New upstream version 17.11.1
[deb_dpdk.git] / lib / librte_eventdev / rte_eventdev.c
1 /*
2  *   BSD LICENSE
3  *
4  *   Copyright(c) 2016 Cavium, Inc. All rights reserved.
5  *
6  *   Redistribution and use in source and binary forms, with or without
7  *   modification, are permitted provided that the following conditions
8  *   are met:
9  *
10  *     * Redistributions of source code must retain the above copyright
11  *       notice, this list of conditions and the following disclaimer.
12  *     * Redistributions in binary form must reproduce the above copyright
13  *       notice, this list of conditions and the following disclaimer in
14  *       the documentation and/or other materials provided with the
15  *       distribution.
16  *     * Neither the name of Cavium, Inc nor the names of its
17  *       contributors may be used to endorse or promote products derived
18  *       from this software without specific prior written permission.
19  *
20  *   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
21  *   "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
22  *   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
23  *   A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
24  *   OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
25  *   SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
26  *   LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
27  *   DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
28  *   THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
29  *   (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
30  *   OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
31  */
32
33 #include <ctype.h>
34 #include <stdio.h>
35 #include <stdlib.h>
36 #include <string.h>
37 #include <stdarg.h>
38 #include <errno.h>
39 #include <stdint.h>
40 #include <inttypes.h>
41 #include <sys/types.h>
42 #include <sys/queue.h>
43
44 #include <rte_byteorder.h>
45 #include <rte_log.h>
46 #include <rte_debug.h>
47 #include <rte_dev.h>
48 #include <rte_memory.h>
49 #include <rte_memcpy.h>
50 #include <rte_memzone.h>
51 #include <rte_eal.h>
52 #include <rte_per_lcore.h>
53 #include <rte_lcore.h>
54 #include <rte_atomic.h>
55 #include <rte_branch_prediction.h>
56 #include <rte_common.h>
57 #include <rte_malloc.h>
58 #include <rte_errno.h>
59 #include <rte_ethdev.h>
60
61 #include "rte_eventdev.h"
62 #include "rte_eventdev_pmd.h"
63
64 struct rte_eventdev rte_event_devices[RTE_EVENT_MAX_DEVS];
65
66 struct rte_eventdev *rte_eventdevs = &rte_event_devices[0];
67
68 static struct rte_eventdev_global eventdev_globals = {
69         .nb_devs                = 0
70 };
71
72 struct rte_eventdev_global *rte_eventdev_globals = &eventdev_globals;
73
74 /* Event dev north bound API implementation */
75
76 uint8_t
77 rte_event_dev_count(void)
78 {
79         return rte_eventdev_globals->nb_devs;
80 }
81
82 int
83 rte_event_dev_get_dev_id(const char *name)
84 {
85         int i;
86
87         if (!name)
88                 return -EINVAL;
89
90         for (i = 0; i < rte_eventdev_globals->nb_devs; i++)
91                 if ((strcmp(rte_event_devices[i].data->name, name)
92                                 == 0) &&
93                                 (rte_event_devices[i].attached ==
94                                                 RTE_EVENTDEV_ATTACHED))
95                         return i;
96         return -ENODEV;
97 }
98
99 int
100 rte_event_dev_socket_id(uint8_t dev_id)
101 {
102         struct rte_eventdev *dev;
103
104         RTE_EVENTDEV_VALID_DEVID_OR_ERR_RET(dev_id, -EINVAL);
105         dev = &rte_eventdevs[dev_id];
106
107         return dev->data->socket_id;
108 }
109
110 int
111 rte_event_dev_info_get(uint8_t dev_id, struct rte_event_dev_info *dev_info)
112 {
113         struct rte_eventdev *dev;
114
115         RTE_EVENTDEV_VALID_DEVID_OR_ERR_RET(dev_id, -EINVAL);
116         dev = &rte_eventdevs[dev_id];
117
118         if (dev_info == NULL)
119                 return -EINVAL;
120
121         memset(dev_info, 0, sizeof(struct rte_event_dev_info));
122
123         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->dev_infos_get, -ENOTSUP);
124         (*dev->dev_ops->dev_infos_get)(dev, dev_info);
125
126         dev_info->dequeue_timeout_ns = dev->data->dev_conf.dequeue_timeout_ns;
127
128         dev_info->dev = dev->dev;
129         return 0;
130 }
131
132 int
133 rte_event_eth_rx_adapter_caps_get(uint8_t dev_id, uint8_t eth_port_id,
134                                 uint32_t *caps)
135 {
136         struct rte_eventdev *dev;
137
138         RTE_EVENTDEV_VALID_DEVID_OR_ERR_RET(dev_id, -EINVAL);
139         RTE_ETH_VALID_PORTID_OR_ERR_RET(eth_port_id, -EINVAL);
140
141         dev = &rte_eventdevs[dev_id];
142
143         if (caps == NULL)
144                 return -EINVAL;
145         *caps = 0;
146
147         return dev->dev_ops->eth_rx_adapter_caps_get ?
148                                 (*dev->dev_ops->eth_rx_adapter_caps_get)(dev,
149                                                 &rte_eth_devices[eth_port_id],
150                                                 caps)
151                                 : 0;
152 }
153
154 static inline int
155 rte_event_dev_queue_config(struct rte_eventdev *dev, uint8_t nb_queues)
156 {
157         uint8_t old_nb_queues = dev->data->nb_queues;
158         struct rte_event_queue_conf *queues_cfg;
159         unsigned int i;
160
161         RTE_EDEV_LOG_DEBUG("Setup %d queues on device %u", nb_queues,
162                          dev->data->dev_id);
163
164         /* First time configuration */
165         if (dev->data->queues_cfg == NULL && nb_queues != 0) {
166                 /* Allocate memory to store queue configuration */
167                 dev->data->queues_cfg = rte_zmalloc_socket(
168                                 "eventdev->data->queues_cfg",
169                                 sizeof(dev->data->queues_cfg[0]) * nb_queues,
170                                 RTE_CACHE_LINE_SIZE, dev->data->socket_id);
171                 if (dev->data->queues_cfg == NULL) {
172                         dev->data->nb_queues = 0;
173                         RTE_EDEV_LOG_ERR("failed to get mem for queue cfg,"
174                                         "nb_queues %u", nb_queues);
175                         return -(ENOMEM);
176                 }
177         /* Re-configure */
178         } else if (dev->data->queues_cfg != NULL && nb_queues != 0) {
179                 RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->queue_release, -ENOTSUP);
180
181                 for (i = nb_queues; i < old_nb_queues; i++)
182                         (*dev->dev_ops->queue_release)(dev, i);
183
184                 /* Re allocate memory to store queue configuration */
185                 queues_cfg = dev->data->queues_cfg;
186                 queues_cfg = rte_realloc(queues_cfg,
187                                 sizeof(queues_cfg[0]) * nb_queues,
188                                 RTE_CACHE_LINE_SIZE);
189                 if (queues_cfg == NULL) {
190                         RTE_EDEV_LOG_ERR("failed to realloc queue cfg memory,"
191                                                 " nb_queues %u", nb_queues);
192                         return -(ENOMEM);
193                 }
194                 dev->data->queues_cfg = queues_cfg;
195
196                 if (nb_queues > old_nb_queues) {
197                         uint8_t new_qs = nb_queues - old_nb_queues;
198
199                         memset(queues_cfg + old_nb_queues, 0,
200                                 sizeof(queues_cfg[0]) * new_qs);
201                 }
202         } else if (dev->data->queues_cfg != NULL && nb_queues == 0) {
203                 RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->queue_release, -ENOTSUP);
204
205                 for (i = nb_queues; i < old_nb_queues; i++)
206                         (*dev->dev_ops->queue_release)(dev, i);
207         }
208
209         dev->data->nb_queues = nb_queues;
210         return 0;
211 }
212
213 #define EVENT_QUEUE_SERVICE_PRIORITY_INVALID (0xdead)
214
215 static inline int
216 rte_event_dev_port_config(struct rte_eventdev *dev, uint8_t nb_ports)
217 {
218         uint8_t old_nb_ports = dev->data->nb_ports;
219         void **ports;
220         uint16_t *links_map;
221         struct rte_event_port_conf *ports_cfg;
222         unsigned int i;
223
224         RTE_EDEV_LOG_DEBUG("Setup %d ports on device %u", nb_ports,
225                          dev->data->dev_id);
226
227         /* First time configuration */
228         if (dev->data->ports == NULL && nb_ports != 0) {
229                 dev->data->ports = rte_zmalloc_socket("eventdev->data->ports",
230                                 sizeof(dev->data->ports[0]) * nb_ports,
231                                 RTE_CACHE_LINE_SIZE, dev->data->socket_id);
232                 if (dev->data->ports == NULL) {
233                         dev->data->nb_ports = 0;
234                         RTE_EDEV_LOG_ERR("failed to get mem for port meta data,"
235                                         "nb_ports %u", nb_ports);
236                         return -(ENOMEM);
237                 }
238
239                 /* Allocate memory to store port configurations */
240                 dev->data->ports_cfg =
241                         rte_zmalloc_socket("eventdev->ports_cfg",
242                         sizeof(dev->data->ports_cfg[0]) * nb_ports,
243                         RTE_CACHE_LINE_SIZE, dev->data->socket_id);
244                 if (dev->data->ports_cfg == NULL) {
245                         dev->data->nb_ports = 0;
246                         RTE_EDEV_LOG_ERR("failed to get mem for port cfg,"
247                                         "nb_ports %u", nb_ports);
248                         return -(ENOMEM);
249                 }
250
251                 /* Allocate memory to store queue to port link connection */
252                 dev->data->links_map =
253                         rte_zmalloc_socket("eventdev->links_map",
254                         sizeof(dev->data->links_map[0]) * nb_ports *
255                         RTE_EVENT_MAX_QUEUES_PER_DEV,
256                         RTE_CACHE_LINE_SIZE, dev->data->socket_id);
257                 if (dev->data->links_map == NULL) {
258                         dev->data->nb_ports = 0;
259                         RTE_EDEV_LOG_ERR("failed to get mem for port_map area,"
260                                         "nb_ports %u", nb_ports);
261                         return -(ENOMEM);
262                 }
263                 for (i = 0; i < nb_ports * RTE_EVENT_MAX_QUEUES_PER_DEV; i++)
264                         dev->data->links_map[i] =
265                                 EVENT_QUEUE_SERVICE_PRIORITY_INVALID;
266         } else if (dev->data->ports != NULL && nb_ports != 0) {/* re-config */
267                 RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->port_release, -ENOTSUP);
268
269                 ports = dev->data->ports;
270                 ports_cfg = dev->data->ports_cfg;
271                 links_map = dev->data->links_map;
272
273                 for (i = nb_ports; i < old_nb_ports; i++)
274                         (*dev->dev_ops->port_release)(ports[i]);
275
276                 /* Realloc memory for ports */
277                 ports = rte_realloc(ports, sizeof(ports[0]) * nb_ports,
278                                 RTE_CACHE_LINE_SIZE);
279                 if (ports == NULL) {
280                         RTE_EDEV_LOG_ERR("failed to realloc port meta data,"
281                                                 " nb_ports %u", nb_ports);
282                         return -(ENOMEM);
283                 }
284
285                 /* Realloc memory for ports_cfg */
286                 ports_cfg = rte_realloc(ports_cfg,
287                         sizeof(ports_cfg[0]) * nb_ports,
288                         RTE_CACHE_LINE_SIZE);
289                 if (ports_cfg == NULL) {
290                         RTE_EDEV_LOG_ERR("failed to realloc port cfg mem,"
291                                                 " nb_ports %u", nb_ports);
292                         return -(ENOMEM);
293                 }
294
295                 /* Realloc memory to store queue to port link connection */
296                 links_map = rte_realloc(links_map,
297                         sizeof(dev->data->links_map[0]) * nb_ports *
298                         RTE_EVENT_MAX_QUEUES_PER_DEV,
299                         RTE_CACHE_LINE_SIZE);
300                 if (links_map == NULL) {
301                         dev->data->nb_ports = 0;
302                         RTE_EDEV_LOG_ERR("failed to realloc mem for port_map,"
303                                         "nb_ports %u", nb_ports);
304                         return -(ENOMEM);
305                 }
306
307                 if (nb_ports > old_nb_ports) {
308                         uint8_t new_ps = nb_ports - old_nb_ports;
309                         unsigned int old_links_map_end =
310                                 old_nb_ports * RTE_EVENT_MAX_QUEUES_PER_DEV;
311                         unsigned int links_map_end =
312                                 nb_ports * RTE_EVENT_MAX_QUEUES_PER_DEV;
313
314                         memset(ports + old_nb_ports, 0,
315                                 sizeof(ports[0]) * new_ps);
316                         memset(ports_cfg + old_nb_ports, 0,
317                                 sizeof(ports_cfg[0]) * new_ps);
318                         for (i = old_links_map_end; i < links_map_end; i++)
319                                 links_map[i] =
320                                         EVENT_QUEUE_SERVICE_PRIORITY_INVALID;
321                 }
322
323                 dev->data->ports = ports;
324                 dev->data->ports_cfg = ports_cfg;
325                 dev->data->links_map = links_map;
326         } else if (dev->data->ports != NULL && nb_ports == 0) {
327                 RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->port_release, -ENOTSUP);
328
329                 ports = dev->data->ports;
330                 for (i = nb_ports; i < old_nb_ports; i++)
331                         (*dev->dev_ops->port_release)(ports[i]);
332         }
333
334         dev->data->nb_ports = nb_ports;
335         return 0;
336 }
337
338 int
339 rte_event_dev_configure(uint8_t dev_id,
340                         const struct rte_event_dev_config *dev_conf)
341 {
342         struct rte_eventdev *dev;
343         struct rte_event_dev_info info;
344         int diag;
345
346         RTE_EVENTDEV_VALID_DEVID_OR_ERR_RET(dev_id, -EINVAL);
347         dev = &rte_eventdevs[dev_id];
348
349         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->dev_infos_get, -ENOTSUP);
350         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->dev_configure, -ENOTSUP);
351
352         if (dev->data->dev_started) {
353                 RTE_EDEV_LOG_ERR(
354                     "device %d must be stopped to allow configuration", dev_id);
355                 return -EBUSY;
356         }
357
358         if (dev_conf == NULL)
359                 return -EINVAL;
360
361         (*dev->dev_ops->dev_infos_get)(dev, &info);
362
363         /* Check dequeue_timeout_ns value is in limit */
364         if (!(dev_conf->event_dev_cfg & RTE_EVENT_DEV_CFG_PER_DEQUEUE_TIMEOUT)) {
365                 if (dev_conf->dequeue_timeout_ns &&
366                     (dev_conf->dequeue_timeout_ns < info.min_dequeue_timeout_ns
367                         || dev_conf->dequeue_timeout_ns >
368                                  info.max_dequeue_timeout_ns)) {
369                         RTE_EDEV_LOG_ERR("dev%d invalid dequeue_timeout_ns=%d"
370                         " min_dequeue_timeout_ns=%d max_dequeue_timeout_ns=%d",
371                         dev_id, dev_conf->dequeue_timeout_ns,
372                         info.min_dequeue_timeout_ns,
373                         info.max_dequeue_timeout_ns);
374                         return -EINVAL;
375                 }
376         }
377
378         /* Check nb_events_limit is in limit */
379         if (dev_conf->nb_events_limit > info.max_num_events) {
380                 RTE_EDEV_LOG_ERR("dev%d nb_events_limit=%d > max_num_events=%d",
381                 dev_id, dev_conf->nb_events_limit, info.max_num_events);
382                 return -EINVAL;
383         }
384
385         /* Check nb_event_queues is in limit */
386         if (!dev_conf->nb_event_queues) {
387                 RTE_EDEV_LOG_ERR("dev%d nb_event_queues cannot be zero",
388                                         dev_id);
389                 return -EINVAL;
390         }
391         if (dev_conf->nb_event_queues > info.max_event_queues) {
392                 RTE_EDEV_LOG_ERR("%d nb_event_queues=%d > max_event_queues=%d",
393                 dev_id, dev_conf->nb_event_queues, info.max_event_queues);
394                 return -EINVAL;
395         }
396
397         /* Check nb_event_ports is in limit */
398         if (!dev_conf->nb_event_ports) {
399                 RTE_EDEV_LOG_ERR("dev%d nb_event_ports cannot be zero", dev_id);
400                 return -EINVAL;
401         }
402         if (dev_conf->nb_event_ports > info.max_event_ports) {
403                 RTE_EDEV_LOG_ERR("id%d nb_event_ports=%d > max_event_ports= %d",
404                 dev_id, dev_conf->nb_event_ports, info.max_event_ports);
405                 return -EINVAL;
406         }
407
408         /* Check nb_event_queue_flows is in limit */
409         if (!dev_conf->nb_event_queue_flows) {
410                 RTE_EDEV_LOG_ERR("dev%d nb_flows cannot be zero", dev_id);
411                 return -EINVAL;
412         }
413         if (dev_conf->nb_event_queue_flows > info.max_event_queue_flows) {
414                 RTE_EDEV_LOG_ERR("dev%d nb_flows=%x > max_flows=%x",
415                 dev_id, dev_conf->nb_event_queue_flows,
416                 info.max_event_queue_flows);
417                 return -EINVAL;
418         }
419
420         /* Check nb_event_port_dequeue_depth is in limit */
421         if (!dev_conf->nb_event_port_dequeue_depth) {
422                 RTE_EDEV_LOG_ERR("dev%d nb_dequeue_depth cannot be zero",
423                                         dev_id);
424                 return -EINVAL;
425         }
426         if ((info.event_dev_cap & RTE_EVENT_DEV_CAP_BURST_MODE) &&
427                  (dev_conf->nb_event_port_dequeue_depth >
428                          info.max_event_port_dequeue_depth)) {
429                 RTE_EDEV_LOG_ERR("dev%d nb_dq_depth=%d > max_dq_depth=%d",
430                 dev_id, dev_conf->nb_event_port_dequeue_depth,
431                 info.max_event_port_dequeue_depth);
432                 return -EINVAL;
433         }
434
435         /* Check nb_event_port_enqueue_depth is in limit */
436         if (!dev_conf->nb_event_port_enqueue_depth) {
437                 RTE_EDEV_LOG_ERR("dev%d nb_enqueue_depth cannot be zero",
438                                         dev_id);
439                 return -EINVAL;
440         }
441         if ((info.event_dev_cap & RTE_EVENT_DEV_CAP_BURST_MODE) &&
442                 (dev_conf->nb_event_port_enqueue_depth >
443                          info.max_event_port_enqueue_depth)) {
444                 RTE_EDEV_LOG_ERR("dev%d nb_enq_depth=%d > max_enq_depth=%d",
445                 dev_id, dev_conf->nb_event_port_enqueue_depth,
446                 info.max_event_port_enqueue_depth);
447                 return -EINVAL;
448         }
449
450         /* Copy the dev_conf parameter into the dev structure */
451         memcpy(&dev->data->dev_conf, dev_conf, sizeof(dev->data->dev_conf));
452
453         /* Setup new number of queues and reconfigure device. */
454         diag = rte_event_dev_queue_config(dev, dev_conf->nb_event_queues);
455         if (diag != 0) {
456                 RTE_EDEV_LOG_ERR("dev%d rte_event_dev_queue_config = %d",
457                                 dev_id, diag);
458                 return diag;
459         }
460
461         /* Setup new number of ports and reconfigure device. */
462         diag = rte_event_dev_port_config(dev, dev_conf->nb_event_ports);
463         if (diag != 0) {
464                 rte_event_dev_queue_config(dev, 0);
465                 RTE_EDEV_LOG_ERR("dev%d rte_event_dev_port_config = %d",
466                                 dev_id, diag);
467                 return diag;
468         }
469
470         /* Configure the device */
471         diag = (*dev->dev_ops->dev_configure)(dev);
472         if (diag != 0) {
473                 RTE_EDEV_LOG_ERR("dev%d dev_configure = %d", dev_id, diag);
474                 rte_event_dev_queue_config(dev, 0);
475                 rte_event_dev_port_config(dev, 0);
476         }
477
478         dev->data->event_dev_cap = info.event_dev_cap;
479         return diag;
480 }
481
482 static inline int
483 is_valid_queue(struct rte_eventdev *dev, uint8_t queue_id)
484 {
485         if (queue_id < dev->data->nb_queues && queue_id <
486                                 RTE_EVENT_MAX_QUEUES_PER_DEV)
487                 return 1;
488         else
489                 return 0;
490 }
491
492 int
493 rte_event_queue_default_conf_get(uint8_t dev_id, uint8_t queue_id,
494                                  struct rte_event_queue_conf *queue_conf)
495 {
496         struct rte_eventdev *dev;
497
498         RTE_EVENTDEV_VALID_DEVID_OR_ERR_RET(dev_id, -EINVAL);
499         dev = &rte_eventdevs[dev_id];
500
501         if (queue_conf == NULL)
502                 return -EINVAL;
503
504         if (!is_valid_queue(dev, queue_id)) {
505                 RTE_EDEV_LOG_ERR("Invalid queue_id=%" PRIu8, queue_id);
506                 return -EINVAL;
507         }
508
509         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->queue_def_conf, -ENOTSUP);
510         memset(queue_conf, 0, sizeof(struct rte_event_queue_conf));
511         (*dev->dev_ops->queue_def_conf)(dev, queue_id, queue_conf);
512         return 0;
513 }
514
515 static inline int
516 is_valid_atomic_queue_conf(const struct rte_event_queue_conf *queue_conf)
517 {
518         if (queue_conf &&
519                 !(queue_conf->event_queue_cfg &
520                   RTE_EVENT_QUEUE_CFG_SINGLE_LINK) &&
521                 ((queue_conf->event_queue_cfg &
522                          RTE_EVENT_QUEUE_CFG_ALL_TYPES) ||
523                 (queue_conf->schedule_type
524                         == RTE_SCHED_TYPE_ATOMIC)
525                 ))
526                 return 1;
527         else
528                 return 0;
529 }
530
531 static inline int
532 is_valid_ordered_queue_conf(const struct rte_event_queue_conf *queue_conf)
533 {
534         if (queue_conf &&
535                 !(queue_conf->event_queue_cfg &
536                   RTE_EVENT_QUEUE_CFG_SINGLE_LINK) &&
537                 ((queue_conf->event_queue_cfg &
538                          RTE_EVENT_QUEUE_CFG_ALL_TYPES) ||
539                 (queue_conf->schedule_type
540                         == RTE_SCHED_TYPE_ORDERED)
541                 ))
542                 return 1;
543         else
544                 return 0;
545 }
546
547
548 int
549 rte_event_queue_setup(uint8_t dev_id, uint8_t queue_id,
550                       const struct rte_event_queue_conf *queue_conf)
551 {
552         struct rte_eventdev *dev;
553         struct rte_event_queue_conf def_conf;
554
555         RTE_EVENTDEV_VALID_DEVID_OR_ERR_RET(dev_id, -EINVAL);
556         dev = &rte_eventdevs[dev_id];
557
558         if (!is_valid_queue(dev, queue_id)) {
559                 RTE_EDEV_LOG_ERR("Invalid queue_id=%" PRIu8, queue_id);
560                 return -EINVAL;
561         }
562
563         /* Check nb_atomic_flows limit */
564         if (is_valid_atomic_queue_conf(queue_conf)) {
565                 if (queue_conf->nb_atomic_flows == 0 ||
566                     queue_conf->nb_atomic_flows >
567                         dev->data->dev_conf.nb_event_queue_flows) {
568                         RTE_EDEV_LOG_ERR(
569                 "dev%d queue%d Invalid nb_atomic_flows=%d max_flows=%d",
570                         dev_id, queue_id, queue_conf->nb_atomic_flows,
571                         dev->data->dev_conf.nb_event_queue_flows);
572                         return -EINVAL;
573                 }
574         }
575
576         /* Check nb_atomic_order_sequences limit */
577         if (is_valid_ordered_queue_conf(queue_conf)) {
578                 if (queue_conf->nb_atomic_order_sequences == 0 ||
579                     queue_conf->nb_atomic_order_sequences >
580                         dev->data->dev_conf.nb_event_queue_flows) {
581                         RTE_EDEV_LOG_ERR(
582                 "dev%d queue%d Invalid nb_atomic_order_seq=%d max_flows=%d",
583                         dev_id, queue_id, queue_conf->nb_atomic_order_sequences,
584                         dev->data->dev_conf.nb_event_queue_flows);
585                         return -EINVAL;
586                 }
587         }
588
589         if (dev->data->dev_started) {
590                 RTE_EDEV_LOG_ERR(
591                     "device %d must be stopped to allow queue setup", dev_id);
592                 return -EBUSY;
593         }
594
595         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->queue_setup, -ENOTSUP);
596
597         if (queue_conf == NULL) {
598                 RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->queue_def_conf,
599                                         -ENOTSUP);
600                 (*dev->dev_ops->queue_def_conf)(dev, queue_id, &def_conf);
601                 queue_conf = &def_conf;
602         }
603
604         dev->data->queues_cfg[queue_id] = *queue_conf;
605         return (*dev->dev_ops->queue_setup)(dev, queue_id, queue_conf);
606 }
607
608 static inline int
609 is_valid_port(struct rte_eventdev *dev, uint8_t port_id)
610 {
611         if (port_id < dev->data->nb_ports)
612                 return 1;
613         else
614                 return 0;
615 }
616
617 int
618 rte_event_port_default_conf_get(uint8_t dev_id, uint8_t port_id,
619                                  struct rte_event_port_conf *port_conf)
620 {
621         struct rte_eventdev *dev;
622
623         RTE_EVENTDEV_VALID_DEVID_OR_ERR_RET(dev_id, -EINVAL);
624         dev = &rte_eventdevs[dev_id];
625
626         if (port_conf == NULL)
627                 return -EINVAL;
628
629         if (!is_valid_port(dev, port_id)) {
630                 RTE_EDEV_LOG_ERR("Invalid port_id=%" PRIu8, port_id);
631                 return -EINVAL;
632         }
633
634         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->port_def_conf, -ENOTSUP);
635         memset(port_conf, 0, sizeof(struct rte_event_port_conf));
636         (*dev->dev_ops->port_def_conf)(dev, port_id, port_conf);
637         return 0;
638 }
639
640 int
641 rte_event_port_setup(uint8_t dev_id, uint8_t port_id,
642                      const struct rte_event_port_conf *port_conf)
643 {
644         struct rte_eventdev *dev;
645         struct rte_event_port_conf def_conf;
646         int diag;
647
648         RTE_EVENTDEV_VALID_DEVID_OR_ERR_RET(dev_id, -EINVAL);
649         dev = &rte_eventdevs[dev_id];
650
651         if (!is_valid_port(dev, port_id)) {
652                 RTE_EDEV_LOG_ERR("Invalid port_id=%" PRIu8, port_id);
653                 return -EINVAL;
654         }
655
656         /* Check new_event_threshold limit */
657         if ((port_conf && !port_conf->new_event_threshold) ||
658                         (port_conf && port_conf->new_event_threshold >
659                                  dev->data->dev_conf.nb_events_limit)) {
660                 RTE_EDEV_LOG_ERR(
661                    "dev%d port%d Invalid event_threshold=%d nb_events_limit=%d",
662                         dev_id, port_id, port_conf->new_event_threshold,
663                         dev->data->dev_conf.nb_events_limit);
664                 return -EINVAL;
665         }
666
667         /* Check dequeue_depth limit */
668         if ((port_conf && !port_conf->dequeue_depth) ||
669                         (port_conf && port_conf->dequeue_depth >
670                 dev->data->dev_conf.nb_event_port_dequeue_depth)) {
671                 RTE_EDEV_LOG_ERR(
672                    "dev%d port%d Invalid dequeue depth=%d max_dequeue_depth=%d",
673                         dev_id, port_id, port_conf->dequeue_depth,
674                         dev->data->dev_conf.nb_event_port_dequeue_depth);
675                 return -EINVAL;
676         }
677
678         /* Check enqueue_depth limit */
679         if ((port_conf && !port_conf->enqueue_depth) ||
680                         (port_conf && port_conf->enqueue_depth >
681                 dev->data->dev_conf.nb_event_port_enqueue_depth)) {
682                 RTE_EDEV_LOG_ERR(
683                    "dev%d port%d Invalid enqueue depth=%d max_enqueue_depth=%d",
684                         dev_id, port_id, port_conf->enqueue_depth,
685                         dev->data->dev_conf.nb_event_port_enqueue_depth);
686                 return -EINVAL;
687         }
688
689         if (dev->data->dev_started) {
690                 RTE_EDEV_LOG_ERR(
691                     "device %d must be stopped to allow port setup", dev_id);
692                 return -EBUSY;
693         }
694
695         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->port_setup, -ENOTSUP);
696
697         if (port_conf == NULL) {
698                 RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->port_def_conf,
699                                         -ENOTSUP);
700                 (*dev->dev_ops->port_def_conf)(dev, port_id, &def_conf);
701                 port_conf = &def_conf;
702         }
703
704         dev->data->ports_cfg[port_id] = *port_conf;
705
706         diag = (*dev->dev_ops->port_setup)(dev, port_id, port_conf);
707
708         /* Unlink all the queues from this port(default state after setup) */
709         if (!diag)
710                 diag = rte_event_port_unlink(dev_id, port_id, NULL, 0);
711
712         if (diag < 0)
713                 return diag;
714
715         return 0;
716 }
717
718 int
719 rte_event_dev_attr_get(uint8_t dev_id, uint32_t attr_id,
720                        uint32_t *attr_value)
721 {
722         struct rte_eventdev *dev;
723
724         if (!attr_value)
725                 return -EINVAL;
726         RTE_EVENTDEV_VALID_DEVID_OR_ERR_RET(dev_id, -EINVAL);
727         dev = &rte_eventdevs[dev_id];
728
729         switch (attr_id) {
730         case RTE_EVENT_DEV_ATTR_PORT_COUNT:
731                 *attr_value = dev->data->nb_ports;
732                 break;
733         case RTE_EVENT_DEV_ATTR_QUEUE_COUNT:
734                 *attr_value = dev->data->nb_queues;
735                 break;
736         case RTE_EVENT_DEV_ATTR_STARTED:
737                 *attr_value = dev->data->dev_started;
738                 break;
739         default:
740                 return -EINVAL;
741         }
742
743         return 0;
744 }
745
746 int
747 rte_event_port_attr_get(uint8_t dev_id, uint8_t port_id, uint32_t attr_id,
748                         uint32_t *attr_value)
749 {
750         struct rte_eventdev *dev;
751
752         if (!attr_value)
753                 return -EINVAL;
754
755         RTE_EVENTDEV_VALID_DEVID_OR_ERR_RET(dev_id, -EINVAL);
756         dev = &rte_eventdevs[dev_id];
757         if (!is_valid_port(dev, port_id)) {
758                 RTE_EDEV_LOG_ERR("Invalid port_id=%" PRIu8, port_id);
759                 return -EINVAL;
760         }
761
762         switch (attr_id) {
763         case RTE_EVENT_PORT_ATTR_ENQ_DEPTH:
764                 *attr_value = dev->data->ports_cfg[port_id].enqueue_depth;
765                 break;
766         case RTE_EVENT_PORT_ATTR_DEQ_DEPTH:
767                 *attr_value = dev->data->ports_cfg[port_id].dequeue_depth;
768                 break;
769         case RTE_EVENT_PORT_ATTR_NEW_EVENT_THRESHOLD:
770                 *attr_value = dev->data->ports_cfg[port_id].new_event_threshold;
771                 break;
772         default:
773                 return -EINVAL;
774         };
775         return 0;
776 }
777
778 int
779 rte_event_queue_attr_get(uint8_t dev_id, uint8_t queue_id, uint32_t attr_id,
780                         uint32_t *attr_value)
781 {
782         struct rte_event_queue_conf *conf;
783         struct rte_eventdev *dev;
784
785         if (!attr_value)
786                 return -EINVAL;
787
788         RTE_EVENTDEV_VALID_DEVID_OR_ERR_RET(dev_id, -EINVAL);
789         dev = &rte_eventdevs[dev_id];
790         if (!is_valid_queue(dev, queue_id)) {
791                 RTE_EDEV_LOG_ERR("Invalid queue_id=%" PRIu8, queue_id);
792                 return -EINVAL;
793         }
794
795         conf = &dev->data->queues_cfg[queue_id];
796
797         switch (attr_id) {
798         case RTE_EVENT_QUEUE_ATTR_PRIORITY:
799                 *attr_value = RTE_EVENT_DEV_PRIORITY_NORMAL;
800                 if (dev->data->event_dev_cap & RTE_EVENT_DEV_CAP_QUEUE_QOS)
801                         *attr_value = conf->priority;
802                 break;
803         case RTE_EVENT_QUEUE_ATTR_NB_ATOMIC_FLOWS:
804                 *attr_value = conf->nb_atomic_flows;
805                 break;
806         case RTE_EVENT_QUEUE_ATTR_NB_ATOMIC_ORDER_SEQUENCES:
807                 *attr_value = conf->nb_atomic_order_sequences;
808                 break;
809         case RTE_EVENT_QUEUE_ATTR_EVENT_QUEUE_CFG:
810                 *attr_value = conf->event_queue_cfg;
811                 break;
812         case RTE_EVENT_QUEUE_ATTR_SCHEDULE_TYPE:
813                 if (conf->event_queue_cfg & RTE_EVENT_QUEUE_CFG_ALL_TYPES)
814                         return -EOVERFLOW;
815
816                 *attr_value = conf->schedule_type;
817                 break;
818         default:
819                 return -EINVAL;
820         };
821         return 0;
822 }
823
824 int
825 rte_event_port_link(uint8_t dev_id, uint8_t port_id,
826                     const uint8_t queues[], const uint8_t priorities[],
827                     uint16_t nb_links)
828 {
829         struct rte_eventdev *dev;
830         uint8_t queues_list[RTE_EVENT_MAX_QUEUES_PER_DEV];
831         uint8_t priorities_list[RTE_EVENT_MAX_QUEUES_PER_DEV];
832         uint16_t *links_map;
833         int i, diag;
834
835         RTE_EVENTDEV_VALID_DEVID_OR_ERRNO_RET(dev_id, -EINVAL, 0);
836         dev = &rte_eventdevs[dev_id];
837
838         if (*dev->dev_ops->port_link == NULL) {
839                 RTE_PMD_DEBUG_TRACE("Function not supported\n");
840                 rte_errno = -ENOTSUP;
841                 return 0;
842         }
843
844         if (!is_valid_port(dev, port_id)) {
845                 RTE_EDEV_LOG_ERR("Invalid port_id=%" PRIu8, port_id);
846                 rte_errno = -EINVAL;
847                 return 0;
848         }
849
850         if (queues == NULL) {
851                 for (i = 0; i < dev->data->nb_queues; i++)
852                         queues_list[i] = i;
853
854                 queues = queues_list;
855                 nb_links = dev->data->nb_queues;
856         }
857
858         if (priorities == NULL) {
859                 for (i = 0; i < nb_links; i++)
860                         priorities_list[i] = RTE_EVENT_DEV_PRIORITY_NORMAL;
861
862                 priorities = priorities_list;
863         }
864
865         for (i = 0; i < nb_links; i++)
866                 if (queues[i] >= dev->data->nb_queues) {
867                         rte_errno = -EINVAL;
868                         return 0;
869                 }
870
871         diag = (*dev->dev_ops->port_link)(dev, dev->data->ports[port_id],
872                                                 queues, priorities, nb_links);
873         if (diag < 0)
874                 return diag;
875
876         links_map = dev->data->links_map;
877         /* Point links_map to this port specific area */
878         links_map += (port_id * RTE_EVENT_MAX_QUEUES_PER_DEV);
879         for (i = 0; i < diag; i++)
880                 links_map[queues[i]] = (uint8_t)priorities[i];
881
882         return diag;
883 }
884
885 int
886 rte_event_port_unlink(uint8_t dev_id, uint8_t port_id,
887                       uint8_t queues[], uint16_t nb_unlinks)
888 {
889         struct rte_eventdev *dev;
890         uint8_t all_queues[RTE_EVENT_MAX_QUEUES_PER_DEV];
891         int i, diag;
892         uint16_t *links_map;
893
894         RTE_EVENTDEV_VALID_DEVID_OR_ERRNO_RET(dev_id, -EINVAL, 0);
895         dev = &rte_eventdevs[dev_id];
896
897         if (*dev->dev_ops->port_unlink == NULL) {
898                 RTE_PMD_DEBUG_TRACE("Function not supported\n");
899                 rte_errno = -ENOTSUP;
900                 return 0;
901         }
902
903         if (!is_valid_port(dev, port_id)) {
904                 RTE_EDEV_LOG_ERR("Invalid port_id=%" PRIu8, port_id);
905                 rte_errno = -EINVAL;
906                 return 0;
907         }
908
909         if (queues == NULL) {
910                 for (i = 0; i < dev->data->nb_queues; i++)
911                         all_queues[i] = i;
912                 queues = all_queues;
913                 nb_unlinks = dev->data->nb_queues;
914         }
915
916         for (i = 0; i < nb_unlinks; i++)
917                 if (queues[i] >= dev->data->nb_queues) {
918                         rte_errno = -EINVAL;
919                         return 0;
920                 }
921
922         diag = (*dev->dev_ops->port_unlink)(dev, dev->data->ports[port_id],
923                                         queues, nb_unlinks);
924
925         if (diag < 0)
926                 return diag;
927
928         links_map = dev->data->links_map;
929         /* Point links_map to this port specific area */
930         links_map += (port_id * RTE_EVENT_MAX_QUEUES_PER_DEV);
931         for (i = 0; i < diag; i++)
932                 links_map[queues[i]] = EVENT_QUEUE_SERVICE_PRIORITY_INVALID;
933
934         return diag;
935 }
936
937 int
938 rte_event_port_links_get(uint8_t dev_id, uint8_t port_id,
939                          uint8_t queues[], uint8_t priorities[])
940 {
941         struct rte_eventdev *dev;
942         uint16_t *links_map;
943         int i, count = 0;
944
945         RTE_EVENTDEV_VALID_DEVID_OR_ERR_RET(dev_id, -EINVAL);
946         dev = &rte_eventdevs[dev_id];
947         if (!is_valid_port(dev, port_id)) {
948                 RTE_EDEV_LOG_ERR("Invalid port_id=%" PRIu8, port_id);
949                 return -EINVAL;
950         }
951
952         links_map = dev->data->links_map;
953         /* Point links_map to this port specific area */
954         links_map += (port_id * RTE_EVENT_MAX_QUEUES_PER_DEV);
955         for (i = 0; i < dev->data->nb_queues; i++) {
956                 if (links_map[i] != EVENT_QUEUE_SERVICE_PRIORITY_INVALID) {
957                         queues[count] = i;
958                         priorities[count] = (uint8_t)links_map[i];
959                         ++count;
960                 }
961         }
962         return count;
963 }
964
965 int
966 rte_event_dequeue_timeout_ticks(uint8_t dev_id, uint64_t ns,
967                                  uint64_t *timeout_ticks)
968 {
969         struct rte_eventdev *dev;
970
971         RTE_EVENTDEV_VALID_DEVID_OR_ERR_RET(dev_id, -EINVAL);
972         dev = &rte_eventdevs[dev_id];
973         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->timeout_ticks, -ENOTSUP);
974
975         if (timeout_ticks == NULL)
976                 return -EINVAL;
977
978         return (*dev->dev_ops->timeout_ticks)(dev, ns, timeout_ticks);
979 }
980
981 int
982 rte_event_dev_service_id_get(uint8_t dev_id, uint32_t *service_id)
983 {
984         struct rte_eventdev *dev;
985
986         RTE_EVENTDEV_VALID_DEVID_OR_ERR_RET(dev_id, -EINVAL);
987         dev = &rte_eventdevs[dev_id];
988
989         if (service_id == NULL)
990                 return -EINVAL;
991
992         if (dev->data->service_inited)
993                 *service_id = dev->data->service_id;
994
995         return dev->data->service_inited ? 0 : -ESRCH;
996 }
997
998 int
999 rte_event_dev_dump(uint8_t dev_id, FILE *f)
1000 {
1001         struct rte_eventdev *dev;
1002
1003         RTE_EVENTDEV_VALID_DEVID_OR_ERR_RET(dev_id, -EINVAL);
1004         dev = &rte_eventdevs[dev_id];
1005         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->dump, -ENOTSUP);
1006
1007         (*dev->dev_ops->dump)(dev, f);
1008         return 0;
1009
1010 }
1011
1012 static int
1013 xstats_get_count(uint8_t dev_id, enum rte_event_dev_xstats_mode mode,
1014                 uint8_t queue_port_id)
1015 {
1016         struct rte_eventdev *dev = &rte_eventdevs[dev_id];
1017         if (dev->dev_ops->xstats_get_names != NULL)
1018                 return (*dev->dev_ops->xstats_get_names)(dev, mode,
1019                                                         queue_port_id,
1020                                                         NULL, NULL, 0);
1021         return 0;
1022 }
1023
1024 int
1025 rte_event_dev_xstats_names_get(uint8_t dev_id,
1026                 enum rte_event_dev_xstats_mode mode, uint8_t queue_port_id,
1027                 struct rte_event_dev_xstats_name *xstats_names,
1028                 unsigned int *ids, unsigned int size)
1029 {
1030         RTE_EVENTDEV_VALID_DEVID_OR_ERR_RET(dev_id, -ENODEV);
1031         const int cnt_expected_entries = xstats_get_count(dev_id, mode,
1032                                                           queue_port_id);
1033         if (xstats_names == NULL || cnt_expected_entries < 0 ||
1034                         (int)size < cnt_expected_entries)
1035                 return cnt_expected_entries;
1036
1037         /* dev_id checked above */
1038         const struct rte_eventdev *dev = &rte_eventdevs[dev_id];
1039
1040         if (dev->dev_ops->xstats_get_names != NULL)
1041                 return (*dev->dev_ops->xstats_get_names)(dev, mode,
1042                                 queue_port_id, xstats_names, ids, size);
1043
1044         return -ENOTSUP;
1045 }
1046
1047 /* retrieve eventdev extended statistics */
1048 int
1049 rte_event_dev_xstats_get(uint8_t dev_id, enum rte_event_dev_xstats_mode mode,
1050                 uint8_t queue_port_id, const unsigned int ids[],
1051                 uint64_t values[], unsigned int n)
1052 {
1053         RTE_EVENTDEV_VALID_DEVID_OR_ERR_RET(dev_id, -ENODEV);
1054         const struct rte_eventdev *dev = &rte_eventdevs[dev_id];
1055
1056         /* implemented by the driver */
1057         if (dev->dev_ops->xstats_get != NULL)
1058                 return (*dev->dev_ops->xstats_get)(dev, mode, queue_port_id,
1059                                 ids, values, n);
1060         return -ENOTSUP;
1061 }
1062
1063 uint64_t
1064 rte_event_dev_xstats_by_name_get(uint8_t dev_id, const char *name,
1065                 unsigned int *id)
1066 {
1067         RTE_EVENTDEV_VALID_DEVID_OR_ERR_RET(dev_id, 0);
1068         const struct rte_eventdev *dev = &rte_eventdevs[dev_id];
1069         unsigned int temp = -1;
1070
1071         if (id != NULL)
1072                 *id = (unsigned int)-1;
1073         else
1074                 id = &temp; /* ensure driver never gets a NULL value */
1075
1076         /* implemented by driver */
1077         if (dev->dev_ops->xstats_get_by_name != NULL)
1078                 return (*dev->dev_ops->xstats_get_by_name)(dev, name, id);
1079         return -ENOTSUP;
1080 }
1081
1082 int rte_event_dev_xstats_reset(uint8_t dev_id,
1083                 enum rte_event_dev_xstats_mode mode, int16_t queue_port_id,
1084                 const uint32_t ids[], uint32_t nb_ids)
1085 {
1086         RTE_EVENTDEV_VALID_DEVID_OR_ERR_RET(dev_id, -EINVAL);
1087         struct rte_eventdev *dev = &rte_eventdevs[dev_id];
1088
1089         if (dev->dev_ops->xstats_reset != NULL)
1090                 return (*dev->dev_ops->xstats_reset)(dev, mode, queue_port_id,
1091                                                         ids, nb_ids);
1092         return -ENOTSUP;
1093 }
1094
1095 int
1096 rte_event_dev_start(uint8_t dev_id)
1097 {
1098         struct rte_eventdev *dev;
1099         int diag;
1100
1101         RTE_EDEV_LOG_DEBUG("Start dev_id=%" PRIu8, dev_id);
1102
1103         RTE_EVENTDEV_VALID_DEVID_OR_ERR_RET(dev_id, -EINVAL);
1104         dev = &rte_eventdevs[dev_id];
1105         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->dev_start, -ENOTSUP);
1106
1107         if (dev->data->dev_started != 0) {
1108                 RTE_EDEV_LOG_ERR("Device with dev_id=%" PRIu8 "already started",
1109                         dev_id);
1110                 return 0;
1111         }
1112
1113         diag = (*dev->dev_ops->dev_start)(dev);
1114         if (diag == 0)
1115                 dev->data->dev_started = 1;
1116         else
1117                 return diag;
1118
1119         return 0;
1120 }
1121
1122 void
1123 rte_event_dev_stop(uint8_t dev_id)
1124 {
1125         struct rte_eventdev *dev;
1126
1127         RTE_EDEV_LOG_DEBUG("Stop dev_id=%" PRIu8, dev_id);
1128
1129         RTE_EVENTDEV_VALID_DEVID_OR_RET(dev_id);
1130         dev = &rte_eventdevs[dev_id];
1131         RTE_FUNC_PTR_OR_RET(*dev->dev_ops->dev_stop);
1132
1133         if (dev->data->dev_started == 0) {
1134                 RTE_EDEV_LOG_ERR("Device with dev_id=%" PRIu8 "already stopped",
1135                         dev_id);
1136                 return;
1137         }
1138
1139         dev->data->dev_started = 0;
1140         (*dev->dev_ops->dev_stop)(dev);
1141 }
1142
1143 int
1144 rte_event_dev_close(uint8_t dev_id)
1145 {
1146         struct rte_eventdev *dev;
1147
1148         RTE_EVENTDEV_VALID_DEVID_OR_ERR_RET(dev_id, -EINVAL);
1149         dev = &rte_eventdevs[dev_id];
1150         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->dev_close, -ENOTSUP);
1151
1152         /* Device must be stopped before it can be closed */
1153         if (dev->data->dev_started == 1) {
1154                 RTE_EDEV_LOG_ERR("Device %u must be stopped before closing",
1155                                 dev_id);
1156                 return -EBUSY;
1157         }
1158
1159         return (*dev->dev_ops->dev_close)(dev);
1160 }
1161
1162 static inline int
1163 rte_eventdev_data_alloc(uint8_t dev_id, struct rte_eventdev_data **data,
1164                 int socket_id)
1165 {
1166         char mz_name[RTE_EVENTDEV_NAME_MAX_LEN];
1167         const struct rte_memzone *mz;
1168         int n;
1169
1170         /* Generate memzone name */
1171         n = snprintf(mz_name, sizeof(mz_name), "rte_eventdev_data_%u", dev_id);
1172         if (n >= (int)sizeof(mz_name))
1173                 return -EINVAL;
1174
1175         if (rte_eal_process_type() == RTE_PROC_PRIMARY) {
1176                 mz = rte_memzone_reserve(mz_name,
1177                                 sizeof(struct rte_eventdev_data),
1178                                 socket_id, 0);
1179         } else
1180                 mz = rte_memzone_lookup(mz_name);
1181
1182         if (mz == NULL)
1183                 return -ENOMEM;
1184
1185         *data = mz->addr;
1186         if (rte_eal_process_type() == RTE_PROC_PRIMARY)
1187                 memset(*data, 0, sizeof(struct rte_eventdev_data));
1188
1189         return 0;
1190 }
1191
1192 static inline uint8_t
1193 rte_eventdev_find_free_device_index(void)
1194 {
1195         uint8_t dev_id;
1196
1197         for (dev_id = 0; dev_id < RTE_EVENT_MAX_DEVS; dev_id++) {
1198                 if (rte_eventdevs[dev_id].attached ==
1199                                 RTE_EVENTDEV_DETACHED)
1200                         return dev_id;
1201         }
1202         return RTE_EVENT_MAX_DEVS;
1203 }
1204
1205 struct rte_eventdev *
1206 rte_event_pmd_allocate(const char *name, int socket_id)
1207 {
1208         struct rte_eventdev *eventdev;
1209         uint8_t dev_id;
1210
1211         if (rte_event_pmd_get_named_dev(name) != NULL) {
1212                 RTE_EDEV_LOG_ERR("Event device with name %s already "
1213                                 "allocated!", name);
1214                 return NULL;
1215         }
1216
1217         dev_id = rte_eventdev_find_free_device_index();
1218         if (dev_id == RTE_EVENT_MAX_DEVS) {
1219                 RTE_EDEV_LOG_ERR("Reached maximum number of event devices");
1220                 return NULL;
1221         }
1222
1223         eventdev = &rte_eventdevs[dev_id];
1224
1225         if (eventdev->data == NULL) {
1226                 struct rte_eventdev_data *eventdev_data = NULL;
1227
1228                 int retval = rte_eventdev_data_alloc(dev_id, &eventdev_data,
1229                                 socket_id);
1230
1231                 if (retval < 0 || eventdev_data == NULL)
1232                         return NULL;
1233
1234                 eventdev->data = eventdev_data;
1235
1236                 snprintf(eventdev->data->name, RTE_EVENTDEV_NAME_MAX_LEN,
1237                                 "%s", name);
1238
1239                 eventdev->data->dev_id = dev_id;
1240                 eventdev->data->socket_id = socket_id;
1241                 eventdev->data->dev_started = 0;
1242
1243                 eventdev->attached = RTE_EVENTDEV_ATTACHED;
1244
1245                 eventdev_globals.nb_devs++;
1246         }
1247
1248         return eventdev;
1249 }
1250
1251 int
1252 rte_event_pmd_release(struct rte_eventdev *eventdev)
1253 {
1254         int ret;
1255         char mz_name[RTE_EVENTDEV_NAME_MAX_LEN];
1256         const struct rte_memzone *mz;
1257
1258         if (eventdev == NULL)
1259                 return -EINVAL;
1260
1261         eventdev->attached = RTE_EVENTDEV_DETACHED;
1262         eventdev_globals.nb_devs--;
1263
1264         if (rte_eal_process_type() == RTE_PROC_PRIMARY) {
1265                 rte_free(eventdev->data->dev_private);
1266
1267                 /* Generate memzone name */
1268                 ret = snprintf(mz_name, sizeof(mz_name), "rte_eventdev_data_%u",
1269                                 eventdev->data->dev_id);
1270                 if (ret >= (int)sizeof(mz_name))
1271                         return -EINVAL;
1272
1273                 mz = rte_memzone_lookup(mz_name);
1274                 if (mz == NULL)
1275                         return -ENOMEM;
1276
1277                 ret = rte_memzone_free(mz);
1278                 if (ret)
1279                         return ret;
1280         }
1281
1282         eventdev->data = NULL;
1283         return 0;
1284 }