1 /*
2 * Copyright (c) 2020 Espressif Systems (Shanghai) Co., Ltd.
3 *
4 * SPDX-License-Identifier: Apache-2.0
5 */
6
7 #define DT_DRV_COMPAT espressif_esp32_wifi
8
9 #define _POSIX_C_SOURCE 200809
10
11 #include <zephyr/logging/log.h>
12 LOG_MODULE_REGISTER(esp32_wifi, CONFIG_WIFI_LOG_LEVEL);
13
14 #include <zephyr/net/ethernet.h>
15 #include <zephyr/net/net_pkt.h>
16 #include <zephyr/net/net_if.h>
17 #include <zephyr/net/wifi_mgmt.h>
18 #include <zephyr/device.h>
19 #include <soc.h>
20 #include "esp_networking_priv.h"
21 #include "esp_private/wifi.h"
22 #include "esp_event.h"
23 #include "esp_timer.h"
24 #include "esp_system.h"
25 #include "esp_wpa.h"
26
27 #define DHCPV4_MASK (NET_EVENT_IPV4_DHCP_BOUND | NET_EVENT_IPV4_DHCP_STOP)
28
29 /* use global iface pointer to support any ethernet driver */
30 /* necessary for wifi callback functions */
31 static struct net_if *esp32_wifi_iface;
32 static struct esp32_wifi_runtime esp32_data;
33
34 enum esp32_state_flag {
35 ESP32_STA_STOPPED,
36 ESP32_STA_STARTED,
37 ESP32_STA_CONNECTING,
38 ESP32_STA_CONNECTED,
39 ESP32_AP_CONNECTED,
40 ESP32_AP_DISCONNECTED,
41 ESP32_AP_STOPPED,
42 };
43
44 struct esp32_wifi_status {
45 char ssid[WIFI_SSID_MAX_LEN + 1];
46 char pass[WIFI_PSK_MAX_LEN + 1];
47 wifi_auth_mode_t security;
48 bool connected;
49 uint8_t channel;
50 int rssi;
51 };
52
53 struct esp32_wifi_runtime {
54 uint8_t mac_addr[6];
55 uint8_t frame_buf[NET_ETH_MAX_FRAME_SIZE];
56 #if defined(CONFIG_NET_STATISTICS_WIFI)
57 struct net_stats_wifi stats;
58 #endif
59 struct esp32_wifi_status status;
60 scan_result_cb_t scan_cb;
61 uint8_t state;
62 };
63
64 static void esp_wifi_event_task(void);
65
66 K_MSGQ_DEFINE(esp_wifi_msgq, sizeof(system_event_t), 10, 4);
67 K_THREAD_STACK_DEFINE(esp_wifi_event_stack, CONFIG_ESP32_WIFI_EVENT_TASK_STACK_SIZE);
68 static struct k_thread esp_wifi_event_thread;
69
70 static struct net_mgmt_event_callback esp32_dhcp_cb;
71
wifi_event_handler(struct net_mgmt_event_callback * cb,uint32_t mgmt_event,struct net_if * iface)72 static void wifi_event_handler(struct net_mgmt_event_callback *cb, uint32_t mgmt_event,
73 struct net_if *iface)
74 {
75 const struct wifi_status *status = (const struct wifi_status *)cb->info;
76
77 switch (mgmt_event) {
78 case NET_EVENT_IPV4_DHCP_BOUND:
79 wifi_mgmt_raise_connect_result_event(esp32_wifi_iface, 0);
80 break;
81 default:
82 break;
83 }
84 }
85
86 /* internal wifi library callback function */
esp_event_send_internal(esp_event_base_t event_base,int32_t event_id,void * event_data,size_t event_data_size,uint32_t ticks_to_wait)87 esp_err_t esp_event_send_internal(esp_event_base_t event_base,
88 int32_t event_id,
89 void *event_data,
90 size_t event_data_size,
91 uint32_t ticks_to_wait)
92 {
93 system_event_t evt = {
94 .event_id = event_id,
95 };
96
97 if (event_data_size > sizeof(evt.event_info)) {
98 LOG_ERR("MSG %d wont find %d > %d",
99 event_id, event_data_size, sizeof(evt.event_info));
100 return -EIO;
101 }
102
103 memcpy(&evt.event_info, event_data, event_data_size);
104 k_msgq_put(&esp_wifi_msgq, &evt, K_FOREVER);
105 return 0;
106 }
107
esp32_wifi_send(const struct device * dev,struct net_pkt * pkt)108 static int esp32_wifi_send(const struct device *dev, struct net_pkt *pkt)
109 {
110 struct esp32_wifi_runtime *data = dev->data;
111 const int pkt_len = net_pkt_get_len(pkt);
112 esp_interface_t ifx =
113 esp32_data.state == ESP32_AP_CONNECTED ? ESP_IF_WIFI_AP : ESP_IF_WIFI_STA;
114
115 /* Read the packet payload */
116 if (net_pkt_read(pkt, data->frame_buf, pkt_len) < 0) {
117 goto out;
118 }
119
120 /* Enqueue packet for transmission */
121 if (esp_wifi_internal_tx(ifx, (void *)data->frame_buf, pkt_len) != ESP_OK) {
122 goto out;
123 }
124
125 #if defined(CONFIG_NET_STATISTICS_WIFI)
126 data->stats.bytes.sent += pkt_len;
127 data->stats.pkts.tx++;
128 #endif
129
130 LOG_DBG("pkt sent %p len %d", pkt, pkt_len);
131 return 0;
132
133 out:
134
135 LOG_ERR("Failed to send packet");
136 #if defined(CONFIG_NET_STATISTICS_WIFI)
137 data->stats.errors.tx++;
138 #endif
139 return -EIO;
140 }
141
eth_esp32_rx(void * buffer,uint16_t len,void * eb)142 static esp_err_t eth_esp32_rx(void *buffer, uint16_t len, void *eb)
143 {
144 struct net_pkt *pkt;
145
146 if (esp32_wifi_iface == NULL) {
147 LOG_ERR("network interface unavailable");
148 return -EIO;
149 }
150
151 pkt = net_pkt_rx_alloc_with_buffer(esp32_wifi_iface, len, AF_UNSPEC, 0, K_MSEC(100));
152 if (!pkt) {
153 LOG_ERR("Failed to get net buffer");
154 return -EIO;
155 }
156
157 if (net_pkt_write(pkt, buffer, len) < 0) {
158 LOG_ERR("Failed to write pkt");
159 goto pkt_unref;
160 }
161
162 if (net_recv_data(esp32_wifi_iface, pkt) < 0) {
163 LOG_ERR("Failed to push received data");
164 goto pkt_unref;
165 }
166
167 #if defined(CONFIG_NET_STATISTICS_WIFI)
168 esp32_data.stats.bytes.received += len;
169 esp32_data.stats.pkts.rx++;
170 #endif
171
172 esp_wifi_internal_free_rx_buffer(eb);
173 return 0;
174
175 pkt_unref:
176 net_pkt_unref(pkt);
177
178 #if defined(CONFIG_NET_STATISTICS_WIFI)
179 esp32_data.stats.errors.rx++;
180 #endif
181
182 return -EIO;
183 }
184
scan_done_handler(void)185 static void scan_done_handler(void)
186 {
187 uint16_t aps = 0;
188 wifi_ap_record_t *ap_list_buffer;
189 struct wifi_scan_result res = { 0 };
190
191 esp_wifi_scan_get_ap_num(&aps);
192 if (!aps) {
193 LOG_INF("No Wi-Fi AP found");
194 goto out;
195 }
196
197 ap_list_buffer = k_malloc(aps * sizeof(wifi_ap_record_t));
198 if (ap_list_buffer == NULL) {
199 LOG_INF("Failed to malloc buffer to print scan results");
200 goto out;
201 }
202
203 if (esp_wifi_scan_get_ap_records(&aps, (wifi_ap_record_t *)ap_list_buffer) == ESP_OK) {
204 for (int k = 0; k < aps; k++) {
205 memset(&res, 0, sizeof(struct wifi_scan_result));
206 int ssid_len = strnlen(ap_list_buffer[k].ssid, WIFI_SSID_MAX_LEN);
207
208 res.ssid_length = ssid_len;
209 strncpy(res.ssid, ap_list_buffer[k].ssid, ssid_len);
210 res.rssi = ap_list_buffer[k].rssi;
211 res.channel = ap_list_buffer[k].primary;
212 res.security = WIFI_SECURITY_TYPE_NONE;
213 if (ap_list_buffer[k].authmode > WIFI_AUTH_OPEN) {
214 res.security = WIFI_SECURITY_TYPE_PSK;
215 }
216
217 if (esp32_data.scan_cb) {
218 esp32_data.scan_cb(esp32_wifi_iface, 0, &res);
219
220 /* ensure notifications get delivered */
221 k_yield();
222 }
223 }
224 } else {
225 LOG_INF("Unable to retrieve AP records");
226 }
227
228 k_free(ap_list_buffer);
229
230 out:
231 /* report end of scan event */
232 esp32_data.scan_cb(esp32_wifi_iface, 0, NULL);
233 esp32_data.scan_cb = NULL;
234 }
235
esp_wifi_handle_connect_event(void)236 static void esp_wifi_handle_connect_event(void)
237 {
238 esp32_data.state = ESP32_STA_CONNECTED;
239 if (IS_ENABLED(CONFIG_ESP32_WIFI_STA_AUTO_DHCPV4)) {
240 net_dhcpv4_start(esp32_wifi_iface);
241 } else {
242 wifi_mgmt_raise_connect_result_event(esp32_wifi_iface, 0);
243 }
244 }
245
esp_wifi_handle_disconnect_event(void)246 static void esp_wifi_handle_disconnect_event(void)
247 {
248 if (esp32_data.state == ESP32_STA_CONNECTED) {
249 if (IS_ENABLED(CONFIG_ESP32_WIFI_STA_AUTO_DHCPV4)) {
250 net_dhcpv4_stop(esp32_wifi_iface);
251 }
252 wifi_mgmt_raise_disconnect_result_event(esp32_wifi_iface, 0);
253 } else {
254 wifi_mgmt_raise_disconnect_result_event(esp32_wifi_iface, -1);
255 }
256
257 if (IS_ENABLED(CONFIG_ESP32_WIFI_STA_RECONNECT)) {
258 esp32_data.state = ESP32_STA_CONNECTING;
259 esp_wifi_connect();
260 } else {
261 esp32_data.state = ESP32_STA_STARTED;
262 }
263 }
264
esp_wifi_event_task(void)265 static void esp_wifi_event_task(void)
266 {
267 system_event_t evt;
268 uint8_t s_con_cnt = 0;
269
270 while (1) {
271 k_msgq_get(&esp_wifi_msgq, &evt, K_FOREVER);
272
273 switch (evt.event_id) {
274 case ESP32_WIFI_EVENT_STA_START:
275 esp32_data.state = ESP32_STA_STARTED;
276 net_eth_carrier_on(esp32_wifi_iface);
277 break;
278 case ESP32_WIFI_EVENT_STA_STOP:
279 esp32_data.state = ESP32_STA_STOPPED;
280 net_eth_carrier_off(esp32_wifi_iface);
281 break;
282 case ESP32_WIFI_EVENT_STA_CONNECTED:
283 esp_wifi_handle_connect_event();
284 break;
285 case ESP32_WIFI_EVENT_STA_DISCONNECTED:
286 esp_wifi_handle_disconnect_event();
287 break;
288 case ESP32_WIFI_EVENT_SCAN_DONE:
289 scan_done_handler();
290 break;
291 case ESP32_WIFI_EVENT_AP_STOP:
292 esp32_data.state = ESP32_AP_STOPPED;
293 net_eth_carrier_off(esp32_wifi_iface);
294 break;
295 case ESP32_WIFI_EVENT_AP_STACONNECTED:
296 esp32_data.state = ESP32_AP_CONNECTED;
297 if (!s_con_cnt) {
298 esp_wifi_internal_reg_rxcb(WIFI_IF_AP, eth_esp32_rx);
299 }
300 s_con_cnt++;
301 break;
302 case ESP32_WIFI_EVENT_AP_STADISCONNECTED:
303 esp32_data.state = ESP32_AP_DISCONNECTED;
304 s_con_cnt--;
305 if (!s_con_cnt) {
306 esp_wifi_internal_reg_rxcb(WIFI_IF_AP, NULL);
307 }
308 break;
309 default:
310 break;
311 }
312 }
313 }
314
esp32_wifi_disconnect(const struct device * dev)315 static int esp32_wifi_disconnect(const struct device *dev)
316 {
317 struct esp32_wifi_runtime *data = dev->data;
318 int ret = esp_wifi_disconnect();
319
320 if (ret != ESP_OK) {
321 LOG_INF("Failed to disconnect from hotspot");
322 return -EAGAIN;
323 }
324
325 return 0;
326 }
327
esp32_wifi_connect(const struct device * dev,struct wifi_connect_req_params * params)328 static int esp32_wifi_connect(const struct device *dev,
329 struct wifi_connect_req_params *params)
330 {
331 struct esp32_wifi_runtime *data = dev->data;
332 int ret;
333
334 if (data->state == ESP32_STA_CONNECTING || data->state == ESP32_STA_CONNECTED) {
335 wifi_mgmt_raise_connect_result_event(esp32_wifi_iface, -1);
336 return -EALREADY;
337 }
338
339 if (data->state != ESP32_STA_STARTED) {
340 LOG_ERR("Wi-Fi not in station mode");
341 wifi_mgmt_raise_connect_result_event(esp32_wifi_iface, -1);
342 return -EIO;
343 }
344
345 data->state = ESP32_STA_CONNECTING;
346
347 memcpy(data->status.ssid, params->ssid, params->ssid_length);
348 data->status.ssid[params->ssid_length] = '\0';
349
350 wifi_config_t wifi_config;
351
352 memset(&wifi_config, 0, sizeof(wifi_config_t));
353
354 memcpy(wifi_config.sta.ssid, params->ssid, params->ssid_length);
355 wifi_config.sta.ssid[params->ssid_length] = '\0';
356
357 if (params->security == WIFI_SECURITY_TYPE_PSK) {
358 memcpy(wifi_config.sta.password, params->psk, params->psk_length);
359 wifi_config.sta.password[params->psk_length] = '\0';
360 wifi_config.sta.threshold.authmode = WIFI_AUTH_WPA2_PSK;
361 data->status.security = WIFI_AUTH_WPA2_PSK;
362 } else if (params->security == WIFI_SECURITY_TYPE_NONE) {
363 wifi_config.sta.threshold.authmode = WIFI_AUTH_OPEN;
364 data->status.security = WIFI_AUTH_OPEN;
365 } else {
366 LOG_ERR("Authentication method not supported");
367 return -EIO;
368 }
369
370 if (params->channel == WIFI_CHANNEL_ANY) {
371 wifi_config.sta.channel = 0U;
372 data->status.channel = 0U;
373 } else {
374 wifi_config.sta.channel = params->channel;
375 data->status.channel = params->channel;
376 }
377
378 wifi_config.sta.pmf_cfg.capable = true;
379 wifi_config.sta.pmf_cfg.required = false;
380
381 ret = esp_wifi_set_config(ESP_IF_WIFI_STA, &wifi_config);
382 ret |= esp_wifi_set_mode(ESP32_WIFI_MODE_STA);
383 ret |= esp_wifi_connect();
384
385 if (ret != ESP_OK) {
386 LOG_ERR("Failed to connect to Wi-Fi access point");
387 return -EAGAIN;
388 }
389
390 return 0;
391 }
392
esp32_wifi_scan(const struct device * dev,struct wifi_scan_params * params,scan_result_cb_t cb)393 static int esp32_wifi_scan(const struct device *dev,
394 struct wifi_scan_params *params,
395 scan_result_cb_t cb)
396 {
397 struct esp32_wifi_runtime *data = dev->data;
398 int ret = 0;
399
400 if (data->scan_cb != NULL) {
401 LOG_INF("Scan callback in progress");
402 return -EINPROGRESS;
403 }
404
405 data->scan_cb = cb;
406
407 wifi_scan_config_t scan_config = { 0 };
408
409 if (params) {
410 /* The enum values are same, so, no conversion needed */
411 scan_config.scan_type = params->scan_type;
412 }
413
414 ret = esp_wifi_set_mode(ESP32_WIFI_MODE_STA);
415 ret |= esp_wifi_scan_start(&scan_config, false);
416
417 if (ret != ESP_OK) {
418 LOG_ERR("Failed to start Wi-Fi scanning");
419 return -EAGAIN;
420 }
421
422 return 0;
423 };
424
esp32_wifi_ap_enable(const struct device * dev,struct wifi_connect_req_params * params)425 static int esp32_wifi_ap_enable(const struct device *dev,
426 struct wifi_connect_req_params *params)
427 {
428 struct esp32_wifi_runtime *data = dev->data;
429 esp_err_t ret = 0;
430
431 /* Build Wi-Fi configuration for AP mode */
432 wifi_config_t wifi_config = {
433 .ap = {
434 .max_connection = 5,
435 .channel = params->channel == WIFI_CHANNEL_ANY ?
436 0 : params->channel,
437 },
438 };
439
440 memcpy(data->status.ssid, params->ssid, params->ssid_length);
441 data->status.ssid[params->ssid_length] = '\0';
442
443 strncpy((char *) wifi_config.ap.ssid, params->ssid, params->ssid_length);
444
445 if (params->psk_length == 0) {
446 memset(wifi_config.ap.password, 0, sizeof(wifi_config.ap.password));
447 wifi_config.ap.authmode = WIFI_AUTH_OPEN;
448 data->status.security = WIFI_AUTH_OPEN;
449 } else {
450 strncpy((char *) wifi_config.ap.password, params->psk, params->psk_length);
451 wifi_config.ap.authmode = WIFI_AUTH_WPA2_PSK;
452 data->status.security = WIFI_AUTH_WPA2_PSK;
453 }
454
455 /* Start Wi-Fi in AP mode with configuration built above */
456 ret = esp_wifi_set_mode(ESP32_WIFI_MODE_AP);
457 ret |= esp_wifi_set_config(WIFI_IF_AP, &wifi_config);
458 ret |= esp_wifi_start();
459 if (ret != ESP_OK) {
460 LOG_ERR("Failed to enable Wi-Fi AP mode");
461 return -EAGAIN;
462 }
463
464 net_eth_carrier_on(esp32_wifi_iface);
465
466 return 0;
467 };
468
esp32_wifi_ap_disable(const struct device * dev)469 static int esp32_wifi_ap_disable(const struct device *dev)
470 {
471 esp_err_t ret = esp_wifi_set_mode(ESP32_WIFI_MODE_NULL);
472
473 ret |= esp_wifi_start();
474 if (ret != ESP_OK) {
475 LOG_ERR("Failed to disable Wi-Fi AP mode");
476 return -EAGAIN;
477 }
478
479 return 0;
480 };
481
esp32_wifi_status(const struct device * dev,struct wifi_iface_status * status)482 static int esp32_wifi_status(const struct device *dev, struct wifi_iface_status *status)
483 {
484 struct esp32_wifi_runtime *data = dev->data;
485 wifi_mode_t mode;
486 wifi_config_t conf;
487 wifi_ap_record_t ap_info;
488
489 switch (data->state) {
490 case ESP32_STA_STOPPED:
491 case ESP32_AP_STOPPED:
492 status->state = WIFI_STATE_INACTIVE;
493 break;
494 case ESP32_STA_STARTED:
495 case ESP32_AP_DISCONNECTED:
496 status->state = WIFI_STATE_DISCONNECTED;
497 break;
498 case ESP32_STA_CONNECTING:
499 status->state = WIFI_STATE_SCANNING;
500 break;
501 case ESP32_STA_CONNECTED:
502 case ESP32_AP_CONNECTED:
503 status->state = WIFI_STATE_COMPLETED;
504 break;
505 default:
506 break;
507 }
508
509 strncpy(status->ssid, data->status.ssid, WIFI_SSID_MAX_LEN);
510 status->ssid_len = strnlen(data->status.ssid, WIFI_SSID_MAX_LEN);
511 status->band = WIFI_FREQ_BAND_2_4_GHZ;
512 status->link_mode = WIFI_LINK_MODE_UNKNOWN;
513 status->mfp = WIFI_MFP_DISABLE;
514
515 if (esp_wifi_get_mode(&mode) == ESP_OK) {
516 if (mode == ESP32_WIFI_MODE_STA) {
517 esp_wifi_get_config(ESP_IF_WIFI_STA, &conf);
518 esp_wifi_sta_get_ap_info(&ap_info);
519 status->iface_mode = WIFI_MODE_INFRA;
520 status->channel = ap_info.primary;
521 status->rssi = ap_info.rssi;
522 memcpy(status->bssid, ap_info.bssid, WIFI_MAC_ADDR_LEN);
523
524 if (ap_info.phy_11n) {
525 status->link_mode = WIFI_4;
526 } else if (ap_info.phy_11g) {
527 status->link_mode |= WIFI_3;
528 } else if (ap_info.phy_11b) {
529 status->link_mode = WIFI_1;
530 }
531
532 } else if (mode == ESP32_WIFI_MODE_AP) {
533 esp_wifi_get_config(ESP_IF_WIFI_AP, &conf);
534 status->iface_mode = WIFI_MODE_AP;
535 status->link_mode = WIFI_LINK_MODE_UNKNOWN;
536 status->channel = conf.ap.channel;
537 } else {
538 status->iface_mode = WIFI_MODE_UNKNOWN;
539 status->link_mode = WIFI_LINK_MODE_UNKNOWN;
540 status->channel = 0;
541 }
542 }
543
544 switch (data->status.security) {
545 case WIFI_AUTH_OPEN:
546 status->security = WIFI_SECURITY_TYPE_NONE;
547 break;
548 case WIFI_AUTH_WPA2_PSK:
549 status->security = WIFI_SECURITY_TYPE_PSK;
550 break;
551 default:
552 status->security = WIFI_SECURITY_TYPE_UNKNOWN;
553 }
554
555 return 0;
556 }
557
esp32_wifi_init(struct net_if * iface)558 static void esp32_wifi_init(struct net_if *iface)
559 {
560 const struct device *dev = net_if_get_device(iface);
561 struct esp32_wifi_runtime *dev_data = dev->data;
562 struct ethernet_context *eth_ctx = net_if_l2_data(iface);
563
564 eth_ctx->eth_if_type = L2_ETH_IF_TYPE_WIFI;
565 esp32_wifi_iface = iface;
566 dev_data->state = ESP32_STA_STOPPED;
567
568 /* Start interface when we are actually connected with Wi-Fi network */
569 esp_read_mac(dev_data->mac_addr, ESP_MAC_WIFI_STA);
570
571 /* Assign link local address. */
572 net_if_set_link_addr(iface, dev_data->mac_addr, 6, NET_LINK_ETHERNET);
573
574 ethernet_init(iface);
575 net_if_carrier_off(iface);
576
577 wifi_init_config_t config = WIFI_INIT_CONFIG_DEFAULT();
578 esp_err_t ret = esp_wifi_init(&config);
579
580 esp_wifi_internal_reg_rxcb(ESP_IF_WIFI_STA, eth_esp32_rx);
581
582 ret |= esp_wifi_set_mode(ESP32_WIFI_MODE_STA);
583 ret |= esp_wifi_start();
584
585 if (ret != ESP_OK) {
586 LOG_ERR("Failed to start Wi-Fi driver");
587 }
588 }
589
590 #if defined(CONFIG_NET_STATISTICS_WIFI)
esp32_wifi_stats(const struct device * dev,struct net_stats_wifi * stats)591 static int esp32_wifi_stats(const struct device *dev, struct net_stats_wifi *stats)
592 {
593 struct esp32_wifi_runtime *data = dev->data;
594
595 stats->bytes.received = data->stats.bytes.received;
596 stats->bytes.sent = data->stats.bytes.sent;
597 stats->pkts.rx = data->stats.pkts.rx;
598 stats->pkts.tx = data->stats.pkts.tx;
599 stats->errors.rx = data->stats.errors.rx;
600 stats->errors.tx = data->stats.errors.tx;
601 stats->broadcast.rx = data->stats.broadcast.rx;
602 stats->broadcast.tx = data->stats.broadcast.tx;
603 stats->multicast.rx = data->stats.multicast.rx;
604 stats->multicast.tx = data->stats.multicast.tx;
605 stats->sta_mgmt.beacons_rx = data->stats.sta_mgmt.beacons_rx;
606 stats->sta_mgmt.beacons_miss = data->stats.sta_mgmt.beacons_miss;
607
608 return 0;
609 }
610 #endif
611
esp32_wifi_dev_init(const struct device * dev)612 static int esp32_wifi_dev_init(const struct device *dev)
613 {
614 esp_timer_init();
615
616 k_tid_t tid = k_thread_create(&esp_wifi_event_thread, esp_wifi_event_stack,
617 CONFIG_ESP32_WIFI_EVENT_TASK_STACK_SIZE,
618 (k_thread_entry_t)esp_wifi_event_task, NULL, NULL, NULL,
619 CONFIG_ESP32_WIFI_EVENT_TASK_PRIO, K_INHERIT_PERMS,
620 K_NO_WAIT);
621
622 k_thread_name_set(tid, "esp_event");
623
624 if (IS_ENABLED(CONFIG_ESP32_WIFI_STA_AUTO_DHCPV4)) {
625 net_mgmt_init_event_callback(&esp32_dhcp_cb, wifi_event_handler, DHCPV4_MASK);
626 net_mgmt_add_event_callback(&esp32_dhcp_cb);
627 }
628
629 return 0;
630 }
631
632 static const struct wifi_mgmt_ops esp32_wifi_mgmt = {
633 .scan = esp32_wifi_scan,
634 .connect = esp32_wifi_connect,
635 .disconnect = esp32_wifi_disconnect,
636 .ap_enable = esp32_wifi_ap_enable,
637 .ap_disable = esp32_wifi_ap_disable,
638 .iface_status = esp32_wifi_status,
639 #if defined(CONFIG_NET_STATISTICS_WIFI)
640 .get_stats = esp32_wifi_stats,
641 #endif
642 };
643
644 static const struct net_wifi_mgmt_offload esp32_api = {
645 .wifi_iface.iface_api.init = esp32_wifi_init,
646 .wifi_iface.send = esp32_wifi_send,
647 .wifi_mgmt_api = &esp32_wifi_mgmt,
648 };
649
650 NET_DEVICE_DT_INST_DEFINE(0,
651 esp32_wifi_dev_init, NULL,
652 &esp32_data, NULL, CONFIG_WIFI_INIT_PRIORITY,
653 &esp32_api, ETHERNET_L2,
654 NET_L2_GET_CTX_TYPE(ETHERNET_L2), NET_ETH_MTU);
655