1 /**
2 * @file
3 * Network Interface Sequential API module
4 *
5 * @defgroup netifapi NETIF API
6 * @ingroup sequential_api
7 * Thread-safe functions to be called from non-TCPIP threads
8 *
9 * @defgroup netifapi_netif NETIF related
10 * @ingroup netifapi
11 * To be called from non-TCPIP threads
12 */
13
14 /*
15 * Redistribution and use in source and binary forms, with or without modification,
16 * are permitted provided that the following conditions are met:
17 *
18 * 1. Redistributions of source code must retain the above copyright notice,
19 * this list of conditions and the following disclaimer.
20 * 2. Redistributions in binary form must reproduce the above copyright notice,
21 * this list of conditions and the following disclaimer in the documentation
22 * and/or other materials provided with the distribution.
23 * 3. The name of the author may not be used to endorse or promote products
24 * derived from this software without specific prior written permission.
25 *
26 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
27 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
28 * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT
29 * SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
30 * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT
31 * OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
32 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
33 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
34 * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY
35 * OF SUCH DAMAGE.
36 *
37 * This file is part of the lwIP TCP/IP stack.
38 *
39 */
40
41 #include "lwip/opt.h"
42
43 #if LWIP_NETIF_API /* don't build if not configured for use in lwipopts.h */
44
45 #include "lwip/etharp.h"
46 #include "lwip/netifapi.h"
47 #include "lwip/memp.h"
48 #include "lwip/priv/tcpip_priv.h"
49
50 #include <string.h> /* strncpy */
51
52 #define NETIFAPI_VAR_REF(name) API_VAR_REF(name)
53 #define NETIFAPI_VAR_DECLARE(name) API_VAR_DECLARE(struct netifapi_msg, name)
54 #define NETIFAPI_VAR_ALLOC(name) API_VAR_ALLOC(struct netifapi_msg, MEMP_NETIFAPI_MSG, name, ERR_MEM)
55 #define NETIFAPI_VAR_FREE(name) API_VAR_FREE(MEMP_NETIFAPI_MSG, name)
56
57 /**
58 * Call netif_add() inside the tcpip_thread context.
59 */
60 static err_t
netifapi_do_netif_add(struct tcpip_api_call_data * m)61 netifapi_do_netif_add(struct tcpip_api_call_data *m)
62 {
63 /* cast through void* to silence alignment warnings.
64 * We know it works because the structs have been instantiated as struct netifapi_msg */
65 struct netifapi_msg *msg = (struct netifapi_msg *)(void *)m;
66 #ifdef LOSCFG_NET_CONTAINER
67 if (!netif_add( msg->netif, get_curr_process_net_group(),
68 #else
69 if (!netif_add( msg->netif,
70 #endif
71 #if LWIP_IPV4
72 API_EXPR_REF(msg->msg.add.ipaddr),
73 API_EXPR_REF(msg->msg.add.netmask),
74 API_EXPR_REF(msg->msg.add.gw),
75 #endif /* LWIP_IPV4 */
76 msg->msg.add.state,
77 msg->msg.add.init,
78 msg->msg.add.input)) {
79 return ERR_IF;
80 } else {
81 return ERR_OK;
82 }
83 }
84
85 #if LWIP_IPV4
86 /**
87 * Call netif_set_addr() inside the tcpip_thread context.
88 */
89 static err_t
netifapi_do_netif_set_addr(struct tcpip_api_call_data * m)90 netifapi_do_netif_set_addr(struct tcpip_api_call_data *m)
91 {
92 /* cast through void* to silence alignment warnings.
93 * We know it works because the structs have been instantiated as struct netifapi_msg */
94 struct netifapi_msg *msg = (struct netifapi_msg *)(void *)m;
95
96 netif_set_addr( msg->netif,
97 API_EXPR_REF(msg->msg.add.ipaddr),
98 API_EXPR_REF(msg->msg.add.netmask),
99 API_EXPR_REF(msg->msg.add.gw));
100 return ERR_OK;
101 }
102 #endif /* LWIP_IPV4 */
103
104 /**
105 * Call netif_name_to_index() inside the tcpip_thread context.
106 */
107 static err_t
netifapi_do_name_to_index(struct tcpip_api_call_data * m)108 netifapi_do_name_to_index(struct tcpip_api_call_data *m)
109 {
110 /* cast through void* to silence alignment warnings.
111 * We know it works because the structs have been instantiated as struct netifapi_msg */
112 struct netifapi_msg *msg = (struct netifapi_msg *)(void *)m;
113
114 msg->msg.ifs.index = netif_name_to_index(msg->msg.ifs.name);
115 return ERR_OK;
116 }
117
118 /**
119 * Call netif_index_to_name() inside the tcpip_thread context.
120 */
121 static err_t
netifapi_do_index_to_name(struct tcpip_api_call_data * m)122 netifapi_do_index_to_name(struct tcpip_api_call_data *m)
123 {
124 /* cast through void* to silence alignment warnings.
125 * We know it works because the structs have been instantiated as struct netifapi_msg */
126 struct netifapi_msg *msg = (struct netifapi_msg *)(void *)m;
127
128 #ifdef LOSCFG_NET_CONTAINER
129 if (!netif_index_to_name(msg->msg.ifs.index, msg->msg.ifs.name, get_curr_process_net_group())) {
130 #else
131 if (!netif_index_to_name(msg->msg.ifs.index, msg->msg.ifs.name)) {
132 #endif
133 /* return failure via empty name */
134 msg->msg.ifs.name[0] = '\0';
135 }
136 return ERR_OK;
137 }
138
139 /**
140 * Call the "errtfunc" (or the "voidfunc" if "errtfunc" is NULL) inside the
141 * tcpip_thread context.
142 */
143 static err_t
144 netifapi_do_netif_common(struct tcpip_api_call_data *m)
145 {
146 /* cast through void* to silence alignment warnings.
147 * We know it works because the structs have been instantiated as struct netifapi_msg */
148 struct netifapi_msg *msg = (struct netifapi_msg *)(void *)m;
149
150 if (msg->msg.common.errtfunc != NULL) {
151 return msg->msg.common.errtfunc(msg->netif);
152 } else {
153 msg->msg.common.voidfunc(msg->netif);
154 return ERR_OK;
155 }
156 }
157
158 #if LWIP_ARP && LWIP_IPV4
159 /**
160 * @ingroup netifapi_arp
161 * Add or update an entry in the ARP cache.
162 * For an update, ipaddr is used to find the cache entry.
163 *
164 * @param ipaddr IPv4 address of cache entry
165 * @param ethaddr hardware address mapped to ipaddr
166 * @param type type of ARP cache entry
167 * @return ERR_OK: entry added/updated, else error from err_t
168 */
169 err_t
170 netifapi_arp_add(const ip4_addr_t *ipaddr, struct eth_addr *ethaddr, enum netifapi_arp_entry type)
171 {
172 err_t err;
173
174 /* We only support permanent entries currently */
175 LWIP_UNUSED_ARG(type);
176
177 #if ETHARP_SUPPORT_STATIC_ENTRIES && LWIP_TCPIP_CORE_LOCKING
178 LOCK_TCPIP_CORE();
179 err = etharp_add_static_entry(ipaddr, ethaddr);
180 UNLOCK_TCPIP_CORE();
181 #else
182 /* @todo add new vars to struct netifapi_msg and create a 'do' func */
183 LWIP_UNUSED_ARG(ipaddr);
184 LWIP_UNUSED_ARG(ethaddr);
185 err = ERR_VAL;
186 #endif /* ETHARP_SUPPORT_STATIC_ENTRIES && LWIP_TCPIP_CORE_LOCKING */
187
188 return err;
189 }
190
191 /**
192 * @ingroup netifapi_arp
193 * Remove an entry in the ARP cache identified by ipaddr
194 *
195 * @param ipaddr IPv4 address of cache entry
196 * @param type type of ARP cache entry
197 * @return ERR_OK: entry removed, else error from err_t
198 */
199 err_t
200 netifapi_arp_remove(const ip4_addr_t *ipaddr, enum netifapi_arp_entry type)
201 {
202 err_t err;
203
204 /* We only support permanent entries currently */
205 LWIP_UNUSED_ARG(type);
206
207 #if ETHARP_SUPPORT_STATIC_ENTRIES && LWIP_TCPIP_CORE_LOCKING
208 LOCK_TCPIP_CORE();
209 err = etharp_remove_static_entry(ipaddr);
210 UNLOCK_TCPIP_CORE();
211 #else
212 /* @todo add new vars to struct netifapi_msg and create a 'do' func */
213 LWIP_UNUSED_ARG(ipaddr);
214 err = ERR_VAL;
215 #endif /* ETHARP_SUPPORT_STATIC_ENTRIES && LWIP_TCPIP_CORE_LOCKING */
216
217 return err;
218 }
219 #endif /* LWIP_ARP && LWIP_IPV4 */
220
221 /**
222 * @ingroup netifapi_netif
223 * Call netif_add() in a thread-safe way by running that function inside the
224 * tcpip_thread context.
225 *
226 * @note for params @see netif_add()
227 */
228 err_t
229 netifapi_netif_add(struct netif *netif,
230 #if LWIP_IPV4
231 const ip4_addr_t *ipaddr, const ip4_addr_t *netmask, const ip4_addr_t *gw,
232 #endif /* LWIP_IPV4 */
233 void *state, netif_init_fn init, netif_input_fn input)
234 {
235 err_t err;
236 NETIFAPI_VAR_DECLARE(msg);
237 NETIFAPI_VAR_ALLOC(msg);
238
239 #if LWIP_IPV4
240 if (ipaddr == NULL) {
241 ipaddr = IP4_ADDR_ANY4;
242 }
243 if (netmask == NULL) {
244 netmask = IP4_ADDR_ANY4;
245 }
246 if (gw == NULL) {
247 gw = IP4_ADDR_ANY4;
248 }
249 #endif /* LWIP_IPV4 */
250
251 NETIFAPI_VAR_REF(msg).netif = netif;
252 #if LWIP_IPV4
253 NETIFAPI_VAR_REF(msg).msg.add.ipaddr = NETIFAPI_VAR_REF(ipaddr);
254 NETIFAPI_VAR_REF(msg).msg.add.netmask = NETIFAPI_VAR_REF(netmask);
255 NETIFAPI_VAR_REF(msg).msg.add.gw = NETIFAPI_VAR_REF(gw);
256 #endif /* LWIP_IPV4 */
257 NETIFAPI_VAR_REF(msg).msg.add.state = state;
258 NETIFAPI_VAR_REF(msg).msg.add.init = init;
259 NETIFAPI_VAR_REF(msg).msg.add.input = input;
260 err = tcpip_api_call(netifapi_do_netif_add, &API_VAR_REF(msg).call);
261 NETIFAPI_VAR_FREE(msg);
262 return err;
263 }
264
265 #if LWIP_IPV4
266 /**
267 * @ingroup netifapi_netif
268 * Call netif_set_addr() in a thread-safe way by running that function inside the
269 * tcpip_thread context.
270 *
271 * @note for params @see netif_set_addr()
272 */
273 err_t
274 netifapi_netif_set_addr(struct netif *netif,
275 const ip4_addr_t *ipaddr,
276 const ip4_addr_t *netmask,
277 const ip4_addr_t *gw)
278 {
279 err_t err;
280 NETIFAPI_VAR_DECLARE(msg);
281 NETIFAPI_VAR_ALLOC(msg);
282
283 if (ipaddr == NULL) {
284 ipaddr = IP4_ADDR_ANY4;
285 }
286 if (netmask == NULL) {
287 netmask = IP4_ADDR_ANY4;
288 }
289 if (gw == NULL) {
290 gw = IP4_ADDR_ANY4;
291 }
292
293 NETIFAPI_VAR_REF(msg).netif = netif;
294 NETIFAPI_VAR_REF(msg).msg.add.ipaddr = NETIFAPI_VAR_REF(ipaddr);
295 NETIFAPI_VAR_REF(msg).msg.add.netmask = NETIFAPI_VAR_REF(netmask);
296 NETIFAPI_VAR_REF(msg).msg.add.gw = NETIFAPI_VAR_REF(gw);
297 err = tcpip_api_call(netifapi_do_netif_set_addr, &API_VAR_REF(msg).call);
298 NETIFAPI_VAR_FREE(msg);
299 return err;
300 }
301 #endif /* LWIP_IPV4 */
302
303 /**
304 * call the "errtfunc" (or the "voidfunc" if "errtfunc" is NULL) in a thread-safe
305 * way by running that function inside the tcpip_thread context.
306 *
307 * @note use only for functions where there is only "netif" parameter.
308 */
309 err_t
310 netifapi_netif_common(struct netif *netif, netifapi_void_fn voidfunc,
311 netifapi_errt_fn errtfunc)
312 {
313 err_t err;
314 NETIFAPI_VAR_DECLARE(msg);
315 NETIFAPI_VAR_ALLOC(msg);
316
317 NETIFAPI_VAR_REF(msg).netif = netif;
318 NETIFAPI_VAR_REF(msg).msg.common.voidfunc = voidfunc;
319 NETIFAPI_VAR_REF(msg).msg.common.errtfunc = errtfunc;
320 err = tcpip_api_call(netifapi_do_netif_common, &API_VAR_REF(msg).call);
321 NETIFAPI_VAR_FREE(msg);
322 return err;
323 }
324
325 /**
326 * @ingroup netifapi_netif
327 * Call netif_name_to_index() in a thread-safe way by running that function inside the
328 * tcpip_thread context.
329 *
330 * @param name the interface name of the netif
331 * @param idx output index of the found netif
332 */
333 err_t
334 netifapi_netif_name_to_index(const char *name, u8_t *idx)
335 {
336 err_t err;
337 NETIFAPI_VAR_DECLARE(msg);
338 NETIFAPI_VAR_ALLOC(msg);
339
340 *idx = 0;
341
342 #if LWIP_MPU_COMPATIBLE
343 strncpy(NETIFAPI_VAR_REF(msg).msg.ifs.name, name, NETIF_NAMESIZE - 1);
344 NETIFAPI_VAR_REF(msg).msg.ifs.name[NETIF_NAMESIZE - 1] = '\0';
345 #else
346 NETIFAPI_VAR_REF(msg).msg.ifs.name = LWIP_CONST_CAST(char *, name);
347 #endif /* LWIP_MPU_COMPATIBLE */
348 err = tcpip_api_call(netifapi_do_name_to_index, &API_VAR_REF(msg).call);
349 if (!err) {
350 *idx = NETIFAPI_VAR_REF(msg).msg.ifs.index;
351 }
352 NETIFAPI_VAR_FREE(msg);
353 return err;
354 }
355
356 /**
357 * @ingroup netifapi_netif
358 * Call netif_index_to_name() in a thread-safe way by running that function inside the
359 * tcpip_thread context.
360 *
361 * @param idx the interface index of the netif
362 * @param name output name of the found netif, empty '\0' string if netif not found.
363 * name should be of at least NETIF_NAMESIZE bytes
364 */
365 err_t
366 netifapi_netif_index_to_name(u8_t idx, char *name)
367 {
368 err_t err;
369 NETIFAPI_VAR_DECLARE(msg);
370 NETIFAPI_VAR_ALLOC(msg);
371
372 NETIFAPI_VAR_REF(msg).msg.ifs.index = idx;
373 #if !LWIP_MPU_COMPATIBLE
374 NETIFAPI_VAR_REF(msg).msg.ifs.name = name;
375 #endif /* LWIP_MPU_COMPATIBLE */
376 err = tcpip_api_call(netifapi_do_index_to_name, &API_VAR_REF(msg).call);
377 #if LWIP_MPU_COMPATIBLE
378 if (!err) {
379 strncpy(name, NETIFAPI_VAR_REF(msg).msg.ifs.name, NETIF_NAMESIZE - 1);
380 name[NETIF_NAMESIZE - 1] = '\0';
381 }
382 #endif /* LWIP_MPU_COMPATIBLE */
383 NETIFAPI_VAR_FREE(msg);
384 return err;
385 }
386
387 #if LWIP_LOWPOWER
388 static err_t
389 netifapi_do_set_lowpower_mod(struct tcpip_api_call_data *m)
390 {
391 struct netifapi_msg *msg = (struct netifapi_msg *)(void *)m;
392 enum lowpower_mod mod = msg->msg.lp.mod;
393 set_lowpower_mod(mod);
394 return ERR_OK;
395 }
396
397 err_t
398 netifapi_enable_lowpower(void)
399 {
400 err_t err;
401 NETIFAPI_VAR_DECLARE(msg);
402
403 NETIFAPI_VAR_ALLOC(msg);
404
405 NETIFAPI_VAR_REF(msg).msg.lp.mod = LOW_TMR_LOWPOWER_MOD;
406
407 err = tcpip_api_call(netifapi_do_set_lowpower_mod, &API_VAR_REF(msg).call);
408 NETIFAPI_VAR_FREE(msg);
409 return err;
410 }
411
412 err_t
413 netifapi_disable_lowpower(void)
414 {
415 err_t err;
416 NETIFAPI_VAR_DECLARE(msg);
417
418 NETIFAPI_VAR_ALLOC(msg);
419
420 NETIFAPI_VAR_REF(msg).msg.lp.mod = LOW_TMR_NORMAL_MOD;
421
422 err = tcpip_api_call(netifapi_do_set_lowpower_mod, &API_VAR_REF(msg).call);
423 NETIFAPI_VAR_FREE(msg);
424 return err;
425 }
426 #endif /* LWIP_LOWPOWER */
427
428 #endif /* LWIP_NETIF_API */
429