test/crypto-perf: add vector file for AES-GCM
[dpdk.git] / examples / l2fwd-event / l2fwd_event_generic.c
1 /* SPDX-License-Identifier: BSD-3-Clause
2  * Copyright(C) 2019 Marvell International Ltd.
3  */
4
5 #include <stdbool.h>
6 #include <getopt.h>
7
8 #include <rte_cycles.h>
9 #include <rte_ethdev.h>
10 #include <rte_eventdev.h>
11 #include <rte_event_eth_rx_adapter.h>
12 #include <rte_event_eth_tx_adapter.h>
13 #include <rte_lcore.h>
14 #include <rte_spinlock.h>
15
16 #include "l2fwd_common.h"
17 #include "l2fwd_event.h"
18
19 static uint32_t
20 l2fwd_event_device_setup_generic(struct l2fwd_resources *rsrc)
21 {
22         struct l2fwd_event_resources *evt_rsrc = rsrc->evt_rsrc;
23         /* Configures event device as per below configuration. 8< */
24         struct rte_event_dev_config event_d_conf = {
25                 .nb_events_limit  = 4096,
26                 .nb_event_queue_flows = 1024,
27                 .nb_event_port_dequeue_depth = 128,
28                 .nb_event_port_enqueue_depth = 128
29         };
30         /* >8 End of configuration event device as per below configuration. */
31         struct rte_event_dev_info dev_info;
32         const uint8_t event_d_id = 0; /* Always use first event device only */
33         uint32_t event_queue_cfg = 0;
34         uint16_t ethdev_count = 0;
35         uint16_t num_workers = 0;
36         uint16_t port_id;
37         int ret;
38
39         RTE_ETH_FOREACH_DEV(port_id) {
40                 if ((rsrc->enabled_port_mask & (1 << port_id)) == 0)
41                         continue;
42                 ethdev_count++;
43         }
44
45         /* Event device configuration */
46         rte_event_dev_info_get(event_d_id, &dev_info);
47
48         /* Enable implicit release */
49         if (dev_info.event_dev_cap & RTE_EVENT_DEV_CAP_IMPLICIT_RELEASE_DISABLE)
50                 evt_rsrc->disable_implicit_release = 0;
51
52         if (dev_info.event_dev_cap & RTE_EVENT_DEV_CAP_QUEUE_ALL_TYPES)
53                 event_queue_cfg |= RTE_EVENT_QUEUE_CFG_ALL_TYPES;
54
55         /* One queue for each ethdev port + one Tx adapter Single link queue. */
56         event_d_conf.nb_event_queues = ethdev_count + 1;
57         if (dev_info.max_event_queues < event_d_conf.nb_event_queues)
58                 event_d_conf.nb_event_queues = dev_info.max_event_queues;
59
60         if (dev_info.max_num_events < event_d_conf.nb_events_limit)
61                 event_d_conf.nb_events_limit = dev_info.max_num_events;
62
63         if (dev_info.max_event_queue_flows < event_d_conf.nb_event_queue_flows)
64                 event_d_conf.nb_event_queue_flows =
65                                                 dev_info.max_event_queue_flows;
66
67         if (dev_info.max_event_port_dequeue_depth <
68                                 event_d_conf.nb_event_port_dequeue_depth)
69                 event_d_conf.nb_event_port_dequeue_depth =
70                                 dev_info.max_event_port_dequeue_depth;
71
72         if (dev_info.max_event_port_enqueue_depth <
73                                 event_d_conf.nb_event_port_enqueue_depth)
74                 event_d_conf.nb_event_port_enqueue_depth =
75                                 dev_info.max_event_port_enqueue_depth;
76
77         /* Ignore Main core and service cores. */
78         num_workers = rte_lcore_count() - 1 - rte_service_lcore_count();
79         if (dev_info.max_event_ports < num_workers)
80                 num_workers = dev_info.max_event_ports;
81
82         event_d_conf.nb_event_ports = num_workers;
83         evt_rsrc->evp.nb_ports = num_workers;
84         evt_rsrc->evq.nb_queues = event_d_conf.nb_event_queues;
85
86         evt_rsrc->has_burst = !!(dev_info.event_dev_cap &
87                                     RTE_EVENT_DEV_CAP_BURST_MODE);
88
89         ret = rte_event_dev_configure(event_d_id, &event_d_conf);
90         if (ret < 0)
91                 rte_panic("Error in configuring event device\n");
92
93         evt_rsrc->event_d_id = event_d_id;
94         return event_queue_cfg;
95 }
96
97 static void
98 l2fwd_event_port_setup_generic(struct l2fwd_resources *rsrc)
99 {
100         struct l2fwd_event_resources *evt_rsrc = rsrc->evt_rsrc;
101         uint8_t event_d_id = evt_rsrc->event_d_id;
102         /* Event port initialization. 8< */
103         struct rte_event_port_conf event_p_conf = {
104                 .dequeue_depth = 32,
105                 .enqueue_depth = 32,
106                 .new_event_threshold = 4096
107         };
108         struct rte_event_port_conf def_p_conf;
109         uint8_t event_p_id;
110         int32_t ret;
111
112         evt_rsrc->evp.event_p_id = (uint8_t *)malloc(sizeof(uint8_t) *
113                                         evt_rsrc->evp.nb_ports);
114         if (!evt_rsrc->evp.event_p_id)
115                 rte_panic("No space is available\n");
116
117         memset(&def_p_conf, 0, sizeof(struct rte_event_port_conf));
118         ret = rte_event_port_default_conf_get(event_d_id, 0, &def_p_conf);
119         if (ret < 0)
120                 rte_panic("Error to get default configuration of event port\n");
121
122         if (def_p_conf.new_event_threshold < event_p_conf.new_event_threshold)
123                 event_p_conf.new_event_threshold =
124                         def_p_conf.new_event_threshold;
125
126         if (def_p_conf.dequeue_depth < event_p_conf.dequeue_depth)
127                 event_p_conf.dequeue_depth = def_p_conf.dequeue_depth;
128
129         if (def_p_conf.enqueue_depth < event_p_conf.enqueue_depth)
130                 event_p_conf.enqueue_depth = def_p_conf.enqueue_depth;
131
132         event_p_conf.event_port_cfg = 0;
133         if (evt_rsrc->disable_implicit_release)
134                 event_p_conf.event_port_cfg |=
135                         RTE_EVENT_PORT_CFG_DISABLE_IMPL_REL;
136
137         evt_rsrc->deq_depth = def_p_conf.dequeue_depth;
138
139         for (event_p_id = 0; event_p_id < evt_rsrc->evp.nb_ports;
140                                                                 event_p_id++) {
141                 ret = rte_event_port_setup(event_d_id, event_p_id,
142                                            &event_p_conf);
143                 if (ret < 0)
144                         rte_panic("Error in configuring event port %d\n",
145                                   event_p_id);
146
147                 ret = rte_event_port_link(event_d_id, event_p_id,
148                                           evt_rsrc->evq.event_q_id,
149                                           NULL,
150                                           evt_rsrc->evq.nb_queues - 1);
151                 if (ret != (evt_rsrc->evq.nb_queues - 1))
152                         rte_panic("Error in linking event port %d to queues\n",
153                                   event_p_id);
154                 evt_rsrc->evp.event_p_id[event_p_id] = event_p_id;
155                 /* >8 End of event port initialization. */
156         }
157         /* init spinlock */
158         rte_spinlock_init(&evt_rsrc->evp.lock);
159
160         evt_rsrc->def_p_conf = event_p_conf;
161 }
162
163 static void
164 l2fwd_event_queue_setup_generic(struct l2fwd_resources *rsrc,
165                           uint32_t event_queue_cfg)
166 {
167         struct l2fwd_event_resources *evt_rsrc = rsrc->evt_rsrc;
168         uint8_t event_d_id = evt_rsrc->event_d_id;
169         /* Event queue initialization. 8< */
170         struct rte_event_queue_conf event_q_conf = {
171                 .nb_atomic_flows = 1024,
172                 .nb_atomic_order_sequences = 1024,
173                 .event_queue_cfg = event_queue_cfg,
174                 .priority = RTE_EVENT_DEV_PRIORITY_NORMAL
175         };
176         struct rte_event_queue_conf def_q_conf;
177         uint8_t event_q_id;
178         int32_t ret;
179
180         event_q_conf.schedule_type = rsrc->sched_type;
181         evt_rsrc->evq.event_q_id = (uint8_t *)malloc(sizeof(uint8_t) *
182                                         evt_rsrc->evq.nb_queues);
183         if (!evt_rsrc->evq.event_q_id)
184                 rte_panic("Memory allocation failure\n");
185
186         ret = rte_event_queue_default_conf_get(event_d_id, 0, &def_q_conf);
187         if (ret < 0)
188                 rte_panic("Error to get default config of event queue\n");
189         /* >8 End of event queue initialization. */
190
191         if (def_q_conf.nb_atomic_flows < event_q_conf.nb_atomic_flows)
192                 event_q_conf.nb_atomic_flows = def_q_conf.nb_atomic_flows;
193
194         for (event_q_id = 0; event_q_id < (evt_rsrc->evq.nb_queues - 1);
195                                                                 event_q_id++) {
196                 ret = rte_event_queue_setup(event_d_id, event_q_id,
197                                             &event_q_conf);
198                 if (ret < 0)
199                         rte_panic("Error in configuring event queue\n");
200                 evt_rsrc->evq.event_q_id[event_q_id] = event_q_id;
201         }
202
203         event_q_conf.event_queue_cfg |= RTE_EVENT_QUEUE_CFG_SINGLE_LINK;
204         event_q_conf.priority = RTE_EVENT_DEV_PRIORITY_HIGHEST,
205         ret = rte_event_queue_setup(event_d_id, event_q_id, &event_q_conf);
206         if (ret < 0)
207                 rte_panic("Error in configuring event queue for Tx adapter\n");
208         evt_rsrc->evq.event_q_id[event_q_id] = event_q_id;
209 }
210
211 static void
212 l2fwd_rx_tx_adapter_setup_generic(struct l2fwd_resources *rsrc)
213 {
214         struct l2fwd_event_resources *evt_rsrc = rsrc->evt_rsrc;
215         struct rte_event_eth_rx_adapter_queue_conf eth_q_conf;
216         uint8_t event_d_id = evt_rsrc->event_d_id;
217         uint8_t rx_adptr_id = 0;
218         uint8_t tx_adptr_id = 0;
219         uint8_t tx_port_id = 0;
220         uint16_t port_id;
221         uint32_t service_id;
222         int32_t ret, i = 0;
223
224         memset(&eth_q_conf, 0, sizeof(eth_q_conf));
225         eth_q_conf.ev.priority = RTE_EVENT_DEV_PRIORITY_NORMAL;
226
227         /* Rx adapter setup */
228         evt_rsrc->rx_adptr.nb_rx_adptr = 1;
229         evt_rsrc->rx_adptr.rx_adptr = (uint8_t *)malloc(sizeof(uint8_t) *
230                                         evt_rsrc->rx_adptr.nb_rx_adptr);
231         if (!evt_rsrc->rx_adptr.rx_adptr) {
232                 free(evt_rsrc->evp.event_p_id);
233                 free(evt_rsrc->evq.event_q_id);
234                 rte_panic("Failed to allocate memery for Rx adapter\n");
235         }
236
237         ret = rte_event_eth_rx_adapter_create(rx_adptr_id, event_d_id,
238                                               &evt_rsrc->def_p_conf);
239         if (ret)
240                 rte_panic("Failed to create rx adapter\n");
241
242         /* Configure user requested sched type */
243         eth_q_conf.ev.sched_type = rsrc->sched_type;
244         RTE_ETH_FOREACH_DEV(port_id) {
245                 if ((rsrc->enabled_port_mask & (1 << port_id)) == 0)
246                         continue;
247                 eth_q_conf.ev.queue_id = evt_rsrc->evq.event_q_id[i];
248                 if (rsrc->evt_vec.enabled) {
249                         uint32_t cap;
250
251                         if (rte_event_eth_rx_adapter_caps_get(event_d_id,
252                                                               port_id, &cap))
253                                 rte_panic(
254                                         "Failed to get event rx adapter capability");
255
256                         if (cap & RTE_EVENT_ETH_RX_ADAPTER_CAP_EVENT_VECTOR) {
257                                 eth_q_conf.vector_sz = rsrc->evt_vec.size;
258                                 eth_q_conf.vector_timeout_ns =
259                                         rsrc->evt_vec.timeout_ns;
260                                 eth_q_conf.vector_mp = rsrc->evt_vec_pool;
261                                 eth_q_conf.rx_queue_flags |=
262                                 RTE_EVENT_ETH_RX_ADAPTER_QUEUE_EVENT_VECTOR;
263                         } else {
264                                 rte_panic(
265                                         "Rx adapter doesn't support event vector");
266                         }
267                 }
268
269                 ret = rte_event_eth_rx_adapter_queue_add(rx_adptr_id, port_id,
270                                                          -1, &eth_q_conf);
271                 if (ret)
272                         rte_panic("Failed to add queues to Rx adapter\n");
273                 if (i < evt_rsrc->evq.nb_queues)
274                         i++;
275         }
276
277         ret = rte_event_eth_rx_adapter_service_id_get(rx_adptr_id, &service_id);
278         if (ret != -ESRCH && ret != 0)
279                 rte_panic("Error getting the service ID for rx adptr\n");
280
281         rte_service_runstate_set(service_id, 1);
282         rte_service_set_runstate_mapped_check(service_id, 0);
283         evt_rsrc->rx_adptr.service_id = service_id;
284
285         ret = rte_event_eth_rx_adapter_start(rx_adptr_id);
286         if (ret)
287                 rte_panic("Rx adapter[%d] start Failed\n", rx_adptr_id);
288
289         evt_rsrc->rx_adptr.rx_adptr[0] = rx_adptr_id;
290
291         /* Tx adapter setup */
292         evt_rsrc->tx_adptr.nb_tx_adptr = 1;
293         evt_rsrc->tx_adptr.tx_adptr = (uint8_t *)malloc(sizeof(uint8_t) *
294                                         evt_rsrc->tx_adptr.nb_tx_adptr);
295         if (!evt_rsrc->tx_adptr.tx_adptr) {
296                 free(evt_rsrc->rx_adptr.rx_adptr);
297                 free(evt_rsrc->evp.event_p_id);
298                 free(evt_rsrc->evq.event_q_id);
299                 rte_panic("Failed to allocate memery for Rx adapter\n");
300         }
301
302         ret = rte_event_eth_tx_adapter_create(tx_adptr_id, event_d_id,
303                                               &evt_rsrc->def_p_conf);
304         if (ret)
305                 rte_panic("Failed to create tx adapter\n");
306
307         RTE_ETH_FOREACH_DEV(port_id) {
308                 if ((rsrc->enabled_port_mask & (1 << port_id)) == 0)
309                         continue;
310                 ret = rte_event_eth_tx_adapter_queue_add(tx_adptr_id, port_id,
311                                                          -1);
312                 if (ret)
313                         rte_panic("Failed to add queues to Tx adapter\n");
314         }
315
316         ret = rte_event_eth_tx_adapter_service_id_get(tx_adptr_id, &service_id);
317         if (ret != -ESRCH && ret != 0)
318                 rte_panic("Failed to get Tx adapter service ID\n");
319
320         rte_service_runstate_set(service_id, 1);
321         rte_service_set_runstate_mapped_check(service_id, 0);
322         evt_rsrc->tx_adptr.service_id = service_id;
323
324         /* Extra port created. 8< */
325         ret = rte_event_eth_tx_adapter_event_port_get(tx_adptr_id, &tx_port_id);
326         if (ret)
327                 rte_panic("Failed to get Tx adapter port id: %d\n", ret);
328
329         ret = rte_event_port_link(event_d_id, tx_port_id,
330                                   &evt_rsrc->evq.event_q_id[
331                                         evt_rsrc->evq.nb_queues - 1],
332                                   NULL, 1);
333         if (ret != 1)
334                 rte_panic("Unable to link Tx adapter port to Tx queue:err=%d\n",
335                          ret);
336         /* >8 End of extra port created. */
337
338         ret = rte_event_eth_tx_adapter_start(tx_adptr_id);
339         if (ret)
340                 rte_panic("Tx adapter[%d] start Failed\n", tx_adptr_id);
341
342         evt_rsrc->tx_adptr.tx_adptr[0] = tx_adptr_id;
343 }
344
345 void
346 l2fwd_event_set_generic_ops(struct event_setup_ops *ops)
347 {
348         ops->event_device_setup = l2fwd_event_device_setup_generic;
349         ops->event_queue_setup = l2fwd_event_queue_setup_generic;
350         ops->event_port_setup = l2fwd_event_port_setup_generic;
351         ops->adapter_setup = l2fwd_rx_tx_adapter_setup_generic;
352 }