1 /*
2  * Copyright (c) 2018 Nordic Semiconductor ASA
3  *
4  * SPDX-License-Identifier: Apache-2.0
5  */
6 
7 #include <zephyr/logging/log.h>
8 LOG_MODULE_REGISTER(net_l2_openthread, CONFIG_OPENTHREAD_L2_LOG_LEVEL);
9 
10 #include <zephyr/net/net_core.h>
11 #include <zephyr/net/net_pkt.h>
12 #include <zephyr/net/net_mgmt.h>
13 #include <zephyr/net/openthread.h>
14 
15 #include <net_private.h>
16 
17 #include <zephyr/init.h>
18 #include <zephyr/sys/check.h>
19 #include <zephyr/sys/slist.h>
20 #include <zephyr/sys/util.h>
21 #include <zephyr/sys/__assert.h>
22 #include <zephyr/version.h>
23 
24 #include <openthread/cli.h>
25 #include <openthread/ip6.h>
26 #include <openthread/link.h>
27 #include <openthread/link_raw.h>
28 #include <openthread/ncp.h>
29 #include <openthread/message.h>
30 #include <openthread/platform/diag.h>
31 #include <openthread/tasklet.h>
32 #include <openthread/thread.h>
33 #include <openthread/dataset.h>
34 #include <openthread/joiner.h>
35 #include <openthread-system.h>
36 #include <utils/uart.h>
37 
38 #include <platform-zephyr.h>
39 
40 #include "openthread_utils.h"
41 
42 #if defined(CONFIG_OPENTHREAD_NAT64_TRANSLATOR)
43 #include <openthread/nat64.h>
44 #endif  /* CONFIG_OPENTHREAD_NAT64_TRANSLATOR */
45 
46 #define PKT_IS_IPv4(_p) ((NET_IPV6_HDR(_p)->vtc & 0xf0) == 0x40)
47 
48 #define OT_STACK_SIZE (CONFIG_OPENTHREAD_THREAD_STACK_SIZE)
49 
50 #if defined(CONFIG_OPENTHREAD_THREAD_PREEMPTIVE)
51 #define OT_PRIORITY K_PRIO_PREEMPT(CONFIG_OPENTHREAD_THREAD_PRIORITY)
52 #else
53 #define OT_PRIORITY K_PRIO_COOP(CONFIG_OPENTHREAD_THREAD_PRIORITY)
54 #endif
55 
56 #if defined(CONFIG_OPENTHREAD_NETWORK_NAME)
57 #define OT_NETWORK_NAME CONFIG_OPENTHREAD_NETWORK_NAME
58 #else
59 #define OT_NETWORK_NAME ""
60 #endif
61 
62 #if defined(CONFIG_OPENTHREAD_CHANNEL)
63 #define OT_CHANNEL CONFIG_OPENTHREAD_CHANNEL
64 #else
65 #define OT_CHANNEL 0
66 #endif
67 
68 #if defined(CONFIG_OPENTHREAD_PANID)
69 #define OT_PANID CONFIG_OPENTHREAD_PANID
70 #else
71 #define OT_PANID 0
72 #endif
73 
74 #if defined(CONFIG_OPENTHREAD_XPANID)
75 #define OT_XPANID CONFIG_OPENTHREAD_XPANID
76 #else
77 #define OT_XPANID ""
78 #endif
79 
80 #if defined(CONFIG_OPENTHREAD_NETWORKKEY)
81 #define OT_NETWORKKEY CONFIG_OPENTHREAD_NETWORKKEY
82 #else
83 #define OT_NETWORKKEY ""
84 #endif
85 
86 #if defined(CONFIG_OPENTHREAD_JOINER_PSKD)
87 #define OT_JOINER_PSKD CONFIG_OPENTHREAD_JOINER_PSKD
88 #else
89 #define OT_JOINER_PSKD ""
90 #endif
91 
92 #if defined(CONFIG_OPENTHREAD_PLATFORM_INFO)
93 #define OT_PLATFORM_INFO CONFIG_OPENTHREAD_PLATFORM_INFO
94 #else
95 #define OT_PLATFORM_INFO ""
96 #endif
97 
98 #if defined(CONFIG_OPENTHREAD_POLL_PERIOD)
99 #define OT_POLL_PERIOD CONFIG_OPENTHREAD_POLL_PERIOD
100 #else
101 #define OT_POLL_PERIOD 0
102 #endif
103 
104 #define PACKAGE_NAME "Zephyr"
105 #define PACKAGE_VERSION KERNEL_VERSION_STRING
106 
107 extern void platformShellInit(otInstance *aInstance);
108 
109 K_KERNEL_STACK_DEFINE(ot_stack_area, OT_STACK_SIZE);
110 
111 static struct net_linkaddr *ll_addr;
112 static otStateChangedCallback state_changed_cb;
113 
openthread_thread_id_get(void)114 k_tid_t openthread_thread_id_get(void)
115 {
116 	struct openthread_context *ot_context = openthread_get_default_context();
117 
118 	return ot_context ? (k_tid_t)&ot_context->work_q.thread : 0;
119 }
120 
121 #ifdef CONFIG_NET_MGMT_EVENT
122 static struct net_mgmt_event_callback ip6_addr_cb;
123 
ipv6_addr_event_handler(struct net_mgmt_event_callback * cb,uint32_t mgmt_event,struct net_if * iface)124 static void ipv6_addr_event_handler(struct net_mgmt_event_callback *cb,
125 				    uint32_t mgmt_event, struct net_if *iface)
126 {
127 	if (net_if_l2(iface) != &NET_L2_GET_NAME(OPENTHREAD)) {
128 		return;
129 	}
130 
131 #ifdef CONFIG_NET_MGMT_EVENT_INFO
132 	struct openthread_context *ot_context = net_if_l2_data(iface);
133 
134 	if (cb->info == NULL || cb->info_length != sizeof(struct in6_addr)) {
135 		return;
136 	}
137 
138 	if (mgmt_event == NET_EVENT_IPV6_ADDR_ADD) {
139 		add_ipv6_addr_to_ot(ot_context, (const struct in6_addr *)cb->info);
140 	} else if (mgmt_event == NET_EVENT_IPV6_MADDR_ADD) {
141 		add_ipv6_maddr_to_ot(ot_context, (const struct in6_addr *)cb->info);
142 	}
143 #else
144 	NET_WARN("No address info provided with event, "
145 		 "please enable CONFIG_NET_MGMT_EVENT_INFO");
146 #endif /* CONFIG_NET_MGMT_EVENT_INFO */
147 }
148 #endif /* CONFIG_NET_MGMT_EVENT */
149 
ncp_hdlc_send(const uint8_t * buf,uint16_t len)150 static int ncp_hdlc_send(const uint8_t *buf, uint16_t len)
151 {
152 	otError err;
153 
154 	err = otPlatUartSend(buf, len);
155 	if (err != OT_ERROR_NONE) {
156 		return 0;
157 	}
158 
159 	return len;
160 }
161 
otPlatRadioGetIeeeEui64(otInstance * instance,uint8_t * ieee_eui64)162 void otPlatRadioGetIeeeEui64(otInstance *instance, uint8_t *ieee_eui64)
163 {
164 	ARG_UNUSED(instance);
165 
166 	memcpy(ieee_eui64, ll_addr->addr, ll_addr->len);
167 }
168 
otTaskletsSignalPending(otInstance * instance)169 void otTaskletsSignalPending(otInstance *instance)
170 {
171 	struct openthread_context *ot_context = openthread_get_default_context();
172 
173 	if (ot_context) {
174 		k_work_submit_to_queue(&ot_context->work_q, &ot_context->api_work);
175 	}
176 }
177 
otSysEventSignalPending(void)178 void otSysEventSignalPending(void)
179 {
180 	otTaskletsSignalPending(NULL);
181 }
182 
ot_state_changed_handler(uint32_t flags,void * context)183 static void ot_state_changed_handler(uint32_t flags, void *context)
184 {
185 	struct openthread_state_changed_cb *entry, *next;
186 	struct openthread_context *ot_context = context;
187 
188 	NET_INFO("State changed! Flags: 0x%08" PRIx32 " Current role: %s",
189 		flags,
190 		otThreadDeviceRoleToString(otThreadGetDeviceRole(ot_context->instance))
191 		);
192 
193 	if (flags & OT_CHANGED_THREAD_ROLE) {
194 		switch (otThreadGetDeviceRole(ot_context->instance)) {
195 		case OT_DEVICE_ROLE_CHILD:
196 		case OT_DEVICE_ROLE_ROUTER:
197 		case OT_DEVICE_ROLE_LEADER:
198 			net_if_dormant_off(ot_context->iface);
199 			break;
200 
201 		case OT_DEVICE_ROLE_DISABLED:
202 		case OT_DEVICE_ROLE_DETACHED:
203 		default:
204 			net_if_dormant_on(ot_context->iface);
205 			break;
206 		}
207 	}
208 
209 	if (flags & OT_CHANGED_IP6_ADDRESS_REMOVED) {
210 		NET_DBG("Ipv6 address removed");
211 		rm_ipv6_addr_from_zephyr(ot_context);
212 	}
213 
214 	if (flags & OT_CHANGED_IP6_ADDRESS_ADDED) {
215 		NET_DBG("Ipv6 address added");
216 		add_ipv6_addr_to_zephyr(ot_context);
217 	}
218 
219 	if (flags & OT_CHANGED_IP6_MULTICAST_UNSUBSCRIBED) {
220 		NET_DBG("Ipv6 multicast address removed");
221 		rm_ipv6_maddr_from_zephyr(ot_context);
222 	}
223 
224 	if (flags & OT_CHANGED_IP6_MULTICAST_SUBSCRIBED) {
225 		NET_DBG("Ipv6 multicast address added");
226 		add_ipv6_maddr_to_zephyr(ot_context);
227 	}
228 
229 #if defined(CONFIG_OPENTHREAD_NAT64_TRANSLATOR)
230 
231 	if (flags & OT_CHANGED_NAT64_TRANSLATOR_STATE) {
232 		NET_DBG("Nat64 translator state changed to %x",
233 			otNat64GetTranslatorState(ot_context->instance));
234 	}
235 
236 #endif /* CONFIG_OPENTHREAD_NAT64_TRANSLATOR */
237 
238 	if (state_changed_cb) {
239 		state_changed_cb(flags, context);
240 	}
241 
242 	SYS_SLIST_FOR_EACH_CONTAINER_SAFE(&ot_context->state_change_cbs, entry, next, node) {
243 		if (entry->state_changed_cb != NULL) {
244 			entry->state_changed_cb(flags, ot_context, entry->user_data);
245 		}
246 	}
247 }
248 
ot_receive_handler(otMessage * aMessage,void * context)249 static void ot_receive_handler(otMessage *aMessage, void *context)
250 {
251 	struct openthread_context *ot_context = context;
252 
253 	uint16_t offset = 0U;
254 	uint16_t read_len;
255 	struct net_pkt *pkt;
256 	struct net_buf *pkt_buf;
257 
258 	pkt = net_pkt_rx_alloc_with_buffer(ot_context->iface,
259 					   otMessageGetLength(aMessage),
260 					   AF_UNSPEC, 0, K_NO_WAIT);
261 	if (!pkt) {
262 		NET_ERR("Failed to reserve net pkt");
263 		goto out;
264 	}
265 
266 	pkt_buf = pkt->buffer;
267 
268 	while (1) {
269 		read_len = otMessageRead(aMessage, offset, pkt_buf->data,
270 					 net_buf_tailroom(pkt_buf));
271 		if (!read_len) {
272 			break;
273 		}
274 
275 		net_buf_add(pkt_buf, read_len);
276 
277 		offset += read_len;
278 
279 		if (!net_buf_tailroom(pkt_buf)) {
280 			pkt_buf = pkt_buf->frags;
281 			if (!pkt_buf) {
282 				break;
283 			}
284 		}
285 	}
286 
287 	NET_DBG("Injecting %s packet to Zephyr net stack",
288 		PKT_IS_IPv4(pkt) ? "translated IPv4" : "Ip6");
289 
290 	if (IS_ENABLED(CONFIG_OPENTHREAD_L2_DEBUG_DUMP_IPV6)) {
291 		if (IS_ENABLED(CONFIG_OPENTHREAD_NAT64_TRANSLATOR) && PKT_IS_IPv4(pkt)) {
292 			net_pkt_hexdump(pkt, "Received NAT64 IPv4 packet");
293 		} else {
294 			net_pkt_hexdump(pkt, "Received IPv6 packet");
295 		}
296 	}
297 
298 	if (!pkt_list_is_full(ot_context)) {
299 		if (pkt_list_add(ot_context, pkt) != 0) {
300 			NET_ERR("pkt_list_add failed");
301 			goto out;
302 		}
303 
304 		if (net_recv_data(ot_context->iface, pkt) < 0) {
305 			NET_ERR("net_recv_data failed");
306 			pkt_list_remove_first(ot_context);
307 			goto out;
308 		}
309 
310 		pkt = NULL;
311 	} else {
312 		NET_INFO("Packet list is full");
313 	}
314 out:
315 	if (pkt) {
316 		net_pkt_unref(pkt);
317 	}
318 
319 	otMessageFree(aMessage);
320 }
321 
ot_joiner_start_handler(otError error,void * context)322 static void ot_joiner_start_handler(otError error, void *context)
323 {
324 	struct openthread_context *ot_context = context;
325 
326 	switch (error) {
327 	case OT_ERROR_NONE:
328 		NET_INFO("Join success");
329 		otThreadSetEnabled(ot_context->instance, true);
330 		break;
331 	default:
332 		NET_ERR("Join failed [%d]", error);
333 		break;
334 	}
335 }
336 
openthread_process(struct k_work * work)337 static void openthread_process(struct k_work *work)
338 {
339 	struct openthread_context *ot_context
340 		= CONTAINER_OF(work, struct openthread_context, api_work);
341 
342 	openthread_api_mutex_lock(ot_context);
343 
344 	while (otTaskletsArePending(ot_context->instance)) {
345 		otTaskletsProcess(ot_context->instance);
346 	}
347 
348 	otSysProcessDrivers(ot_context->instance);
349 
350 	openthread_api_mutex_unlock(ot_context);
351 }
352 
is_ipv6_frag(struct net_pkt * pkt)353 static bool is_ipv6_frag(struct net_pkt *pkt)
354 {
355 	NET_PKT_DATA_ACCESS_CONTIGUOUS_DEFINE(ipv6_access, struct net_ipv6_hdr);
356 	struct net_ipv6_hdr *hdr;
357 
358 	hdr = (struct net_ipv6_hdr *)net_pkt_get_data(pkt, &ipv6_access);
359 	if (!hdr) {
360 		return false;
361 	}
362 
363 	return hdr->nexthdr == NET_IPV6_NEXTHDR_FRAG ? true : false;
364 }
365 
openthread_recv(struct net_if * iface,struct net_pkt * pkt)366 static enum net_verdict openthread_recv(struct net_if *iface, struct net_pkt *pkt)
367 {
368 	struct openthread_context *ot_context = net_if_l2_data(iface);
369 
370 	if (pkt_list_peek(ot_context) == pkt) {
371 		pkt_list_remove_last(ot_context);
372 		NET_DBG("Got injected Ip6 packet, sending to upper layers");
373 
374 		if (IS_ENABLED(CONFIG_OPENTHREAD_L2_DEBUG_DUMP_IPV6)) {
375 			net_pkt_hexdump(pkt, "Injected IPv6 packet");
376 		}
377 
378 		if (IS_ENABLED(CONFIG_OPENTHREAD_IP6_FRAGM) && is_ipv6_frag(pkt)) {
379 			return NET_DROP;
380 		}
381 
382 		return NET_CONTINUE;
383 	}
384 
385 	NET_DBG("Got 802.15.4 packet, sending to OT");
386 
387 	if (IS_ENABLED(CONFIG_OPENTHREAD_L2_DEBUG_DUMP_IPV6)) {
388 		net_pkt_hexdump(pkt, "Received 802.15.4 frame");
389 	}
390 
391 	if (notify_new_rx_frame(pkt) != 0) {
392 		NET_ERR("Failed to queue RX packet for OpenThread");
393 		return NET_DROP;
394 	}
395 
396 	return NET_OK;
397 }
398 
openthread_send(struct net_if * iface,struct net_pkt * pkt)399 int openthread_send(struct net_if *iface, struct net_pkt *pkt)
400 {
401 	int len = net_pkt_get_len(pkt);
402 
403 	if (IS_ENABLED(CONFIG_OPENTHREAD_L2_DEBUG_DUMP_IPV6)) {
404 		net_pkt_hexdump(pkt, "IPv6 packet to send");
405 	}
406 
407 	net_capture_pkt(iface, pkt);
408 
409 	if (notify_new_tx_frame(pkt) != 0) {
410 		net_pkt_unref(pkt);
411 	}
412 
413 	return len;
414 }
415 
openthread_start(struct openthread_context * ot_context)416 int openthread_start(struct openthread_context *ot_context)
417 {
418 	otInstance *ot_instance = ot_context->instance;
419 	otError error = OT_ERROR_NONE;
420 
421 	openthread_api_mutex_lock(ot_context);
422 
423 	NET_INFO("OpenThread version: %s", otGetVersionString());
424 
425 	if (IS_ENABLED(CONFIG_OPENTHREAD_COPROCESSOR)) {
426 		NET_DBG("OpenThread co-processor.");
427 		goto exit;
428 	}
429 
430 	otIp6SetEnabled(ot_context->instance, true);
431 
432 	/* Sleepy End Device specific configuration. */
433 	if (IS_ENABLED(CONFIG_OPENTHREAD_MTD_SED)) {
434 		otLinkModeConfig ot_mode = otThreadGetLinkMode(ot_instance);
435 
436 		/* A SED should always attach the network as a SED to indicate
437 		 * increased buffer requirement to a parent.
438 		 */
439 		ot_mode.mRxOnWhenIdle = false;
440 
441 		otThreadSetLinkMode(ot_context->instance, ot_mode);
442 		otLinkSetPollPeriod(ot_context->instance, OT_POLL_PERIOD);
443 	}
444 
445 	if (otDatasetIsCommissioned(ot_instance)) {
446 		/* OpenThread already has dataset stored - skip the
447 		 * configuration.
448 		 */
449 		NET_DBG("OpenThread already commissioned.");
450 	} else if (IS_ENABLED(CONFIG_OPENTHREAD_JOINER_AUTOSTART)) {
451 		/* No dataset - initiate network join procedure. */
452 		NET_DBG("Starting OpenThread join procedure.");
453 
454 		error = otJoinerStart(ot_instance, OT_JOINER_PSKD, NULL,
455 				      PACKAGE_NAME, OT_PLATFORM_INFO,
456 				      PACKAGE_VERSION, NULL,
457 				      &ot_joiner_start_handler, ot_context);
458 
459 		if (error != OT_ERROR_NONE) {
460 			NET_ERR("Failed to start joiner [%d]", error);
461 		}
462 
463 		goto exit;
464 	} else {
465 		/* No dataset - load the default configuration. */
466 		NET_DBG("Loading OpenThread default configuration.");
467 
468 		otExtendedPanId xpanid;
469 		otNetworkKey    networkKey;
470 
471 		otThreadSetNetworkName(ot_instance, OT_NETWORK_NAME);
472 		otLinkSetChannel(ot_instance, OT_CHANNEL);
473 		otLinkSetPanId(ot_instance, OT_PANID);
474 		net_bytes_from_str(xpanid.m8, 8, (char *)OT_XPANID);
475 		otThreadSetExtendedPanId(ot_instance, &xpanid);
476 
477 		if (strlen(OT_NETWORKKEY)) {
478 			net_bytes_from_str(networkKey.m8, OT_NETWORK_KEY_SIZE,
479 					   (char *)OT_NETWORKKEY);
480 			otThreadSetNetworkKey(ot_instance, &networkKey);
481 		}
482 	}
483 
484 	NET_INFO("Network name: %s",
485 		 otThreadGetNetworkName(ot_instance));
486 
487 	/* Start the network. */
488 	error = otThreadSetEnabled(ot_instance, true);
489 	if (error != OT_ERROR_NONE) {
490 		NET_ERR("Failed to start the OpenThread network [%d]", error);
491 	}
492 
493 exit:
494 
495 	openthread_api_mutex_unlock(ot_context);
496 
497 	return error == OT_ERROR_NONE ? 0 : -EIO;
498 }
499 
openthread_stop(struct openthread_context * ot_context)500 int openthread_stop(struct openthread_context *ot_context)
501 {
502 	otError error;
503 
504 	if (IS_ENABLED(CONFIG_OPENTHREAD_COPROCESSOR)) {
505 		return 0;
506 	}
507 
508 	openthread_api_mutex_lock(ot_context);
509 
510 	error = otThreadSetEnabled(ot_context->instance, false);
511 	if (error == OT_ERROR_INVALID_STATE) {
512 		NET_DBG("Openthread interface was not up [%d]", error);
513 	}
514 
515 	openthread_api_mutex_unlock(ot_context);
516 
517 	return 0;
518 }
519 
openthread_init(struct net_if * iface)520 static int openthread_init(struct net_if *iface)
521 {
522 	struct openthread_context *ot_context = net_if_l2_data(iface);
523 	struct k_work_queue_config q_cfg = {
524 		.name = "openthread",
525 		.no_yield = true,
526 	};
527 	otError err;
528 
529 	NET_DBG("openthread_init");
530 
531 	k_mutex_init(&ot_context->api_lock);
532 	k_work_init(&ot_context->api_work, openthread_process);
533 
534 	ll_addr = net_if_get_link_addr(iface);
535 
536 	openthread_api_mutex_lock(ot_context);
537 
538 	otSysInit(0, NULL);
539 
540 	ot_context->instance = otInstanceInitSingle();
541 	ot_context->iface = iface;
542 
543 	__ASSERT(ot_context->instance, "OT instance is NULL");
544 
545 	if (IS_ENABLED(CONFIG_OPENTHREAD_SHELL)) {
546 		platformShellInit(ot_context->instance);
547 	}
548 
549 	if (IS_ENABLED(CONFIG_OPENTHREAD_COPROCESSOR)) {
550 		otPlatUartEnable();
551 		otNcpHdlcInit(ot_context->instance, ncp_hdlc_send);
552 	} else {
553 		otIp6SetReceiveFilterEnabled(ot_context->instance, true);
554 		otIp6SetReceiveCallback(ot_context->instance,
555 					ot_receive_handler, ot_context);
556 
557 #if defined(CONFIG_OPENTHREAD_NAT64_TRANSLATOR)
558 
559 		otIp4Cidr nat64_cidr;
560 
561 		if (otIp4CidrFromString(CONFIG_OPENTHREAD_NAT64_CIDR, &nat64_cidr) ==
562 		    OT_ERROR_NONE) {
563 			if (otNat64SetIp4Cidr(openthread_get_default_instance(), &nat64_cidr) !=
564 			    OT_ERROR_NONE) {
565 				NET_ERR("Incorrect NAT64 CIDR");
566 			}
567 		} else {
568 			NET_ERR("Failed to parse NAT64 CIDR");
569 		}
570 		otNat64SetReceiveIp4Callback(ot_context->instance, ot_receive_handler, ot_context);
571 
572 #endif /* CONFIG_OPENTHREAD_NAT64_TRANSLATOR */
573 
574 		sys_slist_init(&ot_context->state_change_cbs);
575 		err = otSetStateChangedCallback(ot_context->instance,
576 						&ot_state_changed_handler,
577 						ot_context);
578 		if (err != OT_ERROR_NONE) {
579 			NET_ERR("Could not set state changed callback: %d", err);
580 		}
581 
582 		net_mgmt_init_event_callback(
583 			&ip6_addr_cb, ipv6_addr_event_handler,
584 			NET_EVENT_IPV6_ADDR_ADD | NET_EVENT_IPV6_MADDR_ADD);
585 		net_mgmt_add_event_callback(&ip6_addr_cb);
586 
587 		net_if_dormant_on(iface);
588 	}
589 
590 	openthread_api_mutex_unlock(ot_context);
591 
592 	k_work_queue_start(&ot_context->work_q, ot_stack_area,
593 			   K_KERNEL_STACK_SIZEOF(ot_stack_area),
594 			   OT_PRIORITY, &q_cfg);
595 
596 	(void)k_work_submit_to_queue(&ot_context->work_q, &ot_context->api_work);
597 
598 	return 0;
599 }
600 
ieee802154_init(struct net_if * iface)601 void ieee802154_init(struct net_if *iface)
602 {
603 	if (IS_ENABLED(CONFIG_IEEE802154_NET_IF_NO_AUTO_START)) {
604 		LOG_DBG("Interface auto start disabled.");
605 		net_if_flag_set(iface, NET_IF_NO_AUTO_START);
606 	}
607 
608 	net_if_flag_set(iface, NET_IF_IPV6_NO_ND);
609 	net_if_flag_set(iface, NET_IF_IPV6_NO_MLD);
610 
611 	openthread_init(iface);
612 }
613 
openthread_flags(struct net_if * iface)614 static enum net_l2_flags openthread_flags(struct net_if *iface)
615 {
616 	/* TODO: Should report NET_L2_PROMISC_MODE if the radio driver
617 	 *       reports the IEEE802154_HW_PROMISC capability.
618 	 */
619 	return NET_L2_MULTICAST | NET_L2_MULTICAST_SKIP_JOIN_SOLICIT_NODE;
620 }
621 
openthread_enable(struct net_if * iface,bool state)622 static int openthread_enable(struct net_if *iface, bool state)
623 {
624 	struct openthread_context *ot_context = net_if_l2_data(iface);
625 
626 	NET_DBG("iface %p %s", iface, state ? "up" : "down");
627 
628 	if (state) {
629 		if (IS_ENABLED(CONFIG_OPENTHREAD_MANUAL_START)) {
630 			NET_DBG("OpenThread manual start.");
631 			return 0;
632 		}
633 
634 		return openthread_start(ot_context);
635 	}
636 
637 	return openthread_stop(ot_context);
638 }
639 
openthread_get_default_context(void)640 struct openthread_context *openthread_get_default_context(void)
641 {
642 	struct net_if *iface;
643 	struct openthread_context *ot_context = NULL;
644 
645 	iface = net_if_get_first_by_type(&NET_L2_GET_NAME(OPENTHREAD));
646 	if (!iface) {
647 		NET_ERR("There is no net interface for OpenThread");
648 		goto exit;
649 	}
650 
651 	ot_context = net_if_l2_data(iface);
652 	if (!ot_context) {
653 		NET_ERR("There is no Openthread context in net interface data");
654 		goto exit;
655 	}
656 
657 exit:
658 	return ot_context;
659 }
660 
openthread_get_default_instance(void)661 struct otInstance *openthread_get_default_instance(void)
662 {
663 	struct openthread_context *ot_context =
664 		openthread_get_default_context();
665 
666 	return ot_context ? ot_context->instance : NULL;
667 }
668 
openthread_state_changed_cb_register(struct openthread_context * ot_context,struct openthread_state_changed_cb * cb)669 int openthread_state_changed_cb_register(struct openthread_context *ot_context,
670 					 struct openthread_state_changed_cb *cb)
671 {
672 	CHECKIF(cb == NULL || cb->state_changed_cb == NULL) {
673 		return -EINVAL;
674 	}
675 
676 	openthread_api_mutex_lock(ot_context);
677 	sys_slist_append(&ot_context->state_change_cbs, &cb->node);
678 	openthread_api_mutex_unlock(ot_context);
679 
680 	return 0;
681 }
682 
openthread_state_changed_cb_unregister(struct openthread_context * ot_context,struct openthread_state_changed_cb * cb)683 int openthread_state_changed_cb_unregister(struct openthread_context *ot_context,
684 					   struct openthread_state_changed_cb *cb)
685 {
686 	bool removed;
687 
688 	CHECKIF(cb == NULL) {
689 		return -EINVAL;
690 	}
691 
692 	openthread_api_mutex_lock(ot_context);
693 	removed = sys_slist_find_and_remove(&ot_context->state_change_cbs, &cb->node);
694 	openthread_api_mutex_unlock(ot_context);
695 
696 	if (!removed) {
697 		return -EALREADY;
698 	}
699 
700 	return 0;
701 }
702 
openthread_set_state_changed_cb(otStateChangedCallback cb)703 void openthread_set_state_changed_cb(otStateChangedCallback cb)
704 {
705 	state_changed_cb = cb;
706 }
707 
openthread_api_mutex_lock(struct openthread_context * ot_context)708 void openthread_api_mutex_lock(struct openthread_context *ot_context)
709 {
710 	(void)k_mutex_lock(&ot_context->api_lock, K_FOREVER);
711 }
712 
openthread_api_mutex_try_lock(struct openthread_context * ot_context)713 int openthread_api_mutex_try_lock(struct openthread_context *ot_context)
714 {
715 	return k_mutex_lock(&ot_context->api_lock, K_NO_WAIT);
716 }
717 
openthread_api_mutex_unlock(struct openthread_context * ot_context)718 void openthread_api_mutex_unlock(struct openthread_context *ot_context)
719 {
720 	(void)k_mutex_unlock(&ot_context->api_lock);
721 }
722 
723 NET_L2_INIT(OPENTHREAD_L2, openthread_recv, openthread_send, openthread_enable,
724 	    openthread_flags);
725