test mbuf attach
[dpdk.git] / examples / l2fwd-event / l2fwd_event_internal_port.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_internal_port(struct l2fwd_resources *rsrc)
21 {
22         struct l2fwd_event_resources *evt_rsrc = rsrc->evt_rsrc;
23         struct rte_event_dev_config event_d_conf = {
24                 .nb_events_limit  = 4096,
25                 .nb_event_queue_flows = 1024,
26                 .nb_event_port_dequeue_depth = 128,
27                 .nb_event_port_enqueue_depth = 128
28         };
29         struct rte_event_dev_info dev_info;
30         const uint8_t event_d_id = 0; /* Always use first event device only */
31         uint32_t event_queue_cfg = 0;
32         uint16_t ethdev_count = 0;
33         uint16_t num_workers = 0;
34         uint16_t port_id;
35         int ret;
36
37         RTE_ETH_FOREACH_DEV(port_id) {
38                 if ((rsrc->enabled_port_mask & (1 << port_id)) == 0)
39                         continue;
40                 ethdev_count++;
41         }
42
43         /* Event device configurtion */
44         rte_event_dev_info_get(event_d_id, &dev_info);
45
46         /* Enable implicit release */
47         if (dev_info.event_dev_cap & RTE_EVENT_DEV_CAP_IMPLICIT_RELEASE_DISABLE)
48                 evt_rsrc->disable_implicit_release = 0;
49
50         if (dev_info.event_dev_cap & RTE_EVENT_DEV_CAP_QUEUE_ALL_TYPES)
51                 event_queue_cfg |= RTE_EVENT_QUEUE_CFG_ALL_TYPES;
52
53         event_d_conf.nb_event_queues = ethdev_count;
54         if (dev_info.max_event_queues < event_d_conf.nb_event_queues)
55                 event_d_conf.nb_event_queues = dev_info.max_event_queues;
56
57         if (dev_info.max_num_events < event_d_conf.nb_events_limit)
58                 event_d_conf.nb_events_limit = dev_info.max_num_events;
59
60         if (dev_info.max_event_queue_flows < event_d_conf.nb_event_queue_flows)
61                 event_d_conf.nb_event_queue_flows =
62                                                 dev_info.max_event_queue_flows;
63
64         if (dev_info.max_event_port_dequeue_depth <
65                                 event_d_conf.nb_event_port_dequeue_depth)
66                 event_d_conf.nb_event_port_dequeue_depth =
67                                 dev_info.max_event_port_dequeue_depth;
68
69         if (dev_info.max_event_port_enqueue_depth <
70                                 event_d_conf.nb_event_port_enqueue_depth)
71                 event_d_conf.nb_event_port_enqueue_depth =
72                                 dev_info.max_event_port_enqueue_depth;
73
74         /* Ignore Master core. */
75         num_workers = rte_lcore_count() - 1;
76         if (dev_info.max_event_ports < num_workers)
77                 num_workers = dev_info.max_event_ports;
78
79         event_d_conf.nb_event_ports = num_workers;
80         evt_rsrc->evp.nb_ports = num_workers;
81         evt_rsrc->evq.nb_queues = event_d_conf.nb_event_queues;
82         evt_rsrc->has_burst = !!(dev_info.event_dev_cap &
83                                     RTE_EVENT_DEV_CAP_BURST_MODE);
84
85         ret = rte_event_dev_configure(event_d_id, &event_d_conf);
86         if (ret < 0)
87                 rte_panic("Error in configuring event device\n");
88
89         evt_rsrc->event_d_id = event_d_id;
90         return event_queue_cfg;
91 }
92
93 static void
94 l2fwd_event_port_setup_internal_port(struct l2fwd_resources *rsrc)
95 {
96         struct l2fwd_event_resources *evt_rsrc = rsrc->evt_rsrc;
97         uint8_t event_d_id = evt_rsrc->event_d_id;
98         struct rte_event_port_conf event_p_conf = {
99                 .dequeue_depth = 32,
100                 .enqueue_depth = 32,
101                 .new_event_threshold = 4096
102         };
103         struct rte_event_port_conf def_p_conf;
104         uint8_t event_p_id;
105         int32_t ret;
106
107         evt_rsrc->evp.event_p_id = (uint8_t *)malloc(sizeof(uint8_t) *
108                                         evt_rsrc->evp.nb_ports);
109         if (!evt_rsrc->evp.event_p_id)
110                 rte_panic("Failed to allocate memory for Event Ports\n");
111
112         ret = rte_event_port_default_conf_get(event_d_id, 0, &def_p_conf);
113         if (ret < 0)
114                 rte_panic("Error to get default configuration of event port\n");
115
116         if (def_p_conf.new_event_threshold < event_p_conf.new_event_threshold)
117                 event_p_conf.new_event_threshold =
118                                                 def_p_conf.new_event_threshold;
119
120         if (def_p_conf.dequeue_depth < event_p_conf.dequeue_depth)
121                 event_p_conf.dequeue_depth = def_p_conf.dequeue_depth;
122
123         if (def_p_conf.enqueue_depth < event_p_conf.enqueue_depth)
124                 event_p_conf.enqueue_depth = def_p_conf.enqueue_depth;
125
126         event_p_conf.disable_implicit_release =
127                 evt_rsrc->disable_implicit_release;
128
129         for (event_p_id = 0; event_p_id < evt_rsrc->evp.nb_ports;
130                                                                 event_p_id++) {
131                 ret = rte_event_port_setup(event_d_id, event_p_id,
132                                            &event_p_conf);
133                 if (ret < 0)
134                         rte_panic("Error in configuring event port %d\n",
135                                   event_p_id);
136
137                 ret = rte_event_port_link(event_d_id, event_p_id, NULL,
138                                           NULL, 0);
139                 if (ret < 0)
140                         rte_panic("Error in linking event port %d to queue\n",
141                                   event_p_id);
142                 evt_rsrc->evp.event_p_id[event_p_id] = event_p_id;
143
144                 /* init spinlock */
145                 rte_spinlock_init(&evt_rsrc->evp.lock);
146         }
147
148         evt_rsrc->def_p_conf = event_p_conf;
149 }
150
151 static void
152 l2fwd_event_queue_setup_internal_port(struct l2fwd_resources *rsrc,
153                                 uint32_t event_queue_cfg)
154 {
155         struct l2fwd_event_resources *evt_rsrc = rsrc->evt_rsrc;
156         uint8_t event_d_id = evt_rsrc->event_d_id;
157         struct rte_event_queue_conf event_q_conf = {
158                 .nb_atomic_flows = 1024,
159                 .nb_atomic_order_sequences = 1024,
160                 .event_queue_cfg = event_queue_cfg,
161                 .priority = RTE_EVENT_DEV_PRIORITY_NORMAL
162         };
163         struct rte_event_queue_conf def_q_conf;
164         uint8_t event_q_id = 0;
165         int32_t ret;
166
167         ret = rte_event_queue_default_conf_get(event_d_id, event_q_id,
168                                                &def_q_conf);
169         if (ret < 0)
170                 rte_panic("Error to get default config of event queue\n");
171
172         if (def_q_conf.nb_atomic_flows < event_q_conf.nb_atomic_flows)
173                 event_q_conf.nb_atomic_flows = def_q_conf.nb_atomic_flows;
174
175         if (def_q_conf.nb_atomic_order_sequences <
176                                         event_q_conf.nb_atomic_order_sequences)
177                 event_q_conf.nb_atomic_order_sequences =
178                                         def_q_conf.nb_atomic_order_sequences;
179
180         event_q_conf.event_queue_cfg = event_queue_cfg;
181         event_q_conf.schedule_type = rsrc->sched_type;
182         evt_rsrc->evq.event_q_id = (uint8_t *)malloc(sizeof(uint8_t) *
183                                         evt_rsrc->evq.nb_queues);
184         if (!evt_rsrc->evq.event_q_id)
185                 rte_panic("Memory allocation failure\n");
186
187         for (event_q_id = 0; event_q_id < evt_rsrc->evq.nb_queues;
188                                                                 event_q_id++) {
189                 ret = rte_event_queue_setup(event_d_id, event_q_id,
190                                             &event_q_conf);
191                 if (ret < 0)
192                         rte_panic("Error in configuring event queue\n");
193                 evt_rsrc->evq.event_q_id[event_q_id] = event_q_id;
194         }
195 }
196
197 static void
198 l2fwd_rx_tx_adapter_setup_internal_port(struct l2fwd_resources *rsrc)
199 {
200         struct l2fwd_event_resources *evt_rsrc = rsrc->evt_rsrc;
201         struct rte_event_eth_rx_adapter_queue_conf eth_q_conf;
202         uint8_t event_d_id = evt_rsrc->event_d_id;
203         uint16_t adapter_id = 0;
204         uint16_t nb_adapter = 0;
205         uint16_t port_id;
206         uint8_t q_id = 0;
207         int ret;
208
209         memset(&eth_q_conf, 0, sizeof(eth_q_conf));
210         eth_q_conf.ev.priority = RTE_EVENT_DEV_PRIORITY_NORMAL;
211
212         RTE_ETH_FOREACH_DEV(port_id) {
213                 if ((rsrc->enabled_port_mask & (1 << port_id)) == 0)
214                         continue;
215                 nb_adapter++;
216         }
217
218         evt_rsrc->rx_adptr.nb_rx_adptr = nb_adapter;
219         evt_rsrc->rx_adptr.rx_adptr = (uint8_t *)malloc(sizeof(uint8_t) *
220                                         evt_rsrc->rx_adptr.nb_rx_adptr);
221         if (!evt_rsrc->rx_adptr.rx_adptr) {
222                 free(evt_rsrc->evp.event_p_id);
223                 free(evt_rsrc->evq.event_q_id);
224                 rte_panic("Failed to allocate memery for Rx adapter\n");
225         }
226
227
228         RTE_ETH_FOREACH_DEV(port_id) {
229                 if ((rsrc->enabled_port_mask & (1 << port_id)) == 0)
230                         continue;
231                 ret = rte_event_eth_rx_adapter_create(adapter_id, event_d_id,
232                                                 &evt_rsrc->def_p_conf);
233                 if (ret)
234                         rte_panic("Failed to create rx adapter[%d]\n",
235                                   adapter_id);
236
237                 /* Configure user requested sched type*/
238                 eth_q_conf.ev.sched_type = rsrc->sched_type;
239                 eth_q_conf.ev.queue_id = evt_rsrc->evq.event_q_id[q_id];
240                 ret = rte_event_eth_rx_adapter_queue_add(adapter_id, port_id,
241                                                          -1, &eth_q_conf);
242                 if (ret)
243                         rte_panic("Failed to add queues to Rx adapter\n");
244
245                 ret = rte_event_eth_rx_adapter_start(adapter_id);
246                 if (ret)
247                         rte_panic("Rx adapter[%d] start Failed\n", adapter_id);
248
249                 evt_rsrc->rx_adptr.rx_adptr[adapter_id] = adapter_id;
250                 adapter_id++;
251                 if (q_id < evt_rsrc->evq.nb_queues)
252                         q_id++;
253         }
254
255         evt_rsrc->tx_adptr.nb_tx_adptr = nb_adapter;
256         evt_rsrc->tx_adptr.tx_adptr = (uint8_t *)malloc(sizeof(uint8_t) *
257                                         evt_rsrc->tx_adptr.nb_tx_adptr);
258         if (!evt_rsrc->tx_adptr.tx_adptr) {
259                 free(evt_rsrc->rx_adptr.rx_adptr);
260                 free(evt_rsrc->evp.event_p_id);
261                 free(evt_rsrc->evq.event_q_id);
262                 rte_panic("Failed to allocate memery for Rx adapter\n");
263         }
264
265         adapter_id = 0;
266         RTE_ETH_FOREACH_DEV(port_id) {
267                 if ((rsrc->enabled_port_mask & (1 << port_id)) == 0)
268                         continue;
269                 ret = rte_event_eth_tx_adapter_create(adapter_id, event_d_id,
270                                                 &evt_rsrc->def_p_conf);
271                 if (ret)
272                         rte_panic("Failed to create tx adapter[%d]\n",
273                                   adapter_id);
274
275                 ret = rte_event_eth_tx_adapter_queue_add(adapter_id, port_id,
276                                                          -1);
277                 if (ret)
278                         rte_panic("Failed to add queues to Tx adapter\n");
279
280                 ret = rte_event_eth_tx_adapter_start(adapter_id);
281                 if (ret)
282                         rte_panic("Tx adapter[%d] start Failed\n", adapter_id);
283
284                 evt_rsrc->tx_adptr.tx_adptr[adapter_id] = adapter_id;
285                 adapter_id++;
286         }
287 }
288
289 void
290 l2fwd_event_set_internal_port_ops(struct event_setup_ops *ops)
291 {
292         ops->event_device_setup = l2fwd_event_device_setup_internal_port;
293         ops->event_queue_setup = l2fwd_event_queue_setup_internal_port;
294         ops->event_port_setup = l2fwd_event_port_setup_internal_port;
295         ops->adapter_setup = l2fwd_rx_tx_adapter_setup_internal_port;
296 }