1 /* SPDX-License-Identifier: BSD-3-Clause
2 * Copyright(c) 2017 Cavium, Inc
3 */
4
5 #include <inttypes.h>
6
7 #include <rte_common.h>
8 #include <cryptodev_pmd.h>
9 #include <rte_debug.h>
10 #include <rte_dev.h>
11 #include <rte_eal.h>
12 #include <ethdev_driver.h>
13 #include <rte_event_eth_rx_adapter.h>
14 #include <rte_kvargs.h>
15 #include <rte_lcore.h>
16 #include <rte_log.h>
17 #include <rte_malloc.h>
18 #include <rte_memory.h>
19 #include <rte_bus_vdev.h>
20
21 #include "ssovf_evdev.h"
22 #include "timvf_evdev.h"
23 #include "otx_cryptodev_hw_access.h"
24
25 static uint8_t timvf_enable_stats;
26
27 RTE_LOG_REGISTER_DEFAULT(otx_logtype_ssovf, NOTICE);
28
29 /* SSOPF Mailbox messages */
30
31 struct ssovf_mbox_dev_info {
32 uint64_t min_deq_timeout_ns;
33 uint64_t max_deq_timeout_ns;
34 uint32_t max_num_events;
35 };
36
37 static int
ssovf_mbox_dev_info(struct ssovf_mbox_dev_info * info)38 ssovf_mbox_dev_info(struct ssovf_mbox_dev_info *info)
39 {
40 struct octeontx_mbox_hdr hdr = {0};
41 uint16_t len = sizeof(struct ssovf_mbox_dev_info);
42
43 hdr.coproc = SSO_COPROC;
44 hdr.msg = SSO_GET_DEV_INFO;
45 hdr.vfid = 0;
46
47 memset(info, 0, len);
48 return octeontx_mbox_send(&hdr, NULL, 0, info, len);
49 }
50
51 struct ssovf_mbox_getwork_wait {
52 uint64_t wait_ns;
53 };
54
55 static int
ssovf_mbox_getwork_tmo_set(uint32_t timeout_ns)56 ssovf_mbox_getwork_tmo_set(uint32_t timeout_ns)
57 {
58 struct octeontx_mbox_hdr hdr = {0};
59 struct ssovf_mbox_getwork_wait tmo_set;
60 uint16_t len = sizeof(struct ssovf_mbox_getwork_wait);
61 int ret;
62
63 hdr.coproc = SSO_COPROC;
64 hdr.msg = SSO_SET_GETWORK_WAIT;
65 hdr.vfid = 0;
66
67 tmo_set.wait_ns = timeout_ns;
68 ret = octeontx_mbox_send(&hdr, &tmo_set, len, NULL, 0);
69 if (ret)
70 ssovf_log_err("Failed to set getwork timeout(%d)", ret);
71
72 return ret;
73 }
74
75 struct ssovf_mbox_grp_pri {
76 uint8_t vhgrp_id;
77 uint8_t wgt_left; /* Read only */
78 uint8_t weight;
79 uint8_t affinity;
80 uint8_t priority;
81 };
82
83 static int
ssovf_mbox_priority_set(uint8_t queue,uint8_t prio)84 ssovf_mbox_priority_set(uint8_t queue, uint8_t prio)
85 {
86 struct octeontx_mbox_hdr hdr = {0};
87 struct ssovf_mbox_grp_pri grp;
88 uint16_t len = sizeof(struct ssovf_mbox_grp_pri);
89 int ret;
90
91 hdr.coproc = SSO_COPROC;
92 hdr.msg = SSO_GRP_SET_PRIORITY;
93 hdr.vfid = queue;
94
95 grp.vhgrp_id = queue;
96 grp.weight = 0xff;
97 grp.affinity = 0xff;
98 grp.priority = prio / 32; /* Normalize to 0 to 7 */
99
100 ret = octeontx_mbox_send(&hdr, &grp, len, NULL, 0);
101 if (ret)
102 ssovf_log_err("Failed to set grp=%d prio=%d", queue, prio);
103
104 return ret;
105 }
106
107 struct ssovf_mbox_convert_ns_getworks_iter {
108 uint64_t wait_ns;
109 uint32_t getwork_iter;/* Get_work iterations for the given wait_ns */
110 };
111
112 static int
ssovf_mbox_timeout_ticks(uint64_t ns,uint64_t * tmo_ticks)113 ssovf_mbox_timeout_ticks(uint64_t ns, uint64_t *tmo_ticks)
114 {
115 struct octeontx_mbox_hdr hdr = {0};
116 struct ssovf_mbox_convert_ns_getworks_iter ns2iter;
117 uint16_t len = sizeof(ns2iter);
118 int ret;
119
120 hdr.coproc = SSO_COPROC;
121 hdr.msg = SSO_CONVERT_NS_GETWORK_ITER;
122 hdr.vfid = 0;
123
124 memset(&ns2iter, 0, len);
125 ns2iter.wait_ns = ns;
126 ret = octeontx_mbox_send(&hdr, &ns2iter, len, &ns2iter, len);
127 if (ret < 0 || (ret != len)) {
128 ssovf_log_err("Failed to get tmo ticks ns=%"PRId64"", ns);
129 return -EIO;
130 }
131
132 *tmo_ticks = ns2iter.getwork_iter;
133 return 0;
134 }
135
136 static void
ssovf_info_get(struct rte_eventdev * dev,struct rte_event_dev_info * dev_info)137 ssovf_info_get(struct rte_eventdev *dev, struct rte_event_dev_info *dev_info)
138 {
139 struct ssovf_evdev *edev = ssovf_pmd_priv(dev);
140
141 dev_info->driver_name = RTE_STR(EVENTDEV_NAME_OCTEONTX_PMD);
142 dev_info->min_dequeue_timeout_ns = edev->min_deq_timeout_ns;
143 dev_info->max_dequeue_timeout_ns = edev->max_deq_timeout_ns;
144 dev_info->max_event_queues = edev->max_event_queues;
145 dev_info->max_event_queue_flows = (1ULL << 20);
146 dev_info->max_event_queue_priority_levels = 8;
147 dev_info->max_event_priority_levels = 1;
148 dev_info->max_event_ports = edev->max_event_ports;
149 dev_info->max_event_port_dequeue_depth = 1;
150 dev_info->max_event_port_enqueue_depth = 1;
151 dev_info->max_num_events = edev->max_num_events;
152 dev_info->event_dev_cap = RTE_EVENT_DEV_CAP_QUEUE_QOS |
153 RTE_EVENT_DEV_CAP_DISTRIBUTED_SCHED |
154 RTE_EVENT_DEV_CAP_QUEUE_ALL_TYPES|
155 RTE_EVENT_DEV_CAP_RUNTIME_PORT_LINK |
156 RTE_EVENT_DEV_CAP_MULTIPLE_QUEUE_PORT |
157 RTE_EVENT_DEV_CAP_NONSEQ_MODE |
158 RTE_EVENT_DEV_CAP_CARRY_FLOW_ID |
159 RTE_EVENT_DEV_CAP_MAINTENANCE_FREE;
160
161 }
162
163 static int
ssovf_configure(const struct rte_eventdev * dev)164 ssovf_configure(const struct rte_eventdev *dev)
165 {
166 struct rte_event_dev_config *conf = &dev->data->dev_conf;
167 struct ssovf_evdev *edev = ssovf_pmd_priv(dev);
168 uint64_t deq_tmo_ns;
169
170 ssovf_func_trace();
171 deq_tmo_ns = conf->dequeue_timeout_ns;
172 if (deq_tmo_ns == 0)
173 deq_tmo_ns = edev->min_deq_timeout_ns;
174
175 if (conf->event_dev_cfg & RTE_EVENT_DEV_CFG_PER_DEQUEUE_TIMEOUT) {
176 edev->is_timeout_deq = 1;
177 deq_tmo_ns = edev->min_deq_timeout_ns;
178 }
179 edev->nb_event_queues = conf->nb_event_queues;
180 edev->nb_event_ports = conf->nb_event_ports;
181
182 return ssovf_mbox_getwork_tmo_set(deq_tmo_ns);
183 }
184
185 static void
ssovf_queue_def_conf(struct rte_eventdev * dev,uint8_t queue_id,struct rte_event_queue_conf * queue_conf)186 ssovf_queue_def_conf(struct rte_eventdev *dev, uint8_t queue_id,
187 struct rte_event_queue_conf *queue_conf)
188 {
189 RTE_SET_USED(dev);
190 RTE_SET_USED(queue_id);
191
192 queue_conf->nb_atomic_flows = (1ULL << 20);
193 queue_conf->nb_atomic_order_sequences = (1ULL << 20);
194 queue_conf->event_queue_cfg = RTE_EVENT_QUEUE_CFG_ALL_TYPES;
195 queue_conf->priority = RTE_EVENT_DEV_PRIORITY_NORMAL;
196 }
197
198 static void
ssovf_queue_release(struct rte_eventdev * dev,uint8_t queue_id)199 ssovf_queue_release(struct rte_eventdev *dev, uint8_t queue_id)
200 {
201 RTE_SET_USED(dev);
202 RTE_SET_USED(queue_id);
203 }
204
205 static int
ssovf_queue_setup(struct rte_eventdev * dev,uint8_t queue_id,const struct rte_event_queue_conf * queue_conf)206 ssovf_queue_setup(struct rte_eventdev *dev, uint8_t queue_id,
207 const struct rte_event_queue_conf *queue_conf)
208 {
209 RTE_SET_USED(dev);
210 ssovf_func_trace("queue=%d prio=%d", queue_id, queue_conf->priority);
211
212 return ssovf_mbox_priority_set(queue_id, queue_conf->priority);
213 }
214
215 static void
ssovf_port_def_conf(struct rte_eventdev * dev,uint8_t port_id,struct rte_event_port_conf * port_conf)216 ssovf_port_def_conf(struct rte_eventdev *dev, uint8_t port_id,
217 struct rte_event_port_conf *port_conf)
218 {
219 struct ssovf_evdev *edev = ssovf_pmd_priv(dev);
220
221 RTE_SET_USED(port_id);
222 port_conf->new_event_threshold = edev->max_num_events;
223 port_conf->dequeue_depth = 1;
224 port_conf->enqueue_depth = 1;
225 port_conf->event_port_cfg = 0;
226 }
227
228 static void
ssovf_port_release(void * port)229 ssovf_port_release(void *port)
230 {
231 rte_free(port);
232 }
233
234 static int
ssovf_port_setup(struct rte_eventdev * dev,uint8_t port_id,const struct rte_event_port_conf * port_conf)235 ssovf_port_setup(struct rte_eventdev *dev, uint8_t port_id,
236 const struct rte_event_port_conf *port_conf)
237 {
238 struct ssows *ws;
239 uint32_t reg_off;
240 uint8_t q;
241 struct ssovf_evdev *edev = ssovf_pmd_priv(dev);
242
243 ssovf_func_trace("port=%d", port_id);
244 RTE_SET_USED(port_conf);
245
246 /* Free memory prior to re-allocation if needed */
247 if (dev->data->ports[port_id] != NULL) {
248 ssovf_port_release(dev->data->ports[port_id]);
249 dev->data->ports[port_id] = NULL;
250 }
251
252 /* Allocate event port memory */
253 ws = rte_zmalloc_socket("eventdev ssows",
254 sizeof(struct ssows), RTE_CACHE_LINE_SIZE,
255 dev->data->socket_id);
256 if (ws == NULL) {
257 ssovf_log_err("Failed to alloc memory for port=%d", port_id);
258 return -ENOMEM;
259 }
260
261 ws->base = ssovf_bar(OCTEONTX_SSO_HWS, port_id, 0);
262 if (ws->base == NULL) {
263 rte_free(ws);
264 ssovf_log_err("Failed to get hws base addr port=%d", port_id);
265 return -EINVAL;
266 }
267
268 reg_off = SSOW_VHWS_OP_GET_WORK0;
269 reg_off |= 1 << 4; /* Index_ggrp_mask (Use maskset zero) */
270 reg_off |= 1 << 16; /* Wait */
271 ws->getwork = ws->base + reg_off;
272 ws->port = port_id;
273 ws->lookup_mem = octeontx_fastpath_lookup_mem_get();
274
275 for (q = 0; q < edev->nb_event_queues; q++) {
276 ws->grps[q] = ssovf_bar(OCTEONTX_SSO_GROUP, q, 2);
277 if (ws->grps[q] == NULL) {
278 rte_free(ws);
279 ssovf_log_err("Failed to get grp%d base addr", q);
280 return -EINVAL;
281 }
282 }
283
284 dev->data->ports[port_id] = ws;
285 ssovf_log_dbg("port=%d ws=%p", port_id, ws);
286 return 0;
287 }
288
289 static int
ssovf_port_link(struct rte_eventdev * dev,void * port,const uint8_t queues[],const uint8_t priorities[],uint16_t nb_links)290 ssovf_port_link(struct rte_eventdev *dev, void *port, const uint8_t queues[],
291 const uint8_t priorities[], uint16_t nb_links)
292 {
293 uint16_t link;
294 uint64_t val;
295 struct ssows *ws = port;
296
297 ssovf_func_trace("port=%d nb_links=%d", ws->port, nb_links);
298 RTE_SET_USED(dev);
299 RTE_SET_USED(priorities);
300
301 for (link = 0; link < nb_links; link++) {
302 val = queues[link];
303 val |= (1ULL << 24); /* Set membership */
304 ssovf_write64(val, ws->base + SSOW_VHWS_GRPMSK_CHGX(0));
305 }
306 return (int)nb_links;
307 }
308
309 static int
ssovf_port_unlink(struct rte_eventdev * dev,void * port,uint8_t queues[],uint16_t nb_unlinks)310 ssovf_port_unlink(struct rte_eventdev *dev, void *port, uint8_t queues[],
311 uint16_t nb_unlinks)
312 {
313 uint16_t unlink;
314 uint64_t val;
315 struct ssows *ws = port;
316
317 ssovf_func_trace("port=%d nb_links=%d", ws->port, nb_unlinks);
318 RTE_SET_USED(dev);
319
320 for (unlink = 0; unlink < nb_unlinks; unlink++) {
321 val = queues[unlink];
322 val &= ~(1ULL << 24); /* Clear membership */
323 ssovf_write64(val, ws->base + SSOW_VHWS_GRPMSK_CHGX(0));
324 }
325 return (int)nb_unlinks;
326 }
327
328 static int
ssovf_timeout_ticks(struct rte_eventdev * dev,uint64_t ns,uint64_t * tmo_ticks)329 ssovf_timeout_ticks(struct rte_eventdev *dev, uint64_t ns, uint64_t *tmo_ticks)
330 {
331 RTE_SET_USED(dev);
332
333 return ssovf_mbox_timeout_ticks(ns, tmo_ticks);
334 }
335
336 static void
ssows_dump(struct ssows * ws,FILE * f)337 ssows_dump(struct ssows *ws, FILE *f)
338 {
339 uint8_t *base = ws->base;
340 uint64_t val;
341
342 fprintf(f, "\t---------------port%d---------------\n", ws->port);
343 val = ssovf_read64(base + SSOW_VHWS_TAG);
344 fprintf(f, "\ttag=0x%x tt=%d head=%d tail=%d grp=%d index=%d tail=%d\n",
345 (uint32_t)(val & 0xffffffff), (int)(val >> 32) & 0x3,
346 (int)(val >> 34) & 0x1, (int)(val >> 35) & 0x1,
347 (int)(val >> 36) & 0x3ff, (int)(val >> 48) & 0x3ff,
348 (int)(val >> 63) & 0x1);
349
350 val = ssovf_read64(base + SSOW_VHWS_WQP);
351 fprintf(f, "\twqp=0x%"PRIx64"\n", val);
352
353 val = ssovf_read64(base + SSOW_VHWS_LINKS);
354 fprintf(f, "\tindex=%d valid=%d revlink=%d tail=%d head=%d grp=%d\n",
355 (int)(val & 0x3ff), (int)(val >> 10) & 0x1,
356 (int)(val >> 11) & 0x3ff, (int)(val >> 26) & 0x1,
357 (int)(val >> 27) & 0x1, (int)(val >> 28) & 0x3ff);
358
359 val = ssovf_read64(base + SSOW_VHWS_PENDTAG);
360 fprintf(f, "\tptag=0x%x ptt=%d pgwi=%d pdesc=%d pgw=%d pgww=%d ps=%d\n",
361 (uint32_t)(val & 0xffffffff), (int)(val >> 32) & 0x3,
362 (int)(val >> 56) & 0x1, (int)(val >> 58) & 0x1,
363 (int)(val >> 61) & 0x1, (int)(val >> 62) & 0x1,
364 (int)(val >> 63) & 0x1);
365
366 val = ssovf_read64(base + SSOW_VHWS_PENDWQP);
367 fprintf(f, "\tpwqp=0x%"PRIx64"\n", val);
368 }
369
370 static int
ssovf_eth_rx_adapter_caps_get(const struct rte_eventdev * dev,const struct rte_eth_dev * eth_dev,uint32_t * caps)371 ssovf_eth_rx_adapter_caps_get(const struct rte_eventdev *dev,
372 const struct rte_eth_dev *eth_dev, uint32_t *caps)
373 {
374 int ret;
375 RTE_SET_USED(dev);
376
377 ret = strncmp(eth_dev->data->name, "eth_octeontx", 12);
378 if (ret)
379 *caps = RTE_EVENT_ETH_RX_ADAPTER_SW_CAP;
380 else
381 *caps = RTE_EVENT_ETH_RX_ADAPTER_CAP_INTERNAL_PORT;
382
383 return 0;
384 }
385
386 static int
ssovf_eth_rx_adapter_queue_add(const struct rte_eventdev * dev,const struct rte_eth_dev * eth_dev,int32_t rx_queue_id,const struct rte_event_eth_rx_adapter_queue_conf * queue_conf)387 ssovf_eth_rx_adapter_queue_add(const struct rte_eventdev *dev,
388 const struct rte_eth_dev *eth_dev, int32_t rx_queue_id,
389 const struct rte_event_eth_rx_adapter_queue_conf *queue_conf)
390 {
391 const struct octeontx_nic *nic = eth_dev->data->dev_private;
392 struct ssovf_evdev *edev = ssovf_pmd_priv(dev);
393 uint16_t free_idx = UINT16_MAX;
394 struct octeontx_rxq *rxq;
395 pki_mod_qos_t pki_qos;
396 uint8_t found = false;
397 int i, ret = 0;
398 void *old_ptr;
399
400 ret = strncmp(eth_dev->data->name, "eth_octeontx", 12);
401 if (ret)
402 return -EINVAL;
403
404 if (queue_conf->ev.sched_type == RTE_SCHED_TYPE_PARALLEL)
405 return -ENOTSUP;
406
407 /* eth_octeontx only supports one rq. */
408 rx_queue_id = rx_queue_id == -1 ? 0 : rx_queue_id;
409 rxq = eth_dev->data->rx_queues[rx_queue_id];
410 /* Add rxq pool to list of used pools and reduce available events. */
411 for (i = 0; i < edev->rxq_pools; i++) {
412 if (edev->rxq_pool_array[i] == (uintptr_t)rxq->pool) {
413 edev->rxq_pool_rcnt[i]++;
414 found = true;
415 break;
416 } else if (free_idx == UINT16_MAX &&
417 edev->rxq_pool_array[i] == 0) {
418 free_idx = i;
419 }
420 }
421
422 if (!found) {
423 uint16_t idx;
424
425 if (edev->available_events < rxq->pool->size) {
426 ssovf_log_err(
427 "Max available events %"PRIu32" requested events in rxq pool %"PRIu32"",
428 edev->available_events, rxq->pool->size);
429 return -ENOMEM;
430 }
431
432 if (free_idx != UINT16_MAX) {
433 idx = free_idx;
434 } else {
435 old_ptr = edev->rxq_pool_array;
436 edev->rxq_pools++;
437 edev->rxq_pool_array = rte_realloc(
438 edev->rxq_pool_array,
439 sizeof(uint64_t) * edev->rxq_pools, 0);
440 if (edev->rxq_pool_array == NULL) {
441 edev->rxq_pools--;
442 edev->rxq_pool_array = old_ptr;
443 return -ENOMEM;
444 }
445
446 old_ptr = edev->rxq_pool_rcnt;
447 edev->rxq_pool_rcnt = rte_realloc(
448 edev->rxq_pool_rcnt,
449 sizeof(uint8_t) * edev->rxq_pools, 0);
450 if (edev->rxq_pool_rcnt == NULL) {
451 edev->rxq_pools--;
452 edev->rxq_pool_rcnt = old_ptr;
453 return -ENOMEM;
454 }
455 idx = edev->rxq_pools - 1;
456 }
457
458 edev->rxq_pool_array[idx] = (uintptr_t)rxq->pool;
459 edev->rxq_pool_rcnt[idx] = 1;
460 edev->available_events -= rxq->pool->size;
461 }
462
463 memset(&pki_qos, 0, sizeof(pki_mod_qos_t));
464
465 pki_qos.port_type = 0;
466 pki_qos.index = 0;
467 pki_qos.mmask.f_tag_type = 1;
468 pki_qos.mmask.f_port_add = 1;
469 pki_qos.mmask.f_grp_ok = 1;
470 pki_qos.mmask.f_grp_bad = 1;
471 pki_qos.mmask.f_grptag_ok = 1;
472 pki_qos.mmask.f_grptag_bad = 1;
473
474 pki_qos.qos_entry.tag_type = queue_conf->ev.sched_type;
475 pki_qos.qos_entry.port_add = 0;
476 pki_qos.qos_entry.ggrp_ok = queue_conf->ev.queue_id;
477 pki_qos.qos_entry.ggrp_bad = queue_conf->ev.queue_id;
478 pki_qos.qos_entry.grptag_bad = 0;
479 pki_qos.qos_entry.grptag_ok = 0;
480
481 ret = octeontx_pki_port_modify_qos(nic->port_id, &pki_qos);
482 if (ret < 0)
483 ssovf_log_err("failed to modify QOS, port=%d, q=%d",
484 nic->port_id, queue_conf->ev.queue_id);
485
486 edev->rx_offload_flags = nic->rx_offload_flags;
487 edev->tx_offload_flags = nic->tx_offload_flags;
488 return ret;
489 }
490
491 static int
ssovf_eth_rx_adapter_queue_del(const struct rte_eventdev * dev,const struct rte_eth_dev * eth_dev,int32_t rx_queue_id)492 ssovf_eth_rx_adapter_queue_del(const struct rte_eventdev *dev,
493 const struct rte_eth_dev *eth_dev, int32_t rx_queue_id)
494 {
495 const struct octeontx_nic *nic = eth_dev->data->dev_private;
496 struct ssovf_evdev *edev = ssovf_pmd_priv(dev);
497 struct octeontx_rxq *rxq;
498 pki_del_qos_t pki_qos;
499 uint8_t found = false;
500 int i, ret = 0;
501
502 rx_queue_id = rx_queue_id == -1 ? 0 : rx_queue_id;
503 rxq = eth_dev->data->rx_queues[rx_queue_id];
504 for (i = 0; i < edev->rxq_pools; i++) {
505 if (edev->rxq_pool_array[i] == (uintptr_t)rxq->pool) {
506 found = true;
507 break;
508 }
509 }
510
511 if (found) {
512 edev->rxq_pool_rcnt[i]--;
513 if (edev->rxq_pool_rcnt[i] == 0)
514 edev->rxq_pool_array[i] = 0;
515 edev->available_events += rxq->pool->size;
516 }
517
518 ret = strncmp(eth_dev->data->name, "eth_octeontx", 12);
519 if (ret)
520 return -EINVAL;
521
522 pki_qos.port_type = 0;
523 pki_qos.index = 0;
524 memset(&pki_qos, 0, sizeof(pki_del_qos_t));
525 ret = octeontx_pki_port_delete_qos(nic->port_id, &pki_qos);
526 if (ret < 0)
527 ssovf_log_err("Failed to delete QOS port=%d, q=%d",
528 nic->port_id, rx_queue_id);
529 return ret;
530 }
531
532 static int
ssovf_eth_rx_adapter_start(const struct rte_eventdev * dev,const struct rte_eth_dev * eth_dev)533 ssovf_eth_rx_adapter_start(const struct rte_eventdev *dev,
534 const struct rte_eth_dev *eth_dev)
535 {
536 RTE_SET_USED(dev);
537 RTE_SET_USED(eth_dev);
538
539 return 0;
540 }
541
542
543 static int
ssovf_eth_rx_adapter_stop(const struct rte_eventdev * dev,const struct rte_eth_dev * eth_dev)544 ssovf_eth_rx_adapter_stop(const struct rte_eventdev *dev,
545 const struct rte_eth_dev *eth_dev)
546 {
547 RTE_SET_USED(dev);
548 RTE_SET_USED(eth_dev);
549
550 return 0;
551 }
552
553 static int
ssovf_eth_tx_adapter_caps_get(const struct rte_eventdev * dev,const struct rte_eth_dev * eth_dev,uint32_t * caps)554 ssovf_eth_tx_adapter_caps_get(const struct rte_eventdev *dev,
555 const struct rte_eth_dev *eth_dev, uint32_t *caps)
556 {
557 int ret;
558 RTE_SET_USED(dev);
559
560 ret = strncmp(eth_dev->data->name, "eth_octeontx", 12);
561 if (ret)
562 *caps = 0;
563 else
564 *caps = RTE_EVENT_ETH_TX_ADAPTER_CAP_INTERNAL_PORT;
565
566 return 0;
567 }
568
569 static int
ssovf_eth_tx_adapter_create(uint8_t id,const struct rte_eventdev * dev)570 ssovf_eth_tx_adapter_create(uint8_t id, const struct rte_eventdev *dev)
571 {
572 RTE_SET_USED(id);
573 RTE_SET_USED(dev);
574 return 0;
575 }
576
577 static int
ssovf_eth_tx_adapter_free(uint8_t id,const struct rte_eventdev * dev)578 ssovf_eth_tx_adapter_free(uint8_t id, const struct rte_eventdev *dev)
579 {
580 RTE_SET_USED(id);
581 RTE_SET_USED(dev);
582 return 0;
583 }
584
585 static int
ssovf_eth_tx_adapter_queue_add(uint8_t id,const struct rte_eventdev * dev,const struct rte_eth_dev * eth_dev,int32_t tx_queue_id)586 ssovf_eth_tx_adapter_queue_add(uint8_t id, const struct rte_eventdev *dev,
587 const struct rte_eth_dev *eth_dev, int32_t tx_queue_id)
588 {
589 RTE_SET_USED(id);
590 RTE_SET_USED(dev);
591 RTE_SET_USED(eth_dev);
592 RTE_SET_USED(tx_queue_id);
593 return 0;
594 }
595
596 static int
ssovf_eth_tx_adapter_queue_del(uint8_t id,const struct rte_eventdev * dev,const struct rte_eth_dev * eth_dev,int32_t tx_queue_id)597 ssovf_eth_tx_adapter_queue_del(uint8_t id, const struct rte_eventdev *dev,
598 const struct rte_eth_dev *eth_dev, int32_t tx_queue_id)
599 {
600 RTE_SET_USED(id);
601 RTE_SET_USED(dev);
602 RTE_SET_USED(eth_dev);
603 RTE_SET_USED(tx_queue_id);
604 return 0;
605 }
606
607 static int
ssovf_eth_tx_adapter_start(uint8_t id,const struct rte_eventdev * dev)608 ssovf_eth_tx_adapter_start(uint8_t id, const struct rte_eventdev *dev)
609 {
610 RTE_SET_USED(id);
611 RTE_SET_USED(dev);
612 return 0;
613 }
614
615 static int
ssovf_eth_tx_adapter_stop(uint8_t id,const struct rte_eventdev * dev)616 ssovf_eth_tx_adapter_stop(uint8_t id, const struct rte_eventdev *dev)
617 {
618 RTE_SET_USED(id);
619 RTE_SET_USED(dev);
620 return 0;
621 }
622
623
624 static void
ssovf_dump(struct rte_eventdev * dev,FILE * f)625 ssovf_dump(struct rte_eventdev *dev, FILE *f)
626 {
627 struct ssovf_evdev *edev = ssovf_pmd_priv(dev);
628 uint8_t port;
629
630 /* Dump SSOWVF debug registers */
631 for (port = 0; port < edev->nb_event_ports; port++)
632 ssows_dump(dev->data->ports[port], f);
633 }
634
635 static int
ssovf_start(struct rte_eventdev * dev)636 ssovf_start(struct rte_eventdev *dev)
637 {
638 struct ssovf_evdev *edev = ssovf_pmd_priv(dev);
639 struct ssows *ws;
640 uint8_t *base;
641 uint8_t i;
642
643 ssovf_func_trace();
644 for (i = 0; i < edev->nb_event_ports; i++) {
645 ws = dev->data->ports[i];
646 ssows_reset(ws);
647 ws->swtag_req = 0;
648 }
649
650 for (i = 0; i < edev->nb_event_queues; i++) {
651 /* Consume all the events through HWS0 */
652 ssows_flush_events(dev->data->ports[0], i, NULL, NULL);
653
654 base = ssovf_bar(OCTEONTX_SSO_GROUP, i, 0);
655 base += SSO_VHGRP_QCTL;
656 ssovf_write64(1, base); /* Enable SSO group */
657 }
658
659 ssovf_fastpath_fns_set(dev);
660 return 0;
661 }
662
663 static void
ssows_handle_event(void * arg,struct rte_event event)664 ssows_handle_event(void *arg, struct rte_event event)
665 {
666 struct rte_eventdev *dev = arg;
667
668 if (dev->dev_ops->dev_stop_flush != NULL)
669 dev->dev_ops->dev_stop_flush(dev->data->dev_id, event,
670 dev->data->dev_stop_flush_arg);
671 }
672
673 static void
ssovf_stop(struct rte_eventdev * dev)674 ssovf_stop(struct rte_eventdev *dev)
675 {
676 struct ssovf_evdev *edev = ssovf_pmd_priv(dev);
677 struct ssows *ws;
678 uint8_t *base;
679 uint8_t i;
680
681 ssovf_func_trace();
682 for (i = 0; i < edev->nb_event_ports; i++) {
683 ws = dev->data->ports[i];
684 ssows_reset(ws);
685 ws->swtag_req = 0;
686 }
687
688 for (i = 0; i < edev->nb_event_queues; i++) {
689 /* Consume all the events through HWS0 */
690 ssows_flush_events(dev->data->ports[0], i,
691 ssows_handle_event, dev);
692
693 base = ssovf_bar(OCTEONTX_SSO_GROUP, i, 0);
694 base += SSO_VHGRP_QCTL;
695 ssovf_write64(0, base); /* Disable SSO group */
696 }
697 }
698
699 static int
ssovf_close(struct rte_eventdev * dev)700 ssovf_close(struct rte_eventdev *dev)
701 {
702 struct ssovf_evdev *edev = ssovf_pmd_priv(dev);
703 uint8_t all_queues[RTE_EVENT_MAX_QUEUES_PER_DEV];
704 uint8_t i;
705
706 for (i = 0; i < edev->nb_event_queues; i++)
707 all_queues[i] = i;
708
709 for (i = 0; i < edev->nb_event_ports; i++)
710 ssovf_port_unlink(dev, dev->data->ports[i], all_queues,
711 edev->nb_event_queues);
712 return 0;
713 }
714
715 static int
ssovf_parsekv(const char * key __rte_unused,const char * value,void * opaque)716 ssovf_parsekv(const char *key __rte_unused, const char *value, void *opaque)
717 {
718 int *flag = opaque;
719 *flag = !!atoi(value);
720 return 0;
721 }
722
723 static int
ssovf_timvf_caps_get(const struct rte_eventdev * dev,uint64_t flags,uint32_t * caps,const struct event_timer_adapter_ops ** ops)724 ssovf_timvf_caps_get(const struct rte_eventdev *dev, uint64_t flags,
725 uint32_t *caps, const struct event_timer_adapter_ops **ops)
726 {
727 return timvf_timer_adapter_caps_get(dev, flags, caps, ops,
728 timvf_enable_stats);
729 }
730
731 static int
ssovf_crypto_adapter_caps_get(const struct rte_eventdev * dev,const struct rte_cryptodev * cdev,uint32_t * caps)732 ssovf_crypto_adapter_caps_get(const struct rte_eventdev *dev,
733 const struct rte_cryptodev *cdev, uint32_t *caps)
734 {
735 RTE_SET_USED(dev);
736 RTE_SET_USED(cdev);
737
738 *caps = RTE_EVENT_CRYPTO_ADAPTER_CAP_INTERNAL_PORT_OP_FWD |
739 RTE_EVENT_CRYPTO_ADAPTER_CAP_SESSION_PRIVATE_DATA;
740
741 return 0;
742 }
743
744 static int
ssovf_crypto_adapter_qp_add(const struct rte_eventdev * dev,const struct rte_cryptodev * cdev,int32_t queue_pair_id,const struct rte_event * event)745 ssovf_crypto_adapter_qp_add(const struct rte_eventdev *dev,
746 const struct rte_cryptodev *cdev,
747 int32_t queue_pair_id,
748 const struct rte_event *event)
749 {
750 struct cpt_instance *qp;
751 uint8_t qp_id;
752
753 RTE_SET_USED(event);
754
755 if (queue_pair_id == -1) {
756 for (qp_id = 0; qp_id < cdev->data->nb_queue_pairs; qp_id++) {
757 qp = cdev->data->queue_pairs[qp_id];
758 qp->ca_enabled = 1;
759 }
760 } else {
761 qp = cdev->data->queue_pairs[queue_pair_id];
762 qp->ca_enabled = 1;
763 }
764
765 ssovf_fastpath_fns_set((struct rte_eventdev *)(uintptr_t)dev);
766
767 return 0;
768 }
769
770 static int
ssovf_crypto_adapter_qp_del(const struct rte_eventdev * dev,const struct rte_cryptodev * cdev,int32_t queue_pair_id)771 ssovf_crypto_adapter_qp_del(const struct rte_eventdev *dev,
772 const struct rte_cryptodev *cdev,
773 int32_t queue_pair_id)
774 {
775 struct cpt_instance *qp;
776 uint8_t qp_id;
777
778 RTE_SET_USED(dev);
779
780 if (queue_pair_id == -1) {
781 for (qp_id = 0; qp_id < cdev->data->nb_queue_pairs; qp_id++) {
782 qp = cdev->data->queue_pairs[qp_id];
783 qp->ca_enabled = 0;
784 }
785 } else {
786 qp = cdev->data->queue_pairs[queue_pair_id];
787 qp->ca_enabled = 0;
788 }
789
790 return 0;
791 }
792
793 /* Initialize and register event driver with DPDK Application */
794 static struct eventdev_ops ssovf_ops = {
795 .dev_infos_get = ssovf_info_get,
796 .dev_configure = ssovf_configure,
797 .queue_def_conf = ssovf_queue_def_conf,
798 .queue_setup = ssovf_queue_setup,
799 .queue_release = ssovf_queue_release,
800 .port_def_conf = ssovf_port_def_conf,
801 .port_setup = ssovf_port_setup,
802 .port_release = ssovf_port_release,
803 .port_link = ssovf_port_link,
804 .port_unlink = ssovf_port_unlink,
805 .timeout_ticks = ssovf_timeout_ticks,
806
807 .eth_rx_adapter_caps_get = ssovf_eth_rx_adapter_caps_get,
808 .eth_rx_adapter_queue_add = ssovf_eth_rx_adapter_queue_add,
809 .eth_rx_adapter_queue_del = ssovf_eth_rx_adapter_queue_del,
810 .eth_rx_adapter_start = ssovf_eth_rx_adapter_start,
811 .eth_rx_adapter_stop = ssovf_eth_rx_adapter_stop,
812
813 .eth_tx_adapter_caps_get = ssovf_eth_tx_adapter_caps_get,
814 .eth_tx_adapter_create = ssovf_eth_tx_adapter_create,
815 .eth_tx_adapter_free = ssovf_eth_tx_adapter_free,
816 .eth_tx_adapter_queue_add = ssovf_eth_tx_adapter_queue_add,
817 .eth_tx_adapter_queue_del = ssovf_eth_tx_adapter_queue_del,
818 .eth_tx_adapter_start = ssovf_eth_tx_adapter_start,
819 .eth_tx_adapter_stop = ssovf_eth_tx_adapter_stop,
820
821 .timer_adapter_caps_get = ssovf_timvf_caps_get,
822
823 .crypto_adapter_caps_get = ssovf_crypto_adapter_caps_get,
824 .crypto_adapter_queue_pair_add = ssovf_crypto_adapter_qp_add,
825 .crypto_adapter_queue_pair_del = ssovf_crypto_adapter_qp_del,
826
827 .dev_selftest = test_eventdev_octeontx,
828
829 .dump = ssovf_dump,
830 .dev_start = ssovf_start,
831 .dev_stop = ssovf_stop,
832 .dev_close = ssovf_close
833 };
834
835 static int
ssovf_vdev_probe(struct rte_vdev_device * vdev)836 ssovf_vdev_probe(struct rte_vdev_device *vdev)
837 {
838 struct ssovf_info oinfo;
839 struct ssovf_mbox_dev_info info;
840 struct ssovf_evdev *edev;
841 struct rte_eventdev *eventdev;
842 static int ssovf_init_once;
843 const char *name;
844 const char *params;
845 int ret;
846
847 static const char *const args[] = {
848 TIMVF_ENABLE_STATS_ARG,
849 NULL
850 };
851
852 name = rte_vdev_device_name(vdev);
853 /* More than one instance is not supported */
854 if (ssovf_init_once) {
855 ssovf_log_err("Request to create >1 %s instance", name);
856 return -EINVAL;
857 }
858
859 params = rte_vdev_device_args(vdev);
860 if (params != NULL && params[0] != '\0') {
861 struct rte_kvargs *kvlist = rte_kvargs_parse(params, args);
862
863 if (!kvlist) {
864 ssovf_log_info(
865 "Ignoring unsupported params supplied '%s'",
866 name);
867 } else {
868 ret = rte_kvargs_process(kvlist, TIMVF_ENABLE_STATS_ARG,
869 ssovf_parsekv,
870 &timvf_enable_stats);
871 if (ret != 0) {
872 ssovf_log_err("%s: Error in timvf stats", name);
873 rte_kvargs_free(kvlist);
874 return ret;
875 }
876 }
877
878 rte_kvargs_free(kvlist);
879 }
880
881 eventdev = rte_event_pmd_vdev_init(name, sizeof(struct ssovf_evdev),
882 rte_socket_id());
883 if (eventdev == NULL) {
884 ssovf_log_err("Failed to create eventdev vdev %s", name);
885 return -ENOMEM;
886 }
887 eventdev->dev_ops = &ssovf_ops;
888
889 timvf_set_eventdevice(eventdev);
890
891 /* For secondary processes, the primary has done all the work */
892 if (rte_eal_process_type() != RTE_PROC_PRIMARY) {
893 ssovf_fastpath_fns_set(eventdev);
894 return 0;
895 }
896
897 octeontx_mbox_init();
898 ret = ssovf_info(&oinfo);
899 if (ret) {
900 ssovf_log_err("Failed to probe and validate ssovfs %d", ret);
901 goto error;
902 }
903
904 edev = ssovf_pmd_priv(eventdev);
905 edev->max_event_ports = oinfo.total_ssowvfs;
906 edev->max_event_queues = oinfo.total_ssovfs;
907 edev->is_timeout_deq = 0;
908
909 ret = ssovf_mbox_dev_info(&info);
910 if (ret < 0 || ret != sizeof(struct ssovf_mbox_dev_info)) {
911 ssovf_log_err("Failed to get mbox devinfo %d", ret);
912 goto error;
913 }
914
915 edev->min_deq_timeout_ns = info.min_deq_timeout_ns;
916 edev->max_deq_timeout_ns = info.max_deq_timeout_ns;
917 edev->max_num_events = info.max_num_events;
918 edev->available_events = info.max_num_events;
919
920 ssovf_log_dbg("min_deq_tmo=%" PRId64 " max_deq_tmo=%" PRId64
921 " max_evts=%d",
922 info.min_deq_timeout_ns, info.max_deq_timeout_ns,
923 info.max_num_events);
924
925 if (!edev->max_event_ports || !edev->max_event_queues) {
926 ssovf_log_err("Not enough eventdev resource queues=%d ports=%d",
927 edev->max_event_queues, edev->max_event_ports);
928 ret = -ENODEV;
929 goto error;
930 }
931
932 ssovf_log_info("Initializing %s domain=%d max_queues=%d max_ports=%d",
933 name, oinfo.domain, edev->max_event_queues,
934 edev->max_event_ports);
935
936 ssovf_init_once = 1;
937 event_dev_probing_finish(eventdev);
938 return 0;
939
940 error:
941 rte_event_pmd_vdev_uninit(name);
942 return ret;
943 }
944
945 static int
ssovf_vdev_remove(struct rte_vdev_device * vdev)946 ssovf_vdev_remove(struct rte_vdev_device *vdev)
947 {
948 const char *name;
949
950 name = rte_vdev_device_name(vdev);
951 ssovf_log_info("Closing %s", name);
952 return rte_event_pmd_vdev_uninit(name);
953 }
954
955 static struct rte_vdev_driver vdev_ssovf_pmd = {
956 .probe = ssovf_vdev_probe,
957 .remove = ssovf_vdev_remove
958 };
959
960 RTE_PMD_REGISTER_VDEV(EVENTDEV_NAME_OCTEONTX_PMD, vdev_ssovf_pmd);
961