocate rte ethdev");
2863                 err = ENOMEM;
2864                 goto error;
2865         }
2866         /* Flag to call rte_eth_dev_release_port() in rte_eth_dev_close(). */
2867         eth_dev->data->dev_flags |= RTE_ETH_DEV_CLOSE_REMOVE;
2868         if (priv->representor) {
2869                 eth_dev->data->dev_flags |= RTE_ETH_DEV_REPRESENTOR;
2870                 eth_dev->data->representor_id = priv->representor_id;
2871         }
2872         /*
2873          * Store associated network device interface index. This index
2874          * is permanent throughout the lifetime of device. So, we may store
2875          * the ifindex here and use the cached value further.
2876          */
2877         MLX5_ASSERT(spawn->ifindex);
2878         priv->if_index = spawn->ifindex;
2879         eth_dev->data->dev_private = priv;
2880         priv->dev_data = eth_dev->data;
2881         eth_dev->data->mac_addrs = priv->mac;
2882         eth_dev->device = dpdk_dev;
2883         /* Configure the first MAC address by default. */
2884         if (mlx5_get_mac(eth_dev, &mac.addr_bytes)) {
2885                 DRV_LOG(ERR,
2886                         "port %u cannot get MAC address, is mlx5_en"
2887                         " loaded? (errno: %s)",
2888                         eth_dev->data->port_id, strerror(rte_errno));
2889                 err = ENODEV;
2890                 goto error;
2891         }
2892         DRV_LOG(INFO,
2893                 "port %u MAC address is %02x:%02x:%02x:%02x:%02x:%02x",
2894                 eth_dev->data->port_id,
2895                 mac.addr_bytes[0], mac.addr_bytes[1],
2896                 mac.addr_bytes[2], mac.addr_bytes[3],
2897                 mac.addr_bytes[4], mac.addr_bytes[5]);
2898 #ifdef RTE_LIBRTE_MLX5_DEBUG
2899         {
2900                 char ifname[IF_NAMESIZE];
2901
2902                 if (mlx5_get_ifname(eth_dev, &ifname) == 0)
2903                         DRV_LOG(DEBUG, "port %u ifname is \"%s\"",
2904                                 eth_dev->data->port_id, ifname);
2905                 else
2906                         DRV_LOG(DEBUG, "port %u ifname is unknown",
2907                                 eth_dev->data->port_id);
2908         }
2909 #endif
2910         /* Get actual MTU if possible. */
2911         err = mlx5_get_mtu(eth_dev, &priv->mtu);
2912         if (err) {
2913                 err = rte_errno;
2914                 goto error;
2915         }
2916         DRV_LOG(DEBUG, "port %u MTU is %u", eth_dev->data->port_id,
2917                 priv->mtu);
2918         /* Initialize burst functions to prevent crashes before link-up. */
2919         eth_dev->rx_pkt_burst = removed_rx_burst;
2920         eth_dev->tx_pkt_burst = removed_tx_burst;
2921         eth_dev->dev_ops = &mlx5_dev_ops;
2922         /* Register MAC address. */
2923         claim_zero(mlx5_mac_addr_add(eth_dev, &mac, 0, 0));
2924         if (config.vf && config.vf_nl_en)
2925                 mlx5_nl_mac_addr_sync(priv->nl_socket_route,
2926                                       mlx5_ifindex(eth_dev),
2927                                       eth_dev->data->mac_addrs,
2928                                       MLX5_MAX_MAC_ADDRESSES);
2929         priv->flows = 0;
2930         priv->ctrl_flows = 0;
2931         TAILQ_INIT(&priv->flow_meters);
2932         TAILQ_INIT(&priv->flow_meter_profiles);
2933         /* Hint libmlx5 to use PMD allocator for data plane resources */
2934         struct mlx5dv_ctx_allocators alctr = {
2935                 .alloc = &mlx5_alloc_verbs_buf,
2936                 .free = &mlx5_free_verbs_buf,
2937                 .data = priv,
2938         };
2939         mlx5_glue->dv_set_context_attr(sh->ctx,
2940                                        MLX5DV_CTX_ATTR_BUF_ALLOCATORS,
2941                                        (void *)((uintptr_t)&alctr));
2942         /* Bring Ethernet device up. */
2943         DRV_LOG(DEBUG, "port %u forcing Ethernet interface up",
2944                 eth_dev->data->port_id);
2945         mlx5_set_link_up(eth_dev);
2946         /*
2947          * Even though the interrupt handler is not installed yet,
2948          * interrupts will still trigger on the async_fd from
2949          * Verbs context returned by ibv_open_device().
2950          */
2951         mlx5_link_update(eth_dev, 0);
2952 #ifdef HAVE_MLX5DV_DR_ESWITCH
2953         if (!(config.hca_attr.eswitch_manager && config.dv_flow_en &&
2954               (switch_info->representor || switch_info->master)))
2955                 config.dv_esw_en = 0;
2956 #else
2957         config.dv_esw_en = 0;
2958 #endif
2959         /* Detect minimal data bytes to inline. */
2960         mlx5_set_min_inline(spawn, &config);
2961         /* Store device configuration on private structure. */
2962         priv->config = config;
2963         /* Create context for virtual machine VLAN workaround. */
2964         priv->vmwa_context = mlx5_vlan_vmwa_init(eth_dev, spawn->ifindex);
2965         if (config.dv_flow_en) {
2966                 err = mlx5_alloc_shared_dr(priv);
2967                 if (err)
2968                         goto error;
2969                 /*
2970                  * RSS id is shared with meter flow id. Meter flow id can only
2971                  * use the 24 MSB of the register.
2972                  */
2973                 priv->qrss_id_pool = mlx5_flow_id_pool_alloc(UINT32_MAX >>
2974                                      MLX5_MTR_COLOR_BITS);
2975                 if (!priv->qrss_id_pool) {
2976                         DRV_LOG(ERR, "can't create flow id pool");
2977                         err = ENOMEM;
2978                         goto error;
2979                 }
2980         }
2981         /* Supported Verbs flow priority number detection. */
2982         err = mlx5_flow_discover_priorities(eth_dev);
2983         if (err < 0) {
2984                 err = -err;
2985                 goto error;
2986         }
2987         priv->config.flow_prio = err;
2988         if (!priv->config.dv_esw_en &&
2989             priv->config.dv_xmeta_en != MLX5_XMETA_MODE_LEGACY) {
2990                 DRV_LOG(WARNING, "metadata mode %u is not supported "
2991                                  "(no E-Switch)", priv->config.dv_xmeta_en);
2992                 priv->config.dv_xmeta_en = MLX5_XMETA_MODE_LEGACY;
2993         }
2994         mlx5_set_metadata_mask(eth_dev);
2995         if (priv->config.dv_xmeta_en != MLX5_XMETA_MODE_LEGACY &&
2996             !priv->sh->dv_regc0_mask) {
2997                 DRV_LOG(ERR, "metadata mode %u is not supported "
2998                              "(no metadata reg_c[0] is available)",
2999                              priv->config.dv_xmeta_en);
3000                         err = ENOTSUP;
3001                         goto error;
3002         }
3003         /*
3004          * Allocate the buffer for flow creating, just once.
3005          * The allocation must be done before any flow creating.
3006          */
3007         mlx5_flow_alloc_intermediate(eth_dev);
3008         /* Query availibility of metadata reg_c's. */
3009         err = mlx5_flow_discover_mreg_c(eth_dev);
3010         if (err < 0) {
3011                 err = -err;
3012                 goto error;
3013         }
3014         if (!mlx5_flow_ext_mreg_supported(eth_dev)) {
3015                 DRV_LOG(DEBUG,
3016                         "port %u extensive metadata register is not supported",
3017                         eth_dev->data->port_id);
3018                 if (priv->config.dv_xmeta_en != MLX5_XMETA_MODE_LEGACY) {
3019                         DRV_LOG(ERR, "metadata mode %u is not supported "
3020                                      "(no metadata registers available)",
3021                                      priv->config.dv_xmeta_en);
3022                         err = ENOTSUP;
3023                         goto error;
3024                 }
3025         }
3026         if (priv->config.dv_flow_en &&
3027             priv->config.dv_xmeta_en != MLX5_XMETA_MODE_LEGACY &&
3028             mlx5_flow_ext_mreg_supported(eth_dev) &&
3029             priv->sh->dv_regc0_mask) {
3030                 priv->mreg_cp_tbl = mlx5_hlist_create(MLX5_FLOW_MREG_HNAME,
3031                                                       MLX5_FLOW_MREG_HTABLE_SZ);
3032                 if (!priv->mreg_cp_tbl) {
3033                         err = ENOMEM;
3034                         goto error;
3035                 }
3036         }
3037         return eth_dev;
3038 error:
3039         if (priv) {
3040                 if (priv->mreg_cp_tbl)
3041                         mlx5_hlist_destroy(priv->mreg_cp_tbl, NULL, NULL);
3042                 if (priv->sh)
3043                         mlx5_free_shared_dr(priv);
3044                 if (priv->nl_socket_route >= 0)
3045                         close(priv->nl_socket_route);
3046                 if (priv->nl_socket_rdma >= 0)
3047                         close(priv->nl_socket_rdma);
3048                 if (priv->vmwa_context)
3049                         mlx5_vlan_vmwa_exit(priv->vmwa_context);
3050                 if (priv->qrss_id_pool)
3051                         mlx5_flow_id_pool_release(priv->qrss_id_pool);
3052                 if (own_domain_id)
3053                         claim_zero(rte_eth_switch_domain_free(priv->domain_id));
3054                 rte_free(priv);
3055                 if (eth_dev != NULL)
3056                         eth_dev->data->dev_private = NULL;
3057         }
3058         if (eth_dev != NULL) {
3059                 /* mac_addrs must not be freed alone because part of dev_private */
3060                 eth_dev->data->mac_addrs = NULL;
3061                 rte_eth_dev_release_port(eth_dev);
3062         }
3063         if (sh)
3064                 mlx5_free_shared_ibctx(sh);
3065         MLX5_ASSERT(err > 0);
3066         rte_errno = err;
3067         return NULL;
3068 }
3069
3070 /**
3071  * Comparison callback to sort device data.
3072  *
3073  * This is meant to be used with qsort().
3074  *
3075  * @param a[in]
3076  *   Pointer to pointer to first data object.
3077  * @param b[in]
3078  *   Pointer to pointer to second data object.
3079  *
3080  * @return
3081  *   0 if both objects are equal, less than 0 if the first argument is less
3082  *   than the second, greater than 0 otherwise.
3083  */
3084 static int
3085 mlx5_dev_spawn_data_cmp(const void *a, const void *b)
3086 {
3087         const struct mlx5_switch_info *si_a =
3088                 &((const struct mlx5_dev_spawn_data *)a)->info;
3089         const struct mlx5_switch_info *si_b =
3090                 &((const struct mlx5_dev_spawn_data *)b)->info;
3091         int ret;
3092
3093         /* Master device first. */
3094         ret = si_b->master - si_a->master;
3095         if (ret)
3096                 return ret;
3097         /* Then representor devices. */
3098         ret = si_b->representor - si_a->representor;
3099         if (ret)
3100                 return ret;
3101         /* Unidentified devices come last in no specific order. */
3102         if (!si_a->representor)
3103                 return 0;
3104         /* Order representors by name. */
3105         return si_a->port_name - si_b->port_name;
3106 }
3107
3108 /**
3109  * Match PCI information for possible slaves of bonding device.
3110  *
3111  * @param[in] ibv_dev
3112  *   Pointer to Infiniband device structure.
3113  * @param[in] pci_dev
3114  *   Pointer to PCI device structure to match PCI address.
3115  * @param[in] nl_rdma
3116  *   Netlink RDMA group socket handle.
3117  *
3118  * @return
3119  *   negative value if no bonding device found, otherwise
3120  *   positive index of slave PF in bonding.
3121  */
3122 static int
3123 mlx5_device_bond_pci_match(const struct ibv_device *ibv_dev,
3124                            const struct rte_pci_device *pci_dev,
3125                            int nl_rdma)
3126 {
3127         char ifname[IF_NAMESIZE + 1];
3128         unsigned int ifindex;
3129         unsigned int np, i;
3130         FILE *file = NULL;
3131         int pf = -1;
3132
3133         /*
3134          * Try to get master device name. If something goes
3135          * wrong suppose the lack of kernel support and no
3136          * bonding devices.
3137          */
3138         if (nl_rdma < 0)
3139                 return -1;
3140         if (!strstr(ibv_dev->name, "bond"))
3141                 return -1;
3142         np = mlx5_nl_portnum(nl_rdma, ibv_dev->name);
3143         if (!np)
3144                 return -1;
3145         /*
3146          * The Master device might not be on the predefined
3147          * port (not on port index 1, it is not garanted),
3148          * we have to scan all Infiniband device port and
3149          * find master.
3150          */
3151         for (i = 1; i <= np; ++i) {
3152                 /* Check whether Infiniband port is populated. */
3153                 ifindex = mlx5_nl_ifindex(nl_rdma, ibv_dev->name, i);
3154                 if (!ifindex)
3155                         continue;
3156                 if (!if_indextoname(ifindex, ifname))
3157                         continue;
3158                 /* Try to read bonding slave names from sysfs. */
3159                 MKSTR(slaves,
3160                       "/sys/class/net/%s/master/bonding/slaves", ifname);
3161                 file = fopen(slaves, "r");
3162                 if (file)
3163                         break;
3164         }
3165         if (!file)
3166                 return -1;
3167         /* Use safe format to check maximal buffer length. */
3168         MLX5_ASSERT(atol(RTE_STR(IF_NAMESIZE)) == IF_NAMESIZE);
3169         while (fscanf(file, "%" RTE_STR(IF_NAMESIZE) "s", ifname) == 1) {
3170                 char tmp_str[IF_NAMESIZE + 32];
3171                 struct rte_pci_addr pci_addr;
3172                 struct mlx5_switch_info info;
3173
3174                 /* Process slave interface names in the loop. */
3175                 snprintf(tmp_str, sizeof(tmp_str),
3176                          "/sys/class/net/%s", ifname);
3177                 if (mlx5_dev_to_pci_addr(tmp_str, &pci_addr)) {
3178                         DRV_LOG(WARNING, "can not get PCI address"
3179                                          " for netdev \"%s\"", ifname);
3180                         continue;
3181                 }
3182                 if (pci_dev->addr.domain != pci_addr.domain ||
3183                     pci_dev->addr.bus != pci_addr.bus ||
3184                     pci_dev->addr.devid != pci_addr.devid ||
3185                     pci_dev->addr.function != pci_addr.function)
3186                         continue;
3187                 /* Slave interface PCI address match found. */
3188                 fclose(file);
3189                 snprintf(tmp_str, sizeof(tmp_str),
3190                          "/sys/class/net/%s/phys_port_name", ifname);
3191                 file = fopen(tmp_str, "rb");
3192                 if (!file)
3193                         break;
3194                 info.name_type = MLX5_PHYS_PORT_NAME_TYPE_NOTSET;
3195                 if (fscanf(file, "%32s", tmp_str) == 1)
3196                         mlx5_translate_port_name(tmp_str, &info);
3197                 if (info.name_type == MLX5_PHYS_PORT_NAME_TYPE_LEGACY ||
3198                     info.name_type == MLX5_PHYS_PORT_NAME_TYPE_UPLINK)
3199                         pf = info.port_name;
3200                 break;
3201         }
3202         if (file)
3203                 fclose(file);
3204         return pf;
3205 }
3206
3207 /**
3208  * DPDK callback to register a PCI device.
3209  *
3210  * This function spawns Ethernet devices out of a given PCI device.
3211  *
3212  * @param[in] pci_drv
3213  *   PCI driver structure (mlx5_driver).
3214  * @param[in] pci_dev
3215  *   PCI device information.
3216  *
3217  * @return
3218  *   0 on success, a negative errno value otherwise and rte_errno is set.
3219  */
3220 static int
3221 mlx5_pci_probe(struct rte_pci_driver *pci_drv __rte_unused,
3222                struct rte_pci_device *pci_dev)
3223 {
3224         struct ibv_device **ibv_list;
3225         /*
3226          * Number of found IB Devices matching with requested PCI BDF.
3227          * nd != 1 means there are multiple IB devices over the same
3228          * PCI device and we have representors and master.
3229          */
3230         unsigned int nd = 0;
3231         /*
3232          * Number of found IB device Ports. nd = 1 and np = 1..n means
3233          * we have the single multiport IB device, and there may be
3234          * representors attached to some of found ports.
3235          */
3236         unsigned int np = 0;
3237         /*
3238          * Number of DPDK ethernet devices to Spawn - either over
3239          * multiple IB devices or multiple ports of single IB device.
3240          * Actually this is the number of iterations to spawn.
3241          */
3242         unsigned int ns = 0;
3243         /*
3244          * Bonding device
3245          *   < 0 - no bonding device (single one)
3246          *  >= 0 - bonding device (value is slave PF index)
3247          */
3248         int bd = -1;
3249         struct mlx5_dev_spawn_data *list = NULL;
3250         struct mlx5_dev_config dev_config;
3251         int ret;
3252
3253         if (mlx5_class_get(pci_dev->device.devargs) != MLX5_CLASS_NET) {
3254                 DRV_LOG(DEBUG, "Skip probing - should be probed by other mlx5"
3255                         " driver.");
3256                 return 1;
3257         }
3258         if (rte_eal_process_type() == RTE_PROC_PRIMARY)
3259                 mlx5_pmd_socket_init();
3260         ret = mlx5_init_once();
3261         if (ret) {
3262                 DRV_LOG(ERR, "unable to init PMD global data: %s",
3263                         strerror(rte_errno));
3264                 return -rte_errno;
3265         }
3266         MLX5_ASSERT(pci_drv == &mlx5_driver);
3267         errno = 0;
3268         ibv_list = mlx5_glue->get_device_list(&ret);
3269         if (!ibv_list) {
3270                 rte_errno = errno ? errno : ENOSYS;
3271                 DRV_LOG(ERR, "cannot list devices, is ib_uverbs loaded?");
3272                 return -rte_errno;
3273         }
3274         /*
3275          * First scan the list of all Infiniband devices to find
3276          * matching ones, gathering into the list.
3277          */
3278         struct ibv_device *ibv_match[ret + 1];
3279         int nl_route = mlx5_nl_init(NETLINK_ROUTE);
3280         int nl_rdma = mlx5_nl_init(NETLINK_RDMA);
3281         unsigned int i;
3282
3283         while (ret-- > 0) {
3284                 struct rte_pci_addr pci_addr;
3285
3286                 DRV_LOG(DEBUG, "checking device \"%s\"", ibv_list[ret]->name);
3287                 bd = mlx5_device_bond_pci_match
3288                                 (ibv_list[ret], pci_dev, nl_rdma);
3289                 if (bd >= 0) {
3290                         /*
3291                          * Bonding device detected. Only one match is allowed,
3292                          * the bonding is supported over multi-port IB device,
3293                          * there should be no matches on representor PCI
3294                          * functions or non VF LAG bonding devices with
3295                          * specified address.
3296                          */
3297                         if (nd) {
3298                                 DRV_LOG(ERR,
3299                                         "multiple PCI match on bonding device"
3300                                         "\"%s\" found", ibv_list[ret]->name);
3301                                 rte_errno = ENOENT;
3302                                 ret = -rte_errno;
3303                                 goto exit;
3304                         }
3305                         DRV_LOG(INFO, "PCI information matches for"
3306                                       " slave %d bonding device \"%s\"",
3307                                       bd, ibv_list[ret]->name);
3308                         ibv_match[nd++] = ibv_list[ret];
3309                         break;
3310                 }
3311                 if (mlx5_dev_to_pci_addr
3312                         (ibv_list[ret]->ibdev_path, &pci_addr))
3313                         continue;
3314                 if (pci_dev->addr.domain != pci_addr.domain ||
3315                     pci_dev->addr.bus != pci_addr.bus ||
3316                     pci_dev->addr.devid != pci_addr.devid ||
3317                     pci_dev->addr.function != pci_addr.function)
3318                         continue;
3319                 DRV_LOG(INFO, "PCI information matches for device \"%s\"",
3320                         ibv_list[ret]->name);
3321                 ibv_match[nd++] = ibv_list[ret];
3322         }
3323         ibv_match[nd] = NULL;
3324         if (!nd) {
3325                 /* No device matches, just complain and bail out. */
3326                 DRV_LOG(WARNING,
3327                         "no Verbs device matches PCI device " PCI_PRI_FMT ","
3328                         " are kernel drivers loaded?",
3329                         pci_dev->addr.domain, pci_dev->addr.bus,
3330                         pci_dev->addr.devid, pci_dev->addr.function);
3331                 rte_errno = ENOENT;
3332                 ret = -rte_errno;
3333                 goto exit;
3334         }
3335         if (nd == 1) {
3336                 /*
3337                  * Found single matching device may have multiple ports.
3338                  * Each port may be representor, we have to check the port
3339                  * number and check the representors existence.
3340                  */
3341                 if (nl_rdma >= 0)
3342                         np = mlx5_nl_portnum(nl_rdma, ibv_match[0]->name);
3343                 if (!np)
3344                         DRV_LOG(WARNING, "can not get IB device \"%s\""
3345                                          " ports number", ibv_match[0]->name);
3346                 if (bd >= 0 && !np) {
3347                         DRV_LOG(ERR, "can not get ports"
3348                                      " for bonding device");
3349                         rte_errno = ENOENT;
3350                         ret = -rte_errno;
3351                         goto exit;
3352                 }
3353         }
3354 #ifndef HAVE_MLX5DV_DR_DEVX_PORT
3355         if (bd >= 0) {
3356                 /*
3357                  * This may happen if there is VF LAG kernel support and
3358                  * application is compiled with older rdma_core library.
3359                  */
3360                 DRV_LOG(ERR,
3361                         "No kernel/verbs support for VF LAG bonding found.");
3362                 rte_errno = ENOTSUP;
3363                 ret = -rte_errno;
3364                 goto exit;
3365         }
3366 #endif
3367         /*
3368          * Now we can determine the maximal
3369          * amount of devices to be spawned.
3370          */
3371         list = rte_zmalloc("device spawn data",
3372                          sizeof(struct mlx5_dev_spawn_data) *
3373                          (np ? np : nd),
3374                          RTE_CACHE_LINE_SIZE);
3375         if (!list) {
3376                 DRV_LOG(ERR, "spawn data array allocation failure");
3377                 rte_errno = ENOMEM;
3378                 ret = -rte_errno;
3379                 goto exit;
3380         }
3381         if (bd >= 0 || np > 1) {
3382                 /*
3383                  * Single IB device with multiple ports found,
3384                  * it may be E-Switch master device and representors.
3385                  * We have to perform identification trough the ports.
3386                  */
3387                 MLX5_ASSERT(nl_rdma >= 0);
3388                 MLX5_ASSERT(ns == 0);
3389                 MLX5_ASSERT(nd == 1);
3390                 MLX5_ASSERT(np);
3391                 for (i = 1; i <= np; ++i) {
3392                         list[ns].max_port = np;
3393                         list[ns].ibv_port = i;
3394                         list[ns].ibv_dev = ibv_match[0];
3395                         list[ns].eth_dev = NULL;
3396                         list[ns].pci_dev = pci_dev;
3397                         list[ns].pf_bond = bd;
3398                         list[ns].ifindex = mlx5_nl_ifindex
3399                                         (nl_rdma, list[ns].ibv_dev->name, i);
3400                         if (!list[ns].ifindex) {
3401                                 /*
3402                                  * No network interface index found for the
3403                                  * specified port, it means there is no
3404                                  * representor on this port. It's OK,
3405                                  * there can be disabled ports, for example
3406                                  * if sriov_numvfs < sriov_totalvfs.
3407                                  */
3408                                 continue;
3409                         }
3410                         ret = -1;
3411                         if (nl_route >= 0)
3412                                 ret = mlx5_nl_switch_info
3413                                                (nl_route,
3414                                                 list[ns].ifindex,
3415                                                 &list[ns].info);
3416                         if (ret || (!list[ns].info.representor &&
3417                                     !list[ns].info.master)) {
3418                                 /*
3419                                  * We failed to recognize representors with
3420                                  * Netlink, let's try to perform the task
3421                                  * with sysfs.
3422                                  */
3423                                 ret =  mlx5_sysfs_switch_info
3424                                                 (list[ns].ifindex,
3425                                                  &list[ns].info);
3426                         }
3427                         if (!ret && bd >= 0) {
3428                                 switch (list[ns].info.name_type) {
3429                                 case MLX5_PHYS_PORT_NAME_TYPE_UPLINK:
3430                                         if (list[ns].info.port_name == bd)
3431                                                 ns++;
3432                                         break;
3433                                 case MLX5_PHYS_PORT_NAME_TYPE_PFVF:
3434                                         if (list[ns].info.pf_num == bd)
3435                                                 ns++;
3436                                         break;
3437                                 default:
3438                                         break;
3439                                 }
3440                                 continue;
3441                         }
3442                         if (!ret && (list[ns].info.representor ^
3443                                      list[ns].info.master))
3444                                 ns++;
3445                 }
3446                 if (!ns) {
3447                         DRV_LOG(ERR,
3448                                 "unable to recognize master/representors"
3449                                 " on the IB device with multiple ports");
3450                         rte_errno = ENOENT;
3451                         ret = -rte_errno;
3452                         goto exit;
3453                 }
3454         } else {
3455                 /*
3456                  * The existence of several matching entries (nd > 1) means
3457                  * port representors have been instantiated. No existing Verbs
3458                  * call nor sysfs entries can tell them apart, this can only
3459                  * be done through Netlink calls assuming kernel drivers are
3460                  * recent enough to support them.
3461                  *
3462                  * In the event of identification failure through Netlink,
3463                  * try again through sysfs, then:
3464                  *
3465                  * 1. A single IB device matches (nd == 1) with single
3466                  *    port (np=0/1) and is not a representor, assume
3467                  *    no switch support.
3468                  *
3469                  * 2. Otherwise no safe assumptions can be made;
3470                  *    complain louder and bail out.
3471                  */
3472                 np = 1;
3473                 for (i = 0; i != nd; ++i) {
3474                         memset(&list[ns].info, 0, sizeof(list[ns].info));
3475                         list[ns].max_port = 1;
3476                         list[ns].ibv_port = 1;
3477                         list[ns].ibv_dev = ibv_match[i];
3478                         list[ns].eth_dev = NULL;
3479                         list[ns].pci_dev = pci_dev;
3480                         list[ns].pf_bond = -1;
3481                         list[ns].ifindex = 0;
3482                         if (nl_rdma >= 0)
3483                                 list[ns].ifindex = mlx5_nl_ifindex
3484                                         (nl_rdma, list[ns].ibv_dev->name, 1);
3485                         if (!list[ns].ifindex) {
3486                                 char ifname[IF_NAMESIZE];
3487
3488                                 /*
3489                                  * Netlink failed, it may happen with old
3490                                  * ib_core kernel driver (before 4.16).
3491                                  * We can assume there is old driver because
3492                                  * here we are processing single ports IB
3493                                  * devices. Let's try sysfs to retrieve
3494                                  * the ifindex. The method works for
3495                                  * master device only.
3496                                  */
3497                                 if (nd > 1) {
3498                                         /*
3499                                          * Multiple devices found, assume
3500                                          * representors, can not distinguish
3501                                          * master/representor and retrieve
3502                                          * ifindex via sysfs.
3503                                          */
3504                                         continue;
3505                                 }
3506                                 ret = mlx5_get_master_ifname
3507                                         (ibv_match[i]->ibdev_path, &ifname);
3508                                 if (!ret)
3509                                         list[ns].ifindex =
3510                                                 if_nametoindex(ifname);
3511                                 if (!list[ns].ifindex) {
3512                                         /*
3513                                          * No network interface index found
3514                                          * for the specified device, it means
3515                                          * there it is neither representor
3516                                          * nor master.
3517                                          */
3518                                         continue;
3519                                 }
3520                         }
3521                         ret = -1;
3522                         if (nl_route >= 0)
3523                                 ret = mlx5_nl_switch_info
3524                                                (nl_route,
3525                                                 list[ns].ifindex,
3526                                                 &list[ns].info);
3527                         if (ret || (!list[ns].info.representor &&
3528                                     !list[ns].info.master)) {
3529                                 /*
3530                                  * We failed to recognize representors with
3531                                  * Netlink, let's try to perform the task
3532                                  * with sysfs.
3533                                  */
3534                                 ret =  mlx5_sysfs_switch_info
3535                                                 (list[ns].ifindex,
3536                                                  &list[ns].info);
3537                         }
3538                         if (!ret && (list[ns].info.representor ^
3539                                      list[ns].info.master)) {
3540                                 ns++;
3541                         } else if ((nd == 1) &&
3542                                    !list[ns].info.representor &&
3543                                    !list[ns].info.master) {
3544                                 /*
3545                                  * Single IB device with
3546                                  * one physical port and
3547                                  * attached network device.
3548                                  * May be SRIOV is not enabled
3549                                  * or there is no representors.
3550                                  */
3551                                 DRV_LOG(INFO, "no E-Switch support detected");
3552                                 ns++;
3553                                 break;
3554                         }
3555                 }
3556                 if (!ns) {
3557                         DRV_LOG(ERR,
3558                                 "unable to recognize master/representors"
3559                                 " on the multiple IB devices");
3560                         rte_errno = ENOENT;
3561                         ret = -rte_errno;
3562                         goto exit;
3563                 }
3564         }
3565         MLX5_ASSERT(ns);
3566         /*
3567          * Sort list to probe devices in natural order for users convenience
3568          * (i.e. master first, then representors from lowest to highest ID).
3569          */
3570         qsort(list, ns, sizeof(*list), mlx5_dev_spawn_data_cmp);
3571         /* Default configuration. */
3572         dev_config = (struct mlx5_dev_config){
3573                 .hw_padding = 0,
3574                 .mps = MLX5_ARG_UNSET,
3575                 .dbnc = MLX5_ARG_UNSET,
3576                 .rx_vec_en = 1,
3577                 .txq_inline_max = MLX5_ARG_UNSET,
3578                 .txq_inline_min = MLX5_ARG_UNSET,
3579                 .txq_inline_mpw = MLX5_ARG_UNSET,
3580                 .txqs_inline = MLX5_ARG_UNSET,
3581                 .vf_nl_en = 1,
3582                 .mr_ext_memseg_en = 1,
3583                 .mprq = {
3584                         .enabled = 0, /* Disabled by default. */
3585                         .stride_num_n = 0,
3586                         .stride_size_n = 0,
3587                         .max_memcpy_len = MLX5_MPRQ_MEMCPY_DEFAULT_LEN,
3588                         .min_rxqs_num = MLX5_MPRQ_MIN_RXQS,
3589                 },
3590                 .dv_esw_en = 1,
3591                 .dv_flow_en = 1,
3592                 .log_hp_size = MLX5_ARG_UNSET,
3593         };
3594         /* Device specific configuration. */
3595         switch (pci_dev->id.device_id) {
3596         case PCI_DEVICE_ID_MELLANOX_CONNECTX4VF:
3597         case PCI_DEVICE_ID_MELLANOX_CONNECTX4LXVF:
3598         case PCI_DEVICE_ID_MELLANOX_CONNECTX5VF:
3599         case PCI_DEVICE_ID_MELLANOX_CONNECTX5EXVF:
3600         case PCI_DEVICE_ID_MELLANOX_CONNECTX5BFVF:
3601         case PCI_DEVICE_ID_MELLANOX_CONNECTX6VF:
3602         case PCI_DEVICE_ID_MELLANOX_CONNECTX6DXVF:
3603                 dev_config.vf = 1;
3604                 break;
3605         default:
3606                 break;
3607         }
3608         for (i = 0; i != ns; ++i) {
3609                 uint32_t restore;
3610
3611                 list[i].eth_dev = mlx5_dev_spawn(&pci_dev->device,
3612                                                  &list[i],
3613                                                  dev_config);
3614                 if (!list[i].eth_dev) {
3615                         if (rte_errno != EBUSY && rte_errno != EEXIST)
3616                                 break;
3617                         /* Device is disabled or already spawned. Ignore it. */
3618                         continue;
3619                 }
3620                 restore = list[i].eth_dev->data->dev_flags;
3621                 rte_eth_copy_pci_info(list[i].eth_dev, pci_dev);
3622                 /* Restore non-PCI flags cleared by the above call. */
3623                 list[i].eth_dev->data->dev_flags |= restore;
3624                 mlx5_dev_interrupt_handler_devx_install(list[i].eth_dev);
3625                 rte_eth_dev_probing_finish(list[i].eth_dev);
3626         }
3627         if (i != ns) {
3628                 DRV_LOG(ERR,
3629                         "probe of PCI device " PCI_PRI_FMT " aborted after"
3630                         " encountering an error: %s",
3631                         pci_dev->addr.domain, pci_dev->addr.bus,
3632                         pci_dev->addr.devid, pci_dev->addr.function,
3633                         strerror(rte_errno));
3634                 ret = -rte_errno;
3635                 /* Roll back. */
3636                 while (i--) {
3637                         if (!list[i].eth_dev)
3638                                 continue;
3639                         mlx5_dev_close(list[i].eth_dev);
3640                         /* mac_addrs must not be freed because in dev_private */
3641                         list[i].eth_dev->data->mac_addrs = NULL;
3642                         claim_zero(rte_eth_dev_release_port(list[i].eth_dev));
3643                 }
3644                 /* Restore original error. */
3645                 rte_errno = -ret;
3646         } else {
3647                 ret = 0;
3648         }
3649 exit:
3650         /*
3651          * Do the routine cleanup:
3652          * - close opened Netlink sockets
3653          * - free allocated spawn data array
3654          * - free the Infiniband device list
3655          */
3656         if (nl_rdma >= 0)
3657                 close(nl_rdma);
3658         if (nl_route >= 0)
3659                 close(nl_route);
3660         if (list)
3661                 rte_free(list);
3662         MLX5_ASSERT(ibv_list);
3663         mlx5_glue->free_device_list(ibv_list);
3664         return ret;
3665 }
3666
3667 /**
3668  * Look for the ethernet device belonging to mlx5 driver.
3669  *
3670  * @param[in] port_id
3671  *   port_id to start looking for device.
3672  * @param[in] pci_dev
3673  *   Pointer to the hint PCI device. When device is being probed
3674  *   the its siblings (master and preceding representors might
3675  *   not have assigned driver yet (because the mlx5_pci_probe()
3676  *   is not completed yet, for this case match on hint PCI
3677  *   device may be used to detect sibling device.
3678  *
3679  * @return
3680  *   port_id of found device, RTE_MAX_ETHPORT if not found.
3681  */
3682 uint16_t
3683 mlx5_eth_find_next(uint16_t port_id, struct rte_pci_device *pci_dev)
3684 {
3685         while (port_id < RTE_MAX_ETHPORTS) {
3686                 struct rte_eth_dev *dev = &rte_eth_devices[port_id];
3687
3688                 if (dev->state != RTE_ETH_DEV_UNUSED &&
3689                     dev->device &&
3690                     (dev->device == &pci_dev->device ||
3691                      (dev->device->driver &&
3692                      dev->device->driver->name &&
3693                      !strcmp(dev->device->driver->name, MLX5_DRIVER_NAME))))
3694                         break;
3695                 port_id++;
3696         }
3697         if (port_id >= RTE_MAX_ETHPORTS)
3698                 return RTE_MAX_ETHPORTS;
3699         return port_id;
3700 }
3701
3702 /**
3703  * DPDK callback to remove a PCI device.
3704  *
3705  * This function removes all Ethernet devices belong to a given PCI device.
3706  *
3707  * @param[in] pci_dev
3708  *   Pointer to the PCI device.
3709  *
3710  * @return
3711  *   0 on success, the function cannot fail.
3712  */
3713 static int
3714 mlx5_pci_remove(struct rte_pci_device *pci_dev)
3715 {
3716         uint16_t port_id;
3717
3718         RTE_ETH_FOREACH_DEV_OF(port_id, &pci_dev->device)
3719                 rte_eth_dev_close(port_id);
3720         return 0;
3721 }
3722
3723 static const struct rte_pci_id mlx5_pci_id_map[] = {
3724         {
3725                 RTE_PCI_DEVICE(PCI_VENDOR_ID_MELLANOX,
3726                                PCI_DEVICE_ID_MELLANOX_CONNECTX4)
3727         },
3728         {
3729                 RTE_PCI_DEVICE(PCI_VENDOR_ID_MELLANOX,
3730                                PCI_DEVICE_ID_MELLANOX_CONNECTX4VF)
3731         },
3732         {
3733                 RTE_PCI_DEVICE(PCI_VENDOR_ID_MELLANOX,
3734                                PCI_DEVICE_ID_MELLANOX_CONNECTX4LX)
3735         },
3736         {
3737                 RTE_PCI_DEVICE(PCI_VENDOR_ID_MELLANOX,
3738                                PCI_DEVICE_ID_MELLANOX_CONNECTX4LXVF)
3739         },
3740         {
3741                 RTE_PCI_DEVICE(PCI_VENDOR_ID_MELLANOX,
3742                                PCI_DEVICE_ID_MELLANOX_CONNECTX5)
3743         },
3744         {
3745                 RTE_PCI_DEVICE(PCI_VENDOR_ID_MELLANOX,
3746                                PCI_DEVICE_ID_MELLANOX_CONNECTX5VF)
3747         },
3748         {
3749                 RTE_PCI_DEVICE(PCI_VENDOR_ID_MELLANOX,
3750                                PCI_DEVICE_ID_MELLANOX_CONNECTX5EX)
3751         },
3752         {
3753                 RTE_PCI_DEVICE(PCI_VENDOR_ID_MELLANOX,
3754                                PCI_DEVICE_ID_MELLANOX_CONNECTX5EXVF)
3755         },
3756         {
3757                 RTE_PCI_DEVICE(PCI_VENDOR_ID_MELLANOX,
3758                                PCI_DEVICE_ID_MELLANOX_CONNECTX5BF)
3759         },
3760         {
3761                 RTE_PCI_DEVICE(PCI_VENDOR_ID_MELLANOX,
3762                                PCI_DEVICE_ID_MELLANOX_CONNECTX5BFVF)
3763         },
3764         {
3765                 RTE_PCI_DEVICE(PCI_VENDOR_ID_MELLANOX,
3766                                 PCI_DEVICE_ID_MELLANOX_CONNECTX6)
3767         },
3768         {
3769                 RTE_PCI_DEVICE(PCI_VENDOR_ID_MELLANOX,
3770                                 PCI_DEVICE_ID_MELLANOX_CONNECTX6VF)
3771         },
3772         {
3773                 RTE_PCI_DEVICE(PCI_VENDOR_ID_MELLANOX,
3774                                 PCI_DEVICE_ID_MELLANOX_CONNECTX6DX)
3775         },
3776         {
3777                 RTE_PCI_DEVICE(PCI_VENDOR_ID_MELLANOX,
3778                                 PCI_DEVICE_ID_MELLANOX_CONNECTX6DXVF)
3779         },
3780         {
3781                 RTE_PCI_DEVICE(PCI_VENDOR_ID_MELLANOX,
3782                                 PCI_DEVICE_ID_MELLANOX_CONNECTX6DXBF)
3783         },
3784         {
3785                 .vendor_id = 0
3786         }
3787 };
3788
3789 static struct rte_pci_driver mlx5_driver = {
3790         .driver = {
3791                 .name = MLX5_DRIVER_NAME
3792         },
3793         .id_table = mlx5_pci_id_map,
3794         .probe = mlx5_pci_probe,
3795         .remove = mlx5_pci_remove,
3796         .dma_map = mlx5_dma_map,
3797         .dma_unmap = mlx5_dma_unmap,
3798         .drv_flags = RTE_PCI_DRV_INTR_LSC | RTE_PCI_DRV_INTR_RMV |
3799                      RTE_PCI_DRV_PROBE_AGAIN,
3800 };
3801
3802 /**
3803  * Driver initialization routine.
3804  */
3805 RTE_INIT(rte_mlx5_pmd_init)
3806 {
3807         /* Initialize driver log type. */
3808         mlx5_logtype = rte_log_register("pmd.net.mlx5");
3809         if (mlx5_logtype >= 0)
3810                 rte_log_set_level(mlx5_logtype, RTE_LOG_NOTICE);
3811
3812         /* Build the static tables for Verbs conversion. */
3813         mlx5_set_ptype_table();
3814         mlx5_set_cksum_table();
3815         mlx5_set_swp_types_table();
3816         if (mlx5_glue)
3817                 rte_pci_register(&mlx5_driver);
3818 }
3819
3820 RTE_PMD_EXPORT_NAME(net_mlx5, __COUNTER__);
3821 RTE_PMD_REGISTER_PCI_TABLE(net_mlx5, mlx5_pci_id_map);
3822 RTE_PMD_REGISTER_KMOD_DEP(net_mlx5, "* ib_uverbs & mlx5_core & mlx5_ib");