c69c611dd666f3fd9ab3880b5b78dbb4d7595006
[dpdk.git] / examples / l3fwd / l3fwd_event_generic.c
1 /* SPDX-License-Identifier: BSD-3-Clause
2  * Copyright(C) 2019 Marvell International Ltd.
3  */
4
5 #include <stdbool.h>
6
7 #include "l3fwd.h"
8 #include "l3fwd_event.h"
9
10 static uint32_t
11 l3fwd_event_device_setup_generic(void)
12 {
13         struct l3fwd_event_resources *evt_rsrc = l3fwd_get_eventdev_rsrc();
14         struct rte_event_dev_config event_d_conf = {
15                 .nb_events_limit  = 4096,
16                 .nb_event_queue_flows = 1024,
17                 .nb_event_port_dequeue_depth = 128,
18                 .nb_event_port_enqueue_depth = 128
19         };
20         struct rte_event_dev_info dev_info;
21         const uint8_t event_d_id = 0; /* Always use first event device only */
22         uint32_t event_queue_cfg = 0;
23         uint16_t ethdev_count = 0;
24         uint16_t num_workers = 0;
25         uint16_t port_id;
26         int ret;
27
28         RTE_ETH_FOREACH_DEV(port_id) {
29                 if ((evt_rsrc->port_mask & (1 << port_id)) == 0)
30                         continue;
31                 ethdev_count++;
32         }
33
34         /* Event device configuration */
35         rte_event_dev_info_get(event_d_id, &dev_info);
36         /* Enable implicit release */
37         if (dev_info.event_dev_cap & RTE_EVENT_DEV_CAP_IMPLICIT_RELEASE_DISABLE)
38                 evt_rsrc->disable_implicit_release = 0;
39
40         if (dev_info.event_dev_cap & RTE_EVENT_DEV_CAP_QUEUE_ALL_TYPES)
41                 event_queue_cfg |= RTE_EVENT_QUEUE_CFG_ALL_TYPES;
42
43         /* One queue for each ethdev port + one Tx adapter Single link queue. */
44         event_d_conf.nb_event_queues = ethdev_count + 1;
45         if (dev_info.max_event_queues < event_d_conf.nb_event_queues)
46                 event_d_conf.nb_event_queues = dev_info.max_event_queues;
47
48         if (dev_info.max_num_events < event_d_conf.nb_events_limit)
49                 event_d_conf.nb_events_limit = dev_info.max_num_events;
50
51         if (dev_info.max_event_queue_flows < event_d_conf.nb_event_queue_flows)
52                 event_d_conf.nb_event_queue_flows =
53                                                 dev_info.max_event_queue_flows;
54
55         if (dev_info.max_event_port_dequeue_depth <
56                                 event_d_conf.nb_event_port_dequeue_depth)
57                 event_d_conf.nb_event_port_dequeue_depth =
58                                 dev_info.max_event_port_dequeue_depth;
59
60         if (dev_info.max_event_port_enqueue_depth <
61                                 event_d_conf.nb_event_port_enqueue_depth)
62                 event_d_conf.nb_event_port_enqueue_depth =
63                                 dev_info.max_event_port_enqueue_depth;
64
65         num_workers = rte_lcore_count() - rte_service_lcore_count();
66         if (dev_info.max_event_ports < num_workers)
67                 num_workers = dev_info.max_event_ports;
68
69         event_d_conf.nb_event_ports = num_workers;
70         evt_rsrc->evp.nb_ports = num_workers;
71         evt_rsrc->evq.nb_queues = event_d_conf.nb_event_queues;
72
73         evt_rsrc->has_burst = !!(dev_info.event_dev_cap &
74                                     RTE_EVENT_DEV_CAP_BURST_MODE);
75
76         ret = rte_event_dev_configure(event_d_id, &event_d_conf);
77         if (ret < 0)
78                 rte_panic("Error in configuring event device\n");
79
80         evt_rsrc->event_d_id = event_d_id;
81         return event_queue_cfg;
82 }
83
84 static void
85 l3fwd_event_port_setup_generic(void)
86 {
87         struct l3fwd_event_resources *evt_rsrc = l3fwd_get_eventdev_rsrc();
88         uint8_t event_d_id = evt_rsrc->event_d_id;
89         struct rte_event_port_conf event_p_conf = {
90                 .dequeue_depth = 32,
91                 .enqueue_depth = 32,
92                 .new_event_threshold = 4096
93         };
94         struct rte_event_port_conf def_p_conf;
95         uint8_t event_p_id;
96         int32_t ret;
97
98         evt_rsrc->evp.event_p_id = (uint8_t *)malloc(sizeof(uint8_t) *
99                                         evt_rsrc->evp.nb_ports);
100         if (!evt_rsrc->evp.event_p_id)
101                 rte_panic("No space is available\n");
102
103         memset(&def_p_conf, 0, sizeof(struct rte_event_port_conf));
104         rte_event_port_default_conf_get(event_d_id, 0, &def_p_conf);
105
106         if (def_p_conf.new_event_threshold < event_p_conf.new_event_threshold)
107                 event_p_conf.new_event_threshold =
108                         def_p_conf.new_event_threshold;
109
110         if (def_p_conf.dequeue_depth < event_p_conf.dequeue_depth)
111                 event_p_conf.dequeue_depth = def_p_conf.dequeue_depth;
112
113         if (def_p_conf.enqueue_depth < event_p_conf.enqueue_depth)
114                 event_p_conf.enqueue_depth = def_p_conf.enqueue_depth;
115
116         event_p_conf.disable_implicit_release =
117                 evt_rsrc->disable_implicit_release;
118         evt_rsrc->deq_depth = def_p_conf.dequeue_depth;
119
120         for (event_p_id = 0; event_p_id < evt_rsrc->evp.nb_ports;
121                                                                 event_p_id++) {
122                 ret = rte_event_port_setup(event_d_id, event_p_id,
123                                            &event_p_conf);
124                 if (ret < 0)
125                         rte_panic("Error in configuring event port %d\n",
126                                   event_p_id);
127
128                 ret = rte_event_port_link(event_d_id, event_p_id,
129                                           evt_rsrc->evq.event_q_id,
130                                           NULL,
131                                           evt_rsrc->evq.nb_queues - 1);
132                 if (ret != (evt_rsrc->evq.nb_queues - 1))
133                         rte_panic("Error in linking event port %d to queues\n",
134                                   event_p_id);
135                 evt_rsrc->evp.event_p_id[event_p_id] = event_p_id;
136         }
137         /* init spinlock */
138         rte_spinlock_init(&evt_rsrc->evp.lock);
139
140         evt_rsrc->def_p_conf = event_p_conf;
141 }
142
143 static void
144 l3fwd_event_queue_setup_generic(uint32_t event_queue_cfg)
145 {
146         struct l3fwd_event_resources *evt_rsrc = l3fwd_get_eventdev_rsrc();
147         uint8_t event_d_id = evt_rsrc->event_d_id;
148         struct rte_event_queue_conf event_q_conf = {
149                 .nb_atomic_flows = 1024,
150                 .nb_atomic_order_sequences = 1024,
151                 .event_queue_cfg = event_queue_cfg,
152                 .priority = RTE_EVENT_DEV_PRIORITY_NORMAL
153         };
154         struct rte_event_queue_conf def_q_conf;
155         uint8_t event_q_id;
156         int32_t ret;
157
158         event_q_conf.schedule_type = evt_rsrc->sched_type;
159         evt_rsrc->evq.event_q_id = (uint8_t *)malloc(sizeof(uint8_t) *
160                                         evt_rsrc->evq.nb_queues);
161         if (!evt_rsrc->evq.event_q_id)
162                 rte_panic("Memory allocation failure\n");
163
164         rte_event_queue_default_conf_get(event_d_id, 0, &def_q_conf);
165         if (def_q_conf.nb_atomic_flows < event_q_conf.nb_atomic_flows)
166                 event_q_conf.nb_atomic_flows = def_q_conf.nb_atomic_flows;
167
168         for (event_q_id = 0; event_q_id < (evt_rsrc->evq.nb_queues - 1);
169                                                                 event_q_id++) {
170                 ret = rte_event_queue_setup(event_d_id, event_q_id,
171                                             &event_q_conf);
172                 if (ret < 0)
173                         rte_panic("Error in configuring event queue\n");
174                 evt_rsrc->evq.event_q_id[event_q_id] = event_q_id;
175         }
176
177         event_q_conf.event_queue_cfg |= RTE_EVENT_QUEUE_CFG_SINGLE_LINK;
178         event_q_conf.priority = RTE_EVENT_DEV_PRIORITY_HIGHEST,
179         ret = rte_event_queue_setup(event_d_id, event_q_id, &event_q_conf);
180         if (ret < 0)
181                 rte_panic("Error in configuring event queue for Tx adapter\n");
182         evt_rsrc->evq.event_q_id[event_q_id] = event_q_id;
183 }
184
185 static void
186 l3fwd_rx_tx_adapter_setup_generic(void)
187 {
188         struct l3fwd_event_resources *evt_rsrc = l3fwd_get_eventdev_rsrc();
189         struct rte_event_eth_rx_adapter_queue_conf eth_q_conf;
190         uint8_t event_d_id = evt_rsrc->event_d_id;
191         uint8_t rx_adptr_id = 0;
192         uint8_t tx_adptr_id = 0;
193         uint8_t tx_port_id = 0;
194         uint16_t port_id;
195         uint32_t service_id;
196         int32_t ret, i = 0;
197
198         memset(&eth_q_conf, 0, sizeof(eth_q_conf));
199         eth_q_conf.ev.priority = RTE_EVENT_DEV_PRIORITY_NORMAL;
200
201         /* Rx adapter setup */
202         evt_rsrc->rx_adptr.nb_rx_adptr = 1;
203         evt_rsrc->rx_adptr.rx_adptr = (uint8_t *)malloc(sizeof(uint8_t) *
204                                         evt_rsrc->rx_adptr.nb_rx_adptr);
205         if (!evt_rsrc->rx_adptr.rx_adptr) {
206                 free(evt_rsrc->evp.event_p_id);
207                 free(evt_rsrc->evq.event_q_id);
208                 rte_panic("Failed to allocate memory for Rx adapter\n");
209         }
210
211         ret = rte_event_eth_rx_adapter_create(rx_adptr_id, event_d_id,
212                                               &evt_rsrc->def_p_conf);
213         if (ret)
214                 rte_panic("Failed to create rx adapter\n");
215
216         /* Configure user requested sched type */
217         eth_q_conf.ev.sched_type = evt_rsrc->sched_type;
218         RTE_ETH_FOREACH_DEV(port_id) {
219                 if ((evt_rsrc->port_mask & (1 << port_id)) == 0)
220                         continue;
221                 eth_q_conf.ev.queue_id = evt_rsrc->evq.event_q_id[i];
222                 ret = rte_event_eth_rx_adapter_queue_add(rx_adptr_id, port_id,
223                                                          -1, &eth_q_conf);
224                 if (ret)
225                         rte_panic("Failed to add queues to Rx adapter\n");
226                 if (i < evt_rsrc->evq.nb_queues)
227                         i++;
228         }
229
230         ret = rte_event_eth_rx_adapter_service_id_get(rx_adptr_id, &service_id);
231         if (ret != -ESRCH && ret != 0)
232                 rte_panic("Error getting the service ID for rx adptr\n");
233
234         rte_service_runstate_set(service_id, 1);
235         rte_service_set_runstate_mapped_check(service_id, 0);
236         evt_rsrc->rx_adptr.service_id = service_id;
237
238         ret = rte_event_eth_rx_adapter_start(rx_adptr_id);
239         if (ret)
240                 rte_panic("Rx adapter[%d] start Failed\n", rx_adptr_id);
241
242         evt_rsrc->rx_adptr.rx_adptr[0] = rx_adptr_id;
243
244         /* Tx adapter setup */
245         evt_rsrc->tx_adptr.nb_tx_adptr = 1;
246         evt_rsrc->tx_adptr.tx_adptr = (uint8_t *)malloc(sizeof(uint8_t) *
247                                         evt_rsrc->tx_adptr.nb_tx_adptr);
248         if (!evt_rsrc->tx_adptr.tx_adptr) {
249                 free(evt_rsrc->rx_adptr.rx_adptr);
250                 free(evt_rsrc->evp.event_p_id);
251                 free(evt_rsrc->evq.event_q_id);
252                 rte_panic("Failed to allocate memory for Rx adapter\n");
253         }
254
255         ret = rte_event_eth_tx_adapter_create(tx_adptr_id, event_d_id,
256                                               &evt_rsrc->def_p_conf);
257         if (ret)
258                 rte_panic("Failed to create tx adapter\n");
259
260         RTE_ETH_FOREACH_DEV(port_id) {
261                 if ((evt_rsrc->port_mask & (1 << port_id)) == 0)
262                         continue;
263                 ret = rte_event_eth_tx_adapter_queue_add(tx_adptr_id, port_id,
264                                                          -1);
265                 if (ret)
266                         rte_panic("Failed to add queues to Tx adapter\n");
267         }
268
269         ret = rte_event_eth_tx_adapter_service_id_get(tx_adptr_id, &service_id);
270         if (ret != -ESRCH && ret != 0)
271                 rte_panic("Failed to get Tx adapter service ID\n");
272
273         rte_service_runstate_set(service_id, 1);
274         rte_service_set_runstate_mapped_check(service_id, 0);
275         evt_rsrc->tx_adptr.service_id = service_id;
276
277         ret = rte_event_eth_tx_adapter_event_port_get(tx_adptr_id, &tx_port_id);
278         if (ret)
279                 rte_panic("Failed to get Tx adapter port id: %d\n", ret);
280
281         ret = rte_event_port_link(event_d_id, tx_port_id,
282                                   &evt_rsrc->evq.event_q_id[
283                                         evt_rsrc->evq.nb_queues - 1],
284                                   NULL, 1);
285         if (ret != 1)
286                 rte_panic("Unable to link Tx adapter port to Tx queue:err=%d\n",
287                          ret);
288
289         ret = rte_event_eth_tx_adapter_start(tx_adptr_id);
290         if (ret)
291                 rte_panic("Tx adapter[%d] start Failed\n", tx_adptr_id);
292
293         evt_rsrc->tx_adptr.tx_adptr[0] = tx_adptr_id;
294 }
295
296 void
297 l3fwd_event_set_generic_ops(struct l3fwd_event_setup_ops *ops)
298 {
299         ops->event_device_setup = l3fwd_event_device_setup_generic;
300         ops->event_queue_setup = l3fwd_event_queue_setup_generic;
301         ops->event_port_setup = l3fwd_event_port_setup_generic;
302         ops->adapter_setup = l3fwd_rx_tx_adapter_setup_generic;
303 }