ethdev: change link status get functions to return int
[dpdk.git] / lib / librte_ethdev / rte_ethdev.c
1 /* SPDX-License-Identifier: BSD-3-Clause
2  * Copyright(c) 2010-2017 Intel Corporation
3  */
4
5 #include <sys/types.h>
6 #include <sys/queue.h>
7 #include <ctype.h>
8 #include <stdio.h>
9 #include <stdlib.h>
10 #include <string.h>
11 #include <stdarg.h>
12 #include <errno.h>
13 #include <stdbool.h>
14 #include <stdint.h>
15 #include <inttypes.h>
16 #include <netinet/in.h>
17
18 #include <rte_byteorder.h>
19 #include <rte_log.h>
20 #include <rte_debug.h>
21 #include <rte_interrupts.h>
22 #include <rte_memory.h>
23 #include <rte_memcpy.h>
24 #include <rte_memzone.h>
25 #include <rte_launch.h>
26 #include <rte_eal.h>
27 #include <rte_per_lcore.h>
28 #include <rte_lcore.h>
29 #include <rte_atomic.h>
30 #include <rte_branch_prediction.h>
31 #include <rte_common.h>
32 #include <rte_mempool.h>
33 #include <rte_malloc.h>
34 #include <rte_mbuf.h>
35 #include <rte_errno.h>
36 #include <rte_spinlock.h>
37 #include <rte_string_fns.h>
38 #include <rte_kvargs.h>
39 #include <rte_class.h>
40
41 #include "rte_ether.h"
42 #include "rte_ethdev.h"
43 #include "rte_ethdev_driver.h"
44 #include "ethdev_profile.h"
45 #include "ethdev_private.h"
46
47 int rte_eth_dev_logtype;
48
49 static const char *MZ_RTE_ETH_DEV_DATA = "rte_eth_dev_data";
50 struct rte_eth_dev rte_eth_devices[RTE_MAX_ETHPORTS];
51
52 /* spinlock for eth device callbacks */
53 static rte_spinlock_t rte_eth_dev_cb_lock = RTE_SPINLOCK_INITIALIZER;
54
55 /* spinlock for add/remove rx callbacks */
56 static rte_spinlock_t rte_eth_rx_cb_lock = RTE_SPINLOCK_INITIALIZER;
57
58 /* spinlock for add/remove tx callbacks */
59 static rte_spinlock_t rte_eth_tx_cb_lock = RTE_SPINLOCK_INITIALIZER;
60
61 /* spinlock for shared data allocation */
62 static rte_spinlock_t rte_eth_shared_data_lock = RTE_SPINLOCK_INITIALIZER;
63
64 /* store statistics names and its offset in stats structure  */
65 struct rte_eth_xstats_name_off {
66         char name[RTE_ETH_XSTATS_NAME_SIZE];
67         unsigned offset;
68 };
69
70 /* Shared memory between primary and secondary processes. */
71 static struct {
72         uint64_t next_owner_id;
73         rte_spinlock_t ownership_lock;
74         struct rte_eth_dev_data data[RTE_MAX_ETHPORTS];
75 } *rte_eth_dev_shared_data;
76
77 static const struct rte_eth_xstats_name_off rte_stats_strings[] = {
78         {"rx_good_packets", offsetof(struct rte_eth_stats, ipackets)},
79         {"tx_good_packets", offsetof(struct rte_eth_stats, opackets)},
80         {"rx_good_bytes", offsetof(struct rte_eth_stats, ibytes)},
81         {"tx_good_bytes", offsetof(struct rte_eth_stats, obytes)},
82         {"rx_missed_errors", offsetof(struct rte_eth_stats, imissed)},
83         {"rx_errors", offsetof(struct rte_eth_stats, ierrors)},
84         {"tx_errors", offsetof(struct rte_eth_stats, oerrors)},
85         {"rx_mbuf_allocation_errors", offsetof(struct rte_eth_stats,
86                 rx_nombuf)},
87 };
88
89 #define RTE_NB_STATS (sizeof(rte_stats_strings) / sizeof(rte_stats_strings[0]))
90
91 static const struct rte_eth_xstats_name_off rte_rxq_stats_strings[] = {
92         {"packets", offsetof(struct rte_eth_stats, q_ipackets)},
93         {"bytes", offsetof(struct rte_eth_stats, q_ibytes)},
94         {"errors", offsetof(struct rte_eth_stats, q_errors)},
95 };
96
97 #define RTE_NB_RXQ_STATS (sizeof(rte_rxq_stats_strings) /       \
98                 sizeof(rte_rxq_stats_strings[0]))
99
100 static const struct rte_eth_xstats_name_off rte_txq_stats_strings[] = {
101         {"packets", offsetof(struct rte_eth_stats, q_opackets)},
102         {"bytes", offsetof(struct rte_eth_stats, q_obytes)},
103 };
104 #define RTE_NB_TXQ_STATS (sizeof(rte_txq_stats_strings) /       \
105                 sizeof(rte_txq_stats_strings[0]))
106
107 #define RTE_RX_OFFLOAD_BIT2STR(_name)   \
108         { DEV_RX_OFFLOAD_##_name, #_name }
109
110 static const struct {
111         uint64_t offload;
112         const char *name;
113 } rte_rx_offload_names[] = {
114         RTE_RX_OFFLOAD_BIT2STR(VLAN_STRIP),
115         RTE_RX_OFFLOAD_BIT2STR(IPV4_CKSUM),
116         RTE_RX_OFFLOAD_BIT2STR(UDP_CKSUM),
117         RTE_RX_OFFLOAD_BIT2STR(TCP_CKSUM),
118         RTE_RX_OFFLOAD_BIT2STR(TCP_LRO),
119         RTE_RX_OFFLOAD_BIT2STR(QINQ_STRIP),
120         RTE_RX_OFFLOAD_BIT2STR(OUTER_IPV4_CKSUM),
121         RTE_RX_OFFLOAD_BIT2STR(MACSEC_STRIP),
122         RTE_RX_OFFLOAD_BIT2STR(HEADER_SPLIT),
123         RTE_RX_OFFLOAD_BIT2STR(VLAN_FILTER),
124         RTE_RX_OFFLOAD_BIT2STR(VLAN_EXTEND),
125         RTE_RX_OFFLOAD_BIT2STR(JUMBO_FRAME),
126         RTE_RX_OFFLOAD_BIT2STR(SCATTER),
127         RTE_RX_OFFLOAD_BIT2STR(TIMESTAMP),
128         RTE_RX_OFFLOAD_BIT2STR(SECURITY),
129         RTE_RX_OFFLOAD_BIT2STR(KEEP_CRC),
130         RTE_RX_OFFLOAD_BIT2STR(SCTP_CKSUM),
131         RTE_RX_OFFLOAD_BIT2STR(OUTER_UDP_CKSUM),
132 };
133
134 #undef RTE_RX_OFFLOAD_BIT2STR
135
136 #define RTE_TX_OFFLOAD_BIT2STR(_name)   \
137         { DEV_TX_OFFLOAD_##_name, #_name }
138
139 static const struct {
140         uint64_t offload;
141         const char *name;
142 } rte_tx_offload_names[] = {
143         RTE_TX_OFFLOAD_BIT2STR(VLAN_INSERT),
144         RTE_TX_OFFLOAD_BIT2STR(IPV4_CKSUM),
145         RTE_TX_OFFLOAD_BIT2STR(UDP_CKSUM),
146         RTE_TX_OFFLOAD_BIT2STR(TCP_CKSUM),
147         RTE_TX_OFFLOAD_BIT2STR(SCTP_CKSUM),
148         RTE_TX_OFFLOAD_BIT2STR(TCP_TSO),
149         RTE_TX_OFFLOAD_BIT2STR(UDP_TSO),
150         RTE_TX_OFFLOAD_BIT2STR(OUTER_IPV4_CKSUM),
151         RTE_TX_OFFLOAD_BIT2STR(QINQ_INSERT),
152         RTE_TX_OFFLOAD_BIT2STR(VXLAN_TNL_TSO),
153         RTE_TX_OFFLOAD_BIT2STR(GRE_TNL_TSO),
154         RTE_TX_OFFLOAD_BIT2STR(IPIP_TNL_TSO),
155         RTE_TX_OFFLOAD_BIT2STR(GENEVE_TNL_TSO),
156         RTE_TX_OFFLOAD_BIT2STR(MACSEC_INSERT),
157         RTE_TX_OFFLOAD_BIT2STR(MT_LOCKFREE),
158         RTE_TX_OFFLOAD_BIT2STR(MULTI_SEGS),
159         RTE_TX_OFFLOAD_BIT2STR(MBUF_FAST_FREE),
160         RTE_TX_OFFLOAD_BIT2STR(SECURITY),
161         RTE_TX_OFFLOAD_BIT2STR(UDP_TNL_TSO),
162         RTE_TX_OFFLOAD_BIT2STR(IP_TNL_TSO),
163         RTE_TX_OFFLOAD_BIT2STR(OUTER_UDP_CKSUM),
164         RTE_TX_OFFLOAD_BIT2STR(MATCH_METADATA),
165 };
166
167 #undef RTE_TX_OFFLOAD_BIT2STR
168
169 /**
170  * The user application callback description.
171  *
172  * It contains callback address to be registered by user application,
173  * the pointer to the parameters for callback, and the event type.
174  */
175 struct rte_eth_dev_callback {
176         TAILQ_ENTRY(rte_eth_dev_callback) next; /**< Callbacks list */
177         rte_eth_dev_cb_fn cb_fn;                /**< Callback address */
178         void *cb_arg;                           /**< Parameter for callback */
179         void *ret_param;                        /**< Return parameter */
180         enum rte_eth_event_type event;          /**< Interrupt event type */
181         uint32_t active;                        /**< Callback is executing */
182 };
183
184 enum {
185         STAT_QMAP_TX = 0,
186         STAT_QMAP_RX
187 };
188
189 int
190 rte_eth_iterator_init(struct rte_dev_iterator *iter, const char *devargs_str)
191 {
192         int ret;
193         struct rte_devargs devargs = {.args = NULL};
194         const char *bus_param_key;
195         char *bus_str = NULL;
196         char *cls_str = NULL;
197         int str_size;
198
199         memset(iter, 0, sizeof(*iter));
200
201         /*
202          * The devargs string may use various syntaxes:
203          *   - 0000:08:00.0,representor=[1-3]
204          *   - pci:0000:06:00.0,representor=[0,5]
205          *   - class=eth,mac=00:11:22:33:44:55
206          * A new syntax is in development (not yet supported):
207          *   - bus=X,paramX=x/class=Y,paramY=y/driver=Z,paramZ=z
208          */
209
210         /*
211          * Handle pure class filter (i.e. without any bus-level argument),
212          * from future new syntax.
213          * rte_devargs_parse() is not yet supporting the new syntax,
214          * that's why this simple case is temporarily parsed here.
215          */
216 #define iter_anybus_str "class=eth,"
217         if (strncmp(devargs_str, iter_anybus_str,
218                         strlen(iter_anybus_str)) == 0) {
219                 iter->cls_str = devargs_str + strlen(iter_anybus_str);
220                 goto end;
221         }
222
223         /* Split bus, device and parameters. */
224         ret = rte_devargs_parse(&devargs, devargs_str);
225         if (ret != 0)
226                 goto error;
227
228         /*
229          * Assume parameters of old syntax can match only at ethdev level.
230          * Extra parameters will be ignored, thanks to "+" prefix.
231          */
232         str_size = strlen(devargs.args) + 2;
233         cls_str = malloc(str_size);
234         if (cls_str == NULL) {
235                 ret = -ENOMEM;
236                 goto error;
237         }
238         ret = snprintf(cls_str, str_size, "+%s", devargs.args);
239         if (ret != str_size - 1) {
240                 ret = -EINVAL;
241                 goto error;
242         }
243         iter->cls_str = cls_str;
244         free(devargs.args); /* allocated by rte_devargs_parse() */
245         devargs.args = NULL;
246
247         iter->bus = devargs.bus;
248         if (iter->bus->dev_iterate == NULL) {
249                 ret = -ENOTSUP;
250                 goto error;
251         }
252
253         /* Convert bus args to new syntax for use with new API dev_iterate. */
254         if (strcmp(iter->bus->name, "vdev") == 0) {
255                 bus_param_key = "name";
256         } else if (strcmp(iter->bus->name, "pci") == 0) {
257                 bus_param_key = "addr";
258         } else {
259                 ret = -ENOTSUP;
260                 goto error;
261         }
262         str_size = strlen(bus_param_key) + strlen(devargs.name) + 2;
263         bus_str = malloc(str_size);
264         if (bus_str == NULL) {
265                 ret = -ENOMEM;
266                 goto error;
267         }
268         ret = snprintf(bus_str, str_size, "%s=%s",
269                         bus_param_key, devargs.name);
270         if (ret != str_size - 1) {
271                 ret = -EINVAL;
272                 goto error;
273         }
274         iter->bus_str = bus_str;
275
276 end:
277         iter->cls = rte_class_find_by_name("eth");
278         return 0;
279
280 error:
281         if (ret == -ENOTSUP)
282                 RTE_LOG(ERR, EAL, "Bus %s does not support iterating.\n",
283                                 iter->bus->name);
284         free(devargs.args);
285         free(bus_str);
286         free(cls_str);
287         return ret;
288 }
289
290 uint16_t
291 rte_eth_iterator_next(struct rte_dev_iterator *iter)
292 {
293         if (iter->cls == NULL) /* invalid ethdev iterator */
294                 return RTE_MAX_ETHPORTS;
295
296         do { /* loop to try all matching rte_device */
297                 /* If not pure ethdev filter and */
298                 if (iter->bus != NULL &&
299                                 /* not in middle of rte_eth_dev iteration, */
300                                 iter->class_device == NULL) {
301                         /* get next rte_device to try. */
302                         iter->device = iter->bus->dev_iterate(
303                                         iter->device, iter->bus_str, iter);
304                         if (iter->device == NULL)
305                                 break; /* no more rte_device candidate */
306                 }
307                 /* A device is matching bus part, need to check ethdev part. */
308                 iter->class_device = iter->cls->dev_iterate(
309                                 iter->class_device, iter->cls_str, iter);
310                 if (iter->class_device != NULL)
311                         return eth_dev_to_id(iter->class_device); /* match */
312         } while (iter->bus != NULL); /* need to try next rte_device */
313
314         /* No more ethdev port to iterate. */
315         rte_eth_iterator_cleanup(iter);
316         return RTE_MAX_ETHPORTS;
317 }
318
319 void
320 rte_eth_iterator_cleanup(struct rte_dev_iterator *iter)
321 {
322         if (iter->bus_str == NULL)
323                 return; /* nothing to free in pure class filter */
324         free(RTE_CAST_FIELD(iter, bus_str, char *)); /* workaround const */
325         free(RTE_CAST_FIELD(iter, cls_str, char *)); /* workaround const */
326         memset(iter, 0, sizeof(*iter));
327 }
328
329 uint16_t
330 rte_eth_find_next(uint16_t port_id)
331 {
332         while (port_id < RTE_MAX_ETHPORTS &&
333                         rte_eth_devices[port_id].state == RTE_ETH_DEV_UNUSED)
334                 port_id++;
335
336         if (port_id >= RTE_MAX_ETHPORTS)
337                 return RTE_MAX_ETHPORTS;
338
339         return port_id;
340 }
341
342 /*
343  * Macro to iterate over all valid ports for internal usage.
344  * Note: RTE_ETH_FOREACH_DEV is different because filtering owned ports.
345  */
346 #define RTE_ETH_FOREACH_VALID_DEV(port_id) \
347         for (port_id = rte_eth_find_next(0); \
348              port_id < RTE_MAX_ETHPORTS; \
349              port_id = rte_eth_find_next(port_id + 1))
350
351 uint16_t
352 rte_eth_find_next_of(uint16_t port_id, const struct rte_device *parent)
353 {
354         port_id = rte_eth_find_next(port_id);
355         while (port_id < RTE_MAX_ETHPORTS &&
356                         rte_eth_devices[port_id].device != parent)
357                 port_id = rte_eth_find_next(port_id + 1);
358
359         return port_id;
360 }
361
362 uint16_t
363 rte_eth_find_next_sibling(uint16_t port_id, uint16_t ref_port_id)
364 {
365         RTE_ETH_VALID_PORTID_OR_ERR_RET(ref_port_id, RTE_MAX_ETHPORTS);
366         return rte_eth_find_next_of(port_id,
367                         rte_eth_devices[ref_port_id].device);
368 }
369
370 static void
371 rte_eth_dev_shared_data_prepare(void)
372 {
373         const unsigned flags = 0;
374         const struct rte_memzone *mz;
375
376         rte_spinlock_lock(&rte_eth_shared_data_lock);
377
378         if (rte_eth_dev_shared_data == NULL) {
379                 if (rte_eal_process_type() == RTE_PROC_PRIMARY) {
380                         /* Allocate port data and ownership shared memory. */
381                         mz = rte_memzone_reserve(MZ_RTE_ETH_DEV_DATA,
382                                         sizeof(*rte_eth_dev_shared_data),
383                                         rte_socket_id(), flags);
384                 } else
385                         mz = rte_memzone_lookup(MZ_RTE_ETH_DEV_DATA);
386                 if (mz == NULL)
387                         rte_panic("Cannot allocate ethdev shared data\n");
388
389                 rte_eth_dev_shared_data = mz->addr;
390                 if (rte_eal_process_type() == RTE_PROC_PRIMARY) {
391                         rte_eth_dev_shared_data->next_owner_id =
392                                         RTE_ETH_DEV_NO_OWNER + 1;
393                         rte_spinlock_init(&rte_eth_dev_shared_data->ownership_lock);
394                         memset(rte_eth_dev_shared_data->data, 0,
395                                sizeof(rte_eth_dev_shared_data->data));
396                 }
397         }
398
399         rte_spinlock_unlock(&rte_eth_shared_data_lock);
400 }
401
402 static bool
403 is_allocated(const struct rte_eth_dev *ethdev)
404 {
405         return ethdev->data->name[0] != '\0';
406 }
407
408 static struct rte_eth_dev *
409 _rte_eth_dev_allocated(const char *name)
410 {
411         unsigned i;
412
413         for (i = 0; i < RTE_MAX_ETHPORTS; i++) {
414                 if (rte_eth_devices[i].data != NULL &&
415                     strcmp(rte_eth_devices[i].data->name, name) == 0)
416                         return &rte_eth_devices[i];
417         }
418         return NULL;
419 }
420
421 struct rte_eth_dev *
422 rte_eth_dev_allocated(const char *name)
423 {
424         struct rte_eth_dev *ethdev;
425
426         rte_eth_dev_shared_data_prepare();
427
428         rte_spinlock_lock(&rte_eth_dev_shared_data->ownership_lock);
429
430         ethdev = _rte_eth_dev_allocated(name);
431
432         rte_spinlock_unlock(&rte_eth_dev_shared_data->ownership_lock);
433
434         return ethdev;
435 }
436
437 static uint16_t
438 rte_eth_dev_find_free_port(void)
439 {
440         unsigned i;
441
442         for (i = 0; i < RTE_MAX_ETHPORTS; i++) {
443                 /* Using shared name field to find a free port. */
444                 if (rte_eth_dev_shared_data->data[i].name[0] == '\0') {
445                         RTE_ASSERT(rte_eth_devices[i].state ==
446                                    RTE_ETH_DEV_UNUSED);
447                         return i;
448                 }
449         }
450         return RTE_MAX_ETHPORTS;
451 }
452
453 static struct rte_eth_dev *
454 eth_dev_get(uint16_t port_id)
455 {
456         struct rte_eth_dev *eth_dev = &rte_eth_devices[port_id];
457
458         eth_dev->data = &rte_eth_dev_shared_data->data[port_id];
459
460         return eth_dev;
461 }
462
463 struct rte_eth_dev *
464 rte_eth_dev_allocate(const char *name)
465 {
466         uint16_t port_id;
467         struct rte_eth_dev *eth_dev = NULL;
468         size_t name_len;
469
470         name_len = strnlen(name, RTE_ETH_NAME_MAX_LEN);
471         if (name_len == 0) {
472                 RTE_ETHDEV_LOG(ERR, "Zero length Ethernet device name\n");
473                 return NULL;
474         }
475
476         if (name_len >= RTE_ETH_NAME_MAX_LEN) {
477                 RTE_ETHDEV_LOG(ERR, "Ethernet device name is too long\n");
478                 return NULL;
479         }
480
481         rte_eth_dev_shared_data_prepare();
482
483         /* Synchronize port creation between primary and secondary threads. */
484         rte_spinlock_lock(&rte_eth_dev_shared_data->ownership_lock);
485
486         if (_rte_eth_dev_allocated(name) != NULL) {
487                 RTE_ETHDEV_LOG(ERR,
488                         "Ethernet device with name %s already allocated\n",
489                         name);
490                 goto unlock;
491         }
492
493         port_id = rte_eth_dev_find_free_port();
494         if (port_id == RTE_MAX_ETHPORTS) {
495                 RTE_ETHDEV_LOG(ERR,
496                         "Reached maximum number of Ethernet ports\n");
497                 goto unlock;
498         }
499
500         eth_dev = eth_dev_get(port_id);
501         strlcpy(eth_dev->data->name, name, sizeof(eth_dev->data->name));
502         eth_dev->data->port_id = port_id;
503         eth_dev->data->mtu = RTE_ETHER_MTU;
504
505 unlock:
506         rte_spinlock_unlock(&rte_eth_dev_shared_data->ownership_lock);
507
508         return eth_dev;
509 }
510
511 /*
512  * Attach to a port already registered by the primary process, which
513  * makes sure that the same device would have the same port id both
514  * in the primary and secondary process.
515  */
516 struct rte_eth_dev *
517 rte_eth_dev_attach_secondary(const char *name)
518 {
519         uint16_t i;
520         struct rte_eth_dev *eth_dev = NULL;
521
522         rte_eth_dev_shared_data_prepare();
523
524         /* Synchronize port attachment to primary port creation and release. */
525         rte_spinlock_lock(&rte_eth_dev_shared_data->ownership_lock);
526
527         for (i = 0; i < RTE_MAX_ETHPORTS; i++) {
528                 if (strcmp(rte_eth_dev_shared_data->data[i].name, name) == 0)
529                         break;
530         }
531         if (i == RTE_MAX_ETHPORTS) {
532                 RTE_ETHDEV_LOG(ERR,
533                         "Device %s is not driven by the primary process\n",
534                         name);
535         } else {
536                 eth_dev = eth_dev_get(i);
537                 RTE_ASSERT(eth_dev->data->port_id == i);
538         }
539
540         rte_spinlock_unlock(&rte_eth_dev_shared_data->ownership_lock);
541         return eth_dev;
542 }
543
544 int
545 rte_eth_dev_release_port(struct rte_eth_dev *eth_dev)
546 {
547         if (eth_dev == NULL)
548                 return -EINVAL;
549
550         rte_eth_dev_shared_data_prepare();
551
552         if (eth_dev->state != RTE_ETH_DEV_UNUSED)
553                 _rte_eth_dev_callback_process(eth_dev,
554                                 RTE_ETH_EVENT_DESTROY, NULL);
555
556         rte_spinlock_lock(&rte_eth_dev_shared_data->ownership_lock);
557
558         eth_dev->state = RTE_ETH_DEV_UNUSED;
559
560         if (rte_eal_process_type() == RTE_PROC_PRIMARY) {
561                 rte_free(eth_dev->data->rx_queues);
562                 rte_free(eth_dev->data->tx_queues);
563                 rte_free(eth_dev->data->mac_addrs);
564                 rte_free(eth_dev->data->hash_mac_addrs);
565                 rte_free(eth_dev->data->dev_private);
566                 memset(eth_dev->data, 0, sizeof(struct rte_eth_dev_data));
567         }
568
569         rte_spinlock_unlock(&rte_eth_dev_shared_data->ownership_lock);
570
571         return 0;
572 }
573
574 int
575 rte_eth_dev_is_valid_port(uint16_t port_id)
576 {
577         if (port_id >= RTE_MAX_ETHPORTS ||
578             (rte_eth_devices[port_id].state == RTE_ETH_DEV_UNUSED))
579                 return 0;
580         else
581                 return 1;
582 }
583
584 static int
585 rte_eth_is_valid_owner_id(uint64_t owner_id)
586 {
587         if (owner_id == RTE_ETH_DEV_NO_OWNER ||
588             rte_eth_dev_shared_data->next_owner_id <= owner_id)
589                 return 0;
590         return 1;
591 }
592
593 uint64_t
594 rte_eth_find_next_owned_by(uint16_t port_id, const uint64_t owner_id)
595 {
596         port_id = rte_eth_find_next(port_id);
597         while (port_id < RTE_MAX_ETHPORTS &&
598                         rte_eth_devices[port_id].data->owner.id != owner_id)
599                 port_id = rte_eth_find_next(port_id + 1);
600
601         return port_id;
602 }
603
604 int
605 rte_eth_dev_owner_new(uint64_t *owner_id)
606 {
607         rte_eth_dev_shared_data_prepare();
608
609         rte_spinlock_lock(&rte_eth_dev_shared_data->ownership_lock);
610
611         *owner_id = rte_eth_dev_shared_data->next_owner_id++;
612
613         rte_spinlock_unlock(&rte_eth_dev_shared_data->ownership_lock);
614         return 0;
615 }
616
617 static int
618 _rte_eth_dev_owner_set(const uint16_t port_id, const uint64_t old_owner_id,
619                        const struct rte_eth_dev_owner *new_owner)
620 {
621         struct rte_eth_dev *ethdev = &rte_eth_devices[port_id];
622         struct rte_eth_dev_owner *port_owner;
623
624         if (port_id >= RTE_MAX_ETHPORTS || !is_allocated(ethdev)) {
625                 RTE_ETHDEV_LOG(ERR, "Port id %"PRIu16" is not allocated\n",
626                         port_id);
627                 return -ENODEV;
628         }
629
630         if (!rte_eth_is_valid_owner_id(new_owner->id) &&
631             !rte_eth_is_valid_owner_id(old_owner_id)) {
632                 RTE_ETHDEV_LOG(ERR,
633                         "Invalid owner old_id=%016"PRIx64" new_id=%016"PRIx64"\n",
634                        old_owner_id, new_owner->id);
635                 return -EINVAL;
636         }
637
638         port_owner = &rte_eth_devices[port_id].data->owner;
639         if (port_owner->id != old_owner_id) {
640                 RTE_ETHDEV_LOG(ERR,
641                         "Cannot set owner to port %u already owned by %s_%016"PRIX64"\n",
642                         port_id, port_owner->name, port_owner->id);
643                 return -EPERM;
644         }
645
646         /* can not truncate (same structure) */
647         strlcpy(port_owner->name, new_owner->name, RTE_ETH_MAX_OWNER_NAME_LEN);
648
649         port_owner->id = new_owner->id;
650
651         RTE_ETHDEV_LOG(DEBUG, "Port %u owner is %s_%016"PRIx64"\n",
652                 port_id, new_owner->name, new_owner->id);
653
654         return 0;
655 }
656
657 int
658 rte_eth_dev_owner_set(const uint16_t port_id,
659                       const struct rte_eth_dev_owner *owner)
660 {
661         int ret;
662
663         rte_eth_dev_shared_data_prepare();
664
665         rte_spinlock_lock(&rte_eth_dev_shared_data->ownership_lock);
666
667         ret = _rte_eth_dev_owner_set(port_id, RTE_ETH_DEV_NO_OWNER, owner);
668
669         rte_spinlock_unlock(&rte_eth_dev_shared_data->ownership_lock);
670         return ret;
671 }
672
673 int
674 rte_eth_dev_owner_unset(const uint16_t port_id, const uint64_t owner_id)
675 {
676         const struct rte_eth_dev_owner new_owner = (struct rte_eth_dev_owner)
677                         {.id = RTE_ETH_DEV_NO_OWNER, .name = ""};
678         int ret;
679
680         rte_eth_dev_shared_data_prepare();
681
682         rte_spinlock_lock(&rte_eth_dev_shared_data->ownership_lock);
683
684         ret = _rte_eth_dev_owner_set(port_id, owner_id, &new_owner);
685
686         rte_spinlock_unlock(&rte_eth_dev_shared_data->ownership_lock);
687         return ret;
688 }
689
690 void
691 rte_eth_dev_owner_delete(const uint64_t owner_id)
692 {
693         uint16_t port_id;
694
695         rte_eth_dev_shared_data_prepare();
696
697         rte_spinlock_lock(&rte_eth_dev_shared_data->ownership_lock);
698
699         if (rte_eth_is_valid_owner_id(owner_id)) {
700                 for (port_id = 0; port_id < RTE_MAX_ETHPORTS; port_id++)
701                         if (rte_eth_devices[port_id].data->owner.id == owner_id)
702                                 memset(&rte_eth_devices[port_id].data->owner, 0,
703                                        sizeof(struct rte_eth_dev_owner));
704                 RTE_ETHDEV_LOG(NOTICE,
705                         "All port owners owned by %016"PRIx64" identifier have removed\n",
706                         owner_id);
707         } else {
708                 RTE_ETHDEV_LOG(ERR,
709                                "Invalid owner id=%016"PRIx64"\n",
710                                owner_id);
711         }
712
713         rte_spinlock_unlock(&rte_eth_dev_shared_data->ownership_lock);
714 }
715
716 int
717 rte_eth_dev_owner_get(const uint16_t port_id, struct rte_eth_dev_owner *owner)
718 {
719         int ret = 0;
720         struct rte_eth_dev *ethdev = &rte_eth_devices[port_id];
721
722         rte_eth_dev_shared_data_prepare();
723
724         rte_spinlock_lock(&rte_eth_dev_shared_data->ownership_lock);
725
726         if (port_id >= RTE_MAX_ETHPORTS || !is_allocated(ethdev)) {
727                 RTE_ETHDEV_LOG(ERR, "Port id %"PRIu16" is not allocated\n",
728                         port_id);
729                 ret = -ENODEV;
730         } else {
731                 rte_memcpy(owner, &ethdev->data->owner, sizeof(*owner));
732         }
733
734         rte_spinlock_unlock(&rte_eth_dev_shared_data->ownership_lock);
735         return ret;
736 }
737
738 int
739 rte_eth_dev_socket_id(uint16_t port_id)
740 {
741         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -1);
742         return rte_eth_devices[port_id].data->numa_node;
743 }
744
745 void *
746 rte_eth_dev_get_sec_ctx(uint16_t port_id)
747 {
748         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, NULL);
749         return rte_eth_devices[port_id].security_ctx;
750 }
751
752 uint16_t
753 rte_eth_dev_count(void)
754 {
755         return rte_eth_dev_count_avail();
756 }
757
758 uint16_t
759 rte_eth_dev_count_avail(void)
760 {
761         uint16_t p;
762         uint16_t count;
763
764         count = 0;
765
766         RTE_ETH_FOREACH_DEV(p)
767                 count++;
768
769         return count;
770 }
771
772 uint16_t
773 rte_eth_dev_count_total(void)
774 {
775         uint16_t port, count = 0;
776
777         RTE_ETH_FOREACH_VALID_DEV(port)
778                 count++;
779
780         return count;
781 }
782
783 int
784 rte_eth_dev_get_name_by_port(uint16_t port_id, char *name)
785 {
786         char *tmp;
787
788         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -EINVAL);
789
790         if (name == NULL) {
791                 RTE_ETHDEV_LOG(ERR, "Null pointer is specified\n");
792                 return -EINVAL;
793         }
794
795         /* shouldn't check 'rte_eth_devices[i].data',
796          * because it might be overwritten by VDEV PMD */
797         tmp = rte_eth_dev_shared_data->data[port_id].name;
798         strcpy(name, tmp);
799         return 0;
800 }
801
802 int
803 rte_eth_dev_get_port_by_name(const char *name, uint16_t *port_id)
804 {
805         uint32_t pid;
806
807         if (name == NULL) {
808                 RTE_ETHDEV_LOG(ERR, "Null pointer is specified\n");
809                 return -EINVAL;
810         }
811
812         RTE_ETH_FOREACH_VALID_DEV(pid)
813                 if (!strcmp(name, rte_eth_dev_shared_data->data[pid].name)) {
814                         *port_id = pid;
815                         return 0;
816                 }
817
818         return -ENODEV;
819 }
820
821 static int
822 eth_err(uint16_t port_id, int ret)
823 {
824         if (ret == 0)
825                 return 0;
826         if (rte_eth_dev_is_removed(port_id))
827                 return -EIO;
828         return ret;
829 }
830
831 static int
832 rte_eth_dev_rx_queue_config(struct rte_eth_dev *dev, uint16_t nb_queues)
833 {
834         uint16_t old_nb_queues = dev->data->nb_rx_queues;
835         void **rxq;
836         unsigned i;
837
838         if (dev->data->rx_queues == NULL && nb_queues != 0) { /* first time configuration */
839                 dev->data->rx_queues = rte_zmalloc("ethdev->rx_queues",
840                                 sizeof(dev->data->rx_queues[0]) * nb_queues,
841                                 RTE_CACHE_LINE_SIZE);
842                 if (dev->data->rx_queues == NULL) {
843                         dev->data->nb_rx_queues = 0;
844                         return -(ENOMEM);
845                 }
846         } else if (dev->data->rx_queues != NULL && nb_queues != 0) { /* re-configure */
847                 RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->rx_queue_release, -ENOTSUP);
848
849                 rxq = dev->data->rx_queues;
850
851                 for (i = nb_queues; i < old_nb_queues; i++)
852                         (*dev->dev_ops->rx_queue_release)(rxq[i]);
853                 rxq = rte_realloc(rxq, sizeof(rxq[0]) * nb_queues,
854                                 RTE_CACHE_LINE_SIZE);
855                 if (rxq == NULL)
856                         return -(ENOMEM);
857                 if (nb_queues > old_nb_queues) {
858                         uint16_t new_qs = nb_queues - old_nb_queues;
859
860                         memset(rxq + old_nb_queues, 0,
861                                 sizeof(rxq[0]) * new_qs);
862                 }
863
864                 dev->data->rx_queues = rxq;
865
866         } else if (dev->data->rx_queues != NULL && nb_queues == 0) {
867                 RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->rx_queue_release, -ENOTSUP);
868
869                 rxq = dev->data->rx_queues;
870
871                 for (i = nb_queues; i < old_nb_queues; i++)
872                         (*dev->dev_ops->rx_queue_release)(rxq[i]);
873
874                 rte_free(dev->data->rx_queues);
875                 dev->data->rx_queues = NULL;
876         }
877         dev->data->nb_rx_queues = nb_queues;
878         return 0;
879 }
880
881 int
882 rte_eth_dev_rx_queue_start(uint16_t port_id, uint16_t rx_queue_id)
883 {
884         struct rte_eth_dev *dev;
885
886         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -EINVAL);
887
888         dev = &rte_eth_devices[port_id];
889         if (!dev->data->dev_started) {
890                 RTE_ETHDEV_LOG(ERR,
891                         "Port %u must be started before start any queue\n",
892                         port_id);
893                 return -EINVAL;
894         }
895
896         if (rx_queue_id >= dev->data->nb_rx_queues) {
897                 RTE_ETHDEV_LOG(ERR, "Invalid RX queue_id=%u\n", rx_queue_id);
898                 return -EINVAL;
899         }
900
901         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->rx_queue_start, -ENOTSUP);
902
903         if (dev->data->rx_queue_state[rx_queue_id] != RTE_ETH_QUEUE_STATE_STOPPED) {
904                 RTE_ETHDEV_LOG(INFO,
905                         "Queue %"PRIu16" of device with port_id=%"PRIu16" already started\n",
906                         rx_queue_id, port_id);
907                 return 0;
908         }
909
910         return eth_err(port_id, dev->dev_ops->rx_queue_start(dev,
911                                                              rx_queue_id));
912
913 }
914
915 int
916 rte_eth_dev_rx_queue_stop(uint16_t port_id, uint16_t rx_queue_id)
917 {
918         struct rte_eth_dev *dev;
919
920         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -EINVAL);
921
922         dev = &rte_eth_devices[port_id];
923         if (rx_queue_id >= dev->data->nb_rx_queues) {
924                 RTE_ETHDEV_LOG(ERR, "Invalid RX queue_id=%u\n", rx_queue_id);
925                 return -EINVAL;
926         }
927
928         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->rx_queue_stop, -ENOTSUP);
929
930         if (dev->data->rx_queue_state[rx_queue_id] == RTE_ETH_QUEUE_STATE_STOPPED) {
931                 RTE_ETHDEV_LOG(INFO,
932                         "Queue %"PRIu16" of device with port_id=%"PRIu16" already stopped\n",
933                         rx_queue_id, port_id);
934                 return 0;
935         }
936
937         return eth_err(port_id, dev->dev_ops->rx_queue_stop(dev, rx_queue_id));
938
939 }
940
941 int
942 rte_eth_dev_tx_queue_start(uint16_t port_id, uint16_t tx_queue_id)
943 {
944         struct rte_eth_dev *dev;
945
946         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -EINVAL);
947
948         dev = &rte_eth_devices[port_id];
949         if (!dev->data->dev_started) {
950                 RTE_ETHDEV_LOG(ERR,
951                         "Port %u must be started before start any queue\n",
952                         port_id);
953                 return -EINVAL;
954         }
955
956         if (tx_queue_id >= dev->data->nb_tx_queues) {
957                 RTE_ETHDEV_LOG(ERR, "Invalid TX queue_id=%u\n", tx_queue_id);
958                 return -EINVAL;
959         }
960
961         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->tx_queue_start, -ENOTSUP);
962
963         if (dev->data->tx_queue_state[tx_queue_id] != RTE_ETH_QUEUE_STATE_STOPPED) {
964                 RTE_ETHDEV_LOG(INFO,
965                         "Queue %"PRIu16" of device with port_id=%"PRIu16" already started\n",
966                         tx_queue_id, port_id);
967                 return 0;
968         }
969
970         return eth_err(port_id, dev->dev_ops->tx_queue_start(dev, tx_queue_id));
971 }
972
973 int
974 rte_eth_dev_tx_queue_stop(uint16_t port_id, uint16_t tx_queue_id)
975 {
976         struct rte_eth_dev *dev;
977
978         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -EINVAL);
979
980         dev = &rte_eth_devices[port_id];
981         if (tx_queue_id >= dev->data->nb_tx_queues) {
982                 RTE_ETHDEV_LOG(ERR, "Invalid TX queue_id=%u\n", tx_queue_id);
983                 return -EINVAL;
984         }
985
986         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->tx_queue_stop, -ENOTSUP);
987
988         if (dev->data->tx_queue_state[tx_queue_id] == RTE_ETH_QUEUE_STATE_STOPPED) {
989                 RTE_ETHDEV_LOG(INFO,
990                         "Queue %"PRIu16" of device with port_id=%"PRIu16" already stopped\n",
991                         tx_queue_id, port_id);
992                 return 0;
993         }
994
995         return eth_err(port_id, dev->dev_ops->tx_queue_stop(dev, tx_queue_id));
996
997 }
998
999 static int
1000 rte_eth_dev_tx_queue_config(struct rte_eth_dev *dev, uint16_t nb_queues)
1001 {
1002         uint16_t old_nb_queues = dev->data->nb_tx_queues;
1003         void **txq;
1004         unsigned i;
1005
1006         if (dev->data->tx_queues == NULL && nb_queues != 0) { /* first time configuration */
1007                 dev->data->tx_queues = rte_zmalloc("ethdev->tx_queues",
1008                                                    sizeof(dev->data->tx_queues[0]) * nb_queues,
1009                                                    RTE_CACHE_LINE_SIZE);
1010                 if (dev->data->tx_queues == NULL) {
1011                         dev->data->nb_tx_queues = 0;
1012                         return -(ENOMEM);
1013                 }
1014         } else if (dev->data->tx_queues != NULL && nb_queues != 0) { /* re-configure */
1015                 RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->tx_queue_release, -ENOTSUP);
1016
1017                 txq = dev->data->tx_queues;
1018
1019                 for (i = nb_queues; i < old_nb_queues; i++)
1020                         (*dev->dev_ops->tx_queue_release)(txq[i]);
1021                 txq = rte_realloc(txq, sizeof(txq[0]) * nb_queues,
1022                                   RTE_CACHE_LINE_SIZE);
1023                 if (txq == NULL)
1024                         return -ENOMEM;
1025                 if (nb_queues > old_nb_queues) {
1026                         uint16_t new_qs = nb_queues - old_nb_queues;
1027
1028                         memset(txq + old_nb_queues, 0,
1029                                sizeof(txq[0]) * new_qs);
1030                 }
1031
1032                 dev->data->tx_queues = txq;
1033
1034         } else if (dev->data->tx_queues != NULL && nb_queues == 0) {
1035                 RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->tx_queue_release, -ENOTSUP);
1036
1037                 txq = dev->data->tx_queues;
1038
1039                 for (i = nb_queues; i < old_nb_queues; i++)
1040                         (*dev->dev_ops->tx_queue_release)(txq[i]);
1041
1042                 rte_free(dev->data->tx_queues);
1043                 dev->data->tx_queues = NULL;
1044         }
1045         dev->data->nb_tx_queues = nb_queues;
1046         return 0;
1047 }
1048
1049 uint32_t
1050 rte_eth_speed_bitflag(uint32_t speed, int duplex)
1051 {
1052         switch (speed) {
1053         case ETH_SPEED_NUM_10M:
1054                 return duplex ? ETH_LINK_SPEED_10M : ETH_LINK_SPEED_10M_HD;
1055         case ETH_SPEED_NUM_100M:
1056                 return duplex ? ETH_LINK_SPEED_100M : ETH_LINK_SPEED_100M_HD;
1057         case ETH_SPEED_NUM_1G:
1058                 return ETH_LINK_SPEED_1G;
1059         case ETH_SPEED_NUM_2_5G:
1060                 return ETH_LINK_SPEED_2_5G;
1061         case ETH_SPEED_NUM_5G:
1062                 return ETH_LINK_SPEED_5G;
1063         case ETH_SPEED_NUM_10G:
1064                 return ETH_LINK_SPEED_10G;
1065         case ETH_SPEED_NUM_20G:
1066                 return ETH_LINK_SPEED_20G;
1067         case ETH_SPEED_NUM_25G:
1068                 return ETH_LINK_SPEED_25G;
1069         case ETH_SPEED_NUM_40G:
1070                 return ETH_LINK_SPEED_40G;
1071         case ETH_SPEED_NUM_50G:
1072                 return ETH_LINK_SPEED_50G;
1073         case ETH_SPEED_NUM_56G:
1074                 return ETH_LINK_SPEED_56G;
1075         case ETH_SPEED_NUM_100G:
1076                 return ETH_LINK_SPEED_100G;
1077         default:
1078                 return 0;
1079         }
1080 }
1081
1082 const char *
1083 rte_eth_dev_rx_offload_name(uint64_t offload)
1084 {
1085         const char *name = "UNKNOWN";
1086         unsigned int i;
1087
1088         for (i = 0; i < RTE_DIM(rte_rx_offload_names); ++i) {
1089                 if (offload == rte_rx_offload_names[i].offload) {
1090                         name = rte_rx_offload_names[i].name;
1091                         break;
1092                 }
1093         }
1094
1095         return name;
1096 }
1097
1098 const char *
1099 rte_eth_dev_tx_offload_name(uint64_t offload)
1100 {
1101         const char *name = "UNKNOWN";
1102         unsigned int i;
1103
1104         for (i = 0; i < RTE_DIM(rte_tx_offload_names); ++i) {
1105                 if (offload == rte_tx_offload_names[i].offload) {
1106                         name = rte_tx_offload_names[i].name;
1107                         break;
1108                 }
1109         }
1110
1111         return name;
1112 }
1113
1114 int
1115 rte_eth_dev_configure(uint16_t port_id, uint16_t nb_rx_q, uint16_t nb_tx_q,
1116                       const struct rte_eth_conf *dev_conf)
1117 {
1118         struct rte_eth_dev *dev;
1119         struct rte_eth_dev_info dev_info;
1120         struct rte_eth_conf orig_conf;
1121         int diag;
1122         int ret;
1123
1124         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -EINVAL);
1125
1126         dev = &rte_eth_devices[port_id];
1127
1128         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->dev_configure, -ENOTSUP);
1129
1130         if (dev->data->dev_started) {
1131                 RTE_ETHDEV_LOG(ERR,
1132                         "Port %u must be stopped to allow configuration\n",
1133                         port_id);
1134                 return -EBUSY;
1135         }
1136
1137          /* Store original config, as rollback required on failure */
1138         memcpy(&orig_conf, &dev->data->dev_conf, sizeof(dev->data->dev_conf));
1139
1140         /*
1141          * Copy the dev_conf parameter into the dev structure.
1142          * rte_eth_dev_info_get() requires dev_conf, copy it before dev_info get
1143          */
1144         memcpy(&dev->data->dev_conf, dev_conf, sizeof(dev->data->dev_conf));
1145
1146         ret = rte_eth_dev_info_get(port_id, &dev_info);
1147         if (ret != 0)
1148                 goto rollback;
1149
1150         /* If number of queues specified by application for both Rx and Tx is
1151          * zero, use driver preferred values. This cannot be done individually
1152          * as it is valid for either Tx or Rx (but not both) to be zero.
1153          * If driver does not provide any preferred valued, fall back on
1154          * EAL defaults.
1155          */
1156         if (nb_rx_q == 0 && nb_tx_q == 0) {
1157                 nb_rx_q = dev_info.default_rxportconf.nb_queues;
1158                 if (nb_rx_q == 0)
1159                         nb_rx_q = RTE_ETH_DEV_FALLBACK_RX_NBQUEUES;
1160                 nb_tx_q = dev_info.default_txportconf.nb_queues;
1161                 if (nb_tx_q == 0)
1162                         nb_tx_q = RTE_ETH_DEV_FALLBACK_TX_NBQUEUES;
1163         }
1164
1165         if (nb_rx_q > RTE_MAX_QUEUES_PER_PORT) {
1166                 RTE_ETHDEV_LOG(ERR,
1167                         "Number of RX queues requested (%u) is greater than max supported(%d)\n",
1168                         nb_rx_q, RTE_MAX_QUEUES_PER_PORT);
1169                 ret = -EINVAL;
1170                 goto rollback;
1171         }
1172
1173         if (nb_tx_q > RTE_MAX_QUEUES_PER_PORT) {
1174                 RTE_ETHDEV_LOG(ERR,
1175                         "Number of TX queues requested (%u) is greater than max supported(%d)\n",
1176                         nb_tx_q, RTE_MAX_QUEUES_PER_PORT);
1177                 ret = -EINVAL;
1178                 goto rollback;
1179         }
1180
1181         /*
1182          * Check that the numbers of RX and TX queues are not greater
1183          * than the maximum number of RX and TX queues supported by the
1184          * configured device.
1185          */
1186         if (nb_rx_q > dev_info.max_rx_queues) {
1187                 RTE_ETHDEV_LOG(ERR, "Ethdev port_id=%u nb_rx_queues=%u > %u\n",
1188                         port_id, nb_rx_q, dev_info.max_rx_queues);
1189                 ret = -EINVAL;
1190                 goto rollback;
1191         }
1192
1193         if (nb_tx_q > dev_info.max_tx_queues) {
1194                 RTE_ETHDEV_LOG(ERR, "Ethdev port_id=%u nb_tx_queues=%u > %u\n",
1195                         port_id, nb_tx_q, dev_info.max_tx_queues);
1196                 ret = -EINVAL;
1197                 goto rollback;
1198         }
1199
1200         /* Check that the device supports requested interrupts */
1201         if ((dev_conf->intr_conf.lsc == 1) &&
1202                         (!(dev->data->dev_flags & RTE_ETH_DEV_INTR_LSC))) {
1203                 RTE_ETHDEV_LOG(ERR, "Driver %s does not support lsc\n",
1204                         dev->device->driver->name);
1205                 ret = -EINVAL;
1206                 goto rollback;
1207         }
1208         if ((dev_conf->intr_conf.rmv == 1) &&
1209                         (!(dev->data->dev_flags & RTE_ETH_DEV_INTR_RMV))) {
1210                 RTE_ETHDEV_LOG(ERR, "Driver %s does not support rmv\n",
1211                         dev->device->driver->name);
1212                 ret = -EINVAL;
1213                 goto rollback;
1214         }
1215
1216         /*
1217          * If jumbo frames are enabled, check that the maximum RX packet
1218          * length is supported by the configured device.
1219          */
1220         if (dev_conf->rxmode.offloads & DEV_RX_OFFLOAD_JUMBO_FRAME) {
1221                 if (dev_conf->rxmode.max_rx_pkt_len > dev_info.max_rx_pktlen) {
1222                         RTE_ETHDEV_LOG(ERR,
1223                                 "Ethdev port_id=%u max_rx_pkt_len %u > max valid value %u\n",
1224                                 port_id, dev_conf->rxmode.max_rx_pkt_len,
1225                                 dev_info.max_rx_pktlen);
1226                         ret = -EINVAL;
1227                         goto rollback;
1228                 } else if (dev_conf->rxmode.max_rx_pkt_len < RTE_ETHER_MIN_LEN) {
1229                         RTE_ETHDEV_LOG(ERR,
1230                                 "Ethdev port_id=%u max_rx_pkt_len %u < min valid value %u\n",
1231                                 port_id, dev_conf->rxmode.max_rx_pkt_len,
1232                                 (unsigned int)RTE_ETHER_MIN_LEN);
1233                         ret = -EINVAL;
1234                         goto rollback;
1235                 }
1236         } else {
1237                 if (dev_conf->rxmode.max_rx_pkt_len < RTE_ETHER_MIN_LEN ||
1238                         dev_conf->rxmode.max_rx_pkt_len > RTE_ETHER_MAX_LEN)
1239                         /* Use default value */
1240                         dev->data->dev_conf.rxmode.max_rx_pkt_len =
1241                                                         RTE_ETHER_MAX_LEN;
1242         }
1243
1244         /* Any requested offloading must be within its device capabilities */
1245         if ((dev_conf->rxmode.offloads & dev_info.rx_offload_capa) !=
1246              dev_conf->rxmode.offloads) {
1247                 RTE_ETHDEV_LOG(ERR,
1248                         "Ethdev port_id=%u requested Rx offloads 0x%"PRIx64" doesn't match Rx offloads "
1249                         "capabilities 0x%"PRIx64" in %s()\n",
1250                         port_id, dev_conf->rxmode.offloads,
1251                         dev_info.rx_offload_capa,
1252                         __func__);
1253                 ret = -EINVAL;
1254                 goto rollback;
1255         }
1256         if ((dev_conf->txmode.offloads & dev_info.tx_offload_capa) !=
1257              dev_conf->txmode.offloads) {
1258                 RTE_ETHDEV_LOG(ERR,
1259                         "Ethdev port_id=%u requested Tx offloads 0x%"PRIx64" doesn't match Tx offloads "
1260                         "capabilities 0x%"PRIx64" in %s()\n",
1261                         port_id, dev_conf->txmode.offloads,
1262                         dev_info.tx_offload_capa,
1263                         __func__);
1264                 ret = -EINVAL;
1265                 goto rollback;
1266         }
1267
1268         /* Check that device supports requested rss hash functions. */
1269         if ((dev_info.flow_type_rss_offloads |
1270              dev_conf->rx_adv_conf.rss_conf.rss_hf) !=
1271             dev_info.flow_type_rss_offloads) {
1272                 RTE_ETHDEV_LOG(ERR,
1273                         "Ethdev port_id=%u invalid rss_hf: 0x%"PRIx64", valid value: 0x%"PRIx64"\n",
1274                         port_id, dev_conf->rx_adv_conf.rss_conf.rss_hf,
1275                         dev_info.flow_type_rss_offloads);
1276                 ret = -EINVAL;
1277                 goto rollback;
1278         }
1279
1280         /*
1281          * Setup new number of RX/TX queues and reconfigure device.
1282          */
1283         diag = rte_eth_dev_rx_queue_config(dev, nb_rx_q);
1284         if (diag != 0) {
1285                 RTE_ETHDEV_LOG(ERR,
1286                         "Port%u rte_eth_dev_rx_queue_config = %d\n",
1287                         port_id, diag);
1288                 ret = diag;
1289                 goto rollback;
1290         }
1291
1292         diag = rte_eth_dev_tx_queue_config(dev, nb_tx_q);
1293         if (diag != 0) {
1294                 RTE_ETHDEV_LOG(ERR,
1295                         "Port%u rte_eth_dev_tx_queue_config = %d\n",
1296                         port_id, diag);
1297                 rte_eth_dev_rx_queue_config(dev, 0);
1298                 ret = diag;
1299                 goto rollback;
1300         }
1301
1302         diag = (*dev->dev_ops->dev_configure)(dev);
1303         if (diag != 0) {
1304                 RTE_ETHDEV_LOG(ERR, "Port%u dev_configure = %d\n",
1305                         port_id, diag);
1306                 rte_eth_dev_rx_queue_config(dev, 0);
1307                 rte_eth_dev_tx_queue_config(dev, 0);
1308                 ret = eth_err(port_id, diag);
1309                 goto rollback;
1310         }
1311
1312         /* Initialize Rx profiling if enabled at compilation time. */
1313         diag = __rte_eth_dev_profile_init(port_id, dev);
1314         if (diag != 0) {
1315                 RTE_ETHDEV_LOG(ERR, "Port%u __rte_eth_dev_profile_init = %d\n",
1316                         port_id, diag);
1317                 rte_eth_dev_rx_queue_config(dev, 0);
1318                 rte_eth_dev_tx_queue_config(dev, 0);
1319                 ret = eth_err(port_id, diag);
1320                 goto rollback;
1321         }
1322
1323         return 0;
1324
1325 rollback:
1326         memcpy(&dev->data->dev_conf, &orig_conf, sizeof(dev->data->dev_conf));
1327
1328         return ret;
1329 }
1330
1331 void
1332 _rte_eth_dev_reset(struct rte_eth_dev *dev)
1333 {
1334         if (dev->data->dev_started) {
1335                 RTE_ETHDEV_LOG(ERR, "Port %u must be stopped to allow reset\n",
1336                         dev->data->port_id);
1337                 return;
1338         }
1339
1340         rte_eth_dev_rx_queue_config(dev, 0);
1341         rte_eth_dev_tx_queue_config(dev, 0);
1342
1343         memset(&dev->data->dev_conf, 0, sizeof(dev->data->dev_conf));
1344 }
1345
1346 static void
1347 rte_eth_dev_mac_restore(struct rte_eth_dev *dev,
1348                         struct rte_eth_dev_info *dev_info)
1349 {
1350         struct rte_ether_addr *addr;
1351         uint16_t i;
1352         uint32_t pool = 0;
1353         uint64_t pool_mask;
1354
1355         /* replay MAC address configuration including default MAC */
1356         addr = &dev->data->mac_addrs[0];
1357         if (*dev->dev_ops->mac_addr_set != NULL)
1358                 (*dev->dev_ops->mac_addr_set)(dev, addr);
1359         else if (*dev->dev_ops->mac_addr_add != NULL)
1360                 (*dev->dev_ops->mac_addr_add)(dev, addr, 0, pool);
1361
1362         if (*dev->dev_ops->mac_addr_add != NULL) {
1363                 for (i = 1; i < dev_info->max_mac_addrs; i++) {
1364                         addr = &dev->data->mac_addrs[i];
1365
1366                         /* skip zero address */
1367                         if (rte_is_zero_ether_addr(addr))
1368                                 continue;
1369
1370                         pool = 0;
1371                         pool_mask = dev->data->mac_pool_sel[i];
1372
1373                         do {
1374                                 if (pool_mask & 1ULL)
1375                                         (*dev->dev_ops->mac_addr_add)(dev,
1376                                                 addr, i, pool);
1377                                 pool_mask >>= 1;
1378                                 pool++;
1379                         } while (pool_mask);
1380                 }
1381         }
1382 }
1383
1384 static int
1385 rte_eth_dev_config_restore(struct rte_eth_dev *dev,
1386                            struct rte_eth_dev_info *dev_info, uint16_t port_id)
1387 {
1388         int ret;
1389
1390         if (!(*dev_info->dev_flags & RTE_ETH_DEV_NOLIVE_MAC_ADDR))
1391                 rte_eth_dev_mac_restore(dev, dev_info);
1392
1393         /* replay promiscuous configuration */
1394         /*
1395          * use callbacks directly since we don't need port_id check and
1396          * would like to bypass the same value set
1397          */
1398         if (rte_eth_promiscuous_get(port_id) == 1 &&
1399             *dev->dev_ops->promiscuous_enable != NULL) {
1400                 ret = eth_err(port_id,
1401                               (*dev->dev_ops->promiscuous_enable)(dev));
1402                 if (ret != 0 && ret != -ENOTSUP) {
1403                         RTE_ETHDEV_LOG(ERR,
1404                                 "Failed to enable promiscuous mode for device (port %u): %s\n",
1405                                 port_id, rte_strerror(-ret));
1406                         return ret;
1407                 }
1408         } else if (rte_eth_promiscuous_get(port_id) == 0 &&
1409                    *dev->dev_ops->promiscuous_disable != NULL) {
1410                 ret = eth_err(port_id,
1411                               (*dev->dev_ops->promiscuous_disable)(dev));
1412                 if (ret != 0 && ret != -ENOTSUP) {
1413                         RTE_ETHDEV_LOG(ERR,
1414                                 "Failed to disable promiscuous mode for device (port %u): %s\n",
1415                                 port_id, rte_strerror(-ret));
1416                         return ret;
1417                 }
1418         }
1419
1420         /* replay all multicast configuration */
1421         if (rte_eth_allmulticast_get(port_id) == 1)
1422                 rte_eth_allmulticast_enable(port_id);
1423         else if (rte_eth_allmulticast_get(port_id) == 0)
1424                 rte_eth_allmulticast_disable(port_id);
1425
1426         return 0;
1427 }
1428
1429 int
1430 rte_eth_dev_start(uint16_t port_id)
1431 {
1432         struct rte_eth_dev *dev;
1433         struct rte_eth_dev_info dev_info;
1434         int diag;
1435         int ret;
1436
1437         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -EINVAL);
1438
1439         dev = &rte_eth_devices[port_id];
1440
1441         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->dev_start, -ENOTSUP);
1442
1443         if (dev->data->dev_started != 0) {
1444                 RTE_ETHDEV_LOG(INFO,
1445                         "Device with port_id=%"PRIu16" already started\n",
1446                         port_id);
1447                 return 0;
1448         }
1449
1450         ret = rte_eth_dev_info_get(port_id, &dev_info);
1451         if (ret != 0)
1452                 return ret;
1453
1454         /* Lets restore MAC now if device does not support live change */
1455         if (*dev_info.dev_flags & RTE_ETH_DEV_NOLIVE_MAC_ADDR)
1456                 rte_eth_dev_mac_restore(dev, &dev_info);
1457
1458         diag = (*dev->dev_ops->dev_start)(dev);
1459         if (diag == 0)
1460                 dev->data->dev_started = 1;
1461         else
1462                 return eth_err(port_id, diag);
1463
1464         ret = rte_eth_dev_config_restore(dev, &dev_info, port_id);
1465         if (ret != 0) {
1466                 RTE_ETHDEV_LOG(ERR,
1467                         "Error during restoring configuration for device (port %u): %s\n",
1468                         port_id, rte_strerror(-ret));
1469                 rte_eth_dev_stop(port_id);
1470                 return ret;
1471         }
1472
1473         if (dev->data->dev_conf.intr_conf.lsc == 0) {
1474                 RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->link_update, -ENOTSUP);
1475                 (*dev->dev_ops->link_update)(dev, 0);
1476         }
1477         return 0;
1478 }
1479
1480 void
1481 rte_eth_dev_stop(uint16_t port_id)
1482 {
1483         struct rte_eth_dev *dev;
1484
1485         RTE_ETH_VALID_PORTID_OR_RET(port_id);
1486         dev = &rte_eth_devices[port_id];
1487
1488         RTE_FUNC_PTR_OR_RET(*dev->dev_ops->dev_stop);
1489
1490         if (dev->data->dev_started == 0) {
1491                 RTE_ETHDEV_LOG(INFO,
1492                         "Device with port_id=%"PRIu16" already stopped\n",
1493                         port_id);
1494                 return;
1495         }
1496
1497         dev->data->dev_started = 0;
1498         (*dev->dev_ops->dev_stop)(dev);
1499 }
1500
1501 int
1502 rte_eth_dev_set_link_up(uint16_t port_id)
1503 {
1504         struct rte_eth_dev *dev;
1505
1506         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -EINVAL);
1507
1508         dev = &rte_eth_devices[port_id];
1509
1510         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->dev_set_link_up, -ENOTSUP);
1511         return eth_err(port_id, (*dev->dev_ops->dev_set_link_up)(dev));
1512 }
1513
1514 int
1515 rte_eth_dev_set_link_down(uint16_t port_id)
1516 {
1517         struct rte_eth_dev *dev;
1518
1519         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -EINVAL);
1520
1521         dev = &rte_eth_devices[port_id];
1522
1523         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->dev_set_link_down, -ENOTSUP);
1524         return eth_err(port_id, (*dev->dev_ops->dev_set_link_down)(dev));
1525 }
1526
1527 void
1528 rte_eth_dev_close(uint16_t port_id)
1529 {
1530         struct rte_eth_dev *dev;
1531
1532         RTE_ETH_VALID_PORTID_OR_RET(port_id);
1533         dev = &rte_eth_devices[port_id];
1534
1535         RTE_FUNC_PTR_OR_RET(*dev->dev_ops->dev_close);
1536         dev->data->dev_started = 0;
1537         (*dev->dev_ops->dev_close)(dev);
1538
1539         /* check behaviour flag - temporary for PMD migration */
1540         if ((dev->data->dev_flags & RTE_ETH_DEV_CLOSE_REMOVE) != 0) {
1541                 /* new behaviour: send event + reset state + free all data */
1542                 rte_eth_dev_release_port(dev);
1543                 return;
1544         }
1545         RTE_ETHDEV_LOG(DEBUG, "Port closing is using an old behaviour.\n"
1546                         "The driver %s should migrate to the new behaviour.\n",
1547                         dev->device->driver->name);
1548         /* old behaviour: only free queue arrays */
1549         dev->data->nb_rx_queues = 0;
1550         rte_free(dev->data->rx_queues);
1551         dev->data->rx_queues = NULL;
1552         dev->data->nb_tx_queues = 0;
1553         rte_free(dev->data->tx_queues);
1554         dev->data->tx_queues = NULL;
1555 }
1556
1557 int
1558 rte_eth_dev_reset(uint16_t port_id)
1559 {
1560         struct rte_eth_dev *dev;
1561         int ret;
1562
1563         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -EINVAL);
1564         dev = &rte_eth_devices[port_id];
1565
1566         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->dev_reset, -ENOTSUP);
1567
1568         rte_eth_dev_stop(port_id);
1569         ret = dev->dev_ops->dev_reset(dev);
1570
1571         return eth_err(port_id, ret);
1572 }
1573
1574 int
1575 rte_eth_dev_is_removed(uint16_t port_id)
1576 {
1577         struct rte_eth_dev *dev;
1578         int ret;
1579
1580         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, 0);
1581
1582         dev = &rte_eth_devices[port_id];
1583
1584         if (dev->state == RTE_ETH_DEV_REMOVED)
1585                 return 1;
1586
1587         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->is_removed, 0);
1588
1589         ret = dev->dev_ops->is_removed(dev);
1590         if (ret != 0)
1591                 /* Device is physically removed. */
1592                 dev->state = RTE_ETH_DEV_REMOVED;
1593
1594         return ret;
1595 }
1596
1597 int
1598 rte_eth_rx_queue_setup(uint16_t port_id, uint16_t rx_queue_id,
1599                        uint16_t nb_rx_desc, unsigned int socket_id,
1600                        const struct rte_eth_rxconf *rx_conf,
1601                        struct rte_mempool *mp)
1602 {
1603         int ret;
1604         uint32_t mbp_buf_size;
1605         struct rte_eth_dev *dev;
1606         struct rte_eth_dev_info dev_info;
1607         struct rte_eth_rxconf local_conf;
1608         void **rxq;
1609
1610         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -EINVAL);
1611
1612         dev = &rte_eth_devices[port_id];
1613         if (rx_queue_id >= dev->data->nb_rx_queues) {
1614                 RTE_ETHDEV_LOG(ERR, "Invalid RX queue_id=%u\n", rx_queue_id);
1615                 return -EINVAL;
1616         }
1617
1618         if (mp == NULL) {
1619                 RTE_ETHDEV_LOG(ERR, "Invalid null mempool pointer\n");
1620                 return -EINVAL;
1621         }
1622
1623         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->rx_queue_setup, -ENOTSUP);
1624
1625         /*
1626          * Check the size of the mbuf data buffer.
1627          * This value must be provided in the private data of the memory pool.
1628          * First check that the memory pool has a valid private data.
1629          */
1630         ret = rte_eth_dev_info_get(port_id, &dev_info);
1631         if (ret != 0)
1632                 return ret;
1633
1634         if (mp->private_data_size < sizeof(struct rte_pktmbuf_pool_private)) {
1635                 RTE_ETHDEV_LOG(ERR, "%s private_data_size %d < %d\n",
1636                         mp->name, (int)mp->private_data_size,
1637                         (int)sizeof(struct rte_pktmbuf_pool_private));
1638                 return -ENOSPC;
1639         }
1640         mbp_buf_size = rte_pktmbuf_data_room_size(mp);
1641
1642         if ((mbp_buf_size - RTE_PKTMBUF_HEADROOM) < dev_info.min_rx_bufsize) {
1643                 RTE_ETHDEV_LOG(ERR,
1644                         "%s mbuf_data_room_size %d < %d (RTE_PKTMBUF_HEADROOM=%d + min_rx_bufsize(dev)=%d)\n",
1645                         mp->name, (int)mbp_buf_size,
1646                         (int)(RTE_PKTMBUF_HEADROOM + dev_info.min_rx_bufsize),
1647                         (int)RTE_PKTMBUF_HEADROOM,
1648                         (int)dev_info.min_rx_bufsize);
1649                 return -EINVAL;
1650         }
1651
1652         /* Use default specified by driver, if nb_rx_desc is zero */
1653         if (nb_rx_desc == 0) {
1654                 nb_rx_desc = dev_info.default_rxportconf.ring_size;
1655                 /* If driver default is also zero, fall back on EAL default */
1656                 if (nb_rx_desc == 0)
1657                         nb_rx_desc = RTE_ETH_DEV_FALLBACK_RX_RINGSIZE;
1658         }
1659
1660         if (nb_rx_desc > dev_info.rx_desc_lim.nb_max ||
1661                         nb_rx_desc < dev_info.rx_desc_lim.nb_min ||
1662                         nb_rx_desc % dev_info.rx_desc_lim.nb_align != 0) {
1663
1664                 RTE_ETHDEV_LOG(ERR,
1665                         "Invalid value for nb_rx_desc(=%hu), should be: <= %hu, >= %hu, and a product of %hu\n",
1666                         nb_rx_desc, dev_info.rx_desc_lim.nb_max,
1667                         dev_info.rx_desc_lim.nb_min,
1668                         dev_info.rx_desc_lim.nb_align);
1669                 return -EINVAL;
1670         }
1671
1672         if (dev->data->dev_started &&
1673                 !(dev_info.dev_capa &
1674                         RTE_ETH_DEV_CAPA_RUNTIME_RX_QUEUE_SETUP))
1675                 return -EBUSY;
1676
1677         if (dev->data->dev_started &&
1678                 (dev->data->rx_queue_state[rx_queue_id] !=
1679                         RTE_ETH_QUEUE_STATE_STOPPED))
1680                 return -EBUSY;
1681
1682         rxq = dev->data->rx_queues;
1683         if (rxq[rx_queue_id]) {
1684                 RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->rx_queue_release,
1685                                         -ENOTSUP);
1686                 (*dev->dev_ops->rx_queue_release)(rxq[rx_queue_id]);
1687                 rxq[rx_queue_id] = NULL;
1688         }
1689
1690         if (rx_conf == NULL)
1691                 rx_conf = &dev_info.default_rxconf;
1692
1693         local_conf = *rx_conf;
1694
1695         /*
1696          * If an offloading has already been enabled in
1697          * rte_eth_dev_configure(), it has been enabled on all queues,
1698          * so there is no need to enable it in this queue again.
1699          * The local_conf.offloads input to underlying PMD only carries
1700          * those offloadings which are only enabled on this queue and
1701          * not enabled on all queues.
1702          */
1703         local_conf.offloads &= ~dev->data->dev_conf.rxmode.offloads;
1704
1705         /*
1706          * New added offloadings for this queue are those not enabled in
1707          * rte_eth_dev_configure() and they must be per-queue type.
1708          * A pure per-port offloading can't be enabled on a queue while
1709          * disabled on another queue. A pure per-port offloading can't
1710          * be enabled for any queue as new added one if it hasn't been
1711          * enabled in rte_eth_dev_configure().
1712          */
1713         if ((local_conf.offloads & dev_info.rx_queue_offload_capa) !=
1714              local_conf.offloads) {
1715                 RTE_ETHDEV_LOG(ERR,
1716                         "Ethdev port_id=%d rx_queue_id=%d, new added offloads 0x%"PRIx64" must be "
1717                         "within per-queue offload capabilities 0x%"PRIx64" in %s()\n",
1718                         port_id, rx_queue_id, local_conf.offloads,
1719                         dev_info.rx_queue_offload_capa,
1720                         __func__);
1721                 return -EINVAL;
1722         }
1723
1724         ret = (*dev->dev_ops->rx_queue_setup)(dev, rx_queue_id, nb_rx_desc,
1725                                               socket_id, &local_conf, mp);
1726         if (!ret) {
1727                 if (!dev->data->min_rx_buf_size ||
1728                     dev->data->min_rx_buf_size > mbp_buf_size)
1729                         dev->data->min_rx_buf_size = mbp_buf_size;
1730         }
1731
1732         return eth_err(port_id, ret);
1733 }
1734
1735 int
1736 rte_eth_tx_queue_setup(uint16_t port_id, uint16_t tx_queue_id,
1737                        uint16_t nb_tx_desc, unsigned int socket_id,
1738                        const struct rte_eth_txconf *tx_conf)
1739 {
1740         struct rte_eth_dev *dev;
1741         struct rte_eth_dev_info dev_info;
1742         struct rte_eth_txconf local_conf;
1743         void **txq;
1744         int ret;
1745
1746         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -EINVAL);
1747
1748         dev = &rte_eth_devices[port_id];
1749         if (tx_queue_id >= dev->data->nb_tx_queues) {
1750                 RTE_ETHDEV_LOG(ERR, "Invalid TX queue_id=%u\n", tx_queue_id);
1751                 return -EINVAL;
1752         }
1753
1754         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->tx_queue_setup, -ENOTSUP);
1755
1756         ret = rte_eth_dev_info_get(port_id, &dev_info);
1757         if (ret != 0)
1758                 return ret;
1759
1760         /* Use default specified by driver, if nb_tx_desc is zero */
1761         if (nb_tx_desc == 0) {
1762                 nb_tx_desc = dev_info.default_txportconf.ring_size;
1763                 /* If driver default is zero, fall back on EAL default */
1764                 if (nb_tx_desc == 0)
1765                         nb_tx_desc = RTE_ETH_DEV_FALLBACK_TX_RINGSIZE;
1766         }
1767         if (nb_tx_desc > dev_info.tx_desc_lim.nb_max ||
1768             nb_tx_desc < dev_info.tx_desc_lim.nb_min ||
1769             nb_tx_desc % dev_info.tx_desc_lim.nb_align != 0) {
1770                 RTE_ETHDEV_LOG(ERR,
1771                         "Invalid value for nb_tx_desc(=%hu), should be: <= %hu, >= %hu, and a product of %hu\n",
1772                         nb_tx_desc, dev_info.tx_desc_lim.nb_max,
1773                         dev_info.tx_desc_lim.nb_min,
1774                         dev_info.tx_desc_lim.nb_align);
1775                 return -EINVAL;
1776         }
1777
1778         if (dev->data->dev_started &&
1779                 !(dev_info.dev_capa &
1780                         RTE_ETH_DEV_CAPA_RUNTIME_TX_QUEUE_SETUP))
1781                 return -EBUSY;
1782
1783         if (dev->data->dev_started &&
1784                 (dev->data->tx_queue_state[tx_queue_id] !=
1785                         RTE_ETH_QUEUE_STATE_STOPPED))
1786                 return -EBUSY;
1787
1788         txq = dev->data->tx_queues;
1789         if (txq[tx_queue_id]) {
1790                 RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->tx_queue_release,
1791                                         -ENOTSUP);
1792                 (*dev->dev_ops->tx_queue_release)(txq[tx_queue_id]);
1793                 txq[tx_queue_id] = NULL;
1794         }
1795
1796         if (tx_conf == NULL)
1797                 tx_conf = &dev_info.default_txconf;
1798
1799         local_conf = *tx_conf;
1800
1801         /*
1802          * If an offloading has already been enabled in
1803          * rte_eth_dev_configure(), it has been enabled on all queues,
1804          * so there is no need to enable it in this queue again.
1805          * The local_conf.offloads input to underlying PMD only carries
1806          * those offloadings which are only enabled on this queue and
1807          * not enabled on all queues.
1808          */
1809         local_conf.offloads &= ~dev->data->dev_conf.txmode.offloads;
1810
1811         /*
1812          * New added offloadings for this queue are those not enabled in
1813          * rte_eth_dev_configure() and they must be per-queue type.
1814          * A pure per-port offloading can't be enabled on a queue while
1815          * disabled on another queue. A pure per-port offloading can't
1816          * be enabled for any queue as new added one if it hasn't been
1817          * enabled in rte_eth_dev_configure().
1818          */
1819         if ((local_conf.offloads & dev_info.tx_queue_offload_capa) !=
1820              local_conf.offloads) {
1821                 RTE_ETHDEV_LOG(ERR,
1822                         "Ethdev port_id=%d tx_queue_id=%d, new added offloads 0x%"PRIx64" must be "
1823                         "within per-queue offload capabilities 0x%"PRIx64" in %s()\n",
1824                         port_id, tx_queue_id, local_conf.offloads,
1825                         dev_info.tx_queue_offload_capa,
1826                         __func__);
1827                 return -EINVAL;
1828         }
1829
1830         return eth_err(port_id, (*dev->dev_ops->tx_queue_setup)(dev,
1831                        tx_queue_id, nb_tx_desc, socket_id, &local_conf));
1832 }
1833
1834 void
1835 rte_eth_tx_buffer_drop_callback(struct rte_mbuf **pkts, uint16_t unsent,
1836                 void *userdata __rte_unused)
1837 {
1838         unsigned i;
1839
1840         for (i = 0; i < unsent; i++)
1841                 rte_pktmbuf_free(pkts[i]);
1842 }
1843
1844 void
1845 rte_eth_tx_buffer_count_callback(struct rte_mbuf **pkts, uint16_t unsent,
1846                 void *userdata)
1847 {
1848         uint64_t *count = userdata;
1849         unsigned i;
1850
1851         for (i = 0; i < unsent; i++)
1852                 rte_pktmbuf_free(pkts[i]);
1853
1854         *count += unsent;
1855 }
1856
1857 int
1858 rte_eth_tx_buffer_set_err_callback(struct rte_eth_dev_tx_buffer *buffer,
1859                 buffer_tx_error_fn cbfn, void *userdata)
1860 {
1861         buffer->error_callback = cbfn;
1862         buffer->error_userdata = userdata;
1863         return 0;
1864 }
1865
1866 int
1867 rte_eth_tx_buffer_init(struct rte_eth_dev_tx_buffer *buffer, uint16_t size)
1868 {
1869         int ret = 0;
1870
1871         if (buffer == NULL)
1872                 return -EINVAL;
1873
1874         buffer->size = size;
1875         if (buffer->error_callback == NULL) {
1876                 ret = rte_eth_tx_buffer_set_err_callback(
1877                         buffer, rte_eth_tx_buffer_drop_callback, NULL);
1878         }
1879
1880         return ret;
1881 }
1882
1883 int
1884 rte_eth_tx_done_cleanup(uint16_t port_id, uint16_t queue_id, uint32_t free_cnt)
1885 {
1886         struct rte_eth_dev *dev = &rte_eth_devices[port_id];
1887         int ret;
1888
1889         /* Validate Input Data. Bail if not valid or not supported. */
1890         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
1891         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->tx_done_cleanup, -ENOTSUP);
1892
1893         /* Call driver to free pending mbufs. */
1894         ret = (*dev->dev_ops->tx_done_cleanup)(dev->data->tx_queues[queue_id],
1895                                                free_cnt);
1896         return eth_err(port_id, ret);
1897 }
1898
1899 int
1900 rte_eth_promiscuous_enable(uint16_t port_id)
1901 {
1902         struct rte_eth_dev *dev;
1903         int diag = 0;
1904
1905         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
1906         dev = &rte_eth_devices[port_id];
1907
1908         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->promiscuous_enable, -ENOTSUP);
1909
1910         if (dev->data->promiscuous == 0) {
1911                 diag = (*dev->dev_ops->promiscuous_enable)(dev);
1912                 dev->data->promiscuous = (diag == 0) ? 1 : 0;
1913         }
1914
1915         return eth_err(port_id, diag);
1916 }
1917
1918 int
1919 rte_eth_promiscuous_disable(uint16_t port_id)
1920 {
1921         struct rte_eth_dev *dev;
1922         int diag = 0;
1923
1924         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
1925         dev = &rte_eth_devices[port_id];
1926
1927         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->promiscuous_disable, -ENOTSUP);
1928
1929         if (dev->data->promiscuous == 1) {
1930                 dev->data->promiscuous = 0;
1931                 diag = (*dev->dev_ops->promiscuous_disable)(dev);
1932                 if (diag != 0)
1933                         dev->data->promiscuous = 1;
1934         }
1935
1936         return eth_err(port_id, diag);
1937 }
1938
1939 int
1940 rte_eth_promiscuous_get(uint16_t port_id)
1941 {
1942         struct rte_eth_dev *dev;
1943
1944         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -EINVAL);
1945
1946         dev = &rte_eth_devices[port_id];
1947         return dev->data->promiscuous;
1948 }
1949
1950 void
1951 rte_eth_allmulticast_enable(uint16_t port_id)
1952 {
1953         struct rte_eth_dev *dev;
1954
1955         RTE_ETH_VALID_PORTID_OR_RET(port_id);
1956         dev = &rte_eth_devices[port_id];
1957
1958         RTE_FUNC_PTR_OR_RET(*dev->dev_ops->allmulticast_enable);
1959         (*dev->dev_ops->allmulticast_enable)(dev);
1960         dev->data->all_multicast = 1;
1961 }
1962
1963 void
1964 rte_eth_allmulticast_disable(uint16_t port_id)
1965 {
1966         struct rte_eth_dev *dev;
1967
1968         RTE_ETH_VALID_PORTID_OR_RET(port_id);
1969         dev = &rte_eth_devices[port_id];
1970
1971         RTE_FUNC_PTR_OR_RET(*dev->dev_ops->allmulticast_disable);
1972         dev->data->all_multicast = 0;
1973         (*dev->dev_ops->allmulticast_disable)(dev);
1974 }
1975
1976 int
1977 rte_eth_allmulticast_get(uint16_t port_id)
1978 {
1979         struct rte_eth_dev *dev;
1980
1981         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -EINVAL);
1982
1983         dev = &rte_eth_devices[port_id];
1984         return dev->data->all_multicast;
1985 }
1986
1987 int
1988 rte_eth_link_get(uint16_t port_id, struct rte_eth_link *eth_link)
1989 {
1990         struct rte_eth_dev *dev;
1991
1992         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
1993         dev = &rte_eth_devices[port_id];
1994
1995         if (dev->data->dev_conf.intr_conf.lsc &&
1996             dev->data->dev_started)
1997                 rte_eth_linkstatus_get(dev, eth_link);
1998         else {
1999                 RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->link_update, -ENOTSUP);
2000                 (*dev->dev_ops->link_update)(dev, 1);
2001                 *eth_link = dev->data->dev_link;
2002         }
2003
2004         return 0;
2005 }
2006
2007 int
2008 rte_eth_link_get_nowait(uint16_t port_id, struct rte_eth_link *eth_link)
2009 {
2010         struct rte_eth_dev *dev;
2011
2012         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
2013         dev = &rte_eth_devices[port_id];
2014
2015         if (dev->data->dev_conf.intr_conf.lsc &&
2016             dev->data->dev_started)
2017                 rte_eth_linkstatus_get(dev, eth_link);
2018         else {
2019                 RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->link_update, -ENOTSUP);
2020                 (*dev->dev_ops->link_update)(dev, 0);
2021                 *eth_link = dev->data->dev_link;
2022         }
2023
2024         return 0;
2025 }
2026
2027 int
2028 rte_eth_stats_get(uint16_t port_id, struct rte_eth_stats *stats)
2029 {
2030         struct rte_eth_dev *dev;
2031
2032         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -EINVAL);
2033
2034         dev = &rte_eth_devices[port_id];
2035         memset(stats, 0, sizeof(*stats));
2036
2037         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->stats_get, -ENOTSUP);
2038         stats->rx_nombuf = dev->data->rx_mbuf_alloc_failed;
2039         return eth_err(port_id, (*dev->dev_ops->stats_get)(dev, stats));
2040 }
2041
2042 int
2043 rte_eth_stats_reset(uint16_t port_id)
2044 {
2045         struct rte_eth_dev *dev;
2046         int ret;
2047
2048         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
2049         dev = &rte_eth_devices[port_id];
2050
2051         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->stats_reset, -ENOTSUP);
2052         ret = (*dev->dev_ops->stats_reset)(dev);
2053         if (ret != 0)
2054                 return eth_err(port_id, ret);
2055
2056         dev->data->rx_mbuf_alloc_failed = 0;
2057
2058         return 0;
2059 }
2060
2061 static inline int
2062 get_xstats_basic_count(struct rte_eth_dev *dev)
2063 {
2064         uint16_t nb_rxqs, nb_txqs;
2065         int count;
2066
2067         nb_rxqs = RTE_MIN(dev->data->nb_rx_queues, RTE_ETHDEV_QUEUE_STAT_CNTRS);
2068         nb_txqs = RTE_MIN(dev->data->nb_tx_queues, RTE_ETHDEV_QUEUE_STAT_CNTRS);
2069
2070         count = RTE_NB_STATS;
2071         count += nb_rxqs * RTE_NB_RXQ_STATS;
2072         count += nb_txqs * RTE_NB_TXQ_STATS;
2073
2074         return count;
2075 }
2076
2077 static int
2078 get_xstats_count(uint16_t port_id)
2079 {
2080         struct rte_eth_dev *dev;
2081         int count;
2082
2083         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -EINVAL);
2084         dev = &rte_eth_devices[port_id];
2085         if (dev->dev_ops->xstats_get_names_by_id != NULL) {
2086                 count = (*dev->dev_ops->xstats_get_names_by_id)(dev, NULL,
2087                                 NULL, 0);
2088                 if (count < 0)
2089                         return eth_err(port_id, count);
2090         }
2091         if (dev->dev_ops->xstats_get_names != NULL) {
2092                 count = (*dev->dev_ops->xstats_get_names)(dev, NULL, 0);
2093                 if (count < 0)
2094                         return eth_err(port_id, count);
2095         } else
2096                 count = 0;
2097
2098
2099         count += get_xstats_basic_count(dev);
2100
2101         return count;
2102 }
2103
2104 int
2105 rte_eth_xstats_get_id_by_name(uint16_t port_id, const char *xstat_name,
2106                 uint64_t *id)
2107 {
2108         int cnt_xstats, idx_xstat;
2109
2110         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
2111
2112         if (!id) {
2113                 RTE_ETHDEV_LOG(ERR, "Id pointer is NULL\n");
2114                 return -ENOMEM;
2115         }
2116
2117         if (!xstat_name) {
2118                 RTE_ETHDEV_LOG(ERR, "xstat_name pointer is NULL\n");
2119                 return -ENOMEM;
2120         }
2121
2122         /* Get count */
2123         cnt_xstats = rte_eth_xstats_get_names_by_id(port_id, NULL, 0, NULL);
2124         if (cnt_xstats  < 0) {
2125                 RTE_ETHDEV_LOG(ERR, "Cannot get count of xstats\n");
2126                 return -ENODEV;
2127         }
2128
2129         /* Get id-name lookup table */
2130         struct rte_eth_xstat_name xstats_names[cnt_xstats];
2131
2132         if (cnt_xstats != rte_eth_xstats_get_names_by_id(
2133                         port_id, xstats_names, cnt_xstats, NULL)) {
2134                 RTE_ETHDEV_LOG(ERR, "Cannot get xstats lookup\n");
2135                 return -1;
2136         }
2137
2138         for (idx_xstat = 0; idx_xstat < cnt_xstats; idx_xstat++) {
2139                 if (!strcmp(xstats_names[idx_xstat].name, xstat_name)) {
2140                         *id = idx_xstat;
2141                         return 0;
2142                 };
2143         }
2144
2145         return -EINVAL;
2146 }
2147
2148 /* retrieve basic stats names */
2149 static int
2150 rte_eth_basic_stats_get_names(struct rte_eth_dev *dev,
2151         struct rte_eth_xstat_name *xstats_names)
2152 {
2153         int cnt_used_entries = 0;
2154         uint32_t idx, id_queue;
2155         uint16_t num_q;
2156
2157         for (idx = 0; idx < RTE_NB_STATS; idx++) {
2158                 strlcpy(xstats_names[cnt_used_entries].name,
2159                         rte_stats_strings[idx].name,
2160                         sizeof(xstats_names[0].name));
2161                 cnt_used_entries++;
2162         }
2163         num_q = RTE_MIN(dev->data->nb_rx_queues, RTE_ETHDEV_QUEUE_STAT_CNTRS);
2164         for (id_queue = 0; id_queue < num_q; id_queue++) {
2165                 for (idx = 0; idx < RTE_NB_RXQ_STATS; idx++) {
2166                         snprintf(xstats_names[cnt_used_entries].name,
2167                                 sizeof(xstats_names[0].name),
2168                                 "rx_q%u%s",
2169                                 id_queue, rte_rxq_stats_strings[idx].name);
2170                         cnt_used_entries++;
2171                 }
2172
2173         }
2174         num_q = RTE_MIN(dev->data->nb_tx_queues, RTE_ETHDEV_QUEUE_STAT_CNTRS);
2175         for (id_queue = 0; id_queue < num_q; id_queue++) {
2176                 for (idx = 0; idx < RTE_NB_TXQ_STATS; idx++) {
2177                         snprintf(xstats_names[cnt_used_entries].name,
2178                                 sizeof(xstats_names[0].name),
2179                                 "tx_q%u%s",
2180                                 id_queue, rte_txq_stats_strings[idx].name);
2181                         cnt_used_entries++;
2182                 }
2183         }
2184         return cnt_used_entries;
2185 }
2186
2187 /* retrieve ethdev extended statistics names */
2188 int
2189 rte_eth_xstats_get_names_by_id(uint16_t port_id,
2190         struct rte_eth_xstat_name *xstats_names, unsigned int size,
2191         uint64_t *ids)
2192 {
2193         struct rte_eth_xstat_name *xstats_names_copy;
2194         unsigned int no_basic_stat_requested = 1;
2195         unsigned int no_ext_stat_requested = 1;
2196         unsigned int expected_entries;
2197         unsigned int basic_count;
2198         struct rte_eth_dev *dev;
2199         unsigned int i;
2200         int ret;
2201
2202         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
2203         dev = &rte_eth_devices[port_id];
2204
2205         basic_count = get_xstats_basic_count(dev);
2206         ret = get_xstats_count(port_id);
2207         if (ret < 0)
2208                 return ret;
2209         expected_entries = (unsigned int)ret;
2210
2211         /* Return max number of stats if no ids given */
2212         if (!ids) {
2213                 if (!xstats_names)
2214                         return expected_entries;
2215                 else if (xstats_names && size < expected_entries)
2216                         return expected_entries;
2217         }
2218
2219         if (ids && !xstats_names)
2220                 return -EINVAL;
2221
2222         if (ids && dev->dev_ops->xstats_get_names_by_id != NULL && size > 0) {
2223                 uint64_t ids_copy[size];
2224
2225                 for (i = 0; i < size; i++) {
2226                         if (ids[i] < basic_count) {
2227                                 no_basic_stat_requested = 0;
2228                                 break;
2229                         }
2230
2231                         /*
2232                          * Convert ids to xstats ids that PMD knows.
2233                          * ids known by user are basic + extended stats.
2234                          */
2235                         ids_copy[i] = ids[i] - basic_count;
2236                 }
2237
2238                 if (no_basic_stat_requested)
2239                         return (*dev->dev_ops->xstats_get_names_by_id)(dev,
2240                                         xstats_names, ids_copy, size);
2241         }
2242
2243         /* Retrieve all stats */
2244         if (!ids) {
2245                 int num_stats = rte_eth_xstats_get_names(port_id, xstats_names,
2246                                 expected_entries);
2247                 if (num_stats < 0 || num_stats > (int)expected_entries)
2248                         return num_stats;
2249                 else
2250                         return expected_entries;
2251         }
2252
2253         xstats_names_copy = calloc(expected_entries,
2254                 sizeof(struct rte_eth_xstat_name));
2255
2256         if (!xstats_names_copy) {
2257                 RTE_ETHDEV_LOG(ERR, "Can't allocate memory\n");
2258                 return -ENOMEM;
2259         }
2260
2261         if (ids) {
2262                 for (i = 0; i < size; i++) {
2263                         if (ids[i] >= basic_count) {
2264                                 no_ext_stat_requested = 0;
2265                                 break;
2266                         }
2267                 }
2268         }
2269
2270         /* Fill xstats_names_copy structure */
2271         if (ids && no_ext_stat_requested) {
2272                 rte_eth_basic_stats_get_names(dev, xstats_names_copy);
2273         } else {
2274                 ret = rte_eth_xstats_get_names(port_id, xstats_names_copy,
2275                         expected_entries);
2276                 if (ret < 0) {
2277                         free(xstats_names_copy);
2278                         return ret;
2279                 }
2280         }
2281
2282         /* Filter stats */
2283         for (i = 0; i < size; i++) {
2284                 if (ids[i] >= expected_entries) {
2285                         RTE_ETHDEV_LOG(ERR, "Id value isn't valid\n");
2286                         free(xstats_names_copy);
2287                         return -1;
2288                 }
2289                 xstats_names[i] = xstats_names_copy[ids[i]];
2290         }
2291
2292         free(xstats_names_copy);
2293         return size;
2294 }
2295
2296 int
2297 rte_eth_xstats_get_names(uint16_t port_id,
2298         struct rte_eth_xstat_name *xstats_names,
2299         unsigned int size)
2300 {
2301         struct rte_eth_dev *dev;
2302         int cnt_used_entries;
2303         int cnt_expected_entries;
2304         int cnt_driver_entries;
2305
2306         cnt_expected_entries = get_xstats_count(port_id);
2307         if (xstats_names == NULL || cnt_expected_entries < 0 ||
2308                         (int)size < cnt_expected_entries)
2309                 return cnt_expected_entries;
2310
2311         /* port_id checked in get_xstats_count() */
2312         dev = &rte_eth_devices[port_id];
2313
2314         cnt_used_entries = rte_eth_basic_stats_get_names(
2315                 dev, xstats_names);
2316
2317         if (dev->dev_ops->xstats_get_names != NULL) {
2318                 /* If there are any driver-specific xstats, append them
2319                  * to end of list.
2320                  */
2321                 cnt_driver_entries = (*dev->dev_ops->xstats_get_names)(
2322                         dev,
2323                         xstats_names + cnt_used_entries,
2324                         size - cnt_used_entries);
2325                 if (cnt_driver_entries < 0)
2326                         return eth_err(port_id, cnt_driver_entries);
2327                 cnt_used_entries += cnt_driver_entries;
2328         }
2329
2330         return cnt_used_entries;
2331 }
2332
2333
2334 static int
2335 rte_eth_basic_stats_get(uint16_t port_id, struct rte_eth_xstat *xstats)
2336 {
2337         struct rte_eth_dev *dev;
2338         struct rte_eth_stats eth_stats;
2339         unsigned int count = 0, i, q;
2340         uint64_t val, *stats_ptr;
2341         uint16_t nb_rxqs, nb_txqs;
2342         int ret;
2343
2344         ret = rte_eth_stats_get(port_id, &eth_stats);
2345         if (ret < 0)
2346                 return ret;
2347
2348         dev = &rte_eth_devices[port_id];
2349
2350         nb_rxqs = RTE_MIN(dev->data->nb_rx_queues, RTE_ETHDEV_QUEUE_STAT_CNTRS);
2351         nb_txqs = RTE_MIN(dev->data->nb_tx_queues, RTE_ETHDEV_QUEUE_STAT_CNTRS);
2352
2353         /* global stats */
2354         for (i = 0; i < RTE_NB_STATS; i++) {
2355                 stats_ptr = RTE_PTR_ADD(&eth_stats,
2356                                         rte_stats_strings[i].offset);
2357                 val = *stats_ptr;
2358                 xstats[count++].value = val;
2359         }
2360
2361         /* per-rxq stats */
2362         for (q = 0; q < nb_rxqs; q++) {
2363                 for (i = 0; i < RTE_NB_RXQ_STATS; i++) {
2364                         stats_ptr = RTE_PTR_ADD(&eth_stats,
2365                                         rte_rxq_stats_strings[i].offset +
2366                                         q * sizeof(uint64_t));
2367                         val = *stats_ptr;
2368                         xstats[count++].value = val;
2369                 }
2370         }
2371
2372         /* per-txq stats */
2373         for (q = 0; q < nb_txqs; q++) {
2374                 for (i = 0; i < RTE_NB_TXQ_STATS; i++) {
2375                         stats_ptr = RTE_PTR_ADD(&eth_stats,
2376                                         rte_txq_stats_strings[i].offset +
2377                                         q * sizeof(uint64_t));
2378                         val = *stats_ptr;
2379                         xstats[count++].value = val;
2380                 }
2381         }
2382         return count;
2383 }
2384
2385 /* retrieve ethdev extended statistics */
2386 int
2387 rte_eth_xstats_get_by_id(uint16_t port_id, const uint64_t *ids,
2388                          uint64_t *values, unsigned int size)
2389 {
2390         unsigned int no_basic_stat_requested = 1;
2391         unsigned int no_ext_stat_requested = 1;
2392         unsigned int num_xstats_filled;
2393         unsigned int basic_count;
2394         uint16_t expected_entries;
2395         struct rte_eth_dev *dev;
2396         unsigned int i;
2397         int ret;
2398
2399         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
2400         ret = get_xstats_count(port_id);
2401         if (ret < 0)
2402                 return ret;
2403         expected_entries = (uint16_t)ret;
2404         struct rte_eth_xstat xstats[expected_entries];
2405         dev = &rte_eth_devices[port_id];
2406         basic_count = get_xstats_basic_count(dev);
2407
2408         /* Return max number of stats if no ids given */
2409         if (!ids) {
2410                 if (!values)
2411                         return expected_entries;
2412                 else if (values && size < expected_entries)
2413                         return expected_entries;
2414         }
2415
2416         if (ids && !values)
2417                 return -EINVAL;
2418
2419         if (ids && dev->dev_ops->xstats_get_by_id != NULL && size) {
2420                 unsigned int basic_count = get_xstats_basic_count(dev);
2421                 uint64_t ids_copy[size];
2422
2423                 for (i = 0; i < size; i++) {
2424                         if (ids[i] < basic_count) {
2425                                 no_basic_stat_requested = 0;
2426                                 break;
2427                         }
2428
2429                         /*
2430                          * Convert ids to xstats ids that PMD knows.
2431                          * ids known by user are basic + extended stats.
2432                          */
2433                         ids_copy[i] = ids[i] - basic_count;
2434                 }
2435
2436                 if (no_basic_stat_requested)
2437                         return (*dev->dev_ops->xstats_get_by_id)(dev, ids_copy,
2438                                         values, size);
2439         }
2440
2441         if (ids) {
2442                 for (i = 0; i < size; i++) {
2443                         if (ids[i] >= basic_count) {
2444                                 no_ext_stat_requested = 0;
2445                                 break;
2446                         }
2447                 }
2448         }
2449
2450         /* Fill the xstats structure */
2451         if (ids && no_ext_stat_requested)
2452                 ret = rte_eth_basic_stats_get(port_id, xstats);
2453         else
2454                 ret = rte_eth_xstats_get(port_id, xstats, expected_entries);
2455
2456         if (ret < 0)
2457                 return ret;
2458         num_xstats_filled = (unsigned int)ret;
2459
2460         /* Return all stats */
2461         if (!ids) {
2462                 for (i = 0; i < num_xstats_filled; i++)
2463                         values[i] = xstats[i].value;
2464                 return expected_entries;
2465         }
2466
2467         /* Filter stats */
2468         for (i = 0; i < size; i++) {
2469                 if (ids[i] >= expected_entries) {
2470                         RTE_ETHDEV_LOG(ERR, "Id value isn't valid\n");
2471                         return -1;
2472                 }
2473                 values[i] = xstats[ids[i]].value;
2474         }
2475         return size;
2476 }
2477
2478 int
2479 rte_eth_xstats_get(uint16_t port_id, struct rte_eth_xstat *xstats,
2480         unsigned int n)
2481 {
2482         struct rte_eth_dev *dev;
2483         unsigned int count = 0, i;
2484         signed int xcount = 0;
2485         uint16_t nb_rxqs, nb_txqs;
2486         int ret;
2487
2488         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -EINVAL);
2489
2490         dev = &rte_eth_devices[port_id];
2491
2492         nb_rxqs = RTE_MIN(dev->data->nb_rx_queues, RTE_ETHDEV_QUEUE_STAT_CNTRS);
2493         nb_txqs = RTE_MIN(dev->data->nb_tx_queues, RTE_ETHDEV_QUEUE_STAT_CNTRS);
2494
2495         /* Return generic statistics */
2496         count = RTE_NB_STATS + (nb_rxqs * RTE_NB_RXQ_STATS) +
2497                 (nb_txqs * RTE_NB_TXQ_STATS);
2498
2499         /* implemented by the driver */
2500         if (dev->dev_ops->xstats_get != NULL) {
2501                 /* Retrieve the xstats from the driver at the end of the
2502                  * xstats struct.
2503                  */
2504                 xcount = (*dev->dev_ops->xstats_get)(dev,
2505                                      xstats ? xstats + count : NULL,
2506                                      (n > count) ? n - count : 0);
2507
2508                 if (xcount < 0)
2509                         return eth_err(port_id, xcount);
2510         }
2511
2512         if (n < count + xcount || xstats == NULL)
2513                 return count + xcount;
2514
2515         /* now fill the xstats structure */
2516         ret = rte_eth_basic_stats_get(port_id, xstats);
2517         if (ret < 0)
2518                 return ret;
2519         count = ret;
2520
2521         for (i = 0; i < count; i++)
2522                 xstats[i].id = i;
2523         /* add an offset to driver-specific stats */
2524         for ( ; i < count + xcount; i++)
2525                 xstats[i].id += count;
2526
2527         return count + xcount;
2528 }
2529
2530 /* reset ethdev extended statistics */
2531 int
2532 rte_eth_xstats_reset(uint16_t port_id)
2533 {
2534         struct rte_eth_dev *dev;
2535
2536         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
2537         dev = &rte_eth_devices[port_id];
2538
2539         /* implemented by the driver */
2540         if (dev->dev_ops->xstats_reset != NULL)
2541                 return eth_err(port_id, (*dev->dev_ops->xstats_reset)(dev));
2542
2543         /* fallback to default */
2544         return rte_eth_stats_reset(port_id);
2545 }
2546
2547 static int
2548 set_queue_stats_mapping(uint16_t port_id, uint16_t queue_id, uint8_t stat_idx,
2549                 uint8_t is_rx)
2550 {
2551         struct rte_eth_dev *dev;
2552
2553         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
2554
2555         dev = &rte_eth_devices[port_id];
2556
2557         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->queue_stats_mapping_set, -ENOTSUP);
2558
2559         if (is_rx && (queue_id >= dev->data->nb_rx_queues))
2560                 return -EINVAL;
2561
2562         if (!is_rx && (queue_id >= dev->data->nb_tx_queues))
2563                 return -EINVAL;
2564
2565         if (stat_idx >= RTE_ETHDEV_QUEUE_STAT_CNTRS)
2566                 return -EINVAL;
2567
2568         return (*dev->dev_ops->queue_stats_mapping_set)
2569                         (dev, queue_id, stat_idx, is_rx);
2570 }
2571
2572
2573 int
2574 rte_eth_dev_set_tx_queue_stats_mapping(uint16_t port_id, uint16_t tx_queue_id,
2575                 uint8_t stat_idx)
2576 {
2577         return eth_err(port_id, set_queue_stats_mapping(port_id, tx_queue_id,
2578                                                 stat_idx, STAT_QMAP_TX));
2579 }
2580
2581
2582 int
2583 rte_eth_dev_set_rx_queue_stats_mapping(uint16_t port_id, uint16_t rx_queue_id,
2584                 uint8_t stat_idx)
2585 {
2586         return eth_err(port_id, set_queue_stats_mapping(port_id, rx_queue_id,
2587                                                 stat_idx, STAT_QMAP_RX));
2588 }
2589
2590 int
2591 rte_eth_dev_fw_version_get(uint16_t port_id, char *fw_version, size_t fw_size)
2592 {
2593         struct rte_eth_dev *dev;
2594
2595         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
2596         dev = &rte_eth_devices[port_id];
2597
2598         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->fw_version_get, -ENOTSUP);
2599         return eth_err(port_id, (*dev->dev_ops->fw_version_get)(dev,
2600                                                         fw_version, fw_size));
2601 }
2602
2603 int
2604 rte_eth_dev_info_get(uint16_t port_id, struct rte_eth_dev_info *dev_info)
2605 {
2606         struct rte_eth_dev *dev;
2607         const struct rte_eth_desc_lim lim = {
2608                 .nb_max = UINT16_MAX,
2609                 .nb_min = 0,
2610                 .nb_align = 1,
2611                 .nb_seg_max = UINT16_MAX,
2612                 .nb_mtu_seg_max = UINT16_MAX,
2613         };
2614         int diag;
2615
2616         /*
2617          * Init dev_info before port_id check since caller does not have
2618          * return status and does not know if get is successful or not.
2619          */
2620         memset(dev_info, 0, sizeof(struct rte_eth_dev_info));
2621
2622         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
2623         dev = &rte_eth_devices[port_id];
2624
2625         dev_info->rx_desc_lim = lim;
2626         dev_info->tx_desc_lim = lim;
2627         dev_info->device = dev->device;
2628         dev_info->min_mtu = RTE_ETHER_MIN_MTU;
2629         dev_info->max_mtu = UINT16_MAX;
2630
2631         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->dev_infos_get, -ENOTSUP);
2632         diag = (*dev->dev_ops->dev_infos_get)(dev, dev_info);
2633         if (diag != 0) {
2634                 /* Cleanup already filled in device information */
2635                 memset(dev_info, 0, sizeof(struct rte_eth_dev_info));
2636                 return eth_err(port_id, diag);
2637         }
2638
2639         dev_info->driver_name = dev->device->driver->name;
2640         dev_info->nb_rx_queues = dev->data->nb_rx_queues;
2641         dev_info->nb_tx_queues = dev->data->nb_tx_queues;
2642
2643         dev_info->dev_flags = &dev->data->dev_flags;
2644
2645         return 0;
2646 }
2647
2648 int
2649 rte_eth_dev_get_supported_ptypes(uint16_t port_id, uint32_t ptype_mask,
2650                                  uint32_t *ptypes, int num)
2651 {
2652         int i, j;
2653         struct rte_eth_dev *dev;
2654         const uint32_t *all_ptypes;
2655
2656         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
2657         dev = &rte_eth_devices[port_id];
2658         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->dev_supported_ptypes_get, 0);
2659         all_ptypes = (*dev->dev_ops->dev_supported_ptypes_get)(dev);
2660
2661         if (!all_ptypes)
2662                 return 0;
2663
2664         for (i = 0, j = 0; all_ptypes[i] != RTE_PTYPE_UNKNOWN; ++i)
2665                 if (all_ptypes[i] & ptype_mask) {
2666                         if (j < num)
2667                                 ptypes[j] = all_ptypes[i];
2668                         j++;
2669                 }
2670
2671         return j;
2672 }
2673
2674 void
2675 rte_eth_macaddr_get(uint16_t port_id, struct rte_ether_addr *mac_addr)
2676 {
2677         struct rte_eth_dev *dev;
2678
2679         RTE_ETH_VALID_PORTID_OR_RET(port_id);
2680         dev = &rte_eth_devices[port_id];
2681         rte_ether_addr_copy(&dev->data->mac_addrs[0], mac_addr);
2682 }
2683
2684
2685 int
2686 rte_eth_dev_get_mtu(uint16_t port_id, uint16_t *mtu)
2687 {
2688         struct rte_eth_dev *dev;
2689
2690         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
2691
2692         dev = &rte_eth_devices[port_id];
2693         *mtu = dev->data->mtu;
2694         return 0;
2695 }
2696
2697 int
2698 rte_eth_dev_set_mtu(uint16_t port_id, uint16_t mtu)
2699 {
2700         int ret;
2701         struct rte_eth_dev_info dev_info;
2702         struct rte_eth_dev *dev;
2703
2704         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
2705         dev = &rte_eth_devices[port_id];
2706         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->mtu_set, -ENOTSUP);
2707
2708         /*
2709          * Check if the device supports dev_infos_get, if it does not
2710          * skip min_mtu/max_mtu validation here as this requires values
2711          * that are populated within the call to rte_eth_dev_info_get()
2712          * which relies on dev->dev_ops->dev_infos_get.
2713          */
2714         if (*dev->dev_ops->dev_infos_get != NULL) {
2715                 ret = rte_eth_dev_info_get(port_id, &dev_info);
2716                 if (ret != 0)
2717                         return ret;
2718
2719                 if (mtu < dev_info.min_mtu || mtu > dev_info.max_mtu)
2720                         return -EINVAL;
2721         }
2722
2723         ret = (*dev->dev_ops->mtu_set)(dev, mtu);
2724         if (!ret)
2725                 dev->data->mtu = mtu;
2726
2727         return eth_err(port_id, ret);
2728 }
2729
2730 int
2731 rte_eth_dev_vlan_filter(uint16_t port_id, uint16_t vlan_id, int on)
2732 {
2733         struct rte_eth_dev *dev;
2734         int ret;
2735
2736         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
2737         dev = &rte_eth_devices[port_id];
2738         if (!(dev->data->dev_conf.rxmode.offloads &
2739               DEV_RX_OFFLOAD_VLAN_FILTER)) {
2740                 RTE_ETHDEV_LOG(ERR, "Port %u: vlan-filtering disabled\n",
2741                         port_id);
2742                 return -ENOSYS;
2743         }
2744
2745         if (vlan_id > 4095) {
2746                 RTE_ETHDEV_LOG(ERR, "Port_id=%u invalid vlan_id=%u > 4095\n",
2747                         port_id, vlan_id);
2748                 return -EINVAL;
2749         }
2750         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->vlan_filter_set, -ENOTSUP);
2751
2752         ret = (*dev->dev_ops->vlan_filter_set)(dev, vlan_id, on);
2753         if (ret == 0) {
2754                 struct rte_vlan_filter_conf *vfc;
2755                 int vidx;
2756                 int vbit;
2757
2758                 vfc = &dev->data->vlan_filter_conf;
2759                 vidx = vlan_id / 64;
2760                 vbit = vlan_id % 64;
2761
2762                 if (on)
2763                         vfc->ids[vidx] |= UINT64_C(1) << vbit;
2764                 else
2765                         vfc->ids[vidx] &= ~(UINT64_C(1) << vbit);
2766         }
2767
2768         return eth_err(port_id, ret);
2769 }
2770
2771 int
2772 rte_eth_dev_set_vlan_strip_on_queue(uint16_t port_id, uint16_t rx_queue_id,
2773                                     int on)
2774 {
2775         struct rte_eth_dev *dev;
2776
2777         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
2778         dev = &rte_eth_devices[port_id];
2779         if (rx_queue_id >= dev->data->nb_rx_queues) {
2780                 RTE_ETHDEV_LOG(ERR, "Invalid rx_queue_id=%u\n", rx_queue_id);
2781                 return -EINVAL;
2782         }
2783
2784         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->vlan_strip_queue_set, -ENOTSUP);
2785         (*dev->dev_ops->vlan_strip_queue_set)(dev, rx_queue_id, on);
2786
2787         return 0;
2788 }
2789
2790 int
2791 rte_eth_dev_set_vlan_ether_type(uint16_t port_id,
2792                                 enum rte_vlan_type vlan_type,
2793                                 uint16_t tpid)
2794 {
2795         struct rte_eth_dev *dev;
2796
2797         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
2798         dev = &rte_eth_devices[port_id];
2799         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->vlan_tpid_set, -ENOTSUP);
2800
2801         return eth_err(port_id, (*dev->dev_ops->vlan_tpid_set)(dev, vlan_type,
2802                                                                tpid));
2803 }
2804
2805 int
2806 rte_eth_dev_set_vlan_offload(uint16_t port_id, int offload_mask)
2807 {
2808         struct rte_eth_dev *dev;
2809         int ret = 0;
2810         int mask = 0;
2811         int cur, org = 0;
2812         uint64_t orig_offloads;
2813         uint64_t *dev_offloads;
2814
2815         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
2816         dev = &rte_eth_devices[port_id];
2817
2818         /* save original values in case of failure */
2819         orig_offloads = dev->data->dev_conf.rxmode.offloads;
2820         dev_offloads = &dev->data->dev_conf.rxmode.offloads;
2821
2822         /*check which option changed by application*/
2823         cur = !!(offload_mask & ETH_VLAN_STRIP_OFFLOAD);
2824         org = !!(*dev_offloads & DEV_RX_OFFLOAD_VLAN_STRIP);
2825         if (cur != org) {
2826                 if (cur)
2827                         *dev_offloads |= DEV_RX_OFFLOAD_VLAN_STRIP;
2828                 else
2829                         *dev_offloads &= ~DEV_RX_OFFLOAD_VLAN_STRIP;
2830                 mask |= ETH_VLAN_STRIP_MASK;
2831         }
2832
2833         cur = !!(offload_mask & ETH_VLAN_FILTER_OFFLOAD);
2834         org = !!(*dev_offloads & DEV_RX_OFFLOAD_VLAN_FILTER);
2835         if (cur != org) {
2836                 if (cur)
2837                         *dev_offloads |= DEV_RX_OFFLOAD_VLAN_FILTER;
2838                 else
2839                         *dev_offloads &= ~DEV_RX_OFFLOAD_VLAN_FILTER;
2840                 mask |= ETH_VLAN_FILTER_MASK;
2841         }
2842
2843         cur = !!(offload_mask & ETH_VLAN_EXTEND_OFFLOAD);
2844         org = !!(*dev_offloads & DEV_RX_OFFLOAD_VLAN_EXTEND);
2845         if (cur != org) {
2846                 if (cur)
2847                         *dev_offloads |= DEV_RX_OFFLOAD_VLAN_EXTEND;
2848                 else
2849                         *dev_offloads &= ~DEV_RX_OFFLOAD_VLAN_EXTEND;
2850                 mask |= ETH_VLAN_EXTEND_MASK;
2851         }
2852
2853         cur = !!(offload_mask & ETH_QINQ_STRIP_OFFLOAD);
2854         org = !!(*dev_offloads & DEV_RX_OFFLOAD_QINQ_STRIP);
2855         if (cur != org) {
2856                 if (cur)
2857                         *dev_offloads |= DEV_RX_OFFLOAD_QINQ_STRIP;
2858                 else
2859                         *dev_offloads &= ~DEV_RX_OFFLOAD_QINQ_STRIP;
2860                 mask |= ETH_QINQ_STRIP_MASK;
2861         }
2862
2863         /*no change*/
2864         if (mask == 0)
2865                 return ret;
2866
2867         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->vlan_offload_set, -ENOTSUP);
2868         ret = (*dev->dev_ops->vlan_offload_set)(dev, mask);
2869         if (ret) {
2870                 /* hit an error restore  original values */
2871                 *dev_offloads = orig_offloads;
2872         }
2873
2874         return eth_err(port_id, ret);
2875 }
2876
2877 int
2878 rte_eth_dev_get_vlan_offload(uint16_t port_id)
2879 {
2880         struct rte_eth_dev *dev;
2881         uint64_t *dev_offloads;
2882         int ret = 0;
2883
2884         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
2885         dev = &rte_eth_devices[port_id];
2886         dev_offloads = &dev->data->dev_conf.rxmode.offloads;
2887
2888         if (*dev_offloads & DEV_RX_OFFLOAD_VLAN_STRIP)
2889                 ret |= ETH_VLAN_STRIP_OFFLOAD;
2890
2891         if (*dev_offloads & DEV_RX_OFFLOAD_VLAN_FILTER)
2892                 ret |= ETH_VLAN_FILTER_OFFLOAD;
2893
2894         if (*dev_offloads & DEV_RX_OFFLOAD_VLAN_EXTEND)
2895                 ret |= ETH_VLAN_EXTEND_OFFLOAD;
2896
2897         if (*dev_offloads & DEV_RX_OFFLOAD_QINQ_STRIP)
2898                 ret |= DEV_RX_OFFLOAD_QINQ_STRIP;
2899
2900         return ret;
2901 }
2902
2903 int
2904 rte_eth_dev_set_vlan_pvid(uint16_t port_id, uint16_t pvid, int on)
2905 {
2906         struct rte_eth_dev *dev;
2907
2908         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
2909         dev = &rte_eth_devices[port_id];
2910         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->vlan_pvid_set, -ENOTSUP);
2911
2912         return eth_err(port_id, (*dev->dev_ops->vlan_pvid_set)(dev, pvid, on));
2913 }
2914
2915 int
2916 rte_eth_dev_flow_ctrl_get(uint16_t port_id, struct rte_eth_fc_conf *fc_conf)
2917 {
2918         struct rte_eth_dev *dev;
2919
2920         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
2921         dev = &rte_eth_devices[port_id];
2922         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->flow_ctrl_get, -ENOTSUP);
2923         memset(fc_conf, 0, sizeof(*fc_conf));
2924         return eth_err(port_id, (*dev->dev_ops->flow_ctrl_get)(dev, fc_conf));
2925 }
2926
2927 int
2928 rte_eth_dev_flow_ctrl_set(uint16_t port_id, struct rte_eth_fc_conf *fc_conf)
2929 {
2930         struct rte_eth_dev *dev;
2931
2932         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
2933         if ((fc_conf->send_xon != 0) && (fc_conf->send_xon != 1)) {
2934                 RTE_ETHDEV_LOG(ERR, "Invalid send_xon, only 0/1 allowed\n");
2935                 return -EINVAL;
2936         }
2937
2938         dev = &rte_eth_devices[port_id];
2939         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->flow_ctrl_set, -ENOTSUP);
2940         return eth_err(port_id, (*dev->dev_ops->flow_ctrl_set)(dev, fc_conf));
2941 }
2942
2943 int
2944 rte_eth_dev_priority_flow_ctrl_set(uint16_t port_id,
2945                                    struct rte_eth_pfc_conf *pfc_conf)
2946 {
2947         struct rte_eth_dev *dev;
2948
2949         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
2950         if (pfc_conf->priority > (ETH_DCB_NUM_USER_PRIORITIES - 1)) {
2951                 RTE_ETHDEV_LOG(ERR, "Invalid priority, only 0-7 allowed\n");
2952                 return -EINVAL;
2953         }
2954
2955         dev = &rte_eth_devices[port_id];
2956         /* High water, low water validation are device specific */
2957         if  (*dev->dev_ops->priority_flow_ctrl_set)
2958                 return eth_err(port_id, (*dev->dev_ops->priority_flow_ctrl_set)
2959                                         (dev, pfc_conf));
2960         return -ENOTSUP;
2961 }
2962
2963 static int
2964 rte_eth_check_reta_mask(struct rte_eth_rss_reta_entry64 *reta_conf,
2965                         uint16_t reta_size)
2966 {
2967         uint16_t i, num;
2968
2969         if (!reta_conf)
2970                 return -EINVAL;
2971
2972         num = (reta_size + RTE_RETA_GROUP_SIZE - 1) / RTE_RETA_GROUP_SIZE;
2973         for (i = 0; i < num; i++) {
2974                 if (reta_conf[i].mask)
2975                         return 0;
2976         }
2977
2978         return -EINVAL;
2979 }
2980
2981 static int
2982 rte_eth_check_reta_entry(struct rte_eth_rss_reta_entry64 *reta_conf,
2983                          uint16_t reta_size,
2984                          uint16_t max_rxq)
2985 {
2986         uint16_t i, idx, shift;
2987
2988         if (!reta_conf)
2989                 return -EINVAL;
2990
2991         if (max_rxq == 0) {
2992                 RTE_ETHDEV_LOG(ERR, "No receive queue is available\n");
2993                 return -EINVAL;
2994         }
2995
2996         for (i = 0; i < reta_size; i++) {
2997                 idx = i / RTE_RETA_GROUP_SIZE;
2998                 shift = i % RTE_RETA_GROUP_SIZE;
2999                 if ((reta_conf[idx].mask & (1ULL << shift)) &&
3000                         (reta_conf[idx].reta[shift] >= max_rxq)) {
3001                         RTE_ETHDEV_LOG(ERR,
3002                                 "reta_conf[%u]->reta[%u]: %u exceeds the maximum rxq index: %u\n",
3003                                 idx, shift,
3004                                 reta_conf[idx].reta[shift], max_rxq);
3005                         return -EINVAL;
3006                 }
3007         }
3008
3009         return 0;
3010 }
3011
3012 int
3013 rte_eth_dev_rss_reta_update(uint16_t port_id,
3014                             struct rte_eth_rss_reta_entry64 *reta_conf,
3015                             uint16_t reta_size)
3016 {
3017         struct rte_eth_dev *dev;
3018         int ret;
3019
3020         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
3021         /* Check mask bits */
3022         ret = rte_eth_check_reta_mask(reta_conf, reta_size);
3023         if (ret < 0)
3024                 return ret;
3025
3026         dev = &rte_eth_devices[port_id];
3027
3028         /* Check entry value */
3029         ret = rte_eth_check_reta_entry(reta_conf, reta_size,
3030                                 dev->data->nb_rx_queues);
3031         if (ret < 0)
3032                 return ret;
3033
3034         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->reta_update, -ENOTSUP);
3035         return eth_err(port_id, (*dev->dev_ops->reta_update)(dev, reta_conf,
3036                                                              reta_size));
3037 }
3038
3039 int
3040 rte_eth_dev_rss_reta_query(uint16_t port_id,
3041                            struct rte_eth_rss_reta_entry64 *reta_conf,
3042                            uint16_t reta_size)
3043 {
3044         struct rte_eth_dev *dev;
3045         int ret;
3046
3047         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
3048
3049         /* Check mask bits */
3050         ret = rte_eth_check_reta_mask(reta_conf, reta_size);
3051         if (ret < 0)
3052                 return ret;
3053
3054         dev = &rte_eth_devices[port_id];
3055         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->reta_query, -ENOTSUP);
3056         return eth_err(port_id, (*dev->dev_ops->reta_query)(dev, reta_conf,
3057                                                             reta_size));
3058 }
3059
3060 int
3061 rte_eth_dev_rss_hash_update(uint16_t port_id,
3062                             struct rte_eth_rss_conf *rss_conf)
3063 {
3064         struct rte_eth_dev *dev;
3065         struct rte_eth_dev_info dev_info = { .flow_type_rss_offloads = 0, };
3066         int ret;
3067
3068         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
3069
3070         ret = rte_eth_dev_info_get(port_id, &dev_info);
3071         if (ret != 0)
3072                 return ret;
3073
3074         dev = &rte_eth_devices[port_id];
3075         if ((dev_info.flow_type_rss_offloads | rss_conf->rss_hf) !=
3076             dev_info.flow_type_rss_offloads) {
3077                 RTE_ETHDEV_LOG(ERR,
3078                         "Ethdev port_id=%u invalid rss_hf: 0x%"PRIx64", valid value: 0x%"PRIx64"\n",
3079                         port_id, rss_conf->rss_hf,
3080                         dev_info.flow_type_rss_offloads);
3081                 return -EINVAL;
3082         }
3083         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->rss_hash_update, -ENOTSUP);
3084         return eth_err(port_id, (*dev->dev_ops->rss_hash_update)(dev,
3085                                                                  rss_conf));
3086 }
3087
3088 int
3089 rte_eth_dev_rss_hash_conf_get(uint16_t port_id,
3090                               struct rte_eth_rss_conf *rss_conf)
3091 {
3092         struct rte_eth_dev *dev;
3093
3094         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
3095         dev = &rte_eth_devices[port_id];
3096         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->rss_hash_conf_get, -ENOTSUP);
3097         return eth_err(port_id, (*dev->dev_ops->rss_hash_conf_get)(dev,
3098                                                                    rss_conf));
3099 }
3100
3101 int
3102 rte_eth_dev_udp_tunnel_port_add(uint16_t port_id,
3103                                 struct rte_eth_udp_tunnel *udp_tunnel)
3104 {
3105         struct rte_eth_dev *dev;
3106
3107         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
3108         if (udp_tunnel == NULL) {
3109                 RTE_ETHDEV_LOG(ERR, "Invalid udp_tunnel parameter\n");
3110                 return -EINVAL;
3111         }
3112
3113         if (udp_tunnel->prot_type >= RTE_TUNNEL_TYPE_MAX) {
3114                 RTE_ETHDEV_LOG(ERR, "Invalid tunnel type\n");
3115                 return -EINVAL;
3116         }
3117
3118         dev = &rte_eth_devices[port_id];
3119         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->udp_tunnel_port_add, -ENOTSUP);
3120         return eth_err(port_id, (*dev->dev_ops->udp_tunnel_port_add)(dev,
3121                                                                 udp_tunnel));
3122 }
3123
3124 int
3125 rte_eth_dev_udp_tunnel_port_delete(uint16_t port_id,
3126                                    struct rte_eth_udp_tunnel *udp_tunnel)
3127 {
3128         struct rte_eth_dev *dev;
3129
3130         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
3131         dev = &rte_eth_devices[port_id];
3132
3133         if (udp_tunnel == NULL) {
3134                 RTE_ETHDEV_LOG(ERR, "Invalid udp_tunnel parameter\n");
3135                 return -EINVAL;
3136         }
3137
3138         if (udp_tunnel->prot_type >= RTE_TUNNEL_TYPE_MAX) {
3139                 RTE_ETHDEV_LOG(ERR, "Invalid tunnel type\n");
3140                 return -EINVAL;
3141         }
3142
3143         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->udp_tunnel_port_del, -ENOTSUP);
3144         return eth_err(port_id, (*dev->dev_ops->udp_tunnel_port_del)(dev,
3145                                                                 udp_tunnel));
3146 }
3147
3148 int
3149 rte_eth_led_on(uint16_t port_id)
3150 {
3151         struct rte_eth_dev *dev;
3152
3153         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
3154         dev = &rte_eth_devices[port_id];
3155         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->dev_led_on, -ENOTSUP);
3156         return eth_err(port_id, (*dev->dev_ops->dev_led_on)(dev));
3157 }
3158
3159 int
3160 rte_eth_led_off(uint16_t port_id)
3161 {
3162         struct rte_eth_dev *dev;
3163
3164         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
3165         dev = &rte_eth_devices[port_id];
3166         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->dev_led_off, -ENOTSUP);
3167         return eth_err(port_id, (*dev->dev_ops->dev_led_off)(dev));
3168 }
3169
3170 /*
3171  * Returns index into MAC address array of addr. Use 00:00:00:00:00:00 to find
3172  * an empty spot.
3173  */
3174 static int
3175 get_mac_addr_index(uint16_t port_id, const struct rte_ether_addr *addr)
3176 {
3177         struct rte_eth_dev_info dev_info;
3178         struct rte_eth_dev *dev = &rte_eth_devices[port_id];
3179         unsigned i;
3180         int ret;
3181
3182         ret = rte_eth_dev_info_get(port_id, &dev_info);
3183         if (ret != 0)
3184                 return -1;
3185
3186         for (i = 0; i < dev_info.max_mac_addrs; i++)
3187                 if (memcmp(addr, &dev->data->mac_addrs[i],
3188                                 RTE_ETHER_ADDR_LEN) == 0)
3189                         return i;
3190
3191         return -1;
3192 }
3193
3194 static const struct rte_ether_addr null_mac_addr;
3195
3196 int
3197 rte_eth_dev_mac_addr_add(uint16_t port_id, struct rte_ether_addr *addr,
3198                         uint32_t pool)
3199 {
3200         struct rte_eth_dev *dev;
3201         int index;
3202         uint64_t pool_mask;
3203         int ret;
3204
3205         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
3206         dev = &rte_eth_devices[port_id];
3207         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->mac_addr_add, -ENOTSUP);
3208
3209         if (rte_is_zero_ether_addr(addr)) {
3210                 RTE_ETHDEV_LOG(ERR, "Port %u: Cannot add NULL MAC address\n",
3211                         port_id);
3212                 return -EINVAL;
3213         }
3214         if (pool >= ETH_64_POOLS) {
3215                 RTE_ETHDEV_LOG(ERR, "Pool id must be 0-%d\n", ETH_64_POOLS - 1);
3216                 return -EINVAL;
3217         }
3218
3219         index = get_mac_addr_index(port_id, addr);
3220         if (index < 0) {
3221                 index = get_mac_addr_index(port_id, &null_mac_addr);
3222                 if (index < 0) {
3223                         RTE_ETHDEV_LOG(ERR, "Port %u: MAC address array full\n",
3224                                 port_id);
3225                         return -ENOSPC;
3226                 }
3227         } else {
3228                 pool_mask = dev->data->mac_pool_sel[index];
3229
3230                 /* Check if both MAC address and pool is already there, and do nothing */
3231                 if (pool_mask & (1ULL << pool))
3232                         return 0;
3233         }
3234
3235         /* Update NIC */
3236         ret = (*dev->dev_ops->mac_addr_add)(dev, addr, index, pool);
3237
3238         if (ret == 0) {
3239                 /* Update address in NIC data structure */
3240                 rte_ether_addr_copy(addr, &dev->data->mac_addrs[index]);
3241
3242                 /* Update pool bitmap in NIC data structure */
3243                 dev->data->mac_pool_sel[index] |= (1ULL << pool);
3244         }
3245
3246         return eth_err(port_id, ret);
3247 }
3248
3249 int
3250 rte_eth_dev_mac_addr_remove(uint16_t port_id, struct rte_ether_addr *addr)
3251 {
3252         struct rte_eth_dev *dev;
3253         int index;
3254
3255         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
3256         dev = &rte_eth_devices[port_id];
3257         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->mac_addr_remove, -ENOTSUP);
3258
3259         index = get_mac_addr_index(port_id, addr);
3260         if (index == 0) {
3261                 RTE_ETHDEV_LOG(ERR,
3262                         "Port %u: Cannot remove default MAC address\n",
3263                         port_id);
3264                 return -EADDRINUSE;
3265         } else if (index < 0)
3266                 return 0;  /* Do nothing if address wasn't found */
3267
3268         /* Update NIC */
3269         (*dev->dev_ops->mac_addr_remove)(dev, index);
3270
3271         /* Update address in NIC data structure */
3272         rte_ether_addr_copy(&null_mac_addr, &dev->data->mac_addrs[index]);
3273
3274         /* reset pool bitmap */
3275         dev->data->mac_pool_sel[index] = 0;
3276
3277         return 0;
3278 }
3279
3280 int
3281 rte_eth_dev_default_mac_addr_set(uint16_t port_id, struct rte_ether_addr *addr)
3282 {
3283         struct rte_eth_dev *dev;
3284         int ret;
3285
3286         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
3287
3288         if (!rte_is_valid_assigned_ether_addr(addr))
3289                 return -EINVAL;
3290
3291         dev = &rte_eth_devices[port_id];
3292         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->mac_addr_set, -ENOTSUP);
3293
3294         ret = (*dev->dev_ops->mac_addr_set)(dev, addr);
3295         if (ret < 0)
3296                 return ret;
3297
3298         /* Update default address in NIC data structure */
3299         rte_ether_addr_copy(addr, &dev->data->mac_addrs[0]);
3300
3301         return 0;
3302 }
3303
3304
3305 /*
3306  * Returns index into MAC address array of addr. Use 00:00:00:00:00:00 to find
3307  * an empty spot.
3308  */
3309 static int
3310 get_hash_mac_addr_index(uint16_t port_id, const struct rte_ether_addr *addr)
3311 {
3312         struct rte_eth_dev_info dev_info;
3313         struct rte_eth_dev *dev = &rte_eth_devices[port_id];
3314         unsigned i;
3315         int ret;
3316
3317         ret = rte_eth_dev_info_get(port_id, &dev_info);
3318         if (ret != 0)
3319                 return -1;
3320
3321         if (!dev->data->hash_mac_addrs)
3322                 return -1;
3323
3324         for (i = 0; i < dev_info.max_hash_mac_addrs; i++)
3325                 if (memcmp(addr, &dev->data->hash_mac_addrs[i],
3326                         RTE_ETHER_ADDR_LEN) == 0)
3327                         return i;
3328
3329         return -1;
3330 }
3331
3332 int
3333 rte_eth_dev_uc_hash_table_set(uint16_t port_id, struct rte_ether_addr *addr,
3334                                 uint8_t on)
3335 {
3336         int index;
3337         int ret;
3338         struct rte_eth_dev *dev;
3339
3340         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
3341
3342         dev = &rte_eth_devices[port_id];
3343         if (rte_is_zero_ether_addr(addr)) {
3344                 RTE_ETHDEV_LOG(ERR, "Port %u: Cannot add NULL MAC address\n",
3345                         port_id);
3346                 return -EINVAL;
3347         }
3348
3349         index = get_hash_mac_addr_index(port_id, addr);
3350         /* Check if it's already there, and do nothing */
3351         if ((index >= 0) && on)
3352                 return 0;
3353
3354         if (index < 0) {
3355                 if (!on) {
3356                         RTE_ETHDEV_LOG(ERR,
3357                                 "Port %u: the MAC address was not set in UTA\n",
3358                                 port_id);
3359                         return -EINVAL;
3360                 }
3361
3362                 index = get_hash_mac_addr_index(port_id, &null_mac_addr);
3363                 if (index < 0) {
3364                         RTE_ETHDEV_LOG(ERR, "Port %u: MAC address array full\n",
3365                                 port_id);
3366                         return -ENOSPC;
3367                 }
3368         }
3369
3370         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->uc_hash_table_set, -ENOTSUP);
3371         ret = (*dev->dev_ops->uc_hash_table_set)(dev, addr, on);
3372         if (ret == 0) {
3373                 /* Update address in NIC data structure */
3374                 if (on)
3375                         rte_ether_addr_copy(addr,
3376                                         &dev->data->hash_mac_addrs[index]);
3377                 else
3378                         rte_ether_addr_copy(&null_mac_addr,
3379                                         &dev->data->hash_mac_addrs[index]);
3380         }
3381
3382         return eth_err(port_id, ret);
3383 }
3384
3385 int
3386 rte_eth_dev_uc_all_hash_table_set(uint16_t port_id, uint8_t on)
3387 {
3388         struct rte_eth_dev *dev;
3389
3390         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
3391
3392         dev = &rte_eth_devices[port_id];
3393
3394         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->uc_all_hash_table_set, -ENOTSUP);
3395         return eth_err(port_id, (*dev->dev_ops->uc_all_hash_table_set)(dev,
3396                                                                        on));
3397 }
3398
3399 int rte_eth_set_queue_rate_limit(uint16_t port_id, uint16_t queue_idx,
3400                                         uint16_t tx_rate)
3401 {
3402         struct rte_eth_dev *dev;
3403         struct rte_eth_dev_info dev_info;
3404         struct rte_eth_link link;
3405         int ret;
3406
3407         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
3408
3409         ret = rte_eth_dev_info_get(port_id, &dev_info);
3410         if (ret != 0)
3411                 return ret;
3412
3413         dev = &rte_eth_devices[port_id];
3414         link = dev->data->dev_link;
3415
3416         if (queue_idx > dev_info.max_tx_queues) {
3417                 RTE_ETHDEV_LOG(ERR,
3418                         "Set queue rate limit:port %u: invalid queue id=%u\n",
3419                         port_id, queue_idx);
3420                 return -EINVAL;
3421         }
3422
3423         if (tx_rate > link.link_speed) {
3424                 RTE_ETHDEV_LOG(ERR,
3425                         "Set queue rate limit:invalid tx_rate=%u, bigger than link speed= %d\n",
3426                         tx_rate, link.link_speed);
3427                 return -EINVAL;
3428         }
3429
3430         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->set_queue_rate_limit, -ENOTSUP);
3431         return eth_err(port_id, (*dev->dev_ops->set_queue_rate_limit)(dev,
3432                                                         queue_idx, tx_rate));
3433 }
3434
3435 int
3436 rte_eth_mirror_rule_set(uint16_t port_id,
3437                         struct rte_eth_mirror_conf *mirror_conf,
3438                         uint8_t rule_id, uint8_t on)
3439 {
3440         struct rte_eth_dev *dev;
3441
3442         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
3443         if (mirror_conf->rule_type == 0) {
3444                 RTE_ETHDEV_LOG(ERR, "Mirror rule type can not be 0\n");
3445                 return -EINVAL;
3446         }
3447
3448         if (mirror_conf->dst_pool >= ETH_64_POOLS) {
3449                 RTE_ETHDEV_LOG(ERR, "Invalid dst pool, pool id must be 0-%d\n",
3450                         ETH_64_POOLS - 1);
3451                 return -EINVAL;
3452         }
3453
3454         if ((mirror_conf->rule_type & (ETH_MIRROR_VIRTUAL_POOL_UP |
3455              ETH_MIRROR_VIRTUAL_POOL_DOWN)) &&
3456             (mirror_conf->pool_mask == 0)) {
3457                 RTE_ETHDEV_LOG(ERR,
3458                         "Invalid mirror pool, pool mask can not be 0\n");
3459                 return -EINVAL;
3460         }
3461
3462         if ((mirror_conf->rule_type & ETH_MIRROR_VLAN) &&
3463             mirror_conf->vlan.vlan_mask == 0) {
3464                 RTE_ETHDEV_LOG(ERR,
3465                         "Invalid vlan mask, vlan mask can not be 0\n");
3466                 return -EINVAL;
3467         }
3468
3469         dev = &rte_eth_devices[port_id];
3470         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->mirror_rule_set, -ENOTSUP);
3471
3472         return eth_err(port_id, (*dev->dev_ops->mirror_rule_set)(dev,
3473                                                 mirror_conf, rule_id, on));
3474 }
3475
3476 int
3477 rte_eth_mirror_rule_reset(uint16_t port_id, uint8_t rule_id)
3478 {
3479         struct rte_eth_dev *dev;
3480
3481         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
3482
3483         dev = &rte_eth_devices[port_id];
3484         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->mirror_rule_reset, -ENOTSUP);
3485
3486         return eth_err(port_id, (*dev->dev_ops->mirror_rule_reset)(dev,
3487                                                                    rule_id));
3488 }
3489
3490 RTE_INIT(eth_dev_init_cb_lists)
3491 {
3492         int i;
3493
3494         for (i = 0; i < RTE_MAX_ETHPORTS; i++)
3495                 TAILQ_INIT(&rte_eth_devices[i].link_intr_cbs);
3496 }
3497
3498 int
3499 rte_eth_dev_callback_register(uint16_t port_id,
3500                         enum rte_eth_event_type event,
3501                         rte_eth_dev_cb_fn cb_fn, void *cb_arg)
3502 {
3503         struct rte_eth_dev *dev;
3504         struct rte_eth_dev_callback *user_cb;
3505         uint32_t next_port; /* size is 32-bit to prevent loop wrap-around */
3506         uint16_t last_port;
3507
3508         if (!cb_fn)
3509                 return -EINVAL;
3510
3511         if (!rte_eth_dev_is_valid_port(port_id) && port_id != RTE_ETH_ALL) {
3512                 RTE_ETHDEV_LOG(ERR, "Invalid port_id=%d\n", port_id);
3513                 return -EINVAL;
3514         }
3515
3516         if (port_id == RTE_ETH_ALL) {
3517                 next_port = 0;
3518                 last_port = RTE_MAX_ETHPORTS - 1;
3519         } else {
3520                 next_port = last_port = port_id;
3521         }
3522
3523         rte_spinlock_lock(&rte_eth_dev_cb_lock);
3524
3525         do {
3526                 dev = &rte_eth_devices[next_port];
3527
3528                 TAILQ_FOREACH(user_cb, &(dev->link_intr_cbs), next) {
3529                         if (user_cb->cb_fn == cb_fn &&
3530                                 user_cb->cb_arg == cb_arg &&
3531                                 user_cb->event == event) {
3532                                 break;
3533                         }
3534                 }
3535
3536                 /* create a new callback. */
3537                 if (user_cb == NULL) {
3538                         user_cb = rte_zmalloc("INTR_USER_CALLBACK",
3539                                 sizeof(struct rte_eth_dev_callback), 0);
3540                         if (user_cb != NULL) {
3541                                 user_cb->cb_fn = cb_fn;
3542                                 user_cb->cb_arg = cb_arg;
3543                                 user_cb->event = event;
3544                                 TAILQ_INSERT_TAIL(&(dev->link_intr_cbs),
3545                                                   user_cb, next);
3546                         } else {
3547                                 rte_spinlock_unlock(&rte_eth_dev_cb_lock);
3548                                 rte_eth_dev_callback_unregister(port_id, event,
3549                                                                 cb_fn, cb_arg);
3550                                 return -ENOMEM;
3551                         }
3552
3553                 }
3554         } while (++next_port <= last_port);
3555
3556         rte_spinlock_unlock(&rte_eth_dev_cb_lock);
3557         return 0;
3558 }
3559
3560 int
3561 rte_eth_dev_callback_unregister(uint16_t port_id,
3562                         enum rte_eth_event_type event,
3563                         rte_eth_dev_cb_fn cb_fn, void *cb_arg)
3564 {
3565         int ret;
3566         struct rte_eth_dev *dev;
3567         struct rte_eth_dev_callback *cb, *next;
3568         uint32_t next_port; /* size is 32-bit to prevent loop wrap-around */
3569         uint16_t last_port;
3570
3571         if (!cb_fn)
3572                 return -EINVAL;
3573
3574         if (!rte_eth_dev_is_valid_port(port_id) && port_id != RTE_ETH_ALL) {
3575                 RTE_ETHDEV_LOG(ERR, "Invalid port_id=%d\n", port_id);
3576                 return -EINVAL;
3577         }
3578
3579         if (port_id == RTE_ETH_ALL) {
3580                 next_port = 0;
3581                 last_port = RTE_MAX_ETHPORTS - 1;
3582         } else {
3583                 next_port = last_port = port_id;
3584         }
3585
3586         rte_spinlock_lock(&rte_eth_dev_cb_lock);
3587
3588         do {
3589                 dev = &rte_eth_devices[next_port];
3590                 ret = 0;
3591                 for (cb = TAILQ_FIRST(&dev->link_intr_cbs); cb != NULL;
3592                      cb = next) {
3593
3594                         next = TAILQ_NEXT(cb, next);
3595
3596                         if (cb->cb_fn != cb_fn || cb->event != event ||
3597                             (cb->cb_arg != (void *)-1 && cb->cb_arg != cb_arg))
3598                                 continue;
3599
3600                         /*
3601                          * if this callback is not executing right now,
3602                          * then remove it.
3603                          */
3604                         if (cb->active == 0) {
3605                                 TAILQ_REMOVE(&(dev->link_intr_cbs), cb, next);
3606                                 rte_free(cb);
3607                         } else {
3608                                 ret = -EAGAIN;
3609                         }
3610                 }
3611         } while (++next_port <= last_port);
3612
3613         rte_spinlock_unlock(&rte_eth_dev_cb_lock);
3614         return ret;
3615 }
3616
3617 int
3618 _rte_eth_dev_callback_process(struct rte_eth_dev *dev,
3619         enum rte_eth_event_type event, void *ret_param)
3620 {
3621         struct rte_eth_dev_callback *cb_lst;
3622         struct rte_eth_dev_callback dev_cb;
3623         int rc = 0;
3624
3625         rte_spinlock_lock(&rte_eth_dev_cb_lock);
3626         TAILQ_FOREACH(cb_lst, &(dev->link_intr_cbs), next) {
3627                 if (cb_lst->cb_fn == NULL || cb_lst->event != event)
3628                         continue;
3629                 dev_cb = *cb_lst;
3630                 cb_lst->active = 1;
3631                 if (ret_param != NULL)
3632                         dev_cb.ret_param = ret_param;
3633
3634                 rte_spinlock_unlock(&rte_eth_dev_cb_lock);
3635                 rc = dev_cb.cb_fn(dev->data->port_id, dev_cb.event,
3636                                 dev_cb.cb_arg, dev_cb.ret_param);
3637                 rte_spinlock_lock(&rte_eth_dev_cb_lock);
3638                 cb_lst->active = 0;
3639         }
3640         rte_spinlock_unlock(&rte_eth_dev_cb_lock);
3641         return rc;
3642 }
3643
3644 void
3645 rte_eth_dev_probing_finish(struct rte_eth_dev *dev)
3646 {
3647         if (dev == NULL)
3648                 return;
3649
3650         _rte_eth_dev_callback_process(dev, RTE_ETH_EVENT_NEW, NULL);
3651
3652         dev->state = RTE_ETH_DEV_ATTACHED;
3653 }
3654
3655 int
3656 rte_eth_dev_rx_intr_ctl(uint16_t port_id, int epfd, int op, void *data)
3657 {
3658         uint32_t vec;
3659         struct rte_eth_dev *dev;
3660         struct rte_intr_handle *intr_handle;
3661         uint16_t qid;
3662         int rc;
3663
3664         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
3665
3666         dev = &rte_eth_devices[port_id];
3667
3668         if (!dev->intr_handle) {
3669                 RTE_ETHDEV_LOG(ERR, "RX Intr handle unset\n");
3670                 return -ENOTSUP;
3671         }
3672
3673         intr_handle = dev->intr_handle;
3674         if (!intr_handle->intr_vec) {
3675                 RTE_ETHDEV_LOG(ERR, "RX Intr vector unset\n");
3676                 return -EPERM;
3677         }
3678
3679         for (qid = 0; qid < dev->data->nb_rx_queues; qid++) {
3680                 vec = intr_handle->intr_vec[qid];
3681                 rc = rte_intr_rx_ctl(intr_handle, epfd, op, vec, data);
3682                 if (rc && rc != -EEXIST) {
3683                         RTE_ETHDEV_LOG(ERR,
3684                                 "p %u q %u rx ctl error op %d epfd %d vec %u\n",
3685                                 port_id, qid, op, epfd, vec);
3686                 }
3687         }
3688
3689         return 0;
3690 }
3691
3692 int
3693 rte_eth_dev_rx_intr_ctl_q_get_fd(uint16_t port_id, uint16_t queue_id)
3694 {
3695         struct rte_intr_handle *intr_handle;
3696         struct rte_eth_dev *dev;
3697         unsigned int efd_idx;
3698         uint32_t vec;
3699         int fd;
3700
3701         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -1);
3702
3703         dev = &rte_eth_devices[port_id];
3704
3705         if (queue_id >= dev->data->nb_rx_queues) {
3706                 RTE_ETHDEV_LOG(ERR, "Invalid RX queue_id=%u\n", queue_id);
3707                 return -1;
3708         }
3709
3710         if (!dev->intr_handle) {
3711                 RTE_ETHDEV_LOG(ERR, "RX Intr handle unset\n");
3712                 return -1;
3713         }
3714
3715         intr_handle = dev->intr_handle;
3716         if (!intr_handle->intr_vec) {
3717                 RTE_ETHDEV_LOG(ERR, "RX Intr vector unset\n");
3718                 return -1;
3719         }
3720
3721         vec = intr_handle->intr_vec[queue_id];
3722         efd_idx = (vec >= RTE_INTR_VEC_RXTX_OFFSET) ?
3723                 (vec - RTE_INTR_VEC_RXTX_OFFSET) : vec;
3724         fd = intr_handle->efds[efd_idx];
3725
3726         return fd;
3727 }
3728
3729 const struct rte_memzone *
3730 rte_eth_dma_zone_reserve(const struct rte_eth_dev *dev, const char *ring_name,
3731                          uint16_t queue_id, size_t size, unsigned align,
3732                          int socket_id)
3733 {
3734         char z_name[RTE_MEMZONE_NAMESIZE];
3735         const struct rte_memzone *mz;
3736         int rc;
3737
3738         rc = snprintf(z_name, sizeof(z_name), "eth_p%d_q%d_%s",
3739                       dev->data->port_id, queue_id, ring_name);
3740         if (rc >= RTE_MEMZONE_NAMESIZE) {
3741                 RTE_ETHDEV_LOG(ERR, "ring name too long\n");
3742                 rte_errno = ENAMETOOLONG;
3743                 return NULL;
3744         }
3745
3746         mz = rte_memzone_lookup(z_name);
3747         if (mz)
3748                 return mz;
3749
3750         return rte_memzone_reserve_aligned(z_name, size, socket_id,
3751                         RTE_MEMZONE_IOVA_CONTIG, align);
3752 }
3753
3754 int
3755 rte_eth_dev_create(struct rte_device *device, const char *name,
3756         size_t priv_data_size,
3757         ethdev_bus_specific_init ethdev_bus_specific_init,
3758         void *bus_init_params,
3759         ethdev_init_t ethdev_init, void *init_params)
3760 {
3761         struct rte_eth_dev *ethdev;
3762         int retval;
3763
3764         RTE_FUNC_PTR_OR_ERR_RET(*ethdev_init, -EINVAL);
3765
3766         if (rte_eal_process_type() == RTE_PROC_PRIMARY) {
3767                 ethdev = rte_eth_dev_allocate(name);
3768                 if (!ethdev)
3769                         return -ENODEV;
3770
3771                 if (priv_data_size) {
3772                         ethdev->data->dev_private = rte_zmalloc_socket(
3773                                 name, priv_data_size, RTE_CACHE_LINE_SIZE,
3774                                 device->numa_node);
3775
3776                         if (!ethdev->data->dev_private) {
3777                                 RTE_LOG(ERR, EAL, "failed to allocate private data");
3778                                 retval = -ENOMEM;
3779                                 goto probe_failed;
3780                         }
3781                 }
3782         } else {
3783                 ethdev = rte_eth_dev_attach_secondary(name);
3784                 if (!ethdev) {
3785                         RTE_LOG(ERR, EAL, "secondary process attach failed, "
3786                                 "ethdev doesn't exist");
3787                         return  -ENODEV;
3788                 }
3789         }
3790
3791         ethdev->device = device;
3792
3793         if (ethdev_bus_specific_init) {
3794                 retval = ethdev_bus_specific_init(ethdev, bus_init_params);
3795                 if (retval) {
3796                         RTE_LOG(ERR, EAL,
3797                                 "ethdev bus specific initialisation failed");
3798                         goto probe_failed;
3799                 }
3800         }
3801
3802         retval = ethdev_init(ethdev, init_params);
3803         if (retval) {
3804                 RTE_LOG(ERR, EAL, "ethdev initialisation failed");
3805                 goto probe_failed;
3806         }
3807
3808         rte_eth_dev_probing_finish(ethdev);
3809
3810         return retval;
3811
3812 probe_failed:
3813         rte_eth_dev_release_port(ethdev);
3814         return retval;
3815 }
3816
3817 int
3818 rte_eth_dev_destroy(struct rte_eth_dev *ethdev,
3819         ethdev_uninit_t ethdev_uninit)
3820 {
3821         int ret;
3822
3823         ethdev = rte_eth_dev_allocated(ethdev->data->name);
3824         if (!ethdev)
3825                 return -ENODEV;
3826
3827         RTE_FUNC_PTR_OR_ERR_RET(*ethdev_uninit, -EINVAL);
3828
3829         ret = ethdev_uninit(ethdev);
3830         if (ret)
3831                 return ret;
3832
3833         return rte_eth_dev_release_port(ethdev);
3834 }
3835
3836 int
3837 rte_eth_dev_rx_intr_ctl_q(uint16_t port_id, uint16_t queue_id,
3838                           int epfd, int op, void *data)
3839 {
3840         uint32_t vec;
3841         struct rte_eth_dev *dev;
3842         struct rte_intr_handle *intr_handle;
3843         int rc;
3844
3845         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
3846
3847         dev = &rte_eth_devices[port_id];
3848         if (queue_id >= dev->data->nb_rx_queues) {
3849                 RTE_ETHDEV_LOG(ERR, "Invalid RX queue_id=%u\n", queue_id);
3850                 return -EINVAL;
3851         }
3852
3853         if (!dev->intr_handle) {
3854                 RTE_ETHDEV_LOG(ERR, "RX Intr handle unset\n");
3855                 return -ENOTSUP;
3856         }
3857
3858         intr_handle = dev->intr_handle;
3859         if (!intr_handle->intr_vec) {
3860                 RTE_ETHDEV_LOG(ERR, "RX Intr vector unset\n");
3861                 return -EPERM;
3862         }
3863
3864         vec = intr_handle->intr_vec[queue_id];
3865         rc = rte_intr_rx_ctl(intr_handle, epfd, op, vec, data);
3866         if (rc && rc != -EEXIST) {
3867                 RTE_ETHDEV_LOG(ERR,
3868                         "p %u q %u rx ctl error op %d epfd %d vec %u\n",
3869                         port_id, queue_id, op, epfd, vec);
3870                 return rc;
3871         }
3872
3873         return 0;
3874 }
3875
3876 int
3877 rte_eth_dev_rx_intr_enable(uint16_t port_id,
3878                            uint16_t queue_id)
3879 {
3880         struct rte_eth_dev *dev;
3881
3882         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
3883
3884         dev = &rte_eth_devices[port_id];
3885
3886         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->rx_queue_intr_enable, -ENOTSUP);
3887         return eth_err(port_id, (*dev->dev_ops->rx_queue_intr_enable)(dev,
3888                                                                 queue_id));
3889 }
3890
3891 int
3892 rte_eth_dev_rx_intr_disable(uint16_t port_id,
3893                             uint16_t queue_id)
3894 {
3895         struct rte_eth_dev *dev;
3896
3897         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
3898
3899         dev = &rte_eth_devices[port_id];
3900
3901         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->rx_queue_intr_disable, -ENOTSUP);
3902         return eth_err(port_id, (*dev->dev_ops->rx_queue_intr_disable)(dev,
3903                                                                 queue_id));
3904 }
3905
3906
3907 int
3908 rte_eth_dev_filter_supported(uint16_t port_id,
3909                              enum rte_filter_type filter_type)
3910 {
3911         struct rte_eth_dev *dev;
3912
3913         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
3914
3915         dev = &rte_eth_devices[port_id];
3916         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->filter_ctrl, -ENOTSUP);
3917         return (*dev->dev_ops->filter_ctrl)(dev, filter_type,
3918                                 RTE_ETH_FILTER_NOP, NULL);
3919 }
3920
3921 int
3922 rte_eth_dev_filter_ctrl(uint16_t port_id, enum rte_filter_type filter_type,
3923                         enum rte_filter_op filter_op, void *arg)
3924 {
3925         struct rte_eth_dev *dev;
3926
3927         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
3928
3929         dev = &rte_eth_devices[port_id];
3930         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->filter_ctrl, -ENOTSUP);
3931         return eth_err(port_id, (*dev->dev_ops->filter_ctrl)(dev, filter_type,
3932                                                              filter_op, arg));
3933 }
3934
3935 const struct rte_eth_rxtx_callback *
3936 rte_eth_add_rx_callback(uint16_t port_id, uint16_t queue_id,
3937                 rte_rx_callback_fn fn, void *user_param)
3938 {
3939 #ifndef RTE_ETHDEV_RXTX_CALLBACKS
3940         rte_errno = ENOTSUP;
3941         return NULL;
3942 #endif
3943         /* check input parameters */
3944         if (!rte_eth_dev_is_valid_port(port_id) || fn == NULL ||
3945                     queue_id >= rte_eth_devices[port_id].data->nb_rx_queues) {
3946                 rte_errno = EINVAL;
3947                 return NULL;
3948         }
3949         struct rte_eth_rxtx_callback *cb = rte_zmalloc(NULL, sizeof(*cb), 0);
3950
3951         if (cb == NULL) {
3952                 rte_errno = ENOMEM;
3953                 return NULL;
3954         }
3955
3956         cb->fn.rx = fn;
3957         cb->param = user_param;
3958
3959         rte_spinlock_lock(&rte_eth_rx_cb_lock);
3960         /* Add the callbacks in fifo order. */
3961         struct rte_eth_rxtx_callback *tail =
3962                 rte_eth_devices[port_id].post_rx_burst_cbs[queue_id];
3963
3964         if (!tail) {
3965                 rte_eth_devices[port_id].post_rx_burst_cbs[queue_id] = cb;
3966
3967         } else {
3968                 while (tail->next)
3969                         tail = tail->next;
3970                 tail->next = cb;
3971         }
3972         rte_spinlock_unlock(&rte_eth_rx_cb_lock);
3973
3974         return cb;
3975 }
3976
3977 const struct rte_eth_rxtx_callback *
3978 rte_eth_add_first_rx_callback(uint16_t port_id, uint16_t queue_id,
3979                 rte_rx_callback_fn fn, void *user_param)
3980 {
3981 #ifndef RTE_ETHDEV_RXTX_CALLBACKS
3982         rte_errno = ENOTSUP;
3983         return NULL;
3984 #endif
3985         /* check input parameters */
3986         if (!rte_eth_dev_is_valid_port(port_id) || fn == NULL ||
3987                 queue_id >= rte_eth_devices[port_id].data->nb_rx_queues) {
3988                 rte_errno = EINVAL;
3989                 return NULL;
3990         }
3991
3992         struct rte_eth_rxtx_callback *cb = rte_zmalloc(NULL, sizeof(*cb), 0);
3993
3994         if (cb == NULL) {
3995                 rte_errno = ENOMEM;
3996                 return NULL;
3997         }
3998
3999         cb->fn.rx = fn;
4000         cb->param = user_param;
4001
4002         rte_spinlock_lock(&rte_eth_rx_cb_lock);
4003         /* Add the callbacks at fisrt position*/
4004         cb->next = rte_eth_devices[port_id].post_rx_burst_cbs[queue_id];
4005         rte_smp_wmb();
4006         rte_eth_devices[port_id].post_rx_burst_cbs[queue_id] = cb;
4007         rte_spinlock_unlock(&rte_eth_rx_cb_lock);
4008
4009         return cb;
4010 }
4011
4012 const struct rte_eth_rxtx_callback *
4013 rte_eth_add_tx_callback(uint16_t port_id, uint16_t queue_id,
4014                 rte_tx_callback_fn fn, void *user_param)
4015 {
4016 #ifndef RTE_ETHDEV_RXTX_CALLBACKS
4017         rte_errno = ENOTSUP;
4018         return NULL;
4019 #endif
4020         /* check input parameters */
4021         if (!rte_eth_dev_is_valid_port(port_id) || fn == NULL ||
4022                     queue_id >= rte_eth_devices[port_id].data->nb_tx_queues) {
4023                 rte_errno = EINVAL;
4024                 return NULL;
4025         }
4026
4027         struct rte_eth_rxtx_callback *cb = rte_zmalloc(NULL, sizeof(*cb), 0);
4028
4029         if (cb == NULL) {
4030                 rte_errno = ENOMEM;
4031                 return NULL;
4032         }
4033
4034         cb->fn.tx = fn;
4035         cb->param = user_param;
4036
4037         rte_spinlock_lock(&rte_eth_tx_cb_lock);
4038         /* Add the callbacks in fifo order. */
4039         struct rte_eth_rxtx_callback *tail =
4040                 rte_eth_devices[port_id].pre_tx_burst_cbs[queue_id];
4041
4042         if (!tail) {
4043                 rte_eth_devices[port_id].pre_tx_burst_cbs[queue_id] = cb;
4044
4045         } else {
4046                 while (tail->next)
4047                         tail = tail->next;
4048                 tail->next = cb;
4049         }
4050         rte_spinlock_unlock(&rte_eth_tx_cb_lock);
4051
4052         return cb;
4053 }
4054
4055 int
4056 rte_eth_remove_rx_callback(uint16_t port_id, uint16_t queue_id,
4057                 const struct rte_eth_rxtx_callback *user_cb)
4058 {
4059 #ifndef RTE_ETHDEV_RXTX_CALLBACKS
4060         return -ENOTSUP;
4061 #endif
4062         /* Check input parameters. */
4063         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -EINVAL);
4064         if (user_cb == NULL ||
4065                         queue_id >= rte_eth_devices[port_id].data->nb_rx_queues)
4066                 return -EINVAL;
4067
4068         struct rte_eth_dev *dev = &rte_eth_devices[port_id];
4069         struct rte_eth_rxtx_callback *cb;
4070         struct rte_eth_rxtx_callback **prev_cb;
4071         int ret = -EINVAL;
4072
4073         rte_spinlock_lock(&rte_eth_rx_cb_lock);
4074         prev_cb = &dev->post_rx_burst_cbs[queue_id];
4075         for (; *prev_cb != NULL; prev_cb = &cb->next) {
4076                 cb = *prev_cb;
4077                 if (cb == user_cb) {
4078                         /* Remove the user cb from the callback list. */
4079                         *prev_cb = cb->next;
4080                         ret = 0;
4081                         break;
4082                 }
4083         }
4084         rte_spinlock_unlock(&rte_eth_rx_cb_lock);
4085
4086         return ret;
4087 }
4088
4089 int
4090 rte_eth_remove_tx_callback(uint16_t port_id, uint16_t queue_id,
4091                 const struct rte_eth_rxtx_callback *user_cb)
4092 {
4093 #ifndef RTE_ETHDEV_RXTX_CALLBACKS
4094         return -ENOTSUP;
4095 #endif
4096         /* Check input parameters. */
4097         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -EINVAL);
4098         if (user_cb == NULL ||
4099                         queue_id >= rte_eth_devices[port_id].data->nb_tx_queues)
4100                 return -EINVAL;
4101
4102         struct rte_eth_dev *dev = &rte_eth_devices[port_id];
4103         int ret = -EINVAL;
4104         struct rte_eth_rxtx_callback *cb;
4105         struct rte_eth_rxtx_callback **prev_cb;
4106
4107         rte_spinlock_lock(&rte_eth_tx_cb_lock);
4108         prev_cb = &dev->pre_tx_burst_cbs[queue_id];
4109         for (; *prev_cb != NULL; prev_cb = &cb->next) {
4110                 cb = *prev_cb;
4111                 if (cb == user_cb) {
4112                         /* Remove the user cb from the callback list. */
4113                         *prev_cb = cb->next;
4114                         ret = 0;
4115                         break;
4116                 }
4117         }
4118         rte_spinlock_unlock(&rte_eth_tx_cb_lock);
4119
4120         return ret;
4121 }
4122
4123 int
4124 rte_eth_rx_queue_info_get(uint16_t port_id, uint16_t queue_id,
4125         struct rte_eth_rxq_info *qinfo)
4126 {
4127         struct rte_eth_dev *dev;
4128
4129         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
4130
4131         if (qinfo == NULL)
4132                 return -EINVAL;
4133
4134         dev = &rte_eth_devices[port_id];
4135         if (queue_id >= dev->data->nb_rx_queues) {
4136                 RTE_ETHDEV_LOG(ERR, "Invalid RX queue_id=%u\n", queue_id);
4137                 return -EINVAL;
4138         }
4139
4140         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->rxq_info_get, -ENOTSUP);
4141
4142         memset(qinfo, 0, sizeof(*qinfo));
4143         dev->dev_ops->rxq_info_get(dev, queue_id, qinfo);
4144         return 0;
4145 }
4146
4147 int
4148 rte_eth_tx_queue_info_get(uint16_t port_id, uint16_t queue_id,
4149         struct rte_eth_txq_info *qinfo)
4150 {
4151         struct rte_eth_dev *dev;
4152
4153         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
4154
4155         if (qinfo == NULL)
4156                 return -EINVAL;
4157
4158         dev = &rte_eth_devices[port_id];
4159         if (queue_id >= dev->data->nb_tx_queues) {
4160                 RTE_ETHDEV_LOG(ERR, "Invalid TX queue_id=%u\n", queue_id);
4161                 return -EINVAL;
4162         }
4163
4164         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->txq_info_get, -ENOTSUP);
4165
4166         memset(qinfo, 0, sizeof(*qinfo));
4167         dev->dev_ops->txq_info_get(dev, queue_id, qinfo);
4168
4169         return 0;
4170 }
4171
4172 int
4173 rte_eth_dev_set_mc_addr_list(uint16_t port_id,
4174                              struct rte_ether_addr *mc_addr_set,
4175                              uint32_t nb_mc_addr)
4176 {
4177         struct rte_eth_dev *dev;
4178
4179         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
4180
4181         dev = &rte_eth_devices[port_id];
4182         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->set_mc_addr_list, -ENOTSUP);
4183         return eth_err(port_id, dev->dev_ops->set_mc_addr_list(dev,
4184                                                 mc_addr_set, nb_mc_addr));
4185 }
4186
4187 int
4188 rte_eth_timesync_enable(uint16_t port_id)
4189 {
4190         struct rte_eth_dev *dev;
4191
4192         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
4193         dev = &rte_eth_devices[port_id];
4194
4195         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->timesync_enable, -ENOTSUP);
4196         return eth_err(port_id, (*dev->dev_ops->timesync_enable)(dev));
4197 }
4198
4199 int
4200 rte_eth_timesync_disable(uint16_t port_id)
4201 {
4202         struct rte_eth_dev *dev;
4203
4204         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
4205         dev = &rte_eth_devices[port_id];
4206
4207         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->timesync_disable, -ENOTSUP);
4208         return eth_err(port_id, (*dev->dev_ops->timesync_disable)(dev));
4209 }
4210
4211 int
4212 rte_eth_timesync_read_rx_timestamp(uint16_t port_id, struct timespec *timestamp,
4213                                    uint32_t flags)
4214 {
4215         struct rte_eth_dev *dev;
4216
4217         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
4218         dev = &rte_eth_devices[port_id];
4219
4220         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->timesync_read_rx_timestamp, -ENOTSUP);
4221         return eth_err(port_id, (*dev->dev_ops->timesync_read_rx_timestamp)
4222                                 (dev, timestamp, flags));
4223 }
4224
4225 int
4226 rte_eth_timesync_read_tx_timestamp(uint16_t port_id,
4227                                    struct timespec *timestamp)
4228 {
4229         struct rte_eth_dev *dev;
4230
4231         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
4232         dev = &rte_eth_devices[port_id];
4233
4234         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->timesync_read_tx_timestamp, -ENOTSUP);
4235         return eth_err(port_id, (*dev->dev_ops->timesync_read_tx_timestamp)
4236                                 (dev, timestamp));
4237 }
4238
4239 int
4240 rte_eth_timesync_adjust_time(uint16_t port_id, int64_t delta)
4241 {
4242         struct rte_eth_dev *dev;
4243
4244         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
4245         dev = &rte_eth_devices[port_id];
4246
4247         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->timesync_adjust_time, -ENOTSUP);
4248         return eth_err(port_id, (*dev->dev_ops->timesync_adjust_time)(dev,
4249                                                                       delta));
4250 }
4251
4252 int
4253 rte_eth_timesync_read_time(uint16_t port_id, struct timespec *timestamp)
4254 {
4255         struct rte_eth_dev *dev;
4256
4257         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
4258         dev = &rte_eth_devices[port_id];
4259
4260         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->timesync_read_time, -ENOTSUP);
4261         return eth_err(port_id, (*dev->dev_ops->timesync_read_time)(dev,
4262                                                                 timestamp));
4263 }
4264
4265 int
4266 rte_eth_timesync_write_time(uint16_t port_id, const struct timespec *timestamp)
4267 {
4268         struct rte_eth_dev *dev;
4269
4270         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
4271         dev = &rte_eth_devices[port_id];
4272
4273         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->timesync_write_time, -ENOTSUP);
4274         return eth_err(port_id, (*dev->dev_ops->timesync_write_time)(dev,
4275                                                                 timestamp));
4276 }
4277
4278 int
4279 rte_eth_read_clock(uint16_t port_id, uint64_t *clock)
4280 {
4281         struct rte_eth_dev *dev;
4282
4283         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
4284         dev = &rte_eth_devices[port_id];
4285
4286         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->read_clock, -ENOTSUP);
4287         return eth_err(port_id, (*dev->dev_ops->read_clock)(dev, clock));
4288 }
4289
4290 int
4291 rte_eth_dev_get_reg_info(uint16_t port_id, struct rte_dev_reg_info *info)
4292 {
4293         struct rte_eth_dev *dev;
4294
4295         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
4296
4297         dev = &rte_eth_devices[port_id];
4298         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->get_reg, -ENOTSUP);
4299         return eth_err(port_id, (*dev->dev_ops->get_reg)(dev, info));
4300 }
4301
4302 int
4303 rte_eth_dev_get_eeprom_length(uint16_t port_id)
4304 {
4305         struct rte_eth_dev *dev;
4306
4307         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
4308
4309         dev = &rte_eth_devices[port_id];
4310         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->get_eeprom_length, -ENOTSUP);
4311         return eth_err(port_id, (*dev->dev_ops->get_eeprom_length)(dev));
4312 }
4313
4314 int
4315 rte_eth_dev_get_eeprom(uint16_t port_id, struct rte_dev_eeprom_info *info)
4316 {
4317         struct rte_eth_dev *dev;
4318
4319         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
4320
4321         dev = &rte_eth_devices[port_id];
4322         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->get_eeprom, -ENOTSUP);
4323         return eth_err(port_id, (*dev->dev_ops->get_eeprom)(dev, info));
4324 }
4325
4326 int
4327 rte_eth_dev_set_eeprom(uint16_t port_id, struct rte_dev_eeprom_info *info)
4328 {
4329         struct rte_eth_dev *dev;
4330
4331         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
4332
4333         dev = &rte_eth_devices[port_id];
4334         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->set_eeprom, -ENOTSUP);
4335         return eth_err(port_id, (*dev->dev_ops->set_eeprom)(dev, info));
4336 }
4337
4338 int
4339 rte_eth_dev_get_module_info(uint16_t port_id,
4340                             struct rte_eth_dev_module_info *modinfo)
4341 {
4342         struct rte_eth_dev *dev;
4343
4344         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
4345
4346         dev = &rte_eth_devices[port_id];
4347         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->get_module_info, -ENOTSUP);
4348         return (*dev->dev_ops->get_module_info)(dev, modinfo);
4349 }
4350
4351 int
4352 rte_eth_dev_get_module_eeprom(uint16_t port_id,
4353                               struct rte_dev_eeprom_info *info)
4354 {
4355         struct rte_eth_dev *dev;
4356
4357         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
4358
4359         dev = &rte_eth_devices[port_id];
4360         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->get_module_eeprom, -ENOTSUP);
4361         return (*dev->dev_ops->get_module_eeprom)(dev, info);
4362 }
4363
4364 int
4365 rte_eth_dev_get_dcb_info(uint16_t port_id,
4366                              struct rte_eth_dcb_info *dcb_info)
4367 {
4368         struct rte_eth_dev *dev;
4369
4370         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
4371
4372         dev = &rte_eth_devices[port_id];
4373         memset(dcb_info, 0, sizeof(struct rte_eth_dcb_info));
4374
4375         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->get_dcb_info, -ENOTSUP);
4376         return eth_err(port_id, (*dev->dev_ops->get_dcb_info)(dev, dcb_info));
4377 }
4378
4379 int
4380 rte_eth_dev_l2_tunnel_eth_type_conf(uint16_t port_id,
4381                                     struct rte_eth_l2_tunnel_conf *l2_tunnel)
4382 {
4383         struct rte_eth_dev *dev;
4384
4385         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
4386         if (l2_tunnel == NULL) {
4387                 RTE_ETHDEV_LOG(ERR, "Invalid l2_tunnel parameter\n");
4388                 return -EINVAL;
4389         }
4390
4391         if (l2_tunnel->l2_tunnel_type >= RTE_TUNNEL_TYPE_MAX) {
4392                 RTE_ETHDEV_LOG(ERR, "Invalid tunnel type\n");
4393                 return -EINVAL;
4394         }
4395
4396         dev = &rte_eth_devices[port_id];
4397         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->l2_tunnel_eth_type_conf,
4398                                 -ENOTSUP);
4399         return eth_err(port_id, (*dev->dev_ops->l2_tunnel_eth_type_conf)(dev,
4400                                                                 l2_tunnel));
4401 }
4402
4403 int
4404 rte_eth_dev_l2_tunnel_offload_set(uint16_t port_id,
4405                                   struct rte_eth_l2_tunnel_conf *l2_tunnel,
4406                                   uint32_t mask,
4407                                   uint8_t en)
4408 {
4409         struct rte_eth_dev *dev;
4410
4411         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
4412
4413         if (l2_tunnel == NULL) {
4414                 RTE_ETHDEV_LOG(ERR, "Invalid l2_tunnel parameter\n");
4415                 return -EINVAL;
4416         }
4417
4418         if (l2_tunnel->l2_tunnel_type >= RTE_TUNNEL_TYPE_MAX) {
4419                 RTE_ETHDEV_LOG(ERR, "Invalid tunnel type\n");
4420                 return -EINVAL;
4421         }
4422
4423         if (mask == 0) {
4424                 RTE_ETHDEV_LOG(ERR, "Mask should have a value\n");
4425                 return -EINVAL;
4426         }
4427
4428         dev = &rte_eth_devices[port_id];
4429         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->l2_tunnel_offload_set,
4430                                 -ENOTSUP);
4431         return eth_err(port_id, (*dev->dev_ops->l2_tunnel_offload_set)(dev,
4432                                                         l2_tunnel, mask, en));
4433 }
4434
4435 static void
4436 rte_eth_dev_adjust_nb_desc(uint16_t *nb_desc,
4437                            const struct rte_eth_desc_lim *desc_lim)
4438 {
4439         if (desc_lim->nb_align != 0)
4440                 *nb_desc = RTE_ALIGN_CEIL(*nb_desc, desc_lim->nb_align);
4441
4442         if (desc_lim->nb_max != 0)
4443                 *nb_desc = RTE_MIN(*nb_desc, desc_lim->nb_max);
4444
4445         *nb_desc = RTE_MAX(*nb_desc, desc_lim->nb_min);
4446 }
4447
4448 int
4449 rte_eth_dev_adjust_nb_rx_tx_desc(uint16_t port_id,
4450                                  uint16_t *nb_rx_desc,
4451                                  uint16_t *nb_tx_desc)
4452 {
4453         struct rte_eth_dev_info dev_info;
4454         int ret;
4455
4456         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
4457
4458         ret = rte_eth_dev_info_get(port_id, &dev_info);
4459         if (ret != 0)
4460                 return ret;
4461
4462         if (nb_rx_desc != NULL)
4463                 rte_eth_dev_adjust_nb_desc(nb_rx_desc, &dev_info.rx_desc_lim);
4464
4465         if (nb_tx_desc != NULL)
4466                 rte_eth_dev_adjust_nb_desc(nb_tx_desc, &dev_info.tx_desc_lim);
4467
4468         return 0;
4469 }
4470
4471 int
4472 rte_eth_dev_pool_ops_supported(uint16_t port_id, const char *pool)
4473 {
4474         struct rte_eth_dev *dev;
4475
4476         RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV);
4477
4478         if (pool == NULL)
4479                 return -EINVAL;
4480
4481         dev = &rte_eth_devices[port_id];
4482
4483         if (*dev->dev_ops->pool_ops_supported == NULL)
4484                 return 1; /* all pools are supported */
4485
4486         return (*dev->dev_ops->pool_ops_supported)(dev, pool);
4487 }
4488
4489 /**
4490  * A set of values to describe the possible states of a switch domain.
4491  */
4492 enum rte_eth_switch_domain_state {
4493         RTE_ETH_SWITCH_DOMAIN_UNUSED = 0,
4494         RTE_ETH_SWITCH_DOMAIN_ALLOCATED
4495 };
4496
4497 /**
4498  * Array of switch domains available for allocation. Array is sized to
4499  * RTE_MAX_ETHPORTS elements as there cannot be more active switch domains than
4500  * ethdev ports in a single process.
4501  */
4502 static struct rte_eth_dev_switch {
4503         enum rte_eth_switch_domain_state state;
4504 } rte_eth_switch_domains[RTE_MAX_ETHPORTS];
4505
4506 int
4507 rte_eth_switch_domain_alloc(uint16_t *domain_id)
4508 {
4509         unsigned int i;
4510
4511         *domain_id = RTE_ETH_DEV_SWITCH_DOMAIN_ID_INVALID;
4512
4513         for (i = RTE_ETH_DEV_SWITCH_DOMAIN_ID_INVALID + 1;
4514                 i < RTE_MAX_ETHPORTS; i++) {
4515                 if (rte_eth_switch_domains[i].state ==
4516                         RTE_ETH_SWITCH_DOMAIN_UNUSED) {
4517                         rte_eth_switch_domains[i].state =
4518                                 RTE_ETH_SWITCH_DOMAIN_ALLOCATED;
4519                         *domain_id = i;
4520                         return 0;
4521                 }
4522         }
4523
4524         return -ENOSPC;
4525 }
4526
4527 int
4528 rte_eth_switch_domain_free(uint16_t domain_id)
4529 {
4530         if (domain_id == RTE_ETH_DEV_SWITCH_DOMAIN_ID_INVALID ||
4531                 domain_id >= RTE_MAX_ETHPORTS)
4532                 return -EINVAL;
4533
4534         if (rte_eth_switch_domains[domain_id].state !=
4535                 RTE_ETH_SWITCH_DOMAIN_ALLOCATED)
4536                 return -EINVAL;
4537
4538         rte_eth_switch_domains[domain_id].state = RTE_ETH_SWITCH_DOMAIN_UNUSED;
4539
4540         return 0;
4541 }
4542
4543 static int
4544 rte_eth_devargs_tokenise(struct rte_kvargs *arglist, const char *str_in)
4545 {
4546         int state;
4547         struct rte_kvargs_pair *pair;
4548         char *letter;
4549
4550         arglist->str = strdup(str_in);
4551         if (arglist->str == NULL)
4552                 return -ENOMEM;
4553
4554         letter = arglist->str;
4555         state = 0;
4556         arglist->count = 0;
4557         pair = &arglist->pairs[0];
4558         while (1) {
4559                 switch (state) {
4560                 case 0: /* Initial */
4561                         if (*letter == '=')
4562                                 return -EINVAL;
4563                         else if (*letter == '\0')
4564                                 return 0;
4565
4566                         state = 1;
4567                         pair->key = letter;
4568                         /* fall-thru */
4569
4570                 case 1: /* Parsing key */
4571                         if (*letter == '=') {
4572                                 *letter = '\0';
4573                                 pair->value = letter + 1;
4574                                 state = 2;
4575                         } else if (*letter == ',' || *letter == '\0')
4576                                 return -EINVAL;
4577                         break;
4578
4579
4580                 case 2: /* Parsing value */
4581                         if (*letter == '[')
4582                                 state = 3;
4583                         else if (*letter == ',') {
4584                                 *letter = '\0';
4585                                 arglist->count++;
4586                                 pair = &arglist->pairs[arglist->count];
4587                                 state = 0;
4588                         } else if (*letter == '\0') {
4589                                 letter--;
4590                                 arglist->count++;
4591                                 pair = &arglist->pairs[arglist->count];
4592                                 state = 0;
4593                         }
4594                         break;
4595
4596                 case 3: /* Parsing list */
4597                         if (*letter == ']')
4598                                 state = 2;
4599                         else if (*letter == '\0')
4600                                 return -EINVAL;
4601                         break;
4602                 }
4603                 letter++;
4604         }
4605 }
4606
4607 int
4608 rte_eth_devargs_parse(const char *dargs, struct rte_eth_devargs *eth_da)
4609 {
4610         struct rte_kvargs args;
4611         struct rte_kvargs_pair *pair;
4612         unsigned int i;
4613         int result = 0;
4614
4615         memset(eth_da, 0, sizeof(*eth_da));
4616
4617         result = rte_eth_devargs_tokenise(&args, dargs);
4618         if (result < 0)
4619                 goto parse_cleanup;
4620
4621         for (i = 0; i < args.count; i++) {
4622                 pair = &args.pairs[i];
4623                 if (strcmp("representor", pair->key) == 0) {
4624                         result = rte_eth_devargs_parse_list(pair->value,
4625                                 rte_eth_devargs_parse_representor_ports,
4626                                 eth_da);
4627                         if (result < 0)
4628                                 goto parse_cleanup;
4629                 }
4630         }
4631
4632 parse_cleanup:
4633         if (args.str)
4634                 free(args.str);
4635
4636         return result;
4637 }
4638
4639 RTE_INIT(ethdev_init_log)
4640 {
4641         rte_eth_dev_logtype = rte_log_register("lib.ethdev");
4642         if (rte_eth_dev_logtype >= 0)
4643                 rte_log_set_level(rte_eth_dev_logtype, RTE_LOG_INFO);
4644 }